Files
bitchat/bitchatTests/GossipSyncManagerTests.swift
T
87910541ef Prekey bundles: forward-secret async first contact for courier mail (#1381)
* Add capability bits to announce TLV

Announces now carry an optional capabilities TLV (0x05): a little-endian
bitfield with named bits for upcoming features (prekeys, wifiBulk,
gateway, groups, board, vouch, meshDiagnostics). Old clients skip the
unknown TLV; peers without it decode as nil so features can distinguish
"legacy peer" from "advertises nothing".

PeerCapabilities lives in BitFoundation with a minimal-length encoding
that preserves unknown bits for forward compatibility. Peer capabilities
are stored in the BLE peer registry on verified announce and exposed via
BLEService.peerCapabilities(_:). The local advertisement set is empty
until each feature ships its bit.

Co-Authored-By: Claude Fable 5 <noreply@anthropic.com>

* Prekey bundles: forward-secret async first contact for courier mail

Courier envelopes were sealed with one-way Noise X to the recipient's
long-lived static key, so a later compromise of that key exposed every
envelope captured in transit. This adds one-time prekey bundles:

- PrekeyBundle (MessageType 0x24): 8 one-time Curve25519 public prekeys
  bound to the owner's Noise static key by an Ed25519 signature over
  "bitchat-prekey-bundle-v1" canonical bytes; gossiped mesh-wide on its
  own 60s sync round (SyncTypeFlags bit 9, 200-peer cap, 24h freshness)
  and verified against the announce-bound signing key before caching.
- Sealed envelope v2: Noise X where the responder static is the one-time
  prekey, prologue "bitchat-prekey-v1" || prekeyID. Sender identity rides
  encrypted inside and is authenticated exactly like v1 (blocked-sender
  check included). CourierEnvelope gains an optional prekeyID TLV that
  v1 decoders skip as unknown.
- Local prekeys live in the Keychain; consumed privates survive a 48h
  grace window for spray-and-wait redeliveries, then are deleted (the
  forward-secrecy clock starts at deletion). The batch tops back up and
  re-gossips when unconsumed count drops below 3, and everything is
  wiped in panic mode.
- Routing: courier sealing picks a cached verified bundle when one
  exists (one prekey per message, reused across deposit retries), with
  the advertised .prekeys capability as a veto for on-mesh peers, and
  falls back to static sealing otherwise.

Co-Authored-By: Claude Fable 5 <noreply@anthropic.com>

* Prekeys: authenticate bundle packets, fix consume-republish, deflake CI

Fixes the prekey-bundle PR review + CI failure:

- CI root cause: the receive queue (mesh.message) is concurrent, so a
  gossiped prekey bundle can be processed before the announce that binds
  its owner's signing key. The old handler dropped such bundles outright,
  so under CI parallel load the bundle was permanently lost and the
  cache/gossip tests flaked (verifiedBundleEntersGossipStore,
  prekeySealedMailTravelsViaCourierAndOpens). Bundles that arrive before
  their binding are now retained per-owner (bounded) and re-attempted when
  the verified announce lands, atomically to avoid a check-then-act race.

- Authenticate the OUTER prekey-bundle packet (Codex P2 / review MEDIUM):
  require senderID == PeerID(bundle.noiseStaticPublicKey) and verify the
  packet's Ed25519 signature (covers senderID + timestamp) against the
  owner's bound signing key, in addition to the inner bundle signature.
  Stops replay under a fresh timestamp / fake senderID.

- Key the gossip prekey-bundle store/dedup by the bundle's authenticated
  identity (noiseStaticPublicKey), not the unauthenticated packet
  senderID, so one valid bundle sprayed under many fabricated sender IDs
  can't multiply entries and exhaust the 200-owner cap.

- Bump published-bundle generatedAt strictly on consume (Codex P1):
  consuming a prekey shrinks the published bundle, so it now republishes
  with a strictly newer generatedAt and re-gossips, so peers replace the
  cached copy and stop assigning the consumed ID before its 48h grace.

- Guard the panic/clear detached Application Support tree-deletes behind
  TestEnvironment.isRunningTests: the SPM test process shares that tree,
  so the wipe could land mid-test and flake file-dependent tests.

Co-Authored-By: Claude Fable 5 <noreply@anthropic.com>

* Update sync tests for prekeyBundle as bit 9 / default sync round

Prekeys makes bit 9 (prekeyBundle) a known SyncTypeFlags bit and enables
a prekey sync round by default. That broke tests authored by other PRs
that assumed bit 9 was phantom or that only their own sync round fires:

- SyncTypeFlags(Board)Tests: move the "unknown bits" probes to bits 10+
  (0xFE -> 0xFC / 0xFD), since bit 9 is now assigned.
- GossipSync(Board)Tests + GossipSyncManagerTests: disable the prekey sync
  round in configs that run maintenance (as they already do for message/
  fragment/fileTransfer), so they isolate the behavior under test.

Full app suite (1301 tests) green locally via SPM.

Co-Authored-By: Claude Fable 5 <noreply@anthropic.com>

---------

Co-authored-by: jack <jackjackbits@users.noreply.github.com>
Co-authored-by: Claude Fable 5 <noreply@anthropic.com>
2026-07-07 15:38:33 +02:00

798 lines
33 KiB
Swift

import Foundation
import Testing
import BitFoundation
@testable import bitchat
struct GossipSyncManagerTests {
private let myPeerID = PeerID(str: "0102030405060708")
@Test func concurrentPacketIntakeAndSyncRequest() async throws {
let requestSyncManager = RequestSyncManager()
let manager = GossipSyncManager(myPeerID: myPeerID, requestSyncManager: requestSyncManager)
let delegate = RecordingDelegate()
manager.delegate = delegate
try await confirmation("sync request sent") { sent in
delegate.onSend = {
delegate.onSend = nil
sent()
}
let iterations = 200
let senderID = try #require(Data(hexString: "1122334455667788"))
for i in 0..<iterations {
let packet = BitchatPacket(
type: MessageType.message.rawValue,
senderID: senderID,
recipientID: nil,
timestamp: 1_000_000 + UInt64(i),
payload: Data([UInt8(truncatingIfNeeded: i)]),
signature: nil,
ttl: 1
)
manager.onPublicPacketSeen(packet)
try await sleep(0.001)
}
manager.scheduleInitialSyncToPeer(PeerID(str: "FFFFFFFFFFFFFFFF"), delaySeconds: 0.0)
try await TestHelpers.waitFor({ delegate.lastPacket != nil }, timeout: TestConstants.shortTimeout)
}
let lastPacket = try #require(delegate.lastPacket, "Expected sync packet to be sent")
#expect(lastPacket.type == MessageType.requestSync.rawValue)
#expect(RequestSyncPacket.decode(from: lastPacket.payload) != nil)
}
@Test func staleAnnouncementsArePurgedWithMessages() throws {
var config = GossipSyncManager.Config()
config.stalePeerCleanupIntervalSeconds = 0
config.stalePeerTimeoutSeconds = 5
let requestSyncManager = RequestSyncManager()
let manager = GossipSyncManager(myPeerID: myPeerID, config: config, requestSyncManager: requestSyncManager)
let peerHex = "0011223344556677"
let senderData = try #require(Data(hexString: peerHex))
let initialTimestampMs = UInt64(Date().timeIntervalSince1970 * 1000)
let announcePacket = BitchatPacket(
type: MessageType.announce.rawValue,
senderID: senderData,
recipientID: nil,
timestamp: initialTimestampMs,
payload: Data(),
signature: nil,
ttl: 1
)
let messagePacket = BitchatPacket(
type: MessageType.message.rawValue,
senderID: senderData,
recipientID: nil,
timestamp: initialTimestampMs,
payload: Data([0x01]),
signature: nil,
ttl: 1
)
manager.onPublicPacketSeen(announcePacket)
manager.onPublicPacketSeen(messagePacket)
// Flush queue without triggering stale cleanup yet
manager._performMaintenanceSynchronously(now: Date())
#expect(manager._hasAnnouncement(for: PeerID(str: peerHex)))
#expect(manager._messageCount(for: PeerID(str: peerHex)) == 1)
// Run cleanup past the timeout
let future = Date().addingTimeInterval(config.stalePeerTimeoutSeconds + 1)
manager._performMaintenanceSynchronously(now: future)
#expect(manager._hasAnnouncement(for: PeerID(str: peerHex)) == false)
#expect(manager._messageCount(for: PeerID(str: peerHex)) == 0)
}
@Test func ignoresAnnounceOlderThanStaleTimeout() throws {
var config = GossipSyncManager.Config()
config.stalePeerTimeoutSeconds = 5
config.maxMessageAgeSeconds = 100
let requestSyncManager = RequestSyncManager()
let manager = GossipSyncManager(myPeerID: myPeerID, config: config, requestSyncManager: requestSyncManager)
let peerHex = "8899aabbccddeeff"
let senderData = try #require(Data(hexString: peerHex))
let staleTimestampMs = UInt64(Date().addingTimeInterval(-(config.stalePeerTimeoutSeconds + 1)).timeIntervalSince1970 * 1000)
let freshMessage = BitchatPacket(
type: MessageType.message.rawValue,
senderID: senderData,
recipientID: nil,
timestamp: UInt64(Date().timeIntervalSince1970 * 1000),
payload: Data([0xAA]),
signature: nil,
ttl: 1
)
manager.onPublicPacketSeen(freshMessage)
let announcePacket = BitchatPacket(
type: MessageType.announce.rawValue,
senderID: senderData,
recipientID: nil,
timestamp: staleTimestampMs,
payload: Data(),
signature: nil,
ttl: 1
)
manager.onPublicPacketSeen(announcePacket)
manager._performMaintenanceSynchronously()
#expect(manager._hasAnnouncement(for: PeerID(str: peerHex)) == false)
#expect(manager._messageCount(for: PeerID(str: peerHex)) == 0)
}
@Test func maintenanceEmitsTypedSyncRequests() throws {
var config = GossipSyncManager.Config()
config.seenCapacity = 10
config.fragmentCapacity = 5
config.fileTransferCapacity = 4
config.messageSyncIntervalSeconds = 1
config.fragmentSyncIntervalSeconds = 1
config.fileTransferSyncIntervalSeconds = 1
config.prekeyBundleSyncIntervalSeconds = 1
config.maintenanceIntervalSeconds = 0
let requestSyncManager = RequestSyncManager()
let manager = GossipSyncManager(myPeerID: myPeerID, config: config, requestSyncManager: requestSyncManager)
let delegate = RecordingDelegate()
manager.delegate = delegate
let sender = try #require(Data(hexString: "1122334455667788"))
let now = UInt64(Date().timeIntervalSince1970 * 1000)
let announcePacket = BitchatPacket(
type: MessageType.announce.rawValue,
senderID: sender,
recipientID: nil,
timestamp: now,
payload: Data(),
signature: nil,
ttl: 1
)
let messagePacket = BitchatPacket(
type: MessageType.message.rawValue,
senderID: sender,
recipientID: nil,
timestamp: now,
payload: Data([0x01]),
signature: nil,
ttl: 1
)
let fragmentPacket = BitchatPacket(
type: MessageType.fragment.rawValue,
senderID: sender,
recipientID: nil,
timestamp: now,
payload: Data([0xAA]),
signature: nil,
ttl: 1
)
let filePacket = BitchatPacket(
type: MessageType.fileTransfer.rawValue,
senderID: sender,
recipientID: nil,
timestamp: now,
payload: Data([0xBB]),
signature: nil,
ttl: 1,
version: 2
)
manager.onPublicPacketSeen(announcePacket)
manager.onPublicPacketSeen(messagePacket)
manager.onPublicPacketSeen(fragmentPacket)
manager.onPublicPacketSeen(filePacket)
manager._performMaintenanceSynchronously(now: Date())
// One request per due schedule so each type group gets the full
// filter capacity: publicMessages, fragment, fileTransfer, and
// prekeyBundle.
let sentPackets = delegate.packets
#expect(sentPackets.count == 4)
let decoded = sentPackets.compactMap { RequestSyncPacket.decode(from: $0.payload) }
#expect(decoded.count == 4)
let allTypes = decoded.compactMap(\.types).reduce(SyncTypeFlags(rawValue: 0)) { $0.union($1) }
#expect(allTypes.contains(.announce))
#expect(allTypes.contains(.message))
#expect(allTypes.contains(.fragment))
#expect(allTypes.contains(.fileTransfer))
#expect(allTypes.contains(.prekeyBundle))
#expect(decoded.contains { $0.types == .publicMessages })
#expect(decoded.contains { $0.types == .fragment })
#expect(decoded.contains { $0.types == .fileTransfer })
#expect(decoded.contains { $0.types == .prekeyBundle })
}
@Test func truncatedFilterCarriesSinceCursor() throws {
var config = GossipSyncManager.Config()
config.seenCapacity = 100
config.gcsMaxBytes = 32 // caps the filter at 28 IDs (256 bits / 9 bits per element)
config.messageSyncIntervalSeconds = 1
config.fragmentSyncIntervalSeconds = 0
config.fileTransferSyncIntervalSeconds = 0
config.maintenanceIntervalSeconds = 0
let requestSyncManager = RequestSyncManager()
let manager = GossipSyncManager(myPeerID: myPeerID, config: config, requestSyncManager: requestSyncManager)
let delegate = RecordingDelegate()
manager.delegate = delegate
let sender = try #require(Data(hexString: "1122334455667788"))
let baseTimestamp = UInt64(Date().timeIntervalSince1970 * 1000)
let totalMessages = 40
for i in 0..<totalMessages {
let packet = BitchatPacket(
type: MessageType.message.rawValue,
senderID: sender,
recipientID: nil,
timestamp: baseTimestamp + UInt64(i),
payload: Data([UInt8(truncatingIfNeeded: i)]),
signature: nil,
ttl: 1
)
manager.onPublicPacketSeen(packet)
}
manager._performMaintenanceSynchronously(now: Date())
let packet = try #require(delegate.packets.first)
let request = try #require(RequestSyncPacket.decode(from: packet.payload))
// The store (40) exceeds what the tiny filter can cover, so a cursor
// must be present. It points at the oldest timestamp the filter
// actually encodes: the filter covers the newest ~28, and byte-budget
// trimming can only shrink that further, so the cursor sits at or
// above baseTimestamp + 12 (= 40 - 28) and below the newest message.
let since = try #require(request.sinceTimestamp)
#expect(since >= baseTimestamp + 12)
#expect(since < baseTimestamp + UInt64(totalMessages))
}
@Test func fullCoverageFilterOmitsSinceCursor() throws {
var config = GossipSyncManager.Config()
config.seenCapacity = 100
config.messageSyncIntervalSeconds = 1
config.fragmentSyncIntervalSeconds = 0
config.fileTransferSyncIntervalSeconds = 0
config.maintenanceIntervalSeconds = 0
let requestSyncManager = RequestSyncManager()
let manager = GossipSyncManager(myPeerID: myPeerID, config: config, requestSyncManager: requestSyncManager)
let delegate = RecordingDelegate()
manager.delegate = delegate
let sender = try #require(Data(hexString: "1122334455667788"))
let packet = BitchatPacket(
type: MessageType.message.rawValue,
senderID: sender,
recipientID: nil,
timestamp: UInt64(Date().timeIntervalSince1970 * 1000),
payload: Data([0x01]),
signature: nil,
ttl: 1
)
manager.onPublicPacketSeen(packet)
manager._performMaintenanceSynchronously(now: Date())
let sent = try #require(delegate.packets.first)
let request = try #require(RequestSyncPacket.decode(from: sent.payload))
#expect(request.sinceTimestamp == nil)
}
@Test func handleRequestSyncHonorsSinceCursorButAlwaysSendsAnnounces() async throws {
var config = GossipSyncManager.Config()
config.seenCapacity = 5
config.messageSyncIntervalSeconds = 0
config.fragmentSyncIntervalSeconds = 0
config.fileTransferSyncIntervalSeconds = 0
config.prekeyBundleSyncIntervalSeconds = 0
let requestSyncManager = RequestSyncManager()
let manager = GossipSyncManager(myPeerID: myPeerID, config: config, requestSyncManager: requestSyncManager)
let delegate = RecordingDelegate()
manager.delegate = delegate
let sender = try #require(Data(hexString: "aabbccddeeff0011"))
let nowMs = UInt64(Date().timeIntervalSince1970 * 1000)
// Announce older than the cursor: must still be sent (identity is
// needed to verify everything else).
let announcePacket = BitchatPacket(
type: MessageType.announce.rawValue,
senderID: sender,
recipientID: nil,
timestamp: nowMs - 50_000,
payload: Data(),
signature: nil,
ttl: 1
)
let oldMessage = BitchatPacket(
type: MessageType.message.rawValue,
senderID: sender,
recipientID: nil,
timestamp: nowMs - 60_000,
payload: Data([0x01]),
signature: nil,
ttl: 1
)
let newMessage = BitchatPacket(
type: MessageType.message.rawValue,
senderID: sender,
recipientID: nil,
timestamp: nowMs,
payload: Data([0x02]),
signature: nil,
ttl: 1
)
manager.onPublicPacketSeen(announcePacket)
manager.onPublicPacketSeen(oldMessage)
manager.onPublicPacketSeen(newMessage)
let peer = PeerID(str: "FFFFFFFFFFFFFFFF")
let request = RequestSyncPacket(
p: 7,
m: 1,
data: Data(),
types: .publicMessages,
sinceTimestamp: nowMs - 30_000
)
manager.handleRequestSync(from: peer, request: request)
try await TestHelpers.waitFor({ delegate.packets.count == 2 }, timeout: TestConstants.shortTimeout)
// Barrier: flush the sync queue so a late third packet would be visible.
manager._performMaintenanceSynchronously(now: Date())
let sentPackets = delegate.packets
#expect(sentPackets.count == 2)
#expect(sentPackets.contains { $0.type == MessageType.announce.rawValue })
let sentMessages = sentPackets.filter { $0.type == MessageType.message.rawValue }
#expect(sentMessages.count == 1)
#expect(sentMessages.first?.payload == Data([0x02]))
#expect(sentPackets.allSatisfy { $0.isRSR })
}
@Test func handleRequestSyncSkipsAnnounceAlreadyInFilter() async throws {
var config = GossipSyncManager.Config()
config.messageSyncIntervalSeconds = 0
config.fragmentSyncIntervalSeconds = 0
config.fileTransferSyncIntervalSeconds = 0
config.prekeyBundleSyncIntervalSeconds = 0
let requestSyncManager = RequestSyncManager()
let manager = GossipSyncManager(myPeerID: myPeerID, config: config, requestSyncManager: requestSyncManager)
let delegate = RecordingDelegate()
manager.delegate = delegate
let sender = try #require(Data(hexString: "aabbccddeeff0011"))
let announcePacket = BitchatPacket(
type: MessageType.announce.rawValue,
senderID: sender,
recipientID: nil,
timestamp: UInt64(Date().timeIntervalSince1970 * 1000),
payload: Data(),
signature: nil,
ttl: 1
)
manager.onPublicPacketSeen(announcePacket)
// A filter that already contains the announce's canonical ID must
// suppress the response — this only holds if the responder recomputes
// the ID the same way the filter was built (the dual-path bug would
// diff a stored hex string instead).
let announceID = PacketIdUtil.computeId(announcePacket)
let params = GCSFilter.buildFilter(ids: [announceID], maxBytes: 256, targetFpr: 0.01)
let request = RequestSyncPacket(p: params.p, m: params.m, data: params.data, types: .announce)
let peer = PeerID(str: "FFFFFFFFFFFFFFFF")
manager.handleRequestSync(from: peer, request: request)
// Barrier: the async handler is enqueued, so this sync flush runs after it.
manager._performMaintenanceSynchronously(now: Date())
#expect(delegate.packets.isEmpty)
}
@Test func handleRequestSyncIsRateLimitedPerPeer() async throws {
var config = GossipSyncManager.Config()
config.seenCapacity = 5
config.messageSyncIntervalSeconds = 0
config.fragmentSyncIntervalSeconds = 0
config.fileTransferSyncIntervalSeconds = 0
config.prekeyBundleSyncIntervalSeconds = 0
config.responseRateLimitMaxResponses = 1
config.responseRateLimitWindowSeconds = 60
let requestSyncManager = RequestSyncManager()
let manager = GossipSyncManager(myPeerID: myPeerID, config: config, requestSyncManager: requestSyncManager)
let delegate = RecordingDelegate()
manager.delegate = delegate
let sender = try #require(Data(hexString: "aabbccddeeff0011"))
let messagePacket = BitchatPacket(
type: MessageType.message.rawValue,
senderID: sender,
recipientID: nil,
timestamp: UInt64(Date().timeIntervalSince1970 * 1000),
payload: Data([0x10]),
signature: nil,
ttl: 1
)
manager.onPublicPacketSeen(messagePacket)
let peer = PeerID(str: "FFFFFFFFFFFFFFFF")
let request = RequestSyncPacket(p: 7, m: 1, data: Data(), types: .message)
manager.handleRequestSync(from: peer, request: request)
manager.handleRequestSync(from: peer, request: request)
try await TestHelpers.waitFor({ delegate.packets.count >= 1 }, timeout: TestConstants.shortTimeout)
// Barrier: both requests have been processed once this returns.
manager._performMaintenanceSynchronously(now: Date())
#expect(delegate.packets.count == 1)
}
@Test func initialSyncCoalescesEnabledTypes() async throws {
var config = GossipSyncManager.Config()
config.seenCapacity = 10
config.fragmentCapacity = 5
config.fileTransferCapacity = 4
config.fragmentSyncIntervalSeconds = 1
config.fileTransferSyncIntervalSeconds = 1
let requestSyncManager = RequestSyncManager()
let manager = GossipSyncManager(myPeerID: myPeerID, config: config, requestSyncManager: requestSyncManager)
let delegate = RecordingDelegate()
manager.delegate = delegate
manager.scheduleInitialSyncToPeer(PeerID(str: "FFFFFFFFFFFFFFFF"), delaySeconds: 0.0)
try await TestHelpers.waitFor({ delegate.packets.count == 1 }, timeout: TestConstants.shortTimeout)
let packet = try #require(delegate.packets.first)
let request = try #require(RequestSyncPacket.decode(from: packet.payload))
let types = try #require(request.types)
#expect(types.contains(.announce))
#expect(types.contains(.message))
#expect(types.contains(.fragment))
#expect(types.contains(.fileTransfer))
#expect(types.contains(.prekeyBundle))
}
@Test func handleRequestSyncHonorsTypeFilter() async throws {
var config = GossipSyncManager.Config()
config.seenCapacity = 5
config.fragmentCapacity = 5
config.fileTransferCapacity = 0
config.messageSyncIntervalSeconds = 0
config.fragmentSyncIntervalSeconds = 0
config.fileTransferSyncIntervalSeconds = 0
let requestSyncManager = RequestSyncManager()
let manager = GossipSyncManager(myPeerID: myPeerID, config: config, requestSyncManager: requestSyncManager)
let delegate = RecordingDelegate()
manager.delegate = delegate
let sender = try #require(Data(hexString: "aabbccddeeff0011"))
let now = UInt64(Date().timeIntervalSince1970 * 1000)
let messagePacket = BitchatPacket(
type: MessageType.message.rawValue,
senderID: sender,
recipientID: nil,
timestamp: now,
payload: Data([0x10]),
signature: nil,
ttl: 1
)
let fragmentPacket = BitchatPacket(
type: MessageType.fragment.rawValue,
senderID: sender,
recipientID: nil,
timestamp: now,
payload: Data([0x20]),
signature: nil,
ttl: 1
)
manager.onPublicPacketSeen(messagePacket)
manager.onPublicPacketSeen(fragmentPacket)
let peer = PeerID(str: "FFFFFFFFFFFFFFFF")
let request = RequestSyncPacket(p: 4, m: 1, data: Data(), types: .fragment)
manager.handleRequestSync(from: peer, request: request)
try await TestHelpers.waitFor({ delegate.packets.count == 1 }, timeout: TestConstants.shortTimeout)
let sentPackets = delegate.packets
#expect(sentPackets.count == 1)
#expect(sentPackets[0].type == MessageType.fragment.rawValue)
}
// MARK: - Fragment-ID filter (targeted resync)
private func makeFragmentPacket(sender: Data, fragmentID: Data, index: UInt16, timestamp: UInt64) -> BitchatPacket {
// Fragment payload: 8-byte stream ID + index + total + original type.
var payload = fragmentID
payload.append(contentsOf: withUnsafeBytes(of: index.bigEndian) { Data($0) })
payload.append(contentsOf: withUnsafeBytes(of: UInt16(4).bigEndian) { Data($0) })
payload.append(MessageType.fileTransfer.rawValue)
payload.append(Data([0xEE]))
return BitchatPacket(
type: MessageType.fragment.rawValue,
senderID: sender,
recipientID: nil,
timestamp: timestamp,
payload: payload,
signature: nil,
ttl: 1
)
}
@Test func handleRequestSyncHonorsFragmentIdFilter() async throws {
var config = GossipSyncManager.Config()
config.fragmentCapacity = 10
config.messageSyncIntervalSeconds = 0
config.fragmentSyncIntervalSeconds = 0
config.fileTransferSyncIntervalSeconds = 0
config.prekeyBundleSyncIntervalSeconds = 0
let requestSyncManager = RequestSyncManager()
let manager = GossipSyncManager(myPeerID: myPeerID, config: config, requestSyncManager: requestSyncManager)
let delegate = RecordingDelegate()
manager.delegate = delegate
let sender = try #require(Data(hexString: "aabbccddeeff0011"))
let wantedID = try #require(Data(hexString: "0102030405060708"))
let otherID = try #require(Data(hexString: "1112131415161718"))
let nowMs = UInt64(Date().timeIntervalSince1970 * 1000)
let wanted = makeFragmentPacket(sender: sender, fragmentID: wantedID, index: 1, timestamp: nowMs - 60_000)
let other = makeFragmentPacket(sender: sender, fragmentID: otherID, index: 2, timestamp: nowMs)
manager.onPublicPacketSeen(wanted)
manager.onPublicPacketSeen(other)
// The since-cursor sits after both fragments; without the filter the
// responder would send nothing for `wanted`. The filter both bypasses
// the cursor and restricts the diff to exactly the named stream.
let request = RequestSyncPacket(
p: 7,
m: 1,
data: Data(),
types: .fragment,
sinceTimestamp: nowMs + 1,
fragmentIdFilter: RequestSyncPacket.encodeFragmentIdFilter([wantedID])
)
manager.handleRequestSync(from: PeerID(str: "FFFFFFFFFFFFFFFF"), request: request)
try await TestHelpers.waitFor({ delegate.packets.count == 1 }, timeout: TestConstants.shortTimeout)
// Barrier: flush the sync queue so a late second packet would be visible.
manager._performMaintenanceSynchronously(now: Date())
let sentPackets = delegate.packets
#expect(sentPackets.count == 1)
let sent = try #require(sentPackets.first)
#expect(sent.type == MessageType.fragment.rawValue)
#expect(sent.payload.prefix(8) == wantedID)
#expect(sent.ttl == 0)
#expect(sent.isRSR)
}
@Test func requestMissingFragmentsSendsFilteredRequestToConnectedPeers() async throws {
var config = GossipSyncManager.Config()
config.messageSyncIntervalSeconds = 0
config.fragmentSyncIntervalSeconds = 0
config.fileTransferSyncIntervalSeconds = 0
let requestSyncManager = RequestSyncManager()
let manager = GossipSyncManager(myPeerID: myPeerID, config: config, requestSyncManager: requestSyncManager)
let delegate = RecordingDelegate()
delegate.connectedPeers = [PeerID(str: "FFFFFFFFFFFFFFFF")]
manager.delegate = delegate
let stalledID = try #require(Data(hexString: "0102030405060708"))
manager.requestMissingFragments(fragmentIDs: [stalledID])
try await TestHelpers.waitFor({ delegate.packets.count == 1 }, timeout: TestConstants.shortTimeout)
let sent = try #require(delegate.packets.first)
#expect(sent.type == MessageType.requestSync.rawValue)
#expect(sent.ttl == 0)
let request = try #require(RequestSyncPacket.decode(from: sent.payload))
#expect(request.types == .fragment)
let ids = try #require(RequestSyncPacket.decodeFragmentIdFilter(request.fragmentIdFilter))
#expect(ids == Set([stalledID]))
}
@Test func prekeyBundlesServeSyncAndSurviveStalePeerCleanup() async throws {
var config = GossipSyncManager.Config()
config.messageSyncIntervalSeconds = 0
config.fragmentSyncIntervalSeconds = 0
config.fileTransferSyncIntervalSeconds = 0
config.prekeyBundleSyncIntervalSeconds = 0
config.stalePeerCleanupIntervalSeconds = 0
config.stalePeerTimeoutSeconds = 5
let manager = GossipSyncManager(myPeerID: myPeerID, config: config, requestSyncManager: RequestSyncManager())
let delegate = RecordingDelegate()
manager.delegate = delegate
// Bundles are keyed by their authenticated identity (the noise static
// key), not the packet senderID, so the payload must be a real bundle.
let noiseKey = Data(repeating: 0xAB, count: 32)
let senderPeer = PeerID(publicKey: noiseKey)
let sender = try #require(Data(hexString: senderPeer.id))
let bundle = PrekeyBundle(
noiseStaticPublicKey: noiseKey,
prekeys: [PrekeyBundle.Prekey(id: 0, publicKey: Data(repeating: 0x11, count: 32))],
generatedAt: UInt64(Date().timeIntervalSince1970 * 1000),
signature: Data(count: PrekeyBundle.signatureLength)
)
let bundlePacket = BitchatPacket(
type: MessageType.prekeyBundle.rawValue,
senderID: sender,
recipientID: nil,
timestamp: UInt64(Date().timeIntervalSince1970 * 1000),
payload: try #require(bundle.encode()),
signature: nil,
ttl: 1
)
manager.onPublicPacketSeen(bundlePacket)
manager._performMaintenanceSynchronously(now: Date())
#expect(manager._hasPrekeyBundle(for: senderPeer))
// Bundles outlive the owner's announce: a leave plus stale cleanup
// must not drop them (they exist to reach offline owners).
manager.removeAnnouncementForPeer(senderPeer)
manager._performMaintenanceSynchronously(now: Date().addingTimeInterval(config.stalePeerTimeoutSeconds + 1))
#expect(manager._hasPrekeyBundle(for: senderPeer))
// And a .prekeyBundle sync request is answered with the stored packet.
let request = RequestSyncPacket(p: 7, m: 1, data: Data(), types: .prekeyBundle)
manager.handleRequestSync(from: PeerID(str: "FFFFFFFFFFFFFFFF"), request: request)
try await TestHelpers.waitFor({ delegate.packets.count == 1 }, timeout: TestConstants.shortTimeout)
let served = try #require(delegate.packets.first)
#expect(served.type == MessageType.prekeyBundle.rawValue)
#expect(served.isRSR)
}
@Test func prekeyBundleGossipIsKeyedByOwnerNotSenderID() {
// One valid bundle re-broadcast under many fabricated sender IDs must
// collapse to a single entry keyed by the bundle's own identity — the
// spray-to-exhaust-the-cap DoS produces one entry, not N.
let manager = GossipSyncManager(myPeerID: myPeerID, requestSyncManager: RequestSyncManager())
let noiseKey = Data(repeating: 0xCD, count: 32)
let ownerPeer = PeerID(publicKey: noiseKey)
let bundle = PrekeyBundle(
noiseStaticPublicKey: noiseKey,
prekeys: [PrekeyBundle.Prekey(id: 0, publicKey: Data(repeating: 0x22, count: 32))],
generatedAt: UInt64(Date().timeIntervalSince1970 * 1000),
signature: Data(count: PrekeyBundle.signatureLength)
)
guard let payload = bundle.encode() else { return }
for i in 0..<5 {
let fakeSender = Data((0..<8).map { j in UInt8(truncatingIfNeeded: i * 31 + j) })
let packet = BitchatPacket(
type: MessageType.prekeyBundle.rawValue,
senderID: fakeSender,
recipientID: nil,
timestamp: UInt64(Date().timeIntervalSince1970 * 1000) + UInt64(i),
payload: payload,
signature: nil,
ttl: 1
)
manager.onPublicPacketSeen(packet)
manager._performMaintenanceSynchronously(now: Date())
// No fabricated sender ID ever creates its own entry.
#expect(!manager._hasPrekeyBundle(for: PeerID(hexData: fakeSender)))
}
// Exactly the owner-keyed entry exists.
#expect(manager._hasPrekeyBundle(for: ownerPeer))
}
// MARK: - Archive persistence
@Test func publicMessagesRestoreFromArchiveAcrossRestart() async throws {
let fileURL = FileManager.default.temporaryDirectory
.appendingPathComponent("gossip-archive-\(UUID().uuidString).json")
defer { try? FileManager.default.removeItem(at: fileURL) }
let senderID = try #require(Data(hexString: "1122334455667788"))
let packet = BitchatPacket(
type: MessageType.message.rawValue,
senderID: senderID,
recipientID: nil,
timestamp: UInt64(Date().timeIntervalSince1970 * 1000),
payload: Data([0x01, 0x02]),
signature: nil,
ttl: 1
)
let first = GossipSyncManager(
myPeerID: myPeerID,
requestSyncManager: RequestSyncManager(),
archive: GossipMessageArchive(fileURL: fileURL)
)
first.onPublicPacketSeen(packet)
// Maintenance persists the dirty store to disk.
first._performMaintenanceSynchronously(now: Date())
#expect(FileManager.default.fileExists(atPath: fileURL.path))
// "App restart": a fresh manager over the same archive re-serves it.
let second = GossipSyncManager(
myPeerID: myPeerID,
requestSyncManager: RequestSyncManager(),
archive: GossipMessageArchive(fileURL: fileURL)
)
let restored = await TestHelpers.waitUntil(
{ second._messageCount(for: PeerID(hexData: senderID)) == 1 },
timeout: TestConstants.shortTimeout
)
#expect(restored)
}
@Test func archiveDropsMessagesOlderThanPublicWindow() throws {
let fileURL = FileManager.default.temporaryDirectory
.appendingPathComponent("gossip-archive-\(UUID().uuidString).json")
defer { try? FileManager.default.removeItem(at: fileURL) }
var config = GossipSyncManager.Config()
config.publicMessageMaxAgeSeconds = 60
let senderID = try #require(Data(hexString: "1122334455667788"))
let stale = BitchatPacket(
type: MessageType.message.rawValue,
senderID: senderID,
recipientID: nil,
timestamp: UInt64((Date().timeIntervalSince1970 - 120) * 1000),
payload: Data([0x01]),
signature: nil,
ttl: 1
)
let archive = GossipMessageArchive(fileURL: fileURL)
archive.save([stale.toBinaryData(padding: false)!])
let manager = GossipSyncManager(
myPeerID: myPeerID,
config: config,
requestSyncManager: RequestSyncManager(),
archive: archive
)
manager._performMaintenanceSynchronously(now: Date())
#expect(manager._messageCount(for: PeerID(hexData: senderID)) == 0)
}
}
private final class RecordingDelegate: GossipSyncManager.Delegate {
var onSend: (() -> Void)?
var connectedPeers: [PeerID] = []
private(set) var lastPacket: BitchatPacket?
private(set) var packets: [BitchatPacket] = []
private let lock = NSLock()
func sendPacket(_ packet: BitchatPacket) {
lock.lock()
lastPacket = packet
packets.append(packet)
lock.unlock()
onSend?()
}
func sendPacket(to peerID: PeerID, packet: BitchatPacket) {
sendPacket(packet)
}
func signPacketForBroadcast(_ packet: BitchatPacket) -> BitchatPacket {
packet
}
func getConnectedPeers() -> [PeerID] {
return connectedPeers
}
}