mirror of
https://github.com/permissionlesstech/bitchat-android.git
synced 2026-07-25 10:25:19 +00:00
* feat: add product flavors and TorProvider abstraction Introduces build flavors to separate Tor functionality from the standard build, reducing APK size for users who don't need Tor. - Creates `standard` and `tor` product flavors. - The `standard` flavor is the default, lightweight build. - The `tor` flavor includes the Arti (Tor) dependency and is identified by the `.tor` application ID suffix. - Adds a `TorProvider` interface and a `TorProviderFactory` to abstract Tor implementation details between flavors. Prepares architecture for optional Tor support to reduce APK size from 142MB to ~4-5MB for standard builds Related to #454 * Refactor: implement StandardTorProvider and RealTorProvider This commit refactors the Tor integration by introducing a `TorProvider` interface and creating separate implementations for 'tor' and 'standard' product flavors. - The original `TorManager` singleton has been moved into `RealTorProvider` for the 'tor' flavor. - A no-op `StandardTorProvider` is introduced for the 'standard' flavor, which reports Tor as unavailable. - A `TorProviderFactory` is used to create the appropriate provider at runtime based on the build variant. * refactor: migrate to TorProvider abstraction Replaced direct calls to the static `TorManager` with an instance obtained from `TorProviderFactory`. This change allows for different Tor implementations based on build flavors, improving modularity and abstracting the Tor provider logic. Updated `BitchatApplication`, `ChatHeader`, `OkHttpProvider`, and `AboutSheet` to use the new factory pattern for accessing Tor functionalities. * build: add flavor-specific ProGuard rules and CI/CD - Split ProGuard rules: base, standard-specific, tor-specific - Move Arti/Guardian Project rules to proguard-tor.pro - Update CI/CD workflow to build both flavors - Add separate artifact uploads for each flavor - Add descriptive release notes template CI now builds both standard (~4-5MB) and tor (~140MB) APKs." resolves #454 * refactor: centralize network reset logic Extracts the repeated network connection reset logic into a new private function `resetNetworkConnections()`. This change also replaces direct `_statusFlow.value = ...` assignments with the safer `_statusFlow.update { ... }` function to prevent race conditions. * ci: run separate build steps for flavors * feat: disable Tor toggle if not available in build * ci: parallelize builds and add conditional tor lint Optimizes CI workflow: - Parallel matrix builds (4 runners instead of sequential) - Conditional tor lint only when app/src/tor/ changes in PRs - Merged test+lint jobs to reduce setup overhead Reduces CI time by ~50% (8-11 min vs 18-26 min) * refactor: Unify Tor implementation and remove build flavors This commit refactors the Tor integration by removing the `standard` and `tor` product flavors in favor of a single, unified build that always includes a custom-built Arti (Tor) library. Key changes include: * **Removed Build Flavors:** Deleted the `standard` and `tor` product flavors from `build.gradle.kts`, simplifying the build process and CI configuration. * **Unified Tor Manager:** Replaced the `TorProvider` interface and flavor-specific implementations (`StandardTorProvider`, `RealTorProvider`) with a new singleton, `ArtiTorManager`. This class now manages the Arti lifecycle for all builds. * **Custom Arti Wrapper:** Introduced a new `ArtiProxy` class to provide a compatible API wrapper around the custom-built native Arti library (`libarti_android.so`). This replaces the dependency on the external `arti-mobile-ex` library. * **Updated Proguard:** Consolidated and updated Proguard rules into the main `proguard-rules.pro` file to keep the necessary `ArtiTorManager` and native library classes. * **CI/CD Simplification:** Updated GitHub Actions workflows (`release.yml`, `android-build.yml`) to build and release a single APK instead of separate ones for each flavor. * build: Configure ABI filters for debug and release builds For debug builds, include `x86_64` to support emulators. For release builds, only include `arm64-v8a` to minimize the final APK size. * feat: Ignore jniLibs directory This change adds the `app/src/main/jniLibs/` directory to the `.gitignore` file to prevent native libraries from being committed to the repository. * feat: Refine .gitignore for Arti build artifacts Improves the `.gitignore` file by: - Ignoring all `build/` directories except for `tools/arti-build/`. - Adding specific ignores for Arti build artifacts, including the cloned source repository and the Rust build cache directory. * feat: Update arti android native library * feat: add build script and JNI wrapper for Arti Adds a comprehensive build system for creating custom Arti (Tor in Rust) shared libraries for Android. This replaces the dependency on external, outdated AARs with a fully transparent and reproducible build process. Key changes: - Introduces `build-arti.sh`, a script to clone the official Arti repository, apply a JNI wrapper, and build `.so` files for Android. - Adds `ARTI_VERSION` to pin the build to a specific Arti release (v1.7.0). - Implements a new Rust JNI wrapper (`src/lib.rs`) that exposes core functions like `initialize`, `startSocksProxy`, and `stop` to the Android app. - Includes a `Cargo.toml` with release profile optimizations for size (`lto`, `strip`, `opt-level = "z"`). - Provides detailed documentation in `README.md` explaining the build process, prerequisites, and architecture. * build script for mac * consolidate both scripts * improve script --------- Co-authored-by: callebtc <93376500+callebtc@users.noreply.github.com>
494 lines
15 KiB
Rust
494 lines
15 KiB
Rust
use jni::JNIEnv;
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use jni::objects::{JClass, JString, JObject, GlobalRef};
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use jni::sys::{jint, jstring};
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use jni::JavaVM;
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use arti_client::TorClient;
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use arti_client::config::TorClientConfigBuilder;
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use tor_rtcompat::PreferredRuntime;
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use std::sync::{Arc, Mutex, Once};
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use std::path::PathBuf;
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use anyhow::Result;
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// ============================================================================
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// Global State
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// ============================================================================
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/// Global Arti client instance
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static ARTI_CLIENT: Mutex<Option<Arc<TorClient<PreferredRuntime>>>> = Mutex::new(None);
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/// Global Tokio runtime (must persist for Arti to work)
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static TOKIO_RUNTIME: Mutex<Option<tokio::runtime::Runtime>> = Mutex::new(None);
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/// Global JavaVM reference (cached on first JNI call)
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static JAVA_VM: Mutex<Option<JavaVM>> = Mutex::new(None);
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/// Global log callback reference
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static LOG_CALLBACK: Mutex<Option<GlobalRef>> = Mutex::new(None);
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/// Handle to SOCKS server task (for graceful shutdown)
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static SOCKS_TASK: Mutex<Option<tokio::task::JoinHandle<()>>> = Mutex::new(None);
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/// Initialization flag
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static INIT_ONCE: Once = Once::new();
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// ============================================================================
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// Logging Integration
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// ============================================================================
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/// Send log message to Java callback
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fn send_log_to_java(message: String) {
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let vm_opt = JAVA_VM.lock().unwrap();
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let callback_opt = LOG_CALLBACK.lock().unwrap();
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if let (Some(vm), Some(callback)) = (vm_opt.as_ref(), callback_opt.as_ref()) {
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if let Ok(mut env) = vm.attach_current_thread() {
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if let Ok(jmessage) = env.new_string(&message) {
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let _ = env.call_method(
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callback.as_obj(),
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"onLogLine",
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"(Ljava/lang/String;)V",
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&[(&jmessage).into()]
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);
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}
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}
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}
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}
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/// Macro for logging to both Android logcat and Java callback
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macro_rules! log_info {
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($($arg:tt)*) => {{
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let msg = format!($($arg)*);
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android_logger::log(&format!("Arti: {}", msg));
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send_log_to_java(msg);
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}};
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}
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macro_rules! log_error {
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($($arg:tt)*) => {{
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let msg = format!("ERROR: {}", format!($($arg)*));
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android_logger::log(&format!("Arti: {}", msg));
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send_log_to_java(msg);
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}};
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}
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// ============================================================================
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// JNI Functions
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// ============================================================================
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/// Get Arti version string
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#[no_mangle]
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pub extern "C" fn Java_org_torproject_arti_ArtiNative_getVersion(
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env: JNIEnv,
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_class: JClass,
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) -> jstring {
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// Cache JavaVM on first call
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if JAVA_VM.lock().unwrap().is_none() {
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if let Ok(vm) = env.get_java_vm() {
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*JAVA_VM.lock().unwrap() = Some(vm);
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}
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}
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let version = format!("Arti {} (custom build with rustls)", env!("CARGO_PKG_VERSION"));
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let output = env.new_string(version).expect("Couldn't create java string!");
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output.into_raw()
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}
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/// Set log callback for Arti logs
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#[no_mangle]
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pub extern "C" fn Java_org_torproject_arti_ArtiNative_setLogCallback(
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env: JNIEnv,
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_class: JClass,
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callback: JObject,
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) {
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// Cache JavaVM if not already cached
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if JAVA_VM.lock().unwrap().is_none() {
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if let Ok(vm) = env.get_java_vm() {
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*JAVA_VM.lock().unwrap() = Some(vm);
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}
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}
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// Store global reference to callback
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if let Ok(global_ref) = env.new_global_ref(callback) {
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*LOG_CALLBACK.lock().unwrap() = Some(global_ref);
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log_info!("Log callback registered");
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}
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}
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/// Initialize Arti runtime
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#[no_mangle]
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pub extern "C" fn Java_org_torproject_arti_ArtiNative_initialize(
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mut env: JNIEnv,
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_class: JClass,
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data_dir: JString,
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) -> jint {
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// Cache JavaVM if not already cached
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if JAVA_VM.lock().unwrap().is_none() {
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if let Ok(vm) = env.get_java_vm() {
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*JAVA_VM.lock().unwrap() = Some(vm);
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}
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}
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let data_dir_str: String = match env.get_string(&data_dir) {
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Ok(s) => s.into(),
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Err(e) => {
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log_error!("Failed to convert data_dir: {:?}", e);
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return -1;
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}
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};
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log_info!("AMEx: state changed to Initialized");
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log_info!("Initializing Arti with data directory: {}", data_dir_str);
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// Initialize Tokio runtime (once)
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INIT_ONCE.call_once(|| {
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match tokio::runtime::Builder::new_multi_thread()
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.enable_all()
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.build()
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{
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Ok(rt) => {
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log_info!("Tokio runtime created successfully");
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*TOKIO_RUNTIME.lock().unwrap() = Some(rt);
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}
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Err(e) => {
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log_error!("Failed to create Tokio runtime: {:?}", e);
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}
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}
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});
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// Check if runtime exists
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let runtime_guard = TOKIO_RUNTIME.lock().unwrap();
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let runtime = match runtime_guard.as_ref() {
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Some(rt) => rt,
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None => {
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log_error!("Tokio runtime not initialized");
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return -2;
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}
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};
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// Create config with explicit Android paths
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let data_path = PathBuf::from(data_dir_str);
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let cache_dir = data_path.join("cache");
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let state_dir = data_path.join("state");
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// Create directories if they don't exist
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std::fs::create_dir_all(&cache_dir).ok();
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std::fs::create_dir_all(&state_dir).ok();
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let result: Result<()> = runtime.block_on(async {
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log_info!("Creating Arti client...");
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log_info!("Cache dir: {:?}", cache_dir);
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log_info!("State dir: {:?}", state_dir);
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// Create config with Android-specific directories
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let config = TorClientConfigBuilder::from_directories(state_dir, cache_dir)
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.build()?;
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// Create client with Android-specific config
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let client = TorClient::create_bootstrapped(config).await?;
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log_info!("Arti client created successfully");
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// Store client globally
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*ARTI_CLIENT.lock().unwrap() = Some(Arc::new(client));
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Ok(())
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});
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match result {
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Ok(_) => {
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log_info!("Arti initialized successfully");
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0
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}
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Err(e) => {
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log_error!("Failed to initialize Arti: {:?}", e);
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-3
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}
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}
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}
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/// Start SOCKS proxy on specified port
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#[no_mangle]
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pub extern "C" fn Java_org_torproject_arti_ArtiNative_startSocksProxy(
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_env: JNIEnv,
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_class: JClass,
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port: jint,
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) -> jint {
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log_info!("AMEx: state changed to Starting");
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log_info!("Starting SOCKS proxy on port {}", port);
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// Stop any existing SOCKS server first
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if let Some(handle) = SOCKS_TASK.lock().unwrap().take() {
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log_info!("Aborting previous SOCKS server task");
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handle.abort();
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}
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let client_guard = ARTI_CLIENT.lock().unwrap();
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let client = match client_guard.as_ref() {
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Some(c) => Arc::clone(c),
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None => {
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log_error!("Arti client not initialized - call initialize() first");
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return -1;
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}
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};
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drop(client_guard);
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let runtime_guard = TOKIO_RUNTIME.lock().unwrap();
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let runtime = match runtime_guard.as_ref() {
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Some(rt) => rt,
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None => {
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log_error!("Tokio runtime not initialized");
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return -2;
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}
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};
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// Try to bind IMMEDIATELY to detect port conflicts before returning
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let addr = format!("127.0.0.1:{}", port);
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// Use block_on to synchronously attempt binding
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let bind_result = runtime.block_on(async {
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tokio::net::TcpListener::bind(&addr).await
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});
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let listener = match bind_result {
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Ok(l) => {
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log_info!("SOCKS proxy bound to {}", addr);
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l
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}
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Err(e) => {
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log_error!("Failed to bind SOCKS proxy to {}: {:?}", addr, e);
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return -3;
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}
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};
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// Now spawn the background task with the already-bound listener
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let handle = runtime.spawn(async move {
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log_info!("SOCKS proxy listening on {}", addr);
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log_info!("Sufficiently bootstrapped; system SOCKS now functional");
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// Signal bootstrap completion to bitchat-android (expected by ArtiTorManager)
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// This sets bootstrapPercent to 100% and stops inactivity restarts
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tokio::time::sleep(tokio::time::Duration::from_millis(500)).await;
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log_info!("We have found that guard [scrubbed] is usable.");
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// Accept connections
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loop {
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match listener.accept().await {
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Ok((stream, peer_addr)) => {
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log_info!("SOCKS connection from: {}", peer_addr);
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let client_clone = Arc::clone(&client);
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tokio::spawn(async move {
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if let Err(e) = handle_socks_connection(stream, client_clone).await {
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log_error!("SOCKS connection error: {:?}", e);
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}
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});
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}
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Err(e) => {
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log_error!("Failed to accept SOCKS connection: {:?}", e);
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break; // Exit loop on error
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}
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}
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}
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log_info!("SOCKS proxy task exiting");
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});
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// Store handle for cleanup
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*SOCKS_TASK.lock().unwrap() = Some(handle);
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log_info!("SOCKS proxy started on port {}", port);
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0
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}
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/// Handle a single SOCKS connection
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async fn handle_socks_connection(
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mut stream: tokio::net::TcpStream,
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client: Arc<TorClient<PreferredRuntime>>,
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) -> Result<()> {
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use tokio::io::{AsyncReadExt, AsyncWriteExt};
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// Simple SOCKS5 handshake
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let mut buf = [0u8; 512];
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// Read version + methods
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let n = stream.read(&mut buf).await?;
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if n < 2 {
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return Err(anyhow::anyhow!("Invalid SOCKS handshake"));
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}
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// Send "no auth required" response
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stream.write_all(&[0x05, 0x00]).await?;
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// Read request
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let n = stream.read(&mut buf).await?;
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if n < 10 {
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return Err(anyhow::anyhow!("Invalid SOCKS request"));
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}
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// Parse SOCKS5 request: VER(1) CMD(1) RSV(1) ATYP(1) DST.ADDR DST.PORT(2)
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let version = buf[0];
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let cmd = buf[1];
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let atyp = buf[3];
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if version != 0x05 {
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return Err(anyhow::anyhow!("Unsupported SOCKS version: {}", version));
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}
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if cmd != 0x01 {
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// Only support CONNECT command
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stream.write_all(&[0x05, 0x07, 0x00, 0x01, 0, 0, 0, 0, 0, 0]).await?;
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return Err(anyhow::anyhow!("Unsupported SOCKS command: {}", cmd));
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}
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// Parse target address and port
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let (target_host, target_port) = match atyp {
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0x01 => {
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// IPv4: 4 bytes
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let ip = format!("{}.{}.{}.{}", buf[4], buf[5], buf[6], buf[7]);
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let port = u16::from_be_bytes([buf[8], buf[9]]);
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(ip, port)
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}
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0x03 => {
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// Domain name: length byte + domain
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let len = buf[4] as usize;
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if n < 5 + len + 2 {
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return Err(anyhow::anyhow!("Invalid domain name length"));
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}
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let domain = String::from_utf8_lossy(&buf[5..5 + len]).to_string();
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let port = u16::from_be_bytes([buf[5 + len], buf[5 + len + 1]]);
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(domain, port)
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}
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0x04 => {
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// IPv6: 16 bytes + 2 bytes port = 22 bytes total
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if n < 22 {
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stream.write_all(&[0x05, 0x01, 0x00, 0x01, 0, 0, 0, 0, 0, 0]).await?;
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return Err(anyhow::anyhow!("Truncated IPv6 request"));
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}
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let ip = format!(
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"{:02x}{:02x}:{:02x}{:02x}:{:02x}{:02x}:{:02x}{:02x}:{:02x}{:02x}:{:02x}{:02x}:{:02x}{:02x}:{:02x}{:02x}",
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buf[4], buf[5], buf[6], buf[7], buf[8], buf[9], buf[10], buf[11],
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buf[12], buf[13], buf[14], buf[15], buf[16], buf[17], buf[18], buf[19]
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);
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let port = u16::from_be_bytes([buf[20], buf[21]]);
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(ip, port)
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}
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_ => {
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stream.write_all(&[0x05, 0x08, 0x00, 0x01, 0, 0, 0, 0, 0, 0]).await?;
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return Err(anyhow::anyhow!("Unsupported address type: {}", atyp));
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}
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};
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log_info!("SOCKS5 CONNECT to {}:{}", target_host, target_port);
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// Establish Tor connection
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let tor_stream = match client.connect((target_host.as_str(), target_port)).await {
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Ok(s) => s,
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Err(e) => {
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log_error!("Failed to connect through Tor: {:?}", e);
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// Send SOCKS5 error: general failure
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stream.write_all(&[0x05, 0x05, 0x00, 0x01, 0, 0, 0, 0, 0, 0]).await?;
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return Err(e.into());
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}
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};
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log_info!("Tor connection established to {}:{}", target_host, target_port);
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// Send SOCKS5 success response
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stream.write_all(&[0x05, 0x00, 0x00, 0x01, 0, 0, 0, 0, 0, 0]).await?;
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// Bidirectional data forwarding
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let (mut client_read, mut client_write) = stream.split();
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let (mut tor_read, mut tor_write) = tor_stream.split();
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let client_to_tor = async {
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tokio::io::copy(&mut client_read, &mut tor_write).await
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};
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let tor_to_client = async {
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tokio::io::copy(&mut tor_read, &mut client_write).await
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};
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// Run both directions concurrently, exit when either completes
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tokio::select! {
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result = client_to_tor => {
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if let Err(ref e) = result {
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log_error!("Client->Tor copy error: {:?}", e);
|
|
}
|
|
}
|
|
result = tor_to_client => {
|
|
if let Err(ref e) = result {
|
|
log_error!("Tor->Client copy error: {:?}", e);
|
|
}
|
|
}
|
|
};
|
|
|
|
log_info!("SOCKS connection closed for {}:{}", target_host, target_port);
|
|
|
|
Ok(())
|
|
}
|
|
|
|
/// Stop Arti and cleanup
|
|
#[no_mangle]
|
|
pub extern "C" fn Java_org_torproject_arti_ArtiNative_stop(
|
|
_env: JNIEnv,
|
|
_class: JClass,
|
|
) -> jint {
|
|
log_info!("AMEx: state changed to Stopping");
|
|
log_info!("Stopping Arti...");
|
|
|
|
// Abort SOCKS proxy task (releases the port)
|
|
if let Some(handle) = SOCKS_TASK.lock().unwrap().take() {
|
|
log_info!("Aborting SOCKS server task");
|
|
handle.abort();
|
|
}
|
|
|
|
// Give the abort a moment to complete and release the port
|
|
if let Some(rt) = TOKIO_RUNTIME.lock().unwrap().as_ref() {
|
|
rt.block_on(async {
|
|
tokio::time::sleep(tokio::time::Duration::from_millis(100)).await;
|
|
});
|
|
}
|
|
|
|
// NOTE: We do NOT clear ARTI_CLIENT here!
|
|
// The TorClient can be reused for multiple SOCKS proxy start/stop cycles.
|
|
// Only clear it if you want to force full reinitialization.
|
|
|
|
// Uncomment this line only if you want to force reinitialization on every start:
|
|
// *ARTI_CLIENT.lock().unwrap() = None;
|
|
|
|
log_info!("AMEx: state changed to Stopped");
|
|
log_info!("Arti stopped successfully");
|
|
|
|
0
|
|
}
|
|
|
|
// ============================================================================
|
|
// Android Logger (simple implementation)
|
|
// ============================================================================
|
|
|
|
mod android_logger {
|
|
use std::ffi::CString;
|
|
|
|
#[allow(non_camel_case_types)]
|
|
type c_int = i32;
|
|
|
|
#[allow(non_camel_case_types)]
|
|
type c_char = i8;
|
|
|
|
extern "C" {
|
|
fn __android_log_write(prio: c_int, tag: *const c_char, text: *const c_char) -> c_int;
|
|
}
|
|
|
|
const ANDROID_LOG_INFO: c_int = 4;
|
|
|
|
pub fn log(message: &str) {
|
|
unsafe {
|
|
let tag = CString::new("ArtiNative").unwrap();
|
|
let text = CString::new(message).unwrap();
|
|
__android_log_write(ANDROID_LOG_INFO, tag.as_ptr() as *const c_char, text.as_ptr() as *const c_char);
|
|
}
|
|
}
|
|
}
|