mirror of
https://github.com/permissionlesstech/bitchat.git
synced 2026-07-24 22:45:19 +00:00
Convert the remaining tests to Swift Testing (#781)
* SwiftTesting: NoiseProtocolTests + BinaryProtocolPaddingTests * SwiftTesting: `NotificationStreamAssemblerTests` * SwiftTesting: `NostrProtocolTests` * SwiftTesting: `BinaryProtocolTests` * SwiftTesting: `PeerIDTests` * SwiftTesting: `BLEServiceTests` * SwiftTesting: `CommandProcessorTests` * SwiftTesting: `GCSFilterTests` * SwiftTesting: `GeohashBookmarksStoreTests` * Remove `peerID` test constants * Remove PeerID + String interop from tests * Refactor IntegrationTests to extract state management * Refactor global state management of MockBLEService * NoiseProtocolSwiftTests: `actor` -> `struct` * Remove measurement tests w/ no benchmark * `NoiseProtocolSwiftTests` -> `NoiseProtocolTests` * SwiftTesting: `LocationChannelsTests` * SwiftTesting: `GossipSyncManagerTests` * SwiftTesting: `LocationNotesManagerTests` * Global `sleep` function for tests * SwiftTesting: `IntegrationTests` --------- Co-authored-by: jack <jackjackbits@users.noreply.github.com>
This commit is contained in:
@@ -6,10 +6,9 @@
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// For more information, see <https://unlicense.org>
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//
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enum NoiseSessionError: Error {
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enum NoiseSessionError: Error, Equatable {
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case invalidState
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case notEstablished
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case sessionNotFound
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case handshakeFailed(Error)
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case alreadyEstablished
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}
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@@ -216,15 +216,4 @@ final class GeohashBookmarksStore: ObservableObject {
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}
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}
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#endif
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#if DEBUG
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/// Testing-only reset helper
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func _resetForTesting() {
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bookmarks.removeAll()
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membership.removeAll()
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bookmarkNames.removeAll()
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persist()
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persistNames()
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}
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#endif
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}
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+126
-116
@@ -6,122 +6,128 @@
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// For more information, see <https://unlicense.org>
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//
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import XCTest
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import Testing
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import CoreBluetooth
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@testable import bitchat
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final class BLEServiceTests: XCTestCase {
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struct BLEServiceTests {
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private let service: MockBLEService
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private let myUUID = UUID()
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private let bus = MockBLEBus()
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var service: MockBLEService!
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override func setUp() {
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super.setUp()
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service = MockBLEService()
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service.myPeerID = "TEST1234"
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init() {
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service = MockBLEService.init(bus: bus)
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service.myPeerID = PeerID(str: myUUID.uuidString)
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service.mockNickname = "TestUser"
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}
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override func tearDown() {
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service = nil
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super.tearDown()
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}
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// MARK: - Basic Functionality Tests
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func testServiceInitialization() {
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XCTAssertNotNil(service)
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XCTAssertEqual(service.myPeerID, "TEST1234")
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XCTAssertEqual(service.myNickname, "TestUser")
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@Test func serviceInitialization() {
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#expect(service.myPeerID == PeerID(str: myUUID.uuidString))
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#expect(service.myNickname == "TestUser")
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}
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func testPeerConnection() {
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// Test connecting a peer
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service.simulateConnectedPeer("PEER5678")
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XCTAssertTrue(service.isPeerConnected("PEER5678"))
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XCTAssertEqual(service.getConnectedPeers().count, 1)
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@Test func peerConnection() {
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let somePeerID = PeerID(str: UUID().uuidString)
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// Test disconnecting a peer
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service.simulateDisconnectedPeer("PEER5678")
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XCTAssertFalse(service.isPeerConnected("PEER5678"))
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XCTAssertEqual(service.getConnectedPeers().count, 0)
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service.simulateConnectedPeer(somePeerID)
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#expect(service.isPeerConnected(somePeerID))
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#expect(service.getConnectedPeers().count == 1)
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service.simulateDisconnectedPeer(somePeerID)
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#expect(!service.isPeerConnected(somePeerID))
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#expect(service.getConnectedPeers().count == 0)
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}
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func testMultiplePeerConnections() {
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service.simulateConnectedPeer("PEER1")
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service.simulateConnectedPeer("PEER2")
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service.simulateConnectedPeer("PEER3")
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@Test func multiplePeerConnections() {
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let peerID1 = PeerID(str: UUID().uuidString)
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let peerID2 = PeerID(str: UUID().uuidString)
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let peerID3 = PeerID(str: UUID().uuidString)
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XCTAssertEqual(service.getConnectedPeers().count, 3)
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XCTAssertTrue(service.isPeerConnected("PEER1"))
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XCTAssertTrue(service.isPeerConnected("PEER2"))
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XCTAssertTrue(service.isPeerConnected("PEER3"))
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service.simulateConnectedPeer(peerID1)
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service.simulateConnectedPeer(peerID2)
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service.simulateConnectedPeer(peerID3)
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service.simulateDisconnectedPeer("PEER2")
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XCTAssertEqual(service.getConnectedPeers().count, 2)
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XCTAssertFalse(service.isPeerConnected("PEER2"))
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#expect(service.getConnectedPeers().count == 3)
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#expect(service.isPeerConnected(peerID1))
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#expect(service.isPeerConnected(peerID2))
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#expect(service.isPeerConnected(peerID3))
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service.simulateDisconnectedPeer(peerID2)
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#expect(service.getConnectedPeers().count == 2)
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#expect(!service.isPeerConnected(peerID2))
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}
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// MARK: - Message Sending Tests
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func testSendPublicMessage() {
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let expectation = XCTestExpectation(description: "Message sent")
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@Test func sendPublicMessage() async throws {
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try await confirmation { receivedPublicMessage in
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let delegate = MockBitchatDelegate { message in
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XCTAssertEqual(message.content, "Hello, world!")
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XCTAssertEqual(message.sender, "TestUser")
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XCTAssertFalse(message.isPrivate)
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expectation.fulfill()
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#expect(message.content == "Hello, world!")
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#expect(message.sender == "TestUser")
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#expect(!message.isPrivate)
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receivedPublicMessage()
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}
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service.delegate = delegate
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service.sendMessage("Hello, world!")
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wait(for: [expectation], timeout: 1.0)
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XCTAssertEqual(service.sentMessages.count, 1)
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// Allow async processing
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try await sleep(0.5)
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}
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#expect(service.sentMessages.count == 1)
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}
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func testSendPrivateMessage() {
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let expectation = XCTestExpectation(description: "Private message sent")
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@Test func sendPrivateMessage() async throws {
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try await confirmation { receivedPrivateMessage in
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let delegate = MockBitchatDelegate { message in
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XCTAssertEqual(message.content, "Secret message")
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XCTAssertEqual(message.sender, "TestUser")
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XCTAssertTrue(message.isPrivate)
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XCTAssertEqual(message.recipientNickname, "Bob")
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expectation.fulfill()
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#expect(message.content == "Secret message")
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#expect(message.sender == "TestUser")
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#expect(message.senderPeerID == PeerID(str: myUUID.uuidString))
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#expect(message.isPrivate)
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#expect(message.recipientNickname == "Bob")
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receivedPrivateMessage()
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}
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service.delegate = delegate
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service.sendPrivateMessage(
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"Secret message",
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to: PeerID(str: UUID().uuidString),
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recipientNickname: "Bob",
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messageID: "MSG123"
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)
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service.sendPrivateMessage("Secret message", to: "PEER5678", recipientNickname: "Bob", messageID: "MSG123")
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wait(for: [expectation], timeout: 1.0)
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XCTAssertEqual(service.sentMessages.count, 1)
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// Allow async processing
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try await sleep(0.5)
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}
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#expect(service.sentMessages.count == 1)
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}
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func testSendMessageWithMentions() {
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let expectation = XCTestExpectation(description: "Message with mentions sent")
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@Test func sendMessageWithMentions() async throws {
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try await confirmation { receivedMessageWithMentions in
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let delegate = MockBitchatDelegate { message in
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XCTAssertEqual(message.content, "@alice @bob check this out")
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XCTAssertEqual(message.mentions, ["alice", "bob"])
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expectation.fulfill()
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#expect(message.content == "@alice @bob check this out")
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#expect(message.mentions == ["alice", "bob"])
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receivedMessageWithMentions()
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}
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service.delegate = delegate
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service.sendMessage("@alice @bob check this out", mentions: ["alice", "bob"])
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wait(for: [expectation], timeout: 1.0)
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// Allow async processing
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try await sleep(0.5)
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}
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}
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// MARK: - Message Reception Tests
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func testSimulateIncomingMessage() {
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let expectation = XCTestExpectation(description: "Message received")
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@Test func simulateIncomingMessage() async throws {
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try await confirmation { receiveMessage in
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let peerID = PeerID(str: UUID().uuidString)
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let delegate = MockBitchatDelegate { message in
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XCTAssertEqual(message.content, "Incoming message")
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XCTAssertEqual(message.sender, "RemoteUser")
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expectation.fulfill()
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#expect(message.content == "Incoming message")
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#expect(message.sender == "RemoteUser")
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#expect(message.senderPeerID == peerID)
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receiveMessage()
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}
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service.delegate = delegate
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@@ -134,21 +140,24 @@ final class BLEServiceTests: XCTestCase {
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originalSender: nil,
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isPrivate: false,
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recipientNickname: nil,
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senderPeerID: "REMOTE123",
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senderPeerID: peerID,
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mentions: nil
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)
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service.simulateIncomingMessage(incomingMessage)
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wait(for: [expectation], timeout: 1.0)
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// Allow async processing
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try await sleep(0.5)
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}
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}
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func testSimulateIncomingPacket() {
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let expectation = XCTestExpectation(description: "Packet processed")
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@Test func simulateIncomingPacket() async throws {
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try await confirmation { processPacket in
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let peerID = PeerID(str: UUID().uuidString)
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let delegate = MockBitchatDelegate { message in
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XCTAssertEqual(message.content, "Packet message")
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expectation.fulfill()
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#expect(message.content == "Packet message")
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#expect(message.senderPeerID == peerID)
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processPacket()
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}
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service.delegate = delegate
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@@ -161,18 +170,15 @@ final class BLEServiceTests: XCTestCase {
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originalSender: nil,
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isPrivate: false,
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recipientNickname: nil,
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senderPeerID: "PACKET123",
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senderPeerID: peerID,
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mentions: nil
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)
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guard let payload = message.toBinaryPayload() else {
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XCTFail("Failed to create binary payload")
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return
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}
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let payload = try #require(message.toBinaryPayload(), "Failed to create binary payload")
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let packet = BitchatPacket(
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type: 0x01,
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senderID: "PACKET123".data(using: .utf8)!,
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senderID: peerID.id.data(using: .utf8)!,
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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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@@ -182,56 +188,61 @@ final class BLEServiceTests: XCTestCase {
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service.simulateIncomingPacket(packet)
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wait(for: [expectation], timeout: 1.0)
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// Allow async processing
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try await sleep(0.5)
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}
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}
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// MARK: - Peer Nickname Tests
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func testGetPeerNicknames() {
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service.simulateConnectedPeer("PEER1")
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service.simulateConnectedPeer("PEER2")
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@Test func getPeerNicknames() {
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let peerID1 = PeerID(str: UUID().uuidString)
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let peerID2 = PeerID(str: UUID().uuidString)
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service.simulateConnectedPeer(peerID1)
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service.simulateConnectedPeer(peerID2)
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let nicknames = service.getPeerNicknames()
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XCTAssertEqual(nicknames.count, 2)
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XCTAssertEqual(nicknames["PEER1"], "MockPeer_PEER1")
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XCTAssertEqual(nicknames["PEER2"], "MockPeer_PEER2")
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#expect(nicknames.count == 2)
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#expect(nicknames[peerID1] == "MockPeer_\(peerID1)")
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#expect(nicknames[peerID2] == "MockPeer_\(peerID2)")
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}
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// MARK: - Service State Tests
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func testStartStopServices() {
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// These are mock implementations, just ensure they don't crash
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@Test func startStopServices() {
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service.startServices()
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service.stopServices()
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// Service should still be functional after start/stop
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service.simulateConnectedPeer("PEER999")
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XCTAssertTrue(service.isPeerConnected("PEER999"))
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let somePeerID = PeerID(str: UUID().uuidString)
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service.simulateConnectedPeer(somePeerID)
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#expect(service.isPeerConnected(somePeerID))
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}
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// MARK: - Message Delivery Handler Tests
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func testMessageDeliveryHandler() {
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let expectation = XCTestExpectation(description: "Delivery handler called")
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@Test func messageDeliveryHandler() async throws {
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try await confirmation { deliveryHandler in
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service.packetDeliveryHandler = { packet in
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if let msg = BitchatMessage(packet.payload) {
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XCTAssertEqual(msg.content, "Test delivery")
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expectation.fulfill()
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#expect(msg.content == "Test delivery")
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deliveryHandler()
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}
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}
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service.sendMessage("Test delivery")
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wait(for: [expectation], timeout: 1.0)
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// Allow async processing
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try await sleep(0.5)
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}
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}
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|
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func testPacketDeliveryHandler() {
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let expectation = XCTestExpectation(description: "Packet handler called")
|
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@Test func packetDeliveryHandler() async throws {
|
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try await confirmation("Packet handler called") { packetHandler in
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let peerID = PeerID(str: UUID().uuidString)
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service.packetDeliveryHandler = { packet in
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XCTAssertEqual(packet.type, 0x01)
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expectation.fulfill()
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#expect(packet.type == 0x01)
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#expect(packet.senderID == Data(peerID.id.utf8))
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packetHandler()
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}
|
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|
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let message = BitchatMessage(
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@@ -243,18 +254,15 @@ final class BLEServiceTests: XCTestCase {
|
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originalSender: nil,
|
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isPrivate: false,
|
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recipientNickname: nil,
|
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senderPeerID: "TEST123",
|
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senderPeerID: peerID,
|
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mentions: nil
|
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)
|
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|
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guard let payload = message.toBinaryPayload() else {
|
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XCTFail("Failed to create payload")
|
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return
|
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}
|
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let payload = try #require(message.toBinaryPayload(), "Failed to create payload")
|
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|
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let packet = BitchatPacket(
|
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type: 0x01,
|
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senderID: "TEST123".data(using: .utf8)!,
|
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senderID: peerID.id.data(using: .utf8)!,
|
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recipientID: nil,
|
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timestamp: UInt64(Date().timeIntervalSince1970 * 1000),
|
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payload: payload,
|
||||
@@ -264,7 +272,9 @@ final class BLEServiceTests: XCTestCase {
|
||||
|
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service.simulateIncomingPacket(packet)
|
||||
|
||||
wait(for: [expectation], timeout: 1.0)
|
||||
// Allow async processing
|
||||
try await sleep(0.5)
|
||||
}
|
||||
}
|
||||
}
|
||||
|
||||
|
||||
@@ -1,54 +1,42 @@
|
||||
import XCTest
|
||||
import Testing
|
||||
@testable import bitchat
|
||||
|
||||
final class CommandProcessorTests: XCTestCase {
|
||||
|
||||
var identityManager: MockIdentityManager!
|
||||
|
||||
override func setUp() {
|
||||
super.setUp()
|
||||
// Provide a minimal identity manager for commands that query identity/block lists
|
||||
identityManager = MockIdentityManager(MockKeychain())
|
||||
}
|
||||
|
||||
override func tearDown() {
|
||||
identityManager = nil
|
||||
super.tearDown()
|
||||
}
|
||||
struct CommandProcessorTests {
|
||||
private var identityManager = MockIdentityManager(MockKeychain())
|
||||
|
||||
@MainActor
|
||||
func test_slap_notFoundGrammar() {
|
||||
@Test func slapNotFoundGrammar() {
|
||||
let processor = CommandProcessor(chatViewModel: nil, meshService: nil, identityManager: identityManager)
|
||||
let result = processor.process("/slap @system")
|
||||
switch result {
|
||||
case .error(let message):
|
||||
XCTAssertEqual(message, "cannot slap system: not found")
|
||||
#expect(message == "cannot slap system: not found")
|
||||
default:
|
||||
XCTFail("Expected error result")
|
||||
Issue.record("Expected error result")
|
||||
}
|
||||
}
|
||||
|
||||
@MainActor
|
||||
func test_hug_notFoundGrammar() {
|
||||
@Test func hugNotFoundGrammar() {
|
||||
let processor = CommandProcessor(chatViewModel: nil, meshService: nil, identityManager: identityManager)
|
||||
let result = processor.process("/hug @system")
|
||||
switch result {
|
||||
case .error(let message):
|
||||
XCTAssertEqual(message, "cannot hug system: not found")
|
||||
#expect(message == "cannot hug system: not found")
|
||||
default:
|
||||
XCTFail("Expected error result")
|
||||
Issue.record("Expected error result")
|
||||
}
|
||||
}
|
||||
|
||||
@MainActor
|
||||
func test_slap_usageMessage() {
|
||||
@Test func slapUsageMessage() {
|
||||
let processor = CommandProcessor(chatViewModel: nil, meshService: nil, identityManager: identityManager)
|
||||
let result = processor.process("/slap")
|
||||
switch result {
|
||||
case .error(let message):
|
||||
XCTAssertEqual(message, "usage: /slap <nickname>")
|
||||
#expect(message == "usage: /slap <nickname>")
|
||||
default:
|
||||
XCTFail("Expected error result for usage message")
|
||||
Issue.record("Expected error result for usage message")
|
||||
}
|
||||
}
|
||||
}
|
||||
|
||||
@@ -11,21 +11,19 @@ import CryptoKit
|
||||
import struct Foundation.UUID
|
||||
@testable import bitchat
|
||||
|
||||
// TODO: Remove once MockBLEService is refactored to fix race condition
|
||||
@Suite(.serialized)
|
||||
struct PrivateChatE2ETests {
|
||||
|
||||
private let alice: MockBLEService
|
||||
private let bob: MockBLEService
|
||||
private let charlie: MockBLEService
|
||||
private let mockKeychain: MockKeychain
|
||||
private let mockKeychain = MockKeychain()
|
||||
private let bus = MockBLEBus()
|
||||
|
||||
init() {
|
||||
// Create services with unique peer IDs to avoid any collision
|
||||
alice = MockBLEService(peerID: PeerID(str: UUID().uuidString), nickname: TestConstants.testNickname1)
|
||||
bob = MockBLEService(peerID: PeerID(str: UUID().uuidString), nickname: TestConstants.testNickname2)
|
||||
charlie = MockBLEService(peerID: PeerID(str: UUID().uuidString), nickname: TestConstants.testNickname3)
|
||||
mockKeychain = MockKeychain()
|
||||
alice = MockBLEService(peerID: PeerID(str: UUID().uuidString), nickname: TestConstants.testNickname1, bus: bus)
|
||||
bob = MockBLEService(peerID: PeerID(str: UUID().uuidString), nickname: TestConstants.testNickname2, bus: bus)
|
||||
charlie = MockBLEService(peerID: PeerID(str: UUID().uuidString), nickname: TestConstants.testNickname3, bus: bus)
|
||||
}
|
||||
|
||||
// MARK: - Basic Private Messaging Tests
|
||||
@@ -53,7 +51,7 @@ struct PrivateChatE2ETests {
|
||||
)
|
||||
|
||||
// Wait a bit to ensure message would have been delivered if it was going to be
|
||||
try? await Task.sleep(nanoseconds: UInt64(TestConstants.shortTimeout * 1_000_000_000))
|
||||
try? await sleep(0.1)
|
||||
}
|
||||
|
||||
#expect(!bobReceivedMessage, "Bob should not have received the message")
|
||||
@@ -171,7 +169,7 @@ struct PrivateChatE2ETests {
|
||||
// Send encrypted private message
|
||||
alice.sendPrivateMessage(
|
||||
TestConstants.testMessage1,
|
||||
to: TestConstants.testPeerID2,
|
||||
to: bob.peerID,
|
||||
recipientNickname: TestConstants.testNickname2
|
||||
)
|
||||
}
|
||||
@@ -235,7 +233,7 @@ struct PrivateChatE2ETests {
|
||||
for i in 0..<messageCount {
|
||||
alice.sendPrivateMessage(
|
||||
"Private message \(i)",
|
||||
to: TestConstants.testPeerID2,
|
||||
to: bob.peerID,
|
||||
recipientNickname: TestConstants.testNickname2
|
||||
)
|
||||
}
|
||||
@@ -254,7 +252,7 @@ struct PrivateChatE2ETests {
|
||||
|
||||
alice.sendPrivateMessage(
|
||||
TestConstants.testLongMessage,
|
||||
to: TestConstants.testPeerID2,
|
||||
to: bob.peerID,
|
||||
recipientNickname: TestConstants.testNickname2
|
||||
)
|
||||
}
|
||||
|
||||
@@ -10,22 +10,22 @@ import Testing
|
||||
import struct Foundation.UUID
|
||||
@testable import bitchat
|
||||
|
||||
@Suite(.serialized)
|
||||
struct PublicChatE2ETests {
|
||||
|
||||
private let alice: MockBLEService
|
||||
private let bob: MockBLEService
|
||||
private let charlie: MockBLEService
|
||||
private let david: MockBLEService
|
||||
private let bus = MockBLEBus()
|
||||
|
||||
private var receivedMessages: [String: [BitchatMessage]] = [:]
|
||||
|
||||
init() {
|
||||
// Create mock services with unique peer IDs to avoid any collision
|
||||
alice = MockBLEService(peerID: PeerID(str: UUID().uuidString), nickname: TestConstants.testNickname1)
|
||||
bob = MockBLEService(peerID: PeerID(str: UUID().uuidString), nickname: TestConstants.testNickname2)
|
||||
charlie = MockBLEService(peerID: PeerID(str: UUID().uuidString), nickname: TestConstants.testNickname3)
|
||||
david = MockBLEService(peerID: PeerID(str: UUID().uuidString), nickname: TestConstants.testNickname4)
|
||||
alice = MockBLEService(peerID: PeerID(str: UUID().uuidString), nickname: TestConstants.testNickname1, bus: bus)
|
||||
bob = MockBLEService(peerID: PeerID(str: UUID().uuidString), nickname: TestConstants.testNickname2, bus: bus)
|
||||
charlie = MockBLEService(peerID: PeerID(str: UUID().uuidString), nickname: TestConstants.testNickname3, bus: bus)
|
||||
david = MockBLEService(peerID: PeerID(str: UUID().uuidString), nickname: TestConstants.testNickname4, bus: bus)
|
||||
}
|
||||
|
||||
// MARK: - Basic Broadcasting Tests
|
||||
|
||||
@@ -34,7 +34,7 @@ struct FragmentationTests {
|
||||
ble.delegate = capture
|
||||
|
||||
// Construct a big packet (3KB) from a remote sender (not our own ID)
|
||||
let remoteShortID: PeerID = "1122334455667788"
|
||||
let remoteShortID = PeerID(str: "1122334455667788")
|
||||
let original = makeLargePublicPacket(senderShortHex: remoteShortID, size: 3_000)
|
||||
|
||||
// Use a small fragment size to ensure multiple pieces
|
||||
@@ -45,15 +45,15 @@ struct FragmentationTests {
|
||||
|
||||
// Inject fragments spaced out to avoid concurrent mutation inside BLEService
|
||||
for (i, fragment) in shuffled.enumerated() {
|
||||
let delay = UInt64(5 * i) * 1_000_000 // nanoseconds
|
||||
let delay = 5 * Double(i) * 0.001
|
||||
Task {
|
||||
try await Task.sleep(nanoseconds: delay)
|
||||
try await sleep(delay)
|
||||
ble._test_handlePacket(fragment, fromPeerID: remoteShortID)
|
||||
}
|
||||
}
|
||||
|
||||
// Allow async processing
|
||||
try await Task.sleep(nanoseconds: 500_000_000) // 0.5s
|
||||
try await sleep(0.5)
|
||||
|
||||
#expect(capture.publicMessages.count == 1)
|
||||
#expect(capture.publicMessages.first?.content.count == 3_000)
|
||||
@@ -69,7 +69,7 @@ struct FragmentationTests {
|
||||
let capture = CaptureDelegate()
|
||||
ble.delegate = capture
|
||||
|
||||
let remoteShortID: PeerID = "A1B2C3D4E5F60708"
|
||||
let remoteShortID = PeerID(str: "A1B2C3D4E5F60708")
|
||||
let original = makeLargePublicPacket(senderShortHex: remoteShortID, size: 2048)
|
||||
var frags = fragmentPacket(original, fragmentSize: 300)
|
||||
|
||||
@@ -79,15 +79,15 @@ struct FragmentationTests {
|
||||
}
|
||||
|
||||
for (i, fragment) in frags.enumerated() {
|
||||
let delay = UInt64(5 * i) * 1_000_000 // nanoseconds
|
||||
let delay = 5 * Double(i) * 0.001
|
||||
Task {
|
||||
try await Task.sleep(nanoseconds: delay)
|
||||
try await sleep(delay)
|
||||
ble._test_handlePacket(fragment, fromPeerID: remoteShortID)
|
||||
}
|
||||
}
|
||||
|
||||
// Allow async processing
|
||||
try await Task.sleep(nanoseconds: 500_000_000) // 0.5s
|
||||
try await sleep(0.5)
|
||||
|
||||
#expect(capture.publicMessages.count == 1)
|
||||
#expect(capture.publicMessages.first?.content.count == 2048)
|
||||
@@ -103,7 +103,7 @@ struct FragmentationTests {
|
||||
let capture = CaptureDelegate()
|
||||
ble.delegate = capture
|
||||
|
||||
let remoteShortID: PeerID = "0011223344556677"
|
||||
let remoteShortID = PeerID(str: "0011223344556677")
|
||||
let original = makeLargePublicPacket(senderShortHex: remoteShortID, size: 1000)
|
||||
let fragments = fragmentPacket(original, fragmentSize: 250)
|
||||
|
||||
@@ -124,15 +124,15 @@ struct FragmentationTests {
|
||||
}
|
||||
|
||||
for (i, fragment) in corrupted.enumerated() {
|
||||
let delay = UInt64(5 * i) * 1_000_000 // nanoseconds
|
||||
let delay = 5 * Double(i) * 0.001
|
||||
Task {
|
||||
try await Task.sleep(nanoseconds: delay)
|
||||
try await sleep(delay)
|
||||
ble._test_handlePacket(fragment, fromPeerID: remoteShortID)
|
||||
}
|
||||
}
|
||||
|
||||
// Allow async processing
|
||||
try await Task.sleep(nanoseconds: 500_000_000) // 0.5s
|
||||
try await sleep(0.5)
|
||||
|
||||
// Should not deliver since one fragment is invalid and reassembly can't complete
|
||||
#expect(capture.publicMessages.isEmpty)
|
||||
|
||||
@@ -1,22 +1,23 @@
|
||||
import XCTest
|
||||
import Testing
|
||||
import struct Foundation.Data
|
||||
@testable import bitchat
|
||||
|
||||
final class GCSFilterTests: XCTestCase {
|
||||
func testBuildFilterWithDuplicateIdsProducesStableEncoding() {
|
||||
struct GCSFilterTests {
|
||||
@Test func buildFilterWithDuplicateIdsProducesStableEncoding() {
|
||||
let id = Data(repeating: 0xAB, count: 16)
|
||||
let ids = Array(repeating: id, count: 64)
|
||||
|
||||
let params = GCSFilter.buildFilter(ids: ids, maxBytes: 128, targetFpr: 0.01)
|
||||
XCTAssertGreaterThanOrEqual(params.m, 1)
|
||||
#expect(params.m >= 1)
|
||||
|
||||
let decoded = GCSFilter.decodeToSortedSet(p: params.p, m: params.m, data: params.data)
|
||||
XCTAssertLessThanOrEqual(decoded.count, 1)
|
||||
#expect(decoded.count <= 1)
|
||||
}
|
||||
|
||||
func testBucketAvoidsZeroCandidate() {
|
||||
@Test func bucketAvoidsZeroCandidate() {
|
||||
let id = Data(repeating: 0x01, count: 16)
|
||||
let bucket = GCSFilter.bucket(for: id, modulus: 2)
|
||||
XCTAssertNotEqual(bucket, 0)
|
||||
XCTAssertLessThan(bucket, 2)
|
||||
#expect(bucket != 0)
|
||||
#expect(bucket < 2)
|
||||
}
|
||||
}
|
||||
|
||||
@@ -1,52 +1,38 @@
|
||||
import XCTest
|
||||
import Testing
|
||||
import Foundation
|
||||
@testable import bitchat
|
||||
|
||||
final class GeohashBookmarksStoreTests: XCTestCase {
|
||||
let storeKey = "locationChannel.bookmarks"
|
||||
var storage: UserDefaults!
|
||||
var store: GeohashBookmarksStore!
|
||||
struct GeohashBookmarksStoreTests {
|
||||
private let storeKey = "locationChannel.bookmarks"
|
||||
private let storage = UserDefaults(suiteName: UUID().uuidString)!
|
||||
private let store: GeohashBookmarksStore
|
||||
|
||||
override func setUp() {
|
||||
super.setUp()
|
||||
// Unique instance for each test to avoid race condition
|
||||
storage = UserDefaults(suiteName: UUID().uuidString)
|
||||
store = GeohashBookmarksStore(storage: storage!)
|
||||
init() {
|
||||
store = GeohashBookmarksStore(storage: storage)
|
||||
}
|
||||
|
||||
override func tearDown() {
|
||||
storage.removeObject(forKey: storeKey)
|
||||
store._resetForTesting()
|
||||
store = nil
|
||||
storage = nil
|
||||
super.tearDown()
|
||||
}
|
||||
|
||||
func testToggleAndNormalize() {
|
||||
@Test func toggleAndNormalize() {
|
||||
// Start clean
|
||||
XCTAssertTrue(store.bookmarks.isEmpty)
|
||||
#expect(store.bookmarks.isEmpty)
|
||||
|
||||
// Add with mixed case and hash prefix
|
||||
store.toggle("#U4PRUY")
|
||||
XCTAssertTrue(store.isBookmarked("u4pruy"))
|
||||
XCTAssertEqual(store.bookmarks.first, "u4pruy")
|
||||
#expect(store.isBookmarked("u4pruy"))
|
||||
#expect(store.bookmarks.first == "u4pruy")
|
||||
|
||||
// Toggling again removes
|
||||
store.toggle("u4pruy")
|
||||
XCTAssertFalse(store.isBookmarked("u4pruy"))
|
||||
XCTAssertTrue(store.bookmarks.isEmpty)
|
||||
#expect(!store.isBookmarked("u4pruy"))
|
||||
#expect(store.bookmarks.isEmpty)
|
||||
}
|
||||
|
||||
func testPersistenceWritten() throws {
|
||||
@Test func persistenceWritten() throws {
|
||||
store.toggle("ezs42")
|
||||
store.toggle("u4pruy")
|
||||
|
||||
// Verify persisted JSON contains both (order not enforced here)
|
||||
guard let data = storage.data(forKey: storeKey) else {
|
||||
XCTFail("No persisted data found")
|
||||
return
|
||||
}
|
||||
let data = try #require(storage.data(forKey: storeKey), "No persisted data found")
|
||||
let arr = try JSONDecoder().decode([String].self, from: data)
|
||||
XCTAssertTrue(arr.contains("ezs42"))
|
||||
XCTAssertTrue(arr.contains("u4pruy"))
|
||||
#expect(arr.contains("ezs42"))
|
||||
#expect(arr.contains("u4pruy"))
|
||||
}
|
||||
}
|
||||
|
||||
@@ -1,24 +1,28 @@
|
||||
import Foundation
|
||||
import XCTest
|
||||
import Testing
|
||||
@testable import bitchat
|
||||
|
||||
final class GossipSyncManagerTests: XCTestCase {
|
||||
func testConcurrentPacketIntakeAndSyncRequest() {
|
||||
let manager = GossipSyncManager(myPeerID: "0102030405060708")
|
||||
struct GossipSyncManagerTests {
|
||||
|
||||
private let myPeerID = PeerID(str: "0102030405060708")
|
||||
|
||||
@Test func concurrentPacketIntakeAndSyncRequest() async throws {
|
||||
let manager = GossipSyncManager(myPeerID: myPeerID)
|
||||
let delegate = RecordingDelegate()
|
||||
let sendExpectation = expectation(description: "sync request sent")
|
||||
delegate.onSend = { sendExpectation.fulfill() }
|
||||
manager.delegate = delegate
|
||||
|
||||
try await confirmation("sync request sent") { sent in
|
||||
delegate.onSend = {
|
||||
sent()
|
||||
}
|
||||
|
||||
let iterations = 200
|
||||
let group = DispatchGroup()
|
||||
let senderID = try #require(Data(hexString: "1122334455667788"))
|
||||
|
||||
for i in 0..<iterations {
|
||||
group.enter()
|
||||
DispatchQueue.global(qos: .userInitiated).async {
|
||||
let packet = BitchatPacket(
|
||||
type: MessageType.message.rawValue,
|
||||
senderID: Data(hexString: "1122334455667788") ?? Data(),
|
||||
senderID: senderID,
|
||||
recipientID: nil,
|
||||
timestamp: 1_000_000 + UInt64(i),
|
||||
payload: Data([UInt8(truncatingIfNeeded: i)]),
|
||||
@@ -26,35 +30,26 @@ final class GossipSyncManagerTests: XCTestCase {
|
||||
ttl: 1
|
||||
)
|
||||
manager.onPublicPacketSeen(packet)
|
||||
Thread.sleep(forTimeInterval: 0.001)
|
||||
group.leave()
|
||||
}
|
||||
try await sleep(0.001)
|
||||
}
|
||||
|
||||
DispatchQueue.global(qos: .userInitiated).asyncAfter(deadline: .now() + 0.002) {
|
||||
manager.scheduleInitialSyncToPeer("FFFFFFFFFFFFFFFF", delaySeconds: 0.0)
|
||||
manager.scheduleInitialSyncToPeer(PeerID(str: "FFFFFFFFFFFFFFFF"), delaySeconds: 0.0)
|
||||
try await sleep(0.002)
|
||||
}
|
||||
|
||||
group.wait()
|
||||
wait(for: [sendExpectation], timeout: 2.0)
|
||||
|
||||
guard let lastPacket = delegate.lastPacket else {
|
||||
XCTFail("Expected sync packet to be sent")
|
||||
return
|
||||
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)
|
||||
}
|
||||
|
||||
XCTAssertEqual(lastPacket.type, MessageType.requestSync.rawValue)
|
||||
XCTAssertNotNil(RequestSyncPacket.decode(from: lastPacket.payload))
|
||||
}
|
||||
|
||||
func testStaleAnnouncementsArePurgedWithMessages() {
|
||||
@Test func staleAnnouncementsArePurgedWithMessages() throws {
|
||||
var config = GossipSyncManager.Config()
|
||||
config.stalePeerCleanupIntervalSeconds = 0
|
||||
config.stalePeerTimeoutSeconds = 5
|
||||
|
||||
let manager = GossipSyncManager(myPeerID: "0102030405060708", config: config)
|
||||
let manager = GossipSyncManager(myPeerID: myPeerID, config: config)
|
||||
let peerHex = "0011223344556677"
|
||||
let senderData = Data(hexString: peerHex) ?? Data()
|
||||
let senderData = try #require(Data(hexString: peerHex))
|
||||
let initialTimestampMs = UInt64(Date().timeIntervalSince1970 * 1000)
|
||||
|
||||
let announcePacket = BitchatPacket(
|
||||
@@ -82,24 +77,24 @@ final class GossipSyncManagerTests: XCTestCase {
|
||||
|
||||
// Flush queue without triggering stale cleanup yet
|
||||
manager._performMaintenanceSynchronously(now: Date())
|
||||
XCTAssertTrue(manager._hasAnnouncement(for: PeerID(str: peerHex)))
|
||||
XCTAssertEqual(manager._messageCount(for: PeerID(str: peerHex)), 1)
|
||||
#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)
|
||||
XCTAssertFalse(manager._hasAnnouncement(for: PeerID(str: peerHex)))
|
||||
XCTAssertEqual(manager._messageCount(for: PeerID(str: peerHex)), 0)
|
||||
#expect(manager._hasAnnouncement(for: PeerID(str: peerHex)) == false)
|
||||
#expect(manager._messageCount(for: PeerID(str: peerHex)) == 0)
|
||||
}
|
||||
|
||||
func testIgnoresAnnounceOlderThanStaleTimeout() {
|
||||
@Test func ignoresAnnounceOlderThanStaleTimeout() throws {
|
||||
var config = GossipSyncManager.Config()
|
||||
config.stalePeerTimeoutSeconds = 5
|
||||
config.maxMessageAgeSeconds = 100
|
||||
|
||||
let manager = GossipSyncManager(myPeerID: "0102030405060708", config: config)
|
||||
let manager = GossipSyncManager(myPeerID: myPeerID, config: config)
|
||||
let peerHex = "8899aabbccddeeff"
|
||||
let senderData = Data(hexString: peerHex) ?? Data()
|
||||
let senderData = try #require(Data(hexString: peerHex))
|
||||
let staleTimestampMs = UInt64(Date().addingTimeInterval(-(config.stalePeerTimeoutSeconds + 1)).timeIntervalSince1970 * 1000)
|
||||
|
||||
let freshMessage = BitchatPacket(
|
||||
@@ -127,8 +122,8 @@ final class GossipSyncManagerTests: XCTestCase {
|
||||
|
||||
manager._performMaintenanceSynchronously()
|
||||
|
||||
XCTAssertFalse(manager._hasAnnouncement(for: PeerID(str: peerHex)))
|
||||
XCTAssertEqual(manager._messageCount(for: PeerID(str: peerHex)), 0)
|
||||
#expect(manager._hasAnnouncement(for: PeerID(str: peerHex)) == false)
|
||||
#expect(manager._messageCount(for: PeerID(str: peerHex)) == 0)
|
||||
}
|
||||
}
|
||||
|
||||
|
||||
@@ -6,52 +6,31 @@
|
||||
// For more information, see <https://unlicense.org>
|
||||
//
|
||||
|
||||
import XCTest
|
||||
import Foundation
|
||||
import CryptoKit
|
||||
import Testing
|
||||
@testable import bitchat
|
||||
|
||||
final class IntegrationTests: XCTestCase {
|
||||
struct IntegrationTests {
|
||||
|
||||
var nodes: [String: MockBLEService] = [:]
|
||||
var noiseManagers: [String: NoiseSessionManager] = [:]
|
||||
private var mockKeychain: MockKeychain!
|
||||
private var helper = TestNetworkHelper()
|
||||
|
||||
override func setUp() {
|
||||
super.setUp()
|
||||
// Use the in-memory test bus with autoFlood enabled to simulate
|
||||
// broadcast propagation across a larger mesh. Integration-only.
|
||||
MockBLEService.resetTestBus()
|
||||
MockBLEService.autoFloodEnabled = true
|
||||
mockKeychain = MockKeychain()
|
||||
|
||||
// Create a network of nodes
|
||||
createNode("Alice", peerID: TestConstants.testPeerID1)
|
||||
createNode("Bob", peerID: TestConstants.testPeerID2)
|
||||
createNode("Charlie", peerID: TestConstants.testPeerID3)
|
||||
createNode("David", peerID: TestConstants.testPeerID4)
|
||||
}
|
||||
|
||||
override func tearDown() {
|
||||
// Disable flooding to avoid cross-test interference
|
||||
MockBLEService.autoFloodEnabled = false
|
||||
nodes.removeAll()
|
||||
noiseManagers.removeAll()
|
||||
mockKeychain = nil
|
||||
super.tearDown()
|
||||
init() {
|
||||
helper.createNode("Alice", peerID: PeerID(str: UUID().uuidString))
|
||||
helper.createNode("Bob", peerID: PeerID(str: UUID().uuidString))
|
||||
helper.createNode("Charlie", peerID: PeerID(str: UUID().uuidString))
|
||||
helper.createNode("David", peerID: PeerID(str: UUID().uuidString))
|
||||
}
|
||||
|
||||
// MARK: - Multi-Peer Scenarios
|
||||
|
||||
func testFullMeshCommunication() {
|
||||
// Create full mesh - everyone connected to everyone
|
||||
connectFullMesh()
|
||||
@Test func fullMeshCommunication() async throws {
|
||||
helper.connectFullMesh()
|
||||
|
||||
let expectation = XCTestExpectation(description: "All nodes communicate")
|
||||
var messageMatrix: [String: Set<String>] = [:]
|
||||
for (senderName, _) in helper.nodes { messageMatrix[senderName] = [] }
|
||||
|
||||
// Track all receivers; parse sender name from message content "Hello from <Name>"
|
||||
for (senderName, _) in nodes { messageMatrix[senderName] = [] }
|
||||
for (receiverName, receiver) in nodes {
|
||||
for (receiverName, receiver) in helper.nodes {
|
||||
receiver.messageDeliveryHandler = { message in
|
||||
let parts = message.content.components(separatedBy: " ")
|
||||
if let last = parts.last, message.content.contains("Hello from") {
|
||||
@@ -62,108 +41,96 @@ final class IntegrationTests: XCTestCase {
|
||||
}
|
||||
}
|
||||
|
||||
// Each node sends a message
|
||||
for (name, node) in nodes {
|
||||
node.sendMessage("Hello from \(name)", mentions: [], to: nil)
|
||||
for (name, node) in helper.nodes {
|
||||
node.sendMessage("Hello from \(name)")
|
||||
}
|
||||
|
||||
// Wait and verify
|
||||
DispatchQueue.main.asyncAfter(deadline: .now() + 1.0) {
|
||||
// Each sender should have reached all other nodes
|
||||
for (sender, receivers) in messageMatrix {
|
||||
let expectedReceivers = Set(self.nodes.keys.filter { $0 != sender })
|
||||
XCTAssertEqual(receivers, expectedReceivers, "\(sender) didn't reach all nodes")
|
||||
let expectedReceivers = Set(helper.nodes.keys.filter { $0 != sender })
|
||||
#expect(receivers == expectedReceivers, "\(sender) didn't reach all nodes")
|
||||
}
|
||||
expectation.fulfill()
|
||||
}
|
||||
|
||||
wait(for: [expectation], timeout: TestConstants.defaultTimeout)
|
||||
}
|
||||
|
||||
func testDynamicTopologyChanges() {
|
||||
@Test func dynamicTopologyChanges() async throws {
|
||||
// Start with Alice -> Bob -> Charlie
|
||||
connect("Alice", "Bob")
|
||||
connect("Bob", "Charlie")
|
||||
helper.connect("Alice", "Bob")
|
||||
helper.connect("Bob", "Charlie")
|
||||
|
||||
let expectation = XCTestExpectation(description: "Topology changes handled")
|
||||
try await confirmation("Topology changes handled") { receiveMessage in
|
||||
var phase = 1
|
||||
|
||||
// Phase 1: Test initial topology
|
||||
nodes["Charlie"]!.messageDeliveryHandler = { message in
|
||||
helper.nodes["Charlie"]!.messageDeliveryHandler = { message in
|
||||
if phase == 1 && message.sender == "Alice" {
|
||||
// Now change topology: disconnect Bob, connect Alice-Charlie
|
||||
self.disconnect("Alice", "Bob")
|
||||
self.disconnect("Bob", "Charlie")
|
||||
self.connect("Alice", "Charlie")
|
||||
helper.disconnect("Alice", "Bob")
|
||||
helper.disconnect("Bob", "Charlie")
|
||||
helper.connect("Alice", "Charlie")
|
||||
phase = 2
|
||||
|
||||
// Send another message
|
||||
self.nodes["Alice"]!.sendMessage("Direct message", mentions: [], to: nil)
|
||||
helper.nodes["Alice"]!.sendMessage("Direct message")
|
||||
} else if phase == 2 && message.content == "Direct message" {
|
||||
expectation.fulfill()
|
||||
receiveMessage()
|
||||
}
|
||||
}
|
||||
|
||||
// Initial message through relay
|
||||
// Allow relay handler to be set before first send
|
||||
DispatchQueue.main.asyncAfter(deadline: .now() + 0.05) {
|
||||
self.nodes["Alice"]!.sendMessage("Relayed message", mentions: [], to: nil)
|
||||
try await sleep(0.05)
|
||||
helper.nodes["Alice"]!.sendMessage("Relayed message")
|
||||
}
|
||||
}
|
||||
|
||||
wait(for: [expectation], timeout: TestConstants.defaultTimeout)
|
||||
}
|
||||
|
||||
func testNetworkPartitionRecovery() {
|
||||
@Test func networkPartitionRecovery() async throws {
|
||||
// Create two partitions
|
||||
connect("Alice", "Bob")
|
||||
connect("Charlie", "David")
|
||||
helper.connect("Alice", "Bob")
|
||||
helper.connect("Charlie", "David")
|
||||
|
||||
let expectation = XCTestExpectation(description: "Partitions merge and communicate")
|
||||
let messagesBeforeMerge = 0
|
||||
var messagesAfterMerge = 0
|
||||
|
||||
try await confirmation("Partitions merge and communicate") { receiveMessage in
|
||||
// Monitor cross-partition messages
|
||||
nodes["David"]!.messageDeliveryHandler = { message in
|
||||
helper.nodes["David"]!.messageDeliveryHandler = { message in
|
||||
if message.sender == "Alice" {
|
||||
messagesAfterMerge += 1
|
||||
if messagesAfterMerge == 1 {
|
||||
expectation.fulfill()
|
||||
receiveMessage()
|
||||
}
|
||||
}
|
||||
}
|
||||
|
||||
// Try to send across partition (should fail)
|
||||
nodes["Alice"]!.sendMessage("Before merge", mentions: [], to: nil)
|
||||
helper.nodes["Alice"]!.sendMessage("Before merge")
|
||||
|
||||
// Merge partitions after delay
|
||||
DispatchQueue.main.asyncAfter(deadline: .now() + 0.5) {
|
||||
try await sleep(0.05)
|
||||
// Connect partitions
|
||||
self.connect("Bob", "Charlie")
|
||||
helper.connect("Bob", "Charlie")
|
||||
|
||||
// Enable relay
|
||||
self.setupRelay("Bob", nextHops: ["Charlie"])
|
||||
self.setupRelay("Charlie", nextHops: ["David"])
|
||||
helper.setupRelay("Bob", nextHops: ["Charlie"])
|
||||
helper.setupRelay("Charlie", nextHops: ["David"])
|
||||
|
||||
// Send message across merged network
|
||||
self.nodes["Alice"]!.sendMessage("After merge", mentions: [], to: nil)
|
||||
helper.nodes["Alice"]!.sendMessage("After merge")
|
||||
}
|
||||
|
||||
wait(for: [expectation], timeout: TestConstants.defaultTimeout)
|
||||
XCTAssertEqual(messagesBeforeMerge, 0)
|
||||
XCTAssertEqual(messagesAfterMerge, 1)
|
||||
#expect(messagesBeforeMerge == 0)
|
||||
#expect(messagesAfterMerge == 1)
|
||||
}
|
||||
|
||||
// MARK: - Mixed Message Type Scenarios
|
||||
|
||||
func testMixedPublicPrivateMessages() throws {
|
||||
connectFullMesh()
|
||||
@Test func mixedPublicPrivateMessages() async throws {
|
||||
helper.connectFullMesh()
|
||||
|
||||
let expectation = XCTestExpectation(description: "Mixed messages handled correctly")
|
||||
var publicCount = 0
|
||||
var privateCount = 0
|
||||
|
||||
await confirmation("Mixed messages handled correctly") { completion in
|
||||
// Bob monitors messages
|
||||
nodes["Bob"]!.messageDeliveryHandler = { message in
|
||||
helper.nodes["Bob"]!.messageDeliveryHandler = { message in
|
||||
if message.isPrivate && message.recipientNickname == "Bob" {
|
||||
privateCount += 1
|
||||
} else if !message.isPrivate {
|
||||
@@ -171,261 +138,239 @@ final class IntegrationTests: XCTestCase {
|
||||
}
|
||||
|
||||
if publicCount == 2 && privateCount == 1 {
|
||||
expectation.fulfill()
|
||||
completion()
|
||||
}
|
||||
}
|
||||
|
||||
// Alice sends mixed messages
|
||||
nodes["Alice"]!.sendMessage("Public 1", mentions: [], to: nil)
|
||||
nodes["Alice"]!.sendPrivateMessage("Private to Bob", to: TestConstants.testPeerID2, recipientNickname: "Bob")
|
||||
nodes["Alice"]!.sendMessage("Public 2", mentions: [], to: nil)
|
||||
|
||||
wait(for: [expectation], timeout: TestConstants.defaultTimeout)
|
||||
XCTAssertEqual(publicCount, 2)
|
||||
XCTAssertEqual(privateCount, 1)
|
||||
helper.nodes["Alice"]!.sendMessage("Public 1")
|
||||
helper.nodes["Alice"]!.sendPrivateMessage("Private to Bob", to: helper.nodes["Bob"]!.peerID, recipientNickname: "Bob")
|
||||
helper.nodes["Alice"]!.sendMessage("Public 2")
|
||||
}
|
||||
|
||||
func testEncryptedAndUnencryptedMix() throws {
|
||||
connect("Alice", "Bob")
|
||||
#expect(publicCount == 2)
|
||||
#expect(privateCount == 1)
|
||||
}
|
||||
|
||||
@Test func encryptedAndUnencryptedMix() async throws {
|
||||
helper.connect("Alice", "Bob")
|
||||
|
||||
// Setup Noise session
|
||||
try establishNoiseSession("Alice", "Bob")
|
||||
try helper.establishNoiseSession("Alice", "Bob")
|
||||
|
||||
let expectation = XCTestExpectation(description: "Both encrypted and plain messages work")
|
||||
var plainCount = 0
|
||||
var encryptedCount = 0
|
||||
|
||||
// Setup handlers
|
||||
try await confirmation("Both encrypted and plain messages work") { completion in
|
||||
// Plain path: send public message and count at Bob
|
||||
nodes["Bob"]!.messageDeliveryHandler = { message in
|
||||
if message.content == "Plain message" { plainCount += 1 }
|
||||
if plainCount == 1 && encryptedCount == 1 { expectation.fulfill() }
|
||||
helper.nodes["Bob"]!.messageDeliveryHandler = { message in
|
||||
if message.content == "Plain message" {
|
||||
plainCount += 1
|
||||
}
|
||||
if plainCount == 1 && encryptedCount == 1 {
|
||||
completion()
|
||||
}
|
||||
}
|
||||
|
||||
// Encrypted path: use NoiseSessionManager explicitly
|
||||
let plaintext = "Encrypted message".data(using: .utf8)!
|
||||
let ciphertext = try noiseManagers["Alice"]!.encrypt(plaintext, for: TestConstants.testPeerID2)
|
||||
nodes["Bob"]!.packetDeliveryHandler = { packet in
|
||||
let ciphertext = try helper.noiseManagers["Alice"]!.encrypt(plaintext, for: helper.nodes["Bob"]!.peerID)
|
||||
|
||||
helper.nodes["Bob"]!.packetDeliveryHandler = { packet in
|
||||
if packet.type == MessageType.noiseEncrypted.rawValue {
|
||||
if let data = try? self.noiseManagers["Bob"]!.decrypt(ciphertext, from: TestConstants.testPeerID1),
|
||||
if let data = try? helper.noiseManagers["Bob"]!.decrypt(ciphertext, from: helper.nodes["Alice"]!.peerID),
|
||||
data == plaintext {
|
||||
encryptedCount = 1
|
||||
if plainCount == 1 { expectation.fulfill() }
|
||||
if plainCount == 1 {
|
||||
completion()
|
||||
}
|
||||
}
|
||||
}
|
||||
}
|
||||
|
||||
nodes["Alice"]!.sendMessage("Plain message", mentions: [], to: nil)
|
||||
helper.nodes["Alice"]!.sendMessage("Plain message")
|
||||
// Deliver encrypted packet directly
|
||||
let encPacket = TestHelpers.createTestPacket(type: MessageType.noiseEncrypted.rawValue, payload: ciphertext)
|
||||
nodes["Bob"]!.simulateIncomingPacket(encPacket)
|
||||
|
||||
wait(for: [expectation], timeout: TestConstants.defaultTimeout)
|
||||
helper.nodes["Bob"]!.simulateIncomingPacket(encPacket)
|
||||
}
|
||||
}
|
||||
|
||||
// MARK: - Network Resilience Tests
|
||||
|
||||
func testMessageDeliveryUnderChurn() {
|
||||
@Test func messageDeliveryUnderChurn() async throws {
|
||||
// Start with stable network
|
||||
connectFullMesh()
|
||||
helper.connectFullMesh()
|
||||
|
||||
let expectation = XCTestExpectation(description: "Messages delivered despite churn")
|
||||
var receivedMessages = Set<String>()
|
||||
let totalMessages = 10
|
||||
|
||||
try await confirmation("Messages delivered despite churn", expectedCount: totalMessages) { completion in
|
||||
// David tracks received messages
|
||||
nodes["David"]!.messageDeliveryHandler = { message in
|
||||
receivedMessages.insert(message.content)
|
||||
if receivedMessages.count == totalMessages {
|
||||
expectation.fulfill()
|
||||
}
|
||||
helper.nodes["David"]!.messageDeliveryHandler = { message in
|
||||
completion()
|
||||
}
|
||||
|
||||
// Send messages while churning network
|
||||
for i in 0..<totalMessages {
|
||||
nodes["Alice"]!.sendMessage("Message \(i)", mentions: [], to: nil)
|
||||
helper.nodes["Alice"]!.sendMessage("Message \(i)")
|
||||
|
||||
// Simulate churn
|
||||
if i % 3 == 0 {
|
||||
// Disconnect and reconnect random connection
|
||||
let pairs = [("Alice", "Bob"), ("Bob", "Charlie"), ("Charlie", "David")]
|
||||
let randomPair = pairs.randomElement()!
|
||||
disconnect(randomPair.0, randomPair.1)
|
||||
|
||||
DispatchQueue.main.asyncAfter(deadline: .now() + 0.1) {
|
||||
self.connect(randomPair.0, randomPair.1)
|
||||
helper.disconnect(randomPair.0, randomPair.1)
|
||||
try await sleep(0.01)
|
||||
helper.connect(randomPair.0, randomPair.1)
|
||||
}
|
||||
}
|
||||
}
|
||||
}
|
||||
|
||||
wait(for: [expectation], timeout: TestConstants.longTimeout)
|
||||
XCTAssertEqual(receivedMessages.count, totalMessages)
|
||||
}
|
||||
@Test func peerPresenceTrackingAndReconnection() async throws {
|
||||
helper.connect("Alice", "Bob")
|
||||
|
||||
func testPeerPresenceTrackingAndReconnection() {
|
||||
// Test that after disconnect/reconnect, message delivery resumes
|
||||
connect("Alice", "Bob")
|
||||
|
||||
let expectation = XCTestExpectation(description: "Delivery after reconnection")
|
||||
var delivered = false
|
||||
|
||||
nodes["Bob"]!.messageDeliveryHandler = { message in
|
||||
if message.content == "After reconnect" && !delivered {
|
||||
delivered = true
|
||||
expectation.fulfill()
|
||||
await confirmation("Delivery after reconnection") { delivered in
|
||||
helper.nodes["Bob"]!.messageDeliveryHandler = { message in
|
||||
if message.content == "After reconnect" {
|
||||
delivered()
|
||||
}
|
||||
}
|
||||
|
||||
// Simulate disconnect (out of range)
|
||||
disconnect("Alice", "Bob")
|
||||
helper.disconnect("Alice", "Bob")
|
||||
// Reconnect
|
||||
connect("Alice", "Bob")
|
||||
helper.connect("Alice", "Bob")
|
||||
|
||||
// Send after reconnection
|
||||
nodes["Alice"]!.sendMessage("After reconnect", mentions: [], to: nil)
|
||||
|
||||
wait(for: [expectation], timeout: TestConstants.defaultTimeout)
|
||||
XCTAssertTrue(delivered)
|
||||
helper.nodes["Alice"]!.sendMessage("After reconnect")
|
||||
}
|
||||
}
|
||||
|
||||
func testEncryptedMessageAfterPeerRestart() {
|
||||
// Test that encrypted messages work after one peer restarts
|
||||
connect("Alice", "Bob")
|
||||
@Test func encryptedMessageAfterPeerRestart() async throws {
|
||||
helper.connect("Alice", "Bob")
|
||||
do {
|
||||
try establishNoiseSession("Alice", "Bob")
|
||||
try helper.establishNoiseSession("Alice", "Bob")
|
||||
} catch {
|
||||
XCTFail("Failed to establish Noise session: \(error)")
|
||||
Issue.record("Failed to establish Noise session: \(error)")
|
||||
}
|
||||
|
||||
// Exchange an encrypted message
|
||||
let firstExpectation = XCTestExpectation(description: "First message received")
|
||||
nodes["Bob"]!.messageDeliveryHandler = { message in
|
||||
await confirmation("First message received") { received in
|
||||
helper.nodes["Bob"]!.messageDeliveryHandler = { message in
|
||||
if message.content == "Before restart" && message.isPrivate {
|
||||
firstExpectation.fulfill()
|
||||
received()
|
||||
}
|
||||
}
|
||||
|
||||
nodes["Alice"]!.sendPrivateMessage("Before restart", to: TestConstants.testPeerID2, recipientNickname: "Bob")
|
||||
wait(for: [firstExpectation], timeout: TestConstants.defaultTimeout)
|
||||
helper.nodes["Alice"]!.sendPrivateMessage("Before restart", to: helper.nodes["Bob"]!.peerID, recipientNickname: "Bob")
|
||||
}
|
||||
|
||||
// Simulate Bob restart by recreating his Noise manager
|
||||
let bobKey = Curve25519.KeyAgreement.PrivateKey()
|
||||
noiseManagers["Bob"] = NoiseSessionManager(localStaticKey: bobKey, keychain: mockKeychain)
|
||||
helper.noiseManagers["Bob"] = NoiseSessionManager(localStaticKey: bobKey, keychain: helper.mockKeychain)
|
||||
|
||||
// Re-establish Noise handshake explicitly via managers
|
||||
do {
|
||||
let m1 = try noiseManagers["Bob"]!.initiateHandshake(with: TestConstants.testPeerID1)
|
||||
let m2 = try noiseManagers["Alice"]!.handleIncomingHandshake(from: TestConstants.testPeerID2, message: m1)!
|
||||
let m3 = try noiseManagers["Bob"]!.handleIncomingHandshake(from: TestConstants.testPeerID1, message: m2)!
|
||||
_ = try noiseManagers["Alice"]!.handleIncomingHandshake(from: TestConstants.testPeerID2, message: m3)
|
||||
let m1 = try helper.noiseManagers["Bob"]!.initiateHandshake(with: helper.nodes["Alice"]!.peerID)
|
||||
let m2 = try helper.noiseManagers["Alice"]!.handleIncomingHandshake(from: helper.nodes["Bob"]!.peerID, message: m1)!
|
||||
let m3 = try helper.noiseManagers["Bob"]!.handleIncomingHandshake(from: helper.nodes["Alice"]!.peerID, message: m2)!
|
||||
_ = try helper.noiseManagers["Alice"]!.handleIncomingHandshake(from: helper.nodes["Bob"]!.peerID, message: m3)
|
||||
} catch {
|
||||
XCTFail("Failed to re-establish Noise session after restart: \(error)")
|
||||
Issue.record("Failed to re-establish Noise session after restart: \(error)")
|
||||
}
|
||||
|
||||
// Now messages should work again
|
||||
let secondExpectation = XCTestExpectation(description: "Message after restart received")
|
||||
nodes["Alice"]!.messageDeliveryHandler = { message in
|
||||
// Now messages should work again - simulate encrypted packet
|
||||
await confirmation("Message after restart received") { received in
|
||||
helper.nodes["Alice"]!.messageDeliveryHandler = { message in
|
||||
if message.content == "After restart success" && message.isPrivate {
|
||||
secondExpectation.fulfill()
|
||||
received()
|
||||
}
|
||||
}
|
||||
|
||||
// Simulate encrypted message using managers
|
||||
do {
|
||||
let plaintext = "After restart success".data(using: .utf8)!
|
||||
let ciphertext = try noiseManagers["Bob"]!.encrypt(plaintext, for: TestConstants.testPeerID1)
|
||||
let ciphertext = try helper.noiseManagers["Bob"]!.encrypt(plaintext, for: helper.nodes["Alice"]!.peerID)
|
||||
let packet = TestHelpers.createTestPacket(type: MessageType.noiseEncrypted.rawValue, payload: ciphertext)
|
||||
nodes["Alice"]!.packetDeliveryHandler = { pkt in
|
||||
helper.nodes["Alice"]!.packetDeliveryHandler = { pkt in
|
||||
if pkt.type == MessageType.noiseEncrypted.rawValue {
|
||||
if let data = try? self.noiseManagers["Alice"]!.decrypt(pkt.payload, from: TestConstants.testPeerID2),
|
||||
if let data = try? helper.noiseManagers["Alice"]!.decrypt(pkt.payload, from: helper.nodes["Bob"]!.peerID),
|
||||
String(data: data, encoding: .utf8) == "After restart success" {
|
||||
secondExpectation.fulfill()
|
||||
received()
|
||||
}
|
||||
}
|
||||
}
|
||||
nodes["Alice"]!.simulateIncomingPacket(packet)
|
||||
helper.nodes["Alice"]!.simulateIncomingPacket(packet)
|
||||
} catch {
|
||||
XCTFail("Encryption after restart failed: \(error)")
|
||||
Issue.record("Encryption after restart failed: \(error)")
|
||||
}
|
||||
}
|
||||
wait(for: [secondExpectation], timeout: TestConstants.defaultTimeout)
|
||||
}
|
||||
|
||||
func testLargeScaleNetwork() {
|
||||
@Test func largeScaleNetwork() async throws {
|
||||
// Create larger network
|
||||
for i in 5...10 {
|
||||
createNode("Node\(i)", peerID: "PEER\(i)")
|
||||
helper.createNode("Node\(i)", peerID: PeerID(str: "PEER\(i)"))
|
||||
}
|
||||
|
||||
// Connect in ring topology with cross-connections
|
||||
let allNodes = Array(nodes.keys).sorted()
|
||||
let allNodes = Array(helper.nodes.keys).sorted()
|
||||
for i in 0..<allNodes.count {
|
||||
// Ring connection
|
||||
connect(allNodes[i], allNodes[(i + 1) % allNodes.count])
|
||||
helper.connect(allNodes[i], allNodes[(i + 1) % allNodes.count])
|
||||
|
||||
// Cross connection
|
||||
if i + 3 < allNodes.count {
|
||||
connect(allNodes[i], allNodes[i + 3])
|
||||
helper.connect(allNodes[i], allNodes[i + 3])
|
||||
}
|
||||
}
|
||||
|
||||
let expectation = XCTestExpectation(description: "Large network handles broadcast")
|
||||
var nodesReached = Set<String>()
|
||||
|
||||
await confirmation("Large network handles broadcast", expectedCount: helper.nodes.count - 1) { nodeReaced in
|
||||
// All nodes except Alice listen
|
||||
for (name, node) in nodes where name != "Alice" {
|
||||
for (name, node) in helper.nodes where name != "Alice" {
|
||||
node.messageDeliveryHandler = { message in
|
||||
if message.content == "Broadcast test" {
|
||||
nodesReached.insert(name)
|
||||
if nodesReached.count == self.nodes.count - 1 {
|
||||
expectation.fulfill()
|
||||
}
|
||||
nodeReaced()
|
||||
}
|
||||
}
|
||||
}
|
||||
|
||||
// Alice broadcasts
|
||||
nodes["Alice"]!.sendMessage("Broadcast test", mentions: [], to: nil)
|
||||
|
||||
wait(for: [expectation], timeout: TestConstants.longTimeout)
|
||||
XCTAssertEqual(nodesReached.count, nodes.count - 1)
|
||||
helper.nodes["Alice"]!.sendMessage("Broadcast test")
|
||||
}
|
||||
}
|
||||
|
||||
// MARK: - Stress Tests
|
||||
|
||||
func testHighLoadScenario() {
|
||||
connectFullMesh()
|
||||
@Test func highLoadScenario() async throws {
|
||||
helper.connectFullMesh()
|
||||
|
||||
let messagesPerNode = 25
|
||||
let expectedTotal = messagesPerNode * nodes.count * (nodes.count - 1)
|
||||
var receivedTotal = 0
|
||||
let expectation = XCTestExpectation(description: "High load handled")
|
||||
let expectedTotal = messagesPerNode * helper.nodes.count * (helper.nodes.count - 1)
|
||||
|
||||
await confirmation("High load handled", expectedCount: expectedTotal) { received in
|
||||
// Each node tracks messages
|
||||
for (_, node) in nodes {
|
||||
for (_, node) in helper.nodes {
|
||||
node.messageDeliveryHandler = { _ in
|
||||
receivedTotal += 1
|
||||
if receivedTotal >= (expectedTotal - 2) {
|
||||
expectation.fulfill()
|
||||
}
|
||||
received()
|
||||
}
|
||||
}
|
||||
|
||||
// All nodes send many messages simultaneously
|
||||
DispatchQueue.concurrentPerform(iterations: nodes.count) { index in
|
||||
let nodeName = Array(nodes.keys).sorted()[index]
|
||||
await withTaskGroup(of: Void.self) { group in
|
||||
for (name, node) in helper.nodes {
|
||||
group.addTask {
|
||||
for i in 0..<messagesPerNode {
|
||||
nodes[nodeName]!.sendMessage("\(nodeName) message \(i)", mentions: [], to: nil)
|
||||
node.sendMessage("\(name) message \(i)")
|
||||
}
|
||||
}
|
||||
}
|
||||
await group.waitForAll()
|
||||
}
|
||||
}
|
||||
}
|
||||
|
||||
wait(for: [expectation], timeout: TestConstants.longTimeout)
|
||||
XCTAssertGreaterThanOrEqual(receivedTotal, expectedTotal - 2)
|
||||
}
|
||||
@Test func mixedTrafficPatterns() async throws {
|
||||
helper.connectFullMesh()
|
||||
|
||||
func testMixedTrafficPatterns() {
|
||||
connectFullMesh()
|
||||
|
||||
let expectation = XCTestExpectation(description: "Mixed traffic handled")
|
||||
var metrics = [
|
||||
"public": 0,
|
||||
"private": 0,
|
||||
@@ -434,7 +379,7 @@ final class IntegrationTests: XCTestCase {
|
||||
]
|
||||
|
||||
// Setup complex handlers
|
||||
for (name, node) in nodes {
|
||||
for (name, node) in helper.nodes {
|
||||
node.messageDeliveryHandler = { message in
|
||||
if message.isPrivate {
|
||||
metrics["private"]! += 1
|
||||
@@ -453,88 +398,78 @@ final class IntegrationTests: XCTestCase {
|
||||
}
|
||||
|
||||
// Generate mixed traffic
|
||||
nodes["Alice"]!.sendMessage("Public broadcast", mentions: [], to: nil)
|
||||
nodes["Alice"]!.sendPrivateMessage("Private to Bob", to: TestConstants.testPeerID2, recipientNickname: "Bob")
|
||||
nodes["Bob"]!.sendMessage("Mentioning @Charlie", mentions: ["Charlie"], to: nil)
|
||||
helper.nodes["Alice"]!.sendMessage("Public broadcast")
|
||||
helper.nodes["Alice"]!.sendPrivateMessage("Private to Bob", to: helper.nodes["Bob"]!.peerID, recipientNickname: "Bob")
|
||||
helper.nodes["Bob"]!.sendMessage("Mentioning @Charlie", mentions: ["Charlie"])
|
||||
|
||||
// Disconnect to force relay
|
||||
disconnect("Alice", "David")
|
||||
nodes["Alice"]!.sendMessage("Needs relay to David", mentions: [], to: nil)
|
||||
helper.disconnect("Alice", "David")
|
||||
helper.nodes["Alice"]!.sendMessage("Needs relay to David")
|
||||
|
||||
DispatchQueue.main.asyncAfter(deadline: .now() + 1.0) {
|
||||
XCTAssertGreaterThan(metrics["public"]!, 0)
|
||||
XCTAssertGreaterThan(metrics["private"]!, 0)
|
||||
XCTAssertGreaterThan(metrics["mentions"]!, 0)
|
||||
expectation.fulfill()
|
||||
}
|
||||
|
||||
wait(for: [expectation], timeout: TestConstants.defaultTimeout)
|
||||
#expect(metrics["public", default: 0] > 0)
|
||||
#expect(metrics["private", default: 0] > 0)
|
||||
#expect(metrics["mentions", default: 0] > 0)
|
||||
}
|
||||
|
||||
// MARK: - Security Integration Tests
|
||||
// Replacement for the legacy NACK test: verifies that after a
|
||||
// decryption failure, peers can rehandshake via NoiseSessionManager
|
||||
// and resume secure communication.
|
||||
func testRehandshakeAfterDecryptionFailure() throws {
|
||||
@Test func rehandshakeAfterDecryptionFailure() throws {
|
||||
// Alice <-> Bob connected
|
||||
connect("Alice", "Bob")
|
||||
helper.connect("Alice", "Bob")
|
||||
|
||||
// Establish initial Noise session
|
||||
try establishNoiseSession("Alice", "Bob")
|
||||
try helper.establishNoiseSession("Alice", "Bob")
|
||||
|
||||
guard let aliceManager = noiseManagers["Alice"],
|
||||
let bobManager = noiseManagers["Bob"],
|
||||
let alicePeerID = nodes["Alice"]?.peerID,
|
||||
let bobPeerID = nodes["Bob"]?.peerID else {
|
||||
return XCTFail("Missing managers or peer IDs")
|
||||
guard let aliceManager = helper.noiseManagers["Alice"],
|
||||
let bobManager = helper.noiseManagers["Bob"],
|
||||
let alicePeerID = helper.nodes["Alice"]?.peerID,
|
||||
let bobPeerID = helper.nodes["Bob"]?.peerID
|
||||
else {
|
||||
Issue.record("Missing managers or peer IDs")
|
||||
return
|
||||
}
|
||||
|
||||
// Baseline: encrypt from Alice, decrypt at Bob
|
||||
let plaintext1 = Data("hello-secure".utf8)
|
||||
let encrypted1 = try aliceManager.encrypt(plaintext1, for: bobPeerID)
|
||||
let decrypted1 = try bobManager.decrypt(encrypted1, from: alicePeerID)
|
||||
XCTAssertEqual(decrypted1, plaintext1)
|
||||
#expect(decrypted1 == plaintext1)
|
||||
|
||||
// Simulate decryption failure by corrupting ciphertext
|
||||
var corrupted = encrypted1
|
||||
if !corrupted.isEmpty { corrupted[corrupted.count - 1] ^= 0xFF }
|
||||
do {
|
||||
let corrupted = encrypted1.prefix(15)
|
||||
#expect(throws: NoiseError.invalidCiphertext) {
|
||||
_ = try bobManager.decrypt(corrupted, from: alicePeerID)
|
||||
XCTFail("Corrupted ciphertext should not decrypt")
|
||||
} catch {
|
||||
// Expected: treat as session desync and rehandshake
|
||||
}
|
||||
|
||||
// Bob initiates a new handshake; clear Bob's session first so initiateHandshake won't throw
|
||||
bobManager.removeSession(for: alicePeerID)
|
||||
try establishNoiseSession("Bob", "Alice")
|
||||
try helper.establishNoiseSession("Bob", "Alice")
|
||||
|
||||
// After rehandshake, encryption/decryption works again
|
||||
let plaintext2 = Data("hello-again".utf8)
|
||||
let encrypted2 = try aliceManager.encrypt(plaintext2, for: bobPeerID)
|
||||
let decrypted2 = try bobManager.decrypt(encrypted2, from: alicePeerID)
|
||||
XCTAssertEqual(decrypted2, plaintext2)
|
||||
#expect(decrypted2 == plaintext2)
|
||||
}
|
||||
|
||||
|
||||
func testEndToEndSecurityScenario() throws {
|
||||
connect("Alice", "Bob")
|
||||
connect("Bob", "Charlie") // Charlie will try to eavesdrop
|
||||
@Test func endToEndSecurityScenario() async throws {
|
||||
helper.connect("Alice", "Bob")
|
||||
helper.connect("Bob", "Charlie") // Charlie will try to eavesdrop
|
||||
|
||||
// Establish secure session between Alice and Bob only
|
||||
try establishNoiseSession("Alice", "Bob")
|
||||
try helper.establishNoiseSession("Alice", "Bob")
|
||||
|
||||
let expectation = XCTestExpectation(description: "Secure communication maintained")
|
||||
var bobDecrypted = false
|
||||
var charlieIntercepted = false
|
||||
await confirmation("Secure communication maintained", expectedCount: 2) { receivedPacket in
|
||||
|
||||
// Setup encryption at Alice
|
||||
nodes["Alice"]!.packetDeliveryHandler = { packet in
|
||||
helper.nodes["Alice"]!.packetDeliveryHandler = { packet in
|
||||
if packet.type == 0x01,
|
||||
let message = BitchatMessage(packet.payload),
|
||||
message.isPrivate && packet.recipientID != nil {
|
||||
// Encrypt private messages
|
||||
if let encrypted = try? self.noiseManagers["Alice"]!.encrypt(packet.payload, for: TestConstants.testPeerID2) {
|
||||
if let encrypted = try? helper.noiseManagers["Alice"]!.encrypt(packet.payload, for: helper.nodes["Bob"]!.peerID) {
|
||||
let encPacket = BitchatPacket(
|
||||
type: 0x02,
|
||||
senderID: packet.senderID,
|
||||
@@ -544,131 +479,38 @@ final class IntegrationTests: XCTestCase {
|
||||
signature: packet.signature,
|
||||
ttl: packet.ttl
|
||||
)
|
||||
self.nodes["Bob"]!.simulateIncomingPacket(encPacket)
|
||||
helper.nodes["Bob"]!.simulateIncomingPacket(encPacket)
|
||||
}
|
||||
}
|
||||
}
|
||||
|
||||
// Bob can decrypt
|
||||
nodes["Bob"]!.packetDeliveryHandler = { packet in
|
||||
helper.nodes["Bob"]!.packetDeliveryHandler = { packet in
|
||||
if packet.type == 0x02 {
|
||||
if let decrypted = try? self.noiseManagers["Bob"]!.decrypt(packet.payload, from: TestConstants.testPeerID1),
|
||||
let message = BitchatMessage(decrypted) {
|
||||
bobDecrypted = message.content == "Secret message"
|
||||
expectation.fulfill()
|
||||
receivedPacket()
|
||||
if let decrypted = try? helper.noiseManagers["Bob"]!.decrypt(packet.payload, from: helper.nodes["Alice"]!.peerID) {
|
||||
#expect(BitchatMessage(decrypted)?.content == "Secret message")
|
||||
} else {
|
||||
Issue.record("Bob was unable to decrypt the message")
|
||||
}
|
||||
|
||||
// Relay encrypted packet to Charlie
|
||||
self.nodes["Charlie"]!.simulateIncomingPacket(packet)
|
||||
helper.nodes["Charlie"]!.simulateIncomingPacket(packet)
|
||||
}
|
||||
}
|
||||
|
||||
// Charlie cannot decrypt
|
||||
nodes["Charlie"]!.packetDeliveryHandler = { packet in
|
||||
helper.nodes["Charlie"]!.packetDeliveryHandler = { packet in
|
||||
if packet.type == 0x02 {
|
||||
charlieIntercepted = true
|
||||
// Try to decrypt (should fail)
|
||||
do {
|
||||
_ = try self.noiseManagers["Charlie"]?.decrypt(packet.payload, from: TestConstants.testPeerID1)
|
||||
XCTFail("Charlie should not be able to decrypt")
|
||||
} catch {
|
||||
// Expected
|
||||
receivedPacket()
|
||||
#expect(throws: NoiseSessionError.sessionNotFound, "Charlie should not be able to decrypt") {
|
||||
_ = try helper.noiseManagers["Charlie"]?.decrypt(packet.payload, from: helper.nodes["Alice"]!.peerID)
|
||||
}
|
||||
}
|
||||
}
|
||||
|
||||
// Send encrypted private message
|
||||
nodes["Alice"]!.sendPrivateMessage("Secret message", to: TestConstants.testPeerID2, recipientNickname: "Bob")
|
||||
|
||||
wait(for: [expectation], timeout: TestConstants.defaultTimeout)
|
||||
XCTAssertTrue(bobDecrypted)
|
||||
XCTAssertTrue(charlieIntercepted)
|
||||
}
|
||||
|
||||
// MARK: - Helper Methods
|
||||
|
||||
private func createNode(_ name: String, peerID: PeerID) {
|
||||
let node = MockBLEService()
|
||||
node.myPeerID = peerID
|
||||
node.mockNickname = name
|
||||
nodes[name] = node
|
||||
|
||||
// Create Noise manager
|
||||
let key = Curve25519.KeyAgreement.PrivateKey()
|
||||
noiseManagers[name] = NoiseSessionManager(localStaticKey: key, keychain: mockKeychain)
|
||||
}
|
||||
|
||||
private func connect(_ node1: String, _ node2: String) {
|
||||
guard let n1 = nodes[node1], let n2 = nodes[node2] else { return }
|
||||
n1.simulateConnectedPeer(n2.peerID)
|
||||
n2.simulateConnectedPeer(n1.peerID)
|
||||
}
|
||||
|
||||
private func disconnect(_ node1: String, _ node2: String) {
|
||||
guard let n1 = nodes[node1], let n2 = nodes[node2] else { return }
|
||||
n1.simulateDisconnectedPeer(n2.peerID)
|
||||
n2.simulateDisconnectedPeer(n1.peerID)
|
||||
}
|
||||
|
||||
private func connectFullMesh() {
|
||||
let nodeNames = Array(nodes.keys)
|
||||
for i in 0..<nodeNames.count {
|
||||
for j in i+1..<nodeNames.count {
|
||||
connect(nodeNames[i], nodeNames[j])
|
||||
helper.nodes["Alice"]!.sendPrivateMessage("Secret message", to: helper.nodes["Bob"]!.peerID, recipientNickname: "Bob")
|
||||
}
|
||||
}
|
||||
}
|
||||
|
||||
private func setupRelay(_ nodeName: String, nextHops: [String]) {
|
||||
guard let node = nodes[nodeName] else { return }
|
||||
|
||||
node.packetDeliveryHandler = { packet in
|
||||
guard packet.ttl > 1 else { return }
|
||||
|
||||
if let message = BitchatMessage(packet.payload) {
|
||||
guard message.senderPeerID != node.peerID else { return }
|
||||
|
||||
let relayMessage = BitchatMessage(
|
||||
id: message.id,
|
||||
sender: message.sender,
|
||||
content: message.content,
|
||||
timestamp: message.timestamp,
|
||||
isRelay: true,
|
||||
originalSender: message.isRelay ? message.originalSender : message.sender,
|
||||
isPrivate: message.isPrivate,
|
||||
recipientNickname: message.recipientNickname,
|
||||
senderPeerID: message.senderPeerID,
|
||||
mentions: message.mentions
|
||||
)
|
||||
|
||||
if let relayPayload = relayMessage.toBinaryPayload() {
|
||||
let relayPacket = BitchatPacket(
|
||||
type: packet.type,
|
||||
senderID: packet.senderID,
|
||||
recipientID: packet.recipientID,
|
||||
timestamp: packet.timestamp,
|
||||
payload: relayPayload,
|
||||
signature: packet.signature,
|
||||
ttl: packet.ttl - 1
|
||||
)
|
||||
|
||||
for hop in nextHops {
|
||||
self.nodes[hop]?.simulateIncomingPacket(relayPacket)
|
||||
}
|
||||
}
|
||||
}
|
||||
}
|
||||
}
|
||||
|
||||
private func establishNoiseSession(_ node1: String, _ node2: String) throws {
|
||||
guard let manager1 = noiseManagers[node1],
|
||||
let manager2 = noiseManagers[node2],
|
||||
let peer1ID = nodes[node1]?.peerID,
|
||||
let peer2ID = nodes[node2]?.peerID else { return }
|
||||
|
||||
let msg1 = try manager1.initiateHandshake(with: peer2ID)
|
||||
let msg2 = try manager2.handleIncomingHandshake(from: peer1ID, message: msg1)!
|
||||
let msg3 = try manager1.handleIncomingHandshake(from: peer2ID, message: msg2)!
|
||||
_ = try manager2.handleIncomingHandshake(from: peer1ID, message: msg3)
|
||||
}
|
||||
}
|
||||
|
||||
@@ -0,0 +1,123 @@
|
||||
//
|
||||
// TestNetworkHelper.swift
|
||||
// bitchatTests
|
||||
//
|
||||
// Extracted shared, mutable integration state for nodes and noise sessions.
|
||||
// Keeps test containers nonmutating (Swift Testing-friendly).
|
||||
//
|
||||
|
||||
import Foundation
|
||||
import CryptoKit
|
||||
@testable import bitchat
|
||||
|
||||
final class TestNetworkHelper {
|
||||
// Public, read-only views for tests; mutation only through methods
|
||||
var nodes: [String: MockBLEService] = [:]
|
||||
var noiseManagers: [String: NoiseSessionManager] = [:]
|
||||
let mockKeychain = MockKeychain()
|
||||
private let bus = MockBLEBus(autoFloodEnabled: true)
|
||||
|
||||
// MARK: - Node/Manager management
|
||||
|
||||
@discardableResult
|
||||
func createNode(_ name: String, peerID: PeerID) -> MockBLEService {
|
||||
let node = MockBLEService(bus: bus)
|
||||
node.myPeerID = peerID
|
||||
node.mockNickname = name
|
||||
nodes[name] = node
|
||||
|
||||
// Create/replace Noise manager for this node
|
||||
let key = Curve25519.KeyAgreement.PrivateKey()
|
||||
noiseManagers[name] = NoiseSessionManager(localStaticKey: key, keychain: mockKeychain)
|
||||
return node
|
||||
}
|
||||
|
||||
func getNode(_ name: String) -> MockBLEService? {
|
||||
nodes[name]
|
||||
}
|
||||
|
||||
func getManager(_ name: String) -> NoiseSessionManager? {
|
||||
noiseManagers[name]
|
||||
}
|
||||
|
||||
// MARK: - Topology
|
||||
|
||||
func connect(_ a: String, _ b: String) {
|
||||
guard let n1 = nodes[a], let n2 = nodes[b] else { return }
|
||||
n1.simulateConnectedPeer(n2.peerID)
|
||||
n2.simulateConnectedPeer(n1.peerID)
|
||||
}
|
||||
|
||||
func disconnect(_ a: String, _ b: String) {
|
||||
guard let n1 = nodes[a], let n2 = nodes[b] else { return }
|
||||
n1.simulateDisconnectedPeer(n2.peerID)
|
||||
n2.simulateDisconnectedPeer(n1.peerID)
|
||||
}
|
||||
|
||||
func connectFullMesh() {
|
||||
let names = Array(nodes.keys)
|
||||
for i in 0..<names.count {
|
||||
for j in (i+1)..<names.count {
|
||||
connect(names[i], names[j])
|
||||
}
|
||||
}
|
||||
}
|
||||
|
||||
// MARK: - Relay
|
||||
|
||||
func setupRelay(_ nodeName: String, nextHops: [String]) {
|
||||
guard let node = nodes[nodeName] else { return }
|
||||
node.packetDeliveryHandler = { [weak self] packet in
|
||||
guard let self else { return }
|
||||
guard packet.ttl > 1 else { return }
|
||||
|
||||
if let message = BitchatMessage(packet.payload) {
|
||||
guard message.senderPeerID != node.peerID else { return }
|
||||
|
||||
let relayMessage = BitchatMessage(
|
||||
id: message.id,
|
||||
sender: message.sender,
|
||||
content: message.content,
|
||||
timestamp: message.timestamp,
|
||||
isRelay: true,
|
||||
originalSender: message.isRelay ? message.originalSender : message.sender,
|
||||
isPrivate: message.isPrivate,
|
||||
recipientNickname: message.recipientNickname,
|
||||
senderPeerID: message.senderPeerID,
|
||||
mentions: message.mentions
|
||||
)
|
||||
|
||||
if let relayPayload = relayMessage.toBinaryPayload() {
|
||||
let relayPacket = BitchatPacket(
|
||||
type: packet.type,
|
||||
senderID: packet.senderID,
|
||||
recipientID: packet.recipientID,
|
||||
timestamp: packet.timestamp,
|
||||
payload: relayPayload,
|
||||
signature: packet.signature,
|
||||
ttl: packet.ttl - 1
|
||||
)
|
||||
|
||||
for hop in nextHops {
|
||||
self.nodes[hop]?.simulateIncomingPacket(relayPacket)
|
||||
}
|
||||
}
|
||||
}
|
||||
}
|
||||
}
|
||||
|
||||
// MARK: - Noise sessions
|
||||
|
||||
func establishNoiseSession(_ node1: String, _ node2: String) throws {
|
||||
guard let manager1 = noiseManagers[node1],
|
||||
let manager2 = noiseManagers[node2],
|
||||
let peer1ID = nodes[node1]?.peerID,
|
||||
let peer2ID = nodes[node2]?.peerID else { return }
|
||||
|
||||
let msg1 = try manager1.initiateHandshake(with: peer2ID)
|
||||
let msg2 = try manager2.handleIncomingHandshake(from: peer1ID, message: msg1)!
|
||||
let msg3 = try manager1.handleIncomingHandshake(from: peer2ID, message: msg2)!
|
||||
_ = try manager2.handleIncomingHandshake(from: peer1ID, message: msg3)
|
||||
}
|
||||
}
|
||||
|
||||
@@ -1,8 +1,9 @@
|
||||
import XCTest
|
||||
import Testing
|
||||
import Foundation
|
||||
@testable import bitchat
|
||||
|
||||
final class LocationChannelsTests: XCTestCase {
|
||||
func testGeohashEncoderPrecisionMapping() {
|
||||
struct LocationChannelsTests {
|
||||
@Test func geohashEncoderPrecisionMapping() {
|
||||
// Sanity: known coords (Statue of Liberty approx)
|
||||
let lat = 40.6892
|
||||
let lon = -74.0445
|
||||
@@ -12,35 +13,35 @@ final class LocationChannelsTests: XCTestCase {
|
||||
let region = Geohash.encode(latitude: lat, longitude: lon, precision: GeohashChannelLevel.province.precision)
|
||||
let country = Geohash.encode(latitude: lat, longitude: lon, precision: GeohashChannelLevel.region.precision)
|
||||
|
||||
XCTAssertEqual(block.count, 7)
|
||||
XCTAssertEqual(neighborhood.count, 6)
|
||||
XCTAssertEqual(city.count, 5)
|
||||
XCTAssertEqual(region.count, 4)
|
||||
XCTAssertEqual(country.count, 2)
|
||||
#expect(block.count == 7)
|
||||
#expect(neighborhood.count == 6)
|
||||
#expect(city.count == 5)
|
||||
#expect(region.count == 4)
|
||||
#expect(country.count == 2)
|
||||
|
||||
// All prefixes must match progressively
|
||||
XCTAssertTrue(block.hasPrefix(neighborhood))
|
||||
XCTAssertTrue(neighborhood.hasPrefix(city))
|
||||
XCTAssertTrue(city.hasPrefix(region))
|
||||
XCTAssertTrue(region.hasPrefix(country))
|
||||
#expect(block.hasPrefix(neighborhood))
|
||||
#expect(neighborhood.hasPrefix(city))
|
||||
#expect(city.hasPrefix(region))
|
||||
#expect(region.hasPrefix(country))
|
||||
}
|
||||
|
||||
func testNostrGeohashFilterEncoding() throws {
|
||||
@Test func nostrGeohashFilterEncoding() throws {
|
||||
let gh = "u4pruy"
|
||||
let filter = NostrFilter.geohashEphemeral(gh)
|
||||
let data = try JSONEncoder().encode(filter)
|
||||
let json = String(data: data, encoding: .utf8) ?? ""
|
||||
// Expect kinds includes 20000 and tag filter '#g':[gh]
|
||||
XCTAssertTrue(json.contains("20000"))
|
||||
XCTAssertTrue(json.contains("\"#g\":[\"\(gh)\"]"))
|
||||
#expect(json.contains("20000"))
|
||||
#expect(json.contains("\"#g\":[\"\(gh)\"]"))
|
||||
}
|
||||
|
||||
func testPerGeohashIdentityDeterministic() throws {
|
||||
@Test func perGeohashIdentityDeterministic() throws {
|
||||
// Derive twice for same geohash; should be identical
|
||||
let idBridge = NostrIdentityBridge(keychain: MockKeychainHelper())
|
||||
let gh = "u4pruy"
|
||||
let id1 = try idBridge.deriveIdentity(forGeohash: gh)
|
||||
let id2 = try idBridge.deriveIdentity(forGeohash: gh)
|
||||
XCTAssertEqual(id1.publicKeyHex, id2.publicKeyHex)
|
||||
#expect(id1.publicKeyHex == id2.publicKeyHex)
|
||||
}
|
||||
}
|
||||
|
||||
@@ -1,8 +1,9 @@
|
||||
import XCTest
|
||||
import Testing
|
||||
import Foundation
|
||||
@testable import bitchat
|
||||
|
||||
@MainActor
|
||||
final class LocationNotesManagerTests: XCTestCase {
|
||||
struct LocationNotesManagerTests {
|
||||
// func testSubscribeWithoutRelaysSetsNoRelaysState() {
|
||||
// var subscribeCalled = false
|
||||
// let deps = LocationNotesDependencies(
|
||||
@@ -47,15 +48,15 @@ final class LocationNotesManagerTests: XCTestCase {
|
||||
// XCTAssertNotEqual(manager.errorMessage, "location_notes.error.no_relays")
|
||||
// }
|
||||
|
||||
func testSubscribeUsesGeoRelaysAndAppendsNotes() {
|
||||
@Test func subscribeUsesGeoRelaysAndAppendsNotes() {
|
||||
var relaysCaptured: [String] = []
|
||||
var storedHandler: ((NostrEvent) -> Void)?
|
||||
var storedEOSE: (() -> Void)?
|
||||
let deps = LocationNotesDependencies(
|
||||
relayLookup: { _, _ in ["wss://relay.one"] },
|
||||
subscribe: { filter, id, relays, handler, eose in
|
||||
XCTAssertEqual(filter.kinds, [1])
|
||||
XCTAssertFalse(id.isEmpty)
|
||||
#expect(filter.kinds == [1])
|
||||
#expect(!id.isEmpty)
|
||||
relaysCaptured = relays
|
||||
storedHandler = handler
|
||||
storedEOSE = eose
|
||||
@@ -67,8 +68,8 @@ final class LocationNotesManagerTests: XCTestCase {
|
||||
)
|
||||
|
||||
let manager = LocationNotesManager(geohash: "u4pruydq", dependencies: deps)
|
||||
XCTAssertEqual(relaysCaptured, ["wss://relay.one"])
|
||||
XCTAssertEqual(manager.state, .loading)
|
||||
#expect(relaysCaptured == ["wss://relay.one"])
|
||||
#expect(manager.state == .loading)
|
||||
|
||||
var event = NostrEvent(
|
||||
pubkey: "pub",
|
||||
@@ -81,9 +82,9 @@ final class LocationNotesManagerTests: XCTestCase {
|
||||
storedHandler?(event)
|
||||
storedEOSE?()
|
||||
|
||||
XCTAssertEqual(manager.state, .ready)
|
||||
XCTAssertEqual(manager.notes.count, 1)
|
||||
XCTAssertEqual(manager.notes.first?.content, "hi")
|
||||
#expect(manager.state == .ready)
|
||||
#expect(manager.notes.count == 1)
|
||||
#expect(manager.notes.first?.content == "hi")
|
||||
}
|
||||
|
||||
private enum TestError: Error {
|
||||
@@ -92,8 +93,8 @@ final class LocationNotesManagerTests: XCTestCase {
|
||||
}
|
||||
|
||||
@MainActor
|
||||
final class LocationNotesCounterTests: XCTestCase {
|
||||
func testSubscribeWithoutRelaysMarksUnavailable() {
|
||||
struct LocationNotesCounterTests {
|
||||
@Test func subscribeWithoutRelaysMarksUnavailable() {
|
||||
var subscribeCalled = false
|
||||
let deps = LocationNotesCounterDependencies(
|
||||
relayLookup: { _, _ in [] },
|
||||
@@ -104,21 +105,21 @@ final class LocationNotesCounterTests: XCTestCase {
|
||||
let counter = LocationNotesCounter(testDependencies: deps)
|
||||
counter.subscribe(geohash: "u4pruydq")
|
||||
|
||||
XCTAssertFalse(subscribeCalled)
|
||||
XCTAssertFalse(counter.relayAvailable)
|
||||
XCTAssertTrue(counter.initialLoadComplete)
|
||||
XCTAssertEqual(counter.count, 0)
|
||||
#expect(!subscribeCalled)
|
||||
#expect(!counter.relayAvailable)
|
||||
#expect(counter.initialLoadComplete)
|
||||
#expect(counter.count == 0)
|
||||
}
|
||||
|
||||
func testSubscribeCountsUniqueNotes() {
|
||||
@Test func subscribeCountsUniqueNotes() {
|
||||
var storedHandler: ((NostrEvent) -> Void)?
|
||||
var storedEOSE: (() -> Void)?
|
||||
let deps = LocationNotesCounterDependencies(
|
||||
relayLookup: { _, _ in ["wss://relay.geo"] },
|
||||
subscribe: { filter, id, relays, handler, eose in
|
||||
XCTAssertEqual(relays, ["wss://relay.geo"])
|
||||
XCTAssertEqual(filter.kinds, [1])
|
||||
XCTAssertFalse(id.isEmpty)
|
||||
#expect(relays == ["wss://relay.geo"])
|
||||
#expect(filter.kinds == [1])
|
||||
#expect(!id.isEmpty)
|
||||
storedHandler = handler
|
||||
storedEOSE = eose
|
||||
},
|
||||
@@ -143,8 +144,8 @@ final class LocationNotesCounterTests: XCTestCase {
|
||||
|
||||
storedEOSE?()
|
||||
|
||||
XCTAssertTrue(counter.relayAvailable)
|
||||
XCTAssertEqual(counter.count, 1)
|
||||
XCTAssertTrue(counter.initialLoadComplete)
|
||||
#expect(counter.relayAvailable)
|
||||
#expect(counter.count == 1)
|
||||
#expect(counter.initialLoadComplete)
|
||||
}
|
||||
}
|
||||
|
||||
@@ -0,0 +1,57 @@
|
||||
//
|
||||
// MockBLEBus.swift
|
||||
// bitchatTests
|
||||
//
|
||||
// This is free and unencumbered software released into the public domain.
|
||||
// For more information, see <https://unlicense.org>
|
||||
//
|
||||
|
||||
import Foundation
|
||||
@testable import bitchat
|
||||
|
||||
final class MockBLEBus {
|
||||
private var registry: [PeerID: MockBLEService] = [:]
|
||||
private var adjacency: [PeerID: Set<PeerID>] = [:]
|
||||
|
||||
// Enable automatic flooding for public messages in integration tests only
|
||||
let autoFloodEnabled: Bool
|
||||
|
||||
init(autoFloodEnabled: Bool = false) {
|
||||
self.autoFloodEnabled = autoFloodEnabled
|
||||
}
|
||||
|
||||
func register(_ service: MockBLEService, for peerID: PeerID) {
|
||||
registry[peerID] = service
|
||||
if adjacency[peerID] == nil { adjacency[peerID] = [] }
|
||||
}
|
||||
|
||||
func connect(_ a: PeerID, _ b: PeerID) {
|
||||
var setA = adjacency[a] ?? []
|
||||
setA.insert(b)
|
||||
adjacency[a] = setA
|
||||
var setB = adjacency[b] ?? []
|
||||
setB.insert(a)
|
||||
adjacency[b] = setB
|
||||
}
|
||||
|
||||
func disconnect(_ a: PeerID, _ b: PeerID) {
|
||||
if var setA = adjacency[a] { setA.remove(b); adjacency[a] = setA }
|
||||
if var setB = adjacency[b] { setB.remove(a); adjacency[b] = setB }
|
||||
}
|
||||
|
||||
func neighbors(of peerID: PeerID) -> [MockBLEService] {
|
||||
let ids = adjacency[peerID] ?? []
|
||||
let result = ids.compactMap { registry[$0] }
|
||||
return result
|
||||
}
|
||||
|
||||
func isDirectNeighbor(_ a: PeerID, _ b: PeerID) -> Bool {
|
||||
let res = adjacency[a]?.contains(b) ?? false
|
||||
return res
|
||||
}
|
||||
|
||||
func service(for peerID: PeerID) -> MockBLEService? {
|
||||
let svc = registry[peerID]
|
||||
return svc
|
||||
}
|
||||
}
|
||||
@@ -26,13 +26,12 @@ import CoreBluetooth
|
||||
/// simulate broadcast propagation across the mesh. E2E tests keep it off and perform explicit
|
||||
/// relays when needed.
|
||||
final class MockBLEService: NSObject {
|
||||
// Enable automatic flooding for public messages in integration tests only
|
||||
static var autoFloodEnabled: Bool = false
|
||||
private let bus: MockBLEBus
|
||||
|
||||
// MARK: - Properties matching BLEService
|
||||
|
||||
weak var delegate: BitchatDelegate?
|
||||
var myPeerID: PeerID = "MOCK1234"
|
||||
var myPeerID = PeerID(str: "MOCK1234")
|
||||
var myNickname: String = "MockUser"
|
||||
|
||||
private let mockKeychain = MockKeychain()
|
||||
@@ -60,8 +59,8 @@ final class MockBLEService: NSObject {
|
||||
|
||||
// MARK: - Initialization
|
||||
|
||||
override init() {
|
||||
super.init()
|
||||
init(bus: MockBLEBus) {
|
||||
self.bus = bus
|
||||
}
|
||||
|
||||
// MARK: - Methods matching BLEService
|
||||
@@ -71,42 +70,15 @@ final class MockBLEService: NSObject {
|
||||
}
|
||||
|
||||
// MARK: - In-memory test bus (for E2E/Integration)
|
||||
/// Global per-process bus for deterministic routing in tests.
|
||||
private static var registry: [PeerID: MockBLEService] = [:]
|
||||
private static var adjacency: [PeerID: Set<PeerID>] = [:]
|
||||
|
||||
/// Clears global bus state. Call from test `setUp()`.
|
||||
static func resetTestBus() {
|
||||
registry.removeAll()
|
||||
adjacency.removeAll()
|
||||
}
|
||||
|
||||
/// Registers this instance on first use.
|
||||
private func registerIfNeeded() {
|
||||
MockBLEService.registry[myPeerID] = self
|
||||
if MockBLEService.adjacency[myPeerID] == nil { MockBLEService.adjacency[myPeerID] = [] }
|
||||
bus.register(self, for: myPeerID)
|
||||
}
|
||||
|
||||
/// Returns adjacent neighbors based on the current simulated topology.
|
||||
private func neighbors() -> [MockBLEService] {
|
||||
guard let ids = MockBLEService.adjacency[myPeerID] else { return [] }
|
||||
return ids.compactMap { MockBLEService.registry[$0] }
|
||||
}
|
||||
|
||||
/// Adds an undirected edge between two peerIDs.
|
||||
private static func connectPeers(_ a: PeerID, _ b: PeerID) {
|
||||
var setA = adjacency[a] ?? []
|
||||
setA.insert(b)
|
||||
adjacency[a] = setA
|
||||
var setB = adjacency[b] ?? []
|
||||
setB.insert(a)
|
||||
adjacency[b] = setB
|
||||
}
|
||||
|
||||
/// Removes an undirected edge between two peerIDs.
|
||||
private static func disconnectPeers(_ a: PeerID, _ b: PeerID) {
|
||||
if var setA = adjacency[a] { setA.remove(b); adjacency[a] = setA }
|
||||
if var setB = adjacency[b] { setB.remove(a); adjacency[b] = setB }
|
||||
bus.neighbors(of: myPeerID)
|
||||
}
|
||||
|
||||
func startServices() {
|
||||
@@ -173,7 +145,7 @@ final class MockBLEService: NSObject {
|
||||
// Surface raw packet to tests that intercept/relay/encrypt
|
||||
packetDeliveryHandler?(packet)
|
||||
|
||||
// Deliver public messages to adjacent peers via test bus
|
||||
// Deliver public messages to adjacent peers via bus
|
||||
if recipientID == nil {
|
||||
for neighbor in neighbors() {
|
||||
neighbor.simulateIncomingPacket(packet)
|
||||
@@ -219,24 +191,20 @@ final class MockBLEService: NSObject {
|
||||
packetDeliveryHandler?(packet)
|
||||
|
||||
// If directly connected to recipient, deliver only to them.
|
||||
if let neighbors = MockBLEService.adjacency[myPeerID], neighbors.contains(recipientPeerID),
|
||||
let target = MockBLEService.registry[recipientPeerID] {
|
||||
if bus.isDirectNeighbor(myPeerID, recipientPeerID),
|
||||
let target = bus.service(for: recipientPeerID) {
|
||||
target.simulateIncomingPacket(packet)
|
||||
} else {
|
||||
// Not directly connected: deliver to neighbors for relay; also deliver directly if target is known
|
||||
if let target = MockBLEService.registry[recipientPeerID] {
|
||||
if let target = bus.service(for: recipientPeerID) {
|
||||
target.simulateIncomingPacket(packet)
|
||||
}
|
||||
if let neighbors = MockBLEService.adjacency[myPeerID] {
|
||||
for peer in neighbors where peer != recipientPeerID {
|
||||
if let neighbor = MockBLEService.registry[peer] {
|
||||
for neighbor in neighbors() where neighbor.peerID != recipientPeerID {
|
||||
neighbor.simulateIncomingPacket(packet)
|
||||
}
|
||||
}
|
||||
}
|
||||
}
|
||||
}
|
||||
}
|
||||
|
||||
func sendFavoriteNotification(to peerID: String, isFavorite: Bool) {
|
||||
// Mock implementation
|
||||
@@ -279,14 +247,14 @@ final class MockBLEService: NSObject {
|
||||
|
||||
func simulateConnectedPeer(_ peerID: PeerID) {
|
||||
registerIfNeeded()
|
||||
MockBLEService.connectPeers(myPeerID, peerID)
|
||||
bus.connect(myPeerID, peerID)
|
||||
connectedPeers.insert(peerID)
|
||||
delegate?.didConnectToPeer(peerID)
|
||||
delegate?.didUpdatePeerList(Array(connectedPeers))
|
||||
}
|
||||
|
||||
func simulateDisconnectedPeer(_ peerID: PeerID) {
|
||||
MockBLEService.disconnectPeers(myPeerID, peerID)
|
||||
bus.disconnect(myPeerID, peerID)
|
||||
connectedPeers.remove(peerID)
|
||||
delegate?.didDisconnectFromPeer(peerID)
|
||||
delegate?.didUpdatePeerList(Array(connectedPeers))
|
||||
@@ -319,7 +287,7 @@ final class MockBLEService: NSObject {
|
||||
// When enabled, propagate a public broadcast across the entire connected
|
||||
// component regardless of the original TTL to better emulate large-network
|
||||
// broadcast expectations. De-duplication via seenMessageIDs prevents loops.
|
||||
if MockBLEService.autoFloodEnabled,
|
||||
if bus.autoFloodEnabled,
|
||||
packet.recipientID == nil,
|
||||
!message.isPrivate {
|
||||
let nextTTL = packet.ttl > 0 ? packet.ttl - 1 : 0
|
||||
@@ -353,8 +321,8 @@ typealias MockSimplifiedBluetoothService = MockBLEService
|
||||
// MARK: - Helpers
|
||||
|
||||
extension MockBLEService {
|
||||
convenience init(peerID: PeerID, nickname: String) {
|
||||
self.init()
|
||||
convenience init(peerID: PeerID, nickname: String, bus: MockBLEBus) {
|
||||
self.init(bus: bus)
|
||||
myPeerID = peerID
|
||||
mockNickname = nickname
|
||||
}
|
||||
|
||||
@@ -6,135 +6,123 @@
|
||||
// For more information, see <https://unlicense.org>
|
||||
//
|
||||
|
||||
import XCTest
|
||||
import Testing
|
||||
import CryptoKit
|
||||
import Foundation
|
||||
@testable import bitchat
|
||||
|
||||
final class NoiseProtocolTests: XCTestCase {
|
||||
struct NoiseProtocolTests {
|
||||
|
||||
var aliceKey: Curve25519.KeyAgreement.PrivateKey!
|
||||
var bobKey: Curve25519.KeyAgreement.PrivateKey!
|
||||
var aliceSession: NoiseSession!
|
||||
var bobSession: NoiseSession!
|
||||
private var mockKeychain: MockKeychain!
|
||||
private let aliceKey = Curve25519.KeyAgreement.PrivateKey()
|
||||
private let bobKey = Curve25519.KeyAgreement.PrivateKey()
|
||||
private let mockKeychain = MockKeychain()
|
||||
|
||||
override func setUp() {
|
||||
super.setUp()
|
||||
aliceKey = Curve25519.KeyAgreement.PrivateKey()
|
||||
bobKey = Curve25519.KeyAgreement.PrivateKey()
|
||||
mockKeychain = MockKeychain()
|
||||
}
|
||||
private let alicePeerID = PeerID(str: UUID().uuidString)
|
||||
private let bobPeerID = PeerID(str: UUID().uuidString)
|
||||
|
||||
override func tearDown() {
|
||||
aliceSession = nil
|
||||
bobSession = nil
|
||||
mockKeychain = nil
|
||||
super.tearDown()
|
||||
}
|
||||
private let aliceSession: NoiseSession
|
||||
private let bobSession: NoiseSession
|
||||
|
||||
// MARK: - Basic Handshake Tests
|
||||
|
||||
func testXXPatternHandshake() throws {
|
||||
// Create sessions
|
||||
init() {
|
||||
aliceSession = NoiseSession(
|
||||
peerID: TestConstants.testPeerID2,
|
||||
peerID: alicePeerID,
|
||||
role: .initiator,
|
||||
keychain: mockKeychain,
|
||||
localStaticKey: aliceKey
|
||||
)
|
||||
|
||||
bobSession = NoiseSession(
|
||||
peerID: TestConstants.testPeerID1,
|
||||
peerID: bobPeerID,
|
||||
role: .responder,
|
||||
keychain: mockKeychain,
|
||||
localStaticKey: bobKey
|
||||
)
|
||||
}
|
||||
|
||||
// MARK: - Basic Handshake Tests
|
||||
|
||||
@Test func xxPatternHandshake() throws {
|
||||
// Alice starts handshake (message 1)
|
||||
let message1 = try aliceSession.startHandshake()
|
||||
XCTAssertFalse(message1.isEmpty)
|
||||
XCTAssertEqual(aliceSession.getState(), .handshaking)
|
||||
#expect(!message1.isEmpty)
|
||||
#expect(aliceSession.getState() == .handshaking)
|
||||
|
||||
// Bob processes message 1 and creates message 2
|
||||
let message2 = try bobSession.processHandshakeMessage(message1)
|
||||
XCTAssertNotNil(message2)
|
||||
XCTAssertFalse(message2!.isEmpty)
|
||||
XCTAssertEqual(bobSession.getState(), .handshaking)
|
||||
#expect(message2 != nil)
|
||||
#expect(!message2!.isEmpty)
|
||||
#expect(bobSession.getState() == .handshaking)
|
||||
|
||||
// Alice processes message 2 and creates message 3
|
||||
let message3 = try aliceSession.processHandshakeMessage(message2!)
|
||||
XCTAssertNotNil(message3)
|
||||
XCTAssertFalse(message3!.isEmpty)
|
||||
XCTAssertEqual(aliceSession.getState(), .established)
|
||||
#expect(message3 != nil)
|
||||
#expect(!message3!.isEmpty)
|
||||
#expect(aliceSession.getState() == .established)
|
||||
|
||||
// Bob processes message 3 and completes handshake
|
||||
let finalMessage = try bobSession.processHandshakeMessage(message3!)
|
||||
XCTAssertNil(finalMessage) // No more messages needed
|
||||
XCTAssertEqual(bobSession.getState(), .established)
|
||||
#expect(finalMessage == nil) // No more messages needed
|
||||
#expect(bobSession.getState() == .established)
|
||||
|
||||
// Verify both sessions are established
|
||||
XCTAssertTrue(aliceSession.isEstablished())
|
||||
XCTAssertTrue(bobSession.isEstablished())
|
||||
#expect(aliceSession.isEstablished())
|
||||
#expect(bobSession.isEstablished())
|
||||
|
||||
// Verify they have each other's static keys
|
||||
XCTAssertEqual(aliceSession.getRemoteStaticPublicKey()?.rawRepresentation, bobKey.publicKey.rawRepresentation)
|
||||
XCTAssertEqual(bobSession.getRemoteStaticPublicKey()?.rawRepresentation, aliceKey.publicKey.rawRepresentation)
|
||||
#expect(aliceSession.getRemoteStaticPublicKey()?.rawRepresentation == bobKey.publicKey.rawRepresentation)
|
||||
#expect(bobSession.getRemoteStaticPublicKey()?.rawRepresentation == aliceKey.publicKey.rawRepresentation)
|
||||
}
|
||||
|
||||
func testHandshakeStateValidation() throws {
|
||||
aliceSession = NoiseSession(
|
||||
peerID: TestConstants.testPeerID2,
|
||||
role: .initiator,
|
||||
keychain: mockKeychain,
|
||||
localStaticKey: aliceKey
|
||||
)
|
||||
|
||||
@Test func handshakeStateValidation() throws {
|
||||
// Cannot process message before starting handshake
|
||||
XCTAssertThrowsError(try aliceSession.processHandshakeMessage(Data()))
|
||||
#expect(throws: NoiseSessionError.invalidState) {
|
||||
try aliceSession.processHandshakeMessage(Data())
|
||||
}
|
||||
|
||||
// Start handshake
|
||||
_ = try aliceSession.startHandshake()
|
||||
|
||||
// Cannot start handshake twice
|
||||
XCTAssertThrowsError(try aliceSession.startHandshake())
|
||||
#expect(throws: NoiseSessionError.invalidState) {
|
||||
try aliceSession.startHandshake()
|
||||
}
|
||||
}
|
||||
|
||||
// MARK: - Encryption/Decryption Tests
|
||||
|
||||
func testBasicEncryptionDecryption() throws {
|
||||
// Establish sessions
|
||||
try establishSessions()
|
||||
@Test func basicEncryptionDecryption() throws {
|
||||
try performHandshake(initiator: aliceSession, responder: bobSession)
|
||||
|
||||
let plaintext = "Hello, Bob!".data(using: .utf8)!
|
||||
|
||||
// Alice encrypts
|
||||
let ciphertext = try aliceSession.encrypt(plaintext)
|
||||
XCTAssertNotEqual(ciphertext, plaintext)
|
||||
XCTAssertGreaterThan(ciphertext.count, plaintext.count) // Should have overhead
|
||||
#expect(ciphertext != plaintext)
|
||||
#expect(ciphertext.count > plaintext.count) // Should have overhead
|
||||
|
||||
// Bob decrypts
|
||||
let decrypted = try bobSession.decrypt(ciphertext)
|
||||
XCTAssertEqual(decrypted, plaintext)
|
||||
#expect(decrypted == plaintext)
|
||||
}
|
||||
|
||||
func testBidirectionalEncryption() throws {
|
||||
try establishSessions()
|
||||
@Test func bidirectionalEncryption() throws {
|
||||
try performHandshake(initiator: aliceSession, responder: bobSession)
|
||||
|
||||
// Alice -> Bob
|
||||
let aliceMessage = "Hello from Alice".data(using: .utf8)!
|
||||
let aliceCiphertext = try aliceSession.encrypt(aliceMessage)
|
||||
let bobReceived = try bobSession.decrypt(aliceCiphertext)
|
||||
XCTAssertEqual(bobReceived, aliceMessage)
|
||||
#expect(bobReceived == aliceMessage)
|
||||
|
||||
// Bob -> Alice
|
||||
let bobMessage = "Hello from Bob".data(using: .utf8)!
|
||||
let bobCiphertext = try bobSession.encrypt(bobMessage)
|
||||
let aliceReceived = try aliceSession.decrypt(bobCiphertext)
|
||||
XCTAssertEqual(aliceReceived, bobMessage)
|
||||
#expect(aliceReceived == bobMessage)
|
||||
}
|
||||
|
||||
func testLargeMessageEncryption() throws {
|
||||
try establishSessions()
|
||||
@Test func largeMessageEncryption() throws {
|
||||
try performHandshake(initiator: aliceSession, responder: bobSession)
|
||||
|
||||
// Create a large message
|
||||
let largeMessage = TestHelpers.generateRandomData(length: 100_000)
|
||||
@@ -143,81 +131,78 @@ final class NoiseProtocolTests: XCTestCase {
|
||||
let ciphertext = try aliceSession.encrypt(largeMessage)
|
||||
let decrypted = try bobSession.decrypt(ciphertext)
|
||||
|
||||
XCTAssertEqual(decrypted, largeMessage)
|
||||
#expect(decrypted == largeMessage)
|
||||
}
|
||||
|
||||
func testEncryptionBeforeHandshake() {
|
||||
aliceSession = NoiseSession(
|
||||
peerID: TestConstants.testPeerID2,
|
||||
role: .initiator,
|
||||
keychain: mockKeychain,
|
||||
localStaticKey: aliceKey
|
||||
)
|
||||
|
||||
@Test func encryptionBeforeHandshake() {
|
||||
let plaintext = "test".data(using: .utf8)!
|
||||
|
||||
// Should throw when not established
|
||||
XCTAssertThrowsError(try aliceSession.encrypt(plaintext))
|
||||
XCTAssertThrowsError(try aliceSession.decrypt(plaintext))
|
||||
#expect(throws: NoiseSessionError.notEstablished) {
|
||||
try aliceSession.encrypt(plaintext)
|
||||
}
|
||||
|
||||
#expect(throws: NoiseSessionError.notEstablished) {
|
||||
try aliceSession.decrypt(plaintext)
|
||||
}
|
||||
}
|
||||
|
||||
// MARK: - Session Manager Tests
|
||||
|
||||
func testSessionManagerBasicOperations() throws {
|
||||
@Test func sessionManagerBasicOperations() throws {
|
||||
let manager = NoiseSessionManager(localStaticKey: aliceKey, keychain: mockKeychain)
|
||||
|
||||
XCTAssertNil(manager.getSession(for: TestConstants.testPeerID2))
|
||||
#expect(manager.getSession(for: alicePeerID) == nil)
|
||||
|
||||
_ = try manager.initiateHandshake(with: TestConstants.testPeerID2)
|
||||
XCTAssertNotNil(manager.getSession(for: TestConstants.testPeerID2))
|
||||
_ = try manager.initiateHandshake(with: alicePeerID)
|
||||
#expect(manager.getSession(for: alicePeerID) != nil)
|
||||
|
||||
// Get session
|
||||
let retrieved = manager.getSession(for: TestConstants.testPeerID2)
|
||||
XCTAssertNotNil(retrieved)
|
||||
let retrieved = manager.getSession(for: alicePeerID)
|
||||
#expect(retrieved != nil)
|
||||
|
||||
// Remove session
|
||||
manager.removeSession(for: TestConstants.testPeerID2)
|
||||
XCTAssertNil(manager.getSession(for: TestConstants.testPeerID2))
|
||||
manager.removeSession(for: alicePeerID)
|
||||
#expect(manager.getSession(for: alicePeerID) == nil)
|
||||
}
|
||||
|
||||
func testSessionManagerHandshakeInitiation() throws {
|
||||
@Test func sessionManagerHandshakeInitiation() throws {
|
||||
let manager = NoiseSessionManager(localStaticKey: aliceKey, keychain: mockKeychain)
|
||||
|
||||
// Initiate handshake
|
||||
let handshakeData = try manager.initiateHandshake(with: TestConstants.testPeerID2)
|
||||
XCTAssertFalse(handshakeData.isEmpty)
|
||||
let handshakeData = try manager.initiateHandshake(with: alicePeerID)
|
||||
#expect(!handshakeData.isEmpty)
|
||||
|
||||
// Session should exist
|
||||
let session = manager.getSession(for: TestConstants.testPeerID2)
|
||||
XCTAssertNotNil(session)
|
||||
XCTAssertEqual(session?.getState(), .handshaking)
|
||||
let session = manager.getSession(for: alicePeerID)
|
||||
#expect(session != nil)
|
||||
#expect(session?.getState() == .handshaking)
|
||||
}
|
||||
|
||||
func testSessionManagerIncomingHandshake() throws {
|
||||
@Test func sessionManagerIncomingHandshake() throws {
|
||||
let aliceManager = NoiseSessionManager(localStaticKey: aliceKey, keychain: mockKeychain)
|
||||
let bobManager = NoiseSessionManager(localStaticKey: bobKey, keychain: mockKeychain)
|
||||
|
||||
// Alice initiates
|
||||
let message1 = try aliceManager.initiateHandshake(with: TestConstants.testPeerID2)
|
||||
let message1 = try aliceManager.initiateHandshake(with: alicePeerID)
|
||||
|
||||
// Bob responds
|
||||
let message2 = try bobManager.handleIncomingHandshake(from: TestConstants.testPeerID1, message: message1)
|
||||
XCTAssertNotNil(message2)
|
||||
let message2 = try bobManager.handleIncomingHandshake(from: bobPeerID, message: message1)
|
||||
#expect(message2 != nil)
|
||||
|
||||
// Continue handshake
|
||||
let message3 = try aliceManager.handleIncomingHandshake(from: TestConstants.testPeerID2, message: message2!)
|
||||
XCTAssertNotNil(message3)
|
||||
let message3 = try aliceManager.handleIncomingHandshake(from: alicePeerID, message: message2!)
|
||||
#expect(message3 != nil)
|
||||
|
||||
// Complete handshake
|
||||
let finalMessage = try bobManager.handleIncomingHandshake(from: TestConstants.testPeerID1, message: message3!)
|
||||
XCTAssertNil(finalMessage)
|
||||
let finalMessage = try bobManager.handleIncomingHandshake(from: bobPeerID, message: message3!)
|
||||
#expect(finalMessage == nil)
|
||||
|
||||
// Both should have established sessions
|
||||
XCTAssertTrue(aliceManager.getSession(for: TestConstants.testPeerID2)?.isEstablished() ?? false)
|
||||
XCTAssertTrue(bobManager.getSession(for: TestConstants.testPeerID1)?.isEstablished() ?? false)
|
||||
#expect(aliceManager.getSession(for: alicePeerID)?.isEstablished() == true)
|
||||
#expect(bobManager.getSession(for: bobPeerID)?.isEstablished() == true)
|
||||
}
|
||||
|
||||
func testSessionManagerEncryptionDecryption() throws {
|
||||
@Test func sessionManagerEncryptionDecryption() throws {
|
||||
let aliceManager = NoiseSessionManager(localStaticKey: aliceKey, keychain: mockKeychain)
|
||||
let bobManager = NoiseSessionManager(localStaticKey: bobKey, keychain: mockKeychain)
|
||||
|
||||
@@ -226,17 +211,17 @@ final class NoiseProtocolTests: XCTestCase {
|
||||
|
||||
// Encrypt with manager
|
||||
let plaintext = "Test message".data(using: .utf8)!
|
||||
let ciphertext = try aliceManager.encrypt(plaintext, for: TestConstants.testPeerID2)
|
||||
let ciphertext = try aliceManager.encrypt(plaintext, for: alicePeerID)
|
||||
|
||||
// Decrypt with manager
|
||||
let decrypted = try bobManager.decrypt(ciphertext, from: TestConstants.testPeerID1)
|
||||
XCTAssertEqual(decrypted, plaintext)
|
||||
let decrypted = try bobManager.decrypt(ciphertext, from: bobPeerID)
|
||||
#expect(decrypted == plaintext)
|
||||
}
|
||||
|
||||
// MARK: - Security Tests
|
||||
|
||||
func testTamperedCiphertextDetection() throws {
|
||||
try establishSessions()
|
||||
@Test func tamperedCiphertextDetection() throws {
|
||||
try performHandshake(initiator: aliceSession, responder: bobSession)
|
||||
|
||||
let plaintext = "Secret message".data(using: .utf8)!
|
||||
var ciphertext = try aliceSession.encrypt(plaintext)
|
||||
@@ -245,11 +230,19 @@ final class NoiseProtocolTests: XCTestCase {
|
||||
ciphertext[ciphertext.count / 2] ^= 0xFF
|
||||
|
||||
// Decryption should fail
|
||||
XCTAssertThrowsError(try bobSession.decrypt(ciphertext))
|
||||
if #available(macOS 14.4, iOS 17.4, *) {
|
||||
#expect(throws: CryptoKitError.authenticationFailure) {
|
||||
try bobSession.decrypt(ciphertext)
|
||||
}
|
||||
} else {
|
||||
#expect(throws: (any Error).self) {
|
||||
try bobSession.decrypt(ciphertext)
|
||||
}
|
||||
}
|
||||
}
|
||||
|
||||
func testReplayPrevention() throws {
|
||||
try establishSessions()
|
||||
@Test func replayPrevention() throws {
|
||||
try performHandshake(initiator: aliceSession, responder: bobSession)
|
||||
|
||||
let plaintext = "Test message".data(using: .utf8)!
|
||||
let ciphertext = try aliceSession.encrypt(plaintext)
|
||||
@@ -258,16 +251,18 @@ final class NoiseProtocolTests: XCTestCase {
|
||||
_ = try bobSession.decrypt(ciphertext)
|
||||
|
||||
// Replaying the same ciphertext should fail
|
||||
XCTAssertThrowsError(try bobSession.decrypt(ciphertext))
|
||||
#expect(throws: NoiseError.replayDetected) {
|
||||
try bobSession.decrypt(ciphertext)
|
||||
}
|
||||
}
|
||||
|
||||
func testSessionIsolation() throws {
|
||||
@Test func sessionIsolation() throws {
|
||||
// Create two separate session pairs
|
||||
let aliceSession1 = NoiseSession(peerID: "peer1", role: .initiator, keychain: mockKeychain, localStaticKey: aliceKey)
|
||||
let bobSession1 = NoiseSession(peerID: "alice1", role: .responder, keychain: mockKeychain, localStaticKey: bobKey)
|
||||
let aliceSession1 = NoiseSession(peerID: PeerID(str: "peer1"), role: .initiator, keychain: mockKeychain, localStaticKey: aliceKey)
|
||||
let bobSession1 = NoiseSession(peerID: PeerID(str: "alice1"), role: .responder, keychain: mockKeychain, localStaticKey: bobKey)
|
||||
|
||||
let aliceSession2 = NoiseSession(peerID: "peer2", role: .initiator, keychain: mockKeychain, localStaticKey: aliceKey)
|
||||
let bobSession2 = NoiseSession(peerID: "alice2", role: .responder, keychain: mockKeychain, localStaticKey: bobKey)
|
||||
let aliceSession2 = NoiseSession(peerID: PeerID(str: "peer2"), role: .initiator, keychain: mockKeychain, localStaticKey: aliceKey)
|
||||
let bobSession2 = NoiseSession(peerID: PeerID(str: "alice2"), role: .responder, keychain: mockKeychain, localStaticKey: bobKey)
|
||||
|
||||
// Establish both pairs
|
||||
try performHandshake(initiator: aliceSession1, responder: bobSession1)
|
||||
@@ -278,16 +273,24 @@ final class NoiseProtocolTests: XCTestCase {
|
||||
let ciphertext1 = try aliceSession1.encrypt(plaintext)
|
||||
|
||||
// Should not be able to decrypt with session 2
|
||||
XCTAssertThrowsError(try bobSession2.decrypt(ciphertext1))
|
||||
if #available(macOS 14.4, iOS 17.4, *) {
|
||||
#expect(throws: CryptoKitError.authenticationFailure) {
|
||||
try bobSession2.decrypt(ciphertext1)
|
||||
}
|
||||
} else {
|
||||
#expect(throws: (any Error).self) {
|
||||
try bobSession2.decrypt(ciphertext1)
|
||||
}
|
||||
}
|
||||
|
||||
// But should work with correct session
|
||||
let decrypted = try bobSession1.decrypt(ciphertext1)
|
||||
XCTAssertEqual(decrypted, plaintext)
|
||||
#expect(decrypted == plaintext)
|
||||
}
|
||||
|
||||
// MARK: - Session Recovery Tests
|
||||
|
||||
func testPeerRestartDetection() throws {
|
||||
@Test func peerRestartDetection() throws {
|
||||
// Establish initial sessions
|
||||
let aliceManager = NoiseSessionManager(localStaticKey: aliceKey, keychain: mockKeychain)
|
||||
let bobManager = NoiseSessionManager(localStaticKey: bobKey, keychain: mockKeychain)
|
||||
@@ -295,38 +298,38 @@ final class NoiseProtocolTests: XCTestCase {
|
||||
try establishManagerSessions(aliceManager: aliceManager, bobManager: bobManager)
|
||||
|
||||
// Exchange some messages to establish nonce state
|
||||
let message1 = try aliceManager.encrypt("Hello".data(using: .utf8)!, for: TestConstants.testPeerID2)
|
||||
_ = try bobManager.decrypt(message1, from: TestConstants.testPeerID1)
|
||||
let message1 = try aliceManager.encrypt("Hello".data(using: .utf8)!, for: alicePeerID)
|
||||
_ = try bobManager.decrypt(message1, from: bobPeerID)
|
||||
|
||||
let message2 = try bobManager.encrypt("World".data(using: .utf8)!, for: TestConstants.testPeerID1)
|
||||
_ = try aliceManager.decrypt(message2, from: TestConstants.testPeerID2)
|
||||
let message2 = try bobManager.encrypt("World".data(using: .utf8)!, for: bobPeerID)
|
||||
_ = try aliceManager.decrypt(message2, from: alicePeerID)
|
||||
|
||||
// Simulate Bob restart by creating new manager with same key
|
||||
let bobManagerRestarted = NoiseSessionManager(localStaticKey: bobKey, keychain: mockKeychain)
|
||||
|
||||
// Bob initiates new handshake after restart
|
||||
let newHandshake1 = try bobManagerRestarted.initiateHandshake(with: TestConstants.testPeerID1)
|
||||
let newHandshake1 = try bobManagerRestarted.initiateHandshake(with: bobPeerID)
|
||||
|
||||
// Alice should accept the new handshake (clearing old session)
|
||||
let newHandshake2 = try aliceManager.handleIncomingHandshake(from: TestConstants.testPeerID2, message: newHandshake1)
|
||||
XCTAssertNotNil(newHandshake2)
|
||||
let newHandshake2 = try aliceManager.handleIncomingHandshake(from: alicePeerID, message: newHandshake1)
|
||||
#expect(newHandshake2 != nil)
|
||||
|
||||
// Complete the new handshake
|
||||
let newHandshake3 = try bobManagerRestarted.handleIncomingHandshake(from: TestConstants.testPeerID1, message: newHandshake2!)
|
||||
XCTAssertNotNil(newHandshake3)
|
||||
_ = try aliceManager.handleIncomingHandshake(from: TestConstants.testPeerID2, message: newHandshake3!)
|
||||
let newHandshake3 = try bobManagerRestarted.handleIncomingHandshake(from: bobPeerID, message: newHandshake2!)
|
||||
#expect(newHandshake3 != nil)
|
||||
_ = try aliceManager.handleIncomingHandshake(from: alicePeerID, message: newHandshake3!)
|
||||
|
||||
// Should be able to exchange messages with new sessions
|
||||
let testMessage = "After restart".data(using: .utf8)!
|
||||
let encrypted = try bobManagerRestarted.encrypt(testMessage, for: TestConstants.testPeerID1)
|
||||
let decrypted = try aliceManager.decrypt(encrypted, from: TestConstants.testPeerID2)
|
||||
XCTAssertEqual(decrypted, testMessage)
|
||||
let encrypted = try bobManagerRestarted.encrypt(testMessage, for: bobPeerID)
|
||||
let decrypted = try aliceManager.decrypt(encrypted, from: alicePeerID)
|
||||
#expect(decrypted == testMessage)
|
||||
}
|
||||
|
||||
func testNonceDesynchronizationRecovery() throws {
|
||||
@Test func nonceDesynchronizationRecovery() throws {
|
||||
// Create two sessions
|
||||
aliceSession = NoiseSession(peerID: TestConstants.testPeerID2, role: .initiator, keychain: mockKeychain, localStaticKey: aliceKey)
|
||||
bobSession = NoiseSession(peerID: TestConstants.testPeerID1, role: .responder, keychain: mockKeychain, localStaticKey: bobKey)
|
||||
let aliceSession = NoiseSession(peerID: alicePeerID, role: .initiator, keychain: mockKeychain, localStaticKey: aliceKey)
|
||||
let bobSession = NoiseSession(peerID: bobPeerID, role: .responder, keychain: mockKeychain, localStaticKey: bobKey)
|
||||
|
||||
// Establish sessions
|
||||
try performHandshake(initiator: aliceSession, responder: bobSession)
|
||||
@@ -344,10 +347,12 @@ final class NoiseProtocolTests: XCTestCase {
|
||||
|
||||
// With per-packet nonce carried, decryption should not throw here
|
||||
let desyncMessage = try aliceSession.encrypt("This now succeeds".data(using: .utf8)!)
|
||||
XCTAssertNoThrow(try bobSession.decrypt(desyncMessage))
|
||||
#expect(throws: Never.self) {
|
||||
try bobSession.decrypt(desyncMessage)
|
||||
}
|
||||
}
|
||||
|
||||
func testConcurrentEncryption() throws {
|
||||
@Test func concurrentEncryption() async throws {
|
||||
// Test thread safety of encryption operations
|
||||
let aliceManager = NoiseSessionManager(localStaticKey: aliceKey, keychain: mockKeychain)
|
||||
let bobManager = NoiseSessionManager(localStaticKey: bobKey, keychain: mockKeychain)
|
||||
@@ -355,14 +360,13 @@ final class NoiseProtocolTests: XCTestCase {
|
||||
try establishManagerSessions(aliceManager: aliceManager, bobManager: bobManager)
|
||||
|
||||
let messageCount = 100
|
||||
let expectation = XCTestExpectation(description: "All messages encrypted and decrypted")
|
||||
expectation.expectedFulfillmentCount = messageCount
|
||||
|
||||
try await confirmation("All messages encrypted and decrypted", expectedCount: messageCount) { completion in
|
||||
var encryptedMessages: [Int: Data] = [:]
|
||||
// Encrypt messages sequentially to avoid nonce races in manager
|
||||
for i in 0..<messageCount {
|
||||
let plaintext = "Concurrent message \(i)".data(using: .utf8)!
|
||||
let encrypted = try aliceManager.encrypt(plaintext, for: TestConstants.testPeerID2)
|
||||
let encrypted = try aliceManager.encrypt(plaintext, for: alicePeerID)
|
||||
encryptedMessages[i] = encrypted
|
||||
}
|
||||
|
||||
@@ -370,22 +374,21 @@ final class NoiseProtocolTests: XCTestCase {
|
||||
for i in 0..<messageCount {
|
||||
do {
|
||||
guard let encrypted = encryptedMessages[i] else {
|
||||
XCTFail("Missing encrypted message \(i)")
|
||||
Issue.record("Missing encrypted message \(i)")
|
||||
return
|
||||
}
|
||||
let decrypted = try bobManager.decrypt(encrypted, from: TestConstants.testPeerID1)
|
||||
let decrypted = try bobManager.decrypt(encrypted, from: bobPeerID)
|
||||
let expected = "Concurrent message \(i)".data(using: .utf8)!
|
||||
XCTAssertEqual(decrypted, expected)
|
||||
expectation.fulfill()
|
||||
#expect(decrypted == expected)
|
||||
completion()
|
||||
} catch {
|
||||
XCTFail("Decryption failed for message \(i): \(error)")
|
||||
Issue.record("Decryption failed for message \(i): \(error)")
|
||||
}
|
||||
}
|
||||
}
|
||||
}
|
||||
|
||||
wait(for: [expectation], timeout: 10.0)
|
||||
}
|
||||
|
||||
func testSessionStaleDetection() throws {
|
||||
@Test func sessionStaleDetection() throws {
|
||||
// Test that sessions are properly marked as stale
|
||||
let aliceManager = NoiseSessionManager(localStaticKey: aliceKey, keychain: mockKeychain)
|
||||
let bobManager = NoiseSessionManager(localStaticKey: bobKey, keychain: mockKeychain)
|
||||
@@ -396,10 +399,10 @@ final class NoiseProtocolTests: XCTestCase {
|
||||
let sessions = aliceManager.getSessionsNeedingRekey()
|
||||
|
||||
// New session should not need rekey
|
||||
XCTAssertTrue(sessions.isEmpty || sessions.allSatisfy { !$0.needsRekey })
|
||||
#expect(sessions.isEmpty || sessions.allSatisfy { !$0.needsRekey })
|
||||
}
|
||||
|
||||
func testHandshakeAfterDecryptionFailure() throws {
|
||||
@Test func handshakeAfterDecryptionFailure() throws {
|
||||
// Test that handshake is properly initiated after decryption failure
|
||||
let aliceManager = NoiseSessionManager(localStaticKey: aliceKey, keychain: mockKeychain)
|
||||
let bobManager = NoiseSessionManager(localStaticKey: bobKey, keychain: mockKeychain)
|
||||
@@ -408,17 +411,25 @@ final class NoiseProtocolTests: XCTestCase {
|
||||
try establishManagerSessions(aliceManager: aliceManager, bobManager: bobManager)
|
||||
|
||||
// Create a corrupted message
|
||||
var encrypted = try aliceManager.encrypt("Test".data(using: .utf8)!, for: TestConstants.testPeerID2)
|
||||
var encrypted = try aliceManager.encrypt("Test".data(using: .utf8)!, for: alicePeerID)
|
||||
encrypted[10] ^= 0xFF // Corrupt the data
|
||||
|
||||
// Decryption should fail
|
||||
XCTAssertThrowsError(try bobManager.decrypt(encrypted, from: TestConstants.testPeerID1))
|
||||
|
||||
// Bob should still have the session (it's not removed on single failure)
|
||||
XCTAssertNotNil(bobManager.getSession(for: TestConstants.testPeerID1))
|
||||
if #available(macOS 14.4, iOS 17.4, *) {
|
||||
#expect(throws: CryptoKitError.authenticationFailure) {
|
||||
try bobManager.decrypt(encrypted, from: bobPeerID)
|
||||
}
|
||||
} else {
|
||||
#expect(throws: (any Error).self) {
|
||||
try bobManager.decrypt(encrypted, from: bobPeerID)
|
||||
}
|
||||
}
|
||||
|
||||
func testHandshakeAlwaysAcceptedWithExistingSession() throws {
|
||||
// Bob should still have the session (it's not removed on single failure)
|
||||
#expect(bobManager.getSession(for: bobPeerID) != nil)
|
||||
}
|
||||
|
||||
@Test func handshakeAlwaysAcceptedWithExistingSession() throws {
|
||||
// Test that handshake is always accepted even with existing valid session
|
||||
let aliceManager = NoiseSessionManager(localStaticKey: aliceKey, keychain: mockKeychain)
|
||||
let bobManager = NoiseSessionManager(localStaticKey: bobKey, keychain: mockKeychain)
|
||||
@@ -427,38 +438,38 @@ final class NoiseProtocolTests: XCTestCase {
|
||||
try establishManagerSessions(aliceManager: aliceManager, bobManager: bobManager)
|
||||
|
||||
// Verify sessions are established
|
||||
XCTAssertTrue(aliceManager.getSession(for: TestConstants.testPeerID2)?.isEstablished() ?? false)
|
||||
XCTAssertTrue(bobManager.getSession(for: TestConstants.testPeerID1)?.isEstablished() ?? false)
|
||||
#expect(aliceManager.getSession(for: alicePeerID)?.isEstablished() == true)
|
||||
#expect(bobManager.getSession(for: bobPeerID)?.isEstablished() == true)
|
||||
|
||||
// Exchange messages to verify sessions work
|
||||
let testMessage = "Session works".data(using: .utf8)!
|
||||
let encrypted = try aliceManager.encrypt(testMessage, for: TestConstants.testPeerID2)
|
||||
let decrypted = try bobManager.decrypt(encrypted, from: TestConstants.testPeerID1)
|
||||
XCTAssertEqual(decrypted, testMessage)
|
||||
let encrypted = try aliceManager.encrypt(testMessage, for: alicePeerID)
|
||||
let decrypted = try bobManager.decrypt(encrypted, from: bobPeerID)
|
||||
#expect(decrypted == testMessage)
|
||||
|
||||
// Alice clears her session (simulating decryption failure)
|
||||
aliceManager.removeSession(for: TestConstants.testPeerID2)
|
||||
aliceManager.removeSession(for: alicePeerID)
|
||||
|
||||
// Alice initiates new handshake despite Bob having valid session
|
||||
let newHandshake1 = try aliceManager.initiateHandshake(with: TestConstants.testPeerID2)
|
||||
let newHandshake1 = try aliceManager.initiateHandshake(with: alicePeerID)
|
||||
|
||||
// Bob should accept the new handshake even though he has a valid session
|
||||
let newHandshake2 = try bobManager.handleIncomingHandshake(from: TestConstants.testPeerID1, message: newHandshake1)
|
||||
XCTAssertNotNil(newHandshake2, "Bob should accept handshake despite having valid session")
|
||||
let newHandshake2 = try bobManager.handleIncomingHandshake(from: bobPeerID, message: newHandshake1)
|
||||
#expect(newHandshake2 != nil, "Bob should accept handshake despite having valid session")
|
||||
|
||||
// Complete the handshake
|
||||
let newHandshake3 = try aliceManager.handleIncomingHandshake(from: TestConstants.testPeerID2, message: newHandshake2!)
|
||||
XCTAssertNotNil(newHandshake3)
|
||||
_ = try bobManager.handleIncomingHandshake(from: TestConstants.testPeerID1, message: newHandshake3!)
|
||||
let newHandshake3 = try aliceManager.handleIncomingHandshake(from: alicePeerID, message: newHandshake2!)
|
||||
#expect(newHandshake3 != nil)
|
||||
_ = try bobManager.handleIncomingHandshake(from: bobPeerID, message: newHandshake3!)
|
||||
|
||||
// Verify new sessions work
|
||||
let testMessage2 = "New session works".data(using: .utf8)!
|
||||
let encrypted2 = try aliceManager.encrypt(testMessage2, for: TestConstants.testPeerID2)
|
||||
let decrypted2 = try bobManager.decrypt(encrypted2, from: TestConstants.testPeerID1)
|
||||
XCTAssertEqual(decrypted2, testMessage2)
|
||||
let encrypted2 = try aliceManager.encrypt(testMessage2, for: alicePeerID)
|
||||
let decrypted2 = try bobManager.decrypt(encrypted2, from: bobPeerID)
|
||||
#expect(decrypted2 == testMessage2)
|
||||
}
|
||||
|
||||
func testNonceDesynchronizationCausesRehandshake() throws {
|
||||
@Test func nonceDesynchronizationCausesRehandshake() throws {
|
||||
// Test that nonce desynchronization leads to proper re-handshake
|
||||
let aliceManager = NoiseSessionManager(localStaticKey: aliceKey, keychain: mockKeychain)
|
||||
let bobManager = NoiseSessionManager(localStaticKey: bobKey, keychain: mockKeychain)
|
||||
@@ -468,89 +479,43 @@ final class NoiseProtocolTests: XCTestCase {
|
||||
|
||||
// Exchange messages normally
|
||||
for i in 0..<5 {
|
||||
let msg = try aliceManager.encrypt("Message \(i)".data(using: .utf8)!, for: TestConstants.testPeerID2)
|
||||
_ = try bobManager.decrypt(msg, from: TestConstants.testPeerID1)
|
||||
let msg = try aliceManager.encrypt("Message \(i)".data(using: .utf8)!, for: alicePeerID)
|
||||
_ = try bobManager.decrypt(msg, from: bobPeerID)
|
||||
}
|
||||
|
||||
// Simulate desynchronization - Alice sends messages that Bob doesn't receive
|
||||
for i in 0..<3 {
|
||||
_ = try aliceManager.encrypt("Lost message \(i)".data(using: .utf8)!, for: TestConstants.testPeerID2)
|
||||
_ = try aliceManager.encrypt("Lost message \(i)".data(using: .utf8)!, for: alicePeerID)
|
||||
}
|
||||
|
||||
// With nonce carried in packet, decryption should not throw here
|
||||
let desyncMessage = try aliceManager.encrypt("This now succeeds".data(using: .utf8)!, for: TestConstants.testPeerID2)
|
||||
XCTAssertNoThrow(try bobManager.decrypt(desyncMessage, from: TestConstants.testPeerID1))
|
||||
let desyncMessage = try aliceManager.encrypt("This now succeeds".data(using: .utf8)!, for: alicePeerID)
|
||||
#expect(throws: Never.self) {
|
||||
try bobManager.decrypt(desyncMessage, from: bobPeerID)
|
||||
}
|
||||
|
||||
// Bob clears session and initiates new handshake
|
||||
bobManager.removeSession(for: TestConstants.testPeerID1)
|
||||
let rehandshake1 = try bobManager.initiateHandshake(with: TestConstants.testPeerID1)
|
||||
bobManager.removeSession(for: bobPeerID)
|
||||
let rehandshake1 = try bobManager.initiateHandshake(with: bobPeerID)
|
||||
|
||||
// Alice should accept despite having a "valid" (but desynced) session
|
||||
let rehandshake2 = try aliceManager.handleIncomingHandshake(from: TestConstants.testPeerID2, message: rehandshake1)
|
||||
XCTAssertNotNil(rehandshake2, "Alice should accept handshake to fix desync")
|
||||
let rehandshake2 = try aliceManager.handleIncomingHandshake(from: alicePeerID, message: rehandshake1)
|
||||
#expect(rehandshake2 != nil, "Alice should accept handshake to fix desync")
|
||||
|
||||
// Complete handshake
|
||||
let rehandshake3 = try bobManager.handleIncomingHandshake(from: TestConstants.testPeerID1, message: rehandshake2!)
|
||||
XCTAssertNotNil(rehandshake3)
|
||||
_ = try aliceManager.handleIncomingHandshake(from: TestConstants.testPeerID2, message: rehandshake3!)
|
||||
let rehandshake3 = try bobManager.handleIncomingHandshake(from: bobPeerID, message: rehandshake2!)
|
||||
#expect(rehandshake3 != nil)
|
||||
_ = try aliceManager.handleIncomingHandshake(from: alicePeerID, message: rehandshake3!)
|
||||
|
||||
// Verify communication works again
|
||||
let testResynced = "Resynced".data(using: .utf8)!
|
||||
let encryptedResync = try aliceManager.encrypt(testResynced, for: TestConstants.testPeerID2)
|
||||
let decryptedResync = try bobManager.decrypt(encryptedResync, from: TestConstants.testPeerID1)
|
||||
XCTAssertEqual(decryptedResync, testResynced)
|
||||
}
|
||||
|
||||
// MARK: - Performance Tests
|
||||
|
||||
func testHandshakePerformance() throws {
|
||||
measure {
|
||||
do {
|
||||
let alice = NoiseSession(peerID: "bob", role: .initiator, keychain: mockKeychain, localStaticKey: aliceKey)
|
||||
let bob = NoiseSession(peerID: "alice", role: .responder, keychain: mockKeychain, localStaticKey: bobKey)
|
||||
try performHandshake(initiator: alice, responder: bob)
|
||||
} catch {
|
||||
XCTFail("Handshake failed: \(error)")
|
||||
}
|
||||
}
|
||||
}
|
||||
|
||||
func testEncryptionPerformance() throws {
|
||||
try establishSessions()
|
||||
let message = TestHelpers.generateRandomData(length: 1024)
|
||||
|
||||
measure {
|
||||
do {
|
||||
for _ in 0..<100 {
|
||||
let ciphertext = try aliceSession.encrypt(message)
|
||||
_ = try bobSession.decrypt(ciphertext)
|
||||
}
|
||||
} catch {
|
||||
XCTFail("Encryption/decryption failed: \(error)")
|
||||
}
|
||||
}
|
||||
let encryptedResync = try aliceManager.encrypt(testResynced, for: alicePeerID)
|
||||
let decryptedResync = try bobManager.decrypt(encryptedResync, from: bobPeerID)
|
||||
#expect(decryptedResync == testResynced)
|
||||
}
|
||||
|
||||
// MARK: - Helper Methods
|
||||
|
||||
private func establishSessions() throws {
|
||||
aliceSession = NoiseSession(
|
||||
peerID: TestConstants.testPeerID2,
|
||||
role: .initiator,
|
||||
keychain: mockKeychain,
|
||||
localStaticKey: aliceKey
|
||||
)
|
||||
|
||||
bobSession = NoiseSession(
|
||||
peerID: TestConstants.testPeerID1,
|
||||
role: .responder,
|
||||
keychain: mockKeychain,
|
||||
localStaticKey: bobKey
|
||||
)
|
||||
|
||||
try performHandshake(initiator: aliceSession, responder: bobSession)
|
||||
}
|
||||
|
||||
private func performHandshake(initiator: NoiseSession, responder: NoiseSession) throws {
|
||||
let msg1 = try initiator.startHandshake()
|
||||
let msg2 = try responder.processHandshakeMessage(msg1)!
|
||||
@@ -559,9 +524,9 @@ final class NoiseProtocolTests: XCTestCase {
|
||||
}
|
||||
|
||||
private func establishManagerSessions(aliceManager: NoiseSessionManager, bobManager: NoiseSessionManager) throws {
|
||||
let msg1 = try aliceManager.initiateHandshake(with: TestConstants.testPeerID2)
|
||||
let msg2 = try bobManager.handleIncomingHandshake(from: TestConstants.testPeerID1, message: msg1)!
|
||||
let msg3 = try aliceManager.handleIncomingHandshake(from: TestConstants.testPeerID2, message: msg2)!
|
||||
_ = try bobManager.handleIncomingHandshake(from: TestConstants.testPeerID1, message: msg3)
|
||||
let msg1 = try aliceManager.initiateHandshake(with: alicePeerID)
|
||||
let msg2 = try bobManager.handleIncomingHandshake(from: bobPeerID, message: msg1)!
|
||||
let msg3 = try aliceManager.handleIncomingHandshake(from: alicePeerID, message: msg2)!
|
||||
_ = try bobManager.handleIncomingHandshake(from: bobPeerID, message: msg3)
|
||||
}
|
||||
}
|
||||
|
||||
@@ -5,20 +5,20 @@
|
||||
// Tests for NIP-17 gift-wrapped private messages
|
||||
//
|
||||
|
||||
import XCTest
|
||||
import Testing
|
||||
import CryptoKit
|
||||
import Foundation
|
||||
@testable import bitchat
|
||||
|
||||
final class NostrProtocolTests: XCTestCase {
|
||||
struct NostrProtocolTests {
|
||||
|
||||
func testNIP17MessageRoundTrip() throws {
|
||||
@Test func nip17MessageRoundTrip() throws {
|
||||
// Create sender and recipient identities
|
||||
let sender = try NostrIdentity.generate()
|
||||
let recipient = try NostrIdentity.generate()
|
||||
|
||||
#if DEBUG
|
||||
print("Sender pubkey: \(sender.publicKeyHex)")
|
||||
print("Recipient pubkey: \(recipient.publicKeyHex)")
|
||||
#endif
|
||||
|
||||
// Create a test message
|
||||
let originalContent = "Hello from NIP-17 test!"
|
||||
@@ -30,10 +30,8 @@ final class NostrProtocolTests: XCTestCase {
|
||||
senderIdentity: sender
|
||||
)
|
||||
|
||||
#if DEBUG
|
||||
print("Gift wrap created with ID: \(giftWrap.id)")
|
||||
print("Gift wrap pubkey: \(giftWrap.pubkey)")
|
||||
#endif
|
||||
|
||||
// Decrypt the gift wrap
|
||||
let (decryptedContent, senderPubkey, timestamp) = try NostrProtocol.decryptPrivateMessage(
|
||||
@@ -42,20 +40,18 @@ final class NostrProtocolTests: XCTestCase {
|
||||
)
|
||||
|
||||
// Verify
|
||||
XCTAssertEqual(decryptedContent, originalContent)
|
||||
XCTAssertEqual(senderPubkey, sender.publicKeyHex)
|
||||
#expect(decryptedContent == originalContent)
|
||||
#expect(senderPubkey == sender.publicKeyHex)
|
||||
|
||||
// Verify timestamp is reasonable (within last minute)
|
||||
let messageDate = Date(timeIntervalSince1970: TimeInterval(timestamp))
|
||||
let timeDiff = abs(messageDate.timeIntervalSinceNow)
|
||||
XCTAssertLessThan(timeDiff, 60, "Message timestamp should be recent")
|
||||
#expect(timeDiff < 60, "Message timestamp should be recent")
|
||||
|
||||
#if DEBUG
|
||||
print("✅ Successfully decrypted message: '\(decryptedContent)' from \(senderPubkey) at \(messageDate)")
|
||||
#endif
|
||||
}
|
||||
|
||||
func testGiftWrapUsesUniqueEphemeralKeys() throws {
|
||||
@Test func giftWrapUsesUniqueEphemeralKeys() throws {
|
||||
// Create identities
|
||||
let sender = try NostrIdentity.generate()
|
||||
let recipient = try NostrIdentity.generate()
|
||||
@@ -74,11 +70,10 @@ final class NostrProtocolTests: XCTestCase {
|
||||
)
|
||||
|
||||
// Gift wrap pubkeys should be different (unique ephemeral keys)
|
||||
XCTAssertNotEqual(message1.pubkey, message2.pubkey)
|
||||
#if DEBUG
|
||||
#expect(message1.pubkey != message2.pubkey)
|
||||
|
||||
print("Message 1 gift wrap pubkey: \(message1.pubkey)")
|
||||
print("Message 2 gift wrap pubkey: \(message2.pubkey)")
|
||||
#endif
|
||||
|
||||
// Both should decrypt successfully
|
||||
let (content1, _, _) = try NostrProtocol.decryptPrivateMessage(
|
||||
@@ -90,11 +85,11 @@ final class NostrProtocolTests: XCTestCase {
|
||||
recipientIdentity: recipient
|
||||
)
|
||||
|
||||
XCTAssertEqual(content1, "Message 1")
|
||||
XCTAssertEqual(content2, "Message 2")
|
||||
#expect(content1 == "Message 1")
|
||||
#expect(content2 == "Message 2")
|
||||
}
|
||||
|
||||
func testDecryptionFailsWithWrongRecipient() throws {
|
||||
@Test func decryptionFailsWithWrongRecipient() throws {
|
||||
let sender = try NostrIdentity.generate()
|
||||
let recipient = try NostrIdentity.generate()
|
||||
let wrongRecipient = try NostrIdentity.generate()
|
||||
@@ -107,13 +102,20 @@ final class NostrProtocolTests: XCTestCase {
|
||||
)
|
||||
|
||||
// Try to decrypt with wrong recipient
|
||||
XCTAssertThrowsError(try NostrProtocol.decryptPrivateMessage(
|
||||
if #available(macOS 14.4, iOS 17.4, *) {
|
||||
#expect(throws: CryptoKitError.authenticationFailure) {
|
||||
try NostrProtocol.decryptPrivateMessage(
|
||||
giftWrap: giftWrap,
|
||||
recipientIdentity: wrongRecipient
|
||||
)) { error in
|
||||
#if DEBUG
|
||||
print("Expected error when decrypting with wrong key: \(error)")
|
||||
#endif
|
||||
)
|
||||
}
|
||||
} else {
|
||||
#expect(throws: (any Error).self) {
|
||||
try NostrProtocol.decryptPrivateMessage(
|
||||
giftWrap: giftWrap,
|
||||
recipientIdentity: wrongRecipient
|
||||
)
|
||||
}
|
||||
}
|
||||
}
|
||||
|
||||
@@ -125,10 +127,11 @@ final class NostrProtocolTests: XCTestCase {
|
||||
// Build a DELIVERED ack embedded payload (geohash-style, no recipient peer ID)
|
||||
let messageID = "TEST-MSG-DELIVERED-1"
|
||||
let senderPeerID = "0123456789abcdef" // 8-byte hex peer ID
|
||||
guard let embedded = NostrEmbeddedBitChat.encodeAckForNostrNoRecipient(type: .delivered, messageID: messageID, senderPeerID: senderPeerID) else {
|
||||
XCTFail("Failed to embed delivered ack")
|
||||
return
|
||||
}
|
||||
|
||||
let embedded = try #require(
|
||||
NostrEmbeddedBitChat.encodeAckForNostrNoRecipient(type: .delivered, messageID: messageID, senderPeerID: senderPeerID),
|
||||
"Failed to embed delivered ack"
|
||||
)
|
||||
|
||||
// Create NIP-17 gift wrap to recipient (uses NIP-44 v2 internally)
|
||||
let giftWrap = try NostrProtocol.createPrivateMessage(
|
||||
@@ -138,7 +141,7 @@ final class NostrProtocolTests: XCTestCase {
|
||||
)
|
||||
|
||||
// Ensure v2 format was used for ciphertext
|
||||
XCTAssertTrue(giftWrap.content.hasPrefix("v2:"))
|
||||
#expect(giftWrap.content.hasPrefix("v2:"))
|
||||
|
||||
// Decrypt as recipient
|
||||
let (content, senderPubkey, _) = try NostrProtocol.decryptPrivateMessage(
|
||||
@@ -147,39 +150,37 @@ final class NostrProtocolTests: XCTestCase {
|
||||
)
|
||||
|
||||
// Verify sender is correct
|
||||
XCTAssertEqual(senderPubkey, sender.publicKeyHex)
|
||||
#expect(senderPubkey == sender.publicKeyHex)
|
||||
|
||||
// Parse BitChat payload
|
||||
XCTAssertTrue(content.hasPrefix("bitchat1:"))
|
||||
#expect(content.hasPrefix("bitchat1:"))
|
||||
let base64url = String(content.dropFirst("bitchat1:".count))
|
||||
guard let packetData = Self.base64URLDecode(base64url),
|
||||
let packet = BitchatPacket.from(packetData) else {
|
||||
return XCTFail("Failed to decode bitchat packet")
|
||||
}
|
||||
XCTAssertEqual(packet.type, MessageType.noiseEncrypted.rawValue)
|
||||
guard let payload = NoisePayload.decode(packet.payload) else {
|
||||
return XCTFail("Failed to decode NoisePayload")
|
||||
}
|
||||
let packetData = try #require(Self.base64URLDecode(base64url))
|
||||
let packet = try #require(BitchatPacket.from(packetData), "Failed to decode bitchat packet")
|
||||
|
||||
#expect(packet.type == MessageType.noiseEncrypted.rawValue)
|
||||
let payload = try #require(NoisePayload.decode(packet.payload), "Failed to decode NoisePayload")
|
||||
|
||||
switch payload.type {
|
||||
case .delivered:
|
||||
let mid = String(data: payload.data, encoding: .utf8)
|
||||
XCTAssertEqual(mid, messageID)
|
||||
#expect(mid == messageID)
|
||||
default:
|
||||
XCTFail("Unexpected payload type: \(payload.type)")
|
||||
Issue.record("Unexpected payload type: \(payload.type)")
|
||||
}
|
||||
}
|
||||
|
||||
func testAckRoundTripNIP44V2_ReadReceipt() throws {
|
||||
@Test func ackRoundTripNIP44V2_ReadReceipt() throws {
|
||||
// Identities
|
||||
let sender = try NostrIdentity.generate()
|
||||
let recipient = try NostrIdentity.generate()
|
||||
|
||||
let messageID = "TEST-MSG-READ-1"
|
||||
let senderPeerID = "fedcba9876543210" // 8-byte hex peer ID
|
||||
guard let embedded = NostrEmbeddedBitChat.encodeAckForNostrNoRecipient(type: .readReceipt, messageID: messageID, senderPeerID: senderPeerID) else {
|
||||
XCTFail("Failed to embed read ack")
|
||||
return
|
||||
}
|
||||
let embedded = try #require(
|
||||
NostrEmbeddedBitChat.encodeAckForNostrNoRecipient(type: .readReceipt, messageID: messageID, senderPeerID: senderPeerID),
|
||||
"Failed to embed read ack"
|
||||
)
|
||||
|
||||
let giftWrap = try NostrProtocol.createPrivateMessage(
|
||||
content: embedded,
|
||||
@@ -187,30 +188,28 @@ final class NostrProtocolTests: XCTestCase {
|
||||
senderIdentity: sender
|
||||
)
|
||||
|
||||
XCTAssertTrue(giftWrap.content.hasPrefix("v2:"))
|
||||
#expect(giftWrap.content.hasPrefix("v2:"))
|
||||
|
||||
let (content, senderPubkey, _) = try NostrProtocol.decryptPrivateMessage(
|
||||
giftWrap: giftWrap,
|
||||
recipientIdentity: recipient
|
||||
)
|
||||
XCTAssertEqual(senderPubkey, sender.publicKeyHex)
|
||||
#expect(senderPubkey == sender.publicKeyHex)
|
||||
|
||||
XCTAssertTrue(content.hasPrefix("bitchat1:"))
|
||||
#expect(content.hasPrefix("bitchat1:"))
|
||||
let base64url = String(content.dropFirst("bitchat1:".count))
|
||||
guard let packetData = Self.base64URLDecode(base64url),
|
||||
let packet = BitchatPacket.from(packetData) else {
|
||||
return XCTFail("Failed to decode bitchat packet")
|
||||
}
|
||||
XCTAssertEqual(packet.type, MessageType.noiseEncrypted.rawValue)
|
||||
guard let payload = NoisePayload.decode(packet.payload) else {
|
||||
return XCTFail("Failed to decode NoisePayload")
|
||||
}
|
||||
let packetData = try #require(Self.base64URLDecode(base64url))
|
||||
let packet = try #require(BitchatPacket.from(packetData), "Failed to decode bitchat packet")
|
||||
|
||||
#expect(packet.type == MessageType.noiseEncrypted.rawValue)
|
||||
let payload = try #require(NoisePayload.decode(packet.payload), "Failed to decode NoisePayload")
|
||||
|
||||
switch payload.type {
|
||||
case .readReceipt:
|
||||
let mid = String(data: payload.data, encoding: .utf8)
|
||||
XCTAssertEqual(mid, messageID)
|
||||
#expect(mid == messageID)
|
||||
default:
|
||||
XCTFail("Unexpected payload type: \(payload.type)")
|
||||
Issue.record("Unexpected payload type: \(payload.type)")
|
||||
}
|
||||
}
|
||||
|
||||
|
||||
@@ -1,7 +1,8 @@
|
||||
import XCTest
|
||||
import Testing
|
||||
import Foundation
|
||||
@testable import bitchat
|
||||
|
||||
final class NotificationStreamAssemblerTests: XCTestCase {
|
||||
struct NotificationStreamAssemblerTests {
|
||||
private func makePacket(timestamp: UInt64 = 0x0102030405) -> BitchatPacket {
|
||||
let sender = Data([0x00, 0x11, 0x22, 0x33, 0x44, 0x55, 0x66, 0x77])
|
||||
return BitchatPacket(
|
||||
@@ -15,60 +16,51 @@ final class NotificationStreamAssemblerTests: XCTestCase {
|
||||
)
|
||||
}
|
||||
|
||||
func testAssemblesSingleFrameAcrossChunks() {
|
||||
@Test func assemblesSingleFrameAcrossChunks() throws {
|
||||
var assembler = NotificationStreamAssembler()
|
||||
let packet = makePacket()
|
||||
guard let frame = packet.toBinaryData(padding: false) else {
|
||||
return XCTFail("Failed to encode packet")
|
||||
}
|
||||
XCTAssertNotNil(BinaryProtocol.decode(frame))
|
||||
let frame = try #require(packet.toBinaryData(padding: false), "Failed to encode packet")
|
||||
|
||||
#expect(BinaryProtocol.decode(frame) != nil)
|
||||
let payloadLen = (Int(frame[12]) << 8) | Int(frame[13])
|
||||
XCTAssertEqual(payloadLen, packet.payload.count)
|
||||
#expect(payloadLen == packet.payload.count)
|
||||
|
||||
let splitIndex = min(20, max(1, frame.count / 2))
|
||||
let first = frame.prefix(splitIndex)
|
||||
let second = frame.suffix(from: splitIndex)
|
||||
XCTAssertEqual(first.count + second.count, frame.count)
|
||||
#expect(first.count + second.count == frame.count)
|
||||
|
||||
var result = assembler.append(first)
|
||||
XCTAssertTrue(result.frames.isEmpty)
|
||||
XCTAssertTrue(result.droppedPrefixes.isEmpty)
|
||||
XCTAssertFalse(result.reset)
|
||||
#expect(result.frames.isEmpty)
|
||||
#expect(result.droppedPrefixes.isEmpty)
|
||||
#expect(!result.reset)
|
||||
|
||||
result = assembler.append(second)
|
||||
XCTAssertEqual(result.frames.count, 1)
|
||||
XCTAssertTrue(result.droppedPrefixes.isEmpty)
|
||||
XCTAssertFalse(result.reset)
|
||||
#expect(result.frames.count == 1)
|
||||
#expect(result.droppedPrefixes.isEmpty)
|
||||
#expect(!result.reset)
|
||||
|
||||
guard let frameData = result.frames.first else {
|
||||
return XCTFail("Missing frame data")
|
||||
}
|
||||
if frameData.count != frame.count {
|
||||
XCTFail("Frame size mismatch: expected \(frame.count) got \(frameData.count)\nframe=\(Array(frame))\nassembled=\(Array(frameData))")
|
||||
return
|
||||
}
|
||||
guard let decoded = BinaryProtocol.decode(frameData) else {
|
||||
return XCTFail("Failed to decode frame")
|
||||
}
|
||||
XCTAssertEqual(decoded.type, packet.type)
|
||||
XCTAssertEqual(decoded.payload, packet.payload)
|
||||
XCTAssertEqual(decoded.senderID, packet.senderID)
|
||||
XCTAssertEqual(decoded.timestamp, packet.timestamp)
|
||||
let frameData = try #require(result.frames.first, "Missing frame data")
|
||||
#expect(frameData.count == frame.count)
|
||||
|
||||
let decoded = try #require(BinaryProtocol.decode(frameData), "Failed to decode frame")
|
||||
#expect(decoded.type == packet.type)
|
||||
#expect(decoded.payload == packet.payload)
|
||||
#expect(decoded.senderID == packet.senderID)
|
||||
#expect(decoded.timestamp == packet.timestamp)
|
||||
|
||||
var directAssembler = NotificationStreamAssembler()
|
||||
let directResult = directAssembler.append(frame)
|
||||
XCTAssertEqual(directResult.frames.first?.count, frame.count)
|
||||
#expect(directResult.frames.first?.count == frame.count)
|
||||
}
|
||||
|
||||
func testAssemblesMultipleFramesSequentially() {
|
||||
@Test func assemblesMultipleFramesSequentially() throws {
|
||||
var assembler = NotificationStreamAssembler()
|
||||
let packet1 = makePacket(timestamp: 0xABC)
|
||||
let packet2 = makePacket(timestamp: 0xDEF)
|
||||
|
||||
guard let frame1 = packet1.toBinaryData(padding: false),
|
||||
let frame2 = packet2.toBinaryData(padding: false) else {
|
||||
return XCTFail("Failed to encode packets")
|
||||
}
|
||||
let frame1 = try #require(packet1.toBinaryData(padding: false), "Failed to encode packet")
|
||||
let frame2 = try #require(packet2.toBinaryData(padding: false), "Failed to encode packet")
|
||||
|
||||
var combined = Data()
|
||||
combined.append(frame1)
|
||||
@@ -77,35 +69,30 @@ final class NotificationStreamAssemblerTests: XCTestCase {
|
||||
let secondChunk = combined.suffix(from: 20)
|
||||
|
||||
var result = assembler.append(firstChunk)
|
||||
XCTAssertTrue(result.frames.isEmpty)
|
||||
#expect(result.frames.isEmpty)
|
||||
|
||||
result = assembler.append(secondChunk)
|
||||
XCTAssertEqual(result.frames.count, 2)
|
||||
guard let decoded1 = BinaryProtocol.decode(result.frames[0]),
|
||||
let decoded2 = BinaryProtocol.decode(result.frames[1]) else {
|
||||
return XCTFail("Failed to decode frames")
|
||||
}
|
||||
XCTAssertEqual(decoded1.timestamp, packet1.timestamp)
|
||||
XCTAssertEqual(decoded2.timestamp, packet2.timestamp)
|
||||
#expect(result.frames.count == 2)
|
||||
|
||||
let decoded1 = try #require(BinaryProtocol.decode(result.frames[0]), "Failed to decode frame")
|
||||
let decoded2 = try #require(BinaryProtocol.decode(result.frames[1]), "Failed to decode frame")
|
||||
#expect(decoded1.timestamp == packet1.timestamp)
|
||||
#expect(decoded2.timestamp == packet2.timestamp)
|
||||
}
|
||||
|
||||
func testDropsInvalidPrefixByte() {
|
||||
@Test func dropsInvalidPrefixByte() throws {
|
||||
var assembler = NotificationStreamAssembler()
|
||||
let packet = makePacket(timestamp: 0xF00)
|
||||
guard let frame = packet.toBinaryData(padding: false) else {
|
||||
return XCTFail("Failed to encode packet")
|
||||
}
|
||||
let frame = try #require(packet.toBinaryData(padding: false), "Failed to encode packet")
|
||||
var noisyFrame = Data([0x00])
|
||||
noisyFrame.append(frame)
|
||||
|
||||
let result = assembler.append(noisyFrame)
|
||||
XCTAssertEqual(result.droppedPrefixes, [0x00])
|
||||
XCTAssertEqual(result.frames.count, 1)
|
||||
XCTAssertFalse(result.reset)
|
||||
#expect(result.droppedPrefixes == [0x00])
|
||||
#expect(result.frames.count == 1)
|
||||
#expect(result.reset == false)
|
||||
|
||||
guard let decoded = BinaryProtocol.decode(result.frames[0]) else {
|
||||
return XCTFail("Failed to decode frame after drop")
|
||||
}
|
||||
XCTAssertEqual(decoded.timestamp, packet.timestamp)
|
||||
let decoded = try #require(BinaryProtocol.decode(result.frames[0]), "Failed to decode frame after drop")
|
||||
#expect(decoded.timestamp == packet.timestamp)
|
||||
}
|
||||
}
|
||||
|
||||
@@ -5,30 +5,29 @@
|
||||
// This is free and unencumbered software released into the public domain.
|
||||
//
|
||||
|
||||
import XCTest
|
||||
import Testing
|
||||
@testable import bitchat
|
||||
|
||||
final class BinaryProtocolPaddingTests: XCTestCase {
|
||||
func test_padded_vs_unpadded_length() throws {
|
||||
struct BinaryProtocolPaddingTests {
|
||||
@Test func padded_vs_unpadded_length() throws {
|
||||
// Use helper to create a small test packet
|
||||
let packet = TestHelpers.createTestPacket()
|
||||
guard let padded = BinaryProtocol.encode(packet, padding: true) else { return XCTFail("encode padded") }
|
||||
guard let unpadded = BinaryProtocol.encode(packet, padding: false) else { return XCTFail("encode unpadded") }
|
||||
XCTAssertGreaterThanOrEqual(padded.count, unpadded.count, "Padded frame should be >= unpadded")
|
||||
let padded = try #require(BinaryProtocol.encode(packet, padding: true), "encode padded")
|
||||
let unpadded = try #require(BinaryProtocol.encode(packet, padding: false), "encode unpadded")
|
||||
#expect(padded.count >= unpadded.count, "Padded frame should be >= unpadded")
|
||||
}
|
||||
|
||||
func test_decode_padded_and_unpadded_round_trip() throws {
|
||||
@Test func decode_padded_and_unpadded_round_trip() throws {
|
||||
let packet = TestHelpers.createTestPacket()
|
||||
// Padded
|
||||
guard let padded = BinaryProtocol.encode(packet, padding: true) else { return XCTFail("encode padded") }
|
||||
guard let dec1 = BinaryProtocol.decode(padded) else { return XCTFail("decode padded") }
|
||||
XCTAssertEqual(dec1.type, packet.type)
|
||||
XCTAssertEqual(dec1.payload, packet.payload)
|
||||
// Unpadded
|
||||
guard let unpadded = BinaryProtocol.encode(packet, padding: false) else { return XCTFail("encode unpadded") }
|
||||
guard let dec2 = BinaryProtocol.decode(unpadded) else { return XCTFail("decode unpadded") }
|
||||
XCTAssertEqual(dec2.type, packet.type)
|
||||
XCTAssertEqual(dec2.payload, packet.payload)
|
||||
}
|
||||
}
|
||||
|
||||
let padded = try #require(BinaryProtocol.encode(packet, padding: true), "encode padded")
|
||||
let dec1 = try #require(BinaryProtocol.decode(padded), "decode padded")
|
||||
#expect(dec1.type == packet.type)
|
||||
#expect(dec1.payload == packet.payload)
|
||||
|
||||
let unpadded = try #require(BinaryProtocol.encode(packet, padding: false), "encode unpadded")
|
||||
let dec2 = try #require(BinaryProtocol.decode(unpadded), "decode unpadded")
|
||||
#expect(dec2.type == packet.type)
|
||||
#expect(dec2.payload == packet.payload)
|
||||
}
|
||||
}
|
||||
|
||||
@@ -6,119 +6,89 @@
|
||||
// For more information, see <https://unlicense.org>
|
||||
//
|
||||
|
||||
import XCTest
|
||||
import Testing
|
||||
import Foundation
|
||||
@testable import bitchat
|
||||
|
||||
final class BinaryProtocolTests: XCTestCase {
|
||||
struct BinaryProtocolTests {
|
||||
|
||||
// MARK: - Basic Encoding/Decoding Tests
|
||||
|
||||
func testBasicPacketEncodingDecoding() throws {
|
||||
@Test func basicPacketEncodingDecoding() throws {
|
||||
let originalPacket = TestHelpers.createTestPacket()
|
||||
|
||||
// Encode
|
||||
guard let encodedData = BinaryProtocol.encode(originalPacket) else {
|
||||
XCTFail("Failed to encode packet")
|
||||
return
|
||||
}
|
||||
|
||||
// Decode
|
||||
guard let decodedPacket = BinaryProtocol.decode(encodedData) else {
|
||||
XCTFail("Failed to decode packet")
|
||||
return
|
||||
}
|
||||
let encodedData = try #require(BinaryProtocol.encode(originalPacket), "Failed to encode packet")
|
||||
let decodedPacket = try #require(BinaryProtocol.decode(encodedData), "Failed to decode packet")
|
||||
|
||||
// Verify
|
||||
XCTAssertEqual(decodedPacket.type, originalPacket.type)
|
||||
XCTAssertEqual(decodedPacket.ttl, originalPacket.ttl)
|
||||
XCTAssertEqual(decodedPacket.timestamp, originalPacket.timestamp)
|
||||
XCTAssertEqual(decodedPacket.payload, originalPacket.payload)
|
||||
#expect(decodedPacket.type == originalPacket.type)
|
||||
#expect(decodedPacket.ttl == originalPacket.ttl)
|
||||
#expect(decodedPacket.timestamp == originalPacket.timestamp)
|
||||
#expect(decodedPacket.payload == originalPacket.payload)
|
||||
|
||||
// Sender ID should match (accounting for padding)
|
||||
let originalSenderID = originalPacket.senderID.prefix(BinaryProtocol.senderIDSize)
|
||||
let decodedSenderID = decodedPacket.senderID.trimmingNullBytes()
|
||||
XCTAssertEqual(decodedSenderID, originalSenderID)
|
||||
#expect(decodedSenderID == originalSenderID)
|
||||
}
|
||||
|
||||
func testPacketWithRecipient() throws {
|
||||
let recipientID = TestConstants.testPeerID2
|
||||
@Test func packetWithRecipient() throws {
|
||||
let recipientID = PeerID(str: "abcdef0123456789abcdef0123456789abcdef0123456789abcdef0123456789")
|
||||
let packet = TestHelpers.createTestPacket(recipientID: recipientID)
|
||||
|
||||
// Encode and decode
|
||||
guard let encodedData = BinaryProtocol.encode(packet),
|
||||
let decodedPacket = BinaryProtocol.decode(encodedData) else {
|
||||
XCTFail("Failed to encode/decode packet with recipient")
|
||||
return
|
||||
}
|
||||
let encodedData = try #require(BinaryProtocol.encode(packet), "Failed to encode packet with recipient")
|
||||
let decodedPacket = try #require(BinaryProtocol.decode(encodedData), "Failed to decode packet with recipient")
|
||||
|
||||
// Verify recipient
|
||||
XCTAssertNotNil(decodedPacket.recipientID)
|
||||
#expect(decodedPacket.recipientID != nil)
|
||||
let decodedRecipientID = decodedPacket.recipientID?.trimmingNullBytes()
|
||||
XCTAssertTrue(String(data: decodedRecipientID!, encoding: .utf8) == recipientID)
|
||||
// TODO: Check if this is intended that the decoding only gets the first 8
|
||||
#expect(String(data: decodedRecipientID!, encoding: .utf8) == "abcdef01")
|
||||
}
|
||||
|
||||
func testPacketWithSignature() throws {
|
||||
let packet = TestHelpers.createTestPacket(
|
||||
signature: TestConstants.testSignature
|
||||
)
|
||||
|
||||
// Encode and decode
|
||||
guard let encodedData = BinaryProtocol.encode(packet),
|
||||
let decodedPacket = BinaryProtocol.decode(encodedData) else {
|
||||
XCTFail("Failed to encode/decode packet with signature")
|
||||
return
|
||||
}
|
||||
@Test func packetWithSignature() throws {
|
||||
let packet = TestHelpers.createTestPacket(signature: TestConstants.testSignature)
|
||||
let encodedData = try #require(BinaryProtocol.encode(packet), "Failed to encode packet with signature")
|
||||
let decodedPacket = try #require(BinaryProtocol.decode(encodedData), "Failed to decode packet with signature")
|
||||
|
||||
// Verify signature
|
||||
XCTAssertNotNil(decodedPacket.signature)
|
||||
XCTAssertEqual(decodedPacket.signature, TestConstants.testSignature)
|
||||
#expect(decodedPacket.signature != nil)
|
||||
#expect(decodedPacket.signature == TestConstants.testSignature)
|
||||
}
|
||||
|
||||
// MARK: - Compression Tests
|
||||
|
||||
func testPayloadCompression() throws {
|
||||
// Create a large, compressible payload above current threshold (2048B)
|
||||
@Test("Create a large, compressible payload above current threshold (2048B)")
|
||||
func payloadCompression() throws {
|
||||
let repeatedString = String(repeating: "This is a test message. ", count: 200)
|
||||
let largePayload = repeatedString.data(using: .utf8)!
|
||||
|
||||
let packet = TestHelpers.createTestPacket(payload: largePayload)
|
||||
|
||||
// Encode (should compress)
|
||||
guard let encodedData = BinaryProtocol.encode(packet) else {
|
||||
XCTFail("Failed to encode packet with large payload")
|
||||
return
|
||||
}
|
||||
let encodedData = try #require(BinaryProtocol.encode(packet), "Failed to encode packet with large payload")
|
||||
|
||||
// The encoded size should be smaller than uncompressed due to compression
|
||||
let uncompressedSize = BinaryProtocol.headerSize + BinaryProtocol.senderIDSize + largePayload.count
|
||||
XCTAssertLessThan(encodedData.count, uncompressedSize)
|
||||
#expect(encodedData.count < uncompressedSize)
|
||||
|
||||
// Decode and verify
|
||||
guard let decodedPacket = BinaryProtocol.decode(encodedData) else {
|
||||
XCTFail("Failed to decode compressed packet")
|
||||
return
|
||||
let decodedPacket = try #require(BinaryProtocol.decode(encodedData), "Failed to decode compressed packet")
|
||||
|
||||
#expect(decodedPacket.payload == largePayload)
|
||||
}
|
||||
|
||||
XCTAssertEqual(decodedPacket.payload, largePayload)
|
||||
}
|
||||
|
||||
func testSmallPayloadNoCompression() throws {
|
||||
// Small payloads should not be compressed
|
||||
@Test("Small payloads should not be compressed")
|
||||
func smallPayloadNoCompression() throws {
|
||||
let smallPayload = "Hi".data(using: .utf8)!
|
||||
let packet = TestHelpers.createTestPacket(payload: smallPayload)
|
||||
|
||||
guard let encodedData = BinaryProtocol.encode(packet),
|
||||
let decodedPacket = BinaryProtocol.decode(encodedData) else {
|
||||
XCTFail("Failed to encode/decode small packet")
|
||||
return
|
||||
}
|
||||
|
||||
XCTAssertEqual(decodedPacket.payload, smallPayload)
|
||||
let encodedData = try #require(BinaryProtocol.encode(packet), "Failed to encode small packet")
|
||||
let decodedPacket = try #require(BinaryProtocol.decode(encodedData), "Failed to decode small packet")
|
||||
#expect(decodedPacket.payload == smallPayload)
|
||||
}
|
||||
|
||||
// MARK: - Message Padding Tests
|
||||
|
||||
func testMessagePadding() throws {
|
||||
@Test func messagePadding() throws {
|
||||
let payloads = [
|
||||
"Short",
|
||||
String(repeating: "Medium length message content ", count: 10), // ~300 bytes
|
||||
@@ -130,43 +100,32 @@ final class BinaryProtocolTests: XCTestCase {
|
||||
|
||||
for payload in payloads {
|
||||
let packet = TestHelpers.createTestPacket(payload: payload.data(using: .utf8)!)
|
||||
|
||||
guard let encodedData = BinaryProtocol.encode(packet) else {
|
||||
XCTFail("Failed to encode packet")
|
||||
continue
|
||||
}
|
||||
let encodedData = try #require(BinaryProtocol.encode(packet), "Failed to encode packet")
|
||||
|
||||
// Verify padding creates standard block sizes up to configured limit (no 4096 bucket currently)
|
||||
let blockSizes = [256, 512, 1024, 2048]
|
||||
if encodedData.count <= 2048 {
|
||||
XCTAssertTrue(blockSizes.contains(encodedData.count), "Encoded size \(encodedData.count) is not a standard block size")
|
||||
#expect(blockSizes.contains(encodedData.count), "Encoded size \(encodedData.count) is not a standard block size")
|
||||
} else {
|
||||
// For very large payloads we expect no additional padding beyond raw size
|
||||
XCTAssertGreaterThan(encodedData.count, 2048)
|
||||
#expect(encodedData.count > 2048)
|
||||
}
|
||||
|
||||
encodedSizes.insert(encodedData.count)
|
||||
|
||||
// Verify decoding works
|
||||
guard let decodedPacket = BinaryProtocol.decode(encodedData) else {
|
||||
XCTFail("Failed to decode padded packet")
|
||||
continue
|
||||
}
|
||||
|
||||
XCTAssertEqual(String(data: decodedPacket.payload, encoding: .utf8), payload)
|
||||
let decodedPacket = try #require(BinaryProtocol.decode(encodedData), "Failed to decode padded packet")
|
||||
#expect(String(data: decodedPacket.payload, encoding: .utf8) == payload)
|
||||
}
|
||||
|
||||
// Different payload sizes (within <=2048) may map to the same bucket depending on compression.
|
||||
// Require at least one padded size to be present.
|
||||
XCTAssertGreaterThanOrEqual(encodedSizes.filter { $0 <= 2048 }.count, 1, "Expected at least one padded size up to 2048, got \(encodedSizes)")
|
||||
#expect(encodedSizes.filter { $0 <= 2048 }.count >= 1, "Expected at least one padded size up to 2048, got \(encodedSizes)")
|
||||
}
|
||||
|
||||
func testInvalidPKCS7PaddingIsRejected() throws {
|
||||
@Test func invalidPKCS7PaddingIsRejected() throws {
|
||||
let pkt = TestHelpers.createTestPacket(payload: Data(repeating: 0x41, count: 50)) // small
|
||||
guard let enc0 = BinaryProtocol.encode(pkt) else {
|
||||
XCTFail("encode failed")
|
||||
return
|
||||
}
|
||||
let enc0 = try #require(BinaryProtocol.encode(pkt), "encode failed")
|
||||
// Force padding to known block for test stability
|
||||
var enc = MessagePadding.pad(enc0, toSize: 256)
|
||||
let unpadded = MessagePadding.unpad(enc)
|
||||
@@ -177,39 +136,33 @@ final class BinaryProtocolTests: XCTestCase {
|
||||
let maybe = BinaryProtocol.decode(enc)
|
||||
// If decode still succeeds (nested pad edge case), at least ensure payload integrity
|
||||
if let pkt2 = maybe {
|
||||
XCTAssertEqual(pkt2.payload, pkt.payload)
|
||||
#expect(pkt2.payload == pkt.payload)
|
||||
} else {
|
||||
XCTAssertNil(maybe)
|
||||
#expect(maybe == nil)
|
||||
}
|
||||
} else {
|
||||
// If no padding was applied, just assert decode succeeds (nothing to test)
|
||||
XCTAssertNotNil(BinaryProtocol.decode(enc))
|
||||
#expect(BinaryProtocol.decode(enc) != nil)
|
||||
}
|
||||
}
|
||||
|
||||
// MARK: - Message Encoding/Decoding Tests
|
||||
|
||||
func testMessageEncodingDecoding() throws {
|
||||
@Test func messageEncodingDecoding() throws {
|
||||
let message = TestHelpers.createTestMessage()
|
||||
|
||||
guard let payload = message.toBinaryPayload() else {
|
||||
XCTFail("Failed to encode message to binary")
|
||||
return
|
||||
}
|
||||
let payload = try #require(message.toBinaryPayload(), "Failed to encode message to binary")
|
||||
|
||||
guard let decodedMessage = BitchatMessage(payload) else {
|
||||
XCTFail("Failed to decode message from binary")
|
||||
return
|
||||
}
|
||||
let decodedMessage = try #require(BitchatMessage(payload), "Failed to decode message from binary")
|
||||
|
||||
XCTAssertEqual(decodedMessage.content, message.content)
|
||||
XCTAssertEqual(decodedMessage.sender, message.sender)
|
||||
XCTAssertEqual(decodedMessage.senderPeerID, message.senderPeerID)
|
||||
XCTAssertEqual(decodedMessage.isPrivate, message.isPrivate)
|
||||
#expect(decodedMessage.content == message.content)
|
||||
#expect(decodedMessage.sender == message.sender)
|
||||
#expect(decodedMessage.senderPeerID == message.senderPeerID)
|
||||
#expect(decodedMessage.isPrivate == message.isPrivate)
|
||||
|
||||
// Timestamp should be close (within 1 second due to conversion)
|
||||
let timeDiff = abs(decodedMessage.timestamp.timeIntervalSince(message.timestamp))
|
||||
XCTAssertLessThan(timeDiff, 1.0)
|
||||
#expect(timeDiff < 1)
|
||||
}
|
||||
|
||||
func testPrivateMessageEncoding() throws {
|
||||
@@ -218,30 +171,22 @@ final class BinaryProtocolTests: XCTestCase {
|
||||
recipientNickname: TestConstants.testNickname2
|
||||
)
|
||||
|
||||
guard let payload = message.toBinaryPayload(),
|
||||
let decodedMessage = BitchatMessage(payload) else {
|
||||
XCTFail("Failed to encode/decode private message")
|
||||
return
|
||||
let payload = try #require(message.toBinaryPayload(), "Failed to encode private message")
|
||||
let decodedMessage = try #require(BitchatMessage(payload), "Failed to decode private message")
|
||||
|
||||
#expect(decodedMessage.isPrivate)
|
||||
#expect(decodedMessage.recipientNickname == TestConstants.testNickname2)
|
||||
}
|
||||
|
||||
XCTAssertTrue(decodedMessage.isPrivate)
|
||||
XCTAssertEqual(decodedMessage.recipientNickname, TestConstants.testNickname2)
|
||||
}
|
||||
|
||||
func testMessageWithMentions() throws {
|
||||
@Test func messageWithMentions() throws {
|
||||
let mentions = [TestConstants.testNickname2, TestConstants.testNickname3]
|
||||
let message = TestHelpers.createTestMessage(mentions: mentions)
|
||||
|
||||
guard let payload = message.toBinaryPayload(),
|
||||
let decodedMessage = BitchatMessage(payload) else {
|
||||
XCTFail("Failed to encode/decode message with mentions")
|
||||
return
|
||||
let payload = try #require(message.toBinaryPayload(), "Failed to encode message with mentions")
|
||||
let decodedMessage = try #require(BitchatMessage(payload), "Failed to decode message with mentions")
|
||||
#expect(decodedMessage.mentions == mentions)
|
||||
}
|
||||
|
||||
XCTAssertEqual(decodedMessage.mentions, mentions)
|
||||
}
|
||||
|
||||
func testRelayMessageEncoding() throws {
|
||||
@Test func relayMessageEncoding() throws {
|
||||
let message = BitchatMessage(
|
||||
id: UUID().uuidString,
|
||||
sender: TestConstants.testNickname1,
|
||||
@@ -251,105 +196,77 @@ final class BinaryProtocolTests: XCTestCase {
|
||||
originalSender: TestConstants.testNickname3,
|
||||
isPrivate: false,
|
||||
recipientNickname: nil,
|
||||
senderPeerID: TestConstants.testPeerID1,
|
||||
mentions: nil
|
||||
)
|
||||
|
||||
guard let payload = message.toBinaryPayload(),
|
||||
let decodedMessage = BitchatMessage(payload) else {
|
||||
XCTFail("Failed to encode/decode relay message")
|
||||
return
|
||||
}
|
||||
|
||||
XCTAssertTrue(decodedMessage.isRelay)
|
||||
XCTAssertEqual(decodedMessage.originalSender, TestConstants.testNickname3)
|
||||
let payload = try #require(message.toBinaryPayload(), "Failed to encode relay message")
|
||||
let decodedMessage = try #require(BitchatMessage(payload), "Failed to decode relay message")
|
||||
#expect(decodedMessage.isRelay)
|
||||
#expect(decodedMessage.originalSender == TestConstants.testNickname3)
|
||||
}
|
||||
|
||||
// MARK: - Edge Cases and Error Handling
|
||||
|
||||
func testInvalidDataDecoding() {
|
||||
// Too small data
|
||||
@Test("Too small data")
|
||||
func invalidDataDecoding() throws {
|
||||
let tooSmall = Data(repeating: 0, count: 5)
|
||||
XCTAssertNil(BinaryProtocol.decode(tooSmall))
|
||||
#expect(BinaryProtocol.decode(tooSmall) == nil)
|
||||
|
||||
// Random data
|
||||
let random = TestHelpers.generateRandomData(length: 100)
|
||||
XCTAssertNil(BinaryProtocol.decode(random))
|
||||
#expect(BinaryProtocol.decode(random) == nil)
|
||||
|
||||
// Corrupted header
|
||||
let packet = TestHelpers.createTestPacket()
|
||||
guard var encoded = BinaryProtocol.encode(packet) else {
|
||||
XCTFail("Failed to encode test packet")
|
||||
return
|
||||
}
|
||||
var encoded = try #require(BinaryProtocol.encode(packet), "Failed to encode test packet")
|
||||
|
||||
// Corrupt the version byte
|
||||
encoded[0] = 0xFF
|
||||
XCTAssertNil(BinaryProtocol.decode(encoded))
|
||||
#expect(BinaryProtocol.decode(encoded) == nil)
|
||||
}
|
||||
|
||||
func testLargeMessageHandling() throws {
|
||||
// Test maximum size handling
|
||||
@Test("Test maximum size handling")
|
||||
func largeMessageHandling() throws {
|
||||
let largeContent = String(repeating: "X", count: 65535) // Max uint16
|
||||
let message = TestHelpers.createTestMessage(content: largeContent)
|
||||
|
||||
guard let payload = message.toBinaryPayload(),
|
||||
let decodedMessage = BitchatMessage(payload) else {
|
||||
XCTFail("Failed to handle large message")
|
||||
return
|
||||
let payload = try #require(message.toBinaryPayload(), "Failed to handle large message")
|
||||
let decodedMessage = try #require(BitchatMessage(payload), "Failed to handle large message")
|
||||
#expect(decodedMessage.content == largeContent)
|
||||
}
|
||||
|
||||
XCTAssertEqual(decodedMessage.content, largeContent)
|
||||
}
|
||||
|
||||
func testEmptyFieldsHandling() throws {
|
||||
// Test message with empty content
|
||||
@Test("Test message with empty content")
|
||||
func emptyFieldsHandling() throws {
|
||||
let emptyMessage = TestHelpers.createTestMessage(content: "")
|
||||
|
||||
guard let payload = emptyMessage.toBinaryPayload(),
|
||||
let decodedMessage = BitchatMessage(payload) else {
|
||||
XCTFail("Failed to handle empty message")
|
||||
return
|
||||
}
|
||||
|
||||
XCTAssertEqual(decodedMessage.content, "")
|
||||
let payload = try #require(emptyMessage.toBinaryPayload(), "Failed to handle empty message")
|
||||
let decodedMessage = try #require(BitchatMessage(payload), "Failed to handle empty message")
|
||||
#expect(decodedMessage.content.isEmpty)
|
||||
}
|
||||
|
||||
// MARK: - Protocol Version Tests
|
||||
|
||||
func testProtocolVersionHandling() throws {
|
||||
// Test with supported version (version is always 1 in init)
|
||||
@Test("Test with supported version (version is always 1 in init)")
|
||||
func protocolVersionHandling() throws {
|
||||
let packet = TestHelpers.createTestPacket()
|
||||
|
||||
guard let encoded = BinaryProtocol.encode(packet),
|
||||
let decoded = BinaryProtocol.decode(encoded) else {
|
||||
XCTFail("Failed to encode/decode packet with version")
|
||||
return
|
||||
let encoded = try #require(BinaryProtocol.encode(packet), "Failed to encode packet with version")
|
||||
let decoded = try #require(BinaryProtocol.decode(encoded), "Failed to decode packet with version")
|
||||
#expect(decoded.version == 1)
|
||||
}
|
||||
|
||||
XCTAssertEqual(decoded.version, 1)
|
||||
}
|
||||
|
||||
func testUnsupportedProtocolVersion() throws {
|
||||
// Create packet data with unsupported version
|
||||
@Test("Create packet data with unsupported version")
|
||||
func unsupportedProtocolVersion() throws {
|
||||
let packet = TestHelpers.createTestPacket()
|
||||
|
||||
guard var encoded = BinaryProtocol.encode(packet) else {
|
||||
XCTFail("Failed to encode packet")
|
||||
return
|
||||
}
|
||||
var encoded = try #require(BinaryProtocol.encode(packet), "Failed to encode packet")
|
||||
|
||||
// Manually change version byte to unsupported value
|
||||
encoded[0] = 99 // Unsupported version
|
||||
|
||||
// Should fail to decode
|
||||
XCTAssertNil(BinaryProtocol.decode(encoded))
|
||||
#expect(BinaryProtocol.decode(encoded) == nil)
|
||||
}
|
||||
|
||||
// MARK: - Bounds Checking Tests (Crash Prevention)
|
||||
|
||||
func testMalformedPacketWithInvalidPayloadLength() throws {
|
||||
// Test the specific crash scenario: payloadLength = 193 (0xc1) but only 30 bytes available
|
||||
@Test("Test the specific crash scenario: payloadLength = 193 (0xc1) but only 30 bytes available")
|
||||
func malformedPacketWithInvalidPayloadLength() throws {
|
||||
var malformedData = Data()
|
||||
|
||||
// Valid header (13 bytes)
|
||||
@@ -379,20 +296,17 @@ final class BinaryProtocolTests: XCTestCase {
|
||||
}
|
||||
|
||||
// Total data is now 30 bytes, but payloadLength claims 193
|
||||
XCTAssertEqual(malformedData.count, 30)
|
||||
#expect(malformedData.count == 30)
|
||||
|
||||
// This should not crash - should return nil gracefully
|
||||
let result = BinaryProtocol.decode(malformedData)
|
||||
XCTAssertNil(result, "Malformed packet with invalid payload length should return nil, not crash")
|
||||
#expect(result == nil, "Malformed packet with invalid payload length should return nil, not crash")
|
||||
}
|
||||
|
||||
func testTruncatedPacketHandling() throws {
|
||||
// Test various truncation scenarios
|
||||
@Test("Test various truncation scenarios")
|
||||
func truncatedPacketHandling() throws {
|
||||
let packet = TestHelpers.createTestPacket()
|
||||
guard let validEncoded = BinaryProtocol.encode(packet) else {
|
||||
XCTFail("Failed to encode test packet")
|
||||
return
|
||||
}
|
||||
let validEncoded = try #require(BinaryProtocol.encode(packet), "Failed to encode test packet")
|
||||
|
||||
// Test truncation at various points
|
||||
let truncationPoints = [0, 5, 10, 15, 20, 25]
|
||||
@@ -400,12 +314,12 @@ final class BinaryProtocolTests: XCTestCase {
|
||||
for point in truncationPoints {
|
||||
let truncated = validEncoded.prefix(point)
|
||||
let result = BinaryProtocol.decode(truncated)
|
||||
XCTAssertNil(result, "Truncated packet at \(point) bytes should return nil, not crash")
|
||||
#expect(result == nil, "Truncated packet at \(point) bytes should return nil, not crash")
|
||||
}
|
||||
}
|
||||
|
||||
func testMalformedCompressedPacket() throws {
|
||||
// Test compressed packet with invalid original size
|
||||
@Test("Test compressed packet with invalid original size")
|
||||
func malformedCompressedPacket() throws {
|
||||
var malformedData = Data()
|
||||
|
||||
// Valid header
|
||||
@@ -434,11 +348,11 @@ final class BinaryProtocolTests: XCTestCase {
|
||||
|
||||
// Should handle this gracefully
|
||||
let result = BinaryProtocol.decode(malformedData)
|
||||
XCTAssertNil(result, "Malformed compressed packet should return nil, not crash")
|
||||
#expect(result == nil, "Malformed compressed packet should return nil, not crash")
|
||||
}
|
||||
|
||||
func testExcessivelyLargePayloadLength() throws {
|
||||
// Test packet claiming extremely large payload
|
||||
@Test("Test packet claiming extremely large payload")
|
||||
func excessivelyLargePayloadLength() throws {
|
||||
var malformedData = Data()
|
||||
|
||||
// Valid header
|
||||
@@ -467,11 +381,11 @@ final class BinaryProtocolTests: XCTestCase {
|
||||
|
||||
// Should handle this gracefully without trying to allocate massive amounts of memory
|
||||
let result = BinaryProtocol.decode(malformedData)
|
||||
XCTAssertNil(result, "Packet with excessive payload length should return nil, not crash")
|
||||
#expect(result == nil, "Packet with excessive payload length should return nil, not crash")
|
||||
}
|
||||
|
||||
func testCompressedPacketWithInvalidOriginalSize() throws {
|
||||
// Test compressed packet with unreasonable original size
|
||||
@Test("Test compressed packet with unreasonable original size")
|
||||
func compressedPacketWithInvalidOriginalSize() throws {
|
||||
var malformedData = Data()
|
||||
|
||||
// Valid header
|
||||
@@ -509,11 +423,11 @@ final class BinaryProtocolTests: XCTestCase {
|
||||
}
|
||||
|
||||
let result = BinaryProtocol.decode(malformedData)
|
||||
XCTAssertNil(result, "Compressed packet with invalid original size should return nil, not crash")
|
||||
#expect(result == nil, "Compressed packet with invalid original size should return nil, not crash")
|
||||
}
|
||||
|
||||
func testMaliciousPacketWithIntegerOverflow() throws {
|
||||
// Test packet designed to cause integer overflow
|
||||
@Test("Test packet designed to cause integer overflow")
|
||||
func maliciousPacketWithIntegerOverflow() throws {
|
||||
var maliciousData = Data()
|
||||
|
||||
// Valid header
|
||||
@@ -548,27 +462,24 @@ final class BinaryProtocolTests: XCTestCase {
|
||||
|
||||
// Should handle gracefully without integer overflow issues
|
||||
let result = BinaryProtocol.decode(maliciousData)
|
||||
XCTAssertNil(result, "Malicious packet designed for integer overflow should return nil, not crash")
|
||||
#expect(result == nil, "Malicious packet designed for integer overflow should return nil, not crash")
|
||||
}
|
||||
|
||||
func testPartialHeaderData() throws {
|
||||
// Test packets with incomplete headers
|
||||
@Test("Test packets with incomplete headers")
|
||||
func partialHeaderData() throws {
|
||||
let headerSizes = [0, 1, 5, 10, 12] // Various incomplete header sizes
|
||||
|
||||
for size in headerSizes {
|
||||
let partialData = Data(repeating: 0x01, count: size)
|
||||
let result = BinaryProtocol.decode(partialData)
|
||||
XCTAssertNil(result, "Partial header data (\(size) bytes) should return nil, not crash")
|
||||
#expect(result == nil, "Partial header data (\(size) bytes) should return nil, not crash")
|
||||
}
|
||||
}
|
||||
|
||||
func testBoundaryConditions() throws {
|
||||
// Test exact boundary conditions
|
||||
@Test("Test exact boundary conditions")
|
||||
func boundaryConditions() throws {
|
||||
let packet = TestHelpers.createTestPacket()
|
||||
guard let validEncoded = BinaryProtocol.encode(packet) else {
|
||||
XCTFail("Failed to encode test packet")
|
||||
return
|
||||
}
|
||||
let validEncoded = try #require(BinaryProtocol.encode(packet), "Failed to encode test packet")
|
||||
|
||||
// If truncation only removes padding, decode may still succeed. Compute unpadded size.
|
||||
let unpadded = MessagePadding.unpad(validEncoded)
|
||||
@@ -576,7 +487,7 @@ final class BinaryProtocolTests: XCTestCase {
|
||||
let cut = max(1, unpadded.count - 10)
|
||||
let truncatedCore = unpadded.prefix(cut)
|
||||
let result = BinaryProtocol.decode(truncatedCore)
|
||||
XCTAssertNil(result, "Truncated core frame should return nil, not crash")
|
||||
#expect(result == nil, "Truncated core frame should return nil, not crash")
|
||||
|
||||
// Test minimum valid size - create a valid minimal packet
|
||||
var minData = Data()
|
||||
|
||||
@@ -14,11 +14,6 @@ struct TestConstants {
|
||||
static let shortTimeout: TimeInterval = 1.0
|
||||
static let longTimeout: TimeInterval = 10.0
|
||||
|
||||
static let testPeerID1: PeerID = "PEER1234"
|
||||
static let testPeerID2: PeerID = "PEER5678"
|
||||
static let testPeerID3: PeerID = "PEER9012"
|
||||
static let testPeerID4: PeerID = "PEER3456"
|
||||
|
||||
static let testNickname1 = "Alice"
|
||||
static let testNickname2 = "Bob"
|
||||
static let testNickname3 = "Charlie"
|
||||
|
||||
@@ -30,7 +30,7 @@ final class TestHelpers {
|
||||
static func createTestMessage(
|
||||
content: String = TestConstants.testMessage1,
|
||||
sender: String = TestConstants.testNickname1,
|
||||
senderPeerID: PeerID = TestConstants.testPeerID1,
|
||||
senderPeerID: PeerID = PeerID(str: UUID().uuidString),
|
||||
isPrivate: Bool = false,
|
||||
recipientNickname: String? = nil,
|
||||
mentions: [String]? = nil
|
||||
@@ -51,7 +51,7 @@ final class TestHelpers {
|
||||
|
||||
static func createTestPacket(
|
||||
type: UInt8 = 0x01,
|
||||
senderID: PeerID = TestConstants.testPeerID1,
|
||||
senderID: PeerID = PeerID(str: UUID().uuidString),
|
||||
recipientID: PeerID? = nil,
|
||||
payload: Data = "test payload".data(using: .utf8)!,
|
||||
signature: Data? = nil,
|
||||
@@ -90,7 +90,7 @@ final class TestHelpers {
|
||||
if Date().timeIntervalSince(start) > timeout {
|
||||
throw TestError.timeout
|
||||
}
|
||||
try await Task.sleep(nanoseconds: 10_000_000) // 10ms
|
||||
try await sleep(0.01)
|
||||
}
|
||||
}
|
||||
|
||||
@@ -104,7 +104,7 @@ final class TestHelpers {
|
||||
}
|
||||
|
||||
group.addTask {
|
||||
try await Task.sleep(nanoseconds: UInt64(timeout * 1_000_000_000))
|
||||
try await sleep(1)
|
||||
throw TestError.timeout
|
||||
}
|
||||
|
||||
@@ -121,14 +121,6 @@ enum TestError: Error {
|
||||
case testFailure(String)
|
||||
}
|
||||
|
||||
// MARK: - PeerID String Helpers
|
||||
|
||||
/// Raw String can be passed as PeerID
|
||||
extension PeerID: @retroactive ExpressibleByStringLiteral {
|
||||
public init(stringLiteral value: String) {
|
||||
self.init(str: value)
|
||||
func sleep(_ seconds: TimeInterval) async throws {
|
||||
try await Task.sleep(nanoseconds: UInt64(seconds * 1_000_000_000))
|
||||
}
|
||||
}
|
||||
|
||||
/// Interpolated String can be passed as PeerID
|
||||
extension PeerID: @retroactive ExpressibleByStringInterpolation {}
|
||||
|
||||
@@ -6,11 +6,11 @@
|
||||
// For more information, see <https://unlicense.org>
|
||||
//
|
||||
|
||||
import XCTest
|
||||
import Testing
|
||||
import Foundation
|
||||
@testable import bitchat
|
||||
|
||||
final class PeerIDTests: XCTestCase {
|
||||
|
||||
struct PeerIDTests {
|
||||
private let hex16 = "0011223344556677"
|
||||
private let hex64 = "00112233445566778899aabbccddeeff00112233445566778899aabbccddeeff"
|
||||
|
||||
@@ -22,212 +22,205 @@ final class PeerIDTests: XCTestCase {
|
||||
|
||||
// MARK: - Empty prefix
|
||||
|
||||
func test_init_empty_prefix_with16() {
|
||||
@Test func empty_prefix_with16() {
|
||||
let peerID = PeerID(str: hex16)
|
||||
XCTAssertEqual(peerID.id, hex16)
|
||||
XCTAssertEqual(peerID.bare, hex16)
|
||||
XCTAssertEqual(peerID.prefix, .empty)
|
||||
#expect(peerID.id == hex16)
|
||||
#expect(peerID.bare == hex16)
|
||||
#expect(peerID.prefix == .empty)
|
||||
}
|
||||
|
||||
func test_init_empty_prefix_with64() {
|
||||
@Test func empty_prefix_with64() {
|
||||
let peerID = PeerID(str: hex64)
|
||||
XCTAssertEqual(peerID.id, hex64)
|
||||
XCTAssertEqual(peerID.bare, hex64)
|
||||
XCTAssertEqual(peerID.prefix, .empty)
|
||||
#expect(peerID.id == hex64)
|
||||
#expect(peerID.bare == hex64)
|
||||
#expect(peerID.prefix == .empty)
|
||||
}
|
||||
|
||||
// MARK: - Mesh prefix
|
||||
|
||||
func test_init_mesh_prefix_with16() {
|
||||
@Test func mesh_prefix_with16() {
|
||||
let str = "mesh:" + hex16
|
||||
let peerID = PeerID(str: str)
|
||||
XCTAssertEqual(peerID.id, str)
|
||||
XCTAssertEqual(peerID.bare, hex16)
|
||||
XCTAssertEqual(peerID.prefix, .mesh)
|
||||
#expect(peerID.id == str)
|
||||
#expect(peerID.bare == hex16)
|
||||
#expect(peerID.prefix == .mesh)
|
||||
}
|
||||
|
||||
func test_init_mesh_prefix_with64() {
|
||||
@Test func mesh_prefix_with64() {
|
||||
let str = "mesh:" + hex64
|
||||
let peerID = PeerID(str: str)
|
||||
XCTAssertEqual(peerID.id, str)
|
||||
XCTAssertEqual(peerID.bare, hex64)
|
||||
XCTAssertEqual(peerID.prefix, .mesh)
|
||||
#expect(peerID.id == str)
|
||||
#expect(peerID.bare == hex64)
|
||||
#expect(peerID.prefix == .mesh)
|
||||
}
|
||||
|
||||
// MARK: - Name prefix
|
||||
|
||||
func test_init_name_prefix() {
|
||||
@Test func name_prefix() {
|
||||
let str = "name:some_name"
|
||||
let peerID = PeerID(str: str)
|
||||
XCTAssertEqual(peerID.id, str)
|
||||
XCTAssertEqual(peerID.bare, "some_name")
|
||||
XCTAssertEqual(peerID.prefix, .name)
|
||||
#expect(peerID.id == str)
|
||||
#expect(peerID.bare == "some_name")
|
||||
#expect(peerID.prefix == .name)
|
||||
}
|
||||
|
||||
// MARK: - Noise prefix
|
||||
|
||||
func test_init_noise_prefix_with16() {
|
||||
@Test func noise_prefix_with16() {
|
||||
let str = "noise:" + hex16
|
||||
let peerID = PeerID(str: str)
|
||||
XCTAssertEqual(peerID.id, str)
|
||||
XCTAssertEqual(peerID.bare, hex16)
|
||||
XCTAssertEqual(peerID.prefix, .noise)
|
||||
#expect(peerID.id == str)
|
||||
#expect(peerID.bare == hex16)
|
||||
#expect(peerID.prefix == .noise)
|
||||
}
|
||||
|
||||
func test_init_noise_prefix_with64() {
|
||||
@Test func noise_prefix_with64() {
|
||||
let str = "noise:" + hex64
|
||||
let peerID = PeerID(str: str)
|
||||
XCTAssertEqual(peerID.id, str)
|
||||
XCTAssertEqual(peerID.bare, hex64)
|
||||
XCTAssertEqual(peerID.prefix, .noise)
|
||||
#expect(peerID.id == str)
|
||||
#expect(peerID.bare == hex64)
|
||||
#expect(peerID.prefix == .noise)
|
||||
}
|
||||
|
||||
// MARK: - GeoDM prefix
|
||||
|
||||
func test_init_geoDM_prefix_with16() {
|
||||
@Test func geoDM_prefix_with16() {
|
||||
let str = "nostr_" + hex16
|
||||
let peerID = PeerID(str: str)
|
||||
XCTAssertEqual(peerID.id, str)
|
||||
XCTAssertEqual(peerID.bare, hex16)
|
||||
XCTAssertEqual(peerID.prefix, .geoDM)
|
||||
#expect(peerID.id == str)
|
||||
#expect(peerID.bare == hex16)
|
||||
#expect(peerID.prefix == .geoDM)
|
||||
}
|
||||
|
||||
func test_init_geoDM_prefix_with64() {
|
||||
@Test func geoDM_prefix_with64() {
|
||||
let str = "nostr_" + hex64
|
||||
let peerID = PeerID(str: str)
|
||||
XCTAssertEqual(peerID.id, str)
|
||||
XCTAssertEqual(peerID.bare, hex64)
|
||||
XCTAssertEqual(peerID.prefix, .geoDM)
|
||||
#expect(peerID.id == str)
|
||||
#expect(peerID.bare == hex64)
|
||||
#expect(peerID.prefix == .geoDM)
|
||||
}
|
||||
|
||||
// MARK: - GeoChat prefix
|
||||
|
||||
func test_init_geoChat_prefix_with16() {
|
||||
@Test func geoChat_prefix_with16() {
|
||||
let str = "nostr:" + hex16
|
||||
let peerID = PeerID(str: str)
|
||||
XCTAssertEqual(peerID.id, str)
|
||||
XCTAssertEqual(peerID.bare, hex16)
|
||||
XCTAssertEqual(peerID.prefix, .geoChat)
|
||||
#expect(peerID.id == str)
|
||||
#expect(peerID.bare == hex16)
|
||||
#expect(peerID.prefix == .geoChat)
|
||||
}
|
||||
|
||||
func test_init_geoChat_prefix_with64() {
|
||||
@Test func geoChat_prefix_with64() {
|
||||
let str = "nostr:" + hex64
|
||||
let peerID = PeerID(str: str)
|
||||
XCTAssertEqual(peerID.id, str)
|
||||
XCTAssertEqual(peerID.bare, hex64)
|
||||
XCTAssertEqual(peerID.prefix, .geoChat)
|
||||
#expect(peerID.id == str)
|
||||
#expect(peerID.bare == hex64)
|
||||
#expect(peerID.prefix == .geoChat)
|
||||
}
|
||||
|
||||
// MARK: - Edge cases
|
||||
|
||||
func test_init_with_unknown_prefix() {
|
||||
@Test func with_unknown_prefix() {
|
||||
let str = "unknown:" + hex16
|
||||
let peerID = PeerID(str: str)
|
||||
// Falls back to .empty
|
||||
XCTAssertEqual(peerID.id, str)
|
||||
XCTAssertEqual(peerID.bare, str)
|
||||
XCTAssertEqual(peerID.prefix, .empty)
|
||||
#expect(peerID.id == str)
|
||||
#expect(peerID.bare == str)
|
||||
#expect(peerID.prefix == .empty)
|
||||
}
|
||||
|
||||
func test_init_with_only_prefix_no_bare() {
|
||||
@Test func with_only_prefix_no_bare() {
|
||||
let str = "mesh:"
|
||||
let peerID = PeerID(str: str)
|
||||
XCTAssertEqual(peerID.id, str)
|
||||
XCTAssertEqual(peerID.bare, "")
|
||||
XCTAssertEqual(peerID.prefix, .mesh)
|
||||
#expect(peerID.id == str)
|
||||
#expect(peerID.bare == "")
|
||||
#expect(peerID.prefix == .mesh)
|
||||
}
|
||||
|
||||
// MARK: - init?(data:)
|
||||
|
||||
func test_init_data_valid_utf8() {
|
||||
@Test func data_valid_utf8() {
|
||||
let peerID = PeerID(data: Data(hex16.utf8))
|
||||
XCTAssertNotNil(peerID)
|
||||
XCTAssertEqual(peerID?.bare, hex16)
|
||||
XCTAssertEqual(peerID?.prefix, .empty)
|
||||
#expect(peerID != nil)
|
||||
#expect(peerID?.bare == hex16)
|
||||
#expect(peerID?.prefix == .empty)
|
||||
}
|
||||
|
||||
func test_init_data_invalid_utf8() {
|
||||
@Test func data_invalid_utf8() {
|
||||
// Random invalid UTF8
|
||||
let bytes: [UInt8] = [0xFF, 0xFE, 0xFA]
|
||||
let peerID = PeerID(data: Data(bytes))
|
||||
XCTAssertNil(peerID)
|
||||
#expect(peerID == nil)
|
||||
}
|
||||
|
||||
// MARK: - init(str: Substring)
|
||||
|
||||
func test_init_substring() {
|
||||
@Test func substring() {
|
||||
let substring = hex64.prefix(16)
|
||||
let peerID = PeerID(str: substring)
|
||||
XCTAssertEqual(peerID.id, String(substring))
|
||||
XCTAssertEqual(peerID.bare, String(substring))
|
||||
XCTAssertEqual(peerID.prefix, .empty)
|
||||
#expect(peerID.id == String(substring))
|
||||
#expect(peerID.bare == String(substring))
|
||||
#expect(peerID.prefix == .empty)
|
||||
}
|
||||
|
||||
// MARK: - init(nostr_ pubKey:)
|
||||
|
||||
func test_init_nostrUnderscore_pubKey() {
|
||||
@Test func nostrUnderscore_pubKey() {
|
||||
let pubKey = hex64
|
||||
let peerID = PeerID(nostr_: pubKey)
|
||||
XCTAssertEqual(peerID.id, "nostr_\(pubKey.prefix(TransportConfig.nostrConvKeyPrefixLength))")
|
||||
XCTAssertEqual(peerID.bare, String(pubKey.prefix(TransportConfig.nostrConvKeyPrefixLength)))
|
||||
XCTAssertEqual(peerID.prefix, .geoDM)
|
||||
#expect(peerID.id == "nostr_\(pubKey.prefix(TransportConfig.nostrConvKeyPrefixLength))")
|
||||
#expect(peerID.bare == String(pubKey.prefix(TransportConfig.nostrConvKeyPrefixLength)))
|
||||
#expect(peerID.prefix == .geoDM)
|
||||
}
|
||||
|
||||
// MARK: - init(nostr pubKey:)
|
||||
|
||||
func test_init_nostr_pubKey() {
|
||||
@Test func nostr_pubKey() {
|
||||
let pubKey = hex64
|
||||
let peerID = PeerID(nostr: pubKey)
|
||||
XCTAssertEqual(peerID.id, "nostr:\(pubKey.prefix(TransportConfig.nostrShortKeyDisplayLength))")
|
||||
XCTAssertEqual(peerID.bare, String(pubKey.prefix(TransportConfig.nostrShortKeyDisplayLength)))
|
||||
XCTAssertEqual(peerID.prefix, .geoChat)
|
||||
#expect(peerID.id == "nostr:\(pubKey.prefix(TransportConfig.nostrShortKeyDisplayLength))")
|
||||
#expect(peerID.bare == String(pubKey.prefix(TransportConfig.nostrShortKeyDisplayLength)))
|
||||
#expect(peerID.prefix == .geoChat)
|
||||
}
|
||||
|
||||
// MARK: - init(publicKey:)
|
||||
|
||||
func test_init_publicKey_derivesFingerprint() {
|
||||
@Test func publicKey_derivesFingerprint() {
|
||||
let publicKey = Data(hex64.utf8)
|
||||
let expected = publicKey.sha256Fingerprint().prefix(16)
|
||||
let peerID = PeerID(publicKey: publicKey)
|
||||
XCTAssertEqual(peerID.bare, String(expected))
|
||||
XCTAssertEqual(peerID.prefix, .empty)
|
||||
#expect(peerID.bare == String(expected))
|
||||
#expect(peerID.prefix == .empty)
|
||||
}
|
||||
|
||||
// MARK: - toShort()
|
||||
|
||||
func test_toShort_whenNoiseKeyExists() {
|
||||
@Test func toShort_whenNoiseKeyExists() {
|
||||
let peerID = PeerID(str: hex64)
|
||||
let short = peerID.toShort()
|
||||
|
||||
// `toShort()` should derive 16-hex peerID
|
||||
let expected = Data(hexString: hex64)!.sha256Fingerprint().prefix(16)
|
||||
|
||||
XCTAssertEqual(short.bare, String(expected))
|
||||
XCTAssertEqual(short.prefix, .empty)
|
||||
#expect(short.bare == String(expected))
|
||||
#expect(short.prefix == .empty)
|
||||
}
|
||||
|
||||
func test_toShort_whenNoiseKeyExists_withNoisePrefix() {
|
||||
@Test func toShort_whenNoiseKeyExists_withNoisePrefix() {
|
||||
let peerID = PeerID(str: "noise:" + hex64)
|
||||
let short = peerID.toShort()
|
||||
|
||||
// `toShort()` should derive 16-hex peerID
|
||||
let expected = Data(hexString: hex64)!.sha256Fingerprint().prefix(16)
|
||||
|
||||
XCTAssertEqual(short.bare, String(expected))
|
||||
XCTAssertEqual(short.prefix, .empty)
|
||||
XCTAssertEqual(peerID.prefix, .noise)
|
||||
#expect(short.bare == String(expected))
|
||||
#expect(short.prefix == .empty)
|
||||
#expect(peerID.prefix == .noise)
|
||||
}
|
||||
|
||||
func test_toShort_whenNoNoiseKey() {
|
||||
@Test func toShort_whenNoNoiseKey() {
|
||||
let peerID = PeerID(str: "some_random_key")
|
||||
let short = peerID.toShort()
|
||||
XCTAssertEqual(short, peerID) // unchanged
|
||||
#expect(short == peerID)
|
||||
}
|
||||
|
||||
|
||||
// MARK: - Codable
|
||||
|
||||
func test_codable_emptyPrefix() throws {
|
||||
@Test func codable_emptyPrefix() throws {
|
||||
struct Dummy: Codable, Equatable {
|
||||
let name: String
|
||||
let peerID: PeerID
|
||||
@@ -237,13 +230,13 @@ final class PeerIDTests: XCTestCase {
|
||||
let jsonString = "{\"name\":\"some name\",\"peerID\":\"\(str)\"}"
|
||||
|
||||
let decoded = try JSONDecoder().decode(Dummy.self, from: Data(jsonString.utf8))
|
||||
XCTAssertEqual(decoded.peerID, PeerID(str: str))
|
||||
#expect(decoded.peerID == PeerID(str: str))
|
||||
|
||||
let encoded = try encoder.encode(decoded)
|
||||
XCTAssertEqual(String(data: encoded, encoding: .utf8), jsonString)
|
||||
#expect(String(data: encoded, encoding: .utf8) == jsonString)
|
||||
}
|
||||
|
||||
func test_codable_withPrefix() throws {
|
||||
@Test func codable_withPrefix() throws {
|
||||
struct Dummy: Codable, Equatable {
|
||||
let peerID: PeerID
|
||||
}
|
||||
@@ -252,193 +245,191 @@ final class PeerIDTests: XCTestCase {
|
||||
let jsonString = "{\"peerID\":\"\(str)\"}"
|
||||
|
||||
let decoded = try JSONDecoder().decode(Dummy.self, from: Data(jsonString.utf8))
|
||||
XCTAssertEqual(decoded.peerID, PeerID(str: str))
|
||||
XCTAssertEqual(decoded.peerID.bare, hex16)
|
||||
XCTAssertEqual(decoded.peerID.prefix, .geoDM)
|
||||
#expect(decoded.peerID == PeerID(str: str))
|
||||
#expect(decoded.peerID.bare == hex16)
|
||||
#expect(decoded.peerID.prefix == .geoDM)
|
||||
|
||||
let encoded = try encoder.encode(decoded)
|
||||
XCTAssertEqual(String(data: encoded, encoding: .utf8), jsonString)
|
||||
#expect(String(data: encoded, encoding: .utf8) == jsonString)
|
||||
}
|
||||
|
||||
func test_codable_multiplePrefixes() throws {
|
||||
@Test func codable_multiplePrefixes() throws {
|
||||
// Loop across all Prefix cases (except .empty since already tested)
|
||||
for prefix in PeerID.Prefix.allCases where prefix != .empty {
|
||||
let bare = hex16
|
||||
let str = prefix.rawValue + bare
|
||||
|
||||
let decoded = try JSONDecoder().decode(PeerID.self, from: Data("\"\(str)\"".utf8))
|
||||
XCTAssertEqual(decoded.prefix, prefix)
|
||||
XCTAssertEqual(decoded.bare, bare)
|
||||
#expect(decoded.prefix == prefix)
|
||||
#expect(decoded.bare == bare)
|
||||
|
||||
let encoded = try encoder.encode(decoded)
|
||||
XCTAssertEqual(String(data: encoded, encoding: .utf8), "\"\(str)\"")
|
||||
#expect(String(data: encoded, encoding: .utf8) == "\"\(str)\"")
|
||||
}
|
||||
}
|
||||
|
||||
// MARK: - Comparable
|
||||
|
||||
func test_comparable_sorting_and_equality() {
|
||||
@Test func comparable_sorting_and_equality() {
|
||||
let p1 = PeerID(str: "aaa")
|
||||
let p2 = PeerID(str: "bbb")
|
||||
let p3 = PeerID(str: "bbb")
|
||||
|
||||
XCTAssertTrue(p1 < p2)
|
||||
XCTAssertFalse(p2 < p1)
|
||||
XCTAssertEqual(p2, p3)
|
||||
#expect(p1 < p2)
|
||||
#expect(p2 >= p1)
|
||||
#expect(p2 == p3)
|
||||
|
||||
let sorted = [p2, p1].sorted()
|
||||
XCTAssertEqual(sorted, [p1, p2])
|
||||
#expect(sorted == [p1, p2])
|
||||
}
|
||||
|
||||
func test_equality() {
|
||||
@Test func equality() {
|
||||
let string = "aaa"
|
||||
let peerID = PeerID(str: string)
|
||||
let badString = "bbb"
|
||||
|
||||
// PeerID == String
|
||||
XCTAssertTrue(peerID == string)
|
||||
XCTAssertTrue(peerID == Optional(string))
|
||||
XCTAssertTrue(Optional(peerID) == string)
|
||||
XCTAssertTrue(Optional(peerID) == Optional(string))
|
||||
#expect(peerID == string)
|
||||
#expect(peerID == Optional(string))
|
||||
#expect(Optional(peerID) == string)
|
||||
#expect(Optional(peerID) == Optional(string))
|
||||
|
||||
// PeerID != String
|
||||
XCTAssertTrue(peerID != badString)
|
||||
XCTAssertTrue(peerID != Optional(badString))
|
||||
XCTAssertTrue(Optional(peerID) != badString)
|
||||
XCTAssertTrue(Optional(peerID) != Optional(badString))
|
||||
#expect(peerID != badString)
|
||||
#expect(peerID != Optional(badString))
|
||||
#expect(Optional(peerID) != badString)
|
||||
#expect(Optional(peerID) != Optional(badString))
|
||||
|
||||
// String == PeerID
|
||||
XCTAssertTrue(string == peerID)
|
||||
XCTAssertTrue(Optional(string) == peerID)
|
||||
XCTAssertTrue(string == Optional(peerID))
|
||||
XCTAssertTrue(Optional(string) == Optional(peerID))
|
||||
#expect(string == peerID)
|
||||
#expect(Optional(string) == peerID)
|
||||
#expect(string == Optional(peerID))
|
||||
#expect(Optional(string) == Optional(peerID))
|
||||
|
||||
// String != PeerID
|
||||
XCTAssertTrue(badString != peerID)
|
||||
XCTAssertTrue(Optional(badString) != peerID)
|
||||
XCTAssertTrue(badString != Optional(peerID))
|
||||
XCTAssertTrue(Optional(badString) != Optional(peerID))
|
||||
#expect(badString != peerID)
|
||||
#expect(Optional(badString) != peerID)
|
||||
#expect(badString != Optional(peerID))
|
||||
#expect(Optional(badString) != Optional(peerID))
|
||||
|
||||
// Regular PeerID <> PeerID
|
||||
#expect(peerID == PeerID(str: "aaa"))
|
||||
#expect(peerID == Optional(PeerID(str: "aaa")))
|
||||
#expect(PeerID(str: "aaa") == peerID)
|
||||
#expect(Optional(PeerID(str: "aaa")) == Optional(peerID))
|
||||
|
||||
// Make sure the regular PeerID <> PeerID is not broken
|
||||
XCTAssertTrue(peerID == PeerID(str: "aaa"))
|
||||
XCTAssertTrue(peerID == Optional(PeerID(str: "aaa")))
|
||||
XCTAssertTrue(PeerID(str: "aaa") == peerID)
|
||||
XCTAssertTrue(Optional(PeerID(str: "aaa")) == Optional(peerID))
|
||||
|
||||
XCTAssertTrue(peerID != PeerID(str: "bbb"))
|
||||
XCTAssertTrue(peerID != Optional(PeerID(str: "bbb")))
|
||||
XCTAssertTrue(PeerID(str: "bbb") != peerID)
|
||||
XCTAssertTrue(Optional(PeerID(str: "bbb")) != Optional(peerID))
|
||||
#expect(peerID != PeerID(str: "bbb"))
|
||||
#expect(peerID != Optional(PeerID(str: "bbb")))
|
||||
#expect(PeerID(str: "bbb") != peerID)
|
||||
#expect(Optional(PeerID(str: "bbb")) != Optional(peerID))
|
||||
}
|
||||
|
||||
// MARK: - Computed properties
|
||||
|
||||
func test_isEmpty_true_and_false() {
|
||||
XCTAssertTrue(PeerID(str: "").isEmpty)
|
||||
XCTAssertFalse(PeerID(str: "abc").isEmpty)
|
||||
@Test func isEmpty_true_and_false() {
|
||||
#expect(PeerID(str: "").isEmpty)
|
||||
#expect(!PeerID(str: "abc").isEmpty)
|
||||
}
|
||||
|
||||
func test_isGeoChat() {
|
||||
XCTAssertTrue(PeerID(str: "nostr:abcdef").isGeoChat)
|
||||
XCTAssertFalse(PeerID(str: "nostr_abcdef").isGeoChat) // different prefix
|
||||
@Test func isGeoChat() {
|
||||
#expect(PeerID(str: "nostr:abcdef").isGeoChat)
|
||||
#expect(!PeerID(str: "nostr_abcdef").isGeoChat)
|
||||
}
|
||||
|
||||
func test_isGeoDM() {
|
||||
XCTAssertTrue(PeerID(str: "nostr_abcdef").isGeoDM)
|
||||
XCTAssertFalse(PeerID(str: "nostr:abcdef").isGeoDM)
|
||||
@Test func isGeoDM() {
|
||||
#expect(PeerID(str: "nostr_abcdef").isGeoDM)
|
||||
#expect(!PeerID(str: "nostr:abcdef").isGeoDM)
|
||||
}
|
||||
|
||||
func test_toPercentEncoded() {
|
||||
@Test func toPercentEncoded() {
|
||||
let peerID = PeerID(str: "name:some value/with spaces?")
|
||||
let encoded = peerID.toPercentEncoded()
|
||||
// spaces and ? should be percent-encoded in urlPathAllowed
|
||||
XCTAssertEqual(encoded, "name%3Asome%20value/with%20spaces%3F")
|
||||
#expect(encoded == "name%3Asome%20value/with%20spaces%3F")
|
||||
}
|
||||
|
||||
// MARK: - Validation
|
||||
|
||||
func test_accepts_short_hex_peer_id() {
|
||||
XCTAssertTrue(PeerID(str: "0011223344556677").isValid)
|
||||
XCTAssertTrue(PeerID(str: "aabbccddeeff0011").isValid)
|
||||
@Test func accepts_short_hex_peer_id() {
|
||||
#expect(PeerID(str: "0011223344556677").isValid)
|
||||
#expect(PeerID(str: "aabbccddeeff0011").isValid)
|
||||
}
|
||||
|
||||
func test_accepts_full_noise_key_hex() {
|
||||
@Test func accepts_full_noise_key_hex() {
|
||||
let hex64 = String(repeating: "ab", count: 32) // 64 hex chars
|
||||
XCTAssertTrue(PeerID(str: hex64).isValid)
|
||||
#expect(PeerID(str: hex64).isValid)
|
||||
}
|
||||
|
||||
func test_accepts_internal_alnum_dash_underscore() {
|
||||
XCTAssertTrue(PeerID(str: "peer_123-ABC").isValid)
|
||||
XCTAssertTrue(PeerID(str: "nostr_user_01").isValid)
|
||||
@Test func accepts_internal_alnum_dash_underscore() {
|
||||
#expect(PeerID(str: "peer_123-ABC").isValid)
|
||||
#expect(PeerID(str: "nostr_user_01").isValid)
|
||||
}
|
||||
|
||||
func test_rejects_invalid_characters() {
|
||||
XCTAssertFalse(PeerID(str: "peer!@#").isValid)
|
||||
XCTAssertFalse(PeerID(str: "gggggggggggggggg").isValid) // not hex for short form
|
||||
@Test func rejects_invalid_characters() {
|
||||
#expect(!PeerID(str: "peer!@#").isValid)
|
||||
#expect(!PeerID(str: "gggggggggggggggg").isValid) // not hex for short form
|
||||
}
|
||||
|
||||
func test_rejects_too_long() {
|
||||
@Test func rejects_too_long() {
|
||||
let tooLong = String(repeating: "a", count: 65)
|
||||
XCTAssertFalse(PeerID(str: tooLong).isValid)
|
||||
#expect(!PeerID(str: tooLong).isValid)
|
||||
}
|
||||
|
||||
func test_isShort() {
|
||||
XCTAssertTrue(PeerID(str: hex16).isShort)
|
||||
XCTAssertFalse(PeerID(str: "abcd").isShort) // wrong length
|
||||
@Test func isShort() {
|
||||
#expect(PeerID(str: hex16).isShort)
|
||||
#expect(!PeerID(str: "abcd").isShort) // wrong length
|
||||
}
|
||||
|
||||
func test_isNoiseKeyHex_and_noiseKey() {
|
||||
@Test func isNoiseKeyHex_and_noiseKey() {
|
||||
let hex64 = String(repeating: "ab", count: 32) // 64 chars valid hex
|
||||
let peerID = PeerID(str: hex64)
|
||||
XCTAssertTrue(peerID.isNoiseKeyHex)
|
||||
XCTAssertNotNil(peerID.noiseKey)
|
||||
#expect(peerID.isNoiseKeyHex)
|
||||
#expect(peerID.noiseKey != nil)
|
||||
|
||||
let prefixedPeerID = PeerID(str: "noise:" + hex64)
|
||||
XCTAssertTrue(prefixedPeerID.isNoiseKeyHex)
|
||||
XCTAssertNotNil(prefixedPeerID.noiseKey)
|
||||
#expect(prefixedPeerID.isNoiseKeyHex)
|
||||
#expect(prefixedPeerID.noiseKey != nil)
|
||||
|
||||
let bad = String(repeating: "z", count: 64) // invalid hex
|
||||
let badPeerID = PeerID(str: bad)
|
||||
XCTAssertFalse(badPeerID.isNoiseKeyHex)
|
||||
XCTAssertNil(badPeerID.noiseKey)
|
||||
#expect(!badPeerID.isNoiseKeyHex)
|
||||
#expect(badPeerID.noiseKey == nil)
|
||||
}
|
||||
|
||||
func test_prefixes() {
|
||||
@Test func prefixes() {
|
||||
let hex64 = String(repeating: "a", count: 64)
|
||||
XCTAssertTrue(PeerID(str: "noise:\(hex64)").isValid)
|
||||
XCTAssertTrue(PeerID(str: "nostr:\(hex64)").isValid)
|
||||
XCTAssertTrue(PeerID(str: "nostr_\(hex64)").isValid)
|
||||
#expect(PeerID(str: "noise:\(hex64)").isValid)
|
||||
#expect(PeerID(str: "nostr:\(hex64)").isValid)
|
||||
#expect(PeerID(str: "nostr_\(hex64)").isValid)
|
||||
|
||||
let hex63 = String(repeating: "a", count: 63)
|
||||
XCTAssertTrue(PeerID(str: "noise:\(hex63)").isValid)
|
||||
XCTAssertTrue(PeerID(str: "nostr:\(hex63)").isValid)
|
||||
XCTAssertTrue(PeerID(str: "nostr_\(hex63)").isValid)
|
||||
#expect(PeerID(str: "noise:\(hex63)").isValid)
|
||||
#expect(PeerID(str: "nostr:\(hex63)").isValid)
|
||||
#expect(PeerID(str: "nostr_\(hex63)").isValid)
|
||||
|
||||
let hex16 = String(repeating: "a", count: 16)
|
||||
XCTAssertTrue(PeerID(str: "noise:\(hex16)").isValid)
|
||||
XCTAssertTrue(PeerID(str: "nostr:\(hex16)").isValid)
|
||||
XCTAssertTrue(PeerID(str: "nostr_\(hex16)").isValid)
|
||||
#expect(PeerID(str: "noise:\(hex16)").isValid)
|
||||
#expect(PeerID(str: "nostr:\(hex16)").isValid)
|
||||
#expect(PeerID(str: "nostr_\(hex16)").isValid)
|
||||
|
||||
let hex8 = String(repeating: "a", count: 8)
|
||||
XCTAssertTrue(PeerID(str: "noise:\(hex8)").isValid)
|
||||
XCTAssertTrue(PeerID(str: "nostr:\(hex8)").isValid)
|
||||
XCTAssertTrue(PeerID(str: "nostr_\(hex8)").isValid)
|
||||
#expect(PeerID(str: "noise:\(hex8)").isValid)
|
||||
#expect(PeerID(str: "nostr:\(hex8)").isValid)
|
||||
#expect(PeerID(str: "nostr_\(hex8)").isValid)
|
||||
|
||||
let mesh = "mesh:abcdefg"
|
||||
XCTAssertTrue(PeerID(str: "name:\(mesh)").isValid)
|
||||
#expect(PeerID(str: "name:\(mesh)").isValid)
|
||||
|
||||
let name = "name:some_name"
|
||||
XCTAssertTrue(PeerID(str: "name:\(name)").isValid)
|
||||
#expect(PeerID(str: "name:\(name)").isValid)
|
||||
|
||||
let badName = "name:bad:name"
|
||||
XCTAssertFalse(PeerID(str: "name:\(badName)").isValid)
|
||||
#expect(!PeerID(str: "name:\(badName)").isValid)
|
||||
|
||||
// Too long
|
||||
let hex65 = String(repeating: "a", count: 65)
|
||||
XCTAssertFalse(PeerID(str: "noise:\(hex65)").isValid)
|
||||
XCTAssertFalse(PeerID(str: "nostr:\(hex65)").isValid)
|
||||
XCTAssertFalse(PeerID(str: "nostr_\(hex65)").isValid)
|
||||
#expect(!PeerID(str: "noise:\(hex65)").isValid)
|
||||
#expect(!PeerID(str: "nostr:\(hex65)").isValid)
|
||||
#expect(!PeerID(str: "nostr_\(hex65)").isValid)
|
||||
}
|
||||
}
|
||||
|
||||
|
||||
Reference in New Issue
Block a user