laatzen/Common/CommonConsole/Program.cs
2025-12-17 11:09:28 +01:00

513 lines
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C#
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namespace CommonConsole
{
using System;
using System.Collections;
public static class Program
{
static void Main()
{
var alarmMask = 0 << AlarmMask.ALARM_REBOOT
| 1 << AlarmMask.ALARM_LOW_BATTERY
| 0 << AlarmMask.ALARM_VERY_LOW_BATTERY
| 0 << AlarmMask.ALARM_CONFIG_ERROR
| 1 << AlarmMask.ALARM_EMPTY_PIPE
| 0 << AlarmMask.ALARM_MAGNETIC_TAMPER
| 1 << AlarmMask.ALARM_REVERSE_FLOW
| 1 << AlarmMask.ALARM_SUSPECT_LEAK
| 1 << AlarmMask.ALARM_BROKEN_PIPE
| 0 << AlarmMask.ALARM_LOW_PRESSURE
| 0 << AlarmMask.ALARM_HIGH_PRESSURE
| 0 << AlarmMask.ALARM_LOW_TEMPERATURE
| 1 << AlarmMask.ALARM_HIGH_TEMPERATURE
| 0 << AlarmMask.ALARM_RADIO_ERROR
| 0 << AlarmMask.ALARM_METROLOGY_PARAMS
| 0 << AlarmMask.ALARM_METROLOGY_MEASURE
| 0 << AlarmMask.ALARM_MAX;
var alarmBytes = BitConverter.GetBytes(alarmMask);
Array.Reverse(alarmBytes);
Console.WriteLine($"{"ALARMS:",11} {alarmMask,11} - {BitConverter.ToString(alarmBytes).Replace("-", "")}");
uint content = (uint)1 << LogContentBits.AlarmStatus // ALWAYS ON
| (uint)1 << LogContentBits.BillingCounter // ALWAYS ON
| (uint)0 << LogContentBits.ReverseCounter //
| (uint)0 << LogContentBits.MaxFlow //
| (uint)0 << LogContentBits.MaxFlowTime //
| (uint)0 << LogContentBits.PeakFlow //
| (uint)0 << LogContentBits.PeakFlowTime //
| (uint)0 << LogContentBits.AvgFlow //
| (uint)0 << LogContentBits.BrokenPipe //
| (uint)0 << LogContentBits.BrokenPipeTime //
| (uint)0 << LogContentBits.MinFlow //
| (uint)0 << LogContentBits.MinFlowTime //
| (uint)0 << LogContentBits.ForwardCounter //
| (uint)1 << LogContentBits._UTC32 // ALWAYS ON
| (uint)0 << LogContentBits._MaskSelector_1_1 //
| (uint)0 << LogContentBits._MaskSelector_1_2 //
| (uint)0 << LogContentBits.MinPress //
| (uint)0 << LogContentBits.MinPressTime //
| (uint)0 << LogContentBits.MaxPress //
| (uint)0 << LogContentBits.MaxPressTime //
| (uint)0 << LogContentBits.MinTemp //
| (uint)0 << LogContentBits.MinTempTime //
| (uint)0 << LogContentBits.MaxTemp //
| (uint)0 << LogContentBits.MaxTempTime //
| (uint)0 << LogContentBits.CurrentPress //
| (uint)0 << LogContentBits.CurrentTemp //
| (uint)1 << LogContentBits.ExtendedAlarm // ALWAYS ON
| (uint)1 << LogContentBits._RecordCheckSum; // ALWAYS ON - er - 10319033731
var contentBytes = BitConverter.GetBytes(content);
Array.Reverse(contentBytes);
Console.WriteLine($"{"DATALOGGER:",11} {content,11} - {BitConverter.ToString(contentBytes).Replace("-", "")}");
uint fdr = (uint)1 << LogContentBits.AlarmStatus // ALWAYS ON
| (uint)1 << LogContentBits.BillingCounter // ALWAYS ON
| (uint)0 << LogContentBits.ReverseCounter //
| (uint)0 << LogContentBits.MaxFlow //
| (uint)0 << LogContentBits.MaxFlowTime //
| (uint)0 << LogContentBits.PeakFlow //
| (uint)0 << LogContentBits.PeakFlowTime //
| (uint)0 << LogContentBits.AvgFlow //
| (uint)0 << LogContentBits.BrokenPipe //
| (uint)0 << LogContentBits.BrokenPipeTime //
| (uint)1 << LogContentBits.MinFlow //
| (uint)0 << LogContentBits.MinFlowTime //
| (uint)0 << LogContentBits.ForwardCounter //
| (uint)1 << LogContentBits._UTC32 // ALWAYS ON
| (uint)0 << LogContentBits._MaskSelector_1_1 //
| (uint)0 << LogContentBits._MaskSelector_1_2 //
| (uint)0 << LogContentBits.MinPress //
| (uint)0 << LogContentBits.MinPressTime //
| (uint)0 << LogContentBits.MaxPress //
| (uint)0 << LogContentBits.MaxPressTime //
| (uint)0 << LogContentBits.MinTemp //
| (uint)0 << LogContentBits.MinTempTime //
| (uint)0 << LogContentBits.MaxTemp //
| (uint)0 << LogContentBits.MaxTempTime //
| (uint)0 << LogContentBits.CurrentPress //
| (uint)0 << LogContentBits.CurrentTemp //
| (uint)1 << LogContentBits.ExtendedAlarm // ALWAYS ON
| (uint)1 << LogContentBits._RecordCheckSum; // ALWAYS ON
var fdrBytes = BitConverter.GetBytes(fdr);
Array.Reverse(fdrBytes);
Console.WriteLine($"{"FDR:",11} {fdr,11} - {BitConverter.ToString(fdrBytes).Replace("-", "")}");
Console.WriteLine();
uint min = 201344787;
uint def = 206906379;
uint max = 4294967295;
for (byte i = 0; i < LogContentBits.BitMask.Length; i++)
{
Console.WriteLine($"Min: {(min >> i) % 2} - Def: {(def >> i) % 2} - Max: {(max >> i) % 2} - {LogContentBits.BitMask[i]}");
}
} // CONTENT: 67110031 - 04-00-04-8F => 0400048F <-> 8F040004 04000C03
static void Main123()
{
// Console.WriteLine(BitConverter.ToInt32(new byte[] { 0xEC, 0xFF, 0xFF, 0xFF }, 0));
// SIRTServer.StartServer(Console.WriteLine, Console.WriteLine, 6, 8);
// SIRTServer.StartProgramming(433, 412013443, "0E9FACC6A0E1EF1C3B27A49BAC216535");
// SIRTServer.StartProgramming(433, 412013444, "0E9FACC6A0E1EF1C3B27A49BAC216535");
// SIRTServer.StartProgramming(433, 412013356, "80D46C00E1BED73FE0DA85D95CA4BEE3");
// SIRTServer.StartProgramming(433, 412013081, "7B5F2F606155C670BD9891231A598EF3");
// SIRTServer.StartProgramming(433, 412013082, "A10BB3C32B71894BD8BB17884973E616");
// SIRTServer.StartProgramming(433, 412013083, "15EEC94741740FB1EA736CF6468A4790");
// SIRTServer.StartProgramming(433, 412013084, "6E742330A56149E8CF94ABD70576573D");
// SIRTServer.StartProgramming(433, 412013087, "C4D1DC170D7E219C26FDE76F9B2DC89A");
// SIRTServer.StartProgramming(433, 412013078, "4E788CF5F57FF977C85F458049D00387");
// SIRTServer.StartProgramming(868, 402001154, "0E9FACC6A0E1EF1C3B27A49BAC216535");
// SIRTServer.StartProgramming(433, 412012695, "867DD2A34C382B7D1190DD563E6B52C4");
// SIRTServer.StartProgramming(433, 412013356, "80D46C00E1BED73FE0DA85D95CA4BEE3");
}
public static void MainRF(params string[] args)
{
//var pam03 = new PAM03();
//pam03.Run("COM6", "402010030", "E6C88800DEB868C0D6A84880CE982840");
//pam03.Run("COM6", "402010027", "D9C154DC274966AB71AD5D804A322178");
//return pam03.Run("COM7", "412004190", "0E9FACC6A0E1EF1C3B27A49BAC216535");
// 10402010030 E6C88800DEB868C0D6A84880CE982840
//try
//{
// return pam03.Run("COM10", "402009768", "3CB64CBCB71F8D0F9F69FF18DF5D24D3");
//}
//catch (System.Exception e)
//{
// return -1;
//}
}
class FDRMask
{
public const byte LOG_ALARM_STATE = 0; // 0x00000001, //!< AlarmState (16 bits)
public const byte LOG_BILLING_COUNTER = 1; // 0x00000002, //!< BillingCounter
public const byte LOG_REVERSE_COUNTER = 2; // 0x00000004, //!< Backward or ReverseCounter
public const byte LOG_MAX_FLOW_VAL = 3; // 0x00000008, //!< Value of MaxFlow
public const byte LOG_MAX_FLOW_TIME = 4; // 0x00000010, //!< Date/Time of MaxFlow
public const byte LOG_PEAK_FLOW_VAL = 5; // 0x00000020, //!< Value of PeakFlow
public const byte LOG_PEAK_FLOW_TIME = 6; // 0x00000040, //!< Date/Time of PeakFlow
public const byte LOG_AVG_FLOW_VAL = 7; // 0x00000080, //!< Current Flow Value (Average of Period)
public const byte LOG_BROKEN_PIPE_FLOW_VAL = 8; // 0x00000100, //!< Value of BrokenPipe
public const byte LOG_BROKEN_PIPE_FLOW_TIME = 9; // 0x00000200, //!< Date/Time of BrokenPipe
public const byte LOG_MIN_FLOW_VAL = 10; // 0x00000400, //!< Value of FlowMin
public const byte LOG_MIN_FLOW_TIME = 11; // 0x00000800, //!< Date/Time of FlowMin
public const byte LOG_FORWARD_COUNTER = 12; // 0x00001000, //!< ForwardCounter
// public const byte LOG_FORWARD_COUNTER = 12; // 0x00002000, //!< ForwardCounter
// public const byte LOG_FORWARD_COUNTER = 12; // 0x00004000, //!< ForwardCounter
// public const byte LOG_FORWARD_COUNTER = 12; // 0x00008000, //!< ForwardCounter
public const byte LOG_MIN_PRESS_VAL = 13; // 0x00010000, //!< Pressure Minimum
public const byte LOG_MIN_PRESS_TIME = 14; // 0x00020000, //!< Pressure Minimum Time
public const byte LOG_MAX_PRESS_VAL = 15; // 0x00040000, //!< Pressure Maximum
public const byte LOG_MAX_PRESS_TIME = 16; // 0x00080000, //!< Pressure Maximum Time
public const byte LOG_MIN_TEMP_VAL = 17; // 0x00100000, //!< Temperature Minimum
public const byte LOG_MIN_TEMP_TIME = 18; // 0x00200000, //!< Temperature Minimum
public const byte LOG_MAX_TEMP_VAL = 19; // 0x00400000, //!< Temperature Maximum
public const byte LOG_MAX_TEMP_TIME = 20; // 0x00800000, //!< Temperature Maximum
public const byte LOG_CUR_PRESS_VAL = 21; // 0x01000000, //!< Pressure Current Value
public const byte LOG_CUR_TEMP_VAL = 22; // 0x02000000, //!< Temperature Current Value
public const byte LOG_EXT_ALARM_STATE = 23; // 0x04000000,    //<! Extended Alarm Status
};
class LogContentBits
{
public const byte AlarmStatus = 0; // 0x00000001 ;The active alarm information at UTC32 
public const byte BillingCounter = 1; // 0x00000002 ;The billing counter at UTC32 
public const byte ReverseCounter = 2; // 0x00000004 ;The reverse counter at UTC32 
public const byte MaxFlow = 3; // 0x00000008 ;The maximum flow of the current FDR period UTC32n -… UTC32n-1 
public const byte MaxFlowTime = 4; // 0x00000010 ;The Date/Time information when Qmax happened in the FDR period 
public const byte PeakFlow = 5; // 0x00000020 ;The peak flow of the current FDR period 
public const byte PeakFlowTime = 6; // 0x00000040 ;The Date/Time information when Qpeak happened in the FDR period 
public const byte AvgFlow = 7; // 0x00000080 ;The average flow rate in the current FDR period 
public const byte BrokenPipe = 8; // 0x00000100 ;The weak flow in the current FDR period  
public const byte BrokenPipeTime = 9; // 0x00000200 ;The Date/Time information when Qweak happened in the FDR period 
public const byte MinFlow = 10; // 0x00000400 ;The minimum flow in the current FDR period 
public const byte MinFlowTime = 11; // 0x00000800 ;The Date/Time information when Qmin happened in the FDR period 
public const byte ForwardCounter = 12; // 0x00001000 ;The forward counter at UTC32 
public const byte _UTC32 = 13; // 0x00002000 ;Date/Time information when the record was stored. 
public const byte _MaskSelector_1_1 = 14; // 0x00004000 ;Two selector bits to switch the bitmask of the RF-communication between the internal pages 
public const byte _MaskSelector_1_2 = 15; // 0x00008000 ;Two selector bits to switch the bitmask of the RF-communication between the internal pages
public const byte MinPress = 16; // 0x00010000 ;The minimum pressure in the current LOG period 
public const byte MinPressTime = 17; // 0x00020000 ;The number of 1-second intervals when Pmin happened in the LOG period 
public const byte MaxPress = 18; // 0x00040000 ;The maximum pressure in the current LOG period 
public const byte MaxPressTime = 19; // 0x00080000 ;The number of 1-second intervals when Pmax happened in the LOG period 
public const byte MinTemp = 20; // 0x00100000 ;The minimum temperature in the current LOG period 
public const byte MinTempTime = 21; // 0x00200000 ;The number of 1-second intervals when Tmin happened in the LOG period 
public const byte MaxTemp = 22; // 0x00400000 ;The maximum temperature in the current LOG period 
public const byte MaxTempTime = 23; // 0x00800000 ;The number of 1-second intervals when Tmax happened in the LOG period 
public const byte CurrentPress = 24; // 0x01000000 ;The last measured instantaneous pressure at RTC32 
public const byte CurrentTemp = 25; // 0x02000000 ;The last measured instantaneous temperature at RTC32  
public const byte ExtendedAlarm = 26; // 0x04000000 ;Similar to the AlarmStatus; P and T related Alarms. 
public const byte _RecordCheckSum = 27; // 0x08000000 ;A Checksum across the entire record 
public const byte _Reserved_1 = 28; // 0x10000000 ;A reserved mask for a further item 
public const byte _Reserved_2 = 29; // 0x20000000 ;A reserved mask for a further item 
public const byte _MaskSelector_2_1 = 30; // 0x40000000 ;The mirror of the MaskSelector_1 
public const byte _MaskSelector_2_2 = 31; // 0x80000000 ;The mirror of the MaskSelector_2 
public static string[] BitMask = new string[]
{
"AlarmStatus",
"BillingCounter",
"ReverseCounter",
"MaxFlow",
"MaxFlowTime",
"PeakFlow",
"PeakFlowTime",
"AvgFlow",
"BrokenPipe",
"BrokenPipeTime",
"MinFlow",
"MinFlowTime",
"ForwardCounter",
"_UTC32",
"_MaskSelector_1_1",
"_MaskSelector_1_2",
"MinPress",
"MinPressTime",
"MaxPress",
"MaxPressTime",
"MinTemp",
"MinTempTime",
"MaxTemp",
"MaxTempTime",
"CurrentPress",
"CurrentTemp",
"ExtendedAlarm",
"_RecordCheckSum",
"_Reserved_1",
"_Reserved_2",
"_MaskSelector_2_1",
"_MaskSelector_2_2",
};
}
[Flags]
enum LogContentHex : uint
{
AlarmStatus = 0x00000001, // ;The active alarm information at UTC32 
BillingCounter = 0x00000002, // ;The billing counter at UTC32 
ReverseCounter = 0x00000004, // ;The reverse counter at UTC32 
MaxFlow = 0x00000008, // ;The maximum flow of the current FDR period UTC32n -… UTC32n-1 
MaxFlowTime = 0x00000010, // ;The Date/Time information when Qmax happened in the FDR period 
PeakFlow = 0x00000020, // ;The peak flow of the current FDR period 
PeakFlowTime = 0x00000040, // ;The Date/Time information when Qpeak happened in the FDR period 
AvgFlow = 0x00000080, // ;The average flow rate in the current FDR period 
BrokenPipe = 0x00000100, // ;The weak flow in the current FDR period  
BrokenPipeTime = 0x00000200, // ;The Date/Time information when Qweak happened in the FDR period 
MinFlow = 0x00000400, // ;The minimum flow in the current FDR period 
MinFlowTime = 0x00000800, // ;The Date/Time information when Qmin happened in the FDR period 
ForwardCounter = 0x00001000, // ;The forward counter at UTC32 
_UTC32 = 0x00002000, // ;Date/Time information when the record was stored. 
_MaskSelector_1_1 = 0x00004000, // ;Two selector bits to switch the bitmask of the RF-communication between the internal pages 
_MaskSelector_1_2 = 0x00008000, // ;
MinPress = 0x00010000, // ;The minimum pressure in the current LOG period 
MinPressTime = 0x00020000, // ;The number of 1-second intervals when Pmin happened in the LOG period 
MaxPress = 0x00040000, // ;The maximum pressure in the current LOG period 
MaxPressTime = 0x00080000, // ;The number of 1-second intervals when Pmax happened in the LOG period 
MinTemp = 0x00100000, // ;The minimum temperature in the current LOG period 
MinTempTime = 0x00200000, // ;The number of 1-second intervals when Tmin happened in the LOG period 
MaxTemp = 0x00400000, // ;The maximum temperature in the current LOG period 
MaxTempTime = 0x00800000, // ;The number of 1-second intervals when Tmax happened in the LOG period 
CurrentPress = 0x01000000, // ;The last measured instantaneous pressure at RTC32 
CurrentTemp = 0x02000000, // ;The last measured instantaneous temperature at RTC32  
ExtendedAlarm = 0x04000000, // ;"Similar to the AlarmStatus; P and T related Alarms. "
_RecordCheckSum = 0x08000000, // ;A Checksum across the entire FDR record 
_Reserved_1 = 0x10000000, // ;A reserved mask for a further item 
_Reserved_2 = 0x20000000, // ;A reserved mask for a further item 
_MaskSelector_2_1 = 0x40000000, // ;The mirror of the MaskSelector_1 
_MaskSelector_2_2 = 0x80000000, // ;The mirror of the MaskSelector_2 
}
class AlarmMask
{
public const byte ALARM_REBOOT = 0; // immer An
public const byte ALARM_LOW_BATTERY = 1;
public const byte ALARM_VERY_LOW_BATTERY = 2; /* For consistency with st_alarm_bit_t only */
public const byte ALARM_CONFIG_ERROR = 3;
public const byte ALARM_EMPTY_PIPE = 4;
public const byte ALARM_MAGNETIC_TAMPER = 5; /* For consistency with st_alarm_bit_t only */
public const byte ALARM_REVERSE_FLOW = 6;
public const byte ALARM_SUSPECT_LEAK = 7;
public const byte ALARM_BROKEN_PIPE = 8;
public const byte ALARM_LOW_PRESSURE = 9;
public const byte ALARM_HIGH_PRESSURE = 10;
public const byte ALARM_LOW_TEMPERATURE = 11;
public const byte ALARM_HIGH_TEMPERATURE = 12;
public const byte ALARM_RADIO_ERROR = 13;
public const byte ALARM_METROLOGY_PARAMS = 14;
public const byte ALARM_METROLOGY_MEASURE = 15;
public const byte ALARM_MAX = 16;
}; // ' CSD ', IIF(i.CSD_Wert IS NULL, i.CSD_Charcode, 'mit neue konfiguration')
public static void Main1()
{
Console.WriteLine(BitConverter.ToInt32(new byte[] { 0xE9, 0xFF, 0xFF, 0xFF }, 0));
Console.WriteLine(BitConverter.ToInt32(new byte[] { 0xAD, 0xFF, 0xFF, 0xFF }, 0));
Console.WriteLine(BitConverter.ToInt32(new byte[] { 0xE6, 0xFF, 0xFF, 0xFF }, 0));
Console.WriteLine(BitConverter.ToInt32(new byte[] { 0x03, 0x00, 0x00, 0x00 }, 0));
//var alarmMask = 1 << AlarmMask.ALARM_REBOOT
// | 1 << AlarmMask.ALARM_LOW_BATTERY
// | 0 << AlarmMask.ALARM_VERY_LOW_BATTERY
// | 0 << AlarmMask.ALARM_CONFIG_ERROR
// | 1 << AlarmMask.ALARM_EMPTY_PIPE
// | 0 << AlarmMask.ALARM_MAGNETIC_TAMPER
// | 1 << AlarmMask.ALARM_REVERSE_FLOW
// | 1 << AlarmMask.ALARM_SUSPECT_LEAK
// | 1 << AlarmMask.ALARM_BROKEN_PIPE
// | 0 << AlarmMask.ALARM_LOW_PRESSURE
// | 0 << AlarmMask.ALARM_HIGH_PRESSURE
// | 0 << AlarmMask.ALARM_LOW_TEMPERATURE
// | 0 << AlarmMask.ALARM_HIGH_TEMPERATURE
// | 0 << AlarmMask.ALARM_RADIO_ERROR
// | 0 << AlarmMask.ALARM_METROLOGY_PARAMS
// | 0 << AlarmMask.ALARM_METROLOGY_MEASURE
// | 0 << AlarmMask.ALARM_MAX;
//var alarmBytes = BitConverter.GetBytes(alarmMask);
//Array.Reverse(alarmBytes);
//Console.WriteLine($"ALARM_MASK: {alarmMask} - {BitConverter.ToString(alarmBytes).Replace("-", "")}");
//var dataLogger = 1 << FDRMask.LOG_ALARM_STATE
// | 1 << FDRMask.LOG_BILLING_COUNTER
// | 0 << FDRMask.LOG_REVERSE_COUNTER
// | 0 << FDRMask.LOG_MAX_FLOW_VAL
// | 0 << FDRMask.LOG_MAX_FLOW_TIME
// | 0 << FDRMask.LOG_PEAK_FLOW_VAL
// | 0 << FDRMask.LOG_PEAK_FLOW_TIME
// | 1 << FDRMask.LOG_CUR_FLOW_VAL
// | 0 << FDRMask.LOG_BROKEN_PIPE_FLOW_VAL
// | 0 << FDRMask.LOG_BROKEN_PIPE_FLOW_TIME
// | 1 << FDRMask.LOG_MIN_FLOW_VAL
// | 0 << FDRMask.LOG_MIN_FLOW_TIME
// | 0 << FDRMask.LOG_FORWARD_COUNTER
// | 0 << FDRMask.LOG_MIN_PRESS_VAL
// | 0 << FDRMask.LOG_MIN_PRESS_TIME
// | 0 << FDRMask.LOG_MAX_PRESS_VAL
// | 0 << FDRMask.LOG_MAX_PRESS_TIME
// | 0 << FDRMask.LOG_MIN_TEMP_VAL
// | 0 << FDRMask.LOG_MIN_TEMP_TIME
// | 0 << FDRMask.LOG_MAX_TEMP_VAL
// | 0 << FDRMask.LOG_MAX_TEMP_TIME
// | 0 << FDRMask.LOG_CUR_PRESS_VAL
// | 0 << FDRMask.LOG_CUR_TEMP_VAL
// | 1 << FDRMask.LOG_EXT_ALARM_STATE;
//var dataLoggerBytes = BitConverter.GetBytes(dataLogger);
//Array.Reverse(dataLoggerBytes);
//Console.WriteLine($"DATA_LOGGER: {dataLogger} - {BitConverter.ToString(dataLoggerBytes).Replace("-", "")}");
//var fixDateReading = 1 << FDRMask.LOG_ALARM_STATE
// | 1 << FDRMask.LOG_BILLING_COUNTER
// | 0 << FDRMask.LOG_REVERSE_COUNTER
// | 0 << FDRMask.LOG_MAX_FLOW_VAL
// | 0 << FDRMask.LOG_MAX_FLOW_TIME
// | 0 << FDRMask.LOG_PEAK_FLOW_VAL
// | 0 << FDRMask.LOG_PEAK_FLOW_TIME
// | 1 << FDRMask.LOG_CUR_FLOW_VAL
// | 0 << FDRMask.LOG_BROKEN_PIPE_FLOW_VAL
// | 0 << FDRMask.LOG_BROKEN_PIPE_FLOW_TIME
// | 1 << FDRMask.LOG_MIN_FLOW_VAL
// | 0 << FDRMask.LOG_MIN_FLOW_TIME
// | 0 << FDRMask.LOG_FORWARD_COUNTER
// | 0 << FDRMask.LOG_MIN_PRESS_VAL
// | 0 << FDRMask.LOG_MIN_PRESS_TIME
// | 0 << FDRMask.LOG_MAX_PRESS_VAL
// | 0 << FDRMask.LOG_MAX_PRESS_TIME
// | 0 << FDRMask.LOG_MIN_TEMP_VAL
// | 0 << FDRMask.LOG_MIN_TEMP_TIME
// | 0 << FDRMask.LOG_MAX_TEMP_VAL
// | 0 << FDRMask.LOG_MAX_TEMP_TIME
// | 0 << FDRMask.LOG_CUR_PRESS_VAL
// | 0 << FDRMask.LOG_CUR_TEMP_VAL
// | 1 << FDRMask.LOG_EXT_ALARM_STATE;
//var fixDateReadingBytes = BitConverter.GetBytes(fixDateReading);
//Array.Reverse(fixDateReadingBytes);
//Console.WriteLine($"FDR_LOGGER: {fixDateReading} - {BitConverter.ToString(fixDateReadingBytes).Replace("-", "")}");
//var x1 = 0xD29F;
//var x2 = 0xD39F;
//Console.WriteLine(new string('=', 50));
//Console.WriteLine($"ALARM_REBOOT: [{(int)AlarmMask.ALARM_REBOOT,2}] {(x1 >> AlarmMask.ALARM_REBOOT) % 2} {(x2 >> AlarmMask.ALARM_REBOOT) % 2} ");
//Console.WriteLine($"ALARM_LOW_BATTERY: [{(int)AlarmMask.ALARM_LOW_BATTERY,2}] {(x1 >> AlarmMask.ALARM_LOW_BATTERY) % 2} {(x2 >> AlarmMask.ALARM_LOW_BATTERY) % 2} ");
//Console.WriteLine($"ALARM_VERY_LOW_BATTERY: [{(int)AlarmMask.ALARM_VERY_LOW_BATTERY,2}] {(x1 >> AlarmMask.ALARM_VERY_LOW_BATTERY) % 2} {(x2 >> AlarmMask.ALARM_VERY_LOW_BATTERY) % 2} ");
//Console.WriteLine($"ALARM_CONFIG_ERROR: [{(int)AlarmMask.ALARM_CONFIG_ERROR,2}] {(x1 >> AlarmMask.ALARM_CONFIG_ERROR) % 2} {(x2 >> AlarmMask.ALARM_CONFIG_ERROR) % 2} ");
//Console.WriteLine($"ALARM_EMPTY_PIPE: [{(int)AlarmMask.ALARM_EMPTY_PIPE,2}] {(x1 >> AlarmMask.ALARM_EMPTY_PIPE) % 2} {(x2 >> AlarmMask.ALARM_EMPTY_PIPE) % 2} ");
//Console.WriteLine($"ALARM_MAGNETIC_TAMPER: [{(int)AlarmMask.ALARM_MAGNETIC_TAMPER,2}] {(x1 >> AlarmMask.ALARM_MAGNETIC_TAMPER) % 2} {(x2 >> AlarmMask.ALARM_MAGNETIC_TAMPER) % 2} ");
//Console.WriteLine($"ALARM_REVERSE_FLOW: [{(int)AlarmMask.ALARM_REVERSE_FLOW,2}] {(x1 >> AlarmMask.ALARM_REVERSE_FLOW) % 2} {(x2 >> AlarmMask.ALARM_REVERSE_FLOW) % 2} ");
//Console.WriteLine($"ALARM_SUSPECT_LEAK: [{(int)AlarmMask.ALARM_SUSPECT_LEAK,2}] {(x1 >> AlarmMask.ALARM_SUSPECT_LEAK) % 2} {(x2 >> AlarmMask.ALARM_SUSPECT_LEAK) % 2} ");
//Console.WriteLine($"ALARM_BROKEN_PIPE: [{(int)AlarmMask.ALARM_BROKEN_PIPE,2}] {(x1 >> AlarmMask.ALARM_BROKEN_PIPE) % 2} {(x2 >> AlarmMask.ALARM_BROKEN_PIPE) % 2} ");
//Console.WriteLine($"ALARM_LOW_PRESSURE: [{(int)AlarmMask.ALARM_LOW_PRESSURE,2}] {(x1 >> AlarmMask.ALARM_LOW_PRESSURE) % 2} {(x2 >> AlarmMask.ALARM_LOW_PRESSURE) % 2} ");
//Console.WriteLine($"ALARM_HIGH_PRESSURE: [{(int)AlarmMask.ALARM_HIGH_PRESSURE,2}] {(x1 >> AlarmMask.ALARM_HIGH_PRESSURE) % 2} {(x2 >> AlarmMask.ALARM_HIGH_PRESSURE) % 2} ");
//Console.WriteLine($"ALARM_LOW_TEMPERATURE: [{(int)AlarmMask.ALARM_LOW_TEMPERATURE,2}] {(x1 >> AlarmMask.ALARM_LOW_TEMPERATURE) % 2} {(x2 >> AlarmMask.ALARM_LOW_TEMPERATURE) % 2} ");
//Console.WriteLine($"ALARM_HIGH_TEMPERATURE: [{(int)AlarmMask.ALARM_HIGH_TEMPERATURE,2}] {(x1 >> AlarmMask.ALARM_HIGH_TEMPERATURE) % 2} {(x2 >> AlarmMask.ALARM_HIGH_TEMPERATURE) % 2} ");
//Console.WriteLine($"ALARM_RADIO_ERROR: [{(int)AlarmMask.ALARM_RADIO_ERROR,2}] {(x1 >> AlarmMask.ALARM_RADIO_ERROR) % 2} {(x2 >> AlarmMask.ALARM_RADIO_ERROR) % 2} ");
//Console.WriteLine($"ALARM_METROLOGY_PARAMS: [{(int)AlarmMask.ALARM_METROLOGY_PARAMS,2}] {(x1 >> AlarmMask.ALARM_METROLOGY_PARAMS) % 2} {(x2 >> AlarmMask.ALARM_METROLOGY_PARAMS) % 2} ");
//Console.WriteLine($"ALARM_METROLOGY_MEASURE: [{(int)AlarmMask.ALARM_METROLOGY_MEASURE,2}] {(x1 >> AlarmMask.ALARM_METROLOGY_MEASURE) % 2} {(x2 >> AlarmMask.ALARM_METROLOGY_MEASURE) % 2}");
//Console.WriteLine($"ALARM_MAX: [{(int)AlarmMask.ALARM_MAX,2}] {(x1 >> AlarmMask.ALARM_MAX) % 2} {(x2 >> AlarmMask.ALARM_MAX) % 2} ");
//Console.WriteLine(int.MaxValue);
//Console.WriteLine(uint.MaxValue);
//Console.WriteLine(long.MaxValue);
}
//public static void /*MainCSD()*/ Main()
//{
// var alarmEnableMask = 0xD39F0000;
// var ix = 0;
// foreach (var item in Enum.GetValues(typeof(AlarmMask)).Cast<AlarmMask>().OrderBy(x => (uint)x).ToArray())
// {
// Console.WriteLine($"{item,23} = {item:X} = {(uint)item,5} = {(alarmEnableMask << ix++) & 1}");
// }
// foreach (var item in Enum.GetValues(typeof(FDRMask)).Cast<FDRMask>().OrderBy(x => x).ToArray())
// {
// Console.WriteLine($"{item} = {item:X} = {(uint)item}");
// }
// ushort value = 3;
// Console.WriteLine($"0: {value >> 0 & 1}");
// Console.WriteLine($"0: {value >> 1 & 1}");
// Console.WriteLine($"0: {value >> 2 & 1}");
// Console.WriteLine("CSD CSD 772161_MW");
// Console.WriteLine("=============================================================================");
// var alarm = AlarmMask.ALARM_REBOOT
// | AlarmMask.ALARM_EMPTY_PIPE
// | AlarmMask.ALARM_LOW_BATTERY
// | AlarmMask.ALARM_REVERSE_FLOW;
// Console.WriteLine($"CUSTOMER_AlarmVisualMask: {BitConverter.ToString(BitConverter.GetBytes((int)alarm))}");
// var dlg = FDRMask.LOG_BILLING_COUNTER
// | FDRMask.LOG_MIN_FLOW_VAL
// | FDRMask.LOG_CUR_FLOW_VAL // ... AverageFlow !?
// | FDRMask.LOG_ALARM_STATE
// | FDRMask.LOG_EXT_ALARM_STATE;
// Console.WriteLine($"PERIODICLOG_DataLogContents: {BitConverter.ToString(BitConverter.GetBytes((int)dlg))}");
// var fdr = FDRMask.LOG_BILLING_COUNTER
// | FDRMask.LOG_MIN_FLOW_VAL
// | FDRMask.LOG_CUR_FLOW_VAL // ... AverageFlow !?
// | FDRMask.LOG_ALARM_STATE
// | FDRMask.LOG_EXT_ALARM_STATE;
// Console.WriteLine($"PERIODICLOG_FixedDateReadingContents: {BitConverter.ToString(BitConverter.GetBytes((int)fdr))}");
//}
/// <summary>
/// CSD 769400 Arqiva Thames Water
/// </summary>
public static void Main1231231()
{
Console.WriteLine("CSD 769400 Arqiva Thames Water");
Console.WriteLine("=============================================================================");
Console.WriteLine("--- DN50 --------------------------------------------------------------------");
Console.WriteLine($"CUSTOMER_ExcessFlowVolumeThreshold: {BitConverter.ToString(BitConverter.GetBytes((int)(37.5 * 1000) / 256))}");
var alarm = 1 << AlarmMask.ALARM_EMPTY_PIPE
| 1 << AlarmMask.ALARM_SUSPECT_LEAK
| 1 << AlarmMask.ALARM_LOW_BATTERY
| 1 << AlarmMask.ALARM_HIGH_TEMPERATURE
| 1 << AlarmMask.ALARM_LOW_TEMPERATURE
| 1 << AlarmMask.ALARM_HIGH_PRESSURE
| 1 << AlarmMask.ALARM_LOW_PRESSURE;
Console.WriteLine($"CUSTOMER_AlarmVisualMask: {BitConverter.ToString(BitConverter.GetBytes(alarm))}");
var dlg = 1 <<FDRMask.LOG_BILLING_COUNTER
| 1 <<FDRMask.LOG_REVERSE_COUNTER
| 1 <<FDRMask.LOG_MIN_FLOW_TIME
| 1 <<FDRMask.LOG_MIN_FLOW_VAL
| 1 <<FDRMask.LOG_AVG_FLOW_VAL
| 1 <<FDRMask.LOG_PEAK_FLOW_TIME
| 1 <<FDRMask.LOG_PEAK_FLOW_VAL
| 1 <<FDRMask.LOG_MAX_FLOW_TIME
| 1 <<FDRMask.LOG_MAX_FLOW_VAL
| 1 <<FDRMask.LOG_ALARM_STATE;
Console.WriteLine($"PERIODICLOG_DataLogContents: {BitConverter.ToString(BitConverter.GetBytes(dlg))}");
var fdr = 1 << FDRMask.LOG_BILLING_COUNTER
| 1 << FDRMask.LOG_ALARM_STATE;
Console.WriteLine($"PERIODICLOG_FixedDateReadingContents: {BitConverter.ToString(BitConverter.GetBytes(fdr))}");
}
}
}