* 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>
73 lines
2.4 KiB
Java
73 lines
2.4 KiB
Java
package net.lingala.zip4j.util;
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import java.io.DataInput;
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import java.io.IOException;
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import kotlin.KotlinVersion;
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import kotlin.UByte;
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import net.lingala.zip4j.exception.ZipException;
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/* loaded from: classes4.dex */
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public class Raw {
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public static void a(byte[] bArr, int i) {
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bArr[0] = (byte) i;
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bArr[1] = (byte) (i >> 8);
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bArr[2] = (byte) (i >> 16);
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bArr[3] = (byte) (i >> 24);
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bArr[4] = 0;
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bArr[5] = 0;
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bArr[6] = 0;
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bArr[7] = 0;
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bArr[8] = 0;
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bArr[9] = 0;
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bArr[10] = 0;
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bArr[11] = 0;
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bArr[12] = 0;
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bArr[13] = 0;
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bArr[14] = 0;
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bArr[15] = 0;
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}
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public static int b(byte[] bArr) {
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return ((((bArr[3] & UByte.MAX_VALUE) << 8) | (bArr[2] & UByte.MAX_VALUE)) << 16) | (bArr[0] & UByte.MAX_VALUE) | ((bArr[1] & UByte.MAX_VALUE) << 8);
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}
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public static int c(DataInput dataInput, byte[] bArr) {
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try {
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dataInput.readFully(bArr, 0, 4);
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return (bArr[0] & UByte.MAX_VALUE) | ((bArr[1] & UByte.MAX_VALUE) << 8) | ((((bArr[3] & UByte.MAX_VALUE) << 8) | (bArr[2] & UByte.MAX_VALUE)) << 16);
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} catch (IOException e) {
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throw new ZipException(e);
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}
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}
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public static long d(byte[] bArr) {
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return ((((((((((((((bArr[7] & UByte.MAX_VALUE) << 8) | (bArr[6] & UByte.MAX_VALUE)) << 8) | (bArr[5] & UByte.MAX_VALUE)) << 8) | (bArr[4] & UByte.MAX_VALUE)) << 8) | (bArr[3] & UByte.MAX_VALUE)) << 8) | (bArr[2] & UByte.MAX_VALUE)) << 8) | (bArr[1] & UByte.MAX_VALUE)) << 8) | (bArr[0] & UByte.MAX_VALUE);
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}
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public static int e(byte[] bArr, int i) {
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return ((bArr[i + 1] & UByte.MAX_VALUE) << 8) | (bArr[i] & UByte.MAX_VALUE);
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}
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public static final void f(byte[] bArr, int i) {
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bArr[3] = (byte) (i >>> 24);
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bArr[2] = (byte) (i >>> 16);
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bArr[1] = (byte) (i >>> 8);
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bArr[0] = (byte) (i & KotlinVersion.MAX_COMPONENT_VALUE);
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}
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public static void g(byte[] bArr, long j) {
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bArr[7] = (byte) (j >>> 56);
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bArr[6] = (byte) (j >>> 48);
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bArr[5] = (byte) (j >>> 40);
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bArr[4] = (byte) (j >>> 32);
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bArr[3] = (byte) (j >>> 24);
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bArr[2] = (byte) (j >>> 16);
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bArr[1] = (byte) (j >>> 8);
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bArr[0] = (byte) (j & 255);
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}
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public static final void h(byte[] bArr, short s) {
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bArr[1] = (byte) (s >>> 8);
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bArr[0] = (byte) (s & 255);
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}
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}
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