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# Conflicts: # bitchat/Models/CommandInfo.swift # bitchat/Services/BLE/BLEOutboundPacketPolicy.swift # bitchat/Services/BLE/BLEReceivePipeline.swift # bitchat/Services/BLE/BLEService.swift # bitchat/Services/CommandProcessor.swift # bitchat/Services/Transport.swift # bitchat/Sync/SyncTypeFlags.swift # bitchat/ViewModels/ChatViewModel.swift # bitchatTests/BLEServiceCoreTests.swift # localPackages/BitFoundation/Sources/BitFoundation/MessageType.swift
387 lines
15 KiB
Swift
387 lines
15 KiB
Swift
//
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// BLEServiceCoreTests.swift
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// bitchatTests
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//
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// Focused BLEService tests for packet handling behavior.
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//
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import Testing
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import Foundation
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import CoreBluetooth
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import BitFoundation
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@testable import bitchat
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struct BLEServiceCoreTests {
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@Test
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func duplicatePacket_isDeduped() async throws {
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let ble = makeService()
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let delegate = PublicCaptureDelegate()
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ble.delegate = delegate
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// Public messages must carry a valid signature from the claimed sender;
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// sign the packet and preseed the sender's signing key so the receiver
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// can verify it (production `sendMessage` signs public broadcasts too).
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let signer = NoiseEncryptionService(keychain: MockKeychain())
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let sender = PeerID(str: "1122334455667788")
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let timestamp = UInt64(Date().timeIntervalSince1970 * 1000)
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let unsigned = makePublicPacket(content: "Hello", sender: sender, timestamp: timestamp)
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let packet = try #require(signer.signPacket(unsigned), "Failed to sign public message")
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let signingKey = signer.getSigningPublicKeyData()
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ble._test_handlePacket(packet, fromPeerID: sender, signingPublicKey: signingKey)
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let receivedFirst = await TestHelpers.waitUntil(
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{ delegate.publicMessagesSnapshot().count == 1 },
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timeout: TestConstants.defaultTimeout
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)
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#expect(receivedFirst)
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ble._test_handlePacket(packet, fromPeerID: sender, signingPublicKey: signingKey)
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let receivedDuplicate = await TestHelpers.waitUntil(
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{ delegate.publicMessagesSnapshot().count > 1 },
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timeout: TestConstants.shortTimeout
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)
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#expect(!receivedDuplicate)
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let messages = delegate.publicMessagesSnapshot()
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#expect(messages.count == 1)
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#expect(messages.first?.content == "Hello")
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}
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@Test
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func staleBroadcast_isIgnored() async {
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let ble = makeService()
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let delegate = PublicCaptureDelegate()
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ble.delegate = delegate
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let sender = PeerID(str: "A1B2C3D4E5F60708")
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let oldTimestamp = UInt64(Date().addingTimeInterval(-901).timeIntervalSince1970 * 1000)
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let packet = makePublicPacket(content: "Old", sender: sender, timestamp: oldTimestamp)
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ble._test_handlePacket(packet, fromPeerID: sender)
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let didReceive = await TestHelpers.waitUntil({ !delegate.publicMessagesSnapshot().isEmpty }, timeout: 0.3)
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#expect(!didReceive)
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#expect(delegate.publicMessagesSnapshot().isEmpty)
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}
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@Test
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func announceSenderMismatch_isRejected() async throws {
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let ble = makeService()
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let signer = NoiseEncryptionService(keychain: MockKeychain())
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let announcement = AnnouncementPacket(
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nickname: "Spoof",
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noisePublicKey: signer.getStaticPublicKeyData(),
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signingPublicKey: signer.getSigningPublicKeyData(),
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directNeighbors: nil
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)
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let payload = try #require(announcement.encode(), "Failed to encode announcement")
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let derivedPeerID = PeerID(publicKey: announcement.noisePublicKey)
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let wrongFirst = derivedPeerID.bare.first == "0" ? "1" : "0"
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let wrongBare = String(wrongFirst) + String(derivedPeerID.bare.dropFirst())
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let wrongPeerID = PeerID(str: wrongBare)
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let packet = BitchatPacket(
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type: MessageType.announce.rawValue,
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senderID: Data(hexString: wrongPeerID.id) ?? Data(),
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recipientID: nil,
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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: 7
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)
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let signed = try #require(signer.signPacket(packet), "Failed to sign announce packet")
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ble._test_handlePacket(signed, fromPeerID: wrongPeerID, preseedPeer: false)
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_ = await TestHelpers.waitUntil({ !ble.currentPeerSnapshots().isEmpty }, timeout: 0.3)
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#expect(ble.currentPeerSnapshots().isEmpty)
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}
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@Test
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func ingressAllowsRelayedSenderOnBoundLink() async throws {
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let ble = makeService()
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let boundPeer = PeerID(str: "1122334455667788")
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let relayedSender = PeerID(str: "8899aabbccddeeff")
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let packet = makePublicPacket(
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content: "Relayed",
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sender: relayedSender,
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timestamp: UInt64(Date().timeIntervalSince1970 * 1000)
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)
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#expect(ble._test_acceptsIngress(packet: packet, boundPeerID: boundPeer))
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}
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@Test
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func ingressRejectsDirectAnnounceThatConflictsWithBoundLink() async throws {
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let ble = makeService()
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let boundPeer = PeerID(str: "1122334455667788")
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let claimedPeer = PeerID(str: "8899aabbccddeeff")
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let packet = BitchatPacket(
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type: MessageType.announce.rawValue,
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senderID: Data(hexString: claimedPeer.id) ?? Data(),
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recipientID: nil,
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timestamp: UInt64(Date().timeIntervalSince1970 * 1000),
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payload: Data(),
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signature: nil,
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ttl: 7
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)
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#expect(!ble._test_acceptsIngress(packet: packet, boundPeerID: boundPeer))
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}
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@Test
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func ingressRejectsSelfLoopbackBeforeSpoofChecks() async throws {
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let ble = makeService()
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let packet = makePublicPacket(
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content: "Loopback",
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sender: ble.myPeerID,
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timestamp: UInt64(Date().timeIntervalSince1970 * 1000)
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)
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#expect(!ble._test_acceptsIngress(packet: packet, boundPeerID: PeerID(str: "1122334455667788")))
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}
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@Test
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func ingressAllowsSelfAuthoredRSRWithTTLZeroFromBoundPeer() async throws {
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let ble = makeService()
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var packet = makePublicPacket(
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content: "Recovered by sync",
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sender: ble.myPeerID,
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timestamp: UInt64(Date().timeIntervalSince1970 * 1000)
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)
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packet.isRSR = true
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packet.ttl = 0
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#expect(ble._test_acceptsIngress(packet: packet, boundPeerID: PeerID(str: "1122334455667788")))
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}
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@Test
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func ingressRecordSuppressesSecondLinkDuplicate() async throws {
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let ble = makeService()
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let packet = makePublicPacket(
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content: "Duplicate link copy",
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sender: PeerID(str: "1122334455667788"),
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timestamp: UInt64(Date().timeIntervalSince1970 * 1000)
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)
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#expect(ble._test_recordIngressIfNew(packet: packet, linkID: "central-a"))
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#expect(!ble._test_recordIngressIfNew(packet: packet, linkID: "central-b"))
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}
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@Test
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func panicReset_rotatesPeerIDDerivedFromNewNoiseFingerprint() async throws {
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let ble = makeService()
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let originalPeerID = ble.myPeerID
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let originalFingerprint = ble.noiseIdentityFingerprint()
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#expect(originalPeerID == PeerID(str: originalFingerprint.prefix(16)))
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ble.resetIdentityForPanic(currentNickname: "anon")
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// The Noise identity is regenerated and the peer ID swaps with it
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// (atomically, behind a messageQueue barrier).
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let newFingerprint = ble.noiseIdentityFingerprint()
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#expect(newFingerprint != originalFingerprint)
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#expect(ble.myPeerID != originalPeerID)
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#expect(ble.myPeerID == PeerID(str: newFingerprint.prefix(16)))
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}
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@Test
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func modifiedServices_rediscoverWhenBitChatServiceIsInvalidated() async throws {
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let otherService = CBUUID(string: "0000180F-0000-1000-8000-00805F9B34FB")
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#expect(BLEService._test_shouldRediscoverBitChatService(
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invalidatedServiceUUIDs: [BLEService.serviceUUID],
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cachedServiceUUIDs: [otherService]
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))
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}
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@Test
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func modifiedServices_rediscoverWhenCachedServicesNoLongerIncludeBitChat() async throws {
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let otherService = CBUUID(string: "0000180F-0000-1000-8000-00805F9B34FB")
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#expect(BLEService._test_shouldRediscoverBitChatService(
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invalidatedServiceUUIDs: [otherService],
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cachedServiceUUIDs: [otherService]
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))
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}
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@Test
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func modifiedServices_ignoreUnrelatedInvalidationWhenBitChatIsStillCached() async throws {
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let otherService = CBUUID(string: "0000180F-0000-1000-8000-00805F9B34FB")
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#expect(!BLEService._test_shouldRediscoverBitChatService(
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invalidatedServiceUUIDs: [otherService],
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cachedServiceUUIDs: [BLEService.serviceUUID, otherService]
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))
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}
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// Regression: a stable/verified private chat addresses the peer by its
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// full 64-hex Noise key, but the Noise session (and capabilities/
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// connection) are keyed by the short routing ID. The Wi-Fi bulk send path
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// must normalize the ID first, or `hasEstablishedSession` misses and
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// Wi-Fi is never offered for a large payload to a direct `.wifiBulk` peer.
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@Test
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func wifiBulkEligibility_resolvesWhenAddressedBy64HexNoiseKey() throws {
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let ble = makeService()
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let noiseKey = Data((0..<32).map { UInt8(($0 &* 7) &+ 3) })
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let fullKey = PeerID(str: noiseKey.hexEncodedString()) // 64-hex Noise key
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#expect(fullKey.noiseKey != nil)
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let shortID = fullKey.toShort() // 16-hex routing ID
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#expect(shortID != fullKey)
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// Establish a real Noise session in the service's noise engine, keyed
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// by the short routing ID (exactly as a completed handshake would).
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let peer = NoiseEncryptionService(keychain: MockKeychain())
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let noise = ble._test_noiseService
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let m1 = try noise.initiateHandshake(with: shortID)
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let m2 = try #require(try peer.processHandshakeMessage(from: shortID, message: m1))
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let m3 = try #require(try noise.processHandshakeMessage(from: shortID, message: m2))
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_ = try peer.processHandshakeMessage(from: shortID, message: m3)
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#expect(noise.hasEstablishedSession(with: shortID))
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// The bug in raw form: querying by the 64-hex key misses the session.
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#expect(!noise.hasEstablishedSession(with: fullKey))
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// Register the peer as a directly-connected `.wifiBulk` neighbor.
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ble._test_registerConnectedPeer(fullKey, capabilities: [.wifiBulk])
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let bigPayload = FileTransferLimits.maxWifiBulkPayloadBytes
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// The send path normalizes first, so eligibility + offer resolve for
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// both the short ID and the full 64-hex Noise key.
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let viaShort = ble._test_wifiBulkSendCandidate(payloadBytes: bigPayload, to: shortID)
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let viaFull = ble._test_wifiBulkSendCandidate(payloadBytes: bigPayload, to: fullKey)
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#expect(viaShort.hasEstablishedNoiseSession)
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#expect(viaFull.hasEstablishedNoiseSession)
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#expect(viaFull.isDirectlyConnected)
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#expect(viaFull.peerCapabilities.contains(.wifiBulk))
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#expect(WifiBulkPolicy.shouldOffer(viaShort, enabled: true))
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#expect(WifiBulkPolicy.shouldOffer(viaFull, enabled: true))
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}
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/// Pings are unsigned, so their claimed sender is attacker-controlled.
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/// The pong budget must be keyed on the ingress link (the directly
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/// connected peer that delivered the packet): rotating forged sender IDs
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/// over one link exhausts one budget instead of resetting it, so a single
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/// malicious link cannot turn /ping into an amplification primitive.
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@Test
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func meshPingResponseBudget_isPerIngressLinkNotClaimedSender() async throws {
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let ble = makeService()
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let outbound = OutboundPacketTap()
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ble._test_onOutboundPacket = outbound.record
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let link = PeerID(str: "1122334455667788")
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let budget = TransportConfig.meshPingInboundMaxPerLink
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let myRecipientData = try #require(Data(hexString: ble.myPeerID.id))
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for i in 0..<(budget * 2) {
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// A fresh forged sender for every ping, all arriving on one link.
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let forgedSender = PeerID(str: String(format: "%016x", 0xA0_0000 + i))
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var nonce = Data(repeating: 0, count: MeshPingPayload.nonceLength)
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nonce[0] = UInt8(i)
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let payload = try #require(MeshPingPayload(nonce: nonce, originTTL: 7))
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let packet = BitchatPacket(
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type: MessageType.ping.rawValue,
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senderID: Data(hexString: forgedSender.id) ?? Data(),
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recipientID: myRecipientData,
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timestamp: UInt64(Date().timeIntervalSince1970 * 1000),
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payload: payload.encode(),
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signature: nil,
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ttl: 7
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)
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ble._test_handlePacket(packet, fromPeerID: link, preseedPeer: false)
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}
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let reachedBudget = await TestHelpers.waitUntil(
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{ outbound.count(ofType: .pong) >= budget },
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timeout: TestConstants.defaultTimeout
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)
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#expect(reachedBudget)
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// Give any over-budget pong a chance to surface, then confirm the
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// rotated sender IDs never bought a sixth response.
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let exceededBudget = await TestHelpers.waitUntil(
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{ outbound.count(ofType: .pong) > budget },
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timeout: TestConstants.shortTimeout
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)
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#expect(!exceededBudget)
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#expect(outbound.count(ofType: .pong) == budget)
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}
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}
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/// Thread-safe capture of packets leaving the service under test.
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private final class OutboundPacketTap {
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private let lock = NSLock()
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private var packets: [BitchatPacket] = []
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func record(_ packet: BitchatPacket) {
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lock.lock(); packets.append(packet); lock.unlock()
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}
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func count(ofType type: MessageType) -> Int {
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lock.lock(); defer { lock.unlock() }
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return packets.filter { $0.type == type.rawValue }.count
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}
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}
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private func makeService() -> BLEService {
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let keychain = MockKeychain()
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let identityManager = MockIdentityManager(keychain)
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let idBridge = NostrIdentityBridge(keychain: MockKeychainHelper())
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return BLEService(
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keychain: keychain,
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idBridge: idBridge,
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identityManager: identityManager,
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initializeBluetoothManagers: false
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)
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}
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private func makePublicPacket(content: String, sender: PeerID, timestamp: UInt64) -> BitchatPacket {
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BitchatPacket(
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type: MessageType.message.rawValue,
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senderID: Data(hexString: sender.id) ?? Data(),
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recipientID: nil,
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timestamp: timestamp,
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payload: Data(content.utf8),
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signature: nil,
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ttl: 3
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)
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}
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private final class PublicCaptureDelegate: BitchatDelegate {
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private let lock = NSLock()
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private(set) var publicMessages: [BitchatMessage] = []
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func didReceivePublicMessage(from peerID: PeerID, nickname: String, content: String, timestamp: Date, messageID: String?) {
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let message = BitchatMessage(
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id: messageID,
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sender: nickname,
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content: content,
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timestamp: timestamp,
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isRelay: false,
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originalSender: nil,
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isPrivate: false,
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recipientNickname: nil,
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senderPeerID: peerID,
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mentions: nil
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)
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lock.lock()
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publicMessages.append(message)
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lock.unlock()
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}
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func didReceiveMessage(_ message: BitchatMessage) {}
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func didConnectToPeer(_ peerID: PeerID) {}
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func didDisconnectFromPeer(_ peerID: PeerID) {}
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func didUpdatePeerList(_ peers: [PeerID]) {}
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func didUpdateBluetoothState(_ state: CBManagerState) {}
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func publicMessagesSnapshot() -> [BitchatMessage] {
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lock.lock()
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defer { lock.unlock() }
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return publicMessages
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}
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}
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