soul-browser/sources/java/org/tukaani/xz/lzma/LZMACoder.java
KaKi87 550ddb0413
Decompile and recreate Soul Browser v1.4.85 with APK CI builds (#1)
* Decompile and recreate Soul Browser v1.4.85 with APK CI builds

Co-authored-by: KaKi87 <KaKi87@pm.me>

* Fix CI build: include bundled google.jks and remove PR trigger

The apktool build failed in CI because app/unknown/.../google.jks was
excluded by the *.jks gitignore rule. Whitelist app-bundled JKS files
and commit the missing resource.

Also remove the redundant pull_request workflow trigger.

Co-authored-by: KaKi87 <KaKi87@pm.me>

* Change package ID to com.github.kaki87.soulbrowser

Rename the application ID so the rebuilt APK can be installed
alongside the original Soul Browser from Google Play.

- Update AndroidManifest package, permissions, providers, and actions
- Update R class references in smali (com/github/kaki87/soulbrowser/R)
- Update shortcuts.xml targetPackage
- Rename app label to "Soul Rebuild" for easy identification

Co-authored-by: KaKi87 <KaKi87@pm.me>

* Fix install compatibility: remove split APK metadata and bundle native libs

The rebuilt APK still declared requiredSplitTypes and Play Store split
metadata, causing Android to reject standalone installs as incompatible.

- Remove requiredSplitTypes and split-related manifest meta-data
- Merge native libs from all ABI splits with uncompressed storage
- Page-align before signing for extractNativeLibs=false
- Add .so to apktool doNotCompress list

Co-authored-by: KaKi87 <KaKi87@pm.me>

* Fix install failure: use apksigner v2/v3 and bundle arm64 native libs

Target SDK 36 requires APK Signature Scheme v2+, but jarsigner only
produces v1 signatures, causing Android to reject the install.

- Sign with apksigner (v1+v2+v3) instead of jarsigner
- Add arm64-v8a native libraries from universal Soul Browser 1.4.79
- Set extractNativeLibs=true for reliable sideload installs
- Commit stable debug keystore for consistent signatures across builds

Co-authored-by: KaKi87 <KaKi87@pm.me>

* Add committed debug keystore for consistent APK signatures

Co-authored-by: KaKi87 <KaKi87@pm.me>

* Fix startup crash: use original classes2.dex desugar libraries

Apktool recompiles smali_classes2 into a broken classes2.dex, causing
ClassNotFoundException for j$.com.android.tools.r8.a at ML Kit init.

Inject the original classes2.dex (Java 8+ desugar libs) after apktool
build instead of using the recompiled version.

Co-authored-by: KaKi87 <KaKi87@pm.me>

* Fix missing drawable resources from density split APKs

The base APK is an app bundle module; density-specific drawables like
seek_thumb_nor_b live in config.xhdpi.apk and were missing after rebuild,
causing Resources$NotFoundException at runtime.

- Merge non-9-patch resources from split APKs before apktool build
- Sync public.xml IDs from R smali only when backing files exist
- Add 713 density-specific resource IDs to public.xml

Co-authored-by: KaKi87 <KaKi87@pm.me>

---------

Co-authored-by: Cursor Agent <cursoragent@cursor.com>
2026-08-10 16:07:14 +02:00

152 lines
4.5 KiB
Java

package org.tukaani.xz.lzma;
import java.lang.reflect.Array;
import org.tukaani.xz.rangecoder.RangeCoder;
/* loaded from: classes4.dex */
abstract class LZMACoder {
/* renamed from: a, reason: collision with root package name */
public final int f22712a;
public final int[] b = new int[4];
/* renamed from: c, reason: collision with root package name */
public final State f22713c = new Object();
public final short[][] d;
public final short[] e;
public final short[] f;
public final short[] g;
public final short[] h;
public final short[][] i;
public final short[][] j;
public final short[][] k;
public final short[] l;
/* loaded from: classes4.dex */
public static abstract class LengthCoder {
/* renamed from: a, reason: collision with root package name */
public final short[] f22714a = new short[2];
public final short[][] b;
/* renamed from: c, reason: collision with root package name */
public final short[][] f22715c;
public final short[] d;
public LengthCoder() {
Class cls = Short.TYPE;
this.b = (short[][]) Array.newInstance((Class<?>) cls, 16, 8);
this.f22715c = (short[][]) Array.newInstance((Class<?>) cls, 16, 8);
this.d = new short[256];
}
public void a() {
short[][] sArr;
RangeCoder.a(this.f22714a);
int i = 0;
while (true) {
sArr = this.b;
if (i >= sArr.length) {
break;
}
RangeCoder.a(sArr[i]);
i++;
}
for (int i2 = 0; i2 < sArr.length; i2++) {
RangeCoder.a(this.f22715c[i2]);
}
RangeCoder.a(this.d);
}
}
/* loaded from: classes4.dex */
public static abstract class LiteralCoder {
/* renamed from: a, reason: collision with root package name */
public final int f22716a;
public final int b;
/* loaded from: classes4.dex */
public static abstract class LiteralSubcoder {
/* renamed from: a, reason: collision with root package name */
public final short[] f22717a = new short[768];
}
public LiteralCoder(int i, int i2) {
this.f22716a = i;
this.b = (1 << i2) - 1;
}
public final int a(int i, int i2) {
int i3 = this.f22716a;
return (i >> (8 - i3)) + ((i2 & this.b) << i3);
}
}
/* JADX WARN: Type inference failed for: r2v1, types: [org.tukaani.xz.lzma.State, java.lang.Object] */
public LZMACoder(int i) {
Class cls = Short.TYPE;
this.d = (short[][]) Array.newInstance((Class<?>) cls, 12, 16);
this.e = new short[12];
this.f = new short[12];
this.g = new short[12];
this.h = new short[12];
this.i = (short[][]) Array.newInstance((Class<?>) cls, 12, 16);
this.j = (short[][]) Array.newInstance((Class<?>) cls, 4, 64);
this.k = new short[][]{new short[2], new short[2], new short[4], new short[4], new short[8], new short[8], new short[16], new short[16], new short[32], new short[32]};
this.l = new short[16];
this.f22712a = (1 << i) - 1;
}
public void a() {
int[] iArr = this.b;
int i = 0;
iArr[0] = 0;
iArr[1] = 0;
iArr[2] = 0;
iArr[3] = 0;
this.f22713c.f22719a = 0;
int i2 = 0;
while (true) {
short[][] sArr = this.d;
if (i2 >= sArr.length) {
break;
}
RangeCoder.a(sArr[i2]);
i2++;
}
RangeCoder.a(this.e);
RangeCoder.a(this.f);
RangeCoder.a(this.g);
RangeCoder.a(this.h);
int i3 = 0;
while (true) {
short[][] sArr2 = this.i;
if (i3 >= sArr2.length) {
break;
}
RangeCoder.a(sArr2[i3]);
i3++;
}
int i4 = 0;
while (true) {
short[][] sArr3 = this.j;
if (i4 >= sArr3.length) {
break;
}
RangeCoder.a(sArr3[i4]);
i4++;
}
while (true) {
short[][] sArr4 = this.k;
if (i < sArr4.length) {
RangeCoder.a(sArr4[i]);
i++;
} else {
RangeCoder.a(this.l);
return;
}
}
}
}