// // BLERecentPeripheralCacheTests.swift // bitchatTests // // Eviction, expiry, and reconnect-target selection for the background // wake-on-proximity peripheral cache. // import Testing import Foundation @testable import bitchat struct BLERecentPeripheralCacheTests { private let base = Date(timeIntervalSince1970: 1_700_000_000) private func makeCache(capacity: Int = 4, maxAge: TimeInterval = 900) -> BLERecentPeripheralCache { BLERecentPeripheralCache(capacity: capacity, maxAge: maxAge) } @Test func recordUpsertsByPeripheralID() { let cache = makeCache() cache.record("p1", peripheralID: "A", at: base) cache.record("p1-updated", peripheralID: "A", at: base.addingTimeInterval(10)) #expect(cache.count == 1) let targets = cache.reconnectTargets(now: base.addingTimeInterval(11), limit: 10) { _ in false } #expect(targets.map(\.peripheral) == ["p1-updated"]) } @Test func overCapacityEvictsStalestEntry() { let cache = makeCache(capacity: 2) cache.record("p1", peripheralID: "A", at: base) cache.record("p2", peripheralID: "B", at: base.addingTimeInterval(1)) cache.record("p3", peripheralID: "C", at: base.addingTimeInterval(2)) #expect(cache.count == 2) let targets = cache.reconnectTargets(now: base.addingTimeInterval(3), limit: 10) { _ in false } #expect(targets.map(\.peripheralID) == ["C", "B"]) } @Test func refreshingAnEntryProtectsItFromEviction() { let cache = makeCache(capacity: 2) cache.record("p1", peripheralID: "A", at: base) cache.record("p2", peripheralID: "B", at: base.addingTimeInterval(1)) // A becomes the freshest again; adding C must evict B, not A cache.record("p1", peripheralID: "A", at: base.addingTimeInterval(2)) cache.record("p3", peripheralID: "C", at: base.addingTimeInterval(3)) let targets = cache.reconnectTargets(now: base.addingTimeInterval(4), limit: 10) { _ in false } #expect(targets.map(\.peripheralID) == ["C", "A"]) } @Test func expiredEntriesArePruned() { let cache = makeCache(maxAge: 100) cache.record("p1", peripheralID: "A", at: base) cache.record("p2", peripheralID: "B", at: base.addingTimeInterval(50)) let targets = cache.reconnectTargets(now: base.addingTimeInterval(120), limit: 10) { _ in false } #expect(targets.map(\.peripheralID) == ["B"]) #expect(cache.count == 1) } @Test func targetsAreFreshestFirstAndCappedAtLimit() { let cache = makeCache(capacity: 8) for (index, id) in ["A", "B", "C", "D"].enumerated() { cache.record("p\(id)", peripheralID: id, at: base.addingTimeInterval(TimeInterval(index))) } let targets = cache.reconnectTargets(now: base.addingTimeInterval(10), limit: 2) { _ in false } #expect(targets.map(\.peripheralID) == ["D", "C"]) } @Test func excludedPeripheralsAreSkippedWithoutConsumingTheLimit() { let cache = makeCache(capacity: 8) for (index, id) in ["A", "B", "C"].enumerated() { cache.record("p\(id)", peripheralID: id, at: base.addingTimeInterval(TimeInterval(index))) } // C (freshest) is already connected; the two slots go to B and A let targets = cache.reconnectTargets(now: base.addingTimeInterval(10), limit: 2) { $0 == "C" } #expect(targets.map(\.peripheralID) == ["B", "A"]) } @Test func nonPositiveLimitReturnsNothing() { let cache = makeCache() cache.record("p1", peripheralID: "A", at: base) #expect(cache.reconnectTargets(now: base, limit: 0) { _ in false }.isEmpty) #expect(cache.reconnectTargets(now: base, limit: -3) { _ in false }.isEmpty) } }