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https://github.com/permissionlesstech/bitchat.git
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* Align DM sheet toolbar with people list * Gate stale gossip announcements * Remove stale peer messages during gossip cleanup --------- Co-authored-by: jack <jackjackbits@users.noreply.github.com>
331 lines
12 KiB
Swift
331 lines
12 KiB
Swift
import Foundation
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// Gossip-based sync manager using on-demand GCS filters
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final class GossipSyncManager {
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protocol Delegate: AnyObject {
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func sendPacket(_ packet: BitchatPacket)
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func sendPacket(to peerID: PeerID, packet: BitchatPacket)
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func signPacketForBroadcast(_ packet: BitchatPacket) -> BitchatPacket
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}
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struct Config {
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var seenCapacity: Int = 1000 // max packets per sync (cap across types)
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var gcsMaxBytes: Int = 400 // filter size budget (128..1024)
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var gcsTargetFpr: Double = 0.01 // 1%
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var maxMessageAgeSeconds: TimeInterval = 900 // 15 min - discard older messages
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var maintenanceIntervalSeconds: TimeInterval = 30.0
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var stalePeerCleanupIntervalSeconds: TimeInterval = 60.0
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var stalePeerTimeoutSeconds: TimeInterval = 60.0
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}
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private let myPeerID: PeerID
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private let config: Config
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weak var delegate: Delegate?
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// Storage: broadcast messages (ordered by insert), and latest announce per sender
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private var messages: [String: BitchatPacket] = [:] // idHex -> packet
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private var messageOrder: [String] = []
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private var latestAnnouncementByPeer: [String: (id: String, packet: BitchatPacket)] = [:]
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// Timer
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private var periodicTimer: DispatchSourceTimer?
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private let queue = DispatchQueue(label: "mesh.sync", qos: .utility)
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private var lastStalePeerCleanup: Date = .distantPast
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init(myPeerID: PeerID, config: Config = Config()) {
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self.myPeerID = myPeerID
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self.config = config
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}
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func start() {
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stop()
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let timer = DispatchSource.makeTimerSource(queue: queue)
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let interval = max(0.1, config.maintenanceIntervalSeconds)
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timer.schedule(deadline: .now() + interval, repeating: interval, leeway: .seconds(1))
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timer.setEventHandler { [weak self] in
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self?.performPeriodicMaintenance()
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}
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timer.resume()
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periodicTimer = timer
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}
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func stop() {
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periodicTimer?.cancel(); periodicTimer = nil
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}
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func scheduleInitialSyncToPeer(_ peerID: PeerID, delaySeconds: TimeInterval = 5.0) {
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queue.asyncAfter(deadline: .now() + delaySeconds) { [weak self] in
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self?.sendRequestSync(to: peerID)
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}
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}
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func onPublicPacketSeen(_ packet: BitchatPacket) {
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queue.async { [weak self] in
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self?._onPublicPacketSeen(packet)
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}
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}
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// Helper to check if a packet is within the age threshold
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private func isPacketFresh(_ packet: BitchatPacket) -> Bool {
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let nowMs = UInt64(Date().timeIntervalSince1970 * 1000)
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let ageThresholdMs = UInt64(config.maxMessageAgeSeconds * 1000)
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// If current time is less than threshold, accept all (handle clock issues gracefully)
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guard nowMs >= ageThresholdMs else { return true }
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let cutoffMs = nowMs - ageThresholdMs
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return packet.timestamp >= cutoffMs
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}
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private func isAnnouncementFresh(_ packet: BitchatPacket) -> Bool {
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guard config.stalePeerTimeoutSeconds > 0 else { return true }
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let nowMs = UInt64(Date().timeIntervalSince1970 * 1000)
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let timeoutMs = UInt64(config.stalePeerTimeoutSeconds * 1000)
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guard nowMs >= timeoutMs else { return true }
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let cutoffMs = nowMs - timeoutMs
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return packet.timestamp >= cutoffMs
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}
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private func _onPublicPacketSeen(_ packet: BitchatPacket) {
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let mt = MessageType(rawValue: packet.type)
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let isBroadcastRecipient: Bool = {
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guard let r = packet.recipientID else { return true }
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return r.count == 8 && r.allSatisfy { $0 == 0xFF }
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}()
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let isBroadcastMessage = (mt == .message && isBroadcastRecipient)
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let isAnnounce = (mt == .announce)
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guard isBroadcastMessage || isAnnounce else { return }
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// Reject expired packets to prevent ghost peers and old messages
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guard isPacketFresh(packet) else { return }
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if isAnnounce {
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guard isAnnouncementFresh(packet) else {
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let sender = packet.senderID.hexEncodedString().lowercased()
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removeState(forNormalizedPeerID: sender)
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return
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}
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}
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let idHex = PacketIdUtil.computeId(packet).hexEncodedString()
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if isBroadcastMessage {
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if messages[idHex] == nil {
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messages[idHex] = packet
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messageOrder.append(idHex)
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// Enforce capacity
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let cap = max(1, config.seenCapacity)
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while messageOrder.count > cap {
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let victim = messageOrder.removeFirst()
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messages.removeValue(forKey: victim)
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}
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}
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} else if isAnnounce {
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let sender = packet.senderID.hexEncodedString().lowercased()
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latestAnnouncementByPeer[sender] = (id: idHex, packet: packet)
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}
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}
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private func sendRequestSync() {
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let payload = buildGcsPayload()
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let pkt = BitchatPacket(
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type: MessageType.requestSync.rawValue,
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senderID: Data(hexString: myPeerID.id) ?? Data(),
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recipientID: nil, // broadcast
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timestamp: UInt64(Date().timeIntervalSince1970 * 1000),
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payload: payload,
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signature: nil,
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ttl: 0 // local-only
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)
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let signed = delegate?.signPacketForBroadcast(pkt) ?? pkt
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delegate?.sendPacket(signed)
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}
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private func sendRequestSync(to peerID: PeerID) {
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let payload = buildGcsPayload()
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var recipient = Data()
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var temp = peerID.id
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while temp.count >= 2 && recipient.count < 8 {
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let hexByte = String(temp.prefix(2))
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if let b = UInt8(hexByte, radix: 16) { recipient.append(b) }
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temp = String(temp.dropFirst(2))
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}
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let pkt = BitchatPacket(
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type: MessageType.requestSync.rawValue,
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senderID: Data(hexString: myPeerID.id) ?? Data(),
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recipientID: recipient,
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timestamp: UInt64(Date().timeIntervalSince1970 * 1000),
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payload: payload,
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signature: nil,
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ttl: 0 // local-only
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)
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let signed = delegate?.signPacketForBroadcast(pkt) ?? pkt
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delegate?.sendPacket(to: peerID, packet: signed)
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}
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func handleRequestSync(from peerID: PeerID, request: RequestSyncPacket) {
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queue.async { [weak self] in
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self?._handleRequestSync(from: peerID, request: request)
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}
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}
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private func _handleRequestSync(from peerID: PeerID, request: RequestSyncPacket) {
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// Decode GCS into sorted set and prepare membership checker
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let sorted = GCSFilter.decodeToSortedSet(p: request.p, m: request.m, data: request.data)
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func mightContain(_ id: Data) -> Bool {
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let bucket = GCSFilter.bucket(for: id, modulus: request.m)
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return GCSFilter.contains(sortedValues: sorted, candidate: bucket)
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}
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// 1) Announcements: send latest per peer if requester lacks them (and not expired)
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for (_, pair) in latestAnnouncementByPeer {
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let (idHex, pkt) = pair
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guard isPacketFresh(pkt) else { continue }
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let idBytes = Data(hexString: idHex) ?? Data()
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if !mightContain(idBytes) {
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var toSend = pkt
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toSend.ttl = 0
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delegate?.sendPacket(to: peerID, packet: toSend)
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}
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}
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// 2) Broadcast messages: send all missing (and not expired)
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let toSendMsgs = messageOrder.compactMap { messages[$0] }
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for pkt in toSendMsgs {
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guard isPacketFresh(pkt) else { continue }
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let idBytes = PacketIdUtil.computeId(pkt)
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if !mightContain(idBytes) {
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var toSend = pkt
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toSend.ttl = 0
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delegate?.sendPacket(to: peerID, packet: toSend)
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}
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}
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}
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// Build REQUEST_SYNC payload using current candidates and GCS params
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private func buildGcsPayload() -> Data {
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// Collect candidates: latest announce per peer + broadcast messages (only fresh)
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var candidates: [BitchatPacket] = []
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candidates.reserveCapacity(latestAnnouncementByPeer.count + messageOrder.count)
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for (_, pair) in latestAnnouncementByPeer {
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if isPacketFresh(pair.packet) {
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candidates.append(pair.packet)
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}
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}
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for id in messageOrder {
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if let p = messages[id], isPacketFresh(p) {
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candidates.append(p)
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}
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}
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// Sort by timestamp desc
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candidates.sort { $0.timestamp > $1.timestamp }
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let p = GCSFilter.deriveP(targetFpr: config.gcsTargetFpr)
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let nMax = GCSFilter.estimateMaxElements(sizeBytes: config.gcsMaxBytes, p: p)
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let cap = max(1, config.seenCapacity)
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let takeN = min(candidates.count, min(nMax, cap))
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if takeN <= 0 {
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let req = RequestSyncPacket(p: p, m: 1, data: Data())
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return req.encode()
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}
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let ids: [Data] = candidates.prefix(takeN).map { PacketIdUtil.computeId($0) }
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let params = GCSFilter.buildFilter(ids: ids, maxBytes: config.gcsMaxBytes, targetFpr: config.gcsTargetFpr)
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let req = RequestSyncPacket(p: params.p, m: params.m, data: params.data)
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return req.encode()
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}
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// Periodic cleanup of expired messages and announcements
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private func cleanupExpiredMessages() {
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// Remove expired announcements
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latestAnnouncementByPeer = latestAnnouncementByPeer.filter { _, pair in
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isPacketFresh(pair.packet)
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}
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// Remove expired messages
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let expiredMessageIds = messages.compactMap { id, pkt in
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isPacketFresh(pkt) ? nil : id
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}
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for id in expiredMessageIds {
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messages.removeValue(forKey: id)
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messageOrder.removeAll { $0 == id }
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}
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}
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private func performPeriodicMaintenance(now: Date = Date()) {
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cleanupExpiredMessages()
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cleanupStaleAnnouncementsIfNeeded(now: now)
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sendRequestSync()
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}
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private func cleanupStaleAnnouncementsIfNeeded(now: Date) {
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guard now.timeIntervalSince(lastStalePeerCleanup) >= config.stalePeerCleanupIntervalSeconds else {
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return
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}
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lastStalePeerCleanup = now
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cleanupStaleAnnouncements(now: now)
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}
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private func cleanupStaleAnnouncements(now: Date) {
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let timeoutMs = UInt64(config.stalePeerTimeoutSeconds * 1000)
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let nowMs = UInt64(now.timeIntervalSince1970 * 1000)
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guard nowMs >= timeoutMs else { return }
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let cutoff = nowMs - timeoutMs
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let stalePeerIDs = latestAnnouncementByPeer.compactMap { (peerHex, pair) -> String? in
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pair.packet.timestamp < cutoff ? peerHex.lowercased() : nil
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}
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guard !stalePeerIDs.isEmpty else { return }
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for peerKey in stalePeerIDs {
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removeState(forNormalizedPeerID: peerKey)
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}
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}
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// Explicit removal hook for LEAVE/stale peer
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func removeAnnouncementForPeer(_ peerID: PeerID) {
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queue.async { [weak self] in
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self?._removeAnnouncementForPeer(peerID)
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}
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}
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private func _removeAnnouncementForPeer(_ peerID: PeerID) {
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let normalizedPeerID = peerID.id.lowercased()
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removeState(forNormalizedPeerID: normalizedPeerID)
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}
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private func removeState(forNormalizedPeerID normalizedPeerID: String) {
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_ = latestAnnouncementByPeer.removeValue(forKey: normalizedPeerID)
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// Remove messages from this peer
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// Collect IDs to remove first to avoid concurrent modification
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let messageIdsToRemove = messages.compactMap { (id, message) -> String? in
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message.senderID.hexEncodedString().lowercased() == normalizedPeerID ? id : nil
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}
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// Remove messages and update messageOrder
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for id in messageIdsToRemove {
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messages.removeValue(forKey: id)
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messageOrder.removeAll { $0 == id }
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}
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}
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}
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#if DEBUG
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extension GossipSyncManager {
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func _performMaintenanceSynchronously(now: Date = Date()) {
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queue.sync {
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performPeriodicMaintenance(now: now)
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}
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}
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func _hasAnnouncement(for peerID: PeerID) -> Bool {
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queue.sync {
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latestAnnouncementByPeer[peerID.id.lowercased()] != nil
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}
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}
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func _messageCount(for peerID: PeerID) -> Int {
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queue.sync {
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messages.values.filter { $0.senderID.hexEncodedString().lowercased() == peerID.id.lowercased() }.count
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}
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}
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}
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#endif
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