Files
bitchat/bitchatTests/ConversationStoreTests.swift
T
jackandClaude Fable 5 ac3a2f2d34 Add single-writer ConversationStore core (additive)
Per-conversation ObservableObjects with O(1) dedup via an incrementally
maintained message-ID index, binary-search timestamp insertion, folded
cap policies, a no-downgrade delivery rule, and a typed change subject.
All mutation flows through store intents (conversation mutators are
fileprivate). The previous store is renamed LegacyConversationStore
pending deletion in step 5. 16 behavioral tests including per-
conversation publish isolation; store.append benchmarks at ~144k
messages/sec.

Co-Authored-By: Claude Fable 5 <noreply@anthropic.com>
2026-06-11 11:02:27 +02:00

472 lines
18 KiB
Swift

//
// ConversationStoreTests.swift
// bitchatTests
//
// Tests for the new single-source-of-truth ConversationStore
// (docs/CONVERSATION-STORE-DESIGN.md): intent API, ordered insertion,
// dedup, caps, delivery-status rules, migration, unread state, change
// emission, and per-conversation publish isolation.
//
// This is free and unencumbered software released into the public domain.
// For more information, see <https://unlicense.org>
//
import BitFoundation
import Combine
import Foundation
import Testing
@testable import bitchat
@MainActor
private func makeMessage(
id: String,
timestamp: TimeInterval,
content: String? = nil,
isPrivate: Bool = false,
deliveryStatus: DeliveryStatus? = nil
) -> BitchatMessage {
BitchatMessage(
id: id,
sender: "alice",
content: content ?? "message \(id)",
timestamp: Date(timeIntervalSince1970: timestamp),
isRelay: false,
isPrivate: isPrivate,
recipientNickname: isPrivate ? "bob" : nil,
senderPeerID: PeerID(str: "peer-a"),
deliveryStatus: deliveryStatus
)
}
private func makeDirectConversationID(_ suffix: String) -> ConversationID {
.direct(PeerHandle(
id: "noise:\(suffix)",
routingPeerID: PeerID(str: "peer-\(suffix)"),
displayName: "peer \(suffix)",
noisePublicKeyHex: suffix,
nostrPublicKey: nil
))
}
@Suite("ConversationStore")
struct ConversationStoreTests {
// MARK: - Append, dedup, ordering
@Test("append dedups by message ID and reports duplicates")
@MainActor
func appendDedupsByMessageID() {
let store = ConversationStore()
var received: [ConversationChange] = []
let cancellable = store.changes.sink { received.append($0) }
defer { cancellable.cancel() }
#expect(store.append(makeMessage(id: "m1", timestamp: 1), to: .mesh))
#expect(!store.append(makeMessage(id: "m1", timestamp: 2, content: "dup"), to: .mesh))
let conversation = store.conversation(for: .mesh)
#expect(conversation.messages.count == 1)
#expect(conversation.messages.first?.content == "message m1")
#expect(conversation.containsMessage(withID: "m1"))
#expect(received.count == 1)
guard case .appended(.mesh, let message) = received.first else {
Issue.record("expected a single .appended change, got \(received)")
return
}
#expect(message.id == "m1")
}
@Test("out-of-order appends are inserted in timestamp order")
@MainActor
func outOfOrderInsertKeepsTimestampOrder() {
let store = ConversationStore()
store.append(makeMessage(id: "m1", timestamp: 10), to: .mesh)
store.append(makeMessage(id: "m3", timestamp: 30), to: .mesh)
store.append(makeMessage(id: "m2", timestamp: 20), to: .mesh)
store.append(makeMessage(id: "m0", timestamp: 5), to: .mesh)
let conversation = store.conversation(for: .mesh)
#expect(conversation.messages.map(\.id) == ["m0", "m1", "m2", "m3"])
// The ID index must survive middle inserts: lookups by ID still
// resolve to the right message.
#expect(conversation.message(withID: "m2")?.timestamp == Date(timeIntervalSince1970: 20))
#expect(conversation.message(withID: "m0")?.timestamp == Date(timeIntervalSince1970: 5))
}
@Test("equal timestamps preserve arrival order")
@MainActor
func equalTimestampsPreserveArrivalOrder() {
let store = ConversationStore()
store.append(makeMessage(id: "first", timestamp: 10), to: .mesh)
store.append(makeMessage(id: "second", timestamp: 10), to: .mesh)
// A late message with an equal timestamp lands after existing peers.
store.append(makeMessage(id: "late-tail", timestamp: 20), to: .mesh)
store.append(makeMessage(id: "third", timestamp: 10), to: .mesh)
let conversation = store.conversation(for: .mesh)
#expect(conversation.messages.map(\.id) == ["first", "second", "third", "late-tail"])
}
// MARK: - Caps
@Test("cap trims oldest messages and keeps the ID index valid")
@MainActor
func capTrimsOldestAndKeepsIndexValid() {
let store = ConversationStore()
let conversation = store.conversation(for: .mesh)
let cap = conversation.cap
#expect(cap == TransportConfig.meshTimelineCap)
let overflow = 3
for i in 0..<(cap + overflow) {
store.append(makeMessage(id: "m\(i)", timestamp: TimeInterval(i)), to: .mesh)
}
#expect(conversation.messages.count == cap)
#expect(conversation.messages.first?.id == "m\(overflow)")
#expect(conversation.messages.last?.id == "m\(cap + overflow - 1)")
// Trimmed messages left the index entirely…
for i in 0..<overflow {
#expect(!conversation.containsMessage(withID: "m\(i)"))
}
// …and re-appending a trimmed ID is allowed (no stale index entry).
#expect(store.append(makeMessage(id: "m0", timestamp: TimeInterval(cap + overflow)), to: .mesh))
// Surviving entries still resolve correctly after the trim reindex.
let probeID = "m\(cap / 2 + overflow)"
#expect(conversation.message(withID: probeID)?.id == probeID)
#expect(store.setDeliveryStatus(.sent, forMessageID: probeID, in: .mesh))
#expect(conversation.message(withID: probeID)?.deliveryStatus == .sent)
}
// MARK: - Upsert
@Test("upsertByID replaces in place and appends when absent")
@MainActor
func upsertReplacesOrAppends() {
let store = ConversationStore()
var received: [ConversationChange] = []
let cancellable = store.changes.sink { received.append($0) }
defer { cancellable.cancel() }
store.upsertByID(makeMessage(id: "m1", timestamp: 10), in: .mesh)
store.append(makeMessage(id: "m2", timestamp: 20), to: .mesh)
store.upsertByID(makeMessage(id: "m1", timestamp: 10, content: "edited"), in: .mesh)
let conversation = store.conversation(for: .mesh)
#expect(conversation.messages.map(\.id) == ["m1", "m2"])
#expect(conversation.message(withID: "m1")?.content == "edited")
#expect(received.count == 3)
guard case .appended(.mesh, let first) = received[0], first.id == "m1",
case .appended(.mesh, let second) = received[1], second.id == "m2",
case .updated(.mesh, let updatedID) = received[2], updatedID == "m1" else {
Issue.record("unexpected change sequence: \(received)")
return
}
}
// MARK: - Delivery status
@Test("setDeliveryStatus never downgrades read and skips equal statuses")
@MainActor
func deliveryStatusNoDowngrade() {
let store = ConversationStore()
let id = makeDirectConversationID("aa")
store.append(makeMessage(id: "m1", timestamp: 1, isPrivate: true, deliveryStatus: .sending), to: id)
var statusChanges: [DeliveryStatus] = []
let cancellable = store.changes.sink { change in
if case .statusChanged(_, _, let status) = change {
statusChanges.append(status)
}
}
defer { cancellable.cancel() }
let conversation = store.conversation(for: id)
let readStatus = DeliveryStatus.read(by: "bob", at: Date(timeIntervalSince1970: 100))
#expect(store.setDeliveryStatus(.sent, forMessageID: "m1", in: id))
// Equal status is a no-op.
#expect(!store.setDeliveryStatus(.sent, forMessageID: "m1", in: id))
#expect(store.setDeliveryStatus(readStatus, forMessageID: "m1", in: id))
// Read beats delivered and sent: both downgrades are refused.
#expect(!store.setDeliveryStatus(.delivered(to: "bob", at: Date()), forMessageID: "m1", in: id))
#expect(!store.setDeliveryStatus(.sent, forMessageID: "m1", in: id))
#expect(conversation.message(withID: "m1")?.deliveryStatus == readStatus)
// Unknown message or conversation: refused, nothing emitted.
#expect(!store.setDeliveryStatus(.sent, forMessageID: "nope", in: id))
#expect(!store.setDeliveryStatus(.sent, forMessageID: "m1", in: .mesh))
#expect(statusChanges == [.sent, readStatus])
}
// MARK: - Unread state
@Test("markUnread and markRead keep the set and conversation flag consistent")
@MainActor
func unreadStateConsistency() {
let store = ConversationStore()
let id = makeDirectConversationID("bb")
var unreadChanges: [(ConversationID, Bool)] = []
let cancellable = store.changes.sink { change in
if case .unreadChanged(let conversationID, let isUnread) = change {
unreadChanges.append((conversationID, isUnread))
}
}
defer { cancellable.cancel() }
// markRead on a never-unread conversation is a no-op.
store.markRead(id)
#expect(unreadChanges.isEmpty)
store.markUnread(id)
#expect(store.unreadConversations == [id])
#expect(store.conversation(for: id).isUnread)
// Idempotent: marking unread twice emits once.
store.markUnread(id)
store.markRead(id)
#expect(store.unreadConversations.isEmpty)
#expect(!store.conversation(for: id).isUnread)
#expect(unreadChanges.count == 2)
#expect(unreadChanges[0].0 == id && unreadChanges[0].1 == true)
#expect(unreadChanges[1].0 == id && unreadChanges[1].1 == false)
}
// MARK: - Selection
@Test("select creates the conversation and clears with nil")
@MainActor
func selectTracksConversation() {
let store = ConversationStore()
let id = makeDirectConversationID("cc")
store.select(id)
#expect(store.selectedConversationID == id)
#expect(store.conversationsByID[id] != nil)
#expect(store.conversationIDs == [id])
store.select(nil)
#expect(store.selectedConversationID == nil)
}
// MARK: - Migration
@Test("migrateConversation moves messages, dedups, and preserves order")
@MainActor
func migrationMovesAndDedups() {
let store = ConversationStore()
let ephemeral = makeDirectConversationID("old")
let stable = makeDirectConversationID("new")
store.append(makeMessage(id: "m1", timestamp: 10), to: ephemeral)
store.append(makeMessage(id: "m3", timestamp: 30), to: ephemeral)
store.append(makeMessage(id: "m2", timestamp: 20), to: stable)
store.append(makeMessage(id: "m3", timestamp: 30, content: "already there"), to: stable)
var received: [ConversationChange] = []
let cancellable = store.changes.sink { received.append($0) }
defer { cancellable.cancel() }
store.migrateConversation(from: ephemeral, to: stable)
let destination = store.conversation(for: stable)
#expect(destination.messages.map(\.id) == ["m1", "m2", "m3"])
// Existing copy wins the dedup.
#expect(destination.message(withID: "m3")?.content == "already there")
#expect(store.conversationsByID[ephemeral] == nil)
#expect(!store.conversationIDs.contains(ephemeral))
#expect(received.count == 1)
guard case .migrated(let from, let to) = received.first, from == ephemeral, to == stable else {
Issue.record("expected a single .migrated change, got \(received)")
return
}
}
@Test("migrateConversation hands off unread state and selection")
@MainActor
func migrationMovesUnreadAndSelection() {
let store = ConversationStore()
let ephemeral = makeDirectConversationID("old")
let stable = makeDirectConversationID("new")
store.append(makeMessage(id: "m1", timestamp: 10), to: ephemeral)
store.markUnread(ephemeral)
store.select(ephemeral)
store.migrateConversation(from: ephemeral, to: stable)
#expect(store.unreadConversations == [stable])
#expect(store.conversation(for: stable).isUnread)
#expect(store.selectedConversationID == stable)
// Migrating from a missing source or onto itself is a no-op.
store.migrateConversation(from: ephemeral, to: stable)
store.migrateConversation(from: stable, to: stable)
#expect(store.conversation(for: stable).messages.map(\.id) == ["m1"])
}
// MARK: - Clear / remove
@Test("clear empties the timeline but keeps the conversation")
@MainActor
func clearKeepsConversation() {
let store = ConversationStore()
let id = makeDirectConversationID("dd")
store.append(makeMessage(id: "m1", timestamp: 1), to: id)
store.markUnread(id)
var received: [ConversationChange] = []
let cancellable = store.changes.sink { received.append($0) }
defer { cancellable.cancel() }
store.clear(id)
let conversation = store.conversation(for: id)
#expect(conversation.messages.isEmpty)
#expect(!conversation.containsMessage(withID: "m1"))
#expect(store.conversationIDs.contains(id))
#expect(store.unreadConversations.contains(id))
// The ID index was cleared too: the same message can return.
#expect(store.append(makeMessage(id: "m1", timestamp: 2), to: id))
guard case .cleared(id) = received.first else {
Issue.record("expected .cleared first, got \(received)")
return
}
}
@Test("removeConversation drops messages, unread state, and selection")
@MainActor
func removeConversationDropsEverything() {
let store = ConversationStore()
let id = makeDirectConversationID("ee")
store.append(makeMessage(id: "m1", timestamp: 1), to: id)
store.markUnread(id)
store.select(id)
var received: [ConversationChange] = []
let cancellable = store.changes.sink { received.append($0) }
defer { cancellable.cancel() }
store.removeConversation(id)
#expect(store.conversationsByID[id] == nil)
#expect(store.conversationIDs.isEmpty)
#expect(store.unreadConversations.isEmpty)
#expect(store.selectedConversationID == nil)
#expect(received.count == 1)
guard case .removed(id) = received.first else {
Issue.record("expected .removed, got \(received)")
return
}
// Removing again is a no-op.
store.removeConversation(id)
#expect(received.count == 1)
}
@Test("clearAll removes every conversation and emits removals")
@MainActor
func clearAllRemovesEverything() {
let store = ConversationStore()
let direct = makeDirectConversationID("ff")
store.append(makeMessage(id: "m1", timestamp: 1), to: .mesh)
store.append(makeMessage(id: "m2", timestamp: 2), to: direct)
store.markUnread(direct)
store.select(direct)
var removed: [ConversationID] = []
let cancellable = store.changes.sink { change in
if case .removed(let id) = change { removed.append(id) }
}
defer { cancellable.cancel() }
store.clearAll()
#expect(store.conversationsByID.isEmpty)
#expect(store.conversationIDs.isEmpty)
#expect(store.unreadConversations.isEmpty)
#expect(store.selectedConversationID == nil)
#expect(removed == [.mesh, direct])
}
// MARK: - Change emission
@Test("changes are emitted after state is consistent")
@MainActor
func changesEmittedAfterStateIsConsistent() {
let store = ConversationStore()
var observedCountsAtEmission: [Int] = []
var observedUnreadAtEmission: [Bool] = []
let cancellable = store.changes.sink { change in
switch change {
case .appended(let id, let message):
// The appended message must already be visible at emission.
observedCountsAtEmission.append(store.conversation(for: id).messages.count)
#expect(store.conversation(for: id).containsMessage(withID: message.id))
case .unreadChanged(let id, let isUnread):
#expect(store.unreadConversations.contains(id) == isUnread)
observedUnreadAtEmission.append(isUnread)
default:
break
}
}
defer { cancellable.cancel() }
store.append(makeMessage(id: "m1", timestamp: 1), to: .mesh)
store.append(makeMessage(id: "m2", timestamp: 2), to: .mesh)
store.markUnread(.mesh)
store.markRead(.mesh)
#expect(observedCountsAtEmission == [1, 2])
#expect(observedUnreadAtEmission == [true, false])
}
@Test("cap policy follows the conversation kind")
@MainActor
func capPolicyByKind() {
let store = ConversationStore()
#expect(store.conversation(for: .mesh).cap == TransportConfig.meshTimelineCap)
#expect(store.conversation(for: .geohash("u4pruyd")).cap == TransportConfig.geoTimelineCap)
#expect(store.conversation(for: makeDirectConversationID("gg")).cap == TransportConfig.privateChatCap)
}
// MARK: - Publish isolation
@Test("appending to one conversation does not publish another")
@MainActor
func perConversationPublishIsolation() {
let store = ConversationStore()
let a = makeDirectConversationID("aa")
let b = makeDirectConversationID("bb")
let conversationA = store.conversation(for: a)
let conversationB = store.conversation(for: b)
var aWillChangeCount = 0
var bWillChangeCount = 0
var cancellables = Set<AnyCancellable>()
conversationA.objectWillChange
.sink { aWillChangeCount += 1 }
.store(in: &cancellables)
conversationB.objectWillChange
.sink { bWillChangeCount += 1 }
.store(in: &cancellables)
store.append(makeMessage(id: "m1", timestamp: 1), to: a)
store.append(makeMessage(id: "m2", timestamp: 2), to: a)
store.setDeliveryStatus(.sent, forMessageID: "m1", in: a)
store.markUnread(a)
#expect(aWillChangeCount >= 4)
#expect(bWillChangeCount == 0)
store.append(makeMessage(id: "m3", timestamp: 3), to: b)
#expect(bWillChangeCount > 0)
}
}