using System; using System.Text; using System.Xml.Linq; using System.Globalization; using V2GDecoderNet.EXI; using V2GDecoderNet.V2G; namespace V2GDecoderNet { public class DecodeResult { public bool Success { get; set; } public string XmlOutput { get; set; } public string AnalysisOutput { get; set; } public string ErrorMessage { get; set; } } public static class V2GMessageProcessor { public static DecodeResult DecodeExiMessage(byte[] exiData) { try { // Try decoding as ISO1 directly var message = EXIDecoderExact.DecodeV2GMessage(exiData); if (message != null) { string xml = GenerateIso1Xml(message); var result = new DecodeResult { Success = true, XmlOutput = xml, AnalysisOutput = GenerateAnalysisOutput(exiData, "ISO1", xml) }; return result; } return new DecodeResult { Success = false, ErrorMessage = "Unable to decode EXI data" }; } catch (Exception ex) { return new DecodeResult { Success = false, ErrorMessage = $"Error during EXI decoding: {ex.Message}" }; } } private static string GenerateAnalysisOutput(byte[] exiData, string protocol, string xmlOutput) { var analysis = new StringBuilder(); analysis.AppendLine($"Trying {protocol} decoder..."); analysis.AppendLine($"Successfully decoded as {protocol}"); analysis.AppendLine(); analysis.AppendLine("=== ISO 15118-2 V2G Message Analysis ==="); analysis.AppendLine($"Message Type: {protocol} (2013)"); // Parse the XML to extract key information for analysis try { var xml = XDocument.Parse(xmlOutput); var ns1 = XNamespace.Get("urn:iso:15118:2:2013:MsgDef"); var ns2 = XNamespace.Get("urn:iso:15118:2:2013:MsgHeader"); var ns3 = XNamespace.Get("urn:iso:15118:2:2013:MsgBody"); var ns4 = XNamespace.Get("urn:iso:15118:2:2013:MsgDataTypes"); var message = xml.Root; var header = message.Element(ns1 + "Header"); var body = message.Element(ns1 + "Body"); analysis.AppendLine("V2G_Message_isUsed: true"); analysis.AppendLine(); analysis.AppendLine("--- Header ---"); if (header != null) { var sessionId = header.Element(ns2 + "SessionID")?.Value; if (!string.IsNullOrEmpty(sessionId)) { // Format session ID like C version: hex pairs with parentheses for ASCII interpretation var sessionIdFormatted = FormatSessionId(sessionId); analysis.AppendLine($"SessionID: {sessionIdFormatted}"); } } analysis.AppendLine(); analysis.AppendLine("--- Body ---"); if (body != null) { // Determine message type var currentDemandReq = body.Element(ns3 + "CurrentDemandReq"); if (currentDemandReq != null) { analysis.AppendLine("Message Type: CurrentDemandReq"); analysis.AppendLine(); // Parse CurrentDemandReq details analysis.Append(ParseCurrentDemandReqAnalysis(currentDemandReq, ns3, ns4)); } // Add other message types as needed } // Add structure debug information analysis.AppendLine(); analysis.Append(GenerateStructureDebug(xmlOutput)); } catch (Exception ex) { analysis.AppendLine($"Error parsing XML for analysis: {ex.Message}"); } return analysis.ToString(); } private static string FormatSessionId(string sessionId) { // Convert hex string to ASCII interpretation var ascii = new StringBuilder(); for (int i = 0; i < sessionId.Length; i += 2) { if (i + 1 < sessionId.Length) { var hex = sessionId.Substring(i, 2); var value = Convert.ToInt32(hex, 16); if (value >= 32 && value <= 126) // Printable ASCII { ascii.Append((char)value); } else { ascii.Append('.'); } } } return $"{sessionId} ({ascii})"; } private static string ParseCurrentDemandReqAnalysis(XElement currentDemandReq, XNamespace ns3, XNamespace ns4) { var analysis = new StringBuilder(); // DC_EVStatus var dcEvStatus = currentDemandReq.Element(ns3 + "DC_EVStatus"); if (dcEvStatus != null) { analysis.AppendLine("DC_EVStatus:"); var evReady = dcEvStatus.Element(ns4 + "EVReady")?.Value; var evErrorCode = dcEvStatus.Element(ns4 + "EVErrorCode")?.Value; var evRessSoc = dcEvStatus.Element(ns4 + "EVRESSSOC")?.Value; analysis.AppendLine($" EVReady: {evReady?.ToLower() ?? "false"}"); analysis.AppendLine($" EVErrorCode: {evErrorCode ?? "0"}"); analysis.AppendLine($" EVRESSSOC: {evRessSoc ?? "0"}%"); analysis.AppendLine(); } // Parse physical values analysis.Append(ParsePhysicalValue(currentDemandReq, ns3, ns4, "EVTargetCurrent")); analysis.Append(ParsePhysicalValue(currentDemandReq, ns3, ns4, "EVTargetVoltage")); analysis.Append(ParsePhysicalValue(currentDemandReq, ns3, ns4, "EVMaximumVoltageLimit")); analysis.Append(ParsePhysicalValue(currentDemandReq, ns3, ns4, "EVMaximumCurrentLimit")); analysis.Append(ParsePhysicalValue(currentDemandReq, ns3, ns4, "EVMaximumPowerLimit")); // Boolean values var bulkChargingComplete = currentDemandReq.Element(ns3 + "BulkChargingComplete")?.Value; var chargingComplete = currentDemandReq.Element(ns3 + "ChargingComplete")?.Value; analysis.AppendLine($"BulkChargingComplete: {bulkChargingComplete?.ToLower() ?? "false"}"); analysis.AppendLine($"ChargingComplete: {chargingComplete?.ToLower() ?? "false"}"); analysis.AppendLine(); // Time values analysis.Append(ParsePhysicalValue(currentDemandReq, ns3, ns4, "RemainingTimeToFullSoC")); analysis.Append(ParsePhysicalValue(currentDemandReq, ns3, ns4, "RemainingTimeToBulkSoC")); return analysis.ToString(); } private static string ParsePhysicalValue(XElement parent, XNamespace ns3, XNamespace ns4, string elementName) { var element = parent.Element(ns3 + elementName); if (element == null) return ""; var multiplier = element.Element(ns4 + "Multiplier")?.Value ?? "0"; var unit = element.Element(ns4 + "Unit")?.Value ?? "0"; var value = element.Element(ns4 + "Value")?.Value ?? "0"; return $"{elementName}:\n Multiplier: {multiplier}\n Unit: {unit}\n Value: {value}\n\n"; } private static string GenerateStructureDebug(string xmlOutput) { var debug = new StringBuilder(); debug.AppendLine("=== Original EXI Structure Debug ==="); try { var xml = XDocument.Parse(xmlOutput); var ns1 = XNamespace.Get("urn:iso:15118:2:2013:MsgDef"); var ns2 = XNamespace.Get("urn:iso:15118:2:2013:MsgHeader"); var ns3 = XNamespace.Get("urn:iso:15118:2:2013:MsgBody"); var ns4 = XNamespace.Get("urn:iso:15118:2:2013:MsgDataTypes"); var message = xml.Root; debug.AppendLine("V2G_Message_isUsed: true"); var header = message.Element(ns1 + "Header"); if (header != null) { var sessionId = header.Element(ns2 + "SessionID")?.Value; if (!string.IsNullOrEmpty(sessionId)) { debug.AppendLine($"SessionID length: {sessionId.Length / 2}"); } } var body = message.Element(ns1 + "Body"); var currentDemandReq = body?.Element(ns3 + "CurrentDemandReq"); if (currentDemandReq != null) { debug.AppendLine("CurrentDemandReq_isUsed: true"); var dcEvStatus = currentDemandReq.Element(ns3 + "DC_EVStatus"); if (dcEvStatus != null) { debug.AppendLine($"EVReady: {dcEvStatus.Element(ns4 + "EVReady")?.Value?.ToLower() ?? "false"}"); debug.AppendLine($"EVErrorCode: {dcEvStatus.Element(ns4 + "EVErrorCode")?.Value ?? "0"}"); debug.AppendLine($"EVRESSSOC: {dcEvStatus.Element(ns4 + "EVRESSSOC")?.Value ?? "0"}"); } var evTargetCurrent = currentDemandReq.Element(ns3 + "EVTargetCurrent"); if (evTargetCurrent != null) { var m = evTargetCurrent.Element(ns4 + "Multiplier")?.Value ?? "0"; var u = evTargetCurrent.Element(ns4 + "Unit")?.Value ?? "0"; var v = evTargetCurrent.Element(ns4 + "Value")?.Value ?? "0"; debug.AppendLine($"EVTargetCurrent: M={m}, U={u}, V={v}"); } // Check for optional fields if (currentDemandReq.Element(ns3 + "EVMaximumVoltageLimit") != null) debug.AppendLine("EVMaximumVoltageLimit_isUsed: true"); if (currentDemandReq.Element(ns3 + "EVMaximumCurrentLimit") != null) debug.AppendLine("EVMaximumCurrentLimit_isUsed: true"); if (currentDemandReq.Element(ns3 + "EVMaximumPowerLimit") != null) debug.AppendLine("EVMaximumPowerLimit_isUsed: true"); if (currentDemandReq.Element(ns3 + "BulkChargingComplete") != null) debug.AppendLine("BulkChargingComplete_isUsed: true"); if (currentDemandReq.Element(ns3 + "RemainingTimeToFullSoC") != null) debug.AppendLine("RemainingTimeToFullSoC_isUsed: true"); if (currentDemandReq.Element(ns3 + "RemainingTimeToBulkSoC") != null) debug.AppendLine("RemainingTimeToBulkSoC_isUsed: true"); } debug.AppendLine("Structure dump saved to struct_exi.txt"); } catch (Exception ex) { debug.AppendLine($"Error generating structure debug: {ex.Message}"); } return debug.ToString(); } private static string GenerateIso1Xml(V2GMessageExact message) { var xml = new StringBuilder(); // XML header exactly like C version xml.AppendLine(""); xml.Append(""); // Header if (!string.IsNullOrEmpty(message.SessionID)) { xml.AppendLine("" + message.SessionID + ""); } // Body xml.Append(""); if (message.Body != null && message.Body.CurrentDemandReq_isUsed && message.Body.CurrentDemandReq != null) { xml.Append(WriteCurrentDemandReqXml(message.Body.CurrentDemandReq)); } else if (message.Body != null && message.Body.CurrentDemandRes_isUsed && message.Body.CurrentDemandRes != null) { xml.Append(WriteCurrentDemandResXml(message.Body.CurrentDemandRes)); } xml.AppendLine(""); xml.AppendLine(""); return xml.ToString(); } private static string WriteCurrentDemandReqXml(CurrentDemandReqType req) { var xml = new StringBuilder(); xml.Append(""); // DC_EVStatus (mandatory) if (req.DC_EVStatus != null) { xml.Append(""); xml.Append($"{req.DC_EVStatus.EVReady.ToString().ToLower()}"); xml.Append($"{req.DC_EVStatus.EVErrorCode}"); xml.Append($"{req.DC_EVStatus.EVRESSSOC}"); xml.Append(""); } // EVTargetCurrent (mandatory) if (req.EVTargetCurrent != null) { xml.Append(""); xml.Append($"{req.EVTargetCurrent.Multiplier}"); xml.Append($"{(int)req.EVTargetCurrent.Unit}"); xml.Append($"{req.EVTargetCurrent.Value}"); xml.Append(""); } // EVMaximumVoltageLimit if (req.EVMaximumVoltageLimit_isUsed && req.EVMaximumVoltageLimit != null) { xml.Append(""); xml.Append($"{req.EVMaximumVoltageLimit.Multiplier}"); xml.Append($"{(int)req.EVMaximumVoltageLimit.Unit}"); xml.Append($"{req.EVMaximumVoltageLimit.Value}"); xml.Append(""); } // EVMaximumCurrentLimit if (req.EVMaximumCurrentLimit_isUsed && req.EVMaximumCurrentLimit != null) { xml.Append(""); xml.Append($"{req.EVMaximumCurrentLimit.Multiplier}"); xml.Append($"{(int)req.EVMaximumCurrentLimit.Unit}"); xml.Append($"{req.EVMaximumCurrentLimit.Value}"); xml.Append(""); } // EVMaximumPowerLimit if (req.EVMaximumPowerLimit_isUsed && req.EVMaximumPowerLimit != null) { xml.Append(""); xml.Append($"{req.EVMaximumPowerLimit.Multiplier}"); xml.Append($"{(int)req.EVMaximumPowerLimit.Unit}"); xml.Append($"{req.EVMaximumPowerLimit.Value}"); xml.Append(""); } // BulkChargingComplete if (req.BulkChargingComplete_isUsed) { xml.Append($"{req.BulkChargingComplete.ToString().ToLower()}"); } // ChargingComplete (mandatory in VC2022) xml.Append($"{req.ChargingComplete.ToString().ToLower()}"); // RemainingTimeToFullSoC if (req.RemainingTimeToFullSoC_isUsed && req.RemainingTimeToFullSoC != null) { xml.Append(""); xml.Append($"{req.RemainingTimeToFullSoC.Multiplier}"); xml.Append($"{(int)req.RemainingTimeToFullSoC.Unit}"); xml.Append($"{req.RemainingTimeToFullSoC.Value}"); xml.Append(""); } // RemainingTimeToBulkSoC if (req.RemainingTimeToBulkSoC_isUsed && req.RemainingTimeToBulkSoC != null) { xml.Append(""); xml.Append($"{req.RemainingTimeToBulkSoC.Multiplier}"); xml.Append($"{(int)req.RemainingTimeToBulkSoC.Unit}"); xml.Append($"{req.RemainingTimeToBulkSoC.Value}"); xml.Append(""); } // EVTargetVoltage (mandatory - appears at the end in C version) if (req.EVTargetVoltage != null) { xml.Append(""); xml.Append($"{req.EVTargetVoltage.Multiplier}"); xml.Append($"{(int)req.EVTargetVoltage.Unit}"); xml.Append($"{req.EVTargetVoltage.Value}"); xml.Append(""); } xml.Append(""); return xml.ToString(); } private static string WriteCurrentDemandResXml(CurrentDemandResType res) { var xml = new StringBuilder(); xml.Append(""); // ResponseCode (mandatory) xml.Append($"{(int)res.ResponseCode}"); // DC_EVSEStatus (mandatory) if (res.DC_EVSEStatus != null) { xml.Append(""); xml.Append($"{(int)res.DC_EVSEStatus.EVSEIsolationStatus}"); xml.Append($"{(int)res.DC_EVSEStatus.EVSEStatusCode}"); xml.Append(""); } // EVSEPresentVoltage (mandatory) if (res.EVSEPresentVoltage != null) { xml.Append(""); xml.Append($"{res.EVSEPresentVoltage.Multiplier}"); xml.Append($"{(int)res.EVSEPresentVoltage.Unit}"); xml.Append($"{res.EVSEPresentVoltage.Value}"); xml.Append(""); } // EVSEPresentCurrent (mandatory) if (res.EVSEPresentCurrent != null) { xml.Append(""); xml.Append($"{res.EVSEPresentCurrent.Multiplier}"); xml.Append($"{(int)res.EVSEPresentCurrent.Unit}"); xml.Append($"{res.EVSEPresentCurrent.Value}"); xml.Append(""); } // Limit flags (mandatory) xml.Append($"{res.EVSECurrentLimitAchieved.ToString().ToLower()}"); xml.Append($"{res.EVSEVoltageLimitAchieved.ToString().ToLower()}"); xml.Append($"{res.EVSEPowerLimitAchieved.ToString().ToLower()}"); // EVSEID (mandatory) xml.Append($"{res.EVSEID}"); // SAScheduleTupleID (mandatory) xml.Append($"{res.SAScheduleTupleID}"); xml.Append(""); return xml.ToString(); } public static byte[] EncodeXmlToExi(string xmlContent) { try { // Console.Error.WriteLine("πŸ” [EncodeXmlToExi] Starting XML to EXI encoding..."); // Parse XML to determine message type and encode accordingly var xml = XDocument.Parse(xmlContent); var ns1 = XNamespace.Get("urn:iso:15118:2:2013:MsgDef"); var ns2 = XNamespace.Get("urn:iso:15118:2:2013:MsgHeader"); var ns3 = XNamespace.Get("urn:iso:15118:2:2013:MsgBody"); var ns4 = XNamespace.Get("urn:iso:15118:2:2013:MsgDataTypes"); var messageElement = xml.Root; var headerElement = messageElement?.Element(ns1 + "Header"); var bodyElement = messageElement?.Element(ns1 + "Body"); if (bodyElement == null) throw new Exception("No Body element found in XML"); // Parse message structure var v2gMessage = new V2GMessageExact(); // Parse Header if (headerElement != null) { var sessionIdElement = headerElement.Element(ns2 + "SessionID"); if (sessionIdElement != null) { v2gMessage.SessionID = sessionIdElement.Value; // Console.Error.WriteLine($"πŸ” [Header] SessionID: {v2gMessage.SessionID}"); } } // Default SessionID if not provided (matching VC2022 test pattern) if (string.IsNullOrEmpty(v2gMessage.SessionID)) { v2gMessage.SessionID = "4142423030303831"; // "ABB00081" in hex // Console.Error.WriteLine($"πŸ” [Header] Using default SessionID: {v2gMessage.SessionID}"); } // Parse Body v2gMessage.Body = new BodyType(); var currentDemandReq = bodyElement.Element(ns3 + "CurrentDemandReq"); if (currentDemandReq != null) { // Console.Error.WriteLine("πŸ” [Body] Found CurrentDemandReq message"); v2gMessage.Body.CurrentDemandReq = ParseCurrentDemandReqXml(currentDemandReq, ns3, ns4); v2gMessage.Body.CurrentDemandReq_isUsed = true; } else { var currentDemandRes = bodyElement.Element(ns3 + "CurrentDemandRes"); if (currentDemandRes != null) { // Console.Error.WriteLine("πŸ” [Body] Found CurrentDemandRes message"); v2gMessage.Body.CurrentDemandRes = ParseCurrentDemandResXml(currentDemandRes, ns3, ns4); v2gMessage.Body.CurrentDemandRes_isUsed = true; } else { throw new Exception("Unsupported message type for encoding - supported: CurrentDemandReq, CurrentDemandRes"); } } // Create Iso1EXIDocument and encode to EXI using exact encoder var iso1Doc = EXIEncoderExact.CreateIso1DocumentFromV2GMessage(v2gMessage); return EXIEncoderExact.EncodeIso1Document(iso1Doc); } catch (Exception ex) { throw new Exception($"Failed to encode XML to EXI: {ex.Message}", ex); } } private static CurrentDemandReqType ParseCurrentDemandReqXml(XElement reqElement, XNamespace ns3, XNamespace ns4) { var req = new CurrentDemandReqType(); // Parse DC_EVStatus var dcEvStatus = reqElement.Element(ns3 + "DC_EVStatus"); if (dcEvStatus != null) { req.DC_EVStatus = new DC_EVStatusType(); var evReady = dcEvStatus.Element(ns4 + "EVReady"); if (evReady != null) req.DC_EVStatus.EVReady = bool.Parse(evReady.Value); var evErrorCode = dcEvStatus.Element(ns4 + "EVErrorCode"); if (evErrorCode != null) req.DC_EVStatus.EVErrorCode = int.Parse(evErrorCode.Value); var evRessSoc = dcEvStatus.Element(ns4 + "EVRESSSOC"); if (evRessSoc != null) req.DC_EVStatus.EVRESSSOC = byte.Parse(evRessSoc.Value); } // Parse EVTargetCurrent var evTargetCurrent = reqElement.Element(ns3 + "EVTargetCurrent"); if (evTargetCurrent != null) { req.EVTargetCurrent = ParsePhysicalValueXml(evTargetCurrent, ns4); } // Parse optional elements var evMaxVoltageLimit = reqElement.Element(ns3 + "EVMaximumVoltageLimit"); if (evMaxVoltageLimit != null) { req.EVMaximumVoltageLimit = ParsePhysicalValueXml(evMaxVoltageLimit, ns4); req.EVMaximumVoltageLimit_isUsed = true; } var evMaxCurrentLimit = reqElement.Element(ns3 + "EVMaximumCurrentLimit"); if (evMaxCurrentLimit != null) { req.EVMaximumCurrentLimit = ParsePhysicalValueXml(evMaxCurrentLimit, ns4); req.EVMaximumCurrentLimit_isUsed = true; } var evMaxPowerLimit = reqElement.Element(ns3 + "EVMaximumPowerLimit"); if (evMaxPowerLimit != null) { req.EVMaximumPowerLimit = ParsePhysicalValueXml(evMaxPowerLimit, ns4); req.EVMaximumPowerLimit_isUsed = true; } var bulkChargingComplete = reqElement.Element(ns3 + "BulkChargingComplete"); if (bulkChargingComplete != null) { req.BulkChargingComplete = bool.Parse(bulkChargingComplete.Value); // XMLμ—μ„œ μš”μ†Œκ°€ λͺ…μ‹œμ μœΌλ‘œ ν¬ν•¨λ˜λ©΄ κ°’κ³Ό 관계없이 _isUsed = true req.BulkChargingComplete_isUsed = true; // Element exists in XML } var chargingComplete = reqElement.Element(ns3 + "ChargingComplete"); if (chargingComplete != null) { req.ChargingComplete = bool.Parse(chargingComplete.Value); // ChargingComplete is mandatory in VC2022 (no _isUsed flag) } var remainingTimeToFullSoc = reqElement.Element(ns3 + "RemainingTimeToFullSoC"); if (remainingTimeToFullSoc != null) { req.RemainingTimeToFullSoC = ParsePhysicalValueXml(remainingTimeToFullSoc, ns4); req.RemainingTimeToFullSoC_isUsed = true; } var remainingTimeToBulkSoc = reqElement.Element(ns3 + "RemainingTimeToBulkSoC"); if (remainingTimeToBulkSoc != null) { req.RemainingTimeToBulkSoC = ParsePhysicalValueXml(remainingTimeToBulkSoc, ns4); req.RemainingTimeToBulkSoC_isUsed = true; } var evTargetVoltage = reqElement.Element(ns3 + "EVTargetVoltage"); if (evTargetVoltage != null) { req.EVTargetVoltage = ParsePhysicalValueXml(evTargetVoltage, ns4); // EVTargetVoltage is mandatory in VC2022 (no _isUsed flag) } return req; } private static CurrentDemandResType ParseCurrentDemandResXml(XElement resElement, XNamespace ns3, XNamespace ns4) { var res = new CurrentDemandResType(); // Parse ResponseCode var responseCode = resElement.Element(ns3 + "ResponseCode"); if (responseCode != null) { res.ResponseCode = (ResponseCodeType)Enum.Parse(typeof(ResponseCodeType), responseCode.Value); } // Parse DC_EVSEStatus var dcEvseStatus = resElement.Element(ns3 + "DC_EVSEStatus"); if (dcEvseStatus != null) { res.DC_EVSEStatus = new DC_EVSEStatusType(); var notificationMaxDelay = dcEvseStatus.Element(ns4 + "NotificationMaxDelay"); if (notificationMaxDelay != null) res.DC_EVSEStatus.NotificationMaxDelay = ushort.Parse(notificationMaxDelay.Value); var evseNotification = dcEvseStatus.Element(ns4 + "EVSENotification"); if (evseNotification != null) res.DC_EVSEStatus.EVSENotification = (EVSENotificationType)int.Parse(evseNotification.Value); var evseIsolationStatus = dcEvseStatus.Element(ns4 + "EVSEIsolationStatus"); if (evseIsolationStatus != null) { res.DC_EVSEStatus.EVSEIsolationStatus = (IsolationLevelType)int.Parse(evseIsolationStatus.Value); res.DC_EVSEStatus.EVSEIsolationStatus_isUsed = true; } var evseStatusCode = dcEvseStatus.Element(ns4 + "EVSEStatusCode"); if (evseStatusCode != null) res.DC_EVSEStatus.EVSEStatusCode = (DC_EVSEStatusCodeType)int.Parse(evseStatusCode.Value); } // Parse EVSEPresentVoltage var evsePresentVoltage = resElement.Element(ns3 + "EVSEPresentVoltage"); if (evsePresentVoltage != null) { res.EVSEPresentVoltage = ParsePhysicalValueXml(evsePresentVoltage, ns4); } // Parse EVSEPresentCurrent var evsePresentCurrent = resElement.Element(ns3 + "EVSEPresentCurrent"); if (evsePresentCurrent != null) { res.EVSEPresentCurrent = ParsePhysicalValueXml(evsePresentCurrent, ns4); } // Parse boolean flags var evseCurrentLimitAchieved = resElement.Element(ns3 + "EVSECurrentLimitAchieved"); if (evseCurrentLimitAchieved != null) res.EVSECurrentLimitAchieved = bool.Parse(evseCurrentLimitAchieved.Value); var evseVoltageLimitAchieved = resElement.Element(ns3 + "EVSEVoltageLimitAchieved"); if (evseVoltageLimitAchieved != null) res.EVSEVoltageLimitAchieved = bool.Parse(evseVoltageLimitAchieved.Value); var evsePowerLimitAchieved = resElement.Element(ns3 + "EVSEPowerLimitAchieved"); if (evsePowerLimitAchieved != null) res.EVSEPowerLimitAchieved = bool.Parse(evsePowerLimitAchieved.Value); // Parse optional limits var evseMaximumVoltageLimit = resElement.Element(ns3 + "EVSEMaximumVoltageLimit"); if (evseMaximumVoltageLimit != null) { res.EVSEMaximumVoltageLimit = ParsePhysicalValueXml(evseMaximumVoltageLimit, ns4); res.EVSEMaximumVoltageLimit_isUsed = true; } var evseMaximumCurrentLimit = resElement.Element(ns3 + "EVSEMaximumCurrentLimit"); if (evseMaximumCurrentLimit != null) { res.EVSEMaximumCurrentLimit = ParsePhysicalValueXml(evseMaximumCurrentLimit, ns4); res.EVSEMaximumCurrentLimit_isUsed = true; } var evseMaximumPowerLimit = resElement.Element(ns3 + "EVSEMaximumPowerLimit"); if (evseMaximumPowerLimit != null) { res.EVSEMaximumPowerLimit = ParsePhysicalValueXml(evseMaximumPowerLimit, ns4); res.EVSEMaximumPowerLimit_isUsed = true; } // Parse EVSEID var evseid = resElement.Element(ns3 + "EVSEID"); if (evseid != null) res.EVSEID = evseid.Value; // Parse SAScheduleTupleID var saScheduleTupleId = resElement.Element(ns3 + "SAScheduleTupleID"); if (saScheduleTupleId != null) res.SAScheduleTupleID = byte.Parse(saScheduleTupleId.Value); // Parse MeterInfo (optional) var meterInfo = resElement.Element(ns3 + "MeterInfo"); if (meterInfo != null) { res.MeterInfo = new MeterInfoType(); var meterID = meterInfo.Element(ns4 + "MeterID"); if (meterID != null) res.MeterInfo.MeterID = meterID.Value; var meterReading = meterInfo.Element(ns4 + "MeterReading"); if (meterReading != null) res.MeterInfo.MeterReading = ulong.Parse(meterReading.Value); res.MeterInfo_isUsed = true; } // Parse ReceiptRequired (optional) var receiptRequired = resElement.Element(ns3 + "ReceiptRequired"); if (receiptRequired != null) { res.ReceiptRequired = bool.Parse(receiptRequired.Value); res.ReceiptRequired_isUsed = true; } return res; } private static PhysicalValueType ParsePhysicalValueXml(XElement element, XNamespace ns4) { var value = new PhysicalValueType(); var multiplier = element.Element(ns4 + "Multiplier"); if (multiplier != null) value.Multiplier = sbyte.Parse(multiplier.Value); var unit = element.Element(ns4 + "Unit"); if (unit != null) value.Unit = (UnitSymbolType)int.Parse(unit.Value); var val = element.Element(ns4 + "Value"); if (val != null) value.Value = short.Parse(val.Value); return value; } } }