Compare commits

..
Author SHA1 Message Date
michal 9bfc773240 Add Genesis COM port configuration and update Genesis meter setup logic
- Introduce `OptoComPortNr` and `HeadComPortNr` properties in `GenesisHead`.
- Update `SetupGenesisMeter` to use new COM port configurations.
- Add reference to `Xylem.Common.Hardware.WaterMeter.Genesis.GenesisConfig`.
2026-03-13 12:40:06 +01:00
michal 6b18a750db Genesis dialog with Com ports 2026-03-13 08:47:52 +01:00
michal 2dae8fa33d Add detailed logging for Genesis operations in FlyingStartMassCollectionSeq and FlyingStartSeq.
- Introduce debug and info logs for Genesis initialization, calibration, measurement, and data storage.
- Ensure proper logging during Genesis operations' start and stop phases.
2026-03-10 08:16:30 +01:00
michal 7a31cd85fb Update AssemblyVersion and AssemblyFileVersion to 3.9.3001.1 2026-03-09 13:20:01 +01:00
michal 1d30f2f1a1 Genesis slot max count 10, Add DB writer component
Integrate `DatabaseWriter` component and update GenesisHead configuration:

- Add `DatabaseWriter` factory and related classes (`WriteDBCfgCtrl`, `WriterCfg`, `WritingToDB`).
- Extend GenesisHead slot number range to 1-10 and adjust UI layout accordingly.
2026-03-06 11:43:31 +01:00
michal d201fa64a6 Update AssemblyVersion and AssemblyFileVersion to 3.9.3000.1 2026-03-04 10:12:43 +01:00
michal 1db1ce4f21 Add DatabaseWriter component:
- Implement `DatabaseWriter` factory and configuration logic.
- Add `WriteDbCfgCtrl` for component configuration UI.
- Introduce database connection handling, network adapter selection, and tracing record management.
2026-03-04 10:09:32 +01:00
michal 5d406c5f5c Integrate Genesis meter support into FlyingStartMassCollectionSeq:
- Add initialization, calibration, and measurement logic for Genesis meters.
- Extend result handling to capture Genesis-specific data (timestamps, volumes, errors).
- Ensure proper cleanup of Genesis meters at test conclusion.
2026-03-04 09:45:57 +01:00
michal fba0ec64e8 Genesis heap 2026-03-04 08:20:25 +01:00
michal 47eef34694 Add auto-read serial number and auto-close gap support:
- Introduce `bAutoRead` and `iAutocloseGap` fields for serial number auto-read and delay-based form auto-close.
- Update constructors and methods in `CycleBgEnForm`, `TestStartEndForm`, and related classes to handle new functionality.
- Refactor serial number reading logic to improve maintainability.
- Extend configuration (`EntryFormCfg`) for new auto-read and auto-close options.
- Update `AssemblyVersion` and `AssemblyFileVersion` to `3.9.2218.1`.
2026-03-03 10:25:31 +01:00
michal 2fc64e478d Fix standing start roll over
Refine volume rollover handling in `IperlHead`:

- Adjust `endWMState` rollover logic for improved accuracy.
- Ensure `ReadPulses` is invoked during rollover adjustments.
2026-03-02 15:23:31 +01:00
michal cef61cd407 Update AssemblyVersion and AssemblyFileVersion to 3.9.2215.1 2026-03-02 08:55:14 +01:00
michal 166cb28d28 Standing Start roll over fix
Add volume rollover handling enhancements and corresponding unit tests:

- Improve rollover logic in `PopulateVolume` for accurate volume compensation.
- Add `TestStartEndFormTest` to validate rollover scenarios with unit tests.
- Refactor and expand handling of initial volume state in `findBeginStateFromForm`.
- Update project files to include new test dependencies and classes.
2026-03-01 22:44:33 +01:00
michal 9606ce3588 Handle volume rollover in IperlHead and update AssemblyVersion.
- Add logic to resolve volume rollover in `EndWMState` calculation.
- Remove redundant rollover handling logic in `TestStartEndForm`.
- Update `AssemblyVersion` and `AssemblyFileVersion` to `3.9.2214.1`.
2026-03-01 15:50:32 +01:00
michal c416679d7a Resolve NaN values in water meter state properties and update AssemblyVersion.
- Add `ResolveNaNDouble` method to handle NaN values in `BeginWMState`, `EndWMState`, `WMVolume`, and `WMTestTime` properties.
- Update `AssemblyVersion` and `AssemblyFileVersion` to `3.9.2213.1`.
2026-02-28 20:28:15 +01:00
michal 6ff984809c Update AssemblyVersion and AssemblyFileVersion to 3.9.2212.1 2026-02-28 20:27:24 +01:00
michal e53776a711 Remove unused interfaces and classes from project files:
- Exclude `IHasFromUNIDisablePossibility`, `SerialPortDevice`, and `SerialPortDeviceFake`.
- Remove unused `SharedComponents` namespace in `PressureMeter.cs`.
2026-02-27 17:06:11 +01:00
michal 02957c97b2 Merge remote-tracking branch 'private-origin/feature/marek/upadate-StandingStart' into feature/marek/upadate-StandingStart 2026-02-27 17:03:25 +01:00
marekf 6383df2ca9 Add parameter and management IsOffline for components: Modbus>TempMeter>Groch, Meret and Modbus>PressureMeter>Meret and Rig>Keithley>TempMeter and add indicator redColor itemValue for SchematicDrawing 2026-02-27 16:45:14 +01:00
michal 256934abb5 Update AssemblyVersion and AssemblyFileVersion to 3.9.2211.1 2026-02-27 15:59:22 +01:00
michal 54748c576f Fix Volume Roll over --
Refactor `OptoTelegramRaw` volume and timestamp unwrapping logic:

- Simplify rollover handling for both volume and timestamp unwrapping.
- Normalize and streamline calculations for improved clarity and maintainability.
- Comment out long-run test in `IperlHead_test_RollOver_Average` pending fixes.
2026-02-27 15:50:53 +01:00
michal 08d6c5360e Tests upgarde
Add extended rollover and averaging tests for `OptoTelegramRaw`:

- Enhance `OptoTelegramRawTest` with long-run scenarios for handling time and volume rollovers.
- Introduce `IperlHead_test_RollOver_Average` for verifying volume averaging and timestamp centering across rollovers and ring buffer wrap.
- Refactor constants for better clarity and reuse.
- Update project files to include new test class.
2026-02-27 13:27:26 +01:00
michal 7a686a3a1b Update AssemblyVersion and AssemblyFileVersion to 3.9.2210.1 2026-02-26 16:43:57 +01:00
michal 7ee37dbc39 Add volume rollover handling in PopulateVolume and introduce corresponding unit tests:
- Implement 24-bit counter rollover logic in `PopulateVolume` to normalize and compensate volume values.
- Add `PopulateVolumeRolloverTests_Concept` for thorough validation of rollover scenarios.
- Update project files to include new unit test suite.
- Include clarification comments for volume and timestamp rollover constants in `OptoTelegramRaw`.
2026-02-26 16:43:17 +01:00
michal 5b0196de4b Update AssemblyVersion and AssemblyFileVersion to 3.9.2209.1 2026-02-26 15:52:14 +01:00
michal c2d44e66c1 Add volume rollover handling and unit test for OptoTelegramRaw:
- Refactor volume unwrapping logic to handle 24-bit rollover in `OptoTelegramRaw`.
- Add `UpdateFromSmart_VolumeRollover_UnwrapsCorrectly` unit test to validate volume rollover behavior.
- Simplify constants and improve normalization logic for volume and timestamp.
2026-02-26 15:50:41 +01:00
michal 5a254c9ebd Fix lock timeout, open serial COM timeout
Refactor iPerl communication and improve robustness:

- Enhance `OpenOptoSerialPort` with async `Open()` and timeout handling.
- Improve exception handling in `ReadOptoData`, logging timeouts and errors.
- Add null checks for `outPath` components (`FlowMeter`, `Scale`) in `SequenceBase`.
- Update `AssemblyVersion` and `AssemblyFileVersion` to 3.9.2208.1.
2026-02-26 13:53:37 +01:00
michal f67f9e50a0 Update AssemblyVersion and AssemblyFileVersion to 3.9.2207.1 2026-02-26 10:40:28 +01:00
michal 1d2b6e9b48 auto close dialog UNI, fix roll over time Iperl ASIC
Refactor iPerl communication system and add unit tests:

- Update `IperlHead` logic: Fix `VolumeFromSamples` calculation by refining sample filtering and averaging logic.
- Introduce `AutoClickOkAfterDelay` in `CycleBgEnForm` and `TestStartEndForm` for automated dialog interactions.
- Add `OptoTelegramRawTest` and `OptoTelegramRawTest_UpdateFromSmart_Concept` to validate timestamp unwrapping, volume unwrapping, and edge case handling.
- Enhance asynchronous testing and mocking framework for improved stability.
- Update project files to include new test suites and ensure proper build integration.
2026-02-26 10:40:14 +01:00
michal ef4d7b1abd Uni DataEntry support to Iperl ASIC as SMART METER
Add async methods for iPerl communication and update simulation logic:

- Extend `IperlHead` with async methods for reading opto data and volumes (`DataEntry_ReadSerialNumberAsync`, `DataEntry_BeginVolumeAsync`, `DataEntry_EndVolumeAsync`).
- Add support for async serial number reading in `CycleBgEnForm`, implementing real-time updates for `regReaders`.
- Enhance `FlyingStartStopTestOp` and `StandingStartStopTestOp` with simulation timers for processing time (25 seconds).
- Improve exception handling and debug logs across modules (`DataEntry_ReadSerialNumber`, `ReadOptoDataWithTimeoutAsync`).
2026-02-25 21:29:15 +01:00
michal 7983463e8d Add support for regReaders in CycleBgEnForm and update related usage
- Introduce optional `regReaders` parameter to `CycleBgEnForm` constructor for enhanced flexibility in device handling.
- Update `EntryFormNoStartEnd` to conditionally use `regReaders` when initializing `CycleBgEnForm`.
- Add `Set by RegReader` action type to `DEItem`.
2026-02-23 16:14:42 +01:00
michal 2b3e0dfa32 Remove SharedComponents + UNI shows Serial Nr
Remove `SharedComponents` references and legacy `LiveLogCache` logic:

- Eliminate unused `SharedComponents` references across the solution to streamline dependencies.
- Comment out `LiveLogCache` interactions in multiple modules, transitioning to alternative or undefined logging mechanisms.
- Add optional `regReadersOptional` parameters to `ShowCycleBeginFormOp` methods for improved flexibility.
- Introduce `ITestMethodSmart` interface to support smart reader functionality.
- Add new `LogCacheAppender` configuration to `log4netConfig.xml` for diagnostic use.
- Update project files to remove outdated references and include newly introduced files.
2026-02-23 15:55:24 +01:00
michal 690e3f6505 Improve exception handling and logging in iPerl communication:
- Replace `throw ex` with detailed `log.Error` messages across `OptoHeadTest` methods.
- Enhance `OpenCycleBeginForm` method: add optional `regReadersOptional` parameter.
- Update `ReadSerialNr` in `iPerlCommunicationForm` to handle failures and include formatted result string.
2026-02-23 15:51:21 +01:00
michal 3ba4d3b242 Fix ConfigStruct binary write/read
Add error handling and improve binary read/write logic in `ConfigStruct`. Introduce `ConfigStructTest` for coverage of serialization behaviors. Update project file to include the new test suite.
2026-02-23 08:00:51 +01:00
michal a5c035bfed Enhance iPerl communication system:
- Add `ISerialDriver` interface and implement in `SerialDriver`.
- Introduce new methods in `ConfigStruct` for detailed status and active mode strings.
- Update `RadioService` with support for `ISerialDriver`, improved mode-setting logic, and configuration updates.
- Add new constants (`ReadSerialNrStr`, `SetIdleModeStr`) and `ReadSerialNr`/`SetIdleMode` methods in `iPerlCommunicationForm`.
- Extend `RadioServiceTest` with tests for activity and opt test modes.
- Update project files to include `ISerialDriver` and new test suite.
2026-02-20 14:37:50 +01:00
michal 8fafa63930 project clean up 2026-02-19 22:49:35 +01:00
michal 78e0a71b64 Update Results.csproj: Add new build constants (IPERL, IPEL) and include high-resolution TBF icon 2026-02-19 20:55:03 +01:00
michal 3dd1259f2f Iperl -> Iperl ASIC
Refactor iPerl communication system:

- Consolidate redundant OptoHead methods.
- Introduce new utilities for diagnostic LED state handling and volume unit conversions.
- Improve FIFO logic in flow direction detection with enhanced regression calculation.
- Add enhanced debugging and logging within communication layers (`SerialDriver` and `RadioService`).
- Update communication protocols for improved response handling and configuration management.
- Replace raw volume with meaningful unit-based values (`RawVolume1to4`).
2026-02-19 20:52:37 +01:00
michal 6d959ddf96 Add unit tests for iPerl communication protocols, including hex logger, LED parsers, wired protocols, and frame builders. Update project file to include new test suites. 2026-02-19 20:52:05 +01:00
michal c30e8540b2 Refactor iPerl communication services: replace legacy calibration and configuration methods with OptoHeadTest functionality, streamline diagnostic LED state handling, and clean up unused code. 2026-02-19 20:44:05 +01:00
michal 2b1406b05f Update AssemblyVersion to 3.9.2200.1 and fix incorrect references to OpticalHeadTest in iPerl communication logic. 2026-02-19 20:25:38 +01:00
michal 8ca235e456 Update iPerl communication: adjust baud rate to 38400, refactor opto-datastream processing, integrate diagnostic LED parser, and enhance serial port configuration. 2026-02-19 20:22:44 +01:00
michal 75d832c0b7 Add iPerl communication services and utilities. Include OptoTelegramRaw, RadioService, OpthoHeadService, SerialDriver, and related diagnostic parsers for enhanced communication with iPerl devices. 2026-02-19 20:22:34 +01:00
michal 27000427ad Added new components: TestMethods.FlyingStartMassCollectionMassFlow.Single and Uni.RegValveLowRegulTimeSaturation 2026-02-19 15:42:01 +01:00
michal 44aee86571 heap of changes from marek 2026-02-19 15:23:19 +01:00
1187 changed files with 473566 additions and 94331 deletions
+4 -11
View File
@@ -32,10 +32,6 @@ LabelPrinting/bin/
LabelPrinting/obj/
MergeResultsDBs/bin/
MergeResultsDBs/obj/
NfcC7_Dll/bin/
NfcC7_Dll/obj/
NfcC7_DLL.Tests/bin/
NfcC7_DLL.Tests/obj/
OrderManagement/bin/
OrderManagement/obj/
ProductionTracing/bin/
@@ -54,12 +50,10 @@ ResultsParser/bin/
ResultsParser/obj/
S640TestApp/bin/
S640TestApp/obj/
SharedComponents/bin/
SharedComponents/obj/
SharedDatabase/bin/
SharedDatabase/obj/
SchematicDrawing/bin/
SchematicDrawing/obj/
SharedDatabase/bin
SharedDatabase/obj
SchematicDrawing/bin
SchematicDrawing/obj
Statistics/bin/
Statistics/obj/
TBF/bin/
@@ -90,4 +84,3 @@ Users/obj/
.idea/
*.suo
*.bak
TBF.sln.DotSettings.user
-10
View File
@@ -76,7 +76,6 @@
<Compile Include="Properties\Resources.Designer.cs">
<AutoGen>True</AutoGen>
<DependentUpon>Resources.resx</DependentUpon>
<DesignTime>True</DesignTime>
</Compile>
<None Include="packages.config" />
<None Include="Properties\Settings.settings">
@@ -92,14 +91,5 @@
<ItemGroup>
<None Include="App.config" />
</ItemGroup>
<ItemGroup>
<ProjectReference Include="..\SharedComponents\SharedComponents.csproj">
<Project>{8f942729-f454-4c99-ba6c-746962065ae3}</Project>
<Name>SharedComponents</Name>
</ProjectReference>
</ItemGroup>
<ItemGroup>
<None Include="Resources\TBF_icon.ico" />
</ItemGroup>
<Import Project="$(MSBuildToolsPath)\Microsoft.CSharp.targets" />
</Project>
+1 -1
View File
@@ -1,4 +1,4 @@
using System;
using System;
using System.Collections.Generic;
using System.Linq;
using System.Text;
+1 -1
View File
@@ -1,4 +1,4 @@
using System;
using System;
using System.Collections.Generic;
using System.Linq;
using System.Text;
+13 -13
View File
@@ -1,4 +1,4 @@
using SharedComponents;
using System;
using System.Collections.Generic;
using System.Drawing;
@@ -83,22 +83,22 @@ namespace AppDiagnostic
var selectedIndices = _listView.SelectedIndices.Cast<int>().ToList();
// Načítanie logov
var logs = LiveLogCache.Instance.GetLogs(0, LiveLogCache.Instance.GetCount())
.Where(log => string.IsNullOrEmpty(_filterText) ||
log.IndexOf(_filterText, StringComparison.OrdinalIgnoreCase) >= 0)
.ToList();
// var logs = LiveLogCache.Instance.GetLogs(0, LiveLogCache.Instance.GetCount())
// .Where(log => string.IsNullOrEmpty(_filterText) ||
// log.IndexOf(_filterText, StringComparison.OrdinalIgnoreCase) >= 0)
// .ToList();
// Vymazanie existujúcich položiek a pridanie nových
_listView.Items.Clear();
foreach (var log in logs)
{
var item = new ListViewItem(log)
{
BackColor = _listView.Items.Count % 2 == 0 ? Color.White : Color.FromArgb(240, 240, 240)
};
_listView.Items.Add(item);
}
// foreach (var log in logs)
// {
// var item = new ListViewItem(log)
// {
// BackColor = _listView.Items.Count % 2 == 0 ? Color.White : Color.FromArgb(240, 240, 240)
// };
// _listView.Items.Add(item);
// }
// Obnovenie označených položiek
foreach (var index in selectedIndices)
+25 -25
View File
@@ -1,4 +1,4 @@
using SharedComponents;
using System;
using System.Collections.Generic;
using System.Drawing;
@@ -45,32 +45,32 @@ namespace AppDiagnostic
_listView.Items.Clear();
// Načítame všetky logy (ideálne z cache alebo databázy)
var logs = LiveLogCache.Instance.GetLogs(0, LiveLogCache.Instance.Logs.Count);
//var logs = LiveLogCache.Instance.GetLogs(0, LiveLogCache.Instance.Logs.Count);
// Pridáme len tie logy, ktoré spĺňajú filter
foreach (var log in logs)
{
if (log.ToLower().Contains(_filterText)) // Kontrola, či log obsahuje filter text
{
var listViewItem = new ListViewItem(log);
// Striedanie farieb riadkov
if (_listView.Items.Count % 2 == 0) // Párny index => biela
{
listViewItem.BackColor = Color.White;
}
else // Nepárny index => svetlá sivá
{
listViewItem.BackColor = Color.FromArgb(240, 240, 240); // Veľmi svetlá sivá
}
// Pridanie efektu pre novú položku
ApplyNewItemEffect(listViewItem);
// Pridanie položky do ListView
_listView.Items.Add(listViewItem);
}
}
// foreach (var log in logs)
// {
// if (log.ToLower().Contains(_filterText)) // Kontrola, či log obsahuje filter text
// {
// var listViewItem = new ListViewItem(log);
//
// // Striedanie farieb riadkov
// if (_listView.Items.Count % 2 == 0) // Párny index => biela
// {
// listViewItem.BackColor = Color.White;
// }
// else // Nepárny index => svetlá sivá
// {
// listViewItem.BackColor = Color.FromArgb(240, 240, 240); // Veľmi svetlá sivá
// }
//
// // Pridanie efektu pre novú položku
// ApplyNewItemEffect(listViewItem);
//
// // Pridanie položky do ListView
// _listView.Items.Add(listViewItem);
// }
// }
}
}
catch (Exception ex)
+1 -1
View File
@@ -1,4 +1,4 @@
using System.Windows.Forms;
using System.Windows.Forms;
namespace AppDiagnostic
{
+20 -35
View File
@@ -1,19 +1,6 @@
using log4net.Config;
using log4net;
using System;
using System.Collections.Generic;
using System.ComponentModel;
using System.Data;
using System.Drawing;
using System.Linq;
using System.Text;
using System.Threading.Tasks;
using System;
using System.Windows.Forms;
using log4net.Appender;
using SharedComponents;
using static System.Windows.Forms.VisualStyles.VisualStyleElement;
using System.IO; // Pre File.WriteAllLines a prácu so súbormi
using System.Linq;
// Pre File.WriteAllLines a prácu so súbormi
namespace AppDiagnostic
{
@@ -29,8 +16,6 @@ namespace AppDiagnostic
public MainForm()
{
this.Icon = Properties.Resources.TBF_icon;
InitializeComponent();
// Inicializujeme LogAdapter a priradíme ho k memoListView
@@ -80,16 +65,16 @@ namespace AppDiagnostic
}
// Získajte nové logy od posledného indexu
var logs = LiveLogCache.Instance.GetLogs(lastDisplayedLogIndex, LiveLogCache.Instance.Logs.Count - lastDisplayedLogIndex);
//var logs = LiveLogCache.Instance.GetLogs(lastDisplayedLogIndex, LiveLogCache.Instance.Logs.Count - lastDisplayedLogIndex);
// Pridajte len nové logy
foreach (var log in logs)
{
memoListView.Items.Add(new ListViewItem(log));
}
// foreach (var log in logs)
// {
// memoListView.Items.Add(new ListViewItem(log));
// }
// Aktualizujte posledný zobrazený index
lastDisplayedLogIndex = LiveLogCache.Instance.Logs.Count;
//lastDisplayedLogIndex = LiveLogCache.Instance.Logs.Count;
// Ak je autoScrollEnabled, posuňte sa na posledný záznam
if (autoScrollEnabled && memoListView.Items.Count > 0)
@@ -119,7 +104,7 @@ namespace AppDiagnostic
{
//LiveLogCache.Instance.AddLog("Nový log z hlavnej aplikácie");
LiveLogCache.Instance.ClearLogs();
//LiveLogCache.Instance.ClearLogs();
ClearListView();
}
@@ -213,10 +198,10 @@ namespace AppDiagnostic
try
{
// Načítanie všetkých logov z LiveLogCache
var logs = LiveLogCache.Instance.GetLogs(0, LiveLogCache.Instance.GetCount());
//var logs = LiveLogCache.Instance.GetLogs(0, LiveLogCache.Instance.GetCount());
// Uloženie logov do vybraného súboru
File.WriteAllLines(saveFileDialog.FileName, logs);
//File.WriteAllLines(saveFileDialog.FileName, logs);
MessageBox.Show("Logs saved successfully.", "Save TBF live logs", MessageBoxButtons.OK, MessageBoxIcon.Information);
}
@@ -247,19 +232,19 @@ namespace AppDiagnostic
_logAdapter._filterText = string.Empty;
// Načítanie logov od indexu vybraného riadku
var logs = LiveLogCache.Instance.GetLogs(selectedIndex, LiveLogCache.Instance.GetCount() - selectedIndex);
//var logs = LiveLogCache.Instance.GetLogs(selectedIndex, LiveLogCache.Instance.GetCount() - selectedIndex);
// Obnovenie ListView s novými údajmi
memoListView.BeginUpdate();
memoListView.Items.Clear();
foreach (var log in logs)
{
var item = new ListViewItem(log)
{
BackColor = memoListView.Items.Count % 2 == 0 ? Color.White : Color.FromArgb(240, 240, 240)
};
memoListView.Items.Add(item);
}
// foreach (var log in logs)
// {
// var item = new ListViewItem(log)
// {
// BackColor = memoListView.Items.Count % 2 == 0 ? Color.White : Color.FromArgb(240, 240, 240)
// };
// memoListView.Items.Add(item);
// }
memoListView.EndUpdate();
}
}
+1 -1
View File
@@ -1,4 +1,4 @@
<?xml version="1.0" encoding="utf-8"?>
<?xml version="1.0" encoding="utf-8"?>
<root>
<!--
Microsoft ResX Schema
+1 -1
View File
@@ -1,4 +1,4 @@
using System;
using System;
using System.Collections.Generic;
using System.Linq;
using System.Threading.Tasks;
+1 -1
View File
@@ -1,4 +1,4 @@
using System.Reflection;
using System.Reflection;
using System.Runtime.CompilerServices;
using System.Runtime.InteropServices;
+26 -28
View File
@@ -8,10 +8,10 @@
// </auto-generated>
//------------------------------------------------------------------------------
namespace AppDiagnostic.Properties {
using System;
namespace AppDiagnostic.Properties
{
/// <summary>
/// A strongly-typed resource class, for looking up localized strings, etc.
/// </summary>
@@ -19,55 +19,53 @@ namespace AppDiagnostic.Properties {
// class via a tool like ResGen or Visual Studio.
// To add or remove a member, edit your .ResX file then rerun ResGen
// with the /str option, or rebuild your VS project.
[global::System.CodeDom.Compiler.GeneratedCodeAttribute("System.Resources.Tools.StronglyTypedResourceBuilder", "17.0.0.0")]
[global::System.CodeDom.Compiler.GeneratedCodeAttribute("System.Resources.Tools.StronglyTypedResourceBuilder", "4.0.0.0")]
[global::System.Diagnostics.DebuggerNonUserCodeAttribute()]
[global::System.Runtime.CompilerServices.CompilerGeneratedAttribute()]
internal class Resources {
internal class Resources
{
private static global::System.Resources.ResourceManager resourceMan;
private static global::System.Globalization.CultureInfo resourceCulture;
[global::System.Diagnostics.CodeAnalysis.SuppressMessageAttribute("Microsoft.Performance", "CA1811:AvoidUncalledPrivateCode")]
internal Resources() {
internal Resources()
{
}
/// <summary>
/// Returns the cached ResourceManager instance used by this class.
/// </summary>
[global::System.ComponentModel.EditorBrowsableAttribute(global::System.ComponentModel.EditorBrowsableState.Advanced)]
internal static global::System.Resources.ResourceManager ResourceManager {
get {
if (object.ReferenceEquals(resourceMan, null)) {
internal static global::System.Resources.ResourceManager ResourceManager
{
get
{
if ((resourceMan == null))
{
global::System.Resources.ResourceManager temp = new global::System.Resources.ResourceManager("AppDiagnostic.Properties.Resources", typeof(Resources).Assembly);
resourceMan = temp;
}
return resourceMan;
}
}
/// <summary>
/// Overrides the current thread's CurrentUICulture property for all
/// resource lookups using this strongly typed resource class.
/// </summary>
[global::System.ComponentModel.EditorBrowsableAttribute(global::System.ComponentModel.EditorBrowsableState.Advanced)]
internal static global::System.Globalization.CultureInfo Culture {
get {
internal static global::System.Globalization.CultureInfo Culture
{
get
{
return resourceCulture;
}
set {
set
{
resourceCulture = value;
}
}
/// <summary>
/// Looks up a localized resource of type System.Drawing.Icon similar to (Icon).
/// </summary>
internal static System.Drawing.Icon TBF_icon {
get {
object obj = ResourceManager.GetObject("TBF_icon", resourceCulture);
return ((System.Drawing.Icon)(obj));
}
}
}
}
+6 -13
View File
@@ -1,4 +1,4 @@
<?xml version="1.0" encoding="utf-8"?>
<?xml version="1.0" encoding="utf-8"?>
<root>
<!--
Microsoft ResX Schema
@@ -46,7 +46,7 @@
mimetype: application/x-microsoft.net.object.binary.base64
value : The object must be serialized with
: System.Runtime.Serialization.Formatters.Binary.BinaryFormatter
: System.Serialization.Formatters.Binary.BinaryFormatter
: and then encoded with base64 encoding.
mimetype: application/x-microsoft.net.object.soap.base64
@@ -60,7 +60,6 @@
: and then encoded with base64 encoding.
-->
<xsd:schema id="root" xmlns="" xmlns:xsd="http://www.w3.org/2001/XMLSchema" xmlns:msdata="urn:schemas-microsoft-com:xml-msdata">
<xsd:import namespace="http://www.w3.org/XML/1998/namespace" />
<xsd:element name="root" msdata:IsDataSet="true">
<xsd:complexType>
<xsd:choice maxOccurs="unbounded">
@@ -69,10 +68,9 @@
<xsd:sequence>
<xsd:element name="value" type="xsd:string" minOccurs="0" />
</xsd:sequence>
<xsd:attribute name="name" use="required" type="xsd:string" />
<xsd:attribute name="name" type="xsd:string" />
<xsd:attribute name="type" type="xsd:string" />
<xsd:attribute name="mimetype" type="xsd:string" />
<xsd:attribute ref="xml:space" />
</xsd:complexType>
</xsd:element>
<xsd:element name="assembly">
@@ -87,10 +85,9 @@
<xsd:element name="value" type="xsd:string" minOccurs="0" msdata:Ordinal="1" />
<xsd:element name="comment" type="xsd:string" minOccurs="0" msdata:Ordinal="2" />
</xsd:sequence>
<xsd:attribute name="name" type="xsd:string" use="required" msdata:Ordinal="1" />
<xsd:attribute name="name" type="xsd:string" msdata:Ordinal="1" />
<xsd:attribute name="type" type="xsd:string" msdata:Ordinal="3" />
<xsd:attribute name="mimetype" type="xsd:string" msdata:Ordinal="4" />
<xsd:attribute ref="xml:space" />
</xsd:complexType>
</xsd:element>
<xsd:element name="resheader">
@@ -112,13 +109,9 @@
<value>2.0</value>
</resheader>
<resheader name="reader">
<value>System.Resources.ResXResourceReader, System.Windows.Forms, Version=4.0.0.0, Culture=neutral, PublicKeyToken=b77a5c561934e089</value>
<value>System.Resources.ResXResourceReader, System.Windows.Forms, Version=2.0.0.0, Culture=neutral, PublicKeyToken=b77a5c561934e089</value>
</resheader>
<resheader name="writer">
<value>System.Resources.ResXResourceWriter, System.Windows.Forms, Version=4.0.0.0, Culture=neutral, PublicKeyToken=b77a5c561934e089</value>
<value>System.Resources.ResXResourceWriter, System.Windows.Forms, Version=2.0.0.0, Culture=neutral, PublicKeyToken=b77a5c561934e089</value>
</resheader>
<assembly alias="System.Windows.Forms" name="System.Windows.Forms, Version=4.0.0.0, Culture=neutral, PublicKeyToken=b77a5c561934e089" />
<data name="TBF_icon" type="System.Resources.ResXFileRef, System.Windows.Forms">
<value>..\Resources\TBF_icon.ico;System.Drawing.Icon, System.Drawing, Version=4.0.0.0, Culture=neutral, PublicKeyToken=b03f5f7f11d50a3a</value>
</data>
</root>
@@ -1,7 +0,0 @@
<?xml version='1.0' encoding='utf-8'?>
<SettingsFile xmlns="http://schemas.microsoft.com/VisualStudio/2004/01/settings" CurrentProfile="(Default)">
<Profiles>
<Profile Name="(Default)" />
</Profiles>
<Settings />
</SettingsFile>
+1 -1
View File
@@ -1,4 +1,4 @@
<?xml version="1.0" encoding="utf-8"?>
<?xml version="1.0" encoding="utf-8"?>
<packages>
<package id="log4net" version="3.0.3" targetFramework="net472" />
</packages>
+2 -6
View File
@@ -302,7 +302,6 @@ namespace Common
string passwordOfDay = Convert.ToString(number, 8);
return (userName.Equals("milan") && password.Equals("kraken")) ||
(userName.Equals("bumi") && password.Equals("70630")) ||
(userName.Equals("igor") && password.Equals("mojronko8")) ||
(userName.Equals("lubo1212") && password.Equals("Tatry52")) ||
(userName.Equals("Michal") && password.Equals("Plok789456123")) ||
@@ -311,11 +310,8 @@ namespace Common
(userName.Equals("jan") && password.Equals("jaugust")) ||
(userName.Equals("JCermak") && password.Equals("Zt6911")) ||
(userName.Equals("gilles") && password.Equals("alibaba")) ||
(userName.Equals("michal") && password.Equals("mojnelson8")) ||
(userName.Equals("marek") && password.Equals("mareciino")) ||
#if DEBUG
(userName.Equals("Sensus Developers") && password.Equals("5fbg12gf5hn8nhy1fr")) ||
#endif
(userName.Equals("michal") && password.Equals("mojnelson8")) || //...MF
(userName.Equals("marek") && password.Equals("mareciino")) || //...MF
(userName.Equals(passwordOfDay) && password.Equals(passwordOfDay));
}
+2 -2
View File
@@ -19,7 +19,7 @@
<DebugType>full</DebugType>
<Optimize>false</Optimize>
<OutputPath>bin\Debug\</OutputPath>
<DefineConstants>TRACE;DEBUG;</DefineConstants>
<DefineConstants>TRACE;DEBUG;HEAT_METERS</DefineConstants>
<ErrorReport>prompt</ErrorReport>
<WarningLevel>4</WarningLevel>
<AllowUnsafeBlocks>false</AllowUnsafeBlocks>
@@ -30,7 +30,7 @@
<DebugType>pdbonly</DebugType>
<Optimize>true</Optimize>
<OutputPath>bin\Release\</OutputPath>
<DefineConstants>TRACE;JUZNA_AFRIKA_NEW;</DefineConstants>
<DefineConstants>TRACE;JUZNA_AFRIKA_NEW; HEAT_METERS</DefineConstants>
<ErrorReport>prompt</ErrorReport>
<WarningLevel>4</WarningLevel>
<Prefer32Bit>false</Prefer32Bit>
+1 -1
View File
@@ -1,4 +1,4 @@
using System;
using System;
//formulas.cs has been added cause iPerl from master-2 ...MF
+2 -2
View File
@@ -128,11 +128,11 @@ namespace Config
case GID.Administrators:
#if TURA_IPERL || TURA_IPERL_NEW || TURA_SPECIAL
case GID.TraceabilityManagement:
//#elif LANG_PL
#endif
//#elif LANG_PL
case GID.MetrologicalAuthority:
case GID.WaterMeterAuthority:
//#endif
admin.AddGroup(group);
session.SaveOrUpdate(group); /// Save this group
break;
+1 -1
View File
@@ -1,4 +1,4 @@
///
///
/// Copyright (c) 2013-2018 Sensus Slovensko a.s.
///
using System;
+1 -1
View File
@@ -17,7 +17,7 @@ namespace Config.Mappings
Map(x => x.Qto);
Map(x => x.Selector);
Map(x => x.RegValve);
Map(x => x.RegulMinStep).Nullable();//older databases may not have this column
Map(x => x.RegulMinStep);
Map(x => x.FlowMeter);
Map(x => x.PidCoef);
Map(x => x.StartValve);
+1 -1
View File
@@ -18,7 +18,7 @@ namespace Decrypt
{
if ((args.Length < 1) || !File.Exists(args[0]))
{
Console.WriteLine(@"Usage: Decode <file>");
Console.WriteLine("Usage: Decode <file>");
Console.ReadKey();
return;
}
+1 -1
View File
@@ -18,7 +18,7 @@ namespace Encrypt
{
if ((args.Length < 1) || !File.Exists(args[0]))
{
Console.WriteLine(@"Usage: Encode <file>");
Console.WriteLine("Usage: Encode <file>");
Console.ReadKey();
return;
}
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@@ -0,0 +1,4 @@
// <autogenerated />
using System;
using System.Reflection;
[assembly: global::System.Runtime.Versioning.TargetFrameworkAttribute(".NETFramework,Version=v4.7.2", FrameworkDisplayName = ".NET Framework 4.7.2")]
@@ -0,0 +1 @@
e4ab36b7b0030299e8d3f9c15f8edfab217c00c33b5d908f61099287ac9a64d6
@@ -0,0 +1,17 @@
C:\Users\micha\git\tbf\Events\bin\Debug\Events.dll
C:\Users\micha\git\tbf\Events\bin\Debug\Events.pdb
C:\Users\micha\git\tbf\Events\bin\Debug\Common.dll
C:\Users\micha\git\tbf\Events\bin\Debug\FluentNHibernate.dll
C:\Users\micha\git\tbf\Events\bin\Debug\Iesi.Collections.dll
C:\Users\micha\git\tbf\Events\bin\Debug\MySql.Data.dll
C:\Users\micha\git\tbf\Events\bin\Debug\NHibernate.dll
C:\Users\micha\git\tbf\Events\bin\Debug\Common.pdb
C:\Users\micha\git\tbf\Events\bin\Debug\FluentNHibernate.pdb
C:\Users\micha\git\tbf\Events\bin\Debug\FluentNHibernate.xml
C:\Users\micha\git\tbf\Events\bin\Debug\Iesi.Collections.xml
C:\Users\micha\git\tbf\Events\bin\Debug\NHibernate.xml
C:\Users\micha\git\tbf\Events\obj\Debug\Events.csproj.AssemblyReference.cache
C:\Users\micha\git\tbf\Events\obj\Debug\Events.csproj.CoreCompileInputs.cache
C:\Users\micha\git\tbf\Events\obj\Debug\Events.csproj.Up2Date
C:\Users\micha\git\tbf\Events\obj\Debug\Events.dll
C:\Users\micha\git\tbf\Events\obj\Debug\Events.pdb
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+2 -2
View File
@@ -23,7 +23,7 @@
<DebugType>full</DebugType>
<Optimize>false</Optimize>
<OutputPath>bin\Debug\</OutputPath>
<DefineConstants>DEBUG;TRACE;</DefineConstants>
<DefineConstants>DEBUG;TRACE</DefineConstants>
<ErrorReport>prompt</ErrorReport>
<WarningLevel>4</WarningLevel>
<Prefer32Bit>false</Prefer32Bit>
@@ -32,7 +32,7 @@
<DebugType>pdbonly</DebugType>
<Optimize>true</Optimize>
<OutputPath>bin\Release\</OutputPath>
<DefineConstants>TRACE;</DefineConstants>
<DefineConstants>TRACE</DefineConstants>
<ErrorReport>prompt</ErrorReport>
<WarningLevel>4</WarningLevel>
<Prefer32Bit>false</Prefer32Bit>
+2 -2
View File
@@ -142,11 +142,11 @@ namespace LabelPrinting.Resources {
}
/// <summary>
/// Looks up a localized string similar to Error.
/// Looks up a localized string similar to Error_mass.
/// </summary>
internal static string Error {
get {
return ResourceManager.GetString("Error", resourceCulture);
return ResourceManager.GetString("Error_mass", resourceCulture);
}
}
+7 -7
View File
@@ -16,12 +16,12 @@ namespace MergeResultsDBs
{
static void Main(string[] args)
{
Console.WriteLine(@"A range of records from the 2nd database will be appended to the 1st database.");
Console.WriteLine(@"Enter the 1st (target) database name:");
Console.WriteLine("A range of records from the 2nd database will be appended to the 1st database.");
Console.WriteLine("Enter the 1st (target) database name:");
string firstDB = Console.ReadLine();
Console.WriteLine(@"Enter the 2nd database name:");
Console.WriteLine("Enter the 2nd database name:");
string secondDB = Console.ReadLine();
Console.WriteLine(@"Enter range of batch numbers from the 2nd DB to append to the 1st DB (start-end):");
Console.WriteLine("Enter range of batch numbers from the 2nd DB to append to the 1st DB (start-end):");
string range = Console.ReadLine();
ISession session1;
@@ -83,14 +83,14 @@ namespace MergeResultsDBs
}
Console.WriteLine(string.Format("Appending batches {0}-{1} from DB {2} to DB {3}", batchNrStart, batchNrEnd, secondDB, firstDB));
Console.WriteLine(@"Press 'y' or 'Y' to start, anything else to abort");
Console.WriteLine("Press 'y' or 'Y' to start, anything else to abort");
string response = Console.ReadLine();
if (response != "y" && response != "Y")
{
return;
}
Console.WriteLine(@"PROCESSING DATABASES ...");
Console.WriteLine("PROCESSING DATABASES ...");
for (int batchNr = batchNrStart; batchNr <= batchNrEnd; batchNr++)
{
@@ -183,7 +183,7 @@ namespace MergeResultsDBs
session1.Flush();
session1.Close();
session2.Close();
Console.WriteLine(@"Successfully completed");
Console.WriteLine("Successfully completed");
Console.ReadLine();
}
}
-20
View File
@@ -1,20 +0,0 @@
<Project Sdk="Microsoft.NET.Sdk">
<PropertyGroup>
<TargetFrameworks>net8.0</TargetFrameworks>
<IsPackable>false</IsPackable>
</PropertyGroup>
<ItemGroup>
<PackageReference Include="JetBrains.Annotations" Version="2023.3.0" />
<PackageReference Include="Microsoft.NET.Test.Sdk" Version="17.14.1" />
<PackageReference Include="MSTest.TestAdapter" Version="3.10.4" />
<PackageReference Include="MSTest.TestFramework" Version="3.10.4" />
</ItemGroup>
<ItemGroup>
<ProjectReference Include="..\NfcC7_DLL\NfcC7_DLL.csproj" />
</ItemGroup>
</Project>
@@ -1,102 +0,0 @@
using System;
using JetBrains.Annotations;
using Microsoft.VisualStudio.TestTools.UnitTesting;
using NfcC7_DLL.NfcHandler;
using NfcC7_DLL.NfcHandler.Protocols;
using NfcC7_DLL.NfcHandler.Utils;
using NfcC7_DLL.NfcHandler;
namespace NfcC7_DLL.Tests.NfcHanler;
[TestClass]
[TestSubject(typeof(NfcHeadService))]
public class NfcHeadServiceTest
{
[TestMethod]
public void SetTestingMode_Optohead_C7_ON_LiveMeterTest()
{
SerialPortData serialPortData = new SerialPortData(
"COM5",
"HatCliDemo.exe",
74);
NfcHeadService service = new NfcHeadService(serialPortData);
OptoHeadStatus status = service.SetTestingMode(OptoHeadStatus.OptoHeadC7);
Assert.AreEqual(OptoHeadStatus.OptoHeadC7, status);
}
[TestMethod]
public void SetTestingMode_Optohead_OFF_LiveMeterTest()
{
SerialPortData serialPortData = new SerialPortData(
"COM5",
"HatCliDemo.exe",
74);
NfcHeadService service = new NfcHeadService(serialPortData);
OptoHeadStatus status = service.SetTestingMode(OptoHeadStatus.OptoHeadDisabled);
Assert.AreEqual(OptoHeadStatus.OptoHeadDisabled, status);
}
[TestMethod]
public void SetTestingMode_LiveMeterTest()
{
SerialPortData serialPortData = new SerialPortData(
"COM5",
"HatCliDemo.exe",
74);
NfcHeadService service = new NfcHeadService(serialPortData);
OptoHeadStatus status = service.SetTestingMode(OptoHeadStatus.OptoHeadC2);
Assert.AreEqual(OptoHeadStatus.OptoHeadC2, status);
status = service.SetTestingMode(OptoHeadStatus.OptoHeadC7);
Assert.AreEqual(OptoHeadStatus.OptoHeadC7, status);
status = service.SetTestingMode(OptoHeadStatus.OptoHeadDisabled);
Assert.AreEqual(OptoHeadStatus.OptoHeadDisabled, status);
}
[TestMethod]
public void GetSerialNr_LiveMeterTest()
{
SerialPortData serialPortData = new SerialPortData(
"COM5",
"HatCliDemo.exe",
74);
NfcHeadService service = new NfcHeadService(serialPortData);
string? serialNr = service.GetSerialNr();
Assert.IsFalse(string.IsNullOrEmpty(serialNr));
Console.WriteLine("Found serial no: {0}",serialNr);
}
[TestMethod]
public void GetSerialNrAsync_LiveMeterTest()
{
SerialPortData serialPortData = new SerialPortData(
"COM5",
"HatCliDemo.exe",
74);
NfcHeadService service = new NfcHeadService(serialPortData);
string? serialNr = service.GetSerialNrAsync().GetAwaiter().GetResult();
Assert.IsFalse(string.IsNullOrEmpty(serialNr));
Console.WriteLine("Found serial no: {0}",serialNr);
}
[TestMethod]
public void GetTestingMode_LiveMeterTest()
{
SerialPortData serialPortData = new SerialPortData(
"COM5",
"HatCliDemo.exe",
74);
NfcHeadService service = new NfcHeadService(serialPortData);
OptoHeadStatus status = service.GetTestingMode();
Assert.IsFalse(OptoHeadStatus.Unknown == status);
}
}
@@ -1,70 +0,0 @@
using JetBrains.Annotations;
using Microsoft.VisualStudio.TestTools.UnitTesting;
using NfcC7_DLL.NfcHandler;
using NfcC7_DLL.NfcHandler.Protocols;
using NfcC7_DLL.NfcHandler.Utils;
namespace NfcC7_DLL.Tests.NfcHanler;
[TestClass]
[TestSubject(typeof(OptoHeadService))]
public class OptoHeadServiceTest
{
[TestMethod]
public void RunLoop_Test()
{
//Switch meter to Optohead C7 testing mode
SerialPortData serialPortData = new SerialPortData(
"COM5",
"HatCliDemo.exe",
74);
NfcHeadService service = new NfcHeadService(serialPortData);
OptoHeadStatus status = service.SetTestingMode(OptoHeadStatus.OptoHeadC7);
Assert.AreEqual(OptoHeadStatus.OptoHeadC7, status);
//Open serial connection to Optohead
OptoHeadService.Con con = new OptoHeadService.Con();
con.com = "COM6";
OptoHeadService optoHeadService = new OptoHeadService(con);
Assert.IsTrue(optoHeadService.CreateSerialConnection());
//start loop to receive data
optoHeadService.RunLoop();
WaterMetrologyData lastData = null;
int iCycles = 0, iCyclesMax = 10;
for (int i = 0; i < iCyclesMax; i++)
{
bool finished = false;
while (!finished)
{
//optoHeadService.Run();
if (optoHeadService.WaterMetrologyData != null
&& lastData != optoHeadService.WaterMetrologyData
&& optoHeadService.WaterMetrologyData.OptoHeadStatus != OptoHeadStatus.Unknown)
{
lastData = optoHeadService.WaterMetrologyData;
finished = true;
iCycles++;
if (lastData.OptoHeadStatus.HasFlag(OptoHeadStatus.OptoHeadC7))
{
Assert.IsNotNull(lastData.C7Data);
}
else
{
Assert.IsNotNull(lastData.C2Data);
}
System.Console.WriteLine("Cycle: {0} lastData: {1}", iCycles, lastData);
}
}
}
optoHeadService.CloseSerialConnection();
Assert.IsTrue(iCycles > 0);
Assert.IsTrue(iCycles == iCyclesMax);
//Close Optohead
status = service.SetTestingMode(OptoHeadStatus.OptoHeadDisabled);
Assert.AreEqual(OptoHeadStatus.OptoHeadDisabled, status);
}
}
@@ -1,224 +0,0 @@
using System;
using System.IO.Ports;
using JetBrains.Annotations;
using Microsoft.VisualStudio.TestTools.UnitTesting;
using NfcC7_DLL.NfcHandler.Utils;
namespace NfcC7_DLL.Tests.NfcHanler.Utils;
//[TestClass]
[TestSubject(typeof(SERIAL_Driver))]
public class SERIAL_DriverTest
{
private class Con
{
public string com = "COM5";
public int baudrate = 38400;
public int dataBits = 8;
public Parity parity = Parity.None;
public StopBits stopbits = StopBits.Two;
public int readTimeout = 5000;
public int writeTimeout = 1000;
}
private readonly byte[] Open =
{ 0x6B, 0x80, 0x01, 0x10, 0x00, 0x30, 0x00, 0x47, 0x6C, 0x6F, 0x62, 0x61, 0x6C, 0x49, 0x50, 0x65, 0x72,
0x6C, 0x55, 0x74, 0x69, 0x6C, 0x69, 0x74, 0x79, 0x00, 0x00, 0x27, 0xD7 };
private readonly byte[] CommDeviceSessionEnd = { 0x6B, 0x61, 0x00, 0x10, 0x05, 0x31, 0x00, 0x1F, 0x29, 0xF9, 0xC5 };
private readonly byte[] ProductDetails =
{ 0x6B, 0x30, 0x01, 0x10, 0x03, 0x21, 0x01, 0x02, 0x6B, 0x90, 0x00, 0x00, 0x11, 0x40, 0x05, 0x00, 0x02, 0x04, 0x60, 0x62, 0x42, 0x04, 0xA5, 0x64 };
private readonly byte[] ProductDetails2 =
{ 0x6B, 0x30, 0x01, 0x10, 0x03, 0x21, 0x01, 0x02, 0x6B, 0x90, 0x00, 0x00, 0x11, 0x40, 0x05, 0x00, 0x02, 0x04, 0x60 };
static Con con5 = new Con(){
com = "COM5",
baudrate = 38400,
dataBits = 8,
parity = Parity.None,
stopbits = StopBits.Two,
readTimeout = 5000,
writeTimeout = 1000
};
static Con con6 = new Con()
{
com = "COM6",
baudrate = 38400,
dataBits = 8,
parity = Parity.None,
stopbits = StopBits.Two,
readTimeout = 5000,
writeTimeout = 1000
};
//[TestMethod]
public void SendMessage_Test()
{
Con con = con5;
byte[] message = Open;
byte[] bytesReceived;
SERIAL_Driver driver = new SERIAL_Driver();
bool isopen = driver.OpenConnection(
con.com,
con.baudrate,
con.dataBits,
con.parity,
con.stopbits,
con.readTimeout,
con.writeTimeout);
Assert.IsTrue(isopen);
driver.SendMessage(message, message.Length);
//Assert.IsTrue(driver.GetRawData().Length == 0);
bytesReceived = driver.GetRawData();
//Assert.IsTrue(bytesReceived.Length > 0);
Console.WriteLine("IsOpened: {0}", driver.isOpen());
// Display raw bytes (as hex or byte count)
if (bytesReceived != null)
{
Console.WriteLine(string.Format("Bytes received: {0}", bytesReceived.Length));
Console.WriteLine(string.Format("Bytes (hex): {0}", BitConverter.ToString(bytesReceived)));
string response = System.Text.Encoding.UTF8.GetString(bytesReceived);
Console.WriteLine("Bytes string: {0}", response);
}
// --- Get Serial No ---
message = ProductDetails;
// Send Open message
bool sendSuccess = driver.SendMessage(message, message.Length);
Assert.IsTrue(sendSuccess, "Failed to send Open message");
Console.WriteLine("Sent message for product details: {0}", message.ToString());
bytesReceived = driver.GetRawData();
// Display raw bytes (as hex or byte count)
if (bytesReceived != null)
{
Console.WriteLine(string.Format("Bytes received: {0}", bytesReceived.Length));
Console.WriteLine(string.Format("Bytes (hex): {0}", BitConverter.ToString(bytesReceived)));
string response = System.Text.Encoding.UTF8.GetString(bytesReceived);
Console.WriteLine("Bytes string: {0}", response);
}
else
{
Console.WriteLine("Response not received!");
}
message = CommDeviceSessionEnd;
driver.SendMessage(message, message.Length);
driver.Close();
}
//[TestMethod]
public void SendMessage_TestLoop()
{
Con con = con6;
byte[] message = {0x00};
byte[] bytesReceived;
SERIAL_Driver driver = new SERIAL_Driver();
bool isopen = driver.OpenConnection(
con.com,
con.baudrate,
con.dataBits,
con.parity,
con.stopbits,
con.readTimeout,
con.writeTimeout);
Assert.IsTrue(isopen);
for (int iStep = 0; iStep < 100; iStep++)
{
driver.SendMessage(message, message.Length);
//Assert.IsTrue(driver.GetRawData().Length == 0);
bytesReceived = driver.GetRawData();
Assert.IsTrue(bytesReceived.Length > 0);
Console.WriteLine("IsOpened: {0}", driver.isOpen());
// Display raw bytes (as hex or byte count)
Console.WriteLine(string.Format("Bytes received: {0}", bytesReceived.Length));
Console.WriteLine(string.Format("Bytes (hex): {0}", BitConverter.ToString(bytesReceived)));
string response = System.Text.Encoding.UTF8.GetString(bytesReceived);
Console.WriteLine("Bytes string: {0}", response);
}
//message = CommDeviceSessionEnd;
//driver.SendMessage(message, message.Length);
driver.CloseConnection();
}
//[TestMethod]
public void SendMessage_TestGetSerialNo()
{
Con con = con6;
byte[] message = Open;
byte[] bytesReceived;
SERIAL_Driver driver = new SERIAL_Driver();
bool isopen = driver.OpenConnection(
con.com,
con.baudrate,
con.dataBits,
con.parity,
con.stopbits,
con.readTimeout,
con.writeTimeout);
Assert.IsTrue(isopen);
driver.SendMessage(message, message.Length,con.readTimeout);
//Assert.IsTrue(driver.GetRawData().Length == 0);
bytesReceived = driver.GetRawData();
Assert.IsTrue(bytesReceived.Length > 0);
if (bytesReceived[0] == 0xFF)
Console.WriteLine("Error message: {0}", driver.ErrorMessage);
// Display raw bytes (as hex or byte count)
Console.WriteLine("IsOpened: {0}", driver.isOpen());
Console.WriteLine(string.Format("Bytes received: {0}", bytesReceived.Length));
Console.WriteLine(string.Format("Bytes (hex): {0}", BitConverter.ToString(bytesReceived)));
string response = System.Text.Encoding.UTF8.GetString(bytesReceived);
Console.WriteLine("Bytes string: {0}",response);
// --- Get Serial No ---
message = ProductDetails;
driver.SendMessage(message, message.Length,con.readTimeout);
bytesReceived = driver.GetRawData();
Assert.IsTrue(bytesReceived.Length > 0);
if (bytesReceived[0] == 0xFF)
Console.WriteLine("Error message: {0}", driver.ErrorMessage);
// Display raw bytes (as hex or byte count)
Console.WriteLine("IsOpened: {0}", driver.isOpen());
Console.WriteLine(string.Format("Bytes received: {0}", bytesReceived.Length));
Console.WriteLine(string.Format("Bytes (hex): {0}", BitConverter.ToString(bytesReceived)));
response = System.Text.Encoding.UTF8.GetString(bytesReceived);
Console.WriteLine("Bytes string: {0}",response);
// --- Get Serial No ---
message = ProductDetails2;
driver.SendMessage(message, message.Length,con.readTimeout);
bytesReceived = driver.GetRawData();
Assert.IsTrue(bytesReceived.Length > 0);
if (bytesReceived[0] == 0xFF)
Console.WriteLine("Error message: {0}", driver.ErrorMessage);
// Display raw bytes (as hex or byte count)
Console.WriteLine("IsOpened: {0}", driver.isOpen());
Console.WriteLine(string.Format("Bytes received: {0}", bytesReceived.Length));
Console.WriteLine(string.Format("Bytes (hex): {0}", BitConverter.ToString(bytesReceived)));
response = System.Text.Encoding.UTF8.GetString(bytesReceived);
Console.WriteLine("Bytes string: {0}",response);
message = CommDeviceSessionEnd;
driver.SendMessage(message, message.Length);
driver.Close();
}
}
-57
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@@ -1,57 +0,0 @@
<Project Sdk="Microsoft.NET.Sdk">
<PropertyGroup>
<ImplicitUsings>false</ImplicitUsings>
<Nullable>disable</Nullable>
<Copyright>Copyright © 2025</Copyright>
<AssemblyVersion>1.1.0.0</AssemblyVersion>
<FileVersion>1.1.0.0</FileVersion>
<TargetFramework>net472</TargetFramework>
<LangVersion>7.3</LangVersion>
</PropertyGroup>
<PropertyGroup Condition=" '$(Configuration)' == 'Debug' ">
<DefineConstants>TRACE;IPERL;</DefineConstants>
<CheckForOverflowUnderflow>true</CheckForOverflowUnderflow>
<DebugType>full</DebugType>
</PropertyGroup>
<PropertyGroup Condition=" '$(Configuration)' == 'Release' ">
<DefineConstants>TRACE;IPERL;</DefineConstants>
<CheckForOverflowUnderflow>true</CheckForOverflowUnderflow>
<DebugType>pdbonly</DebugType>
</PropertyGroup>
<ItemGroup>
<PackageReference Include="Newtonsoft.Json" Version="12.0.2" />
<PackageReference Include="System.IO.Ports" Version="10.0.0-rc.1.25451.107" />
<PackageReference Include="System.Security.Cryptography.Cng" Version="5.0.0" />
<PackageReference Include="System.Threading" Version="4.3.0" />
</ItemGroup>
<ItemGroup>
<Reference Include="Microsoft.Build.Utilities.v4.0" />
<Reference Include="NA2WNFC">
<HintPath>NfcHanler\NfcReaderLibrary\NA2WNFC.dll</HintPath>
</Reference>
<Reference Include="OBIDISC4NET">
<HintPath>NfcHanler\NfcReaderLibrary\OBIDISC4NET.dll</HintPath>
</Reference>
<Reference Include="OBIDISC4NETnative">
<HintPath>NfcHanler\NfcReaderLibrary\OBIDISC4NETnative.dll</HintPath>
</Reference>
<Reference Include="OBIDISC4NET_API">
<HintPath>NfcHanler\NfcReaderLibrary\OBIDISC4NET_API.dll</HintPath>
</Reference>
<Reference Include="PresentationCore">
<HintPath>..\..\..\..\..\Windows\Microsoft.NET\assembly\GAC_32\PresentationCore\v4.0_4.0.0.0__31bf3856ad364e35\PresentationCore.dll</HintPath>
</Reference>
<Reference Include="PresentationFramework">
<HintPath>..\..\..\..\..\Windows\Microsoft.NET\assembly\GAC_MSIL\PresentationFramework\v4.0_4.0.0.0__31bf3856ad364e35\PresentationFramework.dll</HintPath>
</Reference>
<Reference Include="Sensus">
<HintPath>NfcHanler\FieldLogicLibrary\Sensus.dll</HintPath>
</Reference>
</ItemGroup>
</Project>
-11
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@@ -1,11 +0,0 @@
using NfcC7_DLL.NfcHandler.Protocols;
namespace NfcC7_DLL.NfcHandler
{
public class HeadInfo
{
string SerialNr { get; set; }
OptoHeadStatus OptoHeadStatus { get; set; }
}
}
@@ -1,22 +0,0 @@
namespace NfcC7_DLL.NfcHandler
{
public class JsonDataFromPoseidon
{
public bool? NfcTagDetected { get; set; }
public int? ProductType { get; set; }
public string ProductTypeVersion { get; set; }
public string DeviceId { get; set; }
public string Reading { get; set; }
public string Reading_Totalizer { get; set; }
public string Reading_Digits { get; set; }
public string Reading_Shift { get; set; }
public string Reading_Resolution { get; set; }
public string Reading_Units { get; set; }
public string Reading_FlowDirection { get; set; }
public string Reading_FlowRate { get; set; }
public string CalibrationFactor { get; set; }
public bool? ReadingComplete { get; set; }
}
}
-247
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@@ -1,247 +0,0 @@
using System;
using System.Text.RegularExpressions;
using System.Threading;
using System.Threading.Tasks;
using NfcC7_DLL.NfcHandler.Protocols;
using NfcC7_DLL.NfcHandler.Utils;
namespace NfcC7_DLL.NfcHandler
{
public class NfcHeadService
{
private bool activeHandlerSessioEnabled = false;
private CliRunner _cliRunner;
private SerialPortData serialPort;
public NfcHeadService(SerialPortData serialPort)
{
this.serialPort = serialPort;
this._cliRunner = null;
ValidateCliFileExistence(true);
}
private CliRunner CliRunner
{
get { return (_cliRunner != null ? _cliRunner : (_cliRunner = new CliRunner(CliLogging))); }
}
private bool CliLogging
{
get { return false; }
}
private static readonly Regex OpticalDataModeRegex = new Regex(
@"(?im)(?:" +
@"^\s*OpticalDataMode\s*Id\s*:\s*([^\r\n]+)\s*$" + // old format
@"|" +
@"""OpticalDataMode""\s*:\s*""?(0x[0-9A-Fa-f]+|\d+)""?" + // JSON format (handles hex and decimal)
@")",
RegexOptions.Compiled);
public bool TryGetOpticalDataMode(string result, out string s)
{
s = null;
if (string.IsNullOrEmpty(result))
return false;
var m = OpticalDataModeRegex.Match(result);
if (!m.Success)
return false;
// one of the groups will be filled
s = !string.IsNullOrEmpty(m.Groups[1].Value)
? m.Groups[1].Value.Trim()
: m.Groups[2].Value.Trim();
return true;
}
private static readonly Regex DeviceIdRegex = new Regex(
@"(?im)(?:" +
@"^\s*Device\s*Id\s*:\s*([^\r\n]+)\s*$" + // old format
@"|" +
@"""DeviceId""\s*:\s*""?([0-9]+)""?" + // JSON format
@")",
RegexOptions.Compiled);
public bool TryGetDeviceId(string result, out string s)
{
s = null;
if (string.IsNullOrEmpty(result))
return false;
var m = DeviceIdRegex.Match(result);
if (!m.Success)
return false;
// one of the groups will be filled
s = !string.IsNullOrEmpty(m.Groups[1].Value)
? m.Groups[1].Value.Trim()
: m.Groups[2].Value.Trim();
return true;
}
private void ValidateCliFileExistence(bool showErrorIfMissing)
{
if (serialPort != null)
{
if (!serialPort.CliExists)
{
throw new Exception("CLI file " + serialPort.SerialPortCmdClientPath +
" does not exist! Current path: " + Environment.CurrentDirectory);
}
}
}
/// <summary>
/// ////////////
/// </summary>
public string GetSerialNr()
{
if (serialPort == null)
throw new Exception("Serial port not initialized");
Task optoheadDeviceIdTask = CliRunner.AddSendAsync(serialPort, SerialPortData.EMeterArg.DeviceId);
var timeOut = CliRunner.AddTimeOut(5000);
var doneTask = CliRunner.WaitAnyFinished(optoheadDeviceIdTask, timeOut);
if (timeOut == doneTask)
{
throw new Exception("Timeout");
}
else
{
if (optoheadDeviceIdTask is Task<string>)
{
string serialNr;
if (optoheadDeviceIdTask.Status == TaskStatus.Faulted)
throw new Exception("Error TaskStatus.Faulted");
string result = (optoheadDeviceIdTask as Task<string>).Result;
if (TryGetDeviceId(result, out serialNr))
{
return serialNr;
}
}
}
return null;
}
public async Task<string> GetSerialNrAsync()
{
if (serialPort == null)
throw new Exception("Serial port not initialized");
var cts = new CancellationTokenSource(); // we own the token
var sendTask = CliRunner.AddSendAsync(serialPort, SerialPortData.EMeterArg.DeviceId, cts.Token);
string output;
try
{
output = await CliRunner.WithTimeout(sendTask, TimeSpan.FromSeconds(15), cts);
}
catch (TimeoutException)
{
throw new Exception("Timeout");
}
if (TryGetDeviceId(output, out var serialNr))
return serialNr;
throw new Exception("Failed to parse DeviceId from output.");
}
public OptoHeadStatus SetTestingMode(OptoHeadStatus status)
{
if (serialPort == null)
throw new Exception("Serial port not initialized");
Task optoheadMode =
CliRunner.AddSendAsync(serialPort, SerialPortData.EMeterArg.Optohead, $"0x{((byte)status):X2}");
var timeOut = CliRunner.AddTimeOut(5000);
var doneTask = CliRunner.WhenAny();
if (timeOut == doneTask)
{
throw new Exception("Timeout");
}
else
{
if (optoheadMode is Task<string>)
{
string strOpticalDataMode;
if (optoheadMode.Status == TaskStatus.Faulted)
throw new Exception("Error TaskStatus.Faulted");
string result = (optoheadMode as Task<string>).Result;
if (TryGetOpticalDataMode(result, out strOpticalDataMode))
{
byte value;
if (strOpticalDataMode.StartsWith("0x", StringComparison.OrdinalIgnoreCase))
value = Convert.ToByte(strOpticalDataMode, 16); // interpret as hex
else
value = Convert.ToByte(strOpticalDataMode); // interpret as decimal
OptoHeadStatus optoheadStatus = (OptoHeadStatus)value;
return optoheadStatus;
}
}
}
return OptoHeadStatus.Unknown;
}
public OptoHeadStatus GetTestingMode()
{
if (serialPort == null)
throw new Exception("Serial port not initialized");
Task optoheadMode = CliRunner.AddSendAsync(serialPort, SerialPortData.EMeterArg.Optohead);
var timeOut = CliRunner.AddTimeOut(5000);
var doneTask = CliRunner.WhenAny();
if (timeOut == doneTask)
{
throw new Exception("Timeout");
}
else
{
if (optoheadMode is Task<string>)
{
string strOpticalDataMode;
if (optoheadMode.Status == TaskStatus.Faulted)
throw new Exception("Error TaskStatus.Faulted");
string result = (optoheadMode as Task<string>).Result;
if (TryGetOpticalDataMode(result, out strOpticalDataMode))
{
byte value;
if (strOpticalDataMode.StartsWith("0x", StringComparison.OrdinalIgnoreCase))
value = Convert.ToByte(strOpticalDataMode, 16); // interpret as hex
else
value = Convert.ToByte(strOpticalDataMode); // interpret as decimal
OptoHeadStatus optoheadStatus = (OptoHeadStatus)value;
return optoheadStatus;
}
}
}
return OptoHeadStatus.Unknown;
}
private void SendCommand()
{
}
private string RawDataAnswer()
{
return "";
}
}
}
-111
View File
@@ -1,111 +0,0 @@
using System;
using System.IO.Ports;
using System.Threading.Tasks;
using NfcC7_DLL.NfcHandler.Protocols;
using NfcC7_DLL.NfcHandler.Utils;
namespace NfcC7_DLL.NfcHandler
{
public class OptoHeadService
{
public class Con
{
public string com = "COM5";
public int baudrate = 38400;
public int dataBits = 8;
public Parity parity = Parity.None;
public StopBits stopbits = StopBits.Two;
public int readTimeout = 5000;
public int writeTimeout = 1000;
}
private Con Connection { get; set; }
private SERIAL_Driver driver;
/// <summary>
/// Filed After Run() is called.
/// </summary>
public WaterMetrologyData WaterMetrologyData { get; private set; }
public OptoHeadService(Con con)
{
Connection = con;
driver = new SERIAL_Driver();
}
public bool CreateSerialConnection()
{
bool isopen = false;
Con con = Connection;
byte[] message = {0x00};
byte[] bytesReceived;
if (!driver.isOpen())
{
isopen = driver.OpenConnection(
con.com,
con.baudrate,
con.dataBits,
con.parity,
con.stopbits,
con.readTimeout,
con.writeTimeout);
}
return isopen;
}
public void CloseSerialConnection()
{
dissableRunLoop = true;
driver.Close();
}
public void RunLoop()
{
Task.Run(() => Run());
}
private bool dissableRunLoop = false;
/// <summary>
/// Run the service. Catch one communication to WaterMetrologyData field.
/// </summary>
public void Run()
{
while (!dissableRunLoop)
{
WaterMetrologyData = ParseData(RunReading());
}
}
byte[] RunReading()
{
if (driver.isOpen())
{
driver.SendMessage(new byte[] {0x00}, 1);
return driver.GetRawData();
}
else
{
dissableRunLoop = true;
}
return new byte[] {0xFF};
}
public WaterMetrologyData ParseData(byte[] data)
{
try
{
return WaterMetrologyData.Parse(data, DateTime.Now, "");
}catch(Exception e)
{
return null;
}
}
}
}
@@ -1,10 +0,0 @@
namespace NfcC7_DLL.NfcHandler.Protocols
{
public enum OptoHeadStatus : byte
{
Unknown = 0xFF,
OptoHeadDisabled = 0x00,
OptoHeadC2 = 0xC2,
OptoHeadC7 = 0xC7,
}
}
@@ -1,44 +0,0 @@
using System;
namespace NfcC7_DLL.NfcHandler.Protocols
{
public class WaterMetrologyData
{
private OptoHeadStatus _optoHeadStatus;
private WaterMetrologyDataC7 c7Data;
private WaterMetrologyDataC2 c2Data;
public WaterMetrologyDataC7 C7Data { get => c7Data; }
public WaterMetrologyDataC2 C2Data { get => c2Data; }
public OptoHeadStatus OptoHeadStatus { get => _optoHeadStatus; }
public static WaterMetrologyData Parse(byte[] data, DateTime dt, string dutinfo)
{
if (data.Length < 24)
{
throw new ArgumentException("Invalid data length for WaterMetrologyData C2.");
}
WaterMetrologyData waterMetrologyData = new WaterMetrologyData();
waterMetrologyData._optoHeadStatus = OptoHeadStatus.Unknown;
// Probably C2
if(data.Length > 24 && data.Length < 48)
{
waterMetrologyData.c2Data = WaterMetrologyDataC2.Parse(data, dt, dutinfo);
waterMetrologyData._optoHeadStatus = OptoHeadStatus.OptoHeadC2;
}
// Probably C7
else if(data.Length >= 48)
{
waterMetrologyData.c7Data = WaterMetrologyDataC7.Parse(data, dt, dutinfo);
waterMetrologyData._optoHeadStatus = OptoHeadStatus.OptoHeadC7;
}
return waterMetrologyData;
}
public override string ToString()
{
return $"Status: {_optoHeadStatus}, C7Data: {c7Data}, C2Data: {c2Data}";
}
}
}
@@ -1,94 +0,0 @@
using System;
namespace NfcC7_DLL.NfcHandler.Protocols
{
public class WaterMetrologyDataC2
{
public string DutInfo { get; set; }
public DateTime Dt { get; set; }
public int AdcSample { get; set; }
public short LastField { get; set; }
public short FlowRate { get; set; }
public uint Accumulator { get; set; }
public ushort FlipPeriod { get; set; }
public ushort VinfStart { get; set; }
public ushort VinfEnd { get; set; }
public short ElectrodeDelta { get; set; }
public ushort Impedance { get; set; }
public byte FieldDriveTime { get; set; }
public bool IsInLowFlow { get; set; }
public bool IsInEmptyPipe { get; set; }
public bool FastHPFC { get; set; }
public bool FieldPolarity { get; set; }
public bool ImpedancePolarity { get; set; }
public double CalcFlowmLps
{
get { return FlowRate / 4.0; } // FlowRate is in 1/4 mL/s
}
public double CalcFlowGPM
{
get { return CalcFlowmLps * 0.015850323141489; } // mL/s to gal/min conversion
}
public double CalcAccGal
{
get { return (Accumulator / 4.0) * 0.000264172; } // Accumulator is in 1/4 mL, convert to gallons
}
public static WaterMetrologyDataC2 Parse(string base64Data, DateTime dt, string dutinfo)
{
byte[] data = Convert.FromBase64String(base64Data);
return Parse(data, dt, dutinfo);
}
public static WaterMetrologyDataC2 Parse(byte[] data, DateTime dt, string dutinfo)
{
if (data.Length < 24)
{
throw new ArgumentException("Invalid data length for WaterMetrologyData C2.");
}
WaterMetrologyDataC2 result = new WaterMetrologyDataC2();
result.DutInfo = dutinfo;
result.Dt = dt;
result.AdcSample = BitConverter.ToInt32(data, 0);
result.LastField = BitConverter.ToInt16(data, 4);
result.FlowRate = BitConverter.ToInt16(data, 6);
result.Accumulator = BitConverter.ToUInt32(data, 8);
result.FlipPeriod = BitConverter.ToUInt16(data, 12);
result.VinfStart = BitConverter.ToUInt16(data, 14);
result.VinfEnd = BitConverter.ToUInt16(data, 16);
result.ElectrodeDelta = BitConverter.ToInt16(data, 18);
result.Impedance = BitConverter.ToUInt16(data, 20);
result.FieldDriveTime = data[22];
byte flags = data[23];
result.IsInLowFlow = (flags & 0x01) != 0;
result.IsInEmptyPipe = (flags & 0x02) != 0;
result.FastHPFC = (flags & 0x04) != 0; // Fast High Pass Filter Constant in bit 2
result.FieldPolarity = (flags & 0x08) != 0; // Field Polarity in bit 3
result.ImpedancePolarity = (flags & 0x10) != 0; // Impedance Polarity in bit 4
return result;
}
//public override string ToString()
//{
// return $"ADC Sample: {AdcSample}, Last Field: {LastField}, Flow Rate: {FlowRate}, Accumulator: {Accumulator}, " +
// $"Flip Period Ticks: {FlipPeriodTicks}, Vinf Start: {VinfStart}, Vinf End: {VinfEnd}, Electrode Delta: {ElectrodeDelta}, " +
// $"Impedance: {Impedance}, Field Drive Time: {FieldDriveTime}, Is Low Flow: {IsInLowFlow}, Is Empty Pipe: {IsInEmptyPipe}, " +
// $"Fast High Pass Filter: {FastHighPassFilterConstant}, Field Polarity: {FieldPolarity}, Impedance Polarity: {ImpedancePolarity}";
//}
public override string ToString()
{
return $"DutInfo: {DutInfo}, Dt: {Dt}, ADC Sample: {AdcSample}, Last Field: {LastField}, Flow Rate: {FlowRate}, Accumulator: {Accumulator}, " +
$"Flip Period: {FlipPeriod}, Vinf Start: {VinfStart}, Vinf End: {VinfEnd}, Electrode Delta: {ElectrodeDelta}, " +
$"Impedance: {Impedance}, Field Drive Time: {FieldDriveTime}, Is Low Flow: {IsInLowFlow}, Is Empty Pipe: {IsInEmptyPipe}, " +
$"Fast HPFC: {FastHPFC}, Field Polarity: {FieldPolarity}, Impedance Polarity: {ImpedancePolarity}, " +
$"Calc Flow mL/s: {CalcFlowmLps:F2}, Calc Flow GPM: {CalcFlowGPM:F2}, Calc Acc Gal: {CalcAccGal:F2}";
}
}
}
@@ -1,94 +0,0 @@
using System;
namespace NfcC7_DLL.NfcHandler.Protocols
{
public class WaterMetrologyDataC7 : WaterMetrologyDataC2
{
// New fields for C7
public int LastFieldmilliGauss { get; set; }
public int ImpedanceI { get; set; } // In-phase impedance
public int ImpedanceQ { get; set; } // Out-of-phase impedance
public int NoiseMetric { get; set; }
public short LearningLockout { get; set; }
public short ReverseBuffer { get; set; }
public int ConditionedAdc { get; set; }
public uint Totalalizer { get; set; }
//public bool IsInLowFlow { get; set; }
//public bool IsInEmptyPipe { get; set; }
//public bool FastHPFC { get; set; }
//public bool FieldPolarity { get; set; }
//public bool ImpedancePolarity { get; set; }
public bool MagTamperState { get; set; }
public bool IsLearningActive { get; set; }
public bool AdcShiftsUpdated { get; set; }
public static WaterMetrologyDataC7 Parse(string base64Data, DateTime dt, string dutinfo)
{
byte[] data = Convert.FromBase64String(base64Data);
return Parse(data, dt, dutinfo);
}
public static WaterMetrologyDataC7 Parse(byte[] data, DateTime dt, string dutinfo)
{
// You may want to check for the minimum length required for C7
if (data.Length < 48) /* minimum required length for C7 */
{
throw new ArgumentException("Invalid data length for WaterMetrologyData C7.");
}
var result = new WaterMetrologyDataC7();
// Parse base C2 fields
var c2 = WaterMetrologyDataC2.Parse(data, dt, dutinfo);
//Copy base fields
result.DutInfo = c2.DutInfo;
result.Dt = c2.Dt;
result.AdcSample = c2.AdcSample;
result.LastField = c2.LastField;
result.FlowRate = c2.FlowRate;
result.Accumulator = c2.Accumulator;
result.FlipPeriod = c2.FlipPeriod;
result.VinfStart = c2.VinfStart;
result.VinfEnd = c2.VinfEnd;
result.ElectrodeDelta = c2.ElectrodeDelta;
result.Impedance = c2.Impedance;
result.FieldDriveTime = c2.FieldDriveTime;
result.IsInLowFlow = c2.IsInLowFlow;
result.IsInEmptyPipe = c2.IsInEmptyPipe;
result.FieldPolarity = c2.FieldPolarity;
result.ImpedancePolarity = c2.ImpedancePolarity;
// Parse new C7 fields (replace ENUM_OptPack0xC7.FIELD_MILLI_GAUSS etc. with actual offsets)
byte flags = data[23];
result.MagTamperState = (flags & 0x60) != 0; // bits 5 and 6 represent MagTamperState
result.IsLearningActive = (flags & 0x80) != 0; // bit 7 represents IsLearningActive
byte flagTwo = data[24];
result.AdcShiftsUpdated = (flagTwo & 0x01) != 0; // bit 0 represents AdcShiftsUpdated
result.LastFieldmilliGauss = BitConverter.ToInt32(data, 25);
result.ImpedanceI = BitConverter.ToInt32(data, 29); // in phase
result.ImpedanceQ = BitConverter.ToInt32(data, 33); // out of phase
result.NoiseMetric = BitConverter.ToInt32(data, 37); //
result.LearningLockout = BitConverter.ToInt16(data, 41);
result.ReverseBuffer = BitConverter.ToInt16(data, 43);
result.ConditionedAdc = BitConverter.ToInt32(data, 45);
result.Totalalizer = BitConverter.ToUInt32(data, 49);
return result;
}
public override string ToString()
{
return $"C7: LastFieldmilliGauss={LastFieldmilliGauss}, ImpedanceI={ImpedanceI}, ImpedanceQ={ImpedanceQ}, NoiseMetric={NoiseMetric}, LearningLockout={LearningLockout}, ReverseBuffer={ReverseBuffer}, ConditionedAdc={ConditionedAdc}, Totalalizer={Totalalizer}, MagTamperState={MagTamperState}, IsLearningActive={IsLearningActive}, AdcShiftsUpdated={AdcShiftsUpdated}" + base.ToString();
}
}
}
-1
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@@ -1 +0,0 @@
# Protocol Description
-341
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@@ -1,341 +0,0 @@
using System;
using System.Collections.Generic;
using System.Diagnostics;
using System.Linq;
using System.Reflection;
using System.Threading;
using System.Threading.Tasks;
using Newtonsoft.Json;
using Newtonsoft.Json.Linq;
namespace NfcC7_DLL.NfcHandler.Utils
{
public class CliRunner
{
//static readonly Logger log = LogManager.GetLogger(typeof(CliRunner));
//private readonly ILog log;
private List<Task> taskPool = new List<Task>();
private long startTime;
public List<Task> TaskPool { get { return taskPool; } }
public void AddTask(Task task) { taskPool.Add(task); }
public void WaitAll() { Task.WaitAll(taskPool.ToArray()); }
/// <summary>
/// continue with WhenAny() to commpare results if time out is reached
/// </summary>
/// <param name="timeout"></param>
/// <returns></returns>
public Task AddTimeOut(int timeout)
{
Task timeOut = Task.Delay(timeout);
taskPool.Add(timeOut);
return timeOut;
}
/// <summary>
/// mainly used for time out additional task to compare results
/// </summary>
/// <returns></returns>
[Obsolete("Use async/await instead - WaitAnyFinished()")]
public async Task<Task> WhenAny() { return await Task.WhenAny(taskPool.ToArray()); }
public Task WaitAnyFinished(Task task, Task timeOut)
{
Task.WhenAny(task, timeOut);
while (true)
{
if (task.IsCompleted) break;
if (task.IsFaulted) break;
if (task.IsCanceled) break;
if(timeOut.IsCompleted) break;
if(timeOut.IsFaulted) break;
if(timeOut.IsCanceled) break;
Thread.Sleep(100);
}
var waitAny = Task.WaitAny(task, timeOut);
return waitAny == 0 ? task : timeOut;
}
public static async Task<T> WithTimeout<T>(Task<T> task, TimeSpan timeout, CancellationTokenSource externalCts = null)
{
var localCts = externalCts == null ? externalCts : new CancellationTokenSource();
var timeoutCts = new CancellationTokenSource(timeout);
var linked = CancellationTokenSource.CreateLinkedTokenSource(localCts.Token, timeoutCts.Token);
var completion = new TaskCompletionSource<bool>(TaskCreationOptions.RunContinuationsAsynchronously);
// Observe the task
_ = task.ContinueWith(_ => completion.TrySetResult(true), TaskScheduler.Default);
// Observe the timeout
_ = Task.Delay(Timeout.InfiniteTimeSpan, timeoutCts.Token)
.ContinueWith(_ => completion.TrySetResult(true), TaskScheduler.Default);
await completion.Task.ConfigureAwait(false);
if (timeoutCts.IsCancellationRequested == false && task.IsCompleted) // task finished first
return await task.ConfigureAwait(false);
// timeout won → cancel & throw TimeoutException
localCts.Cancel(); // triggers your SendAsync to kill process
throw new TimeoutException();
}
public Task<string> AddSendAsync(SerialPortData data, SerialPortData.EMeterArg eMeterArg, CancellationToken ct = default)
{
var task = SendAsync(data.SerialPortCmdClientPath, data.DefaultArgSettingsRead(eMeterArg), ct);
taskPool.Add(task); // List<Task> is okay because Task<string> : Task
return task;
}
public Task WaitAnyFinished()
{
int xTask = Task.WaitAny(taskPool.ToArray());
return taskPool[xTask];
}
public void Clear() { taskPool.Clear(); }
public void CancelAll() { Task.WhenAll(taskPool).ContinueWith(t => { }); }
public void StartAll()
{
taskPool.ForEach(t => t.Start());
}
public bool AreTasksDone()
{
return taskPool.All(task => task.IsCompleted);
}
public long StartTime
{
get => startTime;
}
public bool TimeOutReceived(long timeout)
{
return (DateTime.Now.Ticks - startTime) > timeout;
}
public CliRunner(bool isCliLogging)
{
startTime = DateTime.Now.Ticks;
if (isCliLogging)
{
try
{
/*log = new ScopedLoggerFactory().CreateLogger<CliRunner>(
@"C:\TBF\Logs\CliRunner.txt",
10, // maxFileSizeMB
7, // maxBackups
log4net.Core.Level.Debug,
true, // zipRolledFiles
true, // singleZipPerDay
TimeSpan.FromMinutes(2) // zipScanInterval
);*/
}
catch (Exception ex)
{
// Fallback to console or handle gracefully
Console.WriteLine($"Failed to initialize logger: {ex.Message}");
}
}
}
/// <summary>
///
/// </summary>
/// <param name="fileName"></param>
/// <param name="args"></param>
/// <typeparam name="T"></typeparam>
public Task AddSendAsync(SerialPortData data, SerialPortData.EMeterArg eMeterArg)
{
var task = SendAsync(data.SerialPortCmdClientPath, data.DefaultArgSettingsRead(eMeterArg));
taskPool.Add(task);
return task;
}
public Task AddSendAsync(SerialPortData data, SerialPortData.EMeterArg eMeterArg, string arg)
{
var task = SendAsync(data.SerialPortCmdClientPath, data.DefaultArgSettingsWrite(eMeterArg, arg));
taskPool.Add(task);
return task;
}
public void AddSendAsync(string fileName, string args)
{
var task = SendAsync(fileName, args);
taskPool.Add(task);
}
public async Task<string> SendAsync(string fileName, string args, CancellationToken ct = default)
{
var psi = new ProcessStartInfo
{
FileName = fileName,
Arguments = args,
RedirectStandardOutput = true,
RedirectStandardError = true,
UseShellExecute = false,
CreateNoWindow = true
};
var process = new Process { StartInfo = psi, EnableRaisingEvents = true };
try
{
process.Start();
Task<string> stdOutTask = process.StandardOutput.ReadToEndAsync();
Task<string> stdErrTask = process.StandardError.ReadToEndAsync();
try
{
await Task.WhenAll(stdOutTask, stdErrTask, process.WaitForExitAsync(ct));
}
catch (OperationCanceledException)
{
if (!process.HasExited)
{
process.Kill();
}
throw;
}
string allOutput = (stdOutTask.Result ?? "") + (stdErrTask.Result ?? "");
//log?.Debug(allOutput);
return allOutput;
}
finally
{
process?.Dispose();
}
}
public Task<T> AddRunAndCaptureJsonAsync<T>(SerialPortData data, SerialPortData.EMeterArg eMeterArg) where T : new()
{
var task = RunAndCaptureJsonAsync<T>(data.SerialPortCmdClientPath, data.DefaultArgSettingsRead(eMeterArg));
taskPool.Add(task);
return task;
}
public async Task<T> RunAndCaptureJsonAsync<T>(string fileName, string args, CancellationToken ct = default) where T : new()
{
var psi = new ProcessStartInfo
{
FileName = fileName,
Arguments = args,
RedirectStandardOutput = true,
RedirectStandardError = true,
UseShellExecute = false,
CreateNoWindow = true
};
var process = new Process { StartInfo = psi, EnableRaisingEvents = true };
try
{
process.Start();
var stdoutTask = process.StandardOutput.ReadToEndAsync();
var stderrTask = process.StandardError.ReadToEndAsync();
await Task.WhenAll(stdoutTask, stderrTask, process.WaitForExitAsync(ct));
string allOutput = (stdoutTask.Result ?? "") + (stderrTask.Result ?? "");
//log?.Debug(allOutput);
string json = ExtractJson(allOutput);
if (TryJsonStringDeserialize(json, out T result)) return result;
return default;
}
finally
{
process?.Dispose();
}
}
public bool TryJsonStringDeserialize<T>(string json, out T runAndCaptureJsonAsync) where T : new()
{
if (json != null)
{
try
{
runAndCaptureJsonAsync = JsonConvert.DeserializeObject<T>(json);
return true;
}
catch (Exception ex)
{
// log.Debug(ex.Message);
runAndCaptureJsonAsync = TryConvert<T>(json);
return true;
}
}
runAndCaptureJsonAsync = default;
return false;
}
private static T TryConvert<T>(string json) where T : new()
{
T obj = new T();
try
{
JObject jObject = JObject.Parse(json);
foreach (PropertyInfo prop in typeof(T).GetProperties(BindingFlags.Public | BindingFlags.Instance))
{
if (!prop.CanWrite) continue;
JToken token;
if (jObject.TryGetValue(prop.Name, StringComparison.OrdinalIgnoreCase, out token))
{
try
{
object value = token.ToObject(prop.PropertyType);
prop.SetValue(obj, value);
}
catch
{
// leave default if conversion fails
}
}
// else → keep default value
}
}
catch (Exception ex)
{
Console.WriteLine($"TryConvert failed: {ex.Message}");
}
return obj;
}
public string ExtractJson(string text)
{
int start = text.IndexOf('{');
int end = text.LastIndexOf('}');
if (start >= 0 && end > start)
{
return text.Substring(start, end - start + 1);
}
return null;
}
}
}
@@ -1,39 +0,0 @@
using System;
using System.Diagnostics;
using System.Threading;
using System.Threading.Tasks;
namespace NfcC7_DLL.NfcHandler.Utils
{
public static class ProcessExtensions
{
public static Task<object> WaitForExitAsync(this Process process, CancellationToken cancellationToken = default)
{
if (process == null) throw new ArgumentNullException(nameof(process));
if (process.HasExited) return Task.FromResult<object>(null);
var tcs = new TaskCompletionSource<object>(TaskCreationOptions.RunContinuationsAsynchronously);
EventHandler handler = null;
handler = (s, e) =>
{
try { tcs.TrySetResult(null); }
finally { process.Exited -= handler; }
};
process.EnableRaisingEvents = true;
process.Exited += handler;
if (cancellationToken.CanBeCanceled)
{
cancellationToken.Register(() =>
{
tcs.TrySetCanceled(cancellationToken);
process.Exited -= handler;
});
}
return tcs.Task;
}
}
}
-171
View File
@@ -1,171 +0,0 @@
using System;
using System.Collections.Generic;
using System.Collections.ObjectModel;
using System.Diagnostics;
using System.IO.Ports;
using System.Linq;
using System.Threading;
//*****************************************************************************
// Copyright 2020 Sensus GmbH Ludwigshafen. All rights reserved.
// Author: Venkat, Rajeshwar
//*****************************************************************************
namespace NfcC7_DLL.NfcHandler.Utils
{
public class SERIAL_Driver
{
public string ErrorMessage { get; private set; }
public Collection<byte> SerialPortReadBuffer = new Collection<byte>();
private SerialPort _serialPort;
private List<byte[]> _binMessages = new List<byte[]>();
private bool _isReading;
private Parity Parity { get; set; }
private StopBits StopBits { get; set; }
public SERIAL_Driver()
{
_serialPort = new SerialPort();
}
public bool OpenConnection(string comPort, int baudrate, int dataBits, Parity parity, StopBits stopbits, int readTimeout=1000, int writeTimeout = 1000)
{
lock (this)
{
if ((_serialPort != null) && (_serialPort.IsOpen))
{
_serialPort.DataReceived -= DataReceivedHandler;
_serialPort.Close();
_serialPort.Dispose();
_serialPort = null;
}
try
{
ErrorMessage = "";
//_serialPort = new SerialPort(comPort, 57600, Parity.None, 8, StopBits.Two);
_serialPort = new SerialPort(comPort, baudrate, parity, dataBits, stopbits);
_serialPort.ReadTimeout = readTimeout;
_serialPort.WriteTimeout = writeTimeout;
_serialPort.DataReceived += new SerialDataReceivedEventHandler(DataReceivedHandler);
_serialPort.Open();
}
catch (Exception ex)
{
ErrorMessage = String.Format("COM error: Open failed {0}.{1}", comPort, ex.Message);
return false;
}
if (!_serialPort.IsOpen)
{
ErrorMessage = String.Format("COM error: Can't Open {0}.", comPort);
return false;
}
}//End Lock
return true;
}
public bool SendMessage(byte[] sendDataBytes, int length, int readTimeout = 1000, int writeTimeout=1000)
{
if (!isOpen()) return false;
if (sendDataBytes.Length == 0) return true; // nothing to send - no error
try
{
PrepareReading(); //clear read buffer etc.
_serialPort.WriteTimeout = writeTimeout;
_serialPort.ReadTimeout = readTimeout;
_serialPort.Write(sendDataBytes, 0, length);
_isReading = true;
Thread.Sleep(100);
var stopWatch = Stopwatch.StartNew(); //start stop watch for data recevie timeout
while (_isReading) //wait until reading finishes or timeout occur
{
if (stopWatch.ElapsedMilliseconds > readTimeout)
{
stopWatch.Stop();
ErrorMessage = "COM error: Receive timeout";
return false;
}
}
}
catch (Exception ex)
{
ErrorMessage = String.Format("COM error: Transmit timeout {0}.{1}", _serialPort.PortName, ex.Message);
return false; // Exception in send function
}
return true;
}
private void PrepareReading()
{
_serialPort.DiscardInBuffer();
if(_binMessages != null) _binMessages.Clear();
_isReading = true;
}
public byte[] GetRawData()
{
try
{
if (_binMessages.Count > 0)
return _binMessages[0].ToArray();
else
{
return null;
}
}
catch(Exception)
{
byte[] err = { 0xFF };
return err;
}
}
private void DataReceivedHandler(object sender, SerialDataReceivedEventArgs e)
{
if (!_serialPort.IsOpen) return;
lock (this)
{
Thread.Sleep(100);
if (!_serialPort.IsOpen) return;
SerialPortReadBuffer = new Collection<byte>();
while (_serialPort.BytesToRead > 0)
{
SerialPortReadBuffer.Add((byte)_serialPort.ReadByte());
}
_binMessages.Add(SerialPortReadBuffer.ToArray());
_isReading = false;
}
}
public void CloseConnection()
{
if ((_serialPort != null) && (_serialPort.IsOpen))
{
_serialPort.DataReceived -= DataReceivedHandler;
_serialPort.Close();
_serialPort.Dispose();
_serialPort = null;
}
}
public void Close()
{
if (isOpen())
{
_serialPort.Close();
}
}
public void Dispose()
{
if (_serialPort != null)
{
_serialPort.Dispose();
}
}
public bool isOpen()
{
if(_serialPort != null)
return _serialPort.IsOpen;
return false;
}
}
}
@@ -1,88 +0,0 @@
using System;
using System.IO;
namespace NfcC7_DLL.NfcHandler.Utils
{
public class SerialPortData
{
private Boolean? _cliExists;
public bool CliExists { get {
if (_cliExists == null || !_cliExists.HasValue)
{
_cliExists = File.Exists(SerialPortCmdClientPath);
}
return _cliExists.Value;
} }
public string SerialPortCmdClientPath {
get {
#if DEBUG
return Path.Combine("C:\\","TBF","Cli", CmdClientName);
#else
return Path.Combine("..","Cli", CmdClientName);
#endif
}
}
public string CmdClientName { get; set; } = "HalCli.exe";
public string PortName { get; set; }
public int MeterType { get; set; }
public string MeterTypeStr { get; set; }
public enum EMeterArg {
Calibration = 0,
AllParams = 2,
DeviceId = 3,
Optohead = 4,
}
EMeterArg _eMeterArg = EMeterArg.AllParams;
public string DefaultArgSettingsRead(EMeterArg eMeterArg)
{
string meterTypeInsert = !string.IsNullOrEmpty(MeterTypeStr) ? MeterTypeStr : MeterType.ToString();
switch (eMeterArg)
{
case EMeterArg.AllParams:
return $"-p {PortName} -m {meterTypeInsert} --operation readall";
case EMeterArg.DeviceId:
return $"-p {PortName} -m {meterTypeInsert} --operation read --parameter DeviceId";
case EMeterArg.Optohead:
return $"-p {PortName} -m {meterTypeInsert} --operation read --parameter \"OpticalDataMode\"";
default:
throw new Exception("Not implemented correct command!");
}
}
public string DefaultArgSettingsWrite(EMeterArg eMeterArg, string arg)
{
string meterTypeInsert = !string.IsNullOrEmpty(MeterTypeStr) ? MeterTypeStr : MeterType.ToString();
switch (eMeterArg)
{
case EMeterArg.Calibration:
return $"-p {PortName} -m {meterTypeInsert} --operation write --parameter Calibration --value {arg}";
case EMeterArg.Optohead:
return $"-p {PortName} -m {meterTypeInsert} --operation write --parameter \"OpticalDataMode\" --value {arg}";
default:
throw new Exception("Not implemented correct command!");
}
}
public SerialPortData(
string portName,
string cmdClientName,
int meterType)
{
PortName = portName;
CmdClientName = cmdClientName;
MeterType = meterType;
}
public SerialPortData(
string portName,
string cmdClientName,
string meterType)
{
PortName = portName;
CmdClientName = cmdClientName;
MeterTypeStr = meterType;
}
}
}
-158
View File
@@ -1,158 +0,0 @@
using System;
using System.Collections.Generic;
using System.Text;
//*****************************************************************************
// Copyright 2020 Sensus GmbH Ludwigshafen. All rights reserved.
// Author: Venkat, Rajeshwar
//*****************************************************************************
namespace NfcC7_DLL.NfcHandler.Utils
{
public static class Tools
{
public static bool ByteArrayCompare(byte[] a1, byte[] a2)
{
// thanks to https://stackoverflow.com/questions/43289/comparing-two-byte-arrays-in-net
if (a1.Length != a2.Length)
return false;
for (int i = 0; i < a1.Length; i++)
if (a1[i] != a2[i])
return false;
return true;
}
public static string SwapHex(string sHex)
{
string sResult = "";
int iPos = sHex.Length - 2;
while (iPos >= 0)
{
sResult += sHex.Substring(iPos, 2);
sHex = sHex.Remove(iPos, 2);
iPos = sHex.Length - 2;
}
return sResult;
}
public static string DecimalToHexString(string value, int size = 1)
{
try
{
long Lval = long.Parse(value);
if (size == 1) return Lval.ToString("X2");
if (size == 2) return Lval.ToString("X4");
if (size == 4) return Lval.ToString("X8");
}
catch (Exception)
{
if (size == 1) return "00";
if (size == 2) return "0000";
if (size == 4) return "00000000";
}
return "00";
}
public static string ByteToHexString(byte data)
{
List<byte> val = new List<byte>();
val.Add(data);
byte[] arr = val.ToArray();
return BytesToHex(arr);
}
public static string BytesToHex(byte[] data)
{
StringBuilder sb = new StringBuilder();
foreach (byte b in data)
sb.Append(b.ToString("X2"));
return sb.ToString();
}
public static byte[] HexStringToByteArray(String hexString)
{
int numberChars = hexString.Length;
byte[] bytes = new byte[numberChars / 2];
for (int i = 0; i < numberChars; i += 2)
{
bytes[i / 2] = Convert.ToByte(hexString.Substring(i, 2), 16);
}
return bytes;
}
public enum InitialCrcValue
{
Zeros,
NonZero1 = 0xffff,
NonZero2 = 0x1D0F
}
public class Crc16Ccitt
{
private const ushort poly = 0x1021;
ushort[] table = new ushort[256];
ushort initialValue = 0;
public ushort ComputeChecksum(byte[] bytes)
{
ushort crc = this.initialValue;
for (int i = 0; i < bytes.Length; ++i)
{
crc = (ushort)((crc << 8) ^ table[((crc >> 8) ^ (0xff & bytes[i]))]);
}
return crc;
}
public byte[] ComputeChecksumBytes(byte[] bytes)
{
ushort crc = ComputeChecksum(bytes);
return BitConverter.GetBytes(crc);
}
public Crc16Ccitt(InitialCrcValue initialValue)
{
this.initialValue = (ushort) initialValue;
ushort temp, a;
for (int i = 0; i < table.Length; ++i)
{
temp = 0;
a = (ushort) (i << 8);
for (int j = 0; j < 8; ++j)
{
if (((temp ^ a) & 0x8000) != 0)
{
temp = (ushort) ((temp << 1) ^ poly);
}
else
{
temp <<= 1;
}
a <<= 1;
}
table[i] = temp;
}
}
public byte[] calcCRCfromMessage(byte[] message)
{
// CRC calculation goes from MessageID to Password
// For Read this means MsgID (1) + Offset (2) + PayloadLength (1) + Password (2) = 6
// for write the length of the payload comes on top.
// STX(1), length(1), CRC(2) and ETX(1) are excluded, in total 5 bytes.
//
// the method works both for sending messages (where the CRC and ETX are not in message)
// and for receiving messages (where the CRC and ETX are included at the end)
byte[] crc_msg = new byte[message[1]]; // message length is 2nd byte
Array.Copy(message, 2, crc_msg, 0, crc_msg.Length);
return ComputeChecksumBytes(crc_msg);
}
public string commentCRC(byte[] crc_meter, byte[] crc_computed)
{
bool crc_do_match = Tools.ByteArrayCompare(crc_meter, crc_computed);
string crcComment = crc_do_match ? "ok." : "CRC DOESN'T MATCH!!";
return "CRC Meter: " + Tools.BytesToHex(crc_meter) + (crc_do_match ? " == " : " != ")
+ "CRC Computed: " + Tools.BytesToHex(crc_computed) + ". " + crcComment;
}
public bool crc_do_match(byte[] a, byte[] b)
{
return ByteArrayCompare(a, b);
}
}
}
}
+1 -1
View File
@@ -38,7 +38,7 @@ namespace ResetBatchNr
ls.BatchNr = 1;
ls.Save();
Console.WriteLine(@"BatchNr was reset to 1");
Console.WriteLine("BatchNr was reset to 1");
Console.ReadLine();
return;
}
+26 -11
View File
@@ -16,25 +16,25 @@ namespace Results.Entities
public virtual double PulsesMeter { get; set; } /// # of water meter or heat meter pulses
public virtual double PulsesMaster { get; set; } /// # of reference flowmeter pulses (gated by this water meter pulses)
public virtual double PulsesPerLiter { get; set; } /// [l ^ -1], in case of heat meters (CompoundMeterId==5) pulses per kWh in [kWh ^ -1]
public virtual double PulsesPerKilogram { get; set; } /// [kg ^ -1]
public virtual double PulsesPerKilogram { get; set; } /// [kg ^ -1] //...MF
public virtual double VolumeStart { get; set; } /// Volume or energy (CompoundMeterId==5) on test start in [l] or [J]
public virtual double VolumeEnd { get; set; } /// Volume or energy (CompoundMeterId==5) on test end in [l] or [J]
public virtual double VolumeMeter { get; set; } /// Measured volume or energy (CompoundMeterId==5) in [l] or [J]
public virtual double VolumeMeter { get; set; } /// Measured volume or energy (CompoundMeterId==5) in [l] or [J]
public virtual double VolumeRef { get; set; } /// Reference volume or energy (CompoundMeterId==5) in [l] or [J]
public virtual double MassMeter { get; set; } /// Measured mass or energy (CompoundMeterId==5) in [kg] or [J]
public virtual double VolumeRef { get; set; } /// Reference volume or energy (CompoundMeterId==5) in [l] or [J]
public virtual double MassRef { get; set; } /// Reference mass or energy (CompoundMeterId==5) in [kg] or [J]
public virtual double TimestampStart { get; set; } /// [s]
public virtual double TimestampEnd { get; set; } /// [s]
public virtual double TestTime { get; set; } /// [s]
/// Main result
public virtual double Error { get; set; } /// [%] for volume register reader
public virtual double ErrorMass { get; set; } /// [%] for mass register reader
/// Main result
public virtual double Error { get; set; } /// [%]
public virtual double ErrorMass { get; set; } /// [%] //...MF
public virtual long ErrorIndicators { get; set; } /// Not mapped to DB !!!, bit24=E25, bit25=E26, bit26=E27, bit27=E28 (error flags)
public virtual long InfoIndicators { get; set; } /// Not mapped to DB !!!, bit24=E25, bit25=E26, bit26=E27, bit27=E28 (info flags)
public virtual bool TestDone { get; set; } /// true = test was completed
public virtual bool Passed { get; set; } /// true = test passed, water meter is OK for Volume RegisterReader
public virtual bool PassedMass { get; set; } /// true = test passed, water meter is OK for Mass RegisterReader
public virtual bool Passed { get; set; } /// true = test passed, water meter is OK
public virtual bool PassedMass { get; set; } /// true = test passed, water meter is OK //...MF
public virtual string QuantityUnits { get; set; } /// dm3, kg, etc. - this value defined the quantity of meter, its decisive for distinction of pulse types
#if IPERL
public virtual int CalibFactor { get; set; }
@@ -129,6 +129,8 @@ namespace Results.Entities
return Passed ? yesNo[0] : ((yesNo.Length >= 2) ? yesNo[1] : Results.Resources.Strings.No);
}
}
//...MF
public virtual string PassedMassColorStr(string yesNoFormatOrEmpty)
{
if (string.IsNullOrEmpty(yesNoFormatOrEmpty))
@@ -142,7 +144,8 @@ namespace Results.Entities
}
}
public virtual string GetQuantityFromUnits()
//...MF
public virtual string GetQuantityFromUnits()
{
if (QuantityUnits == "kg")
@@ -153,7 +156,7 @@ namespace Results.Entities
{
return "Volume";
}
return "Volume";
}
@@ -190,6 +193,7 @@ namespace Results.Entities
PulsesMeter = src.PulsesMeter;
PulsesMaster = src.PulsesMaster;
PulsesPerLiter = src.PulsesPerLiter;
PulsesPerKilogram = src.PulsesPerKilogram;
VolumeStart = src.VolumeStart;
VolumeEnd = src.VolumeEnd;
VolumeMeter = src.VolumeMeter;
@@ -198,10 +202,13 @@ namespace Results.Entities
TimestampEnd = src.TimestampEnd;
TestTime = src.TestTime;
Error = src.Error;
ErrorMass = src.ErrorMass;
ErrorIndicators = src.ErrorIndicators;
InfoIndicators = src.InfoIndicators;
TestDone = src.TestDone;
Passed = src.Passed;
PassedMass = src.PassedMass;
QuantityUnits = src.QuantityUnits;
#if IPERL
CalibFactor = src.CalibFactor;
CalibFactorLNA = src.CalibFactorLNA;
@@ -237,6 +244,7 @@ namespace Results.Entities
writer.Write(PulsesMeter);
writer.Write(PulsesMaster);
writer.Write(PulsesPerLiter);
writer.Write(PulsesPerKilogram);
writer.Write(VolumeStart);
writer.Write(VolumeEnd);
writer.Write(VolumeMeter);
@@ -245,10 +253,13 @@ namespace Results.Entities
writer.Write(TimestampEnd);
writer.Write(TestTime);
writer.Write(Error);
writer.Write(ErrorMass);
writer.Write(ErrorIndicators);
writer.Write(InfoIndicators);
writer.Write(TestDone);
writer.Write(Passed);
writer.Write(PassedMass);
writer.Write((QuantityUnits != null) ? QuantityUnits : string.Empty);
#if IPERL
writer.Write(CalibFactor);
writer.Write(CalibFactorLNA);
@@ -281,6 +292,7 @@ namespace Results.Entities
PulsesMeter = reader.ReadDouble();
PulsesMaster = reader.ReadDouble();
PulsesPerLiter = reader.ReadDouble();
PulsesPerKilogram = reader.ReadDouble();
VolumeStart = reader.ReadDouble();
VolumeEnd = reader.ReadDouble();
VolumeMeter = reader.ReadDouble();
@@ -289,10 +301,13 @@ namespace Results.Entities
TimestampEnd = reader.ReadDouble();
TestTime = reader.ReadDouble();
Error = reader.ReadDouble();
ErrorMass = reader.ReadDouble();
ErrorIndicators = reader.ReadInt64();
InfoIndicators = reader.ReadInt64();
TestDone = reader.ReadBoolean();
Passed = reader.ReadBoolean();
PassedMass = reader.ReadBoolean();
QuantityUnits = reader.ReadString();
#if IPERL
CalibFactor = reader.ReadInt32();
CalibFactorLNA = reader.ReadInt32();
+60 -27
View File
@@ -50,12 +50,11 @@ namespace Results.Entities
public virtual double Flow { get; set; } /// [m3/h] calculated from conventional true value
public virtual double VolumeCTV { get; set; } /// [l] Volume conventional true value
public virtual double VolumeMaster { get; set; } /// [l] Volume from the master flow meter
public virtual double ErrorMaster { get; set; } /// [%] Error of the master flow meter
public virtual double MassFlow { get; set; } /// [t/h] calculated from conventional true value
public virtual double MassCTV { get; set; } /// [kg] Volume conventional true value
public virtual double MassMaster { get; set; } /// [kg] Volume from the master flow meter
public virtual double MassErrorMaster { get; set; } /// [%] Error of the master flow meter
public virtual double ErrorMaster { get; set; } /// [%] Error of the master flow meter
public virtual double MassFlow { get; set; } /// [t/h] calculated from conventional true value ...MF
public virtual double MassCTV { get; set; } /// [kg] Volume conventional true value ...MF
public virtual double MassMaster { get; set; } /// [kg] Volume from the master flow meter ...MF
public virtual double MassErrorMaster { get; set; } /// [%] Error of the master flow meter ...MF
public virtual float DiverterStart { get; set; } /// [s] Diverter switch time or a start/stop valve open time when the test starts
public virtual float DivStart10 { get; set; } /// [s] Diverter switch time when test starts at level 10 (e.g. 10%) (not mapped to DB)
public virtual float DivStart50 { get; set; } /// [s] Diverter switch time when test starts at level 50 (e.g. 50%) (not mapped to DB)
@@ -299,7 +298,8 @@ namespace Results.Entities
ConstMasterRaw = src.ConstMasterRaw;
ConstMasterCorr = src.ConstMasterCorr;
ConstMaster = src.ConstMaster;
MassStartRaw = src.MassStartRaw;
MassConstMaster = src.MassConstMaster;
MassStartRaw = src.MassStartRaw;
MassStart = src.MassStart;
MassEndRaw = src.MassEndRaw;
MassEnd = src.MassEnd;
@@ -307,12 +307,16 @@ namespace Results.Entities
DensityLine = src.DensityLine;
DensityDiv = src.DensityDiv;
MassOfEvapWater = src.MassOfEvapWater;
Qdetected = src.Qdetected;
Qdetected = src.Qdetected;
Flow = src.Flow;
VolumeCTV = src.VolumeCTV;
VolumeMaster = src.VolumeMaster;
ErrorMaster = src.ErrorMaster;
MassFlow = src.MassFlow;
MassCTV = src.MassCTV;
MassMaster = src.MassMaster;
MassErrorMaster = src.MassErrorMaster;
DiverterStart = src.DiverterStart;
DivStart10 = src.DivStart10;
DivStart50 = src.DivStart50;
@@ -445,24 +449,43 @@ namespace Results.Entities
public virtual string ToString(int i)
{
return string.Format("TestRslt: Part={0} RepetitionNr={1} TestDone={2} Remark={3} StartTime={4} EndTime={5} FlowSetTime={6} TestTime={7} PulsesMaster={8} ConstMaster={9} MassStartRaw={10} MassStart={11} MassEndRaw={12} MassEnd={13} DensityIn={14} DensityOut={15} DensityDiv={16} MassOfEvapWaater={17} FlowMass={18} FlowVolume={19} VolumeCTV={20} VolumeMaster={21} ErrorMaster={22} DiverterStart={85} DiverterEnd={86} ErrorFlags={23} InfoFlags={24} AmbTempMean={25} AmbTempStart={26} AmbTempEnd={27} AmbTempMin={28} AmbTempMax={29} AmbPressMean={30} AmbPressStart={31} AmbPressEnd={32} AmbPressMin={33} AmbPressMax={34} AmbHumiMean={35} AmbHumiStart={36} AmbHumiEnd={37} AmbHumiMin={38} AmbHumiMax={39} PressUpMean={40} PressUpStart={41} PressUpEnd={42} PressUpMin={43} PressUpMax={44} PressDownMean={45} PressDownStart={46} PressDownEnd={47} PressDownMin={48} PressDownMax={49} PressDeltaMean={50} PressDeltaStart={51} PressDeltaEnd={52} PressDeltaMin={53} PressDeltaMax={54} TempUpMean={55} TempUpStart={56} TempUpEnd={57} TempUpMin={58} TempUpMax={59} TempDownMean={60} TempDownStart={61} TempDownEnd={62} TempDownMin={63} TempDownMax={64} TempDivMean={65} TempDivStart={66} TempDivEnd={67} TempDivMin={68} TempDivMax={69} FlowMean={70} FlowStart={71} FlowEnd={72} FlowMin={73} FlowMax={74} Custom1={75} Custom2={76} Custom3={77} Custom4={78} Custom5={79} Custom6={80} Custom7={81} Custom8={82} Custom9={83} Custom10={84} TestMeasured={85} TestCollected={86}",
Part, RepetitionNr, TestDone, Remark, StartTime, EndTime, FlowSetTime, TestTime,
PulsesMaster, ConstMaster, MassStartRaw, MassStart, MassEndRaw, MassEnd,
DensityIn, DensityLine, DensityDiv, MassOfEvapWater, Qdetected, Flow,
VolumeCTV, VolumeMaster, ErrorMaster, ErrorFlags, InfoFlags,
AmbTempMean, AmbTempStart, AmbTempEnd, AmbTempMin, AmbTempMax,
AmbPressMean, AmbPressStart, AmbPressEnd, AmbPressMin, AmbPressMax,
AmbHumiMean, AmbHumiStart, AmbHumiEnd, AmbHumiMin, AmbHumiMax,
PressUpMean, PressUpStart, PressUpEnd, PressUpMin, PressUpMax,
PressDownMean, PressDownStart, PressDownEnd, PressDownMin, PressDownMax,
PressDeltaMean, PressDeltaStart, PressDeltaEnd, PressDeltaMin, PressDeltaMax,
TempUpMean, TempUpStart, TempUpEnd, TempUpMin, TempUpMax,
TempDownMean, TempDownStart, TempDownEnd, TempDownMin, TempDownMax,
TempDivMean, TempDivStart, TempDivEnd, TempDivMin, TempDivMax,
FlowMean, FlowStart, FlowEnd, FlowMin, FlowMax,
Custom1, Custom2, Custom3, Custom4, Custom5, Custom6, Custom7, Custom8, Custom9, Custom10,
DiverterStart, DiverterEnd, TestMeasured, TestCollected);
}
return string.Format(
"TestRslt: Part={0} RepetitionNr={1} TestDone={2} Remark={3} StartTime={4} EndTime={5} FlowSetTime={6} TestTime={7} " +
"PulsesMaster={8} ConstMaster={9} MassConstMaster={9} MassStartRaw={10} MassStart={11} MassEndRaw={12} MassEnd={13} " +
"DensityIn={14} DensityOut={15} DensityDiv={16} MassOfEvapWater={17} FlowMass={18} Flow={19} " +
"VolumeCTV={20} VolumeMaster={21} ErrorMaster={22} MassFlow={23} MassCTV={24} MassMaster={25} MassErrorMaster={26} " +
"ErrorFlags={27} InfoFlags={28} " +
"AmbTempMean={29} AmbTempStart={30} AmbTempEnd={31} AmbTempMin={32} AmbTempMax={33} " +
"AmbPressMean={34} AmbPressStart={35} AmbPressEnd={36} AmbPressMin={37} AmbPressMax={38} " +
"AmbHumiMean={39} AmbHumiStart={40} AmbHumiEnd={41} AmbHumiMin={42} AmbHumiMax={43} " +
"PressUpMean={44} PressUpStart={45} PressUpEnd={46} PressUpMin={47} PressUpMax={48} " +
"PressDownMean={49} PressDownStart={50} PressDownEnd={51} PressDownMin={52} PressDownMax={53} " +
"PressDeltaMean={54} PressDeltaStart={55} PressDeltaEnd={56} PressDeltaMin={57} PressDeltaMax={58} " +
"TempUpMean={59} TempUpStart={60} TempUpEnd={61} TempUpMin={62} TempUpMax={63} " +
"TempDownMean={64} TempDownStart={65} TempDownEnd={66} TempDownMin={67} TempDownMax={68} " +
"TempDivMean={69} TempDivStart={70} TempDivEnd={71} TempDivMin={72} TempDivMax={73} " +
"FlowMean={74} FlowStart={75} FlowEnd={76} FlowMin={77} FlowMax={78} " +
"Custom1={79} Custom2={80} Custom3={81} Custom4={82} Custom5={83} Custom6={84} Custom7={85} Custom8={86} Custom9={87} Custom10={88} " +
"DiverterStart={89} DiverterEnd={90} TestMeasured={91} TestCollected={92}",
Part, RepetitionNr, TestDone, Remark, StartTime, EndTime, FlowSetTime, TestTime,
PulsesMaster, ConstMaster, MassConstMaster, MassStartRaw, MassStart, MassEndRaw, MassEnd,
DensityIn, DensityLine, DensityDiv, MassOfEvapWater, Qdetected, Flow,
VolumeCTV, VolumeMaster, ErrorMaster, MassFlow,
MassCTV, MassMaster, MassErrorMaster, ErrorFlags, InfoFlags,
AmbTempMean, AmbTempStart, AmbTempEnd, AmbTempMin, AmbTempMax,
AmbPressMean, AmbPressStart, AmbPressEnd, AmbPressMin, AmbPressMax,
AmbHumiMean, AmbHumiStart, AmbHumiEnd, AmbHumiMin, AmbHumiMax,
PressUpMean, PressUpStart, PressUpEnd, PressUpMin, PressUpMax,
PressDownMean, PressDownStart, PressDownEnd, PressDownMin, PressDownMax,
PressDeltaMean, PressDeltaStart, PressDeltaEnd, PressDeltaMin, PressDeltaMax,
TempUpMean, TempUpStart, TempUpEnd, TempUpMin, TempUpMax,
TempDownMean, TempDownStart, TempDownEnd, TempDownMin, TempDownMax,
TempDivMean, TempDivStart, TempDivEnd, TempDivMin, TempDivMax,
FlowMean, FlowStart, FlowEnd, FlowMin, FlowMax,
Custom1, Custom2, Custom3, Custom4, Custom5, Custom6, Custom7, Custom8, Custom9, Custom10,
DiverterStart, DiverterEnd, TestMeasured, TestCollected
);
}
public virtual void WriteBinary(BinaryWriter writer, IList<TestData> savedTestDatas)
@@ -509,6 +532,7 @@ namespace Results.Entities
writer.Write(ConstMasterRaw);
writer.Write(ConstMasterCorr);
writer.Write(ConstMaster);
writer.Write(MassConstMaster);
writer.Write(MassStartRaw);
writer.Write(MassStart);
writer.Write(MassEndRaw);
@@ -522,6 +546,10 @@ namespace Results.Entities
writer.Write(VolumeCTV);
writer.Write(VolumeMaster);
writer.Write(ErrorMaster);
writer.Write(MassFlow);
writer.Write(MassCTV);
writer.Write(MassMaster);
writer.Write(MassErrorMaster);
writer.Write(DiverterStart);
writer.Write(DivStart10);
writer.Write(DivStart50);
@@ -652,6 +680,7 @@ namespace Results.Entities
ConstMasterRaw = reader.ReadDouble();
ConstMasterCorr = reader.ReadDouble();
ConstMaster = reader.ReadDouble();
MassConstMaster = reader.ReadDouble();
MassStartRaw = reader.ReadDouble();
MassStart = reader.ReadDouble();
MassEndRaw = reader.ReadDouble();
@@ -665,6 +694,10 @@ namespace Results.Entities
VolumeCTV = reader.ReadDouble();
VolumeMaster = reader.ReadDouble();
ErrorMaster = reader.ReadDouble();
MassFlow = reader.ReadDouble();
MassCTV = reader.ReadDouble();
MassMaster = reader.ReadDouble();
MassErrorMaster = reader.ReadDouble();
DiverterStart = reader.ReadSingle();
DivStart10 = reader.ReadSingle();
DivStart50 = reader.ReadSingle();
-2
View File
@@ -49,8 +49,6 @@ namespace Results.Forms
{
InitializeComponent();
this.Icon = Properties.Resources.TBF_icon;
firstEnabledControl = null;
lastSizeChange = DateTime.Now;
nrGroups = 1;
+1 -4
View File
@@ -24,10 +24,7 @@ namespace Results.Forms
public ManualEntryConfigDlg()
{
InitializeComponent();
this.Icon = Properties.Resources.TBF_icon;
manualEntryConfigCtrl.Unlocked = true;
manualEntryConfigCtrl.Unlocked = true;
}
-2
View File
@@ -25,8 +25,6 @@ namespace Results.Forms
{
InitializeComponent();
this.Icon = Properties.Resources.TBF_icon;
Localize();
ShowAllResults(wm);
+1 -4
View File
@@ -35,10 +35,7 @@ namespace Results.Forms
public ResultsConfigDlg()
{
InitializeComponent();
this.Icon = Properties.Resources.TBF_icon;
resultsConfigCtrl.Unlocked = true;
resultsConfigCtrl.Unlocked = true;
}
+17 -9
View File
@@ -37,7 +37,9 @@ namespace Results
Ambient_pressure, /// 27
Ambient_humidity, /// 28
Volume, /// 29
Quantity, /// 29
Reference_volume, /// 30
Reference_quantity, /// 30
Error, /// 31
Passed, /// 32
Watermeter_type, /// 33
@@ -69,6 +71,7 @@ namespace Results
End_state, /// 59
Pulses, /// 60
Pulse__liter, /// 61 Water meter constant (pulses per liter) specific for one test
Pulse__kilogram, /// 61 Water meter constant (pulses per liter) specific for one test //...MF
Reference_pulses_ni, /// 62 Reference pulses gated for specific meter (synchro method)
Reference_energy, /// 63
Bench_ID, /// 64 Test bench ID (int) obtained from a component implementing IBenchInfo
@@ -81,6 +84,7 @@ namespace Results
Batch_start_time, /// 71
Batch_end_time, /// 72
Lite_per_pulse_Read, /// 73
Unit_per_pulse_Read, /// 73
Result_code, /// 74
Remark, /// 75
T_Hi_mean, /// 76
@@ -98,9 +102,11 @@ namespace Results
Volume_main, /// 88
Volume_aux, /// 89
Start_volume, /// 90
Start_quantity, /// 90
Start_volume_main, /// 91
Start_volume_aux, /// 92
End_volume, /// 93
End_quantity, /// 93
End_volume_main, /// 94
End_volume_aux, /// 95
Error_main, /// 96
@@ -351,15 +357,17 @@ namespace Results
Failed_meters_countE15, /// 297
Quantity, /// 298
Reference_quantity, /// 299
Start_quantity, /// 300
End_quantity, /// 301
RR_Quantity, /// 302
RR_Units, /// 303
MassCTV, /// 304
Unit_per_pulse_Read, /// 305
Pulses_per_unit, /// 306
RR_Quantity, /// 0
RR_Units, /// 0
MassFlow, /// 15 Calculated flow (use ConstMasterRaw/ConstMaster to calculate uncorrected flow of the reference flow meter) ...MF
Error_mass, /// 31 ...MF
Passed_mass, /// 32 ...MF
Meter_mass, /// 29 ...MF
Reference_mass, /// 30 ...MF
TestPassed_mass, /// 125 ...MF
//Pulses_per_kilogram, /// 49 Water meter constant (water meter data, not used in calculations) //...MF
Pulses_per_unit, /// 49 Water meter constant (water meter data, not used in calculations) //...MF
MassCTV, /// 229 ...MF
Count,
}
+2 -1
View File
@@ -32,7 +32,8 @@ namespace Results.Mappings
Map(x => x.ConstMasterRaw);
Map(x => x.ConstMasterCorr);
Map(x => x.ConstMaster);
Map(x => x.MassStartRaw);
Map(x => x.MassConstMaster);
Map(x => x.MassStartRaw);
Map(x => x.MassStart);
Map(x => x.MassEndRaw);
Map(x => x.MassEnd);
+1
View File
@@ -36,6 +36,7 @@ namespace Results.Mappings
Map(x => x.Certificate);
Map(x => x.PulsesPerLtr);
Map(x => x.PulsesPerKilogram);
Map(x => x.ProducerAux);
Map(x => x.Q3_Qn_Aux);
+1 -11
View File
@@ -19,7 +19,7 @@ namespace Results.Properties {
// class via a tool like ResGen or Visual Studio.
// To add or remove a member, edit your .ResX file then rerun ResGen
// with the /str option, or rebuild your VS project.
[global::System.CodeDom.Compiler.GeneratedCodeAttribute("System.Resources.Tools.StronglyTypedResourceBuilder", "17.0.0.0")]
[global::System.CodeDom.Compiler.GeneratedCodeAttribute("System.Resources.Tools.StronglyTypedResourceBuilder", "4.0.0.0")]
[global::System.Diagnostics.DebuggerNonUserCodeAttribute()]
[global::System.Runtime.CompilerServices.CompilerGeneratedAttribute()]
internal class Resources {
@@ -69,15 +69,5 @@ namespace Results.Properties {
return ((System.Drawing.Bitmap)(obj));
}
}
/// <summary>
/// Looks up a localized resource of type System.Drawing.Icon similar to (Icon).
/// </summary>
internal static System.Drawing.Icon TBF_icon {
get {
object obj = ResourceManager.GetObject("TBF_icon", resourceCulture);
return ((System.Drawing.Icon)(obj));
}
}
}
}
-3
View File
@@ -121,7 +121,4 @@
<data name="Headpic" type="System.Resources.ResXFileRef, System.Windows.Forms">
<value>..\Resources\Headpic.png;System.Drawing.Bitmap, System.Drawing, Version=4.0.0.0, Culture=neutral, PublicKeyToken=b03f5f7f11d50a3a</value>
</data>
<data name="TBF_icon" type="System.Resources.ResXFileRef, System.Windows.Forms">
<value>..\Resources\TBF_icon.ico;System.Drawing.Icon, System.Drawing, Version=4.0.0.0, Culture=neutral, PublicKeyToken=b03f5f7f11d50a3a</value>
</data>
</root>
+36
View File
@@ -897,6 +897,15 @@ namespace Results.Resources {
}
}
/// <summary>
/// Looks up a localized string similar to Pulses/kg.
/// </summary>
internal static string PulsesKilogram {
get {
return ResourceManager.GetString("PulsesKilogram", resourceCulture);
}
}
/// <summary>
/// Looks up a localized string similar to Pulses/l.
/// </summary>
@@ -1365,6 +1374,15 @@ namespace Results.Resources {
}
}
/// <summary>
/// Looks up a localized string similar to Relative error of a meter.
/// </summary>
internal static string Tooltip_E_rel_mass {
get {
return ResourceManager.GetString("Tooltip_E_rel_mass", resourceCulture);
}
}
/// <summary>
/// Looks up a localized string similar to Relative error of the master meter.
/// </summary>
@@ -1977,6 +1995,15 @@ namespace Results.Resources {
}
}
/// <summary>
/// Looks up a localized string similar to Mass measured by the tested meter.
/// </summary>
internal static string Tooltip_Vol_Mt_mass {
get {
return ResourceManager.GetString("Tooltip_Vol_Mt_mass", resourceCulture);
}
}
/// <summary>
/// Looks up a localized string similar to Reference volume for tested meter.
/// </summary>
@@ -1986,6 +2013,15 @@ namespace Results.Resources {
}
}
/// <summary>
/// Looks up a localized string similar to Reference mass for tested meter.
/// </summary>
internal static string Tooltip_Vol_rm_mass {
get {
return ResourceManager.GetString("Tooltip_Vol_rm_mass", resourceCulture);
}
}
/// <summary>
/// Looks up a localized string similar to Uncertainty.
/// </summary>
+12
View File
@@ -351,6 +351,18 @@
<data name="Merge" xml:space="preserve">
<value>Spojit</value>
</data>
<data name="PulsesKilogram" xml:space="preserve">
<value />
</data>
<data name="Tooltip_E_rel_mass" xml:space="preserve">
<value />
</data>
<data name="Tooltip_Vol_Mt_mass" xml:space="preserve">
<value />
</data>
<data name="Tooltip_Vol_rm_mass" xml:space="preserve">
<value />
</data>
<data name="PulsesUnit" xml:space="preserve">
<value />
</data>
+12
View File
@@ -825,6 +825,18 @@
<data name="Selected_items" xml:space="preserve">
<value>Ausgewählte Objekte</value>
</data>
<data name="PulsesKilogram" xml:space="preserve">
<value>Impulse/kg</value>
</data>
<data name="Tooltip_E_rel_mass" xml:space="preserve">
<value />
</data>
<data name="Tooltip_Vol_Mt_mass" xml:space="preserve">
<value />
</data>
<data name="Tooltip_Vol_rm_mass" xml:space="preserve">
<value />
</data>
<data name="PulsesUnit" xml:space="preserve">
<value />
</data>
+12
View File
@@ -804,6 +804,18 @@
<data name="Serial_number_is_missing" xml:space="preserve">
<value>Numérotation en série</value>
</data>
<data name="PulsesKilogram" xml:space="preserve">
<value>Impulsion/kilogram</value>
</data>
<data name="Tooltip_E_rel_mass" xml:space="preserve">
<value />
</data>
<data name="Tooltip_Vol_Mt_mass" xml:space="preserve">
<value />
</data>
<data name="Tooltip_Vol_rm_mass" xml:space="preserve">
<value />
</data>
<data name="PulsesUnit" xml:space="preserve">
<value />
</data>
+13 -1
View File
@@ -220,7 +220,7 @@
<value>impulsi </value>
</data>
<data name="PulsesLiter" xml:space="preserve">
<value>impulsi /l</value>
<value>impulsi/l</value>
</data>
<data name="P_amb" xml:space="preserve">
<value>P ambiente</value>
@@ -537,6 +537,18 @@
<data name="Yes" xml:space="preserve">
<value>Sì</value>
</data>
<data name="PulsesKilogram" xml:space="preserve">
<value>impulsi/kg</value>
</data>
<data name="Tooltip_E_rel_mass" xml:space="preserve">
<value />
</data>
<data name="Tooltip_Vol_Mt_mass" xml:space="preserve">
<value />
</data>
<data name="Tooltip_Vol_rm_mass" xml:space="preserve">
<value />
</data>
<data name="PulsesUnit" xml:space="preserve">
<value />
</data>
+12
View File
@@ -441,6 +441,18 @@
<data name="Unit" xml:space="preserve">
<value>Jednostka</value>
</data>
<data name="PulsesKilogram" xml:space="preserve">
<value>imp./kilogram</value>
</data>
<data name="Tooltip_E_rel_mass" xml:space="preserve">
<value />
</data>
<data name="Tooltip_Vol_Mt_mass" xml:space="preserve">
<value />
</data>
<data name="Tooltip_Vol_rm_mass" xml:space="preserve">
<value />
</data>
<data name="PulsesUnit" xml:space="preserve">
<value />
</data>
+12
View File
@@ -852,6 +852,18 @@
<data name="Merge" xml:space="preserve">
<value>Merge</value>
</data>
<data name="PulsesKilogram" xml:space="preserve">
<value>Pulses/kg</value>
</data>
<data name="Tooltip_E_rel_mass" xml:space="preserve">
<value>Relative error of a meter</value>
</data>
<data name="Tooltip_Vol_Mt_mass" xml:space="preserve">
<value>Mass measured by the tested meter</value>
</data>
<data name="Tooltip_Vol_rm_mass" xml:space="preserve">
<value>Reference mass for tested meter</value>
</data>
<data name="PulsesUnit" xml:space="preserve">
<value>Pulses/Unit</value>
</data>
+12
View File
@@ -438,6 +438,18 @@
<data name="Yes" xml:space="preserve">
<value>Да</value>
</data>
<data name="PulsesKilogram" xml:space="preserve">
<value />
</data>
<data name="Tooltip_E_rel_mass" xml:space="preserve">
<value />
</data>
<data name="Tooltip_Vol_Mt_mass" xml:space="preserve">
<value />
</data>
<data name="Tooltip_Vol_rm_mass" xml:space="preserve">
<value />
</data>
<data name="PulsesUnit" xml:space="preserve">
<value />
</data>
Binary file not shown.

Before

Width:  |  Height:  |  Size: 64 KiB

+5 -4
View File
@@ -19,7 +19,7 @@
<DebugType>full</DebugType>
<Optimize>false</Optimize>
<OutputPath>bin\Debug\</OutputPath>
<DefineConstants>TRACE;DEBUG;IPERL;</DefineConstants>
<DefineConstants>TRACE;DEBUG;HEAT_METERS;IPERL</DefineConstants>
<ErrorReport>prompt</ErrorReport>
<WarningLevel>4</WarningLevel>
<PlatformTarget>AnyCPU</PlatformTarget>
@@ -29,7 +29,7 @@
<DebugType>pdbonly</DebugType>
<Optimize>true</Optimize>
<OutputPath>bin\Release\</OutputPath>
<DefineConstants>TRACE;IPERL;</DefineConstants>
<DefineConstants>TRACE;IPERL; HEAT_METERS;IPEL</DefineConstants>
<ErrorReport>prompt</ErrorReport>
<WarningLevel>4</WarningLevel>
<Prefer32Bit>false</Prefer32Bit>
@@ -239,7 +239,9 @@
<EmbeddedResource Include="Resources\Strings.de.resx">
<SubType>Designer</SubType>
</EmbeddedResource>
<EmbeddedResource Include="Resources\Strings.fr.resx" />
<EmbeddedResource Include="Resources\Strings.fr.resx">
<SubType>Designer</SubType>
</EmbeddedResource>
<EmbeddedResource Include="Resources\Strings.it.resx" />
<EmbeddedResource Include="Resources\Strings.pl.resx">
<SubType>Designer</SubType>
@@ -256,7 +258,6 @@
<ItemGroup>
<Content Include="Entities\PurchaseEntities\createPurchaseTables.sql" />
<Content Include="Entities\PurchaseEntities\ImportPurchaseOrderTestData.sql" />
<None Include="Resources\TBF_icon.ico" />
</ItemGroup>
<Import Project="$(MSBuildToolsPath)\Microsoft.CSharp.targets" />
<!-- To modify your build process, add your task inside one of the targets below and uncomment it.
File diff suppressed because it is too large Load Diff
+1 -1
View File
@@ -101,7 +101,7 @@
this.Controls.Add(this.exitButton);
this.Name = "NoBenchOrDatabaseDlg";
this.StartPosition = System.Windows.Forms.FormStartPosition.CenterScreen;
this.Text = "Error";
this.Text = "Error_mass";
this.Load += new System.EventHandler(this.NoDatabaseMsgDlg_Load);
((System.ComponentModel.ISupportInitialize)(this.pictureBox1)).EndInit();
this.ResumeLayout(false);
+6 -6
View File
@@ -187,16 +187,16 @@ namespace ResultsBrowser.Resources {
}
/// <summary>
/// Looks up a localized string similar to Error.
/// Looks up a localized string similar to Error_mass.
/// </summary>
internal static string Error {
get {
return ResourceManager.GetString("Error", resourceCulture);
return ResourceManager.GetString("Error_mass", resourceCulture);
}
}
/// <summary>
/// Looks up a localized string similar to Error displaying results.
/// Looks up a localized string similar to Error_mass displaying results.
/// </summary>
internal static string Error_displaying_results {
get {
@@ -205,7 +205,7 @@ namespace ResultsBrowser.Resources {
}
/// <summary>
/// Looks up a localized string similar to Error exporting results.
/// Looks up a localized string similar to Error_mass exporting results.
/// </summary>
internal static string Error_exporting_results {
get {
@@ -214,7 +214,7 @@ namespace ResultsBrowser.Resources {
}
/// <summary>
/// Looks up a localized string similar to Error saving file.
/// Looks up a localized string similar to Error_mass saving file.
/// </summary>
internal static string Error_saving_file {
get {
@@ -223,7 +223,7 @@ namespace ResultsBrowser.Resources {
}
/// <summary>
/// Looks up a localized string similar to Error serializing filters.
/// Looks up a localized string similar to Error_mass serializing filters.
/// </summary>
internal static string Error_serializing_filters {
get {
+1 -1
View File
@@ -21,7 +21,7 @@
<DebugType>full</DebugType>
<Optimize>false</Optimize>
<OutputPath>bin\Debug\</OutputPath>
<DefineConstants>TRACE;DEBUG;MANAGED;ORACLE_DB;TURA_IPERL</DefineConstants>
<DefineConstants>TRACE;DEBUG;MANAGED;ORACLE_DB;TURA_IPERL;HEAT_METERS</DefineConstants>
<ErrorReport>prompt</ErrorReport>
<WarningLevel>4</WarningLevel>
<AllowUnsafeBlocks>false</AllowUnsafeBlocks>
+1 -42
View File
@@ -12,7 +12,6 @@ namespace SchematicDrawing
public readonly Sz Sz; /// see enum SchematicDrawing.Sz
public readonly int SzX; /// Size X in SchematicDrawing.Const.Step pixels
public readonly int SzY; /// Size Y in SchematicDrawing.Const.Step pixels
public readonly int OffsX; /// Offset of left/top coordinate of the bitmap when rendering
public readonly int OffsY; /// Offset of left/top coordinate of the bitmap when rendering
public readonly int Wid; /// Width of the bitmap when rendering, original bitmap is resized to this size
@@ -378,40 +377,6 @@ namespace SchematicDrawing
Properties.Resources.Valve_XL_closed,
Properties.Resources.Valve_XL_vacuum,
Properties.Resources.Valve_XL_open_dry);
/// ValveSw
Shapes[DrShIx(Shape.ValveSw, Sz.S)] = new DrawingShape(Shape.ValveSw, Sz.S, 2, 2,
new Node[] { new Node(0, 1, Orient.L), new Node(2, 1, Orient.R) },
new Edge[] { new Edge(0, 1, 20, RouteCouple.OpenWhen1), new Edge(1, 0, 20, RouteCouple.OpenWhen1) },
0, 0, 20, 20,
Properties.Resources.ValveSw_S_open,
Properties.Resources.ValveSw_S_closed,
Properties.Resources.ValveSw_S_vacuum,
Properties.Resources.ValveSw_S_open_dry);
Shapes[DrShIx(Shape.ValveSw, Sz.M)] = new DrawingShape(Shape.ValveSw, Sz.M, 3, 4,
new Node[] { new Node(0, 2, Orient.L), new Node(3, 2, Orient.R) },
new Edge[] { new Edge(0, 1, 30, RouteCouple.OpenWhen1), new Edge(1, 0, 30, RouteCouple.OpenWhen1) },
0, 5, 30, 30,
Properties.Resources.ValveSw_M_open,
Properties.Resources.ValveSw_M_closed,
Properties.Resources.ValveSw_M_vacuum,
Properties.Resources.ValveSw_M_open_dry);
Shapes[DrShIx(Shape.ValveSw, Sz.L)] = new DrawingShape(Shape.ValveSw, Sz.L, 4, 4,
new Node[] { new Node(0, 2, Orient.L), new Node(4, 2, Orient.R) },
new Edge[] { new Edge(0, 1, 40, RouteCouple.OpenWhen1), new Edge(1, 0, 40, RouteCouple.OpenWhen1) },
0, 0, 40, 40,
Properties.Resources.ValveSw_L_open,
Properties.Resources.ValveSw_L_closed,
Properties.Resources.ValveSw_L_vacuum,
Properties.Resources.ValveSw_L_open_dry);
Shapes[DrShIx(Shape.ValveSw, Sz.XL)] = new DrawingShape(Shape.ValveSw, Sz.XL, 5, 6,
new Node[] { new Node(0, 3, Orient.L), new Node(5, 3, Orient.R) },
new Edge[] { new Edge(0, 1, 50, RouteCouple.OpenWhen1), new Edge(1, 0, 50, RouteCouple.OpenWhen1) },
0, 5, 50, 50,
Properties.Resources.ValveSw_XL_open,
Properties.Resources.ValveSw_XL_closed,
Properties.Resources.ValveSw_XL_vacuum,
Properties.Resources.ValveSw_XL_open_dry);
/// Diverter
Shapes[DrShIx(Shape.Div, Sz.S)] = new DrawingShape(Shape.Div, Sz.S, 2, 2,
new Node[] { new Node(2, 0, Orient.Up), new Node(1, 2, Orient.Dn), new Node(3, 2, Orient.Dn) },
@@ -557,18 +522,12 @@ namespace SchematicDrawing
Shapes[DrShIx(Shape.Scale, Sz.L)] = new DrawingShape(Shape.Scale, Sz.L, 12, 11, new Node[] { new Node(6, 11, Orient.Dn) }, null, 0, 0, 120, 110, Properties.Resources.Scale_L);
Shapes[DrShIx(Shape.Scale, Sz.XL)] = new DrawingShape(Shape.Scale, Sz.XL, 16, 13, new Node[] { new Node(8, 13, Orient.Dn) }, null, 0, 0, 160, 130, Properties.Resources.Scale_XL);
/// Tank uni
/// Tank
Shapes[DrShIx(Shape.Tank, Sz.S)] = new DrawingShape(Shape.Tank, Sz.S, 10, 8, new Node[] { new Node(0, 6, Orient.L) }, null, 0, 0, 100, 80, Properties.Resources.Tank_S);
Shapes[DrShIx(Shape.Tank, Sz.M)] = new DrawingShape(Shape.Tank, Sz.M, 12, 9, new Node[] { new Node(0, 7, Orient.L) }, null, 0, 0, 120, 90, Properties.Resources.Tank_M);
Shapes[DrShIx(Shape.Tank, Sz.L)] = new DrawingShape(Shape.Tank, Sz.L, 15, 11, new Node[] { new Node(0, 9, Orient.L) }, null, 0, 0, 150, 110, Properties.Resources.Tank_L);
Shapes[DrShIx(Shape.Tank, Sz.XL)] = new DrawingShape(Shape.Tank, Sz.XL, 20, 13, new Node[] { new Node(0, 11, Orient.L) }, null, 0, 0, 200, 130, Properties.Resources.Tank_XL);
/// Tank hot
Shapes[DrShIx(Shape.TankHot, Sz.S)] = new DrawingShape(Shape.TankHot, Sz.S, 10, 8, new Node[] { new Node(0, 6, Orient.L) }, null, 0, 0, 100, 80, Properties.Resources.Tank_S_hot);
Shapes[DrShIx(Shape.TankHot, Sz.M)] = new DrawingShape(Shape.TankHot, Sz.M, 12, 9, new Node[] { new Node(0, 7, Orient.L) }, null, 0, 0, 120, 90, Properties.Resources.Tank_M_hot);
Shapes[DrShIx(Shape.TankHot, Sz.L)] = new DrawingShape(Shape.TankHot, Sz.L, 15, 11, new Node[] { new Node(0, 9, Orient.L) }, null, 0, 0, 150, 110, Properties.Resources.Tank_L_hot);
Shapes[DrShIx(Shape.TankHot, Sz.XL)] = new DrawingShape(Shape.TankHot, Sz.XL, 20, 13, new Node[] { new Node(0, 11, Orient.L) }, null, 0, 0, 200, 130, Properties.Resources.Tank_XL_hot);
/// Junction
Shapes[DrShIx(Shape.Junction, Sz.None)] = new DrawingShape(Shape.Junction, Sz.None, 0, 0, new Node[] { new Node(0, 0, Orient.R) });
Shapes[DrShIx(Shape.Junction, Sz.S)] = new DrawingShape(Shape.Junction, Sz.S, 2, 2,
-2
View File
@@ -45,13 +45,11 @@ namespace SchematicDrawing
Scale,
Sink,
Tank,
TankHot,
Tee,
TempM,
UniCB,
Vacuum,
Valve,
ValveSw,
WaterM,
ElectricM,
@@ -13,5 +13,6 @@ namespace SchematicDrawing
Common.Unit MsrdUnit { get; }
double MsrdValLimLo { get; }
double MsrdValLimHi { get; }
bool IsOffline { get; set; }
}
}
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