HealthKitManager.swift 24 KB

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  1. import Combine
  2. import Foundation
  3. import HealthKit
  4. import LoopKit
  5. import LoopKitUI
  6. import Swinject
  7. protocol HealthKitManager: GlucoseSource {
  8. /// Check all needed permissions
  9. /// Return false if one or more permissions are deny or not choosen
  10. var areAllowAllPermissions: Bool { get }
  11. /// Check availability to save data of BG type to Health store
  12. func checkAvailabilitySaveBG() -> Bool
  13. /// Requests user to give permissions on using HealthKit
  14. func requestPermission(completion: ((Bool, Error?) -> Void)?)
  15. /// Save blood glucose to Health store (dublicate of bg will ignore)
  16. func saveIfNeeded(bloodGlucose: [BloodGlucose])
  17. /// Save carbs to Health store (dublicate of bg will ignore)
  18. func saveIfNeeded(carbs: [CarbsEntry])
  19. /// Save Insulin to Health store
  20. func saveIfNeeded(pumpEvents events: [PumpHistoryEvent])
  21. /// Create observer for data passing beetwen Health Store and FreeAPS
  22. func createBGObserver()
  23. /// Enable background delivering objects from Apple Health to FreeAPS
  24. func enableBackgroundDelivery()
  25. /// Delete glucose with syncID
  26. func deleteGlucose(syncID: String)
  27. /// delete carbs with syncID
  28. func deleteCarbs(syncID: String, isFPU: Bool?, fpuID: String?)
  29. /// delete insulin with syncID
  30. func deleteInsulin(syncID: String)
  31. }
  32. final class BaseHealthKitManager: HealthKitManager, Injectable, CarbsObserver {
  33. private enum Config {
  34. // unwraped HKObjects
  35. static var readPermissions: Set<HKSampleType> {
  36. Set([healthBGObject].compactMap { $0 }) }
  37. static var writePermissions: Set<HKSampleType> {
  38. Set([healthBGObject, healthCarbObject, healthInsulinObject].compactMap { $0 }) }
  39. // link to object in HealthKit
  40. static let healthBGObject = HKObjectType.quantityType(forIdentifier: .bloodGlucose)
  41. static let healthCarbObject = HKObjectType.quantityType(forIdentifier: .dietaryCarbohydrates)
  42. static let healthInsulinObject = HKObjectType.quantityType(forIdentifier: .insulinDelivery)
  43. // Meta-data key of FreeASPX data in HealthStore
  44. static let freeAPSMetaKey = "fromFreeAPSX"
  45. }
  46. @Injected() private var glucoseStorage: GlucoseStorage!
  47. @Injected() private var healthKitStore: HKHealthStore!
  48. @Injected() private var settingsManager: SettingsManager!
  49. @Injected() private var broadcaster: Broadcaster!
  50. @Injected() var carbsStorage: CarbsStorage!
  51. private let processQueue = DispatchQueue(label: "BaseHealthKitManager.processQueue")
  52. private var lifetime = Lifetime()
  53. // BG that will be return Publisher
  54. @SyncAccess @Persisted(key: "BaseHealthKitManager.newGlucose") private var newGlucose: [BloodGlucose] = []
  55. // last anchor for HKAnchoredQuery
  56. private var lastBloodGlucoseQueryAnchor: HKQueryAnchor? {
  57. set {
  58. persistedBGAnchor = try? NSKeyedArchiver.archivedData(withRootObject: newValue as Any, requiringSecureCoding: false)
  59. }
  60. get {
  61. guard let data = persistedBGAnchor else { return nil }
  62. return try? NSKeyedUnarchiver.unarchiveTopLevelObjectWithData(data) as? HKQueryAnchor
  63. }
  64. }
  65. @Persisted(key: "HealthKitManagerAnchor") private var persistedBGAnchor: Data? = nil
  66. var isAvailableOnCurrentDevice: Bool {
  67. HKHealthStore.isHealthDataAvailable()
  68. }
  69. var areAllowAllPermissions: Bool {
  70. Set(Config.readPermissions.map { healthKitStore.authorizationStatus(for: $0) })
  71. .intersection([.notDetermined])
  72. .isEmpty &&
  73. Set(Config.writePermissions.map { healthKitStore.authorizationStatus(for: $0) })
  74. .intersection([.sharingDenied, .notDetermined])
  75. .isEmpty
  76. }
  77. // NSPredicate, which use during load increment BG from Health store
  78. private var loadBGPredicate: NSPredicate {
  79. // loading only daily bg
  80. let predicateByStartDate = HKQuery.predicateForSamples(
  81. withStart: Date().addingTimeInterval(-1.days.timeInterval),
  82. end: nil,
  83. options: .strictStartDate
  84. )
  85. // loading only not FreeAPS bg
  86. // this predicate dont influence on Deleted Objects, only on added
  87. let predicateByMeta = HKQuery.predicateForObjects(
  88. withMetadataKey: Config.freeAPSMetaKey,
  89. operatorType: .notEqualTo,
  90. value: 1
  91. )
  92. return NSCompoundPredicate(andPredicateWithSubpredicates: [predicateByStartDate, predicateByMeta])
  93. }
  94. init(resolver: Resolver) {
  95. injectServices(resolver)
  96. guard isAvailableOnCurrentDevice,
  97. Config.healthBGObject != nil else { return }
  98. createBGObserver()
  99. enableBackgroundDelivery()
  100. broadcaster.register(CarbsObserver.self, observer: self)
  101. debug(.service, "HealthKitManager did create")
  102. }
  103. func checkAvailabilitySave(objectTypeToHealthStore: HKObjectType) -> Bool {
  104. healthKitStore.authorizationStatus(for: objectTypeToHealthStore) == .sharingAuthorized
  105. }
  106. func checkAvailabilitySaveBG() -> Bool {
  107. Config.healthBGObject.map { checkAvailabilitySave(objectTypeToHealthStore: $0) } ?? false
  108. }
  109. func requestPermission(completion: ((Bool, Error?) -> Void)? = nil) {
  110. guard isAvailableOnCurrentDevice else {
  111. completion?(false, HKError.notAvailableOnCurrentDevice)
  112. return
  113. }
  114. guard Config.readPermissions.isNotEmpty, Config.writePermissions.isNotEmpty else {
  115. completion?(false, HKError.dataNotAvailable)
  116. return
  117. }
  118. healthKitStore.requestAuthorization(toShare: Config.writePermissions, read: Config.readPermissions) { status, error in
  119. completion?(status, error)
  120. }
  121. }
  122. func saveIfNeeded(bloodGlucose: [BloodGlucose]) {
  123. guard settingsManager.settings.useAppleHealth,
  124. let sampleType = Config.healthBGObject,
  125. checkAvailabilitySave(objectTypeToHealthStore: sampleType),
  126. bloodGlucose.isNotEmpty
  127. else { return }
  128. func save(samples: [HKSample]) {
  129. let sampleIDs = samples.compactMap(\.syncIdentifier)
  130. let samplesToSave = bloodGlucose
  131. .filter { !sampleIDs.contains($0.id) }
  132. .map {
  133. HKQuantitySample(
  134. type: sampleType,
  135. quantity: HKQuantity(unit: .milligramsPerDeciliter, doubleValue: Double($0.glucose!)),
  136. start: $0.dateString,
  137. end: $0.dateString,
  138. metadata: [
  139. HKMetadataKeyExternalUUID: $0.id,
  140. HKMetadataKeySyncIdentifier: $0.id,
  141. HKMetadataKeySyncVersion: 1,
  142. Config.freeAPSMetaKey: true
  143. ]
  144. )
  145. }
  146. healthKitStore.save(samplesToSave) { _, _ in }
  147. }
  148. loadSamplesFromHealth(sampleType: sampleType, withIDs: bloodGlucose.map(\.id))
  149. .receive(on: processQueue)
  150. .sink(receiveValue: save)
  151. .store(in: &lifetime)
  152. }
  153. func saveIfNeeded(carbs: [CarbsEntry]) {
  154. guard settingsManager.settings.useAppleHealth,
  155. let sampleType = Config.healthCarbObject,
  156. checkAvailabilitySave(objectTypeToHealthStore: sampleType),
  157. carbs.isNotEmpty
  158. else { return }
  159. let carbsWithId = carbs.filter { c in
  160. guard c.id != nil else { return false }
  161. return true
  162. }
  163. func save(samples: [HKSample]) {
  164. let sampleIDs = samples.compactMap(\.syncIdentifier)
  165. let sampleDates = samples.map(\.startDate)
  166. let samplesToSave = carbsWithId
  167. .filter { !sampleIDs.contains($0.id!) } // id existing in AH
  168. .filter { !sampleDates.contains($0.createdAt) } // not id but exaclty the same datetime
  169. .map {
  170. HKQuantitySample(
  171. type: sampleType,
  172. quantity: HKQuantity(unit: .gram(), doubleValue: Double($0.carbs)),
  173. start: $0.createdAt,
  174. end: $0.createdAt,
  175. metadata: [
  176. HKMetadataKeyExternalUUID: $0.id ?? "_id",
  177. HKMetadataKeySyncIdentifier: $0.id ?? "_id",
  178. HKMetadataKeySyncVersion: 1,
  179. Config.freeAPSMetaKey: true
  180. ]
  181. )
  182. }
  183. healthKitStore.save(samplesToSave) { _, _ in }
  184. }
  185. loadSamplesFromHealth(sampleType: sampleType)
  186. .receive(on: processQueue)
  187. .sink(receiveValue: save)
  188. .store(in: &lifetime)
  189. }
  190. func saveIfNeeded(pumpEvents events: [PumpHistoryEvent]) {
  191. guard settingsManager.settings.useAppleHealth,
  192. let sampleType = Config.healthInsulinObject,
  193. checkAvailabilitySave(objectTypeToHealthStore: sampleType),
  194. events.isNotEmpty
  195. else { return }
  196. func save(bolus: [InsulinBolus], basal: [InsulinBasal]) {
  197. let bolusSamples = bolus
  198. .map {
  199. HKQuantitySample(
  200. type: sampleType,
  201. quantity: HKQuantity(unit: .internationalUnit(), doubleValue: Double($0.amount)),
  202. start: $0.date,
  203. end: $0.date,
  204. metadata: [
  205. HKMetadataKeyInsulinDeliveryReason: NSNumber(2),
  206. HKMetadataKeyExternalUUID: $0.id,
  207. HKMetadataKeySyncIdentifier: $0.id,
  208. HKMetadataKeySyncVersion: 1,
  209. Config.freeAPSMetaKey: true
  210. ]
  211. )
  212. }
  213. let basalSamples = basal
  214. .map {
  215. HKQuantitySample(
  216. type: sampleType,
  217. quantity: HKQuantity(unit: .internationalUnit(), doubleValue: Double($0.amount)),
  218. start: $0.startDelivery,
  219. end: $0.endDelivery,
  220. metadata: [
  221. HKMetadataKeyInsulinDeliveryReason: NSNumber(1),
  222. HKMetadataKeyExternalUUID: $0.id,
  223. HKMetadataKeySyncIdentifier: $0.id,
  224. HKMetadataKeySyncVersion: 1,
  225. Config.freeAPSMetaKey: true
  226. ]
  227. )
  228. }
  229. healthKitStore.save(bolusSamples + basalSamples) { _, _ in }
  230. }
  231. loadSamplesFromHealth(sampleType: sampleType, withIDs: events.map(\.id))
  232. .receive(on: processQueue)
  233. .compactMap { samples -> ([InsulinBolus], [InsulinBasal]) in
  234. let sampleIDs = samples.compactMap(\.syncIdentifier)
  235. let bolus = events
  236. .filter { $0.type == .bolus && !sampleIDs.contains($0.id) }
  237. .compactMap { event -> InsulinBolus? in
  238. guard let amount = event.amount else { return nil }
  239. return InsulinBolus(id: event.id, amount: amount, date: event.timestamp)
  240. }
  241. let basalEvents = events
  242. .filter { $0.type == .tempBasal && !sampleIDs.contains($0.id) }
  243. let basal = basalEvents.enumerated()
  244. .compactMap { item -> InsulinBasal? in
  245. let nextElementEventIndex = item.offset + 1
  246. guard basalEvents.count > nextElementEventIndex else { return nil }
  247. var minimalDose = self.settingsManager.preferences.bolusIncrement
  248. if (minimalDose != 0.05) || (minimalDose != 0.025) {
  249. minimalDose = Decimal(0.05)
  250. }
  251. let nextBasalEvent = basalEvents[nextElementEventIndex]
  252. let secondsOfCurrentBasal = nextBasalEvent.timestamp.timeIntervalSince(item.element.timestamp)
  253. let amount = Decimal(secondsOfCurrentBasal / 3600) * (item.element.rate ?? 0)
  254. let incrementsRaw = amount / minimalDose
  255. var amountRounded: Decimal
  256. if incrementsRaw >= 1 {
  257. let incrementsRounded = floor(Double(incrementsRaw))
  258. amountRounded = Decimal(round(incrementsRounded * Double(minimalDose) * 100_000.0) / 100_000.0)
  259. } else {
  260. amountRounded = 0
  261. }
  262. let id = String(item.element.id.dropFirst())
  263. guard amountRounded >= 0,
  264. id != ""
  265. else { return nil }
  266. return InsulinBasal(
  267. id: id,
  268. amount: amountRounded,
  269. startDelivery: item.element.timestamp,
  270. endDelivery: nextBasalEvent.timestamp
  271. )
  272. }
  273. return (bolus, basal)
  274. }
  275. .sink(receiveValue: save)
  276. .store(in: &lifetime)
  277. }
  278. func createBGObserver() {
  279. guard settingsManager.settings.useAppleHealth else { return }
  280. guard let bgType = Config.healthBGObject else {
  281. warning(.service, "Can not create HealthKit Observer, because unable to get the Blood Glucose type")
  282. return
  283. }
  284. let query = HKObserverQuery(sampleType: bgType, predicate: nil) { [weak self] _, _, observerError in
  285. guard let self = self else { return }
  286. debug(.service, "Execute HealthKit observer query for loading increment samples")
  287. guard observerError == nil else {
  288. warning(.service, "Error during execution of HealthKit Observer's query", error: observerError!)
  289. return
  290. }
  291. if let incrementQuery = self.getBloodGlucoseHKQuery(predicate: self.loadBGPredicate) {
  292. debug(.service, "Create increment query")
  293. self.healthKitStore.execute(incrementQuery)
  294. }
  295. }
  296. healthKitStore.execute(query)
  297. debug(.service, "Create Observer for Blood Glucose")
  298. }
  299. func enableBackgroundDelivery() {
  300. guard settingsManager.settings.useAppleHealth else {
  301. healthKitStore.disableAllBackgroundDelivery { _, _ in }
  302. return }
  303. guard let bgType = Config.healthBGObject else {
  304. warning(
  305. .service,
  306. "Can not create background delivery, because unable to get the Blood Glucose type"
  307. )
  308. return
  309. }
  310. healthKitStore.enableBackgroundDelivery(for: bgType, frequency: .immediate) { status, error in
  311. guard error == nil else {
  312. warning(.service, "Can not enable background delivery", error: error)
  313. return
  314. }
  315. debug(.service, "Background delivery status is \(status)")
  316. }
  317. }
  318. /// Try to load samples from Health store
  319. private func loadSamplesFromHealth(
  320. sampleType: HKQuantityType
  321. ) -> Future<[HKSample], Never> {
  322. Future { promise in
  323. let query = HKSampleQuery(
  324. sampleType: sampleType,
  325. predicate: nil,
  326. limit: 1000,
  327. sortDescriptors: nil
  328. ) { _, results, _ in
  329. promise(.success((results as? [HKQuantitySample]) ?? []))
  330. }
  331. self.healthKitStore.execute(query)
  332. }
  333. }
  334. /// Try to load samples from Health store with id and do some work
  335. private func loadSamplesFromHealth(
  336. sampleType: HKQuantityType,
  337. withIDs ids: [String]
  338. ) -> Future<[HKSample], Never> {
  339. Future { promise in
  340. let predicate = HKQuery.predicateForObjects(
  341. withMetadataKey: HKMetadataKeySyncIdentifier,
  342. allowedValues: ids
  343. )
  344. let query = HKSampleQuery(
  345. sampleType: sampleType,
  346. predicate: predicate,
  347. limit: 1000,
  348. sortDescriptors: nil
  349. ) { _, results, _ in
  350. promise(.success((results as? [HKQuantitySample]) ?? []))
  351. }
  352. self.healthKitStore.execute(query)
  353. }
  354. }
  355. private func getBloodGlucoseHKQuery(predicate: NSPredicate) -> HKQuery? {
  356. guard let sampleType = Config.healthBGObject else { return nil }
  357. let query = HKAnchoredObjectQuery(
  358. type: sampleType,
  359. predicate: predicate,
  360. anchor: lastBloodGlucoseQueryAnchor,
  361. limit: HKObjectQueryNoLimit
  362. ) { [weak self] _, addedObjects, _, anchor, _ in
  363. guard let self = self else { return }
  364. self.processQueue.async {
  365. debug(.service, "AnchoredQuery did execute")
  366. self.lastBloodGlucoseQueryAnchor = anchor
  367. // Added objects
  368. if let bgSamples = addedObjects as? [HKQuantitySample],
  369. bgSamples.isNotEmpty
  370. {
  371. self.prepareBGSamplesToPublisherFetch(bgSamples)
  372. }
  373. }
  374. }
  375. return query
  376. }
  377. private func prepareBGSamplesToPublisherFetch(_ samples: [HKQuantitySample]) {
  378. dispatchPrecondition(condition: .onQueue(processQueue))
  379. debug(.service, "Start preparing samples: \(String(describing: samples))")
  380. newGlucose += samples
  381. .compactMap { sample -> HealthKitSample? in
  382. let fromFAX = sample.metadata?[Config.freeAPSMetaKey] as? Bool ?? false
  383. guard !fromFAX else { return nil }
  384. return HealthKitSample(
  385. healthKitId: sample.uuid.uuidString,
  386. date: sample.startDate,
  387. glucose: Int(round(sample.quantity.doubleValue(for: .milligramsPerDeciliter)))
  388. )
  389. }
  390. .map { sample in
  391. BloodGlucose(
  392. _id: sample.healthKitId,
  393. sgv: sample.glucose,
  394. direction: nil,
  395. date: Decimal(Int(sample.date.timeIntervalSince1970) * 1000),
  396. dateString: sample.date,
  397. unfiltered: Decimal(sample.glucose),
  398. filtered: nil,
  399. noise: nil,
  400. glucose: sample.glucose,
  401. type: "sgv"
  402. )
  403. }
  404. .filter { $0.dateString >= Date().addingTimeInterval(-1.days.timeInterval) }
  405. newGlucose = newGlucose.removeDublicates()
  406. debug(
  407. .service,
  408. "Current BloodGlucose.Type objects will be send from Publisher during fetch: \(String(describing: newGlucose))"
  409. )
  410. }
  411. // MARK: - GlucoseSource
  412. var glucoseManager: FetchGlucoseManager?
  413. var cgmManager: CGMManagerUI?
  414. var cgmType: CGMType = .nightscout
  415. func fetch(_: DispatchTimer?) -> AnyPublisher<[BloodGlucose], Never> {
  416. Future { [weak self] promise in
  417. guard let self = self else {
  418. promise(.success([]))
  419. return
  420. }
  421. self.processQueue.async {
  422. // debug(.service, "Start fetching HealthKitManager")
  423. guard self.settingsManager.settings.useAppleHealth else {
  424. debug(.service, "HealthKitManager cant return any data, because useAppleHealth option is disable")
  425. promise(.success([]))
  426. return
  427. }
  428. // Remove old BGs
  429. self.newGlucose = self.newGlucose
  430. .filter { $0.dateString >= Date().addingTimeInterval(-1.days.timeInterval) }
  431. // Get actual BGs (beetwen Date() - 1 day and Date())
  432. let actualGlucose = self.newGlucose
  433. .filter { $0.dateString <= Date() }
  434. // Update newGlucose
  435. self.newGlucose = self.newGlucose
  436. .filter { !actualGlucose.contains($0) }
  437. // debug(.service, "Actual glucose is \(actualGlucose)")
  438. // debug(.service, "Current state of newGlucose is \(self.newGlucose)")
  439. promise(.success(actualGlucose))
  440. }
  441. }
  442. .eraseToAnyPublisher()
  443. }
  444. func fetchIfNeeded() -> AnyPublisher<[BloodGlucose], Never> {
  445. fetch(nil)
  446. }
  447. func deleteGlucose(syncID: String) {
  448. guard settingsManager.settings.useAppleHealth,
  449. let sampleType = Config.healthBGObject,
  450. checkAvailabilitySave(objectTypeToHealthStore: sampleType)
  451. else { return }
  452. processQueue.async {
  453. let predicate = HKQuery.predicateForObjects(
  454. withMetadataKey: HKMetadataKeySyncIdentifier,
  455. operatorType: .equalTo,
  456. value: syncID
  457. )
  458. self.healthKitStore.deleteObjects(of: sampleType, predicate: predicate) { _, _, error in
  459. guard let error = error else { return }
  460. warning(.service, "Cannot delete sample with syncID: \(syncID)", error: error)
  461. }
  462. }
  463. }
  464. // - MARK Carbs function
  465. func deleteCarbs(syncID: String, isFPU: Bool?, fpuID: String?) {
  466. guard settingsManager.settings.useAppleHealth,
  467. let sampleType = Config.healthCarbObject,
  468. checkAvailabilitySave(objectTypeToHealthStore: sampleType)
  469. else { return }
  470. if let isFPU = isFPU, !isFPU {
  471. processQueue.async {
  472. let predicate = HKQuery.predicateForObjects(
  473. withMetadataKey: HKMetadataKeySyncIdentifier,
  474. operatorType: .equalTo,
  475. value: syncID
  476. )
  477. self.healthKitStore.deleteObjects(of: sampleType, predicate: predicate) { _, _, error in
  478. guard let error = error else { return }
  479. warning(.service, "Cannot delete sample with syncID: \(syncID)", error: error)
  480. }
  481. }
  482. } else {
  483. // need to find all syncID
  484. guard let fpuID = fpuID else { return }
  485. processQueue.async {
  486. let recentCarbs: [CarbsEntry] = self.carbsStorage.recent()
  487. let ids = recentCarbs.filter { $0.fpuID == fpuID }.compactMap(\.id)
  488. let predicate = HKQuery.predicateForObjects(
  489. withMetadataKey: HKMetadataKeySyncIdentifier,
  490. allowedValues: ids
  491. )
  492. self.healthKitStore.deleteObjects(of: sampleType, predicate: predicate) { _, _, error in
  493. guard let error = error else { return }
  494. warning(.service, "Cannot delete sample with fpuID: \(fpuID)", error: error)
  495. }
  496. }
  497. }
  498. }
  499. func carbsDidUpdate(_ carbs: [CarbsEntry]) {
  500. saveIfNeeded(carbs: carbs)
  501. }
  502. // - MARK Insulin function
  503. func deleteInsulin(syncID: String) {
  504. guard settingsManager.settings.useAppleHealth,
  505. let sampleType = Config.healthInsulinObject,
  506. checkAvailabilitySave(objectTypeToHealthStore: sampleType)
  507. else { return }
  508. processQueue.async {
  509. let predicate = HKQuery.predicateForObjects(
  510. withMetadataKey: HKMetadataKeySyncIdentifier,
  511. operatorType: .equalTo,
  512. value: syncID
  513. )
  514. self.healthKitStore.deleteObjects(of: sampleType, predicate: predicate) { _, _, error in
  515. guard let error = error else { return }
  516. warning(.service, "Cannot delete sample with syncID: \(syncID)", error: error)
  517. }
  518. }
  519. }
  520. }
  521. enum HealthKitPermissionRequestStatus {
  522. case needRequest
  523. case didRequest
  524. }
  525. enum HKError: Error {
  526. // HealthKit work only iPhone (not on iPad)
  527. case notAvailableOnCurrentDevice
  528. // Some data can be not available on current iOS-device
  529. case dataNotAvailable
  530. }
  531. private struct InsulinBolus {
  532. var id: String
  533. var amount: Decimal
  534. var date: Date
  535. }
  536. private struct InsulinBasal {
  537. var id: String
  538. var amount: Decimal
  539. var startDelivery: Date
  540. var endDelivery: Date
  541. }