ForecastChart.swift 9.5 KB

123456789101112131415161718192021222324252627282930313233343536373839404142434445464748495051525354555657585960616263646566676869707172737475767778798081828384858687888990919293949596979899100101102103104105106107108109110111112113114115116117118119120121122123124125126127128129130131132133134135136137138139140141142143144145146147148149150151152153154155156157158159160161162163164165166167168169170171172173174175176177178179180181182183184185186187188189190191192193194195196197198199200201202203204205206207208209210211212213214215216217218219220221222223224225226227228229230231232233234235236237238239240241242243244245246247248249250251252253
  1. import Charts
  2. import CoreData
  3. import Foundation
  4. import SwiftUI
  5. struct ForecastChart: View {
  6. @StateObject var state: Bolus.StateModel
  7. @Environment(\.colorScheme) var colorScheme
  8. @Binding var units: GlucoseUnits
  9. @State private var startMarker = Date(timeIntervalSinceNow: -4 * 60 * 60)
  10. private var endMarker: Date {
  11. state
  12. .forecastDisplayType == .lines ? Date(timeIntervalSinceNow: TimeInterval(hours: 3)) :
  13. Date(timeIntervalSinceNow: TimeInterval(
  14. Int(1.5) * 5 * state
  15. .minCount * 60
  16. )) // min is 1.5h -> (1.5*1h = 1.5*(5*12*60))
  17. }
  18. private var glucoseFormatter: NumberFormatter {
  19. let formatter = NumberFormatter()
  20. formatter.numberStyle = .decimal
  21. if units == .mmolL {
  22. formatter.maximumFractionDigits = 1
  23. formatter.minimumFractionDigits = 1
  24. formatter.roundingMode = .halfUp
  25. } else {
  26. formatter.maximumFractionDigits = 0
  27. }
  28. return formatter
  29. }
  30. var body: some View {
  31. VStack {
  32. forecastChartLabels
  33. .padding(.bottom, 8)
  34. forecastChart
  35. }
  36. }
  37. private var forecastChartLabels: some View {
  38. HStack {
  39. HStack {
  40. Image(systemName: "fork.knife")
  41. Text("\(state.carbs.description) g")
  42. }
  43. .font(.footnote)
  44. .foregroundStyle(.orange)
  45. .padding(8)
  46. .background {
  47. RoundedRectangle(cornerRadius: 10)
  48. .fill(Color.orange.opacity(0.2))
  49. }
  50. Spacer()
  51. HStack {
  52. Image(systemName: "syringe.fill")
  53. Text("\(state.amount.description) U")
  54. }
  55. .font(.footnote)
  56. .foregroundStyle(.blue)
  57. .padding(8)
  58. .background {
  59. RoundedRectangle(cornerRadius: 10)
  60. .fill(Color.blue.opacity(0.2))
  61. }
  62. Spacer()
  63. HStack {
  64. Image(systemName: "arrow.right.circle")
  65. if let simulatedDetermination = state.simulatedDetermination, let eventualBG = simulatedDetermination.eventualBG {
  66. HStack {
  67. Text(
  68. (units == .mgdL ? Decimal(eventualBG).description : eventualBG.formattedAsMmolL) + units.rawValue
  69. )
  70. }
  71. } else {
  72. Text("---")
  73. }
  74. }
  75. .font(.footnote)
  76. .foregroundStyle(.primary)
  77. .padding(8)
  78. .background {
  79. RoundedRectangle(cornerRadius: 10)
  80. .fill(Color.primary.opacity(0.2))
  81. }
  82. }
  83. }
  84. private var forecastChart: some View {
  85. Chart {
  86. drawGlucose()
  87. drawCurrentTimeMarker()
  88. if state.forecastDisplayType == .lines {
  89. drawForecastLines()
  90. } else {
  91. drawForecastsCone()
  92. }
  93. }
  94. .chartXAxis { forecastChartXAxis }
  95. .chartXScale(domain: startMarker ... endMarker)
  96. .chartYAxis { forecastChartYAxis }
  97. .chartYScale(domain: units == .mgdL ? 0 ... 300 : 0.asMmolL ... 300.asMmolL)
  98. .backport.chartForegroundStyleScale(state: state)
  99. }
  100. private func drawGlucose() -> some ChartContent {
  101. ForEach(state.glucoseFromPersistence) { item in
  102. let glucoseToDisplay = state.units == .mgdL ? Decimal(item.glucose) : Decimal(item.glucose).asMmolL
  103. // low and high glucose is parsed in state to mmol/L; parse it back to mg/dl here for comparison
  104. let lowGlucose = units == .mgdL ? state.lowGlucose : state.lowGlucose.asMgdL
  105. let highGlucose = units == .mgdL ? state.highGlucose : state.highGlucose.asMgdL
  106. let targetGlucose = (state.determination.first?.currentTarget ?? state.currentBGTarget as NSDecimalNumber) as Decimal
  107. let pointMarkColor: Color = FreeAPS.getDynamicGlucoseColor(
  108. glucoseValue: Decimal(item.glucose),
  109. highGlucoseColorValue: highGlucose,
  110. lowGlucoseColorValue: lowGlucose,
  111. targetGlucose: targetGlucose,
  112. glucoseColorScheme: state.glucoseColorScheme,
  113. offset: 20
  114. )
  115. if !state.isSmoothingEnabled {
  116. PointMark(
  117. x: .value("Time", item.date ?? Date(), unit: .second),
  118. y: .value("Value", glucoseToDisplay)
  119. )
  120. .foregroundStyle(pointMarkColor)
  121. .symbolSize(18)
  122. } else {
  123. PointMark(
  124. x: .value("Time", item.date ?? Date(), unit: .second),
  125. y: .value("Value", glucoseToDisplay)
  126. )
  127. .symbol {
  128. Image(systemName: "record.circle.fill")
  129. .font(.system(size: 6))
  130. .bold()
  131. .foregroundStyle(pointMarkColor)
  132. }
  133. }
  134. }
  135. }
  136. private func timeForIndex(_ index: Int32) -> Date {
  137. let currentTime = Date()
  138. let timeInterval = TimeInterval(index * 300)
  139. return currentTime.addingTimeInterval(timeInterval)
  140. }
  141. private func drawForecastsCone() -> some ChartContent {
  142. // Draw AreaMark for the forecast bounds
  143. ForEach(0 ..< max(state.minForecast.count, state.maxForecast.count), id: \.self) { index in
  144. if index < state.minForecast.count, index < state.maxForecast.count {
  145. let yMinMaxDelta = Decimal(state.minForecast[index] - state.maxForecast[index])
  146. let xValue = timeForIndex(Int32(index))
  147. // if distance between respective min and max is 0, provide a default range
  148. if yMinMaxDelta == 0 {
  149. let yMinValue = units == .mgdL ? Decimal(state.minForecast[index] - 1) :
  150. Decimal(state.minForecast[index] - 1)
  151. .asMmolL
  152. let yMaxValue = units == .mgdL ? Decimal(state.minForecast[index] + 1) :
  153. Decimal(state.minForecast[index] + 1)
  154. .asMmolL
  155. AreaMark(
  156. x: .value("Time", xValue <= endMarker ? xValue : endMarker),
  157. yStart: .value("Min Value", units == .mgdL ? yMinValue : yMinValue.asMmolL),
  158. yEnd: .value("Max Value", units == .mgdL ? yMaxValue : yMaxValue.asMmolL)
  159. )
  160. .foregroundStyle(Color.blue.opacity(0.5))
  161. .interpolationMethod(.catmullRom)
  162. } else {
  163. let yMinValue = Decimal(state.minForecast[index]) <= 300 ? Decimal(state.minForecast[index]) : Decimal(300)
  164. let yMaxValue = Decimal(state.maxForecast[index]) <= 300 ? Decimal(state.maxForecast[index]) : Decimal(300)
  165. AreaMark(
  166. x: .value("Time", timeForIndex(Int32(index)) <= endMarker ? timeForIndex(Int32(index)) : endMarker),
  167. yStart: .value("Min Value", units == .mgdL ? yMinValue : yMinValue.asMmolL),
  168. yEnd: .value("Max Value", units == .mgdL ? yMaxValue : yMaxValue.asMmolL)
  169. )
  170. .foregroundStyle(Color.blue.opacity(0.5))
  171. .interpolationMethod(.catmullRom)
  172. }
  173. }
  174. }
  175. }
  176. private func drawForecastLines() -> some ChartContent {
  177. let predictions = state.predictionsForChart
  178. // Prepare the prediction data with only the first 36 values, i.e. 3 hours in the future
  179. let predictionData = [
  180. ("iob", predictions?.iob?.prefix(36)),
  181. ("zt", predictions?.zt?.prefix(36)),
  182. ("cob", predictions?.cob?.prefix(36)),
  183. ("uam", predictions?.uam?.prefix(36))
  184. ]
  185. return ForEach(predictionData, id: \.0) { name, values in
  186. if let values = values {
  187. ForEach(values.indices, id: \.self) { index in
  188. LineMark(
  189. x: .value("Time", timeForIndex(Int32(index))),
  190. y: .value("Value", units == .mgdL ? Decimal(values[index]) : Decimal(values[index]).asMmolL)
  191. )
  192. .foregroundStyle(by: .value("Prediction Type", name))
  193. }
  194. }
  195. }
  196. }
  197. private func drawCurrentTimeMarker() -> some ChartContent {
  198. RuleMark(
  199. x: .value(
  200. "",
  201. Date(timeIntervalSince1970: TimeInterval(NSDate().timeIntervalSince1970)),
  202. unit: .second
  203. )
  204. ).lineStyle(.init(lineWidth: 2, dash: [3])).foregroundStyle(Color(.systemGray2))
  205. }
  206. private var forecastChartXAxis: some AxisContent {
  207. AxisMarks(values: .stride(by: .hour, count: 2)) { _ in
  208. AxisGridLine(stroke: .init(lineWidth: 0.5, dash: [2, 3]))
  209. AxisValueLabel(format: .dateTime.hour(.defaultDigits(amPM: .narrow)), anchor: .top)
  210. .font(.caption2)
  211. .foregroundStyle(Color.secondary)
  212. }
  213. }
  214. private var forecastChartYAxis: some AxisContent {
  215. AxisMarks(position: .trailing) { _ in
  216. AxisGridLine(stroke: .init(lineWidth: 0.5, dash: [2, 3]))
  217. AxisTick(length: 3, stroke: .init(lineWidth: 3)).foregroundStyle(Color.secondary)
  218. AxisValueLabel().font(.caption2).foregroundStyle(Color.secondary)
  219. }
  220. }
  221. }