Migrate to Borealis (#2266)

This commit is contained in:
Luke Street
2026-08-05 07:54:31 -06:00
committed by GitHub
parent 4604304305
commit 13b3b68fe5
94 changed files with 654 additions and 14091 deletions
+12 -14
View File
@@ -1,6 +1,6 @@
# Android Shell
This directory contains a minimal SDLActivity-based Android app wrapper for Dusklight.
This directory contains Dusklight's Android shell built on top of Borealis.
## Prerequisites
@@ -25,24 +25,19 @@ cmake --build --preset android-arm64
This build produces `build/android-arm64/libmain.so`
## Refresh SDL Java Shim (Optional)
If you update SDL and want to refresh the embedded Java shim files:
```bash
./android/scripts/sync-sdl-java.sh
```
## Build APK
```bash
cd android
cd platforms/android
./gradlew :app:assembleDebug
```
Output APK:
- `android/app/build/outputs/apk/debug/app-debug.apk`
- `app/build/outputs/apk/debug/app-arm64-v8a-debug.apk`
Aurora needs a hardware-backed graphics adapter. If an AVD has GPU
acceleration disabled, launch it with `-gpu host`.
## Launch With Runtime Args (adb)
@@ -50,10 +45,13 @@ You can pass command-line args through the activity intent:
```bash
adb shell am start -n dev.twilitrealm.dusk/.DuskActivity \
--es dusk_args "--backend vulkan"
--es borealis_args "--backend vulkan"
```
Supported extras:
- `dusk_args`: single shell-like argument string
- `dusk_argv`: string-array argv
- `borealis_args`: single shell-like argument string
- `borealis_argv`: string-array argv
The legacy `dusk_args` and `dusk_argv` names remain accepted during the shell
transition.
+22 -153
View File
@@ -2,163 +2,32 @@ plugins {
id 'com.android.application'
}
def versionNameStr = (System.getenv("DUSK_VERSION") ?: "v0.1.0").replaceFirst("^v", "")
def versionCodeInt = (System.getenv("DUSK_VERSION_CODE") ?: "100000").toInteger()
def duskRepoDir = rootProject.projectDir.parentFile.parentFile
def androidNativeBuildDir = new File(duskRepoDir, 'build/android-arm64')
def nativeLibrary = new File(androidNativeBuildDir, 'libmain.so')
def stageStripValue = providers.gradleProperty('ANDROID_STAGE_STRIP')
.orElse(providers.gradleProperty('androidStageStrip'))
.orElse(providers.environmentVariable('ANDROID_STAGE_STRIP'))
.orElse('1')
def androidHome = {
def sdkPath = System.getenv('ANDROID_HOME')
if (!sdkPath) {
throw new GradleException('ANDROID_HOME is not available')
}
def sdkDir = new File(sdkPath)
if (!sdkDir.isDirectory()) {
throw new GradleException("ANDROID_HOME points to a missing directory: ${sdkDir}")
}
sdkDir
}.memoize()
def borealisDir = new File(duskRepoDir, 'extern/borealis')
def androidNdkVersion = {
def ndkVersion = System.getenv('ANDROID_NDK_VERSION')
if (!ndkVersion) {
throw new GradleException('ANDROID_NDK_VERSION is not available')
}
ndkVersion
}.memoize()
ext.borealisAndroid = [
borealisDir: borealisDir,
propertiesFile: new File(duskRepoDir, 'build/android-arm64/borealis-android.properties'),
namespace: 'dev.twilitrealm.dusk',
applicationId: 'dev.twilitrealm.dusk',
abis: ['arm64-v8a'],
assets: [
[
from: new File(duskRepoDir, 'res'),
into: 'res',
excludes: ['**/.DS_Store']
],
[
from: new File(duskRepoDir, 'build/android-arm64/bundled_mods'),
into: 'mods',
includes: ['*.dusk']
]
],
proguardRules: file('proguard-rules.pro')
]
def androidNdkDir = {
def ndkDir = new File(androidHome(), "ndk/${androidNdkVersion()}")
if (!new File(ndkDir, 'build/cmake/android.toolchain.cmake').isFile()) {
throw new GradleException(
"Android NDK ${androidNdkVersion()} is missing or invalid at ${ndkDir}"
)
}
ndkDir
}.memoize()
def llvmPrebuiltDir = {
def prebuiltRoot = new File(androidNdkDir(), 'toolchains/llvm/prebuilt')
def prebuiltDir = (prebuiltRoot.listFiles()?.findAll { it.isDirectory() } ?: [])
.sort { it.name }
.find { candidate ->
new File(
candidate,
'sysroot/usr/lib/aarch64-linux-android/libc++_shared.so'
).isFile()
}
if (!prebuiltDir) {
throw new GradleException("Cannot find NDK libc++_shared.so under ${prebuiltRoot}")
}
prebuiltDir
}.memoize()
def stlLibrary = {
def library = new File(
llvmPrebuiltDir(),
'sysroot/usr/lib/aarch64-linux-android/libc++_shared.so'
)
if (!library.isFile()) {
throw new GradleException("libc++_shared.so is missing")
}
library
}.memoize()
def stagedJniLibsDir = layout.buildDirectory.dir('generated/jniLibs/dusklight')
def stageJniLibs = tasks.register('stageJniLibs', Sync) {
group = 'build'
from(nativeLibrary) {
rename { 'libmain.so' }
into 'arm64-v8a'
}
from(providers.provider { stlLibrary() }) {
rename { 'libc++_shared.so' }
into 'arm64-v8a'
}
into(stagedJniLibsDir)
doFirst {
if (!nativeLibrary.isFile()) {
throw new GradleException("Native library is missing")
}
}
}
def duskGeneratedAssetsDir = layout.buildDirectory.dir('generated/assets/dusklight')
def syncDuskAssets = tasks.register('syncDuskAssets', Sync) {
from(new File(duskRepoDir, 'res')) {
into 'res'
exclude '**/.DS_Store'
}
from(new File(androidNativeBuildDir, 'bundled_mods')) {
into 'mods'
include '*.dusk'
}
into(duskGeneratedAssetsDir)
}
android {
namespace 'dev.twilitrealm.dusk'
compileSdk 36
ndkVersion androidNdkVersion()
defaultConfig {
applicationId 'dev.twilitrealm.dusk'
minSdk 26
targetSdk 36
versionCode versionCodeInt
versionName versionNameStr
}
buildTypes {
debug {
minifyEnabled false
}
release {
minifyEnabled false
proguardFiles getDefaultProguardFile('proguard-android-optimize.txt'), 'proguard-rules.pro'
}
}
sourceSets {
main {
jniLibs.srcDirs = [stagedJniLibsDir]
assets.srcDirs = [duskGeneratedAssetsDir]
}
}
packaging {
jniLibs {
if (stageStripValue.get() == '0') {
keepDebugSymbols += '**/libmain.so'
}
}
}
splits {
abi {
enable true
reset()
include 'arm64-v8a'
universalApk false
}
}
lint {
abortOnError false
}
}
apply from: new File(borealisDir, 'platforms/android/gradle/borealis-application.gradle')
dependencies {
implementation fileTree(dir: 'libs', include: ['*.jar'])
}
tasks.named('preBuild').configure {
dependsOn(stageJniLibs, syncDuskAssets)
}
+1 -4
View File
@@ -1,4 +1 @@
# Keep SDL activity and related JNI bridge methods.
-keep class org.libsdl.app.** { *; }
-keep class dev.twilitrealm.dusk.DuskHttpClient { *; }
-keep class dev.twilitrealm.dusk.DuskHttpClient$Response { *; }
-keep class dev.twilitrealm.dusk.DuskActivity { *; }
@@ -26,8 +26,8 @@
android:resource="@xml/game_mode_config" />
<provider
android:name="dev.twilitrealm.dusk.DuskDocumentsProvider"
android:authorities="dev.twilitrealm.dusk.documents"
android:name="dev.encounter.borealis.BorealisDocumentsProvider"
android:authorities="${applicationId}.documents"
android:exported="true"
android:grantUriPermissions="true"
android:permission="android.permission.MANAGE_DOCUMENTS">
@@ -1,102 +1,23 @@
package dev.twilitrealm.dusk;
import android.app.ActionBar;
import android.app.Activity;
import android.content.ActivityNotFoundException;
import android.content.ClipData;
import android.content.Context;
import android.content.Intent;
import android.database.Cursor;
import android.net.Uri;
import android.os.Build;
import android.os.Bundle;
import android.os.Environment;
import android.provider.DocumentsContract;
import android.provider.OpenableColumns;
import android.provider.Settings;
import android.util.Log;
import android.view.Display;
import android.view.Surface;
import android.view.SurfaceHolder;
import android.view.View;
import android.view.Window;
import android.view.WindowInsets;
import android.view.WindowInsetsController;
import org.libsdl.app.SDLActivity;
import org.libsdl.app.SDLSurface;
import dev.encounter.borealis.BorealisActivity;
import java.io.File;
import java.io.FileOutputStream;
import java.io.IOException;
import java.io.InputStream;
import java.io.OutputStream;
import java.util.ArrayList;
import java.util.List;
public class DuskActivity extends SDLActivity {
public class DuskActivity extends BorealisActivity {
private static final String TAG = "DuskActivity";
private static final float DEFAULT_SURFACE_FRAME_RATE = 60.0f;
private static final int FOLDER_DIALOG_REQUEST_CODE = 0x4455;
private static final int MANAGE_STORAGE_REQUEST_CODE = 0x4456;
private static final String EXTERNAL_STORAGE_AUTHORITY =
"com.android.externalstorage.documents";
private long folderDialogUserdata = 0;
private boolean awaitingManageStoragePermission = false;
private static native void nativeFolderDialogResult(long userdata, String path, String error);
private static String[] splitArgs(String raw) {
List<String> out = new ArrayList<>();
StringBuilder current = new StringBuilder();
boolean inSingle = false;
boolean inDouble = false;
boolean escaped = false;
for (int i = 0; i < raw.length(); ++i) {
char c = raw.charAt(i);
if (escaped) {
current.append(c);
escaped = false;
continue;
}
if (c == '\\' && !inSingle) {
escaped = true;
continue;
}
if (c == '"' && !inSingle) {
inDouble = !inDouble;
continue;
}
if (c == '\'' && !inDouble) {
inSingle = !inSingle;
continue;
}
if (!inSingle && !inDouble && Character.isWhitespace(c)) {
if (current.length() > 0) {
out.add(current.toString());
current.setLength(0);
}
continue;
}
current.append(c);
}
if (escaped) {
current.append('\\');
}
if (current.length() > 0) {
out.add(current.toString());
}
return out.toArray(new String[0]);
}
@Override
protected void onCreate(Bundle savedInstanceState) {
extractBundledMods();
super.onCreate(savedInstanceState);
hideSystemBars();
}
// Bundled mod packages ship as APK assets, which the native loader cannot read directly;
@@ -143,459 +64,23 @@ public class DuskActivity extends SDLActivity {
file.delete();
}
@Override
protected SDLSurface createSDLSurface(Context context) {
return new DuskSurface(context);
}
@Override
protected void onResume() {
super.onResume();
hideSystemBars();
if (awaitingManageStoragePermission) {
resumeFolderDialogAfterPermissionGrant();
}
}
@Override
public void onWindowFocusChanged(boolean hasFocus) {
super.onWindowFocusChanged(hasFocus);
if (hasFocus) {
hideSystemBars();
}
}
private void hideSystemBars() {
Window window = getWindow();
if (Build.VERSION.SDK_INT >= Build.VERSION_CODES.R) {
window.setDecorFitsSystemWindows(false);
WindowInsetsController ctrl = window.getDecorView().getWindowInsetsController();
if (ctrl != null) {
ctrl.setSystemBarsBehavior(
WindowInsetsController.BEHAVIOR_SHOW_TRANSIENT_BARS_BY_SWIPE);
ctrl.hide(WindowInsets.Type.systemBars());
}
} else {
View decorView = window.getDecorView();
int uiOptions = View.SYSTEM_UI_FLAG_FULLSCREEN |
View.SYSTEM_UI_FLAG_HIDE_NAVIGATION |
View.SYSTEM_UI_FLAG_IMMERSIVE_STICKY |
View.SYSTEM_UI_FLAG_LAYOUT_FULLSCREEN |
View.SYSTEM_UI_FLAG_LAYOUT_HIDE_NAVIGATION |
View.SYSTEM_UI_FLAG_LAYOUT_STABLE;
decorView.setSystemUiVisibility(uiOptions);
ActionBar actionBar = getActionBar();
if (actionBar != null) {
actionBar.hide();
}
}
}
@Override
protected String[] getLibraries() {
// SDL3 is statically linked into libmain.so in this build.
return new String[] {
"main"
};
}
public void setPreferredSurfaceFrameRate(float frameRate) {
runOnUiThread(() -> {
if (mSurface instanceof DuskSurface) {
((DuskSurface)mSurface).setPreferredFrameRate(frameRate);
}
});
}
private static final class DuskSurface extends SDLSurface {
private float preferredFrameRate = DEFAULT_SURFACE_FRAME_RATE;
DuskSurface(Context context) {
super(context);
}
@Override
public void surfaceChanged(SurfaceHolder holder, int format, int width, int height) {
super.surfaceChanged(holder, format, width, height);
setTargetFrameRate(holder);
}
void setPreferredFrameRate(float frameRate) {
preferredFrameRate = frameRate;
setTargetFrameRate(getHolder());
}
private void setTargetFrameRate(SurfaceHolder holder) {
if (!mIsSurfaceReady || Build.VERSION.SDK_INT < Build.VERSION_CODES.R) {
return;
}
Surface surface = holder != null ? holder.getSurface() : getHolder().getSurface();
if (surface == null || !surface.isValid()) {
return;
}
float targetFrameRate = getMaxSupportedFrameRate();
if (preferredFrameRate > 0.0f) {
targetFrameRate = preferredFrameRate;
}
if (targetFrameRate <= 0.0f) {
return;
}
try {
surface.setFrameRate(
targetFrameRate, Surface.FRAME_RATE_COMPATIBILITY_DEFAULT);
Log.v(TAG, "Requested surface frame rate " + targetFrameRate + " fps");
} catch (RuntimeException e) {
Log.w(TAG, "Failed to request surface frame rate", e);
}
}
private float getMaxSupportedFrameRate() {
if (mDisplay == null) {
return 0.0f;
}
float maxFrameRate = mDisplay.getRefreshRate();
Display.Mode[] modes = mDisplay.getSupportedModes();
if (modes == null) {
return maxFrameRate;
}
for (Display.Mode mode : modes) {
maxFrameRate = Math.max(maxFrameRate, mode.getRefreshRate());
}
return maxFrameRate;
}
}
@Override
protected String[] getArguments() {
String[] arguments = super.getArguments();
if (arguments.length > 0) {
return arguments;
}
Intent intent = getIntent();
if (intent != null) {
String[] argv = intent.getStringArrayExtra("dusk_argv");
if (argv != null && argv.length > 0) {
return argv;
}
String rawArgs = intent.getStringExtra("dusk_args");
if (rawArgs != null) {
String trimmed = rawArgs.trim();
if (!trimmed.isEmpty()) {
return splitArgs(trimmed);
}
}
if (intent == null) {
return arguments;
}
return new String[0];
String[] argv = intent.getStringArrayExtra("dusk_argv");
if (argv != null && argv.length > 0) {
return argv;
}
String rawArgs = intent.getStringExtra("dusk_args");
return rawArgs == null ? arguments : splitArguments(rawArgs.trim());
}
@Override
protected void onActivityResult(int requestCode, int resultCode, Intent data) {
if (resultCode == RESULT_OK) {
persistUriPermissions(data);
}
if (requestCode == FOLDER_DIALOG_REQUEST_CODE) {
finishFolderDialog(resultCode, data);
return;
}
super.onActivityResult(requestCode, resultCode, data);
}
public boolean showFolderDialog(long userdata) {
if (userdata == 0 || folderDialogUserdata != 0) {
return false;
}
folderDialogUserdata = userdata;
if (requiresManageStoragePermission() && !hasManageStoragePermission()) {
if (!requestManageStoragePermission()) {
finishFolderDialogWithError("Unable to request Android file access permission");
return false;
}
return true;
}
openFolderDialog();
return true;
}
private void openFolderDialog() {
runOnUiThread(() -> {
Intent intent = new Intent(Intent.ACTION_OPEN_DOCUMENT_TREE);
intent.addFlags(Intent.FLAG_GRANT_READ_URI_PERMISSION |
Intent.FLAG_GRANT_WRITE_URI_PERMISSION |
Intent.FLAG_GRANT_PERSISTABLE_URI_PERMISSION |
Intent.FLAG_GRANT_PREFIX_URI_PERMISSION);
try {
startActivityForResult(intent, FOLDER_DIALOG_REQUEST_CODE);
} catch (ActivityNotFoundException e) {
Log.w(TAG, "Unable to open folder dialog.", e);
finishFolderDialog(Activity.RESULT_CANCELED, null);
}
});
}
private boolean requiresManageStoragePermission() {
return Build.VERSION.SDK_INT >= Build.VERSION_CODES.R;
}
private boolean hasManageStoragePermission() {
return !requiresManageStoragePermission() || Environment.isExternalStorageManager();
}
private boolean requestManageStoragePermission() {
if (!requiresManageStoragePermission()) {
return true;
}
awaitingManageStoragePermission = true;
runOnUiThread(() -> {
if (tryStartManageStorageIntent(
new Intent(Settings.ACTION_MANAGE_APP_ALL_FILES_ACCESS_PERMISSION)
.setData(Uri.parse("package:" + getPackageName()))) ||
tryStartManageStorageIntent(
new Intent(Settings.ACTION_MANAGE_ALL_FILES_ACCESS_PERMISSION)))
{
return;
}
finishFolderDialogWithError("Unable to request Android file access permission");
});
return true;
}
private boolean tryStartManageStorageIntent(Intent intent) {
try {
startActivityForResult(intent, MANAGE_STORAGE_REQUEST_CODE);
return true;
} catch (ActivityNotFoundException e) {
Log.w(TAG, "Unable to open all-files access settings.", e);
return false;
}
}
private void resumeFolderDialogAfterPermissionGrant() {
awaitingManageStoragePermission = false;
if (folderDialogUserdata == 0) {
return;
}
if (hasManageStoragePermission()) {
openFolderDialog();
return;
}
finishFolderDialogWithError(
"Allow \"All files access\" for Dusklight before choosing a custom data folder");
}
private void finishFolderDialogWithError(String error) {
long userdata = folderDialogUserdata;
folderDialogUserdata = 0;
awaitingManageStoragePermission = false;
if (userdata != 0) {
nativeFolderDialogResult(userdata, null, error);
}
}
private void finishFolderDialog(int resultCode, Intent data) {
long userdata = folderDialogUserdata;
folderDialogUserdata = 0;
if (userdata == 0) {
return;
}
if (resultCode == RESULT_OK && data != null && data.getData() != null) {
String path = getRealPathForUri(data.getData());
if (path != null && !path.isEmpty()) {
nativeFolderDialogResult(userdata, path, null);
} else {
nativeFolderDialogResult(
userdata, null, "Selected folder is not available as a filesystem path");
}
return;
}
nativeFolderDialogResult(userdata, null, null);
}
private String getRealPathForUri(Uri uri) {
if (uri == null) {
return null;
}
String scheme = uri.getScheme();
if ("file".equals(scheme)) {
return uri.getPath();
}
if (!"content".equals(scheme) ||
!EXTERNAL_STORAGE_AUTHORITY.equals(uri.getAuthority()) ||
Build.VERSION.SDK_INT < Build.VERSION_CODES.KITKAT)
{
return null;
}
try {
return getExternalStoragePathForDocumentId(getExternalStorageDocumentId(uri));
} catch (IllegalArgumentException e) {
Log.w(TAG, "Unable to resolve URI: " + uri, e);
return null;
}
}
private static String getExternalStorageDocumentId(Uri uri) {
if (Build.VERSION.SDK_INT >= Build.VERSION_CODES.LOLLIPOP && isTreeDocumentUri(uri)) {
return DocumentsContract.getTreeDocumentId(uri);
}
return DocumentsContract.getDocumentId(uri);
}
private static boolean isTreeDocumentUri(Uri uri) {
List<String> segments = uri.getPathSegments();
return segments.size() >= 2 && "tree".equals(segments.get(0));
}
private String getExternalStoragePathForDocumentId(String documentId) {
if (documentId == null || documentId.isEmpty()) {
return null;
}
if (documentId.startsWith("raw:")) {
return documentId.substring("raw:".length());
}
String[] parts = documentId.split(":", 2);
String volumeId = parts[0];
String relativePath = parts.length > 1 ? parts[1] : "";
File root = getExternalStorageRoot(volumeId);
if (root == null) {
return null;
}
return relativePath.isEmpty()
? root.getAbsolutePath()
: new File(root, relativePath).getAbsolutePath();
}
private File getExternalStorageRoot(String volumeId) {
if ("primary".equalsIgnoreCase(volumeId)) {
return Environment.getExternalStorageDirectory();
}
if ("home".equalsIgnoreCase(volumeId)) {
return new File(
Environment.getExternalStorageDirectory(), Environment.DIRECTORY_DOCUMENTS);
}
File[] externalFilesDirs = getExternalFilesDirs(null);
if (externalFilesDirs != null) {
for (File externalFilesDir : externalFilesDirs) {
File root = getStorageRootForExternalFilesDir(externalFilesDir);
if (root != null && volumeId.equalsIgnoreCase(root.getName())) {
return root;
}
}
}
File fallback = new File("/storage", volumeId);
return fallback.exists() ? fallback : null;
}
private File getStorageRootForExternalFilesDir(File externalFilesDir) {
if (externalFilesDir == null) {
return null;
}
String path = externalFilesDir.getAbsolutePath();
int androidDir = path.indexOf("/Android/");
if (androidDir <= 0) {
return null;
}
return new File(path.substring(0, androidDir));
}
private void persistUriPermissions(Intent data) {
if (data == null) {
return;
}
int permissionFlags =
data.getFlags() & (Intent.FLAG_GRANT_READ_URI_PERMISSION | Intent.FLAG_GRANT_WRITE_URI_PERMISSION);
if (permissionFlags == 0) {
return;
}
Uri uri = data.getData();
if (uri != null) {
persistUriPermission(uri, permissionFlags);
}
ClipData clipData = data.getClipData();
if (clipData == null) {
return;
}
for (int i = 0; i < clipData.getItemCount(); ++i) {
Uri itemUri = clipData.getItemAt(i).getUri();
if (itemUri != null) {
persistUriPermission(itemUri, permissionFlags);
}
}
}
private void persistUriPermission(Uri uri, int permissionFlags) {
if ((permissionFlags & Intent.FLAG_GRANT_READ_URI_PERMISSION) != 0) {
persistUriPermission(uri, Intent.FLAG_GRANT_READ_URI_PERMISSION, "read");
}
if ((permissionFlags & Intent.FLAG_GRANT_WRITE_URI_PERMISSION) != 0) {
persistUriPermission(uri, Intent.FLAG_GRANT_WRITE_URI_PERMISSION, "write");
}
}
private void persistUriPermission(Uri uri, int permissionFlag, String permissionName) {
try {
getContentResolver().takePersistableUriPermission(uri, permissionFlag);
} catch (SecurityException | IllegalArgumentException e) {
Log.w(TAG, "Unable to persist " + permissionName + " URI permission for " + uri, e);
}
}
public String getDisplayNameForUri(String uriString) {
if (uriString == null || uriString.isEmpty()) {
return "";
}
Uri uri = Uri.parse(uriString);
if ("content".equals(uri.getScheme())) {
try (Cursor cursor = getContentResolver().query(
uri, new String[] { OpenableColumns.DISPLAY_NAME }, null, null, null))
{
if (cursor != null && cursor.moveToFirst()) {
int displayNameColumn = cursor.getColumnIndex(OpenableColumns.DISPLAY_NAME);
if (displayNameColumn >= 0) {
String displayName = cursor.getString(displayNameColumn);
if (displayName != null && !displayName.isEmpty()) {
return displayName;
}
}
}
} catch (SecurityException | IllegalArgumentException e) {
Log.w(TAG, "Unable to query display name for " + uri, e);
}
} else if ("file".equals(uri.getScheme())) {
String path = uri.getPath();
if (path != null && !path.isEmpty()) {
String name = new File(path).getName();
if (!name.isEmpty()) {
return name;
}
}
}
String lastSegment = uri.getLastPathSegment();
return lastSegment != null ? lastSegment : "";
}
}
@@ -1,467 +0,0 @@
package dev.twilitrealm.dusk;
import android.content.ContentResolver;
import android.content.res.AssetFileDescriptor;
import android.database.Cursor;
import android.database.MatrixCursor;
import android.net.Uri;
import android.os.Bundle;
import android.os.CancellationSignal;
import android.os.ParcelFileDescriptor;
import android.provider.DocumentsContract;
import android.provider.DocumentsContract.Document;
import android.provider.DocumentsContract.Root;
import android.provider.DocumentsProvider;
import android.webkit.MimeTypeMap;
import org.json.JSONException;
import org.json.JSONObject;
import java.io.ByteArrayOutputStream;
import java.io.File;
import java.io.FileInputStream;
import java.io.FileNotFoundException;
import java.io.IOException;
import java.nio.charset.StandardCharsets;
public class DuskDocumentsProvider extends DocumentsProvider {
public static final String AUTHORITY = "dev.twilitrealm.dusk.documents";
private static final String ROOT_ID = "dusk";
private static final String ROOT_DOCUMENT_ID = "root";
private static final String LOCATION_DESCRIPTOR_NAME = "data_location.json";
private static final String DIRECTORY_MIME_TYPE = Document.MIME_TYPE_DIR;
private static final String[] DEFAULT_ROOT_PROJECTION = new String[] {
Root.COLUMN_ROOT_ID,
Root.COLUMN_FLAGS,
Root.COLUMN_TITLE,
Root.COLUMN_DOCUMENT_ID,
Root.COLUMN_ICON,
Root.COLUMN_AVAILABLE_BYTES,
Root.COLUMN_SUMMARY
};
private static final String[] DEFAULT_DOCUMENT_PROJECTION = new String[] {
Document.COLUMN_DOCUMENT_ID,
Document.COLUMN_DISPLAY_NAME,
Document.COLUMN_FLAGS,
Document.COLUMN_MIME_TYPE,
Document.COLUMN_LAST_MODIFIED,
Document.COLUMN_SIZE
};
@Override
public boolean onCreate() {
if (!isCustomDataPathEnabled()) {
ensureUserDirectories();
}
return true;
}
@Override
public Cursor queryRoots(String[] projection) throws FileNotFoundException {
final MatrixCursor result = new MatrixCursor(resolveRootProjection(projection));
if (isCustomDataPathEnabled()) {
return result;
}
final File root = getRootDirectory();
final MatrixCursor.RowBuilder row = result.newRow();
row.add(Root.COLUMN_ROOT_ID, ROOT_ID);
row.add(Root.COLUMN_FLAGS,
Root.FLAG_LOCAL_ONLY |
Root.FLAG_SUPPORTS_CREATE |
Root.FLAG_SUPPORTS_IS_CHILD);
row.add(Root.COLUMN_TITLE, getContext().getString(R.string.app_name));
row.add(Root.COLUMN_DOCUMENT_ID, ROOT_DOCUMENT_ID);
row.add(Root.COLUMN_ICON, R.mipmap.icon);
row.add(Root.COLUMN_AVAILABLE_BYTES, root.getFreeSpace());
row.add(Root.COLUMN_SUMMARY, getContext().getString(R.string.documents_provider_summary));
return result;
}
@Override
public Cursor queryDocument(String documentId, String[] projection) throws FileNotFoundException {
final MatrixCursor result = new MatrixCursor(resolveDocumentProjection(projection));
includeDocument(result, documentId, getFileForDocumentId(documentId));
return result;
}
@Override
public Cursor queryChildDocuments(String parentDocumentId, String[] projection, String sortOrder)
throws FileNotFoundException
{
return queryChildDocumentsInternal(parentDocumentId, projection);
}
@Override
public Cursor queryChildDocuments(String parentDocumentId, String[] projection, Bundle queryArgs)
throws FileNotFoundException
{
return queryChildDocumentsInternal(parentDocumentId, projection);
}
private Cursor queryChildDocumentsInternal(String parentDocumentId, String[] projection)
throws FileNotFoundException
{
final MatrixCursor result = new MatrixCursor(resolveDocumentProjection(projection));
final File parent = getFileForDocumentId(parentDocumentId);
final File[] files = parent.listFiles();
result.setNotificationUri(getContext().getContentResolver(), getChildDocumentsUri(parentDocumentId));
if (files == null) {
return result;
}
for (File file : files) {
includeDocument(result, getDocumentIdForFile(file), file);
}
return result;
}
@Override
public boolean isChildDocument(String parentDocumentId, String documentId) {
try {
final File parent = getFileForDocumentId(parentDocumentId);
final File child = getFileForDocumentId(documentId);
return isInside(parent, child);
} catch (FileNotFoundException e) {
return false;
}
}
@Override
public String createDocument(String parentDocumentId, String mimeType, String displayName)
throws FileNotFoundException
{
final File parent = getFileForDocumentId(parentDocumentId);
if (!parent.isDirectory()) {
throw new FileNotFoundException("Parent is not a directory: " + parentDocumentId);
}
final String safeDisplayName = sanitizeDisplayName(displayName);
final File file = buildUniqueFile(parent, safeDisplayName);
final boolean created;
if (DIRECTORY_MIME_TYPE.equals(mimeType)) {
created = file.mkdir();
} else {
try {
created = file.createNewFile();
} catch (IOException e) {
throw asFileNotFound("Unable to create document", e);
}
}
if (!created) {
throw new FileNotFoundException("Unable to create document: " + displayName);
}
notifyChildrenChanged(parentDocumentId);
return getDocumentIdForFile(file);
}
@Override
public String renameDocument(String documentId, String displayName) throws FileNotFoundException {
final File file = getFileForDocumentId(documentId);
if (ROOT_DOCUMENT_ID.equals(documentId)) {
throw new FileNotFoundException("Cannot rename root document");
}
final File target = buildUniqueFile(file.getParentFile(), sanitizeDisplayName(displayName));
final String parentDocumentId = getDocumentIdForFile(file.getParentFile());
if (!file.renameTo(target)) {
throw new FileNotFoundException("Unable to rename document: " + documentId);
}
notifyDocumentChanged(documentId);
notifyDocumentChanged(getDocumentIdForFile(target));
notifyChildrenChanged(parentDocumentId);
return getDocumentIdForFile(target);
}
@Override
public void deleteDocument(String documentId) throws FileNotFoundException {
if (ROOT_DOCUMENT_ID.equals(documentId)) {
throw new FileNotFoundException("Cannot delete root document");
}
final File file = getFileForDocumentId(documentId);
final String parentDocumentId = getDocumentIdForFile(file.getParentFile());
deleteRecursively(file);
notifyDocumentChanged(documentId);
notifyChildrenChanged(parentDocumentId);
}
@Override
public ParcelFileDescriptor openDocument(String documentId, String mode, CancellationSignal signal)
throws FileNotFoundException
{
return ParcelFileDescriptor.open(getFileForDocumentId(documentId), modeToParcelMode(mode));
}
@Override
public AssetFileDescriptor openDocumentThumbnail(String documentId, android.graphics.Point sizeHint,
CancellationSignal signal) throws FileNotFoundException
{
throw new FileNotFoundException("Thumbnails are not supported");
}
private void includeDocument(MatrixCursor result, String documentId, File file) throws FileNotFoundException {
final MatrixCursor.RowBuilder row = result.newRow();
final boolean isDirectory = file.isDirectory();
final String displayName = ROOT_DOCUMENT_ID.equals(documentId)
? getContext().getString(R.string.documents_provider_root_name)
: file.getName();
int flags = Document.FLAG_SUPPORTS_DELETE | Document.FLAG_SUPPORTS_RENAME;
if (isDirectory) {
flags |= Document.FLAG_DIR_SUPPORTS_CREATE;
} else if (file.canWrite()) {
flags |= Document.FLAG_SUPPORTS_WRITE;
}
if (ROOT_DOCUMENT_ID.equals(documentId)) {
flags &= ~(Document.FLAG_SUPPORTS_DELETE | Document.FLAG_SUPPORTS_RENAME);
}
row.add(Document.COLUMN_DOCUMENT_ID, documentId);
row.add(Document.COLUMN_DISPLAY_NAME, displayName);
row.add(Document.COLUMN_FLAGS, flags);
row.add(Document.COLUMN_MIME_TYPE, isDirectory ? DIRECTORY_MIME_TYPE : getMimeType(file));
row.add(Document.COLUMN_LAST_MODIFIED, file.lastModified());
row.add(Document.COLUMN_SIZE, isDirectory ? null : file.length());
}
private File getRootDirectory() throws FileNotFoundException {
if (isCustomDataPathEnabled()) {
throw new FileNotFoundException(
"Dusk DocumentsProvider is disabled while a custom data path is configured");
}
final File root = getContext().getFilesDir();
if (root == null) {
throw new FileNotFoundException("Dusklight files directory is unavailable");
}
return root;
}
private File getFileForDocumentId(String documentId) throws FileNotFoundException {
final File root = getRootDirectory();
if (ROOT_DOCUMENT_ID.equals(documentId)) {
return root;
}
if (!documentId.startsWith(ROOT_DOCUMENT_ID + "/")) {
throw new FileNotFoundException("Invalid document id: " + documentId);
}
final String relativePath = documentId.substring(ROOT_DOCUMENT_ID.length() + 1);
final File file = new File(root, relativePath);
if (!isInside(root, file)) {
throw new FileNotFoundException("Document escapes Dusklight files directory: " + documentId);
}
if (!file.exists()) {
throw new FileNotFoundException("Document does not exist: " + documentId);
}
return file;
}
private String getDocumentIdForFile(File file) throws FileNotFoundException {
final File root = getRootDirectory();
if (sameFile(root, file)) {
return ROOT_DOCUMENT_ID;
}
if (!isInside(root, file)) {
throw new FileNotFoundException("File escapes Dusklight files directory: " + file);
}
final String rootPath = canonicalPath(root);
final String filePath = canonicalPath(file);
return ROOT_DOCUMENT_ID + "/" + filePath.substring(rootPath.length() + 1);
}
private void ensureUserDirectories() {
final File root = getContext().getFilesDir();
if (root == null) {
return;
}
new File(root, "texture_replacements").mkdirs();
new File(root, "USA/Card A").mkdirs();
new File(root, "EUR/Card A").mkdirs();
}
private boolean isCustomDataPathEnabled() {
if (getContext() == null) {
return false;
}
final File filesDir = getContext().getFilesDir();
if (filesDir == null) {
return false;
}
final File descriptor = new File(filesDir, LOCATION_DESCRIPTOR_NAME);
if (!descriptor.isFile()) {
return false;
}
try {
final JSONObject json = new JSONObject(readText(descriptor));
return "custom".equals(json.optString("mode", "default"));
} catch (IOException | JSONException e) {
return false;
}
}
private static String readText(File file) throws IOException {
try (FileInputStream input = new FileInputStream(file);
ByteArrayOutputStream output = new ByteArrayOutputStream())
{
byte[] buffer = new byte[4096];
int bytesRead;
while ((bytesRead = input.read(buffer)) != -1) {
output.write(buffer, 0, bytesRead);
}
return output.toString(StandardCharsets.UTF_8.name());
}
}
private static String[] resolveRootProjection(String[] projection) {
return projection != null ? projection : DEFAULT_ROOT_PROJECTION;
}
private static String[] resolveDocumentProjection(String[] projection) {
return projection != null ? projection : DEFAULT_DOCUMENT_PROJECTION;
}
private static String sanitizeDisplayName(String displayName) throws FileNotFoundException {
if (displayName == null) {
throw new FileNotFoundException("Document name is empty");
}
final String sanitized = displayName.trim();
if (sanitized.isEmpty() || ".".equals(sanitized) || "..".equals(sanitized) ||
sanitized.contains("/") || sanitized.contains("\\"))
{
throw new FileNotFoundException("Invalid document name: " + displayName);
}
return sanitized;
}
private static File buildUniqueFile(File parent, String displayName) {
File file = new File(parent, displayName);
if (!file.exists()) {
return file;
}
final int dot = displayName.lastIndexOf('.');
final String baseName = dot > 0 ? displayName.substring(0, dot) : displayName;
final String extension = dot > 0 ? displayName.substring(dot) : "";
for (int i = 1; i < 100; ++i) {
file = new File(parent, baseName + " (" + i + ")" + extension);
if (!file.exists()) {
return file;
}
}
return new File(parent, baseName + " (" + System.currentTimeMillis() + ")" + extension);
}
private static int modeToParcelMode(String mode) {
if ("r".equals(mode)) {
return ParcelFileDescriptor.MODE_READ_ONLY;
}
if ("w".equals(mode) || "wt".equals(mode)) {
return ParcelFileDescriptor.MODE_WRITE_ONLY |
ParcelFileDescriptor.MODE_CREATE |
ParcelFileDescriptor.MODE_TRUNCATE;
}
if ("wa".equals(mode)) {
return ParcelFileDescriptor.MODE_WRITE_ONLY |
ParcelFileDescriptor.MODE_CREATE |
ParcelFileDescriptor.MODE_APPEND;
}
if ("rw".equals(mode)) {
return ParcelFileDescriptor.MODE_READ_WRITE |
ParcelFileDescriptor.MODE_CREATE;
}
if ("rwt".equals(mode)) {
return ParcelFileDescriptor.MODE_READ_WRITE |
ParcelFileDescriptor.MODE_CREATE |
ParcelFileDescriptor.MODE_TRUNCATE;
}
return ParcelFileDescriptor.MODE_READ_ONLY;
}
private static String getMimeType(File file) {
final int dot = file.getName().lastIndexOf('.');
if (dot >= 0) {
final String extension = file.getName().substring(dot + 1).toLowerCase();
final String mimeType = MimeTypeMap.getSingleton().getMimeTypeFromExtension(extension);
if (mimeType != null) {
return mimeType;
}
}
return "application/octet-stream";
}
private Uri getChildDocumentsUri(String parentDocumentId) {
return DocumentsContract.buildChildDocumentsUri(AUTHORITY, parentDocumentId);
}
private void notifyChildrenChanged(String parentDocumentId) {
final ContentResolver resolver = getContext().getContentResolver();
resolver.notifyChange(getChildDocumentsUri(parentDocumentId), null, false);
}
private void notifyDocumentChanged(String documentId) {
final ContentResolver resolver = getContext().getContentResolver();
resolver.notifyChange(DocumentsContract.buildDocumentUri(AUTHORITY, documentId), null, false);
}
private static void deleteRecursively(File file) throws FileNotFoundException {
if (file.isDirectory()) {
final File[] children = file.listFiles();
if (children != null) {
for (File child : children) {
deleteRecursively(child);
}
}
}
if (!file.delete()) {
throw new FileNotFoundException("Unable to delete document: " + file);
}
}
private static boolean isInside(File parent, File child) {
try {
final String parentPath = canonicalPath(parent);
final String childPath = canonicalPath(child);
return childPath.equals(parentPath) || childPath.startsWith(parentPath + File.separator);
} catch (FileNotFoundException e) {
return false;
}
}
private static boolean sameFile(File a, File b) {
try {
return canonicalPath(a).equals(canonicalPath(b));
} catch (FileNotFoundException e) {
return false;
}
}
private static String canonicalPath(File file) throws FileNotFoundException {
try {
return file.getCanonicalPath();
} catch (IOException e) {
throw asFileNotFound("Unable to resolve path", e);
}
}
private static FileNotFoundException asFileNotFound(String message, IOException cause) {
final FileNotFoundException exception = new FileNotFoundException(message + ": " + cause.getMessage());
exception.initCause(cause);
return exception;
}
}
@@ -1,237 +0,0 @@
package dev.twilitrealm.dusk;
import java.io.ByteArrayOutputStream;
import java.io.IOException;
import java.io.InputStream;
import java.net.HttpURLConnection;
import java.net.MalformedURLException;
import java.net.SocketTimeoutException;
import java.net.URL;
import java.util.ArrayList;
import java.util.List;
import java.util.Map;
import javax.net.ssl.HttpsURLConnection;
public final class DuskHttpClient {
public static final int ERROR_NONE = 0;
public static final int ERROR_INVALID_URL = 1;
public static final int ERROR_UNSUPPORTED_SCHEME = 2;
public static final int ERROR_TIMEOUT = 3;
public static final int ERROR_TOO_LARGE = 4;
public static final int ERROR_NETWORK = 5;
private static final int MAX_REDIRECTS = 5;
public static final class Response {
public int error;
public String message;
public int statusCode;
public String[] headerNames;
public String[] headerValues;
public byte[] body;
Response(int error, String message, int statusCode, String[] headerNames,
String[] headerValues, byte[] body) {
this.error = error;
this.message = message;
this.statusCode = statusCode;
this.headerNames = headerNames != null ? headerNames : new String[0];
this.headerValues = headerValues != null ? headerValues : new String[0];
this.body = body != null ? body : new byte[0];
}
}
private DuskHttpClient() {
}
public static Response get(String url, String[] headerNames, String[] headerValues,
int timeoutMs, long maxBodyBytes) {
if (url == null || url.isEmpty()) {
return fail(ERROR_INVALID_URL, "URL is empty");
}
try {
URL currentUrl = new URL(url);
if (!isHttps(currentUrl)) {
return fail(ERROR_UNSUPPORTED_SCHEME, "Only https:// URLs are supported");
}
for (int redirect = 0; redirect <= MAX_REDIRECTS; ++redirect) {
HttpsURLConnection connection =
(HttpsURLConnection) currentUrl.openConnection();
try {
connection.setRequestMethod("GET");
connection.setConnectTimeout(timeoutMs);
connection.setReadTimeout(timeoutMs);
connection.setUseCaches(false);
connection.setInstanceFollowRedirects(false);
applyHeaders(connection, headerNames, headerValues);
int statusCode = connection.getResponseCode();
if (isRedirect(statusCode)) {
String location = connection.getHeaderField("Location");
if (location == null || location.isEmpty()) {
return fail(ERROR_NETWORK, "Redirect response did not include Location",
statusCode, connection, new byte[0]);
}
URL nextUrl = new URL(currentUrl, location);
if (!isHttps(nextUrl)) {
return fail(ERROR_UNSUPPORTED_SCHEME,
"Only https:// redirects are supported", statusCode,
connection, new byte[0]);
}
currentUrl = nextUrl;
continue;
}
byte[] body = readBody(connection, statusCode, maxBodyBytes);
return success(statusCode, connection, body);
} catch (ResponseTooLargeException e) {
return fail(ERROR_TOO_LARGE, "Response body exceeded the configured limit",
safeStatusCode(connection), connection, e.partialBody);
} finally {
connection.disconnect();
}
}
return fail(ERROR_NETWORK, "Too many redirects");
} catch (MalformedURLException e) {
return fail(ERROR_INVALID_URL, "Failed to parse URL");
} catch (SocketTimeoutException e) {
return fail(ERROR_TIMEOUT, "Request timed out");
} catch (IOException e) {
String message = e.getMessage();
return fail(ERROR_NETWORK, message != null ? message : e.toString());
} catch (ClassCastException e) {
return fail(ERROR_UNSUPPORTED_SCHEME, "Only https:// URLs are supported");
}
}
private static void applyHeaders(HttpsURLConnection connection, String[] names,
String[] values) {
if (names == null || values == null) {
return;
}
int count = Math.min(names.length, values.length);
for (int i = 0; i < count; ++i) {
if (names[i] != null && values[i] != null) {
connection.setRequestProperty(names[i], values[i]);
}
}
}
private static boolean isHttps(URL url) {
return "https".equalsIgnoreCase(url.getProtocol());
}
private static boolean isRedirect(int statusCode) {
return statusCode == HttpURLConnection.HTTP_MOVED_PERM ||
statusCode == HttpURLConnection.HTTP_MOVED_TEMP ||
statusCode == HttpURLConnection.HTTP_SEE_OTHER ||
statusCode == 307 ||
statusCode == 308;
}
private static byte[] readBody(HttpsURLConnection connection, int statusCode,
long maxBodyBytes) throws IOException,
ResponseTooLargeException {
InputStream stream = statusCode >= HttpURLConnection.HTTP_BAD_REQUEST ?
connection.getErrorStream() : connection.getInputStream();
if (stream == null) {
return new byte[0];
}
try (InputStream bodyStream = stream;
ByteArrayOutputStream out = new ByteArrayOutputStream()) {
byte[] buffer = new byte[8192];
long total = 0;
while (true) {
int read = bodyStream.read(buffer);
if (read < 0) {
return out.toByteArray();
}
if (read == 0) {
continue;
}
if (read > maxBodyBytes || total > maxBodyBytes - read) {
throw new ResponseTooLargeException(out.toByteArray());
}
out.write(buffer, 0, read);
total += read;
}
}
}
private static int safeStatusCode(HttpsURLConnection connection) {
try {
return connection.getResponseCode();
} catch (IOException e) {
return 0;
}
}
private static Response success(int statusCode, HttpsURLConnection connection, byte[] body) {
HeaderLists headers = readHeaders(connection);
return new Response(ERROR_NONE, "", statusCode, headers.names, headers.values, body);
}
private static Response fail(int error, String message) {
return new Response(error, message, 0, null, null, null);
}
private static Response fail(int error, String message, int statusCode,
HttpsURLConnection connection, byte[] body) {
HeaderLists headers = readHeaders(connection);
return new Response(error, message, statusCode, headers.names, headers.values, body);
}
private static HeaderLists readHeaders(HttpsURLConnection connection) {
List<String> names = new ArrayList<>();
List<String> values = new ArrayList<>();
Map<String, List<String>> headerFields = connection.getHeaderFields();
if (headerFields == null) {
return new HeaderLists(new String[0], new String[0]);
}
for (Map.Entry<String, List<String>> entry : headerFields.entrySet()) {
String name = entry.getKey();
if (name == null) {
continue;
}
List<String> entryValues = entry.getValue();
if (entryValues == null || entryValues.isEmpty()) {
names.add(name);
values.add("");
continue;
}
for (String value : entryValues) {
names.add(name);
values.add(value != null ? value : "");
}
}
return new HeaderLists(names.toArray(new String[0]), values.toArray(new String[0]));
}
private static final class HeaderLists {
final String[] names;
final String[] values;
HeaderLists(String[] names, String[] values) {
this.names = names;
this.values = values;
}
}
private static final class ResponseTooLargeException extends Exception {
final byte[] partialBody;
ResponseTooLargeException(byte[] partialBody) {
this.partialBody = partialBody;
}
}
}
@@ -1,21 +0,0 @@
package org.libsdl.app;
import android.hardware.usb.UsbDevice;
interface HIDDevice
{
public int getId();
public int getVendorId();
public int getProductId();
public String getSerialNumber();
public int getVersion();
public String getManufacturerName();
public String getProductName();
public UsbDevice getDevice();
public boolean open();
public int writeReport(byte[] report, boolean feature);
public boolean readReport(byte[] report, boolean feature);
public void setFrozen(boolean frozen);
public void close();
public void shutdown();
}
@@ -1,829 +0,0 @@
package org.libsdl.app;
import android.content.Context;
import android.bluetooth.BluetoothDevice;
import android.bluetooth.BluetoothGatt;
import android.bluetooth.BluetoothGattCallback;
import android.bluetooth.BluetoothGattCharacteristic;
import android.bluetooth.BluetoothGattDescriptor;
import android.bluetooth.BluetoothManager;
import android.bluetooth.BluetoothProfile;
import android.bluetooth.BluetoothGattService;
import android.hardware.usb.UsbDevice;
import android.os.Handler;
import android.os.Looper;
import android.util.Log;
import android.os.*;
//import com.android.internal.util.HexDump;
import java.lang.Runnable;
import java.util.Arrays;
import java.util.HashMap;
import java.util.LinkedList;
import java.util.UUID;
import java.util.regex.Pattern;
import java.util.regex.Matcher;
class HIDDeviceBLESteamController extends BluetoothGattCallback implements HIDDevice {
private static final String TAG = "hidapi";
private HIDDeviceManager mManager;
private BluetoothDevice mDevice;
private int mDeviceId;
private BluetoothGatt mGatt;
private boolean mIsRegistered = false;
private boolean mIsConnected = false;
private boolean mIsChromebook = false;
private boolean mIsReconnecting = false;
private boolean mHasEnabledNotifications = false;
private boolean mHasSeenInputUpdate = false;
private boolean mFrozen = false;
private LinkedList<GattOperation> mOperations;
GattOperation mCurrentOperation = null;
private Handler mHandler;
private int mProductId = -1;
private int mReportId = 0;
private UUID mInputCharacteristic;
private static final int D0G_BLE2_PID = 0x1106;
private static final int TRITON_BLE_PID = 0x1303;
private static final int TRANSPORT_AUTO = 0;
private static final int TRANSPORT_BREDR = 1;
private static final int TRANSPORT_LE = 2;
private static final int CHROMEBOOK_CONNECTION_CHECK_INTERVAL = 10000;
static final UUID steamControllerService = UUID.fromString("100F6C32-1735-4313-B402-38567131E5F3");
static final UUID inputCharacteristicD0G = UUID.fromString("100F6C33-1735-4313-B402-38567131E5F3");
static final UUID inputCharacteristicTriton_0x45 = UUID.fromString("100F6C7A-1735-4313-B402-38567131E5F3");
static final UUID inputCharacteristicTriton_0x47 = UUID.fromString("100F6C7C-1735-4313-B402-38567131E5F3");
static final UUID reportCharacteristic = UUID.fromString("100F6C34-1735-4313-B402-38567131E5F3");
static private final byte[] enterValveMode = new byte[] { (byte)0xC0, (byte)0x87, 0x03, 0x08, 0x07, 0x00 };
private HashMap<Integer, BluetoothGattCharacteristic> mOutputReportChars = new HashMap<Integer, BluetoothGattCharacteristic>();
static class GattOperation {
private enum Operation {
CHR_READ,
CHR_WRITE,
ENABLE_NOTIFICATION
}
Operation mOp;
UUID mUuid;
byte[] mValue;
BluetoothGatt mGatt;
boolean mResult = true;
int mDelayMs = 0;
private GattOperation(BluetoothGatt gatt, GattOperation.Operation operation, UUID uuid) {
mGatt = gatt;
mOp = operation;
mUuid = uuid;
}
private GattOperation(BluetoothGatt gatt, GattOperation.Operation operation, UUID uuid, int delayMs) {
mGatt = gatt;
mOp = operation;
mUuid = uuid;
mDelayMs = delayMs;
}
private GattOperation(BluetoothGatt gatt, GattOperation.Operation operation, UUID uuid, byte[] value) {
mGatt = gatt;
mOp = operation;
mUuid = uuid;
mValue = value;
}
private GattOperation(BluetoothGatt gatt, GattOperation.Operation operation, UUID uuid, byte[] value, int delayMs) {
mGatt = gatt;
mOp = operation;
mUuid = uuid;
mValue = value;
mDelayMs = delayMs;
}
public void run() {
// This is executed in main thread
BluetoothGattCharacteristic chr;
switch (mOp) {
case CHR_READ:
chr = getCharacteristic(mUuid);
//Log.v(TAG, "Reading characteristic " + chr.getUuid());
if (!mGatt.readCharacteristic(chr)) {
Log.e(TAG, "Unable to read characteristic " + mUuid.toString());
mResult = false;
break;
}
mResult = true;
break;
case CHR_WRITE:
chr = getCharacteristic(mUuid);
//Log.v(TAG, "Writing characteristic " + chr.getUuid() + " value=" + HexDump.toHexString(value));
chr.setValue(mValue);
if (!mGatt.writeCharacteristic(chr)) {
Log.e(TAG, "Unable to write characteristic " + mUuid.toString());
mResult = false;
break;
}
mResult = true;
break;
case ENABLE_NOTIFICATION:
chr = getCharacteristic(mUuid);
//Log.v(TAG, "Writing descriptor of " + chr.getUuid());
if (chr != null) {
BluetoothGattDescriptor cccd = chr.getDescriptor(UUID.fromString("00002902-0000-1000-8000-00805f9b34fb"));
if (cccd != null) {
int properties = chr.getProperties();
byte[] value;
if ((properties & BluetoothGattCharacteristic.PROPERTY_NOTIFY) == BluetoothGattCharacteristic.PROPERTY_NOTIFY) {
value = BluetoothGattDescriptor.ENABLE_NOTIFICATION_VALUE;
} else if ((properties & BluetoothGattCharacteristic.PROPERTY_INDICATE) == BluetoothGattCharacteristic.PROPERTY_INDICATE) {
value = BluetoothGattDescriptor.ENABLE_INDICATION_VALUE;
} else {
Log.e(TAG, "Unable to start notifications on input characteristic");
mResult = false;
return;
}
mGatt.setCharacteristicNotification(chr, true);
cccd.setValue(value);
if (!mGatt.writeDescriptor(cccd)) {
Log.e(TAG, "Unable to write descriptor " + mUuid.toString());
mResult = false;
return;
}
mResult = true;
}
}
}
}
public boolean finish() {
return mResult;
}
public int getDelayMs() { return mDelayMs; }
private BluetoothGattCharacteristic getCharacteristic(UUID uuid) {
BluetoothGattService valveService = mGatt.getService(steamControllerService);
if (valveService == null)
return null;
return valveService.getCharacteristic(uuid);
}
static public GattOperation readCharacteristic(BluetoothGatt gatt, UUID uuid) {
return new GattOperation(gatt, Operation.CHR_READ, uuid);
}
static public GattOperation writeCharacteristic(BluetoothGatt gatt, UUID uuid, byte[] value) {
return new GattOperation(gatt, Operation.CHR_WRITE, uuid, value);
}
static public GattOperation enableNotification(BluetoothGatt gatt, UUID uuid) {
return new GattOperation(gatt, Operation.ENABLE_NOTIFICATION, uuid);
}
static public GattOperation enableNotification(BluetoothGatt gatt, UUID uuid, int delayMs) {
return new GattOperation(gatt, Operation.ENABLE_NOTIFICATION, uuid, delayMs);
}
}
HIDDeviceBLESteamController(HIDDeviceManager manager, BluetoothDevice device) {
mManager = manager;
mDevice = device;
mDeviceId = mManager.getDeviceIDForIdentifier(getIdentifier());
mIsRegistered = false;
mIsChromebook = SDLActivity.isChromebook();
mOperations = new LinkedList<GattOperation>();
mHandler = new Handler(Looper.getMainLooper());
mGatt = connectGatt();
mHasEnabledNotifications = false;
mHasSeenInputUpdate = false;
// final HIDDeviceBLESteamController finalThis = this;
// mHandler.postDelayed(new Runnable() {
// @Override
// void run() {
// finalThis.checkConnectionForChromebookIssue();
// }
// }, CHROMEBOOK_CONNECTION_CHECK_INTERVAL);
}
String getIdentifier() {
return String.format("SteamController.%s", mDevice.getAddress());
}
BluetoothGatt getGatt() {
return mGatt;
}
// Because on Chromebooks we show up as a dual-mode device, it will attempt to connect TRANSPORT_AUTO, which will use TRANSPORT_BREDR instead
// of TRANSPORT_LE. Let's force ourselves to connect low energy.
private BluetoothGatt connectGatt(boolean managed) {
if (Build.VERSION.SDK_INT >= 23 /* Android 6.0 (M) */) {
try {
return mDevice.connectGatt(mManager.getContext(), managed, this, TRANSPORT_LE);
} catch (Exception e) {
return mDevice.connectGatt(mManager.getContext(), managed, this);
}
} else {
return mDevice.connectGatt(mManager.getContext(), managed, this);
}
}
private BluetoothGatt connectGatt() {
return connectGatt(false);
}
protected int getConnectionState() {
Context context = mManager.getContext();
if (context == null) {
// We are lacking any context to get our Bluetooth information. We'll just assume disconnected.
return BluetoothProfile.STATE_DISCONNECTED;
}
BluetoothManager btManager = (BluetoothManager)context.getSystemService(Context.BLUETOOTH_SERVICE);
if (btManager == null) {
// This device doesn't support Bluetooth. We should never be here, because how did
// we instantiate a device to start with?
return BluetoothProfile.STATE_DISCONNECTED;
}
return btManager.getConnectionState(mDevice, BluetoothProfile.GATT);
}
void reconnect() {
if (getConnectionState() != BluetoothProfile.STATE_CONNECTED) {
mGatt.disconnect();
mGatt = connectGatt();
}
}
protected void checkConnectionForChromebookIssue() {
if (!mIsChromebook) {
// We only do this on Chromebooks, because otherwise it's really annoying to just attempt
// over and over.
return;
}
int connectionState = getConnectionState();
switch (connectionState) {
case BluetoothProfile.STATE_CONNECTED:
if (!mIsConnected) {
// We are in the Bad Chromebook Place. We can force a disconnect
// to try to recover.
Log.v(TAG, "Chromebook: We are in a very bad state; the controller shows as connected in the underlying Bluetooth layer, but we never received a callback. Forcing a reconnect.");
mIsReconnecting = true;
mGatt.disconnect();
mGatt = connectGatt(false);
break;
}
else if (!isRegistered()) {
if (mGatt.getServices().size() > 0) {
Log.v(TAG, "Chromebook: We are connected to a controller, but never got our registration. Trying to recover.");
probeService(this);
}
else {
Log.v(TAG, "Chromebook: We are connected to a controller, but never discovered services. Trying to recover.");
mIsReconnecting = true;
mGatt.disconnect();
mGatt = connectGatt(false);
break;
}
}
else {
Log.v(TAG, "Chromebook: We are connected, and registered. Everything's good!");
return;
}
break;
case BluetoothProfile.STATE_DISCONNECTED:
Log.v(TAG, "Chromebook: We have either been disconnected, or the Chromebook BtGatt.ContextMap bug has bitten us. Attempting a disconnect/reconnect, but we may not be able to recover.");
mIsReconnecting = true;
mGatt.disconnect();
mGatt = connectGatt(false);
break;
case BluetoothProfile.STATE_CONNECTING:
Log.v(TAG, "Chromebook: We're still trying to connect. Waiting a bit longer.");
break;
}
final HIDDeviceBLESteamController finalThis = this;
mHandler.postDelayed(new Runnable() {
@Override
public void run() {
finalThis.checkConnectionForChromebookIssue();
}
}, CHROMEBOOK_CONNECTION_CHECK_INTERVAL);
}
private boolean isRegistered() {
return mIsRegistered;
}
private void setRegistered() {
mIsRegistered = true;
}
private boolean probeService(HIDDeviceBLESteamController controller) {
if (isRegistered()) {
return true;
}
if (!mIsConnected) {
return false;
}
Log.v(TAG, "probeService controller=" + controller);
for (BluetoothGattService service : mGatt.getServices()) {
if (service.getUuid().equals(steamControllerService)) {
Log.v(TAG, "Found Valve steam controller service " + service.getUuid());
for (BluetoothGattCharacteristic chr : service.getCharacteristics()) {
if (chr.getUuid().equals(inputCharacteristicTriton_0x45)) {
Log.v(TAG, "Found Triton input characteristic 0x45");
mProductId = TRITON_BLE_PID;
mReportId = 0x45;
mInputCharacteristic = chr.getUuid();
} else if (chr.getUuid().equals(inputCharacteristicTriton_0x47)) {
Log.v(TAG, "Found Triton input characteristic 0x47");
mProductId = TRITON_BLE_PID;
mReportId = 0x47;
mInputCharacteristic = chr.getUuid();
} else if (chr.getUuid().equals(inputCharacteristicD0G)) {
Log.v(TAG, "Found D0G input characteristic");
mProductId = D0G_BLE2_PID;
mReportId = 0x03;
mInputCharacteristic = chr.getUuid();
} else {
Pattern reportPattern = Pattern.compile("100F6C([0-9A-Z]{2})", Pattern.CASE_INSENSITIVE);
Matcher matcher = reportPattern.matcher(chr.getUuid().toString());
if (matcher.find()) {
try {
int reportId = Integer.parseInt(matcher.group(1), 16);
reportId -= 0x35;
if (reportId >= 0x80) {
// This is a Triton output report characteristic that we need to care about.
Log.v(TAG, "Found Triton output report 0x" + Integer.toString(reportId, 16));
mOutputReportChars.put(reportId, chr);
}
}
catch (NumberFormatException nfe) {
Log.w(TAG, "Could not parse report characteristic " + chr.getUuid().toString() + ": " + nfe.toString());
}
}
}
}
for (BluetoothGattCharacteristic chr : service.getCharacteristics()) {
if (chr.getUuid().equals(mInputCharacteristic)) {
// Start notifications
BluetoothGattDescriptor cccd = chr.getDescriptor(UUID.fromString("00002902-0000-1000-8000-00805f9b34fb"));
if (cccd != null) {
enableNotification(chr.getUuid());
}
}
}
return true;
}
}
if ((mGatt.getServices().size() == 0) && mIsChromebook && !mIsReconnecting) {
Log.e(TAG, "Chromebook: Discovered services were empty; this almost certainly means the BtGatt.ContextMap bug has bitten us.");
mIsConnected = false;
mIsReconnecting = true;
mGatt.disconnect();
mGatt = connectGatt(false);
}
return false;
}
//////////////////////////////////////////////////////////////////////////////////////////////////////
//////////////////////////////////////////////////////////////////////////////////////////////////////
//////////////////////////////////////////////////////////////////////////////////////////////////////
private void finishCurrentGattOperation() {
GattOperation op = null;
synchronized (mOperations) {
if (mCurrentOperation != null) {
op = mCurrentOperation;
mCurrentOperation = null;
}
}
if (op != null) {
boolean result = op.finish(); // TODO: Maybe in main thread as well?
// Our operation failed, let's add it back to the beginning of our queue.
if (!result) {
mOperations.addFirst(op);
}
}
executeNextGattOperation();
}
private void executeNextGattOperation() {
synchronized (mOperations) {
if (mCurrentOperation != null)
return;
if (mOperations.isEmpty())
return;
mCurrentOperation = mOperations.removeFirst();
}
Runnable gattOperationRunnable = new Runnable() {
@Override
public void run() {
synchronized (mOperations) {
if (mCurrentOperation == null) {
Log.e(TAG, "Current operation null in executor?");
return;
}
mCurrentOperation.run();
// now wait for the GATT callback and when it comes, finish this operation
}
}
};
if (mCurrentOperation.getDelayMs() == 0) {
// Run in main thread
mHandler.post(gattOperationRunnable);
}
else {
// If we have a delay on this operation, wait before we post it.
mHandler.postDelayed(gattOperationRunnable, mCurrentOperation.getDelayMs());
}
}
private void queueGattOperation(GattOperation op) {
synchronized (mOperations) {
mOperations.add(op);
}
executeNextGattOperation();
}
private void enableNotification(UUID chrUuid) {
// Add a 500ms delay to notification write for Amazon Fire TV devices, as otherwise if we do this too quickly after connecting
// it will return success and then silently drop the operation on the floor.
GattOperation op = HIDDeviceBLESteamController.GattOperation.enableNotification(mGatt, chrUuid, 500);
queueGattOperation(op);
// Amazon Fire devices can also silently timeout on writeDescriptor, so
// set up a little delayed check that will attempt to write a second time.
//
// While this only seems to be needed on Amazon Fire TV devices at present, it
// doesn't hurt to have a retry on other devices as well.
//
final HIDDeviceBLESteamController finalThis = this;
final UUID finalUuid = chrUuid;
mHandler.postDelayed(new Runnable() {
@Override
public void run() {
if (!finalThis.mHasEnabledNotifications) {
if (finalThis.mHasSeenInputUpdate) {
// Amazon Five devices may have enabled notifications on the input characteristic and not given us a callback. If we've seen
// input reports, though, somewhat by definition notifications are enabled.
Log.w(TAG, "WriteDescriptor has never returned, but we've seen input reports. Moving on with controller initialization.");
finalThis.mHasEnabledNotifications = true;
finalThis.enableValveMode();
return;
}
// Give one more try.
GattOperation retry = HIDDeviceBLESteamController.GattOperation.enableNotification(finalThis.mGatt, finalUuid, 500);
finalThis.queueGattOperation(retry);
}
}
}, 1000);
}
void writeCharacteristic(UUID uuid, byte[] value) {
GattOperation op = HIDDeviceBLESteamController.GattOperation.writeCharacteristic(mGatt, uuid, value);
queueGattOperation(op);
}
void readCharacteristic(UUID uuid) {
GattOperation op = HIDDeviceBLESteamController.GattOperation.readCharacteristic(mGatt, uuid);
queueGattOperation(op);
}
//////////////////////////////////////////////////////////////////////////////////////////////////////
////////////// BluetoothGattCallback overridden methods
//////////////////////////////////////////////////////////////////////////////////////////////////////
@Override
public void onConnectionStateChange(BluetoothGatt g, int status, int newState) {
//Log.v(TAG, "onConnectionStateChange status=" + status + " newState=" + newState);
mIsReconnecting = false;
if (newState == 2) {
mIsConnected = true;
// Run directly, without GattOperation
if (!isRegistered()) {
mHandler.post(new Runnable() {
@Override
public void run() {
mGatt.discoverServices();
}
});
}
}
else if (newState == 0) {
mIsConnected = false;
}
// Disconnection is handled in SteamLink using the ACTION_ACL_DISCONNECTED Intent.
}
@Override
public void onServicesDiscovered(BluetoothGatt gatt, int status) {
//Log.v(TAG, "onServicesDiscovered status=" + status);
if (status == 0) {
if (gatt.getServices().size() == 0) {
Log.v(TAG, "onServicesDiscovered returned zero services; something has gone horribly wrong down in Android's Bluetooth stack.");
mIsReconnecting = true;
mIsConnected = false;
gatt.disconnect();
mGatt = connectGatt(false);
} else {
if (getProductId() == TRITON_BLE_PID) {
// Android will not properly play well with Data Length Extensions without manually requesting a large MTU,
// and Triton controllers require DLE support.
//
// 517 is basically a "magic number" as far as Android's bluetooth code is concerned, so do not change
// this value. It is functionally "please enable data length extensions" on some Android builds.
mGatt.requestMtu(517);
}
probeService(this);
}
}
}
@Override
public void onCharacteristicRead(BluetoothGatt gatt, BluetoothGattCharacteristic characteristic, int status) {
//Log.v(TAG, "onCharacteristicRead status=" + status + " uuid=" + characteristic.getUuid());
if (characteristic.getUuid().equals(reportCharacteristic) && !mFrozen) {
mManager.HIDDeviceReportResponse(getId(), characteristic.getValue());
}
finishCurrentGattOperation();
}
@Override
public void onCharacteristicWrite(BluetoothGatt gatt, BluetoothGattCharacteristic characteristic, int status) {
//Log.v(TAG, "onCharacteristicWrite status=" + status + " uuid=" + characteristic.getUuid());
if (characteristic.getUuid().equals(reportCharacteristic)) {
// Only register controller with the native side once it has been fully configured
if (!isRegistered()) {
Log.v(TAG, "Registering Steam Controller with ID: " + getId());
mManager.HIDDeviceConnected(getId(), getIdentifier(), getVendorId(), getProductId(), getSerialNumber(), getVersion(), getManufacturerName(), getProductName(), 0, 0, 0, 0, true, mReportId);
setRegistered();
}
}
finishCurrentGattOperation();
}
@Override
public void onCharacteristicChanged(BluetoothGatt gatt, BluetoothGattCharacteristic characteristic) {
// Enable this for verbose logging of controller input reports
//Log.v(TAG, "onCharacteristicChanged uuid=" + characteristic.getUuid() + " data=" + HexDump.dumpHexString(characteristic.getValue()));
if (characteristic.getUuid().equals(mInputCharacteristic) && !mFrozen) {
mHasSeenInputUpdate = true;
mManager.HIDDeviceInputReport(getId(), characteristic.getValue());
}
}
@Override
public void onDescriptorRead(BluetoothGatt gatt, BluetoothGattDescriptor descriptor, int status) {
//Log.v(TAG, "onDescriptorRead status=" + status);
}
private void enableValveMode()
{
BluetoothGattService valveService = mGatt.getService(steamControllerService);
if (valveService == null)
return;
BluetoothGattCharacteristic reportChr = valveService.getCharacteristic(reportCharacteristic);
if (reportChr != null) {
if (getProductId() == TRITON_BLE_PID) {
// For Triton we just mark things registered.
Log.v(TAG, "Registering Triton Steam Controller with ID: " + getId());
mManager.HIDDeviceConnected(getId(), getIdentifier(), getVendorId(), getProductId(), getSerialNumber(), getVersion(), getManufacturerName(), getProductName(), 0, 0, 0, 0, true, mReportId);
setRegistered();
} else {
// For the original controller, we need to manually enter Valve mode.
Log.v(TAG, "Writing report characteristic to enter valve mode");
reportChr.setValue(enterValveMode);
mGatt.writeCharacteristic(reportChr);
}
}
}
@Override
public void onDescriptorWrite(BluetoothGatt gatt, BluetoothGattDescriptor descriptor, int status) {
BluetoothGattCharacteristic chr = descriptor.getCharacteristic();
//Log.v(TAG, "onDescriptorWrite status=" + status + " uuid=" + chr.getUuid() + " descriptor=" + descriptor.getUuid());
if (chr.getUuid().equals(mInputCharacteristic)) {
mHasEnabledNotifications = true;
enableValveMode();
}
finishCurrentGattOperation();
}
@Override
public void onReliableWriteCompleted(BluetoothGatt gatt, int status) {
//Log.v(TAG, "onReliableWriteCompleted status=" + status);
}
@Override
public void onReadRemoteRssi(BluetoothGatt gatt, int rssi, int status) {
//Log.v(TAG, "onReadRemoteRssi status=" + status);
}
@Override
public void onMtuChanged(BluetoothGatt gatt, int mtu, int status) {
//Log.v(TAG, "onMtuChanged status=" + status);
}
//////////////////////////////////////////////////////////////////////////////////////////////////////
//////// Public API
//////////////////////////////////////////////////////////////////////////////////////////////////////
@Override
public int getId() {
return mDeviceId;
}
@Override
public int getVendorId() {
// Valve Corporation
final int VALVE_USB_VID = 0x28DE;
return VALVE_USB_VID;
}
@Override
public int getProductId() {
if (mProductId > 0) {
// We've already set a product ID.
return mProductId;
}
if (mDevice.getName().startsWith("Steam Ctrl")) {
// We're a newer Triton device
mProductId = TRITON_BLE_PID;
} else {
// We're an OG Steam Controller
mProductId = D0G_BLE2_PID;
}
return mProductId;
}
@Override
public String getSerialNumber() {
// This will be read later via feature report by Steam
return "12345";
}
@Override
public int getVersion() {
return 0;
}
@Override
public String getManufacturerName() {
return "Valve Corporation";
}
@Override
public String getProductName() {
return "Steam Controller";
}
@Override
public UsbDevice getDevice() {
return null;
}
@Override
public boolean open() {
return true;
}
@Override
public int writeReport(byte[] report, boolean feature) {
if (!isRegistered()) {
Log.e(TAG, "Attempted writeReport before Steam Controller is registered!");
if (mIsConnected) {
probeService(this);
}
return -1;
}
if (feature) {
// We need to skip the first byte, as that doesn't go over the air
byte[] actual_report = Arrays.copyOfRange(report, 1, report.length - 1);
//Log.v(TAG, "writeFeatureReport " + HexDump.dumpHexString(actual_report));
writeCharacteristic(reportCharacteristic, actual_report);
return report.length;
} else {
// If we're an original-recipe Steam Controller we just write to the characteristic directly.
if (getProductId() == D0G_BLE2_PID) {
//Log.v(TAG, "writeOutputReport " + HexDump.dumpHexString(report));
writeCharacteristic(reportCharacteristic, report);
return report.length;
}
// If we're a Triton, we need to find the correct report characteristic.
if (report.length > 0) {
int reportId = report[0] & 0xFF;
BluetoothGattCharacteristic targetedReportCharacteristic = mOutputReportChars.get(reportId);
if (targetedReportCharacteristic != null) {
byte[] actual_report = Arrays.copyOfRange(report, 1, report.length - 1);
//Log.v(TAG, "writeOutputReport 0x" + Integer.toString(reportId, 16) + " " + HexDump.dumpHexString(report));
writeCharacteristic(targetedReportCharacteristic.getUuid(), actual_report);
return report.length;
} else {
Log.w(TAG, "Got report write request for unknown report type 0x" + Integer.toString(reportId, 16));
}
}
}
return -1;
}
@Override
public boolean readReport(byte[] report, boolean feature) {
if (!isRegistered()) {
Log.e(TAG, "Attempted readReport before Steam Controller is registered!");
if (mIsConnected) {
probeService(this);
}
return false;
}
if (feature) {
readCharacteristic(reportCharacteristic);
return true;
} else {
// Not implemented
return false;
}
}
@Override
public void close() {
}
@Override
public void setFrozen(boolean frozen) {
mFrozen = frozen;
}
@Override
public void shutdown() {
close();
BluetoothGatt g = mGatt;
if (g != null) {
g.disconnect();
g.close();
mGatt = null;
}
mManager = null;
mIsRegistered = false;
mIsConnected = false;
mOperations.clear();
}
}
@@ -1,698 +0,0 @@
package org.libsdl.app;
import android.app.Activity;
import android.app.AlertDialog;
import android.app.PendingIntent;
import android.bluetooth.BluetoothAdapter;
import android.bluetooth.BluetoothDevice;
import android.bluetooth.BluetoothManager;
import android.bluetooth.BluetoothProfile;
import android.os.Build;
import android.util.Log;
import android.content.BroadcastReceiver;
import android.content.Context;
import android.content.DialogInterface;
import android.content.Intent;
import android.content.IntentFilter;
import android.content.SharedPreferences;
import android.content.pm.PackageManager;
import android.hardware.usb.*;
import android.os.Handler;
import android.os.Looper;
import java.util.ArrayList;
import java.util.HashMap;
import java.util.Iterator;
import java.util.List;
public class HIDDeviceManager {
private static final String TAG = "hidapi";
private static final String ACTION_USB_PERMISSION = "org.libsdl.app.USB_PERMISSION";
private static HIDDeviceManager sManager;
private static int sManagerRefCount = 0;
static public HIDDeviceManager acquire(Context context) {
if (sManagerRefCount == 0) {
sManager = new HIDDeviceManager(context);
}
++sManagerRefCount;
return sManager;
}
static public void release(HIDDeviceManager manager) {
if (manager == sManager) {
--sManagerRefCount;
if (sManagerRefCount == 0) {
sManager.close();
sManager = null;
}
}
}
private Context mContext;
private HashMap<Integer, HIDDevice> mDevicesById = new HashMap<Integer, HIDDevice>();
private HashMap<BluetoothDevice, HIDDeviceBLESteamController> mBluetoothDevices = new HashMap<BluetoothDevice, HIDDeviceBLESteamController>();
private int mNextDeviceId = 0;
private SharedPreferences mSharedPreferences = null;
private boolean mIsChromebook = false;
private UsbManager mUsbManager;
private Handler mHandler;
private BluetoothManager mBluetoothManager;
private List<BluetoothDevice> mLastBluetoothDevices;
private final BroadcastReceiver mUsbBroadcast = new BroadcastReceiver() {
@Override
public void onReceive(Context context, Intent intent) {
String action = intent.getAction();
if (action.equals(UsbManager.ACTION_USB_DEVICE_ATTACHED)) {
UsbDevice usbDevice = intent.getParcelableExtra(UsbManager.EXTRA_DEVICE);
handleUsbDeviceAttached(usbDevice);
} else if (action.equals(UsbManager.ACTION_USB_DEVICE_DETACHED)) {
UsbDevice usbDevice = intent.getParcelableExtra(UsbManager.EXTRA_DEVICE);
handleUsbDeviceDetached(usbDevice);
} else if (action.equals(HIDDeviceManager.ACTION_USB_PERMISSION)) {
UsbDevice usbDevice = intent.getParcelableExtra(UsbManager.EXTRA_DEVICE);
handleUsbDevicePermission(usbDevice, intent.getBooleanExtra(UsbManager.EXTRA_PERMISSION_GRANTED, false));
}
}
};
private final BroadcastReceiver mBluetoothBroadcast = new BroadcastReceiver() {
@Override
public void onReceive(Context context, Intent intent) {
String action = intent.getAction();
// Bluetooth device was connected. If it was a Steam Controller, handle it
if (action.equals(BluetoothDevice.ACTION_ACL_CONNECTED)) {
BluetoothDevice device = intent.getParcelableExtra(BluetoothDevice.EXTRA_DEVICE);
Log.d(TAG, "Bluetooth device connected: " + device);
if (isSteamController(device)) {
connectBluetoothDevice(device);
}
}
// Bluetooth device was disconnected, remove from controller manager (if any)
if (action.equals(BluetoothDevice.ACTION_ACL_DISCONNECTED)) {
BluetoothDevice device = intent.getParcelableExtra(BluetoothDevice.EXTRA_DEVICE);
Log.d(TAG, "Bluetooth device disconnected: " + device);
disconnectBluetoothDevice(device);
}
}
};
private HIDDeviceManager(final Context context) {
mContext = context;
HIDDeviceRegisterCallback();
mSharedPreferences = mContext.getSharedPreferences("hidapi", Context.MODE_PRIVATE);
mIsChromebook = SDLActivity.isChromebook();
// if (shouldClear) {
// SharedPreferences.Editor spedit = mSharedPreferences.edit();
// spedit.clear();
// spedit.apply();
// }
// else
{
mNextDeviceId = mSharedPreferences.getInt("next_device_id", 0);
}
}
Context getContext() {
return mContext;
}
int getDeviceIDForIdentifier(String identifier) {
SharedPreferences.Editor spedit = mSharedPreferences.edit();
int result = mSharedPreferences.getInt(identifier, 0);
if (result == 0) {
result = mNextDeviceId++;
spedit.putInt("next_device_id", mNextDeviceId);
}
spedit.putInt(identifier, result);
spedit.apply();
return result;
}
private void initializeUSB() {
mUsbManager = (UsbManager)mContext.getSystemService(Context.USB_SERVICE);
if (mUsbManager == null) {
return;
}
/*
// Logging
for (UsbDevice device : mUsbManager.getDeviceList().values()) {
Log.i(TAG,"Path: " + device.getDeviceName());
Log.i(TAG,"Manufacturer: " + device.getManufacturerName());
Log.i(TAG,"Product: " + device.getProductName());
Log.i(TAG,"ID: " + device.getDeviceId());
Log.i(TAG,"Class: " + device.getDeviceClass());
Log.i(TAG,"Protocol: " + device.getDeviceProtocol());
Log.i(TAG,"Vendor ID " + device.getVendorId());
Log.i(TAG,"Product ID: " + device.getProductId());
Log.i(TAG,"Interface count: " + device.getInterfaceCount());
Log.i(TAG,"---------------------------------------");
// Get interface details
for (int index = 0; index < device.getInterfaceCount(); index++) {
UsbInterface mUsbInterface = device.getInterface(index);
Log.i(TAG," ***** *****");
Log.i(TAG," Interface index: " + index);
Log.i(TAG," Interface ID: " + mUsbInterface.getId());
Log.i(TAG," Interface class: " + mUsbInterface.getInterfaceClass());
Log.i(TAG," Interface subclass: " + mUsbInterface.getInterfaceSubclass());
Log.i(TAG," Interface protocol: " + mUsbInterface.getInterfaceProtocol());
Log.i(TAG," Endpoint count: " + mUsbInterface.getEndpointCount());
// Get endpoint details
for (int epi = 0; epi < mUsbInterface.getEndpointCount(); epi++)
{
UsbEndpoint mEndpoint = mUsbInterface.getEndpoint(epi);
Log.i(TAG," ++++ ++++ ++++");
Log.i(TAG," Endpoint index: " + epi);
Log.i(TAG," Attributes: " + mEndpoint.getAttributes());
Log.i(TAG," Direction: " + mEndpoint.getDirection());
Log.i(TAG," Number: " + mEndpoint.getEndpointNumber());
Log.i(TAG," Interval: " + mEndpoint.getInterval());
Log.i(TAG," Packet size: " + mEndpoint.getMaxPacketSize());
Log.i(TAG," Type: " + mEndpoint.getType());
}
}
}
Log.i(TAG," No more devices connected.");
*/
// Register for USB broadcasts and permission completions
IntentFilter filter = new IntentFilter();
filter.addAction(UsbManager.ACTION_USB_DEVICE_ATTACHED);
filter.addAction(UsbManager.ACTION_USB_DEVICE_DETACHED);
filter.addAction(HIDDeviceManager.ACTION_USB_PERMISSION);
if (Build.VERSION.SDK_INT >= 33) { /* Android 13.0 (TIRAMISU) */
mContext.registerReceiver(mUsbBroadcast, filter, Context.RECEIVER_EXPORTED);
} else {
mContext.registerReceiver(mUsbBroadcast, filter);
}
for (UsbDevice usbDevice : mUsbManager.getDeviceList().values()) {
handleUsbDeviceAttached(usbDevice);
}
}
UsbManager getUSBManager() {
return mUsbManager;
}
private void shutdownUSB() {
try {
mContext.unregisterReceiver(mUsbBroadcast);
} catch (Exception e) {
// We may not have registered, that's okay
}
}
private boolean isHIDDeviceInterface(UsbDevice usbDevice, UsbInterface usbInterface) {
if (usbInterface.getInterfaceClass() == UsbConstants.USB_CLASS_HID) {
return true;
}
if (isXbox360Controller(usbDevice, usbInterface) || isXboxOneController(usbDevice, usbInterface)) {
return true;
}
return false;
}
private boolean isXbox360Controller(UsbDevice usbDevice, UsbInterface usbInterface) {
final int XB360_IFACE_SUBCLASS = 93;
final int XB360_IFACE_PROTOCOL = 1; // Wired
final int XB360W_IFACE_PROTOCOL = 129; // Wireless
final int[] SUPPORTED_VENDORS = {
0x0079, // GPD Win 2
0x044f, // Thrustmaster
0x045e, // Microsoft
0x046d, // Logitech
0x056e, // Elecom
0x06a3, // Saitek
0x0738, // Mad Catz
0x07ff, // Mad Catz
0x0e6f, // PDP
0x0f0d, // Hori
0x1038, // SteelSeries
0x11c9, // Nacon
0x12ab, // Unknown
0x1430, // RedOctane
0x146b, // BigBen
0x1532, // Razer Sabertooth
0x15e4, // Numark
0x162e, // Joytech
0x1689, // Razer Onza
0x1949, // Lab126, Inc.
0x1bad, // Harmonix
0x20d6, // PowerA
0x24c6, // PowerA
0x2c22, // Qanba
0x2dc8, // 8BitDo
0x3537, // GameSir
0x37d7, // Flydigi
0x9886, // ASTRO Gaming
};
if (usbInterface.getInterfaceClass() == UsbConstants.USB_CLASS_VENDOR_SPEC &&
usbInterface.getInterfaceSubclass() == XB360_IFACE_SUBCLASS &&
(usbInterface.getInterfaceProtocol() == XB360_IFACE_PROTOCOL ||
usbInterface.getInterfaceProtocol() == XB360W_IFACE_PROTOCOL)) {
int vendor_id = usbDevice.getVendorId();
for (int supportedVid : SUPPORTED_VENDORS) {
if (vendor_id == supportedVid) {
return true;
}
}
}
return false;
}
private boolean isXboxOneController(UsbDevice usbDevice, UsbInterface usbInterface) {
final int XB1_IFACE_SUBCLASS = 71;
final int XB1_IFACE_PROTOCOL = 208;
final int[] SUPPORTED_VENDORS = {
0x03f0, // HP
0x044f, // Thrustmaster
0x045e, // Microsoft
0x0738, // Mad Catz
0x0b05, // ASUS
0x0e6f, // PDP
0x0f0d, // Hori
0x10f5, // Turtle Beach
0x1532, // Razer Wildcat
0x20d6, // PowerA
0x24c6, // PowerA
0x294b, // Snakebyte
0x2dc8, // 8BitDo
0x2e24, // Hyperkin
0x2e95, // SCUF
0x3285, // Nacon
0x3537, // GameSir
0x366c, // ByoWave
};
if (usbInterface.getId() == 0 &&
usbInterface.getInterfaceClass() == UsbConstants.USB_CLASS_VENDOR_SPEC &&
usbInterface.getInterfaceSubclass() == XB1_IFACE_SUBCLASS &&
usbInterface.getInterfaceProtocol() == XB1_IFACE_PROTOCOL) {
int vendor_id = usbDevice.getVendorId();
for (int supportedVid : SUPPORTED_VENDORS) {
if (vendor_id == supportedVid) {
return true;
}
}
}
return false;
}
private void handleUsbDeviceAttached(UsbDevice usbDevice) {
connectHIDDeviceUSB(usbDevice);
}
private void handleUsbDeviceDetached(UsbDevice usbDevice) {
List<Integer> devices = new ArrayList<Integer>();
for (HIDDevice device : mDevicesById.values()) {
if (usbDevice.equals(device.getDevice())) {
devices.add(device.getId());
}
}
for (int id : devices) {
HIDDevice device = mDevicesById.get(id);
mDevicesById.remove(id);
device.shutdown();
HIDDeviceDisconnected(id);
}
}
private void handleUsbDevicePermission(UsbDevice usbDevice, boolean permission_granted) {
for (HIDDevice device : mDevicesById.values()) {
if (usbDevice.equals(device.getDevice())) {
boolean opened = false;
if (permission_granted) {
opened = device.open();
}
HIDDeviceOpenResult(device.getId(), opened);
}
}
}
private void connectHIDDeviceUSB(UsbDevice usbDevice) {
synchronized (this) {
int interface_mask = 0;
for (int interface_index = 0; interface_index < usbDevice.getInterfaceCount(); interface_index++) {
UsbInterface usbInterface = usbDevice.getInterface(interface_index);
if (isHIDDeviceInterface(usbDevice, usbInterface)) {
// Check to see if we've already added this interface
// This happens with the Xbox Series X controller which has a duplicate interface 0, which is inactive
int interface_id = usbInterface.getId();
if ((interface_mask & (1 << interface_id)) != 0) {
continue;
}
interface_mask |= (1 << interface_id);
HIDDeviceUSB device = new HIDDeviceUSB(this, usbDevice, interface_index);
int id = device.getId();
mDevicesById.put(id, device);
HIDDeviceConnected(id, device.getIdentifier(), device.getVendorId(), device.getProductId(), device.getSerialNumber(), device.getVersion(), device.getManufacturerName(), device.getProductName(), usbInterface.getId(), usbInterface.getInterfaceClass(), usbInterface.getInterfaceSubclass(), usbInterface.getInterfaceProtocol(), false, 0);
}
}
}
}
private void initializeBluetooth() {
Log.d(TAG, "Initializing Bluetooth");
if (Build.VERSION.SDK_INT >= 31 /* Android 12 */ &&
mContext.getPackageManager().checkPermission(android.Manifest.permission.BLUETOOTH_CONNECT, mContext.getPackageName()) != PackageManager.PERMISSION_GRANTED) {
Log.d(TAG, "Couldn't initialize Bluetooth, missing android.permission.BLUETOOTH_CONNECT");
return;
}
if (Build.VERSION.SDK_INT <= 30 /* Android 11.0 (R) */ &&
mContext.getPackageManager().checkPermission(android.Manifest.permission.BLUETOOTH, mContext.getPackageName()) != PackageManager.PERMISSION_GRANTED) {
Log.d(TAG, "Couldn't initialize Bluetooth, missing android.permission.BLUETOOTH");
return;
}
if (!mContext.getPackageManager().hasSystemFeature(PackageManager.FEATURE_BLUETOOTH_LE)) {
Log.d(TAG, "Couldn't initialize Bluetooth, this version of Android does not support Bluetooth LE");
return;
}
// Find bonded bluetooth controllers and create SteamControllers for them
mBluetoothManager = (BluetoothManager)mContext.getSystemService(Context.BLUETOOTH_SERVICE);
if (mBluetoothManager == null) {
// This device doesn't support Bluetooth.
return;
}
BluetoothAdapter btAdapter = mBluetoothManager.getAdapter();
if (btAdapter == null) {
// This device has Bluetooth support in the codebase, but has no available adapters.
return;
}
// Get our bonded devices.
for (BluetoothDevice device : btAdapter.getBondedDevices()) {
Log.d(TAG, "Bluetooth device available: " + device);
if (isSteamController(device)) {
connectBluetoothDevice(device);
}
}
// NOTE: These don't work on Chromebooks, to my undying dismay.
IntentFilter filter = new IntentFilter();
filter.addAction(BluetoothDevice.ACTION_ACL_CONNECTED);
filter.addAction(BluetoothDevice.ACTION_ACL_DISCONNECTED);
if (Build.VERSION.SDK_INT >= 33) { /* Android 13.0 (TIRAMISU) */
mContext.registerReceiver(mBluetoothBroadcast, filter, Context.RECEIVER_EXPORTED);
} else {
mContext.registerReceiver(mBluetoothBroadcast, filter);
}
if (mIsChromebook) {
mHandler = new Handler(Looper.getMainLooper());
mLastBluetoothDevices = new ArrayList<BluetoothDevice>();
// final HIDDeviceManager finalThis = this;
// mHandler.postDelayed(new Runnable() {
// @Override
// public void run() {
// finalThis.chromebookConnectionHandler();
// }
// }, 5000);
}
}
private void shutdownBluetooth() {
try {
mContext.unregisterReceiver(mBluetoothBroadcast);
} catch (Exception e) {
// We may not have registered, that's okay
}
}
// Chromebooks do not pass along ACTION_ACL_CONNECTED / ACTION_ACL_DISCONNECTED properly.
// This function provides a sort of dummy version of that, watching for changes in the
// connected devices and attempting to add controllers as things change.
void chromebookConnectionHandler() {
if (!mIsChromebook) {
return;
}
ArrayList<BluetoothDevice> disconnected = new ArrayList<BluetoothDevice>();
ArrayList<BluetoothDevice> connected = new ArrayList<BluetoothDevice>();
List<BluetoothDevice> currentConnected = mBluetoothManager.getConnectedDevices(BluetoothProfile.GATT);
for (BluetoothDevice bluetoothDevice : currentConnected) {
if (!mLastBluetoothDevices.contains(bluetoothDevice)) {
connected.add(bluetoothDevice);
}
}
for (BluetoothDevice bluetoothDevice : mLastBluetoothDevices) {
if (!currentConnected.contains(bluetoothDevice)) {
disconnected.add(bluetoothDevice);
}
}
mLastBluetoothDevices = currentConnected;
for (BluetoothDevice bluetoothDevice : disconnected) {
disconnectBluetoothDevice(bluetoothDevice);
}
for (BluetoothDevice bluetoothDevice : connected) {
connectBluetoothDevice(bluetoothDevice);
}
final HIDDeviceManager finalThis = this;
mHandler.postDelayed(new Runnable() {
@Override
public void run() {
finalThis.chromebookConnectionHandler();
}
}, 10000);
}
boolean connectBluetoothDevice(BluetoothDevice bluetoothDevice) {
Log.v(TAG, "connectBluetoothDevice device=" + bluetoothDevice);
synchronized (this) {
if (mBluetoothDevices.containsKey(bluetoothDevice)) {
Log.v(TAG, "Steam controller with address " + bluetoothDevice + " already exists, attempting reconnect");
HIDDeviceBLESteamController device = mBluetoothDevices.get(bluetoothDevice);
device.reconnect();
return false;
}
HIDDeviceBLESteamController device = new HIDDeviceBLESteamController(this, bluetoothDevice);
int id = device.getId();
mBluetoothDevices.put(bluetoothDevice, device);
mDevicesById.put(id, device);
// The Steam Controller will mark itself connected once initialization is complete
}
return true;
}
void disconnectBluetoothDevice(BluetoothDevice bluetoothDevice) {
synchronized (this) {
HIDDeviceBLESteamController device = mBluetoothDevices.get(bluetoothDevice);
if (device == null)
return;
int id = device.getId();
mBluetoothDevices.remove(bluetoothDevice);
mDevicesById.remove(id);
device.shutdown();
HIDDeviceDisconnected(id);
}
}
boolean isSteamController(BluetoothDevice bluetoothDevice) {
// Sanity check. If you pass in a null device, by definition it is never a Steam Controller.
if (bluetoothDevice == null) {
return false;
}
// If the device has no local name, we really don't want to try an equality check against it.
if (bluetoothDevice.getName() == null) {
return false;
}
// Steam Controllers will always support Bluetooth Low Energy
if ((bluetoothDevice.getType() & BluetoothDevice.DEVICE_TYPE_LE) == 0) {
return false;
}
// Match on the name either the original Steam Controller or the new second-generation one advertise with.
return bluetoothDevice.getName().equals("SteamController") || bluetoothDevice.getName().startsWith("Steam Ctrl");
}
private void close() {
shutdownUSB();
shutdownBluetooth();
synchronized (this) {
for (HIDDevice device : mDevicesById.values()) {
device.shutdown();
}
mDevicesById.clear();
mBluetoothDevices.clear();
HIDDeviceReleaseCallback();
}
}
public void setFrozen(boolean frozen) {
synchronized (this) {
for (HIDDevice device : mDevicesById.values()) {
device.setFrozen(frozen);
}
}
}
//////////////////////////////////////////////////////////////////////////////////////////////////////
//////////////////////////////////////////////////////////////////////////////////////////////////////
//////////////////////////////////////////////////////////////////////////////////////////////////////
private HIDDevice getDevice(int id) {
synchronized (this) {
HIDDevice result = mDevicesById.get(id);
if (result == null) {
Log.v(TAG, "No device for id: " + id);
Log.v(TAG, "Available devices: " + mDevicesById.keySet());
}
return result;
}
}
//////////////////////////////////////////////////////////////////////////////////////////////////////
////////// JNI interface functions
//////////////////////////////////////////////////////////////////////////////////////////////////////
boolean initialize(boolean usb, boolean bluetooth) {
Log.v(TAG, "initialize(" + usb + ", " + bluetooth + ")");
if (usb) {
initializeUSB();
}
if (bluetooth) {
initializeBluetooth();
}
return true;
}
boolean openDevice(int deviceID) {
Log.v(TAG, "openDevice deviceID=" + deviceID);
HIDDevice device = getDevice(deviceID);
if (device == null) {
HIDDeviceDisconnected(deviceID);
return false;
}
// Look to see if this is a USB device and we have permission to access it
UsbDevice usbDevice = device.getDevice();
if (usbDevice != null && !mUsbManager.hasPermission(usbDevice)) {
HIDDeviceOpenPending(deviceID);
try {
final int FLAG_MUTABLE = 0x02000000; // PendingIntent.FLAG_MUTABLE, but don't require SDK 31
int flags;
if (Build.VERSION.SDK_INT >= 31 /* Android 12.0 (S) */) {
flags = FLAG_MUTABLE;
} else {
flags = 0;
}
Intent intent = new Intent(HIDDeviceManager.ACTION_USB_PERMISSION);
intent.setPackage(mContext.getPackageName());
mUsbManager.requestPermission(usbDevice, PendingIntent.getBroadcast(mContext, 0, intent, flags));
} catch (Exception e) {
Log.v(TAG, "Couldn't request permission for USB device " + usbDevice);
HIDDeviceOpenResult(deviceID, false);
}
return false;
}
try {
return device.open();
} catch (Exception e) {
Log.e(TAG, "Got exception: " + Log.getStackTraceString(e));
}
return false;
}
int writeReport(int deviceID, byte[] report, boolean feature) {
try {
//Log.v(TAG, "writeReport deviceID=" + deviceID + " length=" + report.length);
HIDDevice device;
device = getDevice(deviceID);
if (device == null) {
HIDDeviceDisconnected(deviceID);
return -1;
}
return device.writeReport(report, feature);
} catch (Exception e) {
Log.e(TAG, "Got exception: " + Log.getStackTraceString(e));
}
return -1;
}
boolean readReport(int deviceID, byte[] report, boolean feature) {
try {
//Log.v(TAG, "readReport deviceID=" + deviceID);
HIDDevice device;
device = getDevice(deviceID);
if (device == null) {
HIDDeviceDisconnected(deviceID);
return false;
}
return device.readReport(report, feature);
} catch (Exception e) {
Log.e(TAG, "Got exception: " + Log.getStackTraceString(e));
}
return false;
}
void closeDevice(int deviceID) {
try {
Log.v(TAG, "closeDevice deviceID=" + deviceID);
HIDDevice device;
device = getDevice(deviceID);
if (device == null) {
HIDDeviceDisconnected(deviceID);
return;
}
device.close();
} catch (Exception e) {
Log.e(TAG, "Got exception: " + Log.getStackTraceString(e));
}
}
//////////////////////////////////////////////////////////////////////////////////////////////////////
/////////////// Native methods
//////////////////////////////////////////////////////////////////////////////////////////////////////
private native void HIDDeviceRegisterCallback();
private native void HIDDeviceReleaseCallback();
native void HIDDeviceConnected(int deviceID, String identifier, int vendorId, int productId, String serial_number, int release_number, String manufacturer_string, String product_string, int interface_number, int interface_class, int interface_subclass, int interface_protocol, boolean bBluetooth, int reportID);
native void HIDDeviceOpenPending(int deviceID);
native void HIDDeviceOpenResult(int deviceID, boolean opened);
native void HIDDeviceDisconnected(int deviceID);
native void HIDDeviceInputReport(int deviceID, byte[] report);
native void HIDDeviceReportResponse(int deviceID, byte[] report);
}
@@ -1,354 +0,0 @@
package org.libsdl.app;
import android.hardware.usb.*;
import android.os.Build;
import android.util.Log;
import java.util.Arrays;
import java.util.Locale;
class HIDDeviceUSB implements HIDDevice {
private static final String TAG = "hidapi";
protected HIDDeviceManager mManager;
protected UsbDevice mDevice;
protected int mInterfaceIndex;
protected int mInterface;
protected int mDeviceId;
protected UsbDeviceConnection mConnection;
protected UsbEndpoint mInputEndpoint;
protected UsbEndpoint mOutputEndpoint;
protected InputThread mInputThread;
protected boolean mRunning;
protected boolean mFrozen;
protected boolean mClaimed;
public HIDDeviceUSB(HIDDeviceManager manager, UsbDevice usbDevice, int interface_index) {
mManager = manager;
mDevice = usbDevice;
mInterfaceIndex = interface_index;
mInterface = mDevice.getInterface(mInterfaceIndex).getId();
mDeviceId = manager.getDeviceIDForIdentifier(getIdentifier());
mRunning = false;
mClaimed = false;
}
String getIdentifier() {
return String.format(Locale.ENGLISH, "%s/%x/%x/%d", mDevice.getDeviceName(), mDevice.getVendorId(), mDevice.getProductId(), mInterfaceIndex);
}
@Override
public int getId() {
return mDeviceId;
}
@Override
public int getVendorId() {
return mDevice.getVendorId();
}
@Override
public int getProductId() {
return mDevice.getProductId();
}
@Override
public String getSerialNumber() {
String result = null;
try {
result = mDevice.getSerialNumber();
}
catch (SecurityException exception) {
//Log.w(TAG, "App permissions mean we cannot get serial number for device " + getDeviceName() + " message: " + exception.getMessage());
}
if (result == null) {
result = "";
}
return result;
}
@Override
public int getVersion() {
return 0;
}
@Override
public String getManufacturerName() {
String result;
result = mDevice.getManufacturerName();
if (result == null) {
result = String.format("%x", getVendorId());
}
return result;
}
@Override
public String getProductName() {
String result;
result = mDevice.getProductName();
if (result == null) {
result = String.format("%x", getProductId());
}
return result;
}
@Override
public UsbDevice getDevice() {
return mDevice;
}
String getDeviceName() {
return getManufacturerName() + " " + getProductName() + "(0x" + String.format("%x", getVendorId()) + "/0x" + String.format("%x", getProductId()) + ")";
}
@Override
public boolean open() {
mConnection = mManager.getUSBManager().openDevice(mDevice);
if (mConnection == null) {
Log.w(TAG, "Unable to open USB device " + getDeviceName());
return false;
}
// Force claim our interface
UsbInterface iface = mDevice.getInterface(mInterfaceIndex);
if (!mConnection.claimInterface(iface, true)) {
Log.w(TAG, "Failed to claim interfaces on USB device " + getDeviceName());
close();
return false;
}
mClaimed = true;
// Find the endpoints
for (int j = 0; j < iface.getEndpointCount(); j++) {
UsbEndpoint endpt = iface.getEndpoint(j);
switch (endpt.getDirection()) {
case UsbConstants.USB_DIR_IN:
if (mInputEndpoint == null) {
mInputEndpoint = endpt;
}
break;
case UsbConstants.USB_DIR_OUT:
if (mOutputEndpoint == null) {
mOutputEndpoint = endpt;
}
break;
}
}
// Make sure the required endpoints were present. The original Steam Controller and the wireless dongle for it do NOT
// actually have -- or require -- output endpoints, so we need to accept only an input one for them or else we'll fall
// back to the Android system gamepad functionality (and lose our paddles et al).
if (mInputEndpoint == null) {
Log.w(TAG, "Missing required endpoint on USB device " + getDeviceName());
mConnection.releaseInterface(iface);
close();
return false;
}
// Start listening for input
mRunning = true;
mInputThread = new InputThread();
mInputThread.start();
return true;
}
@Override
public int writeReport(byte[] report, boolean feature) {
if (mConnection == null) {
Log.w(TAG, "writeReport() called with no device connection");
return -1;
}
if (!mClaimed) {
Log.w(TAG, "writeReport() called but some other process currently owns the USB device");
return -1;
}
if (feature) {
int res = -1;
int offset = 0;
int length = report.length;
boolean skipped_report_id = false;
byte report_number = report[0];
if (report_number == 0x0) {
++offset;
--length;
skipped_report_id = true;
}
res = mConnection.controlTransfer(
UsbConstants.USB_TYPE_CLASS | 0x01 /*RECIPIENT_INTERFACE*/ | UsbConstants.USB_DIR_OUT,
0x09/*HID set_report*/,
(3/*HID feature*/ << 8) | report_number,
mInterface,
report, offset, length,
1000/*timeout millis*/);
if (res < 0) {
Log.w(TAG, "writeFeatureReport() returned " + res + " on device " + getDeviceName());
return -1;
}
if (skipped_report_id) {
++length;
}
return length;
} else {
if (mOutputEndpoint == null)
{
Log.e(TAG, "Tried to write an output report to an interface with no output endpoint!");
return -1;
}
int res = mConnection.bulkTransfer(mOutputEndpoint, report, report.length, 1000);
if (res != report.length) {
Log.w(TAG, "writeOutputReport() returned " + res + " on device " + getDeviceName());
}
return res;
}
}
@Override
public boolean readReport(byte[] report, boolean feature) {
int res = -1;
int offset = 0;
int length = report.length;
boolean skipped_report_id = false;
byte report_number = report[0];
if (mConnection == null) {
Log.w(TAG, "readReport() called with no device connection");
return false;
}
if (!mClaimed) {
if (feature) {
return false;
}
return true;
}
if (report_number == 0x0) {
/* Offset the return buffer by 1, so that the report ID
will remain in byte 0. */
++offset;
--length;
skipped_report_id = true;
}
res = mConnection.controlTransfer(
UsbConstants.USB_TYPE_CLASS | 0x01 /*RECIPIENT_INTERFACE*/ | UsbConstants.USB_DIR_IN,
0x01/*HID get_report*/,
((feature ? 3/*HID feature*/ : 1/*HID Input*/) << 8) | report_number,
mInterface,
report, offset, length,
1000/*timeout millis*/);
if (res < 0) {
Log.w(TAG, "getFeatureReport() returned " + res + " on device " + getDeviceName());
return false;
}
if (skipped_report_id) {
++res;
++length;
}
byte[] data;
if (res == length) {
data = report;
} else {
data = Arrays.copyOfRange(report, 0, res);
}
mManager.HIDDeviceReportResponse(mDeviceId, data);
return true;
}
@Override
public void close() {
mRunning = false;
if (mInputThread != null) {
while (mInputThread.isAlive()) {
mInputThread.interrupt();
try {
mInputThread.join();
} catch (InterruptedException e) {
// Keep trying until we're done
}
}
mInputThread = null;
}
if (mConnection != null) {
if (mClaimed) {
UsbInterface iface = mDevice.getInterface(mInterfaceIndex);
mConnection.releaseInterface(iface);
}
mConnection.close();
mConnection = null;
mClaimed = false;
}
}
@Override
public void shutdown() {
close();
mManager = null;
}
@Override
public void setFrozen(boolean frozen) {
mFrozen = frozen;
/* If we have a valid device connection and the claim state doesn't match what we want, try to correct that. */
if (mConnection != null && mClaimed == mFrozen) {
UsbInterface iface = mDevice.getInterface(mInterfaceIndex);
if (frozen) {
mClaimed = !mConnection.releaseInterface(iface);
if (mClaimed) {
Log.e(TAG, "Tried to release claim on USB device, but failed!");
}
} else {
mClaimed = mConnection.claimInterface(iface, true);
if (!mClaimed) {
Log.e(TAG, "Tried to regain claim on USB device, but failed!");
}
}
}
}
protected class InputThread extends Thread {
@Override
public void run() {
int packetSize = mInputEndpoint.getMaxPacketSize();
byte[] packet = new byte[packetSize];
while (mRunning) {
int r;
try
{
r = mConnection.bulkTransfer(mInputEndpoint, packet, packetSize, 1000);
}
catch (Exception e)
{
Log.v(TAG, "Exception in UsbDeviceConnection bulktransfer: " + e);
break;
}
if (r < 0) {
// Could be a timeout or an I/O error
}
if (r > 0) {
byte[] data;
if (r == packetSize) {
data = packet;
} else {
data = Arrays.copyOfRange(packet, 0, r);
}
if (!mFrozen) {
mManager.HIDDeviceInputReport(mDeviceId, data);
}
}
}
}
}
}
@@ -1,90 +0,0 @@
package org.libsdl.app;
import android.app.Activity;
import android.content.Context;
import java.lang.reflect.Method;
/**
SDL library initialization
*/
public class SDL {
// This function should be called first and sets up the native code
// so it can call into the Java classes
static public void setupJNI() {
SDLActivity.nativeSetupJNI();
SDLAudioManager.nativeSetupJNI();
SDLControllerManager.nativeSetupJNI();
}
// This function should be called each time the activity is started
static public void initialize() {
setContext(null);
SDLActivity.initialize();
SDLAudioManager.initialize();
SDLControllerManager.initialize();
}
// This function stores the current activity (SDL or not)
static public void setContext(Activity context) {
SDLAudioManager.setContext(context);
mContext = context;
}
static public Activity getContext() {
return mContext;
}
static void loadLibrary(String libraryName) throws UnsatisfiedLinkError, SecurityException, NullPointerException {
loadLibrary(libraryName, mContext);
}
static void loadLibrary(String libraryName, Context context) throws UnsatisfiedLinkError, SecurityException, NullPointerException {
if (libraryName == null) {
throw new NullPointerException("No library name provided.");
}
try {
// Let's see if we have ReLinker available in the project. This is necessary for
// some projects that have huge numbers of local libraries bundled, and thus may
// trip a bug in Android's native library loader which ReLinker works around. (If
// loadLibrary works properly, ReLinker will simply use the normal Android method
// internally.)
//
// To use ReLinker, just add it as a dependency. For more information, see
// https://github.com/KeepSafe/ReLinker for ReLinker's repository.
//
Class<?> relinkClass = context.getClassLoader().loadClass("com.getkeepsafe.relinker.ReLinker");
Class<?> relinkListenerClass = context.getClassLoader().loadClass("com.getkeepsafe.relinker.ReLinker$LoadListener");
Class<?> contextClass = context.getClassLoader().loadClass("android.content.Context");
Class<?> stringClass = context.getClassLoader().loadClass("java.lang.String");
// Get a 'force' instance of the ReLinker, so we can ensure libraries are reinstalled if
// they've changed during updates.
Method forceMethod = relinkClass.getDeclaredMethod("force");
Object relinkInstance = forceMethod.invoke(null);
Class<?> relinkInstanceClass = relinkInstance.getClass();
// Actually load the library!
Method loadMethod = relinkInstanceClass.getDeclaredMethod("loadLibrary", contextClass, stringClass, stringClass, relinkListenerClass);
loadMethod.invoke(relinkInstance, context, libraryName, null, null);
}
catch (final Throwable e) {
// Fall back
try {
System.loadLibrary(libraryName);
}
catch (final UnsatisfiedLinkError ule) {
throw ule;
}
catch (final SecurityException se) {
throw se;
}
}
}
protected static Activity mContext;
}
File diff suppressed because it is too large Load Diff
@@ -1,126 +0,0 @@
package org.libsdl.app;
import android.content.Context;
import android.media.AudioDeviceCallback;
import android.media.AudioDeviceInfo;
import android.media.AudioManager;
import android.os.Build;
import android.util.Log;
import java.util.Arrays;
import java.util.ArrayList;
class SDLAudioManager {
protected static final String TAG = "SDLAudio";
protected static Context mContext;
private static AudioDeviceCallback mAudioDeviceCallback;
static void initialize() {
mAudioDeviceCallback = null;
if(Build.VERSION.SDK_INT >= 24 /* Android 7.0 (N) */)
{
mAudioDeviceCallback = new AudioDeviceCallback() {
@Override
public void onAudioDevicesAdded(AudioDeviceInfo[] addedDevices) {
for (AudioDeviceInfo deviceInfo : addedDevices) {
nativeAddAudioDevice(deviceInfo.isSink(), deviceInfo.getProductName().toString(), deviceInfo.getId());
}
}
@Override
public void onAudioDevicesRemoved(AudioDeviceInfo[] removedDevices) {
for (AudioDeviceInfo deviceInfo : removedDevices) {
nativeRemoveAudioDevice(deviceInfo.isSink(), deviceInfo.getId());
}
}
};
}
}
static void setContext(Context context) {
mContext = context;
}
static void release(Context context) {
// no-op atm
}
// Audio
private static AudioDeviceInfo getInputAudioDeviceInfo(int deviceId) {
if (Build.VERSION.SDK_INT >= 24 /* Android 7.0 (N) */) {
AudioManager audioManager = (AudioManager) mContext.getSystemService(Context.AUDIO_SERVICE);
for (AudioDeviceInfo deviceInfo : audioManager.getDevices(AudioManager.GET_DEVICES_INPUTS)) {
if (deviceInfo.getId() == deviceId) {
return deviceInfo;
}
}
}
return null;
}
private static AudioDeviceInfo getPlaybackAudioDeviceInfo(int deviceId) {
if (Build.VERSION.SDK_INT >= 24 /* Android 7.0 (N) */) {
AudioManager audioManager = (AudioManager) mContext.getSystemService(Context.AUDIO_SERVICE);
for (AudioDeviceInfo deviceInfo : audioManager.getDevices(AudioManager.GET_DEVICES_OUTPUTS)) {
if (deviceInfo.getId() == deviceId) {
return deviceInfo;
}
}
}
return null;
}
static void registerAudioDeviceCallback() {
if (Build.VERSION.SDK_INT >= 24 /* Android 7.0 (N) */) {
AudioManager audioManager = (AudioManager) mContext.getSystemService(Context.AUDIO_SERVICE);
// get an initial list now, before hotplug callbacks fire.
for (AudioDeviceInfo dev : audioManager.getDevices(AudioManager.GET_DEVICES_OUTPUTS)) {
if (dev.getType() == AudioDeviceInfo.TYPE_TELEPHONY) {
continue; // Device cannot be opened
}
nativeAddAudioDevice(dev.isSink(), dev.getProductName().toString(), dev.getId());
}
for (AudioDeviceInfo dev : audioManager.getDevices(AudioManager.GET_DEVICES_INPUTS)) {
nativeAddAudioDevice(dev.isSink(), dev.getProductName().toString(), dev.getId());
}
audioManager.registerAudioDeviceCallback(mAudioDeviceCallback, null);
}
}
static void unregisterAudioDeviceCallback() {
if (Build.VERSION.SDK_INT >= 24 /* Android 7.0 (N) */) {
AudioManager audioManager = (AudioManager) mContext.getSystemService(Context.AUDIO_SERVICE);
audioManager.unregisterAudioDeviceCallback(mAudioDeviceCallback);
}
}
/** This method is called by SDL using JNI. */
static void audioSetThreadPriority(boolean recording, int device_id) {
try {
/* Set thread name */
if (recording) {
Thread.currentThread().setName("SDLAudioC" + device_id);
} else {
Thread.currentThread().setName("SDLAudioP" + device_id);
}
/* Set thread priority */
android.os.Process.setThreadPriority(android.os.Process.THREAD_PRIORITY_AUDIO);
} catch (Exception e) {
Log.v(TAG, "modify thread properties failed " + e.toString());
}
}
static native void nativeSetupJNI();
static native void nativeRemoveAudioDevice(boolean recording, int deviceId);
static native void nativeAddAudioDevice(boolean recording, String name, int deviceId);
}
File diff suppressed because it is too large Load Diff
@@ -1,66 +0,0 @@
package org.libsdl.app;
import android.content.*;
import android.text.InputType;
import android.view.*;
import android.view.inputmethod.EditorInfo;
import android.view.inputmethod.InputConnection;
/* This is a fake invisible editor view that receives the input and defines the
* pan&scan region
*/
public class SDLDummyEdit extends View implements View.OnKeyListener
{
InputConnection ic;
int input_type;
SDLDummyEdit(Context context) {
super(context);
setFocusableInTouchMode(true);
setFocusable(true);
setOnKeyListener(this);
}
void setInputType(int input_type) {
this.input_type = input_type;
}
@Override
public boolean onCheckIsTextEditor() {
return true;
}
@Override
public boolean onKey(View v, int keyCode, KeyEvent event) {
return SDLActivity.handleKeyEvent(v, keyCode, event, ic);
}
//
@Override
public boolean onKeyPreIme (int keyCode, KeyEvent event) {
// As seen on StackOverflow: http://stackoverflow.com/questions/7634346/keyboard-hide-event
// FIXME: Discussion at http://bugzilla.libsdl.org/show_bug.cgi?id=1639
// FIXME: This is not a 100% effective solution to the problem of detecting if the keyboard is showing or not
// FIXME: A more effective solution would be to assume our Layout to be RelativeLayout or LinearLayout
// FIXME: And determine the keyboard presence doing this: http://stackoverflow.com/questions/2150078/how-to-check-visibility-of-software-keyboard-in-android
// FIXME: An even more effective way would be if Android provided this out of the box, but where would the fun be in that :)
if (event.getAction()==KeyEvent.ACTION_UP && keyCode == KeyEvent.KEYCODE_BACK) {
if (SDLActivity.mTextEdit != null && SDLActivity.mTextEdit.getVisibility() == View.VISIBLE) {
SDLActivity.onNativeKeyboardFocusLost();
}
}
return super.onKeyPreIme(keyCode, event);
}
@Override
public InputConnection onCreateInputConnection(EditorInfo outAttrs) {
ic = new SDLInputConnection(this, true);
outAttrs.inputType = input_type;
outAttrs.imeOptions = EditorInfo.IME_FLAG_NO_EXTRACT_UI |
EditorInfo.IME_FLAG_NO_FULLSCREEN /* API 11 */;
return ic;
}
}
@@ -1,136 +0,0 @@
package org.libsdl.app;
import android.content.*;
import android.os.Build;
import android.text.Editable;
import android.view.*;
import android.view.inputmethod.BaseInputConnection;
import android.widget.EditText;
class SDLInputConnection extends BaseInputConnection
{
protected EditText mEditText;
protected String mCommittedText = "";
SDLInputConnection(View targetView, boolean fullEditor) {
super(targetView, fullEditor);
mEditText = new EditText(SDL.getContext());
}
@Override
public Editable getEditable() {
return mEditText.getEditableText();
}
@Override
public boolean sendKeyEvent(KeyEvent event) {
/*
* This used to handle the keycodes from soft keyboard (and IME-translated input from hardkeyboard)
* However, as of Ice Cream Sandwich and later, almost all soft keyboard doesn't generate key presses
* and so we need to generate them ourselves in commitText. To avoid duplicates on the handful of keys
* that still do, we empty this out.
*/
/*
* Return DOES still generate a key event, however. So rather than using it as the 'click a button' key
* as we do with physical keyboards, let's just use it to hide the keyboard.
*/
if (event.getKeyCode() == KeyEvent.KEYCODE_ENTER) {
if (SDLActivity.onNativeSoftReturnKey()) {
return true;
}
}
return super.sendKeyEvent(event);
}
@Override
public boolean commitText(CharSequence text, int newCursorPosition) {
if (!super.commitText(text, newCursorPosition)) {
return false;
}
updateText();
return true;
}
@Override
public boolean setComposingText(CharSequence text, int newCursorPosition) {
if (!super.setComposingText(text, newCursorPosition)) {
return false;
}
updateText();
return true;
}
@Override
public boolean deleteSurroundingText(int beforeLength, int afterLength) {
// Workaround to capture backspace key. Ref: http://stackoverflow.com/questions>/14560344/android-backspace-in-webview-baseinputconnection
// and https://bugzilla.libsdl.org/show_bug.cgi?id=2265
if (beforeLength > 0 && afterLength == 0) {
// backspace(s)
while (beforeLength-- > 0) {
nativeGenerateScancodeForUnichar('\b');
}
return true;
}
if (!super.deleteSurroundingText(beforeLength, afterLength)) {
return false;
}
updateText();
return true;
}
protected void updateText() {
final Editable content = getEditable();
if (content == null) {
return;
}
String text = content.toString();
int compareLength = Math.min(text.length(), mCommittedText.length());
int matchLength, offset;
/* Backspace over characters that are no longer in the string */
for (matchLength = 0; matchLength < compareLength; ) {
int codePoint = mCommittedText.codePointAt(matchLength);
if (codePoint != text.codePointAt(matchLength)) {
break;
}
matchLength += Character.charCount(codePoint);
}
/* FIXME: This doesn't handle graphemes, like '🌬️' */
for (offset = matchLength; offset < mCommittedText.length(); ) {
int codePoint = mCommittedText.codePointAt(offset);
nativeGenerateScancodeForUnichar('\b');
offset += Character.charCount(codePoint);
}
if (matchLength < text.length()) {
String pendingText = text.subSequence(matchLength, text.length()).toString();
if (!SDLActivity.dispatchingKeyEvent()) {
for (offset = 0; offset < pendingText.length(); ) {
int codePoint = pendingText.codePointAt(offset);
if (codePoint == '\n') {
if (SDLActivity.onNativeSoftReturnKey()) {
return;
}
}
/* Higher code points don't generate simulated scancodes */
if (codePoint > 0 && codePoint < 128) {
nativeGenerateScancodeForUnichar((char)codePoint);
}
offset += Character.charCount(codePoint);
}
}
SDLInputConnection.nativeCommitText(pendingText, 0);
}
mCommittedText = text;
}
public static native void nativeCommitText(String text, int newCursorPosition);
public static native void nativeGenerateScancodeForUnichar(char c);
}
@@ -1,32 +0,0 @@
package org.libsdl.app;
import android.hardware.Sensor;
import android.hardware.SensorEventListener;
import android.hardware.SensorManager;
// This class coordinates synchronized access to sensor manager registration
//
// This prevents a java.util.ConcurrentModificationException exception on
// Android 16, specifically on the Samsung Tab S9 Ultra.
class SDLSensorManager
{
static private SDLSensorManager mManager = new SDLSensorManager();
public static void registerListener(SensorManager manager, SensorEventListener listener, Sensor sensor, int samplingPeriodUs) {
mManager.RegisterListener(manager, listener, sensor, samplingPeriodUs);
}
public static void unregisterListener(SensorManager manager, SensorEventListener listener, Sensor sensor) {
mManager.UnregisterListener(manager, listener, sensor);
}
private synchronized void RegisterListener(SensorManager manager, SensorEventListener listener, Sensor sensor, int samplingPeriodUs) {
manager.registerListener(listener, sensor, samplingPeriodUs, null);
}
private synchronized void UnregisterListener(SensorManager manager, SensorEventListener listener, Sensor sensor) {
manager.unregisterListener(listener, sensor);
}
}
@@ -1,469 +0,0 @@
package org.libsdl.app;
import android.content.Context;
import android.content.pm.ActivityInfo;
import android.graphics.Insets;
import android.hardware.Sensor;
import android.hardware.SensorEvent;
import android.hardware.SensorEventListener;
import android.hardware.SensorManager;
import android.os.Build;
import android.util.DisplayMetrics;
import android.util.Log;
import android.view.Display;
import android.view.InputDevice;
import android.view.KeyEvent;
import android.view.MotionEvent;
import android.view.PointerIcon;
import android.view.Surface;
import android.view.SurfaceHolder;
import android.view.SurfaceView;
import android.view.View;
import android.view.WindowInsets;
import android.view.WindowManager;
import android.view.ScaleGestureDetector;
/**
SDLSurface. This is what we draw on, so we need to know when it's created
in order to do anything useful.
Because of this, that's where we set up the SDL thread
*/
public class SDLSurface extends SurfaceView implements SurfaceHolder.Callback,
View.OnApplyWindowInsetsListener, View.OnKeyListener, View.OnTouchListener,
SensorEventListener, ScaleGestureDetector.OnScaleGestureListener {
private static native void auroraNativeSetSurfaceReady(boolean ready);
// Sensors
protected SensorManager mSensorManager;
protected Display mDisplay;
// Keep track of the surface size to normalize touch events
protected float mWidth, mHeight;
// Is SurfaceView ready for rendering
protected boolean mIsSurfaceReady;
// Is on-screen keyboard visible
protected boolean mKeyboardVisible;
// Pinch events
private final ScaleGestureDetector scaleGestureDetector;
// Startup
protected SDLSurface(Context context) {
super(context);
getHolder().addCallback(this);
scaleGestureDetector = new ScaleGestureDetector(context, this);
setFocusable(true);
setFocusableInTouchMode(true);
requestFocus();
setOnApplyWindowInsetsListener(this);
setOnKeyListener(this);
setOnTouchListener(this);
mDisplay = ((WindowManager)context.getSystemService(Context.WINDOW_SERVICE)).getDefaultDisplay();
mSensorManager = (SensorManager)context.getSystemService(Context.SENSOR_SERVICE);
setOnGenericMotionListener(SDLActivity.getMotionListener());
// Some arbitrary defaults to avoid a potential division by zero
mWidth = 1.0f;
mHeight = 1.0f;
mIsSurfaceReady = false;
}
protected void handlePause() {
enableSensor(Sensor.TYPE_ACCELEROMETER, false);
}
protected void handleResume() {
setFocusable(true);
setFocusableInTouchMode(true);
requestFocus();
setOnApplyWindowInsetsListener(this);
setOnKeyListener(this);
setOnTouchListener(this);
enableSensor(Sensor.TYPE_ACCELEROMETER, true);
}
protected Surface getNativeSurface() {
return getHolder().getSurface();
}
// Called when we have a valid drawing surface
@Override
public void surfaceCreated(SurfaceHolder holder) {
Log.v("SDL", "surfaceCreated()");
auroraNativeSetSurfaceReady(false);
SDLActivity.onNativeSurfaceCreated();
}
// Called when we lose the surface
@Override
public void surfaceDestroyed(SurfaceHolder holder) {
Log.v("SDL", "surfaceDestroyed()");
auroraNativeSetSurfaceReady(false);
// Transition to pause, if needed
SDLActivity.mNextNativeState = SDLActivity.NativeState.PAUSED;
SDLActivity.handleNativeState();
mIsSurfaceReady = false;
SDLActivity.onNativeSurfaceDestroyed();
}
// Called when the surface is resized
@Override
public void surfaceChanged(SurfaceHolder holder,
int format, int width, int height) {
Log.v("SDL", "surfaceChanged()");
if (SDLActivity.mSingleton == null) {
return;
}
mWidth = width;
mHeight = height;
int nDeviceWidth = width;
int nDeviceHeight = height;
float density = 1.0f;
try
{
DisplayMetrics realMetrics = new DisplayMetrics();
mDisplay.getRealMetrics( realMetrics );
nDeviceWidth = realMetrics.widthPixels;
nDeviceHeight = realMetrics.heightPixels;
// Use densityDpi instead of density to more closely match what the UI scale is
density = (float)realMetrics.densityDpi / 160.0f;
} catch(Exception ignored) {
}
synchronized(SDLActivity.getContext()) {
// In case we're waiting on a size change after going fullscreen, send a notification.
SDLActivity.getContext().notifyAll();
}
Log.v("SDL", "Window size: " + width + "x" + height);
Log.v("SDL", "Device size: " + nDeviceWidth + "x" + nDeviceHeight);
SDLActivity.nativeSetScreenResolution(width, height, nDeviceWidth, nDeviceHeight, density, mDisplay.getRefreshRate());
SDLActivity.onNativeResize();
// Prevent a screen distortion glitch,
// for instance when the device is in Landscape and a Portrait App is resumed.
boolean skip = false;
int requestedOrientation = SDLActivity.mSingleton.getRequestedOrientation();
if (requestedOrientation == ActivityInfo.SCREEN_ORIENTATION_PORTRAIT || requestedOrientation == ActivityInfo.SCREEN_ORIENTATION_SENSOR_PORTRAIT) {
if (mWidth > mHeight) {
skip = true;
}
} else if (requestedOrientation == ActivityInfo.SCREEN_ORIENTATION_LANDSCAPE || requestedOrientation == ActivityInfo.SCREEN_ORIENTATION_SENSOR_LANDSCAPE) {
if (mWidth < mHeight) {
skip = true;
}
}
// Special Patch for Square Resolution: Black Berry Passport
if (skip) {
double min = Math.min(mWidth, mHeight);
double max = Math.max(mWidth, mHeight);
if (max / min < 1.20) {
Log.v("SDL", "Don't skip on such aspect-ratio. Could be a square resolution.");
skip = false;
}
}
// Don't skip if we might be multi-window or have popup dialogs
if (skip) {
if (Build.VERSION.SDK_INT >= 24 /* Android 7.0 (N) */) {
skip = false;
}
}
if (skip) {
Log.v("SDL", "Skip .. Surface is not ready.");
mIsSurfaceReady = false;
return;
}
/* If the surface has been previously destroyed by onNativeSurfaceDestroyed, recreate it here */
SDLActivity.onNativeSurfaceChanged();
/* Surface is ready */
mIsSurfaceReady = true;
auroraNativeSetSurfaceReady(true);
SDLActivity.mNextNativeState = SDLActivity.NativeState.RESUMED;
SDLActivity.handleNativeState();
}
// Window inset
@Override
public WindowInsets onApplyWindowInsets(View v, WindowInsets insets) {
if (Build.VERSION.SDK_INT >= 30 /* Android 11 (R) */) {
Insets combined = insets.getInsets(WindowInsets.Type.systemBars() |
WindowInsets.Type.systemGestures() |
WindowInsets.Type.mandatorySystemGestures() |
WindowInsets.Type.tappableElement() |
WindowInsets.Type.displayCutout());
SDLActivity.onNativeInsetsChanged(combined.left, combined.right, combined.top, combined.bottom);
if (insets.isVisible(WindowInsets.Type.ime())) {
if (!mKeyboardVisible) {
mKeyboardVisible = true;
SDLActivity.onNativeScreenKeyboardShown();
}
} else {
if (mKeyboardVisible) {
mKeyboardVisible = false;
SDLActivity.onNativeScreenKeyboardHidden();
}
}
}
// Pass these to any child views in case they need them
return insets;
}
// Key events
@Override
public boolean onKey(View v, int keyCode, KeyEvent event) {
return SDLActivity.handleKeyEvent(v, keyCode, event, null);
}
private float getNormalizedX(float x)
{
if (mWidth <= 1) {
return 0.5f;
} else {
return (x / (mWidth - 1));
}
}
private float getNormalizedY(float y)
{
if (mHeight <= 1) {
return 0.5f;
} else {
return (y / (mHeight - 1));
}
}
// Touch events
@Override
public boolean onTouch(View v, MotionEvent event) {
/* Ref: http://developer.android.com/training/gestures/multi.html */
int touchDevId = event.getDeviceId();
final int pointerCount = event.getPointerCount();
int action = event.getActionMasked();
int pointerId;
int i = 0;
float x,y,p;
if (action == MotionEvent.ACTION_POINTER_UP || action == MotionEvent.ACTION_POINTER_DOWN)
i = event.getActionIndex();
do {
int toolType = event.getToolType(i);
if (toolType == MotionEvent.TOOL_TYPE_MOUSE) {
int buttonState = event.getButtonState();
boolean relative = false;
// We need to check if we're in relative mouse mode and get the axis offset rather than the x/y values
// if we are. We'll leverage our existing mouse motion listener
SDLGenericMotionListener_API14 motionListener = SDLActivity.getMotionListener();
x = motionListener.getEventX(event, i);
y = motionListener.getEventY(event, i);
relative = motionListener.inRelativeMode();
SDLActivity.onNativeMouse(buttonState, action, x, y, relative);
} else if (toolType == MotionEvent.TOOL_TYPE_STYLUS || toolType == MotionEvent.TOOL_TYPE_ERASER) {
pointerId = event.getPointerId(i);
x = event.getX(i);
y = event.getY(i);
p = event.getPressure(i);
if (p > 1.0f) {
// may be larger than 1.0f on some devices
// see the documentation of getPressure(i)
p = 1.0f;
}
// BUTTON_STYLUS_PRIMARY is 2^5, so shift by 4, and apply SDL_PEN_INPUT_DOWN/SDL_PEN_INPUT_ERASER_TIP
int buttonState = (event.getButtonState() >> 4) | (1 << (toolType == MotionEvent.TOOL_TYPE_STYLUS ? 0 : 30));
if ((event.getButtonState() & MotionEvent.BUTTON_TERTIARY) != 0) {
buttonState |= 0x08;
}
SDLActivity.onNativePen(pointerId, SDLActivity.getMotionListener().getPenDeviceType(event.getDevice()), buttonState, action, x, y, p);
} else { // MotionEvent.TOOL_TYPE_FINGER or MotionEvent.TOOL_TYPE_UNKNOWN
pointerId = event.getPointerId(i);
x = getNormalizedX(event.getX(i));
y = getNormalizedY(event.getY(i));
p = event.getPressure(i);
if (p > 1.0f) {
// may be larger than 1.0f on some devices
// see the documentation of getPressure(i)
p = 1.0f;
}
SDLActivity.onNativeTouch(touchDevId, pointerId, action, x, y, p);
}
// Non-primary up/down
if (action == MotionEvent.ACTION_POINTER_UP || action == MotionEvent.ACTION_POINTER_DOWN)
break;
} while (++i < pointerCount);
scaleGestureDetector.onTouchEvent(event);
return true;
}
// Sensor events
protected void enableSensor(int sensortype, boolean enabled) {
// TODO: This uses getDefaultSensor - what if we have >1 accels?
if (enabled) {
SDLSensorManager.registerListener(mSensorManager, this,
mSensorManager.getDefaultSensor(sensortype),
SensorManager.SENSOR_DELAY_GAME);
} else {
SDLSensorManager.unregisterListener(mSensorManager, this,
mSensorManager.getDefaultSensor(sensortype));
}
}
@Override
public void onAccuracyChanged(Sensor sensor, int accuracy) {
// TODO
}
@Override
public void onSensorChanged(SensorEvent event) {
if (event.sensor.getType() == Sensor.TYPE_ACCELEROMETER) {
// Since we may have an orientation set, we won't receive onConfigurationChanged events.
// We thus should check here.
int newRotation;
float x, y;
switch (mDisplay.getRotation()) {
case Surface.ROTATION_0:
default:
x = event.values[0];
y = event.values[1];
newRotation = 0;
break;
case Surface.ROTATION_90:
x = -event.values[1];
y = event.values[0];
newRotation = 90;
break;
case Surface.ROTATION_180:
x = -event.values[0];
y = -event.values[1];
newRotation = 180;
break;
case Surface.ROTATION_270:
x = event.values[1];
y = -event.values[0];
newRotation = 270;
break;
}
if (newRotation != SDLActivity.mCurrentRotation) {
SDLActivity.mCurrentRotation = newRotation;
SDLActivity.onNativeRotationChanged(newRotation);
}
SDLActivity.onNativeAccel(-x / SensorManager.GRAVITY_EARTH,
y / SensorManager.GRAVITY_EARTH,
event.values[2] / SensorManager.GRAVITY_EARTH);
}
}
// Prevent android internal NullPointerException (https://github.com/libsdl-org/SDL/issues/13306)
@Override
public PointerIcon onResolvePointerIcon(MotionEvent event, int pointerIndex) {
try {
return super.onResolvePointerIcon(event, pointerIndex);
} catch (NullPointerException e) {
return null;
}
}
// Captured pointer events for API 26.
@Override
public boolean onCapturedPointerEvent(MotionEvent event)
{
int action = event.getActionMasked();
int pointerCount = event.getPointerCount();
for (int i = 0; i < pointerCount; i++) {
float x, y;
switch (action) {
case MotionEvent.ACTION_SCROLL:
x = event.getAxisValue(MotionEvent.AXIS_HSCROLL, i);
y = event.getAxisValue(MotionEvent.AXIS_VSCROLL, i);
SDLActivity.onNativeMouse(0, action, x, y, false);
return true;
case MotionEvent.ACTION_HOVER_MOVE:
case MotionEvent.ACTION_MOVE:
x = event.getX(i);
y = event.getY(i);
SDLActivity.onNativeMouse(0, action, x, y, true);
return true;
case MotionEvent.ACTION_BUTTON_PRESS:
case MotionEvent.ACTION_BUTTON_RELEASE:
// Change our action value to what SDL's code expects.
if (action == MotionEvent.ACTION_BUTTON_PRESS) {
action = MotionEvent.ACTION_DOWN;
} else { /* MotionEvent.ACTION_BUTTON_RELEASE */
action = MotionEvent.ACTION_UP;
}
x = event.getX(i);
y = event.getY(i);
int button = event.getButtonState();
SDLActivity.onNativeMouse(button, action, x, y, true);
return true;
}
}
return false;
}
@Override
public boolean onScale(ScaleGestureDetector detector) {
float scale = detector.getScaleFactor();
SDLActivity.onNativePinchUpdate(scale);
return true;
}
@Override
public boolean onScaleBegin(ScaleGestureDetector detector) {
SDLActivity.onNativePinchStart();
return true;
}
@Override
public void onScaleEnd(ScaleGestureDetector detector) {
SDLActivity.onNativePinchEnd();
}
}
@@ -1,16 +0,0 @@
#!/usr/bin/env bash
set -euo pipefail
ROOT_DIR="$(cd "$(dirname "$0")/../../.." && pwd)"
SRC_DEFAULT="$ROOT_DIR/build/android-arm64/_deps/sdl-src/android-project/app/src/main/java/org/libsdl/app"
SRC_DIR="${1:-$SRC_DEFAULT}"
DST_DIR="$ROOT_DIR/platforms/android/app/src/main/java/org/libsdl/app"
if [[ ! -d "$SRC_DIR" ]]; then
echo "SDL Java source directory not found: $SRC_DIR" >&2
exit 1
fi
mkdir -p "$DST_DIR"
cp -f "$SRC_DIR"/*.java "$DST_DIR"/
echo "Synced SDL Java sources from $SRC_DIR to $DST_DIR"