ameter.go 10 KB

123456789101112131415161718192021222324252627282930313233343536373839404142434445464748495051525354555657585960616263646566676869707172737475767778798081828384858687888990919293949596979899100101102103104105106107108109110111112113114115116117118119120121122123124125126127128129130131132133134135136137138139140141142143144145146147148149150151152153154155156157158159160161162163164165166167168169170171172173174175176177178179180181182183184185186187188189190191192193194195196197198199200201202203204205206207208209210211212213214215216217218219220221222223224225226227228229230231232233234235236237238239240241242243244245246247248249250251252253254255256257258259260261262263264265266267268269270271272273274275276277278279280281282283284285286287288289290291292293294295296297298299300301302303304305306307308309310311312313314315316317318319320321322323324325326327328329330331332333334335336337338339340341342343344345346347348349350351352353354355356357358359360361362363364365366367368369370371372373374375376377378379380381382383384385
  1. package drviers
  2. import (
  3. "encoding/hex"
  4. "errors"
  5. "fmt"
  6. "reflect"
  7. "strconv"
  8. "strings"
  9. "time"
  10. bus "github.com/ammeter/Bus"
  11. "github.com/ammeter/config"
  12. "github.com/yuguorong/go/log"
  13. )
  14. const (
  15. DEF_SAMPLE_PERIOD = 10 * time.Minute
  16. DEF_SAMPLE_PEER_DURATION = 60 * time.Second
  17. DEF_TCP_READ_TIMEOUT = 30 * time.Second
  18. POSTPONE_PERSIST_TIME = 5 * time.Minute
  19. )
  20. //amList map[string]*Ammeter
  21. //amList : key=[code + address], each meter id must be unique, otherwise ammeter would not work correctly!
  22. //Careful! address from cloud may not real address. software varAddress functon would change it to real address
  23. type AmmeterModel struct {
  24. Id string `json:"id"`
  25. DevName string `json:"devName" gorm:"primary_key; unique"`
  26. Code string `json:"code" `
  27. DutSn string `json:"dutSn" `
  28. Address string `json:"address" `
  29. Protocol string `json:"protocol" `
  30. GwDevId string `json:"gwDevId" `
  31. TransRadio string `json:"transformerRatio" `
  32. Type string `json:"-" `
  33. }
  34. type meterPersist struct {
  35. DevName string `json:"devName" gorm:"primary_key; unique"`
  36. TsSample int64 `gorm:"autoUpdateTime"`
  37. TotalEnergy float64
  38. DBStatus int32
  39. }
  40. type Ammeter struct {
  41. AmmeterModel
  42. TsSample int64
  43. TotalEnergy float64
  44. TransDeno float64
  45. TransDiv float64
  46. varAddr string
  47. DBStatus int32
  48. TsUpdate int64
  49. }
  50. type AmMeterHub struct {
  51. baseDevice
  52. DutSn string
  53. DevCompCode string ` gorm:"-"`
  54. Protocol string
  55. chnExit chan bool
  56. loopserver bool
  57. sampleTmr *time.Timer
  58. amIndex []string //avoid map chaos order,even map read only
  59. amList map[string]*Ammeter //key=[code + address], each meter id must be unique
  60. persitList map[string]*meterPersist
  61. tmrPersist *time.Timer
  62. queryIdx int
  63. }
  64. func (dev *AmMeterHub) Close() error {
  65. dev.sampleTmr.Stop()
  66. dev.loopserver = false
  67. dev.chnExit <- true
  68. dev.baseDevice.Close()
  69. return nil
  70. }
  71. func (dev *AmMeterHub) OnAttach(chn bus.IChannel) {
  72. log.Info(dev.DutSn, " Attached!")
  73. chn.SetTimeout(DEF_TCP_READ_TIMEOUT)
  74. dev.sampleTmr.Reset(DEF_SAMPLE_PEER_DURATION)
  75. dev.baseDevice.OnAttach(chn)
  76. }
  77. func (dev *AmMeterHub) OnDetach(chn bus.IChannel) {
  78. log.Info(dev.DutSn, " Detached!")
  79. dev.sampleTmr.Stop()
  80. dev.baseDevice.OnDetach(chn)
  81. }
  82. func (dev *AmMeterHub) ChannelDispatch(stream []byte, args interface{}) bus.ChnDispResult {
  83. if len(stream) > 8 {
  84. if stream[0] == 0x68 && stream[7] == 0x68 && stream[8] == 0x93 {
  85. devname := ""
  86. mret := dev.Route[1].iproto.ParsePacket(stream, &devname)
  87. if mret != nil && devname == dev.DutSn {
  88. return bus.DispatchSingle
  89. }
  90. }
  91. return bus.DispatchNone
  92. }
  93. if ret := dev.baseDevice.ChannelDispatch(stream, args); ret != bus.DispatchNone {
  94. return ret
  95. }
  96. sid := hex.EncodeToString(stream)
  97. for _, am := range dev.amList {
  98. if am.DutSn == sid {
  99. log.Info("MOUNT meter: ", am.DutSn, ",", sid)
  100. return bus.DispatchSingle
  101. }
  102. }
  103. return bus.DispatchNone
  104. }
  105. func (dev *AmMeterHub) IssueSampleCmd(tmrTx *time.Timer) (pam *Ammeter) {
  106. pam = dev.amList[dev.amIndex[dev.queryIdx]]
  107. pack := dev.Route[1].iproto.PackageCmd("TotalActivePower", pam.Code+pam.Address)
  108. dev.Route[1].ibus.Send(dev.Route[1].iChn, pack)
  109. tmrTx.Reset(1 * time.Second)
  110. return pam
  111. }
  112. func (dev *AmMeterHub) SchedulNextSample(tmrTx *time.Timer) {
  113. tmrTx.Stop()
  114. dev.queryIdx++
  115. if dev.queryIdx >= len(dev.amList) {
  116. dev.queryIdx = 0
  117. dev.sampleTmr.Reset(DEF_SAMPLE_PERIOD)
  118. } else {
  119. dev.sampleTmr.Reset(DEF_SAMPLE_PEER_DURATION)
  120. }
  121. }
  122. func (dev *AmMeterHub) AdjustTelemetry(mval interface{}, am *Ammeter) {
  123. vlist := mval.(map[string]interface{})
  124. for k, v := range vlist {
  125. if reflect.TypeOf(v).Kind() == reflect.Float64 {
  126. valItem := v.(float64)
  127. vlist[k] = (valItem * am.TransDeno) / am.TransDiv
  128. }
  129. }
  130. if val, has := vlist["TotalActivePower"]; has {
  131. diff := val.(float64) - am.TotalEnergy
  132. if am.DBStatus == 0 { //数据库清0
  133. diff = 0
  134. am.DBStatus = 1
  135. }
  136. am.TotalEnergy = val.(float64)
  137. vlist["ActivePowerIncrement"] = diff
  138. if len(dev.persitList) == 0 {
  139. dev.tmrPersist.Reset(POSTPONE_PERSIST_TIME)
  140. }
  141. energe := &meterPersist{
  142. TotalEnergy: am.TotalEnergy,
  143. TsSample: am.TsSample,
  144. DBStatus: am.DBStatus,
  145. DevName: am.DevName,
  146. }
  147. dev.persitList[am.DevName] = energe
  148. }
  149. }
  150. func (dev *AmMeterHub) Run() error {
  151. dev.loopserver = true
  152. tmrTxTimout := time.NewTimer(5 * time.Second)
  153. dev.tmrPersist = time.NewTimer(POSTPONE_PERSIST_TIME)
  154. tmrTxTimout.Stop()
  155. //var pam *Ammeter = nil
  156. for dev.loopserver {
  157. select {
  158. case msg := <-dev.Route[1].router[0]:
  159. if reflect.TypeOf(msg).Kind() == reflect.Slice {
  160. b := msg.([]byte)
  161. log.Info("[", dev.DutSn, "]:", hex.EncodeToString(b)) //[9521003697]:fefefefe68040042050821689108333333338b694c331c16
  162. devid := ""
  163. mret := dev.Route[1].iproto.ParsePacket(b, &devid)
  164. if mret != nil && reflect.TypeOf(mret).Kind() == reflect.Map && devid != "" {
  165. log.Info(devid, mret) //210805420004 map[TotalActivePower:1936.58]
  166. if am, has := dev.amList[devid]; has {
  167. dev.AdjustTelemetry(mret, am)
  168. telemetry := dev.Route[0].iproto.PackageCmd(am.DevName, mret)
  169. dev.Route[0].ibus.Send(dev.Route[0].iChn, telemetry)
  170. am.TsSample = time.Now().Unix()
  171. }
  172. dev.SchedulNextSample(tmrTxTimout)
  173. }
  174. }
  175. case <-tmrTxTimout.C:
  176. dev.SchedulNextSample(tmrTxTimout)
  177. case <-dev.sampleTmr.C:
  178. dev.IssueSampleCmd(tmrTxTimout)
  179. case <-dev.chnExit:
  180. dev.loopserver = false
  181. case <-dev.tmrPersist.C:
  182. for k, eng := range dev.persitList {
  183. config.GetDB().Save(eng)
  184. delete(dev.persitList, k)
  185. }
  186. }
  187. }
  188. return nil
  189. }
  190. func DutchanDispatch(rxin interface{}, param interface{}) interface{} {
  191. log.Info("DutchanDispatch")
  192. b := rxin.([]byte)
  193. if len(b) == 8 {
  194. return hex.EncodeToString(b)
  195. }
  196. return nil
  197. }
  198. func (dev *AmMeterHub) Open(param ...interface{}) error {
  199. if dev.DutSn != "" {
  200. if dev.SetRoute(dev, dev.Protocol, "dtuFtpServer", dev.DutSn, 0) == 0 {
  201. return errors.New("can not set default rout!")
  202. }
  203. r := dev.Route[len(dev.Route)-1]
  204. r.ibus.ApplyPatch("PassiveAddress", r.iproto.PackageCmd("ReadAddress"))
  205. }
  206. dev.sampleTmr = time.NewTimer(DEF_SAMPLE_PERIOD)
  207. dev.sampleTmr.Stop()
  208. go dev.Run()
  209. return nil
  210. }
  211. func (dev *AmMeterHub) GetDevice(devname string) interface{} {
  212. for _, am := range dev.amList {
  213. if am.DevName == devname {
  214. return dev
  215. }
  216. }
  217. return nil
  218. }
  219. func (dev *AmMeterHub) ListDevices() interface{} {
  220. mdev := make(map[string]interface{})
  221. mdev["State"] = dev.Status
  222. dinfo := make(map[string]interface{})
  223. for _, subdev := range dev.amList {
  224. meterval := make(map[string]string)
  225. meterval["TotalEnergy"] = fmt.Sprintf("%f", subdev.TotalEnergy)
  226. if subdev.TsSample != 0 {
  227. meterval["TsSample"] = time.Unix(subdev.TsSample, 0).Format("2006-01-02 15:04:05")
  228. }
  229. dinfo[subdev.DevName] = meterval
  230. }
  231. mdev["Sub Meters"] = dinfo
  232. return mdev
  233. }
  234. /*
  235. [{"code":"26462285","devName":"SAIR10-0000000026462285","gwDevId":"1ec2d8421b2ed30bf52b38d8579115b","id":"1ec2d84cc494690bf52b38d8579115b","protocol":"HJ212"},
  236. {"code":"61748803","devName":"SAIR10-0000000061748803","gwDevId":"1ec2d8421b2ed30bf52b38d8579115b","id":"1ec2d84eb428160bf52b38d8579115b","protocol":"HJ212"}]
  237. {"address":"05420001","code":"2108","devName":"AM10-2108054200019521","dutSn":"9521003712","gwDevId":"1ec2d8421b2ed30bf52b38d8579115b","id":"1ec2de6df5a2e40bf52b38d8579115b","protocol":"DLT645-2007","transformerRatio":"80"},
  238. */
  239. type AmmeterDrv struct {
  240. baseDriver
  241. }
  242. func (drv *AmmeterDrv) ParseTransRatio(dev *Ammeter) {
  243. Trans := strings.Split(dev.TransRadio, "/")
  244. dev.TransDeno, _ = strconv.ParseFloat(Trans[0], 64)
  245. if len(Trans) > 1 {
  246. dev.TransDiv, _ = strconv.ParseFloat(Trans[1], 64)
  247. }
  248. }
  249. func (drv *AmmeterDrv) varyAdress(m *AmmeterModel, addr string, subid string) {
  250. defer func() {
  251. recover()
  252. }()
  253. iaddr, _ := strconv.Atoi(addr)
  254. isub, _ := strconv.Atoi(subid)
  255. if iaddr != 0 && isub > 0 {
  256. iaddr = iaddr + (isub-1)*3
  257. m.Address = strconv.Itoa(iaddr)
  258. }
  259. }
  260. func (drv *AmmeterDrv) mountHub(m *AmmeterModel, list *[]IDevice) IDevice {
  261. devCompID := m.DutSn
  262. if m.DutSn == "" || m.DutSn == "0000" || len(m.DutSn) < 10 {
  263. addr := m.Address
  264. ss := strings.Split(addr, "-")
  265. m.DutSn = m.Code + ss[0]
  266. devCompID = "0000"
  267. if len(ss) > 1 {
  268. drv.varyAdress(m, ss[0], ss[1])
  269. }
  270. }
  271. if hub, has := drv.DevList[m.DutSn]; has {
  272. return hub
  273. }
  274. hub := &AmMeterHub{
  275. DutSn: m.DutSn,
  276. Protocol: m.Protocol,
  277. chnExit: make(chan bool),
  278. loopserver: false,
  279. sampleTmr: nil,
  280. amList: make(map[string]*Ammeter),
  281. persitList: make(map[string]*meterPersist),
  282. queryIdx: 0,
  283. DevCompCode: devCompID,
  284. }
  285. hub.Probe(m.DutSn, drv)
  286. drv.DevList[m.DutSn] = hub
  287. *list = append(*list, hub)
  288. return hub
  289. }
  290. func (drv *AmmeterDrv) CreateDevice(model interface{}) (int, []IDevice) {
  291. ts := time.Now().UnixMilli()
  292. devlist := make([]IDevice, 0)
  293. if model != nil {
  294. devModels := model.(*[]AmmeterModel)
  295. for _, mod := range *devModels {
  296. if len(mod.Code) < 4 || len(mod.Address) < 8 {
  297. continue
  298. }
  299. //AmMeterHub is device!!! communication target is the hub
  300. hub := drv.mountHub(&mod, &devlist)
  301. id := mod.Code + mod.Address
  302. am, has := hub.(*AmMeterHub).amList[id]
  303. if !has {
  304. eng := &meterPersist{}
  305. config.GetDB().Find(eng, "dev_name='"+mod.DevName+"'")
  306. am = &Ammeter{
  307. TotalEnergy: eng.TotalEnergy,
  308. DBStatus: eng.DBStatus,
  309. TsSample: eng.TsSample,
  310. TransDiv: 1,
  311. TransDeno: 1,
  312. }
  313. am.AmmeterModel = mod
  314. drv.ParseTransRatio(am)
  315. hub.(*AmMeterHub).amList[id] = am
  316. }
  317. am.TsUpdate = ts
  318. }
  319. }
  320. for _, hub := range drv.DevList {
  321. hub.(*AmMeterHub).amIndex = make([]string, 0)
  322. for id, am := range hub.(*AmMeterHub).amList {
  323. if am.TsUpdate != ts {
  324. delete(hub.(*AmMeterHub).amList, id)
  325. log.Info("Delete ammeter:", id)
  326. } else {
  327. hub.(*AmMeterHub).amIndex = append(hub.(*AmMeterHub).amIndex, id)
  328. }
  329. }
  330. }
  331. if len(drv.DevList) == 0 {
  332. drv.Uninstall()
  333. }
  334. return len(devlist), devlist
  335. }
  336. func (drv *AmmeterDrv) GetModel() interface{} {
  337. return &[]AmmeterModel{}
  338. }
  339. func NewAmMeter(param interface{}) IDriver {
  340. am := new(AmmeterDrv)
  341. return am
  342. }
  343. func init() {
  344. driverReg["ammeter"] = NewAmMeter
  345. config.GetDB().CreateTbl(&AmmeterModel{})
  346. config.GetDB().CreateTbl(&meterPersist{})
  347. }