/// /// Copyright (c) 2015 Sensus Metering Systems /// Author: Milan Hanajík /// using System; using System.IO; using System.Text; using System.Xml.Serialization; using Config.Entities; using TBF.BenchControl.Generic; using TBF.Resources; namespace TBF.BenchControl.WaterMeters.iPerl { public class ProcParams : ProcedureParamsBase, IParamsProvider, IProcedureParams { public float PulsesPerLtr; /// Target low limit of the flow increase or decrease public string Producer; /// Hersteller public float Qn; public string ApprovalInfo; /// Zulassungszeichen public string MetrologicalClass; /// Metr. Klasse public int WMType_ID; /// Required for Oracle DB: ID_WZTyp in table VT_PRUEFPUNKT_SOLL_SD public int WMType_Rev; /// Required for Oracle DB: Rev_WZTyp in table VT_PRUEFPUNKT_SOLL_SD public override void InitializeAll() { PulsesPerLtr = 1.0f; Producer = ""; Qn = 2.5f; ApprovalInfo = ""; MetrologicalClass = "A"; WMType_ID = 2; /// Value for iPerl DN15 WMType_Rev = 1; /// Value for iPerl DN15 } string[] paramNames = new string[] { Strings.PulsesPerLtr, Strings.Producer, Strings.Qn, Strings.Approval_info, Strings.Metrological_class, "WMType ID", "WMType Rev.", }; public override string ParamName(int i) { return paramNames[i]; } public override int ParamsCount() { return paramNames.Length; } public override string ToString(int i) { switch (i) { case 0: return PulsesPerLtr.ToString(); case 1: return Producer; case 2: return Qn.ToString(); case 3: return ApprovalInfo; case 4: return MetrologicalClass; case 5: return WMType_ID.ToString(); case 6: return WMType_Rev.ToString(); default: return string.Empty; } } public void UpdateParam(int i, string strValue) { switch (i) { case 0: PulsesPerLtr = Utils.ParseUFloat(strValue); return; case 1: Producer = strValue; return; case 2: Qn = Utils.ParseUFloat(strValue); return; case 3: ApprovalInfo = strValue; return; case 4: MetrologicalClass = strValue; return; case 5: WMType_ID = int.Parse(strValue); return; case 6: WMType_Rev = int.Parse(strValue); return; default: return; } } public bool ValidateParam(int i, string strValue, out string message) { message = string.Empty; float dummy; int iDummy; switch (i) { case 0: if (Utils.TryParseUFloat(strValue, out dummy)) return true; break; case 2: if (Utils.TryParseUFloat(strValue, out dummy)) return true; break; case 1: case 3: case 4: return true; case 5: case 6: if (int.TryParse(strValue, out iDummy)) return true; break; default: message = "Invalid index"; return false; } message = ParamName(i) + " is invalid"; return false; } void CopyContentTo(ProcParams prms) { prms.PulsesPerLtr = this.PulsesPerLtr; prms.Producer = this.Producer; prms.Qn = this.Qn; prms.ApprovalInfo = this.ApprovalInfo; prms.MetrologicalClass = this.MetrologicalClass; prms.WMType_ID = this.WMType_ID; prms.WMType_Rev = this.WMType_Rev; } public IParamsProvider Clone() { ProcParams pars = new ProcParams(); CopyContentTo(pars); return pars; } public override void UpdateProcedureParams(ComponentProcedure dbEntity) { if (dbEntity == null) return; try { ProcParams tmp = (ProcParams)(new XmlSerializer(typeof(ProcParams))) .Deserialize(new StringReader(dbEntity.Parameters)); procedureParamsEntity = dbEntity; componentName = dbEntity.CmpntName; procedure = dbEntity.Procedure; tmp.CopyContentTo(this); } catch { } } public ProcParams() { } public ProcParams(ComponentProcedure procParamsEntity, string componentName, Procedure procedure) { this.procedureParamsEntity = procParamsEntity; this.componentName = componentName; this.procedure = procedure; } } }