heyaim 750abafaad Re-sync suggestion popups when the composer text is set in code
When a suggestion popup is open and the app sets the composer text
itself, the popup stays up over the new text. The popups are updated
only from the field's text-change handler, which a code-driven change
does not run. PR #847 fixed this for the send path, the case #250
reported. While working on that fix, two more places with the same older
bug were found: tapping a nickname in the message list, which inserts
"@name " into the field, and switching private conversations, which
restores that conversation's draft.

Each site now calls updateCommandSuggestions and updateMentionSuggestions
with the text it just set, the same calls the text-change handler makes
while typing. The popup state then always matches the field content: an
inserted mention ends with a space, so an open popup hides, and a restored
draft that starts with "/" brings the command popup back the way typing it
would.

The iOS app already works this way: its composer drives autocomplete
from onChange(of: messageText), which runs for code-driven changes too,
so a mention insert or a restored draft re-syncs the popup there.

Tests in CommandProcessorTest pin the inserted-mention shape, the
trailing-space rule, and the draft-restore behavior. The unit tests do not
drive Compose, so they cover the functions the two sites call rather than
the sites themselves.

Full Android unit suite green; lint and the debug build pass.
2026-08-01 19:14:05 -05:00
2026-07-31 17:40:37 +02:00
2025-07-08 20:37:46 +02:00
2025-07-08 20:37:46 +02:00

icon_128x128@2x

bitchat for Android

A decentralized peer-to-peer messaging app with dual transport architecture: local Bluetooth mesh networks for offline communication and internet-based Nostr protocol for global reach. No accounts, no phone numbers, no central servers.

This is the Android implementation of bitchat, fully protocol-compatible with the iOS version for cross-platform mesh communication.

bitchat.free

GitHub Releases

Get it on Google Play

See it in action

Offline mesh conversation Geohash globe picker
Active four-peer Bitchat mesh conversation with an image, voice messages, and text messages Bitchat geohash location picker showing the whole Earth and geohash grid

License

This project is released into the public domain. See the LICENSE file for details.

Features

  • Dual Transport Architecture: Bluetooth LE mesh for offline messaging, Nostr relays for internet-based messaging
  • Location-Based Channels: Geographic chat rooms using geohash coordinates over Nostr relays
  • Intelligent Message Routing: Automatically chooses the best transport, with queuing and retry when a peer is unreachable
  • End-to-End Encryption: Noise Protocol (XX pattern, X25519 + ChaCha20-Poly1305) for private messages over the mesh
  • Decentralized Mesh Network: Automatic peer discovery and multi-hop relay over Bluetooth LE (max 7 hops)
  • Wi-Fi Aware Transport: Higher-bandwidth local mesh on supported devices
  • Channel Chats: Topic-based group messaging with optional password protection (Argon2id + AES-256-GCM)
  • IRC-Style Commands: Familiar /join, /msg, /who style interface
  • Tor Support: Built-in Tor (Arti) for private internet connectivity
  • Emergency Wipe: Triple-tap to instantly clear all data
  • Cross-Platform: Binary protocol compatible with bitchat on iOS and macOS

Technical Architecture

Bluetooth Mesh Network (Offline)

  • Direct peer-to-peer within Bluetooth range, multi-hop relay through nearby devices
  • Noise Protocol sessions with forward secrecy; peer identities derived from static keys
  • Compact binary packet format with fragmentation, TTL routing, and deduplication
  • Adaptive duty cycling and connection limits for battery efficiency
  • Foreground service keeps the mesh alive within Android background execution limits

Nostr Protocol (Internet)

  • Global reach via public relays, geohash-based location channels
  • Private messages fall back to Nostr for mutual favorites when the mesh is unavailable
  • Ephemeral keys per geohash area

Android Stack

  • Kotlin, Jetpack Compose (Material 3), MVVM
  • Coroutines and Flow for all networking and state
  • Core components: MeshForegroundService (persistent connectivity), BluetoothMeshService / WifiAwareMeshService (transports), UnifiedMeshService (transport selection), NoiseSessionManager (encryption sessions), MessageRouter (mesh/Nostr routing with outbox retry)

Building

Requires Android Studio and the Android SDK (API 26+).

git clone https://github.com/permissionlesstech/bitchat-android.git
cd bitchat-android
./gradlew assembleDebug

Install on a connected device:

adb install -r app/build/outputs/apk/debug/app-debug.apk

The app requests Bluetooth, location (required for BLE scanning), and notification permissions at runtime.

Release APKs and the Android App Bundle can be rebuilt byte-for-byte in the pinned Linux container. Maintainers should follow the Android release guide. See Reproducible builds for the build trust model and public GitHub/Google Play verification procedures.

Testing

# Unit tests
./gradlew test

# Lint
./gradlew lint

# Instrumented tests (requires a device or emulator)
./gradlew connectedAndroidTest

Note that BLE mesh behavior is difficult to emulate; protocol and session logic is covered by unit tests, while radio-level behavior needs real devices.

Description
bluetooth mesh chat, IRC vibes
Readme
Languages
Kotlin 86.1%
Java 9.9%
Python 2.5%
Shell 1.1%
Rust 0.3%
Other 0.1%