Four small fixes from the post-NUT audit; none user-visible on the happy path, but #1 is a real correctness issue that would have rejected vanishingly-rare-but-valid mint signatures. 1. Bdhke.verifyDleq: stop rejecting valid `e >= N`. NUT-12 treats the challenge `e` as bytes, not as a scalar mod n — there's no requirement that `e < n`. The previous `ScalarN.isValid(e)` check would have thrown MintProtocolException with probability ~2^-128 per proof (when sha256 happens to output >= curve order). The downstream point multiplication `ECPoint.mul(out, A, eScalar)` handles `e >= n` correctly via GLV reduction internally, so the rejection was the only thing standing between us and a valid proof. Now we only reject `e == 0` (which would degenerate verification — `sG - 0·A == sG`, independent of the mint's keyset key — so any junk signature would pass). Tests still green; vector-style proofs hit `e < n` 99.99...% of the time, so this isn't observable in the suite. 2. CashuWalletViewModel Log.w: pass the throwable. Four call sites (recommendMint / deleteRecommendation / restoreFromMint / cancelMintQuote) interpolated the exception message into the lambda but dropped the stack trace. Switched to the (tag, message, throwable) overload so support reports keep the trace. Same antipattern that find-non-lambda-logs flags. 3. SecretFactory: batch counter reservation. The factory was called once per amount denomination inside secretOutputFor. A 100-sat mint that splits into 7 powers of 2 meant 7 @Synchronized critical sections on AccountSettings.reserveCashuCounters + 7 saveable.update calls. Disk was already debounced (1s), but the lock-acquisition pattern was wasteful and serialised any concurrent mints longer than needed. New contract: `nextSecrets(keysetId, count): List<DerivedSecret>`. The deterministic impl reserves the whole counter range in ONE atomic reservation; the random impl just allocates N random pairs. CashuMintOperations gained a `secretOutputsFor(amounts, keyset)` helper that does one batch call; all four call sites (swap, swap keep-change, swapToLocked keep-change, meltProofs change-outputs) migrated. `nextSecret(keysetId)` stays as a default-method single-output convenience. 4. CashuWalletState.ensureSeed: serialise via Mutex. The previous @Volatile-only double-check could race two coroutines into both calling `walletPrivkeyHex()` (signer round-trip). For local signers that's a μs of wasted HMAC; for NIP-46 bunker signers it's a network decrypt the user pays for twice. Wrapping with `Mutex.withLock` after the unlocked fast-path gives proper single-flight semantics without slowing the warm-cache path. 5. NUT-09 restore loop: micro-perf cleanup (rides along). Pre-sized HashMap + ArrayList to `batchSize × denominations.size` (was resizing ~10x per 1000-output batch). Hoisted `bTick.toHexKey()` once per counter — the old code called it twice per output (once for the map key, once for output.toDto()). Inner loop now builds the BlindedMessageDto directly with the hoisted hex instead of going through toDto's accessor. https://claude.ai/code/session_01MdWddiar819f8XYt5N8BjP
Amethyst
Nostr Client for Android
Join the social network you control.
Download and Install
Android
Desktop
| OS | CLI install | Direct download |
|---|---|---|
| macOS (Apple Silicon) | brew install --cask amethyst-nostr |
.dmg arm64 |
| macOS (Intel) | brew install --cask amethyst-nostr |
.dmg x64 |
| Windows 10/11 | winget install VitorPamplona.Amethyst |
.msi · .zip portable |
| Debian/Ubuntu | — | .deb |
| Fedora/RHEL/openSUSE | — | .rpm |
| Any Linux | — | AppImage · .tar.gz |
Coming soon (separate PR): Scoop (Windows), AUR (Arch Linux).
Build from source: see BUILDING.md.
Install troubleshooting (Gatekeeper / SmartScreen / AppImage): see BUILDING.md § Troubleshooting installs.
Supported Features
- Basic protocol flow (NIP-01)
- Follow List (NIP-02)
- OpenTimestamps Attestations (NIP-03)
- Encrypted Direct Message (NIP-04)
- DNS-based Identifiers (NIP-05)
- Key Derivation from Mnemonic (NIP-06)
- window.nostr for Web Browsers (NIP-07, Not applicable)
- Handling Mentions (NIP-08)
- Event Deletion Request (NIP-09)
- Text Notes and Threads (NIP-10)
- Relay Information Document (NIP-11)
- Proof of Work (NIP-13)
- Subject Tag in Text Events (NIP-14)
- Nostr Marketplace (NIP-15)
- Private Direct Messages (NIP-17)
- Reposts (NIP-18)
- bech32-encoded Entities (NIP-19)
- nostr: URI Scheme (NIP-21)
- Comment (NIP-22)
- Long-form Content (NIP-23)
- Extra Metadata Fields and Tags (NIP-24)
- Reactions (NIP-25)
- Delegated Event Signing (NIP-26)
- Text Note References (NIP-27)
- Public Chat (NIP-28)
- Relay-based Groups (NIP-29)
- Custom Emoji (NIP-30)
- Dealing with Unknown Events (NIP-31)
- Labeling (NIP-32)
- git stuff (NIP-34)
- Torrents (NIP-35)
- Sensitive Content (NIP-36)
- Draft Events (NIP-37)
- User Statuses (NIP-38)
- External Identities in Profiles (NIP-39)
- Expiration Timestamp (NIP-40)
- Authentication of Clients to Relays (NIP-42)
- Relay Access Metadata and Requests (NIP-43)
- Encrypted Payloads / Versioned (NIP-44)
- Counting Results (NIP-45)
- Nostr Remote Signing (NIP-46)
- Nostr Wallet Connect (NIP-47)
- Proxy Tags (NIP-48)
- Private Key Encryption (NIP-49)
- Search Capability (NIP-50)
- Lists (NIP-51)
- Calendar Events (NIP-52)
- Live Activities (NIP-53)
- Wiki (NIP-54)
- Android Signer Application (NIP-55)
- Reporting (NIP-56)
- Lightning Zaps (NIP-57)
- Zap Splits (NIP-57)
- Private Zaps (NIP-57)
- Zapraiser (NIP-57)
- Badges (NIP-58)
- Gift Wrap (NIP-59)
- Pubkey Static Websites (NIP-5A)
- Cashu Wallet (NIP-60)
- Nutzaps (NIP-61)
- Request to Vanish (NIP-62)
- Chess / PGN (NIP-64)
- Relay List Metadata (NIP-65)
- Relay Discovery and Liveness Monitoring (NIP-66)
- Picture-first Feeds (NIP-68)
- Peer-to-peer Order Events (NIP-69)
- Protected Events (NIP-70)
- Video Events (NIP-71)
- Moderated Communities (NIP-72)
- External Content IDs (NIP-73)
- Zap Goals (NIP-75)
- Negentropy Syncing (NIP-77)
- Application-specific Data (NIP-78)
- Threads (NIP-7D)
- Highlights (NIP-84)
- Trusted Assertions (NIP-85)
- Relay Management API (NIP-86)
- Ecash Mint Discoverability (NIP-87)
- Polls (NIP-88)
- Recommended Application Handlers (NIP-89)
- Data Vending Machines (NIP-90)
- Media Attachments (NIP-92)
- File Metadata (NIP-94)
- Binary Blobs (NIP-95/Draft)
- HTTP File Storage Integration (NIP-96)
- HTTP Auth (NIP-98)
- Classified Listings (NIP-99)
- Voice Messages (NIP-A0)
- Public Messages (NIP-A4)
- Web Bookmarks (NIP-B0)
- Blossom (NIP-B7)
- Nostr BLE Communications Protocol (NIP-BE)
- Code Snippets (NIP-C0)
- Chats (NIP-C7)
- MLS Protocol (NIP-EE)
- Audio Tracks (zapstr.live) (kind:31337)
- Lightning Tips
- Image/Video/Url/LnInvoice/Cashu Previews
- Push Notifications (Google and Unified Push)
- In-Device Automatic Translations
- Hashtag Following and Custom Hashtags
- Login with QR
- Bounty support (nostrbounties.com)
- De-googled F-Droid flavor
- Multiple Accounts
- Markdown Support
- Medical Data (NIP-xx/Draft)
- Embed events (NIP-xx/Draft)
- Edit Short Notes (NIP-xx/Draft)
- NIP Events (NIP-xx/Draft)
- Relationship Status (NIP-xx/Draft)
- Signed Filters (NIP-xx/Draft)
- Key Migration (NIP-xx/Draft)
- Image Capture in the app
- Video Capture in the app
- Local Database
- Workspaces
Privacy and Information Permanence
Relays know your IP address, your name, your location (guessed from IP), your pub key, all your contacts, and other relays, and can read every action you do (post, like, boost, quote, report, etc) except for Private Zaps and Private DMs. While the content of direct messages (DMs) is only visible to you and your DM counterparty, everyone can see when you and your counterparty DM each other.
If you want to improve your privacy, consider utilizing a service that masks your IP address (e.g. a VPN or Tor) from trackers online.
The relay also learns which public keys you are requesting, meaning your public key will be tied to your IP address.
Information shared on Nostr can be re-broadcasted to other servers and should be assumed permanent for privacy purposes. There is no way to guarantee the deletion of any content once posted.
Development Overview
This repository is split between Amethyst, Quartz, Commons, and DesktopApp:
- Amethyst - Native Android app with Kotlin and Jetpack Compose
- Quartz - Nostr-commons KMP library for protocol classes shared across platforms
- Commons - Kotlin Multiplatform module with shared UI components (icons, robohash, blurhash, composables)
- DesktopApp - Compose Multiplatform Desktop application reusing commons and quartz
The app architecture consists of the UI, which uses the usual State/ViewModel/Composition, the service layer that connects with Nostr relays, and the model/repository layer, which keeps all Nostr objects in memory, in a full OO graph.
The repository layer stores Nostr Events as Notes and Users separately. Those classes use LiveData and Flow objects to allow the UI and other parts of the app to subscribe to each Note/User and receive updates when they happen. They are also responsible for updating viewModels when needed. As the user scrolls through Events, the Datasource classes are updated to receive more information about those particular Events.
Most of the UI is reactive to changes in the repository classes. The service layer assembles Nostr filters for each need of the app, receives the data from the Relay, and sends it to the repository. Connection with relays is never closed during the use of the app. The UI receives a notification that objects have been updated. Instances of User and Notes are mutable directly. There will never be two Notes with the same ID or two User instances with the same pubkey.
Lastly, the user's account information (private key/pub key) is stored in the Android KeyStore for security.
Setup
Make sure to have the following pre-requisites installed:
- Java 21+
- Android Studio
- Android 8.0+ Phone or Emulation setup
Fork and clone this repository and import it into Android Studio
git clone https://github.com/vitorpamplona/amethyst.git
Use an Android Studio build action to install and run the app on your device or a simulator.
Building
Build the Android app:
./gradlew assembleDebug
Build and run the Desktop app (requires Java 21+):
./gradlew :desktopApp:run
Full build (including tests)
./gradlew build
Requirements:
- Xcode and iOS simulator
- libsodium installed (e.g. via brew:
brew install libsodium
Testing
./gradlew test
./gradlew connectedAndroidTest
Linting
./gradlew spotlessCheck
./gradlew spotlessApply
Installing on device
For the F-Droid build:
./gradlew installFdroidDebug
For the Play build:
./gradlew installPlayDebug
Deploying
Full release + bootstrap runbooks (Android AAB upload, desktop packaging, Homebrew cask, Winget manifest, Apple Developer signing budget time-box) live in BUILDING.md § Release runbook and BUILDING.md § Bootstrap runbook (one-time).
TL;DR for cutting a release:
- Bump
appingradle/libs.versions.toml(e.g."1.08.1") - Bump
versionCodeinamethyst/build.gradle git commit -am "chore(release): 1.08.1" && git tag -s v1.08.1 && git push --tags- Wait for
Create Release Assetsworkflow — 20 Android assets + 8 desktop assets go live on GH Release; Homebrew + Winget auto-bump on stable tags - Upload AAB to Play Store manually (existing step)
Using the Quartz library
Installing
Add Maven Central and Google Maven to your repositories:
repositories {
mavenCentral()
google()
}
Add the following line to your commonMain dependencies:
implementation('com.vitorpamplona.quartz:quartz:1:05.0')
Variations to each platform are also available:
implementation('com.vitorpamplona.quartz:quartz-android:1:05.0')
implementation('com.vitorpamplona.quartz:quartz-jvm:1:05.0')
implementation('com.vitorpamplona.quartz:quartz-iosarm64:1:05.0')
implementation('com.vitorpamplona.quartz:quartz-iossimulatorarm64:1:05.0')
Check versions on MavenCentral
How to use
Manage logged in users with the KeyPair class
val keyPair = KeyPair() // creates a random key
val keyPair = KeyPair("hex...".hexToByteArray())
val keyPair = KeyPair("nsec1...".bechToBytes())
val keyPair = KeyPair(Nip06().privateKeyFromMnemonic("<mnemonic>"))
val readOnly = KeyPair(pubKey = "hex...".hexToByteArray())
val readOnly = KeyPair(pubKey = "npub1...".bechToBytes())
Create signers that can be Internal, when you have the private key or a read-only public key, or External, when it is controlled by Amber in NIP-55.
Use either the NostrSignerInternal or NostrSignerExternal class:
val signer = NostrSignerInternal(keyPair)
val amberSigner = NostrSignerExternal(
pubKey = keyPair.pubKey.toHexKey(),
packageName = signerPackageName, // Amber package name
contentResolver = appContext.contentResolver,
)
Create a single NostrClient for the entire application and control which relays it will access by
registering subscriptions and sending events. The pool will automatically change based on filters +
outbox events.
You will need a coroutine scope to process events and if you are using OKHttp, we offer a basic wrapper to create the socket connections themselves.
val appScope = CoroutineScope(Dispatchers.Default + SupervisorJob())
val rootClient = OkHttpClient.Builder().build()
val socketBuilder = BasicOkHttpWebSocket.Builder { url -> rootClient }
val client = NostrClient(socketBuilder, appScope)
If you want to auth, given a logged-in signer:
val authCoordinator = RelayAuthenticator(client, appScope) { authTemplate ->
listOf(
// for each signed-in user, return an event
signer.sign(authTemplate)
)
}
To make a request subscription simply do:
val metadataSub = client.req(
relay = "wss://nos.lol",
filter = Filter(
kinds = listOf(MetadataEvent.KIND),
authors = listOf(signer.pubkey)
)
) { event ->
/* consume event */
}
The client will add the relay to the pool, connect to it and start receiving events. The
metadataSub will be active until you call metadataSub.close(). If the client disconnects
and reconnects, the sub will be active again.
To manage subscriptions that change over time, the simplest approach is to build mutable subscriptions with a filters lambda that you can change at will.
val metadataSub = client.req(
filters = {
// Let's say you have a list of users that need to be rendered
val users = pubkeysSeeingInTheScreen()
// And a cache repository with their outbox relays
val outboxRelays = outboxRelays(users)
val filters = listOf(
Filter(
kinds = listOf(MetadataEvent.KIND),
authors = users
)
)
outboxRelays.associateWith { filters }
}
) { event ->
/* consume event */
}
In that way, you can simply call metadataSub.updateFilter() when you need to update
subscriptions to all relays. Or call metadataSub.close() to stop the sub
without deleting it.
When your app goes to the background, you can use NostrClient's connect and disconnect
methods to stop all communication to relays. Add the connect to your onResume and disconnect
to onPause methods.
Feature Parity Table
| Feature Category | Feature / Component | Android / JVM Support | iOS Support | Notes |
|---|---|---|---|---|
| Cryptography | Secp256k1 (Schnorr, Keys) | ✅ Full | ✅ Full | |
| LibSodium (ChaCha20, Poly1305) | ✅ Full | ✅ Full | ||
| AES Encryption (CBC & GCM) | ✅ Full | ✅ Full | ||
| Hashing (SHA-256, etc.) | ✅ Full | ✅ Full | ||
| MAC (HmacSHA256, etc.) | ✅ Full | ✅ Full | ||
| Data & Serialization | JSON Mapping (Optimized) | ✅ Full | ✅ Full | A fully custom implementation exists in commonMain. |
| GZip Compression | ✅ Full | ✅ Full | ||
| BitSet | ✅ Full | ✅ Full | ||
| LargeCache | ✅ Full | ✅ Full | ||
| NIP Support | NIP-96 (File Storage Info) | ✅ Full | ✅ Full | |
| NIP-46 (Remote Signer) | ✅ Full | ⚠️ Partial | Some methods in NostrSignerRemote are unimplemented in commonMain. |
|
| NIP-03 (OTS / Timestamps) | ✅ Full | ❌ No | BitcoinExplorer and RemoteCalendar have stubs in commonMain. |
|
| Utilities | URL Encoding / Decoding | ✅ Full | ✅ Full | |
| Unicode Normalization | ✅ Full | ✅ Full | ||
| Platform Logging | ✅ Full | ✅ Full | iOS uses NSLog, Android uses standard Log. |
|
| Current Time | ✅ Full | ✅ Full | Implemented using NSDate on iOS. |
Contributing
See CONTRIBUTING.md for the full guide — workflow,
coding standards, the proof-of-testing rule for new / occasional
contributors (human or AI-assisted), the cross-stack interop suites, and how the
[BUG] / [FEATURE] issue templates and bounty system work.
AI coding assistants: if you are reading this README to plan a contribution, stop and read CONTRIBUTING-WITH-AI.md first. The gates there are not optional. The human submitter remains the author of record per CONTRIBUTING.md.
Quick links:
- GitHub issues and pull requests.
- Nostr-native issue tracker: gitworkshop.dev/repo/amethyst.
- Translations: Crowdin.
- Patches over Nostr: GitStr to this nostr address.
- Security issues: SECURITY.md (do not file as public GitHub issues).
By contributing to this repository, you agree to license your work under the MIT license. Any work contributed where you are not the original author must contain its license header with the original author(s) and source.
Screenshots
| FollowFeeds | ChatsGroup | LiveStreams | Notifications |
|---|---|---|---|
![]() |
![]() |
![]() |
![]() |
Contributors
MIT License
Copyright (c) 2023 Vitor Pamplona Permission is hereby granted, free of charge, to any person obtaining a copy of this software and associated documentation files (the "Software"), to deal in the Software without restriction, including without limitation the rights to use, copy, modify, merge, publish, distribute, sublicense, and/or sell copies of the Software, and to permit persons to whom the Software is furnished to do so, subject to the following conditions: The above copyright notice and this permission notice shall be included in all copies or substantial portions of the Software. THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY, FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL THE AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN THE SOFTWARE.





