neck_active_habit.go 12 KB

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  1. package model
  2. import (
  3. "fmt"
  4. "kpt-pasture/util"
  5. "math"
  6. "strconv"
  7. "strings"
  8. pasturePb "gitee.com/xuyiping_admin/go_proto/proto/go/backend/cow"
  9. )
  10. const (
  11. InitChangeFilter = -10000
  12. DefaultChangeFilter = -99
  13. DefaultRuminaFilter = -99
  14. DefaultChewFilter = -99
  15. DefaultFilterCorrect = 100
  16. DefaultWeeklyActive = 1500
  17. DefaultRecordCount = 6
  18. )
  19. type NeckActiveHabit struct {
  20. Id int64 `json:"id"`
  21. PastureId int64 `json:"pastureId"`
  22. NeckRingNumber string `json:"neckRingNumber"`
  23. CowId int64 `json:"cowId"`
  24. EarNumber string `json:"earNumber"`
  25. Lact int32 `json:"lact"`
  26. CalvingAge int32 `json:"calvingAge"`
  27. ActiveTime string `json:"activeTime"`
  28. Frameid int32 `json:"frameid"`
  29. HeatDate string `json:"heatDate"`
  30. Rumina int32 `json:"rumina"`
  31. Intake int32 `json:"intake"`
  32. Inactive int32 `json:"inactive"`
  33. Gasp int32 `json:"gasp"`
  34. Other int32 `json:"other"`
  35. High int32 `json:"high"`
  36. Active int32 `json:"active"`
  37. FilterHigh int32 `json:"filterHigh"`
  38. FilterRumina int32 `json:"filterRumina"`
  39. FilterChew int32 `json:"filterChew"`
  40. WeekHigh int32 `json:"weekHigh"`
  41. HighHabit int32 `json:"highHabit"`
  42. RuminaHabit int32 `json:"ruminaHabit"`
  43. IntakeHabit int32 `json:"intakeHabit"`
  44. ChewHabit int32 `json:"chewHabit"`
  45. InactiveHabit int32 `json:"inactiveHabit"`
  46. OtherHabit int32 `json:"otherHabit"`
  47. ChangeHigh int32 `json:"changeHigh"`
  48. ChangeRumina int32 `json:"changeRumina"`
  49. ChangeChew int32 `json:"changeChew"`
  50. ChangeAdjust int32 `json:"changeAdjust"`
  51. ChangeFilter int32 `json:"changeFilter"`
  52. RuminaFilter int32 `json:"ruminaFilter"`
  53. ChewFilter int32 `json:"chewFilter"`
  54. FilterCorrect int32 `json:"filterCorrect"`
  55. SumRumina int32 `json:"sumRumina"`
  56. SumIntake int32 `json:"sumIntake"`
  57. SumInactive int32 `json:"sumInactive"`
  58. SumActive int32 `json:"sumActive"`
  59. SumMinHigh int32 `json:"sumMinHigh"`
  60. SumMaxHigh int32 `json:"sumMaxHigh"`
  61. SumMinChew int32 `json:"SumMinChew"`
  62. BeforeThreeSumRumina int32 `json:"beforeThreeSumRumina"`
  63. BeforeThreeSumIntake int32 `json:"beforeThreeSumIntake"`
  64. Score int32 `json:"score"`
  65. IsShow pasturePb.IsShow_Kind `json:"isShow"`
  66. Cft float32 `json:"cft"`
  67. RecordCount int32 `json:"recordCount"`
  68. FirmwareVersion int32 `json:"firmwareVersion"`
  69. CreatedAt int64 `json:"createdAt"`
  70. UpdatedAt int64 `json:"updatedAt"`
  71. }
  72. func (n *NeckActiveHabit) UnShardTableName() string {
  73. return "neck_active_habit"
  74. }
  75. /*func (n *NeckActiveHabit) TableName() string {
  76. return fmt.Sprintf("%s_%06d", n.UnShardTableName(), n.PastureId)
  77. }*/
  78. func (n *NeckActiveHabit) TableName() string {
  79. return "neck_active_habit"
  80. }
  81. func (n *NeckActiveHabit) SumAvg() {
  82. n.Rumina = n.Rumina / n.RecordCount * n.RecordCount
  83. n.Inactive = n.Inactive / n.RecordCount * n.RecordCount
  84. n.Active = n.Active / n.RecordCount * n.RecordCount
  85. n.Intake = n.Intake / n.RecordCount * n.RecordCount
  86. n.Other = n.Other / n.RecordCount * n.RecordCount
  87. n.Gasp = n.Gasp / n.RecordCount * n.RecordCount
  88. n.High = n.High / n.RecordCount * n.RecordCount
  89. }
  90. func (n *NeckActiveHabit) UpdateIsShowOk() {
  91. n.IsShow = pasturePb.IsShow_Ok
  92. }
  93. func NewNeckActiveHabit(data *NeckRingOriginalMerge) *NeckActiveHabit {
  94. return &NeckActiveHabit{
  95. PastureId: data.PastureId,
  96. Frameid: data.XframeId,
  97. HeatDate: data.ActiveDate,
  98. NeckRingNumber: data.NeckRingNumber,
  99. Active: data.Active,
  100. Gasp: data.Gasp,
  101. High: data.High,
  102. Inactive: data.Inactive,
  103. Intake: data.Intake,
  104. Other: data.Other,
  105. Rumina: data.Rumina,
  106. IsShow: data.IsShow,
  107. WeekHigh: DefaultWeeklyActive,
  108. ChangeFilter: InitChangeFilter,
  109. FilterCorrect: InitChangeFilter,
  110. RuminaFilter: InitChangeFilter,
  111. ChewFilter: InitChangeFilter,
  112. ActiveTime: fmt.Sprintf("%s %02d:00:00", data.ActiveDate, data.XframeId*2+1),
  113. RecordCount: data.RecordCount,
  114. FirmwareVersion: data.FirmwareVersion,
  115. }
  116. }
  117. type NeckActiveHabitSlice []*NeckActiveHabit
  118. func (n NeckActiveHabitSlice) Len() int { return len(n) }
  119. func (n NeckActiveHabitSlice) Swap(i, j int) { n[i], n[j] = n[j], n[i] }
  120. func (n NeckActiveHabitSlice) Less(i, j int) bool {
  121. if n[i].HeatDate != n[j].HeatDate {
  122. return n[i].HeatDate < n[j].HeatDate
  123. }
  124. return n[i].Frameid < n[j].Frameid
  125. }
  126. func (n NeckActiveHabitSlice) ToPB(curveName string) *CowBehaviorCurveData {
  127. res := &CowBehaviorCurveData{
  128. OriginalDateList: make([]int32, 0),
  129. ChangeDateList: make([]int32, 0),
  130. SumDateList: make([]int32, 0),
  131. DateTimeList: make([]string, 0),
  132. EstrusList: make(map[pasturePb.EstrusLevel_Kind][]string),
  133. EventList: make([]*pasturePb.CowEvent, 0),
  134. EventMap: make(map[pasturePb.EventType_Kind]string),
  135. RuminaChange: make([]int32, 0),
  136. IQR1: make([]int32, 0),
  137. IQR3: make([]int32, 0),
  138. }
  139. initFrameId := int32(0)
  140. dateFrameMap := make(map[string][]int32)
  141. for _, v := range n {
  142. if dateFrameMap[v.HeatDate] == nil {
  143. initFrameId = 0
  144. dateFrameMap[v.HeatDate] = make([]int32, 0)
  145. }
  146. // 补全结尾不够的数据
  147. if initFrameId == 0 && len(res.DateTimeList) > 0 {
  148. lastDateTime := res.DateTimeList[len(res.DateTimeList)-1]
  149. lastDatePare := strings.Split(lastDateTime, " ")
  150. if len(lastDatePare) == 2 {
  151. lastDay := lastDatePare[0]
  152. lastHourStr := lastDatePare[1]
  153. lastHour, _ := strconv.ParseInt(lastHourStr, 10, 64)
  154. maxHour := util.ExpectedFrameIDs[len(util.ExpectedFrameIDs)-1]
  155. xframeId := int32(lastHour-1)/2 + 1
  156. if xframeId != maxHour {
  157. for ; xframeId <= maxHour; xframeId++ {
  158. res.DateTimeList = append(res.DateTimeList, fmt.Sprintf("%s %02d", lastDay, util.ExpectedFrameIDs[xframeId]*2+1))
  159. res.OriginalDateList = append(res.OriginalDateList, 0)
  160. res.ChangeDateList = append(res.ChangeDateList, 0)
  161. res.SumDateList = append(res.SumDateList, 0)
  162. res.RuminaChange = append(res.RuminaChange, 0)
  163. res.SumChewList = append(res.SumChewList, 0)
  164. }
  165. }
  166. }
  167. }
  168. expectedFrameId := util.ExpectedFrameIDs[initFrameId]
  169. if expectedFrameId != v.Frameid {
  170. maxFrameId := int32(math.Abs(float64(expectedFrameId - v.Frameid)))
  171. for ; expectedFrameId < maxFrameId; expectedFrameId++ {
  172. res.DateTimeList = append(res.DateTimeList, fmt.Sprintf("%s %02d", v.HeatDate, util.ExpectedFrameIDs[expectedFrameId]*2+1))
  173. res.OriginalDateList = append(res.OriginalDateList, 0)
  174. res.ChangeDateList = append(res.ChangeDateList, 0)
  175. res.SumDateList = append(res.SumDateList, 0)
  176. res.RuminaChange = append(res.RuminaChange, 0)
  177. res.SumChewList = append(res.SumChewList, 0)
  178. }
  179. initFrameId = expectedFrameId
  180. }
  181. // 格式化为到小时的字符串
  182. parsedTime, _ := util.TimeParseLocal(LayoutTime, v.ActiveTime)
  183. hourStr := parsedTime.Format(LayoutHour)
  184. res.DateTimeList = append(res.DateTimeList, hourStr)
  185. switch curveName {
  186. case "active": // 活动量
  187. changeDateList := v.ChangeFilter * v.FilterCorrect / 100
  188. if changeDateList == DefaultChangeFilter {
  189. changeDateList = 0
  190. }
  191. res.OriginalDateList = append(res.OriginalDateList, v.High)
  192. res.ChangeDateList = append(res.ChangeDateList, changeDateList)
  193. res.RuminaChange = append(res.RuminaChange, v.RuminaFilter)
  194. case "rumina": // 反刍
  195. res.OriginalDateList = append(res.OriginalDateList, v.Rumina)
  196. res.ChangeDateList = append(res.ChangeDateList, v.RuminaFilter)
  197. res.SumDateList = append(res.SumDateList, v.SumRumina)
  198. res.SumChewList = append(res.SumChewList, v.SumRumina+v.SumIntake)
  199. case "intake": // 采食
  200. res.OriginalDateList = append(res.OriginalDateList, v.Intake)
  201. res.SumDateList = append(res.SumDateList, v.SumIntake)
  202. res.SumChewList = append(res.SumChewList, v.SumRumina+v.SumIntake)
  203. case "inactive": // 休息
  204. res.OriginalDateList = append(res.OriginalDateList, v.Inactive)
  205. res.SumDateList = append(res.SumDateList, v.SumInactive)
  206. case "chew": // 咀嚼
  207. res.OriginalDateList = append(res.OriginalDateList, v.Rumina+v.Intake)
  208. res.ChangeDateList = append(res.ChangeDateList, v.ChewFilter)
  209. res.SumDateList = append(res.SumDateList, v.SumRumina+v.SumIntake)
  210. case "immobility": // 静止
  211. res.OriginalDateList = append(res.OriginalDateList, 120-v.Active)
  212. res.SumDateList = append(res.SumDateList, 60*24-v.SumActive)
  213. }
  214. initFrameId++
  215. }
  216. return res
  217. }
  218. func (n NeckActiveHabitSlice) ToPB2(dataBetween []string, groupNeckActiveHabitList []*NeckActiveHabit) *pasturePb.CowBehaviorRateData {
  219. data := &pasturePb.CowBehaviorRateData{
  220. DateTime: dataBetween,
  221. RuminaRate: make([]float32, 0),
  222. IntakeRate: make([]float32, 0),
  223. InactiveRate: make([]float32, 0),
  224. GaspRate: make([]float32, 0),
  225. }
  226. neckActiveHabitMap := make(map[string]*NeckActiveHabit)
  227. for _, v := range n {
  228. if v.HeatDate == "" {
  229. continue
  230. }
  231. if _, ok := neckActiveHabitMap[v.HeatDate]; !ok {
  232. neckActiveHabitMap[v.HeatDate] = v
  233. }
  234. }
  235. groupNeckActiveHabitMap := make(map[string]*NeckActiveHabit)
  236. for _, v := range groupNeckActiveHabitList {
  237. if v.HeatDate == "" {
  238. continue
  239. }
  240. if _, ok := groupNeckActiveHabitMap[v.HeatDate]; !ok {
  241. groupNeckActiveHabitMap[v.HeatDate] = v
  242. }
  243. }
  244. for _, t := range dataBetween {
  245. ruminaRate, intakeRate, inactiveRate, gaspRate := float32(0), float32(0), float32(0), float32(0)
  246. if v, ok := neckActiveHabitMap[t]; ok {
  247. sum := v.Rumina + v.Intake + v.Inactive + v.Gasp
  248. if sum > 0 {
  249. // 保留小数点后两位
  250. ruminaRate = float32(math.Round(float64(v.Rumina)/float64(sum)*100) / 100)
  251. intakeRate = float32(math.Round(float64(v.Intake)/float64(sum)*100) / 100)
  252. inactiveRate = float32(math.Round(float64(v.Inactive)/float64(sum)*100) / 100)
  253. gaspRate = float32(math.Round(float64(v.Gasp)/float64(sum)*100) / 100)
  254. }
  255. }
  256. data.RuminaRate = append(data.RuminaRate, ruminaRate)
  257. data.IntakeRate = append(data.IntakeRate, intakeRate)
  258. data.InactiveRate = append(data.InactiveRate, inactiveRate)
  259. data.GaspRate = append(data.GaspRate, gaspRate)
  260. groupRuminaRate, groupIntakeRate, groupInactiveRate, groupGaspRate := float32(0), float32(0), float32(0), float32(0)
  261. if v, ok := groupNeckActiveHabitMap[t]; ok {
  262. groupSum := v.Rumina + v.Intake + v.Inactive + v.Gasp
  263. if groupSum > 0 {
  264. // 保留小数点后两位
  265. groupRuminaRate = float32(math.Round(float64(v.Rumina)/float64(groupSum)*100) / 100)
  266. groupIntakeRate = float32(math.Round(float64(v.Intake)/float64(groupSum)*100) / 100)
  267. groupInactiveRate = float32(math.Round(float64(v.Inactive)/float64(groupSum)*100) / 100)
  268. groupGaspRate = float32(math.Round(float64(v.Gasp)/float64(groupSum)*100) / 100)
  269. }
  270. }
  271. data.GroupRuminaRate = append(data.GroupRuminaRate, groupRuminaRate)
  272. data.GroupIntakeRate = append(data.GroupIntakeRate, groupIntakeRate)
  273. data.GroupInactiveRate = append(data.GroupInactiveRate, groupInactiveRate)
  274. data.GroupGaspRate = append(data.GroupGaspRate, groupGaspRate)
  275. }
  276. return data
  277. }
  278. type MaxHabitIdModel struct {
  279. Id int64 `json:"id"`
  280. }
  281. type WeeklyActiveModel struct {
  282. CowId int64 `json:"cow_id"`
  283. HeatDate string `json:"heat_date"`
  284. Nb int32 `json:"nb"`
  285. High int32 `json:"high"`
  286. }