cron.go 8.2 KB

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  1. package item
  2. import (
  3. "net"
  4. "server/dao"
  5. "server/global"
  6. "server/modbus"
  7. "server/model"
  8. "server/utils"
  9. "sort"
  10. "time"
  11. )
  12. type Cron struct {
  13. }
  14. // RelayOnOffTimeTask 定时开关 前提是 设备在线 否则失效
  15. func (c Cron) RelayOnOffTimeTask() {
  16. current := time.Now().Format("15:04")
  17. devices, err := dao.GetOnlineDevices()
  18. if err != nil {
  19. return
  20. }
  21. relayMap := make(map[string]map[int]int)
  22. for _, d := range devices {
  23. tmp, isExist := relayMap[d.Ip]
  24. if !isExist { // 回路id 回路状态
  25. tmp = make(map[int]int)
  26. }
  27. relays := d.DeviceLoops
  28. rcTime, rlTime, err := utils.SunriseSunsetForChina(28.23, 113.05)
  29. if err != nil {
  30. global.GVA_LOG.Error("日出日落转换错误" + err.Error())
  31. rcTime = "06:00"
  32. rlTime = "18:00"
  33. }
  34. for _, r := range relays {
  35. //日出日落时间
  36. if r.TimeCondition1OnTime == "日出" {
  37. r.TimeCondition1OnTime = rcTime
  38. } else if r.TimeCondition1OnTime == "日落" {
  39. r.TimeCondition1OnTime = rlTime
  40. }
  41. if r.TimeCondition1OffTime == "日出" {
  42. r.TimeCondition1OffTime = rcTime
  43. } else if r.TimeCondition1OffTime == "日落" {
  44. r.TimeCondition1OffTime = rlTime
  45. }
  46. if r.TimeCondition2OnTime == "日出" {
  47. r.TimeCondition2OnTime = rcTime
  48. } else if r.TimeCondition2OnTime == "日落" {
  49. r.TimeCondition2OnTime = rlTime
  50. }
  51. if r.TimeCondition2OffTime == "日出" {
  52. r.TimeCondition2OffTime = rcTime
  53. } else if r.TimeCondition2OffTime == "日落" {
  54. r.TimeCondition2OffTime = rlTime
  55. }
  56. isTiming := 0 // 用来判断该设备的回路 是否定时
  57. //控制回路 时间判断 是否关闭 当前时间是否等与规定时间 规定时间到规定时间+10分钟
  58. //因为1分钟执行一次,所以会多次执行,则新加判断 如果数据库中状态和回路状态相同则不执行下去
  59. layout := "15:04"
  60. rTimeCondition1OnTime, _ := time.Parse(layout, r.TimeCondition1OnTime)
  61. rTimeCondition1OffTime, _ := time.Parse(layout, r.TimeCondition1OffTime)
  62. rTimeCondition2OnTime, _ := time.Parse(layout, r.TimeCondition2OnTime)
  63. rTimeCondition2OffTime, _ := time.Parse(layout, r.TimeCondition2OffTime)
  64. rCurrent, _ := time.Parse(layout, current)
  65. if r.TimeCondition1OnTime != "关闭" &&
  66. (r.TimeCondition1OnTime == current ||
  67. (rCurrent.Before(rTimeCondition1OnTime.Add(11*time.Minute)) && rCurrent.After(rTimeCondition1OnTime))) {
  68. tmp[int(r.ID)] = 1
  69. isTiming = 1
  70. }
  71. if r.TimeCondition1OffTime != "关闭" && (r.TimeCondition1OffTime == current ||
  72. (rCurrent.Before(rTimeCondition1OffTime.Add(11*time.Minute)) && rCurrent.After(rTimeCondition1OffTime))) {
  73. tmp[int(r.ID)] = 0
  74. isTiming = 1
  75. }
  76. if r.TimeCondition2OnTime != "关闭" && (r.TimeCondition2OnTime == current ||
  77. (rCurrent.Before(rTimeCondition2OnTime.Add(11*time.Minute)) && rCurrent.After(rTimeCondition2OnTime))) {
  78. tmp[int(r.ID)] = 1
  79. isTiming = 1
  80. }
  81. if r.TimeCondition2OffTime != "关闭" && (r.TimeCondition2OffTime == current ||
  82. (rCurrent.Before(rTimeCondition2OffTime.Add(11*time.Minute)) && rCurrent.After(rTimeCondition2OffTime))) {
  83. tmp[int(r.ID)] = 0
  84. isTiming = 1
  85. }
  86. if isTiming == 1 {
  87. relayMap[d.Ip] = tmp
  88. }
  89. }
  90. }
  91. for key, value := range relayMap {
  92. dev, err := dao.QueryDeviceByIp(key)
  93. if err != nil {
  94. global.GVA_LOG.Error("GetDataByDeviceId err = " + err.Error())
  95. }
  96. for i, i2 := range value {
  97. data := modbus.DeviceLoopSwitch(i, i2)
  98. if conn1, ok := model.ConnectionMap1.Load(key); ok {
  99. // 成功找到连接
  100. netConn := conn1.(net.Conn)
  101. err := utils.WriteDevice(data, netConn)
  102. if err != nil {
  103. global.GVA_LOG.Error("定时控制 写命令错误: -- conn: " + err.Error() + netConn.RemoteAddr().String())
  104. return
  105. }
  106. time.Sleep(1 * time.Second)
  107. for j, loop := range dev.DeviceLoops {
  108. if loop.ID == uint(i) {
  109. dev.DeviceLoops[j].State = i2
  110. }
  111. }
  112. } else {
  113. // 没有找到对应的连接
  114. global.GVA_LOG.Error("定时Connection for key %s not found" + key)
  115. }
  116. }
  117. }
  118. }
  119. // DeviceAdjustment 设备调正
  120. func DeviceAdjustment(ip string) {
  121. dev, err := dao.QueryDeviceByIp(ip)
  122. if err != nil {
  123. global.GVA_LOG.Error("GetDataByDeviceId err = " + err.Error())
  124. }
  125. rcTime, rlTime, err := utils.SunriseSunsetForChina(28.23, 113.05)
  126. tmp := make(map[int]int)
  127. for _, relay := range dev.DeviceLoops {
  128. //日出日落时间
  129. if relay.TimeCondition1OnTime == "日出" {
  130. relay.TimeCondition1OnTime = rcTime
  131. } else if relay.TimeCondition1OnTime == "日落" {
  132. relay.TimeCondition1OnTime = rlTime
  133. }
  134. if relay.TimeCondition1OffTime == "日出" {
  135. relay.TimeCondition1OffTime = rcTime
  136. } else if relay.TimeCondition1OffTime == "日落" {
  137. relay.TimeCondition1OffTime = rlTime
  138. }
  139. if relay.TimeCondition2OnTime == "日出" {
  140. relay.TimeCondition2OnTime = rcTime
  141. } else if relay.TimeCondition2OnTime == "日落" {
  142. relay.TimeCondition2OnTime = rlTime
  143. }
  144. if relay.TimeCondition2OffTime == "日出" {
  145. relay.TimeCondition2OffTime = rcTime
  146. } else if relay.TimeCondition2OffTime == "日落" {
  147. relay.TimeCondition2OffTime = rlTime
  148. }
  149. if relay.TimeCondition1OffTime == "关闭" && relay.TimeCondition1OnTime == "关闭" && relay.TimeCondition2OffTime == "关闭" && relay.TimeCondition2OnTime == "关闭" {
  150. continue
  151. }
  152. state, err := ss(relay.TimeCondition1OnTime, relay.TimeCondition1OffTime, relay.TimeCondition2OnTime, relay.TimeCondition2OffTime)
  153. if err != nil {
  154. return
  155. }
  156. tmp[int(relay.ID)] = state
  157. }
  158. for i, i2 := range tmp {
  159. data := modbus.DeviceLoopSwitch(i, i2)
  160. if conn1, ok := model.ConnectionMap1.Load(ip); ok {
  161. // 成功找到连接
  162. netConn := conn1.(net.Conn)
  163. err := utils.WriteDevice(data, netConn)
  164. if err != nil {
  165. global.GVA_LOG.Error("定时控制 写命令错误: -- conn: " + err.Error() + netConn.RemoteAddr().String())
  166. return
  167. }
  168. time.Sleep(2 * time.Second)
  169. for j, loop := range dev.DeviceLoops {
  170. if loop.ID == uint(i) {
  171. dev.DeviceLoops[j].State = i2
  172. }
  173. }
  174. } else {
  175. // 没有找到对应的连接
  176. global.GVA_LOG.Error("重连Connection for key not found" + ip)
  177. }
  178. }
  179. return
  180. }
  181. const (
  182. Off = iota
  183. On
  184. )
  185. type TimeControl struct {
  186. start time.Time
  187. end time.Time
  188. state int
  189. }
  190. func getDeviceState(schedules []TimeControl, currentTime time.Time) int {
  191. for _, period := range schedules {
  192. now := time.Date(0, time.January, 1, currentTime.Hour(), currentTime.Minute(), currentTime.Second(), currentTime.Nanosecond(), time.UTC)
  193. start := time.Date(0, time.January, 1, period.start.Hour(), period.start.Minute(), period.start.Second(), period.start.Nanosecond(), time.UTC)
  194. end := time.Date(0, time.January, 1, period.end.Hour(), period.end.Minute(), period.end.Second(), period.end.Nanosecond(), time.UTC)
  195. if start.After(end) { // 跨越午夜
  196. if now.After(start) || now.Before(end) {
  197. return period.state
  198. }
  199. } else { // 不跨越午夜
  200. if now.After(start) && now.Before(end) {
  201. return period.state
  202. }
  203. }
  204. }
  205. return Off
  206. }
  207. func stateTransition(str string) int {
  208. if str == "on1" || str == "on2" {
  209. return On
  210. } else {
  211. return Off
  212. }
  213. }
  214. func ss(on1, off1, on2, off2 string) (int, error) {
  215. deviceRecoveryTime := time.Now()
  216. // 定义时间映射
  217. deviceTime := map[string]string{
  218. "on1": on1,
  219. "off1": off1,
  220. "on2": on2,
  221. "off2": off2,
  222. }
  223. // 创建一个切片存储时间
  224. var times []struct {
  225. key string
  226. value time.Time
  227. }
  228. // 将时间字符串解析为 time.Time 对象,并存入切片
  229. for key, value := range deviceTime {
  230. if value == "关闭" {
  231. continue
  232. }
  233. t, err := time.Parse("15:04", value)
  234. if err != nil {
  235. global.GVA_LOG.Error("时间转换失败!" + err.Error())
  236. return 0, err
  237. }
  238. times = append(times, struct {
  239. key string
  240. value time.Time
  241. }{key, t})
  242. }
  243. // 对时间进行排序
  244. sort.Slice(times, func(i, j int) bool {
  245. return times[i].value.Before(times[j].value)
  246. })
  247. var timeControls []TimeControl
  248. for i, _ := range times {
  249. if len(times) == i+1 {
  250. timeControls = append(timeControls, TimeControl{start: times[i].value, end: times[0].value.Add(24 * time.Hour), state: stateTransition(times[i].key)})
  251. continue
  252. }
  253. timeControls = append(timeControls, TimeControl{start: times[i].value, end: times[i+1].value, state: stateTransition(times[i].key)})
  254. }
  255. // 在恢复时检查状态
  256. state := getDeviceState(timeControls, deviceRecoveryTime)
  257. return state, nil
  258. }