CarbsStorage.swift 19 KB

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  1. import Combine
  2. import CoreData
  3. import Foundation
  4. import SwiftDate
  5. import Swinject
  6. protocol CarbsObserver {
  7. func carbsDidUpdate(_ carbs: [CarbsEntry])
  8. }
  9. protocol CarbsStorage {
  10. var updatePublisher: AnyPublisher<Void, Never> { get }
  11. func storeCarbs(_ carbs: [CarbsEntry], areFetchedFromRemote: Bool) async
  12. func deleteCarbs(_ treatmentObjectID: NSManagedObjectID) async
  13. func syncDate() -> Date
  14. func recent() -> [CarbsEntry]
  15. func getCarbsNotYetUploadedToNightscout() async -> [NightscoutTreatment]
  16. func getFPUsNotYetUploadedToNightscout() async -> [NightscoutTreatment]
  17. func deleteCarbs(at uniqueID: String, fpuID: String, complex: Bool)
  18. func getCarbsNotYetUploadedToHealth() async -> [CarbsEntry]
  19. func getCarbsNotYetUploadedToTidepool() async -> [CarbsEntry]
  20. }
  21. final class BaseCarbsStorage: CarbsStorage, Injectable {
  22. private let processQueue = DispatchQueue(label: "BaseCarbsStorage.processQueue")
  23. @Injected() private var storage: FileStorage!
  24. @Injected() private var broadcaster: Broadcaster!
  25. @Injected() private var settings: SettingsManager!
  26. let coredataContext = CoreDataStack.shared.newTaskContext()
  27. private let updateSubject = PassthroughSubject<Void, Never>()
  28. var updatePublisher: AnyPublisher<Void, Never> {
  29. updateSubject.eraseToAnyPublisher()
  30. }
  31. init(resolver: Resolver) {
  32. injectServices(resolver)
  33. }
  34. func storeCarbs(_ entries: [CarbsEntry], areFetchedFromRemote: Bool) async {
  35. var entriesToStore = entries
  36. if areFetchedFromRemote {
  37. entriesToStore = await filterRemoteEntries(entries: entriesToStore)
  38. }
  39. await saveCarbsToCoreData(entries: entriesToStore, areFetchedFromRemote: areFetchedFromRemote)
  40. await saveCarbEquivalents(entries: entriesToStore, areFetchedFromRemote: areFetchedFromRemote)
  41. }
  42. private func filterRemoteEntries(entries: [CarbsEntry]) async -> [CarbsEntry] {
  43. // Fetch only the date property from Core Data
  44. guard let existing24hCarbEntries = await CoreDataStack.shared.fetchEntitiesAsync(
  45. ofType: CarbEntryStored.self,
  46. onContext: coredataContext,
  47. predicate: NSPredicate.predicateForOneDayAgo,
  48. key: "date",
  49. ascending: false,
  50. batchSize: 50,
  51. propertiesToFetch: ["date", "objectID"]
  52. ) as? [[String: Any]] else {
  53. return entries
  54. }
  55. // Extract dates into a set for efficient lookup
  56. let existingTimestamps = Set(existing24hCarbEntries.compactMap { $0["date"] as? Date })
  57. // Remove all entries that have a matching date in existingTimestamps
  58. var filteredEntries = entries
  59. filteredEntries.removeAll { entry in
  60. let entryDate = entry.actualDate ?? entry.createdAt
  61. return existingTimestamps.contains(entryDate)
  62. }
  63. return filteredEntries
  64. }
  65. /**
  66. Calculates the duration for processing FPUs (fat and protein units) based on the FPUs and the time cap.
  67. - The function uses predefined rules to determine the duration based on the number of FPUs.
  68. - Ensures that the duration does not exceed the time cap.
  69. - Parameters:
  70. - fpus: The number of FPUs calculated from fat and protein.
  71. - timeCap: The maximum allowed duration.
  72. - Returns: The computed duration in hours.
  73. */
  74. private func calculateComputedDuration(fpus: Decimal, timeCap: Int) -> Int {
  75. switch fpus {
  76. case ..<2:
  77. return 3
  78. case 2 ..< 3:
  79. return 4
  80. case 3 ..< 4:
  81. return 5
  82. default:
  83. return timeCap
  84. }
  85. }
  86. /**
  87. Processes fat and protein entries to generate future carb equivalents, ensuring each equivalent is at least 1.0 grams.
  88. - The function calculates the equivalent carb dosage size and adjusts the interval to ensure each equivalent is at least 1.0 grams.
  89. - Creates future carb entries based on the adjusted carb equivalent size and interval.
  90. - Parameters:
  91. - entries: An array of `CarbsEntry` objects representing the carbohydrate entries to be processed.
  92. - fat: The amount of fat in the last entry.
  93. - protein: The amount of protein in the last entry.
  94. - createdAt: The creation date of the last entry.
  95. - Returns: A tuple containing the array of future carb entries and the total carb equivalents.
  96. */
  97. private func processFPU(
  98. entries: [CarbsEntry],
  99. fat: Decimal,
  100. protein: Decimal,
  101. createdAt: Date,
  102. actualDate: Date?
  103. ) -> ([CarbsEntry], Decimal) {
  104. let interval = settings.settings.minuteInterval
  105. let timeCap = settings.settings.timeCap
  106. let adjustment = settings.settings.individualAdjustmentFactor
  107. let delay = settings.settings.delay
  108. let kcal = protein * 4 + fat * 9
  109. let carbEquivalents = (kcal / 10) * adjustment
  110. let fpus = carbEquivalents / 10
  111. var computedDuration = calculateComputedDuration(fpus: fpus, timeCap: timeCap)
  112. var carbEquivalentSize: Decimal = carbEquivalents / Decimal(computedDuration)
  113. carbEquivalentSize /= Decimal(60 / interval)
  114. if carbEquivalentSize < 1.0 {
  115. carbEquivalentSize = 1.0
  116. computedDuration = Int(carbEquivalents / carbEquivalentSize)
  117. }
  118. let roundedEquivalent: Double = round(Double(carbEquivalentSize * 10)) / 10
  119. carbEquivalentSize = Decimal(roundedEquivalent)
  120. var numberOfEquivalents = carbEquivalents / carbEquivalentSize
  121. var useDate = actualDate ?? createdAt
  122. let fpuID = entries.first?.fpuID ?? UUID().uuidString
  123. var futureCarbArray = [CarbsEntry]()
  124. var firstIndex = true
  125. while carbEquivalents > 0, numberOfEquivalents > 0 {
  126. useDate = firstIndex ? useDate.addingTimeInterval(delay.minutes.timeInterval) : useDate
  127. .addingTimeInterval(interval.minutes.timeInterval)
  128. firstIndex = false
  129. let eachCarbEntry = CarbsEntry(
  130. id: UUID().uuidString,
  131. createdAt: createdAt,
  132. actualDate: useDate,
  133. carbs: carbEquivalentSize,
  134. fat: 0,
  135. protein: 0,
  136. note: nil,
  137. enteredBy: CarbsEntry.manual,
  138. isFPU: true,
  139. fpuID: fpuID
  140. )
  141. futureCarbArray.append(eachCarbEntry)
  142. numberOfEquivalents -= 1
  143. }
  144. return (futureCarbArray, carbEquivalents)
  145. }
  146. private func saveCarbEquivalents(entries: [CarbsEntry], areFetchedFromRemote: Bool) async {
  147. guard let lastEntry = entries.last else { return }
  148. if let fat = lastEntry.fat, let protein = lastEntry.protein, fat > 0 || protein > 0 {
  149. let (futureCarbEquivalents, carbEquivalentCount) = processFPU(
  150. entries: entries,
  151. fat: fat,
  152. protein: protein,
  153. createdAt: lastEntry.createdAt,
  154. actualDate: lastEntry.actualDate
  155. )
  156. if carbEquivalentCount > 0 {
  157. await saveFPUToCoreDataAsBatchInsert(entries: futureCarbEquivalents, areFetchedFromRemote: areFetchedFromRemote)
  158. }
  159. }
  160. }
  161. private func saveCarbsToCoreData(entries: [CarbsEntry], areFetchedFromRemote: Bool) async {
  162. guard let entry = entries.last, entry.carbs != 0 else { return }
  163. await coredataContext.perform {
  164. let newItem = CarbEntryStored(context: self.coredataContext)
  165. newItem.date = entry.actualDate ?? entry.createdAt
  166. newItem.carbs = Double(truncating: NSDecimalNumber(decimal: entry.carbs))
  167. newItem.fat = Double(truncating: NSDecimalNumber(decimal: entry.fat ?? 0))
  168. newItem.protein = Double(truncating: NSDecimalNumber(decimal: entry.protein ?? 0))
  169. newItem.note = entry.note
  170. newItem.id = UUID()
  171. newItem.isFPU = false
  172. newItem.isUploadedToNS = areFetchedFromRemote ? true : false
  173. newItem.isUploadedToHealth = false
  174. newItem.isUploadedToTidepool = false
  175. if entry.fat != nil, entry.protein != nil, let fpuId = entry.fpuID {
  176. newItem.fpuID = UUID(uuidString: fpuId)
  177. }
  178. do {
  179. guard self.coredataContext.hasChanges else { return }
  180. try self.coredataContext.save()
  181. } catch {
  182. print(error.localizedDescription)
  183. }
  184. }
  185. }
  186. private func saveFPUToCoreDataAsBatchInsert(entries: [CarbsEntry], areFetchedFromRemote: Bool) async {
  187. let commonFPUID = UUID(
  188. uuidString: entries.first?.fpuID ?? UUID()
  189. .uuidString
  190. ) // all fpus should only get ONE id per batch insert to be able to delete them referencing the fpuID
  191. var entrySlice = ArraySlice(entries) // convert to ArraySlice
  192. let batchInsert = NSBatchInsertRequest(entity: CarbEntryStored.entity()) { (managedObject: NSManagedObject) -> Bool in
  193. guard let carbEntry = managedObject as? CarbEntryStored, let entry = entrySlice.popFirst(),
  194. let entryId = entry.id
  195. else {
  196. return true // return true to stop
  197. }
  198. carbEntry.date = entry.actualDate
  199. carbEntry.carbs = Double(truncating: NSDecimalNumber(decimal: entry.carbs))
  200. carbEntry.id = UUID.init(uuidString: entryId)
  201. carbEntry.fpuID = commonFPUID
  202. carbEntry.isFPU = true
  203. carbEntry.isUploadedToNS = areFetchedFromRemote ? true : false
  204. // do NOT set Health and Tidepool flags to ensure they will NOT be uploaded
  205. return false // return false to continue
  206. }
  207. await coredataContext.perform {
  208. do {
  209. try self.coredataContext.execute(batchInsert)
  210. debugPrint("Carbs Storage: \(DebuggingIdentifiers.succeeded) saved fpus to core data")
  211. // Notify subscriber in Home State Model to update the FPU Array
  212. self.updateSubject.send(())
  213. } catch {
  214. debugPrint("Carbs Storage: \(DebuggingIdentifiers.failed) error while saving fpus to core data")
  215. }
  216. }
  217. }
  218. func syncDate() -> Date {
  219. Date().addingTimeInterval(-1.days.timeInterval)
  220. }
  221. func recent() -> [CarbsEntry] {
  222. storage.retrieve(OpenAPS.Monitor.carbHistory, as: [CarbsEntry].self)?.reversed() ?? []
  223. }
  224. func deleteCarbs(_ treatmentObjectID: NSManagedObjectID) async {
  225. let taskContext = CoreDataStack.shared.newTaskContext()
  226. taskContext.name = "deleteContext"
  227. taskContext.transactionAuthor = "deleteCarbs"
  228. var carbEntry: CarbEntryStored?
  229. await taskContext.perform {
  230. do {
  231. carbEntry = try taskContext.existingObject(with: treatmentObjectID) as? CarbEntryStored
  232. guard let carbEntry = carbEntry else {
  233. debugPrint("Carb entry for batch delete not found. \(DebuggingIdentifiers.failed)")
  234. return
  235. }
  236. if carbEntry.isFPU, let fpuID = carbEntry.fpuID {
  237. // fetch request for all carb entries with the same id
  238. let fetchRequest: NSFetchRequest<NSFetchRequestResult> = CarbEntryStored.fetchRequest()
  239. fetchRequest.predicate = NSPredicate(format: "fpuID == %@", fpuID as CVarArg)
  240. // NSBatchDeleteRequest
  241. let deleteRequest = NSBatchDeleteRequest(fetchRequest: fetchRequest)
  242. deleteRequest.resultType = .resultTypeCount
  243. // execute the batch delete request
  244. let result = try taskContext.execute(deleteRequest) as? NSBatchDeleteResult
  245. debugPrint("\(DebuggingIdentifiers.succeeded) Deleted \(result?.result ?? 0) items with FpuID \(fpuID)")
  246. // Notifiy subscribers of the batch delete
  247. self.updateSubject.send(())
  248. } else {
  249. taskContext.delete(carbEntry)
  250. guard taskContext.hasChanges else { return }
  251. try taskContext.save()
  252. debugPrint(
  253. "Data Table State: \(#function) \(DebuggingIdentifiers.succeeded) deleted carb entry from core data"
  254. )
  255. }
  256. } catch {
  257. debugPrint("\(DebuggingIdentifiers.failed) Error deleting carb entry: \(error.localizedDescription)")
  258. }
  259. }
  260. }
  261. func deleteCarbs(at uniqueID: String, fpuID: String, complex: Bool) {
  262. processQueue.sync {
  263. var allValues = storage.retrieve(OpenAPS.Monitor.carbHistory, as: [CarbsEntry].self) ?? []
  264. if fpuID != "" {
  265. if allValues.firstIndex(where: { $0.fpuID == fpuID }) == nil {
  266. debug(.default, "Didn't find any carb equivalents to delete. ID to search for: " + fpuID.description)
  267. } else {
  268. allValues.removeAll(where: { $0.fpuID == fpuID })
  269. storage.save(allValues, as: OpenAPS.Monitor.carbHistory)
  270. broadcaster.notify(CarbsObserver.self, on: processQueue) {
  271. $0.carbsDidUpdate(allValues)
  272. }
  273. }
  274. }
  275. if fpuID == "" || complex {
  276. if allValues.firstIndex(where: { $0.id == uniqueID }) == nil {
  277. debug(.default, "Didn't find any carb entries to delete. ID to search for: " + uniqueID.description)
  278. } else {
  279. allValues.removeAll(where: { $0.id == uniqueID })
  280. storage.save(allValues, as: OpenAPS.Monitor.carbHistory)
  281. broadcaster.notify(CarbsObserver.self, on: processQueue) {
  282. $0.carbsDidUpdate(allValues)
  283. }
  284. }
  285. }
  286. }
  287. }
  288. func getCarbsNotYetUploadedToNightscout() async -> [NightscoutTreatment] {
  289. let results = await CoreDataStack.shared.fetchEntitiesAsync(
  290. ofType: CarbEntryStored.self,
  291. onContext: coredataContext,
  292. predicate: NSPredicate.carbsNotYetUploadedToNightscout,
  293. key: "date",
  294. ascending: false
  295. )
  296. guard let carbEntries = results as? [CarbEntryStored] else {
  297. return []
  298. }
  299. return await coredataContext.perform {
  300. return carbEntries.map { result in
  301. NightscoutTreatment(
  302. duration: nil,
  303. rawDuration: nil,
  304. rawRate: nil,
  305. absolute: nil,
  306. rate: nil,
  307. eventType: .nsCarbCorrection,
  308. createdAt: result.date,
  309. enteredBy: CarbsEntry.manual,
  310. bolus: nil,
  311. insulin: nil,
  312. notes: result.note,
  313. carbs: Decimal(result.carbs),
  314. fat: Decimal(result.fat),
  315. protein: Decimal(result.protein),
  316. foodType: result.note,
  317. targetTop: nil,
  318. targetBottom: nil,
  319. id: result.id?.uuidString
  320. )
  321. }
  322. }
  323. }
  324. func getFPUsNotYetUploadedToNightscout() async -> [NightscoutTreatment] {
  325. let results = await CoreDataStack.shared.fetchEntitiesAsync(
  326. ofType: CarbEntryStored.self,
  327. onContext: coredataContext,
  328. predicate: NSPredicate.fpusNotYetUploadedToNightscout,
  329. key: "date",
  330. ascending: false
  331. )
  332. guard let fpuEntries = results as? [CarbEntryStored] else { return [] }
  333. return await coredataContext.perform {
  334. return fpuEntries.map { result in
  335. NightscoutTreatment(
  336. duration: nil,
  337. rawDuration: nil,
  338. rawRate: nil,
  339. absolute: nil,
  340. rate: nil,
  341. eventType: .nsCarbCorrection,
  342. createdAt: result.date,
  343. enteredBy: CarbsEntry.manual,
  344. bolus: nil,
  345. insulin: nil,
  346. carbs: Decimal(result.carbs),
  347. fat: Decimal(result.fat),
  348. protein: Decimal(result.protein),
  349. foodType: result.note,
  350. targetTop: nil,
  351. targetBottom: nil,
  352. id: result.fpuID?.uuidString
  353. )
  354. }
  355. }
  356. }
  357. func getCarbsNotYetUploadedToHealth() async -> [CarbsEntry] {
  358. let results = await CoreDataStack.shared.fetchEntitiesAsync(
  359. ofType: CarbEntryStored.self,
  360. onContext: coredataContext,
  361. predicate: NSPredicate.carbsNotYetUploadedToHealth,
  362. key: "date",
  363. ascending: false
  364. )
  365. guard let carbEntries = results as? [CarbEntryStored] else {
  366. return []
  367. }
  368. return await coredataContext.perform {
  369. return carbEntries.map { result in
  370. CarbsEntry(
  371. id: result.id?.uuidString,
  372. createdAt: result.date ?? Date(),
  373. actualDate: result.date,
  374. carbs: Decimal(result.carbs),
  375. fat: Decimal(result.fat),
  376. protein: Decimal(result.protein),
  377. note: result.note,
  378. enteredBy: CarbsEntry.manual,
  379. isFPU: result.isFPU,
  380. fpuID: result.fpuID?.uuidString
  381. )
  382. }
  383. }
  384. }
  385. func getCarbsNotYetUploadedToTidepool() async -> [CarbsEntry] {
  386. let results = await CoreDataStack.shared.fetchEntitiesAsync(
  387. ofType: CarbEntryStored.self,
  388. onContext: coredataContext,
  389. predicate: NSPredicate.carbsNotYetUploadedToTidepool,
  390. key: "date",
  391. ascending: false
  392. )
  393. guard let carbEntries = results as? [CarbEntryStored] else {
  394. return []
  395. }
  396. return await coredataContext.perform {
  397. return carbEntries.map { result in
  398. CarbsEntry(
  399. id: result.id?.uuidString,
  400. createdAt: result.date ?? Date(),
  401. actualDate: result.date,
  402. carbs: Decimal(result.carbs),
  403. fat: nil,
  404. protein: nil,
  405. note: result.note,
  406. enteredBy: CarbsEntry.manual,
  407. isFPU: nil,
  408. fpuID: nil
  409. )
  410. }
  411. }
  412. }
  413. }