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68 changed files with 13002 additions and 831 deletions
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@@ -73,7 +73,7 @@ Private group members receive the group's name, roster, key epoch, and encrypted
Internet-backed features are optional. When enabled or used:
- Private fallback messages use encrypted NIP-17 gift wraps. Relays can observe event and network metadata but not the message plaintext.
- Private fallback messages use BitChat's app-specific encrypted envelopes. This format is not NIP-17, NIP-44, or NIP-59 compatible. Relays can observe the recipient public-key tag, event timing and size, and network metadata, but not the message plaintext or stable sender identity.
- Public location-channel messages, notes, notices, and presence include a geohash tag, event kind, timestamp, and a public key. A geohash reveals an approximate area; finer precision reveals a smaller area.
- The optional mesh bridge publishes bridge-enabled public mesh messages and presence to a neighborhood rendezvous cell. Those messages are public to participants and relays for that cell. A per-message “nearby only” choice prevents that message from crossing the bridge.
- Bridge courier drops contain opaque end-to-end encrypted envelopes and a rotating recipient tag. Relays still observe timing and network metadata.
@@ -103,7 +103,7 @@ Private and public features use different protections:
- Mesh private sessions use Noise XX with X25519, ChaCha20-Poly1305, and SHA-256.
- Private group messages use ChaCha20-Poly1305; group state and relevant mesh packets use Ed25519 signatures.
- Nostr events use secp256k1 Schnorr signatures. NIP-44 v2 private payloads use secp256k1 key agreement, HKDF-SHA256, and XChaCha20-Poly1305.
- Nostr events use secp256k1 Schnorr signatures. BitChat private envelopes use secp256k1 key agreement, HKDF-SHA256 with a BitChat-specific domain separator, and XChaCha20-Poly1305. The envelope format is proprietary, only interoperates with BitChat clients, and does not provide forward secrecy against later compromise of the recipient's static Nostr private key.
- The persistent private-message outbox uses ChaCha20-Poly1305 with a key held in the keychain. Some other protected local identity state uses AES-GCM.
- Public mesh, bridge, geohash, and board content is signed or authenticated as appropriate but is intentionally not confidential.
+5 -1
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@@ -63,7 +63,11 @@ let package = Package(
// Only the vector fixture: declaring the whole "Noise"
// directory would claim its .swift test files as resources
// and silently drop them from compilation.
.process("Noise/NoiseTestVectors.json")
.process("Noise/NoiseTestVectors.json"),
// Frozen output produced by the released 733098bb private-DM
// implementation; proves receive compatibility independently
// of the refactored legacy generator.
.process("Nostr/Fixtures")
]
)
]
+44 -3
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@@ -19,7 +19,7 @@ This project is released into the public domain. See the [LICENSE](LICENSE) file
- **Intelligent Message Routing**: Automatically chooses best transport (Bluetooth → Nostr fallback)
- **Decentralized Mesh Network**: Automatic peer discovery and multi-hop message relay over Bluetooth LE
- **Privacy First**: No accounts, no phone numbers, no persistent identifiers
- **Private Message End-to-End Encryption**: [Noise Protocol](https://noiseprotocol.org) for mesh, NIP-17 for Nostr
- **Private Message End-to-End Encryption**: [Noise Protocol](https://noiseprotocol.org) for mesh, BitChat private envelopes for Nostr fallback
- **IRC-Style Commands**: Familiar `/slap`, `/msg`, `/who` style interface
- **Universal App**: Native support for iOS and macOS
- **Emergency Wipe**: Triple-tap to instantly clear all data
@@ -44,9 +44,50 @@ BitChat uses a **hybrid messaging architecture** with two complementary transpor
- **Global Reach**: Connect with users worldwide via internet relays
- **Location Channels**: Geographic chat rooms using geohash coordinates
- **290+ Relay Network**: Distributed across the globe for reliability
- **NIP-17 Encryption**: Gift-wrapped private messages for internet privacy
- **BitChat Private Envelopes**: App-specific encrypted private messages over Nostr relays
- **Ephemeral Keys**: Fresh cryptographic identity per geohash area
BitChat's private-envelope format is proprietary and is **not** NIP-17,
NIP-44, or NIP-59 compatible. It uses Nostr as a relay transport but only
interoperates with BitChat clients. New envelopes use provisional,
BitChat-specific public kind 1402 (not a formally reserved Nostr kind),
encrypted inner kinds 1403/1404, and the `bitchat-pm-v1:` content prefix.
For mixed-version delivery, clients publish both the primary kind-1402
envelope and a compatibility kind-1059 copy. There is no date-based cutoff:
kind 1059 must remain enabled until a coordinated iOS/Android release confirms
that supported older clients have migrated. Receivers subscribe to both kinds
and deduplicate the authenticated embedded BitChat payload.
Private-envelope migration compatibility:
| Sender | Receiver | Delivery path |
| --- | --- | --- |
| New iOS | New iOS | Kind 1402 is primary; the kind-1059 twin is deduplicated |
| New iOS | Released iOS | Compatibility kind 1059 |
| New iOS | Current Android | Compatibility kind 1059 |
| Released iOS | New iOS | Kind 1059 with the released empty inner-tag shape |
| Current Android | New iOS | Kind 1059 with exactly the authenticated recipient `p` tag |
New kind-1402 envelopes require an empty inner tag list. The Android recipient
tag exception is intentionally confined to legacy kind 1059 and accepts only
the exact addressed recipient. Mailbox subscriptions cover the 24-hour
delivery window plus Android's full 48-hour timestamp randomization and 15
minutes of clock skew. Recovery uses
one independent 500-event relay filter per wire kind so either format cannot
consume the other's result budget.
The two outbound migration copies are admitted to the relay queue as one
protected batch. Queue pressure evicts ephemeral traffic first, never one copy
of a private pair; if protected capacity is exhausted, the entire new pair is
rejected as a whole. User-message rejection becomes a visible failed delivery;
acknowledgements and favorite notifications retain the exact pair in a
process-wide 256-entry bounded retry queue. A sustained outage beyond that
bound evicts the oldest whole control pair with an explicit warning, never half
a pair.
If either socket write fails, the same queued pair remains pending and both
copies are replayed on the replacement connection. A terminal relay target is
pruned after bounded retries so one dead relay cannot wedge healthy delivery.
### Channel Types
#### `mesh #bluetooth`
@@ -80,7 +121,7 @@ Private messages use **intelligent transport selection**:
2. **Nostr Fallback** (when Bluetooth unavailable)
- Uses recipient's Nostr public key
- NIP-17 gift-wrapping for privacy
- BitChat's app-specific private-envelope encryption
- Routes through global relay network
3. **Smart Queuing** (when neither available)
+10 -4
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@@ -25,7 +25,7 @@ bitchat is a decentralized, peer-to-peer messaging application for secure, priva
Two transports implement a common `Transport` interface and are coordinated by a `MessageRouter`:
* **BLE mesh** — every device is simultaneously a GATT central and peripheral, relaying packets in a controlled flood. No infrastructure, pairing, or accounts.
* **Nostr** — private messages to mutual favorites travel as NIP-17 gift-wrapped events over public relays (over Tor where enabled), bridging separate meshes through the internet.
* **Nostr** — private messages to mutual favorites travel in BitChat's app-specific encrypted envelopes over public relays (over Tor where enabled), bridging separate meshes through the internet.
The router prefers a live mesh link, falls back to Nostr, and engages the courier system when neither can deliver promptly.
@@ -78,7 +78,9 @@ Courier envelopes are sealed to the recipient's *static* key with the one-way No
### 5.3 Nostr Path
Private messages to mutual favorites are wrapped per NIP-17/NIP-59: a rumor (kind 14) sealed (kind 13) and gift-wrapped (kind 1059) under a throwaway ephemeral key, so relays learn neither sender nor content.
Private messages to mutual favorites use BitChat's proprietary private-envelope protocol. An unsigned inner message (kind 1404) is encrypted and placed in a sender-signed seal (kind 1403); that seal is encrypted again inside a public envelope (kind 1402) signed by a one-time key. Kind 1402 is a provisional BitChat-specific assignment, not a formally reserved Nostr kind. Each encrypted content field is `bitchat-pm-v1:` followed by base64url of a 24-byte nonce, XChaCha20-Poly1305 ciphertext, and its 16-byte tag. Keys come from secp256k1 ECDH and HKDF-SHA256 with a BitChat-specific domain separator.
This format is **not NIP-17, NIP-44, or NIP-59 compatible** and interoperates only with BitChat clients. The outer `p` tag exposes the recipient's Nostr public key to relays; the stable sender identity and plaintext remain inside authenticated ciphertext. New-format seal and envelope timestamps are randomized up to 15 minutes into the past, while the actual message timestamp is encrypted. Legacy Android envelopes can carry public-layer timestamps randomized across the preceding 48 hours. The protocol does not provide forward secrecy: compromise of the recipient's static Nostr private key can expose stored envelopes.
## 6. Store and Forward
@@ -105,7 +107,11 @@ Public broadcast messages are cached (1000 packets) and reconciled between peers
### 6.4 Nostr Mailboxes
Gift-wrapped messages rest on Nostr relays; clients re-subscribe with a 24-hour lookback on reconnect, covering the both-devices-offline case for mutual favorites whenever either side touches the internet.
BitChat private envelopes rest on Nostr relays; clients re-subscribe across the 24-hour delivery window plus the full 48-hour timestamp randomization used by deployed Android clients and 15 minutes of clock skew (72 hours 15 minutes total). During the rolling format migration, clients subscribe to both the provisional BitChat-specific kind 1402 and historical kind 1059. Recovery places the kinds in separate filters within one REQ, each with an independent 500-event limit, so traffic in one format cannot starve the other. Each logical payload is published first in the primary kind-1402 format and then as a compatibility legacy copy for older iOS and current Android clients. There is no calendar cutoff: legacy publication and reception remain until a coordinated cross-platform release confirms supported clients have migrated. Bounded dedup of the authenticated embedded payload collapses the migration pair at receivers.
The relay send queue treats those two events as one protected batch. Capacity pressure removes ephemeral events before regular traffic and never evicts only one private-envelope copy. A queue containing only protected batches rejects a new pair as a whole: user messages surface a failed delivery, while acknowledgements and favorite notifications retain the exact pair in one process-wide 256-entry bounded-backoff retry queue shared by account and short-lived geohash transports. Sustained control-payload overflow evicts the oldest whole pair with an explicit warning rather than growing memory or splitting formats. After either socket write fails, the same pair remains pending and both copies are replayed on the replacement connection. Terminal relay targets are pruned after bounded connection retries; a batch that succeeded elsewhere retires normally, while an all-target failure returns to the transport's failure/retry policy. Receive-side dedup suppresses the replay if one copy had already reached the relay.
Released iOS legacy envelopes use an empty inner tag list. Current Android legacy envelopes use exactly one inner `p` tag naming the recipient. The kind-1059 decoder accepts only those two shapes after authenticating the outer recipient and sender-signed seal; alternate recipients, duplicate tags, and extra tags are rejected. Kind 1402 remains strict and permits no inner tags.
### 6.5 Delivery Metrics
@@ -127,7 +133,7 @@ Bare local counters (deposits, handovers, sprays, opens, outbox flushes and drop
* **Flooding abuse** is bounded by TTL clamps, deduplication, per-depositor quotas, connect-rate limits, and announce-rate limiting.
* **Replay** of public broadcasts is bounded by the 6-hour acceptance window plus deduplication; private payloads are protected by Noise nonces.
* **Metadata.** BLE proximity is inherently observable; ephemeral IDs and daily-rotating courier tags limit long-term correlation. Nostr traffic can ride Tor.
* **No forward secrecy for sealed mail** (§5.2) is the main cryptographic trade-off of the offline path.
* **No forward secrecy for sealed mail or Nostr envelopes** (§5.25.3) means compromise of a recipient's static key can expose retained ciphertext addressed to that key.
## 9. Future Work
+4 -4
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@@ -265,10 +265,10 @@ final class PrivateConversationModel: ObservableObject {
let headerPeerID = chatViewModel.getShortIDForNoiseKey(conversationPeerID)
let peer = chatViewModel.getPeer(byID: headerPeerID)
let displayName = resolveDisplayName(for: conversationPeerID, headerPeerID: headerPeerID, peer: peer)
// Geo DMs are always routed over Nostr (NIP-17); their nostr_ keys
// never resolve to a reachable mesh peer, so resolveAvailability would
// report .offline. Report .nostrAvailable so the header shows the
// globe instead of a misleading "offline" tag.
// Geo DMs are always routed through BitChat private envelopes over
// Nostr; their nostr_ keys never resolve to a reachable mesh peer, so
// resolveAvailability would report .offline. Report .nostrAvailable
// so the header shows the globe instead of a misleading "offline" tag.
let availability = conversationPeerID.isGeoDM
? .nostrAvailable
: resolveAvailability(for: headerPeerID, peer: peer)
+22 -1
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@@ -141,6 +141,16 @@ final class NoiseSessionManager {
}
}
/// Whether this peer has an inbound ordinary XX responder that still
/// needs message 3 before its receive keys can become authoritative.
func isAwaitingResponderHandshakeCompletion(for peerID: PeerID) -> Bool {
managerQueue.sync {
guard let session = sessions[peerID] else { return false }
return session.role == .responder
&& session.getState() == .handshaking
}
}
/// Transfers one bounded recovery generation to whatever ordinary XX
/// handshake currently owns the peer, or starts the generation's single
/// retry. The request token prevents stale transport callbacks from
@@ -1121,12 +1131,22 @@ final class NoiseSessionManager {
/// the exact session object that authenticated these bytes.
func decryptWithSessionGeneration(
_ ciphertext: Data,
from peerID: PeerID
from peerID: PeerID,
establishedGenerationIsReady: (UUID) -> Bool = { _ in true },
authorizeDecrypt: () throws -> Void = {}
) throws -> (plaintext: Data, sessionGeneration: UUID) {
try managerQueue.sync {
if let session = sessions[peerID],
session.isEstablished(),
let generation = sessionGenerations[peerID] {
// Keep the generation lease across the transport-readiness
// check and decrypt. Promotion/restoration needs this queue's
// barrier, so no new receive nonce can be consumed before BLE
// installs state for the exact generation.
guard establishedGenerationIsReady(generation) else {
throw NoiseEncryptionError.transportGenerationNotReady
}
try authorizeDecrypt()
return (try session.decrypt(ciphertext), generation)
}
@@ -1138,6 +1158,7 @@ final class NoiseSessionManager {
responder.role == .responder,
responder.getState() == .handshaking,
let quarantined = quarantinedTransports[peerID] {
try authorizeDecrypt()
return (
try quarantined.session.decrypt(ciphertext),
quarantined.generation
+2 -1
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@@ -1,7 +1,8 @@
import Foundation
import P256K
/// Manages Nostr identity (secp256k1 keypair) for NIP-17 private messaging
/// Manages the secp256k1 identity used by BitChat's Nostr relay features,
/// including the proprietary private-envelope transport.
struct NostrIdentity: Codable {
let privateKey: Data
let publicKey: Data
+445 -231
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@@ -1,4 +1,3 @@
import BitLogger
import Foundation
import CryptoKit
import P256K
@@ -7,16 +6,31 @@ import Security
// Note: This file depends on Data extension from BinaryEncodingUtils.swift
// Make sure BinaryEncodingUtils.swift is included in the target
/// NIP-17 Protocol Implementation for Private Direct Messages
/// BitChat's private-envelope protocol transported over Nostr relays.
///
/// This is deliberately BitChat-specific and is not NIP-17, NIP-44, or NIP-59.
/// It uses Nostr events and secp256k1 identities, but its XChaCha20-Poly1305
/// payload layout is proprietary and interoperates only with BitChat clients.
struct NostrProtocol {
/// Nostr event kinds
enum EventKind: Int {
case metadata = 0
case textNote = 1
case dm = 14 // NIP-17 DM rumor kind
case seal = 13 // NIP-17 sealed event
case giftWrap = 1059 // NIP-59 gift wrap
// Compatibility for BitChat releases that incorrectly emitted the
// proprietary payload under standard NIP kinds. Kind 1059 continues
// to be published and read until a coordinated cross-platform release
// explicitly removes it; all three legacy layers remain readable.
case legacyNIP59Seal = 13
case legacyNIP17DirectMessage = 14
case legacyNIP59GiftWrap = 1059
// Provisional BitChat-specific regular event kinds. These are not
// formally reserved by the Nostr kind registry. Only
// `privateEnvelope` is published; message and seal exist solely
// inside ciphertext.
case privateEnvelope = 1402
case privateSeal = 1403
case privateMessage = 1404
case ephemeralEvent = 20000
case geohashPresence = 20001
case deletion = 5 // NIP-09 event deletion request
@@ -25,145 +39,290 @@ struct NostrProtocol {
/// its NIP-40 expiration the whole point is store-and-forward.
case courierDrop = 1401
}
/// Prefix for BitChat private-envelope ciphertext. The suffix is
/// base64url(nonce24 || ciphertext || poly1305Tag).
static let privateEnvelopeContentPrefix = "bitchat-pm-v1:"
/// Bound work before Base64 decoding either encrypted layer. Current
/// private messages are normally only a few KiB; 64 KiB leaves ample
/// migration headroom without allowing an addressed relay event to drive
/// unbounded allocation.
static let maximumPrivateEnvelopeCiphertextBytes = 64 * 1024
/// Bound the inner authenticated message JSON before allocation/parsing.
/// This is intentionally an envelope limit, not the generic composer
/// limit. Raising it alone would not make larger private-message packets
/// compatible with released readers; callers must surface a rejected
/// packet or envelope as a failed send.
static let maximumPrivateEnvelopePlaintextBytes = 32 * 1024
/// The outer authenticated seal JSON contains a Base64-encoded encrypted
/// copy of the inner JSON, so it needs expansion headroom of its own. Keep
/// the layer-specific cap below the public ciphertext ceiling.
private static let maximumPrivateEnvelopeSealPlaintextBytes = 48 * 1024
/// New clients subscribe to the provisional BitChat-specific kind and the
/// compatibility legacy kind so both sides of a rolling rollout can
/// recover stored messages. Do not remove kind 1059 here until all
/// supported iOS and Android releases have migrated.
static let acceptedPrivateEnvelopeKinds = [
EventKind.privateEnvelope.rawValue,
EventKind.legacyNIP59GiftWrap.rawValue
]
private enum PrivateEnvelopeWireFormat {
case bitchatV1
case legacyMislabelledV2
init?(outerKind: Int) {
switch outerKind {
case EventKind.privateEnvelope.rawValue:
self = .bitchatV1
case EventKind.legacyNIP59GiftWrap.rawValue:
self = .legacyMislabelledV2
default:
return nil
}
}
var messageKind: EventKind {
switch self {
case .bitchatV1: .privateMessage
case .legacyMislabelledV2: .legacyNIP17DirectMessage
}
}
var sealKind: EventKind {
switch self {
case .bitchatV1: .privateSeal
case .legacyMislabelledV2: .legacyNIP59Seal
}
}
var envelopeKind: EventKind {
switch self {
case .bitchatV1: .privateEnvelope
case .legacyMislabelledV2: .legacyNIP59GiftWrap
}
}
var contentPrefix: String {
switch self {
case .bitchatV1: NostrProtocol.privateEnvelopeContentPrefix
case .legacyMislabelledV2: "v2:"
}
}
var hkdfSalt: Data {
switch self {
case .bitchatV1: Data("bitchat-private-envelope-v1".utf8)
case .legacyMislabelledV2: Data()
}
}
var hkdfInfo: Data {
switch self {
case .bitchatV1: Data()
case .legacyMislabelledV2: Data("nip44-v2".utf8)
}
}
}
/// Create a NIP-17 private message
static func createPrivateMessage(
/// Create a BitChat private envelope for relay transport.
static func createPrivateEnvelope(
content: String,
recipientPubkey: String,
senderIdentity: NostrIdentity
) throws -> NostrEvent {
// Creating private message
// 1. Create the rumor (unsigned event)
let rumor = NostrEvent(
try createPrivateEnvelope(
content: content,
recipientPubkey: recipientPubkey,
senderIdentity: senderIdentity,
format: .bitchatV1
)
}
/// Events to publish for one logical private payload. The primary
/// BitChat-specific format is always first and a legacy copy follows for
/// clients that still subscribe only to kind 1059. There is deliberately
/// no date-based cutoff: removal requires a coordinated iOS/Android
/// release after supported old clients have migrated. Both encrypt the
/// exact same embedded BitChat payload, so receive-side logical-payload
/// dedup collapses the pair.
static func createPrivateEnvelopePublicationBatch(
content: String,
recipientPubkey: String,
senderIdentity: NostrIdentity
) throws -> [NostrEvent] {
let primary = try createPrivateEnvelope(
content: content,
recipientPubkey: recipientPubkey,
senderIdentity: senderIdentity
)
let compatibilityCopy = try createPrivateEnvelope(
content: content,
recipientPubkey: recipientPubkey,
senderIdentity: senderIdentity,
format: .legacyMislabelledV2
)
return [primary, compatibilityCopy]
}
private static func createPrivateEnvelope(
content: String,
recipientPubkey: String,
senderIdentity: NostrIdentity,
format: PrivateEnvelopeWireFormat,
messageTags: [[String]] = []
) throws -> NostrEvent {
// 1. Create the unsigned inner BitChat message.
let message = NostrEvent(
pubkey: senderIdentity.publicKeyHex,
createdAt: Date(),
kind: .dm, // NIP-17: DM rumor kind 14
tags: [],
kind: format.messageKind,
tags: messageTags,
content: content
)
// 2. Seal the rumor (encrypt to recipient) and sign it with the SENDER'S
// real identity key. NIP-17 requires the seal be signed by the sender
// so the recipient can authenticate who sent the message; signing with
// a throwaway key leaves DMs forgeable/impersonatable.
// 2. Encrypt the message to the recipient and sign the private seal
// with the sender's stable Nostr identity for sender authentication.
let senderKey = try senderIdentity.schnorrSigningKey()
let sealedEvent = try createSeal(
rumor: rumor,
let sealedEvent = try createPrivateSeal(
message: message,
recipientPubkey: recipientPubkey,
senderKey: senderKey
senderKey: senderKey,
format: format
)
// 3. Gift wrap the sealed event with a throwaway ephemeral key (the wrap
// layer hides the sender's identity from relays; createGiftWrap mints
// its own ephemeral key internally).
let giftWrap = try createGiftWrap(
// 3. Encrypt the seal under a one-time key so the public envelope does
// not reveal the stable sender identity.
return try createPrivateEnvelopeEvent(
seal: sealedEvent,
recipientPubkey: recipientPubkey
recipientPubkey: recipientPubkey,
format: format
)
// Created gift wrap
return giftWrap
}
/// Decrypt a received NIP-17 message
/// Returns the content, sender pubkey, and the actual message timestamp (not the randomized gift wrap timestamp)
static func decryptPrivateMessage(
giftWrap: NostrEvent,
/// Decrypt a BitChat private envelope. Legacy proprietary envelopes that
/// older BitChat releases placed under kinds 1059/13/14 are accepted only
/// through the format-isolated receive path.
static func decryptPrivateEnvelope(
envelope: NostrEvent,
recipientIdentity: NostrIdentity
) throws -> (content: String, senderPubkey: String, timestamp: Int) {
// Starting decryption
// 1. Unwrap the gift wrap
let seal: NostrEvent
do {
seal = try unwrapGiftWrap(
giftWrap: giftWrap,
recipientKey: recipientIdentity.schnorrSigningKey()
)
// Successfully unwrapped gift wrap
} catch {
SecureLogger.error("❌ Failed to unwrap gift wrap: \(error)", category: .session)
throw error
}
// 2. Authenticate the seal. The seal MUST be signed by the sender's real
// identity key (NIP-17); without this check a DM is forgeable by anyone
// who knows the recipient's npub. Verify the seal's own signature.
guard seal.isValidSignature() else {
SecureLogger.error("❌ Rejecting DM: seal signature is missing or invalid", category: .session)
throw NostrError.invalidEvent
}
// 3. Open the seal
let rumor: NostrEvent
do {
rumor = try openSeal(
seal: seal,
recipientKey: recipientIdentity.schnorrSigningKey()
)
// Successfully opened seal
} catch {
SecureLogger.error("❌ Failed to open seal: \(error)", category: .session)
throw error
}
// 4. The sender claimed inside the rumor must match the key that actually
// signed the seal, otherwise the sender field is unauthenticated and
// spoofable.
guard seal.pubkey == rumor.pubkey else {
SecureLogger.error("❌ Rejecting DM: rumor pubkey does not match seal signer", category: .session)
throw NostrError.invalidEvent
}
// Return the seal signer's pubkey as the authenticated sender.
return (content: rumor.content, senderPubkey: seal.pubkey, timestamp: rumor.created_at)
let layers = try decodePrivateEnvelopeLayers(
envelope: envelope,
recipientIdentity: recipientIdentity
)
return (
content: layers.message.content,
senderPubkey: layers.seal.pubkey,
timestamp: layers.message.created_at
)
}
#if DEBUG
static func createPrivateMessageWithInvalidSealSignatureForTesting(
static func createPrivateEnvelopeWithInvalidSealSignatureForTesting(
content: String,
recipientPubkey: String,
senderIdentity: NostrIdentity
) throws -> NostrEvent {
let rumor = NostrEvent(
let format = PrivateEnvelopeWireFormat.bitchatV1
let message = NostrEvent(
pubkey: senderIdentity.publicKeyHex,
createdAt: Date(),
kind: .dm,
kind: format.messageKind,
tags: [],
content: content
)
var seal = try createSeal(
rumor: rumor,
var seal = try createPrivateSeal(
message: message,
recipientPubkey: recipientPubkey,
senderKey: senderIdentity.schnorrSigningKey()
senderKey: senderIdentity.schnorrSigningKey(),
format: format
)
seal.sig = String(repeating: "0", count: 128)
return try createGiftWrap(seal: seal, recipientPubkey: recipientPubkey)
return try createPrivateEnvelopeEvent(
seal: seal,
recipientPubkey: recipientPubkey,
format: format
)
}
static func createPrivateMessageWithMismatchedSealRumorPubkeyForTesting(
static func createPrivateEnvelopeWithMismatchedSealMessagePubkeyForTesting(
content: String,
recipientPubkey: String,
rumorIdentity: NostrIdentity,
messageIdentity: NostrIdentity,
sealSignerIdentity: NostrIdentity
) throws -> NostrEvent {
let rumor = NostrEvent(
pubkey: rumorIdentity.publicKeyHex,
let format = PrivateEnvelopeWireFormat.bitchatV1
let message = NostrEvent(
pubkey: messageIdentity.publicKeyHex,
createdAt: Date(),
kind: .dm,
kind: format.messageKind,
tags: [],
content: content
)
let seal = try createSeal(
rumor: rumor,
let seal = try createPrivateSeal(
message: message,
recipientPubkey: recipientPubkey,
senderKey: sealSignerIdentity.schnorrSigningKey()
senderKey: sealSignerIdentity.schnorrSigningKey(),
format: format
)
return try createGiftWrap(seal: seal, recipientPubkey: recipientPubkey)
return try createPrivateEnvelopeEvent(
seal: seal,
recipientPubkey: recipientPubkey,
format: format
)
}
static func createPrivateEnvelopeWithInnerTagsForTesting(
content: String,
recipientPubkey: String,
senderIdentity: NostrIdentity,
innerMessageTags: [[String]]
) throws -> NostrEvent {
try createPrivateEnvelope(
content: content,
recipientPubkey: recipientPubkey,
senderIdentity: senderIdentity,
format: .bitchatV1,
messageTags: innerMessageTags
)
}
static func createLegacyPrivateEnvelopeForTesting(
content: String,
recipientPubkey: String,
senderIdentity: NostrIdentity,
innerMessageTags: [[String]] = []
) throws -> NostrEvent {
// Current Android legacy envelopes use exactly one recipient `p` tag
// on the unsigned inner kind-14 event; released iOS envelopes use no
// inner tags. Tests pass the Android shape explicitly so this helper
// cannot silently make the production encoder depend on that quirk.
try createPrivateEnvelope(
content: content,
recipientPubkey: recipientPubkey,
senderIdentity: senderIdentity,
format: .legacyMislabelledV2,
messageTags: innerMessageTags
)
}
static func decodePrivateEnvelopeLayersForTesting(
envelope: NostrEvent,
recipientIdentity: NostrIdentity
) throws -> (seal: NostrEvent, message: NostrEvent) {
try decodePrivateEnvelopeLayers(
envelope: envelope,
recipientIdentity: recipientIdentity
)
}
static func decodePrivateEnvelopeEventJSONForTesting(_ json: String) throws -> NostrEvent {
try decodePrivateEnvelopeEventJSON(json)
}
#endif
@@ -400,151 +559,207 @@ struct NostrProtocol {
// MARK: - Private Methods
private static func createSeal(
rumor: NostrEvent,
private static func createPrivateSeal(
message: NostrEvent,
recipientPubkey: String,
senderKey: P256K.Schnorr.PrivateKey
senderKey: P256K.Schnorr.PrivateKey,
format: PrivateEnvelopeWireFormat
) throws -> NostrEvent {
let rumorJSON = try rumor.jsonString()
let encrypted = try encrypt(
plaintext: rumorJSON,
plaintext: message.jsonString(),
recipientPubkey: recipientPubkey,
senderKey: senderKey
senderKey: senderKey,
format: format,
maximumPlaintextBytes: maximumPrivateEnvelopePlaintextBytes
)
let seal = NostrEvent(
pubkey: Data(senderKey.xonly.bytes).hexEncodedString(),
createdAt: randomizedTimestamp(),
kind: .seal,
createdAt: randomizedPastTimestamp(),
kind: format.sealKind,
tags: [],
content: encrypted
)
// Sign the seal with the sender's Schnorr private key
return try seal.sign(with: senderKey)
}
private static func createGiftWrap(
seal: NostrEvent,
recipientPubkey: String
) throws -> NostrEvent {
let sealJSON = try seal.jsonString()
// Create new ephemeral key for gift wrap
let wrapKey = try P256K.Schnorr.PrivateKey()
// Creating gift wrap with ephemeral key
// Encrypt the seal with the new ephemeral key (not the seal's key)
private static func createPrivateEnvelopeEvent(
seal: NostrEvent,
recipientPubkey: String,
format: PrivateEnvelopeWireFormat
) throws -> NostrEvent {
// A fresh signing/encryption key for every public envelope keeps the
// stable sender identity inside ciphertext.
let envelopeKey = try P256K.Schnorr.PrivateKey()
let encrypted = try encrypt(
plaintext: sealJSON,
plaintext: seal.jsonString(),
recipientPubkey: recipientPubkey,
senderKey: wrapKey // Use the gift wrap ephemeral key
senderKey: envelopeKey,
format: format,
maximumPlaintextBytes: maximumPrivateEnvelopeSealPlaintextBytes
)
let giftWrap = NostrEvent(
pubkey: Data(wrapKey.xonly.bytes).hexEncodedString(),
createdAt: randomizedTimestamp(),
kind: .giftWrap,
tags: [["p", recipientPubkey]], // Tag recipient
let envelope = NostrEvent(
pubkey: Data(envelopeKey.xonly.bytes).hexEncodedString(),
createdAt: randomizedPastTimestamp(),
kind: format.envelopeKind,
tags: [["p", recipientPubkey]],
content: encrypted
)
// Sign the gift wrap with the wrap Schnorr private key
return try giftWrap.sign(with: wrapKey)
return try envelope.sign(with: envelopeKey)
}
private static func unwrapGiftWrap(
giftWrap: NostrEvent,
recipientKey: P256K.Schnorr.PrivateKey
) throws -> NostrEvent {
// Unwrapping gift wrap
let decrypted = try decrypt(
ciphertext: giftWrap.content,
senderPubkey: giftWrap.pubkey,
recipientKey: recipientKey
)
guard let data = decrypted.data(using: .utf8),
let sealDict = try JSONSerialization.jsonObject(with: data) as? [String: Any] else {
private static func decodePrivateEnvelopeLayers(
envelope: NostrEvent,
recipientIdentity: NostrIdentity
) throws -> (seal: NostrEvent, message: NostrEvent) {
guard envelope.content.utf8.count <= maximumPrivateEnvelopeCiphertextBytes else {
throw NostrError.invalidCiphertext
}
guard let format = PrivateEnvelopeWireFormat(outerKind: envelope.kind),
envelope.tags == [["p", recipientIdentity.publicKeyHex]],
envelope.isValidSignature() else {
throw NostrError.invalidEvent
}
let seal = try NostrEvent(from: sealDict)
// Unwrapped seal
return seal
}
private static func openSeal(
seal: NostrEvent,
recipientKey: P256K.Schnorr.PrivateKey
) throws -> NostrEvent {
let decrypted = try decrypt(
let recipientKey = try recipientIdentity.schnorrSigningKey()
let sealJSON = try decrypt(
ciphertext: envelope.content,
senderPubkey: envelope.pubkey,
recipientKey: recipientKey,
format: format,
maximumPlaintextBytes: maximumPrivateEnvelopeSealPlaintextBytes
)
let seal = try decodePrivateEnvelopeEventJSON(
sealJSON,
maximumBytes: maximumPrivateEnvelopeSealPlaintextBytes
)
guard seal.kind == format.sealKind.rawValue,
seal.tags.isEmpty,
seal.isValidSignature() else {
throw NostrError.invalidEvent
}
let messageJSON = try decrypt(
ciphertext: seal.content,
senderPubkey: seal.pubkey,
recipientKey: recipientKey
recipientKey: recipientKey,
format: format,
maximumPlaintextBytes: maximumPrivateEnvelopePlaintextBytes
)
guard let data = decrypted.data(using: .utf8),
let rumorDict = try JSONSerialization.jsonObject(with: data) as? [String: Any] else {
let message = try decodePrivateEnvelopeEventJSON(
messageJSON,
maximumBytes: maximumPrivateEnvelopePlaintextBytes
)
// The inner message is intentionally unsigned; sender authentication
// comes from the seal. Bind its claimed sender and custom kind to that
// authenticated layer before exposing content.
guard message.kind == format.messageKind.rawValue,
validInnerMessageTags(
message.tags,
format: format,
recipientPubkey: recipientIdentity.publicKeyHex
),
message.sig == nil,
seal.pubkey == message.pubkey else {
throw NostrError.invalidEvent
}
return try NostrEvent(from: rumorDict)
return (seal, message)
}
// MARK: - Encryption (NIP-44 v2)
/// Released iOS legacy envelopes used no inner tags, while current
/// Android legacy envelopes use exactly the authenticated recipient tag.
/// Accept only those two historical shapes for kind 1059. The new kind
/// 1402 format remains strict and rejects every inner tag.
private static func validInnerMessageTags(
_ tags: [[String]],
format: PrivateEnvelopeWireFormat,
recipientPubkey: String
) -> Bool {
switch format {
case .bitchatV1:
return tags.isEmpty
case .legacyMislabelledV2:
return tags.isEmpty || tags == [["p", recipientPubkey]]
}
}
private static func decodePrivateEnvelopeEventJSON(
_ json: String,
maximumBytes: Int = maximumPrivateEnvelopePlaintextBytes
) throws -> NostrEvent {
// Check UTF-8 size before allocating Data or invoking the general JSON
// parser. `decrypt` enforces the same cap on authenticated bytes; this
// local guard keeps the parser boundary explicit and independently
// testable.
guard json.utf8.count <= maximumBytes else {
throw NostrError.invalidCiphertext
}
guard let data = json.data(using: .utf8),
let dictionary = try JSONSerialization.jsonObject(with: data) as? [String: Any] else {
throw NostrError.invalidEvent
}
return try NostrEvent(from: dictionary)
}
// MARK: - BitChat private-envelope encryption
private static func encrypt(
plaintext: String,
recipientPubkey: String,
senderKey: P256K.Schnorr.PrivateKey
senderKey: P256K.Schnorr.PrivateKey,
format: PrivateEnvelopeWireFormat,
maximumPlaintextBytes: Int
) throws -> String {
guard let recipientPubkeyData = Data(hexString: recipientPubkey) else {
throw NostrError.invalidPublicKey
}
// Encrypting message (NIP-44 v2: XChaCha20-Poly1305, versioned)
// Derive shared secret
let sharedSecret = try deriveSharedSecret(
privateKey: senderKey,
publicKey: recipientPubkeyData
)
// Derive NIP-44 v2 symmetric key (HKDF-SHA256 with label in info)
let key = try deriveNIP44V2Key(from: sharedSecret)
// 24-byte random nonce for XChaCha20-Poly1305
let key = derivePrivateEnvelopeKey(from: sharedSecret, format: format)
var nonce24 = Data(count: 24)
_ = nonce24.withUnsafeMutableBytes { ptr in
let randomStatus = nonce24.withUnsafeMutableBytes { ptr in
SecRandomCopyBytes(kSecRandomDefault, 24, ptr.baseAddress!)
}
let pt = Data(plaintext.utf8)
let sealed = try XChaCha20Poly1305Compat.seal(plaintext: pt, key: key, nonce24: nonce24)
// v2: base64url(nonce24 || ciphertext || tag)
guard randomStatus == errSecSuccess else {
throw NostrError.cryptographicFailure
}
let plaintextData = Data(plaintext.utf8)
guard plaintextData.count <= maximumPlaintextBytes else {
throw NostrError.invalidCiphertext
}
let sealed = try XChaCha20Poly1305Compat.seal(
plaintext: plaintextData,
key: key,
nonce24: nonce24
)
var combined = Data()
combined.append(nonce24)
combined.append(sealed.ciphertext)
combined.append(sealed.tag)
return "v2:" + Base64URLCoding.encode(combined)
return format.contentPrefix + Base64URLCoding.encode(combined)
}
private static func decrypt(
ciphertext: String,
senderPubkey: String,
recipientKey: P256K.Schnorr.PrivateKey
recipientKey: P256K.Schnorr.PrivateKey,
format: PrivateEnvelopeWireFormat,
maximumPlaintextBytes: Int
) throws -> String {
// Expect NIP-44 v2 format
guard ciphertext.hasPrefix("v2:") else { throw NostrError.invalidCiphertext }
let encoded = String(ciphertext.dropFirst(3))
guard ciphertext.utf8.count <= maximumPrivateEnvelopeCiphertextBytes,
ciphertext.hasPrefix(format.contentPrefix) else {
throw NostrError.invalidCiphertext
}
let encoded = String(ciphertext.dropFirst(format.contentPrefix.count))
guard let data = Base64URLCoding.decode(encoded),
data.count > (24 + 16),
let senderPubkeyData = Data(hexString: senderPubkey) else {
@@ -554,33 +769,40 @@ struct NostrProtocol {
let nonce24 = data.prefix(24)
let rest = data.dropFirst(24)
let tag = rest.suffix(16)
let ct = rest.dropLast(16)
let ciphertextBytes = rest.dropLast(16)
// Try decryption with even-Y then odd-Y when sender pubkey is x-only
func attemptDecrypt(using pubKeyData: Data) throws -> Data {
let ss = try deriveSharedSecret(privateKey: recipientKey, publicKey: pubKeyData)
let key = try deriveNIP44V2Key(from: ss)
func attemptDecrypt(using publicKeyData: Data) throws -> Data {
let sharedSecret = try deriveSharedSecret(
privateKey: recipientKey,
publicKey: publicKeyData
)
let key = derivePrivateEnvelopeKey(from: sharedSecret, format: format)
return try XChaCha20Poly1305Compat.open(
ciphertext: Data(ct),
ciphertext: Data(ciphertextBytes),
tag: Data(tag),
key: key,
nonce24: Data(nonce24)
)
}
// If 32 bytes (x-only) try both parities, otherwise single try
let plaintext: Data
if senderPubkeyData.count == 32 {
let even = Data([0x02]) + senderPubkeyData
if let pt = try? attemptDecrypt(using: even) {
return String(data: pt, encoding: .utf8) ?? ""
let evenKey = Data([0x02]) + senderPubkeyData
if let opened = try? attemptDecrypt(using: evenKey) {
plaintext = opened
} else {
let oddKey = Data([0x03]) + senderPubkeyData
plaintext = try attemptDecrypt(using: oddKey)
}
let odd = Data([0x03]) + senderPubkeyData
let pt = try attemptDecrypt(using: odd)
return String(data: pt, encoding: .utf8) ?? ""
} else {
let pt = try attemptDecrypt(using: senderPubkeyData)
return String(data: pt, encoding: .utf8) ?? ""
plaintext = try attemptDecrypt(using: senderPubkeyData)
}
guard plaintext.count <= maximumPlaintextBytes,
let decoded = String(data: plaintext, encoding: .utf8) else {
throw NostrError.invalidCiphertext
}
return decoded
}
private static func deriveSharedSecret(
@@ -640,29 +862,17 @@ struct NostrProtocol {
let sharedSecretData = sharedSecret.withUnsafeBytes { Data($0) }
// ECDH shared secret derived
// Return raw ECDH shared secret; HKDF is applied by deriveNIP44V2Key
// Return raw ECDH shared secret; the wire-format-specific HKDF is
// applied by derivePrivateEnvelopeKey.
return sharedSecretData
}
private static func randomizedTimestamp() -> Date {
// Add random offset to current time for privacy
// This prevents timing correlation attacks while the actual message timestamp
// is preserved in the encrypted rumor
let offset = TimeInterval.random(in: -900...900) // +/- 15 minutes
let now = Date()
let randomized = now.addingTimeInterval(offset)
// Log with explicit UTC and local time for debugging
let formatter = DateFormatter()
//
formatter.dateFormat = "yyyy-MM-dd HH:mm:ss"
formatter.timeZone = TimeZone(abbreviation: "UTC")
formatter.timeZone = TimeZone.current
// Timestamp randomized for privacy
return randomized
private static func randomizedPastTimestamp() -> Date {
// Keep public timestamps in the past: future-dated events are rejected
// by some relays. The actual message timestamp remains encrypted.
Date().addingTimeInterval(
-TimeInterval.random(in: 0...TransportConfig.nostrPrivateEnvelopeTimestampFuzzSeconds)
)
}
}
@@ -794,16 +1004,20 @@ enum NostrError: Error {
case invalidPublicKey
case invalidEvent
case invalidCiphertext
case cryptographicFailure
}
// MARK: - NIP-44 v2 helpers (XChaCha20-Poly1305)
// MARK: - BitChat private-envelope key derivation
private extension NostrProtocol {
static func deriveNIP44V2Key(from sharedSecretData: Data) throws -> Data {
private static func derivePrivateEnvelopeKey(
from sharedSecretData: Data,
format: PrivateEnvelopeWireFormat
) -> Data {
let derivedKey = HKDF<CryptoKit.SHA256>.deriveKey(
inputKeyMaterial: SymmetricKey(data: sharedSecretData),
salt: Data(),
info: Data("nip44-v2".utf8),
salt: format.hkdfSalt,
info: format.hkdfInfo,
outputByteCount: 32
)
return derivedKey.withUnsafeBytes { Data($0) }
File diff suppressed because it is too large Load Diff
+87
View File
@@ -154,3 +154,90 @@ struct BitchatFilePacket {
)
}
}
/// Wire-compatible identity for private media exchanged by clients using the
/// current iOS entropy-bearing filenames, without extending the deployed file
/// TLV. Android clients reject unknown file tags, so eligible senders and
/// receivers derive the receipt key from fields already on the wire.
///
/// Locally-created image and voice-note filenames contain a UUID or live-voice
/// burst ID. Including the normalized direction keeps a reused filename
/// distinct across chats while allowing short and full Noise-key peer IDs to
/// converge. Android and older-iOS timestamp-only names remain ineligible and
/// retain their legacy random local IDs (transfer-compatible, no receipts).
enum PrivateMediaMessageIdentity {
private static let domain = Data("bitchat-private-media-message-v1".utf8)
private static let idPrefix = "media-"
private static let digestHexLength = 32
static func isStableID(_ candidate: String) -> Bool {
guard candidate.hasPrefix(idPrefix) else { return false }
let digest = candidate.dropFirst(idPrefix.count)
guard digest.utf8.count == digestHexLength else { return false }
return digest.utf8.allSatisfy { byte in
(UInt8(ascii: "0")...UInt8(ascii: "9")).contains(byte)
|| (UInt8(ascii: "a")...UInt8(ascii: "f")).contains(byte)
}
}
static func stableID(
senderPeerID: PeerID,
recipientPeerID: PeerID,
fileName: String?
) -> String? {
guard let fileName, !fileName.isEmpty else { return nil }
let leafName = (fileName as NSString).lastPathComponent
guard leafName == fileName else { return nil }
let path = leafName as NSString
let stem = path.deletingPathExtension
let fileExtension = path.pathExtension.lowercased()
switch true {
case stem.hasPrefix("img_"):
guard fileExtension == "jpg" || fileExtension == "jpeg" else { return nil }
case stem.hasPrefix("voice_"):
guard fileExtension == "m4a" else { return nil }
default:
return nil
}
let entropyToken = stem.split(separator: "_").last.map(String.init)
let hasUUIDEntropy = entropyToken.flatMap(UUID.init(uuidString:)) != nil
let voiceBurstID = stem.hasPrefix("voice_")
? String(stem.dropFirst("voice_".count))
: ""
let hasBurstEntropy = voiceBurstID.count == 16
&& voiceBurstID.allSatisfy(\.isHexDigit)
guard hasUUIDEntropy || hasBurstEntropy else {
return nil
}
let fields = [
Data(senderPeerID.toShort().bare.utf8),
Data(recipientPeerID.toShort().bare.utf8),
Data(leafName.utf8)
]
var input = domain
for field in fields {
guard let length = UInt32(exactly: field.count) else { return nil }
var bigEndianLength = length.bigEndian
withUnsafeBytes(of: &bigEndianLength) {
input.append(contentsOf: $0)
}
input.append(field)
}
return "\(idPrefix)\(input.sha256Hex().prefix(digestHexLength))"
}
static func stableID(
for packet: BitchatFilePacket,
senderPeerID: PeerID,
recipientPeerID: PeerID
) -> String? {
stableID(
senderPeerID: senderPeerID,
recipientPeerID: recipientPeerID,
fileName: packet.fileName
)
}
}
@@ -3,5 +3,11 @@ import BitFoundation
extension PeerCapabilities {
/// Capabilities this build advertises in its announce packets.
/// Each feature adds its bit here when it ships.
static let localSupported: PeerCapabilities = [.vouch, .prekeys, .groups, .privateMedia]
static let localSupported: PeerCapabilities = [
.vouch,
.prekeys,
.groups,
.privateMedia,
.privateMediaReceipts
]
}
+284 -10
View File
@@ -32,10 +32,85 @@ struct BLEFileTransferHandlerEnvironment {
_ fallbackExtension: String?,
_ defaultPrefix: String
) -> URL?
/// Resolves the durable receiver decision for a stable private-media ID.
let privateMediaReceiptState: (
_ messageID: String
) -> BLEPrivateMediaReceiptState
/// Atomically records a stable private-media ID after the payload save.
let commitPrivateMediaFile: (_ messageID: String, _ storedURL: URL) -> Bool
/// Rolls back a saved payload when its durable receipt commit fails.
let removeIncomingFile: (_ storedURL: URL) -> Void
/// Releases the allocator's save-to-UI ownership guard after synchronous
/// conversation insertion has completed.
let finishIncomingFileDelivery: (_ storedURL: URL) -> Void
/// Checks the authenticated sender before any private-media disk work.
let isPrivateMediaSenderBlocked: (PeerID) -> Bool
/// Updates the registry last-seen timestamp for the peer (async barrier write).
let updatePeerLastSeen: (PeerID) -> Void
/// Delivers `.messageReceived` to the UI as one main-actor hop.
let deliverMessage: (BitchatMessage) -> Void
/// Acknowledges stable private media only after its synchronous
/// conversation delivery has completed.
let acknowledgePrivateMedia: (_ messageID: String, _ peerID: PeerID) -> Void
/// Delivers `.messageReceived` as one main-actor hop while
/// `shouldDeliver` remains true before and after the synchronous sink.
/// The completion authorizes the stable-media ACK. Finalization runs after
/// every delivery attempt, including rejection, so allocator ownership
/// cannot leak indefinitely.
let deliverMessage: (
_ message: BitchatMessage,
_ shouldDeliver: @escaping () -> Bool,
_ completion: @escaping () -> Void,
_ finalization: @escaping (TransportEventDeliveryOutcome) -> Void
) -> Void
}
/// Process-lifetime reservation cache for stable private-media IDs.
///
/// The first arrival reserves its ID before quota enforcement. Concurrent
/// arrivals remain coalesced in memory, while accepted state is resolved from
/// the durable ID-to-file ledger so it survives relaunch and becomes retryable
/// if quota cleanup removed the file.
private final class PrivateMediaArrivalDeduplicator {
enum Reservation {
case reserved
case pending
case accepted(URL)
case tombstoned
case unavailable
}
private let lock = NSLock()
private var pending: Set<String> = []
func reserve(
_ messageID: String,
receiptState: () -> BLEPrivateMediaReceiptState
) -> Reservation {
lock.lock()
defer { lock.unlock() }
if pending.contains(messageID) {
return .pending
}
switch receiptState() {
case .accepted(let existingURL):
return .accepted(existingURL)
case .tombstoned:
return .tombstoned
case .unavailable:
return .unavailable
case .absent:
break
}
pending.insert(messageID)
return .reserved
}
func finish(_ messageID: String) {
lock.lock()
defer { lock.unlock() }
pending.remove(messageID)
}
}
/// Orchestrates inbound file transfers: self-echo policy, sender display-name
@@ -43,6 +118,7 @@ struct BLEFileTransferHandlerEnvironment {
/// and UI delivery.
final class BLEFileTransferHandler {
private let environment: BLEFileTransferHandlerEnvironment
private let privateMediaArrivals = PrivateMediaArrivalDeduplicator()
init(environment: BLEFileTransferHandlerEnvironment) {
self.environment = environment
@@ -86,6 +162,7 @@ final class BLEFileTransferHandler {
senderNickname: senderNickname,
timestamp: Date(timeIntervalSince1970: Double(packet.timestamp) / 1000),
isPrivate: deliveryPlan.isPrivateMessage,
usesDurableReceipts: false,
env: env
)
// Once authenticated, a local decode/quota/save failure is not proof
@@ -116,6 +193,11 @@ final class BLEFileTransferHandler {
senderNickname: senderNickname,
timestamp: timestamp,
isPrivate: true,
// Every authenticated Noise private-file keeps the stable ID/ACK
// contract introduced with capability bit 8. Bit 9 advertises
// sender-side automatic retry support; it must not downgrade
// prior iOS clients to random IDs or single-check delivery.
usesDurableReceipts: true,
env: env
)
}
@@ -126,9 +208,11 @@ final class BLEFileTransferHandler {
senderNickname: String,
timestamp: Date,
isPrivate: Bool,
usesDurableReceipts: Bool,
env: BLEFileTransferHandlerEnvironment
) -> Bool {
let localPeerID = env.localPeerID()
let filePacket: BitchatFilePacket
let mime: MimeType
switch BLEIncomingFileValidator.validate(payload: payload) {
@@ -149,6 +233,89 @@ final class BLEFileTransferHandler {
return false
}
if isPrivate, env.isPrivateMediaSenderBlocked(peerID) {
SecureLogger.debug(
"🚫 Dropping private media from blocked peer \(peerID.id.prefix(8))… before disk write",
category: .security
)
return true
}
let messageID = usesDurableReceipts
? PrivateMediaMessageIdentity.stableID(
for: filePacket,
senderPeerID: peerID,
recipientPeerID: localPeerID
)
: nil
if let messageID {
switch privateMediaArrivals.reserve(
messageID,
receiptState: { env.privateMediaReceiptState(messageID) }
) {
case .reserved:
break
case .pending:
// The first arrival has not reached durable storage yet.
// Coalesce this retry without ACKing so a failed first save
// remains retryable by the sender.
SecureLogger.debug(
"📁 Coalesced in-flight private media id=\(messageID.prefix(12))… from \(peerID.id.prefix(8))",
category: .session
)
return true
case .accepted(let existingFile):
env.updatePeerLastSeen(peerID)
let message = incomingMessage(
messageID: messageID,
senderNickname: senderNickname,
timestamp: timestamp,
isPrivate: true,
peerID: peerID,
destination: existingFile,
category: storedMediaCategory(
for: existingFile,
fallback: mime.category
),
env: env
)
SecureLogger.debug(
"📁 Restored durable private media duplicate id=\(messageID.prefix(12))… from \(peerID.id.prefix(8))… -> \(existingFile.lastPathComponent)",
category: .session
)
deliverStableMessage(
message,
messageID: messageID,
peerID: peerID,
expectedURL: existingFile,
env: env
)
return true
case .tombstoned:
// Explicit deletion is a durable terminal receiver decision.
env.updatePeerLastSeen(peerID)
env.acknowledgePrivateMedia(messageID, peerID)
SecureLogger.debug(
"📁 Dropped explicitly deleted private media id=\(messageID.prefix(12))… from \(peerID.id.prefix(8))",
category: .session
)
return true
case .unavailable:
// Never turn an unreadable ledger into an empty ledger. The
// sender can retry after the transient storage failure clears.
SecureLogger.warning(
"📁 Withholding private media id=\(messageID.prefix(12))… while durable receipt state is unavailable",
category: .session
)
return true
}
}
defer {
if let messageID {
privateMediaArrivals.finish(messageID)
}
}
// BCH-01-002: Enforce storage quota before saving
env.enforceStorageQuota(filePacket.content.count)
@@ -162,13 +329,102 @@ final class BLEFileTransferHandler {
return false
}
if let messageID,
!env.commitPrivateMediaFile(messageID, destination) {
// A payload without its durable ID mapping cannot safely suppress
// a retry after relaunch. Roll it back and withhold UI/ACK.
env.removeIncomingFile(destination)
return false
}
if isPrivate {
env.updatePeerLastSeen(peerID)
}
let message = BitchatMessage(
let message = incomingMessage(
messageID: messageID,
senderNickname: senderNickname,
timestamp: timestamp,
isPrivate: isPrivate,
peerID: peerID,
destination: destination,
category: mime.category,
env: env
)
SecureLogger.debug("📁 Stored incoming media from \(peerID.id.prefix(8))… -> \(destination.lastPathComponent)", category: .session)
if let messageID {
deliverStableMessage(
message,
messageID: messageID,
peerID: peerID,
expectedURL: destination,
env: env
)
} else {
env.deliverMessage(
message,
{ true },
{},
{ outcome in
if outcome == .rejected {
// Raw media has no durable receipt that can redeliver
// it later. Do not leave a newly saved, UI-unowned file
// available for a stale fallback path to misidentify.
env.removeIncomingFile(destination)
} else {
// Plain delegates are invoked without synchronous
// insertion confirmation. Preserve the payload for
// that supported delivery path.
env.finishIncomingFileDelivery(destination)
}
}
)
}
return true
}
private func deliverStableMessage(
_ message: BitchatMessage,
messageID: String,
peerID: PeerID,
expectedURL: URL,
env: BLEFileTransferHandlerEnvironment
) {
env.deliverMessage(
message,
{
guard case .accepted(let resolvedURL) =
env.privateMediaReceiptState(messageID) else {
return false
}
return resolvedURL.standardizedFileURL
== expectedURL.standardizedFileURL
},
{
env.acknowledgePrivateMedia(messageID, peerID)
},
{ _ in
env.finishIncomingFileDelivery(expectedURL)
}
)
}
private func incomingMessage(
messageID: String?,
senderNickname: String,
timestamp: Date,
isPrivate: Bool,
peerID: PeerID,
destination: URL,
category: MimeType.Category,
env: BLEFileTransferHandlerEnvironment
) -> BitchatMessage {
BitchatMessage(
id: messageID,
sender: senderNickname,
content: "\(mime.category.messagePrefix)\(destination.lastPathComponent)",
content: "\(category.messagePrefix)\(destination.lastPathComponent)",
timestamp: timestamp,
isRelay: false,
originalSender: nil,
@@ -176,17 +432,35 @@ final class BLEFileTransferHandler {
recipientNickname: nil,
senderPeerID: peerID,
// Received messages need an explicit status: BitchatMessage
// defaults private messages to .sending, which the media views
// render as an in-flight send (empty reveal mask, disabled tap).
// defaults private messages to .sending, which media views render
// as an in-flight send.
deliveryStatus: isPrivate
? .delivered(to: env.localNickname(), at: timestamp)
: nil
)
}
SecureLogger.debug("📁 Stored incoming media from \(peerID.id.prefix(8))… -> \(destination.lastPathComponent)", category: .session)
env.deliverMessage(message)
return true
/// The durable URL is authoritative during reconstruction. A sender that
/// reuses a stable filename with a different MIME type must not change how
/// the already-stored payload renders.
private func storedMediaCategory(
for url: URL,
fallback: MimeType.Category
) -> MimeType.Category {
let mediaDirectory = url
.deletingLastPathComponent()
.deletingLastPathComponent()
.lastPathComponent
switch mediaDirectory {
case MimeType.Category.audio.mediaDir:
return .audio
case MimeType.Category.image.mediaDir:
return .image
case MimeType.Category.file.mediaDir:
return .file
default:
return fallback
}
}
/// Every remaining raw file transfer is signed, regardless of whether it
+203 -11
View File
@@ -93,7 +93,7 @@ struct PanicRecoveryOperations {
}
}
struct BLEIncomingFileStore {
struct BLEIncomingFileStore: @unchecked Sendable {
enum PanicRecoveryError: Error {
case externalMarkerCommitFailed
case markerWriteFailed(Error)
@@ -103,7 +103,17 @@ struct BLEIncomingFileStore {
)
}
private static let quotaBytes: Int64 = 100 * 1024 * 1024
struct PrivateMediaDeletionReservation: Sendable {
fileprivate let id: UUID
}
private final class PayloadCoordination: @unchecked Sendable {
let lock = NSLock()
var pendingDeliveryPaths: Set<String> = []
var deletionReservations: [UUID: Set<String>] = [:]
}
private static let defaultQuotaBytes: Int64 = 100 * 1024 * 1024
/// Kept outside `files/` so deleting the media tree cannot erase the
/// fail-closed startup decision before the full panic has committed.
private static let panicRecoveryPendingMarkerFileName =
@@ -120,7 +130,6 @@ struct BLEIncomingFileStore {
"files/incoming",
"files/outgoing"
]
/// Name prefix of in-flight live voice captures (progressively written by
/// `ChatLiveVoiceCoordinator`). Quota eviction skips them by pattern
/// deleting one mid-stream unlinks the inode under an open `FileHandle`
@@ -134,6 +143,9 @@ struct BLEIncomingFileStore {
private let baseDirectory: URL?
private let dateProvider: () -> Date
private let panicMarkerWriter: (Data, URL) throws -> Void
private let quotaBytes: Int64
private let privateMediaReceipts: BLEPrivateMediaReceiptStore
private let payloadCoordination: PayloadCoordination
init(
fileManager: FileManager = .default,
@@ -141,12 +153,20 @@ struct BLEIncomingFileStore {
dateProvider: @escaping () -> Date = Date.init,
panicMarkerWriter: @escaping (Data, URL) throws -> Void = {
try $0.write(to: $1, options: .atomic)
}
},
quotaBytes: Int64 = Self.defaultQuotaBytes
) {
self.fileManager = fileManager
self.baseDirectory = baseDirectory
self.dateProvider = dateProvider
self.panicMarkerWriter = panicMarkerWriter
self.quotaBytes = max(0, quotaBytes)
self.privateMediaReceipts = BLEPrivateMediaReceiptStore(
fileManager: fileManager,
baseDirectory: baseDirectory,
now: dateProvider
)
self.payloadCoordination = PayloadCoordination()
}
/// Panic-wipe every managed incoming and outgoing media artifact before
@@ -159,6 +179,22 @@ struct BLEIncomingFileStore {
func panicWipe(
hasDurablePendingMarker: Bool = false
) throws {
// The receipt index caches tombstones as well as accepted payloads,
// while payload coordination retains save/delete reservations. Always
// invalidate both on return, including partial-failure paths, so no
// pre-panic receiver decision survives after identity reset.
defer {
privateMediaReceipts.resetForPanic()
payloadCoordination.lock.lock()
payloadCoordination.pendingDeliveryPaths.removeAll(
keepingCapacity: false
)
payloadCoordination.deletionReservations.removeAll(
keepingCapacity: false
)
payloadCoordination.lock.unlock()
}
let markerError: Error?
do {
try markPanicRecoveryPending()
@@ -240,6 +276,9 @@ struct BLEIncomingFileStore {
fallbackExtension: String?,
defaultPrefix: String
) -> URL? {
payloadCoordination.lock.lock()
defer { payloadCoordination.lock.unlock() }
do {
let base = try filesDirectory().appendingPathComponent(subdirectory, isDirectory: true)
try fileManager.createDirectory(at: base, withIntermediateDirectories: true, attributes: nil)
@@ -248,8 +287,26 @@ struct BLEIncomingFileStore {
defaultName: "\(defaultPrefix)_\(Self.timestampString(from: dateProvider()))",
fallbackExtension: fallbackExtension
)
let destination = uniqueFileURL(in: base, fileName: sanitized)
let reservedPaths = privateMediaReceipts.reservedPayloadPaths()
let deletionPaths = payloadCoordination
.deletionReservations.values.reduce(into: Set<String>()) {
$0.formUnion($1)
}
let allocationReservations = deletionPaths.union(
payloadCoordination.pendingDeliveryPaths
)
let destination = uniqueFileURL(
in: base,
fileName: sanitized,
reservedPaths: (reservedPaths ?? []).union(
allocationReservations
),
forceRandomizedName: reservedPaths == nil
)
try data.write(to: destination, options: .atomic)
payloadCoordination.pendingDeliveryPaths.insert(
destination.standardizedFileURL.path
)
return destination
} catch {
SecureLogger.error("❌ Failed to persist incoming media: \(error)", category: .session)
@@ -257,12 +314,111 @@ struct BLEIncomingFileStore {
}
}
func privateMediaReceiptState(
messageID: String
) -> BLEPrivateMediaReceiptState {
privateMediaReceipts.state(for: messageID)
}
func commitPrivateMediaFile(
messageID: String,
storedURL: URL
) -> Bool {
privateMediaReceipts.commitAccepted(
messageID: messageID,
storedURL: storedURL
)
}
/// Reserves every receipt/UI path before the asynchronous deletion
/// barrier. Allocation and reservation share one lock, so either an
/// in-flight raw arrival is observed and deletion fails closed, or the
/// arrival is forced onto a different filename.
func reservePrivateMediaDeletion(
messageIDs: [String],
payloadRelativePaths: [String: String]
) -> PrivateMediaDeletionReservation? {
payloadCoordination.lock.lock()
defer { payloadCoordination.lock.unlock() }
guard let paths = privateMediaReceipts
.prospectiveDeletionPayloadPaths(
messageIDs: messageIDs,
payloadRelativePaths: payloadRelativePaths
),
paths.isDisjoint(
with: payloadCoordination.pendingDeliveryPaths
) else {
return nil
}
let reservation = PrivateMediaDeletionReservation(id: UUID())
payloadCoordination.deletionReservations[reservation.id] = paths
return reservation
}
func commitPrivateMediaDeletion(
reservation: PrivateMediaDeletionReservation,
messageIDs: [String],
payloadRelativePaths: [String: String],
protectedPayloadRelativePaths: Set<String>
) -> Bool {
payloadCoordination.lock.lock()
defer {
payloadCoordination.deletionReservations.removeValue(
forKey: reservation.id
)
payloadCoordination.lock.unlock()
}
guard payloadCoordination.deletionReservations[reservation.id] != nil
else {
return false
}
return privateMediaReceipts.recordDeleted(
messageIDs: messageIDs,
payloadRelativePaths: payloadRelativePaths,
protectedPayloadRelativePaths: protectedPayloadRelativePaths
)
}
/// Releases the short window between disk save and synchronous
/// conversation insertion. Before this callback, a deletion transaction
/// may not infer ownership from a stale bubble that names the same path.
func finishIncomingFileDelivery(at storedURL: URL) {
payloadCoordination.lock.lock()
defer { payloadCoordination.lock.unlock() }
payloadCoordination.pendingDeliveryPaths.remove(
storedURL.standardizedFileURL.path
)
}
/// Best-effort rollback for a payload whose durable receipt commit failed.
func removeIncomingFile(at storedURL: URL) {
payloadCoordination.lock.lock()
defer { payloadCoordination.lock.unlock() }
payloadCoordination.pendingDeliveryPaths.remove(
storedURL.standardizedFileURL.path
)
guard isURLInsideFilesDirectory(storedURL) else { return }
do {
try fileManager.removeItem(at: storedURL)
} catch {
SecureLogger.warning(
"⚠️ Failed to roll back uncommitted incoming media: \(error)",
category: .session
)
}
}
/// Frees least-recently-modified incoming files until `reservingBytes`
/// fits under the quota. Files named `voice_live_*` (in-flight live
/// captures) are never evicted regardless of who triggers enforcement
/// a finalized transfer can arrive at quota while a burst is still
/// streaming but they still count toward usage.
func enforceQuota(reservingBytes: Int) {
payloadCoordination.lock.lock()
defer { payloadCoordination.lock.unlock() }
do {
let base = try filesDirectory()
let incomingDirs = [
@@ -288,14 +444,26 @@ struct BLEIncomingFileStore {
}
let currentUsage = allFiles.reduce(0) { $0 + $1.size }
let targetUsage = Self.quotaBytes - Int64(reservingBytes)
let targetUsage = quotaBytes - Int64(reservingBytes)
guard currentUsage > targetUsage else { return }
let needToFree = currentUsage - targetUsage
let activeDeletionPaths = payloadCoordination
.deletionReservations.values.reduce(into: Set<String>()) {
$0.formUnion($1)
}
let protectedPaths = activeDeletionPaths.union(
payloadCoordination.pendingDeliveryPaths
)
var freedSpace: Int64 = 0
for file in allFiles.sorted(by: { $0.modified < $1.modified }) {
guard freedSpace < needToFree else { break }
guard !file.url.lastPathComponent.hasPrefix(Self.liveCapturePrefix) else { continue }
guard !protectedPaths.contains(
file.url.standardizedFileURL.path
) else {
continue
}
do {
try fileManager.removeItem(at: file.url)
freedSpace += file.size
@@ -349,6 +517,13 @@ struct BLEIncomingFileStore {
]
}
private func isURLInsideFilesDirectory(_ url: URL) -> Bool {
guard let filesDirectory = try? filesDirectory().standardizedFileURL else {
return false
}
return url.standardizedFileURL.path.hasPrefix(filesDirectory.path + "/")
}
private func sanitizedFileName(_ name: String?, defaultName: String, fallbackExtension: String?) -> String {
var candidate = (name ?? "")
.replacingOccurrences(of: "\0", with: "")
@@ -376,11 +551,20 @@ struct BLEIncomingFileStore {
return candidate.isEmpty ? defaultName : candidate
}
private func uniqueFileURL(in directory: URL, fileName: String) -> URL {
private func uniqueFileURL(
in directory: URL,
fileName: String,
reservedPaths: Set<String>,
forceRandomizedName: Bool
) -> URL {
let directoryPath = directory.standardizedFileURL.path
func isInsideDirectory(_ url: URL) -> Bool {
url.standardizedFileURL.path.hasPrefix(directoryPath + "/")
}
func isAvailable(_ url: URL) -> Bool {
!reservedPaths.contains(url.standardizedFileURL.path)
&& !fileManager.fileExists(atPath: url.path)
}
var candidate = directory.appendingPathComponent(fileName)
guard isInsideDirectory(candidate) else {
@@ -388,19 +572,27 @@ struct BLEIncomingFileStore {
return directory.appendingPathComponent("blocked_\(UUID().uuidString)")
}
if !fileManager.fileExists(atPath: candidate.path) {
let baseName = (fileName as NSString).deletingPathExtension
let ext = (fileName as NSString).pathExtension
if forceRandomizedName {
let suffix = UUID().uuidString
let randomizedName = ext.isEmpty
? "\(baseName)_\(suffix)"
: "\(baseName)_\(suffix).\(ext)"
return directory.appendingPathComponent(randomizedName)
}
if isAvailable(candidate) {
return candidate
}
let baseName = (fileName as NSString).deletingPathExtension
let ext = (fileName as NSString).pathExtension
for counter in 1..<100 {
let newName = ext.isEmpty ? "\(baseName) (\(counter))" : "\(baseName) (\(counter)).\(ext)"
candidate = directory.appendingPathComponent(newName)
guard isInsideDirectory(candidate) else {
return directory.appendingPathComponent("blocked_\(UUID().uuidString)")
}
if !fileManager.fileExists(atPath: candidate.path) {
if isAvailable(candidate) {
return candidate
}
}
@@ -1,5 +1,6 @@
import BitFoundation
import BitLogger
import CryptoKit
import Foundation
struct BLENoiseHandshakeHandlingResult {
@@ -33,6 +34,8 @@ struct BLENoisePacketHandlerEnvironment {
-> NoiseHandshakeProcessingResult
/// Whether any Noise session (established or pending) exists for the peer (crypto).
let hasNoiseSession: (PeerID) -> Bool
/// Whether an inbound ordinary XX responder is waiting for message 3.
let isAwaitingResponderHandshakeCompletion: (PeerID) -> Bool
/// Initiates a fresh Noise handshake with the peer (crypto + send).
let initiateHandshake: (PeerID) -> Void
/// Broadcasts a packet on the mesh (caller is already on the message queue).
@@ -63,7 +66,28 @@ struct BLENoisePacketHandlerEnvironment {
/// processing (with response), encrypted payload decryption and dispatch,
/// and session recovery on decrypt failure.
final class BLENoisePacketHandler {
private struct DeferredCiphertext {
let packet: BitchatPacket
let receivedAt: Date
}
/// Early post-handshake packets are normally tiny control messages or
/// queued DMs. Keep the recovery surface deliberately small so an
/// unauthenticated half-handshake cannot create an unbounded memory queue.
private static let maxDeferredPacketsPerPeer = 4
private static let maxDeferredPacketsGlobal = 32
/// One legacy sender can immediately follow message 3 with the largest
/// valid private-file ciphertext and has no application-level retry. Keep
/// room for that packet plus a small control-message budget.
private static let maxDeferredBytes =
NoiseSecurityConstants.maxPrivateFileCiphertextSize + 256 * 1024
private static let deferredLifetime =
NoiseSecurityConstants.ordinaryResponderHandshakeTimeout
private let environment: BLENoisePacketHandlerEnvironment
private let deferredLock = NSLock()
private var deferredCiphertexts: [PeerID: [DeferredCiphertext]] = [:]
private var deferredCiphertextBytes = 0
init(environment: BLENoisePacketHandlerEnvironment) {
self.environment = environment
@@ -105,8 +129,8 @@ final class BLENoisePacketHandler {
env.broadcastPacket(responsePacket)
}
// Session establishment will trigger onPeerAuthenticated callback
// which will send any pending messages at the right time
// The serialized authentication callback installs transport
// state before it drains any bounded early ciphertext.
return BLENoiseHandshakeHandlingResult(
processed: true,
didEstablishAuthenticatedSession:
@@ -151,6 +175,30 @@ final class BLENoisePacketHandler {
}
func handleEncrypted(_ packet: BitchatPacket, from peerID: PeerID) {
handleEncrypted(packet, from: peerID, isDeferredRetry: false)
}
/// Called by the transport's serialized authentication callback after it
/// has installed state for the promoted or restored session generation.
func handleSessionAuthenticated(_ peerID: PeerID) {
drainDeferredCiphertextsIfReady(for: peerID)
}
/// Synchronously discards ciphertext retained for a pre-panic Noise
/// generation. The handler survives the service's identity replacement,
/// so keeping this queue would replay old bytes after post-panic auth.
func resetForPanic() {
deferredLock.lock()
deferredCiphertexts.removeAll(keepingCapacity: false)
deferredCiphertextBytes = 0
deferredLock.unlock()
}
private func handleEncrypted(
_ packet: BitchatPacket,
from peerID: PeerID,
isDeferredRetry: Bool
) {
let env = environment
guard let recipientID = PeerID(hexData: packet.recipientID) else {
SecureLogger.warning("⚠️ Encrypted message has no recipient ID", category: .session)
@@ -192,19 +240,205 @@ final class BLENoisePacketHandler {
let ts = Date(timeIntervalSince1970: Double(packet.timestamp) / 1000)
env.deliverNoisePayload(peerID, noisePayloadType, Data(payloadData), ts)
} catch NoiseEncryptionError.transportGenerationNotReady {
if isDeferredRetry {
SecureLogger.warning(
"Dropping deferred Noise ciphertext from \(peerID.id.prefix(8))… because its authenticated transport generation changed again",
category: .session
)
return
}
// The manager promoted or restored keys before BLE's serialized
// callback installed generation-bound transport state. The
// manager rejected this before decrypting, so replay is safe.
deferCiphertext(packet, from: peerID)
} catch NoiseEncryptionError.sessionNotEstablished {
if isDeferredRetry {
SecureLogger.warning(
"Dropping deferred Noise ciphertext from \(peerID.id.prefix(8))… because the authenticated session is unavailable",
category: .session
)
return
}
// We received an encrypted message before establishing a session with this peer.
// Trigger a handshake so future messages can be decrypted.
// An initiator may already have sent message 3 followed by this
// ciphertext, with BLE delivering the ciphertext first.
if env.isAwaitingResponderHandshakeCompletion(peerID) {
deferCiphertext(packet, from: peerID)
return
}
// Otherwise trigger a handshake so future messages can decrypt.
SecureLogger.debug("🔑 Encrypted message from \(peerID.id.prefix(8))… without session; initiating handshake")
if !env.hasNoiseSession(peerID) {
env.initiateHandshake(peerID)
}
} catch {
if isDeferredRetry {
// An early packet cannot tear down the authenticated session
// merely because its single bounded retry still fails.
SecureLogger.warning(
"Dropping deferred Noise ciphertext from \(peerID.id.prefix(8))… after retry failed: \(error)",
category: .session
)
return
}
// A responder may retain an older transport as receive-only
// rollback state while ordinary XX waits for message 3. New-key
// ciphertext can fail against those retained receive keys first.
if env.isAwaitingResponderHandshakeCompletion(peerID) {
if isDeferrableEarlyHandshakeFailure(error) {
deferCiphertext(packet, from: peerID)
} else {
SecureLogger.warning(
"Dropping invalid Noise ciphertext from \(peerID.id.prefix(8))… while responder handshake is completing: \(error)",
category: .session
)
}
return
}
if isDropOnlyCiphertextFailure(error) {
// The packet is attacker-controlled and did not prove a
// transport-state failure. Never let malformed, replayed,
// forged, oversized, or rate-limited bytes evict working keys.
SecureLogger.warning(
"Dropping rejected Noise ciphertext from \(peerID.id.prefix(8))… without clearing its session: \(error)",
category: .security
)
return
}
// Decryption failed - clear the corrupted session and re-initiate handshake
// This handles cases where session state got out of sync (nonce mismatch, etc.)
// Only local/session lifecycle failures reach this path.
SecureLogger.error("❌ Failed to decrypt message from \(peerID.id.prefix(8))…: \(error) - clearing session and re-initiating handshake")
env.clearSession(peerID)
env.initiateHandshake(peerID)
}
}
private func isDeferrableEarlyHandshakeFailure(_ error: Error) -> Bool {
if let noiseError = error as? NoiseError {
switch noiseError {
case .authenticationFailure, .replayDetected:
return true
default:
return false
}
}
if let cryptoError = error as? CryptoKitError,
case .authenticationFailure = cryptoError {
return true
}
return false
}
private func isDropOnlyCiphertextFailure(_ error: Error) -> Bool {
if let securityError = error as? NoiseSecurityError {
switch securityError {
case .messageTooLarge, .rateLimitExceeded, .invalidPeerID:
return true
case .sessionExpired, .sessionExhausted:
return false
}
}
if let noiseError = error as? NoiseError {
switch noiseError {
case .invalidCiphertext, .authenticationFailure, .replayDetected:
return true
case .uninitializedCipher, .handshakeComplete,
.handshakeNotComplete, .missingLocalStaticKey,
.missingKeys, .invalidMessage, .invalidPublicKey,
.nonceExceeded:
return false
}
}
return error is CryptoKitError
}
private func deferCiphertext(_ packet: BitchatPacket, from peerID: PeerID) {
guard NoiseSecurityValidator.validatePrivateFileCiphertextSize(
packet.payload
) else {
SecureLogger.warning(
"Dropping oversized early Noise ciphertext from \(peerID.id.prefix(8))",
category: .security
)
return
}
let now = environment.now()
deferredLock.lock()
defer { deferredLock.unlock() }
purgeExpiredCiphertextsLocked(now: now)
let peerCount = deferredCiphertexts[peerID]?.count ?? 0
let globalCount = deferredCiphertexts.values.reduce(0) {
$0 + $1.count
}
guard peerCount < Self.maxDeferredPacketsPerPeer,
globalCount < Self.maxDeferredPacketsGlobal,
deferredCiphertextBytes + packet.payload.count
<= Self.maxDeferredBytes else {
SecureLogger.warning(
"Dropping early Noise ciphertext from \(peerID.id.prefix(8))… because the handshake buffer is full",
category: .security
)
return
}
deferredCiphertexts[peerID, default: []].append(
DeferredCiphertext(packet: packet, receivedAt: now)
)
deferredCiphertextBytes += packet.payload.count
SecureLogger.debug(
"Deferring early Noise ciphertext from \(peerID.id.prefix(8))… until responder handshake completion",
category: .session
)
}
private func drainDeferredCiphertextsIfReady(for peerID: PeerID) {
let env = environment
guard !env.isAwaitingResponderHandshakeCompletion(peerID),
env.hasNoiseSession(peerID) else {
return
}
let now = env.now()
deferredLock.lock()
purgeExpiredCiphertextsLocked(now: now)
let deferred = deferredCiphertexts.removeValue(forKey: peerID) ?? []
deferredCiphertextBytes -= deferred.reduce(0) {
$0 + $1.packet.payload.count
}
deferredLock.unlock()
guard !deferred.isEmpty else { return }
SecureLogger.debug(
"Retrying \(deferred.count) early Noise ciphertext packet(s) from \(peerID.id.prefix(8))… after handshake completion",
category: .session
)
for item in deferred {
handleEncrypted(item.packet, from: peerID, isDeferredRetry: true)
}
}
private func purgeExpiredCiphertextsLocked(now: Date) {
for peerID in Array(deferredCiphertexts.keys) {
guard let items = deferredCiphertexts[peerID] else { continue }
let retained = items.filter {
now.timeIntervalSince($0.receivedAt) <= Self.deferredLifetime
}
guard retained.count != items.count else { continue }
deferredCiphertextBytes -= items.reduce(0) {
$0 + $1.packet.payload.count
}
deferredCiphertextBytes += retained.reduce(0) {
$0 + $1.packet.payload.count
}
if retained.isEmpty {
deferredCiphertexts.removeValue(forKey: peerID)
} else {
deferredCiphertexts[peerID] = retained
}
}
}
}
File diff suppressed because it is too large Load Diff
+444 -29
View File
@@ -707,6 +707,7 @@ final class BLEService: NSObject {
/// or advertising while the full panic transaction is incomplete.
func suspendForPanicReset() {
setPanicSuspended(true)
noisePacketHandler.resetForPanic()
gossipSyncManager?.stop()
gossipSyncManager = nil
// Stop the radio and drain CoreBluetooth's delegate queue first. A
@@ -717,7 +718,11 @@ final class BLEService: NSObject {
// Drain every receive/send submitted by callbacks that finished ahead
// of the radio stop. Later callbacks observe the closed lifecycle, and
// generation-bound handoffs that raced this barrier reject themselves.
messageQueue.sync(flags: .barrier) {}
// Clear the old identity's bounded early-ciphertext queue again after
// those callbacks drain so none can repopulate it after the first wipe.
messageQueue.sync(flags: .barrier) {
noisePacketHandler.resetForPanic()
}
clearEmergencySessionState()
}
@@ -736,6 +741,7 @@ final class BLEService: NSObject {
gossipSyncManager?.stop()
gossipSyncManager = nil
messageQueue.sync(flags: .barrier) {
noisePacketHandler.resetForPanic()
pendingNoiseSessionQueues.removeAll()
}
@@ -1113,6 +1119,51 @@ final class BLEService: NSObject {
collectionsQueue.sync { peerRegistry.capabilities(for: peerID) }
}
func authenticatedPrivateMediaReceiptSessionGeneration(
to peerID: PeerID
) -> UUID? {
let normalizedPeerID = peerID.toShort()
let currentNoiseGeneration =
noiseService.sessionGeneration(for: normalizedPeerID)
return collectionsQueue.sync {
guard let generation =
privateMediaSessionGenerations[normalizedPeerID],
generation == currentNoiseGeneration,
let authenticated =
authenticatedPeerStates[normalizedPeerID],
authenticated.sessionGeneration == generation,
authenticated.capabilities.contains(.privateMedia),
authenticated.capabilities.contains(
.privateMediaReceipts
) else {
return nil
}
return generation
}
}
private func privateMediaPolicyFingerprint(
for peerID: PeerID,
expectedSessionGeneration: UUID?
) -> String? {
let normalizedPeerID = peerID.toShort()
if let expectedSessionGeneration,
noiseService.sessionGeneration(for: normalizedPeerID)
== expectedSessionGeneration,
let fingerprint = noiseService.getPeerFingerprint(normalizedPeerID),
noiseService.sessionGeneration(for: normalizedPeerID)
== expectedSessionGeneration {
// The exact authenticated Noise static key is stronger than a
// registry entry populated by a public announce.
return fingerprint
}
return collectionsQueue.sync {
peerRegistry.info(for: normalizedPeerID)?
.noisePublicKey?
.sha256Fingerprint()
}
}
func privateMediaSendPolicy(to peerID: PeerID) -> PrivateMediaSendPolicy {
let normalizedPeerID = peerID.toShort()
let state: (
@@ -1140,7 +1191,10 @@ final class BLEService: NSObject {
return .awaitingCapabilityProof
}
guard let fingerprint = state.fingerprint else {
guard let fingerprint = privateMediaPolicyFingerprint(
for: normalizedPeerID,
expectedSessionGeneration: state.sessionGeneration
) ?? state.fingerprint else {
// A raw fallback must be bound to the stable Noise key from a
// verified registry entry; a routing ID alone can rotate or be
// spoofed. Without that key neither proof nor safe migration state
@@ -1194,11 +1248,13 @@ final class BLEService: NSObject {
return
}
let fingerprint: String? = self.collectionsQueue.sync {
self.peerRegistry.info(for: normalizedPeerID)?
.noisePublicKey?
.sha256Fingerprint()
let generation = self.collectionsQueue.sync {
self.privateMediaSessionGenerations[normalizedPeerID]
}
let fingerprint = self.privateMediaPolicyFingerprint(
for: normalizedPeerID,
expectedSessionGeneration: generation
)
guard let fingerprint else {
self.completePrivateMediaPolicyResolution([completion], with: .blockedDowngrade)
return
@@ -1570,6 +1626,36 @@ final class BLEService: NSObject {
to peerID: PeerID,
transferId: String,
allowLegacyFallback: Bool
) {
sendFilePrivate(
filePacket,
to: peerID,
transferId: transferId,
allowLegacyFallback: allowLegacyFallback,
requiresAuthenticatedPrivateMediaReceipts: false
)
}
func sendFilePrivateReceiptRetry(
_ filePacket: BitchatFilePacket,
to peerID: PeerID,
transferId: String
) {
sendFilePrivate(
filePacket,
to: peerID,
transferId: transferId,
allowLegacyFallback: false,
requiresAuthenticatedPrivateMediaReceipts: true
)
}
private func sendFilePrivate(
_ filePacket: BitchatFilePacket,
to peerID: PeerID,
transferId: String,
allowLegacyFallback: Bool,
requiresAuthenticatedPrivateMediaReceipts: Bool
) {
// Register before enqueueing onto messageQueue. This closes the window
// where cancel/delete could run first, observe no scheduler state, and
@@ -1682,6 +1768,25 @@ final class BLEService: NSObject {
self.privateMediaTransferAdmissions.finish(transferId)
return
}
if requiresAuthenticatedPrivateMediaReceipts,
self.authenticatedPrivateMediaReceiptSessionGeneration(
to: targetID
) == nil {
SecureLogger.warning(
"Private media retry blocked without current authenticated receipt support for \(targetID.id.prefix(8))",
category: .security
)
TransferProgressManager.shared.rejectBeforeStart(
id: transferId,
reason: String(
localized: "content.delivery.reason.private_media_capability_unresolved",
defaultValue: "Could not confirm encrypted media support",
comment: "Failure reason when private-media capability negotiation did not resolve"
)
)
self.privateMediaTransferAdmissions.finish(transferId)
return
}
guard let typedPayload = BLENoisePayloadFactory.privateFile(filePacket) else {
SecureLogger.error("❌ Failed to encode file packet for private send", category: .session)
TransferProgressManager.shared.rejectBeforeStart(
@@ -1692,6 +1797,21 @@ final class BLEService: NSObject {
return
}
guard self.noiseService.hasEstablishedSession(with: targetID) else {
if requiresAuthenticatedPrivateMediaReceipts {
// A retry belongs to one exact authenticated generation.
// Never let it enter the ordinary pending queue where a
// bit-8-only replacement session could later flush it.
TransferProgressManager.shared.rejectBeforeStart(
id: transferId,
reason: String(
localized: "content.delivery.reason.private_media_capability_unresolved",
defaultValue: "Could not confirm encrypted media support",
comment: "Failure reason when private-media capability negotiation did not resolve"
)
)
self.privateMediaTransferAdmissions.finish(transferId)
return
}
let queued = self.collectionsQueue.sync(flags: .barrier) {
self.privateMediaTransferAdmissions.withActive(transferId) {
self.pendingNoiseSessionQueues.appendTypedPayload(
@@ -1723,7 +1843,12 @@ final class BLEService: NSObject {
self.privateMediaTransferAdmissions.finish(transferId)
return
}
let packet = try self.makeEncryptedNoisePacket(typedPayload, to: targetID)
let packet = try self.makeEncryptedNoisePacket(
typedPayload,
to: targetID,
requiresAuthenticatedPrivateMediaReceipts:
requiresAuthenticatedPrivateMediaReceipts
)
guard self.privateMediaTransferAdmissions.isActive(transferId) else {
self.privateMediaTransferAdmissions.finish(transferId)
return
@@ -2521,12 +2646,63 @@ final class BLEService: NSObject {
defaultPrefix: defaultPrefix
)
},
privateMediaReceiptState: { [weak self] messageID in
self?.incomingFileStore.privateMediaReceiptState(
messageID: messageID
) ?? .unavailable
},
commitPrivateMediaFile: { [weak self] messageID, storedURL in
self?.incomingFileStore.commitPrivateMediaFile(
messageID: messageID,
storedURL: storedURL
) ?? false
},
removeIncomingFile: { [weak self] storedURL in
self?.incomingFileStore.removeIncomingFile(at: storedURL)
},
finishIncomingFileDelivery: { [weak self] storedURL in
// Serialize pending-owner release behind deletion barriers.
// If /clear snapshots before this UI insertion, its already
// queued barrier must still observe the path as pending. If
// insertion wins first, the next MainActor snapshot sees the
// new bubble and protects the path explicitly.
self?.messageQueue.async(flags: .barrier) {
self?.incomingFileStore.finishIncomingFileDelivery(
at: storedURL
)
}
},
isPrivateMediaSenderBlocked: { [weak self] peerID in
guard let self else { return false }
let senderStaticKey = self.noiseService.getPeerPublicKeyData(peerID)
?? self.collectionsQueue.sync {
self.peerRegistry.info(for: peerID)?.noisePublicKey
}
guard let senderStaticKey else { return false }
return self.identityManager.isBlocked(
fingerprint: senderStaticKey.sha256Fingerprint()
)
},
updatePeerLastSeen: { [weak self] peerID in
self?.updatePeerLastSeen(peerID)
},
deliverMessage: { [weak self] message in
// Single main-actor hop delivering `.messageReceived`.
self?.emitTransportEvent(.messageReceived(message))
acknowledgePrivateMedia: { [weak self] messageID, peerID in
guard let self,
let senderStaticKey = self.noiseService.getPeerPublicKeyData(peerID),
!self.identityManager.isBlocked(
fingerprint: senderStaticKey.sha256Fingerprint()
) else {
return
}
self.sendDeliveryAck(for: messageID, to: peerID)
},
deliverMessage: { [weak self] message, shouldDeliver, completion, finalization in
self?.emitTransportEvent(
.messageReceived(message),
shouldDeliver: shouldDeliver,
completion: completion,
finalization: finalization
)
}
)
}
@@ -3316,6 +3492,18 @@ extension BLEService {
}
}
func _test_emitTransportEvent(
_ event: TransportEvent,
completion: @escaping () -> Void,
finalization: @escaping (TransportEventDeliveryOutcome) -> Void
) {
emitTransportEvent(
event,
completion: completion,
finalization: finalization
)
}
func _test_handlePacket(_ packet: BitchatPacket, fromPeerID: PeerID, preseedPeer: Bool = true, signingPublicKey: Data? = nil) {
if preseedPeer {
// Ensure the synthetic peer is known and marked verified for public-message tests
@@ -3556,6 +3744,28 @@ extension BLEService {
}
}
/// Replays the current generation's ready callback. Restore tests use
/// this to prove same-generation reconciliation is idempotent.
func _test_reconcileCurrentNoiseSession(for peerID: PeerID) {
let normalizedPeerID = peerID.toShort()
messageQueue.async(flags: .barrier) { [weak self] in
guard let self,
let generation = self.noiseService.sessionGeneration(
for: normalizedPeerID
),
let fingerprint = self.noiseService.getPeerFingerprint(
normalizedPeerID
) else {
return
}
self.handleNoisePeerAuthenticated(
peerID: normalizedPeerID,
fingerprint: fingerprint,
sessionGeneration: generation
)
}
}
/// Builds an authenticated-session packet from an exact typed plaintext.
/// Compatibility tests use this to model Android's deployed 0x20 file
/// payload and the short-lived 0x09 prerelease payload without exposing a
@@ -4199,8 +4409,87 @@ extension BLEService {
// No alias rotation or advertising restarts required.
}
// MARK: - Private Media Deletion
extension BLEService: PrivateMediaDeletionPersisting {
@MainActor
func persistDeletedPrivateMedia(
messageIDs: [String],
payloadRelativePaths: [String: String],
protectedPayloadRelativePaths: Set<String>,
completion: @escaping @MainActor (Bool) -> Void
) {
let fileStore = incomingFileStore
messageQueue.async(flags: .barrier) {
guard let reservation = fileStore
.reservePrivateMediaDeletion(
messageIDs: messageIDs,
payloadRelativePaths: payloadRelativePaths
) else {
Task { @MainActor in
completion(false)
}
return
}
let persisted = fileStore
.commitPrivateMediaDeletion(
reservation: reservation,
messageIDs: messageIDs,
payloadRelativePaths: payloadRelativePaths,
protectedPayloadRelativePaths:
protectedPayloadRelativePaths
)
Task { @MainActor in
completion(persisted)
}
}
}
}
// MARK: - Private Helpers
enum TransportEventDeliveryOutcome: Equatable {
/// A synchronous sink inserted the message and revalidation succeeded.
case accepted
/// A supported plain delegate was invoked, but insertion cannot be
/// confirmed synchronously.
case invokedUnconfirmed
/// No sink accepted the event, or receipt revalidation rejected it.
case rejected
}
enum TransportEventDeliveryGate {
/// Runs finalization exactly once for every attempted main-actor delivery,
/// including pre-insertion rejection, a missing/rejecting sink, and
/// post-insertion revalidation failure. Only a fully accepted delivery
/// runs `completion` (for example, a stable-media ACK).
@MainActor
static func attempt(
shouldDeliver: () -> Bool,
deliver: () -> TransportEventDeliveryOutcome,
completion: () -> Void,
finalization: (TransportEventDeliveryOutcome) -> Void
) {
var outcome = TransportEventDeliveryOutcome.rejected
defer { finalization(outcome) }
guard shouldDeliver() else {
return
}
switch deliver() {
case .rejected:
return
case .invokedUnconfirmed:
outcome = .invokedUnconfirmed
return
case .accepted:
break
}
guard shouldDeliver() else { return }
outcome = .accepted
completion()
}
}
extension BLEService {
/// Notify UI on the MainActor to satisfy Swift concurrency isolation
@@ -4221,18 +4510,74 @@ extension BLEService {
}
}
private func emitTransportEvent(_ event: TransportEvent) {
notifyUI { [weak self] in
self?.deliverTransportEvent(event)
private func emitTransportEvent(
_ event: TransportEvent,
shouldDeliver: (() -> Bool)? = nil,
completion: (() -> Void)? = nil,
finalization: ((TransportEventDeliveryOutcome) -> Void)? = nil
) {
guard let generation = capturePanicLifecycleGeneration() else {
Task { @MainActor in
finalization?(.rejected)
}
return
}
Task { @MainActor [weak self] in
guard let self,
self.isCurrentPanicLifecycleGeneration(generation) else {
finalization?(.rejected)
return
}
TransportEventDeliveryGate.attempt(
shouldDeliver: {
self.isCurrentPanicLifecycleGeneration(generation)
&& (shouldDeliver?() ?? true)
},
deliver: {
return self.deliverTransportEvent(event)
},
completion: { completion?() },
finalization: { finalization?($0) }
)
}
}
@MainActor
private func deliverTransportEvent(_ event: TransportEvent) {
@discardableResult
private func deliverTransportEvent(
_ event: TransportEvent
) -> TransportEventDeliveryOutcome {
if case .messageReceived(let message) = event {
if let synchronousDelegate =
eventDelegate as? SynchronousMessageTransportEventDelegate {
return synchronousDelegate
.didReceiveTransportMessageSynchronously(message)
? .accepted
: .rejected
}
if let eventDelegate {
eventDelegate.didReceiveTransportEvent(event)
return .invokedUnconfirmed
}
if let synchronousDelegate =
delegate as? SynchronousMessageTransportEventDelegate {
return synchronousDelegate
.didReceiveTransportMessageSynchronously(message)
? .accepted
: .rejected
}
}
if let eventDelegate {
eventDelegate.didReceiveTransportEvent(event)
return .accepted
} else {
delegate?.receiveTransportEvent(event)
guard let delegate else { return .rejected }
delegate.receiveTransportEvent(event)
if case .messageReceived = event {
return .invokedUnconfirmed
}
return .accepted
}
}
@@ -4649,7 +4994,10 @@ extension BLEService {
private func configureNoiseServiceCallbacks(for service: NoiseEncryptionService) {
service.onPeerAuthenticatedWithGeneration = { [weak self] peerID, fingerprint, generation in
SecureLogger.debug("🔐 Noise session authenticated with \(peerID.id.prefix(8))…, fingerprint: \(fingerprint.prefix(16))")
self?.messageQueue.async { [weak self] in
// Authentication can be reported while an initiator is still
// returning XX message 3. Serialize generation-bound state and
// every post-handshake drain behind the handshake packet handler.
self?.messageQueue.async(flags: .barrier) { [weak self] in
self?.handleNoisePeerAuthenticated(
peerID: peerID,
fingerprint: fingerprint,
@@ -4724,7 +5072,9 @@ extension BLEService {
}
service.onSessionRestoredWithGeneration = { [weak self, weak service] peerID, generation in
guard let self, let service else { return }
self.messageQueue.async { [weak self, weak service] in
// The manager makes restored keys visible atomically. Reconcile
// transport state and queued sends as the next serialized phase.
self.messageQueue.async(flags: .barrier) { [weak self, weak service] in
guard let self,
let service,
self.noiseService === service,
@@ -4792,7 +5142,16 @@ extension BLEService {
}
) else { return }
guard let watchdog = transition.watchdog else { return }
guard let watchdog = transition.watchdog else {
// A quarantined transport restored the same cryptographic
// generation. Its capability proof and announce state never
// became stale; only work queued while outbound keys were paused
// needs one idempotent ready transition.
noisePacketHandler.handleSessionAuthenticated(normalizedPeerID)
sendPendingMessagesAfterHandshake(for: normalizedPeerID)
sendPendingNoisePayloadsAfterHandshake(for: normalizedPeerID)
return
}
completePrivateMediaPolicyResolution(transition.rejected, with: .blockedDowngrade)
schedulePrivateMediaProofTimeout(
@@ -4801,6 +5160,10 @@ extension BLEService {
sessionGeneration: generation,
nonce: watchdog.nonce
)
// Cross-link delivery can put ciphertext sent immediately after
// message 3 ahead of message 3 itself. Retry the bounded queue only
// after this generation's transport state has been fully installed.
noisePacketHandler.handleSessionAuthenticated(normalizedPeerID)
// `onPeerAuthenticated` can fire while the initiator is returning XX
// message 3. This callback is queued behind the handshake handler, so
@@ -5016,7 +5379,11 @@ extension BLEService {
}
}
private func makeEncryptedNoisePacket(_ typedPayload: Data, to peerID: PeerID) throws -> BitchatPacket {
private func makeEncryptedNoisePacket(
_ typedPayload: Data,
to peerID: PeerID,
requiresAuthenticatedPrivateMediaReceipts: Bool = false
) throws -> BitchatPacket {
let encrypted: Data
let isPrivateFile = NoisePayloadType.isPrivateFile(rawValue: typedPayload.first)
if isPrivateFile {
@@ -5026,6 +5393,13 @@ extension BLEService {
let authenticated = authenticatedPeerStates[peerID],
authenticated.sessionGeneration == generation,
authenticated.capabilities.contains(.privateMedia) else { return nil }
if requiresAuthenticatedPrivateMediaReceipts {
guard authenticated.capabilities.contains(
.privateMediaReceipts
) else {
return nil
}
}
return generation
}
guard let provenGeneration else {
@@ -6415,7 +6789,12 @@ extension BLEService {
// MARK: Packet Reception
private func handleReceivedPacket(_ packet: BitchatPacket, from peerID: PeerID) {
// Call directly if already on messageQueue, otherwise dispatch
let isNoisePacket = packet.type == MessageType.noiseHandshake.rawValue
|| packet.type == MessageType.noiseEncrypted.rawValue
// Capture the panic lifecycle at the first off-messageQueue handoff.
// Noise packets still enter through a barrier so handshake promotion,
// quarantine, and encrypted delivery share one ordered session.
if DispatchQueue.getSpecific(key: messageQueueKey) == nil {
guard let lifecycleGeneration =
capturePanicLifecycleGeneration() else {
@@ -6424,7 +6803,8 @@ extension BLEService {
#if DEBUG
_test_beforeReceivePacketHandoff?()
#endif
messageQueue.async { [weak self] in
let flags: DispatchWorkItemFlags = isNoisePacket ? .barrier : []
messageQueue.async(flags: flags) { [weak self] in
guard let self,
self.isCurrentPanicLifecycleGeneration(
lifecycleGeneration
@@ -6434,11 +6814,34 @@ extension BLEService {
#if DEBUG
self._test_onReceivePacketHandoff?()
#endif
self.handleReceivedPacket(packet, from: peerID)
self.handleReceivedPacketOnQueue(packet, from: peerID)
}
return
}
if isNoisePacket {
guard let lifecycleGeneration =
capturePanicLifecycleGeneration() else {
return
}
messageQueue.async(flags: .barrier) { [weak self] in
guard let self,
self.isCurrentPanicLifecycleGeneration(
lifecycleGeneration
) else {
return
}
self.handleReceivedPacketOnQueue(packet, from: peerID)
}
} else {
handleReceivedPacketOnQueue(packet, from: peerID)
}
}
private func handleReceivedPacketOnQueue(
_ packet: BitchatPacket,
from peerID: PeerID
) {
let context = BLEReceivePipeline.context(for: packet, localPeerID: myPeerID)
let senderID = context.senderID
let messageID = context.messageID
@@ -7214,16 +7617,16 @@ extension BLEService {
}
private func handleNoiseHandshake(_ packet: BitchatPacket, from peerID: PeerID) {
let wasEstablished = noiseService.hasEstablishedSession(with: peerID)
let result = noisePacketHandler.handleHandshakeWithResult(
packet,
from: peerID
)
let isEstablished = noiseService.hasEstablishedSession(with: peerID)
if wasEstablished, result.processed,
!isEstablished {
noteNoiseSessionCleared(for: peerID)
}
// An inbound message 1 quarantines the old transport receive-only.
// Keep its generation-bound BLE state intact: the manager's new
// handshaking generation already gates every outbound policy, while
// a rollback can become ready again without repeating capability
// proof or announce side effects. Only the exact handshake candidate's
// authenticated completion may promote the physical ingress link.
if result.didEstablishAuthenticatedSession {
markNoiseAuthenticatedIngressLink(for: packet, peerID: peerID)
}
@@ -7261,6 +7664,11 @@ extension BLEService {
hasNoiseSession: { [weak self] peerID in
self?.noiseService.hasSession(with: peerID) ?? false
},
isAwaitingResponderHandshakeCompletion: { [weak self] peerID in
self?.noiseService.isAwaitingResponderHandshakeCompletion(
with: peerID
) ?? false
},
initiateHandshake: { [weak self] peerID in
self?.initiateNoiseHandshake(with: peerID)
},
@@ -7274,7 +7682,14 @@ extension BLEService {
guard let self = self else { throw NoiseEncryptionError.sessionNotEstablished }
let result = try self.noiseService.decryptWithSessionGeneration(
payload,
from: peerID
from: peerID,
establishedGenerationIsReady: { generation in
self.collectionsQueue.sync {
self.privateMediaSessionGenerations[
peerID.toShort()
] == generation
}
}
)
return BLENoiseDecryptionResult(
plaintext: result.plaintext,
+1 -1
View File
@@ -322,7 +322,7 @@ final class CourierStore {
/// Envelopes eligible to park on relays as bridge courier drops. Merely
/// offering one does not start its cooldown: the caller commits that only
/// after a relay explicitly accepts the event via NIP-20 OK.
/// after a relay explicitly accepts the event via NIP-01 `OK`.
func envelopesForBridgePublish(cooldown: TimeInterval) -> [CourierEnvelope] {
let date = now()
return queue.sync {
@@ -67,7 +67,7 @@ final class BridgeCourierService: ObservableObject {
var relaysConnected: (@MainActor () -> Bool)?
/// Publishes a signed drop event directly to connected default (DM)
/// relays. Completion is true only after at least one relay explicitly
/// accepts the event via NIP-20 OK; this must never mean "queued in RAM"
/// accepts the event via NIP-01 `OK`; this must never mean "queued in RAM"
/// or merely "written to a socket".
var publishEvent: (@MainActor (NostrEvent, @escaping @MainActor (Bool) -> Void) -> Void)?
/// (Re)opens the drop subscription for the given hex tags.
@@ -129,7 +129,7 @@ final class BridgeCourierService: ObservableObject {
/// a newer attempt for the same message.
private var activeDropOperations: [String: ActiveDropOperation] = [:]
/// Held-envelope publishes have no sender message ID, but still need an
/// in-flight identity: repeated refreshes inside the NIP-20 wait window
/// in-flight identity: repeated refreshes inside the relay-OK wait window
/// must not mint duplicate relay events for the same opaque envelope.
private var heldDropOperations: [Data: UUID] = [:]
/// Deterministically invalid envelopes are suppressed for this process,
@@ -275,7 +275,7 @@ final class BridgeCourierService: ObservableObject {
/// Publishes a drop, or queues it when relays are down. `messageID` is the
/// sender-side dedup key (nil for held/relayed envelopes we don't track);
/// it rides the pending queue so an evicted or failed drop can release its
/// in-flight slot. Completion reports actual NIP-20 relay acceptance.
/// in-flight slot. Completion reports actual NIP-01 relay acceptance.
private func publishDrop(
_ envelope: CourierEnvelope,
messageID: String? = nil,
@@ -172,11 +172,11 @@ final class MessageDeduplicationService {
/// Cache for Nostr ACK deduplication (messageId:ackType:senderPubkey format)
private let nostrAckCache: LRUDeduplicationCache<Bool>
/// Optional cross-launch persistence for the Nostr event cache. NIP-59
/// randomizes gift-wrap timestamps, so DM subscriptions look back 24h and
/// relays redeliver the same events on every launch; without this record
/// each relaunch reprocesses old PMs and acks. Nil (tests, macOS callers
/// that don't opt in) keeps the cache purely in-memory.
/// Optional cross-launch persistence for the Nostr event cache. BitChat
/// randomizes private-envelope timestamps, so DM subscriptions look back
/// 24h and relays redeliver the same events on every launch; without this
/// record each relaunch reprocesses old PMs and acks. Nil (tests, macOS
/// callers that don't opt in) keeps the cache purely in-memory.
private let nostrEventStore: NostrProcessedEventStore?
private let nostrEventCapacity: Int
private var persistScheduled = false
@@ -314,7 +314,7 @@ final class MessageDeduplicationService {
// MARK: - Clear
/// Clears all caches. This is the wipe/panic path: the persisted
/// gift-wrap record goes with everything else.
/// private-envelope record goes with everything else.
func clearAll() {
contentCache.clear()
nostrEventCache.clear()
@@ -325,7 +325,7 @@ final class MessageDeduplicationService {
/// Clears only the in-memory Nostr caches (events and ACKs). Runs on
/// every geohash channel switch, so the disk record deliberately
/// survives wiping it here would forfeit cross-launch gift-wrap dedup
/// survives wiping it here would forfeit cross-launch private-envelope dedup
/// each time the user changes channels (flagged by Codex on #1398).
func clearNostrCaches() {
nostrEventCache.clear()
+10
View File
@@ -158,6 +158,16 @@ final class MessageRouter {
}
}
/// Wire one typed event sink to every route, including the queue-backed
/// Nostr transport. Keeping this at the router boundary prevents a relay
/// admission failure from disappearing merely because only the primary
/// mesh transport was assigned a UI delegate.
func setEventDelegate(_ delegate: TransportEventDelegate?) {
for transport in transports {
transport.eventDelegate = delegate
}
}
// MARK: - Transport Selection
private func reachableTransport(for peerID: PeerID) -> Transport? {
+29 -11
View File
@@ -853,6 +853,13 @@ final class NoiseEncryptionService {
func hasSession(with peerID: PeerID) -> Bool {
return sessionManager.getSession(for: peerID) != nil
}
/// True while an inbound ordinary XX responder is waiting for message 3.
/// A small amount of immediately-following ciphertext may arrive first
/// over BLE and must be retried only after responder promotion.
func isAwaitingResponderHandshakeCompletion(with peerID: PeerID) -> Bool {
sessionManager.isAwaitingResponderHandshakeCompletion(for: peerID)
}
// MARK: - Encryption/Decryption
@@ -920,20 +927,15 @@ final class NoiseEncryptionService {
func decryptWithSessionGeneration(
_ data: Data,
from peerID: PeerID
from peerID: PeerID,
establishedGenerationIsReady: (UUID) -> Bool = { _ in true }
) throws -> (plaintext: Data, sessionGeneration: UUID) {
// Standard transport ciphertext has 20 bytes of nonce/tag overhead.
// A larger candidate is admitted only up to the framed-file ceiling;
// A larger ciphertext is admitted only up to the framed-file ceiling;
// after authenticated decryption it must prove it is `.privateFile`.
let isStandardCiphertext = NoiseSecurityValidator.validateCiphertextSize(data)
guard isStandardCiphertext || NoiseSecurityValidator.validatePrivateFileCiphertextSize(data) else {
throw NoiseSecurityError.messageTooLarge
}
// Check rate limit
guard rateLimiter.allowMessage(from: peerID) else {
throw NoiseSecurityError.rateLimitExceeded
}
let isAdmittedCiphertext = isStandardCiphertext
|| NoiseSecurityValidator.validatePrivateFileCiphertextSize(data)
// A quarantined transport is deliberately unavailable for outbound
// state, but remains receive-only until the responder proves identity
@@ -942,7 +944,20 @@ final class NoiseEncryptionService {
throw NoiseEncryptionError.sessionNotEstablished
}
let result = try sessionManager.decryptWithSessionGeneration(data, from: peerID)
let result = try sessionManager.decryptWithSessionGeneration(
data,
from: peerID,
establishedGenerationIsReady:
establishedGenerationIsReady,
authorizeDecrypt: { [rateLimiter] in
guard isAdmittedCiphertext else {
throw NoiseSecurityError.messageTooLarge
}
guard rateLimiter.allowMessage(from: peerID) else {
throw NoiseSecurityError.rateLimitExceeded
}
}
)
if !isStandardCiphertext {
guard NoisePayloadType.isPrivateFile(rawValue: result.plaintext.first),
NoiseSecurityValidator.validatePrivateFileMessageSize(result.plaintext) else {
@@ -1159,6 +1174,9 @@ struct NoiseMessage: Codable {
enum NoiseEncryptionError: Error {
case handshakeRequired
case sessionNotEstablished
/// Manager keys are established or restored, but BLE has not installed
/// generation-bound transport state. No receive nonce was consumed.
case transportGenerationNotReady
/// Envelope references a prekey ID we don't hold (never ours, already
/// deleted after its grace window, or wiped in a panic).
case unknownPrekey
@@ -9,10 +9,10 @@
import BitLogger
import Foundation
/// Disk persistence for processed gift-wrap event IDs. NIP-59 randomizes
/// gift-wrap timestamps, so DM subscriptions must look back generously (24h)
/// and relays redeliver the same events on every launch without a
/// cross-launch record, each relaunch reprocesses old PMs and acks
/// Disk persistence for processed private-envelope event IDs. BitChat
/// randomizes envelope timestamps, so DM subscriptions must look back
/// generously (24h) and relays redeliver the same events on every launch
/// without a cross-launch record, each relaunch reprocesses old PMs and acks
/// (re-sent DELIVERED bursts, "delivered ack for unknown mid" noise).
///
/// Contents are event IDs already visible to every relay, so
+418 -37
View File
@@ -11,8 +11,12 @@ final class NostrTransport: Transport, @unchecked Sendable {
let favoriteStatusForNoiseKey: @MainActor (Data) -> FavoritesPersistenceService.FavoriteRelationship?
let favoriteStatusForPeerID: @MainActor (PeerID) -> FavoritesPersistenceService.FavoriteRelationship?
let currentIdentity: @MainActor () throws -> NostrIdentity?
let registerPendingGiftWrap: @MainActor (String) -> Void
let sendEvent: @MainActor (NostrEvent) -> Void
let registerPendingPrivateEnvelope: @MainActor (String) -> Void
let sendPrivateEnvelopeBatch: @MainActor (
[NostrEvent],
@escaping @MainActor () -> Void
) -> Bool
let envelopeRetryQueue: NostrPrivateEnvelopeRetryQueue
/// Emits whether a relay that carries private messages is up
/// (fail-closed behind Tor). A connected geohash/custom relay alone
/// doesn't count: DM sends target the default relay set and would
@@ -22,25 +26,35 @@ final class NostrTransport: Transport, @unchecked Sendable {
/// serialize behind each other; `live` passes the process-wide one.
let ackPacer: AckPacer
@MainActor
init(
notificationCenter: NotificationCenter,
loadFavorites: @escaping @MainActor () -> [Data: FavoritesPersistenceService.FavoriteRelationship],
favoriteStatusForNoiseKey: @escaping @MainActor (Data) -> FavoritesPersistenceService.FavoriteRelationship?,
favoriteStatusForPeerID: @escaping @MainActor (PeerID) -> FavoritesPersistenceService.FavoriteRelationship?,
currentIdentity: @escaping @MainActor () throws -> NostrIdentity?,
registerPendingGiftWrap: @escaping @MainActor (String) -> Void,
sendEvent: @escaping @MainActor (NostrEvent) -> Void,
registerPendingPrivateEnvelope: @escaping @MainActor (String) -> Void,
sendPrivateEnvelopeBatch: @escaping @MainActor (
[NostrEvent],
@escaping @MainActor () -> Void
) -> Bool,
scheduleAfter: @escaping @Sendable (TimeInterval, @escaping @Sendable () -> Void) -> Void,
relayConnectivity: @escaping @MainActor () -> AnyPublisher<Bool, Never>,
ackPacer: AckPacer? = nil
ackPacer: AckPacer? = nil,
envelopeRetryQueue: NostrPrivateEnvelopeRetryQueue? = nil
) {
self.notificationCenter = notificationCenter
self.loadFavorites = loadFavorites
self.favoriteStatusForNoiseKey = favoriteStatusForNoiseKey
self.favoriteStatusForPeerID = favoriteStatusForPeerID
self.currentIdentity = currentIdentity
self.registerPendingGiftWrap = registerPendingGiftWrap
self.sendEvent = sendEvent
self.registerPendingPrivateEnvelope = registerPendingPrivateEnvelope
self.sendPrivateEnvelopeBatch = sendPrivateEnvelopeBatch
self.envelopeRetryQueue = envelopeRetryQueue ?? NostrPrivateEnvelopeRetryQueue(
sendPrivateEnvelopeBatch: sendPrivateEnvelopeBatch,
registerPendingPrivateEnvelope: registerPendingPrivateEnvelope,
scheduleAfter: scheduleAfter
)
self.relayConnectivity = relayConnectivity
// Default pacer drives its throttle through the same injected
// scheduler, so tests that step scheduleAfter manually keep
@@ -56,13 +70,19 @@ final class NostrTransport: Transport, @unchecked Sendable {
favoriteStatusForNoiseKey: { FavoritesPersistenceService.shared.getFavoriteStatus(for: $0) },
favoriteStatusForPeerID: { FavoritesPersistenceService.shared.getFavoriteStatus(forPeerID: $0) },
currentIdentity: { try idBridge.getCurrentNostrIdentity() },
registerPendingGiftWrap: { NostrRelayManager.registerPendingGiftWrap(id: $0) },
sendEvent: { NostrRelayManager.shared.sendEvent($0) },
registerPendingPrivateEnvelope: { NostrRelayManager.registerPendingPrivateEnvelope(id: $0) },
sendPrivateEnvelopeBatch: { events, terminalFailure in
NostrRelayManager.shared.sendPrivateEnvelopeBatch(
events,
terminalFailure: terminalFailure
)
},
scheduleAfter: { delay, action in
DispatchQueue.main.asyncAfter(deadline: .now() + delay, execute: action)
},
relayConnectivity: { NostrRelayManager.shared.$isDMRelayConnected.eraseToAnyPublisher() },
ackPacer: NostrTransport.sharedAckPacer
ackPacer: NostrTransport.sharedAckPacer,
envelopeRetryQueue: NostrTransport.sharedEnvelopeRetryQueue
)
}
}
@@ -128,7 +148,37 @@ final class NostrTransport: Transport, @unchecked Sendable {
}
}
static let sharedAckPacer = AckPacer()
// Geohash acknowledgements use short-lived NostrTransport instances, so
// the retry owner must be process-wide. A per-transport cap would still be
// globally unbounded under outage as throwaway instances accumulated.
@MainActor
private static let sharedEnvelopeRetryQueue = NostrPrivateEnvelopeRetryQueue(
sendPrivateEnvelopeBatch: { events, terminalFailure in
NostrRelayManager.shared.sendPrivateEnvelopeBatch(
events,
terminalFailure: terminalFailure
)
},
registerPendingPrivateEnvelope: {
NostrRelayManager.registerPendingPrivateEnvelope(id: $0)
},
scheduleAfter: { delay, action in
DispatchQueue.main.asyncAfter(deadline: .now() + delay, execute: action)
}
)
@MainActor
static func resetControlRetriesForPanicWipe() {
sharedEnvelopeRetryQueue.removeAll()
}
private enum PrivateEnvelopeFailurePolicy {
case userMessage(messageID: String)
case retry(retryKey: String)
}
private let dependencies: Dependencies
private let envelopeRetryQueue: NostrPrivateEnvelopeRetryQueue
private var favoriteStatusObserver: NSObjectProtocol?
// Reachability Cache (thread-safe)
@@ -145,7 +195,9 @@ final class NostrTransport: Transport, @unchecked Sendable {
idBridge: NostrIdentityBridge,
dependencies: Dependencies? = nil
) {
self.dependencies = dependencies ?? .live(idBridge: idBridge)
let resolvedDependencies = dependencies ?? .live(idBridge: idBridge)
self.dependencies = resolvedDependencies
self.envelopeRetryQueue = resolvedDependencies.envelopeRetryQueue
setupObservers()
@@ -172,6 +224,18 @@ final class NostrTransport: Transport, @unchecked Sendable {
}
}
#if DEBUG
@MainActor
func debugEnqueueControlRetry(key: String, events: [NostrEvent]) {
envelopeRetryQueue.enqueue(key: key, events: events, registerPending: false)
}
@MainActor
var debugControlRetryCount: Int {
envelopeRetryQueue.debugPendingCount
}
#endif
private func setupObservers() {
favoriteStatusObserver = dependencies.notificationCenter.addObserver(
forName: .favoriteStatusChanged,
@@ -253,15 +317,49 @@ final class NostrTransport: Transport, @unchecked Sendable {
func sendPrivateMessage(_ content: String, to peerID: PeerID, recipientNickname: String, messageID: String) {
Task { @MainActor in
guard let recipientNpub = resolveRecipientNpub(for: peerID),
let recipientHex = npubToHex(recipientNpub),
let senderIdentity = try? dependencies.currentIdentity() else { return }
let failurePolicy = PrivateEnvelopeFailurePolicy.userMessage(
messageID: messageID
)
guard let recipientNpub = resolveRecipientNpub(for: peerID) else {
handlePrivateEnvelopeFailure(
events: [],
registerPending: false,
policy: failurePolicy
)
return
}
guard let recipientHex = npubToHex(recipientNpub) else {
handlePrivateEnvelopeFailure(
events: [],
registerPending: false,
policy: failurePolicy
)
return
}
guard let senderIdentity = try? dependencies.currentIdentity() else {
handlePrivateEnvelopeFailure(
events: [],
registerPending: false,
policy: failurePolicy
)
return
}
SecureLogger.debug("NostrTransport: preparing PM to \(recipientNpub.prefix(16))… id=\(messageID.prefix(8))", category: .session)
guard let embedded = NostrEmbeddedBitChat.encodePMForNostr(content: content, messageID: messageID, recipientPeerID: peerID, senderPeerID: senderPeerID) else {
SecureLogger.error("NostrTransport: failed to embed PM packet", category: .session)
handlePrivateEnvelopeFailure(
events: [],
registerPending: false,
policy: failurePolicy
)
return
}
sendWrappedMessage(content: embedded, recipientHex: recipientHex, senderIdentity: senderIdentity)
sendPrivateEnvelope(
content: embedded,
recipientHex: recipientHex,
senderIdentity: senderIdentity,
failurePolicy: failurePolicy
)
}
}
@@ -287,7 +385,14 @@ final class NostrTransport: Transport, @unchecked Sendable {
SecureLogger.error("NostrTransport: failed to embed favorite notification", category: .session)
return
}
sendWrappedMessage(content: embedded, recipientHex: recipientHex, senderIdentity: senderIdentity)
sendPrivateEnvelope(
content: embedded,
recipientHex: recipientHex,
senderIdentity: senderIdentity,
failurePolicy: .retry(
retryKey: privateEnvelopeRetryKey(content: embedded, recipientHex: recipientHex)
)
)
}
}
@@ -311,16 +416,48 @@ extension NostrTransport {
}
// MARK: Geohash DMs (per-geohash identity)
func sendPrivateMessageGeohash(content: String, toRecipientHex recipientHex: String, from identity: NostrIdentity, messageID: String) {
Task { @MainActor in
guard !recipientHex.isEmpty else { return }
SecureLogger.debug("GeoDM: send PM mid=\(messageID.prefix(8))", category: .session)
guard let embedded = NostrEmbeddedBitChat.encodePMForNostrNoRecipient(content: content, messageID: messageID, senderPeerID: senderPeerID) else {
SecureLogger.error("NostrTransport: failed to embed geohash PM packet", category: .session)
return
}
sendWrappedMessage(content: embedded, recipientHex: recipientHex, senderIdentity: identity, registerPending: true)
/// Returns true only when the complete migration pair entered the relay
/// delivery queue. GeoDM callers use this synchronous admission result
/// before showing "sent"; deterministic packet/envelope failures must not
/// be hidden behind an unobserved MainActor task.
@MainActor
@discardableResult
func sendPrivateMessageGeohash(
content: String,
toRecipientHex recipientHex: String,
from identity: NostrIdentity,
messageID: String
) -> Bool {
let failurePolicy = PrivateEnvelopeFailurePolicy.userMessage(messageID: messageID)
guard !recipientHex.isEmpty else {
handlePrivateEnvelopeFailure(
events: [],
registerPending: false,
policy: failurePolicy
)
return false
}
SecureLogger.debug("GeoDM: send PM mid=\(messageID.prefix(8))", category: .session)
guard let embedded = NostrEmbeddedBitChat.encodePMForNostrNoRecipient(
content: content,
messageID: messageID,
senderPeerID: senderPeerID
) else {
SecureLogger.error("NostrTransport: failed to embed geohash PM packet", category: .session)
handlePrivateEnvelopeFailure(
events: [],
registerPending: false,
policy: failurePolicy
)
return false
}
return sendPrivateEnvelope(
content: embedded,
recipientHex: recipientHex,
senderIdentity: identity,
registerPending: true,
failurePolicy: failurePolicy
)
}
}
@@ -340,17 +477,112 @@ extension NostrTransport {
}
}
/// Creates and sends a gift-wrapped private message event
/// Creates and sends a BitChat private-envelope event over Nostr.
@MainActor
private func sendWrappedMessage(content: String, recipientHex: String, senderIdentity: NostrIdentity, registerPending: Bool = false) {
guard let event = try? NostrProtocol.createPrivateMessage(content: content, recipientPubkey: recipientHex, senderIdentity: senderIdentity) else {
SecureLogger.error("NostrTransport: failed to build Nostr event", category: .session)
return
@discardableResult
private func sendPrivateEnvelope(
content: String,
recipientHex: String,
senderIdentity: NostrIdentity,
registerPending: Bool = false,
failurePolicy: PrivateEnvelopeFailurePolicy
) -> Bool {
let events: [NostrEvent]
do {
events = try NostrProtocol.createPrivateEnvelopePublicationBatch(
content: content,
recipientPubkey: recipientHex,
senderIdentity: senderIdentity
)
} catch {
SecureLogger.error(
"NostrTransport: failed to build Nostr private-envelope batch: \(error)",
category: .session
)
// Construction failures are deterministic. User-authored messages
// must become visibly failed; control payloads have no valid event
// pair to retain and retry.
handlePrivateEnvelopeFailure(
events: [],
registerPending: false,
policy: failurePolicy
)
return false
}
if registerPending {
dependencies.registerPendingGiftWrap(event.id)
let accepted = dependencies.sendPrivateEnvelopeBatch(events) { [self] in
handlePrivateEnvelopeFailure(
events: events,
registerPending: registerPending,
policy: failurePolicy
)
}
guard accepted else {
SecureLogger.error(
"NostrTransport: private-envelope migration pair was not accepted for relay delivery",
category: .session
)
handlePrivateEnvelopeFailure(
events: events,
registerPending: registerPending,
policy: failurePolicy
)
return false
}
registerPendingPrivateEnvelopesIfNeeded(events, registerPending: registerPending)
return true
}
@MainActor
private func handlePrivateEnvelopeFailure(
events: [NostrEvent],
registerPending: Bool,
policy: PrivateEnvelopeFailurePolicy
) {
switch policy {
case .userMessage(let messageID):
deliverTransportEvent(.messageDeliveryStatusUpdated(
messageID: messageID,
status: .failed(reason: String(
localized: "content.delivery.reason.not_delivered",
comment: "Failure reason shown when a private message could not enter the relay delivery queue"
))
))
case .retry(let retryKey):
// A deterministic packet/envelope construction failure has no
// events to retry. Only relay admission/delivery failures reach
// this branch with the complete atomic pair.
guard !events.isEmpty else { return }
envelopeRetryQueue.enqueue(
key: retryKey,
events: events,
registerPending: registerPending
)
}
}
@MainActor
private func registerPendingPrivateEnvelopesIfNeeded(
_ events: [NostrEvent],
registerPending: Bool
) {
guard registerPending else { return }
for event in events {
dependencies.registerPendingPrivateEnvelope(event.id)
}
}
@MainActor
private func privateEnvelopeRetryKey(content: String, recipientHex: String) -> String {
"\(recipientHex.lowercased()):\(Data(content.utf8).sha256Fingerprint())"
}
@MainActor
private func deliverTransportEvent(_ event: TransportEvent) {
if let eventDelegate {
eventDelegate.didReceiveTransportEvent(event)
} else {
delegate?.receiveTransportEvent(event)
}
dependencies.sendEvent(event)
}
@@ -367,7 +599,14 @@ extension NostrTransport {
SecureLogger.error("NostrTransport: failed to embed READ ack", category: .session)
return
}
sendWrappedMessage(content: ack, recipientHex: recipientHex, senderIdentity: senderIdentity)
sendPrivateEnvelope(
content: ack,
recipientHex: recipientHex,
senderIdentity: senderIdentity,
failurePolicy: .retry(
retryKey: privateEnvelopeRetryKey(content: ack, recipientHex: recipientHex)
)
)
case .deliveredDirect(let messageID, let peerID):
guard let recipientNpub = resolveRecipientNpub(for: peerID),
@@ -378,17 +617,40 @@ extension NostrTransport {
SecureLogger.error("NostrTransport: failed to embed DELIVERED ack", category: .session)
return
}
sendWrappedMessage(content: ack, recipientHex: recipientHex, senderIdentity: senderIdentity)
sendPrivateEnvelope(
content: ack,
recipientHex: recipientHex,
senderIdentity: senderIdentity,
failurePolicy: .retry(
retryKey: privateEnvelopeRetryKey(content: ack, recipientHex: recipientHex)
)
)
case .deliveredGeohash(let messageID, let recipientHex, let identity):
SecureLogger.debug("GeoDM: send DELIVERED mid=\(messageID.prefix(8))", category: .session)
guard let embedded = NostrEmbeddedBitChat.encodeAckForNostrNoRecipient(type: .delivered, messageID: messageID, senderPeerID: senderPeerID) else { return }
sendWrappedMessage(content: embedded, recipientHex: recipientHex, senderIdentity: identity, registerPending: true)
sendPrivateEnvelope(
content: embedded,
recipientHex: recipientHex,
senderIdentity: identity,
registerPending: true,
failurePolicy: .retry(
retryKey: privateEnvelopeRetryKey(content: embedded, recipientHex: recipientHex)
)
)
case .readGeohash(let messageID, let recipientHex, let identity):
SecureLogger.debug("GeoDM: send READ mid=\(messageID.prefix(8))", category: .session)
guard let embedded = NostrEmbeddedBitChat.encodeAckForNostrNoRecipient(type: .readReceipt, messageID: messageID, senderPeerID: senderPeerID) else { return }
sendWrappedMessage(content: embedded, recipientHex: recipientHex, senderIdentity: identity, registerPending: true)
sendPrivateEnvelope(
content: embedded,
recipientHex: recipientHex,
senderIdentity: identity,
registerPending: true,
failurePolicy: .retry(
retryKey: privateEnvelopeRetryKey(content: embedded, recipientHex: recipientHex)
)
)
}
}
}
@@ -408,3 +670,122 @@ extension NostrTransport {
return nil
}
}
/// Bounded retry owner for non-user private control payloads. It is separate
/// from `NostrTransport` so a scheduled retry from a short-lived geohash
/// transport remains valid after that transport deinitializes. Scheduler
/// callbacks retain this queue, never the transport; an evicted key simply
/// becomes a harmless no-op when its already-scheduled callback fires.
@MainActor
final class NostrPrivateEnvelopeRetryQueue {
private struct PendingRetry {
let events: [NostrEvent]
let registerPending: Bool
var attempt: Int
var isScheduled: Bool
}
private let sendPrivateEnvelopeBatch: @MainActor (
[NostrEvent],
@escaping @MainActor () -> Void
) -> Bool
private let registerPendingPrivateEnvelope: @MainActor (String) -> Void
private let scheduleAfter: @Sendable (
TimeInterval,
@escaping @Sendable () -> Void
) -> Void
private var pending: [String: PendingRetry] = [:]
private var insertionOrder: [String] = []
init(
sendPrivateEnvelopeBatch: @escaping @MainActor (
[NostrEvent],
@escaping @MainActor () -> Void
) -> Bool,
registerPendingPrivateEnvelope: @escaping @MainActor (String) -> Void,
scheduleAfter: @escaping @Sendable (
TimeInterval,
@escaping @Sendable () -> Void
) -> Void
) {
self.sendPrivateEnvelopeBatch = sendPrivateEnvelopeBatch
self.registerPendingPrivateEnvelope = registerPendingPrivateEnvelope
self.scheduleAfter = scheduleAfter
}
func enqueue(key: String, events: [NostrEvent], registerPending: Bool) {
guard pending[key] == nil else { return }
if pending.count >= TransportConfig.nostrPrivateEnvelopeRetryQueueCap,
let evictedKey = insertionOrder.first {
insertionOrder.removeFirst()
pending.removeValue(forKey: evictedKey)
// These are control payloads, never user-authored messages. Keep
// the bounded-loss decision explicit rather than silently growing
// memory during a prolonged outage.
SecureLogger.warning(
"📮 Private control retry queue full — evicted oldest whole migration pair",
category: .session
)
}
pending[key] = PendingRetry(
events: events,
registerPending: registerPending,
attempt: 0,
isScheduled: false
)
insertionOrder.append(key)
schedule(key: key)
}
private func schedule(key: String) {
guard var item = pending[key], !item.isScheduled else { return }
item.isScheduled = true
pending[key] = item
let exponent = min(item.attempt, 5)
let delay = min(2.0 * pow(2.0, Double(exponent)), 60.0)
scheduleAfter(delay) { [self] in
Task { @MainActor [self] in
self.retry(key: key)
}
}
}
private func retry(key: String) {
guard var item = pending[key] else { return }
item.isScheduled = false
pending[key] = item
let accepted = sendPrivateEnvelopeBatch(item.events) { [self] in
self.enqueue(
key: key,
events: item.events,
registerPending: item.registerPending
)
}
if accepted {
remove(key: key)
if item.registerPending {
for event in item.events {
registerPendingPrivateEnvelope(event.id)
}
}
} else {
item.attempt += 1
pending[key] = item
schedule(key: key)
}
}
private func remove(key: String) {
pending.removeValue(forKey: key)
insertionOrder.removeAll { $0 == key }
}
func removeAll() {
pending.removeAll()
insertionOrder.removeAll()
}
var debugPendingCount: Int { pending.count }
func debugContains(key: String) -> Bool { pending[key] != nil }
}
+43
View File
@@ -97,10 +97,30 @@ enum PrivateMediaSendPolicy: Equatable {
case blockedDowngrade
}
/// Receiver-only persistence surface for explicit private-media deletion.
/// Kept separate from `Transport` so sender retry branches can rebase without
/// inheriting or implementing receiver storage concerns.
protocol PrivateMediaDeletionPersisting: AnyObject {
@MainActor
func persistDeletedPrivateMedia(
messageIDs: [String],
payloadRelativePaths: [String: String],
protectedPayloadRelativePaths: Set<String>,
completion: @escaping @MainActor (Bool) -> Void
)
}
protocol TransportEventDelegate: AnyObject {
@MainActor func didReceiveTransportEvent(_ event: TransportEvent)
}
/// Optional typed-event contract for sinks that can synchronously decide
/// whether an inbound message was accepted.
protocol SynchronousMessageTransportEventDelegate: TransportEventDelegate {
@MainActor
func didReceiveTransportMessageSynchronously(_ message: BitchatMessage) -> Bool
}
protocol Transport: AnyObject {
// Event sink
var delegate: BitchatDelegate? { get set }
@@ -183,6 +203,14 @@ protocol Transport: AnyObject {
transferId: String,
allowLegacyFallback: Bool
)
/// Automatic whole-file retry is admitted only while this exact Noise
/// generation authenticates bit 9. It must never queue across a session
/// replacement or enter the signed raw legacy path.
func sendFilePrivateReceiptRetry(
_ packet: BitchatFilePacket,
to peerID: PeerID,
transferId: String
)
func cancelTransfer(_ transferId: String)
// Live voice / push-to-talk (mesh transports only): one encoded
@@ -229,6 +257,11 @@ protocol Transport: AnyObject {
/// empty for peers that predate the capabilities TLV.
func peerCapabilities(_ peerID: PeerID) -> PeerCapabilities
func privateMediaSendPolicy(to peerID: PeerID) -> PrivateMediaSendPolicy
/// The exact current Noise generation that authenticated both encrypted
/// private media (bit 8) and durable receipts/retry (bit 9).
func authenticatedPrivateMediaReceiptSessionGeneration(
to peerID: PeerID
) -> UUID?
func resolvePrivateMediaSendPolicy(
to peerID: PeerID,
completion: @escaping @MainActor (PrivateMediaSendPolicy) -> Void
@@ -304,6 +337,11 @@ extension Transport {
func broadcastGroupMessage(_ envelope: Data) {}
func peerCapabilities(_ peerID: PeerID) -> PeerCapabilities { [] }
func privateMediaSendPolicy(to peerID: PeerID) -> PrivateMediaSendPolicy { .blockedDowngrade }
func authenticatedPrivateMediaReceiptSessionGeneration(
to peerID: PeerID
) -> UUID? {
nil
}
func resolvePrivateMediaSendPolicy(
to peerID: PeerID,
completion: @escaping @MainActor (PrivateMediaSendPolicy) -> Void
@@ -338,6 +376,11 @@ extension Transport {
guard !allowLegacyFallback else { return }
sendFilePrivate(packet, to: peerID, transferId: transferId)
}
func sendFilePrivateReceiptRetry(
_ packet: BitchatFilePacket,
to peerID: PeerID,
transferId: String
) {}
func cancelTransfer(_ transferId: String) {}
func sendMessage(_ content: String, mentions: [String], messageID: String, timestamp: Date) {
+34 -3
View File
@@ -15,6 +15,13 @@ enum TransportConfig {
static let privateMediaCapabilityProofTimeoutSeconds: TimeInterval = 5
static let privateMediaCapabilityProofPendingPeerCap: Int = 64
static let privateMediaCapabilityProofWaitersPerPeerCap: Int = 16
/// Accepted private-media receipts and explicit-deletion tombstones each
/// receive this independent capacity.
static let privateMediaReceivedLedgerCapacity: Int = 4_096
/// A bounded retry horizon prevents stable receipt state from growing into
/// permanent application history.
static let privateMediaReceivedLedgerTTLSeconds: TimeInterval =
7 * 24 * 60 * 60
static let bleFragmentRelayMinDelayMs: Int = 8 // Faster forwarding for media fragments
static let bleFragmentRelayMaxDelayMs: Int = 25 // Upper jitter bound for fragment relays
// Fragment relay TTL in sparse graphs; matches messageTTLDefault so media
@@ -188,7 +195,22 @@ enum TransportConfig {
static let nostrGeoRelayCount: Int = 5
static let nostrGeohashSampleLookbackSeconds: TimeInterval = 300
static let nostrGeohashSampleLimit: Int = 100
static let nostrDMSubscribeLookbackSeconds: TimeInterval = 86400
/// New iOS public-envelope timestamps are deliberately shifted into the
/// past for privacy and relay compatibility.
static let nostrPrivateEnvelopeTimestampFuzzSeconds: TimeInterval = 15 * 60
/// Deployed Android clients can shift legacy kind-1059 timestamps by the
/// full preceding 48 hours.
static let nostrLegacyAndroidTimestampFuzzSeconds: TimeInterval = 48 * 60 * 60
/// Private mail remains eligible for delivery for the same 24-hour window
/// as the persistent sender outbox. The relay query must add timestamp
/// randomization to that window rather than replacing it: an Android event
/// sent at t0 can legitimately be stamped t0-48h and fetched at t0+24h.
static let nostrPrivateEnvelopeDeliveryWindowSeconds: TimeInterval = 24 * 60 * 60
static let nostrDMSubscribeClockSkewSeconds: TimeInterval = 15 * 60
static let nostrDMSubscribeLookbackSeconds: TimeInterval =
nostrPrivateEnvelopeDeliveryWindowSeconds
+ nostrLegacyAndroidTimestampFuzzSeconds
+ nostrDMSubscribeClockSkewSeconds
// A sampled chat message this recent means "a conversation is happening
// there" for the empty-timeline nearby-activity hint.
static let uiGeohashChatActivityWindowSeconds: TimeInterval = 900
@@ -216,11 +238,20 @@ enum TransportConfig {
// Reconnect delays get ±20% random jitter so relays that dropped together
// (e.g. a network blip) don't thundering-herd the same reconnect instant.
static let nostrRelayBackoffJitterRatio: Double = 0.2
static let nostrRelayDefaultFetchLimit: Int = 100
/// Migration recovery uses one independent relay filter per wire kind so
/// primary traffic cannot consume the legacy result budget (or vice
/// versa). Five hundred per kind bounds startup work while preserving a
/// materially deeper offline mailbox than the generic feed default.
static let nostrPrivateEnvelopeFetchLimitPerKind: Int = 500
// How many consecutive Tor-readiness waits (each bounded by TorManager's
// bootstrap deadline) to attempt before unblocking pending EOSE callers.
static let nostrTorReadyMaxWaitAttempts: Int = 3
static let nostrPendingSendQueueCap: Int = 200
/// Control-payload pairs (delivery/read acknowledgements and favorite
/// notifications) that could not enter the relay queue. User messages do
/// not use this queue: they fail visibly, while direct messages also
/// remain in the router outbox.
static let nostrPrivateEnvelopeRetryQueueCap: Int = 256
// Sample interval for the send-queue overflow warning (first + every Nth
// dropped event). Drops are ephemeral presence/geo traffic log-only.
static let nostrPendingSendDropLogInterval: Int = 10
@@ -232,7 +263,7 @@ enum TransportConfig {
// Fallback deadline for treating a subscription's initial fetch as complete
// when a relay never sends EOSE (generous to cover Tor circuit setup).
static let nostrSubscriptionEOSEFallbackSeconds: TimeInterval = 10.0
// A bridge drop is durable only after NIP-20 OK. Relays that omit OK must
// A bridge drop is durable only after NIP-01 `OK`. Relays that omit `OK` must
// not pin the router's in-flight state indefinitely.
static let nostrConfirmedSendAckTimeoutSeconds: TimeInterval = 10.0
// After this long, a relay marked permanently failed gets another chance.
@@ -55,6 +55,9 @@ extension ChatViewModel: ChatDeliveryContext {
func markMessageDelivered(_ messageID: String) {
messageRouter.markDelivered(messageID)
mediaTransferCoordinator.confirmPrivateMediaDelivery(
messageID: messageID
)
}
}
@@ -10,6 +10,7 @@ import Foundation
@MainActor
protocol ChatLiveVoiceContext: AnyObject {
var nickname: String { get }
var myPeerID: PeerID { get }
var selectedPrivateChatPeer: PeerID? { get }
/// Whether the public mesh timeline is what's on screen (autoplay gate
/// for public bursts).
@@ -30,6 +31,12 @@ protocol ChatLiveVoiceContext: AnyObject {
func upsertPublicMeshMessage(_ message: BitchatMessage)
@discardableResult
func removePrivateMessage(withID messageID: String) -> BitchatMessage?
/// Records and sends the finalized note's read receipt after a live
/// bubble adopts its wire-derivable message ID.
func hasSentReadReceipt(_ messageID: String) -> Bool
@discardableResult
func markReadReceiptSent(_ messageID: String) -> Bool
func sendMeshReadReceipt(_ receipt: ReadReceipt, to peerID: PeerID)
/// Removes a message from whichever conversation holds it.
func removeMessage(withID messageID: String, cleanupFile: Bool)
/// Publishes who is currently talking live in the public mesh channel
@@ -272,8 +279,16 @@ final class ChatLiveVoiceCoordinator {
guard let entry = finishedBursts.first(where: { matches($0.key) }) else { return false }
let finished = entry.value
// A DM live bubble starts before the finalized file exists and
// therefore has a receiver-local random ID. Adopt the finalized
// message's deterministic ID so delivery/read ACKs address the same
// row as the sender's media placeholder. Public notes retain their
// live-bubble ID because public transfers have no private receipts.
let replacementID = finished.scope == .directMessage
? message.id
: finished.messageID
let replacement = BitchatMessage(
id: finished.messageID,
id: replacementID,
sender: message.sender,
content: message.content,
timestamp: finished.messageTimestamp,
@@ -287,7 +302,31 @@ final class ChatLiveVoiceCoordinator {
)
switch finished.scope {
case .directMessage:
// Capture read state before rekeying. The user may have read the
// live bubble and navigated away before the finalized .m4a lands.
let shouldSendAdoptedReadReceipt =
context.hasSentReadReceipt(finished.messageID)
|| context.selectedPrivateChatPeer == finished.peerID
// Insert first so replacing the only row in a DM never
// transiently deletes its conversation, unread state, or current
// selection. Then remove the receiver-local live-bubble alias.
context.upsertPrivateMessage(replacement, in: finished.peerID)
if replacementID != finished.messageID {
context.removePrivateMessage(withID: finished.messageID)
}
// The live bubble may already have emitted a receiver-local READ
// before the sender created its finalized media row. Re-emit once
// for the adopted stable ID now that the file has arrived.
if shouldSendAdoptedReadReceipt,
context.markReadReceiptSent(replacementID) {
let receipt = ReadReceipt(
originalMessageID: replacementID,
readerID: context.myPeerID,
readerNickname: context.nickname
)
context.sendMeshReadReceipt(receipt, to: finished.peerID)
}
case .publicMesh:
context.upsertPublicMeshMessage(replacement)
}
File diff suppressed because it is too large Load Diff
@@ -100,9 +100,14 @@ final class ChatPeerListCoordinator: @unchecked Sendable {
func didUpdatePeerList(_ peers: [PeerID]) {
Task { @MainActor [weak self] in
self?.handlePeerListUpdate(peers)
self?.didUpdatePeerListSynchronously(peers)
}
}
@MainActor
func didUpdatePeerListSynchronously(_ peers: [PeerID]) {
handlePeerListUpdate(peers)
}
}
private extension ChatPeerListCoordinator {
@@ -86,7 +86,13 @@ protocol ChatPrivateConversationContext: AnyObject {
@discardableResult
func routeReadReceipt(_ receipt: ReadReceipt, to peerID: PeerID) -> Bool
func sendMeshReadReceipt(_ receipt: ReadReceipt, to peerID: PeerID)
func sendGeohashPrivateMessage(_ content: String, toRecipientHex recipientHex: String, from identity: NostrIdentity, messageID: String)
@discardableResult
func sendGeohashPrivateMessage(
_ content: String,
toRecipientHex recipientHex: String,
from identity: NostrIdentity,
messageID: String
) -> Bool
func sendGeohashDeliveryAck(for messageID: String, toRecipientHex recipientHex: String, from identity: NostrIdentity)
func sendGeohashReadReceipt(_ messageID: String, toRecipientHex recipientHex: String, from identity: NostrIdentity)
@@ -174,7 +180,13 @@ extension ChatViewModel: ChatPrivateConversationContext {
meshService.sendReadReceipt(receipt, to: peerID)
}
func sendGeohashPrivateMessage(_ content: String, toRecipientHex recipientHex: String, from identity: NostrIdentity, messageID: String) {
@discardableResult
func sendGeohashPrivateMessage(
_ content: String,
toRecipientHex recipientHex: String,
from identity: NostrIdentity,
messageID: String
) -> Bool {
makeGeohashNostrTransport().sendPrivateMessageGeohash(
content: content,
toRecipientHex: recipientHex,
@@ -216,9 +228,16 @@ extension ChatViewModel: ChatPrivateConversationContext {
NotificationService.shared.sendPrivateMessageNotification(from: senderName, message: message, peerID: peerID)
}
private func makeGeohashNostrTransport() -> NostrTransport {
let transport = NostrTransport(keychain: keychain, idBridge: idBridge)
func makeGeohashNostrTransport(
dependencies: NostrTransport.Dependencies? = nil
) -> NostrTransport {
let transport = NostrTransport(
keychain: keychain,
idBridge: idBridge,
dependencies: dependencies
)
transport.senderPeerID = meshService.myPeerID
transport.eventDelegate = self
return transport
}
}
@@ -227,7 +246,7 @@ extension ChatViewModel: ChatPrivateConversationContext {
final class ChatPrivateConversationCoordinator {
private unowned let context: any ChatPrivateConversationContext
// Outbox retries re-wrap the same message in fresh gift-wrap events, so
// Outbox retries re-envelope the same message in fresh private events, so
// relay-level event-ID dedup can't catch them; track inbound GeoDM
// message IDs so each copy past the first costs one (already-deduped)
// ack check and nothing else.
@@ -399,13 +418,21 @@ final class ChatPrivateConversationCoordinator {
"GeoDM: local send mid=\(messageID.prefix(8))… to=\(recipientHex.prefix(8))… conv=\(peerID)",
category: .session
)
context.sendGeohashPrivateMessage(
let accepted = context.sendGeohashPrivateMessage(
content,
toRecipientHex: recipientHex,
from: identity,
messageID: messageID
)
context.setPrivateDeliveryStatus(.sent, forMessageID: messageID, peerID: peerID)
let status: DeliveryStatus = accepted
? .sent
: .failed(
reason: String(
localized: "content.delivery.reason.not_delivered",
comment: "Failure reason shown when a private message could not enter the relay delivery queue"
)
)
context.setPrivateDeliveryStatus(status, forMessageID: messageID, peerID: peerID)
} catch {
context.setPrivateDeliveryStatus(
.failed(
@@ -163,21 +163,20 @@ final class ChatTransportEventCoordinator {
}
func didReceiveMessage(_ message: BitchatMessage) {
runOnMain { context in
guard !context.isMessageBlocked(message) else { return }
guard !message.content.trimmed.isEmpty || message.isPrivate else { return }
if message.isPrivate {
context.handlePrivateMessage(message)
} else {
context.handlePublicMessage(message)
}
context.checkForMentions(message)
context.sendHapticFeedback(for: message)
runOnMain { [self] context in
handleReceivedMessage(message, in: context)
}
}
/// Typed transport events already arrive on the main actor. Handle them
/// synchronously so observers see the ConversationStore mutation before
/// the transport completes delivery.
@MainActor
@discardableResult
func didReceiveMessageSynchronously(_ message: BitchatMessage) -> Bool {
handleReceivedMessage(message, in: context)
}
func didReceivePublicMessage(
from peerID: PeerID,
nickname: String,
@@ -185,28 +184,36 @@ final class ChatTransportEventCoordinator {
timestamp: Date,
messageID: String?
) {
runOnMain { context in
let normalized = content.trimmed
let mentions = context.parseMentions(from: normalized)
let message = BitchatMessage(
id: messageID,
sender: nickname,
content: normalized,
runOnMain { [self] context in
handlePublicMessage(
from: peerID,
nickname: nickname,
content: content,
timestamp: timestamp,
isRelay: false,
originalSender: nil,
isPrivate: false,
recipientNickname: nil,
senderPeerID: peerID,
mentions: mentions.isEmpty ? nil : mentions
messageID: messageID,
in: context
)
context.handlePublicMessage(message)
context.checkForMentions(message)
context.sendHapticFeedback(for: message)
}
}
@MainActor
func didReceivePublicMessageSynchronously(
from peerID: PeerID,
nickname: String,
content: String,
timestamp: Date,
messageID: String?
) {
handlePublicMessage(
from: peerID,
nickname: nickname,
content: content,
timestamp: timestamp,
messageID: messageID,
in: context
)
}
func didReceiveNoisePayload(
from peerID: PeerID,
type: NoisePayloadType,
@@ -224,59 +231,134 @@ final class ChatTransportEventCoordinator {
}
}
@MainActor
func didReceiveNoisePayloadSynchronously(
from peerID: PeerID,
type: NoisePayloadType,
payload: Data,
timestamp: Date
) {
handleNoisePayload(
from: peerID,
type: type,
payload: payload,
timestamp: timestamp,
in: context
)
}
func didConnectToPeer(_ peerID: PeerID) {
SecureLogger.debug("🤝 Peer connected: \(peerID)", category: .session)
runOnMain { context in
context.isConnected = true
context.registerEphemeralSession(peerID: peerID)
context.notifyUIChanged()
if let peer = context.unifiedPeer(for: peerID) {
let stablePeerID = PeerID(hexData: peer.noisePublicKey)
context.cacheStablePeerID(stablePeerID, for: peerID)
}
context.flushRouterOutbox(for: peerID)
context.retryCourierDeposits(via: peerID)
runOnMain { [weak self] _ in
self?.didConnectToPeerSynchronously(peerID)
}
}
@MainActor
func didConnectToPeerSynchronously(_ peerID: PeerID) {
SecureLogger.debug("🤝 Peer connected: \(peerID)", category: .session)
context.isConnected = true
context.registerEphemeralSession(peerID: peerID)
context.notifyUIChanged()
if let peer = context.unifiedPeer(for: peerID) {
let stablePeerID = PeerID(hexData: peer.noisePublicKey)
context.cacheStablePeerID(stablePeerID, for: peerID)
}
context.flushRouterOutbox(for: peerID)
context.retryCourierDeposits(via: peerID)
}
func didDisconnectFromPeer(_ peerID: PeerID) {
runOnMain { [weak self] _ in
self?.didDisconnectFromPeerSynchronously(peerID)
}
}
@MainActor
func didDisconnectFromPeerSynchronously(_ peerID: PeerID) {
SecureLogger.debug("👋 Peer disconnected: \(peerID)", category: .session)
runOnMain { context in
context.removeEphemeralSession(peerID: peerID)
context.removeEphemeralSession(peerID: peerID)
var stablePeerID = context.cachedStablePeerID(for: peerID)
if stablePeerID == nil,
let key = context.noiseSessionPublicKeyData(for: peerID) {
let derivedPeerID = PeerID(hexData: key)
context.cacheStablePeerID(derivedPeerID, for: peerID)
stablePeerID = derivedPeerID
}
if let currentPeerID = context.selectedPrivateChatPeer,
currentPeerID == peerID,
let stablePeerID {
self.migrateSelectedConversationIfNeeded(
from: peerID,
to: stablePeerID,
in: context
)
}
let receiptIDs = context.privateMessages(for: peerID)
.filter { $0.senderPeerID == peerID }
.map(\.id)
context.unmarkReadReceiptsSent(receiptIDs)
context.notifyUIChanged()
var stablePeerID = context.cachedStablePeerID(for: peerID)
if stablePeerID == nil,
let key = context.noiseSessionPublicKeyData(for: peerID) {
let derivedPeerID = PeerID(hexData: key)
context.cacheStablePeerID(derivedPeerID, for: peerID)
stablePeerID = derivedPeerID
}
if let currentPeerID = context.selectedPrivateChatPeer,
currentPeerID == peerID,
let stablePeerID {
migrateSelectedConversationIfNeeded(
from: peerID,
to: stablePeerID,
in: context
)
}
let receiptIDs = context.privateMessages(for: peerID)
.filter { $0.senderPeerID == peerID }
.map(\.id)
context.unmarkReadReceiptsSent(receiptIDs)
context.notifyUIChanged()
}
}
private extension ChatTransportEventCoordinator {
@MainActor
func handlePublicMessage(
from peerID: PeerID,
nickname: String,
content: String,
timestamp: Date,
messageID: String?,
in context: any ChatTransportEventContext
) {
let normalized = content.trimmed
let mentions = context.parseMentions(from: normalized)
let message = BitchatMessage(
id: messageID,
sender: nickname,
content: normalized,
timestamp: timestamp,
isRelay: false,
originalSender: nil,
isPrivate: false,
recipientNickname: nil,
senderPeerID: peerID,
mentions: mentions.isEmpty ? nil : mentions
)
context.handlePublicMessage(message)
context.checkForMentions(message)
context.sendHapticFeedback(for: message)
}
@MainActor
@discardableResult
func handleReceivedMessage(
_ message: BitchatMessage,
in context: any ChatTransportEventContext
) -> Bool {
guard !context.isMessageBlocked(message) else { return false }
guard !message.content.trimmed.isEmpty || message.isPrivate else { return false }
if message.isPrivate {
context.handlePrivateMessage(message)
} else {
context.handlePublicMessage(message)
}
context.checkForMentions(message)
context.sendHapticFeedback(for: message)
return true
}
func runOnMain(_ action: @escaping @MainActor (any ChatTransportEventContext) -> Void) {
Task { @MainActor [weak context = self.context] in
guard let context else { return }
@@ -58,6 +58,7 @@ protocol ChatVerificationContext: AnyObject {
func noiseStaticPublicKeyData() -> Data
func hasEstablishedNoiseSession(with peerID: PeerID) -> Bool
func triggerHandshake(with peerID: PeerID)
func privateMediaPeerDidAuthenticate(_ peerID: PeerID)
func sendVerifyChallenge(to peerID: PeerID, noiseKeyHex: String, nonceA: Data)
func sendVerifyResponse(to peerID: PeerID, noiseKeyHex: String, nonceA: Data)
@@ -116,6 +117,10 @@ extension ChatViewModel: ChatVerificationContext {
meshService.noiseStaticPublicKeyData()
}
func privateMediaPeerDidAuthenticate(_ peerID: PeerID) {
mediaTransferCoordinator.peerDidAuthenticate(peerID.toShort())
}
func sendVerifyChallenge(to peerID: PeerID, noiseKeyHex: String, nonceA: Data) {
meshService.sendVerifyChallenge(to: peerID, noiseKeyHex: noiseKeyHex, nonceA: nonceA)
}
@@ -129,6 +134,10 @@ extension ChatViewModel: ChatVerificationContext {
}
}
extension ChatVerificationContext {
func privateMediaPeerDidAuthenticate(_ peerID: PeerID) {}
}
@MainActor
final class ChatVerificationCoordinator {
struct PendingVerification {
@@ -197,6 +206,7 @@ final class ChatVerificationCoordinator {
guard let self else { return }
SecureLogger.debug("🔐 Authenticated: \(peerID)", category: .security)
self.context.privateMediaPeerDidAuthenticate(peerID)
if self.context.isVerifiedFingerprint(fingerprint) {
self.context.setEncryptionStatus(.noiseVerified, for: peerID)
+370 -3
View File
@@ -109,10 +109,20 @@ struct PanicNetworkLifecycle {
}
}
private struct PendingPrivateChatClear {
let peerID: PeerID
let sourceConversationID: ConversationID
let messages: [BitchatMessage]
let otherMessageIDs: Set<String>
let localPeerID: PeerID
let nickname: String
let outgoingMedia: [BitchatMessage]
}
/// Manages the application state and business logic for BitChat.
/// Acts as the primary coordinator between UI components and backend services,
/// implementing the BitchatDelegate protocol to handle network events.
final class ChatViewModel: ObservableObject, BitchatDelegate, TransportEventDelegate, CommandContextProvider, GeohashParticipantContext, MessageFormattingContext {
final class ChatViewModel: ObservableObject, BitchatDelegate, SynchronousMessageTransportEventDelegate, CommandContextProvider, GeohashParticipantContext, MessageFormattingContext {
// Use MessageFormattingEngine.Patterns for regex matching (shared, precompiled)
typealias Patterns = MessageFormattingEngine.Patterns
@@ -376,6 +386,11 @@ final class ChatViewModel: ObservableObject, BitchatDelegate, TransportEventDele
@Published var bluetoothAlertMessage = ""
@Published var bluetoothState: CBManagerState = .unknown
@Published private(set) var legacyPrivateMediaConsentRequest: LegacyPrivateMediaConsentRequest?
@MainActor private var queuedPrivateChatClears: [
PendingPrivateChatClear
] = []
@MainActor private var privateChatClearInFlight = false
@MainActor private var privateChatClearGeneration: UInt64 = 0
private var pendingLegacyPrivateMediaConsents: [PendingLegacyPrivateMediaConsent] = []
private func performDeliveryUpdate(_ update: @escaping @MainActor (ChatDeliveryCoordinator) -> Void) {
@@ -495,6 +510,12 @@ final class ChatViewModel: ObservableObject, BitchatDelegate, TransportEventDele
}
}
/// Whether a read receipt has already been recorded for `messageID`.
@MainActor
func hasSentReadReceipt(_ messageID: String) -> Bool {
sentReadReceipts.contains(messageID)
}
/// Records that a read receipt is being sent for `messageID`.
/// Returns `false` when one was already recorded the caller must skip sending.
@MainActor
@@ -637,7 +658,271 @@ final class ChatViewModel: ObservableObject, BitchatDelegate, TransportEventDele
/// Empties the peer's chat but keeps the conversation alive (`/clear`).
@MainActor
func clearPrivateChat(_ peerID: PeerID) {
conversations.clear(.directPeer(peerID))
let sourceConversationID = ConversationID.directPeer(peerID)
// An active live-voice row owns an open FileHandle and may be
// republished as frames/final media arrive. Treat it like an in-flight
// arrival rather than unlinking its capture or removing its bubble.
let messages = privateMessages(for: peerID).filter {
!liveVoiceCoordinator.isLiveVoiceMessage($0)
}
let localPeerID = meshService.myPeerID.toShort()
let currentNickname = nickname
let mediaPrefixes = [
MimeType.Category.audio.messagePrefix,
MimeType.Category.image.messagePrefix,
MimeType.Category.file.messagePrefix
]
let outgoingMedia = messages.filter { message in
guard mediaPrefixes.contains(where: {
message.content.hasPrefix($0)
}) else {
return false
}
if let senderPeerID = message.senderPeerID {
return senderPeerID.toShort() == localPeerID
}
return message.sender == currentNickname
|| message.sender.hasPrefix(currentNickname + "#")
}
// Send ownership is canceled at command time even when another clear
// transaction is ahead in the queue. UI and files remain untouched
// until this request's receiver journal commit succeeds.
for message in outgoingMedia {
mediaTransferCoordinator
.cancelMediaTransferForConversationClear(
messageID: message.id
)
}
queuedPrivateChatClears.append(PendingPrivateChatClear(
peerID: peerID,
sourceConversationID: sourceConversationID,
messages: messages,
otherMessageIDs: Set(
privateChats
.filter { $0.key != peerID }
.flatMap { $0.value.map(\.id) }
),
localPeerID: localPeerID,
nickname: currentNickname,
outgoingMedia: outgoingMedia
))
startNextPrivateChatClearIfNeeded()
}
@MainActor
private func startNextPrivateChatClearIfNeeded() {
guard !privateChatClearInFlight,
!queuedPrivateChatClears.isEmpty else {
return
}
privateChatClearInFlight = true
let request = queuedPrivateChatClears.removeFirst()
let generation = privateChatClearGeneration
performPrivateChatClear(
request,
generation: generation
) { [weak self] in
guard let self,
self.privateChatClearGeneration == generation else {
return
}
self.privateChatClearInFlight = false
self.startNextPrivateChatClearIfNeeded()
}
}
@MainActor
private func performPrivateChatClear(
_ request: PendingPrivateChatClear,
generation: UInt64,
completion: @escaping @MainActor () -> Void
) {
guard privateChatClearGeneration == generation else {
completion()
return
}
let peerID = request.peerID
let selectedConversationID = request.sourceConversationID
let messagesToClear = request.messages
guard !messagesToClear.isEmpty else {
completion()
return
}
// Capture the transaction's exact UI set before any off-main receipt
// I/O. Messages arriving while the journal is written are not part of
// this command and must remain visible.
let capturedMessageIDs = Set(messagesToClear.map(\.id))
let survivingMessageIDs = request.otherMessageIDs
let mediaPrefixes = [
MimeType.Category.audio.messagePrefix,
MimeType.Category.image.messagePrefix,
MimeType.Category.file.messagePrefix
]
let localPeerID = request.localPeerID
let isMedia: (BitchatMessage) -> Bool = { message in
mediaPrefixes.contains(where: message.content.hasPrefix)
}
let isFromMe: (BitchatMessage) -> Bool = { [nickname = request.nickname] message in
if let senderPeerID = message.senderPeerID {
return senderPeerID.toShort() == localPeerID
}
return message.sender == nickname
|| message.sender.hasPrefix(nickname + "#")
}
let outgoingMedia = request.outgoingMedia
let outgoingMediaIDs = Set(outgoingMedia.map(\.id))
let capturedExclusiveIDs =
capturedMessageIDs.subtracting(survivingMessageIDs)
let capturedIncomingMedia = messagesToClear.filter {
isMedia($0) && !isFromMe($0)
}
let capturedStableMediaIDs = Set(
capturedIncomingMedia.compactMap { message in
PrivateMediaMessageIdentity.isStableID(message.id)
? message.id
: nil
}
)
func currentRemovalPlan() -> [ConversationID: Set<String>] {
// Identity handoff removes the source conversation and inserts its
// rows elsewhere. The old source may then be recreated by a new
// arrival before journal I/O finishes, so always scan all direct
// conversations. Only IDs exclusive at command time may follow a
// migration; shared aliases remain outside the source.
var plan: [ConversationID: Set<String>] = [:]
for (conversationID, conversation) in
conversations.conversationsByID {
guard case .direct = conversationID else { continue }
let eligibleIDs = conversationID == selectedConversationID
? capturedMessageIDs
: capturedExclusiveIDs
let matchingIDs = Set(conversation.messages.map(\.id))
.intersection(eligibleIDs)
if !matchingIDs.isEmpty {
plan[conversationID] = matchingIDs
}
}
return plan
}
func hasRemainingCopy(
of messageID: String,
after plan: [ConversationID: Set<String>]
) -> Bool {
conversations.conversationsByID.contains { conversationID, conversation in
guard case .direct = conversationID else { return false }
return conversation.messages.contains { message in
message.id == messageID
&& plan[conversationID]?.contains(messageID) != true
}
}
}
@MainActor
func continueClear(
persisted: Bool,
durableStableIDs: Set<String>
) {
guard privateChatClearGeneration == generation else {
completion()
return
}
guard persisted else {
SecureLogger.error(
"Refusing to clear private chat without durable media tombstones peer=\(peerID.id.prefix(8))",
category: .session
)
completion()
return
}
let plan = currentRemovalPlan()
let newlyLastStableIDs = Set(
capturedStableMediaIDs.filter {
!durableStableIDs.contains($0)
&& !hasRemainingCopy(of: $0, after: plan)
}
)
if !newlyLastStableIDs.isEmpty {
persistDeletedPrivateMedia(
messageIDs: Array(newlyLastStableIDs).sorted()
) { persisted in
continueClear(
persisted: persisted,
durableStableIDs:
durableStableIDs.union(newlyLastStableIDs)
)
}
return
}
// A stable receiver tombstone is global for that message ID.
// Remove any alias that arrived while journal I/O was in flight.
if !durableStableIDs.isEmpty {
let directConversationIDs = conversations
.conversationsByID.keys.filter {
if case .direct = $0 { return true }
return false
}
for conversationID in directConversationIDs {
conversations.removeMessages(from: conversationID) {
durableStableIDs.contains($0.id)
}
}
}
for message in outgoingMedia {
mediaTransferCoordinator.cleanupOutgoingLocalFile(
forMessage: message
)
}
if !outgoingMediaIDs.isEmpty {
let directConversationIDs = conversations
.conversationsByID.keys.filter {
if case .direct = $0 { return true }
return false
}
for conversationID in directConversationIDs {
conversations.removeMessages(from: conversationID) {
outgoingMediaIDs.contains($0.id)
}
}
}
// Stable payload cleanup belongs entirely to the durable receiver
// journal. Legacy/raw incoming payloads have no durable identity,
// so their basenames may already belong to a pending new arrival;
// leave those files for bounded quota cleanup.
let finalPlan = currentRemovalPlan()
for (conversationID, messageIDs) in finalPlan {
conversations.removeMessages(from: conversationID) {
messageIDs.contains($0.id)
}
}
completion()
}
let initialPlan = currentRemovalPlan()
let initialStableIDs = Set(
capturedStableMediaIDs.filter {
!hasRemainingCopy(of: $0, after: initialPlan)
}
)
persistDeletedPrivateMedia(
messageIDs: Array(initialStableIDs).sorted()
) { persisted in
continueClear(
persisted: persisted,
durableStableIDs: initialStableIDs
)
}
}
/// Removes the peer's chat entirely, including unread state.
@@ -1269,6 +1554,9 @@ final class ChatViewModel: ObservableObject, BitchatDelegate, TransportEventDele
// handles before clearing state or removing the media directory.
mediaTransferCoordinator.resetForPanic()
liveVoiceCoordinator.resetForPanic()
privateChatClearGeneration &+= 1
queuedPrivateChatClears.removeAll(keepingCapacity: false)
privateChatClearInFlight = false
// Deny and release any clear-media confirmations before identities,
// message state, and local files are wiped.
@@ -1366,6 +1654,7 @@ final class ChatViewModel: ObservableObject, BitchatDelegate, TransportEventDele
// Drop relay subscriptions, handlers, pending sends, and replay state.
// Geohash DM handlers can capture pre-wipe Nostr identities, so a plain
// disconnect is not enough here.
NostrTransport.resetControlRetriesForPanicWipe()
NostrRelayManager.shared.resetForPanicWipe()
nostrRelayManager = nil
@@ -1701,7 +1990,82 @@ final class ChatViewModel: ObservableObject, BitchatDelegate, TransportEventDele
@MainActor
func didReceiveTransportEvent(_ event: TransportEvent) {
receiveTransportEvent(event)
switch event {
case .messageReceived(let message):
_ = didReceiveTransportMessageSynchronously(message)
case let .publicMessageReceived(
peerID,
nickname,
content,
timestamp,
messageID
):
transportEventCoordinator.didReceivePublicMessageSynchronously(
from: peerID,
nickname: nickname,
content: content,
timestamp: timestamp,
messageID: messageID
)
case let .noisePayloadReceived(peerID, type, payload, timestamp):
transportEventCoordinator.didReceiveNoisePayloadSynchronously(
from: peerID,
type: type,
payload: payload,
timestamp: timestamp
)
case let .groupMessageReceived(payload, timestamp):
groupCoordinator.handleGroupMessagePayload(
payload,
timestamp: timestamp
)
case let .publicVoiceFrameReceived(
peerID,
nickname,
payload,
timestamp
):
liveVoiceCoordinator.handlePublicVoiceFramePayload(
from: peerID,
nickname: nickname,
payload: payload,
timestamp: timestamp
)
case .peerConnected(let peerID):
transportEventCoordinator.didConnectToPeerSynchronously(peerID)
mediaTransferCoordinator.peerDidReconnect(peerID)
case .peerDisconnected(let peerID):
transportEventCoordinator.didDisconnectFromPeerSynchronously(peerID)
case .peerListUpdated(let peers):
peerListCoordinator.didUpdatePeerListSynchronously(peers)
// A peer-list update follows every verified announce, which is
// where a peer's `.vouch` capability actually arrives.
vouchCoordinator.peersUpdated(peers)
case .peerSnapshotsUpdated:
break
case let .messageDeliveryStatusUpdated(messageID, status):
deliveryCoordinator.didUpdateMessageDeliveryStatus(
messageID,
status: status
)
case .bluetoothStateUpdated(let state):
updateBluetoothState(state)
}
}
@MainActor
func didReceiveTransportMessageSynchronously(_ message: BitchatMessage) -> Bool {
transportEventCoordinator.didReceiveMessageSynchronously(message)
}
func didReceiveMessage(_ message: BitchatMessage) {
@@ -1764,6 +2128,9 @@ final class ChatViewModel: ObservableObject, BitchatDelegate, TransportEventDele
func didConnectToPeer(_ peerID: PeerID) {
transportEventCoordinator.didConnectToPeer(peerID)
Task { @MainActor [weak self] in
self?.mediaTransferCoordinator.peerDidReconnect(peerID)
}
}
func didDisconnectFromPeer(_ peerID: PeerID) {
@@ -41,10 +41,11 @@ struct ChatViewModelServiceBundle {
self.privateChatManager = privateChatManager
self.unifiedPeerService = unifiedPeerService
self.autocompleteService = AutocompleteService()
// Persist processed gift-wrap event IDs: NIP-59 randomizes their
// timestamps, so the 24h-lookback DM subscriptions redeliver the same
// events on every launch and only a cross-launch record stops the
// reprocessing (re-sent DELIVERED bursts, phantom-ack noise).
// Persist processed private-envelope event IDs: legacy Android can
// randomize timestamps across the full 72h15m mailbox lookback, so DM
// subscriptions redeliver the same events on every launch and only a
// cross-launch record stops the reprocessing (re-sent DELIVERED
// bursts, phantom-ack noise).
self.deduplicationService = MessageDeduplicationService(nostrEventStore: NostrProcessedEventStore())
self.publicMessagePipeline = PublicMessagePipeline()
}
@@ -176,7 +177,7 @@ private extension ChatViewModelBootstrapper {
func configureTransport() {
viewModel.meshService.delegate = viewModel
viewModel.meshService.eventDelegate = viewModel
viewModel.messageRouter.setEventDelegate(viewModel)
DispatchQueue.main.asyncAfter(deadline: .now() + TransportConfig.uiStartupInitialDelaySeconds) { [weak viewModel] in
guard let viewModel else { return }
@@ -558,7 +559,7 @@ private extension ChatViewModelBootstrapper {
// Default (DM) relays: drops need the standing global relay set,
// not geo relays sender and recipient share no cell.
// This confirmed path never falls back to the volatile relay
// queue; bridge dedup is committed only after NIP-20 OK.
// queue; bridge dedup is committed only after NIP-01 `OK`.
NostrRelayManager.shared.sendEventImmediately(event, completion: completion)
}
courier.openSubscription = { tagsHex in
@@ -21,8 +21,8 @@ extension ChatViewModel {
}
@MainActor
func subscribeGiftWrap(_ giftWrap: NostrEvent, id: NostrIdentity) {
nostrCoordinator.inbound.subscribeGiftWrap(giftWrap, id: id)
func subscribePrivateEnvelope(_ envelope: NostrEvent, id: NostrIdentity) {
nostrCoordinator.inbound.subscribePrivateEnvelope(envelope, id: id)
}
@MainActor
@@ -36,8 +36,8 @@ extension ChatViewModel {
}
@MainActor
func handleGiftWrap(_ giftWrap: NostrEvent, id: NostrIdentity) {
nostrCoordinator.inbound.handleGiftWrap(giftWrap, id: id)
func handlePrivateEnvelope(_ envelope: NostrEvent, id: NostrIdentity) {
nostrCoordinator.inbound.handlePrivateEnvelope(envelope, id: id)
}
@MainActor
@@ -108,7 +108,7 @@ extension ChatViewModel: GeohashSubscriptionContext {
}
/// Owns subscription IDs and relay lifecycle for geohash channels, geohash
/// DMs, the account gift-wrap mailbox, and background geohash sampling. The
/// DMs, the account private-envelope mailbox, and background geohash sampling. The
/// only component that talks to `NostrRelayManager`; inbound events are
/// forwarded to `NostrInboundPipeline` / `GeoPresenceTracker`.
final class GeohashSubscriptionManager {
@@ -162,13 +162,13 @@ final class GeohashSubscriptionManager {
if let identity = try? context.deriveNostrIdentity(forGeohash: channel.geohash) {
let dmSub = "geo-dm-\(channel.geohash)"
context.setGeoDmSubscriptionID(dmSub)
let dmFilter = NostrFilter.giftWrapsFor(
let dmFilters = NostrFilter.privateEnvelopeFiltersFor(
pubkey: identity.publicKeyHex,
since: Date().addingTimeInterval(-TransportConfig.nostrDMSubscribeLookbackSeconds)
)
NostrRelayManager.shared.subscribe(filter: dmFilter, id: dmSub) { [weak self] giftWrap in
NostrRelayManager.shared.subscribe(filters: dmFilters, id: dmSub) { [weak self] envelope in
Task { @MainActor [weak self] in
self?.inbound.subscribeGiftWrap(giftWrap, id: identity)
self?.inbound.subscribePrivateEnvelope(envelope, id: identity)
}
}
}
@@ -260,13 +260,13 @@ final class GeohashSubscriptionManager {
if TorManager.shared.isReady {
SecureLogger.debug("GeoDM: subscribing DMs pub=\(identity.publicKeyHex.prefix(8))… sub=\(dmSub)", category: .session)
}
let dmFilter = NostrFilter.giftWrapsFor(
let dmFilters = NostrFilter.privateEnvelopeFiltersFor(
pubkey: identity.publicKeyHex,
since: Date().addingTimeInterval(-TransportConfig.nostrDMSubscribeLookbackSeconds)
)
NostrRelayManager.shared.subscribe(filter: dmFilter, id: dmSub) { [weak self] giftWrap in
NostrRelayManager.shared.subscribe(filters: dmFilters, id: dmSub) { [weak self] envelope in
Task { @MainActor [weak self] in
self?.inbound.handleGiftWrap(giftWrap, id: identity)
self?.inbound.handlePrivateEnvelope(envelope, id: identity)
}
}
}
@@ -388,14 +388,14 @@ final class GeohashSubscriptionManager {
category: .session
)
let filter = NostrFilter.giftWrapsFor(
let filters = NostrFilter.privateEnvelopeFiltersFor(
pubkey: currentIdentity.publicKeyHex,
since: Date().addingTimeInterval(-TransportConfig.nostrDMSubscribeLookbackSeconds)
)
context.nostrRelayManager?.subscribe(filter: filter, id: "chat-messages") { [weak self] event in
context.nostrRelayManager?.subscribe(filters: filters, id: "chat-messages") { [weak self] event in
Task { @MainActor [weak self] in
self?.inbound.handleNostrMessage(event)
self?.inbound.handleAccountPrivateEnvelope(event)
}
}
}
+98 -28
View File
@@ -84,13 +84,21 @@ extension ChatViewModel: NostrInboundPipelineContext {
/// Ordering is deliberate and performance-critical: cheap rejects (kind,
/// dedup lookup) run BEFORE Schnorr signature verification because duplicates
/// dominate real relay traffic; events are recorded only AFTER verification so
/// a forged-signature copy can never poison the dedup set; gift-wrap
/// a forged-signature copy can never poison the dedup set; private-envelope
/// verification for the account mailbox runs off-main with an atomic
/// main-actor check-and-record.
final class NostrInboundPipeline {
private weak var context: (any NostrInboundPipelineContext)?
private let presence: GeoPresenceTracker
private var geoEventLogCount = 0
// During the coordinated wire-format migration, one logical private
// payload is published under both primary and compatibility formats. Outer
// event IDs differ, so collapse the authenticated embedded payload before
// invoking message/ack side effects. Keep this bounded like the outer-ID
// caches; the recipient and authenticated sender are part of the key.
private var recentPrivatePayloadFormats: [String: UInt8] = [:]
private var recentPrivatePayloadKeyOrder: [String] = []
private static let privatePayloadDedupCapacity = 2_048
init(context: any NostrInboundPipelineContext, presence: GeoPresenceTracker) {
self.context = context
@@ -271,15 +279,16 @@ final class NostrInboundPipeline {
}
@MainActor
func subscribeGiftWrap(_ giftWrap: NostrEvent, id: NostrIdentity) {
func subscribePrivateEnvelope(_ envelope: NostrEvent, id: NostrIdentity) {
guard let context else { return }
// Dedup lookup before Schnorr verification; record only after it passes.
guard !context.hasProcessedNostrEvent(giftWrap.id) else { return }
guard giftWrap.isValidSignature() else { return }
context.recordProcessedNostrEvent(giftWrap.id)
guard !context.hasProcessedNostrEvent(envelope.id) else { return }
guard envelope.content.utf8.count <= NostrProtocol.maximumPrivateEnvelopeCiphertextBytes else { return }
guard envelope.isValidSignature() else { return }
context.recordProcessedNostrEvent(envelope.id)
guard let (content, senderPubkey, rumorTs) = try? NostrProtocol.decryptPrivateMessage(
giftWrap: giftWrap,
guard let (content, senderPubkey, messageTs) = try? NostrProtocol.decryptPrivateEnvelope(
envelope: envelope,
recipientIdentity: id
),
let packet = Self.decodeEmbeddedBitChatPacket(from: content),
@@ -288,8 +297,14 @@ final class NostrInboundPipeline {
else {
return
}
guard shouldProcessPrivatePayload(
noisePayload,
senderPubkey: senderPubkey,
recipientPubkey: id.publicKeyHex,
envelopeKind: envelope.kind
) else { return }
let messageTimestamp = Date(timeIntervalSince1970: TimeInterval(rumorTs))
let messageTimestamp = Date(timeIntervalSince1970: TimeInterval(messageTs))
let convKey = PeerID(nostr_: senderPubkey)
context.registerNostrKeyMapping(senderPubkey, for: convKey)
@@ -316,25 +331,26 @@ final class NostrInboundPipeline {
}
@MainActor
func handleGiftWrap(_ giftWrap: NostrEvent, id: NostrIdentity) {
func handlePrivateEnvelope(_ envelope: NostrEvent, id: NostrIdentity) {
guard let context else { return }
// Dedup lookup before Schnorr verification; record only after it passes.
if context.hasProcessedNostrEvent(giftWrap.id) {
if context.hasProcessedNostrEvent(envelope.id) {
return
}
guard giftWrap.isValidSignature() else { return }
context.recordProcessedNostrEvent(giftWrap.id)
guard envelope.content.utf8.count <= NostrProtocol.maximumPrivateEnvelopeCiphertextBytes else { return }
guard envelope.isValidSignature() else { return }
context.recordProcessedNostrEvent(envelope.id)
guard let (content, senderPubkey, rumorTs) = try? NostrProtocol.decryptPrivateMessage(
giftWrap: giftWrap,
guard let (content, senderPubkey, messageTs) = try? NostrProtocol.decryptPrivateEnvelope(
envelope: envelope,
recipientIdentity: id
) else {
SecureLogger.warning("GeoDM: failed decrypt giftWrap id=\(giftWrap.id.prefix(8))", category: .session)
SecureLogger.warning("GeoDM: failed decrypt private envelope id=\(envelope.id.prefix(8))", category: .session)
return
}
SecureLogger.debug(
"GeoDM: decrypted gift-wrap id=\(giftWrap.id.prefix(16))... from=\(senderPubkey.prefix(8))...",
"GeoDM: decrypted private envelope id=\(envelope.id.prefix(16))... from=\(senderPubkey.prefix(8))...",
category: .session
)
@@ -344,13 +360,19 @@ final class NostrInboundPipeline {
else {
return
}
guard shouldProcessPrivatePayload(
payload,
senderPubkey: senderPubkey,
recipientPubkey: id.publicKeyHex,
envelopeKind: envelope.kind
) else { return }
let convKey = PeerID(nostr_: senderPubkey)
context.registerNostrKeyMapping(senderPubkey, for: convKey)
switch payload.type {
case .privateMessage:
let messageTimestamp = Date(timeIntervalSince1970: TimeInterval(rumorTs))
let messageTimestamp = Date(timeIntervalSince1970: TimeInterval(messageTs))
context.handlePrivateMessage(
payload,
senderPubkey: senderPubkey,
@@ -372,28 +394,29 @@ final class NostrInboundPipeline {
}
@MainActor
func handleNostrMessage(_ giftWrap: NostrEvent) {
func handleAccountPrivateEnvelope(_ envelope: NostrEvent) {
guard let context else { return }
// Cheap dedup pre-check only; Schnorr verification runs off-main in
// processNostrMessage, which then does the authoritative
// processAccountPrivateEnvelope, which then does the authoritative
// check-and-record. Recording stays after verification so a
// forged-signature copy can never poison the dedup set and suppress
// the genuine event.
if context.hasProcessedNostrEvent(giftWrap.id) { return }
if context.hasProcessedNostrEvent(envelope.id) { return }
Task.detached(priority: .userInitiated) { [weak self] in
await self?.processNostrMessage(giftWrap)
await self?.processAccountPrivateEnvelope(envelope)
}
}
func processNostrMessage(_ giftWrap: NostrEvent) async {
guard giftWrap.isValidSignature() else { return }
func processAccountPrivateEnvelope(_ envelope: NostrEvent) async {
guard envelope.content.utf8.count <= NostrProtocol.maximumPrivateEnvelopeCiphertextBytes else { return }
guard envelope.isValidSignature() else { return }
guard let context else { return }
// Authoritative check-and-record, atomic on the main actor so two
// concurrent detached tasks can't both process the same event.
let alreadyProcessed: Bool = await MainActor.run {
if context.hasProcessedNostrEvent(giftWrap.id) { return true }
context.recordProcessedNostrEvent(giftWrap.id)
if context.hasProcessedNostrEvent(envelope.id) { return true }
context.recordProcessedNostrEvent(envelope.id)
return false
}
if alreadyProcessed { return }
@@ -403,8 +426,8 @@ final class NostrInboundPipeline {
guard let currentIdentity else { return }
do {
let (content, senderPubkey, rumorTimestamp) = try NostrProtocol.decryptPrivateMessage(
giftWrap: giftWrap,
let (content, senderPubkey, messageTimestampSeconds) = try NostrProtocol.decryptPrivateEnvelope(
envelope: envelope,
recipientIdentity: currentIdentity
)
@@ -428,8 +451,14 @@ final class NostrInboundPipeline {
if packet.type == MessageType.noiseEncrypted.rawValue,
let payload = NoisePayload.decode(packet.payload) {
let messageTimestamp = Date(timeIntervalSince1970: TimeInterval(rumorTimestamp))
let messageTimestamp = Date(timeIntervalSince1970: TimeInterval(messageTimestampSeconds))
await MainActor.run {
guard self.shouldProcessPrivatePayload(
payload,
senderPubkey: senderPubkey,
recipientPubkey: currentIdentity.publicKeyHex,
envelopeKind: envelope.kind
) else { return }
context.registerNostrKeyMapping(senderPubkey, for: targetPeerID)
switch payload.type {
@@ -503,6 +532,47 @@ final class NostrInboundPipeline {
}
private extension NostrInboundPipeline {
@MainActor
func shouldProcessPrivatePayload(
_ payload: NoisePayload,
senderPubkey: String,
recipientPubkey: String,
envelopeKind: Int
) -> Bool {
let digest = payload.encode().sha256Fingerprint()
let key = "\(recipientPubkey.lowercased()):\(senderPubkey.lowercased()):\(digest)"
let formatBit: UInt8
switch envelopeKind {
case NostrProtocol.EventKind.privateEnvelope.rawValue:
formatBit = 1 << 0
case NostrProtocol.EventKind.legacyNIP59GiftWrap.rawValue:
formatBit = 1 << 1
default:
return true
}
if let observedFormats = recentPrivatePayloadFormats[key] {
if observedFormats & formatBit != 0 {
// A same-format re-envelope is a delivery retry. Let it reach
// the coordinator so a lost DELIVERED acknowledgement can be
// sent again; downstream message-ID dedup prevents rerendering.
return true
}
// The same authenticated payload under the other migration format
// is the compatibility twin, not a new message or acknowledgement.
recentPrivatePayloadFormats[key] = observedFormats | formatBit
return false
}
recentPrivatePayloadFormats[key] = formatBit
recentPrivatePayloadKeyOrder.append(key)
if recentPrivatePayloadKeyOrder.count > Self.privatePayloadDedupCapacity {
let evicted = recentPrivatePayloadKeyOrder.removeFirst()
recentPrivatePayloadFormats.removeValue(forKey: evicted)
}
return true
}
@MainActor
static func decodeEmbeddedBitChatPacket(from content: String) -> BitchatPacket? {
guard content.hasPrefix("bitchat1:") else { return nil }
+2 -1
View File
@@ -504,7 +504,8 @@ private struct ContentPrivateChatSheetView: View {
if privateConversationModel.selectedPeerID?.isGroup == true {
return String(localized: "content.private.caption_group", comment: "Caption above the group chat composer noting messages are encrypted to group members")
}
// Geohash DMs are NIP-17 gift-wrapped always end-to-end encrypted,
// Geohash DMs use BitChat's private-envelope transport over Nostr
// always end-to-end encrypted,
// even though they carry no Noise session status. Mesh DMs earn the
// "encrypted" claim only once the Noise handshake has secured.
let isGeoDM = privateConversationModel.selectedPeerID?.isGeoDM == true
+80 -7
View File
@@ -639,7 +639,7 @@ struct BLEServiceCoreTests {
}
@Test
func failedInboundReconnectRestoresAndDrainsTypedPayloadQueue() async throws {
func failedInboundReconnectRestoresAndDrainsWaitingWorkOnce() async throws {
let ble = makeService()
let alice = NoiseEncryptionService(keychain: MockKeychain())
let mallory = NoiseEncryptionService(keychain: MockKeychain())
@@ -722,21 +722,48 @@ struct BLEServiceCoreTests {
message: forgedMessage2
)
)
let forgedEarlyPayload = try #require(
BLENoisePayloadFactory.privateMessage(
content: "forged early message",
messageID: "forged-early"
)
)
try #require(
mallory.hasEstablishedSession(with: ble.myPeerID),
"forged initiator did not establish after producing message three"
)
let forgedEarlyCiphertext = try mallory.encrypt(
forgedEarlyPayload,
for: ble.myPeerID
)
let earlyPacket = BitchatPacket(
type: MessageType.noiseEncrypted.rawValue,
senderID: Data(hexString: alicePeerID.id) ?? Data(),
recipientID: Data(hexString: ble.myPeerID.id),
timestamp: UInt64(Date().timeIntervalSince1970 * 1_000) + 1,
payload: forgedEarlyCiphertext,
signature: nil,
ttl: 7
)
ble._test_handlePacket(earlyPacket, fromPeerID: alicePeerID)
await ble._test_drainNoiseMessagePipeline()
let thirdPacket = BitchatPacket(
type: MessageType.noiseHandshake.rawValue,
senderID: Data(hexString: alicePeerID.id) ?? Data(),
recipientID: Data(hexString: ble.myPeerID.id),
timestamp: UInt64(Date().timeIntervalSince1970 * 1_000) + 1,
timestamp: UInt64(Date().timeIntervalSince1970 * 1_000) + 2,
payload: forgedMessage3,
signature: nil,
ttl: 7
)
ble._test_handlePacket(thirdPacket, fromPeerID: alicePeerID)
// Restore re-enters the generation-bound authentication transition:
// authenticated state and both outbound queues drain exactly once.
// Rollback restores the same generation. It retries the bounded early
// ciphertext and drains both outbound queues, but must not repeat a
// new-generation capability proof or forced announce.
let drained = await TestHelpers.waitUntil(
{ outbound.count(ofType: .noiseEncrypted) >= 3 },
{ outbound.count(ofType: .noiseEncrypted) >= 2 },
timeout: TestConstants.longTimeout
)
try #require(drained)
@@ -744,11 +771,11 @@ struct BLEServiceCoreTests {
let plaintexts = try outbound.snapshot()
.filter { $0.type == MessageType.noiseEncrypted.rawValue }
.map { try alice.decrypt($0.payload, from: ble.myPeerID) }
#expect(plaintexts.count == 3)
#expect(plaintexts.count == 2)
#expect(
plaintexts.filter {
$0.first == NoisePayloadType.authenticatedPeerState.rawValue
}.count == 1
}.isEmpty
)
#expect(
plaintexts.filter {
@@ -760,6 +787,13 @@ struct BLEServiceCoreTests {
$0.first == NoisePayloadType.groupInvite.rawValue
}.count == 1
)
#expect(outbound.count(ofType: .announce) == 0)
// A duplicate ready callback cannot replay either buffer.
ble._test_reconcileCurrentNoiseSession(for: alicePeerID)
await ble._test_drainNoiseMessagePipeline()
#expect(outbound.count(ofType: .noiseEncrypted) == 2)
#expect(outbound.count(ofType: .announce) == 0)
}
/// A legitimate rotation announce necessarily arrives on a link still
@@ -996,6 +1030,44 @@ struct BLEServiceCoreTests {
))
}
@Test @MainActor
func panicSuspension_finalizesStaleTransportEventsAsRejected() async {
let ble = makeService()
let delegate = TransportEventCaptureDelegate()
ble.eventDelegate = delegate
let message = BitchatMessage(
id: "pre-panic-finalization",
sender: "Peer",
content: "must be rejected",
timestamp: Date(),
isRelay: false,
isPrivate: true,
recipientNickname: "Me",
senderPeerID: PeerID(str: "1122334455667788")
)
var completions = 0
var outcomes: [TransportEventDeliveryOutcome] = []
ble._test_emitTransportEvent(
.messageReceived(message),
completion: { completions += 1 },
finalization: { outcomes.append($0) }
)
ble.suspendForPanicReset()
ble._test_emitTransportEvent(
.messageReceived(message),
completion: { completions += 1 },
finalization: { outcomes.append($0) }
)
for _ in 0..<4 {
await Task.yield()
}
#expect(delegate.messageIDs.isEmpty)
#expect(completions == 0)
#expect(outcomes == [.rejected, .rejected])
}
@Test
func modifiedServices_rediscoverWhenBitChatServiceIsInvalidated() async throws {
let otherService = CBUUID(string: "0000180F-0000-1000-8000-00805F9B34FB")
@@ -1255,6 +1327,7 @@ private final class PublicCaptureDelegate: BitchatDelegate {
defer { lock.unlock() }
return publicMessages
}
}
@MainActor
@@ -14,6 +14,7 @@ import BitFoundation
@MainActor
private final class MockChatLiveVoiceContext: ChatLiveVoiceContext {
var nickname = "me"
var myPeerID = PeerID(str: "0102030405060708")
var selectedPrivateChatPeer: PeerID?
var isViewingPublicMeshTimeline = false
var blockedPeers: Set<PeerID> = []
@@ -23,7 +24,10 @@ private final class MockChatLiveVoiceContext: ChatLiveVoiceContext {
private(set) var upsertedMessages: [(message: BitchatMessage, peerID: PeerID)] = []
private(set) var upsertedPublicMessages: [BitchatMessage] = []
private(set) var removedMessageIDs: [String] = []
private(set) var sentReadReceipts: [(receipt: ReadReceipt, peerID: PeerID)] = []
private(set) var talkerUpdates: [String?] = []
private(set) var privateMutationLog: [String] = []
private var readReceiptMessageIDs: Set<String> = []
func isPeerBlocked(_ peerID: PeerID) -> Bool { blockedPeers.contains(peerID) }
func resolveNickname(for peerID: PeerID) -> String { "alice" }
@@ -31,6 +35,7 @@ private final class MockChatLiveVoiceContext: ChatLiveVoiceContext {
func appendPublicMeshMessage(_ message: BitchatMessage) { appendedPublicMessages.append(message) }
func upsertPrivateMessage(_ message: BitchatMessage, in peerID: PeerID) {
upsertedMessages.append((message, peerID))
privateMutationLog.append("upsert:\(message.id)")
}
func upsertPublicMeshMessage(_ message: BitchatMessage) {
upsertedPublicMessages.append(message)
@@ -38,8 +43,18 @@ private final class MockChatLiveVoiceContext: ChatLiveVoiceContext {
@discardableResult
func removePrivateMessage(withID messageID: String) -> BitchatMessage? {
removedMessageIDs.append(messageID)
privateMutationLog.append("remove:\(messageID)")
return nil
}
func hasSentReadReceipt(_ messageID: String) -> Bool {
readReceiptMessageIDs.contains(messageID)
}
func markReadReceiptSent(_ messageID: String) -> Bool {
readReceiptMessageIDs.insert(messageID).inserted
}
func sendMeshReadReceipt(_ receipt: ReadReceipt, to peerID: PeerID) {
sentReadReceipts.append((receipt, peerID))
}
func removeMessage(withID messageID: String, cleanupFile: Bool) {
removedMessageIDs.append(messageID)
}
@@ -151,17 +166,29 @@ struct ChatLiveVoiceCoordinatorTests {
@Test func absorbsFinalizedNoteIntoLiveBubble() throws {
let context = MockChatLiveVoiceContext()
context.selectedPrivateChatPeer = peer
let coordinator = ChatLiveVoiceCoordinator(context: context, sweepsOnInit: false)
let burstID = makeBurstID(0xB2)
let hex = burstID.hexEncodedString()
let fileName = "voice_\(hex).m4a"
let stableMessageID = try #require(PrivateMediaMessageIdentity.stableID(
senderPeerID: peer,
recipientPeerID: context.myPeerID,
fileName: fileName
))
send(try #require(VoiceBurstPacket(burstID: burstID, seq: 1, kind: .frames([Data(repeating: 7, count: 50)]))), to: coordinator, from: peer)
send(try #require(VoiceBurstPacket(burstID: burstID, seq: 2, kind: .end(totalDataPackets: 1, durationMs: 64))), to: coordinator, from: peer)
let bubble = try #require(context.handledPrivateMessages.first)
// The user read the live bubble, then left before the finalized file
// arrived. Stable-ID adoption must preserve that read state.
#expect(context.markReadReceiptSent(bubble.id))
context.selectedPrivateChatPeer = nil
let note = BitchatMessage(
id: stableMessageID,
sender: "alice",
content: "[voice] voice_\(hex).m4a",
content: "[voice] \(fileName)",
timestamp: Date(),
isRelay: false,
isPrivate: true,
@@ -170,12 +197,21 @@ struct ChatLiveVoiceCoordinatorTests {
)
#expect(coordinator.absorbFinalizedVoiceNote(note))
// The note replaced the live bubble in place: same message ID, new
// content, partial capture deleted.
// The finalized note adopts the sender-correlatable ID, removes the
// receiver-local live ID, and emits a fresh READ now that the sender
// has created its finalized media row.
let replacement = try #require(context.upsertedMessages.last)
#expect(replacement.message.id == bubble.id)
#expect(replacement.message.id == stableMessageID)
#expect(replacement.message.content == note.content)
#expect(replacement.peerID == peer)
#expect(context.removedMessageIDs.contains(bubble.id))
#expect(Array(context.privateMutationLog.suffix(2)) == [
"upsert:\(stableMessageID)",
"remove:\(bubble.id)"
])
#expect(context.sentReadReceipts.count == 1)
#expect(context.sentReadReceipts.first?.receipt.originalMessageID == stableMessageID)
#expect(context.sentReadReceipts.first?.peerID == peer)
// The promoted partial capture is deleted in favor of the note.
let url = try #require(fallbackFileURL(burstID: burstID, peerID: peer))
#expect(!FileManager.default.fileExists(atPath: url.path))
@@ -449,7 +485,8 @@ struct ChatLiveVoiceCoordinatorTests {
isRelay: false, isPrivate: true, recipientNickname: "me", senderPeerID: peer
)
#expect(coordinator.absorbFinalizedVoiceNote(dmNote))
#expect(try #require(context.upsertedMessages.last).message.id == dmBubble.id)
#expect(try #require(context.upsertedMessages.last).message.id == dmNote.id)
#expect(context.removedMessageIDs.contains(dmBubble.id))
}
@Test func finalizedNoteBindsToItsAuthenticatedSender() throws {
@@ -479,8 +516,9 @@ struct ChatLiveVoiceCoordinatorTests {
)
#expect(coordinator.absorbFinalizedVoiceNote(note))
let replacement = try #require(context.upsertedMessages.last)
#expect(replacement.message.id == victimBubble.id)
#expect(replacement.message.id == note.id)
#expect(replacement.peerID == peer)
#expect(context.removedMessageIDs.contains(victimBubble.id))
// The attacker's note can only ever claim the attacker's own bubble.
let attackerNote = BitchatMessage(
@@ -489,8 +527,9 @@ struct ChatLiveVoiceCoordinatorTests {
)
#expect(coordinator.absorbFinalizedVoiceNote(attackerNote))
let attackerReplacement = try #require(context.upsertedMessages.last)
#expect(attackerReplacement.message.id == attackerBubble.id)
#expect(attackerReplacement.message.id == attackerNote.id)
#expect(attackerReplacement.peerID == attacker)
#expect(context.removedMessageIDs.contains(attackerBubble.id))
// Both registry entries are consumed nothing left to hijack.
#expect(!coordinator.absorbFinalizedVoiceNote(note))
File diff suppressed because it is too large Load Diff
@@ -243,7 +243,7 @@ private func drainMainQueue() async {
/// Exercises `ChatNostrCoordinator` against `MockChatNostrContext` with no
/// `ChatViewModel`. Scoped to the inbound event pipeline (dedup, presence,
/// public-message ingest), gift-wrap DM ingest, key mapping, channel-switch
/// public-message ingest), private-envelope ingest, key mapping, channel-switch
/// teardown, embedded ack flows, and now that favorites and notifications
/// are injected through the context the favorite-notification ingest and
/// the sampled-geohash notification cooldown. Flows that hit live singletons
@@ -335,7 +335,7 @@ struct ChatNostrCoordinatorContextTests {
}
@Test @MainActor
func handleGiftWrap_routesEmbeddedPrivateMessageAndDeduplicates() async throws {
func handlePrivateEnvelope_routesEmbeddedPrivateMessageAndDeduplicates() async throws {
let context = MockChatNostrContext()
let coordinator = ChatNostrCoordinator(context: context)
@@ -346,17 +346,21 @@ struct ChatNostrCoordinatorContextTests {
messageID: "gm-1",
senderPeerID: PeerID(str: "aabbccddeeff0011")
))
let giftWrap = try NostrProtocol.createPrivateMessage(
let envelopes = try NostrProtocol.createPrivateEnvelopePublicationBatch(
content: embedded,
recipientPubkey: recipient.publicKeyHex,
senderIdentity: sender
)
coordinator.inbound.handleGiftWrap(giftWrap, id: recipient)
for envelope in envelopes {
coordinator.inbound.handlePrivateEnvelope(envelope, id: recipient)
}
let convKey = PeerID(nostr_: sender.publicKeyHex)
#expect(context.recordedNostrEventIDs == [giftWrap.id])
#expect(context.recordedNostrEventIDs == envelopes.map(\.id))
#expect(context.nostrKeyMapping[convKey] == sender.publicKeyHex)
// The primary and compatibility envelopes carry the same authenticated
// embedded payload and must invoke message side effects only once.
#expect(context.handledPrivateMessages.count == 1)
#expect(context.handledPrivateMessages.first?.senderPubkey == sender.publicKeyHex)
#expect(context.handledPrivateMessages.first?.convKey == convKey)
@@ -368,34 +372,84 @@ struct ChatNostrCoordinatorContextTests {
#expect(pm.messageID == "gm-1")
#expect(pm.content == "psst")
// The same gift wrap is dropped on replay.
coordinator.inbound.handleGiftWrap(giftWrap, id: recipient)
#expect(context.recordedNostrEventIDs == [giftWrap.id])
// The same private envelope is dropped on replay.
coordinator.inbound.handlePrivateEnvelope(envelopes[0], id: recipient)
#expect(context.recordedNostrEventIDs == envelopes.map(\.id))
#expect(context.handledPrivateMessages.count == 1)
}
@Test @MainActor
func processNostrMessage_invalidSignatureDoesNotPoisonDedup() async throws {
func migrationEnvelopePairs_processEachMessageAndAckOnlyOnce() throws {
let context = MockChatNostrContext()
let coordinator = ChatNostrCoordinator(context: context)
let recipient = try NostrIdentity.generate()
let sender = try NostrIdentity.generate()
let messageContent = try #require(NostrEmbeddedBitChat.encodePMForNostrNoRecipient(
content: "migration message",
messageID: "migration-message-id",
senderPeerID: PeerID(str: "aabbccddeeff0011")
))
let deliveredContent = try #require(NostrEmbeddedBitChat.encodeAckForNostrNoRecipient(
type: .delivered,
messageID: "migration-ack-id",
senderPeerID: PeerID(str: "aabbccddeeff0011")
))
let readContent = try #require(NostrEmbeddedBitChat.encodeAckForNostrNoRecipient(
type: .readReceipt,
messageID: "migration-ack-id",
senderPeerID: PeerID(str: "aabbccddeeff0011")
))
for content in [messageContent, deliveredContent, readContent] {
let envelopes = try NostrProtocol.createPrivateEnvelopePublicationBatch(
content: content,
recipientPubkey: recipient.publicKeyHex,
senderIdentity: sender
)
#expect(envelopes.count == 2)
for envelope in envelopes {
coordinator.inbound.handlePrivateEnvelope(envelope, id: recipient)
}
}
#expect(context.handledPrivateMessages.count == 1)
#expect(context.handledDelivered.count == 1)
#expect(context.handledReadReceipts.count == 1)
// A later same-format re-envelope is a delivery retry, not the
// migration twin, so it must still reach downstream message-ID dedup
// and acknowledgement resend logic.
let primaryRetry = try NostrProtocol.createPrivateEnvelope(
content: messageContent,
recipientPubkey: recipient.publicKeyHex,
senderIdentity: sender
)
coordinator.inbound.handlePrivateEnvelope(primaryRetry, id: recipient)
#expect(context.handledPrivateMessages.count == 2)
}
@Test @MainActor
func processAccountPrivateEnvelope_invalidSignatureDoesNotPoisonDedup() async throws {
let context = MockChatNostrContext()
let coordinator = ChatNostrCoordinator(context: context)
let recipient = try NostrIdentity.generate()
let sender = try NostrIdentity.generate()
let giftWrap = try NostrProtocol.createPrivateMessage(
let envelope = try NostrProtocol.createPrivateEnvelope(
content: "verify:noop",
recipientPubkey: recipient.publicKeyHex,
senderIdentity: sender
)
var invalidGiftWrap = giftWrap
invalidGiftWrap.sig = String(repeating: "0", count: 128)
var invalidEnvelope = envelope
invalidEnvelope.sig = String(repeating: "0", count: 128)
// A forged-signature copy is rejected WITHOUT entering the dedup set...
await coordinator.inbound.processNostrMessage(invalidGiftWrap)
await coordinator.inbound.processAccountPrivateEnvelope(invalidEnvelope)
#expect(context.recordedNostrEventIDs.isEmpty)
// ...so the genuine event with the same ID still processes and records.
await coordinator.inbound.processNostrMessage(giftWrap)
#expect(context.recordedNostrEventIDs == [giftWrap.id])
await coordinator.inbound.processAccountPrivateEnvelope(envelope)
#expect(context.recordedNostrEventIDs == [envelope.id])
}
@Test @MainActor
@@ -104,6 +104,20 @@ private func makeMessage(id: String, senderPeerID: PeerID? = nil) -> BitchatMess
/// no `ChatViewModel`.
struct ChatPeerListCoordinatorContextTests {
@Test @MainActor
func synchronousPeerListUpdate_appliesBeforeReturning() {
let context = MockChatPeerListContext()
let coordinator = ChatPeerListCoordinator(context: context)
let peerID = PeerID(str: "0011223344556677")
coordinator.didUpdatePeerListSynchronously([peerID])
#expect(context.isConnected)
#expect(context.registeredEphemeralSessions == [peerID])
#expect(context.updateEncryptionStatusForPeersCount == 1)
#expect(context.cleanupOldReadReceiptsCount == 1)
}
@Test @MainActor
func didUpdatePeerList_updatesConnectionSessionsAndEncryptionStatus() async {
let context = MockChatPeerListContext()
@@ -176,6 +176,7 @@ private final class MockChatPrivateConversationContext: ChatPrivateConversationC
private(set) var geoPrivateMessages: [(content: String, recipientHex: String, messageID: String)] = []
private(set) var geoDeliveryAcks: [(messageID: String, recipientHex: String)] = []
private(set) var geoReadReceipts: [(messageID: String, recipientHex: String)] = []
var geohashPrivateMessageAccepted = true
func routePrivateMessage(_ content: String, to peerID: PeerID, recipientNickname: String, messageID: String) {
routedPrivateMessages.append((content, peerID, messageID))
@@ -191,8 +192,14 @@ private final class MockChatPrivateConversationContext: ChatPrivateConversationC
meshReadReceipts.append((receipt.originalMessageID, peerID))
}
func sendGeohashPrivateMessage(_ content: String, toRecipientHex recipientHex: String, from identity: NostrIdentity, messageID: String) {
func sendGeohashPrivateMessage(
_ content: String,
toRecipientHex recipientHex: String,
from identity: NostrIdentity,
messageID: String
) -> Bool {
geoPrivateMessages.append((content, recipientHex, messageID))
return geohashPrivateMessageAccepted
}
func sendGeohashDeliveryAck(for messageID: String, toRecipientHex recipientHex: String, from identity: NostrIdentity) {
@@ -279,6 +286,11 @@ private func isRead(_ status: DeliveryStatus?, by expected: String) -> Bool {
return false
}
private func isFailed(_ status: DeliveryStatus?) -> Bool {
if case .failed = status { return true }
return false
}
private func makeFavoriteRelationship(
noiseKey: Data,
nostrPublicKey: String? = nil,
@@ -412,6 +424,25 @@ struct ChatPrivateConversationCoordinatorContextTests {
#expect(context.privateChats[convKey]?.count == 1)
}
@Test @MainActor
func sendGeohashDM_rejectedAdmissionNeverBecomesSent() async {
let context = MockChatPrivateConversationContext()
let coordinator = ChatPrivateConversationCoordinator(context: context)
let recipientHex = String(repeating: "33", count: 32)
let peerID = PeerID(nostr_: recipientHex)
context.activeChannel = .location(
GeohashChannel(level: .city, geohash: "u4pruy")
)
context.nostrKeyMapping[peerID] = recipientHex
context.geohashPrivateMessageAccepted = false
coordinator.sendGeohashDM("rejected", to: peerID)
#expect(context.geoPrivateMessages.map(\.content) == ["rejected"])
#expect(context.privateChats[peerID]?.count == 1)
#expect(isFailed(context.privateChats[peerID]?.first?.deliveryStatus))
}
@Test @MainActor
func handleViewingThisChat_clearsUnreadAndSendsRoutedReadReceiptOnce() async {
let context = MockChatPrivateConversationContext()
@@ -220,26 +220,85 @@ struct ChatTransportEventCoordinatorContextTests {
func didReceiveMessage_routesPrivateAndPublic_skipsBlockedAndEmpty() async {
let context = MockChatTransportEventContext()
let coordinator = ChatTransportEventCoordinator(context: context)
let peerID = PeerID(str: "1122334455667788")
// Blocked messages are dropped before any handling.
context.blockedMessageIDs = ["blocked"]
context.blockedMessageIDs = ["blocked", "blocked-private"]
coordinator.didReceiveMessage(makeMessage(id: "blocked"))
coordinator.didReceiveMessage(makeMessage(
id: "blocked-private",
isPrivate: true,
senderPeerID: peerID
))
// Empty public content is dropped too.
coordinator.didReceiveMessage(makeMessage(id: "empty", content: " "))
await drainMainActorTasks()
#expect(context.handledPublicMessages.isEmpty)
#expect(context.handledPrivateMessages.isEmpty)
#expect(context.mentionCheckedMessageIDs.isEmpty)
#expect(context.meshDeliveryAcks.isEmpty)
// Private goes to the private handler, public to the public handler;
// both get mention checks and haptics.
coordinator.didReceiveMessage(makeMessage(id: "pm", isPrivate: true))
// both get mention checks and haptics. Stable-media ACK authorization
// belongs to BLEFileTransferHandler after its durable commit and this
// synchronous acceptance result, not to the generic UI coordinator.
let stableMediaID = "media-\(String(repeating: "a", count: 32))"
coordinator.didReceiveMessage(makeMessage(
id: stableMediaID,
isPrivate: true,
senderPeerID: peerID
))
coordinator.didReceiveMessage(makeMessage(
id: "legacy-media",
isPrivate: true,
senderPeerID: peerID
))
coordinator.didReceiveMessage(makeMessage(id: "pm-missing-sender", isPrivate: true))
coordinator.didReceiveMessage(makeMessage(id: "pub"))
await drainMainActorTasks()
#expect(context.handledPrivateMessages.map(\.id) == ["pm"])
#expect(context.handledPrivateMessages.map(\.id) == [
stableMediaID,
"legacy-media",
"pm-missing-sender"
])
#expect(context.handledPublicMessages.map(\.id) == ["pub"])
#expect(context.mentionCheckedMessageIDs == ["pm", "pub"])
#expect(context.hapticMessageIDs == ["pm", "pub"])
#expect(context.mentionCheckedMessageIDs == [
stableMediaID,
"legacy-media",
"pm-missing-sender",
"pub"
])
#expect(context.hapticMessageIDs == [
stableMediaID,
"legacy-media",
"pm-missing-sender",
"pub"
])
#expect(context.meshDeliveryAcks.isEmpty)
}
@Test @MainActor
func synchronousMessageDeliveryReportsAcceptanceForAckGating() {
let context = MockChatTransportEventContext()
let coordinator = ChatTransportEventCoordinator(context: context)
let peerID = PeerID(str: "1122334455667788")
let blocked = makeMessage(
id: "blocked-private-media",
isPrivate: true,
senderPeerID: peerID
)
context.blockedMessageIDs = [blocked.id]
#expect(coordinator.didReceiveMessageSynchronously(blocked) == false)
#expect(context.handledPrivateMessages.isEmpty)
let accepted = makeMessage(
id: "accepted-private-media",
isPrivate: true,
senderPeerID: peerID
)
#expect(coordinator.didReceiveMessageSynchronously(accepted) == true)
#expect(context.handledPrivateMessages.map(\.id) == [accepted.id])
}
@Test @MainActor
@@ -295,6 +354,32 @@ struct ChatTransportEventCoordinatorContextTests {
#expect(context.notifyUIChangedCount == 2)
}
@Test @MainActor
func synchronousConnectAndDisconnect_applyBeforeReturning() {
let context = MockChatTransportEventContext()
let coordinator = ChatTransportEventCoordinator(context: context)
let peerID = PeerID(str: "2233445566778899")
let incoming = makeMessage(
id: "incoming-receipt",
isPrivate: true,
senderPeerID: peerID
)
context.privateChats[peerID] = [incoming]
coordinator.didConnectToPeerSynchronously(peerID)
#expect(context.isConnected)
#expect(context.registeredEphemeralSessions == [peerID])
#expect(context.flushedOutboxPeerIDs == [peerID])
#expect(context.courierRetryPeerIDs == [peerID])
coordinator.didDisconnectFromPeerSynchronously(peerID)
#expect(context.removedEphemeralSessions == [peerID])
#expect(context.unmarkedReadReceiptBatches == [[incoming.id]])
#expect(context.notifyUIChangedCount == 2)
}
@Test @MainActor
func didDisconnect_whileViewingChat_migratesConversationToStablePeerID() async {
let context = MockChatTransportEventContext()
@@ -97,6 +97,7 @@ private final class MockChatVerificationContext: ChatVerificationContext {
var noiseSessionKeysByPeerID: [PeerID: Data] = [:]
private(set) var installedCallbacks: (onPeerAuthenticated: (PeerID, String) -> Void, onHandshakeRequired: (PeerID) -> Void)?
private(set) var triggeredHandshakes: [PeerID] = []
private(set) var privateMediaAuthenticatedPeers: [PeerID] = []
private(set) var sentChallenges: [(peerID: PeerID, noiseKeyHex: String, nonceA: Data)] = []
private(set) var sentResponses: [(peerID: PeerID, noiseKeyHex: String, nonceA: Data)] = []
@@ -113,6 +114,9 @@ private final class MockChatVerificationContext: ChatVerificationContext {
establishedNoiseSessions.contains(peerID)
}
func triggerHandshake(with peerID: PeerID) { triggeredHandshakes.append(peerID) }
func privateMediaPeerDidAuthenticate(_ peerID: PeerID) {
privateMediaAuthenticatedPeers.append(peerID)
}
func sendVerifyChallenge(to peerID: PeerID, noiseKeyHex: String, nonceA: Data) {
sentChallenges.append((peerID, noiseKeyHex, nonceA))
@@ -277,6 +281,7 @@ struct ChatVerificationCoordinatorContextTests {
#expect(context.encryptionStatuses[peerID] == .noiseVerified)
#expect(context.stablePeerIDCache[peerID] == PeerID(hexData: noiseKey))
#expect(context.invalidatedEncryptionCachePeers.contains(peerID))
#expect(context.privateMediaAuthenticatedPeers == [peerID])
// Handshake required -> handshaking status.
callbacks?.onHandshakeRequired(peerID)
+90 -28
View File
@@ -393,20 +393,25 @@ struct ChatViewModelNostrExtensionTests {
}
@Test @MainActor
func subscribeGiftWrap_rejectsOversizedEmbeddedPacket() async throws {
func privateEnvelope_rejectsOversizedEmbeddedPacketBeforePublication() async throws {
let (viewModel, _) = makeTestableViewModel()
let sender = try NostrIdentity.generate()
let recipient = try NostrIdentity.generate()
let oversized = Data(repeating: 0x41, count: FileTransferLimits.maxFramedFileBytes + 1)
let content = "bitchat1:" + base64URLEncode(oversized)
let giftWrap = try NostrProtocol.createPrivateMessage(
content: content,
recipientPubkey: recipient.publicKeyHex,
senderIdentity: sender
)
viewModel.subscribeGiftWrap(giftWrap, id: recipient)
do {
_ = try NostrProtocol.createPrivateEnvelope(
content: content,
recipientPubkey: recipient.publicKeyHex,
senderIdentity: sender
)
Issue.record("Expected oversized private-envelope plaintext to be rejected")
} catch NostrError.invalidCiphertext {
// Rejected before encryption/publication, as intended.
} catch {
Issue.record("Expected NostrError.invalidCiphertext, got \(error)")
}
try? await Task.sleep(nanoseconds: 100_000_000)
#expect(viewModel.privateChats.isEmpty)
@@ -451,7 +456,7 @@ struct ChatViewModelNostrExtensionTests {
}
@Test @MainActor
func subscribeGiftWrap_deliveredAckUpdatesExistingMessage() async throws {
func subscribePrivateEnvelope_deliveredAckUpdatesExistingMessage() async throws {
let (viewModel, _) = makeTestableViewModel()
let sender = try NostrIdentity.generate()
let recipient = try NostrIdentity.generate()
@@ -473,13 +478,13 @@ struct ChatViewModelNostrExtensionTests {
], for: convKey)
let content = try ackContent(type: .delivered, messageID: messageID, senderPeerID: PeerID(str: "0123456789abcdef"))
let giftWrap = try NostrProtocol.createPrivateMessage(
let envelope = try NostrProtocol.createPrivateEnvelope(
content: content,
recipientPubkey: recipient.publicKeyHex,
senderIdentity: sender
)
viewModel.subscribeGiftWrap(giftWrap, id: recipient)
viewModel.subscribePrivateEnvelope(envelope, id: recipient)
let didUpdate = await TestHelpers.waitUntil(
{ isDelivered(status: deliveryStatus(in: viewModel, peerID: convKey, messageID: messageID)) },
@@ -489,7 +494,7 @@ struct ChatViewModelNostrExtensionTests {
}
@Test @MainActor
func subscribeGiftWrap_readAckUpdatesExistingMessage() async throws {
func subscribePrivateEnvelope_readAckUpdatesExistingMessage() async throws {
let (viewModel, _) = makeTestableViewModel()
let sender = try NostrIdentity.generate()
let recipient = try NostrIdentity.generate()
@@ -511,13 +516,13 @@ struct ChatViewModelNostrExtensionTests {
], for: convKey)
let content = try ackContent(type: .readReceipt, messageID: messageID, senderPeerID: PeerID(str: "0123456789abcdef"))
let giftWrap = try NostrProtocol.createPrivateMessage(
let envelope = try NostrProtocol.createPrivateEnvelope(
content: content,
recipientPubkey: recipient.publicKeyHex,
senderIdentity: sender
)
viewModel.subscribeGiftWrap(giftWrap, id: recipient)
viewModel.subscribePrivateEnvelope(envelope, id: recipient)
let didUpdate = await TestHelpers.waitUntil(
{ isRead(status: deliveryStatus(in: viewModel, peerID: convKey, messageID: messageID)) },
@@ -527,28 +532,28 @@ struct ChatViewModelNostrExtensionTests {
}
@Test @MainActor
func handleGiftWrap_privateMessageStoresConversationAndMapping() async throws {
func handlePrivateEnvelope_privateMessageStoresConversationAndMapping() async throws {
let (viewModel, _) = makeTestableViewModel()
let sender = try NostrIdentity.generate()
let recipient = try NostrIdentity.generate()
let messageID = "gift-private"
let messageID = "envelope-private"
let convKey = PeerID(nostr_: sender.publicKeyHex)
let content = try privateMessageContent(
text: "Hello from gift wrap",
text: "Hello from private envelope",
messageID: messageID,
senderPeerID: PeerID(str: "0123456789abcdef")
)
let giftWrap = try NostrProtocol.createPrivateMessage(
let envelope = try NostrProtocol.createPrivateEnvelope(
content: content,
recipientPubkey: recipient.publicKeyHex,
senderIdentity: sender
)
viewModel.handleGiftWrap(giftWrap, id: recipient)
viewModel.handlePrivateEnvelope(envelope, id: recipient)
let didStore = await TestHelpers.waitUntil(
{ viewModel.privateChats[convKey]?.first?.content == "Hello from gift wrap" },
{ viewModel.privateChats[convKey]?.first?.content == "Hello from private envelope" },
timeout: 5.0
)
#expect(didStore)
@@ -557,11 +562,11 @@ struct ChatViewModelNostrExtensionTests {
}
@Test @MainActor
func handleGiftWrap_blockedSenderSkipsMessageStorage() async throws {
func handlePrivateEnvelope_blockedSenderSkipsMessageStorage() async throws {
let (viewModel, _) = makeTestableViewModel()
let sender = try NostrIdentity.generate()
let recipient = try NostrIdentity.generate()
let messageID = "gift-blocked"
let messageID = "envelope-blocked"
let convKey = PeerID(nostr_: sender.publicKeyHex)
viewModel.identityManager.setNostrBlocked(sender.publicKeyHex, isBlocked: true)
@@ -571,13 +576,13 @@ struct ChatViewModelNostrExtensionTests {
messageID: messageID,
senderPeerID: PeerID(str: "0123456789abcdef")
)
let giftWrap = try NostrProtocol.createPrivateMessage(
let envelope = try NostrProtocol.createPrivateEnvelope(
content: content,
recipientPubkey: recipient.publicKeyHex,
senderIdentity: sender
)
viewModel.handleGiftWrap(giftWrap, id: recipient)
viewModel.handlePrivateEnvelope(envelope, id: recipient)
try? await Task.sleep(nanoseconds: 50_000_000)
#expect(viewModel.privateChats[convKey] == nil)
@@ -585,12 +590,12 @@ struct ChatViewModelNostrExtensionTests {
}
@Test @MainActor
func handleGiftWrap_deliveredAckUpdatesExistingMessage() async throws {
func handlePrivateEnvelope_deliveredAckUpdatesExistingMessage() async throws {
let (viewModel, _) = makeTestableViewModel()
let sender = try NostrIdentity.generate()
let recipient = try NostrIdentity.generate()
let convKey = PeerID(nostr_: sender.publicKeyHex)
let messageID = "gift-delivered"
let messageID = "envelope-delivered"
viewModel.seedPrivateChat([
BitchatMessage(
@@ -607,13 +612,13 @@ struct ChatViewModelNostrExtensionTests {
], for: convKey)
let content = try ackContent(type: .delivered, messageID: messageID, senderPeerID: PeerID(str: "0123456789abcdef"))
let giftWrap = try NostrProtocol.createPrivateMessage(
let envelope = try NostrProtocol.createPrivateEnvelope(
content: content,
recipientPubkey: recipient.publicKeyHex,
senderIdentity: sender
)
viewModel.handleGiftWrap(giftWrap, id: recipient)
viewModel.handlePrivateEnvelope(envelope, id: recipient)
let didUpdate = await TestHelpers.waitUntil(
{ isDelivered(status: deliveryStatus(in: viewModel, peerID: convKey, messageID: messageID)) },
@@ -781,6 +786,63 @@ struct ChatViewModelGeoDMTests {
#expect(isFailed(status: viewModel.privateChats[convKey]?.last?.deliveryStatus))
}
@Test @MainActor
func geohashTerminalRelayFailure_transitionsSentMessageToFailed() async throws {
let (viewModel, _) = makeTestableViewModel()
let sender = try NostrIdentity.generate()
let recipient = try NostrIdentity.generate()
let messageID = "geo-terminal-failure"
let convKey = PeerID(nostr_: recipient.publicKeyHex)
let message = BitchatMessage(
id: messageID,
sender: viewModel.nickname,
content: "queued geohash message",
timestamp: Date(),
isRelay: false,
isPrivate: true,
recipientNickname: "recipient",
senderPeerID: viewModel.myPeerID,
deliveryStatus: .sent
)
viewModel.seedPrivateChat([message], for: convKey)
var terminalFailure: (@MainActor () -> Void)?
let dependencies = NostrTransport.Dependencies(
notificationCenter: NotificationCenter(),
loadFavorites: { [:] },
favoriteStatusForNoiseKey: { _ in nil },
favoriteStatusForPeerID: { _ in nil },
currentIdentity: { sender },
registerPendingPrivateEnvelope: { _ in },
sendPrivateEnvelopeBatch: { _, failure in
terminalFailure = failure
return true
},
scheduleAfter: { _, _ in },
relayConnectivity: {
Just(false).eraseToAnyPublisher()
}
)
let transport = viewModel.makeGeohashNostrTransport(
dependencies: dependencies
)
let accepted = transport.sendPrivateMessageGeohash(
content: message.content,
toRecipientHex: recipient.publicKeyHex,
from: sender,
messageID: messageID
)
#expect(accepted)
#expect(viewModel.privateChats[convKey]?.first?.deliveryStatus == .sent)
let fail = try #require(terminalFailure)
fail()
#expect(isFailed(
status: viewModel.privateChats[convKey]?.first?.deliveryStatus
))
}
/// The blocked notice belongs in the DM thread the person is typing in,
/// not on the active location-channel timeline.
@Test @MainActor
+827
View File
@@ -864,6 +864,80 @@ struct ChatViewModelPublicConversationTests {
struct ChatViewModelPeerTests {
@Test @MainActor
func typedPeerLifecycleEvents_applyBeforeReturning() {
let (viewModel, _) = makeTestableViewModel()
let peerID = PeerID(str: "1122334455667788")
let incoming = BitchatMessage(
id: "typed-peer-incoming",
sender: "Alice",
content: "Hello",
timestamp: Date(),
isRelay: false,
isPrivate: true,
recipientNickname: viewModel.nickname,
senderPeerID: peerID
)
viewModel.seedPrivateChat([incoming], for: peerID)
viewModel.sentReadReceipts.insert(incoming.id)
viewModel.didReceiveTransportEvent(.peerConnected(peerID))
#expect(viewModel.isConnected)
viewModel.didReceiveTransportEvent(.peerDisconnected(peerID))
#expect(!viewModel.sentReadReceipts.contains(incoming.id))
}
@Test @MainActor
func typedPeerListDeliveryAndBluetoothEvents_applyBeforeReturning() {
let (viewModel, transport) = makeTestableViewModel()
let stalePeer = PeerID(str: "00000000000000a2")
let deliveryPeer = PeerID(str: "0102030405060708")
let messageID = "typed-delivery-status"
let delivered = DeliveryStatus.delivered(
to: "Alice",
at: Date(timeIntervalSince1970: 1_234)
)
let outgoing = BitchatMessage(
id: messageID,
sender: viewModel.nickname,
content: "On the way",
timestamp: Date(),
isRelay: false,
isPrivate: true,
recipientNickname: "Alice",
senderPeerID: transport.myPeerID,
deliveryStatus: .sent
)
viewModel.markPrivateChatUnread(stalePeer)
viewModel.seedPrivateChat([outgoing], for: deliveryPeer)
viewModel.didReceiveTransportEvent(.peerListUpdated([]))
#expect(!viewModel.unreadPrivateMessages.contains(stalePeer))
viewModel.didReceiveTransportEvent(
.messageDeliveryStatusUpdated(
messageID: messageID,
status: delivered
)
)
#expect(
viewModel.privateMessages(for: deliveryPeer).first?.deliveryStatus
== delivered
)
viewModel.didReceiveTransportEvent(.bluetoothStateUpdated(.poweredOff))
#expect(viewModel.bluetoothState == .poweredOff)
#expect(viewModel.showBluetoothAlert)
// Snapshot events belong to TransportPeerEventsDelegate and are
// intentionally ignored at this typed sink.
viewModel.didReceiveTransportEvent(.peerSnapshotsUpdated([]))
#expect(viewModel.bluetoothState == .poweredOff)
}
@Test @MainActor
func didConnectToPeer_notifiesDelegate() async {
let (_, transport) = makeTestableViewModel()
@@ -1120,6 +1194,759 @@ struct ChatViewModelBluetoothTests {
}
}
// MARK: - Private Media Deletion Tests
struct ChatViewModelPrivateMediaDeletionTests {
@Test @MainActor
func deleteMediaMessageTombstonesIncomingButNotOutgoingStableMedia() {
let (viewModel, transport) = makeTestableViewModel()
let peerID = PeerID(str: String(repeating: "8", count: 64))
let incomingID = "media-\(String(repeating: "e", count: 32))"
let outgoingID = "media-\(String(repeating: "f", count: 32))"
viewModel.seedPrivateChat([
privateMediaMessage(
id: incomingID,
sender: "Peer",
senderPeerID: peerID,
recipient: viewModel.nickname,
filename: "incoming.jpg"
),
privateMediaMessage(
id: outgoingID,
sender: viewModel.nickname,
senderPeerID: transport.myPeerID,
recipient: "Peer",
filename: "outgoing.jpg"
)
], for: peerID)
viewModel.deleteMediaMessage(messageID: outgoingID)
#expect(transport.deletedPrivateMediaMessageIDBatches.isEmpty)
#expect(viewModel.privateChats[peerID]?.map(\.id) == [incomingID])
viewModel.deleteMediaMessage(messageID: incomingID)
#expect(
transport.deletedPrivateMediaMessageIDBatches == [[incomingID]]
)
#expect(
transport.deletedPrivateMediaRelativePaths
== [[incomingID: "images/incoming/incoming.jpg"]]
)
#expect((viewModel.privateChats[peerID] ?? []).isEmpty)
}
@Test @MainActor
func stableDeleteProtectsPathSharedWithLegacyBubble() {
let (viewModel, transport) = makeTestableViewModel()
transport.persistDeletedPrivateMediaResult = false
let peerID = PeerID(str: String(repeating: "6", count: 64))
let stableID = "media-\(String(repeating: "5", count: 32))"
let legacyID = UUID().uuidString
let filename = "shared-migration.jpg"
viewModel.seedPrivateChat([
privateMediaMessage(
id: stableID,
sender: "Peer",
senderPeerID: peerID,
recipient: viewModel.nickname,
filename: filename
),
privateMediaMessage(
id: legacyID,
sender: "Old client",
senderPeerID: peerID,
recipient: viewModel.nickname,
filename: filename
)
], for: peerID)
viewModel.deleteMediaMessage(messageID: stableID)
#expect(
transport.deletedPrivateMediaMessageIDBatches == [[stableID]]
)
#expect(transport.deletedPrivateMediaRelativePaths == [[:]])
#expect(
transport.protectedPrivateMediaRelativePaths == [[
"images/incoming/\(filename)"
]]
)
#expect(
viewModel.privateChats[peerID]?.map(\.id)
== [stableID, legacyID]
)
}
@Test @MainActor
func legacyIncomingDeleteLeavesAmbiguousPayloadForQuota() throws {
let (viewModel, transport) = makeTestableViewModel()
let peerID = PeerID(str: String(repeating: "3", count: 64))
let incoming = try FileManager.default.url(
for: .applicationSupportDirectory,
in: .userDomainMask,
appropriateFor: nil,
create: true
)
.appendingPathComponent(
"files/images/incoming",
isDirectory: true
)
try FileManager.default.createDirectory(
at: incoming,
withIntermediateDirectories: true
)
let payload = incoming.appendingPathComponent(
"legacy-delete-\(UUID().uuidString).jpg"
)
try Data([0x01]).write(to: payload)
defer { try? FileManager.default.removeItem(at: payload) }
let legacyID = UUID().uuidString
viewModel.seedPrivateChat([
privateMediaMessage(
id: legacyID,
sender: "Old client",
senderPeerID: peerID,
recipient: viewModel.nickname,
filename: payload.lastPathComponent
)
], for: peerID)
viewModel.deleteMediaMessage(messageID: legacyID)
#expect(transport.deletedPrivateMediaMessageIDBatches.isEmpty)
#expect((viewModel.privateChats[peerID] ?? []).isEmpty)
#expect(FileManager.default.fileExists(atPath: payload.path))
}
@Test @MainActor
func clearPrivateChatTombstonesIncomingAndCancelsOutgoingBeforeClear() {
let (viewModel, transport) = makeTestableViewModel()
let peerID = PeerID(str: String(repeating: "1", count: 64))
let incomingID = "media-\(String(repeating: "a", count: 32))"
let outgoingID = "media-\(String(repeating: "b", count: 32))"
viewModel.seedPrivateChat([
privateMediaMessage(
id: incomingID,
sender: "Peer",
senderPeerID: peerID,
recipient: viewModel.nickname,
filename: "incoming.jpg"
),
privateMediaMessage(
id: outgoingID,
sender: viewModel.nickname,
senderPeerID: transport.myPeerID,
recipient: "Peer",
filename: "outgoing.jpg"
),
BitchatMessage(
id: "ordinary-message",
sender: "Peer",
content: "hello",
timestamp: Date(),
isRelay: false,
isPrivate: true,
recipientNickname: viewModel.nickname,
senderPeerID: peerID
)
], for: peerID)
viewModel.registerTransfer(
transferId: "outgoing-clear-transfer",
messageID: outgoingID
)
viewModel.clearPrivateChat(peerID)
#expect(
transport.deletedPrivateMediaMessageIDBatches == [[incomingID]]
)
#expect(
transport.deletedPrivateMediaRelativePaths
== [[incomingID: "images/incoming/incoming.jpg"]]
)
#expect(
transport.cancelledTransfers == ["outgoing-clear-transfer"]
)
#expect(viewModel.messageIDToTransferId[outgoingID] == nil)
#expect(viewModel.privateChats[peerID]?.isEmpty == true)
}
@Test @MainActor
func clearPrivateChatPreservesCapturedMessagesWhenTombstoneFails() {
let (viewModel, transport) = makeTestableViewModel()
transport.persistDeletedPrivateMediaResult = false
let peerID = PeerID(str: String(repeating: "2", count: 64))
let incomingID = "media-\(String(repeating: "c", count: 32))"
let outgoingID = "media-\(String(repeating: "7", count: 32))"
viewModel.seedPrivateChat([
privateMediaMessage(
id: incomingID,
sender: "Peer",
senderPeerID: peerID,
recipient: viewModel.nickname,
filename: "incoming.jpg"
),
privateMediaMessage(
id: outgoingID,
sender: viewModel.nickname,
senderPeerID: transport.myPeerID,
recipient: "Peer",
filename: "outgoing.jpg"
),
BitchatMessage(
id: "ordinary-message",
sender: "Peer",
content: "keep me on failure",
timestamp: Date(),
isRelay: false,
isPrivate: true,
recipientNickname: viewModel.nickname,
senderPeerID: peerID
)
], for: peerID)
viewModel.registerTransfer(
transferId: "failed-clear-outgoing",
messageID: outgoingID
)
viewModel.clearPrivateChat(peerID)
#expect(
transport.deletedPrivateMediaMessageIDBatches == [[incomingID]]
)
#expect(
viewModel.privateChats[peerID]?.map(\.id)
== [incomingID, outgoingID, "ordinary-message"]
)
#expect(transport.cancelledTransfers == ["failed-clear-outgoing"])
#expect(viewModel.messageIDToTransferId[outgoingID] == nil)
}
@Test @MainActor
func clearFailurePreservesSameNameIncomingPayload() throws {
let (viewModel, transport) = makeTestableViewModel()
transport.persistDeletedPrivateMediaResult = false
let peerID = PeerID(str: String(repeating: "7", count: 64))
let incomingID = "media-\(String(repeating: "8", count: 32))"
let outgoingID = "media-\(String(repeating: "9", count: 32))"
let filename = "clear-collision-\(UUID().uuidString).jpg"
let filesDirectory = try FileManager.default.url(
for: .applicationSupportDirectory,
in: .userDomainMask,
appropriateFor: nil,
create: true
)
.appendingPathComponent("files/images", isDirectory: true)
let incomingDirectory = filesDirectory.appendingPathComponent(
"incoming",
isDirectory: true
)
let outgoingDirectory = filesDirectory.appendingPathComponent(
"outgoing",
isDirectory: true
)
try FileManager.default.createDirectory(
at: incomingDirectory,
withIntermediateDirectories: true
)
try FileManager.default.createDirectory(
at: outgoingDirectory,
withIntermediateDirectories: true
)
let incomingURL = incomingDirectory.appendingPathComponent(filename)
let outgoingURL = outgoingDirectory.appendingPathComponent(filename)
try Data("incoming".utf8).write(to: incomingURL, options: .atomic)
try Data("outgoing".utf8).write(to: outgoingURL, options: .atomic)
defer {
try? FileManager.default.removeItem(at: incomingURL)
try? FileManager.default.removeItem(at: outgoingURL)
}
viewModel.seedPrivateChat([
privateMediaMessage(
id: incomingID,
sender: "Peer",
senderPeerID: peerID,
recipient: viewModel.nickname,
filename: filename
),
privateMediaMessage(
id: outgoingID,
sender: viewModel.nickname,
senderPeerID: transport.myPeerID,
recipient: "Peer",
filename: filename
)
], for: peerID)
viewModel.clearPrivateChat(peerID)
#expect(FileManager.default.fileExists(atPath: incomingURL.path))
#expect(FileManager.default.fileExists(atPath: outgoingURL.path))
#expect(
transport.deletedPrivateMediaRelativePaths
== [[incomingID: "images/incoming/\(filename)"]]
)
#expect(
viewModel.privateChats[peerID]?.map(\.id)
== [incomingID, outgoingID]
)
}
@Test @MainActor
func clearPrivateChatPreservesArrivalDuringTombstoneIO() {
let (viewModel, transport) = makeTestableViewModel()
transport.deferDeletedPrivateMediaPersistence = true
let peerID = PeerID(str: String(repeating: "3", count: 64))
let incomingID = "media-\(String(repeating: "d", count: 32))"
viewModel.seedPrivateChat([
privateMediaMessage(
id: incomingID,
sender: "Peer",
senderPeerID: peerID,
recipient: viewModel.nickname,
filename: "incoming.jpg"
),
BitchatMessage(
id: "captured-text",
sender: "Peer",
content: "old",
timestamp: Date(),
isRelay: false,
isPrivate: true,
recipientNickname: viewModel.nickname,
senderPeerID: peerID
)
], for: peerID)
viewModel.clearPrivateChat(peerID)
let arrival = BitchatMessage(
id: "concurrent-arrival",
sender: "Peer",
content: "new",
timestamp: Date(),
isRelay: false,
isPrivate: true,
recipientNickname: viewModel.nickname,
senderPeerID: peerID
)
#expect(viewModel.appendPrivateMessage(arrival, to: peerID))
transport.resolveNextDeletedPrivateMediaPersistence(true)
#expect(
viewModel.privateChats[peerID]?.map(\.id)
== ["concurrent-arrival"]
)
}
@Test @MainActor
func clearPrivateChatPreservesActiveLiveVoiceAssembly() throws {
let (viewModel, transport) = makeTestableViewModel()
let peerID = PeerID(str: String(repeating: "7", count: 64))
viewModel.selectedPrivateChatPeer = peerID
let burstID = Data(
repeating: 0xE1,
count: VoiceBurstPacket.burstIDSize
)
let start = try #require(VoiceBurstPacket(
burstID: burstID,
seq: 0,
kind: .start(codec: .aacLC16kMono)
))
let cancel = try #require(VoiceBurstPacket(
burstID: burstID,
seq: 1,
kind: .canceled
))
let coordinator = viewModel.liveVoiceCoordinator
defer {
coordinator.handleVoiceFramePayload(
from: peerID,
payload: cancel.encode(),
timestamp: Date()
)
}
coordinator.handleVoiceFramePayload(
from: peerID,
payload: start.encode(),
timestamp: Date()
)
let liveMessage = try #require(
viewModel.privateChats[peerID]?.first
)
#expect(coordinator.isLiveVoiceMessage(liveMessage))
let ordinary = BitchatMessage(
id: "clear-around-live-voice",
sender: "Peer",
content: "old text",
timestamp: Date(),
isRelay: false,
isPrivate: true,
recipientNickname: viewModel.nickname,
senderPeerID: peerID
)
#expect(viewModel.appendPrivateMessage(ordinary, to: peerID))
viewModel.clearPrivateChat(peerID)
#expect(transport.deletedPrivateMediaMessageIDBatches.isEmpty)
#expect(
viewModel.privateChats[peerID]?.map(\.id)
== [liveMessage.id]
)
#expect(coordinator.isLiveVoiceMessage(liveMessage))
}
@Test @MainActor
func overlappingClearsTombstoneTheLastMirroredStableAlias() {
let (viewModel, transport) = makeTestableViewModel()
transport.deferDeletedPrivateMediaPersistence = true
let firstPeerID = PeerID(str: String(repeating: "b", count: 64))
let secondPeerID = PeerID(str: String(repeating: "c", count: 64))
let sharedID = "media-\(String(repeating: "1", count: 32))"
let firstUniqueID = "media-\(String(repeating: "2", count: 32))"
let secondUniqueID = "media-\(String(repeating: "3", count: 32))"
viewModel.seedPrivateChat([
privateMediaMessage(
id: sharedID,
sender: "Peer",
senderPeerID: firstPeerID,
recipient: viewModel.nickname,
filename: "shared.jpg"
),
privateMediaMessage(
id: firstUniqueID,
sender: "Peer",
senderPeerID: firstPeerID,
recipient: viewModel.nickname,
filename: "first.jpg"
)
], for: firstPeerID)
viewModel.seedPrivateChat([
privateMediaMessage(
id: sharedID,
sender: "Peer",
senderPeerID: secondPeerID,
recipient: viewModel.nickname,
filename: "shared.jpg"
),
privateMediaMessage(
id: secondUniqueID,
sender: "Peer",
senderPeerID: secondPeerID,
recipient: viewModel.nickname,
filename: "second.jpg"
)
], for: secondPeerID)
viewModel.clearPrivateChat(firstPeerID)
viewModel.clearPrivateChat(secondPeerID)
let queuedArrival = BitchatMessage(
id: "arrival-after-queued-clear",
sender: "Peer",
content: "new",
timestamp: Date(),
isRelay: false,
isPrivate: true,
recipientNickname: viewModel.nickname,
senderPeerID: secondPeerID
)
#expect(viewModel.appendPrivateMessage(
queuedArrival,
to: secondPeerID
))
#expect(
transport.deletedPrivateMediaMessageIDBatches
== [[firstUniqueID]]
)
transport.resolveNextDeletedPrivateMediaPersistence(true)
#expect(
transport.deletedPrivateMediaMessageIDBatches == [
[firstUniqueID],
[secondUniqueID, sharedID].sorted()
]
)
transport.resolveNextDeletedPrivateMediaPersistence(true)
#expect((viewModel.privateChats[firstPeerID] ?? []).isEmpty)
#expect(
viewModel.privateChats[secondPeerID]?.map(\.id)
== ["arrival-after-queued-clear"]
)
}
@Test @MainActor
func clearFollowsCapturedRowsAcrossPeerIdentityMigration() {
let (viewModel, transport) = makeTestableViewModel()
transport.deferDeletedPrivateMediaPersistence = true
let sourcePeerID = PeerID(str: String(repeating: "d", count: 64))
let destinationPeerID = PeerID(str: String(repeating: "e", count: 64))
let thirdPeerID = PeerID(str: String(repeating: "f", count: 64))
let stableID = "media-\(String(repeating: "4", count: 32))"
viewModel.selectedPrivateChatPeer = sourcePeerID
viewModel.seedPrivateChat([
privateMediaMessage(
id: stableID,
sender: "Peer",
senderPeerID: sourcePeerID,
recipient: viewModel.nickname,
filename: "migrated.jpg"
),
BitchatMessage(
id: "captured-before-migration",
sender: "Peer",
content: "old",
timestamp: Date(),
isRelay: false,
isPrivate: true,
recipientNickname: viewModel.nickname,
senderPeerID: sourcePeerID
)
], for: sourcePeerID)
viewModel.clearPrivateChat(sourcePeerID)
viewModel.migratePrivateChat(
from: sourcePeerID,
to: destinationPeerID
)
viewModel.selectedPrivateChatPeer = thirdPeerID
let arrival = BitchatMessage(
id: "arrival-after-migration",
sender: "Peer",
content: "new",
timestamp: Date(),
isRelay: false,
isPrivate: true,
recipientNickname: viewModel.nickname,
senderPeerID: destinationPeerID
)
#expect(viewModel.appendPrivateMessage(
arrival,
to: destinationPeerID
))
transport.resolveNextDeletedPrivateMediaPersistence(true)
#expect(
viewModel.privateChats[destinationPeerID]?.map(\.id)
== ["arrival-after-migration"]
)
}
@Test @MainActor
func clearFollowsMigrationWhenOldSourceIsRecreated() {
let (viewModel, transport) = makeTestableViewModel()
transport.deferDeletedPrivateMediaPersistence = true
let sourcePeerID = PeerID(str: String(repeating: "1", count: 64))
let destinationPeerID = PeerID(str: String(repeating: "2", count: 64))
let stableID = "media-\(String(repeating: "6", count: 32))"
viewModel.seedPrivateChat([
privateMediaMessage(
id: stableID,
sender: "Peer",
senderPeerID: sourcePeerID,
recipient: viewModel.nickname,
filename: "migrated-recreated.jpg"
),
BitchatMessage(
id: "captured-before-recreation",
sender: "Peer",
content: "old",
timestamp: Date(),
isRelay: false,
isPrivate: true,
recipientNickname: viewModel.nickname,
senderPeerID: sourcePeerID
)
], for: sourcePeerID)
viewModel.clearPrivateChat(sourcePeerID)
viewModel.migratePrivateChat(
from: sourcePeerID,
to: destinationPeerID
)
let recreatedArrival = BitchatMessage(
id: "arrival-recreating-source",
sender: "Peer",
content: "new",
timestamp: Date(),
isRelay: false,
isPrivate: true,
recipientNickname: viewModel.nickname,
senderPeerID: sourcePeerID
)
#expect(viewModel.appendPrivateMessage(
recreatedArrival,
to: sourcePeerID
))
transport.resolveNextDeletedPrivateMediaPersistence(true)
#expect(
(viewModel.privateChats[destinationPeerID] ?? []).isEmpty
)
#expect(
viewModel.privateChats[sourcePeerID]?.map(\.id)
== ["arrival-recreating-source"]
)
}
@Test @MainActor
func clearPrivateChatKeepsMediaReferencedByAnotherConversation() {
let (viewModel, transport) = makeTestableViewModel()
let firstPeerID = PeerID(str: String(repeating: "4", count: 64))
let aliasPeerID = PeerID(str: String(repeating: "5", count: 64))
let messageID = "media-\(String(repeating: "6", count: 32))"
let message = privateMediaMessage(
id: messageID,
sender: "Peer",
senderPeerID: firstPeerID,
recipient: viewModel.nickname,
filename: "mirrored.jpg"
)
viewModel.seedPrivateChat([message], for: firstPeerID)
viewModel.seedPrivateChat([message], for: aliasPeerID)
viewModel.clearPrivateChat(firstPeerID)
#expect(transport.deletedPrivateMediaMessageIDBatches.isEmpty)
#expect(viewModel.privateChats[firstPeerID]?.isEmpty == true)
#expect(
viewModel.privateChats[aliasPeerID]?.map(\.id) == [messageID]
)
}
@Test @MainActor
func clearPrivateChatLeavesAmbiguousLegacyFileForQuotaCleanup()
throws {
let (viewModel, transport) = makeTestableViewModel()
let firstPeerID = PeerID(str: String(repeating: "9", count: 64))
let aliasPeerID = PeerID(str: String(repeating: "a", count: 64))
let incomingDirectory = try FileManager.default.url(
for: .applicationSupportDirectory,
in: .userDomainMask,
appropriateFor: nil,
create: true
)
.appendingPathComponent("files/images/incoming", isDirectory: true)
try FileManager.default.createDirectory(
at: incomingDirectory,
withIntermediateDirectories: true
)
let fileURL = incomingDirectory.appendingPathComponent(
"legacy-clear-\(UUID().uuidString).jpg"
)
try Data("legacy-image".utf8).write(to: fileURL, options: .atomic)
defer { try? FileManager.default.removeItem(at: fileURL) }
let message = privateMediaMessage(
id: UUID().uuidString,
sender: "Old client",
senderPeerID: firstPeerID,
recipient: viewModel.nickname,
filename: fileURL.lastPathComponent
)
viewModel.seedPrivateChat([message], for: firstPeerID)
viewModel.seedPrivateChat([message], for: aliasPeerID)
viewModel.clearPrivateChat(firstPeerID)
#expect(transport.deletedPrivateMediaMessageIDBatches.isEmpty)
#expect(FileManager.default.fileExists(atPath: fileURL.path))
#expect(viewModel.privateChats[aliasPeerID]?.map(\.id) == [message.id])
viewModel.clearPrivateChat(aliasPeerID)
#expect(FileManager.default.fileExists(atPath: fileURL.path))
#expect((viewModel.privateChats[aliasPeerID] ?? []).isEmpty)
}
@Test @MainActor
func panicInvalidatesActiveAndQueuedPrivateChatClears() {
let (viewModel, transport) = makeTestableViewModel()
transport.deferDeletedPrivateMediaPersistence = true
let firstPeerID = PeerID(str: String(repeating: "4", count: 64))
let secondPeerID = PeerID(str: String(repeating: "5", count: 64))
let firstID = "media-\(String(repeating: "6", count: 32))"
let secondID = "media-\(String(repeating: "7", count: 32))"
viewModel.seedPrivateChat([
privateMediaMessage(
id: firstID,
sender: "First",
senderPeerID: firstPeerID,
recipient: viewModel.nickname,
filename: "first-pre-panic.jpg"
)
], for: firstPeerID)
viewModel.seedPrivateChat([
privateMediaMessage(
id: secondID,
sender: "Second",
senderPeerID: secondPeerID,
recipient: viewModel.nickname,
filename: "second-pre-panic.jpg"
)
], for: secondPeerID)
viewModel.clearPrivateChat(firstPeerID)
viewModel.clearPrivateChat(secondPeerID)
#expect(
transport.deletedPrivateMediaMessageIDBatches == [[firstID]]
)
_ = viewModel.panicClearAllData(restartServices: false)
viewModel.seedPrivateChat([
privateMediaMessage(
id: firstID,
sender: "First",
senderPeerID: firstPeerID,
recipient: viewModel.nickname,
filename: "first-post-panic.jpg"
)
], for: firstPeerID)
viewModel.seedPrivateChat([
privateMediaMessage(
id: secondID,
sender: "Second",
senderPeerID: secondPeerID,
recipient: viewModel.nickname,
filename: "second-post-panic.jpg"
)
], for: secondPeerID)
transport.resolveNextDeletedPrivateMediaPersistence(true)
#expect(
transport.deletedPrivateMediaMessageIDBatches == [[firstID]]
)
#expect(viewModel.privateChats[firstPeerID]?.map(\.id) == [firstID])
#expect(viewModel.privateChats[secondPeerID]?.map(\.id) == [secondID])
}
private func privateMediaMessage(
id: String,
sender: String,
senderPeerID: PeerID,
recipient: String,
filename: String
) -> BitchatMessage {
BitchatMessage(
id: id,
sender: sender,
content: "\(MimeType.Category.image.messagePrefix)\(filename)",
timestamp: Date(),
isRelay: false,
isPrivate: true,
recipientNickname: recipient,
senderPeerID: senderPeerID
)
}
}
// MARK: - Panic Clear Tests
struct ChatViewModelPanicTests {
@@ -364,6 +364,217 @@ struct PrivateMediaEndToEndTests {
#expect(alice.privateMediaSendPolicy(to: bob.myPeerID) == .legacyRequiresConsent)
}
@Test
func privateMediaRetryRequiresExactAuthenticatedBit9Proof() async throws {
let root = FileManager.default.temporaryDirectory
.appendingPathComponent(
"private-media-receipt-proof-\(UUID().uuidString)",
isDirectory: true
)
defer { try? FileManager.default.removeItem(at: root) }
let alice = makeService(
baseDirectory: root.appendingPathComponent(
"alice",
isDirectory: true
)
)
let bob = makeService(
baseDirectory: root.appendingPathComponent(
"bob",
isDirectory: true
)
)
let bothCapabilities: PeerCapabilities = [
.privateMedia,
.privateMediaReceipts
]
// A public bit-9 announce is discovery only.
alice._test_seedConnectedPeer(
bob.myPeerID,
nickname: "Bob",
capabilities: bothCapabilities,
noisePublicKey: bob.noiseStaticPublicKeyData()
)
#expect(
alice.authenticatedPrivateMediaReceiptSessionGeneration(
to: bob.myPeerID
) == nil
)
let proofs = try await establishSessionCapturingPeerState(
alice: alice,
bob: bob
)
#expect(
alice.authenticatedPrivateMediaReceiptSessionGeneration(
to: bob.myPeerID
) == nil
)
// Bit 8 alone preserves encrypted transfer compatibility but cannot
// authorize automatic resend.
let privateMediaOnly = try authenticatedPeerStatePacket(
from: bob,
to: alice,
capabilities: .privateMedia
)
alice._test_handlePacket(
privateMediaOnly,
fromPeerID: bob.myPeerID
)
#expect(await TestHelpers.waitUntil(
{
alice.privateMediaSendPolicy(to: bob.myPeerID)
== .encrypted
},
timeout: TestConstants.longTimeout
))
#expect(
alice.authenticatedPrivateMediaReceiptSessionGeneration(
to: bob.myPeerID
) == nil
)
let receiptCapable = try authenticatedPeerStatePacket(
from: bob,
to: alice,
capabilities: bothCapabilities
)
alice._test_handlePacket(
receiptCapable,
fromPeerID: bob.myPeerID
)
#expect(await TestHelpers.waitUntil(
{
alice.authenticatedPrivateMediaReceiptSessionGeneration(
to: bob.myPeerID
) != nil
},
timeout: TestConstants.longTimeout
))
bob._test_handlePacket(
proofs.alice,
fromPeerID: alice.myPeerID
)
alice._test_onOutboundPacket = nil
bob._test_onOutboundPacket = nil
}
@Test
func receiptRetryRechecksBit9AtDeferredTransportBoundary() async throws {
let root = FileManager.default.temporaryDirectory
.appendingPathComponent(
"private-media-retry-proof-race-\(UUID().uuidString)",
isDirectory: true
)
defer { try? FileManager.default.removeItem(at: root) }
let alice = makeService(
baseDirectory: root.appendingPathComponent(
"alice",
isDirectory: true
)
)
let bob = makeService(
baseDirectory: root.appendingPathComponent(
"bob",
isDirectory: true
)
)
let receiptCapabilities: PeerCapabilities = [
.privateMedia,
.privateMediaReceipts
]
alice._test_seedConnectedPeer(
bob.myPeerID,
nickname: "Bob",
capabilities: receiptCapabilities,
noisePublicKey: bob.noiseStaticPublicKeyData()
)
bob._test_seedConnectedPeer(
alice.myPeerID,
nickname: "Alice",
capabilities: receiptCapabilities,
noisePublicKey: alice.noiseStaticPublicKeyData()
)
try await establishSession(alice: alice, bob: bob)
#expect(
alice.authenticatedPrivateMediaReceiptSessionGeneration(
to: bob.myPeerID
) != nil
)
let privateMediaOnly = try authenticatedPeerStatePacket(
from: bob,
to: alice,
capabilities: .privateMedia
)
let transferID =
"receipt-proof-race-\(UUID().uuidString)"
let tap = PacketTap()
let boundaryProofs = ReceiptCapabilityRecorder()
let rejections = TransferCancellationRecorder()
let cancellable = TransferProgressManager.shared.publisher.sink {
rejections.record($0)
}
alice._test_onOutboundPacket = tap.record
alice._test_beforePrivateMediaDeferredSend = { id in
guard id == transferID else { return }
boundaryProofs.record(
alice
.authenticatedPrivateMediaReceiptSessionGeneration(
to: bob.myPeerID
) != nil
)
}
defer {
alice._test_beforePrivateMediaDeferredSend = nil
alice._test_onOutboundPacket = nil
}
// Rotate authenticated state before the deferred retry reaches its
// admission boundary.
alice._test_handlePacket(
privateMediaOnly,
fromPeerID: bob.myPeerID
)
let content = Data("%PDF-1.7\nreceipt-proof-race".utf8)
alice.sendFilePrivateReceiptRetry(
BitchatFilePacket(
fileName: "receipt-proof-race.pdf",
fileSize: UInt64(content.count),
mimeType: "application/pdf",
content: content
),
to: bob.myPeerID,
transferId: transferID
)
#expect(await TestHelpers.waitUntil(
{ boundaryProofs.snapshot() == [false] },
timeout: TestConstants.longTimeout
))
await alice._test_drainPrivateMediaSendPipeline()
#expect(await TestHelpers.waitUntil(
{ rejections.contains(transferID) },
timeout: TestConstants.longTimeout
))
#expect(tap.snapshot().allSatisfy {
$0.type != MessageType.fileTransfer.rawValue
&& !(
$0.type == MessageType.noiseEncrypted.rawValue
&& $0.version == 2
)
})
let state = alice._test_privateMediaTransferState(
transferId: transferID
)
#expect(!state.admissionActive)
#expect(!state.pendingNoise)
_ = cancellable
}
@Test
func capabilityAnnounceCannotPoisonPinWithoutMatchingNoiseAuthentication() async throws {
let root = FileManager.default.temporaryDirectory
@@ -682,13 +893,18 @@ struct PrivateMediaEndToEndTests {
#expect(!identity.hasObservedPrivateMediaCapability(
fingerprint: impostorKey.sha256Fingerprint()
))
#expect(identity.hasObservedPrivateMediaCapability(
fingerprint: bob.noiseStaticPublicKeyData().sha256Fingerprint()
))
alice._test_seedConnectedPeer(
bob.myPeerID,
nickname: "Bob",
capabilities: [],
noisePublicKey: impostorKey
)
#expect(alice.privateMediaSendPolicy(to: bob.myPeerID) == .legacyRequiresConsent)
// The exact live Noise identity remains authoritative over a later
// impostor registry rewrite.
#expect(alice.privateMediaSendPolicy(to: bob.myPeerID) == .encrypted)
}
@Test
@@ -866,7 +1082,7 @@ struct PrivateMediaEndToEndTests {
+ marker
+ Data(repeating: 0x4A, count: 6 * 1024)
try await assertPrivateMediaRoundTrip(
fileName: "private.jpg",
fileName: "img_20260725_120000_11111111-1111-1111-1111-111111111111.jpg",
mimeType: "image/jpeg",
content: content,
marker: marker,
@@ -1137,6 +1353,17 @@ struct PrivateMediaEndToEndTests {
#expect(message.isPrivate)
#expect(message.senderPeerID == alice.myPeerID)
#expect(message.content.hasPrefix(expectedMessagePrefix))
if let stableMessageID = PrivateMediaMessageIdentity.stableID(
for: file,
senderPeerID: alice.myPeerID,
recipientPeerID: bob.myPeerID
) {
#expect(message.id == stableMessageID)
} else {
// Generic/legacy filenames retain random per-arrival IDs so two
// unrelated "photo.jpg" transfers are never deduplicated.
#expect(!message.id.hasPrefix("media-"))
}
let stored = recursivelyStoredFiles(under: bobRoot)
#expect(stored.count == 1)
@@ -1279,6 +1506,8 @@ struct PrivateMediaEndToEndTests {
return enumerator.compactMap { item in
guard let url = item as? URL,
!url.pathComponents.contains(".private-media-receipts"),
url.lastPathComponent != ".private-media-receipts.json",
(try? url.resourceValues(forKeys: [.isRegularFileKey]).isRegularFile) == true else {
return nil
}
@@ -1379,6 +1608,23 @@ private final class PrivateMediaPolicyRecorder: @unchecked Sendable {
}
}
private final class ReceiptCapabilityRecorder: @unchecked Sendable {
private let lock = NSLock()
private var values: [Bool] = []
func record(_ value: Bool) {
lock.lock()
values.append(value)
lock.unlock()
}
func snapshot() -> [Bool] {
lock.lock()
defer { lock.unlock() }
return values
}
}
private final class MessageCaptureDelegate: BitchatDelegate, @unchecked Sendable {
private let lock = NSLock()
private var messages: [BitchatMessage] = []
+42 -1
View File
@@ -14,7 +14,7 @@ import BitFoundation
/// Mock Transport implementation for testing ChatViewModel in isolation.
/// Records all method calls and allows test code to verify interactions.
final class MockTransport: Transport {
final class MockTransport: Transport, PrivateMediaDeletionPersisting {
// MARK: - Protocol Properties
@@ -38,6 +38,11 @@ final class MockTransport: Transport {
private(set) var sentPrivateFiles: [(packet: BitchatFilePacket, peerID: PeerID, transferID: String)] = []
private(set) var sentPrivateFileLegacyAllowances: [Bool] = []
private(set) var cancelledTransfers: [String] = []
private(set) var deletedPrivateMediaMessageIDBatches: [[String]] = []
private(set) var deletedPrivateMediaRelativePaths: [
[String: String]
] = []
private(set) var protectedPrivateMediaRelativePaths: [Set<String>] = []
private(set) var sentVerifyChallenges: [(peerID: PeerID, noiseKeyHex: String, nonceA: Data)] = []
private(set) var sentVerifyResponses: [(peerID: PeerID, noiseKeyHex: String, nonceA: Data)] = []
private(set) var sentCourierMessages: [(content: String, messageID: String, recipientNoiseKey: Data, couriers: [PeerID])] = []
@@ -60,6 +65,11 @@ final class MockTransport: Transport {
var peerFingerprints: [PeerID: String] = [:]
var peerNoiseStates: [PeerID: LazyHandshakeState] = [:]
var privateMediaPolicies: [PeerID: PrivateMediaSendPolicy] = [:]
var persistDeletedPrivateMediaResult = true
var deferDeletedPrivateMediaPersistence = false
private var pendingDeletedPrivateMediaCompletions: [
@MainActor (Bool) -> Void
] = []
private let mockKeychain = MockKeychain()
// MARK: - Transport Protocol Implementation
@@ -217,6 +227,34 @@ final class MockTransport: Transport {
cancelledTransfers.append(transferId)
}
@MainActor
func persistDeletedPrivateMedia(
messageIDs: [String],
payloadRelativePaths: [String: String],
protectedPayloadRelativePaths: Set<String>,
completion: @escaping @MainActor (Bool) -> Void
) {
deletedPrivateMediaMessageIDBatches.append(messageIDs)
deletedPrivateMediaRelativePaths.append(payloadRelativePaths)
protectedPrivateMediaRelativePaths.append(
protectedPayloadRelativePaths
)
if deferDeletedPrivateMediaPersistence {
pendingDeletedPrivateMediaCompletions.append(completion)
} else {
completion(persistDeletedPrivateMediaResult)
}
}
@MainActor
func resolveNextDeletedPrivateMediaPersistence(
_ result: Bool? = nil
) {
guard !pendingDeletedPrivateMediaCompletions.isEmpty else { return }
let completion = pendingDeletedPrivateMediaCompletions.removeFirst()
completion(result ?? persistDeletedPrivateMediaResult)
}
func sendVerifyChallenge(to peerID: PeerID, noiseKeyHex: String, nonceA: Data) {
sentVerifyChallenges.append((peerID, noiseKeyHex, nonceA))
}
@@ -264,6 +302,9 @@ final class MockTransport: Transport {
sentBroadcastFiles.removeAll()
sentPrivateFiles.removeAll()
cancelledTransfers.removeAll()
deletedPrivateMediaMessageIDBatches.removeAll()
deletedPrivateMediaRelativePaths.removeAll()
protectedPrivateMediaRelativePaths.removeAll()
sentVerifyChallenges.removeAll()
sentVerifyResponses.removeAll()
startServicesCallCount = 0
@@ -0,0 +1 @@
{"id":"8f4ac4680de5f972a586267bc7b6b5102ba548a34f618bdee47edd08929ee1e8","pubkey":"6981231b5745520fd982f66f485fa1b42f8f91ad25ab32242d4afb839d696b0a","created_at":1783727308,"kind":1059,"tags":[["p","c6047f9441ed7d6d3045406e95c07cd85c778e4b8cef3ca7abac09b95c709ee5"]],"content":"v2:ETvtGOrkDQ2JIiiMFMdxBlrYNLh07-QKmLds0xsjkgs-v54CP4E4uoKl1L_VvKvaREg-EviPQmksd3DOYHrBVAd5E6xuRn1o9vkoss4MYV7I71mu4RfADRt77ohZaNbc-KhrmgyRTgE-WnEsqErax8LUN6GUukjkKncVA9MAmC1WUB1MI1AR8c4BQ0IOc_ubrEqi640a8AeBZaCZOYutCb3ttqNSPBxR63XErE761KNg1uiq5pgBVo8iKvLO-N2ei7IWvQhmDTapBaEU7LexeIdHDEwMdXDoAtr5Nmd54H1VN12tBvk1wXvHnENgZCOLOR5J2E1eSwrFXXBto-ohrNpBaLKIXBTPGEoepa7x0gC0Vrh1OTf4tCI7JJ5UWnkUAQFGUgPGlTRYC8MdESgEthqmdgKT3Jc0N6sylTmv6zSVx5dXqO4fvSLHC6_7it8F_V_8-uAxUYstJz65oK4F9CwOEVglUuUdfn2mN_3cMBzASLOlKvL8jbkwwo5aMBVrShGiEwDix02hfGMNMKf7OKsLlfNiBAVSPh6MQSvAWhxbDCDnWN-yHKWF4TYxbnH70X2KGl_ZD9pXTphKVIpFuRmP7UNM-01oG53NKcv9puBSxAkLbTZd122uFL_zQebxid1ukOXT8WgSB_WYJYoAlQekeu4ITryB4I60vAAzMAa4AppCUNnf6T8jwWxuC-8G0TPf18MTxpeNkzcSpPVyVE0jtLaOwsJDXs_Pg82Id03Qc-b_fWMm9V07UzGmEnMqQ1gBMLmEXHb_4Ebg5X7TdzuXy87O36CJzau7Dm5ZfoalryF-16Z4MxzQOyXb1G61yFthRsGCT6sYi-68YkhPScMf7u_BobtMuGWiMiWoBqN_IrQ_ecMHVfaeEYvpCz5NYlrE26iAktNmzCBUDNcIr6P_nHdb6I3Q1rOOmWwEF7jsLbvnU_w_82_nXE_yfdGsoly24A2wB0L0SpdnyyEWgvKWjjfS3J3vkIVW4_iM0FT0jNelANc2X_ryb3EPTmGenlqm_qRGh86PYk_R07hKYu3ULNEgLzDTijeZ9-bP23tsMXUDdJS2VR7LP5063ygVuSC0J-GL1FmQ2c-DmJaWQSeqp0NN3sCND3pSIRzwQRwChnMNjVB65mJj","sig":"c53f339b19b9de021765588b0ee4f5f1e0c2423a34d35fe2cbcc6ce89e12e2fedbdf88a0b6a9d719c2c8580002c7574f1ace93aedeab1e255b6231d4ebb6f9b2"}
@@ -0,0 +1,29 @@
diff --git a/app/src/test/kotlin/com/bitchat/android/nostr/NostrProtocolTest.kt b/app/src/test/kotlin/com/bitchat/android/nostr/NostrProtocolTest.kt
index a5bd956..544a29b 100644
--- a/app/src/test/kotlin/com/bitchat/android/nostr/NostrProtocolTest.kt
+++ b/app/src/test/kotlin/com/bitchat/android/nostr/NostrProtocolTest.kt
@@ -10,0 +11,21 @@ class NostrProtocolTest {
+ @Test
+ fun emitCrossPlatformFixtures() {
+ val sender = NostrIdentity.fromPrivateKey(
+ "0000000000000000000000000000000000000000000000000000000000000001"
+ )
+ val recipient = NostrIdentity.fromPrivateKey(
+ "0000000000000000000000000000000000000000000000000000000000000002"
+ )
+ val giftWrap = NostrProtocol.createPrivateMessage(
+ content = "legacy fixture from Android b7f0b33d",
+ recipientPubkey = recipient.publicKeyHex,
+ senderIdentity = sender
+ ).single()
+
+ assertEquals(NostrKind.GIFT_WRAP, giftWrap.kind)
+ assertEquals(listOf(listOf("p", recipient.publicKeyHex)), giftWrap.tags)
+ println("BITCHAT_FIXTURE_EVENT=${gson.toJson(giftWrap)}")
+ println("BITCHAT_FIXTURE_RECIPIENT_PRIVATE_KEY=${recipient.privateKeyHex}")
+ println("BITCHAT_FIXTURE_SENDER_PUBLIC_KEY=${sender.publicKeyHex}")
+ }
+
@Test
fun decryptPrivateMessage_acceptsAuthenticatedSeal() {
val sender = NostrIdentity.generate()
@@ -0,0 +1,10 @@
{
"android_commit": "b7f0b33d3a267c770d3d5a65ee2d8c7e755450db",
"generator": "NostrProtocol.createPrivateMessage",
"generator_patch": "AndroidLegacyPrivateEnvelopeB7f0b33dGenerator.patch",
"generator_patch_sha256": "e7ad29d6a247638cc16fb2ec06937266e6a03e7a115ae00913330a86a88fa56a",
"gradle_test": "ANDROID_HOME=/opt/homebrew/share/android-commandlinetools ANDROID_SDK_ROOT=/opt/homebrew/share/android-commandlinetools JAVA_HOME=/opt/homebrew/opt/openjdk@17/libexec/openjdk.jdk/Contents/Home ./gradlew testDebugUnitTest --tests com.bitchat.android.nostr.NostrProtocolTest.emitCrossPlatformFixtures --info",
"fixture_sha256": "d2df3d0b7ffd84c5cb25e0b3f4a89ad14f72a105bddadab77081f98c661b080e",
"recipient_private_key": "0000000000000000000000000000000000000000000000000000000000000002",
"sender_public_key": "79be667ef9dcbbac55a06295ce870b07029bfcdb2dce28d959f2815b16f81798"
}
@@ -0,0 +1 @@
{"content":"v2:SorfnTaoQ_Rv0XLKA8b3FZojgaFvnWgx66JR6Gj20ztnorQyL-hUYBZwAa5ohFC6ioR9hlJARJm0cgNTvWgSZuNTcfSAvoMdSG6mXK73kzsp99x351zUB_lc1_5ZXm0qqePAEz3Dl5jj5EsfAb8ZzsCd-BZENCsTwqjqC_hCFl7RitlRfIL2Tq_n4TUFEFandDCplNz3W4L7V07V89aGEoUlhzcwPU44BcxfvQjeqVKq0IRf2AetypoOduPrjSqkv674ubWaRcHtw3Asrqgo5XSYbpOlSk1PF_TttrQSPZGViNe5MuiK2P-7d-XqKXuDf_bUgAzW884KXogbct-wtIJZJbVM-utMd-dHrpC1mY81lgpS4_kPuhj0Z6Ro9hU5nCcEk2K4_vNoSM9m9QbcXP34h47qSPsw9ikmz8UoD00-1fXQVB4YJcBVUSVI06IzbZEWulo8SPXvQ4pJjV3nwPgYqRgwnrNWMNfeuKojlF8yA17UNOWvD2U7r1cs84HL8dxztzX9NdN0DGxvjMILvt3D4eWrMbcSrsIkBgyvV-uskEPd4eX3fc9GmX8MPkMgxRErcxbuq6JBUNXikOJXNH_qspOt4UIw5dCIajrHsKycKd8A_3rSgLEQteirOWMGaD2gOJEzpbe4iT72dmPkvRq7k-wDjLbO5dOSuUvpFM-ipkB07ATJz_1uUcRpl8fD_oSlcdAzdPjGKG5Y-tNv3AcUstkqCi52E5x-aO8EDUNBFi_OCbD86nkTUv1jOpAQwejowSiiOnCZ91zUEg5pRQyhBV0Ozib-j0Wf8S8VAz9M8bqQQaKedPCEowDn6csOKbFdBtqSeROf1XWKCkm1mSJGHWW9V44MiMiHebVrRUpbP0PqvxiIeJE0","created_at":1783710443,"id":"46425f8d4e8007af43abb67b3668b59604bd34c86dee1b1c3702559086927cb9","kind":1059,"pubkey":"960e391e314a7fb00bbdd85eccb0a93c17e981b6fed38487cf891f1ed6b66aeb","sig":"975c88c1c4d11f0b623603f8ecc7c181fea7385e8feacdb4a64a6b4f7536b1337ff556aee165ca337c9ec501cfab3e9703026c6df2b12bb8c702378875f00722","tags":[["p","1c108500bf53da288d30530718bac4bf80d661d1fe38854060c5b5c79eb77755"]]}
@@ -0,0 +1 @@
{"recipient_private_key":"8355a5c110cdfef2e644f4ad5d51c39f253b2c2c80ebb6856379fb16531dc1fa"}
+486 -58
View File
@@ -2,18 +2,17 @@
// NostrProtocolTests.swift
// bitchatTests
//
// Tests for NIP-17 gift-wrapped private messages
// Tests for BitChat's proprietary private-envelope transport over Nostr.
//
import Testing
import CryptoKit
import Foundation
import BitFoundation
@testable import bitchat
struct NostrProtocolTests {
@Test func nip17MessageRoundTrip() throws {
@Test func privateEnvelopeRoundTrip() throws {
// Create sender and recipient identities
let sender = try NostrIdentity.generate()
let recipient = try NostrIdentity.generate()
@@ -22,21 +21,19 @@ struct NostrProtocolTests {
print("Recipient pubkey: \(recipient.publicKeyHex)")
// Create a test message
let originalContent = "Hello from NIP-17 test!"
let originalContent = "Hello from BitChat private-envelope test!"
// Create encrypted gift wrap
let giftWrap = try NostrProtocol.createPrivateMessage(
let envelope = try NostrProtocol.createPrivateEnvelope(
content: originalContent,
recipientPubkey: recipient.publicKeyHex,
senderIdentity: sender
)
print("Gift wrap created with ID: \(giftWrap.id)")
print("Gift wrap pubkey: \(giftWrap.pubkey)")
print("Private envelope created with ID: \(envelope.id)")
print("Private envelope pubkey: \(envelope.pubkey)")
// Decrypt the gift wrap
let (decryptedContent, senderPubkey, timestamp) = try NostrProtocol.decryptPrivateMessage(
giftWrap: giftWrap,
let (decryptedContent, senderPubkey, timestamp) = try NostrProtocol.decryptPrivateEnvelope(
envelope: envelope,
recipientIdentity: recipient
)
@@ -52,43 +49,410 @@ struct NostrProtocolTests {
print("✅ Successfully decrypted message: '\(decryptedContent)' from \(senderPubkey) at \(messageDate)")
}
@Test func giftWrapUsesUniqueEphemeralKeys() throws {
@Test func privateEnvelopesUseUniqueEphemeralKeys() throws {
// Create identities
let sender = try NostrIdentity.generate()
let recipient = try NostrIdentity.generate()
// Create two messages
let message1 = try NostrProtocol.createPrivateMessage(
let message1 = try NostrProtocol.createPrivateEnvelope(
content: "Message 1",
recipientPubkey: recipient.publicKeyHex,
senderIdentity: sender
)
let message2 = try NostrProtocol.createPrivateMessage(
let message2 = try NostrProtocol.createPrivateEnvelope(
content: "Message 2",
recipientPubkey: recipient.publicKeyHex,
senderIdentity: sender
)
// Gift wrap pubkeys should be different (unique ephemeral keys)
// Public envelope keys must be one-time use.
#expect(message1.pubkey != message2.pubkey)
print("Message 1 gift wrap pubkey: \(message1.pubkey)")
print("Message 2 gift wrap pubkey: \(message2.pubkey)")
print("Message 1 envelope pubkey: \(message1.pubkey)")
print("Message 2 envelope pubkey: \(message2.pubkey)")
// Both should decrypt successfully
let (content1, _, _) = try NostrProtocol.decryptPrivateMessage(
giftWrap: message1,
let (content1, _, _) = try NostrProtocol.decryptPrivateEnvelope(
envelope: message1,
recipientIdentity: recipient
)
let (content2, _, _) = try NostrProtocol.decryptPrivateMessage(
giftWrap: message2,
let (content2, _, _) = try NostrProtocol.decryptPrivateEnvelope(
envelope: message2,
recipientIdentity: recipient
)
#expect(content1 == "Message 1")
#expect(content2 == "Message 2")
}
@Test func privateEnvelopeUsesBitChatWireFormatAtEveryLayer() throws {
let sender = try NostrIdentity.generate()
let recipient = try NostrIdentity.generate()
let envelope = try NostrProtocol.createPrivateEnvelope(
content: "bitchat-specific",
recipientPubkey: recipient.publicKeyHex,
senderIdentity: sender
)
#expect(envelope.kind == NostrProtocol.EventKind.privateEnvelope.rawValue)
#expect(envelope.kind != NostrProtocol.EventKind.legacyNIP59GiftWrap.rawValue)
#expect(envelope.content.hasPrefix(NostrProtocol.privateEnvelopeContentPrefix))
#expect(!envelope.content.hasPrefix("v2:"))
#expect(envelope.tags == [["p", recipient.publicKeyHex]])
#expect(envelope.created_at <= Int(Date().timeIntervalSince1970))
let layers = try NostrProtocol.decodePrivateEnvelopeLayersForTesting(
envelope: envelope,
recipientIdentity: recipient
)
#expect(layers.seal.kind == NostrProtocol.EventKind.privateSeal.rawValue)
#expect(layers.seal.content.hasPrefix(NostrProtocol.privateEnvelopeContentPrefix))
#expect(layers.seal.tags.isEmpty)
#expect(layers.message.kind == NostrProtocol.EventKind.privateMessage.rawValue)
#expect(layers.message.tags.isEmpty)
#expect(layers.message.sig == nil)
}
@Test func decryptAcceptsReceiveOnlyLegacyBitChatEnvelope() throws {
let sender = try NostrIdentity.generate()
let recipient = try NostrIdentity.generate()
let envelope = try NostrProtocol.createLegacyPrivateEnvelopeForTesting(
content: "legacy in-flight message",
recipientPubkey: recipient.publicKeyHex,
senderIdentity: sender
)
#expect(envelope.kind == NostrProtocol.EventKind.legacyNIP59GiftWrap.rawValue)
#expect(envelope.content.hasPrefix("v2:"))
let result = try NostrProtocol.decryptPrivateEnvelope(
envelope: envelope,
recipientIdentity: recipient
)
#expect(result.content == "legacy in-flight message")
#expect(result.senderPubkey == sender.publicKeyHex)
let layers = try NostrProtocol.decodePrivateEnvelopeLayersForTesting(
envelope: envelope,
recipientIdentity: recipient
)
#expect(layers.seal.kind == NostrProtocol.EventKind.legacyNIP59Seal.rawValue)
#expect(layers.message.kind == NostrProtocol.EventKind.legacyNIP17DirectMessage.rawValue)
#expect(layers.message.tags.isEmpty)
}
@Test func decryptAcceptsCurrentAndroidLegacyInnerRecipientTag() throws {
let sender = try NostrIdentity.generate()
let recipient = try NostrIdentity.generate()
// Current Android's `createPrivateMessage` emits an unsigned kind-14
// inner event with exactly [["p", recipient]], while its outer/seal
// layers use the deployed BitChat legacy v2 crypto. This isolated
// generator reproduces that cross-platform wire shape without making
// the production encoder depend on Android's historical tag choice.
let envelope = try NostrProtocol.createLegacyPrivateEnvelopeForTesting(
content: "legacy message from Android",
recipientPubkey: recipient.publicKeyHex,
senderIdentity: sender,
innerMessageTags: [["p", recipient.publicKeyHex]]
)
let layers = try NostrProtocol.decodePrivateEnvelopeLayersForTesting(
envelope: envelope,
recipientIdentity: recipient
)
#expect(layers.message.tags == [["p", recipient.publicKeyHex]])
let result = try NostrProtocol.decryptPrivateEnvelope(
envelope: envelope,
recipientIdentity: recipient
)
#expect(result.content == "legacy message from Android")
#expect(result.senderPubkey == sender.publicKeyHex)
}
@Test func decryptsFrozenLegacyEnvelopeProducedByAndroidB7f0b33d() throws {
let eventData = try Data(contentsOf: fixtureURL(
name: "AndroidLegacyPrivateEnvelopeB7f0b33d"
))
let metadataData = try Data(contentsOf: fixtureURL(
name: "AndroidLegacyPrivateEnvelopeB7f0b33dMetadata"
))
let envelope = try JSONDecoder().decode(NostrEvent.self, from: eventData)
let metadata = try JSONDecoder().decode(AndroidLegacyEnvelopeFixture.self, from: metadataData)
let recipientKey = try #require(Data(hexString: metadata.recipientPrivateKey))
let recipient = try NostrIdentity(privateKeyData: recipientKey)
#expect(metadata.androidCommit == "b7f0b33d3a267c770d3d5a65ee2d8c7e755450db")
#expect(metadata.generator == "NostrProtocol.createPrivateMessage")
#expect(metadata.generatorPatch == "AndroidLegacyPrivateEnvelopeB7f0b33dGenerator.patch")
#expect(metadata.fixtureSHA256 == eventData.sha256Fingerprint())
#expect(metadata.gradleTest.contains("NostrProtocolTest.emitCrossPlatformFixtures"))
let generatorPatch = try String(contentsOf: fixtureURL(
name: "AndroidLegacyPrivateEnvelopeB7f0b33dGenerator",
extension: "patch"
))
#expect(metadata.generatorPatchSHA256 == Data(generatorPatch.utf8).sha256Fingerprint())
#expect(generatorPatch.contains("fun emitCrossPlatformFixtures()"))
#expect(generatorPatch.contains(metadata.recipientPrivateKey))
#expect(envelope.isValidSignature())
#expect(envelope.kind == NostrProtocol.EventKind.legacyNIP59GiftWrap.rawValue)
#expect(envelope.tags == [["p", recipient.publicKeyHex]])
let layers = try NostrProtocol.decodePrivateEnvelopeLayersForTesting(
envelope: envelope,
recipientIdentity: recipient
)
#expect(layers.message.tags == [["p", recipient.publicKeyHex]])
let result = try NostrProtocol.decryptPrivateEnvelope(
envelope: envelope,
recipientIdentity: recipient
)
#expect(result.content == "legacy fixture from Android b7f0b33d")
#expect(result.senderPubkey == metadata.senderPublicKey)
}
@Test func decryptRejectsAlternateLegacyInnerTags() throws {
let sender = try NostrIdentity.generate()
let recipient = try NostrIdentity.generate()
let otherRecipient = try NostrIdentity.generate()
let invalidTagShapes = [
[["p", otherRecipient.publicKeyHex]],
[["p", recipient.publicKeyHex], ["p", recipient.publicKeyHex]],
[["p", recipient.publicKeyHex, "unexpected"]],
[["x", recipient.publicKeyHex]]
]
for tags in invalidTagShapes {
let envelope = try NostrProtocol.createLegacyPrivateEnvelopeForTesting(
content: "invalid Android-shaped tags",
recipientPubkey: recipient.publicKeyHex,
senderIdentity: sender,
innerMessageTags: tags
)
expectInvalidEvent {
_ = try NostrProtocol.decryptPrivateEnvelope(
envelope: envelope,
recipientIdentity: recipient
)
}
}
}
@Test func newPrivateEnvelopeRejectsInnerRecipientTag() throws {
let sender = try NostrIdentity.generate()
let recipient = try NostrIdentity.generate()
let envelope = try NostrProtocol.createPrivateEnvelopeWithInnerTagsForTesting(
content: "new format stays strict",
recipientPubkey: recipient.publicKeyHex,
senderIdentity: sender,
innerMessageTags: [["p", recipient.publicKeyHex]]
)
expectInvalidEvent {
_ = try NostrProtocol.decryptPrivateEnvelope(
envelope: envelope,
recipientIdentity: recipient
)
}
}
@Test func decryptsFrozenLegacyEnvelopeProducedByRelease733098bb() throws {
let eventData = try Data(contentsOf: fixtureURL(
name: "LegacyPrivateEnvelope733098bb"
))
let keyData = try Data(contentsOf: fixtureURL(
name: "LegacyPrivateEnvelope733098bbRecipientKey"
))
let envelope = try JSONDecoder().decode(NostrEvent.self, from: eventData)
let keyFixture = try JSONDecoder().decode(LegacyRecipientKeyFixture.self, from: keyData)
let recipientKey = try #require(Data(hexString: keyFixture.recipientPrivateKey))
let recipient = try NostrIdentity(privateKeyData: recipientKey)
#expect(envelope.isValidSignature())
let result = try NostrProtocol.decryptPrivateEnvelope(
envelope: envelope,
recipientIdentity: recipient
)
#expect(result.content == "legacy fixture from 733098bb")
#expect(result.senderPubkey == "2e3d79df7047204f02b726c574e256f8de1dd80510f7dcb8b0d12df13acb87e6")
}
@Test func publicationBatchAlwaysDualPublishesForCoordinatedMigration() throws {
let sender = try NostrIdentity.generate()
let recipient = try NostrIdentity.generate()
let migrationBatch = try NostrProtocol.createPrivateEnvelopePublicationBatch(
content: "mixed-version",
recipientPubkey: recipient.publicKeyHex,
senderIdentity: sender
)
#expect(migrationBatch.map(\.kind) == [
NostrProtocol.EventKind.privateEnvelope.rawValue,
NostrProtocol.EventKind.legacyNIP59GiftWrap.rawValue
])
for envelope in migrationBatch {
let result = try NostrProtocol.decryptPrivateEnvelope(
envelope: envelope,
recipientIdentity: recipient
)
#expect(result.content == "mixed-version")
}
// The compatibility copy retains the exact released-iOS legacy shape,
// which current Android also accepts: kinds 1059/13/14, v2 prefix, and
// no inner tags. There is no wall-clock branch that can silently stop
// old-client delivery.
let compatibilityLayers = try NostrProtocol.decodePrivateEnvelopeLayersForTesting(
envelope: migrationBatch[1],
recipientIdentity: recipient
)
#expect(migrationBatch[1].content.hasPrefix("v2:"))
#expect(compatibilityLayers.seal.kind == NostrProtocol.EventKind.legacyNIP59Seal.rawValue)
#expect(compatibilityLayers.message.kind == NostrProtocol.EventKind.legacyNIP17DirectMessage.rawValue)
#expect(compatibilityLayers.message.tags.isEmpty)
}
@Test func mailboxLookbackCoversDeliveryWindowAndroidFuzzAndClockSkew() {
let sentAt = Date(timeIntervalSince1970: 1_800_000_000)
let earliestAndroidTimestamp = sentAt.addingTimeInterval(
-TransportConfig.nostrLegacyAndroidTimestampFuzzSeconds
)
let subscribeAtDeliveryBoundary = sentAt.addingTimeInterval(
TransportConfig.nostrPrivateEnvelopeDeliveryWindowSeconds
)
let filterSince = subscribeAtDeliveryBoundary.addingTimeInterval(
-TransportConfig.nostrDMSubscribeLookbackSeconds
)
#expect(TransportConfig.nostrPrivateEnvelopeDeliveryWindowSeconds == 24 * 60 * 60)
#expect(TransportConfig.nostrLegacyAndroidTimestampFuzzSeconds == 48 * 60 * 60)
#expect(TransportConfig.nostrDMSubscribeClockSkewSeconds == 15 * 60)
let expectedLookback: TimeInterval = 72 * 60 * 60 + 15 * 60
#expect(TransportConfig.nostrDMSubscribeLookbackSeconds == expectedLookback)
#expect(filterSince == earliestAndroidTimestamp.addingTimeInterval(-(15 * 60)))
}
@Test func largePrivateEnvelopeFitsLayerSpecificExpansionLimits() throws {
let sender = try NostrIdentity.generate()
let recipient = try NostrIdentity.generate()
// Large enough that the nested Base64 seal exceeds the inner 32 KiB
// cap, while the inner message JSON itself remains below that cap.
let content = String(repeating: "A", count: 30 * 1024)
let envelope = try NostrProtocol.createPrivateEnvelope(
content: content,
recipientPubkey: recipient.publicKeyHex,
senderIdentity: sender
)
let decrypted = try NostrProtocol.decryptPrivateEnvelope(
envelope: envelope,
recipientIdentity: recipient
)
#expect(decrypted.content == content)
#expect(envelope.content.utf8.count <= NostrProtocol.maximumPrivateEnvelopeCiphertextBytes)
}
@Test func privateEnvelopeRejectsOversizedCiphertextBeforeDecoding() throws {
let recipient = try NostrIdentity.generate()
let wrapper = try NostrIdentity.generate()
let oversizedContent = NostrProtocol.privateEnvelopeContentPrefix
+ String(
repeating: "A",
count: NostrProtocol.maximumPrivateEnvelopeCiphertextBytes
)
let event = NostrEvent(
pubkey: wrapper.publicKeyHex,
createdAt: Date(),
kind: .privateEnvelope,
tags: [["p", recipient.publicKeyHex]],
content: oversizedContent
)
let signed = try event.sign(with: wrapper.schnorrSigningKey())
expectInvalidCiphertext {
_ = try NostrProtocol.decryptPrivateEnvelope(
envelope: signed,
recipientIdentity: recipient
)
}
}
@Test func privateEnvelopeRejectsOversizedPlaintextBeforeEncryption() throws {
let sender = try NostrIdentity.generate()
let recipient = try NostrIdentity.generate()
let oversizedPlaintext = String(
repeating: "x",
count: NostrProtocol.maximumPrivateEnvelopePlaintextBytes + 1
)
expectInvalidCiphertext {
_ = try NostrProtocol.createPrivateEnvelope(
content: oversizedPlaintext,
recipientPubkey: recipient.publicKeyHex,
senderIdentity: sender
)
}
}
@Test func privateEnvelopePublicationBatchRejectsMaximumComposerPayload() throws {
let sender = try NostrIdentity.generate()
let recipient = try NostrIdentity.generate()
let composerMaximum = String(
repeating: "x",
count: InputValidator.Limits.maxMessageLength
)
#expect(
composerMaximum.utf8.count
> NostrProtocol.maximumPrivateEnvelopePlaintextBytes
)
expectInvalidCiphertext {
_ = try NostrProtocol.createPrivateEnvelopePublicationBatch(
content: composerMaximum,
recipientPubkey: recipient.publicKeyHex,
senderIdentity: sender
)
}
}
@Test func privateEnvelopeRejectsOversizedNestedJSONBeforeParsing() {
let oversizedJSON = String(
repeating: "{",
count: NostrProtocol.maximumPrivateEnvelopePlaintextBytes + 1
)
expectInvalidCiphertext {
_ = try NostrProtocol.decodePrivateEnvelopeEventJSONForTesting(oversizedJSON)
}
}
@Test func decryptDoesNotMisinterpretStandardNIP44PayloadAsLegacyBitChat() throws {
let recipient = try NostrIdentity.generate()
let wrapper = try NostrIdentity.generate()
// A valid NIP-44 v2 payload from the official test vectors. Its wire
// format starts with a version byte in standard Base64, not BitChat's
// historical `v2:` prefix.
let standardPayload = "AgAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAABee0G5VSK0/9YypIObAtDKfYEAjD35uVkHyB0F4DwrcNaCXlCWZKaArsGrY6M9wnuTMxWfp1RTN9Xga8no+kF5Vsb"
let event = NostrEvent(
pubkey: wrapper.publicKeyHex,
createdAt: Date(),
kind: .legacyNIP59GiftWrap,
tags: [["p", recipient.publicKeyHex]],
content: standardPayload
)
let signed = try event.sign(with: wrapper.schnorrSigningKey())
expectInvalidCiphertext {
_ = try NostrProtocol.decryptPrivateEnvelope(
envelope: signed,
recipientIdentity: recipient
)
}
}
@Test func decryptionFailsWithWrongRecipient() throws {
let sender = try NostrIdentity.generate()
@@ -96,68 +460,58 @@ struct NostrProtocolTests {
let wrongRecipient = try NostrIdentity.generate()
// Create message for recipient
let giftWrap = try NostrProtocol.createPrivateMessage(
let envelope = try NostrProtocol.createPrivateEnvelope(
content: "Secret message",
recipientPubkey: recipient.publicKeyHex,
senderIdentity: sender
)
// Try to decrypt with wrong recipient
if #available(macOS 14.4, iOS 17.4, *) {
#expect(throws: CryptoKitError.authenticationFailure) {
try NostrProtocol.decryptPrivateMessage(
giftWrap: giftWrap,
recipientIdentity: wrongRecipient
)
}
} else {
#expect(throws: (any Error).self) {
try NostrProtocol.decryptPrivateMessage(
giftWrap: giftWrap,
recipientIdentity: wrongRecipient
)
}
expectInvalidEvent {
_ = try NostrProtocol.decryptPrivateEnvelope(
envelope: envelope,
recipientIdentity: wrongRecipient
)
}
}
@Test func decryptRejectsInvalidSealSignature() throws {
let sender = try NostrIdentity.generate()
let recipient = try NostrIdentity.generate()
let giftWrap = try NostrProtocol.createPrivateMessageWithInvalidSealSignatureForTesting(
let envelope = try NostrProtocol.createPrivateEnvelopeWithInvalidSealSignatureForTesting(
content: "forged signature",
recipientPubkey: recipient.publicKeyHex,
senderIdentity: sender
)
expectInvalidEvent {
_ = try NostrProtocol.decryptPrivateMessage(
giftWrap: giftWrap,
_ = try NostrProtocol.decryptPrivateEnvelope(
envelope: envelope,
recipientIdentity: recipient
)
}
}
@Test func decryptRejectsSealRumorPubkeyMismatch() throws {
@Test func decryptRejectsSealMessagePubkeyMismatch() throws {
let claimedSender = try NostrIdentity.generate()
let sealSigner = try NostrIdentity.generate()
let recipient = try NostrIdentity.generate()
let giftWrap = try NostrProtocol.createPrivateMessageWithMismatchedSealRumorPubkeyForTesting(
let envelope = try NostrProtocol.createPrivateEnvelopeWithMismatchedSealMessagePubkeyForTesting(
content: "spoofed sender",
recipientPubkey: recipient.publicKeyHex,
rumorIdentity: claimedSender,
messageIdentity: claimedSender,
sealSignerIdentity: sealSigner
)
expectInvalidEvent {
_ = try NostrProtocol.decryptPrivateMessage(
giftWrap: giftWrap,
_ = try NostrProtocol.decryptPrivateEnvelope(
envelope: envelope,
recipientIdentity: recipient
)
}
}
@Test
func testAckRoundTripNIP44V2_Delivered() throws {
func deliveredAckRoundTripsInsidePrivateEnvelope() throws {
// Identities
let sender = try NostrIdentity.generate()
let recipient = try NostrIdentity.generate()
@@ -171,19 +525,17 @@ struct NostrProtocolTests {
"Failed to embed delivered ack"
)
// Create NIP-17 gift wrap to recipient (uses NIP-44 v2 internally)
let giftWrap = try NostrProtocol.createPrivateMessage(
let envelope = try NostrProtocol.createPrivateEnvelope(
content: embedded,
recipientPubkey: recipient.publicKeyHex,
senderIdentity: sender
)
// Ensure v2 format was used for ciphertext
#expect(giftWrap.content.hasPrefix("v2:"))
#expect(envelope.content.hasPrefix(NostrProtocol.privateEnvelopeContentPrefix))
// Decrypt as recipient
let (content, senderPubkey, _) = try NostrProtocol.decryptPrivateMessage(
giftWrap: giftWrap,
let (content, senderPubkey, _) = try NostrProtocol.decryptPrivateEnvelope(
envelope: envelope,
recipientIdentity: recipient
)
@@ -208,7 +560,7 @@ struct NostrProtocolTests {
}
}
@Test func ackRoundTripNIP44V2_ReadReceipt() throws {
@Test func readReceiptRoundTripsInsidePrivateEnvelope() throws {
// Identities
let sender = try NostrIdentity.generate()
let recipient = try NostrIdentity.generate()
@@ -220,16 +572,16 @@ struct NostrProtocolTests {
"Failed to embed read ack"
)
let giftWrap = try NostrProtocol.createPrivateMessage(
let envelope = try NostrProtocol.createPrivateEnvelope(
content: embedded,
recipientPubkey: recipient.publicKeyHex,
senderIdentity: sender
)
#expect(giftWrap.content.hasPrefix("v2:"))
#expect(envelope.content.hasPrefix(NostrProtocol.privateEnvelopeContentPrefix))
let (content, senderPubkey, _) = try NostrProtocol.decryptPrivateMessage(
giftWrap: giftWrap,
let (content, senderPubkey, _) = try NostrProtocol.decryptPrivateEnvelope(
envelope: envelope,
recipientIdentity: recipient
)
#expect(senderPubkey == sender.publicKeyHex)
@@ -290,7 +642,6 @@ struct NostrProtocolTests {
#expect(object["limit"] as? Int == 42)
}
@Test func inboundNostrEventRejectsTooManyTags() throws {
var eventDict = Self.validInboundEventDict()
eventDict["tags"] = Array(
@@ -336,6 +687,33 @@ struct NostrProtocolTests {
#expect(event.tags.count == 2)
}
@Test func privateEnvelopeFiltersGiveEachMigrationKindAnIndependentRecoveryBudget() throws {
let since = Date(timeIntervalSince1970: 1_234_567)
let filters = NostrFilter.privateEnvelopeFiltersFor(
pubkey: "recipient",
since: since
)
#expect(filters.count == 2)
let objects = try filters.map { filter in
let data = try JSONEncoder().encode(filter)
return try #require(
try JSONSerialization.jsonObject(with: data) as? [String: Any]
)
}
#expect(objects.compactMap { $0["kinds"] as? [Int] } == [
[NostrProtocol.EventKind.privateEnvelope.rawValue],
[NostrProtocol.EventKind.legacyNIP59GiftWrap.rawValue]
])
for object in objects {
#expect(object["#p"] as? [String] == ["recipient"])
#expect(object["since"] as? Int == 1_234_567)
#expect(object["limit"] as? Int ==
TransportConfig.nostrPrivateEnvelopeFetchLimitPerKind
)
}
}
// MARK: - Helpers
private static func validInboundEventDict() -> [String: Any] {
[
@@ -349,6 +727,45 @@ struct NostrProtocolTests {
]
}
private struct LegacyRecipientKeyFixture: Decodable {
let recipientPrivateKey: String
enum CodingKeys: String, CodingKey {
case recipientPrivateKey = "recipient_private_key"
}
}
private struct AndroidLegacyEnvelopeFixture: Decodable {
let androidCommit: String
let generator: String
let generatorPatch: String
let generatorPatchSHA256: String
let gradleTest: String
let fixtureSHA256: String
let recipientPrivateKey: String
let senderPublicKey: String
enum CodingKeys: String, CodingKey {
case androidCommit = "android_commit"
case generator
case generatorPatch = "generator_patch"
case generatorPatchSHA256 = "generator_patch_sha256"
case gradleTest = "gradle_test"
case fixtureSHA256 = "fixture_sha256"
case recipientPrivateKey = "recipient_private_key"
case senderPublicKey = "sender_public_key"
}
}
private func fixtureURL(name: String, extension fileExtension: String = "json") throws -> URL {
#if SWIFT_PACKAGE
let bundle = Bundle.module
#else
let bundle = Bundle(for: MockKeychain.self)
#endif
return try #require(bundle.url(forResource: name, withExtension: fileExtension))
}
private static func base64URLDecode(_ s: String) -> Data? {
var str = s.replacingOccurrences(of: "-", with: "+").replacingOccurrences(of: "_", with: "/")
let rem = str.count % 4
@@ -366,4 +783,15 @@ struct NostrProtocolTests {
Issue.record("Expected NostrError.invalidEvent, got \(error)")
}
}
private func expectInvalidCiphertext(_ operation: () throws -> Void) {
do {
try operation()
Issue.record("Expected NostrError.invalidCiphertext")
} catch NostrError.invalidCiphertext {
return
} catch {
Issue.record("Expected NostrError.invalidCiphertext, got \(error)")
}
}
}
@@ -1,3 +1,4 @@
import BitFoundation
import XCTest
@testable import bitchat
@@ -73,4 +74,85 @@ final class BitchatFilePacketTests: XCTestCase {
XCTAssertEqual(decoded.fileSize, UInt64(content.count))
XCTAssertEqual(decoded.content, content)
}
func testPrivateMediaMessageIdentityConvergesAcrossPeerIDAliases() throws {
let senderKey = Data(repeating: 0x11, count: 32)
let recipientKey = Data(repeating: 0x22, count: 32)
let senderStable = PeerID(hexData: senderKey)
let recipientStable = PeerID(hexData: recipientKey)
let fileName = "img_20260725_105708_1CC2760D-76AA-40C3-8013-C7FAA6C2EF99.jpg"
let senderID = try XCTUnwrap(PrivateMediaMessageIdentity.stableID(
senderPeerID: senderStable.toShort(),
recipientPeerID: PeerID(str: "mesh:\(recipientStable.toShort().bare)"),
fileName: fileName
))
let receiverID = try XCTUnwrap(PrivateMediaMessageIdentity.stableID(
senderPeerID: senderStable,
recipientPeerID: recipientStable.toShort(),
fileName: fileName
))
XCTAssertEqual(senderID, receiverID)
XCTAssertTrue(senderID.hasPrefix("media-"))
XCTAssertEqual(senderID.count, 38)
XCTAssertTrue(PrivateMediaMessageIdentity.isStableID(senderID))
XCTAssertFalse(PrivateMediaMessageIdentity.isStableID("media-\(String(repeating: "A", count: 32))"))
XCTAssertFalse(PrivateMediaMessageIdentity.isStableID("media-\(String(repeating: "a", count: 31))"))
XCTAssertFalse(PrivateMediaMessageIdentity.isStableID(UUID().uuidString))
}
func testPrivateMediaMessageIdentitySeparatesDirectionAndFilename() throws {
let alice = PeerID(str: "0011223344556677")
let bob = PeerID(str: "8899aabbccddeeff")
let firstName = "voice_20260725_105708_11111111-1111-1111-1111-111111111111.m4a"
let secondName = "voice_20260725_105709_22222222-2222-2222-2222-222222222222.m4a"
let first = try XCTUnwrap(PrivateMediaMessageIdentity.stableID(
senderPeerID: alice,
recipientPeerID: bob,
fileName: firstName
))
XCTAssertNotEqual(first, PrivateMediaMessageIdentity.stableID(
senderPeerID: bob,
recipientPeerID: alice,
fileName: firstName
))
XCTAssertNotEqual(first, PrivateMediaMessageIdentity.stableID(
senderPeerID: alice,
recipientPeerID: bob,
fileName: secondName
))
XCTAssertNil(PrivateMediaMessageIdentity.stableID(
senderPeerID: alice,
recipientPeerID: bob,
fileName: nil
))
XCTAssertNil(PrivateMediaMessageIdentity.stableID(
senderPeerID: alice,
recipientPeerID: bob,
fileName: "photo.jpg"
))
XCTAssertNil(PrivateMediaMessageIdentity.stableID(
senderPeerID: alice,
recipientPeerID: bob,
fileName: "img_11111111-1111-1111-1111-111111111111.pdf"
))
XCTAssertNotNil(PrivateMediaMessageIdentity.stableID(
senderPeerID: alice,
recipientPeerID: bob,
fileName: "voice_0011223344556677.m4a"
))
}
func testPrivateMediaMessageIdentityMatchesVersionOneGoldenVector() {
XCTAssertEqual(
PrivateMediaMessageIdentity.stableID(
senderPeerID: PeerID(str: "0011223344556677"),
recipientPeerID: PeerID(str: "8899aabbccddeeff"),
fileName: "img_20260725_105708_1CC2760D-76AA-40C3-8013-C7FAA6C2EF99.jpg"
),
"media-910bd42c65060ab76bb6406f220c4516"
)
}
}
@@ -13,17 +13,109 @@ struct BLEFileTransferHandlerTests {
var signatureVerifyCount = 0
var signedNameQueries: [PeerID] = []
var blockedPeers: Set<PeerID> = []
var trackedPackets: [BitchatPacket] = []
var quotaReservations: [Int] = []
var saveCalls: [(data: Data, preferredName: String?, subdirectory: String, fallbackExtension: String?, defaultPrefix: String)] = []
var receiptStates: [String: BLEPrivateMediaReceiptState] = [:]
var receiptCommits: [(messageID: String, storedURL: URL)] = []
var receiptCommitSucceeds = true
var removedIncomingFiles: [URL] = []
var finishedIncomingFileDeliveries: [URL] = []
var lastSeenUpdates: [PeerID] = []
var deliveryAcks: [(messageID: String, peerID: PeerID)] = []
var deliveredMessages: [BitchatMessage] = []
var shouldAcceptDelivery = true
var deliveryOutcome = TransportEventDeliveryOutcome.accepted
var saveOverride: ((
_ data: Data,
_ preferredName: String?,
_ subdirectory: String,
_ fallbackExtension: String?,
_ defaultPrefix: String
) -> URL?)?
var receiptStateOverride: ((String) -> BLEPrivateMediaReceiptState)?
var receiptCommitOverride: ((String, URL) -> Bool)?
var removeIncomingFileOverride: ((URL) -> Void)?
var finishIncomingFileDeliveryOverride: ((URL) -> Void)?
}
private let localPeerID = PeerID(str: "0102030405060708")
private let remotePeerID = PeerID(str: "1122334455667788")
private let sampleSigningKey = Data(repeating: 0xAB, count: 32)
@Test @MainActor
func deliveryGateFinalizesInitialRejection() {
var completions = 0
var finalizations = 0
TransportEventDeliveryGate.attempt(
shouldDeliver: { false },
deliver: {
Issue.record("delivery sink must not run")
return .accepted
},
completion: { completions += 1 },
finalization: { _ in finalizations += 1 }
)
#expect(completions == 0)
#expect(finalizations == 1)
}
@Test @MainActor
func deliveryGateFinalizesMissingOrRejectingSink() {
var completions = 0
var finalizations = 0
TransportEventDeliveryGate.attempt(
shouldDeliver: { true },
deliver: { .rejected },
completion: { completions += 1 },
finalization: { _ in finalizations += 1 }
)
#expect(completions == 0)
#expect(finalizations == 1)
}
@Test @MainActor
func deliveryGateFinalizesPostInsertionRejection() {
var deliveryChecks = 0
var completions = 0
var finalizations = 0
TransportEventDeliveryGate.attempt(
shouldDeliver: {
deliveryChecks += 1
return deliveryChecks == 1
},
deliver: { .accepted },
completion: { completions += 1 },
finalization: { _ in finalizations += 1 }
)
#expect(deliveryChecks == 2)
#expect(completions == 0)
#expect(finalizations == 1)
}
@Test @MainActor
func deliveryGatePreservesInvokedUnconfirmedOutcomeWithoutAck() {
var completions = 0
var outcomes: [TransportEventDeliveryOutcome] = []
TransportEventDeliveryGate.attempt(
shouldDeliver: { true },
deliver: { .invokedUnconfirmed },
completion: { completions += 1 },
finalization: { outcomes.append($0) }
)
#expect(completions == 0)
#expect(outcomes == [.invokedUnconfirmed])
}
private func makeHandler(recorder: Recorder) -> BLEFileTransferHandler {
let environment = BLEFileTransferHandlerEnvironment(
localPeerID: { [localPeerID] in localPeerID },
@@ -46,13 +138,56 @@ struct BLEFileTransferHandlerTests {
},
saveIncomingFile: { data, preferredName, subdirectory, fallbackExtension, defaultPrefix in
recorder.saveCalls.append((data, preferredName, subdirectory, fallbackExtension, defaultPrefix))
if let saveOverride = recorder.saveOverride {
return saveOverride(data, preferredName, subdirectory, fallbackExtension, defaultPrefix)
}
return recorder.saveResult
},
privateMediaReceiptState: { messageID in
if let receiptStateOverride = recorder.receiptStateOverride {
return receiptStateOverride(messageID)
}
return recorder.receiptStates[messageID] ?? .absent
},
commitPrivateMediaFile: { messageID, storedURL in
recorder.receiptCommits.append((messageID, storedURL))
if let receiptCommitOverride = recorder.receiptCommitOverride {
return receiptCommitOverride(messageID, storedURL)
}
guard recorder.receiptCommitSucceeds else { return false }
recorder.receiptStates[messageID] = .accepted(storedURL)
return true
},
removeIncomingFile: { storedURL in
recorder.removedIncomingFiles.append(storedURL)
recorder.removeIncomingFileOverride?(storedURL)
},
finishIncomingFileDelivery: { storedURL in
recorder.finishedIncomingFileDeliveries.append(storedURL)
recorder.finishIncomingFileDeliveryOverride?(storedURL)
},
isPrivateMediaSenderBlocked: { peerID in
recorder.blockedPeers.contains(peerID)
},
updatePeerLastSeen: { peerID in
recorder.lastSeenUpdates.append(peerID)
},
deliverMessage: { message in
acknowledgePrivateMedia: { messageID, peerID in
recorder.deliveryAcks.append((messageID, peerID))
},
deliverMessage: { message, shouldDeliver, completion, finalization in
var outcome = TransportEventDeliveryOutcome.rejected
defer { finalization(outcome) }
guard recorder.shouldAcceptDelivery else { return }
guard shouldDeliver() else { return }
recorder.deliveredMessages.append(message)
guard shouldDeliver() else { return }
if recorder.deliveryOutcome == .invokedUnconfirmed {
outcome = .invokedUnconfirmed
return
}
outcome = .accepted
completion()
}
)
return BLEFileTransferHandler(environment: environment)
@@ -284,6 +419,7 @@ struct BLEFileTransferHandlerTests {
#expect(recorder.lastSeenUpdates == [remotePeerID])
#expect(recorder.deliveredMessages.count == 1)
#expect(recorder.deliveredMessages.first?.isPrivate == true)
#expect(recorder.deliveredMessages.first?.id.hasPrefix("media-") == false)
// Must be explicit: BitchatMessage defaults private messages to
// .sending, which the media views render as an in-flight send
// (empty reveal mask, disabled reveal tap).
@@ -291,13 +427,14 @@ struct BLEFileTransferHandlerTests {
}
@Test
func decryptedPrivateFileUsesValidationQuotaAndPrivateDeliveryWithoutRawSignature() throws {
func bit8EncryptedPrivateFileKeepsStableIDAndAckWithoutBit9Proof() throws {
let recorder = Recorder()
recorder.peers = [remotePeerID: makePeerInfo(remotePeerID, nickname: "Alice", isVerified: true)]
let handler = makeHandler(recorder: recorder)
let content = Data([0xFF, 0xD8, 0xFF]) + Data(repeating: 0x41, count: 128)
let fileName = "img_20260725_105708_1CC2760D-76AA-40C3-8013-C7FAA6C2EF99.jpg"
let file = BitchatFilePacket(
fileName: "secret.jpg",
fileName: fileName,
fileSize: UInt64(content.count),
mimeType: "image/jpeg",
content: content
@@ -316,6 +453,480 @@ struct BLEFileTransferHandlerTests {
#expect(recorder.deliveredMessages.count == 1)
#expect(recorder.deliveredMessages.first?.isPrivate == true)
#expect(recorder.deliveredMessages.first?.timestamp == timestamp)
#expect(recorder.deliveredMessages.first?.id == PrivateMediaMessageIdentity.stableID(
senderPeerID: remotePeerID,
recipientPeerID: localPeerID,
fileName: fileName
))
#expect(recorder.receiptCommits.count == 1)
#expect(recorder.deliveryAcks.count == 1)
#expect(recorder.deliveryAcks.first?.messageID == recorder.deliveredMessages.first?.id)
}
@Test
func rejectedStableDeliveryReleasesPendingPayloadOwnership() throws {
let root = FileManager.default.temporaryDirectory.appendingPathComponent(
"private-media-handler-rejected-\(UUID().uuidString)",
isDirectory: true
)
defer { try? FileManager.default.removeItem(at: root) }
let store = BLEIncomingFileStore(baseDirectory: root)
let recorder = Recorder()
recorder.peers = [remotePeerID: makePeerInfo(
remotePeerID,
nickname: "Alice",
isVerified: true
)]
recorder.shouldAcceptDelivery = false
recorder.saveOverride = {
store.save(
data: $0,
preferredName: $1,
subdirectory: $2,
fallbackExtension: $3,
defaultPrefix: $4
)
}
recorder.receiptStateOverride = {
store.privateMediaReceiptState(messageID: $0)
}
recorder.receiptCommitOverride = {
store.commitPrivateMediaFile(messageID: $0, storedURL: $1)
}
recorder.removeIncomingFileOverride = {
store.removeIncomingFile(at: $0)
}
recorder.finishIncomingFileDeliveryOverride = {
store.finishIncomingFileDelivery(at: $0)
}
let content = Data([0xFF, 0xD8, 0xFF, 0xD9])
let fileName =
"img_20260725_105708_1CC2760D-76AA-40C3-8013-C7FAA6C2EF99.jpg"
let file = BitchatFilePacket(
fileName: fileName,
fileSize: UInt64(content.count),
mimeType: "image/jpeg",
content: content
)
let payload = try #require(file.encode())
let stableID = try #require(PrivateMediaMessageIdentity.stableID(
senderPeerID: remotePeerID,
recipientPeerID: localPeerID,
fileName: fileName
))
#expect(makeHandler(recorder: recorder).handlePrivatePayload(
payload,
from: remotePeerID,
timestamp: Date(timeIntervalSince1970: 1_234)
))
#expect(recorder.deliveredMessages.isEmpty)
#expect(recorder.deliveryAcks.isEmpty)
#expect(recorder.finishedIncomingFileDeliveries.count == 1)
#expect(store.reservePrivateMediaDeletion(
messageIDs: [stableID],
payloadRelativePaths: [:]
) != nil)
}
@Test
func rawLegacyPrivateFileWithRetryShapedNameNeverUsesReceiptLedger() throws {
let recorder = Recorder()
recorder.peers = [remotePeerID: makePeerInfo(
remotePeerID,
nickname: "Alice",
isVerified: true,
signingPublicKey: sampleSigningKey
)]
recorder.signatureVerifies = true
let handler = makeHandler(recorder: recorder)
let content = Data([0xFF, 0xD8, 0xFF, 0xD9])
let packet = try makeFileTransferPacket(
sender: remotePeerID,
mimeType: "image/jpeg",
content: content,
recipientID: Data(hexString: localPeerID.id),
fileName: "img_20260725_105708_1CC2760D-76AA-40C3-8013-C7FAA6C2EF99.jpg"
)
#expect(handler.handle(packet, from: remotePeerID))
#expect(recorder.receiptCommits.isEmpty)
#expect(recorder.deliveryAcks.isEmpty)
#expect(recorder.deliveredMessages.count == 1)
#expect(recorder.deliveredMessages.first?.id.hasPrefix("media-") == false)
}
@Test
func rejectedRawDeliveryRemovesUIUnownedPayload() throws {
let recorder = Recorder()
recorder.peers = [remotePeerID: makePeerInfo(
remotePeerID,
nickname: "Alice",
isVerified: true,
signingPublicKey: sampleSigningKey
)]
recorder.signatureVerifies = true
recorder.shouldAcceptDelivery = false
let handler = makeHandler(recorder: recorder)
let packet = try makeFileTransferPacket(
sender: remotePeerID,
mimeType: "image/jpeg",
content: Data([0xFF, 0xD8, 0xFF, 0xD9]),
recipientID: Data(hexString: localPeerID.id),
fileName: "raw-rejected.jpg"
)
#expect(handler.handle(packet, from: remotePeerID))
#expect(recorder.deliveredMessages.isEmpty)
#expect(recorder.removedIncomingFiles.count == 1)
#expect(recorder.removedIncomingFiles.first == recorder.saveResult)
#expect(recorder.finishedIncomingFileDeliveries.isEmpty)
}
@Test
func plainDelegateRawDeliveryPreservesPayloadWithoutSynchronousAck() throws {
let recorder = Recorder()
recorder.peers = [remotePeerID: makePeerInfo(
remotePeerID,
nickname: "Alice",
isVerified: true,
signingPublicKey: sampleSigningKey
)]
recorder.signatureVerifies = true
recorder.deliveryOutcome = .invokedUnconfirmed
let handler = makeHandler(recorder: recorder)
let packet = try makeFileTransferPacket(
sender: remotePeerID,
mimeType: "image/jpeg",
content: Data([0xFF, 0xD8, 0xFF, 0xD9]),
recipientID: Data(hexString: localPeerID.id),
fileName: "plain-delegate.jpg"
)
#expect(handler.handle(packet, from: remotePeerID))
#expect(recorder.deliveredMessages.count == 1)
#expect(recorder.deliveryAcks.isEmpty)
#expect(recorder.removedIncomingFiles.isEmpty)
#expect(recorder.finishedIncomingFileDeliveries.count == 1)
#expect(
recorder.finishedIncomingFileDeliveries.first
== recorder.saveResult
)
}
@Test
func repeatedLegacyPrivateImageNamesKeepDistinctRandomMessageIDs() throws {
let recorder = Recorder()
recorder.peers = [remotePeerID: makePeerInfo(remotePeerID, nickname: "Alice", isVerified: true)]
let handler = makeHandler(recorder: recorder)
let content = Data([0xFF, 0xD8, 0xFF]) + Data(repeating: 0x41, count: 128)
let file = BitchatFilePacket(
fileName: "photo.jpg",
fileSize: UInt64(content.count),
mimeType: "image/jpeg",
content: content
)
let payload = try #require(file.encode())
#expect(handler.handlePrivatePayload(
payload,
from: remotePeerID,
timestamp: Date(timeIntervalSince1970: 1_234)
))
#expect(handler.handlePrivatePayload(
payload,
from: remotePeerID,
timestamp: Date(timeIntervalSince1970: 1_235)
))
#expect(recorder.deliveredMessages.count == 2)
#expect(recorder.deliveredMessages[0].id != recorder.deliveredMessages[1].id)
#expect(recorder.deliveredMessages.allSatisfy { !$0.id.hasPrefix("media-") })
}
@Test
func lostCapabilityProofThenStableRetryReusesDurableIDWithoutSecondDiskWrite() throws {
let recorder = Recorder()
recorder.peers = [remotePeerID: makePeerInfo(remotePeerID, nickname: "Alice", isVerified: true)]
let handler = makeHandler(recorder: recorder)
let content = Data([0xFF, 0xD8, 0xFF]) + Data(repeating: 0x41, count: 128)
let fileName = "img_20260725_105708_1CC2760D-76AA-40C3-8013-C7FAA6C2EF99.jpg"
let file = BitchatFilePacket(
fileName: fileName,
fileSize: UInt64(content.count),
mimeType: "image/jpeg",
content: content
)
let payload = try #require(file.encode())
let expectedID = try #require(PrivateMediaMessageIdentity.stableID(
senderPeerID: remotePeerID,
recipientPeerID: localPeerID,
fileName: fileName
))
// First encrypted arrival may precede the sender's authenticated bit-9
// proof. It still uses the bit-8 stable ID/ACK contract.
#expect(handler.handlePrivatePayload(
payload,
from: remotePeerID,
timestamp: Date(timeIntervalSince1970: 1_234)
))
// A later automatic retry after proof must resolve the same durable ID
// rather than create a legacy random-ID bubble.
#expect(handler.handlePrivatePayload(
payload,
from: remotePeerID,
timestamp: Date(timeIntervalSince1970: 1_235)
))
#expect(recorder.quotaReservations == [content.count])
#expect(recorder.saveCalls.count == 1)
// The handler re-offers a durable duplicate so a relaunched UI can
// restore its bubble; the synchronous conversation sink deduplicates.
#expect(recorder.deliveredMessages.count == 2)
#expect(recorder.lastSeenUpdates == [remotePeerID, remotePeerID])
#expect(recorder.deliveryAcks.count == 2)
#expect(recorder.deliveryAcks.allSatisfy {
$0.messageID == expectedID && $0.peerID == remotePeerID
})
}
@Test
func acceptedPrivateMediaAfterRelaunchRedeliversDurableURLBeforeAck() throws {
let root = FileManager.default.temporaryDirectory.appendingPathComponent(
"private-media-handler-relaunch-\(UUID().uuidString)",
isDirectory: true
)
defer { try? FileManager.default.removeItem(at: root) }
let store = BLEIncomingFileStore(baseDirectory: root)
let content = Data([0xFF, 0xD8, 0xFF, 0xD9])
let file = BitchatFilePacket(
fileName: "img_20260725_105708_1CC2760D-76AA-40C3-8013-C7FAA6C2EF99.jpg",
fileSize: UInt64(content.count),
mimeType: "image/jpeg",
content: content
)
let payload = try #require(file.encode())
func configure(_ recorder: Recorder) {
recorder.peers = [remotePeerID: makePeerInfo(
remotePeerID,
nickname: "Alice",
isVerified: true
)]
recorder.saveOverride = { data, preferredName, subdirectory, fallbackExtension, defaultPrefix in
store.save(
data: data,
preferredName: preferredName,
subdirectory: subdirectory,
fallbackExtension: fallbackExtension,
defaultPrefix: defaultPrefix
)
}
recorder.receiptStateOverride = {
store.privateMediaReceiptState(messageID: $0)
}
recorder.receiptCommitOverride = {
store.commitPrivateMediaFile(messageID: $0, storedURL: $1)
}
recorder.removeIncomingFileOverride = {
store.removeIncomingFile(at: $0)
}
recorder.finishIncomingFileDeliveryOverride = {
store.finishIncomingFileDelivery(at: $0)
}
}
let first = Recorder()
configure(first)
#expect(makeHandler(recorder: first).handlePrivatePayload(
payload,
from: remotePeerID,
timestamp: Date(timeIntervalSince1970: 1_234)
))
let originalMessage = try #require(first.deliveredMessages.first)
#expect(first.deliveryAcks.count == 1)
// A fresh handler models process relaunch: its in-memory reservation
// cache is empty, so only the durable receipt can suppress disk work.
let relaunched = Recorder()
configure(relaunched)
#expect(makeHandler(recorder: relaunched).handlePrivatePayload(
payload,
from: remotePeerID,
timestamp: Date(timeIntervalSince1970: 1_235)
))
#expect(relaunched.quotaReservations.isEmpty)
#expect(relaunched.saveCalls.isEmpty)
#expect(relaunched.receiptCommits.isEmpty)
#expect(relaunched.deliveredMessages.count == 1)
#expect(relaunched.deliveredMessages.first?.id == originalMessage.id)
#expect(relaunched.deliveredMessages.first?.content == originalMessage.content)
#expect(relaunched.deliveryAcks.count == 1)
#expect(relaunched.deliveryAcks.first?.messageID == originalMessage.id)
}
@Test
func inFlightStableDuplicateIsNotAcknowledgedAndFailedSaveRemainsRetryable() throws {
let recorder = Recorder()
recorder.peers = [remotePeerID: makePeerInfo(remotePeerID, nickname: "Alice", isVerified: true)]
let content = Data([0xFF, 0xD8, 0xFF]) + Data(repeating: 0x41, count: 128)
let file = BitchatFilePacket(
fileName: "img_20260725_105708_1CC2760D-76AA-40C3-8013-C7FAA6C2EF99.jpg",
fileSize: UInt64(content.count),
mimeType: "image/jpeg",
content: content
)
let payload = try #require(file.encode())
var handler: BLEFileTransferHandler!
var nestedResult: Bool?
var failFirstSave = true
recorder.saveOverride = { _, _, _, _, _ in
if failFirstSave {
failFirstSave = false
nestedResult = handler.handlePrivatePayload(
payload,
from: self.remotePeerID,
timestamp: Date(timeIntervalSince1970: 1_235)
)
return nil
}
return recorder.saveResult
}
handler = makeHandler(recorder: recorder)
// The nested arrival sees the first reservation as pending. It is
// coalesced without an ACK; then the first durable save fails.
#expect(!handler.handlePrivatePayload(
payload,
from: remotePeerID,
timestamp: Date(timeIntervalSince1970: 1_234)
))
#expect(nestedResult == true)
#expect(recorder.saveCalls.count == 1)
#expect(recorder.deliveryAcks.isEmpty)
#expect(recorder.deliveredMessages.isEmpty)
// Failure released the reservation, so the sender's later retry can
// persist and deliver normally.
#expect(handler.handlePrivatePayload(
payload,
from: remotePeerID,
timestamp: Date(timeIntervalSince1970: 1_236)
))
#expect(recorder.saveCalls.count == 2)
#expect(recorder.deliveryAcks.count == 1)
#expect(recorder.deliveredMessages.count == 1)
}
@Test
func unavailableDurableReceiptStateWithholdsDiskDeliveryAndAck() throws {
let recorder = Recorder()
recorder.peers = [remotePeerID: makePeerInfo(
remotePeerID,
nickname: "Alice",
isVerified: true
)]
let fileName =
"img_20260725_105708_1CC2760D-76AA-40C3-8013-C7FAA6C2EF99.jpg"
let messageID = try #require(PrivateMediaMessageIdentity.stableID(
senderPeerID: remotePeerID,
recipientPeerID: localPeerID,
fileName: fileName
))
recorder.receiptStates[messageID] = .unavailable
let handler = makeHandler(recorder: recorder)
let content = Data([0xFF, 0xD8, 0xFF, 0xD9])
let payload = try #require(BitchatFilePacket(
fileName: fileName,
fileSize: UInt64(content.count),
mimeType: "image/jpeg",
content: content
).encode())
#expect(handler.handlePrivatePayload(
payload,
from: remotePeerID,
timestamp: Date(timeIntervalSince1970: 1_234)
))
#expect(recorder.quotaReservations.isEmpty)
#expect(recorder.saveCalls.isEmpty)
#expect(recorder.receiptCommits.isEmpty)
#expect(recorder.deliveredMessages.isEmpty)
#expect(recorder.deliveryAcks.isEmpty)
}
@Test
func durableReceiptCommitFailureRollsBackAndWithholdsDeliveryAck() throws {
let recorder = Recorder()
recorder.peers = [remotePeerID: makePeerInfo(
remotePeerID,
nickname: "Alice",
isVerified: true
)]
recorder.receiptCommitSucceeds = false
let handler = makeHandler(recorder: recorder)
let content = Data([0xFF, 0xD8, 0xFF, 0xD9])
let payload = try #require(BitchatFilePacket(
fileName: "img_20260725_105708_1CC2760D-76AA-40C3-8013-C7FAA6C2EF99.jpg",
fileSize: UInt64(content.count),
mimeType: "image/jpeg",
content: content
).encode())
#expect(!handler.handlePrivatePayload(
payload,
from: remotePeerID,
timestamp: Date(timeIntervalSince1970: 1_234)
))
#expect(recorder.saveCalls.count == 1)
#expect(recorder.receiptCommits.count == 1)
#expect(recorder.removedIncomingFiles.count == 1)
#expect(recorder.removedIncomingFiles.first == recorder.saveResult)
#expect(recorder.deliveredMessages.isEmpty)
#expect(recorder.deliveryAcks.isEmpty)
}
@Test
func blockedPrivateMediaIsDroppedBeforeQuotaDiskAndDedupState() throws {
let recorder = Recorder()
recorder.blockedPeers = [remotePeerID]
recorder.peers = [remotePeerID: makePeerInfo(remotePeerID, nickname: "Alice", isVerified: true)]
let handler = makeHandler(recorder: recorder)
let content = Data([0xFF, 0xD8, 0xFF]) + Data(repeating: 0x41, count: 128)
let file = BitchatFilePacket(
fileName: "img_20260725_105708_1CC2760D-76AA-40C3-8013-C7FAA6C2EF99.jpg",
fileSize: UInt64(content.count),
mimeType: "image/jpeg",
content: content
)
let payload = try #require(file.encode())
#expect(handler.handlePrivatePayload(
payload,
from: remotePeerID,
timestamp: Date(timeIntervalSince1970: 1_234)
))
#expect(recorder.quotaReservations.isEmpty)
#expect(recorder.saveCalls.isEmpty)
#expect(recorder.lastSeenUpdates.isEmpty)
#expect(recorder.deliveryAcks.isEmpty)
#expect(recorder.deliveredMessages.isEmpty)
// Unblocking must allow a retry through; the blocked attempt cannot
// poison the stable-ID dedup reservation.
recorder.blockedPeers = []
#expect(handler.handlePrivatePayload(
payload,
from: remotePeerID,
timestamp: Date(timeIntervalSince1970: 1_235)
))
#expect(recorder.saveCalls.count == 1)
#expect(recorder.deliveredMessages.count == 1)
#expect(recorder.deliveryAcks.count == 1)
}
@Test
@@ -337,6 +948,7 @@ struct BLEFileTransferHandlerTests {
#expect(recorder.quotaReservations.isEmpty)
#expect(recorder.saveCalls.isEmpty)
#expect(recorder.lastSeenUpdates.isEmpty)
#expect(recorder.deliveryAcks.isEmpty)
#expect(recorder.deliveredMessages.isEmpty)
}
@@ -468,6 +1080,94 @@ struct BLEFileTransferHandlerTests {
}
}
@Test
func panicWipeClearsCachedPrivateMediaReceiptDecisions() throws {
let base = FileManager.default.temporaryDirectory
.appendingPathComponent(
"panic-receipt-cache-\(UUID().uuidString)",
isDirectory: true
)
defer { try? FileManager.default.removeItem(at: base) }
let messageID = "media-00112233445566778899aabbccddeeff"
let seed = BLEPrivateMediaReceiptStore(baseDirectory: base)
let payload = base
.appendingPathComponent(
"files/images/incoming",
isDirectory: true
)
.appendingPathComponent("panic-receipt.jpg")
try FileManager.default.createDirectory(
at: payload.deletingLastPathComponent(),
withIntermediateDirectories: true
)
try Data("secret".utf8).write(to: payload, options: .atomic)
#expect(seed.commitAccepted(
messageID: messageID,
storedURL: payload
))
#expect(seed.recordDeleted(messageID: messageID))
let store = BLEIncomingFileStore(baseDirectory: base)
#expect(
store.privateMediaReceiptState(messageID: messageID)
== .tombstoned
)
try store.panicWipe()
#expect(
store.privateMediaReceiptState(messageID: messageID)
== .absent
)
}
@Test
func panicWipeInvalidatesPayloadCoordinationReservations() throws {
let base = FileManager.default.temporaryDirectory
.appendingPathComponent(
"panic-payload-coordination-\(UUID().uuidString)",
isDirectory: true
)
defer { try? FileManager.default.removeItem(at: base) }
let store = BLEIncomingFileStore(baseDirectory: base)
let pendingName = "pending-before-panic.jpg"
let pendingURL = try #require(store.save(
data: Data("old".utf8),
preferredName: pendingName,
subdirectory: "images/incoming",
fallbackExtension: "jpg",
defaultPrefix: "image"
))
let messageID = "media-aabbccddeeff00112233445566778899"
let reservation = try #require(store.reservePrivateMediaDeletion(
messageIDs: [messageID],
payloadRelativePaths: [
messageID: "images/incoming/delete-before-panic.jpg"
]
))
try store.panicWipe()
#expect(!store.commitPrivateMediaDeletion(
reservation: reservation,
messageIDs: [messageID],
payloadRelativePaths: [
messageID: "images/incoming/delete-before-panic.jpg"
],
protectedPayloadRelativePaths: []
))
let postPanicURL = try #require(store.save(
data: Data("new".utf8),
preferredName: pendingName,
subdirectory: "images/incoming",
fallbackExtension: "jpg",
defaultPrefix: "image"
))
#expect(pendingURL.lastPathComponent == pendingName)
#expect(postPanicURL.lastPathComponent == pendingName)
}
@Test
func panicWipeAttemptsDeletionWhenMarkerPersistenceFails() throws {
enum MarkerFailure: Error { case unavailable }
@@ -1,4 +1,5 @@
import BitFoundation
import CryptoKit
import Foundation
import Testing
@testable import bitchat
@@ -11,7 +12,11 @@ struct BLENoisePacketHandlerTests {
var handshakeAuthenticated = false
var hasSession = false
let sessionGeneration = UUID()
var awaitingResponderHandshake = false
var decryptResult: Result<Data, Error> = .success(Data())
var currentDate = Date(timeIntervalSince1970: 1_000)
var transportGenerationReady = false
var forcedServiceDecryptError: Error?
var processedHandshakes: [(peerID: PeerID, message: Data)] = []
var hasSessionQueries: [PeerID] = []
@@ -34,11 +39,12 @@ struct BLENoisePacketHandlerTests {
recorder: Recorder,
now: Date = Date(timeIntervalSince1970: 1_000)
) -> BLENoisePacketHandler {
recorder.currentDate = now
let environment = BLENoisePacketHandlerEnvironment(
localPeerID: { [localPeerID] in localPeerID },
localPeerIDData: { [localPeerIDData] in localPeerIDData },
messageTTL: TransportConfig.messageTTLDefault,
now: { now },
now: { recorder.currentDate },
processHandshakeMessage: { peerID, message in
recorder.processedHandshakes.append((peerID, message))
return NoiseHandshakeProcessingResult(
@@ -51,6 +57,9 @@ struct BLENoisePacketHandlerTests {
recorder.hasSessionQueries.append(peerID)
return recorder.hasSession
},
isAwaitingResponderHandshakeCompletion: { _ in
recorder.awaitingResponderHandshake
},
initiateHandshake: { peerID in
recorder.initiatedHandshakes.append(peerID)
recorder.events.append("initiateHandshake")
@@ -82,6 +91,120 @@ struct BLENoisePacketHandlerTests {
return BLENoisePacketHandler(environment: environment)
}
private func makeServiceBackedHandler(
service: NoiseEncryptionService,
localPeerID: PeerID,
recorder: Recorder,
transportGenerationIsReady:
@escaping (UUID) -> Bool
) -> BLENoisePacketHandler {
BLENoisePacketHandler(
environment: BLENoisePacketHandlerEnvironment(
localPeerID: { localPeerID },
localPeerIDData: {
Data(hexString: localPeerID.id) ?? Data()
},
messageTTL: TransportConfig.messageTTLDefault,
now: { recorder.currentDate },
processHandshakeMessage: { peerID, message in
try service.processHandshakeMessageWithResult(
from: peerID,
message: message
)
},
hasNoiseSession: { peerID in
service.hasSession(with: peerID)
},
isAwaitingResponderHandshakeCompletion: { peerID in
service.isAwaitingResponderHandshakeCompletion(
with: peerID
)
},
initiateHandshake: { peerID in
recorder.initiatedHandshakes.append(peerID)
},
broadcastPacket: { packet in
recorder.broadcastPackets.append(packet)
},
updatePeerLastSeen: { peerID in
recorder.lastSeenUpdates.append(peerID)
},
decrypt: { payload, peerID in
recorder.decryptCalls.append((payload, peerID))
if let error = recorder.forcedServiceDecryptError {
throw error
}
let result =
try service.decryptWithSessionGeneration(
payload,
from: peerID,
establishedGenerationIsReady:
transportGenerationIsReady
)
return BLENoiseDecryptionResult(
plaintext: result.plaintext,
sessionGeneration: result.sessionGeneration
)
},
clearSession: { peerID in
recorder.clearedSessions.append(peerID)
service.clearSession(for: peerID)
},
handleAuthenticatedPeerState: {
peerID, payload, generation in
recorder.authenticatedPeerStates.append(
(peerID, payload, generation)
)
},
deliverNoisePayload: {
peerID, type, payload, timestamp in
recorder.deliveries.append(
(peerID, type, payload, timestamp)
)
}
)
)
}
private func establishedServices() throws -> (
sender: NoiseEncryptionService,
receiver: NoiseEncryptionService,
senderPeerID: PeerID,
receiverPeerID: PeerID
) {
let sender = NoiseEncryptionService(keychain: MockKeychain())
let receiver = NoiseEncryptionService(keychain: MockKeychain())
let senderPeerID = PeerID(
publicKey: sender.getStaticPublicKeyData()
)
let receiverPeerID = PeerID(
publicKey: receiver.getStaticPublicKeyData()
)
let message1 = try sender.initiateHandshake(with: receiverPeerID)
let message2 = try #require(
try receiver.processHandshakeMessage(
from: senderPeerID,
message: message1
)
)
let message3 = try #require(
try sender.processHandshakeMessage(
from: receiverPeerID,
message: message2
)
)
_ = try receiver.processHandshakeMessage(
from: senderPeerID,
message: message3
)
return (
sender,
receiver,
senderPeerID,
receiverPeerID
)
}
// MARK: Handshake
@Test
@@ -364,6 +487,799 @@ struct BLENoisePacketHandlerTests {
#expect(recorder.deliveries.isEmpty)
}
@Test
func earlyCiphertextIsRetriedAfterResponderHandshakeCompletes() {
let recorder = Recorder()
recorder.hasSession = true
recorder.awaitingResponderHandshake = true
recorder.decryptResult = .failure(
CryptoKitError.authenticationFailure
)
let handler = makeHandler(recorder: recorder)
let encrypted = makeEncryptedPacket(
recipientID: Data(hexString: localPeerID.id)
)
handler.handleEncrypted(encrypted, from: remotePeerID)
#expect(recorder.decryptCalls.count == 1)
#expect(recorder.clearedSessions.isEmpty)
#expect(recorder.initiatedHandshakes.isEmpty)
recorder.awaitingResponderHandshake = false
recorder.decryptResult = .success(
Data([NoisePayloadType.privateMessage.rawValue, 0xCA, 0xFE])
)
handler.handleSessionAuthenticated(remotePeerID)
handler.handleSessionAuthenticated(remotePeerID)
#expect(recorder.decryptCalls.count == 2)
#expect(recorder.deliveries.count == 1)
#expect(recorder.deliveries.first?.type == .privateMessage)
#expect(recorder.deliveries.first?.payload == Data([0xCA, 0xFE]))
#expect(recorder.clearedSessions.isEmpty)
#expect(recorder.initiatedHandshakes.isEmpty)
}
@Test
func panicResetDiscardsDeferredCiphertextBeforeFutureAuthentication() {
let recorder = Recorder()
recorder.hasSession = true
recorder.awaitingResponderHandshake = true
recorder.decryptResult = .failure(
CryptoKitError.authenticationFailure
)
let handler = makeHandler(recorder: recorder)
let prePanicCiphertext = makeEncryptedPacket(
recipientID: Data(hexString: localPeerID.id),
payload: Data(
count: NoiseSecurityConstants.maxMessageSize
+ NoiseSecurityConstants.transportCiphertextOverhead
)
)
handler.handleEncrypted(prePanicCiphertext, from: remotePeerID)
#expect(recorder.decryptCalls.count == 1)
handler.resetForPanic()
// Three maximum-sized packets fit only when reset also zeroed the
// global byte accounting. They model ciphertext received under the
// replacement identity before that responder handshake completes.
for index in 0..<3 {
handler.handleEncrypted(
makeEncryptedPacket(
recipientID: Data(hexString: localPeerID.id),
timestamp: UInt64(901_000 + index),
payload: Data(
count: NoiseSecurityConstants.maxMessageSize
+ NoiseSecurityConstants.transportCiphertextOverhead
)
),
from: remotePeerID
)
}
#expect(recorder.decryptCalls.count == 4)
recorder.awaitingResponderHandshake = false
recorder.decryptResult = .success(
Data([NoisePayloadType.privateMessage.rawValue, 0xCA, 0xFE])
)
handler.handleSessionAuthenticated(remotePeerID)
// Only the three post-reset packets replay; the pre-panic packet does
// not survive into the replacement session.
#expect(recorder.decryptCalls.count == 7)
#expect(recorder.deliveries.count == 3)
#expect(recorder.clearedSessions.isEmpty)
#expect(recorder.initiatedHandshakes.isEmpty)
}
@Test
func ciphertextQueuedAheadOfEstablishmentCallbackDoesNotConsumeNonce()
throws {
let alice = NoiseEncryptionService(keychain: MockKeychain())
let bob = NoiseEncryptionService(keychain: MockKeychain())
let alicePeerID = PeerID(
publicKey: alice.getStaticPublicKeyData()
)
let bobPeerID = PeerID(publicKey: bob.getStaticPublicKeyData())
let message1 = try alice.initiateHandshake(with: bobPeerID)
let message2 = try #require(
try bob.processHandshakeMessage(
from: alicePeerID,
message: message1
)
)
let message3 = try #require(
try alice.processHandshakeMessage(
from: bobPeerID,
message: message2
)
)
let typedPayload = Data([
NoisePayloadType.privateMessage.rawValue,
0xCA, 0xFE
])
let ciphertext = try alice.encrypt(
typedPayload,
for: bobPeerID
)
// Manager promotion has completed, but the serialized BLE callback is
// deliberately still behind this ciphertext.
_ = try bob.processHandshakeMessage(
from: alicePeerID,
message: message3
)
let recorder = Recorder()
recorder.transportGenerationReady = false
let handler = makeServiceBackedHandler(
service: bob,
localPeerID: bobPeerID,
recorder: recorder,
transportGenerationIsReady: { _ in
recorder.transportGenerationReady
}
)
let packet = makeEncryptedPacket(
recipientID: Data(hexString: bobPeerID.id),
payload: ciphertext
)
handler.handleEncrypted(packet, from: alicePeerID)
#expect(recorder.deliveries.isEmpty)
#expect(recorder.clearedSessions.isEmpty)
// The exact ciphertext must still authenticate, proving the readiness
// rejection happened before the receive nonce was consumed.
recorder.transportGenerationReady = true
handler.handleSessionAuthenticated(alicePeerID)
#expect(recorder.decryptCalls.count == 2)
#expect(recorder.deliveries.count == 1)
#expect(recorder.deliveries.first?.type == .privateMessage)
#expect(recorder.deliveries.first?.payload == Data([0xCA, 0xFE]))
#expect(recorder.clearedSessions.isEmpty)
#expect(recorder.initiatedHandshakes.isEmpty)
}
@Test
func ciphertextQueuedAheadOfRestoreCallbackDoesNotConsumeNonce()
throws {
let alice = NoiseEncryptionService(keychain: MockKeychain())
let bob = NoiseEncryptionService(keychain: MockKeychain())
let mallory = NoiseEncryptionService(keychain: MockKeychain())
let alicePeerID = PeerID(
publicKey: alice.getStaticPublicKeyData()
)
let bobPeerID = PeerID(publicKey: bob.getStaticPublicKeyData())
let initial1 = try alice.initiateHandshake(with: bobPeerID)
let initial2 = try #require(
try bob.processHandshakeMessage(
from: alicePeerID,
message: initial1
)
)
let initial3 = try #require(
try alice.processHandshakeMessage(
from: bobPeerID,
message: initial2
)
)
_ = try bob.processHandshakeMessage(
from: alicePeerID,
message: initial3
)
let typedPayload = Data([
NoisePayloadType.privateMessage.rawValue,
0xBE, 0xEF
])
let delayedCiphertext = try alice.encrypt(
typedPayload,
for: bobPeerID
)
let forged1 = try mallory.initiateHandshake(with: bobPeerID)
let forged2 = try #require(
try bob.processHandshakeMessage(
from: alicePeerID,
message: forged1
)
)
let forged3 = try #require(
try mallory.processHandshakeMessage(
from: bobPeerID,
message: forged2
)
)
#expect(throws: NoiseSessionError.peerIdentityMismatch) {
try bob.processHandshakeMessage(
from: alicePeerID,
message: forged3
)
}
#expect(bob.hasEstablishedSession(with: alicePeerID))
let recorder = Recorder()
recorder.transportGenerationReady = false
let handler = makeServiceBackedHandler(
service: bob,
localPeerID: bobPeerID,
recorder: recorder,
transportGenerationIsReady: { _ in
recorder.transportGenerationReady
}
)
let packet = makeEncryptedPacket(
recipientID: Data(hexString: bobPeerID.id),
payload: delayedCiphertext
)
// Manager rollback is visible, while the BLE restore callback is
// deliberately still queued behind this ciphertext.
handler.handleEncrypted(packet, from: alicePeerID)
#expect(recorder.deliveries.isEmpty)
#expect(recorder.clearedSessions.isEmpty)
recorder.transportGenerationReady = true
handler.handleSessionAuthenticated(alicePeerID)
#expect(recorder.decryptCalls.count == 2)
#expect(recorder.deliveries.count == 1)
#expect(recorder.deliveries.first?.type == .privateMessage)
#expect(recorder.deliveries.first?.payload == Data([0xBE, 0xEF]))
#expect(recorder.clearedSessions.isEmpty)
#expect(recorder.initiatedHandshakes.isEmpty)
}
@Test
func oversizedCiphertextCannotEvictEstablishedTransport() throws {
let pair = try establishedServices()
let recorder = Recorder()
recorder.transportGenerationReady = true
let handler = makeServiceBackedHandler(
service: pair.receiver,
localPeerID: pair.receiverPeerID,
recorder: recorder,
transportGenerationIsReady: { _ in
recorder.transportGenerationReady
}
)
handler.handleEncrypted(
makeEncryptedPacket(
recipientID: Data(hexString: pair.receiverPeerID.id),
payload: Data(
count:
NoiseSecurityConstants
.maxPrivateFileCiphertextSize + 1
)
),
from: pair.senderPeerID
)
#expect(
pair.receiver.hasEstablishedSession(with: pair.senderPeerID)
)
#expect(recorder.clearedSessions.isEmpty)
let valid = try pair.sender.encrypt(
Data([NoisePayloadType.privateMessage.rawValue, 0x01]),
for: pair.receiverPeerID
)
handler.handleEncrypted(
makeEncryptedPacket(
recipientID: Data(hexString: pair.receiverPeerID.id),
payload: valid
),
from: pair.senderPeerID
)
#expect(recorder.deliveries.count == 1)
#expect(recorder.deliveries.first?.payload == Data([0x01]))
#expect(recorder.clearedSessions.isEmpty)
#expect(recorder.initiatedHandshakes.isEmpty)
}
@Test
func forgedAuthenticationFailureCannotEvictEstablishedTransport()
throws {
let pair = try establishedServices()
let recorder = Recorder()
recorder.transportGenerationReady = true
let handler = makeServiceBackedHandler(
service: pair.receiver,
localPeerID: pair.receiverPeerID,
recorder: recorder,
transportGenerationIsReady: { _ in
recorder.transportGenerationReady
}
)
let valid = try pair.sender.encrypt(
Data([NoisePayloadType.privateMessage.rawValue, 0x02]),
for: pair.receiverPeerID
)
var forged = valid
forged[forged.index(before: forged.endIndex)] ^= 0xFF
handler.handleEncrypted(
makeEncryptedPacket(
recipientID: Data(hexString: pair.receiverPeerID.id),
payload: forged
),
from: pair.senderPeerID
)
#expect(
pair.receiver.hasEstablishedSession(with: pair.senderPeerID)
)
#expect(recorder.clearedSessions.isEmpty)
// Authentication failure leaves nonce state untouched, so the exact
// original ciphertext remains valid.
handler.handleEncrypted(
makeEncryptedPacket(
recipientID: Data(hexString: pair.receiverPeerID.id),
payload: valid
),
from: pair.senderPeerID
)
#expect(recorder.deliveries.count == 1)
#expect(recorder.deliveries.first?.payload == Data([0x02]))
#expect(recorder.clearedSessions.isEmpty)
#expect(recorder.initiatedHandshakes.isEmpty)
}
@Test
func replayCannotEvictEstablishedTransportOrBlockNextNonce() throws {
let pair = try establishedServices()
let recorder = Recorder()
recorder.transportGenerationReady = true
let handler = makeServiceBackedHandler(
service: pair.receiver,
localPeerID: pair.receiverPeerID,
recorder: recorder,
transportGenerationIsReady: { _ in
recorder.transportGenerationReady
}
)
let first = try pair.sender.encrypt(
Data([NoisePayloadType.privateMessage.rawValue, 0x03]),
for: pair.receiverPeerID
)
let firstPacket = makeEncryptedPacket(
recipientID: Data(hexString: pair.receiverPeerID.id),
payload: first
)
handler.handleEncrypted(firstPacket, from: pair.senderPeerID)
handler.handleEncrypted(firstPacket, from: pair.senderPeerID)
#expect(
pair.receiver.hasEstablishedSession(with: pair.senderPeerID)
)
#expect(recorder.clearedSessions.isEmpty)
let next = try pair.sender.encrypt(
Data([NoisePayloadType.privateMessage.rawValue, 0x04]),
for: pair.receiverPeerID
)
handler.handleEncrypted(
makeEncryptedPacket(
recipientID: Data(hexString: pair.receiverPeerID.id),
payload: next
),
from: pair.senderPeerID
)
#expect(recorder.deliveries.count == 2)
#expect(recorder.deliveries.map { $0.payload } == [
Data([0x03]), Data([0x04])
])
#expect(recorder.clearedSessions.isEmpty)
#expect(recorder.initiatedHandshakes.isEmpty)
}
@Test
func rateLimitFailureCannotEvictEstablishedTransportOrConsumeNonce()
throws {
let pair = try establishedServices()
let recorder = Recorder()
recorder.transportGenerationReady = true
recorder.forcedServiceDecryptError =
NoiseSecurityError.rateLimitExceeded
let handler = makeServiceBackedHandler(
service: pair.receiver,
localPeerID: pair.receiverPeerID,
recorder: recorder,
transportGenerationIsReady: { _ in
recorder.transportGenerationReady
}
)
let valid = try pair.sender.encrypt(
Data([NoisePayloadType.privateMessage.rawValue, 0x05]),
for: pair.receiverPeerID
)
handler.handleEncrypted(
makeEncryptedPacket(
recipientID: Data(hexString: pair.receiverPeerID.id),
payload: Data(repeating: 0xA5, count: 20)
),
from: pair.senderPeerID
)
#expect(
pair.receiver.hasEstablishedSession(with: pair.senderPeerID)
)
#expect(recorder.clearedSessions.isEmpty)
recorder.forcedServiceDecryptError = nil
handler.handleEncrypted(
makeEncryptedPacket(
recipientID: Data(hexString: pair.receiverPeerID.id),
payload: valid
),
from: pair.senderPeerID
)
#expect(recorder.deliveries.count == 1)
#expect(recorder.deliveries.first?.payload == Data([0x05]))
#expect(recorder.clearedSessions.isEmpty)
#expect(recorder.initiatedHandshakes.isEmpty)
}
@Test
func maximumPrivateFileCiphertextIsEligibleForDeferredRetry() {
let recorder = Recorder()
recorder.hasSession = true
recorder.awaitingResponderHandshake = true
recorder.decryptResult = .failure(
CryptoKitError.authenticationFailure
)
let handler = makeHandler(recorder: recorder)
let encrypted = makeEncryptedPacket(
recipientID: Data(hexString: localPeerID.id),
payload: Data(
count: NoiseSecurityConstants.maxPrivateFileCiphertextSize
)
)
handler.handleEncrypted(encrypted, from: remotePeerID)
recorder.awaitingResponderHandshake = false
recorder.decryptResult = .success(
Data([NoisePayloadType.privateFile.rawValue, 0x01])
)
handler.handleSessionAuthenticated(remotePeerID)
#expect(recorder.decryptCalls.count == 2)
#expect(recorder.deliveries.count == 1)
#expect(recorder.deliveries.first?.type == .privateFile)
#expect(recorder.clearedSessions.isEmpty)
#expect(recorder.initiatedHandshakes.isEmpty)
}
@Test
func oversizedEarlyCiphertextIsNotDeferred() {
let recorder = Recorder()
recorder.hasSession = true
recorder.awaitingResponderHandshake = true
recorder.decryptResult = .failure(
CryptoKitError.authenticationFailure
)
let handler = makeHandler(recorder: recorder)
let encrypted = makeEncryptedPacket(
recipientID: Data(hexString: localPeerID.id),
payload: Data(
count:
NoiseSecurityConstants.maxPrivateFileCiphertextSize + 1
)
)
handler.handleEncrypted(encrypted, from: remotePeerID)
recorder.awaitingResponderHandshake = false
recorder.decryptResult = .success(
Data([NoisePayloadType.delivered.rawValue, 0x01])
)
handler.handleSessionAuthenticated(remotePeerID)
#expect(recorder.decryptCalls.count == 1)
#expect(recorder.deliveries.isEmpty)
#expect(recorder.clearedSessions.isEmpty)
#expect(recorder.initiatedHandshakes.isEmpty)
}
@Test
func missingSessionCiphertextIsRetriedAfterResponderHandshakeCompletes() {
let recorder = Recorder()
recorder.hasSession = true
recorder.awaitingResponderHandshake = true
recorder.decryptResult = .failure(
NoiseEncryptionError.sessionNotEstablished
)
let handler = makeHandler(recorder: recorder)
let encrypted = makeEncryptedPacket(
recipientID: Data(hexString: localPeerID.id)
)
handler.handleEncrypted(encrypted, from: remotePeerID)
#expect(recorder.decryptCalls.count == 1)
#expect(recorder.initiatedHandshakes.isEmpty)
recorder.awaitingResponderHandshake = false
recorder.decryptResult = .success(
Data([NoisePayloadType.delivered.rawValue, 0x01])
)
handler.handleSessionAuthenticated(remotePeerID)
#expect(recorder.decryptCalls.count == 2)
#expect(recorder.deliveries.count == 1)
#expect(recorder.clearedSessions.isEmpty)
#expect(recorder.initiatedHandshakes.isEmpty)
}
@Test
func lowNonceCiphertextIsRetriedAfterResponderHandshakeCompletes() {
let recorder = Recorder()
recorder.hasSession = true
recorder.awaitingResponderHandshake = true
recorder.decryptResult = .failure(NoiseError.replayDetected)
let handler = makeHandler(recorder: recorder)
let encrypted = makeEncryptedPacket(
recipientID: Data(hexString: localPeerID.id)
)
handler.handleEncrypted(encrypted, from: remotePeerID)
recorder.awaitingResponderHandshake = false
recorder.decryptResult = .success(
Data([NoisePayloadType.readReceipt.rawValue, 0x02])
)
handler.handleSessionAuthenticated(remotePeerID)
#expect(recorder.decryptCalls.count == 2)
#expect(recorder.deliveries.count == 1)
#expect(recorder.deliveries.first?.type == .readReceipt)
#expect(recorder.clearedSessions.isEmpty)
#expect(recorder.initiatedHandshakes.isEmpty)
}
@Test
func invalidDeferredCiphertextDoesNotClearAuthenticatedSession() {
let recorder = Recorder()
recorder.hasSession = true
recorder.awaitingResponderHandshake = true
recorder.decryptResult = .failure(
CryptoKitError.authenticationFailure
)
let handler = makeHandler(recorder: recorder)
let encrypted = makeEncryptedPacket(
recipientID: Data(hexString: localPeerID.id)
)
handler.handleEncrypted(encrypted, from: remotePeerID)
recorder.awaitingResponderHandshake = false
handler.handleSessionAuthenticated(remotePeerID)
#expect(recorder.decryptCalls.count == 2)
#expect(recorder.deliveries.isEmpty)
#expect(recorder.clearedSessions.isEmpty)
#expect(recorder.initiatedHandshakes.isEmpty)
}
@Test
func nonCipherFailureDuringResponderHandshakeIsDroppedNotDeferred() {
let recorder = Recorder()
recorder.hasSession = true
recorder.awaitingResponderHandshake = true
recorder.decryptResult = .failure(TestError())
let handler = makeHandler(recorder: recorder)
handler.handleEncrypted(
makeEncryptedPacket(
recipientID: Data(hexString: localPeerID.id)
),
from: remotePeerID
)
recorder.awaitingResponderHandshake = false
recorder.decryptResult = .success(
Data([NoisePayloadType.delivered.rawValue, 0x01])
)
handler.handleSessionAuthenticated(remotePeerID)
#expect(recorder.decryptCalls.count == 1)
#expect(recorder.deliveries.isEmpty)
#expect(recorder.clearedSessions.isEmpty)
#expect(recorder.initiatedHandshakes.isEmpty)
}
@Test
func earlyCiphertextBufferIsBoundedPerPeer() {
let recorder = Recorder()
recorder.hasSession = true
recorder.awaitingResponderHandshake = true
recorder.decryptResult = .failure(
CryptoKitError.authenticationFailure
)
let handler = makeHandler(recorder: recorder)
for index in 0..<5 {
handler.handleEncrypted(
makeEncryptedPacket(
recipientID: Data(hexString: localPeerID.id),
timestamp: UInt64(900_000 + index)
),
from: remotePeerID
)
}
#expect(recorder.decryptCalls.count == 5)
recorder.awaitingResponderHandshake = false
recorder.decryptResult = .success(
Data([NoisePayloadType.delivered.rawValue, 0x01])
)
handler.handleSessionAuthenticated(remotePeerID)
#expect(recorder.decryptCalls.count == 9)
#expect(recorder.deliveries.count == 4)
#expect(recorder.clearedSessions.isEmpty)
#expect(recorder.initiatedHandshakes.isEmpty)
}
@Test
func earlyCiphertextBufferIsBoundedGlobally() {
let recorder = Recorder()
recorder.hasSession = true
recorder.awaitingResponderHandshake = true
recorder.decryptResult = .failure(
CryptoKitError.authenticationFailure
)
let handler = makeHandler(recorder: recorder)
let peers = (1...33).map {
PeerID(str: String(format: "%016llx", UInt64($0)))
}
let packet = makeEncryptedPacket(
recipientID: Data(hexString: localPeerID.id)
)
for peerID in peers {
handler.handleEncrypted(packet, from: peerID)
}
#expect(recorder.decryptCalls.count == 33)
recorder.awaitingResponderHandshake = false
recorder.decryptResult = .success(
Data([NoisePayloadType.delivered.rawValue, 0x01])
)
for peerID in peers {
handler.handleSessionAuthenticated(peerID)
}
#expect(recorder.decryptCalls.count == 65)
#expect(recorder.deliveries.count == 32)
#expect(recorder.clearedSessions.isEmpty)
#expect(recorder.initiatedHandshakes.isEmpty)
}
@Test
func earlyCiphertextBufferKeepsPrivateFileRoomAndByteBound() {
let recorder = Recorder()
recorder.hasSession = true
recorder.awaitingResponderHandshake = true
recorder.decryptResult = .failure(
CryptoKitError.authenticationFailure
)
let handler = makeHandler(recorder: recorder)
let peers = [
PeerID(str: "0000000000000001"),
PeerID(str: "0000000000000002"),
PeerID(str: "0000000000000003")
]
handler.handleEncrypted(
makeEncryptedPacket(
recipientID: Data(hexString: localPeerID.id),
payload: Data(
count:
NoiseSecurityConstants.maxPrivateFileCiphertextSize
)
),
from: peers[0]
)
handler.handleEncrypted(
makeEncryptedPacket(
recipientID: Data(hexString: localPeerID.id),
payload: Data(count: 256 * 1024)
),
from: peers[1]
)
handler.handleEncrypted(
makeEncryptedPacket(
recipientID: Data(hexString: localPeerID.id),
payload: Data([0x01])
),
from: peers[2]
)
recorder.awaitingResponderHandshake = false
recorder.decryptResult = .success(
Data([NoisePayloadType.delivered.rawValue, 0x01])
)
for peerID in peers {
handler.handleSessionAuthenticated(peerID)
}
#expect(recorder.decryptCalls.count == 5)
#expect(recorder.deliveries.count == 2)
#expect(recorder.clearedSessions.isEmpty)
#expect(recorder.initiatedHandshakes.isEmpty)
}
@Test
func expiredEarlyCiphertextIsNotRetried() {
let recorder = Recorder()
recorder.hasSession = true
recorder.awaitingResponderHandshake = true
recorder.decryptResult = .failure(
CryptoKitError.authenticationFailure
)
let handler = makeHandler(recorder: recorder)
handler.handleEncrypted(
makeEncryptedPacket(
recipientID: Data(hexString: localPeerID.id)
),
from: remotePeerID
)
recorder.currentDate =
recorder.currentDate.addingTimeInterval(
NoiseSecurityConstants.ordinaryResponderHandshakeTimeout
+ 0.001
)
recorder.awaitingResponderHandshake = false
recorder.decryptResult = .success(
Data([NoisePayloadType.delivered.rawValue, 0x01])
)
handler.handleSessionAuthenticated(remotePeerID)
#expect(recorder.decryptCalls.count == 1)
#expect(recorder.deliveries.isEmpty)
#expect(recorder.clearedSessions.isEmpty)
#expect(recorder.initiatedHandshakes.isEmpty)
}
@Test
func earlyCiphertextSurvivesResponderHandshakeWindow() {
let recorder = Recorder()
recorder.hasSession = true
recorder.awaitingResponderHandshake = true
recorder.decryptResult = .failure(
CryptoKitError.authenticationFailure
)
let handler = makeHandler(recorder: recorder)
handler.handleEncrypted(
makeEncryptedPacket(
recipientID: Data(hexString: localPeerID.id)
),
from: remotePeerID
)
recorder.currentDate =
recorder.currentDate.addingTimeInterval(
NoiseSecurityConstants.ordinaryResponderHandshakeTimeout
- 0.001
)
recorder.awaitingResponderHandshake = false
recorder.decryptResult = .success(
Data([NoisePayloadType.delivered.rawValue, 0x01])
)
handler.handleSessionAuthenticated(remotePeerID)
#expect(recorder.decryptCalls.count == 2)
#expect(recorder.deliveries.count == 1)
#expect(recorder.clearedSessions.isEmpty)
#expect(recorder.initiatedHandshakes.isEmpty)
}
private func makeHandshakePacket(recipientID: Data?) -> BitchatPacket {
BitchatPacket(
type: MessageType.noiseHandshake.rawValue,
@@ -378,14 +1294,15 @@ struct BLENoisePacketHandlerTests {
private func makeEncryptedPacket(
recipientID: Data?,
timestamp: UInt64 = 900_000
timestamp: UInt64 = 900_000,
payload: Data = Data([0xC0, 0xFF, 0xEE])
) -> BitchatPacket {
BitchatPacket(
type: MessageType.noiseEncrypted.rawValue,
senderID: Data(hexString: remotePeerID.id) ?? Data(),
recipientID: recipientID,
timestamp: timestamp,
payload: Data([0xC0, 0xFF, 0xEE]),
payload: payload,
signature: nil,
ttl: TransportConfig.messageTTLDefault
)
@@ -111,5 +111,8 @@ struct BLENoiseReconnectPolicyTests {
)
)
#expect(PeerCapabilities.localSupported.contains(.privateMedia))
#expect(
PeerCapabilities.localSupported.contains(.privateMediaReceipts)
)
}
}
@@ -0,0 +1,866 @@
import Foundation
import Testing
@testable import bitchat
struct BLEPrivateMediaReceiptStoreTests {
private struct TestError: Error {}
private struct ReceiptFixture: Codable {
let kind: String
let relativePath: String?
let recordedAt: Date
}
private struct JournalEntryFixture: Codable {
let relativePaths: [String]
let recordedAt: Date
}
private struct JournalFixture: Codable {
let version: Int
let entries: [String: JournalEntryFixture]
}
private let messageID = "media-00112233445566778899aabbccddeeff"
private let secondMessageID = "media-ffeeddccbbaa99887766554433221100"
@Test
func acceptedReceiptPersistsAcrossStoreInstances() throws {
let root = makeRoot("persist")
defer { try? FileManager.default.removeItem(at: root) }
let payload = try makePayload(in: root)
let first = BLEPrivateMediaReceiptStore(baseDirectory: root)
#expect(first.commitAccepted(messageID: messageID, storedURL: payload))
#expect(first.state(for: messageID) == .accepted(payload))
let relaunched = BLEPrivateMediaReceiptStore(baseDirectory: root)
#expect(relaunched.state(for: messageID) == .accepted(payload))
}
@Test
func acceptedReceiptRejectsOutgoingPayloadAndCrossIDPathReuse() throws {
let root = makeRoot("accepted-ownership")
defer { try? FileManager.default.removeItem(at: root) }
let incoming = try makePayload(in: root)
let outgoingDirectory = root.appendingPathComponent(
"files/images/outgoing",
isDirectory: true
)
try FileManager.default.createDirectory(
at: outgoingDirectory,
withIntermediateDirectories: true
)
let outgoing = outgoingDirectory.appendingPathComponent("image.jpg")
try Data([0x01]).write(to: outgoing)
let store = BLEPrivateMediaReceiptStore(baseDirectory: root)
#expect(!store.commitAccepted(
messageID: messageID,
storedURL: outgoing
))
#expect(store.commitAccepted(
messageID: messageID,
storedURL: incoming
))
#expect(!store.commitAccepted(
messageID: secondMessageID,
storedURL: incoming
))
#expect(FileManager.default.fileExists(atPath: incoming.path))
#expect(FileManager.default.fileExists(atPath: outgoing.path))
}
@Test
func liveAcceptedPathSurvivesTTLAndCapacityPressure() throws {
let root = makeRoot("accepted-retention")
defer { try? FileManager.default.removeItem(at: root) }
let firstPayload = try makePayload(in: root, name: "first.jpg")
let secondPayload = try makePayload(in: root, name: "second.jpg")
let recordedAt = Date(timeIntervalSince1970: 2_000)
let seed = BLEPrivateMediaReceiptStore(
baseDirectory: root,
capacity: 1,
ttl: 1,
now: { recordedAt }
)
#expect(seed.commitAccepted(
messageID: messageID,
storedURL: firstPayload
))
let relaunched = BLEPrivateMediaReceiptStore(
baseDirectory: root,
capacity: 1,
ttl: 1,
now: { recordedAt.addingTimeInterval(2) }
)
#expect(relaunched.state(for: messageID) == .accepted(firstPayload))
#expect(!relaunched.commitAccepted(
messageID: secondMessageID,
storedURL: secondPayload
))
#expect(relaunched.state(for: messageID) == .accepted(firstPayload))
}
@Test
func incomingAllocationDoesNotReuseReceiptOwnedMissingPath() throws {
let root = makeRoot("accepted-reservation")
defer { try? FileManager.default.removeItem(at: root) }
let original = try makePayload(in: root)
#expect(BLEPrivateMediaReceiptStore(
baseDirectory: root
).commitAccepted(
messageID: messageID,
storedURL: original
))
try FileManager.default.removeItem(at: original)
let stored = BLEIncomingFileStore(baseDirectory: root).save(
data: Data([0x03]),
preferredName: "image.jpg",
subdirectory: "images/incoming",
fallbackExtension: "jpg",
defaultPrefix: "image"
)
#expect(stored?.lastPathComponent != "image.jpg")
#expect(stored.map {
FileManager.default.fileExists(atPath: $0.path)
} == true)
}
@Test
func pendingRawArrivalBlocksDeletionFallbackPathReuse() throws {
let root = makeRoot("pending-raw-arrival")
defer { try? FileManager.default.removeItem(at: root) }
let incoming = BLEIncomingFileStore(baseDirectory: root)
// The old stable bubble names image.jpg, but its receipt and payload
// have already been pruned. A raw arrival saves that basename before
// its main-actor bubble is inserted.
let rawArrival = incoming.save(
data: Data([0x03]),
preferredName: "image.jpg",
subdirectory: "images/incoming",
fallbackExtension: "jpg",
defaultPrefix: "image"
)
#expect(rawArrival?.lastPathComponent == "image.jpg")
let reservation = incoming.reservePrivateMediaDeletion(
messageIDs: [messageID],
payloadRelativePaths: [
messageID: "images/incoming/image.jpg"
]
)
#expect(reservation == nil)
#expect(rawArrival.map {
FileManager.default.fileExists(atPath: $0.path)
} == true)
}
@Test
func quotaDoesNotEvictOrReusePendingDeliveryPath() throws {
let root = makeRoot("pending-quota")
defer { try? FileManager.default.removeItem(at: root) }
let incoming = BLEIncomingFileStore(
baseDirectory: root,
quotaBytes: 1
)
let first = try #require(incoming.save(
data: Data([0x01, 0x02]),
preferredName: "image.jpg",
subdirectory: "images/incoming",
fallbackExtension: "jpg",
defaultPrefix: "image"
))
incoming.enforceQuota(reservingBytes: 1)
#expect(FileManager.default.fileExists(atPath: first.path))
let second = try #require(incoming.save(
data: Data([0x03]),
preferredName: "image.jpg",
subdirectory: "images/incoming",
fallbackExtension: "jpg",
defaultPrefix: "image"
))
#expect(second != first)
#expect(second.lastPathComponent == "image (1).jpg")
#expect(FileManager.default.fileExists(atPath: first.path))
#expect(FileManager.default.fileExists(atPath: second.path))
}
@Test
func invalidReceiptAndJournalCannotTargetOutgoingPayload() throws {
let root = makeRoot("invalid-owned-path")
defer { try? FileManager.default.removeItem(at: root) }
let outgoingDirectory = root.appendingPathComponent(
"files/images/outgoing",
isDirectory: true
)
try FileManager.default.createDirectory(
at: outgoingDirectory,
withIntermediateDirectories: true
)
let victim = outgoingDirectory.appendingPathComponent("victim.jpg")
try Data([0x02]).write(to: victim)
let receiptURL = receiptRecord(in: root)
try FileManager.default.createDirectory(
at: receiptURL.deletingLastPathComponent(),
withIntermediateDirectories: true
)
let fixture = ReceiptFixture(
kind: "tombstone",
relativePath: "images/outgoing/victim.jpg",
recordedAt: Date()
)
try JSONEncoder().encode(fixture).write(
to: receiptURL,
options: .atomic
)
#expect(
BLEPrivateMediaReceiptStore(baseDirectory: root)
.state(for: messageID) == .unavailable
)
#expect(FileManager.default.fileExists(atPath: victim.path))
try FileManager.default.removeItem(at: receiptURL)
let journal = JournalFixture(
version: 1,
entries: [messageID: JournalEntryFixture(
relativePaths: ["images/outgoing/victim.jpg"],
recordedAt: fixture.recordedAt
)]
)
try JSONEncoder().encode(journal).write(
to: deletionJournal(in: root),
options: .atomic
)
#expect(
BLEPrivateMediaReceiptStore(baseDirectory: root)
.state(for: messageID) == .unavailable
)
#expect(FileManager.default.fileExists(atPath: victim.path))
}
@Test
func directoryEnumerationFailureIsUnavailableAndRetriesWithoutCachingEmpty() throws {
let root = makeRoot("list-failure")
defer { try? FileManager.default.removeItem(at: root) }
let payload = try makePayload(in: root)
#expect(BLEPrivateMediaReceiptStore(baseDirectory: root).commitAccepted(
messageID: messageID,
storedURL: payload
))
let record = receiptRecord(in: root)
#expect(FileManager.default.fileExists(atPath: record.path))
var shouldFail = true
let store = BLEPrivateMediaReceiptStore(
baseDirectory: root,
directoryReader: { directory in
if shouldFail {
shouldFail = false
throw TestError()
}
return try FileManager.default.contentsOfDirectory(
at: directory,
includingPropertiesForKeys: nil
)
}
)
#expect(store.state(for: messageID) == .unavailable)
#expect(FileManager.default.fileExists(atPath: record.path))
#expect(store.state(for: messageID) == .accepted(payload))
}
@Test
func recordReadFailureIsUnavailableAndPreservesReceiptForRetry() throws {
let root = makeRoot("read-failure")
defer { try? FileManager.default.removeItem(at: root) }
let payload = try makePayload(in: root)
#expect(BLEPrivateMediaReceiptStore(baseDirectory: root).commitAccepted(
messageID: messageID,
storedURL: payload
))
let record = receiptRecord(in: root)
var shouldFail = true
let store = BLEPrivateMediaReceiptStore(
baseDirectory: root,
dataReader: { url in
if shouldFail {
shouldFail = false
throw TestError()
}
return try Data(contentsOf: url)
}
)
#expect(store.state(for: messageID) == .unavailable)
#expect(FileManager.default.fileExists(atPath: record.path))
#expect(store.state(for: messageID) == .accepted(payload))
}
@Test
func decodeFailureIsUnavailableAndDoesNotDeleteOrCachePastRepair() throws {
let root = makeRoot("decode-failure")
defer { try? FileManager.default.removeItem(at: root) }
let payload = try makePayload(in: root)
#expect(BLEPrivateMediaReceiptStore(baseDirectory: root).commitAccepted(
messageID: messageID,
storedURL: payload
))
let record = receiptRecord(in: root)
let durableBytes = try Data(contentsOf: record)
let corruptBytes = Data("{not-json".utf8)
try corruptBytes.write(to: record, options: .atomic)
let store = BLEPrivateMediaReceiptStore(baseDirectory: root)
#expect(store.state(for: messageID) == .unavailable)
#expect(!store.commitAccepted(messageID: messageID, storedURL: payload))
#expect(FileManager.default.fileExists(atPath: record.path))
#expect(try Data(contentsOf: record) == corruptBytes)
try durableBytes.write(to: record, options: .atomic)
#expect(store.state(for: messageID) == .accepted(payload))
}
@Test
func unreadableTombstoneNeverBecomesAbsentOrGetsDeleted() throws {
let root = makeRoot("tombstone-decode")
defer { try? FileManager.default.removeItem(at: root) }
let payload = try makePayload(in: root)
let seed = BLEPrivateMediaReceiptStore(baseDirectory: root)
#expect(seed.commitAccepted(messageID: messageID, storedURL: payload))
#expect(seed.recordDeleted(messageID: messageID))
#expect(!FileManager.default.fileExists(atPath: payload.path))
let record = receiptRecord(in: root)
let durableBytes = try Data(contentsOf: record)
try Data([0xFF, 0x00, 0x7B]).write(to: record, options: .atomic)
let relaunched = BLEPrivateMediaReceiptStore(baseDirectory: root)
#expect(relaunched.state(for: messageID) == .unavailable)
#expect(FileManager.default.fileExists(atPath: record.path))
try durableBytes.write(to: record, options: .atomic)
#expect(relaunched.state(for: messageID) == .tombstoned)
}
@Test
func deletionBatchCommitsEveryIDBeforeRemovingPayloads() throws {
let root = makeRoot("batch")
defer { try? FileManager.default.removeItem(at: root) }
let firstPayload = try makePayload(in: root, name: "first.jpg")
let secondPayload = try makePayload(in: root, name: "second.jpg")
let store = BLEPrivateMediaReceiptStore(baseDirectory: root)
#expect(store.commitAccepted(
messageID: messageID,
storedURL: firstPayload
))
#expect(store.commitAccepted(
messageID: secondMessageID,
storedURL: secondPayload
))
#expect(store.recordDeleted(
messageIDs: [secondMessageID, messageID]
))
#expect(store.state(for: messageID) == .tombstoned)
#expect(store.state(for: secondMessageID) == .tombstoned)
#expect(!FileManager.default.fileExists(atPath: firstPayload.path))
#expect(!FileManager.default.fileExists(atPath: secondPayload.path))
#expect(!FileManager.default.fileExists(
atPath: deletionJournal(in: root).path
))
}
@Test
func failedJournalCommitPreservesAcceptedStateAndPayloads() throws {
let root = makeRoot("journal-failure")
defer { try? FileManager.default.removeItem(at: root) }
let firstPayload = try makePayload(in: root, name: "first.jpg")
let secondPayload = try makePayload(in: root, name: "second.jpg")
let seed = BLEPrivateMediaReceiptStore(baseDirectory: root)
#expect(seed.commitAccepted(
messageID: messageID,
storedURL: firstPayload
))
#expect(seed.commitAccepted(
messageID: secondMessageID,
storedURL: secondPayload
))
let failing = BLEPrivateMediaReceiptStore(
baseDirectory: root,
dataWriter: { _, _, _ in throw TestError() }
)
#expect(!failing.recordDeleted(
messageIDs: [messageID, secondMessageID]
))
// A failed commit must not install a volatile tombstone. Otherwise a
// sender retry could be ACKed although the caller kept both bubbles.
#expect(failing.state(for: messageID) == .accepted(firstPayload))
#expect(
failing.state(for: secondMessageID) == .accepted(secondPayload)
)
#expect(FileManager.default.fileExists(atPath: firstPayload.path))
#expect(FileManager.default.fileExists(atPath: secondPayload.path))
#expect(!FileManager.default.fileExists(
atPath: deletionJournal(in: root).path
))
}
@Test
func journalRecoversBatchAfterCrashDuringMaterialization() throws {
let root = makeRoot("crash-recovery")
defer { try? FileManager.default.removeItem(at: root) }
let firstPayload = try makePayload(in: root, name: "first.jpg")
let secondPayload = try makePayload(in: root, name: "second.jpg")
let seed = BLEPrivateMediaReceiptStore(baseDirectory: root)
#expect(seed.commitAccepted(
messageID: messageID,
storedURL: firstPayload
))
#expect(seed.commitAccepted(
messageID: secondMessageID,
storedURL: secondPayload
))
let interrupted = BLEPrivateMediaReceiptStore(
baseDirectory: root,
dataWriter: { data, url, options in
let isJournal =
url.lastPathComponent == ".deletion-journal.json"
let isFirstRecord =
url.deletingPathExtension().lastPathComponent == messageID
guard isJournal || isFirstRecord else {
throw TestError()
}
try data.write(to: url, options: options)
}
)
#expect(interrupted.recordDeleted(
messageIDs: [messageID, secondMessageID]
))
#expect(FileManager.default.fileExists(
atPath: deletionJournal(in: root).path
))
#expect(!FileManager.default.fileExists(atPath: firstPayload.path))
#expect(FileManager.default.fileExists(atPath: secondPayload.path))
#expect(interrupted.state(for: messageID) == .tombstoned)
#expect(interrupted.state(for: secondMessageID) == .tombstoned)
let relaunched = BLEPrivateMediaReceiptStore(baseDirectory: root)
#expect(relaunched.state(for: messageID) == .tombstoned)
#expect(relaunched.state(for: secondMessageID) == .tombstoned)
#expect(!FileManager.default.fileExists(atPath: firstPayload.path))
#expect(!FileManager.default.fileExists(atPath: secondPayload.path))
#expect(!FileManager.default.fileExists(
atPath: deletionJournal(in: root).path
))
}
@Test
func journalRetriesPayloadUnlinkAfterRelaunch() throws {
let root = makeRoot("unlink-recovery")
defer { try? FileManager.default.removeItem(at: root) }
let payload = try makePayload(in: root)
let seed = BLEPrivateMediaReceiptStore(baseDirectory: root)
#expect(seed.commitAccepted(
messageID: messageID,
storedURL: payload
))
let unlinkFailure = BLEPrivateMediaReceiptStore(
baseDirectory: root,
payloadRemover: { _ in throw TestError() }
)
#expect(unlinkFailure.recordDeleted(messageID: messageID))
#expect(unlinkFailure.state(for: messageID) == .tombstoned)
#expect(FileManager.default.fileExists(atPath: payload.path))
#expect(FileManager.default.fileExists(
atPath: deletionJournal(in: root).path
))
let relaunched = BLEPrivateMediaReceiptStore(baseDirectory: root)
#expect(relaunched.state(for: messageID) == .tombstoned)
#expect(!FileManager.default.fileExists(atPath: payload.path))
#expect(!FileManager.default.fileExists(
atPath: deletionJournal(in: root).path
))
}
@Test
func expiredReceiptUsesFallbackPathForCrashSafeCleanup() throws {
let root = makeRoot("expired-fallback")
defer { try? FileManager.default.removeItem(at: root) }
let payload = try makePayload(in: root)
let recordedAt = Date(timeIntervalSince1970: 1_000)
let seed = BLEPrivateMediaReceiptStore(
baseDirectory: root,
ttl: 10,
now: { recordedAt }
)
#expect(seed.commitAccepted(
messageID: messageID,
storedURL: payload
))
// Simulate a receipt pruned by an older app version while its bubble
// and payload remain. Current code retains live accepted-path owners.
try FileManager.default.removeItem(at: receiptRecord(in: root))
let afterExpiry = recordedAt.addingTimeInterval(11)
let interrupted = BLEPrivateMediaReceiptStore(
baseDirectory: root,
ttl: 10,
now: { afterExpiry },
payloadRemover: { _ in throw TestError() }
)
#expect(interrupted.recordDeleted(
messageIDs: [messageID],
payloadRelativePaths: [
messageID: "images/incoming/image.jpg"
]
))
#expect(interrupted.state(for: messageID) == .tombstoned)
#expect(FileManager.default.fileExists(atPath: payload.path))
#expect(FileManager.default.fileExists(
atPath: deletionJournal(in: root).path
))
let relaunched = BLEPrivateMediaReceiptStore(
baseDirectory: root,
ttl: 10,
now: { afterExpiry }
)
#expect(relaunched.state(for: messageID) == .tombstoned)
#expect(!FileManager.default.fileExists(atPath: payload.path))
#expect(!FileManager.default.fileExists(
atPath: deletionJournal(in: root).path
))
}
@Test
func retryAtSuffixedPathDeletesReceiptAndBubblePayloads() throws {
let root = makeRoot("retry-suffix")
defer { try? FileManager.default.removeItem(at: root) }
let original = try makePayload(in: root)
let seed = BLEPrivateMediaReceiptStore(baseDirectory: root)
#expect(seed.commitAccepted(
messageID: messageID,
storedURL: original
))
// Simulate an older build pruning only the receipt. A retry must use a
// suffixed filename while the old bubble still references image.jpg.
try FileManager.default.removeItem(at: receiptRecord(in: root))
let retry = try makePayload(in: root, name: "image (1).jpg")
let retried = BLEPrivateMediaReceiptStore(baseDirectory: root)
#expect(retried.commitAccepted(
messageID: messageID,
storedURL: retry
))
#expect(retried.recordDeleted(
messageIDs: [messageID],
payloadRelativePaths: [
messageID: "images/incoming/image.jpg"
]
))
#expect(retried.state(for: messageID) == .tombstoned)
#expect(!FileManager.default.fileExists(atPath: original.path))
#expect(!FileManager.default.fileExists(atPath: retry.path))
#expect(!FileManager.default.fileExists(
atPath: deletionJournal(in: root).path
))
let relaunched = BLEPrivateMediaReceiptStore(baseDirectory: root)
#expect(relaunched.state(for: messageID) == .tombstoned)
#expect(!FileManager.default.fileExists(atPath: original.path))
#expect(!FileManager.default.fileExists(atPath: retry.path))
}
@Test
func protectedUIPathRejectsAcceptedReceiptDeletion() throws {
let root = makeRoot("protected-ui-owner")
defer { try? FileManager.default.removeItem(at: root) }
let payload = try makePayload(in: root)
let store = BLEPrivateMediaReceiptStore(baseDirectory: root)
#expect(store.commitAccepted(
messageID: messageID,
storedURL: payload
))
#expect(!store.recordDeleted(
messageIDs: [messageID],
protectedPayloadRelativePaths: [
"images/incoming/image.jpg"
]
))
#expect(store.state(for: messageID) == .accepted(payload))
#expect(FileManager.default.fileExists(atPath: payload.path))
}
@Test
func pathlessNewDeletionFailsWithoutChangingReceiverState() {
let root = makeRoot("pathless-delete")
defer { try? FileManager.default.removeItem(at: root) }
let store = BLEPrivateMediaReceiptStore(baseDirectory: root)
#expect(!store.recordDeleted(messageID: messageID))
#expect(store.state(for: messageID) == .absent)
#expect(!FileManager.default.fileExists(
atPath: deletionJournal(in: root).path
))
}
@Test
func completedTombstoneNeverDeletesReusedPayloadPath() throws {
let root = makeRoot("path-reuse")
defer { try? FileManager.default.removeItem(at: root) }
let original = try makePayload(in: root)
let store = BLEPrivateMediaReceiptStore(baseDirectory: root)
#expect(store.commitAccepted(
messageID: messageID,
storedURL: original
))
#expect(store.recordDeleted(messageID: messageID))
#expect(!FileManager.default.fileExists(atPath: original.path))
let reused = try makePayload(in: root)
#expect(store.commitAccepted(
messageID: secondMessageID,
storedURL: reused
))
#expect(store.state(for: messageID) == .tombstoned)
#expect(FileManager.default.fileExists(atPath: reused.path))
let relaunched = BLEPrivateMediaReceiptStore(baseDirectory: root)
#expect(relaunched.state(for: messageID) == .tombstoned)
#expect(FileManager.default.fileExists(atPath: reused.path))
#expect(
relaunched.state(for: secondMessageID) == .accepted(reused)
)
}
@Test
func expiredLegacyPathfulTombstoneDoesNotDeleteAcceptedOwner() throws {
let root = makeRoot("legacy-path-conflict")
defer { try? FileManager.default.removeItem(at: root) }
let payload = try makePayload(in: root)
let receiptDirectory = receiptRecord(in: root)
.deletingLastPathComponent()
try FileManager.default.createDirectory(
at: receiptDirectory,
withIntermediateDirectories: true
)
let recordedAt = Date(timeIntervalSince1970: 3_000)
try JSONEncoder().encode(ReceiptFixture(
kind: "tombstone",
relativePath: "images/incoming/image.jpg",
recordedAt: recordedAt
)).write(
to: receiptRecord(in: root),
options: .atomic
)
try JSONEncoder().encode(ReceiptFixture(
kind: "accepted",
relativePath: "images/incoming/image.jpg",
recordedAt: recordedAt
)).write(
to: receiptRecord(
in: root,
messageID: secondMessageID
),
options: .atomic
)
let store = BLEPrivateMediaReceiptStore(
baseDirectory: root,
ttl: 1,
now: { recordedAt.addingTimeInterval(2) }
)
#expect(store.state(for: messageID) == .absent)
#expect(FileManager.default.fileExists(atPath: payload.path))
#expect(
store.state(for: secondMessageID) == .accepted(payload)
)
#expect(FileManager.default.fileExists(atPath: payload.path))
}
@Test
func expiredLegacyPathfulTombstonePreservesAmbiguousPayload() throws {
let root = makeRoot("legacy-expired-cleanup")
defer { try? FileManager.default.removeItem(at: root) }
let payload = try makePayload(in: root)
let receiptURL = receiptRecord(in: root)
try FileManager.default.createDirectory(
at: receiptURL.deletingLastPathComponent(),
withIntermediateDirectories: true
)
let recordedAt = Date(timeIntervalSince1970: 3_000)
try JSONEncoder().encode(ReceiptFixture(
kind: "tombstone",
relativePath: "images/incoming/image.jpg",
recordedAt: recordedAt
)).write(to: receiptURL, options: .atomic)
let store = BLEPrivateMediaReceiptStore(
baseDirectory: root,
ttl: 1,
now: { recordedAt.addingTimeInterval(2) }
)
#expect(store.state(for: messageID) == .absent)
#expect(FileManager.default.fileExists(atPath: payload.path))
#expect(!FileManager.default.fileExists(atPath: receiptURL.path))
}
@Test
func deletionJournalNeverRecursivelyRemovesDirectoryTarget() throws {
let root = makeRoot("journal-directory")
defer { try? FileManager.default.removeItem(at: root) }
let directory = root.appendingPathComponent(
"files/images/incoming/archive",
isDirectory: true
)
try FileManager.default.createDirectory(
at: directory,
withIntermediateDirectories: true
)
let child = directory.appendingPathComponent("child.jpg")
try Data([0x01]).write(to: child)
let receiptDirectory = receiptRecord(in: root)
.deletingLastPathComponent()
try FileManager.default.createDirectory(
at: receiptDirectory,
withIntermediateDirectories: true
)
#expect(!BLEPrivateMediaReceiptStore(
baseDirectory: root
).recordDeleted(
messageIDs: [messageID],
payloadRelativePaths: [
messageID: "images/incoming/archive"
]
))
#expect(!FileManager.default.fileExists(
atPath: deletionJournal(in: root).path
))
try JSONEncoder().encode(JournalFixture(
version: 1,
entries: [messageID: JournalEntryFixture(
relativePaths: ["images/incoming/archive"],
recordedAt: Date()
)]
)).write(to: deletionJournal(in: root), options: .atomic)
let store = BLEPrivateMediaReceiptStore(baseDirectory: root)
#expect(store.state(for: messageID) == .tombstoned)
#expect(FileManager.default.fileExists(atPath: directory.path))
#expect(FileManager.default.fileExists(atPath: child.path))
#expect(FileManager.default.fileExists(
atPath: deletionJournal(in: root).path
))
}
@Test
func corruptDeletionJournalFailsClosedWithoutRemovingPayload() throws {
let root = makeRoot("corrupt-journal")
defer { try? FileManager.default.removeItem(at: root) }
let payload = try makePayload(in: root)
#expect(BLEPrivateMediaReceiptStore(
baseDirectory: root
).commitAccepted(
messageID: messageID,
storedURL: payload
))
let journal = deletionJournal(in: root)
try Data("{not-json".utf8).write(to: journal, options: .atomic)
let relaunched = BLEPrivateMediaReceiptStore(baseDirectory: root)
#expect(relaunched.state(for: messageID) == .unavailable)
#expect(!relaunched.commitAccepted(
messageID: messageID,
storedURL: payload
))
#expect(FileManager.default.fileExists(atPath: payload.path))
#expect(try Data(contentsOf: journal) == Data("{not-json".utf8))
}
@Test
func unreleasedAggregateLedgerIsIgnoredAndLeftUntouched() throws {
let root = makeRoot("no-legacy-migration")
defer { try? FileManager.default.removeItem(at: root) }
let files = root.appendingPathComponent("files", isDirectory: true)
try FileManager.default.createDirectory(
at: files,
withIntermediateDirectories: true
)
let legacy = files.appendingPathComponent(
".private-media-receipts.json",
isDirectory: false
)
let bytes = Data(
#"{"entries":{"media-00112233445566778899aabbccddeeff":{"relativePath":"images/incoming/old.jpg","acceptedAt":0}}}"#
.utf8
)
try bytes.write(to: legacy, options: .atomic)
let store = BLEPrivateMediaReceiptStore(baseDirectory: root)
#expect(store.state(for: messageID) == .absent)
#expect(try Data(contentsOf: legacy) == bytes)
}
private func makeRoot(_ label: String) -> URL {
FileManager.default.temporaryDirectory.appendingPathComponent(
"private-media-receipt-\(label)-\(UUID().uuidString)",
isDirectory: true
)
}
private func makePayload(
in root: URL,
name: String = "image.jpg"
) throws -> URL {
let directory = root.appendingPathComponent(
"files/images/incoming",
isDirectory: true
)
try FileManager.default.createDirectory(
at: directory,
withIntermediateDirectories: true
)
let payload = directory.appendingPathComponent(name)
try Data([0xFF, 0xD8, 0xFF, 0xD9]).write(to: payload)
return payload
}
private func receiptRecord(
in root: URL,
messageID requestedMessageID: String? = nil
) -> URL {
root
.appendingPathComponent(
"files/.private-media-receipts",
isDirectory: true
)
.appendingPathComponent(requestedMessageID ?? messageID)
.appendingPathExtension("json")
}
private func deletionJournal(in root: URL) -> URL {
root
.appendingPathComponent(
"files/.private-media-receipts",
isDirectory: true
)
.appendingPathComponent(".deletion-journal.json")
}
}
@@ -1344,6 +1344,89 @@ struct NoiseEncryptionServiceTests {
}
}
@Test("Responder completion state spans ordinary XX message three")
func responderCompletionStateTracksOrdinaryHandshake() throws {
let alice = NoiseEncryptionService(keychain: MockKeychain())
let bob = NoiseEncryptionService(keychain: MockKeychain())
let alicePeerID = PeerID(
publicKey: alice.getStaticPublicKeyData()
)
let bobPeerID = PeerID(publicKey: bob.getStaticPublicKeyData())
let message1 = try alice.initiateHandshake(with: bobPeerID)
#expect(
!bob.isAwaitingResponderHandshakeCompletion(with: alicePeerID)
)
let message2 = try #require(
try bob.processHandshakeMessage(
from: alicePeerID,
message: message1
)
)
#expect(
bob.isAwaitingResponderHandshakeCompletion(with: alicePeerID)
)
let message3 = try #require(
try alice.processHandshakeMessage(
from: bobPeerID,
message: message2
)
)
#expect(
bob.isAwaitingResponderHandshakeCompletion(with: alicePeerID)
)
_ = try bob.processHandshakeMessage(
from: alicePeerID,
message: message3
)
#expect(
!bob.isAwaitingResponderHandshakeCompletion(with: alicePeerID)
)
}
@Test("Transport readiness rejection spends no message budget")
func transportReadinessRejectionSpendsNoMessageBudget() throws {
let alice = NoiseEncryptionService(keychain: MockKeychain())
let bob = NoiseEncryptionService(keychain: MockKeychain())
let alicePeerID = PeerID(
publicKey: alice.getStaticPublicKeyData()
)
let bobPeerID = PeerID(publicKey: bob.getStaticPublicKeyData())
try establishSessions(alice: alice, bob: bob)
let plaintext = Data([
NoisePayloadType.privateMessage.rawValue,
0xAB, 0xCD
])
let ciphertext = try alice.encrypt(plaintext, for: bobPeerID)
for _ in 0...NoiseSecurityConstants.maxMessagesPerSecond {
do {
_ = try bob.decryptWithSessionGeneration(
ciphertext,
from: alicePeerID,
establishedGenerationIsReady: { _ in false }
)
Issue.record(
"Expected transport generation readiness rejection"
)
} catch NoiseEncryptionError.transportGenerationNotReady {
// Expected: authorization and nonce mutation are both later.
} catch {
Issue.record("Unexpected readiness error: \(error)")
}
}
let decrypted = try bob.decryptWithSessionGeneration(
ciphertext,
from: alicePeerID,
establishedGenerationIsReady: { _ in true }
)
#expect(decrypted.plaintext == plaintext)
}
@Test("NoiseMessage JSON and binary encoding round-trip")
func noiseMessageRoundTrips() throws {
let message = NoiseMessage(
@@ -267,6 +267,588 @@ final class NostrRelayManagerTests: XCTestCase {
XCTAssertEqual(context.manager.debugPendingMessageQueueCount, TransportConfig.nostrPendingSendQueueCap)
}
func test_privateEnvelopeBatchEvictsEphemeralTrafficAndRemainsAtomic() async throws {
let relayURL = "wss://private-batch-priority.example"
let context = makeContext(
permission: .denied,
userTorEnabled: true,
torEnforced: true,
torIsReady: false
)
var ephemeralIDs: [String] = []
for i in 0..<(TransportConfig.nostrPendingSendQueueCap - 1) {
let event = try makeSignedEvent(
content: "ephemeral-\(i)",
kind: .ephemeralEvent
)
ephemeralIDs.append(event.id)
context.manager.sendEvent(event, to: [relayURL])
}
let regular = try makeSignedEvent(content: "regular survives")
context.manager.sendEvent(regular, to: [relayURL])
XCTAssertEqual(
context.manager.debugPendingMessageQueueCount,
TransportConfig.nostrPendingSendQueueCap
)
let primary = try makeSignedEvent(content: "primary", kind: .privateEnvelope)
let legacy = try makeSignedEvent(content: "legacy", kind: .legacyNIP59GiftWrap)
XCTAssertTrue(context.manager.sendPrivateEnvelopeBatch([primary, legacy], to: [relayURL]))
let batches = context.manager.debugPendingMessageQueueEventIDsByBatch
let allIDs = Set(batches.flatMap { $0 })
XCTAssertEqual(
context.manager.debugPendingMessageQueueCount,
TransportConfig.nostrPendingSendQueueCap
)
XCTAssertTrue(batches.contains([primary.id, legacy.id]))
XCTAssertTrue(allIDs.contains(regular.id))
XCTAssertFalse(allIDs.contains(ephemeralIDs[0]))
XCTAssertFalse(allIDs.contains(ephemeralIDs[1]))
// Later low-priority traffic may evict another ephemeral event, but
// never one half (or both halves) of the protected private batch.
let lateEphemeral = try makeSignedEvent(content: "late", kind: .geohashPresence)
context.manager.sendEvent(lateEphemeral, to: [relayURL])
XCTAssertTrue(
context.manager.debugPendingMessageQueueEventIDsByBatch
.contains([primary.id, legacy.id])
)
}
func test_privateEnvelopeBatchDoesNotWriteStaleSocketUntilTorRecovers() async throws {
let relayURL = "wss://private-batch-tor-gate.example"
let context = makeContext(
permission: .denied,
userTorEnabled: true,
torEnforced: true,
torIsReady: true
)
context.manager.ensureConnections(to: [relayURL])
let connected = await waitUntil {
context.manager.relays.first(where: { $0.url == relayURL })?.isConnected == true
}
XCTAssertTrue(connected)
let connection = try XCTUnwrap(context.sessionFactory.latestConnection(for: relayURL))
context.torWaiter.isReady = false
let primary = try makeSignedEvent(content: "primary", kind: .privateEnvelope)
let legacy = try makeSignedEvent(content: "legacy", kind: .legacyNIP59GiftWrap)
XCTAssertTrue(context.manager.sendPrivateEnvelopeBatch([primary, legacy], to: [relayURL]))
try? await Task.sleep(nanoseconds: 20_000_000)
XCTAssertTrue(connection.sentStrings.isEmpty)
XCTAssertEqual(context.manager.debugPendingMessageQueueCount, 2)
XCTAssertEqual(context.torWaiter.awaitCallCount, 1)
context.torWaiter.resolve(true)
let flushed = await waitUntil {
connection.sentStrings.count == 2
}
XCTAssertTrue(flushed)
XCTAssertEqual(context.manager.debugPendingMessageQueueCount, 2)
try await emitAcceptedPair([primary, legacy], on: connection)
let acknowledged = await waitUntil {
context.manager.debugPendingMessageQueueCount == 0
}
XCTAssertTrue(acknowledged)
}
func test_privateEnvelopeBatchPrunesTerminalRelayAfterHealthyDelivery() async throws {
let healthyURL = "wss://private-batch-healthy.example"
let deadURL = "wss://private-batch-dead.example"
let context = makeContext(permission: .denied)
context.sessionFactory.pingErrorByURL[deadURL] = NSError(
domain: NSURLErrorDomain,
code: NSURLErrorCannotFindHost
)
let primary = try makeSignedEvent(content: "primary", kind: .privateEnvelope)
let legacy = try makeSignedEvent(content: "legacy", kind: .legacyNIP59GiftWrap)
var terminalFailureCount = 0
XCTAssertTrue(context.manager.sendPrivateEnvelopeBatch(
[primary, legacy],
to: [healthyURL, deadURL],
terminalFailure: { terminalFailureCount += 1 }
))
let healthyConnection = try XCTUnwrap(
context.sessionFactory.latestConnection(for: healthyURL)
)
let written = await waitUntil {
healthyConnection.sentStrings.count == 2
}
XCTAssertTrue(written)
XCTAssertEqual(context.manager.debugPendingMessageQueueCount, 2)
try await emitAcceptedPair([primary, legacy], on: healthyConnection)
let initiallyAcknowledged = await waitUntil {
context.manager.debugPendingMessageQueueCount == 0
}
XCTAssertTrue(initiallyAcknowledged)
XCTAssertEqual(terminalFailureCount, 0)
// The terminal target is excluded during cooldown. More than one full
// protected-capacity worth of subsequent logical sends must continue
// to drain through the healthy relay instead of wedging globally.
for _ in 0...100 {
let sentCountBefore = healthyConnection.sentStrings.count
XCTAssertTrue(context.manager.sendPrivateEnvelopeBatch(
[primary, legacy],
to: [healthyURL, deadURL]
))
let written = await waitUntil {
healthyConnection.sentStrings.count == sentCountBefore + 2
}
XCTAssertTrue(written)
try await emitAcceptedPair([primary, legacy], on: healthyConnection)
let acknowledged = await waitUntil {
context.manager.debugPendingMessageQueueCount == 0
}
XCTAssertTrue(acknowledged)
}
}
func test_privateEnvelopeBatchAllTerminalTargetsReportsWholeBatchFailure() async throws {
let deadURL = "wss://private-batch-all-dead.example"
let context = makeContext(permission: .denied)
context.sessionFactory.pingErrorByURL[deadURL] = NSError(
domain: NSURLErrorDomain,
code: NSURLErrorCannotFindHost
)
let primary = try makeSignedEvent(content: "primary", kind: .privateEnvelope)
let legacy = try makeSignedEvent(content: "legacy", kind: .legacyNIP59GiftWrap)
var terminalFailureCount = 0
XCTAssertTrue(context.manager.sendPrivateEnvelopeBatch(
[primary, legacy],
to: [deadURL],
terminalFailure: { terminalFailureCount += 1 }
))
let failed = await waitUntil {
terminalFailureCount == 1 &&
context.manager.debugPendingMessageQueueCount == 0
}
XCTAssertTrue(failed)
}
func test_privateEnvelopeBatchRejectsBeforeWritingWhenProtectedCapacityIsFull() async throws {
let stalledRelayURL = "wss://private-batch-full.example"
let connectedRelayURL = "wss://private-batch-connected.example"
let context = makeContext(
permission: .denied,
userTorEnabled: true,
torEnforced: true,
torIsReady: true,
torIsForeground: true
)
context.manager.ensureConnections(to: [connectedRelayURL])
let connected = await waitUntil {
context.manager.relays.first(where: { $0.url == connectedRelayURL })?.isConnected == true
}
XCTAssertTrue(connected)
context.torForeground.value = false
let primary = try makeSignedEvent(content: "primary", kind: .privateEnvelope)
let legacy = try makeSignedEvent(content: "legacy", kind: .legacyNIP59GiftWrap)
let pair = [primary, legacy]
for _ in 0..<(TransportConfig.nostrPendingSendQueueCap / pair.count) {
XCTAssertTrue(context.manager.sendPrivateEnvelopeBatch(pair, to: [stalledRelayURL]))
}
XCTAssertEqual(
context.manager.debugPendingMessageQueueCount,
TransportConfig.nostrPendingSendQueueCap
)
let rejectedPrimary = try makeSignedEvent(content: "rejected-primary", kind: .privateEnvelope)
let rejectedLegacy = try makeSignedEvent(content: "rejected-legacy", kind: .legacyNIP59GiftWrap)
XCTAssertFalse(
context.manager.sendPrivateEnvelopeBatch(
[rejectedPrimary, rejectedLegacy],
to: [connectedRelayURL]
)
)
try? await Task.sleep(nanoseconds: 20_000_000)
XCTAssertTrue(
context.sessionFactory.latestConnection(for: connectedRelayURL)?.sentStrings.isEmpty == true
)
let queuedIDs = Set(
context.manager.debugPendingMessageQueueEventIDsByBatch.flatMap { $0 }
)
XCTAssertFalse(queuedIDs.contains(rejectedPrimary.id))
XCTAssertFalse(queuedIDs.contains(rejectedLegacy.id))
}
func test_privateEnvelopeBatchStaysQueuedAndRetriesAfterFirstWriteFails() async throws {
try await assertPrivateEnvelopeBatchWriteFailure(
failureSequence: [NSError(domain: "send", code: 1)],
expectedFirstConnectionWrites: 1
)
}
func test_privateEnvelopeBatchStaysQueuedAndRetriesAfterSecondWriteFails() async throws {
try await assertPrivateEnvelopeBatchWriteFailure(
failureSequence: [nil, NSError(domain: "send", code: 2)],
expectedFirstConnectionWrites: 2
)
}
func test_privateEnvelopeBatchRemainsPendingUntilBothRelayOKsArrive() async throws {
let relayURL = "wss://private-batch-two-write-commit.example"
let context = makeContext(permission: .denied)
let primary = try makeSignedEvent(content: "primary", kind: .privateEnvelope)
let legacy = try makeSignedEvent(content: "legacy", kind: .legacyNIP59GiftWrap)
XCTAssertTrue(context.manager.sendPrivateEnvelopeBatch([primary, legacy], to: [relayURL]))
let connection = try XCTUnwrap(context.sessionFactory.latestConnection(for: relayURL))
connection.deferSendCompletions = true
let firstWriteStarted = await waitUntil { connection.sentStrings.count == 1 }
XCTAssertTrue(firstWriteStarted)
XCTAssertEqual(context.manager.debugPendingMessageQueueCount, 2)
connection.flushDeferredSendCompletions()
let secondWriteStarted = await waitUntil { connection.sentStrings.count == 2 }
XCTAssertTrue(secondWriteStarted)
XCTAssertEqual(context.manager.debugPendingMessageQueueCount, 2)
connection.flushDeferredSendCompletions()
try? await Task.sleep(nanoseconds: 20_000_000)
XCTAssertEqual(context.manager.debugPendingMessageQueueCount, 2)
try connection.emitOK(eventID: primary.id, success: true, reason: "accepted")
try? await Task.sleep(nanoseconds: 20_000_000)
XCTAssertEqual(context.manager.debugPendingMessageQueueCount, 2)
try connection.emitOK(eventID: legacy.id, success: true, reason: "accepted")
let committed = await waitUntil {
context.manager.debugPendingMessageQueueCount == 0
}
XCTAssertTrue(committed)
}
func test_privateEnvelopeBatchRejectedHalfReportsWholeBatchFailure() async throws {
let relayURL = "wss://private-batch-rejected-half.example"
let context = makeContext(permission: .denied)
let primary = try makeSignedEvent(content: "primary", kind: .privateEnvelope)
let legacy = try makeSignedEvent(content: "legacy", kind: .legacyNIP59GiftWrap)
var terminalFailureCount = 0
XCTAssertTrue(context.manager.sendPrivateEnvelopeBatch(
[primary, legacy],
to: [relayURL],
terminalFailure: { terminalFailureCount += 1 }
))
let connection = try XCTUnwrap(
context.sessionFactory.latestConnection(for: relayURL)
)
let written = await waitUntil { connection.sentStrings.count == 2 }
XCTAssertTrue(written)
XCTAssertEqual(context.manager.debugPendingMessageQueueCount, 2)
try connection.emitOK(eventID: primary.id, success: true, reason: "accepted")
try? await Task.sleep(nanoseconds: 20_000_000)
XCTAssertEqual(context.manager.debugPendingMessageQueueCount, 2)
XCTAssertEqual(terminalFailureCount, 0)
try connection.emitOK(eventID: legacy.id, success: false, reason: "blocked: policy")
let failed = await waitUntil {
context.manager.debugPendingMessageQueueCount == 0 &&
terminalFailureCount == 1
}
XCTAssertTrue(failed)
}
func test_privateEnvelopeBatchDuplicateOKsCountAsDurableAcceptance() async throws {
let relayURL = "wss://private-batch-duplicate.example"
let context = makeContext(permission: .denied)
let primary = try makeSignedEvent(content: "primary", kind: .privateEnvelope)
let legacy = try makeSignedEvent(content: "legacy", kind: .legacyNIP59GiftWrap)
var terminalFailureCount = 0
XCTAssertTrue(context.manager.sendPrivateEnvelopeBatch(
[primary, legacy],
to: [relayURL],
terminalFailure: { terminalFailureCount += 1 }
))
let connection = try XCTUnwrap(
context.sessionFactory.latestConnection(for: relayURL)
)
let written = await waitUntil { connection.sentStrings.count == 2 }
XCTAssertTrue(written)
for event in [primary, legacy] {
try connection.emitOK(
eventID: event.id,
success: false,
reason: " DuPlIcAtE: already have this event"
)
try? await Task.sleep(nanoseconds: 20_000_000)
}
let acknowledged = await waitUntil {
context.manager.debugPendingMessageQueueCount == 0
}
XCTAssertTrue(acknowledged)
XCTAssertEqual(terminalFailureCount, 0)
}
func test_privateEnvelopeBatchAcknowledgementTimeoutReportsWholeBatchFailure() async throws {
let relayURL = "wss://private-batch-ok-timeout.example"
let context = makeContext(permission: .denied)
let primary = try makeSignedEvent(content: "primary", kind: .privateEnvelope)
let legacy = try makeSignedEvent(content: "legacy", kind: .legacyNIP59GiftWrap)
var terminalFailureCount = 0
XCTAssertTrue(context.manager.sendPrivateEnvelopeBatch(
[primary, legacy],
to: [relayURL],
terminalFailure: { terminalFailureCount += 1 }
))
let connection = try XCTUnwrap(
context.sessionFactory.latestConnection(for: relayURL)
)
let timeoutScheduled = await waitUntil {
connection.sentStrings.count == 2 &&
context.scheduler.scheduled.contains {
$0.delay == TransportConfig.nostrConfirmedSendAckTimeoutSeconds
}
}
XCTAssertTrue(timeoutScheduled)
XCTAssertEqual(context.manager.debugPendingMessageQueueCount, 2)
NostrRelayManager.registerPendingPrivateEnvelope(id: primary.id)
NostrRelayManager.registerPendingPrivateEnvelope(id: legacy.id)
context.scheduler.runNext()
let failed = await waitUntil {
context.manager.debugPendingMessageQueueCount == 0 &&
terminalFailureCount == 1
}
XCTAssertTrue(failed)
try connection.emitOK(eventID: primary.id, success: true, reason: "late")
try? await Task.sleep(nanoseconds: 20_000_000)
XCTAssertEqual(terminalFailureCount, 1)
XCTAssertEqual(context.manager.debugPendingMessageQueueCount, 0)
XCTAssertFalse(NostrRelayManager.pendingPrivateEnvelopeIDs.contains(primary.id))
XCTAssertFalse(NostrRelayManager.pendingPrivateEnvelopeIDs.contains(legacy.id))
}
func test_privateEnvelopeBatchFastPrimaryRejectionStillWritesCompatibilityHalf() async throws {
let relayURL = "wss://private-batch-early-reject.example"
let context = makeContext(permission: .denied)
let primary = try makeSignedEvent(content: "primary", kind: .privateEnvelope)
let legacy = try makeSignedEvent(content: "legacy", kind: .legacyNIP59GiftWrap)
var terminalFailureCount = 0
XCTAssertTrue(context.manager.sendPrivateEnvelopeBatch(
[primary, legacy],
to: [relayURL],
terminalFailure: { terminalFailureCount += 1 }
))
let connection = try XCTUnwrap(
context.sessionFactory.latestConnection(for: relayURL)
)
connection.deferSendCompletions = true
let firstWriteStarted = await waitUntil { connection.sentStrings.count == 1 }
XCTAssertTrue(firstWriteStarted)
NostrRelayManager.registerPendingPrivateEnvelope(id: primary.id)
NostrRelayManager.registerPendingPrivateEnvelope(id: legacy.id)
try connection.emitOK(eventID: primary.id, success: false, reason: "invalid: rejected")
try? await Task.sleep(nanoseconds: 20_000_000)
XCTAssertEqual(context.manager.debugPendingMessageQueueCount, 2)
XCTAssertEqual(terminalFailureCount, 0)
XCTAssertEqual(connection.sentStrings.count, 1)
// Completing the primary write must attempt the legacy 1059 even
// though the relay has already rejected the provisional 1402.
connection.flushDeferredSendCompletions()
let compatibilityWriteStarted = await waitUntil {
connection.sentStrings.count == 2
}
XCTAssertTrue(compatibilityWriteStarted)
let compatibilityRequest = try XCTUnwrap(connection.sentStrings.last)
let compatibilityJSON = try XCTUnwrap(
JSONSerialization.jsonObject(
with: Data(compatibilityRequest.utf8)
) as? [Any]
)
let compatibilityEvent = try XCTUnwrap(
compatibilityJSON.dropFirst().first as? [String: Any]
)
XCTAssertEqual(
compatibilityEvent["kind"] as? Int,
NostrProtocol.EventKind.legacyNIP59GiftWrap.rawValue
)
XCTAssertEqual(compatibilityEvent["id"] as? String, legacy.id)
XCTAssertEqual(context.manager.debugPendingMessageQueueCount, 2)
XCTAssertEqual(terminalFailureCount, 0)
connection.flushDeferredSendCompletions()
let failed = await waitUntil {
context.manager.debugPendingMessageQueueCount == 0 &&
terminalFailureCount == 1
}
XCTAssertTrue(failed)
XCTAssertEqual(connection.cancelCallCount, 0)
XCTAssertEqual(
context.manager.relays.first(where: { $0.url == relayURL })?.isConnected,
true
)
XCTAssertEqual(terminalFailureCount, 1)
XCTAssertFalse(NostrRelayManager.pendingPrivateEnvelopeIDs.contains(primary.id))
XCTAssertFalse(NostrRelayManager.pendingPrivateEnvelopeIDs.contains(legacy.id))
}
func test_privateEnvelopeBatchFastRejectionThenDisconnectReplaysWholePair() async throws {
let relayURL = "wss://private-batch-early-reject-replay.example"
let context = makeContext(permission: .denied)
let primary = try makeSignedEvent(content: "primary", kind: .privateEnvelope)
let legacy = try makeSignedEvent(content: "legacy", kind: .legacyNIP59GiftWrap)
var terminalFailureCount = 0
XCTAssertTrue(context.manager.sendPrivateEnvelopeBatch(
[primary, legacy],
to: [relayURL],
terminalFailure: { terminalFailureCount += 1 }
))
let firstConnection = try XCTUnwrap(
context.sessionFactory.latestConnection(for: relayURL)
)
firstConnection.deferSendCompletions = true
let firstWriteStarted = await waitUntil {
firstConnection.sentStrings.count == 1
}
XCTAssertTrue(firstWriteStarted)
try firstConnection.emitOK(
eventID: primary.id,
success: false,
reason: "invalid: rejected"
)
try? await Task.sleep(nanoseconds: 20_000_000)
XCTAssertEqual(context.manager.debugPendingMessageQueueCount, 2)
XCTAssertEqual(terminalFailureCount, 0)
// Replacing the connection before the sibling write clears the
// attempt-scoped rejection. The durable pair must replay in full.
context.manager.disconnect()
context.manager.connect()
let replacementReady = await waitUntil {
let connections = context.sessionFactory.connectionsByURL[relayURL] ?? []
guard connections.count == 2, let replacement = connections.last else {
return false
}
return replacement.sentStrings.count == 2
}
XCTAssertTrue(replacementReady)
let replacement = try XCTUnwrap(
context.sessionFactory.latestConnection(for: relayURL)
)
try await emitAcceptedPair([primary, legacy], on: replacement)
let acknowledged = await waitUntil {
context.manager.debugPendingMessageQueueCount == 0
}
XCTAssertTrue(acknowledged)
XCTAssertEqual(terminalFailureCount, 0)
// The canceled connection's late completion cannot send its sibling
// or mutate the replacement attempt.
firstConnection.flushDeferredSendCompletions()
try? await Task.sleep(nanoseconds: 20_000_000)
XCTAssertEqual(firstConnection.sentStrings.count, 1)
XCTAssertEqual(context.manager.debugPendingMessageQueueCount, 0)
XCTAssertEqual(terminalFailureCount, 0)
}
func test_privateEnvelopeBatchDisconnectDuringWriteReplaysOnReplacementConnection() async throws {
let relayURL = "wss://private-batch-background-reconnect.example"
let context = makeContext(permission: .denied)
let primary = try makeSignedEvent(content: "primary", kind: .privateEnvelope)
let legacy = try makeSignedEvent(content: "legacy", kind: .legacyNIP59GiftWrap)
XCTAssertTrue(context.manager.sendPrivateEnvelopeBatch([primary, legacy], to: [relayURL]))
let firstConnection = try XCTUnwrap(
context.sessionFactory.latestConnection(for: relayURL)
)
firstConnection.deferSendCompletions = true
let firstWriteStarted = await waitUntil { firstConnection.sentStrings.count == 1 }
XCTAssertTrue(firstWriteStarted)
// Backgrounding cancels the socket while its first write callback is
// still outstanding. The pair must remain replayable in the queue.
context.manager.disconnect()
XCTAssertEqual(context.manager.debugPendingMessageQueueCount, 2)
context.manager.connect()
let replacementReady = await waitUntil {
let connections = context.sessionFactory.connectionsByURL[relayURL] ?? []
guard connections.count == 2, let replacement = connections.last else {
return false
}
return replacement.sentStrings.count == 2
}
XCTAssertTrue(replacementReady)
let replacement = try XCTUnwrap(
context.sessionFactory.latestConnection(for: relayURL)
)
XCTAssertEqual(context.manager.debugPendingMessageQueueCount, 2)
try await emitAcceptedPair([primary, legacy], on: replacement)
let acknowledged = await waitUntil {
context.manager.debugPendingMessageQueueCount == 0
}
XCTAssertTrue(acknowledged)
// A late success callback from the canceled socket must neither send
// the legacy half on that stale socket nor disturb the completed pair.
firstConnection.flushDeferredSendCompletions()
try? await Task.sleep(nanoseconds: 20_000_000)
XCTAssertEqual(firstConnection.sentStrings.count, 1)
XCTAssertEqual(context.manager.debugPendingMessageQueueCount, 0)
}
private func assertPrivateEnvelopeBatchWriteFailure(
failureSequence: [Error?],
expectedFirstConnectionWrites: Int
) async throws {
let relayURL = "wss://private-batch-write-failure.example"
let context = makeContext(permission: .denied)
let primary = try makeSignedEvent(content: "primary", kind: .privateEnvelope)
let legacy = try makeSignedEvent(content: "legacy", kind: .legacyNIP59GiftWrap)
XCTAssertTrue(context.manager.sendPrivateEnvelopeBatch([primary, legacy], to: [relayURL]))
let firstConnection = try XCTUnwrap(context.sessionFactory.latestConnection(for: relayURL))
firstConnection.sendErrorSequence = failureSequence
let stayedQueued = await waitUntil {
firstConnection.sentStrings.count == expectedFirstConnectionWrites &&
context.manager.debugPendingMessageQueueEventIDsByBatch.contains([primary.id, legacy.id])
}
XCTAssertTrue(stayedQueued)
XCTAssertEqual(context.manager.debugPendingMessageQueueCount, 2)
// The failed socket is disconnected with bounded backoff. Its queue
// item is reusednot re-admittedand the replacement retries both
// copies before the pair is finally removed.
XCTAssertFalse(context.scheduler.scheduled.isEmpty)
context.scheduler.runNext()
let replacementReady = await waitUntil {
guard let replacement = context.sessionFactory.latestConnection(for: relayURL),
replacement !== firstConnection else { return false }
return replacement.sentStrings.count == 2
}
XCTAssertTrue(replacementReady)
let replacement = try XCTUnwrap(
context.sessionFactory.latestConnection(for: relayURL)
)
try await emitAcceptedPair([primary, legacy], on: replacement)
let acknowledged = await waitUntil {
context.manager.debugPendingMessageQueueCount == 0
}
XCTAssertTrue(acknowledged)
}
func test_sendEvent_waitsForTorReadinessBeforeSending() async throws {
let relayURL = "wss://tor-ready.example"
let context = makeContext(permission: .denied, userTorEnabled: true, torEnforced: true, torIsReady: false)
@@ -548,6 +1130,52 @@ final class NostrRelayManagerTests: XCTestCase {
XCTAssertEqual(context.sessionFactory.latestConnection(for: relayURL)?.sentStrings.count, 1)
}
func test_subscribe_multiplePrivateEnvelopeFiltersEncodesIndependentLimits() async throws {
let relayURL = "wss://private-recovery-filters.example"
let context = makeContext(permission: .denied)
let filters = NostrFilter.privateEnvelopeFiltersFor(
pubkey: "recipient",
since: Date(timeIntervalSince1970: 1_234_567)
)
context.manager.subscribe(
filters: filters,
id: "private-recovery",
relayUrls: [relayURL],
handler: { _ in }
)
let sent = await waitUntil {
context.sessionFactory.latestConnection(for: relayURL)?.sentStrings.count == 1
}
XCTAssertTrue(sent)
let request = try XCTUnwrap(
context.sessionFactory.latestConnection(for: relayURL)?.sentStrings.first
)
let data = try XCTUnwrap(request.data(using: .utf8))
let array = try XCTUnwrap(
try JSONSerialization.jsonObject(with: data) as? [Any]
)
XCTAssertEqual(array.count, 4)
XCTAssertEqual(array[0] as? String, "REQ")
XCTAssertEqual(array[1] as? String, "private-recovery")
let encodedFilters = try [array[2], array[3]].map {
try XCTUnwrap($0 as? [String: Any])
}
XCTAssertEqual(encodedFilters.compactMap { $0["kinds"] as? [Int] }, [
[NostrProtocol.EventKind.privateEnvelope.rawValue],
[NostrProtocol.EventKind.legacyNIP59GiftWrap.rawValue]
])
for filter in encodedFilters {
XCTAssertEqual(
filter["limit"] as? Int,
TransportConfig.nostrPrivateEnvelopeFetchLimitPerKind
)
XCTAssertEqual(filter["#p"] as? [String], ["recipient"])
XCTAssertEqual(filter["since"] as? Int, 1_234_567)
}
}
func test_subscribe_coalescesDuplicateRequestsBeforeTorReadyAndDefersEOSE() async throws {
let relayURL = "wss://tor-subscribe-coalesce.example"
let context = makeContext(permission: .denied, userTorEnabled: true, torEnforced: true, torIsReady: false)
@@ -893,11 +1521,11 @@ final class NostrRelayManagerTests: XCTestCase {
XCTAssertTrue(secondDelivered)
}
func test_okMessages_clearPendingGiftWrapIDs() async throws {
func test_okMessages_clearPendingPrivateEnvelopeIDs() async throws {
let relayURL = "wss://ok.example"
let context = makeContext(permission: .denied)
let successID = "gift-wrap-success"
let failureID = "gift-wrap-failure"
let successID = "private-envelope-success"
let failureID = "private-envelope-failure"
context.manager.ensureConnections(to: [relayURL])
let connected = await waitUntil {
@@ -906,17 +1534,17 @@ final class NostrRelayManagerTests: XCTestCase {
}
XCTAssertTrue(connected)
NostrRelayManager.registerPendingGiftWrap(id: successID)
NostrRelayManager.registerPendingPrivateEnvelope(id: successID)
try context.sessionFactory.latestConnection(for: relayURL)?.emitOK(eventID: successID, success: true, reason: "ok")
let successCleared = await waitUntil {
!NostrRelayManager.pendingGiftWrapIDs.contains(successID)
!NostrRelayManager.pendingPrivateEnvelopeIDs.contains(successID)
}
XCTAssertTrue(successCleared)
NostrRelayManager.registerPendingGiftWrap(id: failureID)
NostrRelayManager.registerPendingPrivateEnvelope(id: failureID)
try context.sessionFactory.latestConnection(for: relayURL)?.emitOK(eventID: failureID, success: false, reason: "rejected")
let failureCleared = await waitUntil {
!NostrRelayManager.pendingGiftWrapIDs.contains(failureID)
!NostrRelayManager.pendingPrivateEnvelopeIDs.contains(failureID)
}
XCTAssertTrue(failureCleared)
}
@@ -1646,12 +2274,31 @@ final class NostrRelayManagerTests: XCTestCase {
return filter
}
private func makeSignedEvent(content: String) throws -> NostrEvent {
private func emitAcceptedPair(
_ events: [NostrEvent],
on connection: MockRelayConnection
) async throws {
for event in events {
try connection.emitOK(
eventID: event.id,
success: true,
reason: "accepted"
)
// Each inbound frame consumes the mock receive handler. Let the
// manager re-arm it before delivering the next relay response.
try? await Task.sleep(nanoseconds: 20_000_000)
}
}
private func makeSignedEvent(
content: String,
kind: NostrProtocol.EventKind = .textNote
) throws -> NostrEvent {
let identity = try NostrIdentity.generate()
let event = NostrEvent(
pubkey: identity.publicKeyHex,
createdAt: Date(),
kind: .textNote,
kind: kind,
tags: [],
content: content
)
@@ -1791,6 +2438,7 @@ private final class MockRelaySessionFactory: NostrRelaySessionProtocol {
private final class MockRelayConnection: NostrRelayConnectionProtocol {
private let pingError: Error?
var sendError: Error?
var sendErrorSequence: [Error?] = []
private var receiveHandler: ((Result<URLSessionWebSocketTask.Message, Error>) -> Void)?
private(set) var resumeCallCount = 0
private(set) var cancelCallCount = 0
@@ -1820,14 +2468,15 @@ private final class MockRelayConnection: NostrRelayConnectionProtocol {
}
var deferSendCompletions = false
private var deferredSendCompletions: [(Error?) -> Void] = []
private var deferredSendCompletions: [(error: Error?, completion: (Error?) -> Void)] = []
func send(_ message: URLSessionWebSocketTask.Message, completionHandler: @escaping (Error?) -> Void) {
sentMessages.append(message)
let error = sendErrorSequence.isEmpty ? sendError : sendErrorSequence.removeFirst()
if deferSendCompletions {
deferredSendCompletions.append(completionHandler)
deferredSendCompletions.append((error, completionHandler))
} else {
completionHandler(sendError)
completionHandler(error)
}
}
@@ -1835,7 +2484,7 @@ private final class MockRelayConnection: NostrRelayConnectionProtocol {
let pending = deferredSendCompletions
deferredSendCompletions = []
pending.forEach {
$0(sendError)
$0.completion($0.error)
}
}
+637 -40
View File
@@ -131,7 +131,7 @@ struct NostrTransportTests {
#expect(undeliverable)
}
@Test("Private message resolves short peer ID and emits decryptable packet")
@Test("Private message resolves short peer ID and emits both migration formats")
@MainActor
func sendPrivateMessageResolvesShortPeerID() async throws {
let keychain = MockKeychain()
@@ -153,8 +153,8 @@ struct NostrTransportTests {
favoriteStatusForNoiseKey: { _ in nil },
favoriteStatusForPeerID: { $0 == shortPeerID ? relationship : nil },
currentIdentity: { sender },
registerPendingGiftWrap: probe.recordPendingGiftWrap(id:),
sendEvent: probe.record(event:),
registerPendingPrivateEnvelope: probe.recordPendingPrivateEnvelope(id:),
sendPrivateEnvelopeBatch: { events, _ in probe.record(batch: events) },
scheduleAfter: { delay, action in
probe.enqueueScheduledAction(delay: delay, action: action)
}
@@ -164,8 +164,12 @@ struct NostrTransportTests {
transport.sendPrivateMessage("hello over nostr", to: shortPeerID, recipientNickname: "Carol", messageID: "pm-1")
let didSend = await TestHelpers.waitUntil({ probe.sentEvents.count == 1 }, timeout: 5.0)
let didSend = await TestHelpers.waitUntil({ probe.sentEvents.count == 2 }, timeout: 5.0)
#expect(didSend)
#expect(probe.sentEvents.map(\.kind) == [
NostrProtocol.EventKind.privateEnvelope.rawValue,
NostrProtocol.EventKind.legacyNIP59GiftWrap.rawValue
])
let result = try decodeEmbeddedPayload(from: probe.sentEvents[0], recipient: recipient)
let privateMessage = try decodePrivateMessage(from: result.payload)
@@ -173,7 +177,583 @@ struct NostrTransportTests {
#expect(privateMessage.messageID == "pm-1")
#expect(privateMessage.content == "hello over nostr")
#expect(result.packet.recipientID == shortPeerID.routingData)
#expect(probe.pendingGiftWrapIDs.isEmpty)
#expect(probe.pendingPrivateEnvelopeIDs.isEmpty)
}
@Test("Coordinated migration always publishes primary and compatibility envelopes")
@MainActor
func migrationAlwaysDualPublishes() async throws {
let keychain = MockKeychain()
let idBridge = NostrIdentityBridge(keychain: keychain)
let sender = try NostrIdentity.generate()
let recipient = try NostrIdentity.generate()
let noiseKey = Data((192..<224).map(UInt8.init))
let peerID = PeerID(hexData: noiseKey)
let relationship = makeRelationship(
peerNoisePublicKey: noiseKey,
peerNostrPublicKey: recipient.npub,
peerNickname: "Migration peer"
)
let migrationProbe = NostrTransportProbe()
let migrationTransport = NostrTransport(
keychain: keychain,
idBridge: idBridge,
dependencies: makeDependencies(
favoriteStatusForNoiseKey: { $0 == noiseKey ? relationship : nil },
currentIdentity: { sender },
sendPrivateEnvelopeBatch: { events, _ in migrationProbe.record(batch: events) }
)
)
migrationTransport.senderPeerID = PeerID(str: "0123456789abcdef")
migrationTransport.sendPrivateMessage(
"migration payload",
to: peerID,
recipientNickname: "Migration peer",
messageID: "migration-pm"
)
let sentPair = await TestHelpers.waitUntil(
{ migrationProbe.sentEvents.count == 2 },
timeout: 5.0
)
#expect(sentPair)
#expect(migrationProbe.sentEvents.map(\.kind) == [
NostrProtocol.EventKind.privateEnvelope.rawValue,
NostrProtocol.EventKind.legacyNIP59GiftWrap.rawValue
])
for event in migrationProbe.sentEvents {
let result = try decodeEmbeddedPayload(from: event, recipient: recipient)
let message = try decodePrivateMessage(from: result.payload)
#expect(message.messageID == "migration-pm")
#expect(message.content == "migration payload")
}
}
@Test("Rejected migration batch does not register half-delivery state")
@MainActor
func rejectedMigrationBatchRegistersNothing() async throws {
let keychain = MockKeychain()
let idBridge = NostrIdentityBridge(keychain: keychain)
let sender = try NostrIdentity.generate()
let recipient = try NostrIdentity.generate()
let probe = NostrTransportProbe()
var rejectedKinds: [Int] = []
let transport = NostrTransport(
keychain: keychain,
idBridge: idBridge,
dependencies: makeDependencies(
currentIdentity: { sender },
registerPendingPrivateEnvelope: probe.recordPendingPrivateEnvelope(id:),
sendPrivateEnvelopeBatch: { events, _ in
rejectedKinds = events.map(\.kind)
return false
}
)
)
transport.senderPeerID = PeerID(str: "0123456789abcdef")
transport.sendPrivateMessageGeohash(
content: "must stay atomic",
toRecipientHex: recipient.publicKeyHex,
from: sender,
messageID: "atomic-reject"
)
let attempted = await TestHelpers.waitUntil({ rejectedKinds.count == 2 }, timeout: 5.0)
#expect(attempted)
#expect(rejectedKinds == [
NostrProtocol.EventKind.privateEnvelope.rawValue,
NostrProtocol.EventKind.legacyNIP59GiftWrap.rawValue
])
#expect(probe.pendingPrivateEnvelopeIDs.isEmpty)
}
@Test("Rejected user message emits a visible failed-delivery event")
@MainActor
func rejectedUserMessageEmitsFailureEvent() async throws {
let keychain = MockKeychain()
let idBridge = NostrIdentityBridge(keychain: keychain)
let sender = try NostrIdentity.generate()
let recipient = try NostrIdentity.generate()
let eventProbe = NostrTransportEventProbe()
let transport = NostrTransport(
keychain: keychain,
idBridge: idBridge,
dependencies: makeDependencies(
currentIdentity: { sender },
sendPrivateEnvelopeBatch: { _, _ in false }
)
)
transport.senderPeerID = PeerID(str: "0123456789abcdef")
transport.eventDelegate = eventProbe
transport.sendPrivateMessageGeohash(
content: "must fail visibly",
toRecipientHex: recipient.publicKeyHex,
from: sender,
messageID: "visible-reject"
)
let reported = await TestHelpers.waitUntil(
{ eventProbe.failedMessageIDs == ["visible-reject"] },
timeout: 5.0
)
#expect(reported)
}
@Test("Envelope construction failure rejects visibly without publishing")
@MainActor
func envelopeConstructionFailureRejectsVisibly() async throws {
let keychain = MockKeychain()
let idBridge = NostrIdentityBridge(keychain: keychain)
let sender = try NostrIdentity.generate()
let eventProbe = NostrTransportEventProbe()
let publicationProbe = NostrTransportProbe()
let transport = NostrTransport(
keychain: keychain,
idBridge: idBridge,
dependencies: makeDependencies(
currentIdentity: { sender },
sendPrivateEnvelopeBatch: { events, _ in
publicationProbe.record(batch: events)
}
)
)
transport.senderPeerID = PeerID(str: "0123456789abcdef")
transport.eventDelegate = eventProbe
// Non-empty but invalid hex reaches envelope construction after the
// embedded BitChat packet succeeds, reproducing the throwing batch
// builder path without allocating an oversized test fixture.
let accepted = transport.sendPrivateMessageGeohash(
content: "must fail before sent",
toRecipientHex: "not-a-hex-public-key",
from: sender,
messageID: "build-reject"
)
#expect(!accepted)
#expect(publicationProbe.sentEvents.isEmpty)
#expect(eventProbe.failedMessageIDs == ["build-reject"])
}
@Test("Unencodable user message rejects visibly without publishing")
@MainActor
func unencodableUserMessageRejectsVisibly() async throws {
let keychain = MockKeychain()
let idBridge = NostrIdentityBridge(keychain: keychain)
let sender = try NostrIdentity.generate()
let recipient = try NostrIdentity.generate()
let eventProbe = NostrTransportEventProbe()
let publicationProbe = NostrTransportProbe()
let transport = NostrTransport(
keychain: keychain,
idBridge: idBridge,
dependencies: makeDependencies(
currentIdentity: { sender },
sendPrivateEnvelopeBatch: { events, _ in
publicationProbe.record(batch: events)
}
)
)
transport.senderPeerID = PeerID(str: "0123456789abcdef")
transport.eventDelegate = eventProbe
// PrivateMessagePacket uses the deployed UInt8 content length. Do not
// create a larger wire shape that released clients cannot decode.
let accepted = transport.sendPrivateMessageGeohash(
content: String(repeating: "x", count: 256),
toRecipientHex: recipient.publicKeyHex,
from: sender,
messageID: "packet-reject"
)
#expect(!accepted)
#expect(publicationProbe.sentEvents.isEmpty)
#expect(eventProbe.failedMessageIDs == ["packet-reject"])
}
@Test("Unencodable direct message emits a visible failure")
@MainActor
func unencodableDirectMessageEmitsVisibleFailure() async throws {
let keychain = MockKeychain()
let idBridge = NostrIdentityBridge(keychain: keychain)
let sender = try NostrIdentity.generate()
let recipient = try NostrIdentity.generate()
let noiseKey = Data((224..<256).map(UInt8.init))
let peerID = PeerID(hexData: noiseKey)
let relationship = makeRelationship(
peerNoisePublicKey: noiseKey,
peerNostrPublicKey: recipient.npub,
peerNickname: "Oversized peer"
)
let eventProbe = NostrTransportEventProbe()
let publicationProbe = NostrTransportProbe()
let transport = NostrTransport(
keychain: keychain,
idBridge: idBridge,
dependencies: makeDependencies(
favoriteStatusForNoiseKey: {
$0 == noiseKey ? relationship : nil
},
currentIdentity: { sender },
sendPrivateEnvelopeBatch: { events, _ in
publicationProbe.record(batch: events)
}
)
)
transport.senderPeerID = PeerID(str: "0123456789abcdef")
transport.eventDelegate = eventProbe
transport.sendPrivateMessage(
String(repeating: "x", count: 256),
to: peerID,
recipientNickname: "Oversized peer",
messageID: "direct-packet-reject"
)
let failed = await TestHelpers.waitUntil(
{
eventProbe.failedMessageIDs
== ["direct-packet-reject"]
},
timeout: 5.0
)
#expect(failed)
#expect(publicationProbe.sentEvents.isEmpty)
}
@Test("Direct message with an invalid npub emits a visible failure")
@MainActor
func invalidDirectRecipientNpubEmitsVisibleFailure() async throws {
let keychain = MockKeychain()
let idBridge = NostrIdentityBridge(keychain: keychain)
let sender = try NostrIdentity.generate()
let noiseKey = Data(repeating: 0xA5, count: 32)
let peerID = PeerID(hexData: noiseKey)
let relationship = makeRelationship(
peerNoisePublicKey: noiseKey,
peerNostrPublicKey: "not-a-valid-npub",
peerNickname: "Invalid npub peer"
)
let eventProbe = NostrTransportEventProbe()
let publicationProbe = NostrTransportProbe()
let transport = NostrTransport(
keychain: keychain,
idBridge: idBridge,
dependencies: makeDependencies(
favoriteStatusForNoiseKey: {
$0 == noiseKey ? relationship : nil
},
currentIdentity: { sender },
sendPrivateEnvelopeBatch: { events, _ in
publicationProbe.record(batch: events)
}
)
)
transport.senderPeerID = PeerID(str: "0123456789abcdef")
transport.eventDelegate = eventProbe
transport.sendPrivateMessage(
"must fail before publication",
to: peerID,
recipientNickname: "Invalid npub peer",
messageID: "invalid-npub"
)
let failed = await TestHelpers.waitUntil(
{ eventProbe.failedMessageIDs == ["invalid-npub"] },
timeout: 5.0
)
#expect(failed)
#expect(publicationProbe.sentEvents.isEmpty)
}
@Test("Direct message without a resolvable recipient emits a visible failure")
@MainActor
func missingDirectRecipientEmitsVisibleFailure() async throws {
let keychain = MockKeychain()
let idBridge = NostrIdentityBridge(keychain: keychain)
let sender = try NostrIdentity.generate()
let peerID = PeerID(hexData: Data(repeating: 0xC3, count: 32))
let eventProbe = NostrTransportEventProbe()
let publicationProbe = NostrTransportProbe()
let transport = NostrTransport(
keychain: keychain,
idBridge: idBridge,
dependencies: makeDependencies(
currentIdentity: { sender },
sendPrivateEnvelopeBatch: { events, _ in
publicationProbe.record(batch: events)
}
)
)
transport.senderPeerID = PeerID(str: "0123456789abcdef")
transport.eventDelegate = eventProbe
transport.sendPrivateMessage(
"must fail without recipient",
to: peerID,
recipientNickname: "Unknown peer",
messageID: "missing-recipient"
)
let failed = await TestHelpers.waitUntil(
{ eventProbe.failedMessageIDs == ["missing-recipient"] },
timeout: 5.0
)
#expect(failed)
#expect(publicationProbe.sentEvents.isEmpty)
}
@Test("Direct message without a current identity emits a visible failure")
@MainActor
func missingDirectSenderIdentityEmitsVisibleFailure() async throws {
let keychain = MockKeychain()
let idBridge = NostrIdentityBridge(keychain: keychain)
let recipient = try NostrIdentity.generate()
let noiseKey = Data(repeating: 0x5A, count: 32)
let peerID = PeerID(hexData: noiseKey)
let relationship = makeRelationship(
peerNoisePublicKey: noiseKey,
peerNostrPublicKey: recipient.npub,
peerNickname: "Missing identity peer"
)
let eventProbe = NostrTransportEventProbe()
let publicationProbe = NostrTransportProbe()
let transport = NostrTransport(
keychain: keychain,
idBridge: idBridge,
dependencies: makeDependencies(
favoriteStatusForNoiseKey: {
$0 == noiseKey ? relationship : nil
},
currentIdentity: { nil },
sendPrivateEnvelopeBatch: { events, _ in
publicationProbe.record(batch: events)
}
)
)
transport.senderPeerID = PeerID(str: "0123456789abcdef")
transport.eventDelegate = eventProbe
transport.sendPrivateMessage(
"must fail without identity",
to: peerID,
recipientNickname: "Missing identity peer",
messageID: "missing-identity"
)
let failed = await TestHelpers.waitUntil(
{ eventProbe.failedMessageIDs == ["missing-identity"] },
timeout: 5.0
)
#expect(failed)
#expect(publicationProbe.sentEvents.isEmpty)
}
@Test("Rejected favorite notification retains and retries the exact pair")
@MainActor
func rejectedFavoriteNotificationRetriesExactPair() async throws {
let keychain = MockKeychain()
let idBridge = NostrIdentityBridge(keychain: keychain)
let sender = try NostrIdentity.generate()
let recipient = try NostrIdentity.generate()
let noiseKey = Data((96..<128).map(UInt8.init))
let fullPeerID = PeerID(hexData: noiseKey)
let relationship = makeRelationship(
peerNoisePublicKey: noiseKey,
peerNostrPublicKey: recipient.npub,
peerNickname: "Retry favorite"
)
let probe = NostrTransportProbe()
var attempts: [[String]] = []
weak var releasedTransport: NostrTransport?
do {
let transport = NostrTransport(
keychain: keychain,
idBridge: idBridge,
dependencies: makeDependencies(
favoriteStatusForNoiseKey: { $0 == noiseKey ? relationship : nil },
currentIdentity: { sender },
sendPrivateEnvelopeBatch: { events, _ in
attempts.append(events.map(\.id))
return attempts.count > 1
},
scheduleAfter: { delay, action in
probe.enqueueScheduledAction(delay: delay, action: action)
}
)
)
transport.senderPeerID = PeerID(str: "0123456789abcdef")
releasedTransport = transport
transport.sendFavoriteNotification(to: fullPeerID, isFavorite: true)
let retryScheduled = await TestHelpers.waitUntil(
{ attempts.count == 1 && probe.scheduledActionCount == 1 },
timeout: 5.0
)
#expect(retryScheduled)
}
#expect(releasedTransport == nil)
#expect(probe.runNextScheduledAction())
let retried = await TestHelpers.waitUntil({ attempts.count == 2 }, timeout: 5.0)
#expect(retried)
#expect(attempts[0] == attempts[1])
}
@Test("Rejected delivery acknowledgement remains queued for retry")
@MainActor
func rejectedDeliveryAckRetries() async throws {
let keychain = MockKeychain()
let idBridge = NostrIdentityBridge(keychain: keychain)
let sender = try NostrIdentity.generate()
let recipient = try NostrIdentity.generate()
let noiseKey = Data((128..<160).map(UInt8.init))
let fullPeerID = PeerID(hexData: noiseKey)
let relationship = makeRelationship(
peerNoisePublicKey: noiseKey,
peerNostrPublicKey: recipient.npub,
peerNickname: "Retry ack"
)
let probe = NostrTransportProbe()
var attempts: [[String]] = []
let transport = NostrTransport(
keychain: keychain,
idBridge: idBridge,
dependencies: makeDependencies(
favoriteStatusForNoiseKey: { $0 == noiseKey ? relationship : nil },
currentIdentity: { sender },
sendPrivateEnvelopeBatch: { events, _ in
attempts.append(events.map(\.id))
return attempts.count > 1
},
scheduleAfter: { delay, action in
probe.enqueueScheduledAction(delay: delay, action: action)
}
)
)
transport.senderPeerID = PeerID(str: "0123456789abcdef")
transport.sendDeliveryAck(for: "retry-ack", to: fullPeerID)
let firstAttempt = await TestHelpers.waitUntil(
{ attempts.count == 1 && probe.scheduledActionCount >= 1 },
timeout: 5.0
)
#expect(firstAttempt)
for _ in 0..<3 where attempts.count < 2 {
_ = probe.runNextScheduledAction()
_ = await TestHelpers.waitUntil(
{ attempts.count == 2 || probe.scheduledActionCount > 0 },
timeout: 1.0
)
}
#expect(attempts.count == 2)
#expect(attempts[0] == attempts[1])
}
@Test("Control retry queue is bounded and evicted callbacks are harmless")
@MainActor
func controlRetryQueueIsBounded() async throws {
let sender = try NostrIdentity.generate()
let recipient = try NostrIdentity.generate()
let events = try NostrProtocol.createPrivateEnvelopePublicationBatch(
content: "bounded retry fixture",
recipientPubkey: recipient.publicKeyHex,
senderIdentity: sender
)
let probe = NostrTransportProbe()
var retryAttempts = 0
let queue = NostrPrivateEnvelopeRetryQueue(
sendPrivateEnvelopeBatch: { _, _ in
retryAttempts += 1
return false
},
registerPendingPrivateEnvelope: { _ in },
scheduleAfter: { delay, action in
probe.enqueueScheduledAction(delay: delay, action: action)
}
)
for index in 0...TransportConfig.nostrPrivateEnvelopeRetryQueueCap {
queue.enqueue(
key: "control-\(index)",
events: events,
registerPending: false
)
}
#expect(queue.debugPendingCount == TransportConfig.nostrPrivateEnvelopeRetryQueueCap)
#expect(!queue.debugContains(key: "control-0"))
#expect(queue.debugContains(key: "control-1"))
// The oldest callback was scheduled before eviction. Running it must
// observe the missing key and return without touching dependencies.
#expect(probe.runNextScheduledAction())
try? await Task.sleep(nanoseconds: 20_000_000)
#expect(retryAttempts == 0)
queue.removeAll()
#expect(queue.debugPendingCount == 0)
#expect(probe.runNextScheduledAction())
try? await Task.sleep(nanoseconds: 20_000_000)
#expect(retryAttempts == 0)
}
@Test("Multiple transports share one globally bounded control retry owner")
@MainActor
func multipleTransportsShareControlRetryQueue() async throws {
let keychain = MockKeychain()
let idBridge = NostrIdentityBridge(keychain: keychain)
let sender = try NostrIdentity.generate()
let recipient = try NostrIdentity.generate()
let events = try NostrProtocol.createPrivateEnvelopePublicationBatch(
content: "shared retry fixture",
recipientPubkey: recipient.publicKeyHex,
senderIdentity: sender
)
let probe = NostrTransportProbe()
var retryAttempts = 0
let sharedQueue = NostrPrivateEnvelopeRetryQueue(
sendPrivateEnvelopeBatch: { _, _ in
retryAttempts += 1
return false
},
registerPendingPrivateEnvelope: { _ in },
scheduleAfter: { delay, action in
probe.enqueueScheduledAction(delay: delay, action: action)
}
)
let first = NostrTransport(
keychain: keychain,
idBridge: idBridge,
dependencies: makeDependencies(envelopeRetryQueue: sharedQueue)
)
let second = NostrTransport(
keychain: keychain,
idBridge: idBridge,
dependencies: makeDependencies(envelopeRetryQueue: sharedQueue)
)
first.debugEnqueueControlRetry(key: "shared", events: events)
second.debugEnqueueControlRetry(key: "shared", events: events)
#expect(first.debugControlRetryCount == 1)
#expect(second.debugControlRetryCount == 1)
for index in 0...TransportConfig.nostrPrivateEnvelopeRetryQueueCap {
let transport = index.isMultiple(of: 2) ? first : second
transport.debugEnqueueControlRetry(key: "global-\(index)", events: events)
}
#expect(first.debugControlRetryCount == TransportConfig.nostrPrivateEnvelopeRetryQueueCap)
#expect(second.debugControlRetryCount == TransportConfig.nostrPrivateEnvelopeRetryQueueCap)
// The first scheduled callback belongs to the now-evicted shared key.
#expect(probe.runNextScheduledAction())
try? await Task.sleep(nanoseconds: 20_000_000)
#expect(retryAttempts == 0)
}
@Test("Favorite notification embeds current npub")
@@ -198,8 +778,8 @@ struct NostrTransportTests {
favoriteStatusForNoiseKey: { $0 == noiseKey ? relationship : nil },
favoriteStatusForPeerID: { _ in nil },
currentIdentity: { sender },
registerPendingGiftWrap: probe.recordPendingGiftWrap(id:),
sendEvent: probe.record(event:),
registerPendingPrivateEnvelope: probe.recordPendingPrivateEnvelope(id:),
sendPrivateEnvelopeBatch: { events, _ in probe.record(batch: events) },
scheduleAfter: { delay, action in
probe.enqueueScheduledAction(delay: delay, action: action)
}
@@ -209,7 +789,7 @@ struct NostrTransportTests {
transport.sendFavoriteNotification(to: fullPeerID, isFavorite: true)
let didSend = await TestHelpers.waitUntil({ probe.sentEvents.count == 1 }, timeout: 5.0)
let didSend = await TestHelpers.waitUntil({ probe.sentEvents.count == 2 }, timeout: 5.0)
#expect(didSend)
let result = try decodeEmbeddedPayload(from: probe.sentEvents[0], recipient: recipient)
let privateMessage = try decodePrivateMessage(from: result.payload)
@@ -239,8 +819,8 @@ struct NostrTransportTests {
favoriteStatusForNoiseKey: { $0 == noiseKey ? relationship : nil },
favoriteStatusForPeerID: { _ in nil },
currentIdentity: { sender },
registerPendingGiftWrap: probe.recordPendingGiftWrap(id:),
sendEvent: probe.record(event:),
registerPendingPrivateEnvelope: probe.recordPendingPrivateEnvelope(id:),
sendPrivateEnvelopeBatch: { events, _ in probe.record(batch: events) },
scheduleAfter: { delay, action in
probe.enqueueScheduledAction(delay: delay, action: action)
}
@@ -250,7 +830,7 @@ struct NostrTransportTests {
transport.sendDeliveryAck(for: "ack-1", to: fullPeerID)
let didSend = await TestHelpers.waitUntil({ probe.sentEvents.count == 1 }, timeout: 5.0)
let didSend = await TestHelpers.waitUntil({ probe.sentEvents.count == 2 }, timeout: 5.0)
#expect(didSend)
let result = try decodeEmbeddedPayload(from: probe.sentEvents[0], recipient: recipient)
@@ -259,9 +839,9 @@ struct NostrTransportTests {
#expect(result.packet.recipientID == fullPeerID.toShort().routingData)
}
@Test("Geohash private message registers pending gift wrap")
@Test("Geohash private message registers pending private envelope")
@MainActor
func sendPrivateMessageGeohashRegistersPendingGiftWrap() async throws {
func sendPrivateMessageGeohashRegistersPendingPrivateEnvelope() async throws {
let keychain = MockKeychain()
let idBridge = NostrIdentityBridge(keychain: keychain)
let sender = try NostrIdentity.generate()
@@ -272,8 +852,8 @@ struct NostrTransportTests {
idBridge: idBridge,
dependencies: makeDependencies(
currentIdentity: { sender },
registerPendingGiftWrap: probe.recordPendingGiftWrap(id:),
sendEvent: probe.record(event:),
registerPendingPrivateEnvelope: probe.recordPendingPrivateEnvelope(id:),
sendPrivateEnvelopeBatch: { events, _ in probe.record(batch: events) },
scheduleAfter: { delay, action in
probe.enqueueScheduledAction(delay: delay, action: action)
}
@@ -288,7 +868,7 @@ struct NostrTransportTests {
messageID: "geo-1"
)
let didSend = await TestHelpers.waitUntil({ probe.sentEvents.count == 1 }, timeout: 5.0)
let didSend = await TestHelpers.waitUntil({ probe.sentEvents.count == 2 }, timeout: 5.0)
#expect(didSend)
let event = probe.sentEvents[0]
let result = try decodeEmbeddedPayload(from: event, recipient: recipient)
@@ -297,7 +877,7 @@ struct NostrTransportTests {
#expect(privateMessage.messageID == "geo-1")
#expect(privateMessage.content == "geo hello")
#expect(result.packet.recipientID == nil)
#expect(probe.pendingGiftWrapIDs == [event.id])
#expect(probe.pendingPrivateEnvelopeIDs == probe.sentEvents.map(\.id))
}
@Test("Read receipt queue sends in order and waits for scheduler")
@@ -322,8 +902,8 @@ struct NostrTransportTests {
favoriteStatusForNoiseKey: { $0 == noiseKey ? relationship : nil },
favoriteStatusForPeerID: { _ in nil },
currentIdentity: { sender },
registerPendingGiftWrap: probe.recordPendingGiftWrap(id:),
sendEvent: probe.record(event:),
registerPendingPrivateEnvelope: probe.recordPendingPrivateEnvelope(id:),
sendPrivateEnvelopeBatch: { events, _ in probe.record(batch: events) },
scheduleAfter: { delay, action in
probe.enqueueScheduledAction(delay: delay, action: action)
}
@@ -338,20 +918,20 @@ struct NostrTransportTests {
transport.sendReadReceipt(second, to: fullPeerID)
let readReceiptTimeout: TimeInterval = 5.0
let sentFirst = await TestHelpers.waitUntil({ probe.sentEvents.count >= 1 }, timeout: readReceiptTimeout)
try #require(sentFirst, "Expected first queued read receipt event")
let sentFirst = await TestHelpers.waitUntil({ probe.sentEvents.count == 2 }, timeout: readReceiptTimeout)
try #require(sentFirst, "Expected first queued read receipt pair")
let scheduledThrottle = await TestHelpers.waitUntil({ probe.scheduledActionCount == 1 }, timeout: readReceiptTimeout)
try #require(scheduledThrottle, "Expected queued throttle action after first read receipt")
let firstEvent = try #require(probe.sentEvents.first, "Expected first queued read receipt event")
let firstEvent = try #require(probe.sentEvents.first, "Expected first queued read receipt pair")
let firstPayload = try decodeEmbeddedPayload(from: firstEvent, recipient: recipient).payload
#expect(firstPayload.type == .readReceipt)
#expect(String(data: firstPayload.data, encoding: .utf8) == "read-1")
try #require(probe.runNextScheduledAction(), "Expected queued throttle action after first read receipt")
let sentSecond = await TestHelpers.waitUntil({ probe.sentEvents.count >= 2 }, timeout: readReceiptTimeout)
try #require(sentSecond, "Expected second read receipt after running throttle action")
let secondEvent = try #require(probe.sentEvents.last, "Expected second queued read receipt event")
let sentSecond = await TestHelpers.waitUntil({ probe.sentEvents.count == 4 }, timeout: readReceiptTimeout)
try #require(sentSecond, "Expected second read receipt pair after running throttle action")
let secondEvent = probe.sentEvents[2]
let secondPayload = try decodeEmbeddedPayload(from: secondEvent, recipient: recipient).payload
#expect(secondPayload.type == .readReceipt)
#expect(String(data: secondPayload.data, encoding: .utf8) == "read-2")
@@ -419,10 +999,14 @@ struct NostrTransportTests {
favoriteStatusForNoiseKey: @escaping @MainActor (Data) -> FavoriteRelationship? = { _ in nil },
favoriteStatusForPeerID: @escaping @MainActor (PeerID) -> FavoriteRelationship? = { _ in nil },
currentIdentity: @escaping @MainActor () throws -> NostrIdentity? = { nil },
registerPendingGiftWrap: @escaping @MainActor (String) -> Void = { _ in },
sendEvent: @escaping @MainActor (NostrEvent) -> Void = { _ in },
registerPendingPrivateEnvelope: @escaping @MainActor (String) -> Void = { _ in },
sendPrivateEnvelopeBatch: @escaping @MainActor (
[NostrEvent],
@escaping @MainActor () -> Void
) -> Bool = { _, _ in true },
scheduleAfter: @escaping @Sendable (TimeInterval, @escaping @Sendable () -> Void) -> Void = { _, _ in },
relayConnectivity: @escaping @MainActor () -> AnyPublisher<Bool, Never> = { Just(false).eraseToAnyPublisher() }
relayConnectivity: @escaping @MainActor () -> AnyPublisher<Bool, Never> = { Just(false).eraseToAnyPublisher() },
envelopeRetryQueue: NostrPrivateEnvelopeRetryQueue? = nil
) -> NostrTransport.Dependencies {
NostrTransport.Dependencies(
notificationCenter: notificationCenter,
@@ -430,10 +1014,11 @@ struct NostrTransportTests {
favoriteStatusForNoiseKey: favoriteStatusForNoiseKey,
favoriteStatusForPeerID: favoriteStatusForPeerID,
currentIdentity: currentIdentity,
registerPendingGiftWrap: registerPendingGiftWrap,
sendEvent: sendEvent,
registerPendingPrivateEnvelope: registerPendingPrivateEnvelope,
sendPrivateEnvelopeBatch: sendPrivateEnvelopeBatch,
scheduleAfter: scheduleAfter,
relayConnectivity: relayConnectivity
relayConnectivity: relayConnectivity,
envelopeRetryQueue: envelopeRetryQueue
)
}
@@ -457,8 +1042,8 @@ struct NostrTransportTests {
from event: NostrEvent,
recipient: NostrIdentity
) throws -> (packet: BitchatPacket, payload: NoisePayload, senderPubkey: String) {
let (content, senderPubkey, _) = try NostrProtocol.decryptPrivateMessage(
giftWrap: event,
let (content, senderPubkey, _) = try NostrProtocol.decryptPrivateEnvelope(
envelope: event,
recipientIdentity: recipient
)
guard content.hasPrefix("bitchat1:") else {
@@ -488,6 +1073,17 @@ private enum NostrTransportTestError: Error {
case invalidPrivateMessage
}
@MainActor
private final class NostrTransportEventProbe: TransportEventDelegate {
private(set) var failedMessageIDs: [String] = []
func didReceiveTransportEvent(_ event: TransportEvent) {
guard case .messageDeliveryStatusUpdated(let messageID, let status) = event,
case .failed = status else { return }
failedMessageIDs.append(messageID)
}
}
private func base64URLDecode(_ string: String) -> Data? {
var candidate = string
let padding = (4 - (candidate.count % 4)) % 4
@@ -503,7 +1099,7 @@ private func base64URLDecode(_ string: String) -> Data? {
private final class NostrTransportProbe: @unchecked Sendable {
private let lock = NSLock()
private var sentEventsStorage: [NostrEvent] = []
private var pendingGiftWrapIDsStorage: [String] = []
private var pendingPrivateEnvelopeIDsStorage: [String] = []
private var scheduledActionsStorage: [(@Sendable () -> Void)] = []
var sentEvents: [NostrEvent] {
@@ -512,10 +1108,10 @@ private final class NostrTransportProbe: @unchecked Sendable {
return sentEventsStorage
}
var pendingGiftWrapIDs: [String] {
var pendingPrivateEnvelopeIDs: [String] {
lock.lock()
defer { lock.unlock() }
return pendingGiftWrapIDsStorage
return pendingPrivateEnvelopeIDsStorage
}
var scheduledActionCount: Int {
@@ -524,15 +1120,16 @@ private final class NostrTransportProbe: @unchecked Sendable {
return scheduledActionsStorage.count
}
func record(event: NostrEvent) {
func record(batch: [NostrEvent]) -> Bool {
lock.lock()
sentEventsStorage.append(event)
sentEventsStorage.append(contentsOf: batch)
lock.unlock()
return true
}
func recordPendingGiftWrap(id: String) {
func recordPendingPrivateEnvelope(id: String) {
lock.lock()
pendingGiftWrapIDsStorage.append(id)
pendingPrivateEnvelopeIDsStorage.append(id)
lock.unlock()
}
+7
View File
@@ -28,6 +28,13 @@ peer's Noise session before BLE fragmentation.
`0x21`. A valid bit-8 proof selects Noise `0x20`; a valid no-bit proof or a
no-proof timeout reaches the explicit legacy-consent path for an unpinned
peer. No timeout automatically sends raw bytes.
- `PeerCapabilities.privateMediaReceipts` is bit 9. Its exact-session
authenticated proof enables bounded sender-side automatic retry; a public
announce never does. It does not replace bit 8: encrypted `0x20` media from
bit-8-only prior iOS clients keeps the same deterministic stable ID and
delivery ACK. Receivers durably commit that ID before UI delivery or ACK, so
a lost proof followed by a later bit-9 retry cannot create a second,
random-ID bubble.
- An unpinned peer with a stable Noise key but without that capability is
eligible for one signed, directed
`fileTransfer`, matching the pre-migration wire form used by older iOS and
+2 -2
View File
@@ -54,9 +54,9 @@ Public archives contain content already intended for public mesh/board distribut
## Nostr and Mesh Bridge
- NIP-17/NIP-44 v2 private fallback protects plaintext with secp256k1 key agreement, HKDF-SHA256, and XChaCha20-Poly1305. Relays still see event and network metadata.
- BitChat's proprietary private-envelope fallback protects plaintext with secp256k1 key agreement, HKDF-SHA256 with a BitChat-specific domain separator, and XChaCha20-Poly1305. It is not NIP-17, NIP-44, or NIP-59 compatible and does not provide forward secrecy against later compromise of the recipient's static Nostr private key. Relays still see the recipient public-key tag, event timing and size, and network metadata.
- Bridge courier drops use a throwaway publisher key, an opaque Noise-sealed envelope, and a day-rotating recipient tag. Only a party already holding the recipient's Noise static key can compute candidate tags.
- Relay publication is considered successful only after an explicit NIP-20 `OK true` from at least one target relay. Rejected, disconnected, timed-out, or merely socket-written events stay retryable.
- Relay publication is considered successful only after an explicit NIP-01 `OK true` from at least one target relay. Rejected, disconnected, timed-out, or merely socket-written events stay retryable.
- When mesh bridge is enabled, public mesh messages not marked “nearby only” are signed under a per-cell Nostr identity and published to a neighborhood rendezvous geohash. Presence and public bridge traffic therefore expose a coarse area to relays and participants.
- A bridge gateway can carry signed bridge/location events and opaque courier drops for nearby mesh-only peers. It cannot validly publish a neighbor's radio-only message because the author must first sign the bridge event.
@@ -28,6 +28,13 @@ public struct PeerCapabilities: OptionSet, Equatable, Hashable, Sendable {
/// before outer BLE fragmentation. Peers that omit this bit require the
/// signed directed raw-file migration fallback.
public static let privateMedia = PeerCapabilities(rawValue: 1 << 8)
/// Stable private-media IDs are durably deduplicated by the receiver and
/// correlated delivery/read receipts permit bounded automatic resend.
///
/// Bit 8 remains the encrypted-media compatibility contract. Bit 9 only
/// enables sender-side automatic retry after exact-session proof.
public static let privateMediaReceipts =
PeerCapabilities(rawValue: 1 << 9)
/// Reserved for test builds that briefly advertised non-destructive Noise
/// replacement. Current clients intentionally do not advertise or act on
/// this bit; keep it decodable so the wire assignment is never reused.
@@ -18,14 +18,30 @@ struct PeerCapabilitiesTests {
#expect(PeerCapabilities.meshDiagnostics.encoded() == Data([0x40]))
#expect(PeerCapabilities.privateMedia.encoded() == Data([0x00, 0x01]))
let high = PeerCapabilities(rawValue: 1 << 9)
#expect(high.encoded() == Data([0x00, 0x02]))
#expect(
PeerCapabilities.privateMediaReceipts.encoded()
== Data([0x00, 0x02])
)
#expect(
PeerCapabilities.nonDestructiveNoiseReplacement.encoded()
== Data([0x00, 0x04])
)
let all: PeerCapabilities = [.prekeys, .wifiBulk, .gateway, .groups, .board, .vouch, .meshDiagnostics, .privateMedia]
let high = PeerCapabilities(rawValue: 1 << 11)
#expect(high.encoded() == Data([0x00, 0x08]))
let all: PeerCapabilities = [
.prekeys,
.wifiBulk,
.gateway,
.groups,
.board,
.vouch,
.meshDiagnostics,
.privateMedia,
.privateMediaReceipts,
.nonDestructiveNoiseReplacement
]
#expect(PeerCapabilities(encoded: all.encoded()) == all)
#expect(PeerCapabilities(encoded: high.encoded()) == high)
#expect(PeerCapabilities(encoded: PeerCapabilities([]).encoded()) == [])