package b.e.a.j;

import androidx.constraintlayout.widget.ConstraintLayout;
import b.e.a.j.l.b;
import b.e.a.j.l.o;
import java.lang.ref.WeakReference;
import java.util.Arrays;
import java.util.HashSet;
import java.util.Iterator;

/* JADX INFO: loaded from: classes.dex */
public class e extends k {
    public int u0;
    public int y0;
    public int z0;
    public b.e.a.j.l.b s0 = new b.e.a.j.l.b(this);
    public b.e.a.j.l.e t0 = new b.e.a.j.l.e(this);
    public b.InterfaceC0010b v0 = null;
    public boolean w0 = false;
    public b.e.a.d x0 = new b.e.a.d();
    public int A0 = 0;
    public int B0 = 0;
    public b[] C0 = new b[4];
    public b[] D0 = new b[4];
    public int E0 = 257;
    public boolean F0 = false;
    public boolean G0 = false;
    public WeakReference<c> H0 = null;
    public WeakReference<c> I0 = null;
    public WeakReference<c> J0 = null;
    public WeakReference<c> K0 = null;
    public HashSet<d> L0 = new HashSet<>();
    public b.a M0 = new b.a();

    public static boolean e0(d dVar, b.InterfaceC0010b interfaceC0010b, b.a aVar, int i) {
        int i2;
        int i3;
        if (interfaceC0010b == null) {
            return false;
        }
        if (dVar.i0 == 8 || (dVar instanceof f) || (dVar instanceof a)) {
            aVar.f765e = 0;
            aVar.f766f = 0;
            return false;
        }
        aVar.f761a = dVar.m();
        aVar.f762b = dVar.t();
        aVar.f763c = dVar.u();
        aVar.f764d = dVar.l();
        aVar.i = false;
        aVar.j = i;
        boolean z = aVar.f761a == 3;
        boolean z2 = aVar.f762b == 3;
        boolean z3 = z && dVar.Y > 0.0f;
        boolean z4 = z2 && dVar.Y > 0.0f;
        if (z && dVar.x(0) && dVar.r == 0 && !z3) {
            aVar.f761a = 2;
            if (z2 && dVar.s == 0) {
                aVar.f761a = 1;
            }
            z = false;
        }
        if (z2 && dVar.x(1) && dVar.s == 0 && !z4) {
            aVar.f762b = 2;
            if (z && dVar.r == 0) {
                aVar.f762b = 1;
            }
            z2 = false;
        }
        if (dVar.D()) {
            aVar.f761a = 1;
            z = false;
        }
        if (dVar.E()) {
            aVar.f762b = 1;
            z2 = false;
        }
        if (z3) {
            if (dVar.t[0] == 4) {
                aVar.f761a = 1;
            } else if (!z2) {
                if (aVar.f762b == 1) {
                    i3 = aVar.f764d;
                } else {
                    aVar.f761a = 2;
                    ((ConstraintLayout.b) interfaceC0010b).b(dVar, aVar);
                    i3 = aVar.f766f;
                }
                aVar.f761a = 1;
                aVar.f763c = (int) (dVar.Y * i3);
            }
        }
        if (z4) {
            if (dVar.t[1] == 4) {
                aVar.f762b = 1;
            } else if (!z) {
                if (aVar.f761a == 1) {
                    i2 = aVar.f763c;
                } else {
                    aVar.f762b = 2;
                    ((ConstraintLayout.b) interfaceC0010b).b(dVar, aVar);
                    i2 = aVar.f765e;
                }
                aVar.f762b = 1;
                aVar.f764d = dVar.Z == -1 ? (int) (i2 / dVar.Y) : (int) (dVar.Y * i2);
            }
        }
        ((ConstraintLayout.b) interfaceC0010b).b(dVar, aVar);
        dVar.S(aVar.f765e);
        dVar.N(aVar.f766f);
        dVar.E = aVar.h;
        dVar.K(aVar.g);
        aVar.j = 0;
        return aVar.i;
    }

    @Override // b.e.a.j.k, b.e.a.j.d
    public void F() {
        this.x0.u();
        this.y0 = 0;
        this.z0 = 0;
        super.F();
    }

    @Override // b.e.a.j.d
    public void T(boolean z, boolean z2) {
        super.T(z, z2);
        int size = this.r0.size();
        for (int i = 0; i < size; i++) {
            this.r0.get(i).T(z, z2);
        }
    }

    /* JADX WARN: Multi-variable type inference failed */
    /* JADX WARN: Removed duplicated region for block: B:330:0x0581  */
    /* JADX WARN: Removed duplicated region for block: B:345:0x05b8  */
    /* JADX WARN: Removed duplicated region for block: B:363:0x05e6  */
    /* JADX WARN: Removed duplicated region for block: B:368:0x05fc  */
    /* JADX WARN: Removed duplicated region for block: B:376:0x061b  */
    /* JADX WARN: Removed duplicated region for block: B:380:0x0626  */
    /* JADX WARN: Removed duplicated region for block: B:383:0x0633 A[ADDED_TO_REGION] */
    /* JADX WARN: Removed duplicated region for block: B:387:0x0641  */
    /* JADX WARN: Removed duplicated region for block: B:391:0x064b  */
    /* JADX WARN: Removed duplicated region for block: B:394:0x0656  */
    /* JADX WARN: Removed duplicated region for block: B:400:0x0673  */
    /* JADX WARN: Removed duplicated region for block: B:47:0x00e5  */
    /* JADX WARN: Removed duplicated region for block: B:497:0x08bc  */
    /* JADX WARN: Removed duplicated region for block: B:501:0x08c9  */
    /* JADX WARN: Removed duplicated region for block: B:560:0x08be A[SYNTHETIC] */
    /* JADX WARN: Type inference failed for: r0v108 */
    /* JADX WARN: Type inference failed for: r0v109 */
    /* JADX WARN: Type inference failed for: r0v110 */
    /* JADX WARN: Type inference failed for: r0v111 */
    /* JADX WARN: Type inference failed for: r0v112 */
    /* JADX WARN: Type inference failed for: r0v113 */
    /* JADX WARN: Type inference failed for: r0v114 */
    /* JADX WARN: Type inference failed for: r0v115 */
    /* JADX WARN: Type inference failed for: r0v116 */
    /* JADX WARN: Type inference failed for: r0v22 */
    /* JADX WARN: Type inference failed for: r0v23 */
    /* JADX WARN: Type inference failed for: r0v24 */
    /* JADX WARN: Type inference failed for: r0v28 */
    /* JADX WARN: Type inference failed for: r0v29, types: [int[]] */
    /* JADX WARN: Type inference failed for: r0v31, types: [int[]] */
    /* JADX WARN: Type inference failed for: r0v32 */
    /* JADX WARN: Type inference failed for: r0v33, types: [int[]] */
    /* JADX WARN: Type inference failed for: r0v34 */
    /* JADX WARN: Type inference failed for: r11v0 */
    /* JADX WARN: Type inference failed for: r11v1 */
    /* JADX WARN: Type inference failed for: r11v12 */
    /* JADX WARN: Type inference failed for: r11v15 */
    /* JADX WARN: Type inference failed for: r11v16 */
    /* JADX WARN: Type inference failed for: r11v18 */
    /* JADX WARN: Type inference failed for: r11v2 */
    /* JADX WARN: Type inference failed for: r11v40 */
    /* JADX WARN: Type inference failed for: r11v41 */
    /* JADX WARN: Type inference failed for: r11v42 */
    /* JADX WARN: Type inference failed for: r11v5 */
    /* JADX WARN: Type inference failed for: r11v6 */
    /* JADX WARN: Type inference failed for: r20v0 */
    /* JADX WARN: Type inference failed for: r20v1 */
    /* JADX WARN: Type inference failed for: r20v2 */
    /* JADX WARN: Type inference failed for: r6v10, types: [boolean] */
    /* JADX WARN: Type inference failed for: r6v12 */
    /* JADX WARN: Type inference failed for: r6v9 */
    @Override // b.e.a.j.k
    /*
        Code decompiled incorrectly, please refer to instructions dump.
        To view partially-correct add '--show-bad-code' argument
    */
    public void V() {
        /*
            Method dump skipped, instruction units count: 2265
            To view this dump add '--comments-level debug' option
        */
        throw new UnsupportedOperationException("Method not decompiled: b.e.a.j.e.V():void");
    }

    public void W(d dVar, int i) {
        if (i == 0) {
            int i2 = this.A0 + 1;
            b[] bVarArr = this.D0;
            if (i2 >= bVarArr.length) {
                this.D0 = (b[]) Arrays.copyOf(bVarArr, bVarArr.length * 2);
            }
            b[] bVarArr2 = this.D0;
            int i3 = this.A0;
            bVarArr2[i3] = new b(dVar, 0, this.w0);
            this.A0 = i3 + 1;
            return;
        }
        if (i == 1) {
            int i4 = this.B0 + 1;
            b[] bVarArr3 = this.C0;
            if (i4 >= bVarArr3.length) {
                this.C0 = (b[]) Arrays.copyOf(bVarArr3, bVarArr3.length * 2);
            }
            b[] bVarArr4 = this.C0;
            int i5 = this.B0;
            bVarArr4[i5] = new b(dVar, 1, this.w0);
            this.B0 = i5 + 1;
        }
    }

    public boolean X(b.e.a.d dVar) {
        boolean z;
        boolean zF0 = f0(64);
        d(dVar, zF0);
        int size = this.r0.size();
        boolean z2 = false;
        for (int i = 0; i < size; i++) {
            d dVar2 = this.r0.get(i);
            boolean[] zArr = dVar2.T;
            zArr[0] = false;
            zArr[1] = false;
            if (dVar2 instanceof a) {
                z2 = true;
            }
        }
        if (z2) {
            for (int i2 = 0; i2 < size; i2++) {
                d dVar3 = this.r0.get(i2);
                if (dVar3 instanceof a) {
                    a aVar = (a) dVar3;
                    for (int i3 = 0; i3 < aVar.s0; i3++) {
                        d dVar4 = aVar.r0[i3];
                        if (aVar.u0 || dVar4.e()) {
                            int i4 = aVar.t0;
                            if (i4 == 0 || i4 == 1) {
                                dVar4.T[0] = true;
                            } else if (i4 == 2 || i4 == 3) {
                                dVar4.T[1] = true;
                            }
                        }
                    }
                }
            }
        }
        this.L0.clear();
        for (int i5 = 0; i5 < size; i5++) {
            d dVar5 = this.r0.get(i5);
            if (dVar5.c()) {
                if (dVar5 instanceof j) {
                    this.L0.add(dVar5);
                } else {
                    dVar5.d(dVar, zF0);
                }
            }
        }
        while (this.L0.size() > 0) {
            int size2 = this.L0.size();
            Iterator<d> it = this.L0.iterator();
            while (true) {
                if (!it.hasNext()) {
                    break;
                }
                j jVar = (j) it.next();
                HashSet<d> hashSet = this.L0;
                int i6 = 0;
                while (true) {
                    if (i6 >= jVar.s0) {
                        z = false;
                        break;
                    }
                    if (hashSet.contains(jVar.r0[i6])) {
                        z = true;
                        break;
                    }
                    i6++;
                }
                if (z) {
                    jVar.d(dVar, zF0);
                    this.L0.remove(jVar);
                    break;
                }
            }
            if (size2 == this.L0.size()) {
                Iterator<d> it2 = this.L0.iterator();
                while (it2.hasNext()) {
                    it2.next().d(dVar, zF0);
                }
                this.L0.clear();
            }
        }
        if (b.e.a.d.f709a) {
            HashSet<d> hashSet2 = new HashSet<>();
            for (int i7 = 0; i7 < size; i7++) {
                d dVar6 = this.r0.get(i7);
                if (!dVar6.c()) {
                    hashSet2.add(dVar6);
                }
            }
            b(this, dVar, hashSet2, m() == 2 ? 0 : 1, false);
            for (d dVar7 : hashSet2) {
                i.a(this, dVar, dVar7);
                dVar7.d(dVar, zF0);
            }
        } else {
            for (int i8 = 0; i8 < size; i8++) {
                d dVar8 = this.r0.get(i8);
                if (dVar8 instanceof e) {
                    int[] iArr = dVar8.U;
                    int i9 = iArr[0];
                    int i10 = iArr[1];
                    if (i9 == 2) {
                        iArr[0] = 1;
                    }
                    if (i10 == 2) {
                        iArr[1] = 1;
                    }
                    dVar8.d(dVar, zF0);
                    if (i9 == 2) {
                        dVar8.O(i9);
                    }
                    if (i10 == 2) {
                        dVar8.R(i10);
                    }
                } else {
                    i.a(this, dVar, dVar8);
                    if (!dVar8.c()) {
                        dVar8.d(dVar, zF0);
                    }
                }
            }
        }
        if (this.A0 > 0) {
            b.b.a.a(this, dVar, null, 0);
        }
        if (this.B0 > 0) {
            b.b.a.a(this, dVar, null, 1);
        }
        return true;
    }

    public void Y(c cVar) {
        WeakReference<c> weakReference = this.K0;
        if (weakReference == null || weakReference.get() == null || cVar.c() > this.K0.get().c()) {
            this.K0 = new WeakReference<>(cVar);
        }
    }

    public void Z(c cVar) {
        WeakReference<c> weakReference = this.I0;
        if (weakReference == null || weakReference.get() == null || cVar.c() > this.I0.get().c()) {
            this.I0 = new WeakReference<>(cVar);
        }
    }

    public void a0(c cVar) {
        WeakReference<c> weakReference = this.J0;
        if (weakReference == null || weakReference.get() == null || cVar.c() > this.J0.get().c()) {
            this.J0 = new WeakReference<>(cVar);
        }
    }

    public void b0(c cVar) {
        WeakReference<c> weakReference = this.H0;
        if (weakReference == null || weakReference.get() == null || cVar.c() > this.H0.get().c()) {
            this.H0 = new WeakReference<>(cVar);
        }
    }

    public boolean c0(boolean z, int i) {
        int i2;
        b.e.a.j.l.g gVar;
        boolean z2;
        b.e.a.j.l.g gVar2;
        int iL;
        b.e.a.j.l.e eVar = this.t0;
        boolean z3 = true;
        boolean z4 = z & true;
        int iK = eVar.f767a.k(0);
        int iK2 = eVar.f767a.k(1);
        int iV = eVar.f767a.v();
        int iW = eVar.f767a.w();
        if (z4 && (iK == 2 || iK2 == 2)) {
            Iterator<o> it = eVar.f771e.iterator();
            while (true) {
                if (!it.hasNext()) {
                    break;
                }
                o next = it.next();
                if (next.f802f == i && !next.k()) {
                    z4 = false;
                    break;
                }
            }
            if (i == 0) {
                if (z4 && iK == 2) {
                    e eVar2 = eVar.f767a;
                    eVar2.U[0] = 1;
                    eVar2.S(eVar.d(eVar2, 0));
                    e eVar3 = eVar.f767a;
                    gVar2 = eVar3.f754d.f801e;
                    iL = eVar3.u();
                    gVar2.c(iL);
                }
            } else if (z4 && iK2 == 2) {
                e eVar4 = eVar.f767a;
                eVar4.U[1] = 1;
                eVar4.N(eVar.d(eVar4, 1));
                e eVar5 = eVar.f767a;
                gVar2 = eVar5.f755e.f801e;
                iL = eVar5.l();
                gVar2.c(iL);
            }
        }
        e eVar6 = eVar.f767a;
        int[] iArr = eVar6.U;
        if (i == 0) {
            if (iArr[0] == 1 || iArr[0] == 4) {
                int iU = eVar6.u() + iV;
                eVar.f767a.f754d.i.c(iU);
                gVar = eVar.f767a.f754d.f801e;
                i2 = iU - iV;
                gVar.c(i2);
                z2 = true;
            }
            z2 = false;
        } else {
            if (iArr[1] == 1 || iArr[1] == 4) {
                int iL2 = eVar6.l() + iW;
                eVar.f767a.f755e.i.c(iL2);
                i2 = iL2 - iW;
                gVar = eVar.f767a.f755e.f801e;
                gVar.c(i2);
                z2 = true;
            }
            z2 = false;
        }
        eVar.g();
        for (o oVar : eVar.f771e) {
            if (oVar.f802f == i && (oVar.f798b != eVar.f767a || oVar.g)) {
                oVar.e();
            }
        }
        for (o oVar2 : eVar.f771e) {
            if (oVar2.f802f == i && (z2 || oVar2.f798b != eVar.f767a)) {
                if (!oVar2.h.j || !oVar2.i.j || (!(oVar2 instanceof b.e.a.j.l.c) && !oVar2.f801e.j)) {
                    z3 = false;
                    break;
                }
            }
        }
        eVar.f767a.O(iK);
        eVar.f767a.R(iK2);
        return z3;
    }

    public void d0() {
        this.t0.f768b = true;
    }

    public boolean f0(int i) {
        return (this.E0 & i) == i;
    }

    public void g0(int i) {
        this.E0 = i;
        b.e.a.d.f709a = f0(512);
    }

    @Override // b.e.a.j.d
    public void q(StringBuilder sb) {
        sb.append(this.j + ":{\n");
        sb.append("  actualWidth:" + this.W);
        sb.append("\n");
        sb.append("  actualHeight:" + this.X);
        sb.append("\n");
        Iterator<d> it = this.r0.iterator();
        while (it.hasNext()) {
            it.next().q(sb);
            sb.append(",\n");
        }
        sb.append("}");
    }
}
