APSManager.swift 57 KB

12345678910111213141516171819202122232425262728293031323334353637383940414243444546474849505152535455565758596061626364656667686970717273747576777879808182838485868788899091929394959697989910010110210310410510610710810911011111211311411511611711811912012112212312412512612712812913013113213313413513613713813914014114214314414514614714814915015115215315415515615715815916016116216316416516616716816917017117217317417517617717817918018118218318418518618718818919019119219319419519619719819920020120220320420520620720820921021121221321421521621721821922022122222322422522622722822923023123223323423523623723823924024124224324424524624724824925025125225325425525625725825926026126226326426526626726826927027127227327427527627727827928028128228328428528628728828929029129229329429529629729829930030130230330430530630730830931031131231331431531631731831932032132232332432532632732832933033133233333433533633733833934034134234334434534634734834935035135235335435535635735835936036136236336436536636736836937037137237337437537637737837938038138238338438538638738838939039139239339439539639739839940040140240340440540640740840941041141241341441541641741841942042142242342442542642742842943043143243343443543643743843944044144244344444544644744844945045145245345445545645745845946046146246346446546646746846947047147247347447547647747847948048148248348448548648748848949049149249349449549649749849950050150250350450550650750850951051151251351451551651751851952052152252352452552652752852953053153253353453553653753853954054154254354454554654754854955055155255355455555655755855956056156256356456556656756856957057157257357457557657757857958058158258358458558658758858959059159259359459559659759859960060160260360460560660760860961061161261361461561661761861962062162262362462562662762862963063163263363463563663763863964064164264364464564664764864965065165265365465565665765865966066166266366466566666766866967067167267367467567667767867968068168268368468568668768868969069169269369469569669769869970070170270370470570670770870971071171271371471571671771871972072172272372472572672772872973073173273373473573673773873974074174274374474574674774874975075175275375475575675775875976076176276376476576676776876977077177277377477577677777877978078178278378478578678778878979079179279379479579679779879980080180280380480580680780880981081181281381481581681781881982082182282382482582682782882983083183283383483583683783883984084184284384484584684784884985085185285385485585685785885986086186286386486586686786886987087187287387487587687787887988088188288388488588688788888989089189289389489589689789889990090190290390490590690790890991091191291391491591691791891992092192292392492592692792892993093193293393493593693793893994094194294394494594694794894995095195295395495595695795895996096196296396496596696796896997097197297397497597697797897998098198298398498598698798898999099199299399499599699799899910001001100210031004100510061007100810091010101110121013101410151016101710181019102010211022102310241025102610271028102910301031103210331034103510361037103810391040104110421043104410451046104710481049105010511052105310541055105610571058105910601061106210631064106510661067106810691070107110721073107410751076107710781079108010811082108310841085108610871088108910901091109210931094109510961097109810991100110111021103110411051106110711081109111011111112111311141115111611171118111911201121112211231124112511261127112811291130113111321133113411351136113711381139114011411142114311441145114611471148114911501151115211531154115511561157115811591160116111621163116411651166116711681169117011711172117311741175117611771178117911801181118211831184118511861187118811891190119111921193119411951196119711981199120012011202120312041205120612071208120912101211121212131214121512161217121812191220122112221223122412251226122712281229123012311232123312341235123612371238123912401241124212431244124512461247124812491250125112521253125412551256125712581259126012611262126312641265126612671268126912701271127212731274127512761277127812791280128112821283128412851286128712881289129012911292129312941295129612971298129913001301130213031304130513061307130813091310131113121313131413151316131713181319132013211322132313241325132613271328132913301331133213331334133513361337133813391340134113421343134413451346134713481349135013511352135313541355135613571358135913601361136213631364136513661367136813691370137113721373137413751376137713781379138013811382138313841385138613871388138913901391139213931394139513961397139813991400140114021403140414051406140714081409141014111412141314141415141614171418141914201421142214231424
  1. import Combine
  2. import CoreData
  3. import Foundation
  4. import LoopKit
  5. import LoopKitUI
  6. import SwiftDate
  7. import Swinject
  8. protocol APSManager {
  9. func heartbeat(date: Date)
  10. func enactBolus(amount: Double, isSMB: Bool) async
  11. var pumpManager: PumpManagerUI? { get set }
  12. var bluetoothManager: BluetoothStateManager? { get }
  13. var pumpDisplayState: CurrentValueSubject<PumpDisplayState?, Never> { get }
  14. var pumpName: CurrentValueSubject<String, Never> { get }
  15. var isLooping: CurrentValueSubject<Bool, Never> { get }
  16. var lastLoopDate: Date { get }
  17. var lastLoopDateSubject: PassthroughSubject<Date, Never> { get }
  18. var bolusProgress: CurrentValueSubject<Decimal?, Never> { get }
  19. var pumpExpiresAtDate: CurrentValueSubject<Date?, Never> { get }
  20. var isManualTempBasal: Bool { get }
  21. func enactTempBasal(rate: Double, duration: TimeInterval) async
  22. func determineBasal() async -> Bool
  23. func determineBasalSync() async
  24. func simulateDetermineBasal(carbs: Decimal, iob: Decimal) async -> Determination?
  25. func roundBolus(amount: Decimal) -> Decimal
  26. var lastError: CurrentValueSubject<Error?, Never> { get }
  27. func cancelBolus() async
  28. }
  29. enum APSError: LocalizedError {
  30. case pumpError(Error)
  31. case invalidPumpState(message: String)
  32. case glucoseError(message: String)
  33. case apsError(message: String)
  34. case deviceSyncError(message: String)
  35. case manualBasalTemp(message: String)
  36. var errorDescription: String? {
  37. switch self {
  38. case let .pumpError(error):
  39. return "Pump error: \(error.localizedDescription)"
  40. case let .invalidPumpState(message):
  41. return "Error: Invalid Pump State: \(message)"
  42. case let .glucoseError(message):
  43. return "Error: Invalid glucose: \(message)"
  44. case let .apsError(message):
  45. return "APS error: \(message)"
  46. case let .deviceSyncError(message):
  47. return "Sync error: \(message)"
  48. case let .manualBasalTemp(message):
  49. return "Manual Basal Temp : \(message)"
  50. }
  51. }
  52. }
  53. final class BaseAPSManager: APSManager, Injectable {
  54. private let processQueue = DispatchQueue(label: "BaseAPSManager.processQueue")
  55. @Injected() private var storage: FileStorage!
  56. @Injected() private var pumpHistoryStorage: PumpHistoryStorage!
  57. @Injected() private var alertHistoryStorage: AlertHistoryStorage!
  58. @Injected() private var tempTargetsStorage: TempTargetsStorage!
  59. @Injected() private var carbsStorage: CarbsStorage!
  60. @Injected() private var determinationStorage: DeterminationStorage!
  61. @Injected() private var deviceDataManager: DeviceDataManager!
  62. @Injected() private var nightscout: NightscoutManager!
  63. @Injected() private var settingsManager: SettingsManager!
  64. @Injected() private var broadcaster: Broadcaster!
  65. @Persisted(key: "lastLoopStartDate") private var lastLoopStartDate: Date = .distantPast
  66. @Persisted(key: "lastLoopDate") var lastLoopDate: Date = .distantPast {
  67. didSet {
  68. lastLoopDateSubject.send(lastLoopDate)
  69. }
  70. }
  71. let viewContext = CoreDataStack.shared.persistentContainer.viewContext
  72. let privateContext = CoreDataStack.shared.newTaskContext()
  73. private var openAPS: OpenAPS!
  74. private var lifetime = Lifetime()
  75. private var backGroundTaskID: UIBackgroundTaskIdentifier?
  76. var pumpManager: PumpManagerUI? {
  77. get { deviceDataManager.pumpManager }
  78. set { deviceDataManager.pumpManager = newValue }
  79. }
  80. var bluetoothManager: BluetoothStateManager? { deviceDataManager.bluetoothManager }
  81. @Persisted(key: "isManualTempBasal") var isManualTempBasal: Bool = false
  82. let isLooping = CurrentValueSubject<Bool, Never>(false)
  83. let lastLoopDateSubject = PassthroughSubject<Date, Never>()
  84. let lastError = CurrentValueSubject<Error?, Never>(nil)
  85. let bolusProgress = CurrentValueSubject<Decimal?, Never>(nil)
  86. var pumpDisplayState: CurrentValueSubject<PumpDisplayState?, Never> {
  87. deviceDataManager.pumpDisplayState
  88. }
  89. var pumpName: CurrentValueSubject<String, Never> {
  90. deviceDataManager.pumpName
  91. }
  92. var pumpExpiresAtDate: CurrentValueSubject<Date?, Never> {
  93. deviceDataManager.pumpExpiresAtDate
  94. }
  95. var settings: FreeAPSSettings {
  96. get { settingsManager.settings }
  97. set { settingsManager.settings = newValue }
  98. }
  99. init(resolver: Resolver) {
  100. injectServices(resolver)
  101. openAPS = OpenAPS(storage: storage)
  102. subscribe()
  103. lastLoopDateSubject.send(lastLoopDate)
  104. isLooping
  105. .weakAssign(to: \.deviceDataManager.loopInProgress, on: self)
  106. .store(in: &lifetime)
  107. }
  108. private func subscribe() {
  109. if settingsManager.settings.units == .mmolL {
  110. let wasParsed = storage.parseOnFileSettingsToMgdL()
  111. if wasParsed {
  112. Task {
  113. await openAPS.createInitialProfiles()
  114. }
  115. }
  116. }
  117. deviceDataManager.recommendsLoop
  118. .receive(on: processQueue)
  119. .sink { [weak self] in
  120. self?.loop()
  121. }
  122. .store(in: &lifetime)
  123. pumpManager?.addStatusObserver(self, queue: processQueue)
  124. deviceDataManager.errorSubject
  125. .receive(on: processQueue)
  126. .map { APSError.pumpError($0) }
  127. .sink {
  128. self.processError($0)
  129. }
  130. .store(in: &lifetime)
  131. deviceDataManager.bolusTrigger
  132. .receive(on: processQueue)
  133. .sink { bolusing in
  134. if bolusing {
  135. self.createBolusReporter()
  136. } else {
  137. self.clearBolusReporter()
  138. }
  139. }
  140. .store(in: &lifetime)
  141. // manage a manual Temp Basal from OmniPod - Force loop() after stop a temp basal or finished
  142. deviceDataManager.manualTempBasal
  143. .receive(on: processQueue)
  144. .sink { manualBasal in
  145. if manualBasal {
  146. self.isManualTempBasal = true
  147. } else {
  148. if self.isManualTempBasal {
  149. self.isManualTempBasal = false
  150. self.loop()
  151. }
  152. }
  153. }
  154. .store(in: &lifetime)
  155. }
  156. func heartbeat(date: Date) {
  157. deviceDataManager.heartbeat(date: date)
  158. }
  159. // Loop entry point
  160. private func loop() {
  161. Task {
  162. // check the last start of looping is more the loopInterval but the previous loop was completed
  163. if lastLoopDate > lastLoopStartDate {
  164. guard lastLoopStartDate.addingTimeInterval(Config.loopInterval) < Date() else {
  165. debug(.apsManager, "too close to do a loop : \(lastLoopStartDate)")
  166. return
  167. }
  168. }
  169. guard !isLooping.value else {
  170. warning(.apsManager, "Loop already in progress. Skip recommendation.")
  171. return
  172. }
  173. // start background time extension
  174. backGroundTaskID = await UIApplication.shared.beginBackgroundTask(withName: "Loop starting") {
  175. guard let backgroundTask = self.backGroundTaskID else { return }
  176. Task {
  177. UIApplication.shared.endBackgroundTask(backgroundTask)
  178. }
  179. self.backGroundTaskID = .invalid
  180. }
  181. lastLoopStartDate = Date()
  182. var previousLoop = [LoopStatRecord]()
  183. var interval: Double?
  184. do {
  185. try await privateContext.perform {
  186. let requestStats = LoopStatRecord.fetchRequest() as NSFetchRequest<LoopStatRecord>
  187. let sortStats = NSSortDescriptor(key: "end", ascending: false)
  188. requestStats.sortDescriptors = [sortStats]
  189. requestStats.fetchLimit = 1
  190. previousLoop = try self.privateContext.fetch(requestStats)
  191. if (previousLoop.first?.end ?? .distantFuture) < self.lastLoopStartDate {
  192. interval = self.roundDouble(
  193. (self.lastLoopStartDate - (previousLoop.first?.end ?? Date())).timeInterval / 60,
  194. 1
  195. )
  196. }
  197. }
  198. } catch let error as NSError {
  199. debugPrint(
  200. "\(DebuggingIdentifiers.failed) \(#file) \(#function) Failed to fetch the last loop with error: \(error.userInfo)"
  201. )
  202. }
  203. var loopStatRecord = LoopStats(
  204. start: lastLoopStartDate,
  205. loopStatus: "Starting",
  206. interval: interval
  207. )
  208. isLooping.send(true)
  209. do {
  210. if await !determineBasal() {
  211. throw APSError.apsError(message: "Determine basal failed")
  212. }
  213. // Open loop completed
  214. guard settings.closedLoop else {
  215. loopStatRecord.end = Date()
  216. loopStatRecord.duration = roundDouble((loopStatRecord.end! - loopStatRecord.start).timeInterval / 60, 2)
  217. loopStatRecord.loopStatus = "Success"
  218. await loopCompleted(loopStatRecord: loopStatRecord)
  219. return
  220. }
  221. // Closed loop - enact Determination
  222. try await enactDetermination()
  223. loopStatRecord.end = Date()
  224. loopStatRecord.duration = roundDouble((loopStatRecord.end! - loopStatRecord.start).timeInterval / 60, 2)
  225. loopStatRecord.loopStatus = "Success"
  226. await loopCompleted(loopStatRecord: loopStatRecord)
  227. } catch {
  228. loopStatRecord.end = Date()
  229. loopStatRecord.duration = roundDouble((loopStatRecord.end! - loopStatRecord.start).timeInterval / 60, 2)
  230. loopStatRecord.loopStatus = error.localizedDescription
  231. await loopCompleted(error: error, loopStatRecord: loopStatRecord)
  232. }
  233. if let nightscoutManager = nightscout {
  234. await nightscoutManager.uploadCarbs()
  235. await nightscoutManager.uploadPumpHistory()
  236. await nightscoutManager.uploadOverrides()
  237. await nightscoutManager.uploadTempTargets()
  238. }
  239. // End background task after all the operations are completed
  240. if let backgroundTask = self.backGroundTaskID {
  241. await UIApplication.shared.endBackgroundTask(backgroundTask)
  242. self.backGroundTaskID = .invalid
  243. }
  244. }
  245. }
  246. // Loop exit point
  247. private func loopCompleted(error: Error? = nil, loopStatRecord: LoopStats) async {
  248. isLooping.send(false)
  249. if let error = error {
  250. warning(.apsManager, "Loop failed with error: \(error.localizedDescription)")
  251. if let backgroundTask = backGroundTaskID {
  252. await UIApplication.shared.endBackgroundTask(backgroundTask)
  253. backGroundTaskID = .invalid
  254. }
  255. processError(error)
  256. } else {
  257. debug(.apsManager, "Loop succeeded")
  258. lastLoopDate = Date()
  259. lastError.send(nil)
  260. }
  261. loopStats(loopStatRecord: loopStatRecord)
  262. if settings.closedLoop {
  263. await reportEnacted(wasEnacted: error == nil)
  264. }
  265. // End of the BG tasks
  266. if let backgroundTask = backGroundTaskID {
  267. await UIApplication.shared.endBackgroundTask(backgroundTask)
  268. backGroundTaskID = .invalid
  269. }
  270. }
  271. private func verifyStatus() -> Error? {
  272. guard let pump = pumpManager else {
  273. return APSError.invalidPumpState(message: "Pump not set")
  274. }
  275. let status = pump.status.pumpStatus
  276. guard !status.bolusing else {
  277. return APSError.invalidPumpState(message: "Pump is bolusing")
  278. }
  279. guard !status.suspended else {
  280. return APSError.invalidPumpState(message: "Pump suspended")
  281. }
  282. let reservoir = storage.retrieve(OpenAPS.Monitor.reservoir, as: Decimal.self) ?? 100
  283. guard reservoir >= 0 else {
  284. return APSError.invalidPumpState(message: "Reservoir is empty")
  285. }
  286. return nil
  287. }
  288. func autosense() async throws -> Bool {
  289. guard let autosense = await storage.retrieveAsync(OpenAPS.Settings.autosense, as: Autosens.self),
  290. (autosense.timestamp ?? .distantPast).addingTimeInterval(30.minutes.timeInterval) > Date()
  291. else {
  292. let result = try await openAPS.autosense()
  293. return result != nil
  294. }
  295. return false
  296. }
  297. func determineBasal() async -> Bool {
  298. debug(.apsManager, "Start determine basal")
  299. // Fetch glucose asynchronously
  300. let glucose = await fetchGlucose(predicate: NSPredicate.predicateForOneHourAgo, fetchLimit: 6)
  301. // Perform the context-related checks and actions
  302. let isValidGlucoseData = await privateContext.perform {
  303. guard glucose.count > 2 else {
  304. debug(.apsManager, "Not enough glucose data")
  305. self.processError(APSError.glucoseError(message: "Not enough glucose data"))
  306. return false
  307. }
  308. let dateOfLastGlucose = glucose.first?.date
  309. guard dateOfLastGlucose ?? Date() >= Date().addingTimeInterval(-12.minutes.timeInterval) else {
  310. debug(.apsManager, "Glucose data is stale")
  311. self.processError(APSError.glucoseError(message: "Glucose data is stale"))
  312. return false
  313. }
  314. guard !GlucoseStored.glucoseIsFlat(glucose) else {
  315. debug(.apsManager, "Glucose data is too flat")
  316. self.processError(APSError.glucoseError(message: "Glucose data is too flat"))
  317. return false
  318. }
  319. return true
  320. }
  321. guard isValidGlucoseData else {
  322. debug(.apsManager, "Glucose validation failed")
  323. processError(APSError.glucoseError(message: "Glucose validation failed"))
  324. return false
  325. }
  326. do {
  327. let now = Date()
  328. // Start fetching asynchronously
  329. let (currentTemp, _) = try await (
  330. fetchCurrentTempBasal(date: now),
  331. autosense()
  332. )
  333. // Determine basal using the fetched temp and current time
  334. let determination = try await openAPS.determineBasal(currentTemp: currentTemp, clock: now)
  335. if let determination = determination {
  336. DispatchQueue.main.async {
  337. self.broadcaster.notify(DeterminationObserver.self, on: .main) {
  338. $0.determinationDidUpdate(determination)
  339. }
  340. }
  341. return true
  342. } else {
  343. return false
  344. }
  345. } catch {
  346. debug(.apsManager, "Error determining basal: \(error)")
  347. return false
  348. }
  349. }
  350. func determineBasalSync() async {
  351. _ = await determineBasal()
  352. }
  353. func simulateDetermineBasal(carbs: Decimal, iob: Decimal) async -> Determination? {
  354. do {
  355. let temp = await fetchCurrentTempBasal(date: Date.now)
  356. return try await openAPS.determineBasal(currentTemp: temp, clock: Date(), carbs: carbs, iob: iob, simulation: true)
  357. } catch {
  358. debugPrint(
  359. "\(DebuggingIdentifiers.failed) \(#file) \(#function) Error occurred in invokeDummyDetermineBasalSync: \(error)"
  360. )
  361. return nil
  362. }
  363. }
  364. func roundBolus(amount: Decimal) -> Decimal {
  365. guard let pump = pumpManager else { return amount }
  366. let rounded = Decimal(pump.roundToSupportedBolusVolume(units: Double(amount)))
  367. let maxBolus = Decimal(pump.roundToSupportedBolusVolume(units: Double(settingsManager.pumpSettings.maxBolus)))
  368. return min(rounded, maxBolus)
  369. }
  370. private var bolusReporter: DoseProgressReporter?
  371. func enactBolus(amount: Double, isSMB: Bool) async {
  372. if amount <= 0 {
  373. return
  374. }
  375. if let error = verifyStatus() {
  376. processError(error)
  377. processQueue.async {
  378. self.broadcaster.notify(BolusFailureObserver.self, on: self.processQueue) {
  379. $0.bolusDidFail()
  380. }
  381. }
  382. return
  383. }
  384. guard let pump = pumpManager else { return }
  385. let roundedAmount = pump.roundToSupportedBolusVolume(units: amount)
  386. debug(.apsManager, "Enact bolus \(roundedAmount), manual \(!isSMB)")
  387. do {
  388. try await pump.enactBolus(units: roundedAmount, automatic: isSMB)
  389. debug(.apsManager, "Bolus succeeded")
  390. if !isSMB {
  391. await determineBasalSync()
  392. }
  393. bolusProgress.send(0)
  394. } catch {
  395. warning(.apsManager, "Bolus failed with error: \(error.localizedDescription)")
  396. processError(APSError.pumpError(error))
  397. if !isSMB {
  398. processQueue.async {
  399. self.broadcaster.notify(BolusFailureObserver.self, on: self.processQueue) {
  400. $0.bolusDidFail()
  401. }
  402. }
  403. }
  404. }
  405. }
  406. func cancelBolus() async {
  407. guard let pump = pumpManager, pump.status.pumpStatus.bolusing else { return }
  408. debug(.apsManager, "Cancel bolus")
  409. do {
  410. _ = try await pump.cancelBolus()
  411. debug(.apsManager, "Bolus cancelled")
  412. } catch {
  413. debug(.apsManager, "Bolus cancellation failed with error: \(error.localizedDescription)")
  414. processError(APSError.pumpError(error))
  415. }
  416. bolusReporter?.removeObserver(self)
  417. bolusReporter = nil
  418. bolusProgress.send(nil)
  419. }
  420. func enactTempBasal(rate: Double, duration: TimeInterval) async {
  421. if let error = verifyStatus() {
  422. processError(error)
  423. return
  424. }
  425. guard let pump = pumpManager else { return }
  426. // unable to do temp basal during manual temp basal 😁
  427. if isManualTempBasal {
  428. processError(APSError.manualBasalTemp(message: "Loop not possible during the manual basal temp"))
  429. return
  430. }
  431. debug(.apsManager, "Enact temp basal \(rate) - \(duration)")
  432. let roundedAmout = pump.roundToSupportedBasalRate(unitsPerHour: rate)
  433. do {
  434. try await pump.enactTempBasal(unitsPerHour: roundedAmout, for: duration)
  435. debug(.apsManager, "Temp Basal succeeded")
  436. } catch {
  437. debug(.apsManager, "Temp Basal failed with error: \(error.localizedDescription)")
  438. processError(APSError.pumpError(error))
  439. }
  440. }
  441. private func fetchCurrentTempBasal(date: Date) async -> TempBasal {
  442. let results = await CoreDataStack.shared.fetchEntitiesAsync(
  443. ofType: PumpEventStored.self,
  444. onContext: privateContext,
  445. predicate: NSPredicate.recentPumpHistory,
  446. key: "timestamp",
  447. ascending: false,
  448. fetchLimit: 1
  449. )
  450. let fetchedTempBasal = await privateContext.perform {
  451. guard let fetchedResults = results as? [PumpEventStored],
  452. let tempBasalEvent = fetchedResults.first,
  453. let tempBasal = tempBasalEvent.tempBasal,
  454. let eventTimestamp = tempBasalEvent.timestamp
  455. else {
  456. return TempBasal(duration: 0, rate: 0, temp: .absolute, timestamp: date)
  457. }
  458. let delta = Int((date.timeIntervalSince1970 - eventTimestamp.timeIntervalSince1970) / 60)
  459. let duration = max(0, Int(tempBasal.duration) - delta)
  460. let rate = tempBasal.rate as? Decimal ?? 0
  461. return TempBasal(duration: duration, rate: rate, temp: .absolute, timestamp: date)
  462. }
  463. guard let state = pumpManager?.status.basalDeliveryState else { return fetchedTempBasal }
  464. switch state {
  465. case .active:
  466. return TempBasal(duration: 0, rate: 0, temp: .absolute, timestamp: date)
  467. case let .tempBasal(dose):
  468. let rate = Decimal(dose.unitsPerHour)
  469. let durationMin = max(0, Int((dose.endDate.timeIntervalSince1970 - date.timeIntervalSince1970) / 60))
  470. return TempBasal(duration: durationMin, rate: rate, temp: .absolute, timestamp: date)
  471. default:
  472. return fetchedTempBasal
  473. }
  474. }
  475. private func enactDetermination() async throws {
  476. guard let determinationID = await determinationStorage
  477. .fetchLastDeterminationObjectID(predicate: NSPredicate.predicateFor30MinAgoForDetermination).first
  478. else {
  479. throw APSError.apsError(message: "Determination not found")
  480. }
  481. guard let pump = pumpManager else {
  482. throw APSError.apsError(message: "Pump not set")
  483. }
  484. // Unable to do temp basal during manual temp basal 😁
  485. if isManualTempBasal {
  486. throw APSError.manualBasalTemp(message: "Loop not possible during the manual basal temp")
  487. }
  488. let (rateDecimal, durationInSeconds, smbToDeliver) = try await setValues(determinationID: determinationID)
  489. if let rate = rateDecimal, let duration = durationInSeconds {
  490. try await performBasal(pump: pump, rate: rate, duration: duration)
  491. }
  492. // only perform a bolus if smbToDeliver is > 0
  493. if let smb = smbToDeliver, smb.compare(NSDecimalNumber(value: 0)) == .orderedDescending {
  494. try await performBolus(pump: pump, smbToDeliver: smb)
  495. }
  496. }
  497. private func setValues(determinationID: NSManagedObjectID) async throws
  498. -> (NSDecimalNumber?, TimeInterval?, NSDecimalNumber?)
  499. {
  500. return try await privateContext.perform {
  501. do {
  502. let determination = try self.privateContext.existingObject(with: determinationID) as? OrefDetermination
  503. let rate = determination?.rate
  504. let duration = determination?.duration.flatMap { TimeInterval(truncating: $0) * 60 }
  505. let smbToDeliver = determination?.smbToDeliver ?? 0
  506. return (rate, duration, smbToDeliver)
  507. } catch {
  508. throw error
  509. }
  510. }
  511. }
  512. private func performBasal(pump: PumpManager, rate: NSDecimalNumber, duration: TimeInterval) async throws {
  513. try await pump.enactTempBasal(unitsPerHour: Double(truncating: rate), for: duration)
  514. }
  515. private func performBolus(pump: PumpManager, smbToDeliver: NSDecimalNumber) async throws {
  516. try await pump.enactBolus(units: Double(truncating: smbToDeliver), automatic: true)
  517. bolusProgress.send(0)
  518. }
  519. private func reportEnacted(wasEnacted: Bool) async {
  520. guard let determinationID = await determinationStorage
  521. .fetchLastDeterminationObjectID(predicate: NSPredicate.predicateFor30MinAgoForDetermination).first
  522. else {
  523. return
  524. }
  525. await privateContext.perform {
  526. if let determinationUpdated = self.privateContext.object(with: determinationID) as? OrefDetermination {
  527. determinationUpdated.timestamp = Date()
  528. determinationUpdated.enacted = wasEnacted
  529. determinationUpdated.isUploadedToNS = false
  530. do {
  531. guard self.privateContext.hasChanges else { return }
  532. try self.privateContext.save()
  533. debugPrint("Update successful in reportEnacted() \(DebuggingIdentifiers.succeeded)")
  534. } catch {
  535. debugPrint(
  536. "Failed \(DebuggingIdentifiers.succeeded) to save context in reportEnacted(): \(error.localizedDescription)"
  537. )
  538. }
  539. debug(.apsManager, "Determination enacted. Enacted: \(wasEnacted)")
  540. Task.detached(priority: .low) {
  541. await self.statistics()
  542. }
  543. } else {
  544. debugPrint("Failed to update OrefDetermination in reportEnacted()")
  545. }
  546. }
  547. }
  548. private func roundDecimal(_ decimal: Decimal, _ digits: Double) -> Decimal {
  549. let rounded = round(Double(decimal) * pow(10, digits)) / pow(10, digits)
  550. return Decimal(rounded)
  551. }
  552. private func roundDouble(_ double: Double, _ digits: Double) -> Double {
  553. let rounded = round(Double(double) * pow(10, digits)) / pow(10, digits)
  554. return rounded
  555. }
  556. private func medianCalculationDouble(array: [Double]) -> Double {
  557. guard !array.isEmpty else {
  558. return 0
  559. }
  560. let sorted = array.sorted()
  561. let length = array.count
  562. if length % 2 == 0 {
  563. return (sorted[length / 2 - 1] + sorted[length / 2]) / 2
  564. }
  565. return sorted[length / 2]
  566. }
  567. private func medianCalculation(array: [Int]) -> Double {
  568. guard !array.isEmpty else {
  569. return 0
  570. }
  571. let sorted = array.sorted()
  572. let length = array.count
  573. if length % 2 == 0 {
  574. return Double((sorted[length / 2 - 1] + sorted[length / 2]) / 2)
  575. }
  576. return Double(sorted[length / 2])
  577. }
  578. private func tir(_ glucose: [GlucoseStored]) -> (TIR: Double, hypos: Double, hypers: Double, normal_: Double) {
  579. privateContext.perform {
  580. let justGlucoseArray = glucose.compactMap({ each in Int(each.glucose as Int16) })
  581. let totalReadings = justGlucoseArray.count
  582. let highLimit = settingsManager.settings.high
  583. let lowLimit = settingsManager.settings.low
  584. let hyperArray = glucose.filter({ $0.glucose >= Int(highLimit) })
  585. let hyperReadings = hyperArray.compactMap({ each in each.glucose as Int16 }).count
  586. let hyperPercentage = Double(hyperReadings) / Double(totalReadings) * 100
  587. let hypoArray = glucose.filter({ $0.glucose <= Int(lowLimit) })
  588. let hypoReadings = hypoArray.compactMap({ each in each.glucose as Int16 }).count
  589. let hypoPercentage = Double(hypoReadings) / Double(totalReadings) * 100
  590. // Euglyccemic range
  591. let normalArray = glucose.filter({ $0.glucose >= 70 && $0.glucose <= 140 })
  592. let normalReadings = normalArray.compactMap({ each in each.glucose as Int16 }).count
  593. let normalPercentage = Double(normalReadings) / Double(totalReadings) * 100
  594. // TIR
  595. let tir = 100 - (hypoPercentage + hyperPercentage)
  596. return (
  597. roundDouble(tir, 1),
  598. roundDouble(hypoPercentage, 1),
  599. roundDouble(hyperPercentage, 1),
  600. roundDouble(normalPercentage, 1)
  601. )
  602. }
  603. }
  604. private func glucoseStats(_ fetchedGlucose: [GlucoseStored])
  605. -> (ifcc: Double, ngsp: Double, average: Double, median: Double, sd: Double, cv: Double, readings: Double)
  606. {
  607. let glucose = fetchedGlucose
  608. // First date
  609. let last = glucose.last?.date ?? Date()
  610. // Last date (recent)
  611. let first = glucose.first?.date ?? Date()
  612. // Total time in days
  613. let numberOfDays = (first - last).timeInterval / 8.64E4
  614. let denominator = numberOfDays < 1 ? 1 : numberOfDays
  615. let justGlucoseArray = glucose.compactMap({ each in Int(each.glucose as Int16) })
  616. let sumReadings = justGlucoseArray.reduce(0, +)
  617. let countReadings = justGlucoseArray.count
  618. let glucoseAverage = Double(sumReadings) / Double(countReadings)
  619. let medianGlucose = medianCalculation(array: justGlucoseArray)
  620. var NGSPa1CStatisticValue = 0.0
  621. var IFCCa1CStatisticValue = 0.0
  622. NGSPa1CStatisticValue = (glucoseAverage + 46.7) / 28.7 // NGSP (%)
  623. IFCCa1CStatisticValue = 10.929 *
  624. (NGSPa1CStatisticValue - 2.152) // IFCC (mmol/mol) A1C(mmol/mol) = 10.929 * (A1C(%) - 2.15)
  625. var sumOfSquares = 0.0
  626. for array in justGlucoseArray {
  627. sumOfSquares += pow(Double(array) - Double(glucoseAverage), 2)
  628. }
  629. var sd = 0.0
  630. var cv = 0.0
  631. // Avoid division by zero
  632. if glucoseAverage > 0 {
  633. sd = sqrt(sumOfSquares / Double(countReadings))
  634. cv = sd / Double(glucoseAverage) * 100
  635. }
  636. let conversionFactor = 0.0555
  637. let units = settingsManager.settings.units
  638. var output: (ifcc: Double, ngsp: Double, average: Double, median: Double, sd: Double, cv: Double, readings: Double)
  639. output = (
  640. ifcc: IFCCa1CStatisticValue,
  641. ngsp: NGSPa1CStatisticValue,
  642. average: glucoseAverage * (units == .mmolL ? conversionFactor : 1),
  643. median: medianGlucose * (units == .mmolL ? conversionFactor : 1),
  644. sd: sd * (units == .mmolL ? conversionFactor : 1), cv: cv,
  645. readings: Double(countReadings) / denominator
  646. )
  647. return output
  648. }
  649. private func loops(_ fetchedLoops: [LoopStatRecord]) -> Loops {
  650. let loops = fetchedLoops
  651. // First date
  652. let previous = loops.last?.end ?? Date()
  653. // Last date (recent)
  654. let current = loops.first?.start ?? Date()
  655. // Total time in days
  656. let totalTime = (current - previous).timeInterval / 8.64E4
  657. //
  658. let durationArray = loops.compactMap({ each in each.duration })
  659. let durationArrayCount = durationArray.count
  660. let durationAverage = durationArray.reduce(0, +) / Double(durationArrayCount) * 60
  661. let medianDuration = medianCalculationDouble(array: durationArray) * 60
  662. let max_duration = (durationArray.max() ?? 0) * 60
  663. let min_duration = (durationArray.min() ?? 0) * 60
  664. let successsNR = loops.compactMap({ each in each.loopStatus }).filter({ each in each!.contains("Success") }).count
  665. let errorNR = durationArrayCount - successsNR
  666. let total = Double(successsNR + errorNR) == 0 ? 1 : Double(successsNR + errorNR)
  667. let successRate: Double? = (Double(successsNR) / total) * 100
  668. let loopNr = totalTime <= 1 ? total : round(total / (totalTime != 0 ? totalTime : 1))
  669. let intervalArray = loops.compactMap({ each in each.interval as Double })
  670. let count = intervalArray.count != 0 ? intervalArray.count : 1
  671. let median_interval = medianCalculationDouble(array: intervalArray)
  672. let intervalAverage = intervalArray.reduce(0, +) / Double(count)
  673. let maximumInterval = intervalArray.max()
  674. let minimumInterval = intervalArray.min()
  675. //
  676. let output = Loops(
  677. loops: Int(loopNr),
  678. errors: errorNR,
  679. success_rate: roundDecimal(Decimal(successRate ?? 0), 1),
  680. avg_interval: roundDecimal(Decimal(intervalAverage), 1),
  681. median_interval: roundDecimal(Decimal(median_interval), 1),
  682. min_interval: roundDecimal(Decimal(minimumInterval ?? 0), 1),
  683. max_interval: roundDecimal(Decimal(maximumInterval ?? 0), 1),
  684. avg_duration: roundDecimal(Decimal(durationAverage), 1),
  685. median_duration: roundDecimal(Decimal(medianDuration), 1),
  686. min_duration: roundDecimal(Decimal(min_duration), 1),
  687. max_duration: roundDecimal(Decimal(max_duration), 1)
  688. )
  689. return output
  690. }
  691. // fetch glucose for time interval
  692. func fetchGlucose(predicate: NSPredicate, fetchLimit: Int? = nil, batchSize: Int? = nil) async -> [GlucoseStored] {
  693. let results = await CoreDataStack.shared.fetchEntitiesAsync(
  694. ofType: GlucoseStored.self,
  695. onContext: privateContext,
  696. predicate: predicate,
  697. key: "date",
  698. ascending: false,
  699. fetchLimit: fetchLimit,
  700. batchSize: batchSize
  701. )
  702. return await privateContext.perform {
  703. guard let glucoseResults = results as? [GlucoseStored] else {
  704. return []
  705. }
  706. return glucoseResults
  707. }
  708. }
  709. // TODO: - Refactor this whole shit here...
  710. // Add to statistics.JSON for upload to NS.
  711. private func statistics() async {
  712. let now = Date()
  713. if settingsManager.settings.uploadStats != nil {
  714. let hour = Calendar.current.component(.hour, from: now)
  715. guard hour > 20 else {
  716. return
  717. }
  718. // MARK: - Core Data related
  719. async let glucoseStats = glucoseForStats()
  720. async let lastLoopForStats = lastLoopForStats()
  721. async let carbTotal = carbsForStats()
  722. async let preferences = settingsManager.preferences
  723. let loopStats = await loopStats(oneDayGlucose: await glucoseStats.oneDayGlucose.readings)
  724. // Only save and upload once per day
  725. guard (-1 * (await lastLoopForStats ?? .distantPast).timeIntervalSinceNow.hours) > 22 else { return }
  726. let units = settingsManager.settings.units
  727. // MARK: - Not Core Data related stuff
  728. let pref = await preferences
  729. var algo_ = "Oref0"
  730. if pref.sigmoid, pref.enableDynamicCR {
  731. algo_ = "Dynamic ISF + CR: Sigmoid"
  732. } else if pref.sigmoid, !pref.enableDynamicCR {
  733. algo_ = "Dynamic ISF: Sigmoid"
  734. } else if pref.useNewFormula, pref.enableDynamicCR {
  735. algo_ = "Dynamic ISF + CR: Logarithmic"
  736. } else if pref.useNewFormula, !pref.sigmoid,!pref.enableDynamicCR {
  737. algo_ = "Dynamic ISF: Logarithmic"
  738. }
  739. let af = pref.adjustmentFactor
  740. let insulin_type = pref.curve
  741. // let buildDate = Bundle.main.buildDate // TODO: fix this
  742. let version = Bundle.main.releaseVersionNumber
  743. let build = Bundle.main.buildVersionNumber
  744. // Read branch information from branch.txt instead of infoDictionary
  745. var branch = "Unknown"
  746. if let branchFileURL = Bundle.main.url(forResource: "branch", withExtension: "txt"),
  747. let branchFileContent = try? String(contentsOf: branchFileURL)
  748. {
  749. let lines = branchFileContent.components(separatedBy: .newlines)
  750. for line in lines {
  751. let components = line.components(separatedBy: "=")
  752. if components.count == 2 {
  753. let key = components[0].trimmingCharacters(in: .whitespaces)
  754. let value = components[1].trimmingCharacters(in: .whitespaces)
  755. if key == "BRANCH" {
  756. branch = value
  757. break
  758. }
  759. }
  760. }
  761. } else {
  762. branch = "Unknown"
  763. }
  764. let copyrightNotice_ = Bundle.main.infoDictionary?["NSHumanReadableCopyright"] as? String ?? ""
  765. let pump_ = pumpManager?.localizedTitle ?? ""
  766. let cgm = settingsManager.settings.cgm
  767. let file = OpenAPS.Monitor.statistics
  768. var iPa: Decimal = 75
  769. if pref.useCustomPeakTime {
  770. iPa = pref.insulinPeakTime
  771. } else if pref.curve.rawValue == "rapid-acting" {
  772. iPa = 65
  773. } else if pref.curve.rawValue == "ultra-rapid" {
  774. iPa = 50
  775. }
  776. // Insulin placeholder
  777. let insulin = Ins(
  778. TDD: 0,
  779. bolus: 0,
  780. temp_basal: 0,
  781. scheduled_basal: 0,
  782. total_average: 0
  783. )
  784. let processedGlucoseStats = await glucoseStats
  785. let hbA1cDisplayUnit = processedGlucoseStats.hbA1cDisplayUnit
  786. let dailystat = await Statistics(
  787. created_at: Date(),
  788. iPhone: UIDevice.current.getDeviceId,
  789. iOS: UIDevice.current.getOSInfo,
  790. Build_Version: version ?? "",
  791. Build_Number: build ?? "1",
  792. Branch: branch,
  793. CopyRightNotice: String(copyrightNotice_.prefix(32)),
  794. Build_Date: Date(), // TODO: fix this
  795. Algorithm: algo_,
  796. AdjustmentFactor: af,
  797. Pump: pump_,
  798. CGM: cgm.rawValue,
  799. insulinType: insulin_type.rawValue,
  800. peakActivityTime: iPa,
  801. Carbs_24h: await carbTotal,
  802. GlucoseStorage_Days: Decimal(roundDouble(processedGlucoseStats.numberofDays, 1)),
  803. Statistics: Stats(
  804. Distribution: processedGlucoseStats.TimeInRange,
  805. Glucose: processedGlucoseStats.avg,
  806. HbA1c: processedGlucoseStats.hbs,
  807. Units: Units(Glucose: units.rawValue, HbA1c: hbA1cDisplayUnit.rawValue),
  808. LoopCycles: loopStats,
  809. Insulin: insulin,
  810. Variance: processedGlucoseStats.variance
  811. )
  812. )
  813. storage.save(dailystat, as: file)
  814. await saveStatsToCoreData()
  815. }
  816. }
  817. private func saveStatsToCoreData() async {
  818. await privateContext.perform {
  819. let saveStatsCoreData = StatsData(context: self.privateContext)
  820. saveStatsCoreData.lastrun = Date()
  821. do {
  822. guard self.privateContext.hasChanges else { return }
  823. try self.privateContext.save()
  824. } catch {
  825. print(error.localizedDescription)
  826. }
  827. }
  828. }
  829. private func lastLoopForStats() async -> Date? {
  830. let requestStats = StatsData.fetchRequest() as NSFetchRequest<StatsData>
  831. let sortStats = NSSortDescriptor(key: "lastrun", ascending: false)
  832. requestStats.sortDescriptors = [sortStats]
  833. requestStats.fetchLimit = 1
  834. return await privateContext.perform {
  835. do {
  836. return try self.privateContext.fetch(requestStats).first?.lastrun
  837. } catch {
  838. print(error.localizedDescription)
  839. return .distantPast
  840. }
  841. }
  842. }
  843. private func carbsForStats() async -> Decimal {
  844. let requestCarbs = CarbEntryStored.fetchRequest() as NSFetchRequest<CarbEntryStored>
  845. let daysAgo = Date().addingTimeInterval(-1.days.timeInterval)
  846. requestCarbs.predicate = NSPredicate(format: "carbs > 0 AND date > %@", daysAgo as NSDate)
  847. requestCarbs.sortDescriptors = [NSSortDescriptor(key: "date", ascending: true)]
  848. return await privateContext.perform {
  849. do {
  850. let carbs = try self.privateContext.fetch(requestCarbs)
  851. debugPrint(
  852. "APSManager: statistics() -> \(CoreDataStack.identifier) \(DebuggingIdentifiers.succeeded) fetched carbs"
  853. )
  854. return carbs.reduce(0) { sum, meal in
  855. let mealCarbs = Decimal(string: "\(meal.carbs)") ?? Decimal.zero
  856. return sum + mealCarbs
  857. }
  858. } catch {
  859. debugPrint(
  860. "APSManager: statistics() -> \(CoreDataStack.identifier) \(DebuggingIdentifiers.failed) error while fetching carbs"
  861. )
  862. return 0
  863. }
  864. }
  865. }
  866. private func loopStats(oneDayGlucose: Double) async -> LoopCycles {
  867. let requestLSR = LoopStatRecord.fetchRequest() as NSFetchRequest<LoopStatRecord>
  868. requestLSR.predicate = NSPredicate(
  869. format: "interval > 0 AND start > %@",
  870. Date().addingTimeInterval(-24.hours.timeInterval) as NSDate
  871. )
  872. let sortLSR = NSSortDescriptor(key: "start", ascending: false)
  873. requestLSR.sortDescriptors = [sortLSR]
  874. return await privateContext.perform {
  875. do {
  876. let lsr = try self.privateContext.fetch(requestLSR)
  877. // Compute LoopStats for 24 hours
  878. let oneDayLoops = self.loops(lsr)
  879. return LoopCycles(
  880. loops: oneDayLoops.loops,
  881. errors: oneDayLoops.errors,
  882. readings: Int(oneDayGlucose),
  883. success_rate: oneDayLoops.success_rate,
  884. avg_interval: oneDayLoops.avg_interval,
  885. median_interval: oneDayLoops.median_interval,
  886. min_interval: oneDayLoops.min_interval,
  887. max_interval: oneDayLoops.max_interval,
  888. avg_duration: oneDayLoops.avg_duration,
  889. median_duration: oneDayLoops.median_duration,
  890. min_duration: oneDayLoops.max_duration,
  891. max_duration: oneDayLoops.max_duration
  892. )
  893. } catch {
  894. debugPrint(
  895. "\(DebuggingIdentifiers.failed) \(#file) \(#function) Failed to get Loop statistics for Statistics Upload"
  896. )
  897. return LoopCycles(
  898. loops: 0,
  899. errors: 0,
  900. readings: 0,
  901. success_rate: 0,
  902. avg_interval: 0,
  903. median_interval: 0,
  904. min_interval: 0,
  905. max_interval: 0,
  906. avg_duration: 0,
  907. median_duration: 0,
  908. min_duration: 0,
  909. max_duration: 0
  910. )
  911. }
  912. }
  913. }
  914. private func tddForStats() async -> (currentTDD: Decimal, tddTotalAverage: Decimal) {
  915. let requestTDD = OrefDetermination.fetchRequest() as NSFetchRequest<NSFetchRequestResult>
  916. let sort = NSSortDescriptor(key: "timestamp", ascending: false)
  917. let daysOf14Ago = Date().addingTimeInterval(-14.days.timeInterval)
  918. requestTDD.predicate = NSPredicate(format: "timestamp > %@", daysOf14Ago as NSDate)
  919. requestTDD.sortDescriptors = [sort]
  920. requestTDD.propertiesToFetch = ["timestamp", "totalDailyDose"]
  921. requestTDD.resultType = .dictionaryResultType
  922. var currentTDD: Decimal = 0
  923. var tddTotalAverage: Decimal = 0
  924. let results = await privateContext.perform {
  925. do {
  926. let fetchedResults = try self.privateContext.fetch(requestTDD) as? [[String: Any]]
  927. return fetchedResults ?? []
  928. } catch {
  929. debugPrint("\(DebuggingIdentifiers.failed) \(#file) \(#function) Failed to get TDD Data for Statistics Upload")
  930. return []
  931. }
  932. }
  933. if !results.isEmpty {
  934. if let latestTDD = results.first?["totalDailyDose"] as? NSDecimalNumber {
  935. currentTDD = latestTDD.decimalValue
  936. }
  937. let tddArray = results.compactMap { ($0["totalDailyDose"] as? NSDecimalNumber)?.decimalValue }
  938. if !tddArray.isEmpty {
  939. tddTotalAverage = tddArray.reduce(0, +) / Decimal(tddArray.count)
  940. }
  941. }
  942. return (currentTDD, tddTotalAverage)
  943. }
  944. private func glucoseForStats() async
  945. -> (
  946. oneDayGlucose: (
  947. ifcc: Double,
  948. ngsp: Double,
  949. average: Double,
  950. median: Double,
  951. sd: Double,
  952. cv: Double,
  953. readings: Double
  954. ),
  955. hbA1cDisplayUnit: HbA1cDisplayUnit,
  956. numberofDays: Double,
  957. TimeInRange: TIRs,
  958. avg: Averages,
  959. hbs: Durations,
  960. variance: Variance
  961. )
  962. {
  963. // Get the Glucose Values
  964. let glucose24h = await fetchGlucose(predicate: NSPredicate.predicateForOneDayAgo, fetchLimit: 288, batchSize: 50)
  965. let glucoseOneWeek = await fetchGlucose(
  966. predicate: NSPredicate.predicateForOneWeek,
  967. fetchLimit: 288 * 7,
  968. batchSize: 250
  969. )
  970. let glucoseOneMonth = await fetchGlucose(
  971. predicate: NSPredicate.predicateForOneMonth,
  972. fetchLimit: 288 * 7 * 30,
  973. batchSize: 500
  974. )
  975. let glucoseThreeMonths = await fetchGlucose(
  976. predicate: NSPredicate.predicateForThreeMonths,
  977. fetchLimit: 288 * 7 * 30 * 3,
  978. batchSize: 1000
  979. )
  980. var result: (
  981. oneDayGlucose: (
  982. ifcc: Double,
  983. ngsp: Double,
  984. average: Double,
  985. median: Double,
  986. sd: Double,
  987. cv: Double,
  988. readings: Double
  989. ),
  990. hbA1cDisplayUnit: HbA1cDisplayUnit,
  991. numberofDays: Double,
  992. TimeInRange: TIRs,
  993. avg: Averages,
  994. hbs: Durations,
  995. variance: Variance
  996. )?
  997. await privateContext.perform {
  998. let units = self.settingsManager.settings.units
  999. // First date
  1000. let previous = glucoseThreeMonths.last?.date ?? Date()
  1001. // Last date (recent)
  1002. let current = glucoseThreeMonths.first?.date ?? Date()
  1003. // Total time in days
  1004. let numberOfDays = (current - previous).timeInterval / 8.64E4
  1005. // Get glucose computations for every case
  1006. let oneDayGlucose = self.glucoseStats(glucose24h)
  1007. let sevenDaysGlucose = self.glucoseStats(glucoseOneWeek)
  1008. let thirtyDaysGlucose = self.glucoseStats(glucoseOneMonth)
  1009. let totalDaysGlucose = self.glucoseStats(glucoseThreeMonths)
  1010. let median = Durations(
  1011. day: self.roundDecimal(Decimal(oneDayGlucose.median), 1),
  1012. week: self.roundDecimal(Decimal(sevenDaysGlucose.median), 1),
  1013. month: self.roundDecimal(Decimal(thirtyDaysGlucose.median), 1),
  1014. total: self.roundDecimal(Decimal(totalDaysGlucose.median), 1)
  1015. )
  1016. let hbA1cDisplayUnit = self.settingsManager.settings.hbA1cDisplayUnit
  1017. let hbs = Durations(
  1018. day: ((units == .mmolL && hbA1cDisplayUnit == .mmolMol) || (units == .mgdL && hbA1cDisplayUnit == .percent)) ?
  1019. self.roundDecimal(Decimal(oneDayGlucose.ifcc), 1) : self.roundDecimal(Decimal(oneDayGlucose.ngsp), 1),
  1020. week: ((units == .mmolL && hbA1cDisplayUnit == .mmolMol) || (units == .mgdL && hbA1cDisplayUnit == .percent)) ?
  1021. self.roundDecimal(Decimal(sevenDaysGlucose.ifcc), 1) : self
  1022. .roundDecimal(Decimal(sevenDaysGlucose.ngsp), 1),
  1023. month: ((units == .mmolL && hbA1cDisplayUnit == .mmolMol) || (units == .mgdL && hbA1cDisplayUnit == .percent)) ?
  1024. self.roundDecimal(Decimal(thirtyDaysGlucose.ifcc), 1) : self
  1025. .roundDecimal(Decimal(thirtyDaysGlucose.ngsp), 1),
  1026. total: ((units == .mmolL && hbA1cDisplayUnit == .mmolMol) || (units == .mgdL && hbA1cDisplayUnit == .percent)) ?
  1027. self.roundDecimal(Decimal(totalDaysGlucose.ifcc), 1) : self.roundDecimal(Decimal(totalDaysGlucose.ngsp), 1)
  1028. )
  1029. var oneDay_: (TIR: Double, hypos: Double, hypers: Double, normal_: Double) = (0.0, 0.0, 0.0, 0.0)
  1030. var sevenDays_: (TIR: Double, hypos: Double, hypers: Double, normal_: Double) = (0.0, 0.0, 0.0, 0.0)
  1031. var thirtyDays_: (TIR: Double, hypos: Double, hypers: Double, normal_: Double) = (0.0, 0.0, 0.0, 0.0)
  1032. var totalDays_: (TIR: Double, hypos: Double, hypers: Double, normal_: Double) = (0.0, 0.0, 0.0, 0.0)
  1033. // Get TIR computations for every case
  1034. oneDay_ = self.tir(glucose24h)
  1035. sevenDays_ = self.tir(glucoseOneWeek)
  1036. thirtyDays_ = self.tir(glucoseOneMonth)
  1037. totalDays_ = self.tir(glucoseThreeMonths)
  1038. let tir = Durations(
  1039. day: self.roundDecimal(Decimal(oneDay_.TIR), 1),
  1040. week: self.roundDecimal(Decimal(sevenDays_.TIR), 1),
  1041. month: self.roundDecimal(Decimal(thirtyDays_.TIR), 1),
  1042. total: self.roundDecimal(Decimal(totalDays_.TIR), 1)
  1043. )
  1044. let hypo = Durations(
  1045. day: Decimal(oneDay_.hypos),
  1046. week: Decimal(sevenDays_.hypos),
  1047. month: Decimal(thirtyDays_.hypos),
  1048. total: Decimal(totalDays_.hypos)
  1049. )
  1050. let hyper = Durations(
  1051. day: Decimal(oneDay_.hypers),
  1052. week: Decimal(sevenDays_.hypers),
  1053. month: Decimal(thirtyDays_.hypers),
  1054. total: Decimal(totalDays_.hypers)
  1055. )
  1056. let normal = Durations(
  1057. day: Decimal(oneDay_.normal_),
  1058. week: Decimal(sevenDays_.normal_),
  1059. month: Decimal(thirtyDays_.normal_),
  1060. total: Decimal(totalDays_.normal_)
  1061. )
  1062. let range = Threshold(
  1063. low: units == .mmolL ? self.roundDecimal(self.settingsManager.settings.low.asMmolL, 1) :
  1064. self.roundDecimal(self.settingsManager.settings.low, 0),
  1065. high: units == .mmolL ? self.roundDecimal(self.settingsManager.settings.high.asMmolL, 1) :
  1066. self.roundDecimal(self.settingsManager.settings.high, 0)
  1067. )
  1068. let TimeInRange = TIRs(
  1069. TIR: tir,
  1070. Hypos: hypo,
  1071. Hypers: hyper,
  1072. Threshold: range,
  1073. Euglycemic: normal
  1074. )
  1075. let avgs = Durations(
  1076. day: self.roundDecimal(Decimal(oneDayGlucose.average), 1),
  1077. week: self.roundDecimal(Decimal(sevenDaysGlucose.average), 1),
  1078. month: self.roundDecimal(Decimal(thirtyDaysGlucose.average), 1),
  1079. total: self.roundDecimal(Decimal(totalDaysGlucose.average), 1)
  1080. )
  1081. let avg = Averages(Average: avgs, Median: median)
  1082. // Standard Deviations
  1083. let standardDeviations = Durations(
  1084. day: self.roundDecimal(Decimal(oneDayGlucose.sd), 1),
  1085. week: self.roundDecimal(Decimal(sevenDaysGlucose.sd), 1),
  1086. month: self.roundDecimal(Decimal(thirtyDaysGlucose.sd), 1),
  1087. total: self.roundDecimal(Decimal(totalDaysGlucose.sd), 1)
  1088. )
  1089. // CV = standard deviation / sample mean x 100
  1090. let cvs = Durations(
  1091. day: self.roundDecimal(Decimal(oneDayGlucose.cv), 1),
  1092. week: self.roundDecimal(Decimal(sevenDaysGlucose.cv), 1),
  1093. month: self.roundDecimal(Decimal(thirtyDaysGlucose.cv), 1),
  1094. total: self.roundDecimal(Decimal(totalDaysGlucose.cv), 1)
  1095. )
  1096. let variance = Variance(SD: standardDeviations, CV: cvs)
  1097. result = (oneDayGlucose, hbA1cDisplayUnit, numberOfDays, TimeInRange, avg, hbs, variance)
  1098. }
  1099. return result!
  1100. }
  1101. private func loopStats(loopStatRecord: LoopStats) {
  1102. privateContext.perform {
  1103. let nLS = LoopStatRecord(context: self.privateContext)
  1104. nLS.start = loopStatRecord.start
  1105. nLS.end = loopStatRecord.end ?? Date()
  1106. nLS.loopStatus = loopStatRecord.loopStatus
  1107. nLS.duration = loopStatRecord.duration ?? 0.0
  1108. nLS.interval = loopStatRecord.interval ?? 0.0
  1109. do {
  1110. guard self.privateContext.hasChanges else { return }
  1111. try self.privateContext.save()
  1112. } catch {
  1113. print(error.localizedDescription)
  1114. }
  1115. }
  1116. }
  1117. private func processError(_ error: Error) {
  1118. warning(.apsManager, "\(error.localizedDescription)")
  1119. lastError.send(error)
  1120. }
  1121. private func createBolusReporter() {
  1122. bolusReporter = pumpManager?.createBolusProgressReporter(reportingOn: processQueue)
  1123. bolusReporter?.addObserver(self)
  1124. }
  1125. private func clearBolusReporter() {
  1126. bolusReporter?.removeObserver(self)
  1127. bolusReporter = nil
  1128. processQueue.asyncAfter(deadline: .now() + 0.5) {
  1129. self.bolusProgress.send(nil)
  1130. }
  1131. }
  1132. }
  1133. private extension PumpManager {
  1134. func enactTempBasal(unitsPerHour: Double, for duration: TimeInterval) async throws {
  1135. try await withCheckedThrowingContinuation { (continuation: CheckedContinuation<Void, Error>) in
  1136. self.enactTempBasal(unitsPerHour: unitsPerHour, for: duration) { error in
  1137. if let error = error {
  1138. debug(.apsManager, "Temp basal failed: \(unitsPerHour) for: \(duration)")
  1139. continuation.resume(throwing: error)
  1140. } else {
  1141. debug(.apsManager, "Temp basal succeeded: \(unitsPerHour) for: \(duration)")
  1142. continuation.resume(returning: ())
  1143. }
  1144. }
  1145. }
  1146. }
  1147. func enactBolus(units: Double, automatic: Bool) async throws {
  1148. try await withCheckedThrowingContinuation { (continuation: CheckedContinuation<Void, Error>) in
  1149. let automaticValue = automatic ? BolusActivationType.automatic : BolusActivationType.manualRecommendationAccepted
  1150. self.enactBolus(units: units, activationType: automaticValue) { error in
  1151. if let error = error {
  1152. debug(.apsManager, "Bolus failed: \(units)")
  1153. continuation.resume(throwing: error)
  1154. } else {
  1155. debug(.apsManager, "Bolus succeeded: \(units)")
  1156. continuation.resume(returning: ())
  1157. }
  1158. }
  1159. }
  1160. }
  1161. func cancelBolus() async throws -> DoseEntry? {
  1162. try await withCheckedThrowingContinuation { continuation in
  1163. self.cancelBolus { result in
  1164. switch result {
  1165. case let .success(dose):
  1166. debug(.apsManager, "Cancel Bolus succeeded")
  1167. continuation.resume(returning: dose)
  1168. case let .failure(error):
  1169. debug(.apsManager, "Cancel Bolus failed")
  1170. continuation.resume(throwing: APSError.pumpError(error))
  1171. }
  1172. }
  1173. }
  1174. }
  1175. func suspendDelivery() async throws {
  1176. try await withCheckedThrowingContinuation { (continuation: CheckedContinuation<Void, Error>) in
  1177. self.suspendDelivery { error in
  1178. if let error = error {
  1179. continuation.resume(throwing: error)
  1180. } else {
  1181. continuation.resume()
  1182. }
  1183. }
  1184. }
  1185. }
  1186. func resumeDelivery() async throws {
  1187. try await withCheckedThrowingContinuation { (continuation: CheckedContinuation<Void, Error>) in
  1188. self.resumeDelivery { error in
  1189. if let error = error {
  1190. continuation.resume(throwing: error)
  1191. } else {
  1192. continuation.resume()
  1193. }
  1194. }
  1195. }
  1196. }
  1197. }
  1198. extension BaseAPSManager: PumpManagerStatusObserver {
  1199. func pumpManager(_: PumpManager, didUpdate status: PumpManagerStatus, oldStatus _: PumpManagerStatus) {
  1200. let percent = Int((status.pumpBatteryChargeRemaining ?? 1) * 100)
  1201. privateContext.perform {
  1202. /// only update the last item with the current battery infos instead of saving a new one each time
  1203. let fetchRequest: NSFetchRequest<OpenAPS_Battery> = OpenAPS_Battery.fetchRequest()
  1204. fetchRequest.sortDescriptors = [NSSortDescriptor(key: "date", ascending: false)]
  1205. fetchRequest.predicate = NSPredicate.predicateFor30MinAgo
  1206. fetchRequest.fetchLimit = 1
  1207. do {
  1208. let results = try self.privateContext.fetch(fetchRequest)
  1209. let batteryToStore: OpenAPS_Battery
  1210. if let existingBattery = results.first {
  1211. batteryToStore = existingBattery
  1212. } else {
  1213. batteryToStore = OpenAPS_Battery(context: self.privateContext)
  1214. batteryToStore.id = UUID()
  1215. }
  1216. batteryToStore.date = Date()
  1217. batteryToStore.percent = Int16(percent)
  1218. batteryToStore.voltage = nil
  1219. batteryToStore.status = percent > 10 ? "normal" : "low"
  1220. batteryToStore.display = status.pumpBatteryChargeRemaining != nil
  1221. guard self.privateContext.hasChanges else { return }
  1222. try self.privateContext.save()
  1223. } catch {
  1224. print("Failed to fetch or save battery: \(error.localizedDescription)")
  1225. }
  1226. }
  1227. // TODO: - remove this after ensuring that NS still gets the same infos from Core Data
  1228. storage.save(status.pumpStatus, as: OpenAPS.Monitor.status)
  1229. }
  1230. }
  1231. extension BaseAPSManager: DoseProgressObserver {
  1232. func doseProgressReporterDidUpdate(_ doseProgressReporter: DoseProgressReporter) {
  1233. bolusProgress.send(Decimal(doseProgressReporter.progress.percentComplete))
  1234. if doseProgressReporter.progress.isComplete {
  1235. clearBolusReporter()
  1236. }
  1237. }
  1238. }
  1239. extension PumpManagerStatus {
  1240. var pumpStatus: PumpStatus {
  1241. let bolusing = bolusState != .noBolus
  1242. let suspended = basalDeliveryState?.isSuspended ?? true
  1243. let type = suspended ? StatusType.suspended : (bolusing ? .bolusing : .normal)
  1244. return PumpStatus(status: type, bolusing: bolusing, suspended: suspended, timestamp: Date())
  1245. }
  1246. }