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Author SHA1 Message Date
Milan Hanajik 827a9f7c58 Changes for Xylem Nanjing, ver. 3.1.1676 2021-06-18 15:35:46 +02:00
Milan Hanajik f1ef16e1a3 TBF.UI.Process.ProcessTabPageCtrl introduced, etc. 2021-05-26 23:42:16 +02:00
Milan Hanajik 7613613fad SerialStream.S640Stream in progress. 2021-05-25 22:13:11 +02:00
Milan Hanajik 9d01d565df DataEntry.Standard6 bug fix, ver. 3.1.1656 2021-05-24 16:39:01 +02:00
Milan Hanajik 9f5c89db06 SchematicDrawing background color = Color.FromArgb(240,240,240), ver. 3.1.1655 2021-05-23 21:21:47 +02:00
Milan Hanajik 0568966ba6 StandingStartMassCollectionSeq : Start mass measurement and start state data entry done at the same time, ver. 3.1.1654 2021-05-21 17:49:26 +02:00
Milan Hanajik 62d725d879 Standing start/stop fixed, ver. 3.1.1653 2021-05-21 17:13:45 +02:00
Milan Hanajik 81151935bc iPerlHead : TimeFromSamples( ), VolumeFromSamples( ), StartEndFilterSamplesCount = 20 2021-05-19 16:16:53 +02:00
Milan Hanajik bec7287531 TBF.UI.Procedures.ProcedureDlg : 5-th file writer. 2021-05-17 11:55:33 +02:00
Milan Hanajik db3a40d817 UI.Settings.UpgradeSelectionDlg : Upgrade pipes, ver. 3.1.1646 2021-05-14 13:41:10 +02:00
Milan Hanajik 0a1966d5f9 Pipes use Id instead if Name to identify end-components. 2021-05-14 13:39:45 +02:00
Milan Hanajik cfe55e430a Pump start logging, ver. 3.1.1645 2021-05-11 14:28:27 +02:00
Milan Hanajik 2642e3cc46 ControlBoard.Uni : (1) 2s old serial data removed from the input buffer, (2) improved serial data logging. 2021-05-11 14:21:04 +02:00
Milan Hanajik 4f1e7507f9 Modbus.PumpFM.DanfossVLT.Pump.Initialize( ) modification : modbus.ComponentNames[pumpCfg.ModbusAddress] = Name; 2021-05-04 15:15:35 +02:00
Milan Hanajik 3a2ab6c286 Combination of data from the current route, from digital outputs and from UI modified, ver. 3.1.1642 2021-05-04 14:10:25 +02:00
Milan Hanajik fc95847377 ControlBoard.Uni initialzation fixed : diverters count taken into account, ver. 3.1.1641 2021-05-04 10:32:26 +02:00
Milan Hanajik c5769bed0c 10.42.128.16 --> 10.42.128.24 2021-04-30 12:24:29 +02:00
Milan Hanajik 24413482bc 'Scale', 'Diverter' and 'RegValve' results items added, ver. 3.1.1640 2021-04-30 08:52:57 +02:00
Milan Hanajik 65b5164f0b Changes in TBF.Utils.GetRegulVallvesPositions( ) and SequenceBase (see bug fix in 2.26.1636). 2021-04-28 11:00:28 +02:00
Milan Hanajik b98af02b55 Changes in binding between KPackE.Radio and KPackE.RegisterReader (Register(), Unregister()). 2021-04-26 11:56:21 +02:00
Milan Hanajik 4e32d037ea New style Dummy.FlowMeter.FlowMeterCfg with format and unit. 2021-04-26 11:56:21 +02:00
Milan Hanajik 5ea9c51f77 Uni.FlowMeter.FlowMeterCfg.MsrdValLimLo/Hi is not serialized, can be accessed from the component. 2021-04-26 11:56:21 +02:00
Milan Hanajik 08c0a61110 Bug fixes 2021-04-26 11:56:21 +02:00
Milan Hanajik fdb1e112dc (1) Dummy.Flowmeter displays flow measured by a scale, (2) OoR values are orange. 2021-04-26 11:56:01 +02:00
Milan Hanajik 870b49d8ad Output.SensusTestInfo : (1) S620_Kiwa, (2) CreateFromProcedure() fixed (as in 2.26.1622) 2021-04-26 06:50:53 +02:00
Milan Hanajik 17c77758c6 Correct reading of WM pulses (windowing effect, only lower 16 bits of a counter value are available). 2021-04-19 14:48:03 +02:00
Milan Hanajik 3f0124825d WMsCount is 20, the same count as supported by UniCB. 2021-04-19 14:07:18 +02:00
Milan Hanajik 5507a65170 3s between test start and route change, ver. 3.1.1628 2021-04-16 17:17:25 +02:00
Milan Hanajik b2099ad68c Standing start/stop method fixed, ver. 3.1.1627 2021-04-16 16:47:28 +02:00
Milan Hanajik 9d1698b462 FixedStartMassCollection --> StandingStartMassCollection 2021-04-16 14:16:07 +02:00
Milan Hanajik 847956f708 FixedStartMassCollection modified, ControlBoard.Elde repmoved, ver. 3.1.1624 2021-04-16 14:06:47 +02:00
Milan Hanajik 95d5d16c83 FixedStartMassCollelction in progress. 2021-04-16 13:05:50 +02:00
Milan Hanajik b36a76f413 More ReadMassOp / Mass / etc. 2021-04-15 16:49:28 +02:00
Milan Hanajik 1f05cc420c ReadMassOp removed, ProcessData.Mass removed, TestMethods.FixedStartMassCollection, ver. 3.1.1620 2021-04-15 13:15:18 +02:00
Milan Hanajik eeaf1e1682 DummySeq modified, no message, temperature, pressure measured once, start/end time set, ver. 3.1.1618 2021-04-15 13:07:30 +02:00
Milan Hanajik 1905d3644e Bug fix in LeakTestSeq. 2021-04-14 11:59:44 +02:00
Milan Hanajik 39197ddd71 Bug fix in CalculateDivTransitionTime( ), div. transition time stored in results, DiverterTestSeq calculates average transition time. 2021-04-13 23:34:06 +02:00
Milan Hanajik 8b8198e298 (1) TestMethods.Dummy.CheckDeviceCaps( ), (2) Trivial simulation mode in some test methods, ver. 3.1.1614 2021-04-13 23:34:06 +02:00
Milan Hanajik b57ffac9bc Use of Selector in Wizard in FlowSelection dialog. 2021-04-13 15:35:38 +02:00
Milan Hanajik 1dc35e6135 Paths : Selector : UI changes. 2021-04-13 15:35:38 +02:00
Milan Hanajik 5aec3c1ecc Bug fix : Results.BatchResults.NewFromProcedure( ) uses GetTestInstances( ), ver. 3.1.1610 2021-04-13 15:35:24 +02:00
Milan Hanajik 3603d31add SensusTestInfo changes as in v. 2.26.1608 (Australia 169 MHz). 2021-04-13 10:42:02 +02:00
Milan Hanajik be326dae5f MergeResultsDBs console application added to solution. 2021-04-12 13:09:28 +02:00
Milan Hanajik ce3328fbf6 Results.Entities bug fixes and copy constructors. 2021-04-12 13:09:28 +02:00
Milan Hanajik 9724e8779a Modbus logging with child component names, ver. 3.1.1606 2021-04-09 16:29:24 +02:00
Milan Hanajik f33bc4f167 Modbus : Multiple modules use common time scheduling (one Thread.Sleep in RunDeviceAfter), ver. 3.1.1605 2021-04-09 13:37:46 +02:00
Milan Hanajik d84588650f ControlBoard.Papouch modified for 4 QuidoRS boards, ver. 3.1.1604 2021-04-09 11:26:52 +02:00
Milan Hanajik 02747a975a Code cleanup. 2021-04-09 11:26:11 +02:00
Milan Hanajik 5d78f7428b Minor improvements, ver. 3.1.1603 2021-04-08 16:12:47 +02:00
Milan Hanajik d5544d3041 MainSeqUtils : Prevent crash when draining tanks at the end, ver. 3.1.1602 2021-04-08 14:30:25 +02:00
Milan Hanajik d02e06cb9a UI.Procedures.ProceduresCtrl can display procedure properties of Sensus-Oracle-DB component. 2021-04-08 13:52:35 +02:00
Milan Hanajik 988bcd6387 BuiltIn.Valve initialization changed. 2021-04-08 10:05:02 +02:00
Milan Hanajik 56294bbffc ToString( ) methods of all components are equal, start with ClassName. 2021-04-07 22:18:53 +02:00
Milan Hanajik 3a8f9ea2e0 MeterTestRslt.WriteBinary( ) hot fix. 2021-04-07 12:06:40 +02:00
Milan Hanajik 6d9a7e2385 Bug fix in StateMachine.InitializeDevices( ), Modbus.RegTelegramsPerSecond = 3, MaxTelegramsPerSecond = 5, ver. 3.1.1601 2021-04-06 10:24:42 +02:00
Milan Hanajik dd24c8b073 TestRslt.Buoyancy ---> TestRslt.MassOfEvapWater, ver. 3.1.1600 2021-04-05 14:12:42 +02:00
Milan Hanajik 4e12942f5f Users : SMART_CARD_READER_SUPORT define to enable a smart card reader support in LoginDlg. 2021-04-03 16:58:08 +02:00
Milan Hanajik a81858ee9f Changes for iPERL, builds OK when TURA_IPERL;IPERL;ORACLE_DB are defined in Config, Results and TBF projects. 2021-04-03 16:38:37 +02:00
Milan Hanajik 3b211b8644 MainWnd : ProcessTabPageCtrl24 used always (TODO: Rewrite ProcessTabPageCtrl). 2021-04-03 16:16:53 +02:00
Milan Hanajik 0732e8360f #if STABLE_MASS_EXTRAS removed, it is enabled always now. 2021-04-03 16:15:44 +02:00
Milan Hanajik c53cb8ace0 Initialization( ) changed, is abstract in ComponentBase, builds OK. 2021-04-03 09:39:17 +02:00
Milan Hanajik a58fe1f997 Initialization of 30 components changed, done in Initialize( ). 2021-04-03 00:54:27 +02:00
Milan Hanajik cb1a66381f MetrologyDlg tabs style changes. 2021-04-03 00:54:27 +02:00
Milan Hanajik 535038bce1 Style changes to prevent warnings. 2021-04-03 00:54:18 +02:00
Milan Hanajik e651244601 PlatformTarget set to x86 in some projects to avoid warnings, enable debugging. 2021-04-02 23:38:27 +02:00
Milan Hanajik b63408cc68 UI.Shared.EmergencyStopForm removed. 2021-04-02 23:35:26 +02:00
Milan Hanajik bb3a6ff4f3 BuiltIn components clean-up. 2021-04-02 20:27:02 +02:00
Milan Hanajik ce0b8af4a0 DataContainer components clean-up. 2021-04-02 20:25:31 +02:00
Milan Hanajik 1bc3e5d6eb IDevice.Initialize( ) ---> IComponent.Initialize( ). 2021-04-02 18:13:00 +02:00
Milan Hanajik 08c2d3b0d8 EmergencyStopModelessDlg removed. 2021-04-02 18:11:53 +02:00
Milan Hanajik 4fda48f7e7 Components initialization clean-up. 2021-04-02 17:28:15 +02:00
Milan Hanajik dd08ca770d ResetStaticProperties( ) eliminated from ComponentBase, IComponentFactory and factories. 2021-04-02 16:10:38 +02:00
Milan Hanajik c7e87c95da CLP1611, TestMethods.Counter : ResetStaticProperties( ) eliminated, code from constructor moved to Initialize( ). 2021-04-02 16:08:24 +02:00
Milan Hanajik 79e80e8b6d TankWithLevelMsrmnt.Tank : shared static properties and ResetstaticProperties( ) eliminated. 2021-04-02 15:49:02 +02:00
Milan Hanajik 689841cd2d MettlerToledo.Multi removed from the project. 2021-04-02 15:16:45 +02:00
Milan Hanajik 0cc21f40af MettlerToledo.Stabdard.Balance clean-up, shared static properties eliminated. 2021-04-02 15:12:29 +02:00
Milan Hanajik e4da4929e4 IScaleOrTank.ScaleNr eliminated. 2021-04-02 15:12:29 +02:00
Milan Hanajik 8a846a774f ReadMassesOp eliminated. 2021-04-02 15:12:29 +02:00
Milan Hanajik 51aa0f4e43 Ambient clean-up. 2021-04-02 15:12:22 +02:00
Milan Hanajik 4e9d1c8281 Modbus : Improved scheduling of polling, ticketNo is between 0 .. devsCount-1, DebugMode.Simulation is more complete. 2021-04-02 13:13:16 +02:00
Milan Hanajik 5e790e5d07 Modbus : Fixed sending output messages from the queue. 2021-04-01 15:24:50 +02:00
Milan Hanajik 931a4bcc00 UniCB : Prevent too early sending of data, ver. 3.1.1619 2021-04-01 15:14:15 +02:00
Milan Hanajik d6ae50f4dd Uni : Buffering of the last combined action arguments, ver. 3.1.1618 2021-03-31 16:23:12 +02:00
Milan Hanajik ef004ce92e Manual control of diverters by mouse clicks on a schematic drawing. 2021-03-30 12:49:08 +02:00
Milan Hanajik df6741cf1a iPerlCommmunication : New Q2 correction for Australia. 2021-03-30 12:03:31 +02:00
Milan Hanajik f083fe568e FlyingStartMassCollectionSeq and FlyingStartMassCollProlongedSeq cleanup. 2021-03-30 00:03:35 +02:00
Milan Hanajik a8e808a510 Imperial units, ... 2021-03-29 23:31:21 +02:00
Milan Hanajik 27972aff64 Output.FileWriters.Enhanced with formatted WM subtitles 2021-03-29 23:17:49 +02:00
Milan Hanajik 0468d9abf5 WMPosition saved to SummaryResults, AllResults, column CQ ... 2021-03-29 22:51:56 +02:00
Milan Hanajik bebb5e5909 Refactorization. 2021-03-29 22:42:04 +02:00
Milan Hanajik 71c4f8f32f Refactorization : RegulValve --> RegValve on many places. 2021-03-29 22:34:15 +02:00
Milan Hanajik 1a8ef4f1be (1) UI.Procedures.ProcedureParamsMixedCtrl, (2) Modbus.Novus added, (3) cleanup 2021-03-29 18:25:51 +02:00
Milan Hanajik 6be8af6d63 TBF.Rig.Elde.FlowMeter... components removed 2021-03-29 16:24:11 +02:00
Milan Hanajik 68ca5c4901 Uni.FlowMetersInParallel added, ver. 3.1.1617 2021-03-29 16:23:21 +02:00
Milan Hanajik 79e1fff45e Modbus : Code from StopDevice2( ) moved to StopDevice( ). 2021-03-29 16:17:34 +02:00
Milan Hanajik eb142244e4 SchematicDrawing : Diverter painted correctly, closed-wet images added. 2021-03-29 11:26:59 +02:00
Milan Hanajik baf7f84343 (1) Diverter start/stop transition graph plotted, (2) Diverter ToTank / ToSink buttons, ver. 3.1.1616 2021-03-28 08:38:30 +02:00
Milan Hanajik 0fc8bb4ea0 Route logging changed. 2021-03-24 21:39:37 +01:00
Milan Hanajik 25856496d8 Various.CoverTest component created, few Elde components removed, ver. 3.1.1609 2021-03-24 13:48:05 +01:00
Milan Hanajik ebf7c97bc6 Event.BalanceDone --> Event.ScaleDone, EmergencyStop is route bit #81, ver. 3.1.1608 2021-03-24 09:32:42 +01:00
Milan Hanajik 9bfa70d5c1 Diverter test completed, ver. 3.1.1607 2021-03-23 17:18:49 +01:00
Milan Hanajik 80beb9d54b ShcematicDrawingCtrl : Order of painting changes so that mass is not hidden under water. 2021-03-23 16:39:24 +01:00
Milan Hanajik aff25e307d Pump tandem, ver. 3.1.1606 2021-03-23 16:37:47 +01:00
Milan Hanajik ce6896b584 Waiting before stable mass measurement joined with the mass measurement into one operation. 2021-03-23 13:50:32 +01:00
Milan Hanajik 9b1a427369 Prolonged method evaluation fixed, ver. 3.1.1605 2021-03-23 11:08:33 +01:00
Milan Hanajik 78f9b10255 cBrd.StopPreviousOp( ) ---> cBrd.Stop( ) in FlyingStart.... test sequences, etc., ver. 3.1.1604 2021-03-23 09:52:03 +01:00
Milan Hanajik 061ab99486 Prolonged method fixed, ver. 3.1.1603 2021-03-23 08:50:40 +01:00
Milan Hanajik ef96c06328 Prolonged method fixed, ver. 3.1.1602 2021-03-22 14:02:47 +01:00
Milan Hanajik 8f5291332f Uni.FlyingStartStopTestOp merged with Uni.FlyingStartStopTestWithDivOp, IAdvancedControlBoard. ver. 3.1.1601 2021-03-22 09:08:00 +01:00
Milan Hanajik 747195fc10 UniCB cleanup, simulation improved, locking. 2021-03-20 07:20:36 +01:00
Milan Hanajik 0e8bbec3bc (1) Prolonged method fixed, (2) UniCB simulation mode improved, ver. 3.1.1600 2021-03-20 02:38:41 +01:00
Milan Hanajik 141b9a7b4c (1) DIverter threshold used, (2) UniCB state display can be enabled / disabled, ver. 3.1.1598 2021-03-19 16:22:50 +01:00
Milan Hanajik 595f0c514e In progress 2021-03-19 09:35:41 +01:00
Milan Hanajik e1dfe758cd UniControlBoardTest project removed from the solution. 2021-03-19 07:50:10 +01:00
Milan Hanajik 6eaa9dad90 UniCB : Indication of serial connection, ver. 3.1.1598 2021-03-18 18:22:25 +01:00
Milan Hanajik be9d912489 Route handling rewritten, the order of StopDevice( ) calls reversed. 2021-03-18 16:17:11 +01:00
Milan Hanajik d7e65ff04b Modbus modified, UniCB Init. modified, RunDeviceAfter() called in reversed order, ver. 3.1.1597 2021-03-18 16:16:49 +01:00
Milan Hanajik ff70a11cad RegisterReader simplified, ReadRegisterOp( ) removed from IRegReader, ReadMoreRegistersOp removed. 2021-03-18 03:56:15 +01:00
Milan Hanajik e201c0ea66 PulsesFromUniCB.RegisterReader modified, ReadRegisterOp( ) returns null, ver. 3.1.1643 2021-03-17 17:15:43 +01:00
Milan Hanajik 1c093caff3 More logging: water meter pulses and test time, ver. 3.1.1642 2021-03-17 16:46:57 +01:00
Milan Hanajik 48484e1dbb No ChangeRoute action after 15 s being idle, ver. 3.1.1641 2021-03-17 13:19:35 +01:00
Milan Hanajik 068c51157e uniCB.FlyingStartStopTest...Op.cs test start fixed, ver. 3.1.1640 2021-03-16 15:09:41 +01:00
Milan Hanajik e8e1be644b UniCB.RRoute and SyncRoute( ) implemented, ver. 3.1.1639 2021-03-16 13:05:04 +01:00
Milan Hanajik d971831ab8 Groch.TempMeter impelented, ver. 3.1.1638 2021-03-16 12:14:51 +01:00
Milan Hanajik a432bbb5c6 UniCB.RefPulses implemented and displayed, ver. 3.1.1636 2021-03-16 06:20:09 +01:00
Milan Hanajik 95a0cebcf8 REVERTED commit : BenchInfo : Exception when 2nd instance created, ver. 3.1.1635 2021-03-15 16:09:55 +01:00
Milan Hanajik d22158404d Prolonged test support in Action, OutputMessage, etc., ver. 3.1.1634 2021-03-15 15:52:49 +01:00
Milan Hanajik 4770f3e393 Action.SetFlow is a synchro method, IsSyncMethod=true, ver. 3.1.1633 2021-03-15 14:21:42 +01:00
Milan Hanajik d287902f62 BenchInfo : Exception when 2nd instance created, ver. 3.1.1632 2021-03-15 12:41:28 +01:00
Milan Hanajik f74fff9b51 Uni : MassPulsesCount is equal to TotalPulsesCount for all methods except Prolonged method, ver. 3.1.1631 2021-03-15 11:40:33 +01:00
Milan Hanajik bdefc0b8fa Modbus.TempMeter.Groch in progress 2021-03-14 21:31:26 +01:00
Milan Hanajik afa213f8d5 .AddOperation(cBrd.StartTestOp, ... temporarily disabled in 12 sequences. 2021-03-14 21:29:58 +01:00
Milan Hanajik 7af4e9465c Uni.XyzStartStopTest[WithDiv]Op, etc., AdjustmentSeq and all FlyingStartXyzSeq completed, ver. 3.1.1630 2021-03-14 21:28:41 +01:00
Milan Hanajik 6e1b02ebd5 Cfg.ToString(1) --> Cfg.ToString(-1) in 89 components 2021-03-13 11:04:38 +01:00
Milan Hanajik 93d5398f10 (1) MettlerToledo.Standard simul.mode fixed, (2) Format usage in DoubleBox.ToString() 2021-03-13 11:03:58 +01:00
Milan Hanajik baae5655d4 Uni.RegValveAnalog and Uni.RegValveTandem added, several Elde components removed. 2021-03-12 22:59:11 +01:00
Milan Hanajik b1862e2f02 Support for Statistics off-line mode: change LocalSettings.cs line 244. 2021-03-12 10:00:41 +01:00
Milan Hanajik 3e7ad6c06c StartMeasurementOp, ver. 3.1.1628 2021-03-11 17:57:19 +01:00
Milan Hanajik 768fb69653 Uni.RegValve function simplified, IFlowMeter includes functions from IIDrawingItCmpntWithMeasuredVal, ver. 3.1.1627 2021-03-11 14:55:21 +01:00
Milan Hanajik 21183ca801 Reg. valve stop param, ver. 3.1.1626 2021-03-11 10:46:15 +01:00
Milan Hanajik 13b3aca95f Stop command modified, ver. 3.1.1625 2021-03-10 17:14:19 +01:00
Milan Hanajik a21766b944 Action.IsFromUI, MeasureFlow works OK, SetFlow in progress, ver. 3.1.1624 2021-03-10 16:51:52 +01:00
Milan Hanajik 6f701adb9e SerialStream simulation : Reads characters from a file instead of a serial port. 2021-03-08 18:06:54 +01:00
Milan Hanajik e4c6bf5aa6 DataEntry.iPerl : No CycleEndForm, does not implement IHasCycleEndForm. 2021-03-08 13:10:22 +01:00
Milan Hanajik a1edfcc71a UniCB : Frequency displayed, ver. 3.1.1609 2021-03-05 16:50:18 +01:00
Milan Hanajik e2a8d66e48 UniCB : Flow measurement start fixed, ver. 3.1.1608 2021-03-05 16:12:33 +01:00
Milan Hanajik 6cf3bd6160 Refactorization : BenchControl -> Rig 2021-03-05 16:12:24 +01:00
Milan Hanajik 84c8ec26b6 Uni.FlowMeter requests a measurement after a mose-click, ver. 3.1.1607 2021-03-05 13:22:54 +01:00
Milan Hanajik d27c1b89ad 1. MsrmntAvailableFlags implemented, 2. more UniCB Actions. 2021-03-05 13:22:22 +01:00
Milan Hanajik f87cbe9e54 Cleanup : TBF.Tools removed 2021-03-05 12:35:33 +01:00
Milan Hanajik 2a96af3503 Bug fixes : StartChangeHandler()-s are not called twice, ver. 3.1.1606 2021-03-05 11:47:04 +01:00
Milan Hanajik 1e5e0508e4 1. Route, Action bug fixes 2. More logging 2021-03-05 11:46:50 +01:00
Milan Hanajik 1baba9ee6d Pump power : float -> double 2021-03-05 08:50:06 +01:00
Milan Hanajik 724872eb43 Uni.RegValve SetpointVal, Controlboard.Uni.Action logging, ver. 3.1.1604 2021-03-04 14:11:43 +01:00
Milan Hanajik 69fde570ce Refactorization : IRegValve.position is double, Uni.RegValve.adcChannel properly initialized, ver. 3.1.1603 2021-03-04 13:16:21 +01:00
Milan Hanajik 9495b9f3a3 UniCB and Uni.RegValve functionality, ver. 3.1.1602 2021-03-04 11:28:39 +01:00
Milan Hanajik cdca702738 Uni.CBoard -> Uni.UniCB, 'config', actions, non-conflicting fetching and communication implemented, ver. 3.1.1601 2021-03-04 07:39:31 +01:00
Milan Hanajik f5786ef93d UniCB : Valve control (route) 2021-03-03 08:18:11 +01:00
Milan Hanajik 1c27f0df4c UniCB AltString with usefull info, ver. 3.1.1599 2021-03-02 20:51:27 +01:00
Milan Hanajik 3f9973f8b8 (1) Results.Entities.Batch.ProtocolTitle removed, (2) Munich related stuff removed 2021-03-02 14:20:24 +01:00
Milan Hanajik be07d04f67 DrawingShape for diverter 2021-03-02 07:55:19 +01:00
Milan Hanajik c950cc231c ParamValues() retval IList->ICollection, GetControl() arg. is a list of components, ver. 3.1.1598 2021-03-02 01:10:04 +01:00
Milan Hanajik 8dc45484b0 Cleanup and comment 2021-03-01 21:33:54 +01:00
Milan Hanajik 35815fe78a UniCB DrShp, AltStrings, double Press, new Cfg style, Lbl,Setp,Msrd pos != 0, arrow keys, refactorization, ver. 3.1.1597 2021-03-01 15:22:37 +01:00
Milan Hanajik b5f8d06e5b Database cleanup, columns correctly renamed, DataContainer namespace, etc. 2021-02-24 17:42:50 +01:00
Milan Hanajik a9d6fa631c Various changes done when adding new components (parents, etc.) 2021-02-24 15:27:35 +01:00
Milan Hanajik 878e7be9fa ValveCategory.All removed, RegValve-s are never in ValveCategory.Bench. 2021-02-24 14:36:34 +01:00
Milan Hanajik 4cf4192ebb BenchControl.Uni.Diverter/FlowMeter/RegReader added, etc. (many changes and refactorization). 2021-02-24 14:15:10 +01:00
Milan Hanajik 5325d7f6ee Uni.GeneralData : Unused member variables deleted. 2021-02-23 11:35:28 +01:00
Milan Hanajik f54430ccf6 UniControlBoardTest uses TBF.BenchControl.ControlBoard.Uni component. 2021-02-22 18:06:14 +01:00
Milan Hanajik 71ae636410 ControlBoard.Uni component added. 2021-02-22 18:06:06 +01:00
Milan Hanajik 3732d3255f UniControlBoardTest project added, basic communication works OK. 2021-02-19 16:46:05 +01:00
Milan Hanajik 56a9984626 IControlBoard.SpecifyInvertedValves instead of InitializeComponent 2021-02-19 16:45:55 +01:00
Milan Hanajik 29d64c69eb InfoFlagsStr in Results as an item in WMeterRsltItemSpec. 2021-02-19 11:19:43 +01:00
Milan Hanajik 63a15fc1de Constructors of components : Logging level increased to WARN 2021-02-19 09:50:48 +01:00
Milan Hanajik d2f3a937ec Telegram class moved to Common project. 2021-02-18 13:38:30 +01:00
Milan Hanajik 8c15fe34ee DataEntry.Standard24.CycleBeginningForm : Auto s/n feature. 2021-02-17 10:56:51 +01:00
Milan Hanajik 57793ed382 DeviceTest shutdown bug fix, OptoTelegramRaw comment, ver. 3.1.1593 2021-02-17 10:56:31 +01:00
Milan Hanajik fea9b01922 MettlerToledo.Standard.BalanceDev/Old/NewDev clean-up, units (oz), 1st after draining, etc. 2021-02-16 11:40:14 +01:00
Milan Hanajik a33e4de467 BenchControlPanel : Four main buttons are disabled on TBF start. 2021-02-08 10:16:48 +01:00
Milan Hanajik 5a1d77dd87 Bug fix in MetrologyDlgFlowMeterTab, etc. when ranges are enabled 2021-02-08 10:09:02 +01:00
Milan Hanajik ea05871b19 SensusOracle.Database : (1) ProcedureParams modified, (2) SQL style changes 2021-01-28 13:55:00 +01:00
Milan Hanajik 229c87f920 RealDensity, AtTemperature, Buoyancy are stored in Results DB in Batch table. 2021-01-28 13:33:38 +01:00
Milan Hanajik dd8feaa963 Changes in MainSeq, Procedure, BenchControlPanel, TestProgressControls, etc. 2021-01-25 12:54:16 +01:00
Milan Hanajik 8507511776 (1) FlyingStartMassCollProlonged fixed, (2) Password of day. 2021-01-25 12:54:05 +01:00
Milan Hanajik 1e8d2975f0 PMaxTestSeq and LeakTestSeq.CheckDeviceCaps implemented, ver. 3.1.1578 2021-01-20 12:44:33 +01:00
Milan Hanajik 1fb76a2167 (1) PreviousResultsDlg with filters, (2) Procedure history can be inspected. 2021-01-19 09:28:05 +01:00
Milan Hanajik 34f8bb226f MainSeqUtils.CreateNewBatchResults( ) bug fix. 2021-01-14 09:51:24 +01:00
Milan Hanajik bc3fb0f8a0 Output.FileWriters.Enhanced with formatted WM subtitles 2021-01-14 09:51:24 +01:00
Milan Hanajik 9416b79b38 TracingDB synchronized with Production-Monitoring project. 2021-01-14 09:51:15 +01:00
Milan Hanajik 20171e99a6 Q2 corr.: Correction inside range -0.5 .. 0.5 % 2020-11-27 09:03:50 +01:00
Milan Hanajik 822ef33da8 Saving events to Events DB : Fixed bugs when connection string was not defined. 2020-11-18 10:44:53 +01:00
Milan Hanajik 3bfb34a6ea DB.SensusOracle.Database : (1) Procedure params., (2) S620 support, (3) SensusTestInfo for 620. 2020-11-13 11:57:22 +01:00
Milan Hanajik c28828fcdd Register readers cleanup, IRegReaderPulses added. 2020-11-13 11:55:20 +01:00
Milan Hanajik 889a370f90 iPerlCommunicationForm bug fix : Crash when swithing to Active mode after saving results. 2020-11-13 10:31:30 +01:00
Milan Hanajik a369127850 UI.Procedures.ProceduresCtrl : More column content is optional. 2020-11-13 10:27:09 +01:00
Milan Hanajik 82a3574222 Statistics : IP addresses updated, export in CSV format implemented. 2020-11-13 10:25:00 +01:00
Milan Hanajik f3fc3d3ba4 UI.Procedures.ProcedureDlg 'Copy' a test feature added 2020-11-13 10:23:44 +01:00
Milan Hanajik a5a139aff6 TBF/CameraBinaryFiles2 folder with synchronization for SD v.2.x (!!! file upload NOK). 2020-11-13 10:23:44 +01:00
Milan Hanajik 09da203962 DataEntry.Camera (1) loads next image after 'Enter' key, (2) dealing with test parts fixed. 2020-11-13 10:23:44 +01:00
Milan Hanajik 77ad6a529d MettlerToledo.Standard always reads immediate mass when idle. 2020-11-13 10:23:32 +01:00
Milan Hanajik 54658bdd38 US and English units added. 2020-09-09 09:06:33 +02:00
Milan Hanajik 809897342a Output.EventTriggers.Standard bug fix (E13 cannot be changed). 2020-09-09 09:06:33 +02:00
Milan Hanajik 70767de3fc In all FixedStart methods there is 10s delay after start of a test before the flow regulation starts. 2020-08-12 10:05:46 +02:00
Milan Hanajik d62c1ff106 Heat Meters related fixes. 2020-08-07 14:00:46 +02:00
Milan Hanajik bf583e3061 Camera.CLP1611 : More comments, TODO list 2020-08-05 10:26:26 +02:00
Milan Hanajik 270a46982d (1) Compound WM results displayed correctly, (2) Diverter.flowMtrNr4Cmd for SLM_150. 2020-08-05 10:25:31 +02:00
Milan Hanajik 659315c519 Bug fix in CombinedWithDetectionSeq related to test.Part 2020-08-03 09:07:22 +02:00
Milan Hanajik 04db3f975e ReserBatchNr project added to the solution. 2020-07-31 08:52:26 +02:00
Milan Hanajik c0e18458aa Elde components removed 2020-07-29 13:49:31 +02:00
Milan Hanajik d09316a34a Barcode printing in Output.Printers.Enhanced and Output.Printers.OnePerMeter. 2020-07-29 13:42:43 +02:00
Milan Hanajik 8c0ebcb871 Diverter : 'static int nextIdx' not incremented when DebugLevel == DebugMode.Off 2020-07-09 10:10:16 +02:00
Milan Hanajik fcdf1ea16b German resources the same as in branch 2.26 2020-07-08 10:21:06 +02:00
Milan Hanajik d6261e4d80 (1) Units : Quantity.Enumerated added, (2) LoginDlgWithBenchSelection : List of benches is alphabetically sorted. 2020-06-25 12:11:43 +02:00
Milan Hanajik 9f5c4e7347 ResultsBrowser: 1 WR13 IP addr.updated, 2 default DbType=MySql, 3 changes in progress. 2020-06-24 11:57:36 +02:00
Milan Hanajik 90e58266a9 SchematicDrawing : Intersections of pipes drawn as a bow having darker color. 2020-06-18 22:59:22 +02:00
Milan Hanajik 5b5f0ac41e SchematicDrawing : Dijkstra algorithm uses minimum heap. 2020-06-18 09:38:03 +02:00
Milan Hanajik ddca028eb2 MettlerToledo : Zero instead of Taring, cleanup, ver. 3.1.1495 2020-06-17 13:01:32 +02:00
Milan Hanajik fea7d0dc85 Papouch.CBoard communication change, inputs regularly read, ver. 3.1.1492 2020-06-14 13:04:14 +02:00
Milan Hanajik 1f67899a5c Schematic drawing with live function, bench control by mouse, Dijkstra algo, vacuum, etc. 2020-06-14 13:01:53 +02:00
Milan Hanajik 2945049288 Reconfigured for Juzna-Afrika-NEW 2020-06-02 12:02:37 +02:00
Milan Hanajik 070a76aade SchematicDrawing: Editing completed, TODO: Display 2020-06-02 12:00:45 +02:00
Milan Hanajik 2c100c7150 DataEntryForm can be displayed in transition before a test (FixedStartStopMassCollAdvanced only), ver. 3.1.1473 2020-05-29 13:09:13 +02:00
Milan Hanajik 19b23ea212 FixedStartMassColl(Advanced) bug fix, ver. 3.1.1472 2020-05-26 14:07:27 +02:00
Milan Hanajik e5edb90bfd TestMethods.FlowAdjustment, TestMethods.FixedStartMassCollAdvanced, DataEntry24 changes, ver. 3.1.1471 2020-05-25 14:24:50 +02:00
Milan Hanajik 2ec611964f Changes for Juzna-Afrika-NEW, JUZNA_AFRIKA_NEW symbol, ver. 3.1.1470 2020-05-21 18:57:41 +02:00
Milan Hanajik c007bca797 Modbus: Data receive improved, Meret.TempMeter, Meret.PressureMeter, Danfoss.VLT added, QuidoRS modified. 2020-05-21 18:32:21 +02:00
Milan Hanajik 767796662e Critical bug fix in many sequences - STOP not functioning !!! 2020-05-21 16:43:35 +02:00
Milan Hanajik 7b321abb30 ControlBoards, IControlBoard iface, Devices, test methods. 2020-05-21 15:55:02 +02:00
2760 changed files with 206193 additions and 177747 deletions
+8
View File
@@ -22,14 +22,22 @@ GenCode128/bin
GenCode128/obj
GraphLib/bin
GraphLib/obj
MergeResultsDBs/bin
MergeResultsDBs/obj
TracingDB/bin
TracingDB/obj
ResetBatchNr/bin
ResetBatchNr/obj
RestClient/bin
RestClient/obj
Results/bin/
Results/obj/
ResultsBrowser/bin/
ResultsBrowser/obj/
SharedDatabase/bin
SharedDatabase/obj
SchematicDrawing/bin
SchematicDrawing/obj
Statistics/bin/
Statistics/obj/
TBF/bin/
+37
View File
@@ -0,0 +1,37 @@
///
/// Copyright (c) 2021 Sensus Slovensko a.s.
///
using System;
using System.Threading;
namespace Common
{
public class BackgroundBeep
{
static Thread beepThread;
static AutoResetEvent signalBeep;
static BackgroundBeep()
{
signalBeep = new AutoResetEvent(false);
beepThread = new Thread(() =>
{
while (true)
{
signalBeep.WaitOne(); /// waits for an event
Console.Beep(500, 400); /// frequency (Hz), duration (ms)
}
}, 1);
beepThread.IsBackground = true;
beepThread.Start();
}
/// <summary>
/// Invokes one beep in a separate thread (non-blocking function)
/// </summary>
public static void Beep()
{
signalBeep.Set();
}
}
}
+39
View File
@@ -30,6 +30,9 @@
<WarningLevel>4</WarningLevel>
</PropertyGroup>
<ItemGroup>
<Reference Include="log4net">
<HintPath>..\packages\log4net.2.0.2\lib\net40-full\log4net.dll</HintPath>
</Reference>
<Reference Include="System" />
<Reference Include="System.Core" />
<Reference Include="System.Drawing" />
@@ -41,7 +44,34 @@
<Reference Include="System.Xml" />
</ItemGroup>
<ItemGroup>
<Compile Include="BackgroundBeep.cs" />
<Compile Include="Data.cs" />
<Compile Include="DatabaseSettings.cs" />
<Compile Include="DBSettings.cs" />
<Compile Include="Enums.cs" />
<Compile Include="Forms\ListViewEx.cs">
<SubType>Component</SubType>
</Compile>
<Compile Include="Forms\ListViewExtensions.cs" />
<Compile Include="Forms\LviIntColumnComparer.cs" />
<Compile Include="Forms\LviNameSurnameColumnComparer.cs" />
<Compile Include="Forms\LviTextColumnComparer.cs" />
<Compile Include="Forms\MessageEventArgs.cs" />
<Compile Include="Forms\ModelessForm.cs">
<SubType>Form</SubType>
</Compile>
<Compile Include="Forms\ModelessForm.designer.cs">
<DependentUpon>ModelessForm.cs</DependentUpon>
</Compile>
<Compile Include="Formulas.cs" />
<Compile Include="GlobalData.cs" />
<Compile Include="IMeasurementCorrection.cs" />
<Compile Include="IParamsProvider.cs" />
<Compile Include="IUncertainty.cs" />
<Compile Include="IUser.cs" />
<Compile Include="ProcedureInfo.cs" />
<Compile Include="SerializableDictionary.cs" />
<Compile Include="Telegram.cs" />
<Compile Include="UIControls\CoolButtonCtrl.cs">
<SubType>UserControl</SubType>
</Compile>
@@ -50,6 +80,7 @@
</Compile>
<Compile Include="UIControls\LviDateTimeColumnComparer.cs" />
<Compile Include="UIControls\RoundedRectangle.cs" />
<Compile Include="Units.cs" />
<Compile Include="Utils.cs" />
<Compile Include="Properties\AssemblyInfo.cs" />
<Compile Include="UIControls\ListViewEx.cs">
@@ -60,6 +91,14 @@
<Compile Include="UIControls\LviTextColumnComparer.cs" />
</ItemGroup>
<ItemGroup />
<ItemGroup>
<EmbeddedResource Include="Forms\ListViewEx.resx">
<DependentUpon>ListViewEx.cs</DependentUpon>
</EmbeddedResource>
<EmbeddedResource Include="Forms\ModelessForm.resx">
<DependentUpon>ModelessForm.cs</DependentUpon>
</EmbeddedResource>
</ItemGroup>
<Import Project="$(MSBuildToolsPath)\Microsoft.CSharp.targets" />
<!-- To modify your build process, add your task inside one of the targets below and uncomment it.
Other similar extension points exist, see Microsoft.Common.targets.
+31
View File
@@ -0,0 +1,31 @@
///
/// Copyright (c) 2021 Sensus Slovensko a.s.
///
using System;
namespace Common
{
/// <summary>
/// Database settings required to make a connection
/// </summary>
public class DBSettings : ICloneable
{
public Common.DBType DbType;
public string ConnectionString;
public DBSettings()
{
}
public DBSettings(Common.DBType dbType, string connectionString)
{
this.DbType = dbType;
this.ConnectionString = connectionString;
}
public object Clone()
{
return new DBSettings(DbType, ConnectionString);
}
}
}
+26
View File
@@ -0,0 +1,26 @@
using System;
namespace Common
{
public class Data : Common.GlobalData
{
public const string AdminUsername = "admin";
public const string AdminPassword = "staratura";
public const string SQLiteDbFName = "SQLite.db";
public const int WMsCount = 16;
public const int LineSize = 16;
public const int CompoundWMsCount = 0;
public const int HeatMetersCount = 0;
public const int MaxPartNr = WMsCount / LineSize;
///
/// Database related: This object reference is set after a successful user login
///
public static DatabaseSettings CurrentBench;
public static double SampleDensity = 0; /// sample water density measured in an accredited labo [kg/m3]
public static double SampleTemp = 0; /// sample temperature when density measured in an accredited labo [°C]
public static double Buoyancy = 0;
}
}
+121
View File
@@ -0,0 +1,121 @@
///
/// Copyright (c) 2013-2020 Sensus Slovensko a.s.
///
using System;
using System.Text;
using System.Xml.Serialization;
namespace Common
{
/// <summary>
/// Test bench database settings, contains bench name and settings od several databases
/// </summary>
public class DatabaseSettings : ICloneable, IComparable
{
// Public fields
public string BenchName;
public bool IsRealBench;
public DBSettings ProceduresDBSettings; /// Configuration database settings
public DBSettings WaterMetersDBSettings; /// Results database settings
public DBSettings EventsDBSettings; /// Events database settings
public DBSettings UsersDBSettings; /// Shared configuration database settings
// Constructor
public DatabaseSettings()
{
BenchName = String.Empty; /// Empty string (avoid null)
IsRealBench = false;
ProceduresDBSettings = new DBSettings(DBType.MySql, string.Empty);
WaterMetersDBSettings = new DBSettings(DBType.MySql, string.Empty);
EventsDBSettings = new DBSettings(DBType.MySql, string.Empty);
UsersDBSettings = new DBSettings(DBType.MySql, string.Empty);
}
public object Clone()
{
DatabaseSettings result = new DatabaseSettings();
result.BenchName = BenchName;
result.IsRealBench = IsRealBench;
result.ProceduresDBSettings = (DBSettings)ProceduresDBSettings.Clone();
result.WaterMetersDBSettings = (DBSettings)WaterMetersDBSettings.Clone();
result.EventsDBSettings = (DBSettings)EventsDBSettings.Clone();
result.UsersDBSettings = (DBSettings)UsersDBSettings.Clone();
return result;
}
public int CompareTo(object dbs2)
{
if (!(dbs2 is DatabaseSettings)) return 0;
return String.Compare(BenchName, (dbs2 as DatabaseSettings).BenchName);
}
/// <summary>
/// Extract and return a DB server from a MySQL connection string.
/// </summary>
public static string GetDBServer(string connectionString)
{
return GetFromConnectionString(connectionString, new string[] { "SERVER=" });
}
/// <summary>
/// Extract and return a DB name from a MySQL connection string.
/// </summary>
public static string GetDBName(string connectionString)
{
return GetFromConnectionString(connectionString, new string[] { "DATABASE=" });
}
/// <summary>
/// Extract and return a username from a MySQL connection string
/// </summary>
public static string GetDBUser(string connectionString)
{
return GetFromConnectionString(connectionString, new string[] { "USER=", "UID=" });
}
/// <summary>
/// Extract and return a password from a MySQL connection string
/// </summary>
public static string GetDBPassword(string connectionString)
{
return GetFromConnectionString(connectionString, new string[] { "PASSWORD=", "PWD=" });
}
/// <summary>
/// Extract and return an element of a MySQL connection string
/// (a host, a database, a user name or a password).
/// Return an empty string on any error.
/// </summary>
public static string GetFromConnectionString(string connectionString, string[] patterns)
{
foreach (var pattern in patterns)
{
int startIx = connectionString.IndexOf(pattern);
if (startIx >= 0)
{
/// pattern found, extract the subsequent element
startIx += pattern.Length;
int endIx = connectionString.IndexOf(';', startIx);
return (endIx > 0) ? connectionString.Substring(startIx, endIx - startIx) : string.Empty;
}
}
/// pattern NOT found
return string.Empty;
}
public override string ToString()
{
return string.Format("{0} config={1} results={2} events={3} users={4}",
BenchName,
ProceduresDBSettings.ConnectionString,
WaterMetersDBSettings.ConnectionString,
EventsDBSettings.ConnectionString,
UsersDBSettings.ConnectionString);
}
}
}
+795
View File
@@ -0,0 +1,795 @@
///
/// Copyright (c) 2021 Sensus Slovensko a.s.
///
using System;
using System.Collections.Generic;
using System.Reflection;
namespace Common
{
/// <summary>
/// Helper class to assign descriptions to enum values
/// </summary>
public class Description : Attribute
{
public string Text;
public Description(string t)
{
Text = t;
}
}
public static class GetDescription
{
/// Extension method for enum-s
public static string ToDescription(this Enum en)
{
Type type = en.GetType();
MemberInfo[] memInfo = type.GetMember(en.ToString());
if (memInfo != null && memInfo.Length > 0)
{
object[] attrs = memInfo[0].GetCustomAttributes(typeof(Description), false);
if (attrs != null && attrs.Length > 0)
return ((Description)attrs[0]).Text;
}
return en.ToString(); /// Return ToString() value in case there is no description
}
}
/// <summary>
/// Identifies the type of a database
/// </summary>
public enum DBType
{
None, /// Database disabled
MySql, /// MySQL database
SQLite, /// SQLite
Count
}
/// <summary> Identifies the database based on the content </summary>
public enum DBKind
{
Config,
Results,
RemoteConfig,
Count
}
public enum ProcedureSelection
{
#if LANG_CS
[Description("Žádné")] None,
[Description("Lokální postupy")] FromLocalDB,
[Description("Postupy ze sdílené databázy")] FromSharedDB,
[Description("Zakázky z Oracle databázy")] OrderNrFromOracleDB,
[Description("Zakázky ze sledovací databázy")] OrderNrFromTracingDB,
#else
[Description("None")] None,
[Description("Local procedures")] FromLocalDB,
[Description("Shared procedures")] FromSharedDB,
[Description("Orders from Oracle DB")] OrderNrFromOracleDB,
[Description("Orders from Tracing DB")] OrderNrFromTracingDB,
#endif
Count
}
public enum LoginMethod
{
UserName, /// = alias, abbreviation
FullName, /// = description
Number,
Count
}
public enum AuthorizedAs
{
PowerUser,
LocalUser,
RemoteUser,
Count
}
/// <summary>
/// GID-s of user groups, each user is member of one or more groups.
/// </summary>
public enum GID
{
Testers,
TestingSpecialists,
HeadOfLab,
MaintenanceSpecialists,
Metrologists,
CalibrationSpecialists,
Administrators, /// application / network / database administrator
TraceabilityManagement,
MetrologicalAuthority,
WaterMeterAuthority,
NrOfGroups, /// Number of groups (this is not a GroupID)
None,
}
public enum MySortOrder
{
None,
Ascending, /// The same like SortOrder.Ascending
Descending, /// The same like SortOrder.Descending
Ascending2, /// Sorts by a surname in ascending order in case or 'Name Surname' column
Descending2, /// Sorts by a surname in descending order in case or 'Name Surname' column
}
/// <summary>
/// Flags returned by each device configuration control Verify(...) function.
/// </summary>
public enum CfgUpdateFlags
{
None = 0,
Error = 0x1, /// Some settings in the user control are invalid and cannot be set
Warning = 0x02, /// Some settings in the user control are suspicious, can be set after user confirmation
RestartRqrd = 0x04, /// TBF program restart is required to apply all changed parameters
AnyChange = 0x08, /// At least one parameter have changed
VolatileChange = 0x10,
InvokeCfgChange = 0x20, /// Invoke CfgChange handler of the component
}
/// <summary>
/// Event severity
/// </summary>
public enum Severity
{
Undefined,
Notification,
Warning,
Error,
FatalError,
Count
}
public enum EventClass
{
Undefined,
EquipmentHW,
Metrology,
TestingProcess,
BadResults,
ComputerResources,
Network,
Other,
Count
}
public enum SubscriberGroup : long
{
None = 0,
Metrology = 1,
Maintenance = 2,
Production = 4,
Management = 8,
Finish = 16,
}
public enum EViewerOption
{
Undefined,
AllEvents,
RecentEvents,
UnreadEvents,
}
public enum ProcedureState
{
Active,
History,
Count,
}
public enum ProfileType
{
Q3R,
QnClassColdWater,
QnClassHotWater,
QpQi,
Manual,
Count,
}
public enum ErrorLimitType
{
Manual,
QpClass,
Count,
}
/// <summary> Kind of meters for the procedure / test </summary>
public enum MetersKind
{
#if LANG_DE
[Description("Wasserzähler")] Single,
[Description("Verbundwasserzähler")] Combined,
[Description("Wärmezähler")] HeatMeter,
#elif LANG_FR
[Description("Compteurs eau")] Single,
[Description("Mètres composés")] Combined,
[Description("Thermomètres")] HeatMeter,
#elif LANG_CS
[Description("Vodoměry")] Single,
[Description("Kombinované vodoměry")] Combined,
[Description("Měřiče tepla")] HeatMeter,
#elif LANG_RU
[Description("Счетчик")] Single,
[Description("Комбинированный счетчик")] Combined,
[Description("Счетчик тепла")] HeatMeter,
#else
[Description("Water meters")] Single,
[Description("Compound water meters")] Combined,
[Description("Heat meters")] HeatMeter,
#endif
}
public enum CompoundMeterId : byte
{
Single,
CompoundMain,
CompoundAux,
Compound,
HeatMeterVolume,
HeatMeterEnergy,
SingleOrCompound, /// Only used when querying results
}
public enum Medium
{
[Description("")] NotSpecified,
#if LANG_PL
[Description("zimna")] ColdWater,
[Description("ciepła")] HotWater,
#elif LANG_IT
[Description("freddo")] ColdWater,
[Description("caldo")] HotWater,
#elif LANG_FR
[Description("eau froide")] ColdWater,
[Description("eau chaude")] HotWater,
#else
[Description("cold")] ColdWater,
[Description("hot")] HotWater,
#endif
Count
}
public enum Mounting
{
[Description("")] NotSpecified,
#if LANG_DE
[Description("H")] H, /// horizontal
[Description("V")] V, /// vertical
[Description("STR")] S, /// standrohre
[Description("F")] F, /// fall
#else
[Description("H")] H, /// horizontal
[Description("V")] V, /// vertical
[Description("S")] S, /// steig
[Description("F")] F, /// fall
#endif
Count
}
public enum TemperatureClass
{
[Description("")] NotSpecified,
[Description("T30")] T30,
[Description("T50")] T50,
[Description("T70")] T70,
[Description("T90")] T90,
[Description("T130")] T130,
[Description("T180")] T180,
[Description("T30/70")] T30_70,
[Description("T30/90")] T30_90,
[Description("T30/130")] T30_130,
[Description("T30/180")] T30_180,
[Description("30")] t30,
[Description("50")] t50,
[Description("70")] t70,
[Description("90")] t90,
[Description("130")] t130,
[Description("180")] t180,
Count
}
public enum FlowProfileSensitivityClass
{
[Description("")] NotSpecified,
[Description("U0")] U0, /// ?
[Description("D0")] D0, /// ?
Count
}
public enum PressureLossClass
{
[Description("")] NotSpecified,
[Description("dp63")] dp63, /// 0.063 MPa = 0.63 bar, TODO: Change to "Δp63"
[Description("dp40")] dp40, /// 0.040 MPa = 0.40 bar
[Description("dp25")] dp25, /// 0.025 MPa = 0.25 bar
[Description("dp16")] dp16, /// 0.016 MPa = 0.16 bar
[Description("dp10")] dp10, /// 0.010 MPa = 0.10 bar
Count
}
/// <summary> Maximum Admissible Pressure </summary>
public enum MaxAdmissiblePressure
{
[Description("")] NotSpecified,
[Description("MAP6")] MAP6,
[Description("MAP10")] MAP10,
[Description("MAP16")] MAP16,
[Description("MAP25")] MAP25,
[Description("MAP40")] MAP40,
Count
}
/// <summary> Register reader type </summary>
public enum RegisterReaderType
{
Unknown,
Pulses, /// Sick, optical and similar
Camera, /// CLP1611
DataStream, /// iPerl
Manual, /// Entered by human via form (also from camera images)
Count
}
/// <summary> Transition step is finished when this condition is fulfilled </summary>
public enum StepCondition
{
None,
Scale1Empty,
Scale2Empty,
Scale3Empty,
AllScalesEmpty,
Count
}
public enum MeretProtocol
{
[Description("<undefined>")] Undefined,
[Description("Meret (obsolete)")] Meret,
[Description("Modbus")] Modbus,
Count
}
public enum Publish : sbyte
{
#if LANG_DE
/// german
[Description("nie")] Never = 0,
[Description("immer")] Always = 1,
[Description("Bildschirm")] OnScreen = 2,
[Description("intern")] Internal = 3,
#elif LANG_FR
[Description("jamais")] Never = 0,
[Description("toujours")] Always = 1,
[Description("À l'écran")] OnScreen = 2,
[Description("interne")] Internal = 3,
#elif LANG_CS
/// czech
[Description("nikdy")] Never = 0,
[Description("vždy")] Always = 1,
[Description("na obrazovku")] OnScreen = 2,
[Description("interně")] Internal = 3,
#elif LANG_SK
/// slovak
[Description("nikdy")] Never = 0,
[Description("vždy")] Always = 1,
[Description("na obrazovku")] OnScreen = 2,
[Description("interne")] Internal = 3,
#elif LANG_PL
/// polish
[Description("nigdy")] Never = 0,
[Description("zawsze")] Always = 1,
[Description("na ekranie")] OnScreen = 2,
[Description("wewnętrznie")] Internal = 3,
#elif LANG_RU
/// russian
[Description("никогда")] Never = 0,
[Description("всегда")] Always = 1,
[Description("толька экран")] OnScreen = 2,
[Description("внутренно")] Internal = 3,
#else
/// english
[Description("Never")] Never = 0,
[Description("Always")] Always = 1,
[Description("On screen")] OnScreen = 2,
[Description("Internal")] Internal = 3,
#endif
Count
}
public enum MassMethod : byte
{
#if LANG_DE
/// nemecky
[Description("Waage")] Scale,
[Description("Spanne")] Spread,
[Description("Standardabw.")] StdDev,
#elif LANG_FR
[Description("Balance")] Scale,
[Description("Envergure")] Spread,
[Description("Déviation std.")] StdDev,
#elif LANG_CS
/// cesky
[Description("váhou")] Scale,
[Description("max.rozdíl")] Spread,
[Description("std.dev.")] StdDev,
#else
[Description("Scale")] Scale,
[Description("Spread")] Spread,
[Description("Std.dev.")] StdDev,
#endif
Count
}
/// <summary>
/// Three state test results and/or water meter result (Algeria PT25 requirement).
/// NearlyOK means error is within error limits not narrowed by uncertainty
/// OK: Uncertainty + ErrLimLo <= error <= ErrLimHi - Uncertainty
/// NearlyOK: not OK but stil ErrLimLo <= error <= ErrLimHi
/// Nok: otherwise
/// </summary>
public enum ThreeState
{
#if LANG_FR
[Description("NC")] Nok, /// Totally failed: not OK and not NearlyOK
[Description("2e/Ff")] NearlyOK, /// Nearly OK, not OK but not totally failed
[Description("***")] OK, /// OK
#else
[Description("NOK")] Nok, /// Totally failed: not OK and not NearlyOK
[Description("Nearly OK")] NearlyOK, /// Nearly OK, not OK but not totally failed
[Description("OK")] OK, /// OK
#endif
Count
}
public enum TestProfile
{
UserDefined,
UserDefinedHeatMeter,
Protected, /// The first protected one
ProtectedHeatMeter,
}
public enum Progress
{
JustStarted,
TransitionBefore,
SwitchingFlowDetection,
FlowSetting,
Aborted, /// Use as an argument when a test was aborted
Test,
TransitionAfter,
Completed,
Count,
}
public enum Device
{
Screen,
Printer,
Disk,
}
public enum PageOrientation
{
Portrait,
Landscape,
Count,
}
public enum ItemCategory
{
#if LANG_DE
[Description("Allgemein")] Other,
[Description("Prüfstanddaten")] BenchData,
[Description("Prüfstandergebnisse")] BenchResult,
[Description("Prüfpunktdaten")] TestData,
[Description("Prüfpunktergebnisse")] TestResult,
[Description("Wasserzelledaten")] MeterData,
[Description("Wasserzelleergebnisse")] MeterResult,
#elif LANG_FR
[Description("Autres")] Other,
[Description("Données de banc")] BenchData,
[Description("Résultats du banc")] BenchResult,
[Description("Données de test")] TestData,
[Description("Résultats de test")] TestResult,
[Description("Données du compteur d'eau")] MeterData,
[Description("Résultats du compteur d'eau")] MeterResult,
#else
[Description("Other")] Other,
[Description("Bench data")] BenchData,
[Description("Bench result")] BenchResult,
[Description("Test data")] TestData,
[Description("Test result")] TestResult,
[Description("Meter data")] MeterData,
[Description("Meter result")] MeterResult,
#endif
Count,
}
/// <summary> Possible modes of operation of components and devices. </summary>
public enum DebugMode
{
#if LANG_DE
[Description("Erkennen-aus")] DetectedOff = -2,
[Description("Erkennen-ein")] DetectedOn = -1,
[Description("Normal")] Normal = 0, /// Normal operation
[Description("Auto-erkennen")] AutoDetect, /// The component (device) will be auto-detected
[Description("Fehler")] FailureDuringOperation, /// Failure during operation -> disabled
[Description("Aus")] Off, /// The component is off
[Description("Aufzeichnen")] Record,
[Description("Reply")] Replay,
[Description("Simuliert")] Simulate, /// Test bench simulation, this mode does not require any hardware
[Description("Geerbt")] Inherit,
#elif LANG_FR
[Description("Détection automatique: Éteindre")] DetectedOff = -2,
[Description("Détection automatique: Allumé")] DetectedOn = -1,
[Description("Ordinaire")] Normal = 0,
[Description("Détection automatique")] AutoDetect,
[Description("Erreur d'exécution")] FailureDuringOperation,
[Description("Éteindre")] Off,
[Description("Record")] Record,
[Description("Répondre")] Replay,
[Description("Simuler")] Simulate,
[Description("Hériter")] Inherit,
#else
[Description("Detected off")] DetectedOff = -2,
[Description("Detected on")] DetectedOn = -1,
[Description("Normal")] Normal = 0, /// Normal operation
[Description("Auto detect")] AutoDetect, /// The component (device) will be auto-detected
[Description("Run-time error")] FailureDuringOperation, /// Failure during operation -> disabled
[Description("Off")] Off, /// The component is off
[Description("Record")] Record,
[Description("Replay")] Replay,
[Description("Simulate")] Simulate, /// Test bench simulation, this mode does not require any hardware
[Description("Inherit")] Inherit,
#endif
Count,
}
public enum LogLevel
{
#if LANG_DE
[Description("Aus")] Off,
[Description("Schwerwiegend")] Fatal,
[Description("Fehler")] Error,
[Description("Warnung")] Warn,
[Description("Info")] Info,
[Description("Debug")] Debug,
[Description("Alles")] All,
#else
[Description("Off")] Off,
[Description("Fatal")] Fatal,
[Description("Error")] Error,
[Description("Warn")] Warn,
[Description("Info")] Info,
[Description("Debug")] Debug,
[Description("All")] All,
#endif
Count,
}
/// <summary> Arrangement of tests </summary>
public enum TestsArrangement
{
Rows,
Columns,
}
/// <summary> Arrangement of meters </summary>
public enum MetersArrangement
{
Vertically,
Horizontally,
}
public enum Alignment
{
#if LANG_DE
[Description("links")] Left,
[Description("zentriert")] Center,
[Description("rechts")] Right,
[Description("angepasst")] Justified,
#elif LANG_FR
[Description("gauche")] Left,
[Description("centré")] Center,
[Description("droit")] Right,
[Description("justifié")] Justified,
#else
[Description("Left")] Left,
[Description("Center")] Center,
[Description("Right")] Right,
[Description("Justified")] Justified,
#endif
Count
}
public enum VertAlignment
{
[Description("Top")] Top,
[Description("Middle")] Middle,
[Description("Bottom")] Bottom,
}
public enum TableForm
{
None,
Rows,
Columns,
ColumnsPL,
Count,
}
public enum ImageRotation
{
[Description("0 deg")] None,
[Description("90 deg")] Deg90,
[Description("180 deg")] Deg180,
[Description("270 deg")] Deg270,
Count
}
public enum CameraDisplayResolution
{
Small,
Medium,
Large,
// FullScreen,
Count,
}
public enum ErrorFlagsMode : sbyte
{
#if LANG_DE
[Description("aus")] Off,
[Description("info")] Info,
[Description("ein")] On,
[Description("stopp")] Stop,
#elif LANG_FR
[Description("éteindre")] Off,
[Description("info")] Info,
[Description("allumé")] On,
[Description("arrêter")] Stop,
#elif LANG_CS
[Description("vypnuto")] Off,
[Description("info")] Info,
[Description("zapnuto")] On,
[Description("stop")] Stop,
#elif LANG_RU
[Description("выкл")] Off,
[Description("инфо")] Info,
[Description("вкл")] On,
[Description("останов")] Stop,
#elif LANG_PL
[Description("nie")] Off,
[Description("info")] Info,
[Description("tak")] On,
[Description("przestać")] Stop,
#else // LANG_EN
[Description("off")] Off,
[Description("info")] Info,
[Description("on")] On,
[Description("stop")] Stop,
#endif
Count
}
public enum ErrorFlagMask : long
{
E1 = (1L << 0), /// shift = 0, E1 = 1L
E2 = (1L << 1),
E3 = (1L << 2),
E4 = (1L << 3),
E5 = (1L << 4),
E6 = (1L << 5),
E7 = (1L << 6),
E8 = (1L << 7),
E9 = (1L << 8),
E10 = (1L << 9),
E11 = (1L << 10),
E12 = (1L << 11),
E13 = (1L << 12),
E14 = (1L << 13),
E15 = (1L << 14),
E16 = (1L << 15),
E17 = (1L << 16),
E18 = (1L << 17),
E19 = (1L << 18),
E20 = (1L << 19),
E21 = (1L << 20),
E22 = (1L << 21),
E23 = (1L << 22),
E24 = (1L << 23),
E25 = (1L << 24),
E26 = (1L << 25), /// iPERL: Invalid Q2 correction factors, mismatch between factors in the water meter and in DB
E27 = (1L << 26), /// iPERL: Wrong counting direction
E28 = (1L << 27), /// iPERL: Missing workflow step (assembly or test)
E29 = (1L << 28),
E30 = (1L << 29),
E31 = (1L << 30),
E32 = (1L << 31),
E33 = (1L << 32),
E34 = (1L << 33),
E35 = (1L << 34),
E36 = (1L << 35),
E37 = (1L << 36),
E38 = (1L << 37),
E39 = (1L << 38),
E40 = (1L << 39),
E41 = (1L << 40),
E42 = (1L << 41),
E43 = (1L << 42),
E44 = (1L << 43),
E45 = (1L << 44),
E46 = (1L << 45),
E47 = (1L << 46),
E48 = (1L << 47),
E49 = (1L << 48),
E50 = (1L << 49),
E51 = (1L << 50),
E52 = (1L << 51),
E53 = (1L << 52),
E54 = (1L << 53),
E55 = (1L << 54),
E56 = (1L << 55),
E57 = (1L << 56),
E58 = (1L << 57),
E59 = (1L << 58),
E60 = (1L << 59),
E61 = (1L << 60),
E62 = (1L << 61),
E63 = (1L << 62),
}
#region iPERL enums
public enum Side
{
#if LANG_CS
[Description("Levá")] Left,
[Description("Pravá")] Right,
#else
[Description("Left")]
Left,
[Description("Right")]
Right,
#endif
Count
}
public enum FlowDir
{
R_L,
L_R,
Count
}
public enum Counting
{
Arbitrary,
Positive,
Negative,
Count
}
public enum OptoHeadState
{
Disabled,
OptoAndDirOK,
OptoNok,
DirNok,
Count
}
#endregion iPERL enums
}
@@ -1,5 +1,5 @@
///
/// Copyright (c) 2016 Sensus Metering Systems
/// Copyright (c) 2016-2021 Sensus Slovensko a.s.
///
using System;
using System.Collections;
@@ -9,7 +9,7 @@ using System.Data;
using System.Windows.Forms;
using System.Runtime.InteropServices;
namespace TracingDB.Forms
namespace Common.Forms
{
/// <summary>
/// Event Handler for SubItem events
+104
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@@ -0,0 +1,104 @@
using System;
using System.ComponentModel;
using System.Runtime.InteropServices;
using System.Windows.Forms;
namespace Common.Forms
{
[EditorBrowsable(EditorBrowsableState.Never)]
public static class ListViewExtensions
{
[StructLayout(LayoutKind.Sequential)]
public struct HDITEM
{
public Mask mask;
public int cxy;
[MarshalAs(UnmanagedType.LPTStr)]
public string pszText;
public IntPtr hbm;
public int cchTextMax;
public Format fmt;
public IntPtr lParam;
// _WIN32_IE >= 0x0300
public int iImage;
public int iOrder;
// _WIN32_IE >= 0x0500
public uint type;
public IntPtr pvFilter;
// _WIN32_WINNT >= 0x0600
public uint state;
[Flags]
public enum Mask
{
Format = 0x4, // HDI_FORMAT
};
[Flags]
public enum Format
{
SortDown = 0x200, // HDF_SORTDOWN
SortUp = 0x400, // HDF_SORTUP
};
};
public const int LVM_FIRST = 0x1000;
public const int LVM_GETHEADER = LVM_FIRST + 31;
public const int HDM_FIRST = 0x1200;
public const int HDM_GETITEM = HDM_FIRST + 11;
public const int HDM_SETITEM = HDM_FIRST + 12;
[DllImport("user32.dll", CharSet = CharSet.Auto, SetLastError = true)]
public static extern IntPtr SendMessage(IntPtr hWnd, UInt32 msg, IntPtr wParam, IntPtr lParam);
[DllImport("user32.dll", CharSet = CharSet.Auto, SetLastError = true)]
public static extern IntPtr SendMessage(IntPtr hWnd, UInt32 msg, IntPtr wParam, ref HDITEM lParam);
public static void SetSortIcon(this ListViewEx listViewControl, int columnIndex, SortOrder order)
{
IntPtr columnHeader = SendMessage(listViewControl.Handle, LVM_GETHEADER, IntPtr.Zero, IntPtr.Zero);
for (int columnNumber = 0; columnNumber <= listViewControl.Columns.Count - 1; columnNumber++)
{
var columnPtr = new IntPtr(columnNumber);
var item = new HDITEM
{
mask = HDITEM.Mask.Format
};
if (SendMessage(columnHeader, HDM_GETITEM, columnPtr, ref item) == IntPtr.Zero)
{
throw new Win32Exception();
}
if (order != SortOrder.None && columnNumber == columnIndex)
{
switch (order)
{
case SortOrder.Ascending:
item.fmt &= ~HDITEM.Format.SortDown;
item.fmt |= HDITEM.Format.SortUp;
break;
case SortOrder.Descending:
item.fmt &= ~HDITEM.Format.SortUp;
item.fmt |= HDITEM.Format.SortDown;
break;
default:
break;
}
}
else
{
item.fmt &= ~HDITEM.Format.SortDown & ~HDITEM.Format.SortUp;
}
if (SendMessage(columnHeader, HDM_SETITEM, columnPtr, ref item) == IntPtr.Zero)
{
throw new Win32Exception();
}
}
}
}
}
+32
View File
@@ -0,0 +1,32 @@
using System;
using System.Collections;
using System.Windows.Forms;
using Common;
namespace Common.Forms
{
class LviIntColumnComparer : IComparer
{
int column;
MySortOrder order;
public LviIntColumnComparer()
{
column = 0;
order = MySortOrder.Ascending;
}
public LviIntColumnComparer(int column, MySortOrder order)
{
this.column = column;
this.order = order;
}
public int Compare(object x, object y)
{
int valX = int.Parse(((ListViewItem)x).SubItems[column].Text);
int valY = int.Parse(((ListViewItem)y).SubItems[column].Text);
return (order == MySortOrder.Descending || order == MySortOrder.Descending2) ? (valY - valX) : (valX - valY);
}
}
}
@@ -0,0 +1,55 @@
using System;
using System.Collections;
using System.Windows.Forms;
using Common;
namespace Common.Forms
{
class LviNameSurnameColumnComparer : IComparer
{
private int column;
MySortOrder order;
public LviNameSurnameColumnComparer()
{
column = 0;
order = MySortOrder.Ascending;
}
public LviNameSurnameColumnComparer(int column, MySortOrder order)
{
this.column = column;
this.order = order;
}
public int Compare(object x, object y)
{
string nameX = ((ListViewItem)x).SubItems[column].Text;
string nameY = ((ListViewItem)y).SubItems[column].Text;
string surnameX;
string surnameY;
switch (order)
{
case MySortOrder.Ascending:
return String.Compare(nameX, nameY);
case MySortOrder.Descending:
return String.Compare(nameY, nameX);
case MySortOrder.Ascending2:
surnameX = (nameX.IndexOf(' ') > 0) ? nameX.Substring(nameX.IndexOf(' ') + 1) : nameX;
surnameY = (nameX.IndexOf(' ') > 0) ? nameY.Substring(nameY.IndexOf(' ') + 1) : nameY;
return String.Compare(surnameX, surnameY);
case MySortOrder.Descending2:
surnameX = (nameX.IndexOf(' ') > 0) ? nameX.Substring(nameX.IndexOf(' ') + 1) : nameX;
surnameY = (nameX.IndexOf(' ') > 0) ? nameY.Substring(nameY.IndexOf(' ') + 1) : nameY;
return String.Compare(surnameY, surnameX);
default:
return 0;
}
}
}
}
+32
View File
@@ -0,0 +1,32 @@
using System;
using System.Collections;
using System.Windows.Forms;
using Common;
namespace Common.Forms
{
class LviTextColumnComparer : IComparer
{
private int column;
MySortOrder order;
public LviTextColumnComparer()
{
column = 0;
order = MySortOrder.Ascending;
}
public LviTextColumnComparer(int column, MySortOrder order)
{
this.column = column;
this.order = order;
}
public int Compare(object x, object y)
{
string txtX = ((ListViewItem)x).SubItems[column].Text;
string txtY = ((ListViewItem)y).SubItems[column].Text;
return (order == MySortOrder.Descending || order == MySortOrder.Descending2) ? String.Compare(txtY, txtX) : String.Compare(txtX, txtY);
}
}
}
+10
View File
@@ -0,0 +1,10 @@
using System;
namespace Common.Forms
{
public class MessageEventArgs : EventArgs
{
public string Message;
public MessageEventArgs(string message) { Message = message; }
}
}
@@ -1,4 +1,4 @@
namespace TracingDB.Forms
namespace Common.Forms
{
partial class ModelessForm
{
+92
View File
@@ -0,0 +1,92 @@
using System;
using System.Drawing;
using System.Windows.Forms;
namespace Common.Forms
{
public partial class ModelessForm : Form
{
/// <summary>
/// Called from the state machine when an operation forces a modeless dialog close.
/// </summary>
public static void UpdateMessage(MessageEventArgs args)
{
if (UpdateMessageHandler == null) return;
try { UpdateMessageHandler(null, args); }
catch (Exception) { }
}
public static event EventHandler<MessageEventArgs> UpdateMessageHandler;
void OnUpdateMessage(object sender, MessageEventArgs args)
{
Message = args.Message;
if (Message != null) label1.Text = Message;
}
/// <summary>
/// Called from the state machine when an operation forces a modeless dialog close.
/// </summary>
public static void CloseForm()
{
if (CloseFormHandler == null) return;
try { CloseFormHandler(null, null); }
catch (Exception) { }
}
public static event EventHandler<EventArgs> CloseFormHandler;
void OnCloseForm(object sender, EventArgs args)
{
DialogResult = DialogResult.Cancel;
Close();
}
public string Title;
public string Message;
public Color BackgroundColor;
public Color TextColor;
public Font TextFont;
public string FontFamily;
public int FontSize;
public FontStyle FontStyle;
/// <summary>
/// Constructor to be used by the application
/// </summary>
/// <param name="title">Window title</param>
/// <param name="message">Displayed message</param>
public ModelessForm()
{
InitializeComponent();
ControlBox = false;
UpdateMessageHandler += delegate(object sender, MessageEventArgs args)
{
if (InvokeRequired) { Invoke(new EventHandler<MessageEventArgs>(OnUpdateMessage), sender, args); }
else OnUpdateMessage(sender, args);
};
CloseFormHandler += delegate(object sender, EventArgs args)
{
if (InvokeRequired) { Invoke(new EventHandler<EventArgs>(OnCloseForm), sender, args); }
else OnCloseForm(sender, args);
};
}
private void ModelessForm_Load(object sender, EventArgs e)
{
if (Title != null) Text = Title;
if (Message != null) label1.Text = Message;
if (BackgroundColor != null) BackColor = BackgroundColor;
if (TextColor != null) ForeColor = TextColor;
if (FontFamily != null) label1.Font = new Font(FontFamily, FontSize, FontStyle);
float textWidth = Graphics.FromImage(new Bitmap(1, 1)).MeasureString(label1.Text, label1.Font).Width;
float textHeight = Graphics.FromImage(new Bitmap(1, 1)).MeasureString(label1.Text, label1.Font).Height;
Width = (int)textWidth + 120; /// Form width calculated from the text width
Height += (int)textHeight; /// Form height calculated from the text height
}
}
}
+8 -63
View File
@@ -1,11 +1,11 @@
///
/// Copyright (c) 2013-2018 Sensus Slovensko a.s.
/// Copyright (c) 2013-2021 Sensus Slovensko a.s.
///
using System;
using System.Collections.Generic;
using log4net;
namespace Config
namespace Common
{
public static class Formulas
{
@@ -15,8 +15,8 @@ namespace Config
///
/// Wrappers
///
public static double RealDensity() { return Data.RealDensity; }
public static double AtTemperature() { return Data.AtTemperature; }
public static double RealDensity() { return Data.SampleDensity; }
public static double AtTemperature() { return Data.SampleTemp; }
public static double Buoyancy() { return Data.Buoyancy; }
@@ -182,7 +182,7 @@ namespace Config
double theta = temp / 100.0;
double B = x0 * (((x3 * theta + x2) * theta + x1) * theta + 1) / (1 + x4 * theta);
return WaterDensityFromTemp(temp) * (1 + B * Config.Units.ConvertTo(Config.Unit.Pa, pressure));
return WaterDensityFromTemp(temp) * (1 + B * Common.Units.ConvertTo(Common.Unit.Pa, pressure));
}
@@ -231,61 +231,6 @@ namespace Config
}
/// <summary>
/// Calculates corrected value from a list of corrections by interpolation.
/// It is assumed that values in the list 'corrections' are sorted.
/// </summary>
/// <param name="rawMeasurement">Raw uncorrected value</param>
/// <param name="corrections">Sorted (value, correction) pairs</param>
/// <returns>Corrected value</returns>
public static double CorrectedValue(double rawValue, IList<Config.Entities.MeasurementCorrection> corrections)
{
return rawValue + GetCorrection(rawValue, corrections);
}
/// <summary>
/// Get a correction from a list of corrections by interpolation.
/// It is assumed that values in the list 'corrections' are sorted.
/// </summary>
/// <param name="rawMeasurement">Raw uncorrected value</param>
/// <param name="corrections">Sorted (value, correction) pairs</param>
/// <returns>Corrected value</returns>
public static double GetCorrection(double rawValue, IList<Config.Entities.MeasurementCorrection> corrections)
{
if ((corrections == null) || (corrections.Count == 0)) return 0; /// No correction
if (rawValue < corrections[0].Measurement)
{
/// rawValue is below the lowest value in the correction table
return corrections[0].Correction;
}
int count = corrections.Count;
for (int i = 1; i < count; i++)
{
if (rawValue < corrections[i].Measurement)
{
double d1 = rawValue - corrections[i - 1].Measurement;
double d2 = corrections[i].Measurement - rawValue;
if (d1 + d2 <= float.Epsilon)
{
/// Neigboring values in the corection table are close to each other -> calculate the average
return (corrections[i - 1].Correction + corrections[i].Correction) / 2.0;
}
else
{
/// Interpolate the correction from neigboring values in the corection table
return (corrections[i - 1].Correction * d2 + corrections[i].Correction * d1) / (d1 + d2);
}
}
}
/// rawValue is above the highest value in the correction table
return corrections[count - 1].Correction;
}
/// <summary>
/// Converts a measurement error to a correction (used when preparing correction tables).
/// </summary>
@@ -316,11 +261,11 @@ namespace Config
const double p_star_Pa = 16.53E6; /// [Pa] (=16.53 MPa)
const double T_star = 1386.0; /// [K]
double T_in_K = Config.Units.ConvertTo(Config.Unit.K, T_in);
double T_out_K = Config.Units.ConvertTo(Config.Unit.K, T_out);
double T_in_K = Common.Units.ConvertTo(Common.Unit.K, T_in);
double T_out_K = Common.Units.ConvertTo(Common.Unit.K, T_out);
double tau_in = T_star / T_in_K;
double tau_out = T_star / T_out_K;
double pi = Config.Units.ConvertTo(Config.Unit.Pa, pressure) / p_star_Pa;
double pi = Common.Units.ConvertTo(Common.Unit.Pa, pressure) / p_star_Pa;
double h_in = tau_in * GammaTau(pi, tau_in) * R * T_in_K;
double h_out = tau_out * GammaTau(pi, tau_out) * R * T_out_K;
+25
View File
@@ -0,0 +1,25 @@
///
/// Copyright (c) 2021 Sensus Slovensko a.s.
///
using System;
namespace Common
{
public class GlobalData
{
public static DBSettings RemoteUsersDB = null;
public static DBSettings LocalUsersDB = null;
public static IUser CurrentUser;
public static Common.AuthorizedAs AuthorizedAs;
public static DateTime LastAuthorization = DateTime.Now;
public static int MinPasswdLength = 0;
public static int PasswdExpirationPeriodDays = 0;
public static string GetCurrentUserName()
{
return (CurrentUser != null && CurrentUser.UserName != null) ? CurrentUser.UserName : string.Empty;
}
}
}
+11
View File
@@ -0,0 +1,11 @@
using System;
namespace Common
{
public interface IMeasurementCorrection
{
int RangeIx { get; set; }
float Measurement { get; set; }
float Correction { get; set; }
}
}
@@ -1,11 +1,11 @@
///
/// Copyright (c) 2013-2018 Sensus Slovensko a.s.
/// Copyright (c) 2013-2021 Sensus Slovensko a.s.
///
using System;
using System.Collections.Generic;
using System.Xml.Serialization;
namespace Config.Entities
namespace Common
{
public interface IParamsProvider
{
@@ -31,7 +31,7 @@ namespace Config.Entities
/// Returns a list of possible values of one parameter (ComboBox when editing) or null (Textbox when editing).
/// </summary>
/// <param name="ix">Zero based index of the parameter</param>
IList<string> ParamValues(int ix);
ICollection<string> ParamValues(int ix);
/// <summary>
/// Returns a parameter value in the string form
+14
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@@ -0,0 +1,14 @@
using System;
namespace Common
{
public interface IUncertainty
{
float Measurement { get; }
float MainUncertainty { get; }
float Resolution { get; }
float DriftPerYr { get; }
float Conditions { get; }
float UncertaintyOfCorrection { get; }
}
}
+22
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@@ -0,0 +1,22 @@
using System;
namespace Common
{
public interface IUser
{
string UserName { get; } /// = name, alias, abbreviation
string FullName { get; } /// = description
string Tag { get; }
int Number { get; }
/// Access rights
bool IsMemberOf(GID group);
bool IsMemberOf(GID[] groups);
bool IsCorrectPassword(string password);
/// Password complexity, history, etc.
bool IsPasswordExpired();
bool IsPasswordUsedInPast(string passwordCandidate);
void SetPassword(string password);
}
}
+55
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@@ -0,0 +1,55 @@
///
/// Copyright (c) 2021 Sensus Slovensko a.s.
///
using System;
using System.Collections.Generic;
namespace Common
{
/// <summary>
/// Contains a procedure name and procedure selection source specification
/// (local/shared/order from Oracle/order from tracing DB)
/// </summary>
public class ProcedureInfo
{
public readonly ProcedureSelection Source;
public readonly string Signature;
public readonly int ItemNr;
public readonly string Name;
public ProcedureSelection ResolvedSource; /// ProcedureSelection.FromLocalDB or ProcedureSelection.FromSharedDB when Resolved==true
public string ResolvedName;
public string Variant;
public ProcedureInfo(ProcedureSelection source, int itemNr, string name, string signature = null, string variant = null)
{
Source = source;
Signature = (signature == null) ? string.Empty : signature;
ItemNr = itemNr;
Name = name;
if (source == ProcedureSelection.FromLocalDB || source == ProcedureSelection.FromSharedDB)
{
ResolvedSource = source;
ResolvedName = name;
}
else
{
ResolvedSource = ProcedureSelection.None;
ResolvedName = string.Empty;
}
Variant = (variant == null) ? string.Empty : variant;
}
public static string GetSignature(ProcedureSelection source, ICollection<ProcedureSelection> allSources)
{
return (source == ProcedureSelection.OrderNrFromOracleDB) ? "O"
: (source == ProcedureSelection.OrderNrFromTracingDB) ? "T"
: (source == ProcedureSelection.FromSharedDB) ? "R"
: (allSources != null && allSources.Contains(ProcedureSelection.FromSharedDB)) ? "L" : "";
}
public override string ToString()
{
return string.Format("{0}{1} {2}", Signature, ItemNr, Name);
}
}
}
+4 -1
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@@ -1,4 +1,7 @@
using System;
///
/// Copyright (c) 2021 Sensus Slovensko a.s.
///
using System;
using System.Collections.Generic;
using System.Xml.Serialization;
@@ -1,10 +1,10 @@
///
/// Copyright (c) 2013-2019 Sensus Metering Systems
/// Copyright (c) 2013-2021 Sensus Metering Systems
///
using System;
using System.Collections.Generic;
namespace TBF.BenchControl
namespace Common
{
public class Telegram
{
@@ -39,13 +39,29 @@ namespace TBF.BenchControl
/// </summary>
/// <param name="data">Data telegram</param>
/// <returns>Calculated CRC</returns>
public static UInt16 ClaculateTelegramCRC(byte[] data)
public static UInt16 CalculateTelegramCRC(byte[] data, int enforcedLen = 0)
{
int len = (enforcedLen != 0) ? Math.Min(enforcedLen, data.Length) : data.Length;
UInt16 crc = crcSeed;
for (int i = 0; i < data.Length - 2; i++) UpdateCRC(data[i], ref crc);
for (int i = 0; i < len - 2; i++) UpdateCRC(data[i], ref crc);
return crc;
}
/// <summary>
/// Calculates the CRC from a data telegram (an array of bytes).
/// A complete telegram including two bytes reserved for the CRC
/// must be supplied as an argument.
/// </summary>
/// <param name="data">Data telegram</param>
/// <returns>Calculated CRC</returns>
public static UInt16 CalculateTelegramCRC(int offset, byte[] data, int enforcedLen = 0)
{
int len = (enforcedLen != 0) ? Math.Min(enforcedLen, data.Length - offset) : data.Length - offset;
UInt16 crc = crcSeed;
for (int i = 0; i < len - 2; i++) UpdateCRC(data[offset + i], ref crc);
return crc;
}
/// <summary>
/// This function modifies the last 2 bytes in the message buffer
/// by the CRC calculated from the remaining first (Lenght - 2) bytes.
@@ -58,7 +74,7 @@ namespace TBF.BenchControl
int len = data.Length;
if (len < 2) return;
UInt16 crc = ClaculateTelegramCRC(data);
UInt16 crc = CalculateTelegramCRC(data);
data[len - 2] = (byte)(crc & 0xFF);
data[len - 1] = (byte)(crc >> 8);
@@ -72,16 +88,38 @@ namespace TBF.BenchControl
/// </summary>
/// <param name="data">Data telegram</param>
/// <returns>true if the CRC in the telegram is correct</returns>
public static bool VerifyTelegramCRC(byte[] data)
public static bool VerifyTelegramCRC(byte[] data, int enforcedLen = 0)
{
int len = data.Length;
if (data == null || data.Length == 0 || enforcedLen > data.Length) return false;
int len = (enforcedLen != 0) ? enforcedLen : data.Length;
if (len < 2) return false;
UInt16 crc = ClaculateTelegramCRC(data);
UInt16 crc = CalculateTelegramCRC(data, len);
return (data[len - 2] == (byte)(crc & 0xFF)) && (data[len - 1] == (byte)(crc >> 8));
}
/// <summary>
/// This function compares the last 2 bytes in the message buffer
/// with the CRC calculated from the remaining first (Lenght - 2) bytes.
/// A complete telegram including two bytes reserved for the CRC
/// must be supplied as an argument.
/// </summary>
/// <param name="data">Data telegram</param>
/// <returns>true if the CRC in the telegram is correct</returns>
public static bool VerifyTelegramCRC(int offset, byte[] data, int enforcedLen = 0)
{
if (data == null || data.Length == 0 || enforcedLen > data.Length - offset) return false;
int len = (enforcedLen != 0) ? enforcedLen : data.Length - offset;
if (len < 2) return false;
UInt16 crc = CalculateTelegramCRC(offset, data, len);
return (data[offset + len - 2] == (byte)(crc & 0xFF)) && (data[offset + len - 1] == (byte)(crc >> 8));
}
/// <summary>
@@ -173,7 +211,6 @@ namespace TBF.BenchControl
}
public static string LogTelegram(string intro, byte[] data, int from = 0, int len = -1)
{
System.Text.StringBuilder sb = new System.Text.StringBuilder(256);
@@ -194,6 +231,7 @@ namespace TBF.BenchControl
return sb.ToString();
}
public static string LogTelegram(string intro, IList<byte> data, int from = 0, int len = -1)
{
System.Text.StringBuilder sb = new System.Text.StringBuilder(256);
@@ -215,7 +253,6 @@ namespace TBF.BenchControl
}
public static string LogTelegram(string intro, string data)
{
System.Text.StringBuilder sb = new System.Text.StringBuilder(80);
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@@ -0,0 +1,538 @@
///
/// Copyright (c) 2016-2021 Sensus Slovensko a.s.
///
using System;
using System.Reflection;
namespace Common
{
public enum Unit
{
[Description("---")] None,
[Description("imp.")] pulse,
#if LANG_PL
[Description("stopień")] degree,
#else
[Description("degree")] degree,
#endif
[Description("ml")] ml, /// 1 ml = 0.001 l
[Description("l")] l, /// * 1 liter
[Description("dm3")] dm3, /// 1 dm3 = 1 l
[Description("US gal")] USgal, /// 1 US gallon = 3.78541178 l
[Description("imper.gal")] UKgal, /// 1 imperial gallon = 4.54609 l
[Description("cf")] cf, /// 1 cubic foot = 28.316846592 l
[Description("m3")] m3, /// 1 m3 = 1000 l
[Description("l/h")] lph, /// 1 l/h = 0.001 m3/h
[Description("cf/h")] cfph, /// 1 cf/h = 0.028316846592 m3/h
[Description("l/m")] lpm, /// 1 l/m = 60 l/h = 0.06 m3/h
[Description("US gal/m")] USgalpm, /// 1 US gallon per minute = 0.2271247068 m3/h
[Description("m3/h")] m3ph, /// * 1 m3/h
[Description("l/s")] lps, /// 1 liter/s = 3.6 m3/h
[Description("US gal/s")] USgalps, /// 1 US gallon per second = 13.627482408 m3/h
[Description("m3/m")] m3pm, /// 1 m3/m = 60 m3/h
[Description("cf/s")] cfs, /// 1 cubic foot per second = 101.9406477312 m3/h
[Description("g")] g, /// 0.001 kg
[Description("oz")] oz, /// 0.0283495231 kg
[Description("lb")] lb, /// 0.45359237 kg
[Description("kg")] kg, /// * 1 kilogram
[Description("t")] t, /// 1000 kg
[Description("ms")] ms, /// 1 ms = 0.001 s
[Description("s")] s, /// * 1 second
[Description("min")] min, /// 1 min = 60 s
[Description("hr")] hour, /// 1 hour = 60 min = 3600 s
[Description("°C")] C, /// * degree Celsius (°C)
[Description("°F")] F, /// degree Fahrenheit
[Description("K")] K, /// degree Kelvin
[Description("Pa")] Pa, /// 1 Pa = 0.01 hPa
[Description("hPa")] hPa, /// 1 hPa = 100 Pa
[Description("mbar")] mbar, /// 1 mbar = 1 hPa = 100 Pa
[Description("kPa")] kPa, /// 1 kPa = 10 hPa = 1000 Pa
[Description("inHg")] inHg, /// 1 inHg = 33.864 hPa
[Description("psi")] psi, /// 1 psi = 0.0689475729 bar
[Description("bar")] bar, /// * 1 Bar = 1000 mbar = 0.1 MPa = 100000 Pa
[Description("MPa")] MPa, /// 1 MPa = 10000 hPa
[Description("R%")] RPct, /// * 1 R%
[Description("promile")] Promile, /// 1 promile = 0.1 %
[Description("%")] Pct, /// * 1 %
[Description("mm")] mm, /// * 1 millimeter
[Description("cm")] cm, /// 1 cm = 10 mm
[Description("in")] inch, /// 1 inch = 25.4 mm
[Description("dm")] dm, /// 1 dm = 100 mm
[Description("ft")] foot, /// 1 foot = 304.8 mm
[Description("yd")] yard, /// 1 yard = 914.4 mm
[Description("m")] m, /// 1 m = 1000 mm
[Description("kg/m3")] kgpm3, /// * 1 kg/m3 = 0.001 kg/l
[Description("kg/l")] kgpl, /// 1 kg/l = 1000 kg/m3
[Description("J")] J, /// * 1 Joul
[Description("kJ")] kJ, /// 1 kJ = 1000 J
[Description("MJ")] MJ, /// 1 MJ = 1000000 J
[Description("Wh")] Wh, /// 1 Wh = 3600 J
[Description("kWh")] kWh, /// 1 kWh = 3600000 J
[Description("MWh")] MWh, /// 1 MWh = 3600000000 J
[Description("uS/cm")] uSpcm, /// * 1 uS/cm
[Description("mS/m")] mSpm, /// 1 mS/m = 10 uS/cm
#if LANG_PL
[Description("imp/l")] ppl, /// * 1 pulse/l
[Description("imp/dm3")] ppdm3, /// * 1 pulse/dm3
[Description("stopień/l")] degpl, /// * 1 degree/l
[Description("stopień/dm3")] degpdm3, /// * 1 degree/dm3
[Description("l/imp")] lpp, /// * 1 l/pulse
[Description("dm3/imp")] dm3pp, /// * 1 dm3/pulse
[Description("l/stopień")] lpdeg, /// * 1 l/degree
[Description("dm3/stopień")] dm3pdeg, /// * 1 dm3/degree
#else
[Description("pulse/l")] ppl, /// * 1 pulse/l
[Description("pulse/dm3")] ppdm3, /// 1 pulse/dm3
[Description("degree/l")] degpl, /// 1 degree/l
[Description("degree/dm3")] degpdm3, /// 1 degree/dm3
[Description("l/pulse")] lpp, /// 1 l/pulse
[Description("dm3/pulse")] dm3pp, /// 1 dm3/pulse
[Description("l/degree")] lpdeg, /// 1 l/degree
[Description("dm3/degree")] dm3pdeg, /// 1 dm3/degree
#endif
///
[Description("pulse/kWh")] ppkWh, /// * 1 pulse/kWh
[Description("kWh/pulse")] kWhpp, /// 1 kWh/pulse
Count
}
public enum Quantity
{
/// Quantities with units and conversions (double -> double)
#if LANG_DE
[Description("Volumen")] Volume,
[Description("Durchfluss")] Flow,
[Description("Masse")] Mass,
[Description("Zeit")] Time,
[Description("Temperatur")] Temperature,
[Description("Druck")] Pressure,
[Description("Feuchtigkeit")] Humidity,
[Description("Fehler")] Error,
[Description("Länge")] Length,
[Description("Dichte")] Density,
[Description("Energie")] Energy,
[Description("Impulse")] Pulses,
[Description("Impulse/l")] PulsePerLtr,
[Description("Impulse/kWh")] PulsePerKWh,
[Description("Leitfähigkeit")] Conductivity,
/// Quantities without units and conversions
[Description("Nummer")] Number,
[Description("Text")] String,
[Description("Boolean")] Boolean,
[Description("Datum und Uhrzeit")] DateTime,
[Description("Aufgezählt")] Enumerated,
#elif LANG_PL
[Description("Objętość")] Volume,
[Description("Przepływ")] Flow,
[Description("Masa")] Mass,
[Description("Czas")] Time,
[Description("Temperatura")] Temperature,
[Description("Ciśnienie")] Pressure,
[Description("Wilgotność")] Humidity,
[Description("Błąd")] Error,
[Description("Długość")] Length,
[Description("Gęstość")] Density,
[Description("Energia")] Energy,
[Description("Impulsy")] Pulses,
[Description("Impulsy/litr")] PulsePerLtr,
[Description("Impulsy/kWh")] PulsePerKWh,
[Description("Przewodność")] Conductivity,
/// Quantities without units and conversions
[Description("Numer")] Number,
[Description("Tekst")] String,
[Description("Boolean")] Boolean,
[Description("Data i czas")] DateTime,
[Description("Wyliczone")] Enumerated,
#elif LANG_CS
[Description("Objem")] Volume,
[Description("Průtok")] Flow,
[Description("Hmotnost")] Mass,
[Description("Čas")] Time,
[Description("Teplota")] Temperature,
[Description("Tlak")] Pressure,
[Description("Vlhkost")] Humidity,
[Description("Chyba")] Error,
[Description("Délka")] Length,
[Description("Hustota")] Density,
[Description("Energie")] Energy,
[Description("Pulzy")] Pulses,
[Description("Pulzy/litr")] PulsePerLtr,
[Description("Pulzy/kWh")] PulsePerKWh,
[Description("Vodivost")] Conductivity,
/// Quantities without units and conversions
[Description("Počet")] Number,
[Description("Text")] String,
[Description("Boolean")] Boolean,
[Description("Datum a čas")] DateTime,
[Description("Vyjmenované")] Enumerated,
#elif LANG_IT
[Description("Volume")] Volume,
[Description("Flusso")] Flow,
[Description("Massa")] Mass,
[Description("Tempo")] Time,
[Description("Temperatura")] Temperature,
[Description("Pressione")] Pressure,
[Description("Umidità")] Humidity,
[Description("Errore")] Error,
[Description("Lungezza")] Length,
[Description("Densità")] Density,
[Description("Energia")] Energy,
[Description("Impulso")] Pulses,
[Description("Impulso/litro")] PulsePerLtr,
[Description("Impulso/kWh")] PulsePerKWh,
[Description("Conduttività")] Conductivity,
/// Quantities without units and conversions
[Description("Numero")] Number,
[Description("Stringa")] String,
[Description("Boolean")] Boolean,
[Description("Data e ora")] DateTime,
[Description("Enumerato")] Enumerated,
#else
[Description("Volume")] Volume,
[Description("Flow")] Flow,
[Description("Mass")] Mass,
[Description("Time")] Time,
[Description("Temperature")] Temperature,
[Description("Pressure")] Pressure,
[Description("Humidity")] Humidity,
[Description("Error")] Error,
[Description("Length")] Length,
[Description("Density")] Density,
[Description("Energy")] Energy,
[Description("Pulses")] Pulses,
[Description("Pulses/liter")] PulsePerLtr,
[Description("Pulses/kWh")] PulsePerKWh,
[Description("Conductivity")] Conductivity,
/// Quantities without units and conversions
[Description("Number")] Number,
[Description("String")] String,
[Description("Boolean")] Boolean,
[Description("Date and time")] DateTime,
[Description("Enumerated")] Enumerated,
#endif
Count,
}
public static class Units
{
public static bool IsUnitless(Quantity quantity)
{
return quantity >= Quantity.Number;
}
public static bool IsDefaultUnit(Unit unit)
{
return unit == Unit.l || unit == Unit.m3ph || unit == Unit.kg || unit == Unit.s || unit == Unit.C ||
unit == Unit.bar || unit == Unit.RPct || unit == Unit.Pct || unit == Unit.mm || unit == Unit.kgpm3 ||
unit == Unit.J || unit == Unit.uSpcm || unit == Unit.ppl || unit == Unit.ppkWh;
}
public static bool IsQuantity(Unit units, Quantity quantity)
{
return (quantity == GetQuantity(units));
}
public static Quantity GetQuantity(Unit units)
{
switch (units)
{
case Unit.pulse:
case Unit.degree:
return Quantity.Pulses;
case Unit.ml:
case Unit.l:
case Unit.dm3:
case Unit.USgal:
case Unit.UKgal:
case Unit.cf:
case Unit.m3:
return Quantity.Volume;
case Unit.lph:
case Unit.cfph:
case Unit.lpm:
case Unit.USgalpm:
case Unit.m3ph:
case Unit.lps:
case Unit.USgalps:
case Unit.m3pm:
case Unit.cfs:
return Quantity.Flow;
case Unit.g:
case Unit.oz:
case Unit.lb:
case Unit.kg:
case Unit.t:
return Quantity.Mass;
case Unit.ms:
case Unit.s:
case Unit.min:
case Unit.hour:
return Quantity.Time;
case Unit.C:
case Unit.F:
case Unit.K:
return Quantity.Temperature;
case Unit.Pa:
case Unit.hPa:
case Unit.mbar:
case Unit.kPa:
case Unit.inHg:
case Unit.psi:
case Unit.bar:
case Unit.MPa:
return Quantity.Pressure;
case Unit.RPct:
return Quantity.Humidity;
case Unit.Promile:
case Unit.Pct:
return Quantity.Error;
case Unit.mm:
case Unit.cm:
case Unit.inch:
case Unit.dm:
case Unit.foot:
case Unit.yard:
case Unit.m:
return Quantity.Length;
case Unit.kgpm3:
case Unit.kgpl:
return Quantity.Density;
case Unit.J:
case Unit.kJ:
case Unit.MJ:
case Unit.Wh:
case Unit.kWh:
case Unit.MWh:
return Quantity.Energy;
case Unit.uSpcm:
case Unit.mSpm:
return Quantity.Conductivity;
case Unit.ppl:
case Unit.ppdm3:
case Unit.degpl:
case Unit.degpdm3:
case Unit.lpp:
case Unit.dm3pp:
case Unit.lpdeg:
case Unit.dm3pdeg:
return Quantity.PulsePerLtr;
case Unit.ppkWh:
case Unit.kWhpp:
return Quantity.PulsePerKWh;
default:
return Quantity.Number;
}
}
public static bool IsVolume(Unit units) { return IsQuantity(units, Quantity.Volume); }
public static bool IsFlow(Unit units) { return IsQuantity(units, Quantity.Flow); }
public static bool IsMass(Unit units) { return IsQuantity(units, Quantity.Mass); }
public static bool IsTime(Unit units) { return IsQuantity(units, Quantity.Time); }
public static bool IsTemperature(Unit units) { return IsQuantity(units, Quantity.Temperature); }
public static bool IsPressure(Unit units) { return IsQuantity(units, Quantity.Pressure); }
public static bool IsHumidity(Unit units) { return IsQuantity(units, Quantity.Humidity); }
public static bool IsError(Unit units) { return IsQuantity(units, Quantity.Error); }
public static bool IsLength(Unit units) { return IsQuantity(units, Quantity.Length); }
public static bool IsDensity(Unit units) { return IsQuantity(units, Quantity.Density); }
public static bool IsEnergy(Unit units) { return IsQuantity(units, Quantity.Energy); }
public static bool IsPulses(Unit units) { return IsQuantity(units, Quantity.Pulses); }
public static bool IsPulsePerLtr(Unit units) { return IsQuantity(units, Quantity.PulsePerLtr); }
public static bool IsPulsePerKWh(Unit units) { return IsQuantity(units, Quantity.PulsePerKWh); }
public static bool IsConductivity(Unit units) { return IsQuantity(units, Quantity.Conductivity); }
public static double ConvertTo(Unit units, double v)
{
switch (units)
{
/// Volume: internal representation in l
case Unit.ml: return 1000 * v; /// 1 ml = 0.001 l
case Unit.USgal: return 0.26417205 * v; /// 1 gal(US) = 3.78541178 l
case Unit.UKgal: return 0.21996925 * v; /// 1 gal(UK) = 4.54609 l
case Unit.cf: return 0.0353146667215 * v; /// 1 cubic foot = 28.316846592 l
case Unit.m3: return 0.001 * v; /// 1 m3 = 1000 l
/// Flow: internal representation in m3/h
case Unit.lph: return 1000 * v; /// 1 l/h
case Unit.cfph: return 35.3146667214886 * v;/// 1 cf/h
case Unit.lpm: return v / 0.06; /// 1 l/m
case Unit.USgalpm: return 4.40286754395493 * v;/// 1 US gallon per minute
case Unit.lps: return v / 3.6; /// 1 l/s
case Unit.USgalps: return 0.0733811257326 * v; /// 1 US gallon per second
case Unit.m3pm: return v / 60; /// 1 m3/m
case Unit.cfs: return 0.009809629644858 * v; /// 1 cubic foot per second
/// Mass: internal representation in kg
case Unit.g: return 1000 * v; /// 1 g = 0.001 kg
case Unit.oz: return 35.273962 * v; /// 1 oz = 0.0283495231 kg
case Unit.lb: return 2.2046226 * v; /// 1 lb = 0.45359237 kg
case Unit.t: return 0.001 * v; /// 1 t = 1000 kg
/// Time or duration: internal representation in seconds [s]
case Unit.ms: return 1000 * v;
case Unit.min: return v / 60;
case Unit.hour: return v / 3600;
/// Temperature: internal representation in °C
case Unit.F: return 1.8 * v + 32; /// degree Fahrenheit
case Unit.K: return v + 273.15; /// degree Kelvin
/// Pressure: internal representation in bar = 0.1 MPa
case Unit.Pa: return 100000 * v; /// 1 hPa = 100 Pa
case Unit.hPa: return 1000 * v; /// 1 hPa = 100 Pa
case Unit.mbar: return 1000 * v; /// 1 mbar = 1 hPa = 100 Pa
case Unit.kPa: return 100 * v; /// 1 kPa = 10 HPa
case Unit.inHg: return 29.53 * v; /// 1 inHg =
case Unit.psi: return 14.5037738 * v; /// 1 psi =
case Unit.MPa: return 0.1 * v; /// 1 MPa = 10000 hPa
/// Relative error: internal representation in %
case Unit.Promile: return 10 * v; /// 1 promile = 0.1 %
/// Diameter, length: internal representation in mm
case Unit.cm: return 0.1 * v; /// 1 cm = 10 mm
case Unit.inch: return v / 25.4; /// 1 inch = 25.4 mm
case Unit.dm: return 0.01 * v; /// 1 dm = 100 mm
case Unit.foot: return v / 304.8; /// 1 foot = 304.8 mm
case Unit.yard: return v / 914.4; /// 1 yard = 914,4 mm
case Unit.m: return 0.001 * v; /// 1 m = 1000 mm
/// Density: internal representation in kg/m3
case Unit.kgpl: return 0.001 * v;
/// Energy, internal representation in Joul
case Unit.kJ: return 0.001 * v; /// 1 kJ = 1000 J
case Unit.MJ: return 0.000001 * v; /// 1 kJ = 1000000 J
case Unit.Wh: return v / 3600.0; /// 1 Wh = 3600 J
case Unit.kWh: return v / 3600000.0; /// 1 kWh = 3600000 J
case Unit.MWh: return v / 3600000000.0; /// 1 MWh = 3600000000 J
/// Electrical conductivity
case Unit.mSpm: return 0.1 * v;
/// Invert pulses
case Unit.kWhpp:
case Unit.lpp:
case Unit.dm3pp:
case Unit.lpdeg:
case Unit.dm3pdeg: return (v <= float.Epsilon) ? 0 : 1/v;
default: return v; /// Do not convert
}
}
public static double ConvertFrom(Unit units, double v)
{
switch (units)
{
/// Volume: internal representation in l
case Unit.ml: return 0.001 * v; /// 0.001 l
case Unit.USgal: return 3.78541178 * v; /// 1 gal(US) = 3.78541178 l
case Unit.UKgal: return 4.54609 * v; /// 1 gal(UK) = 4.54609 l
case Unit.cf: return 28.316846592 * v; /// 1 cubic foot = 28.316846592 l
case Unit.m3: return 1000 * v; /// 1000 l
/// Flow: internal representation in m3/h
case Unit.lph: return 0.001 * v; /// 1 l/h
case Unit.cfph: return 0.028316846592 * v; /// 1 cf/h
case Unit.lpm: return 0.06 * v; /// 1 l/m
case Unit.USgalpm: return 0.2271247068 * v; /// 1 US gallon per minute
case Unit.lps: return 3.6 * v; /// 1 l/s
case Unit.USgalps: return 13.627482408 * v; /// 1 US gallon per second
case Unit.m3pm: return 60 * v; /// 1 m3/m
case Unit.cfs: return 101.9406477312 * v; /// 1 cubic foot per second
/// Mass: internal representation in kg
case Unit.g: return 0.001 * v; /// 1 g = 0.001 kg
case Unit.oz: return 0.0283495231 * v; /// 1 oz = 0.0283495231 kg
case Unit.lb: return 0.45359237 * v; /// 1 lb = 0.45359237 kg
case Unit.t: return 1000 * v; /// 1 t = 1000 kg
/// Time or duration: internal representation in seconds [s]
case Unit.ms: return 0.001 * v;
case Unit.min: return 60 * v;
case Unit.hour: return 3600 * v;
/// Temperature: internal representation in °C
case Unit.F: return 5 * (v - 32) / 9; /// degree Fahrenheit
case Unit.K: return v - 273.15; /// degree Kelvin
/// Pressure: internal representation in bar = 0.1 MPa
case Unit.Pa: return 0.00001 * v; /// 1 hPa = 100 Pa
case Unit.hPa: return 0.001 * v; /// 1 hPa = 100 Pa
case Unit.mbar: return 0.001 * v; /// 1 mbar = 1 hPa = 100 Pa
case Unit.kPa: return 0.01 * v; /// 1 kPa = 10 HPa
case Unit.inHg: return 0.033864 * v; /// 1 inHg = 33.864 hPa
case Unit.psi: return 0.0689475729 * v; /// 1 psi = 0.0689475729 bar
case Unit.MPa: return 10 * v; /// 1 MPa = 10000 hPa
/// Relative error: internal representation in %
case Unit.Promile: return 0.1 * v; /// 1 promile = 0.1 %
/// Diameter, length: internal representation in mm
case Unit.cm: return 10 * v; /// 1 cm = 10 mm
case Unit.inch: return 25.4 * v; /// 1 inch = 25.4 mm
case Unit.dm: return 100 * v; /// 1 dm = 100 mm
case Unit.foot: return 304.8 * v; /// 1 foot = 304.8 mm
case Unit.yard: return 914.4 * v; /// 1 yard = 914,4 mm
case Unit.m: return 1000 * v; /// 1 m = 1000 mm
/// Density: internal representation in kg/m3
case Unit.kgpl: return 1000 * v;
/// Energy, internal representation in Joul
case Unit.kJ: return 1000 * v; /// 1 kJ = 1000 J
case Unit.MJ: return 1000000 * v; /// 1 kJ = 1000000 J
case Unit.Wh: return 3600 * v; /// 1 Wh = 3600 J
case Unit.kWh: return 3600000 * v; /// 1 kWh = 3600000 J
case Unit.MWh: return 3600000000 * v; /// 1 kWh = 3600000000 J
/// Electrical conductivity
case Unit.mSpm: return 10 * v;
/// Invert
case Unit.kWhpp:
case Unit.lpp:
case Unit.dm3pp:
case Unit.lpdeg:
case Unit.dm3pdeg: return (v <= float.Epsilon) ? 0 : 1/v;
default: return v; /// Do not convert
}
}
}
}
+282 -6
View File
@@ -1,12 +1,288 @@
using System;
using System.Collections.Generic;
using System.Linq;
using System.Text;
using System.Threading.Tasks;
///
/// Copyright (c) 2021 Sensus Slovensko a.s.
///
using System;
namespace Common
{
public class Utils
public static class Utils
{
public static string GetTestName(string name, int repeats, int repetitionNr)
{
if (name == null) return null;
if (repeats == 1) return name;
return string.Format("{0} ({1}/{2})", name, repetitionNr, repeats);
}
public static string SignificantDigitsToFmt(double value, int sigDigits)
{
if (sigDigits == 6)
{
if (value >= 99999.5 || value < -99999.5) return "F0";
else if (value >= 9999.95 || value < -9999.95) return "F1";
else if (value >= 999.995 || value < -999.995) return "F2";
else if (value >= 99.9995 || value < -99.9995) return "F3";
else if (value >= 9.99995 || value < -9.99995) return "F4";
else if (value >= 0.999995 || value < -0.999995) return "F5";
else if (value >= 0.0999995 || value < -0.0999995) return "F6";
else if (value >= 0.00999995 || value < -0.00999995) return "F7";
else if (value >= 0.000999995 || value < -0.000999995) return "F8";
else if (value >= 0.0000999995 || value < -0.0000999995) return "F9";
else return "F10";
}
else if (sigDigits == 5)
{
if (value >= 9999.5 || value < -9999.5) return "F0";
else if (value >= 999.95 || value < -999.95) return "F1";
else if (value >= 99.995 || value < -99.995) return "F2";
else if (value >= 9.9995 || value < -9.9995) return "F3";
else if (value >= 0.99995 || value < -0.99995) return "F4";
else if (value >= 0.099995 || value < -0.099995) return "F5";
else if (value >= 0.0099995 || value < -0.0099995) return "F6";
else if (value >= 0.00099995 || value < -0.00099995) return "F7";
else if (value >= 0.000099995 || value < -0.000099995) return "F8";
else return "F9";
}
else if (sigDigits == 4)
{
if (value >= 999.5 || value < -999.5) return "F0";
else if (value >= 99.95 || value < -99.95) return "F1";
else if (value >= 9.995 || value < -9.995) return "F2";
else if (value >= 0.9995 || value < -0.9995) return "F3";
else if (value >= 0.09995 || value < -0.09995) return "F4";
else if (value >= 0.009995 || value < -0.009995) return "F5";
else if (value >= 0.0009995 || value < -0.0009995) return "F6";
else if (value >= 0.00009995 || value < -0.00009995) return "F7";
else return "F8";
}
else if (sigDigits == 3)
{
if (value >= 99.5 || value < -99.5) return "F0";
else if (value >= 9.95 || value < -9.95) return "F1";
else if (value >= 0.995 || value < -0.995) return "F2";
else if (value >= 0.0995 || value < -0.0995) return "F3";
else if (value >= 0.00995 || value < -0.00995) return "F4";
else if (value >= 0.000995 || value < -0.000995) return "F5";
else if (value >= 0.0000995 || value < -0.0000995) return "F6";
else return "F7";
}
else if (sigDigits == 2)
{
if (value >= 9.5 || value < -9.5) return "F0";
else if (value >= 0.95 || value < -0.95) return "F1";
else if (value >= 0.095 || value < -0.095) return "F2";
else if (value >= 0.0095 || value < -0.0095) return "F3";
else if (value >= 0.00095 || value < -0.00095) return "F4";
else if (value >= 0.000095 || value < -0.000095) return "F5";
else return "F6";
}
else /// if (sigDigits == 1)
{
if (value >= 0.95 || value < -0.95) return "F0";
else if (value >= 0.095 || value < -0.095) return "F1";
else if (value >= 0.0095 || value < -0.0095) return "F2";
else if (value >= 0.00095 || value < -0.00095) return "F3";
else if (value >= 0.000095 || value < -0.000095) return "F4";
else return "F5";
}
}
/// <summary>
/// Get either Q1 or Qmin flow for a given Qn and metrological class
/// </summary>
/// <param name="Qn">Nominal flow in m3/h</param>
/// <param name="metroClass">Metrological class ("A" ,"B", "C" or "R#")</param>
/// <param name="medium">NotSpecified, ColdWater or HotWater</param>
/// <param name="Qdflt">Default flow when metrologic does not match pattern</param>
/// <returns>Q1 or Qmin flow in m3/h</returns>
public static double GetQ1Qmin(double Qn, string metroClass, Medium medium = Medium.ColdWater, double Qdflt = 0)
{
if (string.IsNullOrEmpty(metroClass)) return Qdflt;
int metroClassRatio;
if ((metroClass[0] == 'R') && int.TryParse(metroClass.Substring(1), out metroClassRatio) && (metroClassRatio > 0))
{
return Qn / (double)metroClassRatio;
}
else
{
if (medium == Medium.HotWater)
{
switch (metroClass)
{
case "A": return (Qn < 15) ? (0.04 * Qn) : (0.08 * Qn);
case "B": return (Qn < 15) ? (0.02 * Qn) : (0.04 * Qn);
case "C": return (Qn < 15) ? (0.01 * Qn) : (0.02 * Qn);
case "D": return (Qn < 15) ? (0.01 * Qn) : Qdflt;
default: break;
}
}
else
{
switch (metroClass)
{
case "A": return (Qn < 15) ? (0.04 * Qn) : (0.08 * Qn);
case "B": return (Qn < 15) ? (0.02 * Qn) : (0.03 * Qn);
case "C": return (Qn < 15) ? (0.01 * Qn) : (0.006 * Qn);
default: break;
}
}
}
return Qdflt;
}
/// <summary>
/// Get either Q2 or Qt flow for a given Qn and metrological class
/// </summary>
/// <param name="Qn">Nominal flow in m3/h</param>
/// <param name="metroClass">Metrological class ("A" ,"B", "C" or "R#")</param>
/// <param name="medium">NotSpecified, ColdWater or HotWater</param>
/// <param name="Qdflt">Default flow when metrologic does not match pattern</param>
/// <returns>Q2 or Qt flow in m3/h</returns>
public static double GetQ2Qt(double Qn, string metroClass, Medium medium = Medium.ColdWater, double Qdflt = 0)
{
if (string.IsNullOrEmpty(metroClass)) return Qdflt;
int metroClassRatio;
if ((metroClass[0] == 'R') && int.TryParse(metroClass.Substring(1), out metroClassRatio) && (metroClassRatio > 0))
{
return 1.6 * Qn / (double)metroClassRatio;
}
if (medium == Medium.HotWater)
{
switch (metroClass)
{
case "A": return (Qn < 15) ? (0.1 * Qn) : (0.2 * Qn);
case "B": return (Qn < 15) ? (0.08 * Qn) : (0.15 * Qn);
case "C": return (Qn < 15) ? (0.06 * Qn) : (0.1 * Qn);
case "D": return (Qn < 15) ? (0.015 * Qn) : Qdflt;
default: break;
}
}
else
{
switch (metroClass)
{
case "A": return (Qn < 15) ? (0.1 * Qn) : (0.3 * Qn);
case "B": return (Qn < 15) ? (0.08 * Qn) : (0.2 * Qn);
case "C": return (Qn < 15) ? (0.015 * Qn) : (0.015 * Qn);
default: break;
}
}
return Qdflt;
}
/// <summary>
/// Get either Q4 or Qmax flow for a given Qn and metrological class
/// </summary>
/// <param name="Qn">Nominal flow in m3/h</param>
/// <param name="metroClass">Metrological class ("A" ,"B", "C" or "R#")</param>
/// <param name="medium">NotSpecified, ColdWater or HotWater</param>
/// <param name="Qdflt">Default flow when metrologic does not match pattern</param>
/// <returns>Q4 or Qmax flow in m3/h</returns>
public static double GetQ4Qmax(double Qn, string metroClass, Medium medium = Medium.ColdWater, double Qdflt = 0)
{
if (string.IsNullOrEmpty(metroClass)) return Qdflt;
switch (metroClass[0])
{
case 'A':
case 'B':
case 'C':
case 'D':
return 2 * Qn;
case 'R':
return 1.25 * Qn;
default:
return Qdflt;
}
}
/// <summary>
/// Checks requirements on the password regardless of the password history
/// </summary>
/// <param name="password">Password</param>
/// <returns>true when the password is OK</returns>
public static bool IsPasswordMeetsRequirements(string password, out string explanation)
{
int length = string.IsNullOrEmpty(password) ? 0 : password.Length;
/// Password length must be at least 6
if (length < GlobalData.MinPasswdLength)
{
explanation = string.Format("Password must have at least {0} characters", GlobalData.MinPasswdLength);
return false;
}
else
{
explanation = string.Empty;
return true;
}
}
/// <summary>
/// getHash encrypts a string
/// </summary>
/// <param name="text">the string to encrypt</param>
/// <returns></returns>
public static string GetHash(string text)
{
byte[] bytes = System.Text.Encoding.Unicode.GetBytes(text);
System.Security.Cryptography.SHA512Managed hashstring = new System.Security.Cryptography.SHA512Managed();
byte[] hash = hashstring.ComputeHash(bytes);
string hashString = string.Empty;
foreach (byte x in hash)
{
hashString += String.Format("{0:x2}", x);
}
return hashString;
}
public static string EncodedStrToUserName(string encodedStr)
{
string[] subStrings = encodedStr.Split(new char[] { '~' });
return (subStrings.Length >= 1) ? subStrings[0] : string.Empty;
}
public static string EncodedStrToFullName(string encodedStr)
{
string[] subStrings = encodedStr.Split(new char[] { '~' });
return (subStrings.Length >= 2) ? subStrings[1] : string.Empty;
}
public static string EncodedStrToLegalizator(string encodedStr)
{
string[] subStrings = encodedStr.Split(new char[] { '~' });
return (subStrings.Length >= 3) ? subStrings[2] : string.Empty;
}
/// <summary>
/// Returns 'true' when authentication data are valid for a power user.
/// </summary>
/// <param name="userName">User name</param>
/// <param name="password">Password</param>
/// <returns>true = authenticated, false = refused</returns>
public static bool IsPowerUser(string userName, string password)
{
DateTime date = DateTime.Now.Date;
int number = (date.Year % 10) + 10 * (date.Month - 1) + 120 * date.Day;
string passwordOfDay = Convert.ToString(number, 8);
return (userName.Equals("milan") && password.Equals("kremik")) ||
(userName.Equals("igor") && password.Equals("mojronko8")) ||
(userName.Equals("MARIAN") && password.Equals("NM-309BN")) ||
(userName.Equals("lubo1212") && password.Equals("Tatry52")) ||
(userName.Equals("Michal") && password.Equals("1236natahA8")) ||
(userName.Equals("martin") && password.Equals("vaclavek84")) ||
(userName.Equals("pakan") && password.Equals("kuriatko")) ||
(userName.Equals("augustin") && password.Equals("jaugust")) ||
(userName.Equals("JCermak") && password.Equals("Zt6911")) ||
(userName.Equals("gilles") && password.Equals("alibaba")) ||
(userName.Equals(passwordOfDay) && password.Equals(passwordOfDay));
}
}
}
+6 -13
View File
@@ -19,7 +19,7 @@
<DebugType>full</DebugType>
<Optimize>false</Optimize>
<OutputPath>bin\Debug\</OutputPath>
<DefineConstants>TRACE;DEBUG;MUNICH</DefineConstants>
<DefineConstants>TRACE;DEBUG</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;MUNICH</DefineConstants>
<DefineConstants>TRACE;JUZNA_AFRIKA_NEW</DefineConstants>
<ErrorReport>prompt</ErrorReport>
<WarningLevel>4</WarningLevel>
<Prefer32Bit>false</Prefer32Bit>
@@ -68,22 +68,17 @@
</ItemGroup>
<ItemGroup>
<Compile Include="CalendarEvent\ICalendarEvent.cs" />
<Compile Include="Data.cs" />
<Compile Include="DatabaseSettings.cs" />
<Compile Include="Entities\BenchPath.cs" />
<Compile Include="Entities\CustomEvent.cs" />
<Compile Include="Entities\Component.cs" />
<Compile Include="Entities\ComponentProcedure.cs" />
<Compile Include="Entities\ComponentTest.cs" />
<Compile Include="Entities\Enums.cs" />
<Compile Include="Entities\FeedingPath.cs" />
<Compile Include="Entities\Group.cs" />
<Compile Include="Entities\HeatMetersPath.cs" />
<Compile Include="Entities\IHasItemNr.cs" />
<Compile Include="Entities\IHasName.cs" />
<Compile Include="Entities\IHasValves.cs" />
<Compile Include="Entities\IParamsProvider.cs" />
<Compile Include="Entities\IperlEnums.cs" />
<Compile Include="Entities\MeasurementCorrection.cs" />
<Compile Include="Entities\MetersPath.cs" />
<Compile Include="Entities\OutputPath.cs" />
@@ -91,6 +86,7 @@
<Compile Include="Entities\Profile.cs" />
<Compile Include="Entities\PTest.cs" />
<Compile Include="Entities\Test.cs" />
<Compile Include="Entities\TestInstance.cs" />
<Compile Include="Entities\TransitionSequence.cs" />
<Compile Include="Entities\TransitionStep.cs" />
<Compile Include="Entities\Uncertainty.cs" />
@@ -99,7 +95,6 @@
<Compile Include="Entities\VirtualBenchStep.cs" />
<Compile Include="CalendarEvent\Utils.cs" />
<Compile Include="FluentCommon.cs" />
<Compile Include="Formulas.cs" />
<Compile Include="Mappings\BenchPathMap.cs" />
<Compile Include="Mappings\ComponentMap.cs" />
<Compile Include="Mappings\ComponentProcedureMap.cs" />
@@ -125,8 +120,6 @@
<DesignTime>True</DesignTime>
<DependentUpon>Strings.resx</DependentUpon>
</Compile>
<Compile Include="Units.cs" />
<Compile Include="Utils.cs" />
</ItemGroup>
<ItemGroup>
<EmbeddedResource Include="Resources\Strings.cs.resx" />
@@ -141,9 +134,9 @@
<EmbeddedResource Include="Resources\Strings.zh-CN.resx" />
</ItemGroup>
<ItemGroup>
<ProjectReference Include="..\Users\Users.csproj">
<Project>{6E5CB0E9-E1B6-4E5D-AC6E-B1049E180F2B}</Project>
<Name>Users</Name>
<ProjectReference Include="..\Common\Common.csproj">
<Project>{c8939821-ba5c-4988-a3d0-bf53b74865c7}</Project>
<Name>Common</Name>
</ProjectReference>
</ItemGroup>
<Import Project="$(MSBuildToolsPath)\Microsoft.CSharp.targets" />
-118
View File
@@ -1,118 +0,0 @@
using System;
namespace Config
{
public class Data : Users.GlobalData
{
public const string AdminUsername = "admin";
public const string AdminPassword = "staratura";
public const string SQLiteDbFName = "SQLite.db";
#if MUNICH
public const int WMsCount = 3;
public const int LineSize = 3;
public const int CompoundWMsCount = 3;
public const int HeatMetersCount = 0;
public const int MaxPartNr = 3;
#elif DN100 || BADGER_STREDNA_TRAT || BADGER_VELKA_TRAT || CEVAK_200
public const int WMsCount = 3;
public const int LineSize = 3;
public const int CompoundWMsCount = 1;
public const int HeatMetersCount = 0;
public const int MaxPartNr = WMsCount / LineSize;
#elif FUZHOU_300 || FUZHOU_150 || IZRAEL_200 || GENESIS || SLM_150 || PETERSBURG_200
public const int WMsCount = 6;
public const int LineSize = 6;
public const int CompoundWMsCount = 1;
public const int HeatMetersCount = 0;
public const int MaxPartNr = 3;
#elif PUCHONG_200
public const int WMsCount = 6;
public const int LineSize = 6;
public const int CompoundWMsCount = 3;
public const int HeatMetersCount = 0;
public const int MaxPartNr = 3;
#elif DEWA_300 || ROMA_200
public const int WMsCount = 10;
public const int LineSize = 10;
public const int CompoundWMsCount = 1;
public const int HeatMetersCount = 0;
public const int MaxPartNr = WMsCount / LineSize;
#elif DUBAJ_50
public const int WMsCount = 10;
public const int LineSize = 5;
public const int CompoundWMsCount = 0;
public const int HeatMetersCount = 0;
public const int MaxPartNr = WMsCount / LineSize;
#elif IZRAEL_50
public const int WMsCount = 40;
public const int LineSize = 10;
public const int CompoundWMsCount = 0;
public const int HeatMetersCount = 0;
public const int MaxPartNr = WMsCount / LineSize;
#elif FUZHOU_100
public const int WMsCount = 10;
public const int LineSize = 10;
public const int CompoundWMsCount = 1;
public const int HeatMetersCount = 0;
public const int MaxPartNr = WMsCount / LineSize;
#elif TORINO_50 || BADGER_MALA_TRAT || BERLIN || GELSENWASSER
public const int WMsCount = 6;
public const int LineSize = 6;
public const int CompoundWMsCount = 1;
public const int HeatMetersCount = 0;
public const int MaxPartNr = 1;
#elif TORUN_50 || CEVAK_40 || MURES_40 || FUZHOU_50 || PETERSBURG_50 || KEMPNO_50 || BAHRAIN_50 || KRAKOW_50 || JUZNA_AFRIKA_50 || IZRAEL_25 || ZAMBIA || ZODINO || FEWA_50 || FILIPINY_50 || ALZIR_25
public const int WMsCount = 20;
public const int LineSize = 10;
public const int CompoundWMsCount = 1;
public const int HeatMetersCount = 0;
public const int MaxPartNr = WMsCount / LineSize;
#elif RUM_MOB
public const int WMsCount = 8;
public const int LineSize = 8;
public const int CompoundWMsCount = 1;
public const int HeatMetersCount = 0;
public const int MaxPartNr = WMsCount / LineSize;
#elif TURA_IPERL || TURA_IPERL_NEW
public const int WMsCount = 40;
public const int LineSize = 20;
public const int CompoundWMsCount = 1;
public const int HeatMetersCount = 0;
public const int MaxPartNr = WMsCount / LineSize;
#elif TURA_SPECIAL || SENTEC
public const int WMsCount = 6;
public const int LineSize = 6;
public const int CompoundWMsCount = 1;
public const int HeatMetersCount = 0;
public const int MaxPartNr = WMsCount / LineSize;
#elif SLM_50
public const int WMsCount = 12;
public const int LineSize = 12;
public const int CompoundWMsCount = 1;
public const int HeatMetersCount = 6;
public const int MaxPartNr = WMsCount / LineSize;
#elif SLM_END || WARSAW_END
public const int WMsCount = 10;
public const int LineSize = 5;
public const int CompoundWMsCount = 1;
public const int HeatMetersCount = 0;
public const int MaxPartNr = 4;
#elif MALTA_WSD25
public const int WMsCount = 6;
public const int LineSize = 6;
public const int CompoundWMsCount = 0;
public const int HeatMetersCount = 0;
public const int MaxPartNr = WMsCount / LineSize;
#endif
///
/// Database related: This object reference is set after a successful user login
///
public static DatabaseSettings CurrentBench;
public static double RealDensity = 0; /// true water density [kg/m3]
public static double AtTemperature = 0; /// measured at temperature [°C]
public static double Buoyancy = 0;
}
}
-58
View File
@@ -1,58 +0,0 @@
///
/// Copyright (c) 2013-2020 Sensus Slovensko a.s.
///
using System;
using System.Text;
using System.Xml.Serialization;
namespace Config
{
/// <summary>
/// Test bench database settings, contains bench name and settings od several databases
/// </summary>
public class DatabaseSettings : ICloneable
{
// Public fields
public string BenchName;
public bool IsRealBench;
public Users.DBSettings ProceduresDBSettings; /// Configuration database settings
public Users.DBSettings WaterMetersDBSettings; /// Results database settings
public Users.DBSettings EventsDBSettings; /// Events database settings
public Users.DBSettings UsersDBSettings; /// Shared configuration database settings
// Constructor
public DatabaseSettings()
{
BenchName = String.Empty; /// Empty string (avoid null)
IsRealBench = false;
ProceduresDBSettings = new Users.DBSettings(Users.Entities.DBType.MySql, string.Empty);
WaterMetersDBSettings = new Users.DBSettings(Users.Entities.DBType.MySql, string.Empty);
EventsDBSettings = new Users.DBSettings(Users.Entities.DBType.MySql, string.Empty);
UsersDBSettings = new Users.DBSettings(Users.Entities.DBType.MySql, string.Empty);
}
public object Clone()
{
DatabaseSettings result = new DatabaseSettings();
result.BenchName = BenchName;
result.IsRealBench = IsRealBench;
result.ProceduresDBSettings = (Users.DBSettings)ProceduresDBSettings.Clone();
result.WaterMetersDBSettings = (Users.DBSettings)WaterMetersDBSettings.Clone();
result.EventsDBSettings = (Users.DBSettings)EventsDBSettings.Clone();
result.UsersDBSettings = (Users.DBSettings)UsersDBSettings.Clone();
return result;
}
public override string ToString()
{
return string.Format("{0} config={1} results={2} events={3} users={4}",
BenchName,
ProceduresDBSettings.ConnectionString,
WaterMetersDBSettings.ConnectionString,
EventsDBSettings.ConnectionString,
UsersDBSettings.ConnectionString);
}
}
}
+3 -1
View File
@@ -14,6 +14,7 @@ namespace Config.Entities
public virtual string OriName { get; set; } /// Not mapped to database
public virtual float Qfrom { get; set; } /// Water flow in [m3/h]
public virtual float Qto { get; set; } /// Water flow in [m3/h]
public virtual string Selector { get; set; }
public virtual string TempMtrUp { get; set; }
public virtual string TempMtrDown { get; set; }
public virtual string PressMtrUp { get; set; }
@@ -46,7 +47,8 @@ namespace Config.Entities
result.Qfrom = Qfrom;
result.Qto = Qto;
result.TempMtrUp = TempMtrUp;
result.Selector = Selector;
result.TempMtrUp = TempMtrUp;
result.TempMtrDown = TempMtrDown;
result.PressMtrUp = PressMtrUp;
result.PressMtrDown = PressMtrDown;
+37 -36
View File
@@ -1,9 +1,10 @@
///
/// Copyright (c) 2013-2019 Sensus Slovensko a.s.
/// Copyright (c) 2013-2021 Sensus Slovensko a.s.
///
using System;
using System.Collections.Generic;
using System.IO;
using Common;
namespace Config.Entities
{
@@ -13,11 +14,11 @@ namespace Config.Entities
public virtual int ItemNr { get; set; }
public virtual string Name { get; set; }
public virtual string ClassName { get; set; }
public virtual string ParentName { get; set; }
public virtual DebugMode Mode { get; set; }
public virtual LogLevel Logging { get; set; }
public virtual string Parent { get; set; }
public virtual DebugMode DebugMode { get; set; }
public virtual LogLevel LogLevel { get; set; }
public virtual string Parameters { get; set; }
public virtual IList<MeasurementCorrection> Corrections { get; set; }
public virtual IList<MeasurementCorrection> Corrections { get; set; }
public virtual IList<Uncertainty> Uncertainties { get; set; }
/// ------------- Additional stuff not mapped into the database -------------
@@ -37,9 +38,9 @@ namespace Config.Entities
result.ItemNr = itemNr;
result.Name = name;
result.ClassName = className;
result.ParentName = parentName;
result.Mode = debugLevel;
result.Logging = logLevel;
result.Parent = parentName;
result.DebugMode = debugLevel;
result.LogLevel = logLevel;
result.Parameters = parameters;
return result;
}
@@ -51,9 +52,9 @@ namespace Config.Entities
result.ItemNr = ItemNr;
result.Name = Name;
result.ClassName = ClassName;
result.ParentName = ParentName;
result.Mode = Mode;
result.Logging = Logging;
result.Parent = Parent;
result.DebugMode = DebugMode;
result.LogLevel = LogLevel;
result.Parameters = Parameters;
return result;
}
@@ -62,9 +63,9 @@ namespace Config.Entities
{
output.WriteLine(Name);
output.WriteLine(ClassName);
output.WriteLine(ParentName);
output.WriteLine(Mode.ToString());
output.WriteLine(Logging.ToString());
output.WriteLine(Parent);
output.WriteLine(DebugMode.ToString());
output.WriteLine(LogLevel.ToString());
output.Write(Parameters);
output.Close();
@@ -76,28 +77,28 @@ namespace Config.Entities
result.Name = input.ReadLine();
result.ClassName = input.ReadLine();
result.ParentName = input.ReadLine();
result.Parent = input.ReadLine();
string line = input.ReadLine();
if (line.Equals(DebugMode.DetectedOff.ToString())) result.Mode = DebugMode.DetectedOff;
else if (line.Equals(DebugMode.DetectedOn.ToString())) result.Mode = DebugMode.DetectedOn;
else if (line.Equals(DebugMode.Normal.ToString())) result.Mode = DebugMode.Normal;
else if (line.Equals(DebugMode.AutoDetect.ToString())) result.Mode = DebugMode.AutoDetect;
else if (line.Equals(DebugMode.FailureDuringOperation.ToString())) result.Mode = DebugMode.FailureDuringOperation;
else if (line.Equals(DebugMode.Off.ToString())) result.Mode = DebugMode.Off;
else if (line.Equals(DebugMode.Record.ToString())) result.Mode = DebugMode.Record;
else if (line.Equals(DebugMode.Reply.ToString())) result.Mode = DebugMode.Reply;
else if (line.Equals(DebugMode.Simulate.ToString())) result.Mode = DebugMode.Simulate;
else if (line.Equals(DebugMode.Inherit.ToString())) result.Mode = DebugMode.Inherit;
if (line.Equals(DebugMode.DetectedOff.ToString())) result.DebugMode = DebugMode.DetectedOff;
else if (line.Equals(DebugMode.DetectedOn.ToString())) result.DebugMode = DebugMode.DetectedOn;
else if (line.Equals(DebugMode.Normal.ToString())) result.DebugMode = DebugMode.Normal;
else if (line.Equals(DebugMode.AutoDetect.ToString())) result.DebugMode = DebugMode.AutoDetect;
else if (line.Equals(DebugMode.FailureDuringOperation.ToString())) result.DebugMode = DebugMode.FailureDuringOperation;
else if (line.Equals(DebugMode.Off.ToString())) result.DebugMode = DebugMode.Off;
else if (line.Equals(DebugMode.Record.ToString())) result.DebugMode = DebugMode.Record;
else if (line.Equals(DebugMode.Replay.ToString())) result.DebugMode = DebugMode.Replay;
else if (line.Equals(DebugMode.Simulate.ToString())) result.DebugMode = DebugMode.Simulate;
else if (line.Equals(DebugMode.Inherit.ToString())) result.DebugMode = DebugMode.Inherit;
line = input.ReadLine();
if (line.Equals(LogLevel.Off.ToString())) result.Logging = LogLevel.Off;
else if (line.Equals(LogLevel.Fatal.ToString())) result.Logging = LogLevel.Fatal;
else if (line.Equals(LogLevel.Error.ToString())) result.Logging = LogLevel.Error;
else if (line.Equals(LogLevel.Warn.ToString())) result.Logging = LogLevel.Warn;
else if (line.Equals(LogLevel.Info.ToString())) result.Logging = LogLevel.Info;
else if (line.Equals(LogLevel.Debug.ToString())) result.Logging = LogLevel.Debug;
else if (line.Equals(LogLevel.All.ToString())) result.Logging = LogLevel.All;
if (line.Equals(LogLevel.Off.ToString())) result.LogLevel = LogLevel.Off;
else if (line.Equals(LogLevel.Fatal.ToString())) result.LogLevel = LogLevel.Fatal;
else if (line.Equals(LogLevel.Error.ToString())) result.LogLevel = LogLevel.Error;
else if (line.Equals(LogLevel.Warn.ToString())) result.LogLevel = LogLevel.Warn;
else if (line.Equals(LogLevel.Info.ToString())) result.LogLevel = LogLevel.Info;
else if (line.Equals(LogLevel.Debug.ToString())) result.LogLevel = LogLevel.Debug;
else if (line.Equals(LogLevel.All.ToString())) result.LogLevel = LogLevel.All;
result.Parameters = string.Empty;
line = input.ReadLine();
@@ -118,12 +119,12 @@ namespace Config.Entities
result += indent + "ItemNr = " + (ItemNr + 1).ToString() + Environment.NewLine;
result += indent + "Name = " + Name + Environment.NewLine;
result += indent + "ClassName = " + ClassName + Environment.NewLine;
if (ParentName != null)
if (Parent != null)
{
result += indent + "ParentName = " + ParentName + Environment.NewLine;
result += indent + "ParentName = " + Parent + Environment.NewLine;
}
result += indent + "DebugLevel = " + Mode.ToString() + Environment.NewLine;
result += indent + "LogLevel = " + Logging.ToString() + Environment.NewLine;
result += indent + "DebugLevel = " + DebugMode.ToString() + Environment.NewLine;
result += indent + "LogLevel = " + LogLevel.ToString() + Environment.NewLine;
result += indent + "Parameters = " + Parameters + Environment.NewLine;
return result;
+2 -1
View File
@@ -1,8 +1,9 @@
///
/// Copyright (c) 2013-2018 Sensus Slovensko a.s.
/// Copyright (c) 2013-2021 Sensus Slovensko a.s.
///
using System;
using System.IO;
using Common;
namespace Config.Entities
{
+2 -1
View File
@@ -1,8 +1,9 @@
///
/// Copyright (c) 2013-2018 Sensus Slovensko a.s.
/// Copyright (c) 2013-2021 Sensus Slovensko a.s.
///
using System;
using System.IO;
using Common;
namespace Config.Entities
{
-645
View File
@@ -1,645 +0,0 @@
///
/// Copyright (c) 2013-2018 Sensus Slovensko a.s.
///
using System;
using System.Collections.Generic;
using System.Reflection;
namespace Config.Entities
{
/// <summary>
/// Helper class to assign descriptions to enum values
/// </summary>
public class Description : Attribute
{
public string Text;
public Description(string t)
{
Text = t;
}
}
public static class GetDescription
{
/// Extension method for enum-s
public static string ToDescription(this Enum en)
{
Type type = en.GetType();
MemberInfo[] memInfo = type.GetMember(en.ToString());
if (memInfo != null && memInfo.Length > 0)
{
object[] attrs = memInfo[0].GetCustomAttributes(typeof(Description), false);
if (attrs != null && attrs.Length > 0)
return ((Description)attrs[0]).Text;
}
return en.ToString(); /// Return ToString() value in case there is no description
}
}
/// <summary>
/// Flags returned by each device configuration control Verify(...) function.
/// </summary>
public enum CfgUpdateFlags
{
None = 0,
Error = 0x1, /// Some settings in the user control are invalid and cannot be set
Warning = 0x02, /// Some settings in the user control are suspicious, can be set after user confirmation
RestartRqrd = 0x04, /// TBF program restart is required to apply all changed parameters
AnyChange = 0x08, /// At least one parameter have changed
VolatileChange = 0x10,
InvokeCfgChange = 0x20, /// Invoke CfgChange handler of the component
}
public enum RemoteDBUse
{
[Description("Local DB only")] LocalDBOnly,
[Description("Remote DB only")] RemoteDBOnly,
[Description("Both DB-s, local 1st")] BothDBsLocalFirst,
[Description("Both DB-s, remote 1st")] BothDBsRemoteFirst,
Count
}
/// <summary>
/// Contains a procedure name and a database specification (local/remote).
/// </summary>
public class ProcedureInfo
{
public readonly string Name;
public readonly bool IsRemote;
public ProcedureInfo(string name, bool isRemote)
{
Name = name;
IsRemote = isRemote;
}
}
public enum ProcedureState
{
Active,
History,
Count,
}
public enum ProfileType
{
Q3R,
QnClassColdWater,
QnClassHotWater,
QpQi,
Manual,
Count,
}
public enum ErrorLimitType
{
Manual,
QpClass,
Count,
}
/// <summary> Kind of meters for the procedure / test </summary>
public enum MetersKind
{
#if LANG_DE
[Description("Wasserzähler")] Single,
[Description("Verbundwasserzähler")] Combined,
[Description("Wärmezähler")] HeatMeter,
#elif LANG_FR
[Description("Compteurs eau")] Single,
[Description("Mètres composés")] Combined,
[Description("Thermomètres")] HeatMeter,
#elif LANG_CS
[Description("Vodoměry")] Single,
[Description("Kombinované vodoměry")] Combined,
[Description("Měřiče tepla")] HeatMeter,
#elif LANG_RU
[Description("Счетчик")] Single,
[Description("Комбинированный счетчик")] Combined,
[Description("Счетчик тепла")] HeatMeter,
#else
[Description("Water meters")] Single,
[Description("Compound water meters")] Combined,
[Description("Heat meters")] HeatMeter,
#endif
}
public enum CompoundMeterId : byte
{
Single,
CompoundMain,
CompoundAux,
Compound,
HeatMeterVolume,
HeatMeterEnergy,
SingleOrCompound, /// Only used when querying results
}
public enum Medium
{
[Description("")] NotSpecified,
#if LANG_PL
[Description("zimna")] ColdWater,
[Description("ciepła")] HotWater,
#elif LANG_IT
[Description("freddo")] ColdWater,
[Description("caldo")] HotWater,
#elif LANG_FR
[Description("eau froide")] ColdWater,
[Description("eau chaude")] HotWater,
#else
[Description("cold")] ColdWater,
[Description("hot")] HotWater,
#endif
Count
}
public enum Mounting
{
[Description("")] NotSpecified,
#if LANG_DE
[Description("H")] H, /// horizontal
[Description("V")] V, /// vertical
[Description("STR")] S, /// standrohre
[Description("F")] F, /// fall
#else
[Description("H")] H, /// horizontal
[Description("V")] V, /// vertical
[Description("S")] S, /// steig
[Description("F")] F, /// fall
#endif
Count
}
public enum TemperatureClass
{
[Description("")] NotSpecified,
[Description("T30")] T30,
[Description("T50")] T50,
[Description("T70")] T70,
[Description("T90")] T90,
[Description("T130")] T130,
[Description("T180")] T180,
[Description("T30/70")] T30_70,
[Description("T30/90")] T30_90,
[Description("T30/130")] T30_130,
[Description("T30/180")] T30_180,
[Description("30")] t30,
[Description("50")] t50,
[Description("70")] t70,
[Description("90")] t90,
[Description("130")] t130,
[Description("180")] t180,
Count
}
public enum FlowProfileSensitivityClass
{
[Description("")] NotSpecified,
[Description("U0")] U0, /// ?
[Description("D0")] D0, /// ?
Count
}
public enum PressureLossClass
{
[Description("")] NotSpecified,
[Description("dp63")] dp63, /// 0.063 MPa = 0.63 bar, TODO: Change to "Δp63"
[Description("dp40")] dp40, /// 0.040 MPa = 0.40 bar
[Description("dp25")] dp25, /// 0.025 MPa = 0.25 bar
[Description("dp16")] dp16, /// 0.016 MPa = 0.16 bar
[Description("dp10")] dp10, /// 0.010 MPa = 0.10 bar
Count
}
/// <summary> Maximum Admissible Pressure </summary>
public enum MaxAdmissiblePressure
{
[Description("")] NotSpecified,
[Description("MAP6")] MAP6,
[Description("MAP10")] MAP10,
[Description("MAP16")] MAP16,
[Description("MAP25")] MAP25,
[Description("MAP40")] MAP40,
Count
}
/// <summary> Register reader type </summary>
public enum RegisterReaderType
{
Unknown,
Pulses, /// Sick, optical and similar
Camera, /// CLP1611
DataStream, /// iPerl
Manual, /// Entered by human via form (also from camera images)
Count
}
/// <summary> Transition step is finished when this condition is fulfilled </summary>
public enum StepCondition
{
None,
Scale1Empty,
Scale2Empty,
Scale3Empty,
AllScalesEmpty,
Count
}
public enum MeretProtocol
{
[Description("<undefined>")] Undefined,
[Description("Meret (obsolete)")] Meret,
[Description("Modbus")] Modbus,
Count
}
public enum Publish : sbyte
{
#if LANG_DE
/// german
[Description("nie")] Never = 0,
[Description("immer")] Always = 1,
[Description("Bildschirm")] OnScreen = 2,
[Description("intern")] Internal = 3,
#elif LANG_FR
[Description("jamais")] Never = 0,
[Description("toujours")] Always = 1,
[Description("À l'écran")] OnScreen = 2,
[Description("interne")] Internal = 3,
#elif LANG_CS
/// czech
[Description("nikdy")] Never = 0,
[Description("vždy")] Always = 1,
[Description("na obrazovku")] OnScreen = 2,
[Description("interně")] Internal = 3,
#elif LANG_SK
/// slovak
[Description("nikdy")] Never = 0,
[Description("vždy")] Always = 1,
[Description("na obrazovku")] OnScreen = 2,
[Description("interne")] Internal = 3,
#elif LANG_PL
/// polish
[Description("nigdy")] Never = 0,
[Description("zawsze")] Always = 1,
[Description("na ekranie")] OnScreen = 2,
[Description("wewnętrznie")] Internal = 3,
#elif LANG_RU
/// russian
[Description("никогда")] Never = 0,
[Description("всегда")] Always = 1,
[Description("толька экран")] OnScreen = 2,
[Description("внутренно")] Internal = 3,
#else
/// english
[Description("Never")] Never = 0,
[Description("Always")] Always = 1,
[Description("On screen")] OnScreen = 2,
[Description("Internal")] Internal = 3,
#endif
Count
}
public enum MassMethod : byte
{
#if LANG_DE
/// nemecky
[Description("Waage")] Scale,
[Description("Spanne")] Spread,
[Description("Standardabw.")] StdDev,
#elif LANG_FR
[Description("Balance")] Scale,
[Description("Envergure")] Spread,
[Description("Déviation std.")] StdDev,
#elif LANG_CS
/// cesky
[Description("váhou")] Scale,
[Description("max.rozdíl")] Spread,
[Description("std.dev.")] StdDev,
#else
[Description("Scale")] Scale,
[Description("Spread")] Spread,
[Description("Std.dev.")] StdDev,
#endif
Count
}
/// <summary>
/// Three state test results and/or water meter result (Algeria PT25 requirement).
/// NearlyOK means error is within error limits not narrowed by uncertainty
/// OK: Uncertainty + ErrLimLo <= error <= ErrLimHi - Uncertainty
/// NearlyOK: not OK but stil ErrLimLo <= error <= ErrLimHi
/// Nok: otherwise
/// </summary>
public enum ThreeState
{
#if LANG_FR
[Description("NC")] Nok, /// Totally failed: not OK and not NearlyOK
[Description("2e/Ff")] NearlyOK, /// Nearly OK, not OK but not totally failed
[Description("***")] OK, /// OK
#else
[Description("NOK")] Nok, /// Totally failed: not OK and not NearlyOK
[Description("Nearly OK")] NearlyOK, /// Nearly OK, not OK but not totally failed
[Description("OK")] OK, /// OK
#endif
Count
}
public enum TestProfile
{
UserDefined,
UserDefinedHeatMeter,
Protected, /// The first protected one
ProtectedHeatMeter,
}
public enum Progress
{
JustStarted,
TransitionBefore,
SwitchingFlowDetection,
FlowSetting,
Aborted, /// Use as an argument when a test was aborted
Test,
TransitionAfter,
Completed,
Count,
}
public enum Device
{
Screen,
Printer,
Disk,
}
public enum PageOrientation
{
Portrait,
Landscape,
Count,
}
public enum ItemCategory
{
#if LANG_DE
[Description("Allgemein")] Other,
[Description("Prüfstanddaten")] BenchData,
[Description("Prüfstandergebnisse")] BenchResult,
[Description("Prüfpunktdaten")] TestData,
[Description("Prüfpunktergebnisse")] TestResult,
[Description("Wasserzelledaten")] MeterData,
[Description("Wasserzelleergebnisse")] MeterResult,
#elif LANG_FR
[Description("Autres")] Other,
[Description("Données de banc")] BenchData,
[Description("Résultats du banc")] BenchResult,
[Description("Données de test")] TestData,
[Description("Résultats de test")] TestResult,
[Description("Données du compteur d'eau")] MeterData,
[Description("Résultats du compteur d'eau")] MeterResult,
#else
[Description("Other")] Other,
[Description("Bench data")] BenchData,
[Description("Bench result")] BenchResult,
[Description("Test data")] TestData,
[Description("Test result")] TestResult,
[Description("Meter data")] MeterData,
[Description("Meter result")] MeterResult,
#endif
Count,
}
/// <summary> Possible modes of operation of components and devices. </summary>
public enum DebugMode
{
#if LANG_DE
[Description("Erkennen-aus")] DetectedOff = -2,
[Description("Erkennen-ein")] DetectedOn = -1,
[Description("Normal")] Normal = 0, /// Normal operation
[Description("Auto-erkennen")] AutoDetect, /// The component (device) will be auto-detected
[Description("Fehler")] FailureDuringOperation, /// Failure during operation -> disabled
[Description("Aus")] Off, /// The component is off
[Description("Aufzeichnen")] Record,
[Description("Reply")] Reply,
[Description("Simuliert")] Simulate, /// Test bench simulation, this mode does not require any hardware
[Description("Geerbt")] Inherit,
#elif LANG_FR
[Description("Détection automatique: Éteindre")] DetectedOff = -2,
[Description("Détection automatique: Allumé")] DetectedOn = -1,
[Description("Ordinaire")] Normal = 0,
[Description("Détection automatique")] AutoDetect,
[Description("Erreur d'exécution")] FailureDuringOperation,
[Description("Éteindre")] Off,
[Description("Record")] Record,
[Description("Répondre")] Reply,
[Description("Simuler")] Simulate,
[Description("Hériter")] Inherit,
#else
[Description("Detected off")] DetectedOff = -2,
[Description("Detected on")] DetectedOn = -1,
[Description("Normal")] Normal = 0, /// Normal operation
[Description("Auto detect")] AutoDetect, /// The component (device) will be auto-detected
[Description("Run-time error")] FailureDuringOperation, /// Failure during operation -> disabled
[Description("Off")] Off, /// The component is off
[Description("Record")] Record,
[Description("Reply")] Reply,
[Description("Simulate")] Simulate, /// Test bench simulation, this mode does not require any hardware
[Description("Inherit")] Inherit,
#endif
Count,
}
public enum LogLevel
{
#if LANG_DE
[Description("Aus")] Off,
[Description("Schwerwiegend")] Fatal,
[Description("Fehler")] Error,
[Description("Warnung")] Warn,
[Description("Info")] Info,
[Description("Debug")] Debug,
[Description("Alles")] All,
#else
[Description("Off")] Off,
[Description("Fatal")] Fatal,
[Description("Error")] Error,
[Description("Warn")] Warn,
[Description("Info")] Info,
[Description("Debug")] Debug,
[Description("All")] All,
#endif
Count,
}
/// <summary> Arrangement of tests </summary>
public enum TestsArrangement
{
Rows,
Columns,
}
/// <summary> Arrangement of meters </summary>
public enum MetersArrangement
{
Vertically,
Horizontally,
}
public enum Alignment
{
#if LANG_DE
[Description("links")] Left,
[Description("zentriert")] Center,
[Description("rechts")] Right,
[Description("angepasst")] Justified,
#elif LANG_FR
[Description("gauche")] Left,
[Description("centré")] Center,
[Description("droit")] Right,
[Description("justifié")] Justified,
#else
[Description("Left")] Left,
[Description("Center")] Center,
[Description("Right")] Right,
[Description("Justified")] Justified,
#endif
Count
}
public enum VertAlignment
{
[Description("Top")] Top,
[Description("Middle")] Middle,
[Description("Bottom")] Bottom,
}
public enum TableForm
{
None,
Rows,
Columns,
ColumnsPL,
Count,
}
public enum ImageRotation
{
[Description("0 deg")] None,
[Description("90 deg")] Deg90,
[Description("180 deg")] Deg180,
[Description("270 deg")] Deg270,
Count
}
public enum CameraDisplayResolution
{
Small,
Medium,
Large,
// FullScreen,
Count,
}
public enum ErrorFlagsMode : sbyte
{
#if LANG_DE
[Description("aus")] Off,
[Description("info")] Info,
[Description("ein")] On,
#elif LANG_FR
[Description("éteindre")] Off,
[Description("info")] Info,
[Description("allumé")] On,
#elif LANG_CS
[Description("vypnuto")] Off,
[Description("info")] Info,
[Description("zapnuto")] On,
#elif LANG_RU
[Description("выкл")] Off,
[Description("инфо")] Info,
[Description("вкл")] On,
#elif LANG_PL
[Description("nie")] Off,
[Description("info")] Info,
[Description("tak")] On,
#else // LANG_EN
[Description("off")] Off,
[Description("info")] Info,
[Description("on")] On,
#endif
Count
}
public enum ErrorFlagMask : long
{
E1 = (1L << 0), /// shift = 0, E1 = 1L
E2 = (1L << 1),
E3 = (1L << 2),
E4 = (1L << 3),
E5 = (1L << 4),
E6 = (1L << 5),
E7 = (1L << 6),
E8 = (1L << 7),
E9 = (1L << 8),
E10 = (1L << 9),
E11 = (1L << 10),
E12 = (1L << 11),
E13 = (1L << 12),
E14 = (1L << 13),
E15 = (1L << 14),
E16 = (1L << 15),
E17 = (1L << 16),
E18 = (1L << 17),
E19 = (1L << 18),
E20 = (1L << 19),
E21 = (1L << 20),
E22 = (1L << 21),
E23 = (1L << 22),
E24 = (1L << 23),
E25 = (1L << 24),
E26 = (1L << 25), /// iPERL: Invalid Q2 correction factors, mismatch between factors in the water meter and in DB
E27 = (1L << 26), /// iPERL: Wrong counting direction
E28 = (1L << 27), /// iPERL: Missing workflow step (assembly or test)
E29 = (1L << 28),
E30 = (1L << 29),
E31 = (1L << 30),
E32 = (1L << 31),
E33 = (1L << 32),
E34 = (1L << 33),
E35 = (1L << 34),
E36 = (1L << 35),
E37 = (1L << 36),
E38 = (1L << 37),
E39 = (1L << 38),
E40 = (1L << 39),
E41 = (1L << 40),
E42 = (1L << 41),
E43 = (1L << 42),
E44 = (1L << 43),
E45 = (1L << 44),
E46 = (1L << 45),
E47 = (1L << 46),
E48 = (1L << 47),
E49 = (1L << 48),
E50 = (1L << 49),
E51 = (1L << 50),
E52 = (1L << 51),
E53 = (1L << 52),
E54 = (1L << 53),
E55 = (1L << 54),
E56 = (1L << 55),
E57 = (1L << 56),
E58 = (1L << 57),
E59 = (1L << 58),
E60 = (1L << 59),
E61 = (1L << 60),
E62 = (1L << 61),
E63 = (1L << 62),
}
}
+9 -7
View File
@@ -14,8 +14,9 @@ namespace Config.Entities
public virtual string OriName { get; set; } /// Not mapped to database
public virtual float Qfrom { get; set; } /// Water flow in [m3/h]
public virtual float Qto { get; set; } /// Water flow in [m3/h]
public virtual string Selector { get; set; }
public virtual string Pump { get; set; }
public virtual string RegulValvesPct { get; set; } /// Positions of regulation valves in % separated by ';'
public virtual string RegVPositions { get; set; } /// Positions of regulation valves in % separated by ';'
/// Valves
public virtual string ValvesOpen { get; set; }
@@ -40,12 +41,13 @@ namespace Config.Entities
{
FeedingPath result = new FeedingPath(name, itemNr);
result.Qfrom = Qfrom;
result.Qto = Qto;
result.Pump = Pump;
result.RegulValvesPct = RegulValvesPct;
result.ValvesOpen = ValvesOpen;
result.ValvesClose = ValvesClose;
result.Qfrom = Qfrom;
result.Qto = Qto;
result.Selector = Selector;
result.Pump = Pump;
result.RegVPositions = RegVPositions;
result.ValvesOpen = ValvesOpen;
result.ValvesClose = ValvesClose;
return result;
}
+4 -3
View File
@@ -1,15 +1,16 @@
///
/// Copyright (c) 2013-2020 Sensus Slovensko a.s.
/// Copyright (c) 2013-2021 Sensus Slovensko a.s.
///
using System;
using System.Collections.Generic;
using Common;
namespace Config.Entities
{
public class Group
{
public virtual int Id { get; protected set; }
public virtual Users.Entities.GID GID { get; set; }
public virtual GID GID { get; set; }
public virtual long AccessFlags { get; set; } /// Bitfield of access flags: bit0 .. bit62
public virtual IList<User> Users { get; set; } /// Group can be a member of a list of users
@@ -18,7 +19,7 @@ namespace Config.Entities
Users = new List<User>();
}
public Group(Users.Entities.GID gid)
public Group(GID gid)
: this()
{
GID = gid;
-44
View File
@@ -1,44 +0,0 @@
///
/// Copyright (c) 2018 Sensus Slovensko a.s.
///
using System;
namespace Config.Entities
{
public enum Side
{
#if LANG_CS
[Description("Levá")] Left,
[Description("Pravá")] Right,
#else
[Description("Left")] Left,
[Description("Right")] Right,
#endif
Count
}
public enum FlowDir
{
R_L,
L_R,
Count
}
public enum Counting
{
Arbitrary,
Positive,
Negative,
Count
}
public enum OptoHeadState
{
Disabled,
OptoAndDirOK,
OptoNok,
DirNok,
Count
}
}
+59 -3
View File
@@ -1,11 +1,12 @@
///
/// Copyright (c) 2013-2018 Sensus Slovensko a.s.
/// Copyright (c) 2013-2021 Sensus Slovensko a.s.
///
using System;
using System.Collections.Generic;
namespace Config.Entities
{
public class MeasurementCorrection
public class MeasurementCorrection : Common.IMeasurementCorrection
{
public virtual int Id { get; protected set; }
public virtual int RangeIx { get; set; } /// 0..5
@@ -21,5 +22,60 @@ namespace Config.Entities
{
RangeIx = rangeIx;
}
}
/// <summary>
/// Calculates corrected value from a list of corrections by interpolation.
/// It is assumed that values in the list 'corrections' are sorted.
/// </summary>
/// <param name="rawMeasurement">Raw uncorrected value</param>
/// <param name="corrections">Sorted (value, correction) pairs</param>
/// <returns>Corrected value</returns>
public static double CorrectedValue(double rawValue, IList<MeasurementCorrection> corrections)
{
return rawValue + GetCorrection(rawValue, corrections);
}
/// <summary>
/// Get a correction from a list of corrections by interpolation.
/// It is assumed that values in the list 'corrections' are sorted.
/// </summary>
/// <param name="rawMeasurement">Raw uncorrected value</param>
/// <param name="corrections">Sorted (value, correction) pairs</param>
/// <returns>Corrected value</returns>
public static double GetCorrection(double rawValue, IList<MeasurementCorrection> corrections)
{
if ((corrections == null) || (corrections.Count == 0)) return 0; /// No correction
if (rawValue < corrections[0].Measurement)
{
/// rawValue is below the lowest value in the correction table
return corrections[0].Correction;
}
int count = corrections.Count;
for (int i = 1; i < count; i++)
{
if (rawValue < corrections[0].Measurement)
{
double d1 = rawValue - corrections[i - 1].Measurement;
double d2 = corrections[i].Measurement - rawValue;
if (d1 + d2 <= float.Epsilon)
{
/// Neigboring values in the corection table are close to each other -> calculate the average
return (corrections[i - 1].Correction + corrections[i].Correction) / 2.0;
}
else
{
/// Interpolate the correction from neigboring values in the corection table
return (corrections[i - 1].Correction * d2 + corrections[i].Correction * d1) / (d1 + d2);
}
}
}
/// rawValue is above the highest value in the correction table
return corrections[count - 1].Correction;
}
}
}
+61 -141
View File
@@ -1,5 +1,5 @@
///
/// Copyright (c) 2013-2017 Sensus Metering Systems
/// Copyright (c) 2013-2021 Sensus Slovensko a.s.
///
using System;
using System.Collections.Generic;
@@ -14,15 +14,15 @@ namespace Config.Entities
public virtual string OriName { get; set; } /// Not mapped to database
/// Sensors
public virtual string Sensor1 { get; set; }
public virtual string Sensor2 { get; set; }
public virtual string Sensor3 { get; set; }
public virtual string Sensor4 { get; set; }
public virtual string Sensor5 { get; set; }
public virtual string Sensor6 { get; set; }
public virtual string Sensor7 { get; set; }
public virtual string Sensor8 { get; set; }
public virtual string Sensor9 { get; set; }
public virtual string Sensor1 { get; set; }
public virtual string Sensor2 { get; set; }
public virtual string Sensor3 { get; set; }
public virtual string Sensor4 { get; set; }
public virtual string Sensor5 { get; set; }
public virtual string Sensor6 { get; set; }
public virtual string Sensor7 { get; set; }
public virtual string Sensor8 { get; set; }
public virtual string Sensor9 { get; set; }
public virtual string Sensor10 { get; set; }
public virtual string Sensor11 { get; set; }
public virtual string Sensor12 { get; set; }
@@ -34,26 +34,6 @@ namespace Config.Entities
public virtual string Sensor18 { get; set; }
public virtual string Sensor19 { get; set; }
public virtual string Sensor20 { get; set; }
public virtual string Sensor21 { get; set; }
public virtual string Sensor22 { get; set; }
public virtual string Sensor23 { get; set; }
public virtual string Sensor24 { get; set; }
public virtual string Sensor25 { get; set; }
public virtual string Sensor26 { get; set; }
public virtual string Sensor27 { get; set; }
public virtual string Sensor28 { get; set; }
public virtual string Sensor29 { get; set; }
public virtual string Sensor30 { get; set; }
public virtual string Sensor31 { get; set; }
public virtual string Sensor32 { get; set; }
public virtual string Sensor33 { get; set; }
public virtual string Sensor34 { get; set; }
public virtual string Sensor35 { get; set; }
public virtual string Sensor36 { get; set; }
public virtual string Sensor37 { get; set; }
public virtual string Sensor38 { get; set; }
public virtual string Sensor39 { get; set; }
public virtual string Sensor40 { get; set; }
/// ------------- Additional stuff not mapped into the database -------------
@@ -71,15 +51,15 @@ namespace Config.Entities
public virtual MetersPath Clone(string name, int itemNr)
{
MetersPath result = new MetersPath(name, itemNr);
result.Sensor1 = Sensor1;
result.Sensor2 = Sensor2;
result.Sensor3 = Sensor3;
result.Sensor4 = Sensor4;
result.Sensor5 = Sensor5;
result.Sensor6 = Sensor6;
result.Sensor7 = Sensor7;
result.Sensor8 = Sensor8;
result.Sensor9 = Sensor9;
result.Sensor1 = Sensor1;
result.Sensor2 = Sensor2;
result.Sensor3 = Sensor3;
result.Sensor4 = Sensor4;
result.Sensor5 = Sensor5;
result.Sensor6 = Sensor6;
result.Sensor7 = Sensor7;
result.Sensor8 = Sensor8;
result.Sensor9 = Sensor9;
result.Sensor10 = Sensor10;
result.Sensor11 = Sensor11;
result.Sensor12 = Sensor12;
@@ -91,119 +71,59 @@ namespace Config.Entities
result.Sensor18 = Sensor18;
result.Sensor19 = Sensor19;
result.Sensor20 = Sensor20;
result.Sensor21 = Sensor21;
result.Sensor22 = Sensor22;
result.Sensor23 = Sensor23;
result.Sensor24 = Sensor24;
result.Sensor25 = Sensor25;
result.Sensor26 = Sensor26;
result.Sensor27 = Sensor27;
result.Sensor28 = Sensor28;
result.Sensor29 = Sensor29;
result.Sensor30 = Sensor30;
result.Sensor31 = Sensor31;
result.Sensor32 = Sensor32;
result.Sensor33 = Sensor33;
result.Sensor34 = Sensor34;
result.Sensor35 = Sensor35;
result.Sensor36 = Sensor36;
result.Sensor37 = Sensor37;
result.Sensor38 = Sensor38;
result.Sensor39 = Sensor39;
result.Sensor40 = Sensor40;
return result;
}
/// Returns the component name
public virtual string GetSensor(int i)
public virtual string GetSensor(int wmNr0)
{
if (i == 0) return Sensor1;
else if (i == 1) return Sensor2;
else if (i == 2) return Sensor3;
else if (i == 3) return Sensor4;
else if (i == 4) return Sensor5;
else if (i == 5) return Sensor6;
else if (i == 6) return Sensor7;
else if (i == 7) return Sensor8;
else if (i == 8) return Sensor9;
else if (i == 9) return Sensor10;
else if (i == 10) return Sensor11;
else if (i == 11) return Sensor12;
else if (i == 12) return Sensor13;
else if (i == 13) return Sensor14;
else if (i == 14) return Sensor15;
else if (i == 15) return Sensor16;
else if (i == 16) return Sensor17;
else if (i == 17) return Sensor18;
else if (i == 18) return Sensor19;
else if (i == 19) return Sensor20;
else if (i == 20) return Sensor21;
else if (i == 21) return Sensor22;
else if (i == 22) return Sensor23;
else if (i == 23) return Sensor24;
else if (i == 24) return Sensor25;
else if (i == 25) return Sensor26;
else if (i == 26) return Sensor27;
else if (i == 27) return Sensor28;
else if (i == 28) return Sensor29;
else if (i == 29) return Sensor30;
else if (i == 30) return Sensor31;
else if (i == 31) return Sensor32;
else if (i == 32) return Sensor33;
else if (i == 33) return Sensor34;
else if (i == 34) return Sensor35;
else if (i == 35) return Sensor36;
else if (i == 36) return Sensor37;
else if (i == 37) return Sensor38;
else if (i == 38) return Sensor39;
else if (i == 39) return Sensor40;
if (wmNr0 == 0) return Sensor1;
else if (wmNr0 == 1) return Sensor2;
else if (wmNr0 == 2) return Sensor3;
else if (wmNr0 == 3) return Sensor4;
else if (wmNr0 == 4) return Sensor5;
else if (wmNr0 == 5) return Sensor6;
else if (wmNr0 == 6) return Sensor7;
else if (wmNr0 == 7) return Sensor8;
else if (wmNr0 == 8) return Sensor9;
else if (wmNr0 == 9) return Sensor10;
else if (wmNr0 == 10) return Sensor11;
else if (wmNr0 == 11) return Sensor12;
else if (wmNr0 == 12) return Sensor13;
else if (wmNr0 == 13) return Sensor14;
else if (wmNr0 == 14) return Sensor15;
else if (wmNr0 == 15) return Sensor16;
else if (wmNr0 == 16) return Sensor17;
else if (wmNr0 == 17) return Sensor18;
else if (wmNr0 == 18) return Sensor19;
else if (wmNr0 == 19) return Sensor20;
else return null;
}
/// Sets the component name
public virtual void SetSensor(int i, string cmpntName)
public virtual void SetSensor(int wmNr0, string cmpntName)
{
if (i == 0) Sensor1 = cmpntName;
else if (i == 1) Sensor2 = cmpntName;
else if (i == 2) Sensor3 = cmpntName;
else if (i == 3) Sensor4 = cmpntName;
else if (i == 4) Sensor5 = cmpntName;
else if (i == 5) Sensor6 = cmpntName;
else if (i == 6) Sensor7 = cmpntName;
else if (i == 7) Sensor8 = cmpntName;
else if (i == 8) Sensor9 = cmpntName;
else if (i == 9) Sensor10 = cmpntName;
else if (i == 10) Sensor11 = cmpntName;
else if (i == 11) Sensor12 = cmpntName;
else if (i == 12) Sensor13 = cmpntName;
else if (i == 13) Sensor14 = cmpntName;
else if (i == 14) Sensor15 = cmpntName;
else if (i == 15) Sensor16 = cmpntName;
else if (i == 16) Sensor17 = cmpntName;
else if (i == 17) Sensor18 = cmpntName;
else if (i == 18) Sensor19 = cmpntName;
else if (i == 19) Sensor20 = cmpntName;
else if (i == 20) Sensor21 = cmpntName;
else if (i == 21) Sensor22 = cmpntName;
else if (i == 22) Sensor23 = cmpntName;
else if (i == 23) Sensor24 = cmpntName;
else if (i == 24) Sensor25 = cmpntName;
else if (i == 25) Sensor26 = cmpntName;
else if (i == 26) Sensor27 = cmpntName;
else if (i == 27) Sensor28 = cmpntName;
else if (i == 28) Sensor29 = cmpntName;
else if (i == 29) Sensor30 = cmpntName;
else if (i == 30) Sensor31 = cmpntName;
else if (i == 31) Sensor32 = cmpntName;
else if (i == 32) Sensor33 = cmpntName;
else if (i == 33) Sensor34 = cmpntName;
else if (i == 34) Sensor35 = cmpntName;
else if (i == 35) Sensor36 = cmpntName;
else if (i == 36) Sensor37 = cmpntName;
else if (i == 37) Sensor38 = cmpntName;
else if (i == 38) Sensor39 = cmpntName;
else if (i == 39) Sensor40 = cmpntName;
if (wmNr0 == 0) Sensor1 = cmpntName;
else if (wmNr0 == 1) Sensor2 = cmpntName;
else if (wmNr0 == 2) Sensor3 = cmpntName;
else if (wmNr0 == 3) Sensor4 = cmpntName;
else if (wmNr0 == 4) Sensor5 = cmpntName;
else if (wmNr0 == 5) Sensor6 = cmpntName;
else if (wmNr0 == 6) Sensor7 = cmpntName;
else if (wmNr0 == 7) Sensor8 = cmpntName;
else if (wmNr0 == 8) Sensor9 = cmpntName;
else if (wmNr0 == 9) Sensor10 = cmpntName;
else if (wmNr0 == 10) Sensor11 = cmpntName;
else if (wmNr0 == 11) Sensor12 = cmpntName;
else if (wmNr0 == 12) Sensor13 = cmpntName;
else if (wmNr0 == 13) Sensor14 = cmpntName;
else if (wmNr0 == 14) Sensor15 = cmpntName;
else if (wmNr0 == 15) Sensor16 = cmpntName;
else if (wmNr0 == 16) Sensor17 = cmpntName;
else if (wmNr0 == 17) Sensor18 = cmpntName;
else if (wmNr0 == 18) Sensor19 = cmpntName;
else if (wmNr0 == 19) Sensor20 = cmpntName;
}
}
}
+15 -15
View File
@@ -14,14 +14,14 @@ namespace Config.Entities
public virtual string OriName { get; set; } /// Not mapped to database
public virtual float Qfrom { get; set; } /// Water flow in [m3/h]
public virtual float Qto { get; set; } /// Water flow in [m3/h]
public virtual string RegulValve { get; set; }
public virtual string Selector { get; set; }
public virtual string RegValve { get; set; }
public virtual string FlowMeter { get; set; }
public virtual float PidCoef { get; set; } /// PID coefficient for the regulation path
public virtual string StartValve { get; set; }
public virtual string Diverter { get; set; }
public virtual string TempDiv { get; set; }
public virtual string TempMtrDiv { get; set; }
public virtual string Scale { get; set; }
public virtual string EmptyTankValve { get; set; } /// Not used anywhere
/// Valves
public virtual string ValvesOpen { get; set; }
@@ -46,18 +46,18 @@ namespace Config.Entities
{
OutputPath result = new OutputPath(name, itemNr);
result.Name = Name;
result.Qfrom = Qfrom;
result.Qto = Qto;
result.RegulValve = RegulValve;
result.FlowMeter = FlowMeter;
result.PidCoef = PidCoef;
result.StartValve = StartValve;
result.Diverter = Diverter;
result.TempDiv = TempDiv;
result.Scale = Scale;
result.EmptyTankValve = EmptyTankValve;
result.ValvesOpen = ValvesOpen;
result.Name = Name;
result.Qfrom = Qfrom;
result.Qto = Qto;
result.Selector = Selector;
result.RegValve = RegValve;
result.FlowMeter = FlowMeter;
result.PidCoef = PidCoef;
result.StartValve = StartValve;
result.Diverter = Diverter;
result.TempMtrDiv = TempMtrDiv;
result.Scale = Scale;
result.ValvesOpen = ValvesOpen;
result.ValvesClose = ValvesClose;
return result;
+2 -1
View File
@@ -4,6 +4,7 @@
using System;
using System.Globalization;
using System.IO;
using Common;
namespace Config.Entities
{
@@ -78,7 +79,7 @@ namespace Config.Entities
TempLimHi = 25.0; /// [°C]
PressLimLo = 0; /// [bar]
PressLimHi = 16.0; /// [bar]
Publish = (sbyte)Config.Entities.Publish.Always;
Publish = (sbyte)Common.Publish.Always;
Evaluate = true;
E1 = (sbyte)ErrorFlagsMode.On;
+73 -8
View File
@@ -1,17 +1,18 @@
///
/// Copyright (c) 2013-2020 Sensus Slovensko a.s.
/// Copyright (c) 2013-2021 Sensus Slovensko a.s.
///
using System;
using System.Collections.Generic;
using System.Globalization;
using System.IO;
using Common;
namespace Config.Entities
{
/// <summary>
/// Stores one test procedure, supports revisions and history log
/// </summary>
public class Procedure : IHasName, IHasItemNr
public class Procedure : IHasName, IHasItemNr
{
public virtual int Id { get; protected set; }
public virtual int ItemNr { get; set; }
@@ -53,14 +54,13 @@ namespace Config.Entities
public virtual IList<ComponentProcedure> MoreParams { get; set; }
public virtual IList<Test> Tests { get; set; }
TestInstance[] testInstances;
/// Wrapper
public virtual IList<Test> RegularTests()
{
IList<Test> rslt = new List<Test>();
foreach (var t in Tests)
{
if ((t.Name.Length > 0 && t.Name[0] != '[') || !t.Name.Contains("]")) rslt.Add(t);
}
foreach (var t in Tests) if (t.IsRegular()) rslt.Add(t);
return rslt;
}
@@ -70,15 +70,16 @@ namespace Config.Entities
{
MoreParams = new List<ComponentProcedure>();
Tests = new List<Test>();
testInstances = null;
///
/// Default values
///
CreationUser = (Users.GlobalData.CurrentUser != null) ? Users.GlobalData.CurrentUser.UserName : null;
CreationUser = Common.GlobalData.GetCurrentUserName();
CreationTime = DateTime.Now;
LastChgUser = CreationUser;
LastChgTime = CreationTime;
MetersKind = Entities.MetersKind.Single;
MetersKind = MetersKind.Single;
Watermeters = string.Empty;
Description = string.Empty;
LongDescription = string.Empty;
@@ -96,6 +97,70 @@ namespace Config.Entities
ItemNr = itemNr;
}
public virtual TestInstance[] UpdateTestInstances(IList<string> loopStartNames, IList<string> loopEndNames, IList<string> autoTests = null)
{
List<TestInstance> instances = new List<TestInstance>();
if (Tests != null)
{
int i = 0;
while (i < Tests.Count)
{
if (!loopStartNames.Contains(Tests[i].Method) && !loopEndNames.Contains(Tests[i].Method)) /// Loop.End is ignored outside a loop
{
///
/// Outside a loop
///
for (int j = 1; j <= Tests[i].Repeats; j++)
if (Tests[i].BelongsTo(autoTests))
instances.Add(new TestInstance(Tests[i], j));
}
else if (loopStartNames.Contains(Tests[i].Method))
{
///
/// Entering a loop
///
int loopsCount = Tests[i].Repeats;
List<Test> testsInsideLoop = new List<Test>();
i++;
while (i < Tests.Count && !loopEndNames.Contains(Tests[i].Method))
{
///
/// Inside a loop
///
if (Tests[i].Repeats == loopsCount && !loopStartNames.Contains(Tests[i].Method)) /// Loop.Start is ignored inside a loop
{
if (Tests[i].BelongsTo(autoTests))
testsInsideLoop.Add(Tests[i]);
}
i++;
}
///
/// Append instances of tests inside the last loop to the list
///
for (int j = 1; j <= loopsCount; j++)
{
foreach (var t in testsInsideLoop)
instances.Add(new TestInstance(t, j));
}
}
i++;
}
}
testInstances = instances.ToArray();
return testInstances;
}
public virtual TestInstance[] GetTestInstances()
{
return testInstances;
}
public virtual Procedure Clone()
{
Procedure result = new Procedure();
+2 -1
View File
@@ -5,6 +5,7 @@ using System;
using System.Collections.Generic;
using System.Globalization;
using System.IO;
using Common;
namespace Config.Entities
{
@@ -35,7 +36,7 @@ namespace Config.Entities
///
/// Default values
///
CreationUser = (Users.GlobalData.CurrentUser != null) ? Users.GlobalData.CurrentUser.UserName : null;
CreationUser = GlobalData.GetCurrentUserName();
CreationTime = DateTime.Now;
LastChgUser = CreationUser;
LastChgTime = CreationTime;
+55 -38
View File
@@ -1,10 +1,11 @@
///
/// Copyright (c) 2013-2019 Sensus Slovensko a.s.
/// Copyright (c) 2013-2021 Sensus Slovensko a.s.
///
using System;
using System.Collections.Generic;
using System.Globalization;
using System.IO;
using Common;
namespace Config.Entities
{
@@ -25,7 +26,7 @@ namespace Config.Entities
public virtual float Qfrom { get; set; } /// Water flow low limit in [m3/h]
public virtual float Qto { get; set; } /// Water flow high limit in [m3/h]
public virtual float Volume { get; set; } /// Test volume (target) in [l]
public virtual float TstTime { get; set; } /// Test time (estimate) in [s]
public virtual float TestTime { get; set; } /// Test time (estimate) in [s]
public virtual string Method { get; set; }
public virtual float ErrLimLo { get; set; } /// in [%] usually < 0, in case of heat meters: 1=class1, 2=class2, 3=class3
public virtual float ErrLimHi { get; set; } /// in [%] usually > 0, in case of heat meters: -Qn in m3/h
@@ -44,8 +45,7 @@ namespace Config.Entities
public virtual int TimeFlow2Mass { get; set; } /// Delay time from the flow stable to the 1st mass measurement in [s]
public virtual int TimePump2StartV { get; set; } /// Delay time from the start of the pump to opening the start valve in [s]
public virtual int TimeStop2Mass { get; set; } /// Delay time from the test end (diverted) to the 2nd mass measuremen in [s]
public virtual double TolerRed { get; set; } /// = Filter
public virtual string RedType { get; set; }
public virtual int ShortPulses { get; set; } /// Short pulses
public virtual string FeedingPath { get; set; }
public virtual string BenchPath { get; set; }
public virtual string OutputPath { get; set; }
@@ -53,9 +53,9 @@ namespace Config.Entities
#if HEAT_METERS
public virtual string HeatMetersPath { get; set; }
#endif
public virtual string RelTransBefore { get; set; }
public virtual string RelTransBetween { get; set; }
public virtual string TransitionAfter { get; set; }
public virtual string TransBefore { get; set; }
public virtual string TransBetween { get; set; }
public virtual string TransAfter { get; set; }
public virtual bool IsOuterLoopStart { get; set; } /// Not mapped to database
public virtual bool IsOuterLoopEnd { get; set; } /// Not mapped to database
@@ -75,7 +75,7 @@ namespace Config.Entities
///
Part = 0;
Profile = TestProfile.UserDefined;
Publish = (sbyte)Config.Entities.Publish.Always;
Publish = (sbyte)Common.Publish.Always;
DoEvaluate = true;
Repeats = 1;
DoDraining = false;
@@ -89,15 +89,15 @@ namespace Config.Entities
PumpPower = 60.0f; /// [%]
MassRepeats = 0; /// default
MassSpread = 0; /// default
MassMethod = MassMethod.Scale; /// default
MassMethod = MassMethod.Scale; /// default
TimeBeforeFlow = 10; /// [s] time before the start of flow control in [s]
TimeFlow2Mass = 5; /// [s] time from the flow stable to the 1st mass measurement in [s]
TimePump2StartV = 1; /// [s] time from the 1st mass measurement to the test start in [s]
TimeStop2Mass = 5; /// [s] between the test end and the final mass measurement
TolerRed = 0; /// = Filter parameter
RelTransBefore = string.Empty;
RelTransBetween = string.Empty;
TransitionAfter = string.Empty;
ShortPulses = 0; /// Short pulses parameter (0 or 1)
TransBefore = string.Empty;
TransBetween = string.Empty;
TransAfter = string.Empty;
}
public Test(string name, int itemNr, Procedure procedure)
@@ -108,6 +108,22 @@ namespace Config.Entities
Procedure = procedure;
}
public virtual bool IsRegular()
{
/// Irregular / event triggered test names have form "[event] TestName"
return (Name.Length > 0 && Name[0] != '[') || !Name.Contains("]");
}
public virtual bool BelongsTo(IList<string> autoTests)
{
if (IsRegular()) return true;
if (autoTests == null) return false;
string action = Name.Substring(1, Name.IndexOf(']') - 1);
return autoTests.Contains(action);
}
// Makes a new copy of this object (not just a reference)
public virtual Test Clone()
{
@@ -121,7 +137,7 @@ namespace Config.Entities
result.Qfrom = Qfrom;
result.Qto = Qto;
result.Volume = Volume;
result.TstTime = TstTime;
result.TestTime = TestTime;
result.Method = Method;
result.ErrLimLo = ErrLimLo;
result.ErrLimHi = ErrLimHi;
@@ -140,8 +156,7 @@ namespace Config.Entities
result.TimeFlow2Mass = TimeFlow2Mass;
result.TimePump2StartV = TimePump2StartV;
result.TimeStop2Mass = TimeStop2Mass;
result.TolerRed = TolerRed;
result.RedType = RedType;
result.ShortPulses = ShortPulses;
result.FeedingPath = FeedingPath;
result.BenchPath = BenchPath;
result.OutputPath = OutputPath;
@@ -149,9 +164,9 @@ namespace Config.Entities
#if HEAT_METERS
result.HeatMetersPath = HeatMetersPath;
#endif
result.RelTransBefore = RelTransBefore;
result.RelTransBetween = RelTransBetween;
result.TransitionAfter = TransitionAfter;
result.TransBefore = TransBefore;
result.TransBetween = TransBetween;
result.TransAfter = TransAfter;
foreach (var prms in MoreParams) { result.MoreParams.Add(prms.Clone()); }
return result;
@@ -169,7 +184,7 @@ namespace Config.Entities
output.WriteLine(Qfrom.ToString(ci));
output.WriteLine(Qto.ToString(ci));
output.WriteLine(Volume.ToString(ci));
output.WriteLine(TstTime.ToString(ci));
output.WriteLine(TestTime.ToString(ci));
output.WriteLine(Method);
output.WriteLine(ErrLimLo.ToString(ci));
output.WriteLine(ErrLimHi.ToString(ci));
@@ -188,14 +203,15 @@ namespace Config.Entities
output.WriteLine(TimeFlow2Mass.ToString(ci));
output.WriteLine(TimePump2StartV.ToString(ci));
output.WriteLine(TimeStop2Mass.ToString(ci));
output.WriteLine(ShortPulses.ToString(ci));
output.WriteLine(FeedingPath);
output.WriteLine(BenchPath);
output.WriteLine(OutputPath);
output.WriteLine(MetersPath);
output.WriteLine(RelTransBefore);
output.WriteLine(RelTransBetween);
output.WriteLine(TransBefore);
output.WriteLine(TransBetween);
output.WriteLine(Profile);
output.WriteLine(TransitionAfter);
output.WriteLine(TransAfter);
foreach (var prms in MoreParams) { prms.Export(output); }
output.WriteLine();
@@ -220,7 +236,7 @@ namespace Config.Entities
tst.Qfrom = float.Parse(input.ReadLine(), ci);
tst.Qto = float.Parse(input.ReadLine(), ci);
tst.Volume = float.Parse(input.ReadLine(), ci);
tst.TstTime = float.Parse(input.ReadLine(), ci);
tst.TestTime = float.Parse(input.ReadLine(), ci);
tst.Method = input.ReadLine();
tst.ErrLimLo = float.Parse(input.ReadLine(), ci);
tst.ErrLimHi = float.Parse(input.ReadLine(), ci);
@@ -239,17 +255,18 @@ namespace Config.Entities
tst.TimeFlow2Mass = int.Parse(input.ReadLine(), ci);
tst.TimePump2StartV = int.Parse(input.ReadLine(), ci);
tst.TimeStop2Mass = int.Parse(input.ReadLine(), ci);
tst.ShortPulses = int.Parse(input.ReadLine(), ci);
tst.FeedingPath = input.ReadLine();
tst.BenchPath = input.ReadLine();
tst.OutputPath = input.ReadLine();
tst.MetersPath = input.ReadLine();
tst.RelTransBefore = input.ReadLine();
tst.RelTransBetween = input.ReadLine();
tst.TransBefore = input.ReadLine();
tst.TransBetween = input.ReadLine();
string line = input.ReadLine();
tst.Profile = line.Equals(TestProfile.ProtectedHeatMeter.ToString()) ? TestProfile.ProtectedHeatMeter
: line.Equals(TestProfile.UserDefinedHeatMeter.ToString()) ? TestProfile.UserDefinedHeatMeter
: line.Equals(TestProfile.Protected.ToString()) ? TestProfile.Protected : TestProfile.UserDefined; /// UserDefined is the default
tst.TransitionAfter = input.ReadLine();
tst.TransAfter = input.ReadLine();
while (true)
{
@@ -282,14 +299,14 @@ namespace Config.Entities
ln = inp.ReadLine(); if (ln != Qfrom.ToString(ci)) { diff.AppendFormat(fmt, "Qfrom", Qfrom.ToString(ci), ln); };
ln = inp.ReadLine(); if (ln != Qto.ToString(ci)) { diff.AppendFormat(fmt, "Qto", Qto.ToString(ci), ln); };
ln = inp.ReadLine(); if (ln != Volume.ToString(ci)) { diff.AppendFormat(fmt, "Volume", Volume.ToString(ci), ln); };
ln = inp.ReadLine(); if (ln != TstTime.ToString(ci)) { diff.AppendFormat(fmt, "TstTime", TstTime.ToString(ci), ln); };
ln = inp.ReadLine(); if (ln != TestTime.ToString(ci)) { diff.AppendFormat(fmt, "TstTime", TestTime.ToString(ci), ln); };
ln = inp.ReadLine(); if (ln != Method) { diff.AppendFormat(fmt, "Method", Method, ln); };
ln = inp.ReadLine(); if (ln != ErrLimLo.ToString(ci)) { diff.AppendFormat(fmt, "ErrLimLo", ErrLimLo.ToString(ci), ln); };
ln = inp.ReadLine(); if (ln != ErrLimHi.ToString(ci)) { diff.AppendFormat(fmt, "ErrLimHi", ErrLimHi.ToString(ci), ln); };
ln = inp.ReadLine(); if (ln != Uncertainty.ToString(ci)) { diff.AppendFormat(fmt, "Uncertainty", Uncertainty.ToString(ci), ln); };
ln = inp.ReadLine(); if (ln != Repeats.ToString(ci)) { diff.AppendFormat(fmt, "Repeats", Repeats.ToString(ci), ln); };
ln = inp.ReadLine(); if (ln != DoDraining.ToString(ci)) { diff.AppendFormat(fmt, "Draining", DoDraining.ToString(ci), ln); };
ln = inp.ReadLine(); if (ln != DoDrainingAfter.ToString(ci)) { diff.AppendFormat(fmt, "Zeroing", DoDrainingAfter.ToString(ci), ln); };
ln = inp.ReadLine(); if (ln != DoDraining.ToString(ci)) { diff.AppendFormat(fmt, "DoDraining", DoDraining.ToString(ci), ln); };
ln = inp.ReadLine(); if (ln != DoDrainingAfter.ToString(ci)) { diff.AppendFormat(fmt, "DoDrainingAfter", DoDrainingAfter.ToString(ci), ln); };
ln = inp.ReadLine(); if (ln != DoControlWaterTemp.ToString()) { diff.AppendFormat(fmt, "DoControlWaterTemp", DoControlWaterTemp.ToString(ci), ln); };
ln = inp.ReadLine(); if (ln != TempLimLo.ToString(ci)) { diff.AppendFormat(fmt, "TempLimLo", TempLimLo.ToString(ci), ln); };
ln = inp.ReadLine(); if (ln != TempLimHi.ToString(ci)) { diff.AppendFormat(fmt, "TempLimHi", TempLimHi.ToString(ci), ln); };
@@ -305,10 +322,10 @@ namespace Config.Entities
ln = inp.ReadLine(); if (ln != BenchPath) { diff.AppendFormat(fmt, "BenchPath", BenchPath, ln); };
ln = inp.ReadLine(); if (ln != OutputPath) { diff.AppendFormat(fmt, "OutputPath", OutputPath, ln); };
ln = inp.ReadLine(); if (ln != MetersPath) { diff.AppendFormat(fmt, "MetersPath", MetersPath, ln); };
ln = inp.ReadLine(); if (ln != RelTransBefore) { diff.AppendFormat(fmt, "RelTransBefore", RelTransBefore, ln); };
ln = inp.ReadLine(); if (ln != RelTransBetween) { diff.AppendFormat(fmt, "RelTransBetween", RelTransBetween, ln); };
ln = inp.ReadLine(); if (ln != Profile.ToString()) { diff.AppendFormat(fmt, "RelTransAfter", Profile, ln); };
ln = inp.ReadLine(); if (ln != TransitionAfter) { diff.AppendFormat(fmt, "TransitionAfter", TransitionAfter, ln); };
ln = inp.ReadLine(); if (ln != TransBefore) { diff.AppendFormat(fmt, "TransBefore", TransBefore, ln); };
ln = inp.ReadLine(); if (ln != TransBetween) { diff.AppendFormat(fmt, "TransBetween", TransBetween, ln); };
ln = inp.ReadLine(); if (ln != Profile.ToString()) { diff.AppendFormat(fmt, "Profile", Profile, ln); };
ln = inp.ReadLine(); if (ln != TransAfter) { diff.AppendFormat(fmt, "TransAfter", TransAfter, ln); };
return diff.ToString();
}
@@ -419,10 +436,10 @@ namespace Config.Entities
/// <returns>true when Part number is OK</returns>
public static bool IsGoodPartNr(int partNr)
{
bool firstDigitIsOK = ((partNr % 10) > 0) && ((partNr % 10) <= Config.Data.MaxPartNr);
bool secondDigitIsOK = (((partNr/10) % 10) > 0) && (((partNr/10) % 10) <= Config.Data.MaxPartNr);
bool thirdDigitIsOK = (((partNr/100) % 10) > 0) && (((partNr/100) % 10) <= Config.Data.MaxPartNr);
bool fourthDigitIsOK = (((partNr/1000) % 10) > 0) && (((partNr/1000) % 10) <= Config.Data.MaxPartNr);
bool firstDigitIsOK = ((partNr % 10) > 0) && ((partNr % 10) <= Common.Data.MaxPartNr);
bool secondDigitIsOK = (((partNr / 10) % 10) > 0) && (((partNr / 10) % 10) <= Common.Data.MaxPartNr);
bool thirdDigitIsOK = (((partNr / 100) % 10) > 0) && (((partNr / 100) % 10) <= Common.Data.MaxPartNr);
bool fourthDigitIsOK = (((partNr / 1000) % 10) > 0) && (((partNr / 1000) % 10) <= Common.Data.MaxPartNr);
if (firstDigitIsOK && (partNr / 10 == 0)) return true;
if (firstDigitIsOK && secondDigitIsOK && (partNr / 100 == 0)) return true;
+32
View File
@@ -0,0 +1,32 @@
///
/// Copyright (c) 2021 Sensus Slovensko a.s.
///
using System;
namespace Config.Entities
{
public class TestInstance
{
public Test Test;
public int Repetition;
public string Name
{
get
{
return (Test != null) ? Common.Utils.GetTestName(Test.Name, Test.Repeats, Repetition) : string.Empty;
}
}
public TestInstance(Test test, int repetition)
{
Test = test;
Repetition = repetition;
}
public override string ToString()
{
return Name;
}
}
}
+2 -2
View File
@@ -1,11 +1,11 @@
///
/// Copyright (c) 2019 Sensus Slovensko a.s.
/// Copyright (c) 2019-2021 Sensus Slovensko a.s.
///
using System;
namespace Config.Entities
{
public class Uncertainty
public class Uncertainty : Common.IUncertainty
{
public virtual int Id { get; protected set; }
public virtual float Measurement { get; set; }
+175 -13
View File
@@ -1,14 +1,19 @@
///
/// Copyright (c) 2013-2019 Sensus Slovensko a.s.
/// Copyright (c) 2013-2021 Sensus Slovensko a.s.
///
using System;
using System.Collections.Generic;
using log4net;
using Common;
using Config.Resources;
namespace Config.Entities
{
public class User
public class User : Common.IUser
{
public virtual int Id { get; protected set; }
static readonly ILog log = LogManager.GetLogger(typeof(User));
public virtual int Id { get; protected set; }
public virtual string UserName { get; set; } /// = name, alias, abbreviation
public virtual string FullName { get; set; } /// = description
public virtual string Tag { get; set; }
@@ -20,11 +25,27 @@ namespace Config.Entities
public virtual DateTime LastPwChange { get; set; }
public virtual IList<Group> Groups { get; set; } //User can be a member of a list of groups
private bool powerUser; /// true for built-in users, power users have full access even with empty Groups list
public virtual bool IsPowerUser() { return powerUser; }
private string legalizator; /// Not mapped to a database !!!, 2nd user entered in a logging dialog
public virtual void SetLegalizator(string value) { legalizator = value; }
public virtual string GetLegalizator() { return legalizator; }
public User()
{
Groups = new List<Group>();
}
public User(string userName, int number, bool powerUser)
{
UserName = userName;
Number = number;
this.powerUser = powerUser;
Groups = new List<Group>();
FullName = powerUser ? "Power User" : string.Empty;
}
/// <summary>
/// Adds a group to the user.
/// </summary>
@@ -34,14 +55,155 @@ namespace Config.Entities
Groups.Add(group);
}
/// <summary>
/// Encrypts and sets users password.
/// </summary>
/// <param name="password">Unencrypted password</param>
public virtual void SetPassword(string password)
{
Password = Users.Entities.User.getHash(password);
LastPwChange = DateTime.Now;
}
}
/// <summary>
/// All members are copied except of ID (so that NHibernate works properly).
/// List of groups is empty.
/// </summary>
/// <param name="user"></param>
/// <returns></returns>
public virtual object Clone()
{
User newUser = new User(UserName, Number, false);
newUser.FullName = FullName;
newUser.Number = Number;
newUser.Tag = Tag;
newUser.Password = Password;
newUser.LastPwChange = LastPwChange;
return newUser;
}
public override string ToString()
{
return (UserName != null) ? UserName : Number.ToString();
}
/// ------------- Additional stuff not mapped into the database -------------
/// <summary>
/// Check whether user is a member of a group.
/// </summary>
/// <param name="groupId">Group GID</param>
/// <returns>true is user is a member of the specified group</returns>
public virtual bool IsMemberOf(GID groupId)
{
if (powerUser)
{
return true;
}
else if ((groupId >= 0) && (groupId < GID.NrOfGroups))
{
foreach (var g in Groups)
{
if (g.GID == groupId) return true;
}
}
return false;
}
/// <summary>
/// Check whether user is a member of any of specified groups.
/// Returns true also when no groups are defined (groupIds = null).
/// </summary>
/// <param name="groupIds">An array of group GID-s or null (no membership required)</param>
/// <returns>true if user is a member of any of specified groups</returns>
public virtual bool IsMemberOf(GID[] groupIds)
{
if (groupIds == null || powerUser)
{
return true;
}
foreach (var gid in groupIds)
{
if ((gid >= 0) && (gid < GID.NrOfGroups))
{
/// for all group elements in User.Groups
foreach (var grp in Groups)
{
/// element GID = parameter GroupId ?
if (grp.GID == gid) return true;
}
}
}
return false;
}
/// <summary>
/// Checks requirements on the password regardless of the password history
/// </summary>
/// <param name="password">Password</param>
/// <returns>true when the password is OK</returns>
public static bool IsPasswordMeetsRequirements(string password, out string explanation)
{
return Common.Utils.IsPasswordMeetsRequirements(password, out explanation);
}
/// <summary>
/// Returns true when password was already used in the past
/// </summary>
/// <param name="passwordCandidate">Password</param>
/// <returns>false when password is new, true when it was used in the past</returns>
public virtual bool IsPasswordUsedInPast(string passwordCandidate)
{
string encryptedPW = EncryptedPassword(passwordCandidate);
return (encryptedPW == Password) || (encryptedPW == Password2) || (encryptedPW == Password3);
}
/// <summary>
/// Checks 'LastPwChange' and returns true when password expired
/// </summary>
/// <returns></ returns>
public virtual bool IsPasswordExpired()
{
if (IsPowerUser() || IsMemberOf(GID.Administrators) || GlobalData.PasswdExpirationPeriodDays == 0)
{
/// Password cannot expirate for this user or this feature is disabled in Backup and Security options
return false;
}
/// Password expiration time is 3 months
return (DateTime.Now - LastPwChange > new TimeSpan(GlobalData.PasswdExpirationPeriodDays, 0, 0, 0));
}
/// <summary>
/// Encrypts and saves users password.
/// </summary>
/// <param name="password">Password</param>
public virtual void SetPassword(string password)
{
Password4 = Password3;
Password3 = Password2;
Password2 = Password;
Password = EncryptedPassword(password);
LastPwChange = DateTime.Now;
}
string EncryptedPassword(string password)
{
return Common.Utils.GetHash(password);
}
/// <summary>
/// Verifies users password. Used by static bool Authorisation(...)
/// </summary>
/// <param name="password">Password</param>
/// <returns>true if password is correct</returns>
public virtual bool IsCorrectPassword(string password)
{
if (string.IsNullOrEmpty(password) && string.IsNullOrEmpty(Password))
{
/// Currently saved and verified passwords are both empty => return true
return true;
}
return (Password == EncryptedPassword(password));
}
public virtual string ToEncodedStr()
{
return string.Format("{0}~{1}~{2}", UserName, FullName, legalizator);
}
}
}
+36 -32
View File
@@ -1,5 +1,5 @@
///
/// Copyright (c) 2013-2018 Sensus Slovensko a.s.
/// Copyright (c) 2013-2021 Sensus Slovensko a.s.
///
using System;
using System.Windows.Forms;
@@ -8,38 +8,39 @@ using FluentNHibernate.Cfg.Db;
using NHibernate;
using NHibernate.Cfg;
using NHibernate.Tool.hbm2ddl;
using Common;
using Config.Resources;
namespace Config
{
public static class FluentCommon
public class FluentCommon
{
/// <summary>
/// Session factories for regular sessions.
/// </summary>
public static ISessionFactory[] SessionFactories = new ISessionFactory[(int)Users.Entities.DBKind.Count];
public static ISessionFactory[] SessionFactories = new ISessionFactory[(int)DBKind.Count];
/// <summary>
/// NHibernate session factory (to create the database session 'SessionFactory')
/// </summary>
/// <returns>A database session</returns>
static ISessionFactory CreateSessionFactory(Users.Entities.DBKind database)
static ISessionFactory CreateSessionFactory(DBKind database)
{
Users.Entities.DBType dbType;
Common.DBType dbType;
string connectionString;
switch (database)
{
default:
case Users.Entities.DBKind.Config:
case DBKind.Config:
dbType = Data.CurrentBench.ProceduresDBSettings.DbType;
connectionString = Data.CurrentBench.ProceduresDBSettings.ConnectionString;
break;
case Users.Entities.DBKind.Results:
case DBKind.Results:
dbType = Data.CurrentBench.WaterMetersDBSettings.DbType;
connectionString = Data.CurrentBench.WaterMetersDBSettings.ConnectionString;
break;
case Users.Entities.DBKind.RemoteConfig:
case DBKind.RemoteConfig:
dbType = Data.CurrentBench.UsersDBSettings.DbType;
connectionString = Data.CurrentBench.UsersDBSettings.ConnectionString;
break;
@@ -52,7 +53,7 @@ namespace Config
/// NHibernate session factory (to create the database session 'SessionFactory')
/// </summary>
/// <returns>A database session</returns>
public static ISessionFactory CreateSessionFactory(Users.Entities.DBKind database, Users.Entities.DBType dbType, string connectionString, bool createDB)
public static ISessionFactory CreateSessionFactory(DBKind database, DBType dbType, string connectionString, bool createDB)
{
try
{
@@ -61,10 +62,10 @@ namespace Config
switch (dbType)
{
default:
case Users.Entities.DBType.SQLite:
case DBType.SQLite:
cfg = cfg.Database(SQLiteConfiguration.Standard.UsingFile(connectionString));
break;
case Users.Entities.DBType.MySql:
case DBType.MySql:
cfg = cfg.Database(MySQLConfiguration.Standard.ConnectionString(connectionString));
break;
}
@@ -72,12 +73,12 @@ namespace Config
switch (database)
{
default:
case Users.Entities.DBKind.Config:
case Users.Entities.DBKind.RemoteConfig:
cfg = cfg.Mappings(m => m.FluentMappings.AddFromAssemblyOf<Data>());
case DBKind.Config:
case DBKind.RemoteConfig:
cfg = cfg.Mappings(m => m.FluentMappings.AddFromAssemblyOf<FluentCommon>());
break;
case Users.Entities.DBKind.Results:
cfg = cfg.Mappings(m => m.FluentMappings.AddFromAssemblyOf<Data>());
case DBKind.Results:
cfg = cfg.Mappings(m => m.FluentMappings.AddFromAssemblyOf<FluentCommon>());
break;
}
@@ -117,12 +118,15 @@ namespace Config
}
/// Create a NHibernate session for the given database
public static ISession CreateSession(Users.Entities.DBKind database)
public static ISession CreateSession(DBKind database)
{
if (database < 0 || database >= Users.Entities.DBKind.Count) return null;
if (database < 0 || database >= DBKind.Count) return null;
int ix = (int)database;
if (SessionFactories[ix] == null) SessionFactories[ix] = CreateSessionFactory(database);
if (SessionFactories[ix] == null)
{
SessionFactories[ix] = CreateSessionFactory(database);
}
return SessionFactories[ix].OpenSession();
}
@@ -134,9 +138,9 @@ namespace Config
/// <param name="dbType">DBType.SQLite or DBType.MySql</param>
/// <param name="connectionString">Connection string</param>
/// <returns>true=success, false=error</returns>
public static bool CreateEmptyConfigDB(Users.Entities.DBType dbType, string connectionString)
public static bool CreateEmptyConfigDB(DBType dbType, string connectionString)
{
ISessionFactory sessionFactory = CreateSessionFactory(Users.Entities.DBKind.Config, dbType, connectionString, true);
ISessionFactory sessionFactory = CreateSessionFactory(DBKind.Config, dbType, connectionString, true);
if (sessionFactory == null) return false;
/// Populate the database
@@ -158,23 +162,23 @@ namespace Config
///
/// Prepare all groups, add some of them to admin
///
for (Users.Entities.GID gid = 0; gid < Users.Entities.GID.NrOfGroups; gid++)
for (GID gid = 0; gid < GID.NrOfGroups; gid++)
{
Config.Entities.Group group = new Config.Entities.Group(gid);
switch (gid)
{
case Users.Entities.GID.Testers:
case Users.Entities.GID.TestingSpecialists:
case Users.Entities.GID.HeadOfLab:
case Users.Entities.GID.MaintenanceSpecialists:
case Users.Entities.GID.Metrologists:
case Users.Entities.GID.CalibrationSpecialists:
case Users.Entities.GID.Administrators:
case GID.Testers:
case GID.TestingSpecialists:
case GID.HeadOfLab:
case GID.MaintenanceSpecialists:
case GID.Metrologists:
case GID.CalibrationSpecialists:
case GID.Administrators:
#if TURA_IPERL || TURA_IPERL_NEW || TURA_SPECIAL
case Users.Entities.GID.TraceabilityManagement:
case GID.TraceabilityManagement:
#elif KEMPNO_50 || KRAKOW_50 || TORUN_50 || WARSAW_END
case Users.Entities.GID.MetrologicalAuthority:
case Users.Entities.GID.WaterMeterAuthority:
case GID.MetrologicalAuthority:
case GID.WaterMeterAuthority:
#endif
admin.AddGroup(group);
session.SaveOrUpdate(group); /// Save this group
+5 -4
View File
@@ -15,10 +15,11 @@ namespace Config.Mappings
Map(x => x.Name);
Map(x => x.Qfrom);
Map(x => x.Qto);
Map(x => x.TempMtrUp).Column("TempIn");
Map(x => x.TempMtrDown).Column("TempOut");
Map(x => x.PressMtrUp).Column("PressIn");
Map(x => x.PressMtrDown).Column("PressOut");
Map(x => x.Selector);
Map(x => x.TempMtrUp);
Map(x => x.TempMtrDown);
Map(x => x.PressMtrUp);
Map(x => x.PressMtrDown);
Map(x => x.PressMtrDelta);
Map(x => x.StopBFValve);
Map(x => x.ValvesOpen)
+3 -3
View File
@@ -13,10 +13,10 @@ namespace Config.Mappings
Id(x => x.Id);
Map(x => x.Name);
Map(x => x.ClassName);
Map(x => x.ParentName);
Map(x => x.Parent);
Map(x => x.ItemNr);
Map(x => x.Mode);
Map(x => x.Logging);
Map(x => x.DebugMode);
Map(x => x.LogLevel);
Map(x => x.Parameters)
.CustomType("StringClob")
.CustomSqlType("varchar(8000)");
+2 -1
View File
@@ -15,8 +15,9 @@ namespace Config.Mappings
Map(x => x.Name);
Map(x => x.Qfrom);
Map(x => x.Qto);
Map(x => x.Selector);
Map(x => x.Pump);
Map(x => x.RegulValvesPct);
Map(x => x.RegVPositions);
Map(x => x.ValvesOpen)
.CustomType("StringClob")
.CustomSqlType("varchar(8000)");
+2 -2
View File
@@ -1,12 +1,12 @@
///
/// Copyright (c) 2013-2018 Sensus Slovensko a.s.
/// Copyright (c) 2013-2021 Sensus Slovensko a.s.
///
using FluentNHibernate.Mapping;
using Config.Entities;
namespace Config.Mappings
{
class MeasurementCorrectionMap : ClassMap<MeasurementCorrection>
class MeasurementCorrectionMap : ClassMap<Entities.MeasurementCorrection>
{
public MeasurementCorrectionMap()
{
+22 -45
View File
@@ -1,12 +1,11 @@
///
/// Copyright (c) 2013-2015 Sensus Metering Systems
/// Copyright (c) 2013-2021 Sensus Slovensko a.s.
///
using FluentNHibernate.Mapping;
using Config.Entities;
namespace Config.Mappings
{
class MetersPathMap : ClassMap<MetersPath>
class MetersPathMap : ClassMap<Entities.MetersPath>
{
public MetersPathMap()
{
@@ -14,48 +13,26 @@ namespace Config.Mappings
Map(x => x.ItemNr);
Map(x => x.Name);
#pragma warning disable
if (Config.Data.WMsCount >= 1) Map(x => x.Sensor1);
if (Config.Data.WMsCount >= 2) Map(x => x.Sensor2);
if (Config.Data.WMsCount >= 3) Map(x => x.Sensor3);
if (Config.Data.WMsCount >= 4) Map(x => x.Sensor4);
if (Config.Data.WMsCount >= 5) Map(x => x.Sensor5);
if (Config.Data.WMsCount >= 6) Map(x => x.Sensor6);
if (Config.Data.WMsCount >= 7) Map(x => x.Sensor7);
if (Config.Data.WMsCount >= 8) Map(x => x.Sensor8);
if (Config.Data.WMsCount >= 9) Map(x => x.Sensor9);
if (Config.Data.WMsCount >= 10) Map(x => x.Sensor10);
if (Config.Data.WMsCount >= 11) Map(x => x.Sensor11);
if (Config.Data.WMsCount >= 12) Map(x => x.Sensor12);
if (Config.Data.WMsCount >= 13) Map(x => x.Sensor13);
if (Config.Data.WMsCount >= 14) Map(x => x.Sensor14);
if (Config.Data.WMsCount >= 15) Map(x => x.Sensor15);
if (Config.Data.WMsCount >= 16) Map(x => x.Sensor16);
if (Config.Data.WMsCount >= 17) Map(x => x.Sensor17);
if (Config.Data.WMsCount >= 18) Map(x => x.Sensor18);
if (Config.Data.WMsCount >= 19) Map(x => x.Sensor19);
if (Config.Data.WMsCount >= 20) Map(x => x.Sensor20);
if (Config.Data.WMsCount >= 21) Map(x => x.Sensor21);
if (Config.Data.WMsCount >= 22) Map(x => x.Sensor22);
if (Config.Data.WMsCount >= 23) Map(x => x.Sensor23);
if (Config.Data.WMsCount >= 24) Map(x => x.Sensor24);
if (Config.Data.WMsCount >= 25) Map(x => x.Sensor25);
if (Config.Data.WMsCount >= 26) Map(x => x.Sensor26);
if (Config.Data.WMsCount >= 27) Map(x => x.Sensor27);
if (Config.Data.WMsCount >= 28) Map(x => x.Sensor28);
if (Config.Data.WMsCount >= 29) Map(x => x.Sensor29);
if (Config.Data.WMsCount >= 30) Map(x => x.Sensor30);
if (Config.Data.WMsCount >= 31) Map(x => x.Sensor31);
if (Config.Data.WMsCount >= 32) Map(x => x.Sensor32);
if (Config.Data.WMsCount >= 33) Map(x => x.Sensor33);
if (Config.Data.WMsCount >= 34) Map(x => x.Sensor34);
if (Config.Data.WMsCount >= 35) Map(x => x.Sensor35);
if (Config.Data.WMsCount >= 36) Map(x => x.Sensor36);
if (Config.Data.WMsCount >= 37) Map(x => x.Sensor37);
if (Config.Data.WMsCount >= 38) Map(x => x.Sensor38);
if (Config.Data.WMsCount >= 39) Map(x => x.Sensor39);
if (Config.Data.WMsCount >= 40) Map(x => x.Sensor40);
#pragma warning restore
Map(x => x.Sensor1);
Map(x => x.Sensor2);
Map(x => x.Sensor3);
Map(x => x.Sensor4);
Map(x => x.Sensor5);
Map(x => x.Sensor6);
Map(x => x.Sensor7);
Map(x => x.Sensor8);
Map(x => x.Sensor9);
Map(x => x.Sensor10);
Map(x => x.Sensor11);
Map(x => x.Sensor12);
Map(x => x.Sensor13);
Map(x => x.Sensor14);
Map(x => x.Sensor15);
Map(x => x.Sensor16);
Map(x => x.Sensor17);
Map(x => x.Sensor18);
Map(x => x.Sensor19);
Map(x => x.Sensor20);
}
}
}
+4 -5
View File
@@ -15,15 +15,14 @@ namespace Config.Mappings
Map(x => x.Name);
Map(x => x.Qfrom);
Map(x => x.Qto);
Map(x => x.RegulValve);
Map(x => x.Selector);
Map(x => x.RegValve);
Map(x => x.FlowMeter);
Map(x => x.PidCoef);
Map(x => x.StartValve);
Map(x => x.Diverter);
Map(x => x.TempDiv);
Map(x => x.Scale)
.Column("Balance");
Map(x => x.EmptyTankValve);
Map(x => x.TempMtrDiv);
Map(x => x.Scale);
Map(x => x.ValvesOpen)
.CustomType("StringClob")
.CustomSqlType("varchar(8000)");
+10 -19
View File
@@ -16,18 +16,15 @@ namespace Config.Mappings
Map(x => x.Part);
Map(x => x.Profile);
Map(x => x.Publish);
Map(x => x.DoEvaluate)
.Column("Evaluate");
Map(x => x.DoEvaluate);
Map(x => x.Qtg);
Map(x => x.Qfrom);
Map(x => x.Qto);
Map(x => x.Volume);
Map(x => x.TstTime);
Map(x => x.TestTime);
Map(x => x.Repeats);
Map(x => x.DoDraining)
.Column("Emptying");
Map(x => x.DoDrainingAfter)
.Column("Zeroing");
Map(x => x.DoDraining);
Map(x => x.DoDrainingAfter);
Map(x => x.DoControlWaterTemp);
Map(x => x.TempLimLo);
Map(x => x.TempLimHi);
@@ -35,19 +32,16 @@ namespace Config.Mappings
Map(x => x.MassRepeats);
Map(x => x.MassSpread);
Map(x => x.MassMethod)
.CustomType<byte>();
.CustomType<byte>();
Map(x => x.TimeBeforeFlow);
Map(x => x.TimeFlow2Mass);
Map(x => x.TimePump2StartV)
.Column("TimeMass2Start");
Map(x => x.TimePump2StartV);
Map(x => x.TimeStop2Mass);
Map(x => x.Method);
Map(x => x.ErrLimLo);
Map(x => x.ErrLimHi);
Map(x => x.Uncertainty);
Map(x => x.TolerRed)
.Column("TolerRed"); /// ???
Map(x => x.RedType);
Map(x => x.ShortPulses);
Map(x => x.FeedingPath);
Map(x => x.BenchPath);
Map(x => x.OutputPath);
@@ -55,12 +49,9 @@ namespace Config.Mappings
#if HEAT_METERS
Map(x => x.HeatMetersPath);
#endif
Map(x => x.RelTransBefore)
.Column("RelTransBefore");
Map(x => x.RelTransBetween)
.Column("RelTransBetween");
Map(x => x.TransitionAfter)
.Column("TransitionAfter");
Map(x => x.TransBefore);
Map(x => x.TransBetween);
Map(x => x.TransAfter);
HasMany(x => x.MoreParams)
.Cascade.All();
+4 -2
View File
@@ -10,14 +10,16 @@ namespace Config.Mappings
public UserMap()
{
Id(x => x.Id);
Map(x => x.UserName).Column("Name");
Map(x => x.UserName)
.Column("Name");
Map(x => x.Number);
Map(x => x.Tag);
Map(x => x.Password);
Map(x => x.Password2);
Map(x => x.Password3);
Map(x => x.Password4);
Map(x => x.FullName).Column("Description");
Map(x => x.FullName)
.Column("Description");
Map(x => x.LastPwChange);
HasManyToMany(x => x.Groups)
.Cascade.SaveUpdate()
+2 -2
View File
@@ -32,5 +32,5 @@ using System.Runtime.InteropServices;
// You can specify all the values or you can default the Build and Revision Numbers
// by using the '*' as shown below:
// [assembly: AssemblyVersion("1.0.*")]
[assembly: AssemblyVersion("2.26.1458.0")]
[assembly: AssemblyFileVersion("2.26.1458.0")]
[assembly: AssemblyVersion("3.1.1464.0")]
[assembly: AssemblyFileVersion("3.1.1464.0")]
+3 -3
View File
@@ -118,15 +118,15 @@
<value>System.Resources.ResXResourceWriter, System.Windows.Forms, Version=4.0.0.0, Culture=neutral, PublicKeyToken=b77a5c561934e089</value>
</resheader>
<data name="Failed" xml:space="preserve">
<value>NiO</value>
<value>Nicht OK</value>
</data>
<data name="Passed" xml:space="preserve">
<value>iO</value>
<value>OK</value>
</data>
<data name="Error" xml:space="preserve">
<value>Fehler</value>
</data>
<data name="Cannot_open_DB_Cause_0" xml:space="preserve">
<value>Datenbank kann nicht geöffnet.\\r\\nUrsache:\\r\\n{0}</value>
<value>Datenbank kann nicht geöffnet werden.\\r\\nUrsache:\\r\\n{0}</value>
</data>
</root>
+3
View File
@@ -162,4 +162,7 @@
<data name="Administrator" xml:space="preserve">
<value>Administrator</value>
</data>
<data name="Password_must_have_at_least_0_characters" xml:space="preserve">
<value>Password must have at least {0} characters</value>
</data>
</root>
-491
View File
@@ -1,491 +0,0 @@
///
/// Copyright (c) 2016-2018 Sensus Slovensko a.s.
///
using System;
using System.Reflection;
using Config.Entities;
namespace Config
{
public enum Unit
{
[Description("---")] None,
[Description("imp.")] pulse,
#if LANG_PL
[Description("stopień")] degree,
#else
[Description("degree")] degree,
#endif
[Description("l")] l, /// * 1 liter
[Description("dm3")] dm3, /// 1 dm3 = 1 liter
[Description("m3")] m3, /// 1000 l
[Description("gal(UK)")] gal_UK, /// 1 gal(UK) = 4.54609 l
[Description("gal(US)")] gal_US, /// 1 gal(US) = 3.78541178 l
[Description("l/h")] lph, /// 1 liter/h
[Description("m3/h")] m3ph, /// * 1 m3/h = 1000 l/h
[Description("g")] g, /// 0.001 kg
[Description("kg")] kg, /// * 1 kilogram
[Description("t")] t, /// 1000 kg
[Description("lb")] lb, /// 0.45359237 kg
[Description("s")] s, /// * 1 second
[Description("min")] min, /// 1 min = 60 s
[Description("hr")] hour, /// 1 hour = 60 min = 3600 s
[Description("ms")] ms, /// 1 ms = 0.001 s
[Description("°C")] C, /// * degree Celsius (°C)
[Description("°F")] F, /// degree Fahrenheit
[Description("K")] K, /// degree Kelvin
[Description("Pa")] Pa, /// 1 Pa = 0.01 hPa
[Description("hPa")] hPa, /// 1 hPa = 100 Pa
[Description("kPa")] kPa, /// 1 kPa = 10 HPa
[Description("MPa")] MPa, /// 1 MPa = 10000 hPa
[Description("mbar")] mbar, /// 1 mbar = 1 hPa = 100 Pa
[Description("bar")] bar, /// * 1 Bar = 1000 mbar = 0.1 MPa = 100000 Pa
[Description("inHg")] inHg, /// 1 inHg = 33.864 hPa
[Description("R%")] RPct, /// * 1 R%
[Description("%")] Pct, /// * 1 %
[Description("promile")] Promile, /// 1 promile = 0.1 %
[Description("mm")] mm, /// * 1 millimeter
[Description("cm")] cm, /// 1 cm = 10 mm
[Description("m")] m, /// 1 m = 1000 mm
[Description("in")] inch, /// 1 inch = 25.4 mm
[Description("kg/m3")] kgpm3, /// * 1 kg/m3 = 0.001 kg/l
[Description("kg/l")] kgpl, /// 1 kg/l = 1000 kg/m3
[Description("J")] J, /// * 1 Joul
[Description("kJ")] kJ, /// 1 kJ = 1000 J
[Description("MJ")] MJ, /// 1 MJ = 1000000 J
[Description("Wh")] Wh, /// 1 Wh = 3600 J
[Description("kWh")] kWh, /// 1 kWh = 3600000 J
[Description("MWh")] MWh, /// 1 MWh = 3600000000 J
[Description("uS/cm")] uSpcm, /// * 1 uS/cm
#if LANG_PL
[Description("imp/l")] ppl, /// * 1 pulse/l
[Description("imp/dm3")] ppdm3, /// * 1 pulse/dm3
[Description("stopień/l")] degpl, /// * 1 degree/l
[Description("stopień/dm3")] degpdm3, /// * 1 degree/dm3
[Description("l/imp")] lpp, /// * 1 l/pulse
[Description("dm3/imp")] dm3pp, /// * 1 dm3/pulse
[Description("l/stopień")] lpdeg, /// * 1 l/degree
[Description("dm3/stopień")] dm3pdeg, /// * 1 dm3/degree
#else
[Description("pulse/l")] ppl, /// * 1 pulse/l
[Description("pulse/dm3")] ppdm3, /// * 1 pulse/dm3
[Description("degree/l")] degpl, /// * 1 degree/l
[Description("degree/dm3")] degpdm3, /// * 1 degree/dm3
[Description("l/pulse")] lpp, /// * 1 l/pulse
[Description("dm3/pulse")] dm3pp, /// * 1 dm3/pulse
[Description("l/degree")] lpdeg, /// * 1 l/degree
[Description("dm3/degree")] dm3pdeg, /// * 1 dm3/degree
#endif
///
[Description("pulse/kWh")] ppkWh, /// * 1 pulse/kWh
[Description("kWh/pulse")] kWhpp, /// * 1 kWh/pulse
Count
}
public enum Quantity
{
/// Quantities with units and conversions (double -> double)
#if LANG_DE
[Description("Volumen")] Volume,
[Description("Durchfluss")] Flow,
[Description("Masse")] Mass,
[Description("Zeit")] Time,
[Description("Temperatur")] Temperature,
[Description("Druck")] Pressure,
[Description("Feuchtigkeit")] Humidity,
[Description("Fehler")] Error,
[Description("Länge")] Length,
[Description("Dichte")] Density,
[Description("Energie")] Energy,
[Description("Impulse")] Pulses,
[Description("Impulse/l")] PulsePerLtr,
[Description("Impulse/kWh")] PulsePerKWh,
[Description("Leitfähigkeit")] Conductivity,
/// Quantities without units and conversions
[Description("Nummer")] Number,
[Description("Text")] String,
[Description("Boolean")] Boolean,
[Description("Datum und Uhrzeit")] DateTime,
#elif LANG_PL
[Description("Objętość")] Volume,
[Description("Przepływ")] Flow,
[Description("Masa")] Mass,
[Description("Czas")] Time,
[Description("Temperatura")] Temperature,
[Description("Ciśnienie")] Pressure,
[Description("Wilgotność")] Humidity,
[Description("Błąd")] Error,
[Description("Długość")] Length,
[Description("Gęstość")] Density,
[Description("Energia")] Energy,
[Description("Impulsy")] Pulses,
[Description("Impulsy/litr")] PulsePerLtr,
[Description("Impulsy/kWh")] PulsePerKWh,
[Description("Przewodność")] Conductivity,
/// Quantities without units and conversions
[Description("Numer")] Number,
[Description("Tekst")] String,
[Description("Boolean")] Boolean,
[Description("Data i czas")] DateTime,
#elif LANG_CS
[Description("Objem")] Volume,
[Description("Průtok")] Flow,
[Description("Hmotnost")] Mass,
[Description("Čas")] Time,
[Description("Teplota")] Temperature,
[Description("Tlak")] Pressure,
[Description("Vlhkost")] Humidity,
[Description("Chyba")] Error,
[Description("Délka")] Length,
[Description("Hustota")] Density,
[Description("Energie")] Energy,
[Description("Pulzy")] Pulses,
[Description("Pulzy/litr")] PulsePerLtr,
[Description("Pulzy/kWh")] PulsePerKWh,
[Description("Vodivost")] Conductivity,
/// Quantities without units and conversions
[Description("Počet")] Number,
[Description("Text")] String,
[Description("Boolean")] Boolean,
[Description("Datum a čas")] DateTime,
#elif LANG_IT
[Description("Volume")] Volume,
[Description("Flusso")] Flow,
[Description("Massa")] Mass,
[Description("Tempo")] Time,
[Description("Temperatura")] Temperature,
[Description("Pressione")] Pressure,
[Description("Umidità")] Humidity,
[Description("Errore")] Error,
[Description("Lungezza")] Length,
[Description("Densità")] Density,
[Description("Energia")] Energy,
[Description("Impulso")] Pulses,
[Description("Impulso/litro")] PulsePerLtr,
[Description("Impulso/kWh")] PulsePerKWh,
[Description("Conduttività")] Conductivity,
/// Quantities without units and conversions
[Description("Numero")] Number,
[Description("Stringa")] String,
[Description("Boolean")] Boolean,
[Description("Data e ora")] DateTime,
#else
[Description("Volume")] Volume,
[Description("Flow")] Flow,
[Description("Mass")] Mass,
[Description("Time")] Time,
[Description("Temperature")] Temperature,
[Description("Pressure")] Pressure,
[Description("Humidity")] Humidity,
[Description("Error")] Error,
[Description("Length")] Length,
[Description("Density")] Density,
[Description("Energy")] Energy,
[Description("Pulses")] Pulses,
[Description("Pulses/liter")] PulsePerLtr,
[Description("Pulses/kWh")] PulsePerKWh,
[Description("Conductivity")] Conductivity,
/// Quantities without units and conversions
[Description("Number")] Number,
[Description("String")] String,
[Description("Boolean")] Boolean,
[Description("Date and time")] DateTime,
[Description("Enum")] Enum,
#endif
Count,
}
public static class Units
{
public static bool IsUnitless(Quantity quantity)
{
return quantity >= Quantity.Number;
}
public static bool IsDefaultUnit(Unit unit)
{
return unit == Unit.l || unit == Unit.m3ph || unit == Unit.kg || unit == Unit.s || unit == Unit.C || unit == Unit.bar || unit == Unit.RPct ||
unit == Unit.Pct || unit == Unit.mm || unit == Unit.kgpm3 || unit == Unit.J || unit == Unit.ppl || unit == Unit.ppkWh || unit == Unit.uSpcm;
}
public static bool IsQuantity(Unit units, Quantity quantity)
{
return (quantity == GetQuantity(units));
}
public static Quantity GetQuantity(Unit units)
{
switch (units)
{
case Unit.pulse:
case Unit.degree:
return Config.Quantity.Pulses;
case Unit.l:
case Unit.dm3:
case Unit.m3:
case Unit.gal_UK:
case Unit.gal_US:
return Config.Quantity.Volume;
case Unit.lph:
case Unit.m3ph:
return Config.Quantity.Flow;
case Unit.g:
case Unit.kg:
case Unit.t:
case Unit.lb:
return Config.Quantity.Mass;
case Unit.s:
case Unit.min:
case Unit.hour:
case Unit.ms:
return Config.Quantity.Time;
case Unit.C:
case Unit.F:
case Unit.K:
return Config.Quantity.Temperature;
case Unit.Pa:
case Unit.hPa:
case Unit.mbar:
case Unit.kPa:
case Unit.bar:
case Unit.MPa:
case Unit.inHg:
return Config.Quantity.Pressure;
case Unit.RPct:
return Config.Quantity.Humidity;
case Unit.Pct:
case Unit.Promile:
return Config.Quantity.Error;
case Unit.mm:
case Unit.cm:
case Unit.m:
case Unit.inch:
return Config.Quantity.Length;
case Unit.kgpm3:
case Unit.kgpl:
return Config.Quantity.Density;
case Unit.J:
case Unit.kJ:
case Unit.MJ:
case Unit.Wh:
case Unit.kWh:
case Unit.MWh:
return Config.Quantity.Energy;
case Unit.ppl:
case Unit.ppdm3:
case Unit.degpl:
case Unit.degpdm3:
case Unit.lpp:
case Unit.dm3pp:
case Unit.lpdeg:
case Unit.dm3pdeg:
return Config.Quantity.PulsePerLtr;
case Unit.ppkWh:
case Unit.kWhpp:
return Config.Quantity.PulsePerKWh;
case Unit.uSpcm:
return Config.Quantity.Conductivity;
default:
return Config.Quantity.Number;
}
}
public static bool IsVolume(Unit units) { return IsQuantity(units, Config.Quantity.Volume); }
public static bool IsFlow(Unit units) { return IsQuantity(units, Config.Quantity.Flow); }
public static bool IsMass(Unit units) { return IsQuantity(units, Config.Quantity.Mass); }
public static bool IsTime(Unit units) { return IsQuantity(units, Config.Quantity.Time); }
public static bool IsTemperature(Unit units) { return IsQuantity(units, Config.Quantity.Temperature); }
public static bool IsPressure(Unit units) { return IsQuantity(units, Config.Quantity.Pressure); }
public static bool IsHumidity(Unit units) { return IsQuantity(units, Config.Quantity.Humidity); }
public static bool IsError(Unit units) { return IsQuantity(units, Config.Quantity.Error); }
public static bool IsLength(Unit units) { return IsQuantity(units, Config.Quantity.Length); }
public static bool IsDensity(Unit units) { return IsQuantity(units, Config.Quantity.Density); }
public static bool IsEnergy(Unit units) { return IsQuantity(units, Config.Quantity.Energy); }
public static bool IsPulses(Unit units) { return IsQuantity(units, Config.Quantity.Pulses); }
public static bool IsPulsePerLtr(Unit units) { return IsQuantity(units, Config.Quantity.PulsePerLtr); }
public static bool IsPulsePerKWh(Unit units) { return IsQuantity(units, Config.Quantity.PulsePerKWh); }
public static bool IsConductivity(Unit units) { return IsQuantity(units, Config.Quantity.Conductivity); }
public static double ConvertTo(Unit units, double v)
{
switch (units)
{
/// Volume: internal representation in l
case Unit.dm3:
case Unit.l: return v; /// 1 liter
case Unit.m3: return 0.001 * v; /// 1 m3 = 1000 l
case Unit.gal_UK: return 0.21996925 * v; /// 1 gal(UK) = 4.54609 l
case Unit.gal_US: return 0.26417205 * v; /// 1 gal(US) = 3.78541178 l
/// Flow: internal representation in m3/h
case Unit.lph: return 1000 * v; /// 1 liter/h
case Unit.m3ph: return v; /// 1 m3/h = 1000 l/h
/// Mass: internal representation in kg
case Unit.g: return 1000 * v; /// 1 g = 0.001 kg
case Unit.kg: return v; /// 1 kilogram
case Unit.t: return 0.001 * v; /// 1 t = 1000 kg
case Unit.lb: return 2.2046226 * v; /// 1 lb = 0.45359237 kg
/// Time or duration: internal representation in seconds [s]
case Unit.s: return v;
case Unit.min: return v / 60;
case Unit.hour: return v / 3600;
case Unit.ms: return 1000 * v;
/// Temperature: internal representation in °C
case Unit.C: return v; /// degree Celsius (°C)
case Unit.F: return 1.8 * v + 32; /// degree Fahrenheit
case Unit.K: return v + 273.15; /// degree Kelvin
/// Pressure: internal representation in bar = 0.1 MPa
case Unit.Pa: return 100000 * v; /// 1 hPa = 100 Pa
case Unit.hPa: return 1000 * v; /// 1 hPa = 100 Pa
case Unit.mbar: return 1000 * v; /// 1 mbar = 1 hPa = 100 Pa
case Unit.kPa: return 100 * v; /// 1 kPa = 10 HPa
case Unit.bar: return v; /// 1 bar = 1000 mbar = 100000 Pa
case Unit.MPa: return 0.1 * v; /// 1 MPa = 10000 hPa
case Unit.inHg: return 29.53 * v; /// 1 inHg = 33.864 hPa
/// Error: internal representation in %
case Unit.Pct: return v; /// 1 %
case Unit.Promile: return 10 * v; /// 1 promile = 0.1 %
/// Diameter, length: internal representation in mm
case Unit.mm: return v; /// 1 mm
case Unit.cm: return 0.1 * v; /// 1 cm = 10 mm
case Unit.m: return 0.001 * v; /// 1 m = 1000 mm
case Unit.inch: return v / 25.4; /// 1 inch = 25.4 mm
/// Density: internal representation in kg/m3
case Unit.kgpm3: return v;
case Unit.kgpl: return 0.001 * v;
/// Energy, internal representation in Joul
case Unit.J: return v; /// 1 Joul
case Unit.kJ: return 0.001 * v; /// 1 kJ = 1000 J
case Unit.MJ: return 0.000001 * v; /// 1 kJ = 1000000 J
case Unit.Wh: return v / 3600.0; /// 1 Wh = 3600 J
case Unit.kWh: return v / 3600000.0; /// 1 kWh = 3600000 J
case Unit.MWh: return v / 3600000000.0;/// 1 MWh = 3600000000 J
case Unit.kWhpp:
case Unit.lpp:
case Unit.dm3pp:
case Unit.lpdeg:
case Unit.dm3pdeg: return ((v <= float.Epsilon) ? 0 : 1 / v);
default: return v;
}
}
public static double ConvertFrom(Unit units, double v)
{
switch (units)
{
/// Volume: internal representation in l
case Unit.dm3:
case Unit.l: return v; /// 1 liter
case Unit.m3: return 1000 * v; /// 1000 l
case Unit.gal_UK: return 4.54609 * v; /// 1 gal(UK) = 4.54609 l
case Unit.gal_US: return 3.78541178 * v; /// 1 gal(US) = 3.78541178 l
/// Flow: internal representation in m3/h
case Unit.lph: return 0.001 * v; /// 1 liter/h
case Unit.m3ph: return v; /// 1 m3/h = 1000 l/h
/// Mass: internal representation in kg
case Unit.g: return 0.001 * v; /// 1 g = 0.001 kg
case Unit.kg: return v; /// 1 kilogram
case Unit.t: return 1000 * v; /// 1 t = 1000 kg
case Unit.lb: return 0.45359237 * v; /// 1 lb = 0.45359237 kg
/// Time or duration: internal representation in seconds [s]
case Unit.s: return v;
case Unit.min: return 60 * v;
case Unit.hour: return 3600 * v;
case Unit.ms: return v / 1000;
/// Temperature: internal representation in °C
case Unit.C: return v; /// degree Celsius (°C)
case Unit.F: return 5 * (v-32) / 9; /// degree Fahrenheit
case Unit.K: return v - 273.15; /// degree Kelvin
/// Pressure: internal representation in bar = 0.1 MPa
case Unit.Pa: return 0.00001 * v; /// 1 hPa = 100 Pa
case Unit.hPa: return 0.001 * v; /// 1 hPa = 100 Pa
case Unit.mbar: return 0.001 * v; /// 1 mbar = 1 hPa = 100 Pa
case Unit.kPa: return 0.01 * v; /// 1 kPa = 10 HPa
case Unit.bar: return v; /// 1 bar = 1000 mbar = 100000 Pa
case Unit.MPa: return 10 * v; /// 1 MPa = 10000 hPa
case Unit.inHg: return 0.033864 * v; /// 1 inHg = 33.864 hPa
/// Error: internal representation in %
case Unit.Pct: return v; /// 1 %
case Unit.Promile: return 0.1 * v; /// 1 promile = 0.1 %
/// Diameter, length: internal representation in mm
case Unit.mm: return v; /// 1 mm
case Unit.cm: return 10 * v; /// 1 cm = 10 mm
case Unit.m: return 1000 * v; /// 1 m = 1000 mm
case Unit.inch: return 25.4 * v; /// 1 inch = 25.4 mm
/// Density: internal representation in kg/m3
case Unit.kgpm3: return v;
case Unit.kgpl: return 1000 * v;
/// Energy, internal representation in Joul
case Unit.J: return v; /// 1 Joul
case Unit.kJ: return 1000 * v; /// 1 kJ = 1000 J
case Unit.MJ: return 1000000 * v; /// 1 kJ = 1000000 J
case Unit.Wh: return 3600 * v; /// 1 Wh = 3600 J
case Unit.kWh: return 3600000 * v; /// 1 kWh = 3600000 J
case Unit.MWh: return 3600000000 * v; /// 1 kWh = 3600000000 J
case Unit.kWhpp:
case Unit.lpp:
case Unit.dm3pp:
case Unit.lpdeg:
case Unit.dm3pdeg: return ((v == 0) ? 0 : 1 / v);
default: return v;
}
}
}
}
-256
View File
@@ -1,256 +0,0 @@
///
/// Copyright (c) 2017-2018 Sensus Slovensko a.s.
///
using System;
using System.Collections.Generic;
using System.Linq;
using System.Text;
namespace Config
{
public static class Utils
{
public static string SignificantDigitsToFmt(double value, int sigDigits)
{
if (sigDigits == 6)
{
if (value >= 99999.5 || value < -99999.5) return "F0";
else if (value >= 9999.95 || value < -9999.95) return "F1";
else if (value >= 999.995 || value < -999.995) return "F2";
else if (value >= 99.9995 || value < -99.9995) return "F3";
else if (value >= 9.99995 || value < -9.99995) return "F4";
else if (value >= 0.999995 || value < -0.999995) return "F5";
else if (value >= 0.0999995 || value < -0.0999995) return "F6";
else if (value >= 0.00999995 || value < -0.00999995) return "F7";
else if (value >= 0.000999995 || value < -0.000999995) return "F8";
else if (value >= 0.0000999995 || value < -0.0000999995) return "F9";
else return "F10";
}
else if (sigDigits == 5)
{
if (value >= 9999.5 || value < -9999.5) return "F0";
else if (value >= 999.95 || value < -999.95) return "F1";
else if (value >= 99.995 || value < -99.995) return "F2";
else if (value >= 9.9995 || value < -9.9995) return "F3";
else if (value >= 0.99995 || value < -0.99995) return "F4";
else if (value >= 0.099995 || value < -0.099995) return "F5";
else if (value >= 0.0099995 || value < -0.0099995) return "F6";
else if (value >= 0.00099995 || value < -0.00099995) return "F7";
else if (value >= 0.000099995 || value < -0.000099995) return "F8";
else return "F9";
}
else if (sigDigits == 4)
{
if (value >= 999.5 || value < -999.5) return "F0";
else if (value >= 99.95 || value < -99.95) return "F1";
else if (value >= 9.995 || value < -9.995) return "F2";
else if (value >= 0.9995 || value < -0.9995) return "F3";
else if (value >= 0.09995 || value < -0.09995) return "F4";
else if (value >= 0.009995 || value < -0.009995) return "F5";
else if (value >= 0.0009995 || value < -0.0009995) return "F6";
else if (value >= 0.00009995 || value < -0.00009995) return "F7";
else return "F8";
}
else if (sigDigits == 3)
{
if (value >= 99.5 || value < -99.5) return "F0";
else if (value >= 9.95 || value < -9.95) return "F1";
else if (value >= 0.995 || value < -0.995) return "F2";
else if (value >= 0.0995 || value < -0.0995) return "F3";
else if (value >= 0.00995 || value < -0.00995) return "F4";
else if (value >= 0.000995 || value < -0.000995) return "F5";
else if (value >= 0.0000995 || value < -0.0000995) return "F6";
else return "F7";
}
else if (sigDigits == 2)
{
if (value >= 9.5 || value < -9.5) return "F0";
else if (value >= 0.95 || value < -0.95) return "F1";
else if (value >= 0.095 || value < -0.095) return "F2";
else if (value >= 0.0095 || value < -0.0095) return "F3";
else if (value >= 0.00095 || value < -0.00095) return "F4";
else if (value >= 0.000095 || value < -0.000095) return "F5";
else return "F6";
}
else /// if (sigDigits == 1)
{
if (value >= 0.95 || value < -0.95) return "F0";
else if (value >= 0.095 || value < -0.095) return "F1";
else if (value >= 0.0095 || value < -0.0095) return "F2";
else if (value >= 0.00095 || value < -0.00095) return "F3";
else if (value >= 0.000095 || value < -0.000095) return "F4";
else return "F5";
}
}
/// <summary>
/// Extract and return a DB server from a MySQL connection string.
/// </summary>
public static string GetDBServer(string connectionString)
{
return GetFromConnectionString(connectionString, new string[] { "SERVER=" });
}
/// <summary>
/// Extract and return a DB name from a MySQL connection string.
/// </summary>
public static string GetDBName(string connectionString)
{
return GetFromConnectionString(connectionString, new string[] { "DATABASE=" });
}
/// <summary>
/// Extract and return a username from a MySQL connection string
/// </summary>
public static string GetDBUser(string connectionString)
{
return GetFromConnectionString(connectionString, new string[] { "USER=", "UID=" });
}
/// <summary>
/// Extract and return a password from a MySQL connection string
/// </summary>
public static string GetDBPassword(string connectionString)
{
return GetFromConnectionString(connectionString, new string[] { "PASSWORD=", "PWD=" });
}
/// <summary>
/// Extract and return an element of a MySQL connection string
/// (a host, a database, a user name or a password).
/// Return an empty string on any error.
/// </summary>
public static string GetFromConnectionString(string connectionString, string[] patterns)
{
foreach (var pattern in patterns)
{
int startIx = connectionString.IndexOf(pattern);
if (startIx >= 0)
{
/// pattern found, extract the subsequent element
startIx += pattern.Length;
int endIx = connectionString.IndexOf(';', startIx);
return (endIx > 0) ? connectionString.Substring(startIx, endIx - startIx) : string.Empty;
}
}
/// pattern NOT found
return string.Empty;
}
/// <summary>
/// Get either Q1 or Qmin flow for a given Qn and metrological class
/// </summary>
/// <param name="Qn">Nominal flow in m3/h</param>
/// <param name="metroClass">Metrological class ("A" ,"B", "C" or "R#")</param>
/// <param name="medium">NotSpecified, ColdWater or HotWater</param>
/// <param name="Qdflt">Default flow when metrologic does not match pattern</param>
/// <returns>Q1 or Qmin flow in m3/h</returns>
public static double GetQ1Qmin(double Qn, string metroClass, Entities.Medium medium = Entities.Medium.ColdWater, double Qdflt = 0)
{
if (string.IsNullOrEmpty(metroClass)) return Qdflt;
int metroClassRatio;
if ((metroClass[0] == 'R') && int.TryParse(metroClass.Substring(1), out metroClassRatio) && (metroClassRatio > 0))
{
return Qn / (double)metroClassRatio;
}
else
{
if (medium == Entities.Medium.HotWater)
{
switch (metroClass)
{
case "A": return (Qn < 15) ? (0.04 * Qn) : (0.08 * Qn);
case "B": return (Qn < 15) ? (0.02 * Qn) : (0.04 * Qn);
case "C": return (Qn < 15) ? (0.01 * Qn) : (0.02 * Qn);
case "D": return (Qn < 15) ? (0.01 * Qn) : Qdflt;
default: break;
}
}
else
{
switch (metroClass)
{
case "A": return (Qn < 15) ? (0.04 * Qn) : (0.08 * Qn);
case "B": return (Qn < 15) ? (0.02 * Qn) : (0.03 * Qn);
case "C": return (Qn < 15) ? (0.01 * Qn) : (0.006 * Qn);
default: break;
}
}
}
return Qdflt;
}
/// <summary>
/// Get either Q2 or Qt flow for a given Qn and metrological class
/// </summary>
/// <param name="Qn">Nominal flow in m3/h</param>
/// <param name="metroClass">Metrological class ("A" ,"B", "C" or "R#")</param>
/// <param name="medium">NotSpecified, ColdWater or HotWater</param>
/// <param name="Qdflt">Default flow when metrologic does not match pattern</param>
/// <returns>Q2 or Qt flow in m3/h</returns>
public static double GetQ2Qt(double Qn, string metroClass, Entities.Medium medium = Entities.Medium.ColdWater, double Qdflt = 0)
{
if (string.IsNullOrEmpty(metroClass)) return Qdflt;
int metroClassRatio;
if ((metroClass[0] == 'R') && int.TryParse(metroClass.Substring(1), out metroClassRatio) && (metroClassRatio > 0))
{
return 1.6 * Qn / (double)metroClassRatio;
}
if (medium == Entities.Medium.HotWater)
{
switch (metroClass)
{
case "A": return (Qn < 15) ? (0.1 * Qn) : (0.2 * Qn);
case "B": return (Qn < 15) ? (0.08 * Qn) : (0.15 * Qn);
case "C": return (Qn < 15) ? (0.06 * Qn) : (0.1 * Qn);
case "D": return (Qn < 15) ? (0.015 * Qn) : Qdflt;
default: break;
}
}
else
{
switch (metroClass)
{
case "A": return (Qn < 15) ? (0.1 * Qn) : (0.3 * Qn);
case "B": return (Qn < 15) ? (0.08 * Qn) : (0.2 * Qn);
case "C": return (Qn < 15) ? (0.015 * Qn) : (0.015 * Qn);
default: break;
}
}
return Qdflt;
}
/// <summary>
/// Get either Q4 or Qmax flow for a given Qn and metrological class
/// </summary>
/// <param name="Qn">Nominal flow in m3/h</param>
/// <param name="metroClass">Metrological class ("A" ,"B", "C" or "R#")</param>
/// <param name="medium">NotSpecified, ColdWater or HotWater</param>
/// <param name="Qdflt">Default flow when metrologic does not match pattern</param>
/// <returns>Q4 or Qmax flow in m3/h</returns>
public static double GetQ4Qmax(double Qn, string metroClass, Entities.Medium medium = Entities.Medium.ColdWater, double Qdflt = 0)
{
if (string.IsNullOrEmpty(metroClass)) return Qdflt;
switch (metroClass[0])
{
case 'A':
case 'B':
case 'C':
case 'D':
return 2 * Qn;
case 'R':
return 1.25 * Qn;
default:
return Qdflt;
}
}
}
}
+324 -18
View File
@@ -13,22 +13,28 @@ namespace DataStreamInterface
degree,
/// Volume
ml, /// 0.001 l
l, /// * 1 liter = 1 l
ml, /// 1 ml = 0.001 l
l, /// * 1 liter
dm3, /// 1 dm3 = 1 l
m3, /// 1000 l
gal_UK, /// 1 gal(UK) = 4.54609 l
gal_US, /// 1 gal(US) = 3.78541178 l
USgal, /// 1 US gallon = 3.78541178 l
UKgal, /// 1 imperial gallon = 4.54609 l
cf, /// 1 cubic foot = 28.316846592 l
m3, /// 1 m3 = 1000 l
/// Flow
lph, /// 1 liter/h
m3ph, /// * 1 m3/h = 1000 l/h
lph, /// 1 l/h = 0.001 m3/h
lpm, /// 1 l/m = 60 l/h = 0.06 m3/h
m3ph, /// * 1 m3/h
lps, /// 1 liter/s = 3.6 m3/h
USgalps, /// 1 US gallon per second = 13.627482408 m3/h
m3pm, /// 1 m3/m = 60 m3/h
cfs, /// 1 cubic foot per second = 101.9406477312 m3/h
/// Mass
g, /// 0.001 kg
lb, /// 0.45359237 kg
kg, /// * 1 kilogram
t, /// 1000 kg
lb, /// 0.45359237 kg
/// Time
ms, /// 1 ms = 0.001 s
@@ -47,6 +53,7 @@ namespace DataStreamInterface
mbar, /// 1 mbar = 1 hPa = 100 Pa
kPa, /// 1 kPa = 10 HPa
inHg, /// 1 inHg = 33.864 hPa
psi, /// 1 psi = 0.0689475729 bar
bar, /// * 1 Bar = 1000 mbar = 0.1 MPa = 100000 Pa
MPa, /// 1 MPa = 10000 hPa
@@ -61,7 +68,9 @@ namespace DataStreamInterface
mm, /// * 1 millimeter
cm, /// 1 cm = 10 mm
inch, /// 1 inch = 25.4 mm
dm, /// 1 dm = 100 mm
foot, /// 1 foot = 304.8 mm
yard, /// 1 yard = 914.4 mm
m, /// 1 m = 1000 mm
/// Density
@@ -76,20 +85,317 @@ namespace DataStreamInterface
kWh, /// 1 kWh = 3600000 J
MWh, /// 1 MWh = 3600000000 J
/// Electrical conductivity
uSpcm, /// * 1 uS/cm
mSpm, /// 1 mS/m = 10 uS/cm
/// Meter coefficient - volume
ppl, /// * 1 pulse/l
ppdm3, /// * 1 pulse/dm3
degpl, /// * 1 degree/l
degpdm3, /// * 1 degree/dm3
lpp, /// * 1 l/pulse
dm3pp, /// * 1 dm3/pulse
lpdeg, /// * 1 l/degree
dm3pdeg, /// * 1 dm3/degree
ppdm3, /// 1 pulse/dm3
degpl, /// 1 degree/l
degpdm3, /// 1 degree/dm3
lpp, /// 1 l/pulse
dm3pp, /// 1 dm3/pulse
lpdeg, /// 1 l/degree
dm3pdeg, /// 1 dm3/degree
/// Meter coefficient - energy
ppkWh, /// * 1 pulse/kWh
kWhpp, /// * 1 kWh/pulse
Count
kWhpp, /// 1 kWh/pulse
}
public enum Quantity
{
/// Quantities with units and conversions (double -> double)
Volume,
Flow,
Mass,
Time,
Temperature,
Pressure,
Humidity,
Error,
Length,
Density,
Energy,
Pulses,
PulsePerLtr,
PulsePerKWh,
Conductivity,
/// Quantities without units and conversions
Number,
String,
Boolean,
DateTime,
Enumerated,
}
public static class Units
{
public static bool IsDefaultUnit(Unit unit)
{
return unit == Unit.l || unit == Unit.m3ph || unit == Unit.kg || unit == Unit.s || unit == Unit.C ||
unit == Unit.bar || unit == Unit.RPct || unit == Unit.Pct || unit == Unit.mm || unit == Unit.kgpm3 ||
unit == Unit.J || unit == Unit.uSpcm || unit == Unit.ppl || unit == Unit.ppkWh;
}
public static Quantity GetQuantity(Unit units)
{
switch (units)
{
case Unit.pulse:
case Unit.degree:
return Quantity.Pulses;
case Unit.ml:
case Unit.l:
case Unit.dm3:
case Unit.USgal:
case Unit.UKgal:
case Unit.cf:
case Unit.m3:
return Quantity.Volume;
case Unit.lph:
case Unit.lpm:
case Unit.m3ph:
case Unit.lps:
case Unit.USgalps:
case Unit.m3pm:
case Unit.cfs:
return Quantity.Flow;
case Unit.g:
case Unit.lb:
case Unit.kg:
case Unit.t:
return Quantity.Mass;
case Unit.ms:
case Unit.s:
case Unit.min:
case Unit.hour:
return Quantity.Time;
case Unit.C:
case Unit.F:
case Unit.K:
return Quantity.Temperature;
case Unit.Pa:
case Unit.hPa:
case Unit.mbar:
case Unit.kPa:
case Unit.inHg:
case Unit.psi:
case Unit.bar:
case Unit.MPa:
return Quantity.Pressure;
case Unit.RPct:
return Quantity.Humidity;
case Unit.Promile:
case Unit.Pct:
return Quantity.Error;
case Unit.mm:
case Unit.cm:
case Unit.inch:
case Unit.dm:
case Unit.foot:
case Unit.yard:
case Unit.m:
return Quantity.Length;
case Unit.kgpm3:
case Unit.kgpl:
return Quantity.Density;
case Unit.J:
case Unit.kJ:
case Unit.MJ:
case Unit.Wh:
case Unit.kWh:
case Unit.MWh:
return Quantity.Energy;
case Unit.uSpcm:
case Unit.mSpm:
return Quantity.Conductivity;
case Unit.ppl:
case Unit.ppdm3:
case Unit.degpl:
case Unit.degpdm3:
case Unit.lpp:
case Unit.dm3pp:
case Unit.lpdeg:
case Unit.dm3pdeg:
return Quantity.PulsePerLtr;
case Unit.ppkWh:
case Unit.kWhpp:
return Quantity.PulsePerKWh;
default:
return Quantity.Number;
}
}
public static double ConvertTo(Unit units, double v)
{
switch (units)
{
/// Volume: internal representation in l
case Unit.ml: return 1000 * v; /// 1 l = 1000 ml
case Unit.USgal: return 0.26417205 * v; /// 1 gal(US) = 3.78541178 l
case Unit.UKgal: return 0.21996925 * v; /// 1 gal(UK) = 4.54609 l
case Unit.cf: return 0.0353146667215 * v; /// 1 cubic foot = 28.316846592 l
case Unit.m3: return 0.001 * v; /// 1 m3 = 1000 l
/// Flow: internal representation in m3/h
case Unit.lph: return 1000 * v; /// 1 l/h
case Unit.lpm: return v / 0.06; /// 1 l/m
case Unit.lps: return v / 3.6; /// 1 l/s
case Unit.USgalps: return 0.0733811257326 * v; /// 1 US gallon per second
case Unit.m3pm: return v / 60; /// 1 m3/m
case Unit.cfs: return 0.009809629644858 * v; /// 1 cubic foot per second
/// Mass: internal representation in kg
case Unit.g: return 1000 * v; /// 1 g = 0.001 kg
case Unit.lb: return 2.2046226 * v; /// 1 lb = 0.45359237 kg
case Unit.t: return 0.001 * v; /// 1 t = 1000 kg
/// Time or duration: internal representation in seconds [s]
case Unit.ms: return 1000 * v;
case Unit.min: return v / 60;
case Unit.hour: return v / 3600;
/// Temperature: internal representation in °C
case Unit.F: return 1.8 * v + 32; /// degree Fahrenheit
case Unit.K: return v + 273.15; /// degree Kelvin
/// Pressure: internal representation in bar = 0.1 MPa
case Unit.Pa: return 100000 * v;
case Unit.hPa: return 1000 * v; /// 1 hPa = 100 Pa
case Unit.mbar: return 1000 * v; /// 1 mbar = 1 hPa = 100 Pa
case Unit.kPa: return 100 * v; /// 1 kPa = 10 HPa
case Unit.inHg: return 29.53 * v; /// 1 inHg =
case Unit.psi: return 14.5037738 * v; /// 1 psi =
case Unit.MPa: return 0.1 * v; /// 1 MPa = 10000 hPa
/// Relative error: internal representation in %
case Unit.Promile: return 10 * v; /// 1 promile = 0.1 %
/// Diameter, length: internal representation in mm
case Unit.cm: return 0.1 * v; /// 1 cm = 10 mm
case Unit.inch: return v / 25.4; /// 1 inch = 25.4 mm
case Unit.dm: return 0.01 * v; /// 1 dm = 100 mm
case Unit.foot: return v / 304.8; /// 1 foot = 304.8 mm
case Unit.yard: return v / 914.4; /// 1 yard = 914,4 mm
case Unit.m: return 0.001 * v; /// 1 m = 1000 mm
/// Density: internal representation in kg/m3
case Unit.kgpl: return 0.001 * v;
/// Energy, internal representation in Joul
case Unit.kJ: return 0.001 * v; /// 1 kJ = 1000 J
case Unit.MJ: return 0.000001 * v; /// 1 kJ = 1000000 J
case Unit.Wh: return v / 3600.0; /// 1 Wh = 3600 J
case Unit.kWh: return v / 3600000.0; /// 1 kWh = 3600000 J
case Unit.MWh: return v / 3600000000.0; /// 1 MWh = 3600000000 J
/// Electrical conductivity
case Unit.mSpm: return 0.1 * v;
/// Invert pulses
case Unit.kWhpp:
case Unit.lpp:
case Unit.dm3pp:
case Unit.lpdeg:
case Unit.dm3pdeg: return (v <= float.Epsilon) ? 0 : 1/v;
default: return v; /// Do not convert
}
}
public static double ConvertFrom(Unit units, double v)
{
switch (units)
{
/// Volume: internal representation in l
case Unit.ml: return 0.001 * v; /// 0.001 l
case Unit.USgal: return 3.78541178 * v; /// 1 gal(US) = 3.78541178 l
case Unit.UKgal: return 4.54609 * v; /// 1 gal(UK) = 4.54609 l
case Unit.cf: return 28.316846592 * v; /// 1 cubic foot = 28.316846592 l
case Unit.m3: return 1000 * v; /// 1000 l
/// Flow: internal representation in m3/h
case Unit.lph: return 0.001 * v; /// 1 l/h
case Unit.lpm: return 0.06 * v; /// 1 l/m
case Unit.lps: return 3.6 * v; /// 1 l/s
case Unit.USgalps: return 13.627482408 * v; /// 1 US gallon per second
case Unit.m3pm: return 60 * v; /// 1 m3/m
case Unit.cfs: return 101.9406477312 * v; /// 1 cubic foot per second
/// Mass: internal representation in kg
case Unit.g: return 0.001 * v; /// 1 g = 0.001 kg
case Unit.lb: return 0.45359237 * v; /// 1 lb = 0.45359237 kg
case Unit.t: return 1000 * v; /// 1 t = 1000 kg
/// Time or duration: internal representation in seconds [s]
case Unit.ms: return 0.001 * v;
case Unit.min: return 60 * v;
case Unit.hour: return 3600 * v;
/// Temperature: internal representation in °C
case Unit.F: return 5 * (v - 32) / 9; /// degree Fahrenheit
case Unit.K: return v - 273.15; /// degree Kelvin
/// Pressure: internal representation in bar = 0.1 MPa
case Unit.Pa: return 0.00001 * v; /// 1 hPa = 100 Pa
case Unit.hPa: return 0.001 * v; /// 1 hPa = 100 Pa
case Unit.mbar: return 0.001 * v; /// 1 mbar = 1 hPa = 100 Pa
case Unit.kPa: return 0.01 * v; /// 1 kPa = 10 HPa
case Unit.inHg: return 0.033864 * v; /// 1 inHg = 33.864 hPa
case Unit.psi: return 0.0689475729 * v; /// 1 psi = 0.0689475729 bar
case Unit.MPa: return 10 * v; /// 1 MPa = 10000 hPa
/// Relative error: internal representation in %
case Unit.Promile: return 0.1 * v; /// 1 promile = 0.1 %
/// Diameter, length: internal representation in mm
case Unit.cm: return 10 * v; /// 1 cm = 10 mm
case Unit.inch: return 25.4 * v; /// 1 inch = 25.4 mm
case Unit.dm: return 100 * v; /// 1 dm = 100 mm
case Unit.foot: return 304.8 * v; /// 1 foot = 304.8 mm
case Unit.yard: return 914.4 * v; /// 1 yard = 914,4 mm
case Unit.m: return 1000 * v; /// 1 m = 1000 mm
/// Density: internal representation in kg/m3
case Unit.kgpl: return 1000 * v;
/// Energy, internal representation in Joul
case Unit.kJ: return 1000 * v; /// 1 kJ = 1000 J
case Unit.MJ: return 1000000 * v; /// 1 kJ = 1000000 J
case Unit.Wh: return 3600 * v; /// 1 Wh = 3600 J
case Unit.kWh: return 3600000 * v; /// 1 kWh = 3600000 J
case Unit.MWh: return 3600000000 * v; /// 1 kWh = 3600000000 J
/// Electrical conductivity
case Unit.mSpm: return 10 * v;
/// Invert
case Unit.kWhpp:
case Unit.lpp:
case Unit.dm3pp:
case Unit.lpdeg:
case Unit.dm3pdeg: return (v <= float.Epsilon) ? 0 : 1/v;
default: return v; /// Do not convert
}
}
}
}
+8
View File
@@ -90,10 +90,18 @@
</Compile>
</ItemGroup>
<ItemGroup>
<ProjectReference Include="..\Common\Common.csproj">
<Project>{c8939821-ba5c-4988-a3d0-bf53b74865c7}</Project>
<Name>Common</Name>
</ProjectReference>
<ProjectReference Include="..\Config\Config.csproj">
<Project>{743DF7DB-C7B6-42EB-986D-0F485E5588E4}</Project>
<Name>Config</Name>
</ProjectReference>
<ProjectReference Include="..\SchematicDrawing\SchematicDrawing.csproj">
<Project>{0f79ca69-9dbc-41f3-a6fc-5a2937365343}</Project>
<Name>SchematicDrawing</Name>
</ProjectReference>
<ProjectReference Include="..\TBF\TBF.csproj">
<Project>{8648FD92-CDA1-4C3A-B5F9-FE547CE1FA48}</Project>
<Name>TBF</Name>
+113 -109
View File
@@ -5,9 +5,11 @@ using System.IO;
using System.Text;
using System.Threading;
using System.Windows.Forms;
using TBF.BenchControl;
using TBF.BenchControl.Generic;
using System.Xml.Serialization;
using Common;
using TBF.Rig;
using TBF.Rig.Generic;
using TBF.UI.Bench.Components;
namespace DeviceTest
@@ -79,7 +81,7 @@ namespace DeviceTest
compClasses.Add(componentFactory.ClassName);
}
tbfComponents = new List<TBF.BenchControl.Generic.IComponent>();
tbfComponents = new List<TBF.Rig.Generic.IComponent>();
tbfDevices = new List<IDevice>();
}
@@ -108,8 +110,8 @@ namespace DeviceTest
config.Name = Program.LocalSettings.ParentName;
config.ParentName = string.Empty;
config.ItemNr = 0;
config.DebugLevel = Config.Entities.DebugMode.Normal;
config.LogLevel = Config.Entities.LogLevel.Debug;
config.DebugLevel = DebugMode.Normal;
config.LogLevel = LogLevel.Debug;
config.Corrections = null;
config.Factory = parentFactory;
parentCfg = config;
@@ -141,8 +143,8 @@ namespace DeviceTest
config.Name = Program.LocalSettings.ComponentName;
config.ParentName = string.IsNullOrEmpty(Program.LocalSettings.ComponentParentName) ? string.Empty : Program.LocalSettings.ComponentParentName;
config.ItemNr = 1;
config.DebugLevel = Config.Entities.DebugMode.Normal;
config.LogLevel = Config.Entities.LogLevel.Debug;
config.DebugLevel = DebugMode.Normal;
config.LogLevel = LogLevel.Debug;
config.Corrections = null;
config.Factory = component1Factory;
component1Cfg = config;
@@ -176,8 +178,8 @@ namespace DeviceTest
config.Name = Program.LocalSettings.Component2Name;
config.ParentName = string.IsNullOrEmpty(Program.LocalSettings.Component2ParentName) ? string.Empty : Program.LocalSettings.Component2ParentName;
config.ItemNr = 2;
config.DebugLevel = Config.Entities.DebugMode.Normal;
config.LogLevel = Config.Entities.LogLevel.Debug;
config.DebugLevel = DebugMode.Normal;
config.LogLevel = LogLevel.Debug;
config.Corrections = null;
config.Factory = component2Factory;
component2Cfg = config;
@@ -211,8 +213,8 @@ namespace DeviceTest
config.Name = Program.LocalSettings.Component3Name;
config.ParentName = string.IsNullOrEmpty(Program.LocalSettings.Component3ParentName) ? string.Empty : Program.LocalSettings.Component3ParentName;
config.ItemNr = 3;
config.DebugLevel = Config.Entities.DebugMode.Normal;
config.LogLevel = Config.Entities.LogLevel.Debug;
config.DebugLevel = DebugMode.Normal;
config.LogLevel = LogLevel.Debug;
config.Corrections = null;
config.Factory = component3Factory;
component3Cfg = config;
@@ -421,13 +423,13 @@ namespace DeviceTest
{
parentCfg = parentFactory.DefaultConfig();
}
IComponentCfgCtrl cfgControl = parentCfg.GetControl();
ComponentParametersDlg cfgForm = new ComponentParametersDlg();
cfgForm.CmpntEntities = new List<Config.Entities.Component>();
IComponentCfgCtrl cfgControl = parentCfg.GetControl(cfgForm.CmpntEntities);
cfgControl.Config = parentCfg;
cfgControl.Config.ItemNr = 0;
ComponentParametersDlg cfgForm = new ComponentParametersDlg();
cfgForm.TbfComponents = new List<Config.Entities.Component>();
cfgForm.ComponentCfgCtrl = cfgControl;
cfgForm.UnlockAfterStart = true;
DialogResult dr = cfgForm.ShowDialog();
@@ -450,17 +452,17 @@ namespace DeviceTest
{
component1Cfg = component1Factory.DefaultConfig();
}
IComponentCfgCtrl cfgControl = component1Cfg.GetControl();
cfgControl.Config = component1Cfg;
cfgControl.Config.ItemNr = 1;
ComponentParametersDlg cfgForm = new ComponentParametersDlg();
///
IList<Config.Entities.Component> compEntities = new List<Config.Entities.Component>();
var compEntities = new List<Config.Entities.Component>();
if (parentFactory != null && parentCfg != null) compEntities.Add(parentCfg.CreateDbEntity());
cfgForm.TbfComponents = compEntities;
cfgForm.CmpntEntities = compEntities;
cfgForm.ComponentCfgCtrl = cfgControl;
IComponentCfgCtrl cfgControl = component1Cfg.GetControl(compEntities);
cfgControl.Config = component1Cfg;
cfgControl.Config.ItemNr = 1;
cfgForm.ComponentCfgCtrl = cfgControl;
cfgForm.UnlockAfterStart = true;
DialogResult dr = cfgForm.ShowDialog();
if (dr != DialogResult.OK) return;
@@ -484,18 +486,18 @@ namespace DeviceTest
{
component2Cfg = component2Factory.DefaultConfig();
}
IComponentCfgCtrl cfgControl = component2Cfg.GetControl();
cfgControl.Config = component2Cfg;
cfgControl.Config.ItemNr = 1;
ComponentParametersDlg cfgForm = new ComponentParametersDlg();
///
IList<Config.Entities.Component> compEntities = new List<Config.Entities.Component>();
var compEntities = new List<Config.Entities.Component>();
if (parentFactory != null && parentCfg != null) compEntities.Add(parentCfg.CreateDbEntity());
if (component1Factory != null && component1Cfg != null) compEntities.Add(component1Cfg.CreateDbEntity());
cfgForm.TbfComponents = compEntities;
cfgForm.CmpntEntities = compEntities;
cfgForm.ComponentCfgCtrl = cfgControl;
IComponentCfgCtrl cfgControl = component2Cfg.GetControl(compEntities);
cfgControl.Config = component2Cfg;
cfgControl.Config.ItemNr = 1;
cfgForm.ComponentCfgCtrl = cfgControl;
cfgForm.UnlockAfterStart = true;
DialogResult dr = cfgForm.ShowDialog();
if (dr != DialogResult.OK) return;
@@ -519,19 +521,19 @@ namespace DeviceTest
{
component3Cfg = component3Factory.DefaultConfig();
}
IComponentCfgCtrl cfgControl = component3Cfg.GetControl();
cfgControl.Config = component3Cfg;
cfgControl.Config.ItemNr = 1;
ComponentParametersDlg cfgForm = new ComponentParametersDlg();
///
IList<Config.Entities.Component> compEntities = new List<Config.Entities.Component>();
var compEntities = new List<Config.Entities.Component>();
if (parentFactory != null && parentCfg != null) compEntities.Add(parentCfg.CreateDbEntity());
if (component1Factory != null && component1Cfg != null) compEntities.Add(component1Cfg.CreateDbEntity());
if (component2Factory != null && component2Cfg != null) compEntities.Add(component2Cfg.CreateDbEntity());
cfgForm.TbfComponents = compEntities;
cfgForm.CmpntEntities = compEntities;
cfgForm.ComponentCfgCtrl = cfgControl;
IComponentCfgCtrl cfgControl = component3Cfg.GetControl(compEntities);
cfgControl.Config = component3Cfg;
cfgControl.Config.ItemNr = 1;
cfgForm.ComponentCfgCtrl = cfgControl;
cfgForm.UnlockAfterStart = true;
DialogResult dr = cfgForm.ShowDialog();
if (dr != DialogResult.OK) return;
@@ -568,7 +570,7 @@ namespace DeviceTest
{
if (parentFactory != null && parentCfg != null)
{
TBF.BenchControl.Generic.IComponent component = parentFactory.GetComponent(parentCfg, tbfComponents);
TBF.Rig.Generic.IComponent component = parentFactory.GetComponent(parentCfg, tbfComponents);
tbfComponents.Add(component);
IDevice dev = component as IDevice;
if (dev != null)
@@ -580,7 +582,7 @@ namespace DeviceTest
}
if (component1Factory != null && component1Cfg != null)
{
TBF.BenchControl.Generic.IComponent component = component1Factory.GetComponent(component1Cfg, tbfComponents);
TBF.Rig.Generic.IComponent component = component1Factory.GetComponent(component1Cfg, tbfComponents);
tbfComponents.Add(component);
tbfComponent1forOp = component;
IDevice dev = component as IDevice;
@@ -593,7 +595,7 @@ namespace DeviceTest
}
if (component2Factory != null && component2Cfg != null)
{
TBF.BenchControl.Generic.IComponent component2 = component2Factory.GetComponent(component2Cfg, tbfComponents);
TBF.Rig.Generic.IComponent component2 = component2Factory.GetComponent(component2Cfg, tbfComponents);
tbfComponents.Add(component2);
tbfComponent2forOp = component2;
IDevice dev = component2 as IDevice;
@@ -606,7 +608,7 @@ namespace DeviceTest
}
if (component3Factory != null && component3Cfg != null)
{
TBF.BenchControl.Generic.IComponent component3 = component3Factory.GetComponent(component3Cfg, tbfComponents);
TBF.Rig.Generic.IComponent component3 = component3Factory.GetComponent(component3Cfg, tbfComponents);
tbfComponents.Add(component3);
tbfComponent3forOp = component3;
IDevice dev = component3 as IDevice;
@@ -645,6 +647,7 @@ namespace DeviceTest
MessageBoxIcon.Exclamation);
foreach (var dev in tbfDevices) dev.StopDevice();
foreach (var dev in tbfDevices) dev.StopDevice2();
tbfDevices.Clear();
startButton.Enabled = true;
@@ -662,120 +665,120 @@ namespace DeviceTest
int previousOperation = 0;
if (tbfComponent1forOp is TBF.BenchControl.Modbus.PressureMeter.Meret.PressureMeter)
if (tbfComponent1forOp is TBF.Rig.Modbus.PressureMeter.Meret.PressureMeter)
{
operation1 = (tbfComponent1forOp as TBF.BenchControl.Modbus.PressureMeter.Meret.PressureMeter).ReadPressureOp(ref floatBox);
operation1 = (tbfComponent1forOp as TBF.Rig.Modbus.PressureMeter.Meret.PressureMeter).ReadPressureOp(ref dblBox1);
}
else if (tbfComponent1forOp is TBF.BenchControl.Network.Camera.CLP1611.Camera)
else if (tbfComponent1forOp is TBF.Rig.Network.Camera.CLP1611.Camera)
{
operation1 = (tbfComponent1forOp as TBF.BenchControl.Network.Camera.CLP1611.Camera).LiveStreamOp(false);
operation2 = (tbfComponent1forOp as TBF.BenchControl.Network.Camera.CLP1611.Camera).LiveStreamOp(true);
operation1 = (tbfComponent1forOp as TBF.Rig.Network.Camera.CLP1611.Camera).LiveStreamOp(false);
operation2 = (tbfComponent1forOp as TBF.Rig.Network.Camera.CLP1611.Camera).LiveStreamOp(true);
}
else if (tbfComponent1forOp is TBF.BenchControl.Network.Camera.Roi.Roi)
else if (tbfComponent1forOp is TBF.Rig.Network.Camera.Roi.Roi)
{
operation1 = (tbfComponent1forOp as TBF.BenchControl.Network.Camera.Roi.Roi).RoiDetectionOp();
operation1 = (tbfComponent1forOp as TBF.Rig.Network.Camera.Roi.Roi).RoiDetectionOp();
}
else if (tbfComponent1forOp is TBF.BenchControl.Modbus.Easytherm.Easytherm)
else if (tbfComponent1forOp is TBF.Rig.Modbus.Easytherm.Easytherm)
{
operation1 = (tbfComponent1forOp as TBF.BenchControl.Modbus.Easytherm.Easytherm).SetTemperatureOp(10);
operation2 = (tbfComponent1forOp as TBF.BenchControl.Modbus.Easytherm.Easytherm).SetTemperatureOp(20);
operation1 = (tbfComponent1forOp as TBF.Rig.Modbus.Easytherm.Easytherm).SetTemperatureOp(10);
operation2 = (tbfComponent1forOp as TBF.Rig.Modbus.Easytherm.Easytherm).SetTemperatureOp(20);
}
else if (tbfComponent1forOp is TBF.BenchControl.Modbus.UltrasoundLevelMeter.LevelMeter)
else if (tbfComponent1forOp is TBF.Rig.Modbus.UltrasoundLevelMeter.LevelMeter)
{
operation1 = (tbfComponent1forOp as TBF.BenchControl.Modbus.UltrasoundLevelMeter.LevelMeter).ReadLevelOp(ref dblBox1);
operation2 = (tbfComponent1forOp as TBF.BenchControl.Modbus.UltrasoundLevelMeter.LevelMeter).ReadTempOp(ref dblBox3);
operation1 = (tbfComponent1forOp as TBF.Rig.Modbus.UltrasoundLevelMeter.LevelMeter).ReadLevelOp(ref dblBox1);
operation2 = (tbfComponent1forOp as TBF.Rig.Modbus.UltrasoundLevelMeter.LevelMeter).ReadTempOp(ref dblBox3);
}
else if (tbfComponent1forOp is TBF.BenchControl.Modbus.TankSelector.TankSelector)
else if (tbfComponent1forOp is TBF.Rig.Modbus.TankSelector.TankSelector)
{
//operation1 = (tbfComponent1forOp as TBF.BenchControl.Modbus.TankSelector.TankSelector).SelectTankOp(1);
//operation2 = (tbfComponent1forOp as TBF.BenchControl.Modbus.TankSelector.TankSelector).SelectTankOp(2);
//operation3 = (tbfComponent1forOp as TBF.BenchControl.Modbus.TankSelector.TankSelector).SelectTankOp(3);
//operation4 = (tbfComponent1forOp as TBF.BenchControl.Modbus.TankSelector.TankSelector).SelectTankOp(0);
//operation1 = (tbfComponent1forOp as TBF.Rig.Modbus.TankSelector.TankSelector).SelectTankOp(1);
//operation2 = (tbfComponent1forOp as TBF.Rig.Modbus.TankSelector.TankSelector).SelectTankOp(2);
//operation3 = (tbfComponent1forOp as TBF.Rig.Modbus.TankSelector.TankSelector).SelectTankOp(3);
//operation4 = (tbfComponent1forOp as TBF.Rig.Modbus.TankSelector.TankSelector).SelectTankOp(0);
}
else if (tbfComponent3forOp is TBF.BenchControl.Modbus.TankSelector.TankSelector)
else if (tbfComponent3forOp is TBF.Rig.Modbus.TankSelector.TankSelector)
{
operation1 = (tbfComponent3forOp as TBF.BenchControl.Modbus.QuidoRS.QuidoRS).SetOutputsOp(1);
operation2 = (tbfComponent3forOp as TBF.BenchControl.Modbus.QuidoRS.QuidoRS).SetOutputsOp(2);
operation3 = (tbfComponent3forOp as TBF.BenchControl.Modbus.QuidoRS.QuidoRS).SetOutputsOp(4);
operation4 = (tbfComponent3forOp as TBF.BenchControl.Modbus.QuidoRS.QuidoRS).SetOutputsOp(0);
operation1 = (tbfComponent3forOp as TBF.Rig.Modbus.QuidoRS.QuidoRS).SetOutputsOp(1);
operation2 = (tbfComponent3forOp as TBF.Rig.Modbus.QuidoRS.QuidoRS).SetOutputsOp(2);
operation3 = (tbfComponent3forOp as TBF.Rig.Modbus.QuidoRS.QuidoRS).SetOutputsOp(4);
operation4 = (tbfComponent3forOp as TBF.Rig.Modbus.QuidoRS.QuidoRS).SetOutputsOp(0);
}
if (tbfComponent2forOp is TBF.BenchControl.Modbus.PressureMeter.Meret.PressureMeter)
if (tbfComponent2forOp is TBF.Rig.Modbus.PressureMeter.Meret.PressureMeter)
{
operation21 = (tbfComponent2forOp as TBF.BenchControl.Modbus.PressureMeter.Meret.PressureMeter).ReadPressureOp(ref floatBox);
operation21 = (tbfComponent2forOp as TBF.Rig.Modbus.PressureMeter.Meret.PressureMeter).ReadPressureOp(ref dblBox2);
}
else if (tbfComponent2forOp is TBF.BenchControl.Network.Camera.CLP1611.Camera)
else if (tbfComponent2forOp is TBF.Rig.Network.Camera.CLP1611.Camera)
{
operation21 = (tbfComponent2forOp as TBF.BenchControl.Network.Camera.CLP1611.Camera).LiveStreamOp(false);
operation22 = (tbfComponent2forOp as TBF.BenchControl.Network.Camera.CLP1611.Camera).LiveStreamOp(true);
operation21 = (tbfComponent2forOp as TBF.Rig.Network.Camera.CLP1611.Camera).LiveStreamOp(false);
operation22 = (tbfComponent2forOp as TBF.Rig.Network.Camera.CLP1611.Camera).LiveStreamOp(true);
}
else if (tbfComponent2forOp is TBF.BenchControl.Network.Camera.Roi.Roi)
else if (tbfComponent2forOp is TBF.Rig.Network.Camera.Roi.Roi)
{
operation21 = (tbfComponent2forOp as TBF.BenchControl.Network.Camera.Roi.Roi).RoiDetectionOp();
operation21 = (tbfComponent2forOp as TBF.Rig.Network.Camera.Roi.Roi).RoiDetectionOp();
}
else if (tbfComponent2forOp is TBF.BenchControl.Modbus.Easytherm.Easytherm)
else if (tbfComponent2forOp is TBF.Rig.Modbus.Easytherm.Easytherm)
{
operation21 = (tbfComponent2forOp as TBF.BenchControl.Modbus.Easytherm.Easytherm).SetTemperatureOp(10);
operation22 = (tbfComponent2forOp as TBF.BenchControl.Modbus.Easytherm.Easytherm).SetTemperatureOp(20);
operation21 = (tbfComponent2forOp as TBF.Rig.Modbus.Easytherm.Easytherm).SetTemperatureOp(10);
operation22 = (tbfComponent2forOp as TBF.Rig.Modbus.Easytherm.Easytherm).SetTemperatureOp(20);
}
else if (tbfComponent2forOp is TBF.BenchControl.Modbus.UltrasoundLevelMeter.LevelMeter)
else if (tbfComponent2forOp is TBF.Rig.Modbus.UltrasoundLevelMeter.LevelMeter)
{
operation21 = (tbfComponent2forOp as TBF.BenchControl.Modbus.UltrasoundLevelMeter.LevelMeter).ReadLevelOp(ref dblBox1);
operation22 = (tbfComponent2forOp as TBF.BenchControl.Modbus.UltrasoundLevelMeter.LevelMeter).ReadTempOp(ref dblBox3);
operation21 = (tbfComponent2forOp as TBF.Rig.Modbus.UltrasoundLevelMeter.LevelMeter).ReadLevelOp(ref dblBox1);
operation22 = (tbfComponent2forOp as TBF.Rig.Modbus.UltrasoundLevelMeter.LevelMeter).ReadTempOp(ref dblBox3);
}
else if (tbfComponent2forOp is TBF.BenchControl.Modbus.TankSelector.TankSelector)
else if (tbfComponent2forOp is TBF.Rig.Modbus.TankSelector.TankSelector)
{
//operation21 = (tbfComponent2forOp as TBF.BenchControl.Modbus.TankSelector.TankSelector).SelectTankOp(1);
//operation22 = (tbfComponent2forOp as TBF.BenchControl.Modbus.TankSelector.TankSelector).SelectTankOp(2);
//operation23 = (tbfComponent2forOp as TBF.BenchControl.Modbus.TankSelector.TankSelector).SelectTankOp(3);
//operation24 = (tbfComponent2forOp as TBF.BenchControl.Modbus.TankSelector.TankSelector).SelectTankOp(0);
//operation21 = (tbfComponent2forOp as TBF.Rig.Modbus.TankSelector.TankSelector).SelectTankOp(1);
//operation22 = (tbfComponent2forOp as TBF.Rig.Modbus.TankSelector.TankSelector).SelectTankOp(2);
//operation23 = (tbfComponent2forOp as TBF.Rig.Modbus.TankSelector.TankSelector).SelectTankOp(3);
//operation24 = (tbfComponent2forOp as TBF.Rig.Modbus.TankSelector.TankSelector).SelectTankOp(0);
}
else if (tbfComponent3forOp is TBF.BenchControl.Modbus.TankSelector.TankSelector)
else if (tbfComponent3forOp is TBF.Rig.Modbus.TankSelector.TankSelector)
{
operation21 = (tbfComponent3forOp as TBF.BenchControl.Modbus.QuidoRS.QuidoRS).SetOutputsOp(1);
operation22 = (tbfComponent3forOp as TBF.BenchControl.Modbus.QuidoRS.QuidoRS).SetOutputsOp(2);
operation23 = (tbfComponent3forOp as TBF.BenchControl.Modbus.QuidoRS.QuidoRS).SetOutputsOp(4);
operation24 = (tbfComponent3forOp as TBF.BenchControl.Modbus.QuidoRS.QuidoRS).SetOutputsOp(0);
operation21 = (tbfComponent3forOp as TBF.Rig.Modbus.QuidoRS.QuidoRS).SetOutputsOp(1);
operation22 = (tbfComponent3forOp as TBF.Rig.Modbus.QuidoRS.QuidoRS).SetOutputsOp(2);
operation23 = (tbfComponent3forOp as TBF.Rig.Modbus.QuidoRS.QuidoRS).SetOutputsOp(4);
operation24 = (tbfComponent3forOp as TBF.Rig.Modbus.QuidoRS.QuidoRS).SetOutputsOp(0);
}
if (tbfComponent3forOp is TBF.BenchControl.Modbus.PressureMeter.Meret.PressureMeter)
if (tbfComponent3forOp is TBF.Rig.Modbus.PressureMeter.Meret.PressureMeter)
{
operation31 = (tbfComponent3forOp as TBF.BenchControl.Modbus.PressureMeter.Meret.PressureMeter).ReadPressureOp(ref floatBox);
operation31 = (tbfComponent3forOp as TBF.Rig.Modbus.PressureMeter.Meret.PressureMeter).ReadPressureOp(ref dblBox3);
}
else if (tbfComponent3forOp is TBF.BenchControl.Network.Camera.CLP1611.Camera)
else if (tbfComponent3forOp is TBF.Rig.Network.Camera.CLP1611.Camera)
{
operation31 = (tbfComponent3forOp as TBF.BenchControl.Network.Camera.CLP1611.Camera).LiveStreamOp(false);
operation33 = (tbfComponent3forOp as TBF.BenchControl.Network.Camera.CLP1611.Camera).LiveStreamOp(true);
operation31 = (tbfComponent3forOp as TBF.Rig.Network.Camera.CLP1611.Camera).LiveStreamOp(false);
operation33 = (tbfComponent3forOp as TBF.Rig.Network.Camera.CLP1611.Camera).LiveStreamOp(true);
}
else if (tbfComponent3forOp is TBF.BenchControl.Network.Camera.Roi.Roi)
else if (tbfComponent3forOp is TBF.Rig.Network.Camera.Roi.Roi)
{
operation31 = (tbfComponent3forOp as TBF.BenchControl.Network.Camera.Roi.Roi).RoiDetectionOp();
operation31 = (tbfComponent3forOp as TBF.Rig.Network.Camera.Roi.Roi).RoiDetectionOp();
}
else if (tbfComponent3forOp is TBF.BenchControl.Modbus.Easytherm.Easytherm)
else if (tbfComponent3forOp is TBF.Rig.Modbus.Easytherm.Easytherm)
{
operation31 = (tbfComponent3forOp as TBF.BenchControl.Modbus.Easytherm.Easytherm).SetTemperatureOp(10);
operation32 = (tbfComponent3forOp as TBF.BenchControl.Modbus.Easytherm.Easytherm).SetTemperatureOp(20);
operation31 = (tbfComponent3forOp as TBF.Rig.Modbus.Easytherm.Easytherm).SetTemperatureOp(10);
operation32 = (tbfComponent3forOp as TBF.Rig.Modbus.Easytherm.Easytherm).SetTemperatureOp(20);
}
else if (tbfComponent3forOp is TBF.BenchControl.Modbus.UltrasoundLevelMeter.LevelMeter)
else if (tbfComponent3forOp is TBF.Rig.Modbus.UltrasoundLevelMeter.LevelMeter)
{
operation31 = (tbfComponent3forOp as TBF.BenchControl.Modbus.UltrasoundLevelMeter.LevelMeter).ReadLevelOp(ref dblBox1);
operation32 = (tbfComponent3forOp as TBF.BenchControl.Modbus.UltrasoundLevelMeter.LevelMeter).ReadTempOp(ref dblBox3);
operation31 = (tbfComponent3forOp as TBF.Rig.Modbus.UltrasoundLevelMeter.LevelMeter).ReadLevelOp(ref dblBox1);
operation32 = (tbfComponent3forOp as TBF.Rig.Modbus.UltrasoundLevelMeter.LevelMeter).ReadTempOp(ref dblBox3);
}
else if (tbfComponent3forOp is TBF.BenchControl.Modbus.TankSelector.TankSelector)
else if (tbfComponent3forOp is TBF.Rig.Modbus.TankSelector.TankSelector)
{
//operation31 = (tbfComponent3forOp as TBF.BenchControl.Modbus.TankSelector.TankSelector).SelectTankOp(1);
//operation32 = (tbfComponent3forOp as TBF.BenchControl.Modbus.TankSelector.TankSelector).SelectTankOp(2);
//operation33 = (tbfComponent3forOp as TBF.BenchControl.Modbus.TankSelector.TankSelector).SelectTankOp(3);
//operation34 = (tbfComponent3forOp as TBF.BenchControl.Modbus.TankSelector.TankSelector).SelectTankOp(0);
//operation31 = (tbfComponent3forOp as TBF.Rig.Modbus.TankSelector.TankSelector).SelectTankOp(1);
//operation32 = (tbfComponent3forOp as TBF.Rig.Modbus.TankSelector.TankSelector).SelectTankOp(2);
//operation33 = (tbfComponent3forOp as TBF.Rig.Modbus.TankSelector.TankSelector).SelectTankOp(3);
//operation34 = (tbfComponent3forOp as TBF.Rig.Modbus.TankSelector.TankSelector).SelectTankOp(0);
}
else if (tbfComponent3forOp is TBF.BenchControl.Modbus.TankSelector.TankSelector)
else if (tbfComponent3forOp is TBF.Rig.Modbus.TankSelector.TankSelector)
{
operation31 = (tbfComponent3forOp as TBF.BenchControl.Modbus.QuidoRS.QuidoRS).SetOutputsOp(1);
operation32 = (tbfComponent3forOp as TBF.BenchControl.Modbus.QuidoRS.QuidoRS).SetOutputsOp(2);
operation33 = (tbfComponent3forOp as TBF.BenchControl.Modbus.QuidoRS.QuidoRS).SetOutputsOp(4);
operation34 = (tbfComponent3forOp as TBF.BenchControl.Modbus.QuidoRS.QuidoRS).SetOutputsOp(0);
operation31 = (tbfComponent3forOp as TBF.Rig.Modbus.QuidoRS.QuidoRS).SetOutputsOp(1);
operation32 = (tbfComponent3forOp as TBF.Rig.Modbus.QuidoRS.QuidoRS).SetOutputsOp(2);
operation33 = (tbfComponent3forOp as TBF.Rig.Modbus.QuidoRS.QuidoRS).SetOutputsOp(4);
operation34 = (tbfComponent3forOp as TBF.Rig.Modbus.QuidoRS.QuidoRS).SetOutputsOp(0);
}
@@ -856,6 +859,7 @@ namespace DeviceTest
}
foreach (var d in tbfDevices) d.StopDevice();
foreach (var d in tbfDevices) d.StopDevice2();
}
private void stopButton_Click(object sender, EventArgs e)
+1 -1
View File
@@ -183,7 +183,7 @@ namespace Dirichlet.Numerics
public override string ToString()
{
return ((BigInteger)this).ToString();
return ((BigInteger)this).ToString("x");
}
public string ToString(string format)
+5 -8
View File
@@ -13,7 +13,7 @@
<FileAlignment>512</FileAlignment>
</PropertyGroup>
<PropertyGroup Condition=" '$(Configuration)|$(Platform)' == 'Debug|AnyCPU' ">
<PlatformTarget>AnyCPU</PlatformTarget>
<PlatformTarget>x86</PlatformTarget>
<DebugSymbols>true</DebugSymbols>
<DebugType>full</DebugType>
<Optimize>false</Optimize>
@@ -21,6 +21,7 @@
<DefineConstants>DEBUG;TRACE</DefineConstants>
<ErrorReport>prompt</ErrorReport>
<WarningLevel>4</WarningLevel>
<Prefer32Bit>false</Prefer32Bit>
</PropertyGroup>
<PropertyGroup Condition=" '$(Configuration)|$(Platform)' == 'Release|AnyCPU' ">
<PlatformTarget>AnyCPU</PlatformTarget>
@@ -127,13 +128,9 @@
<Project>{c8939821-ba5c-4988-a3d0-bf53b74865c7}</Project>
<Name>Common</Name>
</ProjectReference>
<ProjectReference Include="..\Events\Events.csproj">
<Project>{5d9b49e3-cdf9-4a27-80b4-58141d0eb0e0}</Project>
<Name>Events</Name>
</ProjectReference>
<ProjectReference Include="..\Users\Users.csproj">
<Project>{6e5cb0e9-e1b6-4e5d-ac6e-b1049e180f2b}</Project>
<Name>Users</Name>
<ProjectReference Include="..\SharedDatabase\SharedDatabase.csproj">
<Project>{211b5e3f-9996-48a7-abde-c878dd2d71c2}</Project>
<Name>SharedDatabase</Name>
</ProjectReference>
</ItemGroup>
<ItemGroup />
+14 -13
View File
@@ -3,13 +3,14 @@
///
using System;
using System.Collections.Generic;
using System.Drawing;
using System.Windows.Forms;
using NHibernate;
using Common;
using Common.UIControls;
using Events;
using Events.Entities;
using SharedDatabase;
using SharedDatabase.Entities;
using EventViewer.Resources;
using System.Drawing;
namespace EventViewer
{
@@ -101,9 +102,9 @@ namespace EventViewer
{
try
{
DB.DbType = DBType.MySql;
DB.ConnectionString = Program.LocalSettings.ConnectionString;
session = DB.CreateSession();
EventsDB.DbType = DBType.MySql;
EventsDB.ConnectionString = Program.LocalSettings.ConnectionString;
session = EventsDB.CreateSession();
subscribers = session.QueryOver<Subscriber>().List();
unreadEventsRadioButton.Checked = true;
}
@@ -210,8 +211,8 @@ namespace EventViewer
{
lvi.UseItemStyleForSubItems = false;
lvi.SubItems.Add(evnt.Severity.ToString());
lvi.SubItems[lvi.SubItems.Count - 1].BackColor = Utils.GetSeverityColor(evnt.Severity);
lvi.SubItems[lvi.SubItems.Count - 1].ForeColor = Utils.GetSeverityColor(evnt.Severity, true);
lvi.SubItems[lvi.SubItems.Count - 1].BackColor = SharedDatabase.Utils.GetSeverityColor(evnt.Severity);
lvi.SubItems[lvi.SubItems.Count - 1].ForeColor = SharedDatabase.Utils.GetSeverityColor(evnt.Severity, true);
}
lvi.SubItems.Add(evnt.Message);
eventsListView.Items.Add(lvi);
@@ -252,7 +253,7 @@ namespace EventViewer
private void eventsListView_MouseDoubleClick(object sender, MouseEventArgs e)
{
if (eventsListView.SelectedIndices.Count != 1) return;
Event evnt = eventsListView.SelectedItems[0].Tag as Events.Entities.Event;
Event evnt = eventsListView.SelectedItems[0].Tag as Event;
if (evnt == null) return;
bool enableConfirmReadButton = (session != null) && (eViewerOption == EViewerOption.UnreadEvents) && !string.IsNullOrEmpty(currentUser);
@@ -275,8 +276,8 @@ namespace EventViewer
private void settingsButton_Click(object sender, EventArgs e)
{
//Users.Entities.GID[] groupsWithAccess = new Users.Entities.GID[] { Users.Entities.GID.Administrators };
Users.Forms.LoginDlg dlg = new Users.Forms.LoginDlg(true);
//Common.GID[] groupsWithAccess = new Common.GID[] { Common.GID.Administrators };
SharedDatabase.Forms.LoginDlg dlg = new SharedDatabase.Forms.LoginDlg(true);
if (dlg.ShowDialog() == DialogResult.OK)
{
if ((new Forms.SettingsDlg()).ShowDialog() == DialogResult.OK)
@@ -290,8 +291,8 @@ namespace EventViewer
{
try
{
Users.GlobalData.RemoteUsersDB = new Users.DBSettings(Users.Entities.DBType.MySql, Program.LocalSettings.UsersDBConnString);
Users.Forms.LoginDlg dlg = new Users.Forms.LoginDlg();
GlobalData.RemoteUsersDB = new DBSettings(DBType.MySql, Program.LocalSettings.UsersDBConnString);
SharedDatabase.Forms.LoginDlg dlg = new SharedDatabase.Forms.LoginDlg();
if (dlg.ShowDialog() == DialogResult.OK)
{
loginUserName = dlg.UserName;
+3 -2
View File
@@ -3,13 +3,14 @@
///
using System;
using System.Windows.Forms;
using SharedDatabase.Entities;
using EventViewer.Resources;
namespace EventViewer.Forms
{
public partial class EventDetailsDlg : Form
{
Events.Entities.Event evnt;
Event evnt;
public EventDetailsDlg()
{
@@ -17,7 +18,7 @@ namespace EventViewer.Forms
Localize();
}
public EventDetailsDlg(Events.Entities.Event evnt, bool enableConfirmReadButton)
public EventDetailsDlg(Event evnt, bool enableConfirmReadButton)
: this()
{
this.evnt = evnt;
+4 -4
View File
@@ -59,8 +59,8 @@ namespace EventViewer
ConnectionString = "SERVER=localhost; DATABASE=test-e; UID=root; PASSWORD=kraken; CHARSET=utf8";
UsersDBConnString = "SERVER=localhost; DATABASE=test; UID=root; PASSWORD=kraken; CHARSET=utf8;";
#else
ConnectionString = "SERVER=10.42.128.16; DATABASE=st_wr_shared_events; UID=v9305784; PASSWORD=p89344390; CHARSET=utf8";
UsersDBConnString = "SERVER=10.42.128.16; DATABASE=st_wr_shared_config; UID=u9305784; PASSWORD=p89344390; CHARSET=utf8;";
ConnectionString = "SERVER=10.42.128.24; DATABASE=st_wr_shared_events; UID=v9305784; PASSWORD=p89344390; CHARSET=utf8";
UsersDBConnString = "SERVER=10.42.128.24; DATABASE=st_wr_shared_config; UID=u9305784; PASSWORD=p89344390; CHARSET=utf8;";
#endif
RecentTimeDays = 7;
Language = "sk";
@@ -147,7 +147,7 @@ namespace EventViewer
}
}
}
catch (Exception e)
catch (Exception)
{
//log.ErrorFormat("Failed to load from '{0}': {1}", fileName, e.Message);
return null;
@@ -203,7 +203,7 @@ namespace EventViewer
}
#endif
}
catch (Exception e)
catch (Exception)
{
//log.ErrorFormat("Failed to save to '{0}': {1}", Program.LocalSettingsFileName, e.Message);
}
+1 -1
View File
@@ -122,7 +122,7 @@ namespace EventViewer
/// Open the main application window
Application.Run(new EventViewerWnd());
}
catch (Exception e)
catch (Exception)
{
//LogException(log, "Exception in Application.Run(new ResultsBrowserWnd(args))", e);
}
-219
View File
@@ -1,219 +0,0 @@
///
/// Copyright (c) 2020 Sensus Slovensko a.s.
///
using System;
using System.Collections.Generic;
using FluentNHibernate.Cfg;
using FluentNHibernate.Cfg.Db;
using NHibernate;
using NHibernate.Cfg;
using NHibernate.Tool.hbm2ddl;
using Events.Entities;
namespace Events
{
public static class DB
{
/// <summary> Session factory for all regular sessions, not for CreateEmptyResultsDB(). </summary>
public static ISessionFactory SessionFactory;
/// <summary> Connection string for all sessions </summary>
static string connectionString;
///
public static string ConnectionString
{
get { return connectionString; }
set
{
if (value != connectionString)
{
connectionString = value;
SessionFactory = null; /// Clear SessionFactory on connection string change
}
}
}
/// <summary> Database type (MySQL or SQLite) for all sessions </summary>
private static Entities.DBType dbType;
///
public static Entities.DBType DbType
{
get { return dbType; }
set { dbType = value; SessionFactory = null; }
}
/// <summary>
/// NHibernate session factory (to create the database session 'SessionFactory')
/// </summary>
/// <returns>A database session</returns>
static ISessionFactory CreateSessionFactory()
{
return CreateSessionFactory(false);
}
/// <summary>
/// NHibernate session factory (to create the database session 'SessionFactory')
/// </summary>
/// <param name="createDB">true = Create a new DB, false = Regular DB</param>
/// <returns>A database session</returns>
public static ISessionFactory CreateSessionFactory(bool createDB)
{
FluentConfiguration cfg = Fluently.Configure();
switch (dbType)
{
default:
case Entities.DBType.SQLite:
cfg = cfg.Database(SQLiteConfiguration.Standard.UsingFile(connectionString));
break;
case Entities.DBType.MySql:
cfg = cfg.Database(MySQLConfiguration.Standard.ConnectionString(connectionString));
break;
}
cfg = cfg.Mappings(m => m.FluentMappings.AddFromAssemblyOf<Entities.Event>());
if (createDB)
{
return cfg.ExposeConfiguration(BuildSchemaCreate).BuildSessionFactory();
}
else
{
return cfg.ExposeConfiguration(BuildSchema).BuildSessionFactory();
}
}
static void BuildSchema(Configuration config)
{
/// This NHibernate tool takes a configuration with mapping info and exports a database schema
new SchemaExport(config).SetOutputFile("db_schema");
}
static void BuildSchemaCreate(Configuration config)
{
/// This NHibernate tool takes a configuration with mapping info and exports a database schema
new SchemaExport(config).Create(true, true);
}
/// Create a NHibernate session for the given database
public static ISession CreateSession()
{
if (string.IsNullOrEmpty(connectionString))
{
throw new Exception("Connection string was not specified");
}
if (SessionFactory == null) SessionFactory = CreateSessionFactory();
return SessionFactory.OpenSession();
}
public static void SaveObject(object obj)
{
SaveObject(CreateSession(), obj);
}
///
public static void SaveObject(ISession session, object obj)
{
using (var transaction = session.BeginTransaction())
{
session.SaveOrUpdate(obj);
try { transaction.Commit(); }
catch { }
}
}
public static void DeleteObject(object obj)
{
DeleteObject(CreateSession(), obj);
}
///
public static void DeleteObject(ISession session, object obj)
{
using (var transaction = session.BeginTransaction())
{
session.Delete(obj);
transaction.Commit();
}
}
/// <summary>
/// Create an empty users database.
/// Database contains only the user 'admin' and the control board component 'CB'.
/// </summary>
/// <param name="dbType">DBType.SQLite or DBType.MySql</param>
/// <param name="connectionString">Connection string</param>
/// <returns>true=success, false=error</returns>
public static bool CreateEmptyDB()
{
ISessionFactory sessionFactory = CreateSessionFactory(true);
if (sessionFactory == null) return false;
/// Populate the database
using (var session = sessionFactory.OpenSession())
{
using (var transaction = session.BeginTransaction())
{
transaction.Commit();
}
}
return true;
}
/// <summary>
/// Shared data (initially empty)
/// </summary>
public static string BenchName = "undefined";
public static IList<Entities.Event> RecentEvents = null;
static IList<Entities.Subscriber> allSubscribers = null;
/// <summary>
/// Set test bench name used in Events.Entities.Event constructors
/// </summary>
public static void SetBenchName(string benchName)
{
DB.BenchName = benchName;
}
/// <summary>
/// Loads shared data from the database
/// </summary>
public static void LoadSubscribers(ISession session)
{
allSubscribers = session.QueryOver<Subscriber>().List();
}
/// <summary>
/// Loads shared data from the database
/// </summary>
public static void LoadRecentEvents(ISession session, string benchName, int days)
{
RecentEvents = session.QueryOver<Event>()
.Where(e => (e.Bench == benchName))
.And(e => (e.TimeStamp >= DateTime.Now - new TimeSpan(days, 0, 0, 0)))
.List();
}
public static void SaveEvent(ISession session, Event evnt, SubscriberGroup groups)
{
if (allSubscribers == null) return;
IList<Subscriber> thisEventSubscribers = new List<Subscriber>();
foreach (var s in allSubscribers)
{
if ((s.Groups & (long)groups) != 0)
{
/// Subscriber 's' belongs to at least one of SubscriberGroup(s) in 'groups' bit field
thisEventSubscribers.Add(s);
}
}
evnt.Bench = BenchName;
evnt.Subscribers = thisEventSubscribers;
session.SaveOrUpdate(evnt);
session.Flush();
}
}
}
-58
View File
@@ -1,58 +0,0 @@
///
/// Copyright (c) 2020 Sensus Slovensko a.s.
///
namespace Events.Entities
{
/// <summary>
/// Identifies the type of a database
/// </summary>
public enum DBType
{
None, /// Database disabled
MySql, /// MySQL database
SQLite, /// SQLite
Count
}
public enum Severity
{
Undefined,
Notification,
Warning,
Error,
FatalError,
Count
}
public enum EventClass
{
Undefined,
EquipmentHW,
Metrology,
TestingProcess,
BadResults,
ComputerResources,
Network,
Other,
Count
}
public enum SubscriberGroup : long
{
None = 0,
Metrology = 1,
Maintenance = 2,
Production = 4,
Management = 8,
Finish = 16,
}
public enum EViewerOption
{
Undefined,
AllEvents,
RecentEvents,
UnreadEvents,
}
}
-51
View File
@@ -1,51 +0,0 @@
///
/// Copyright (c) 2020 Sensus Slovensko a.s.
///
using System;
using System.Collections.Generic;
namespace Events.Entities
{
public class Event
{
public virtual int Id { get; protected set; }
public virtual DateTime TimeStamp { get; set; }
public virtual string Bench { get; set; }
public virtual string Source { get; set; }
public virtual EventClass EventClass { get; set; }
public virtual Severity Severity { get; set; }
public virtual string Message { get; set; }
public virtual string MoreInfo { get; set; }
public virtual IList<Subscriber> Subscribers { get; set; }
public virtual SubscriberGroup SubscriberGroups { get; set; } /// Not mapped to DB, intermediate inforamtion
public Event()
{
Subscribers = new List<Subscriber>();
}
public Event(string bench, string source, EventClass eventClass, Severity severity, string message, string moreInfo, IList<Subscriber> subscribers, SubscriberGroup subscriberGroups = 0)
: this()
{
TimeStamp = DateTime.Now;
Bench = bench;
Source = source;
EventClass = eventClass;
Severity = severity;
Message = message;
MoreInfo = moreInfo;
if (subscribers != null)
{
foreach (var s in subscribers) Subscribers.Add(s);
}
SubscriberGroups = subscriberGroups;
}
public override string ToString()
{
return string.Format("{0:yyMMdd}_{0:HHmm} {1} {2} {3} {4} {5}", TimeStamp, Bench, Source, EventClass, Severity, Message);
}
}
}
+1 -10
View File
@@ -55,18 +55,9 @@
<Reference Include="System.Xml" />
</ItemGroup>
<ItemGroup>
<Compile Include="DB.cs" />
<Compile Include="Entities\Enums.cs" />
<Compile Include="Entities\Event.cs" />
<Compile Include="Entities\Subscriber.cs" />
<Compile Include="Utils.cs" />
<Compile Include="Mappings\EventMap.cs" />
<Compile Include="Mappings\SubscriberMap.cs" />
<Compile Include="Properties\AssemblyInfo.cs" />
</ItemGroup>
<ItemGroup>
<Folder Include="DeliveryServices\" />
</ItemGroup>
<ItemGroup />
<Import Project="$(MSBuildToolsPath)\Microsoft.CSharp.targets" />
<!-- To modify your build process, add your task inside one of the targets below and uncomment it.
Other similar extension points exist, see Microsoft.Common.targets.
-24
View File
@@ -1,24 +0,0 @@
///
/// Copyright (c) 2020 Sensus Slovensko a.s.
///
using System;
using System.Drawing;
using Events.Entities;
namespace Events
{
public class Utils
{
public static Color GetSeverityColor(Severity severity, bool foreColor = false)
{
switch (severity)
{
case Severity.Notification: return foreColor ? Color.White : Color.SteelBlue;
case Severity.Warning: return foreColor ? Color.Black : Color.Orange;
case Severity.Error: return foreColor ? Color.White : Color.Red;
case Severity.FatalError: return foreColor ? Color.White : Color.Purple;
default: return foreColor ? Color.Black : Color.White;
}
}
}
}
+1 -1
View File
@@ -193,7 +193,7 @@ namespace GraphLib
Samples = newSamples;
return samplesCount;
}
catch (Exception exc)
catch (Exception)
{
return 0;
}
+6
View File
@@ -0,0 +1,6 @@
<?xml version="1.0" encoding="utf-8" ?>
<configuration>
<startup>
<supportedRuntime version="v4.0" sku=".NETFramework,Version=v4.7.2" />
</startup>
</configuration>
+84
View File
@@ -0,0 +1,84 @@
<?xml version="1.0" encoding="utf-8"?>
<Project ToolsVersion="4.0" DefaultTargets="Build" xmlns="http://schemas.microsoft.com/developer/msbuild/2003">
<Import Project="$(MSBuildExtensionsPath)\$(MSBuildToolsVersion)\Microsoft.Common.props" Condition="Exists('$(MSBuildExtensionsPath)\$(MSBuildToolsVersion)\Microsoft.Common.props')" />
<PropertyGroup>
<Configuration Condition=" '$(Configuration)' == '' ">Debug</Configuration>
<Platform Condition=" '$(Platform)' == '' ">AnyCPU</Platform>
<ProjectGuid>{9786D0A8-BA9A-41F6-9E61-C7B2B76D4C08}</ProjectGuid>
<OutputType>Exe</OutputType>
<AppDesignerFolder>Properties</AppDesignerFolder>
<RootNamespace>MergeResultsDBs</RootNamespace>
<AssemblyName>MergeResultsDBs</AssemblyName>
<TargetFrameworkVersion>v4.7.2</TargetFrameworkVersion>
<FileAlignment>512</FileAlignment>
</PropertyGroup>
<PropertyGroup Condition=" '$(Configuration)|$(Platform)' == 'Debug|AnyCPU' ">
<PlatformTarget>AnyCPU</PlatformTarget>
<DebugSymbols>true</DebugSymbols>
<DebugType>full</DebugType>
<Optimize>false</Optimize>
<OutputPath>bin\Debug\</OutputPath>
<DefineConstants>DEBUG;TRACE</DefineConstants>
<ErrorReport>prompt</ErrorReport>
<WarningLevel>4</WarningLevel>
</PropertyGroup>
<PropertyGroup Condition=" '$(Configuration)|$(Platform)' == 'Release|AnyCPU' ">
<PlatformTarget>AnyCPU</PlatformTarget>
<DebugType>pdbonly</DebugType>
<Optimize>true</Optimize>
<OutputPath>bin\Release\</OutputPath>
<DefineConstants>TRACE</DefineConstants>
<ErrorReport>prompt</ErrorReport>
<WarningLevel>4</WarningLevel>
</PropertyGroup>
<ItemGroup>
<Reference Include="FluentNHibernate">
<HintPath>..\packages\FluentNHibernate.2.0.3.0\lib\net40\FluentNHibernate.dll</HintPath>
</Reference>
<Reference Include="Iesi.Collections">
<HintPath>..\packages\Iesi.Collections.4.0.0.4000\lib\net40\Iesi.Collections.dll</HintPath>
</Reference>
<Reference Include="log4net">
<HintPath>..\packages\log4net.2.0.2\lib\net40-full\log4net.dll</HintPath>
</Reference>
<Reference Include="MySql.Data">
<HintPath>..\packages\MySql.Data.6.6.5\lib\net40\MySql.Data.dll</HintPath>
</Reference>
<Reference Include="NHibernate">
<HintPath>..\packages\NHibernate.4.0.4.4000\lib\net40\NHibernate.dll</HintPath>
</Reference>
<Reference Include="System" />
<Reference Include="System.Core" />
<Reference Include="System.Windows.Forms" />
<Reference Include="System.Xml.Linq" />
<Reference Include="System.Data.DataSetExtensions" />
<Reference Include="Microsoft.CSharp" />
<Reference Include="System.Data" />
<Reference Include="System.Xml" />
</ItemGroup>
<ItemGroup>
<Compile Include="Program.cs" />
<Compile Include="Properties\AssemblyInfo.cs" />
</ItemGroup>
<ItemGroup>
<None Include="App.config" />
</ItemGroup>
<ItemGroup>
<ProjectReference Include="..\Config\Config.csproj">
<Project>{743df7db-c7b6-42eb-986d-0f485e5588e4}</Project>
<Name>Config</Name>
</ProjectReference>
<ProjectReference Include="..\Results\Results.csproj">
<Project>{9d0dcc88-dc81-47eb-9fdd-4c3907871bfb}</Project>
<Name>Results</Name>
</ProjectReference>
</ItemGroup>
<Import Project="$(MSBuildToolsPath)\Microsoft.CSharp.targets" />
<!-- To modify your build process, add your task inside one of the targets below and uncomment it.
Other similar extension points exist, see Microsoft.Common.targets.
<Target Name="BeforeBuild">
</Target>
<Target Name="AfterBuild">
</Target>
-->
</Project>
+190
View File
@@ -0,0 +1,190 @@
using System;
using System.Collections.Generic;
using System.Linq;
using System.Text;
using System.Threading.Tasks;
using System.Windows.Forms;
using log4net;
using NHibernate;
using FluentNHibernate;
using Results;
using Results.Entities;
namespace MergeResultsDBs
{
class Program
{
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:");
string firstDB = Console.ReadLine();
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):");
string range = Console.ReadLine();
ISession session1;
IList<Components> componentsList;
int componentsListInitialCount;
IList<TestData> testDataList;
int testDataListInitialCount;
IList<WaterMeterData> waterMeterDataList;
int waterMeterDataListInitialCount;
try
{
DB.ConnectionString = string.Format("SERVER=localhost; DATABASE={0}; UID=root; PASSWORD=kraken; CHARSET=utf8;", firstDB);
session1 = DB.CreateSession();
componentsList = session1.QueryOver<Components>().List();
componentsListInitialCount = componentsList.Count;
testDataList = session1.QueryOver<TestData>().List();
testDataListInitialCount = testDataList.Count();
waterMeterDataList = session1.QueryOver<WaterMeterData>().List();
waterMeterDataListInitialCount = waterMeterDataList.Count();
}
catch (Exception exc)
{
MessageBox.Show(string.Format("Cannot open the 1st database:\r\n{0}", exc.Message));
return;
}
ISession session2;
IList<Components> oriComponentsList;
IList<TestData> oriTestDataList;
IList<WaterMeterData> oriWMDataList;
try
{
DB.ConnectionString = string.Format("SERVER=localhost; DATABASE={0}; UID=root; PASSWORD=kraken; CHARSET=utf8;", secondDB);
session2 = DB.CreateSession();
oriComponentsList = session2.QueryOver<Components>().List();
oriTestDataList = session2.QueryOver<TestData>().List();
oriWMDataList = session2.QueryOver<WaterMeterData>().List();
}
catch (Exception exc)
{
MessageBox.Show(string.Format("Cannot open the 2nd database:\r\n{0}", exc.Message));
return;
}
int batchNrStart;
int batchNrEnd;
string[] fields = range.Split(new char[] { '-' });
if (fields.Length != 2 ||
!int.TryParse(fields[0], out batchNrStart) ||
!int.TryParse(fields[1], out batchNrEnd) ||
batchNrEnd < batchNrStart)
{
MessageBox.Show("Invalid range of batch numbers");
return;
}
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");
string response = Console.ReadLine();
if (response != "y" && response != "Y")
{
return;
}
Console.WriteLine("PROCESSING DATABASES ...");
for (int batchNr = batchNrStart; batchNr <= batchNrEnd; batchNr++)
{
Console.Write(string.Format("{0} ", batchNr));
/// Copy one batch from the 2nd to the 1st database
var oriBatches = session2.QueryOver<Batch>()
.Where(x => (x.BatchNr == batchNr))
.List();
if (oriBatches.Count != 1) continue;
///---------------------------------------------------------------
Batch oriBatch = oriBatches[0];
var transaction = session1.BeginTransaction();
try
{
Batch batch = new Batch(oriBatch);
oriBatch.TestRslts = session2.QueryOver<TestRslt>()
.Where(x => (x.Batch.Id == oriBatch.Id))
.List();
foreach (var oriTR in oriBatch.TestRslts)
{
/// Find appropriate Components
Components components = oriTR.Components == null
? null
: Components.UpdateList(componentsList, new Components(oriTR.Components));
if (components != null) session1.SaveOrUpdate(components);
/// Find appropriate TestData
TestData testData = TestData.UpdateList(testDataList, new TestData(oriTR.TestData));
session1.SaveOrUpdate(testData);
TestRslt tr = new TestRslt();
tr.CopyContentFrom(oriTR);
tr.Batch = batch;
tr.Components = components;
tr.TestData = testData;
batch.TestRslts.Add(tr);
session1.SaveOrUpdate(tr);
}
oriBatch.WaterMeters = session2.QueryOver<WaterMeter>()
.Where(x => (x.Batch.Id == oriBatch.Id))
.List();
foreach (var oriWM in oriBatch.WaterMeters)
{
/// Find appropriate WaterMeterData
WaterMeterData wmData = WaterMeterData.UpdateList(waterMeterDataList, new WaterMeterData(oriWM.WaterMeterData));
session1.SaveOrUpdate(wmData);
WaterMeter wm = new WaterMeter();
wm.CopyContentFrom(oriWM);
wm.Batch = batch;
wm.WaterMeterData = wmData;
foreach (var oriMTR in oriWM.MeterTestRslts)
{
MeterTestRslt mtr = new MeterTestRslt(oriMTR);
mtr.WaterMeter = wm;
mtr.TestRslt = batch.TestRslts.FirstOrDefault<TestRslt>(x => (x.Name() == oriMTR.TestRslt.Name() &&
x.Part == oriMTR.TestRslt.Part &&
x.RepetitionNr == oriMTR.TestRslt.RepetitionNr));
if (mtr.TestRslt == null)
{
throw new Exception("Something strange happened");
}
wm.MeterTestRslts.Add(mtr);
session1.SaveOrUpdate(mtr);
}
batch.WaterMeters.Add(wm);
session1.SaveOrUpdate(wm);
}
session1.SaveOrUpdate(batch);
transaction.Commit();
}
catch
{
transaction.Rollback();
throw new Exception("Commit failed - transaction reverted");
}
}
Console.WriteLine();
session1.Flush();
session1.Close();
session2.Close();
Console.WriteLine("Successfully completed");
Console.ReadLine();
}
}
}
@@ -0,0 +1,36 @@
using System.Reflection;
using System.Runtime.CompilerServices;
using System.Runtime.InteropServices;
// General Information about an assembly is controlled through the following
// set of attributes. Change these attribute values to modify the information
// associated with an assembly.
[assembly: AssemblyTitle("MergeResultsDBs")]
[assembly: AssemblyDescription("")]
[assembly: AssemblyConfiguration("")]
[assembly: AssemblyCompany("")]
[assembly: AssemblyProduct("MergeResultsDBs")]
[assembly: AssemblyCopyright("Copyright © 2021")]
[assembly: AssemblyTrademark("")]
[assembly: AssemblyCulture("")]
// Setting ComVisible to false makes the types in this assembly not visible
// to COM components. If you need to access a type in this assembly from
// COM, set the ComVisible attribute to true on that type.
[assembly: ComVisible(false)]
// The following GUID is for the ID of the typelib if this project is exposed to COM
[assembly: Guid("f7543f83-5414-4010-ac3f-3af4b6864812")]
// Version information for an assembly consists of the following four values:
//
// Major Version
// Minor Version
// Build Number
// Revision
//
// You can specify all the values or you can default the Build and Revision Numbers
// by using the '*' as shown below:
// [assembly: AssemblyVersion("1.0.*")]
[assembly: AssemblyVersion("1.0.0.0")]
[assembly: AssemblyFileVersion("1.0.0.0")]
+6
View File
@@ -0,0 +1,6 @@
<?xml version="1.0" encoding="utf-8" ?>
<configuration>
<startup>
<supportedRuntime version="v4.0" sku=".NETFramework,Version=v4.7.2" />
</startup>
</configuration>
+46
View File
@@ -0,0 +1,46 @@
using System;
using System.IO;
using TBF;
namespace ResetBatchNr
{
class Program
{
static LocalSettings ls;
static void Main(string[] args)
{
if (!Directory.Exists(TBF.Program.ConfigDir)) return;
Environment.CurrentDirectory = TBF.Program.ConfigDir;
ls = LocalSettings.Load(TBF.Program.LocalSettingsFileName);
if (ls == null || ls.TestBenches == null)
{
/// Loading local seetings from regular config file failed. Use the backup
ls = LocalSettings.Load(TBF.Program.LocalSettingsBackupName);
if (ls == null || ls.TestBenches == null)
{
/// Neither config.xml, nor config.backup.xml could be loaded
Console.WriteLine(string.Format("Could not load file {0}, nor {1}.", TBF.Program.LocalSettingsFileName, TBF.Program.LocalSettingsBackupName));
Console.ReadLine();
return;
}
}
else
{
/// Loading local seetings from the regular config file was successful. Update the backup
File.Copy(TBF.Program.LocalSettingsFileName, TBF.Program.LocalSettingsBackupName, true);
}
///
/// Process local settings so that windows are shifted to the 1st monitor
///
ls.BatchNr = 1;
ls.Save();
Console.WriteLine("BatchNr was reset to 1");
Console.ReadLine();
return;
}
}
}
+36
View File
@@ -0,0 +1,36 @@
using System.Reflection;
using System.Runtime.CompilerServices;
using System.Runtime.InteropServices;
// General Information about an assembly is controlled through the following
// set of attributes. Change these attribute values to modify the information
// associated with an assembly.
[assembly: AssemblyTitle("ResetBatchNr")]
[assembly: AssemblyDescription("")]
[assembly: AssemblyConfiguration("")]
[assembly: AssemblyCompany("")]
[assembly: AssemblyProduct("ResetBatchNr")]
[assembly: AssemblyCopyright("Copyright © 2020")]
[assembly: AssemblyTrademark("")]
[assembly: AssemblyCulture("")]
// Setting ComVisible to false makes the types in this assembly not visible
// to COM components. If you need to access a type in this assembly from
// COM, set the ComVisible attribute to true on that type.
[assembly: ComVisible(false)]
// The following GUID is for the ID of the typelib if this project is exposed to COM
[assembly: Guid("de8130eb-2f43-46a6-9f5b-bf96432a0c7c")]
// Version information for an assembly consists of the following four values:
//
// Major Version
// Minor Version
// Build Number
// Revision
//
// You can specify all the values or you can default the Build and Revision Numbers
// by using the '*' as shown below:
// [assembly: AssemblyVersion("1.0.*")]
[assembly: AssemblyVersion("1.0.0.0")]
[assembly: AssemblyFileVersion("1.0.0.0")]
+69
View File
@@ -0,0 +1,69 @@
<?xml version="1.0" encoding="utf-8"?>
<Project ToolsVersion="4.0" DefaultTargets="Build" xmlns="http://schemas.microsoft.com/developer/msbuild/2003">
<Import Project="$(MSBuildExtensionsPath)\$(MSBuildToolsVersion)\Microsoft.Common.props" Condition="Exists('$(MSBuildExtensionsPath)\$(MSBuildToolsVersion)\Microsoft.Common.props')" />
<PropertyGroup>
<Configuration Condition=" '$(Configuration)' == '' ">Debug</Configuration>
<Platform Condition=" '$(Platform)' == '' ">AnyCPU</Platform>
<ProjectGuid>{D7F5A111-B2DF-4761-9574-AB730DF573A6}</ProjectGuid>
<OutputType>Exe</OutputType>
<AppDesignerFolder>Properties</AppDesignerFolder>
<RootNamespace>ResetBatchNr</RootNamespace>
<AssemblyName>ResetBatchNr</AssemblyName>
<TargetFrameworkVersion>v4.7.2</TargetFrameworkVersion>
<FileAlignment>512</FileAlignment>
</PropertyGroup>
<PropertyGroup Condition=" '$(Configuration)|$(Platform)' == 'Debug|AnyCPU' ">
<PlatformTarget>x86</PlatformTarget>
<DebugSymbols>true</DebugSymbols>
<DebugType>full</DebugType>
<Optimize>false</Optimize>
<OutputPath>bin\Debug\</OutputPath>
<DefineConstants>DEBUG;TRACE</DefineConstants>
<ErrorReport>prompt</ErrorReport>
<WarningLevel>4</WarningLevel>
<Prefer32Bit>false</Prefer32Bit>
</PropertyGroup>
<PropertyGroup Condition=" '$(Configuration)|$(Platform)' == 'Release|AnyCPU' ">
<PlatformTarget>AnyCPU</PlatformTarget>
<DebugType>pdbonly</DebugType>
<Optimize>true</Optimize>
<OutputPath>bin\Release\</OutputPath>
<DefineConstants>TRACE</DefineConstants>
<ErrorReport>prompt</ErrorReport>
<WarningLevel>4</WarningLevel>
</PropertyGroup>
<ItemGroup>
<Reference Include="System" />
<Reference Include="System.Core" />
<Reference Include="System.Xml.Linq" />
<Reference Include="System.Data.DataSetExtensions" />
<Reference Include="Microsoft.CSharp" />
<Reference Include="System.Data" />
<Reference Include="System.Xml" />
</ItemGroup>
<ItemGroup>
<Compile Include="Program.cs" />
<Compile Include="Properties\AssemblyInfo.cs" />
</ItemGroup>
<ItemGroup>
<None Include="App.config" />
</ItemGroup>
<ItemGroup>
<ProjectReference Include="..\Common\Common.csproj">
<Project>{c8939821-ba5c-4988-a3d0-bf53b74865c7}</Project>
<Name>Common</Name>
</ProjectReference>
<ProjectReference Include="..\TBF\TBF.csproj">
<Project>{8648fd92-cda1-4c3a-b5f9-fe547ce1fa48}</Project>
<Name>TBF</Name>
</ProjectReference>
</ItemGroup>
<Import Project="$(MSBuildToolsPath)\Microsoft.CSharp.targets" />
<!-- To modify your build process, add your task inside one of the targets below and uncomment it.
Other similar extension points exist, see Microsoft.Common.targets.
<Target Name="BeforeBuild">
</Target>
<Target Name="AfterBuild">
</Target>
-->
</Project>
-3
View File
@@ -11,13 +11,10 @@ namespace RestClient
{
public class BaseClient
{
private string _token;
private string _baseUrl;
public string ErrorMessage { get; set; }
private readonly HttpClient client;
private AuthenticationHeaderValue _authValue;
public BaseClient(string baseUrl)
+48 -46
View File
@@ -1,8 +1,12 @@
using System;
///
/// Copyright (c) 2021 Sensus Slovensko a.s.
///
using System;
using System.Collections.Generic;
using System.IO;
using System.Linq;
using System.Text;
using Common;
using Results.Entities;
namespace Results
@@ -40,7 +44,8 @@ namespace Results
public static BatchResults NewFromProcedure(int batchNr, int benchId, string benchName, string a1, string a2, string a3, string a4, string a5,
string user, int userNr, string programVer, Config.Entities.Procedure procedure,
WaterMeterData[] waterMeterDatas, int[] waterMeterParts, double densityCorr)
WaterMeterData[] waterMeterDatas, int[] waterMeterParts, string variant,
double realDensity, double atTemperature, double buoyancy)
{
BatchResults d = new BatchResults(waterMeterDatas.Length);
int year = DateTime.Now.Year;
@@ -61,14 +66,15 @@ namespace Results
UserNumber = userNr,
ProcedureName = procedure.Name,
ProcedureDescription = procedure.Description,
WatermetersStr = procedure.Watermeters,
WatermetersStr = variant,
ProcedureRevision = procedure.Revision,
ProtocolTitle = string.Empty,
StartTime = DateTime.Now,
DensityCorr = (float)densityCorr,
Compound = (procedure.MetersKind == Config.Entities.MetersKind.Combined),
SampleDensity = realDensity,
SampleTemp = atTemperature,
Buoyancy = buoyancy,
Compound = (procedure.MetersKind == MetersKind.Combined),
#if HEAT_METERS
HeatMeter = (procedure.MetersKind == Config.Entities.MetersKind.HeatMeter),
HeatMeter = (procedure.MetersKind == MetersKind.HeatMeter),
#endif
};
@@ -96,45 +102,41 @@ namespace Results
}
}
foreach (var t in procedure.Tests)
foreach (var ti in procedure.GetTestInstances())
{
TestData td = TestData.UpdateList(d.TestDataList, new TestData(t));
TestData td = TestData.UpdateList(d.TestDataList, new TestData(ti.Test));
for (int rnr = 1; rnr <= t.Repeats; rnr++)
/// Create an empty test result and add it to the list
TestRslt tr = new TestRslt(d.Batch, td, ti.Test.Part, ti.Repetition);
d.Batch.TestRslts.Add(tr);
for (int i = 0; i < d.WMPositionsCount; i++)
{
/// Create an empty test result and add it to the list
TestRslt tr = new TestRslt(d.Batch, td, t.Part, rnr);
d.Batch.TestRslts.Add(tr);
for (int i = 0; i < d.WMPositionsCount; i++)
{
if (!d.Batch.WaterMeters[i].Disabled && t.IsPartCompatible(waterMeterParts[i]))
if (!d.Batch.WaterMeters[i].Disabled && ti.Test.IsPartCompatible(waterMeterParts[i]))
{
///
/// Create empty watermeter test results and add them to the list and to dictionaries
///
IList<MeterTestRslt> wmtrs = d.Batch.WaterMeters[i].MeterTestRslts;
if (d.Batch.Compound)
{
///
/// Create empty watermeter test results and add them to the list and to dictionaries
///
IList<MeterTestRslt> wmtrs = d.Batch.WaterMeters[i].MeterTestRslts;
if (d.Batch.Compound)
{
/// Compound water meter
wmtrs.Add(new MeterTestRslt(d.Batch.WaterMeters[i], tr, Config.Entities.CompoundMeterId.CompoundMain));
wmtrs.Add(new MeterTestRslt(d.Batch.WaterMeters[i], tr, Config.Entities.CompoundMeterId.CompoundAux));
wmtrs.Add(new MeterTestRslt(d.Batch.WaterMeters[i], tr, Config.Entities.CompoundMeterId.Compound));
}
else if (d.Batch.HeatMeter)
{
/// Heat meter
wmtrs.Add(new MeterTestRslt(d.Batch.WaterMeters[i], tr, Config.Entities.CompoundMeterId.HeatMeterVolume));
wmtrs.Add(new MeterTestRslt(d.Batch.WaterMeters[i], tr, Config.Entities.CompoundMeterId.HeatMeterEnergy));
}
else
{
/// Water meter
wmtrs.Add(new MeterTestRslt(d.Batch.WaterMeters[i], tr, Config.Entities.CompoundMeterId.Single));
}
/// Compound water meter
wmtrs.Add(new MeterTestRslt(d.Batch.WaterMeters[i], tr, CompoundMeterId.CompoundMain));
wmtrs.Add(new MeterTestRslt(d.Batch.WaterMeters[i], tr, CompoundMeterId.CompoundAux));
wmtrs.Add(new MeterTestRslt(d.Batch.WaterMeters[i], tr, CompoundMeterId.Compound));
}
}
else if (d.Batch.HeatMeter)
{
/// Heat meter
wmtrs.Add(new MeterTestRslt(d.Batch.WaterMeters[i], tr, CompoundMeterId.HeatMeterVolume));
wmtrs.Add(new MeterTestRslt(d.Batch.WaterMeters[i], tr, CompoundMeterId.HeatMeterEnergy));
}
else
{
/// Water meter
wmtrs.Add(new MeterTestRslt(d.Batch.WaterMeters[i], tr, CompoundMeterId.Single));
}
}
}
}
@@ -156,10 +158,10 @@ namespace Results
if (batch.WaterMeters[wmNr0].WMPosition > wmNr0 + 1)
{
batch.WaterMeters.Insert(wmNr0, new WaterMeter() { Batch = batch,
WaterMeterData = null,
WMPosition = wmNr0 + 1,
YearOfProduction = 0,
Disabled = true, });
WaterMeterData = null,
WMPosition = wmNr0 + 1,
YearOfProduction = 0,
Disabled = true, });
}
}
@@ -171,7 +173,7 @@ namespace Results
return Batch.GetTestRslt(name, part);
}
public MeterTestRslt GetMeterTestRslt(string name, int wmNr0, Config.Entities.CompoundMeterId meterId)
public MeterTestRslt GetMeterTestRslt(string name, int wmNr0, CompoundMeterId meterId)
{
if (Batch.WaterMeters != null && Batch.WaterMeters.Count > wmNr0 && !Batch.WaterMeters[wmNr0].Disabled)
{
+10 -8
View File
@@ -1,5 +1,5 @@
///
/// Copyright (c) 2013-2016 Sensus Metering Systems
/// Copyright (c) 2013-2021 Sensus Slovensko a.s.
///
using System;
using System.Collections.Generic;
@@ -9,6 +9,7 @@ using log4net;
using NHibernate;
using NHibernate.Cfg;
using NHibernate.Tool.hbm2ddl;
using Common;
using Results.Entities;
namespace Results
@@ -37,9 +38,9 @@ namespace Results
}
/// <summary> Database type (MySQL or SQLite) for all sessions </summary>
private static Users.Entities.DBType dbType;
private static Common.DBType dbType;
///
public static Users.Entities.DBType DbType
public static Common.DBType DbType
{
get { return dbType; }
set { dbType = value; SessionFactory = null; }
@@ -66,13 +67,13 @@ namespace Results
switch (dbType)
{
default:
case Users.Entities.DBType.SQLite:
cfg = cfg.Database(SQLiteConfiguration.Standard.UsingFile(connectionString));
break;
case Users.Entities.DBType.MySql:
case DBType.MySql:
cfg = cfg.Database(MySQLConfiguration.Standard.ConnectionString(connectionString));
break;
}
case DBType.SQLite:
cfg = cfg.Database(SQLiteConfiguration.Standard.UsingFile(connectionString));
break;
}
cfg = cfg.Mappings(m => m.FluentMappings.AddFromAssemblyOf<Entities.WaterMeterData>());
@@ -311,6 +312,7 @@ namespace Results
batch.TestRslts = session.QueryOver<TestRslt>()
.Where(x => (x.Batch.Id == batch.Id))
.List();
batch.WaterMeters = session.QueryOver<WaterMeter>()
.Where(x => (x.Batch.Id == batch.Id))
.List();
+68 -45
View File
@@ -1,5 +1,5 @@
///
/// Copyright (c) 2015-2020 Sensus Slovensko a.s.
/// Copyright (c) 2015-2021 Sensus Slovensko a.s.
///
using System;
using System.Collections.Generic;
@@ -26,11 +26,10 @@ namespace Results.Entities
public virtual string ProcedureDescription { get; set; } /// CEVAK, not mapped to DB
public virtual int ProcedureRevision { get; set; }
public virtual string WatermetersStr { get; set; } /// CEVAK, not mapped to DB
public virtual string ProtocolTitle { get; set; }
public virtual string Remark { get; set; }
public virtual float DensityCorr { get; set; } /// Density correction in [kg/m3]
public virtual float Custom2 { get; set; }
public virtual float Custom3 { get; set; }
public virtual double SampleDensity { get; set; } /// Sample denisty in [kg/m3]
public virtual double SampleTemp { get; set; } /// Sample temperature when density measured [°C]
public virtual double Buoyancy { get; set; }
public virtual int Counter6 { get; set; }
public virtual int Counter7 { get; set; }
public virtual int Counter8 { get; set; }
@@ -41,11 +40,11 @@ namespace Results.Entities
public virtual bool Dirty { get; set; }
public virtual bool RsltsSent { get; set; }
public virtual bool RsltsPrinted { get; set; }
public virtual IList<TestData> Tests { get; set; }
public virtual bool Compound { get; set; } /// Not mapped to DB now
public virtual bool HeatMeter { get; set; } /// Not mapped to DB now
public virtual IList<TestData> Tests { get; set; }
public virtual IList<WaterMeter> WaterMeters { get; set; }
public virtual IList<TestRslt> TestRslts { get; set; }
public virtual bool Compound { get; set; } /// Not mapped to DB now
public virtual bool HeatMeter { get; set; } /// Not mapped to DB now
public virtual IList<TestData> RegularTests()
{
@@ -114,11 +113,56 @@ namespace Results.Entities
IsRemoteProcedure = false;
ProcedureDescription = string.Empty;
WatermetersStr = string.Empty;
ProtocolTitle = string.Empty;
ProtocolTitle = string.Empty;
Remark = string.Empty;
SampleDensity = Common.Data.SampleDensity;
SampleTemp = Common.Data.SampleTemp;
Buoyancy = Common.Data.Buoyancy;
}
/// <summary>
/// Copy constructor, copies all except of Id.
/// Lists Tests, WaterMeters and TestRslts are empty. Have to be copied elwhere.
/// </summary>
public Batch(Batch oriBatch)
{
BatchNr = oriBatch.BatchNr;
ProgramVersion = oriBatch.ProgramVersion;
TestBenchId = oriBatch.TestBenchId;
TestBenchName = oriBatch.TestBenchName;
Address1 = oriBatch.Address1;
Address2 = oriBatch.Address2;
Address3 = oriBatch.Address3;
Address4 = oriBatch.Address4;
Address5 = oriBatch.Address5;
UserName = oriBatch.UserName;
UserNumber = oriBatch.UserNumber;
ProcedureName = oriBatch.ProcedureName;
IsRemoteProcedure = oriBatch.IsRemoteProcedure;
ProcedureDescription = oriBatch.ProcedureDescription;
ProcedureRevision = oriBatch.ProcedureRevision;
WatermetersStr = oriBatch.WatermetersStr;
Remark = oriBatch.Remark;
SampleDensity = oriBatch.SampleDensity;
SampleTemp = oriBatch.SampleTemp;
Buoyancy = oriBatch.Buoyancy;
Counter6 = oriBatch.Counter6;
Counter7 = oriBatch.Counter7;
Counter8 = oriBatch.Counter8;
Counter9 = oriBatch.Counter9;
Counter10 = oriBatch.Counter10;
StartTime = oriBatch.StartTime;
EndTime = oriBatch.EndTime;
Dirty = oriBatch.Dirty;
RsltsSent = oriBatch.RsltsSent;
RsltsPrinted = oriBatch.RsltsPrinted;
Compound = oriBatch.Compound;
HeatMeter = oriBatch.HeatMeter;
Tests = new List<TestData>();
WaterMeters = new List<WaterMeter>();
TestRslts = new List<TestRslt>();
}
public virtual int PassedMetersCount()
{
int count = 0;
@@ -211,7 +255,7 @@ namespace Results.Entities
{
for (int i = 0; i < TestRslts.Count; i++)
{
if (TestRslts[i].Publish() == Config.Entities.Publish.Always)
if (TestRslts[i].Publish() == Common.Publish.Always)
return TestRslts[i].AmbTempStart;
}
return 0;
@@ -220,7 +264,7 @@ namespace Results.Entities
{
for (int i = 0; i < TestRslts.Count; i++)
{
if (TestRslts[i].Publish() == Config.Entities.Publish.Always)
if (TestRslts[i].Publish() == Common.Publish.Always)
return TestRslts[i].AmbPressStart;
}
return 0;
@@ -229,7 +273,7 @@ namespace Results.Entities
{
for (int i = 0; i < TestRslts.Count; i++)
{
if (TestRslts[i].Publish() == Config.Entities.Publish.Always)
if (TestRslts[i].Publish() == Common.Publish.Always)
return TestRslts[i].AmbHumiStart;
}
return 0;
@@ -239,7 +283,7 @@ namespace Results.Entities
{
for (int i = TestRslts.Count - 1; i >= 0; i++)
{
if (TestRslts[i].Publish() == Config.Entities.Publish.Always)
if (TestRslts[i].Publish() == Common.Publish.Always)
return TestRslts[i].AmbTempEnd;
}
return 0;
@@ -248,7 +292,7 @@ namespace Results.Entities
{
for (int i = TestRslts.Count - 1; i >= 0; i++)
{
if (TestRslts[i].Publish() == Config.Entities.Publish.Always)
if (TestRslts[i].Publish() == Common.Publish.Always)
return TestRslts[i].AmbPressEnd;
}
return 0;
@@ -257,30 +301,12 @@ namespace Results.Entities
{
for (int i = TestRslts.Count - 1; i >= 0; i++)
{
if (TestRslts[i].Publish() == Config.Entities.Publish.Always)
if (TestRslts[i].Publish() == Common.Publish.Always)
return TestRslts[i].AmbHumiEnd;
}
return 0;
}
public virtual double Buoyancy()
{
double timeSum = 0;
double sum = 0;
foreach (var tr in TestRslts)
{
if (tr.TestData.Evaluate && tr.TestDone)
{
double duration = (tr.EndTime - tr.StartTime).TotalSeconds;
timeSum += duration;
sum += (tr.Buoyancy * duration);
}
}
return (timeSum == 0) ? 0 : (sum / timeSum);
}
public virtual TestRslt GetTestRslt(string name, int part)
{
foreach (var tr in TestRslts)
@@ -297,11 +323,10 @@ namespace Results.Entities
public virtual string ToString(int i)
{
return string.Format("Batch: BatchNr={0} ProgramVersion={1} TestBenchId={2} UserName={3} UserNumber={4} ProcedureName={5}{6} ProcRev={7} ProtocolTitle={8} Remark={9} DensityCorr={10} Custom2={11} Custom3={12} StartTime={13} EndTime={14} Dirty={15} RsltsSent={16} RsltsPrinted={17}",
return string.Format("Batch: BatchNr={0} ProgramVersion={1} TestBenchId={2} UserName={3} UserNumber={4} ProcedureName={5}{6} ProcRev={7} Remark={8} RealDensity={9} AtTemperature={10} Buoyancy={11} StartTime={12} EndTime={13} Dirty={14} RsltsSent={15} RsltsPrinted={16}",
BatchNr, ProgramVersion, TestBenchId, UserName, UserNumber,
ProcedureName, (IsRemoteProcedure ? "(R)" : ""), ProcedureRevision,
ProtocolTitle, Remark, DensityCorr, Custom2, Custom3,
StartTime, EndTime, Dirty, RsltsSent, RsltsPrinted);
Remark, SampleDensity, SampleTemp, Buoyancy, StartTime, EndTime, Dirty, RsltsSent, RsltsPrinted);
}
public virtual void WriteBinary(BinaryWriter writer)
@@ -323,11 +348,10 @@ namespace Results.Entities
writer.Write((ProcedureDescription != null) ? ProcedureDescription : string.Empty);
writer.Write(ProcedureRevision);
writer.Write((WatermetersStr != null) ? WatermetersStr : string.Empty);
writer.Write((ProtocolTitle != null) ? ProtocolTitle : string.Empty);
writer.Write((Remark != null) ? Remark : string.Empty);
writer.Write(DensityCorr);
writer.Write(Custom2);
writer.Write(Custom3);
writer.Write(SampleDensity);
writer.Write(SampleTemp);
writer.Write(Buoyancy);
writer.Write(Counter6);
writer.Write(Counter7);
writer.Write(Counter8);
@@ -390,11 +414,10 @@ namespace Results.Entities
ProcedureDescription = reader.ReadString();
ProcedureRevision = reader.ReadInt32();
WatermetersStr = reader.ReadString();
ProtocolTitle = reader.ReadString();
Remark = reader.ReadString();
DensityCorr = reader.ReadInt32();
Custom2 = reader.ReadInt32();
Custom3 = reader.ReadInt32();
SampleDensity = reader.ReadDouble();
SampleTemp = reader.ReadDouble();
Buoyancy = reader.ReadDouble();
Counter6 = reader.ReadInt32();
Counter7 = reader.ReadInt32();
Counter8 = reader.ReadInt32();
+39 -19
View File
@@ -1,5 +1,5 @@
///
/// Copyright (c) 2016-2020 Sensus Slovensko a.s.
/// Copyright (c) 2016-2021 Sensus Slovensko a.s.
///
using System;
using System.Collections.Generic;
@@ -22,35 +22,55 @@ namespace Results.Entities
public virtual string Custom2 { get; set; }
public virtual string Custom3 { get; set; }
/// <summary>
/// Default constructor, safe values
/// </summary>
public Components()
{
TestBenchId = 0;
TestBenchName = string.Empty;
Pump = string.Empty;
RegValve = string.Empty;
Flowmeter = string.Empty;
Diverter = string.Empty;
Scale = string.Empty;
Custom1 = string.Empty;
Custom2 = string.Empty;
Custom3 = string.Empty;
Pump = string.Empty;
RegValve = string.Empty;
Flowmeter = string.Empty;
Diverter = string.Empty;
Scale = string.Empty;
Custom1 = string.Empty;
Custom2 = string.Empty;
Custom3 = string.Empty;
}
public Components(int benchId, string benchName, string pump, string flowmeter,
string scale, string regValve, string diverter)
string scale, string regValve, string diverter)
{
TestBenchId = benchId;
TestBenchId = benchId;
TestBenchName = benchName;
Pump = pump;
RegValve = regValve;
Flowmeter = flowmeter;
Diverter = diverter;
Scale = scale;
Custom1 = string.Empty;
Custom2 = string.Empty;
Custom3 = string.Empty;
Pump = pump;
RegValve = regValve;
Flowmeter = flowmeter;
Diverter = diverter;
Scale = scale;
Custom1 = string.Empty;
Custom2 = string.Empty;
Custom3 = string.Empty;
}
/// <summary>
/// Copy constructor, copies all except of Id
/// </summary>
public Components(Components oriComponents)
{
TestBenchId = oriComponents.TestBenchId;
TestBenchName = oriComponents.TestBenchName;
Pump = oriComponents.Pump;
RegValve = oriComponents.RegValve;
Flowmeter = oriComponents.Flowmeter;
Diverter = oriComponents.Diverter;
Scale = oriComponents.Scale;
Custom1 = oriComponents.Custom1;
Custom2 = oriComponents.Custom2;
Custom3 = oriComponents.Custom3;
}
/// <summary>
/// Method to compare the content of two entities
+40 -29
View File
@@ -1,9 +1,10 @@
///
/// Copyright (c) 2013-2020 Sensus Slovensko a.s.
/// Copyright (c) 2013-2021 Sensus Slovensko a.s.
///
using System;
using System.Collections.Generic;
using System.IO;
using Common;
namespace Results.Entities
{
@@ -12,7 +13,6 @@ namespace Results.Entities
public virtual int Id { get; protected set; }
public virtual byte CompoundMeterId { get; set; } /// 0=single, 1=compound/main, 2=compound/aux., 3=compound/overal, 4=heat meter volume, 5=heat meter energy
public virtual int RegReaderType { get; set; } /// Not mapped to the DB, does not depend on localization and customer
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]
@@ -69,23 +69,23 @@ namespace Results.Entities
public virtual double QRise() { return WaterMeter.QRise; } /// [m3/h]
public virtual double QFall() { return WaterMeter.QFall; } /// [m3/h]
public virtual bool Evaluate() { return TestData().Evaluate; }
public virtual Config.Entities.Publish Publish() { return (Config.Entities.Publish)TestData().Publish; }
public virtual bool Evaluate() { return TestData().Evaluate; }
public virtual Publish Publish() { return (Publish)TestData().Publish; }
public virtual WaterMeterData WaterMeterData() { return WaterMeter.WaterMeterData; }
public virtual Batch Batch() { return WaterMeter.Batch; }
public virtual bool IsPilotRslt()
{
return (CompoundMeterId == (byte)Config.Entities.CompoundMeterId.Single) ||
(CompoundMeterId == (byte)Config.Entities.CompoundMeterId.Compound) ||
(CompoundMeterId == (byte)Config.Entities.CompoundMeterId.HeatMeterEnergy);
return (CompoundMeterId == (byte)Common.CompoundMeterId.Single) ||
(CompoundMeterId == (byte)Common.CompoundMeterId.Compound) ||
(CompoundMeterId == (byte)Common.CompoundMeterId.HeatMeterEnergy);
}
public virtual bool IsPulses() { return (RegReaderType == (int)Config.Entities.RegisterReaderType.Pulses || RegReaderType == (int)Config.Entities.RegisterReaderType.Unknown); }
public virtual bool IsCamera() { return (RegReaderType == (int)Config.Entities.RegisterReaderType.Camera); }
public virtual bool IsDataStream() { return (RegReaderType == (int)Config.Entities.RegisterReaderType.DataStream); }
public virtual bool IsManual() { return (RegReaderType == (int)Config.Entities.RegisterReaderType.Manual); }
public virtual bool IsPulses() { return (RegReaderType == (int)RegisterReaderType.Pulses || RegReaderType == (int)RegisterReaderType.Unknown); }
public virtual bool IsCamera() { return (RegReaderType == (int)RegisterReaderType.Camera); }
public virtual bool IsDataStream() { return (RegReaderType == (int)RegisterReaderType.DataStream); }
public virtual bool IsManual() { return (RegReaderType == (int)RegisterReaderType.Manual); }
public virtual string PassedColorStr(string yesNoFormatOrEmpty)
{
@@ -106,7 +106,7 @@ namespace Results.Entities
Passed = false;
}
public MeterTestRslt(WaterMeter waterMeterRslt, TestRslt testRslt, Config.Entities.CompoundMeterId compoundMeterId)
public MeterTestRslt(WaterMeter waterMeterRslt, TestRslt testRslt, CompoundMeterId compoundMeterId)
: this()
{
WaterMeter = waterMeterRslt;
@@ -114,29 +114,40 @@ namespace Results.Entities
CompoundMeterId = (byte)compoundMeterId;
}
/// <summary>
/// Copy constructor, copies all except of Id
/// TestRslt and WaterMeter references arenot set.
/// They have to be copied/ser manually.
/// </summary>
public MeterTestRslt(MeterTestRslt oriMTR)
{
CopyContentFrom(oriMTR);
}
public virtual void CopyContentFrom(MeterTestRslt src)
{
if (src == null) return;
CompoundMeterId = src.CompoundMeterId;
RegReaderType = src.RegReaderType;
PulsesMeter = src.PulsesMeter;
PulsesMaster = src.PulsesMaster;
PulsesPerLiter = src.PulsesPerLiter;
VolumeStart = src.VolumeStart;
VolumeEnd = src.VolumeEnd;
VolumeMeter = src.VolumeMeter;
VolumeRef = src.VolumeRef;
TimestampStart = src.TimestampStart;
TimestampEnd = src.TimestampEnd;
TestTime = src.TestTime;
Error = src.Error;
RegReaderType = src.RegReaderType;
PulsesMeter = src.PulsesMeter;
PulsesMaster = src.PulsesMaster;
PulsesPerLiter = src.PulsesPerLiter;
VolumeStart = src.VolumeStart;
VolumeEnd = src.VolumeEnd;
VolumeMeter = src.VolumeMeter;
VolumeRef = src.VolumeRef;
TimestampStart = src.TimestampStart;
TimestampEnd = src.TimestampEnd;
TestTime = src.TestTime;
Error = src.Error;
ErrorIndicators = src.ErrorIndicators;
KorrErrQ = src.KorrErrQ;
TestDone = src.TestDone;
Passed = src.Passed;
InfoIndicators = src.InfoIndicators;
KorrErrQ = src.KorrErrQ;
TestDone = src.TestDone;
Passed = src.Passed;
#if ORACLE_DB
LastError = src.LastError;
LastError = src.LastError;
#endif
}
@@ -170,7 +181,7 @@ namespace Results.Entities
writer.Write(LastError);
#endif
writer.Write((TestRslt != null && TestRslt.Name() != null) ? TestRslt.Name() : string.Empty);
writer.Write(TestRslt.Part);
writer.Write(TestRslt != null ? TestRslt.Part : 0);
}
public virtual void ReadBinary(BinaryReader reader, IList<TestRslt> testResults)
+46 -19
View File
@@ -1,10 +1,11 @@
///
/// Copyright (c) 2016-2020 Sensus Slovensko a.s.
/// Copyright (c) 2016-2021 Sensus Slovensko a.s.
///
using System;
using System.Collections.Generic;
using System.Linq;
using System.IO;
using Config.Entities;
namespace Results.Entities
{
@@ -32,33 +33,59 @@ namespace Results.Entities
public virtual bool Evaluate { get; set; }
public TestData()
/// <summary>
/// Default constructor, safe values
/// </summary>
public TestData()
{
Name = string.Empty;
Method = string.Empty;
}
public TestData(Config.Entities.Test test)
public TestData(Test test)
: this()
{
Name = test.Name;
Repeats = test.Repeats;
Qtg = (double)test.Qtg;
Qfrom = (double)test.Qfrom;
Qto = (double)test.Qto;
TargetVolume = (double)test.Volume;
TargetTime = (double)test.TstTime;
Method = test.Method;
ErrLimLo = (double)test.ErrLimLo;
ErrLimHi = (double)test.ErrLimHi;
ErrLimMargin = (double)test.Uncertainty;
DoControlWaterTemp = test.DoControlWaterTemp;
TempLimLo = test.TempLimLo;
TempLimHi = test.TempLimHi;
Publish = test.Publish;
Evaluate = test.DoEvaluate;
Name = test.Name;
Repeats = test.Repeats;
Qtg = (double)test.Qtg;
Qfrom = (double)test.Qfrom;
Qto = (double)test.Qto;
TargetVolume = (double)test.Volume;
TargetTime = (double)test.TestTime;
Method = test.Method;
ErrLimLo = (double)test.ErrLimLo;
ErrLimHi = (double)test.ErrLimHi;
ErrLimMargin = (double)test.Uncertainty;
DoControlWaterTemp = test.DoControlWaterTemp;
TempLimLo = test.TempLimLo;
TempLimHi = test.TempLimHi;
Publish = test.Publish;
Evaluate = test.DoEvaluate;
}
/// <summary>
/// Copy constructor, copies all except of Id
/// </summary>
public TestData(TestData oriTestData)
{
Name = oriTestData.Name;
Repeats = oriTestData.Repeats;
Qtg = oriTestData.Qtg;
Qfrom = oriTestData.Qfrom;
Qto = oriTestData.Qto;
TargetVolume = oriTestData.TargetVolume;
TargetTime = oriTestData.TargetTime;
Method = oriTestData.Method;
ErrLimLo = oriTestData.ErrLimLo;
ErrLimHi = oriTestData.ErrLimHi;
ErrLimMargin = oriTestData.ErrLimMargin;
DoControlWaterTemp = oriTestData.DoControlWaterTemp;
TempLimLo = oriTestData.TempLimLo;
TempLimHi = oriTestData.TempLimHi;
Publish = oriTestData.Publish;
Evaluate = oriTestData.Evaluate;
}
/// <summary>
/// Method to compare the content of two entities
+197 -175
View File
@@ -1,148 +1,150 @@
///
/// Copyright (c) 2015-2020 Sensus Slovensko a.s.
/// Copyright (c) 2015-2021 Sensus Slovensko a.s.
///
using System;
using System.Collections.Generic;
using System.Text;
using System.IO;
using Common;
namespace Results.Entities
{
public class TestRslt
{
/// Identity
public virtual int Id { get; protected set; }
public virtual Batch Batch { get; set; }
public virtual TestData TestData { get; set; }
public virtual Components Components { get; set; }
public virtual int Part { get; set; }
public virtual int RepetitionNr { get; set; } /// Repetition number from the set of repeated tests (1...)
public virtual string MethodClass { get; set; } /// Not mapped to DB, does not depend on localization and customer
public virtual int Id { get; protected set; }
public virtual Batch Batch { get; set; }
public virtual TestData TestData { get; set; }
public virtual Components Components { get; set; }
public virtual int Part { get; set; }
public virtual int RepetitionNr { get; set; } /// Repetition number from the set of repeated tests (1...)
public virtual string MethodClass { get; set; } /// Not mapped to DB, does not depend on localization and customer
/// Main results
public virtual bool TestDone { get; set; }
public virtual string Remark { get; set; }
public virtual DateTime StartTime { get; set; } /// Date and time of the test start
public virtual DateTime EndTime { get; set; } /// Date and time of the test end
public virtual int FlowSetTime { get; set; } /// [s] Flow set time in seconds
public virtual int TimeBtwnMassMsrmnts { get; set; } /// [s] Time between two mass measurements in seconds (if applicable)
public virtual double TestTime { get; set; } /// [s] Test time in seconds
public virtual double TestTimeCorrection { get; set; } /// [s] Correction of the test time due to diverter (0 for methods w/o diverter or when there is no correction table)
public virtual double PulsesMaster { get; set; } /// [pls] FlyingStartMassCollectionProlonged: MID pulses of the water to the tank
public virtual double TotalPulsesMstr { get; set; } /// [pls] FlyingStartMassCollectionProlonged: MID pulses of the complete test (not mapped to DB)
public virtual double ConstMasterRaw { get; set; } /// [l/pls] Liters per pulse of the master flow meter uncorrected.
public virtual double ConstMasterCorr { get; set; } /// [l/pls] Liters per pulse of the master flow meter corrected by a correction table.
public virtual double ConstMaster { get; set; } /// [l/pls] Liters per pulse of the master flow meter calculated from a mass measurement.
/// When mass measurement is not available, corrected by a correction table.
public virtual double MassStartRaw { get; set; } /// [kg]
public virtual double MassStart { get; set; } /// [kg]
public virtual double MassEndRaw { get; set; } /// [kg]
public virtual double MassEnd { get; set; } /// [kg]
public virtual double DensityIn { get; set; } /// [kg/m3]
public virtual double DensityLine { get; set; } /// [kg/m3]
public virtual double DensityDiv { get; set; } /// [kg/m3]
public virtual double Buoyancy { get; set; }
public virtual double FlowMass { get; set; } /// [kg/h] calculated from conventional true value
public virtual double FlowVolume { get; set; } /// [m3/h]
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 bool TestDone { get; set; }
public virtual string Remark { get; set; }
public virtual DateTime StartTime { get; set; } /// Date and time of the test start
public virtual DateTime EndTime { get; set; } /// Date and time of the test end
public virtual int FlowSetTime { get; set; } /// [s] Flow set time in seconds
public virtual int TimeBtwnMassMsrmnts { get; set; } /// [s] Time between two mass measurements in seconds (if applicable)
public virtual double TestTime { get; set; } /// [s] Test time in seconds
public virtual double TestTimeCorrection { get; set; } /// [s] Correction of the test time due to diverter (0 for methods w/o diverter or when there is no correction table)
public virtual double PulsesMaster { get; set; } /// [pls] FlyingStartMassCollectionProlonged: MID pulses of the water to the tank
public virtual double TotalPulsesMstr { get; set; } /// [pls] FlyingStartMassCollectionProlonged: MID pulses of the complete test (not mapped to DB)
public virtual double ConstMasterRaw { get; set; } /// [l/pls] Liters per pulse of the master flow meter uncorrected.
public virtual double ConstMasterCorr { get; set; } /// [l/pls] Liters per pulse of the master flow meter corrected by a correction table.
public virtual double ConstMaster { get; set; } /// [l/pls] Liters per pulse of the master flow meter calculated from a mass measurement.
/// When mass measurement is not available, corrected by a correction table.
public virtual double MassStartRaw { get; set; } /// [kg]
public virtual double MassStart { get; set; } /// [kg]
public virtual double MassEndRaw { get; set; } /// [kg]
public virtual double MassEnd { get; set; } /// [kg]
public virtual double DensityIn { get; set; } /// [kg/m3]
public virtual double DensityLine { get; set; } /// [kg/m3]
public virtual double DensityDiv { get; set; } /// [kg/m3]
public virtual double MassOfEvapWater { get; set; } /// [kg]
public virtual double FlowMass { get; set; } /// [kg/h] calculated from conventional true value
public virtual double FlowVolume { get; set; } /// [m3/h]
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 float DiverterStart { get; set; } /// [s] Diverter switch time when 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)
public virtual float DivStart90 { get; set; } /// [s] Diverter switch time when test starts at level 90 (e.g. 90%) (not mapped to DB)
public virtual float DiverterStart { get; set; } /// [s] Diverter switch time when 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)
public virtual float DivStart90 { get; set; } /// [s] Diverter switch time when test starts at level 90 (e.g. 90%) (not mapped to DB)
public virtual float DiverterEnd { get; set; } /// [s] Diverter switch time when test ends
public virtual float DivEnd90 { get; set; } /// [s] Diverter switch time when test starts at level 90 (e.g. 90%) (not mapped to DB)
public virtual float DivEnd50 { get; set; } /// [s] Diverter switch time when test starts at level 50 (e.g. 50%) (not mapped to DB)
public virtual float DivEnd10 { get; set; } /// [s] Diverter switch time when test starts at level 10 (e.g. 10%) (not mapped to DB)
public virtual float DiverterEnd { get; set; } /// [s] Diverter switch time when test ends
public virtual float DivEnd90 { get; set; } /// [s] Diverter switch time when test starts at level 90 (e.g. 90%) (not mapped to DB)
public virtual float DivEnd50 { get; set; } /// [s] Diverter switch time when test starts at level 50 (e.g. 50%) (not mapped to DB)
public virtual float DivEnd10 { get; set; } /// [s] Diverter switch time when test starts at level 10 (e.g. 10%) (not mapped to DB)
public virtual long ErrorFlags { get; set; } /// bitfield : bit0=E1, bit1=E2, bit2=E3, etc.
public virtual long InfoFlags { get; set; } /// bitfield : bit0=E1, bit1=E2, bit2=E3, etc.
public virtual long ErrorFlags { get; set; } /// bitfield : bit0=E1, bit1=E2, bit2=E3, etc.
public virtual long InfoFlags { get; set; } /// bitfield : bit0=E1, bit1=E2, bit2=E3, etc.
/// Main results of heat meters
public virtual double RefEnergy { get; set; } /// [J] Joul
public virtual double RefEnergy { get; set; } /// [J] Joul
/// Auxiliary results
public virtual float AmbTempMean { get; set; } /// [°C] Average ambient air temperature
public virtual float AmbTempStart { get; set; } /// [°C] Ambient air temperature on test start
public virtual float AmbTempEnd { get; set; } /// [°C] Ambient air temperature on test end
public virtual float AmbTempMin { get; set; } /// [°C] Minimum ambient air temperature
public virtual float AmbTempMax { get; set; } /// [°C] Maximum ambient air temperature
public virtual float AmbPressMean { get; set; } /// [bar] Average ambient air pressure
public virtual float AmbPressStart { get; set; } /// [bar] Ambient air pressure on test start
public virtual float AmbPressEnd { get; set; } /// [bar] Ambient air pressure on test end
public virtual float AmbPressMin { get; set; } /// [bar] Minimum ambient air pressure
public virtual float AmbPressMax { get; set; } /// [bar] Maximum ambient air pressure
public virtual float AmbHumiMean { get; set; } /// [%] Average ambient air relative humidity
public virtual float AmbHumiStart { get; set; } /// [%] Ambient air relative humidity on test start
public virtual float AmbHumiEnd { get; set; } /// [%] Ambient air relative humidity on test end
public virtual float AmbHumiMin { get; set; } /// [%] Minimum ambient air relative humidity
public virtual float AmbHumiMax { get; set; } /// [%] Maximum ambient air relative humidity
public virtual float PressUpMean { get; set; } /// [bar] Input water pressure (average)
public virtual float PressUpStart { get; set; } /// [bar]
public virtual float PressUpEnd { get; set; } /// [bar]
public virtual float PressUpMin { get; set; } /// [bar]
public virtual float PressUpMax { get; set; } /// [bar]
public virtual float PressDownMean { get; set; } /// [bar]
public virtual float PressDownStart { get; set; } /// [bar]
public virtual float PressDownEnd { get; set; } /// [bar]
public virtual float PressDownMin { get; set; } /// [bar]
public virtual float PressDownMax { get; set; } /// [bar]
public virtual float PressDeltaMean { get; set; } /// [bar]
public virtual float PressDeltaStart { get; set; } /// [bar]
public virtual float PressDeltaEnd { get; set; } /// [bar]
public virtual float PressDeltaMin { get; set; } /// [bar]
public virtual float PressDeltaMax { get; set; } /// [bar]
public virtual float TempUpMean { get; set; } /// [°C]
public virtual float TempUpStart { get; set; } /// [°C]
public virtual float TempUpEnd { get; set; } /// [°C]
public virtual float TempUpMin { get; set; } /// [°C]
public virtual float TempUpMax { get; set; } /// [°C]
public virtual float TempDownMean { get; set; } /// [°C]
public virtual float TempDownStart { get; set; } /// [°C]
public virtual float TempDownEnd { get; set; } /// [°C]
public virtual float TempDownMin { get; set; } /// [°C]
public virtual float TempDownMax { get; set; } /// [°C]
public virtual float TempDivMean { get; set; } /// [°C]
public virtual float TempDivStart { get; set; } /// [°C]
public virtual float TempDivEnd { get; set; } /// [°C]
public virtual float TempDivMin { get; set; } /// [°C]
public virtual float TempDivMax { get; set; } /// [°C]
public virtual float FlowMean { get; set; } /// [m3/h] mean flow from the reference flowmeter
public virtual float FlowStart { get; set; } /// [m3/h] flow at the start of test from the reference flowmeter
public virtual float FlowEnd { get; set; } /// [m3/h] flow at the end of test from the reference flowmeter
public virtual float FlowMin { get; set; } /// [m3/h]
public virtual float FlowMax { get; set; } /// [m3/h]
public virtual float ConductMean { get; set; } /// [uS/cm]
public virtual float ConductStart { get; set; } /// [uS/cm]
public virtual float ConductEnd { get; set; } /// [uS/cm]
public virtual float ConductMin { get; set; } /// [uS/cm]
public virtual float ConductMax { get; set; } /// [uS/cm]
public virtual float AmbTempMean { get; set; } /// [°C] Average ambient air temperature
public virtual float AmbTempStart { get; set; } /// [°C] Ambient air temperature on test start
public virtual float AmbTempEnd { get; set; } /// [°C] Ambient air temperature on test end
public virtual float AmbTempMin { get; set; } /// [°C] Minimum ambient air temperature
public virtual float AmbTempMax { get; set; } /// [°C] Maximum ambient air temperature
public virtual float AmbPressMean { get; set; } /// [bar] Average ambient air pressure
public virtual float AmbPressStart { get; set; } /// [bar] Ambient air pressure on test start
public virtual float AmbPressEnd { get; set; } /// [bar] Ambient air pressure on test end
public virtual float AmbPressMin { get; set; } /// [bar] Minimum ambient air pressure
public virtual float AmbPressMax { get; set; } /// [bar] Maximum ambient air pressure
public virtual float AmbHumiMean { get; set; } /// [%] Average ambient air relative humidity
public virtual float AmbHumiStart { get; set; } /// [%] Ambient air relative humidity on test start
public virtual float AmbHumiEnd { get; set; } /// [%] Ambient air relative humidity on test end
public virtual float AmbHumiMin { get; set; } /// [%] Minimum ambient air relative humidity
public virtual float AmbHumiMax { get; set; } /// [%] Maximum ambient air relative humidity
public virtual float PressUpMean { get; set; } /// [bar] Input water pressure (average)
public virtual float PressUpStart { get; set; } /// [bar]
public virtual float PressUpEnd { get; set; } /// [bar]
public virtual float PressUpMin { get; set; } /// [bar]
public virtual float PressUpMax { get; set; } /// [bar]
public virtual float PressDownMean { get; set; } /// [bar]
public virtual float PressDownStart { get; set; } /// [bar]
public virtual float PressDownEnd { get; set; } /// [bar]
public virtual float PressDownMin { get; set; } /// [bar]
public virtual float PressDownMax { get; set; } /// [bar]
public virtual float PressDeltaMean { get; set; } /// [bar]
public virtual float PressDeltaStart { get; set; } /// [bar]
public virtual float PressDeltaEnd { get; set; } /// [bar]
public virtual float PressDeltaMin { get; set; } /// [bar]
public virtual float PressDeltaMax { get; set; } /// [bar]
public virtual float TempUpMean { get; set; } /// [°C]
public virtual float TempUpStart { get; set; } /// [°C]
public virtual float TempUpEnd { get; set; } /// [°C]
public virtual float TempUpMin { get; set; } /// [°C]
public virtual float TempUpMax { get; set; } /// [°C]
public virtual float TempDownMean { get; set; } /// [°C]
public virtual float TempDownStart { get; set; } /// [°C]
public virtual float TempDownEnd { get; set; } /// [°C]
public virtual float TempDownMin { get; set; } /// [°C]
public virtual float TempDownMax { get; set; } /// [°C]
public virtual float TempDivMean { get; set; } /// [°C]
public virtual float TempDivStart { get; set; } /// [°C]
public virtual float TempDivEnd { get; set; } /// [°C]
public virtual float TempDivMin { get; set; } /// [°C]
public virtual float TempDivMax { get; set; } /// [°C]
public virtual float FlowMean { get; set; } /// [m3/h] mean flow from the reference flowmeter
public virtual float FlowStart { get; set; } /// [m3/h] flow at the start of test from the reference flowmeter
public virtual float FlowEnd { get; set; } /// [m3/h] flow at the end of test from the reference flowmeter
public virtual float FlowMin { get; set; } /// [m3/h]
public virtual float FlowMax { get; set; } /// [m3/h]
public virtual float ConductMean { get; set; } /// [uS/cm]
public virtual float ConductStart { get; set; } /// [uS/cm]
public virtual float ConductEnd { get; set; } /// [uS/cm]
public virtual float ConductMin { get; set; } /// [uS/cm]
public virtual float ConductMax { get; set; } /// [uS/cm]
public virtual float Uncertnt { get; set; } /// [%] Relative error uncertainty
public virtual float UncertntScale { get; set; } /// [%] Contribution to uncertainty from scale
public virtual float UncertntDensity { get; set; } /// [%] Contribution to uncertainty from density
public virtual float UncertntTemp { get; set; } /// [%] Contribution to uncertainty from temperature
public virtual float UncertntPressure { get; set; } /// [%] Contribution to uncertainty from pressure
public virtual float Uncertnt { get; set; } /// [%] Relative error uncertainty
public virtual float UncertntScale { get; set; } /// [%] Contribution to uncertainty from scale
public virtual float UncertntDensity { get; set; } /// [%] Contribution to uncertainty from density
public virtual float UncertntTemp { get; set; } /// [%] Contribution to uncertainty from temperature
public virtual float UncertntPressure { get; set; } /// [%] Contribution to uncertainty from pressure
public virtual float Custom1 { get; set; } /// [°C] T ref hi mean
public virtual float Custom2 { get; set; } /// [°C] T ref hi start
public virtual float Custom3 { get; set; } /// [°C] T ref hi end
public virtual float Custom4 { get; set; } /// [°C] T ref hi min
public virtual float Custom5 { get; set; } /// [°C] T ref hi max
public virtual float Custom6 { get; set; } /// [°C] T ref lo mean
public virtual float Custom7 { get; set; } /// [°C] T ref lo start
public virtual float Custom8 { get; set; } /// [°C] T ref lo end
public virtual float Custom9 { get; set; } /// [°C] T ref lo min
public virtual float Custom10 { get; set; } /// [°C] T ref lo max
public virtual float Custom1 { get; set; } /// [°C] T ref hi mean
public virtual float Custom2 { get; set; } /// [°C] T ref hi start
public virtual float Custom3 { get; set; } /// [°C] T ref hi end
public virtual float Custom4 { get; set; } /// [°C] T ref hi min
public virtual float Custom5 { get; set; } /// [°C] T ref hi max
public virtual float Custom6 { get; set; } /// [°C] T ref lo mean
public virtual float Custom7 { get; set; } /// [°C] T ref lo start
public virtual float Custom8 { get; set; } /// [°C] T ref lo end
public virtual float Custom9 { get; set; } /// [°C] T ref lo min
public virtual float Custom10 { get; set; } /// [°C] T ref lo max
public virtual int Counter1 { get; set; }
public virtual int Counter2 { get; set; }
public virtual int Counter3 { get; set; }
public virtual int Counter4 { get; set; }
public virtual int Counter5 { get; set; }
public virtual int Counter1 { get; set; }
public virtual int Counter2 { get; set; }
public virtual int Counter3 { get; set; }
public virtual int Counter4 { get; set; }
public virtual int Counter5 { get; set; }
/// Wrappers
public virtual string Name() { return Utils.GetTestName(TestData.Name, TestData.Repeats, RepetitionNr); }
@@ -152,7 +154,10 @@ namespace Results.Entities
public virtual double TargetVolume() { return TestData.TargetVolume; }
public virtual double TargetTime() { return TestData.TargetTime; }
public virtual string Method() { return TestData.Method; }
public virtual string RefFlowmeter() { return (Components != null) ? Components.Flowmeter : string.Empty; }
public virtual string RefFlowmeter() { return (Components != null && Components.Flowmeter != null) ? Components.Flowmeter : string.Empty; }
public virtual string Scale() { return (Components != null && Components.Scale != null) ? Components.Scale : string.Empty; }
public virtual string Diverter() { return (Components != null && Components.Diverter != null) ? Components.Diverter : string.Empty; }
public virtual string RegValve() { return (Components != null && Components.RegValve != null) ? Components.RegValve : string.Empty; }
public virtual bool IsRelErrTest() { return (MethodClass != null) ? (MethodClass.Contains("FixedStart") || MethodClass.Contains("FlyingStart") || MethodClass.Contains("CombinedWithDetection") || MethodClass.Contains("DiverterTest") || MethodClass.Contains("ManualEntry")) : true; }
public virtual bool IsPMaxTest() { return (MethodClass != null) ? (MethodClass.Contains("PMaxTest") || MethodClass.Contains("LeakTest") || TestData.Method.ToLower().Contains("pmax")) : true; }
public virtual bool IsStartStop() { return (MethodClass != null) ? MethodClass.Contains("FixedStart") : true; }
@@ -220,11 +225,11 @@ namespace Results.Entities
}
}
public virtual double ErrLimMargin() { return TestData.ErrLimMargin; }
public virtual float TempLimLo() { return TestData.TempLimLo; }
public virtual float TempLimHi() { return TestData.TempLimHi; }
public virtual bool Evaluate() { return TestData.Evaluate; }
public virtual Config.Entities.Publish Publish() { return (Config.Entities.Publish)TestData.Publish; }
public virtual double ErrLimMargin() { return TestData.ErrLimMargin; }
public virtual float TempLimLo() { return TestData.TempLimLo; }
public virtual float TempLimHi() { return TestData.TempLimHi; }
public virtual bool Evaluate() { return TestData.Evaluate; }
public virtual Common.Publish Publish() { return (Publish)TestData.Publish; }
public TestRslt()
@@ -246,46 +251,51 @@ namespace Results.Entities
{
if (src == null) return;
Components = src.Components; /// ???
Part = src.Part;
RepetitionNr = src.RepetitionNr;
MethodClass = src.MethodClass;
TestDone = src.TestDone;
Remark = src.Remark;
StartTime = src.StartTime;
EndTime = src.EndTime;
FlowSetTime = src.FlowSetTime;
Components = src.Components; /// ???
Part = src.Part;
RepetitionNr = src.RepetitionNr;
MethodClass = src.MethodClass;
TestDone = src.TestDone;
Remark = src.Remark;
StartTime = src.StartTime;
EndTime = src.EndTime;
FlowSetTime = src.FlowSetTime;
TimeBtwnMassMsrmnts = src.TimeBtwnMassMsrmnts;
TestTime = src.TestTime;
PulsesMaster = src.PulsesMaster;
TotalPulsesMstr = src.TotalPulsesMstr;
ConstMasterRaw = src.ConstMasterRaw;
ConstMasterCorr = src.ConstMasterCorr;
ConstMaster = src.ConstMaster;
MassStartRaw = src.MassStartRaw;
MassStart = src.MassStart;
MassEndRaw = src.MassEndRaw;
MassEnd = src.MassEnd;
DensityIn = src.DensityIn;
DensityLine = src.DensityLine;
DensityDiv = src.DensityDiv;
Buoyancy = src.Buoyancy;
FlowMass = src.FlowMass;
FlowVolume = src.FlowVolume;
VolumeCTV = src.VolumeCTV;
VolumeMaster = src.VolumeMaster;
ErrorMaster = src.ErrorMaster;
TestTime = src.TestTime;
TestTimeCorrection = src.TestTimeCorrection;
PulsesMaster = src.PulsesMaster;
TotalPulsesMstr = src.TotalPulsesMstr;
ConstMasterRaw = src.ConstMasterRaw;
ConstMasterCorr = src.ConstMasterCorr;
ConstMaster = src.ConstMaster;
MassStartRaw = src.MassStartRaw;
MassStart = src.MassStart;
MassEndRaw = src.MassEndRaw;
MassEnd = src.MassEnd;
DensityIn = src.DensityIn;
DensityLine = src.DensityLine;
DensityDiv = src.DensityDiv;
MassOfEvapWater = src.MassOfEvapWater;
FlowMass = src.FlowMass;
FlowVolume = src.FlowVolume;
VolumeCTV = src.VolumeCTV;
VolumeMaster = src.VolumeMaster;
ErrorMaster = src.ErrorMaster;
DiverterStart = src.DiverterStart;
DivStart10 = src.DivStart10;
DivStart50 = src.DivStart50;
DivStart90 = src.DivStart90;
DiverterEnd = src.DiverterEnd;
DivEnd10 = src.DivEnd10;
DivEnd50 = src.DivEnd50;
DivEnd90 = src.DivEnd90;
DivStart10 = src.DivStart10;
DivStart50 = src.DivStart50;
DivStart90 = src.DivStart90;
DiverterEnd = src.DiverterEnd;
DivEnd10 = src.DivEnd10;
DivEnd50 = src.DivEnd50;
DivEnd90 = src.DivEnd90;
ErrorFlags = src.ErrorFlags;
InfoFlags = src.InfoFlags;
RefEnergy = src.RefEnergy;
AmbTempMean = src.AmbTempMean;
AmbTempStart = src.AmbTempStart;
AmbTempEnd = src.AmbTempEnd;
@@ -342,15 +352,21 @@ namespace Results.Entities
ConductMin = src.ConductMin;
ConductMax = src.ConductMax;
Custom1 = src.Custom1;
Custom2 = src.Custom2;
Custom3 = src.Custom3;
Custom4 = src.Custom4;
Custom5 = src.Custom5;
Custom6 = src.Custom6;
Custom7 = src.Custom7;
Custom8 = src.Custom8;
Custom9 = src.Custom9;
Uncertnt = src.Uncertnt;
UncertntScale = src.UncertntScale;
UncertntDensity = src.UncertntDensity;
UncertntTemp = src.UncertntTemp;
UncertntPressure = src.UncertntPressure;
Custom1 = src.Custom1;
Custom2 = src.Custom2;
Custom3 = src.Custom3;
Custom4 = src.Custom4;
Custom5 = src.Custom5;
Custom6 = src.Custom6;
Custom7 = src.Custom7;
Custom8 = src.Custom8;
Custom9 = src.Custom9;
Custom10 = src.Custom10;
Counter1 = src.Counter1;
@@ -371,6 +387,12 @@ namespace Results.Entities
#endif
}
/// <summary> Wrapper </summary>
public virtual string InfoFlagsStr()
{
return Utils.ErrorFlagsStr(InfoFlags);
}
public virtual bool IsPartCompatible(int waterMeterPartNr)
{
if ((this.Part == 0) || (waterMeterPartNr == 0)) return true;
@@ -390,10 +412,10 @@ 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} Buoyancy={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}",
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}",
Part, RepetitionNr, TestDone, Remark, StartTime, EndTime, FlowSetTime, TestTime,
PulsesMaster, ConstMaster, MassStartRaw, MassStart, MassEndRaw, MassEnd,
DensityIn, DensityLine, DensityDiv, Buoyancy, FlowMass, FlowVolume,
DensityIn, DensityLine, DensityDiv, MassOfEvapWater, FlowMass, FlowVolume,
VolumeCTV, VolumeMaster, ErrorMaster, ErrorFlags, InfoFlags,
AmbTempMean, AmbTempStart, AmbTempEnd, AmbTempMin, AmbTempMax,
AmbPressMean, AmbPressStart, AmbPressEnd, AmbPressMin, AmbPressMax,
@@ -461,7 +483,7 @@ namespace Results.Entities
writer.Write(DensityIn);
writer.Write(DensityLine);
writer.Write(DensityDiv);
writer.Write(Buoyancy);
writer.Write(MassOfEvapWater);
writer.Write(FlowMass);
writer.Write(FlowVolume);
writer.Write(VolumeCTV);
@@ -602,7 +624,7 @@ namespace Results.Entities
DensityIn = reader.ReadDouble();
DensityLine = reader.ReadDouble();
DensityDiv = reader.ReadDouble();
Buoyancy = reader.ReadDouble();
MassOfEvapWater = reader.ReadDouble();
FlowMass = reader.ReadDouble();
FlowVolume = reader.ReadDouble();
VolumeCTV = reader.ReadDouble();
+113 -76
View File
@@ -1,10 +1,11 @@
///
/// Copyright (c) 2015-2020 Sensus Slovensko a.s.
/// Copyright (c) 2015-2021 Sensus Slovensko a.s.
///
using System;
using System.Collections.Generic;
using System.Text;
using System.IO;
using Common;
using Config.Entities;
using Results.Resources;
@@ -59,7 +60,7 @@ namespace Results.Entities
public virtual string Remark { get; set; }
#if IPERL
public virtual double OrigCalibFactor { get; set; } /// Original iPerl calibration factor used during the test
public virtual double OrigCalibFactor { get; set; } /// Original iPerl calibration factor used during the test
public virtual double CalibFactor { get; set; } /// iPerl calibration factor used during the test
public virtual double OrigCalibFactorLNA{ get; set; } /// Original iPerl LNA calibration factor used during the test
public virtual double CalibFactorLNA { get; set; } /// iPerl LNA calibration factor used during the test
@@ -76,8 +77,6 @@ namespace Results.Entities
/// <summary>
/// Data from a production test bench (in case of tests on iPerl special)
/// </summary>
public virtual int AssignedSerialNr { get; set; }
public virtual string CompleteSerialNr { get; set; }
public virtual string RadioAddress { get; set; }
public virtual int PaletteNr { get; set; }
public virtual int UmkartonNr { get; set; }
@@ -90,14 +89,24 @@ namespace Results.Entities
public virtual int ProdQ2CorrRL { get; set; } /// iPerl Q2 correction for the R-flow written to iPerl
public virtual int ProdQ2CorrLR { get; set; } /// iPerl Q2 correction for the L-flow written to iPerl
#endif
#if ORACLE_DB
public virtual int Pruefindex { get; set; } /// >= 1 ... pruefindex
///
/// Mapped to database only when ORACLE_DB is defined
///
public virtual int AssignedSerialNr { get; set; }
public virtual string Prefix { get; set; }
public virtual string Suffix { get; set; }
public virtual string CompleteSerialNr { get; set; }
public virtual int WMTypeRevision { get; set; }
public virtual int Pruefindex { get; set; } /// >= 1 ... pruefindex
public virtual int HydrPruefung { get; set; }
public virtual int WMTypeRevision { get; set; } /// Not mapped to DB !!!
public virtual object RawTestInfos { get; set; } /// IList<SensusTestInfo> fetched from Oracle at the beginning of the cycle, not mapped to DB !!!
public virtual object CompleteTestInfos { get; set; } /// SensusTestInfo[] obtained as a best match at the beginning of the cycle, not mapped to DB !!!
#endif
public virtual int ProcessId { get; set; } /// Not mapped to DB !!! Tracing DB Process ID
///
/// Not mapped to database
///
public virtual int ProcessId { get; set; } /// Not mapped to DB !!! Tracing DB Process ID
public virtual int SessionId { get; set; } /// Not mapped to DB !!! 1 (regular tracing DB session) or 2 (alternative tracing DB session)
public virtual bool LastRecordIsNok { get; set; } /// Not mapped to DB !!! Previous record verification result
@@ -186,6 +195,30 @@ namespace Results.Entities
#endif
}
public virtual long InfoFlagsFromTests()
{
long infoFlags = 0;
foreach (var mtr in MeterTestRslts)
{
if (mtr.Evaluate() && mtr.TestDone) infoFlags |= mtr.TestRslt.InfoFlags;
}
return infoFlags;
}
public virtual long InfoFlagsFromTestsAndWM()
{
return InfoFlagsFromTests() | InfoFlags;
}
/// <summary>
/// Convert combined errorFlags of all tests to string
/// </summary>
/// <returns>ErrorFlags string</returns>
public virtual string InfoFlagsStr()
{
return Utils.ErrorFlagsStr(InfoFlagsFromTestsAndWM());
}
public virtual string PassedOrErrorFlagsStr()
{
string eFlags = Utils.ErrorFlagsStr(ErrorFlagsFromTestsAndWM());
@@ -303,7 +336,7 @@ namespace Results.Entities
return GetMeterTestRslt(testName, CompoundMeterId.SingleOrCompound);
}
public virtual MeterTestRslt GetMeterTestRslt(string testName, Config.Entities.CompoundMeterId meterId)
public virtual MeterTestRslt GetMeterTestRslt(string testName, CompoundMeterId meterId)
{
if (string.IsNullOrEmpty(testName)) return null;
if (Disabled) return null;
@@ -317,18 +350,15 @@ namespace Results.Entities
{
return mtr;
}
else if (meterId == Config.Entities.CompoundMeterId.SingleOrCompound &&
mtr.CompoundMeterId == (byte)Config.Entities.CompoundMeterId.Single)
else if (meterId == CompoundMeterId.SingleOrCompound && mtr.CompoundMeterId == (byte)CompoundMeterId.Single)
{
return mtr;
}
else if (meterId == Config.Entities.CompoundMeterId.SingleOrCompound &&
mtr.CompoundMeterId == (byte)Config.Entities.CompoundMeterId.Compound)
else if (meterId == CompoundMeterId.SingleOrCompound && mtr.CompoundMeterId == (byte)CompoundMeterId.Compound)
{
return mtr;
}
else if (meterId == Config.Entities.CompoundMeterId.SingleOrCompound &&
mtr.CompoundMeterId == (byte)Config.Entities.CompoundMeterId.HeatMeterEnergy)
else if (meterId == CompoundMeterId.SingleOrCompound && mtr.CompoundMeterId == (byte)CompoundMeterId.HeatMeterEnergy)
{
return mtr;
}
@@ -394,13 +424,17 @@ namespace Results.Entities
public WaterMeter()
{
MeterTestRslts = new List<MeterTestRslt>();
#if ORACLE_DB
AssignedSerialNr = 0;
Prefix = string.Empty;
Suffix = string.Empty;
CompleteSerialNr = string.Empty;
WMTypeRevision = 0;
Pruefindex = 1;
HydrPruefung = 0;
WMTypeRevision = 0;
RawTestInfos = null;
CompleteTestInfos = null;
#endif
ProcessId = 0;
SessionId = 0;
ErrorFlags = 0;
@@ -415,7 +449,6 @@ namespace Results.Entities
ArchivePath = string.Empty;
Remark = string.Empty;
#if TURA_SPECIAL
CompleteSerialNr = string.Empty;
RadioAddress = string.Empty;
ProdUserName = string.Empty;
ProdPurchaseOrder = string.Empty;
@@ -430,37 +463,36 @@ namespace Results.Entities
{
if (src == null) return;
SerialNr = src.SerialNr;
SerialNrAux = src.SerialNrAux;
PurchaseOrder = src.PurchaseOrder;
YearOfProduction = src.YearOfProduction;
// WMPosition skipped
EndState = src.EndState;
EndStateAux = src.EndStateAux;
QRise = src.QRise;
QFall = src.QFall;
ErrorFlags = src.ErrorFlags;
Passed = src.Passed;
ResultCode = src.ResultCode;
ArchivePath = src.ArchivePath;
Remark = src.Remark;
SerialNr = src.SerialNr;
SerialNrAux = src.SerialNrAux;
PurchaseOrder = src.PurchaseOrder;
YearOfProduction = src.YearOfProduction;
WMPosition = src.WMPosition;
EndState = src.EndState;
EndStateAux = src.EndStateAux;
QRise = src.QRise;
QFall = src.QFall;
ErrorFlags = src.ErrorFlags;
InfoFlags = src.InfoFlags;
Passed = src.Passed;
ResultCode = src.ResultCode;
ArchivePath = src.ArchivePath;
Remark = src.Remark;
#if IPERL
OrigCalibFactor = src.OrigCalibFactor;
CalibFactor = src.CalibFactor;
OrigCalibFactor = src.OrigCalibFactor;
CalibFactor = src.CalibFactor;
OrigCalibFactorLNA = src.OrigCalibFactorLNA;
CalibFactorLNA = src.CalibFactorLNA;
Q2ErrWOCorrection = src.Q2ErrWOCorrection;
Q2CorrRL = src.Q2CorrRL;
Q2CorrLR = src.Q2CorrLR;
Q2CorrFlowRight = src.Q2CorrFlowRight;
Diff2Hz8Hz = src.Diff2Hz8Hz;
Hz2CorrectionDone = src.Hz2CorrectionDone;
Hz2Correction = src.Hz2Correction;
FWVersion = src.FWVersion;
CalibFactorLNA = src.CalibFactorLNA;
Q2ErrWOCorrection = src.Q2ErrWOCorrection;
Q2CorrRL = src.Q2CorrRL;
Q2CorrLR = src.Q2CorrLR;
Q2CorrFlowRight = src.Q2CorrFlowRight;
Diff2Hz8Hz = src.Diff2Hz8Hz;
Hz2CorrectionDone = src.Hz2CorrectionDone;
Hz2Correction = src.Hz2Correction;
FWVersion = src.FWVersion;
#endif
#if TURA_SPECIAL
AssignedSerialNr = src.AssignedSerialNr;
CompleteSerialNr = src.CompleteSerialNr;
RadioAddress = src.RadioAddress;
PaletteNr = src.PaletteNr;
UmkartonNr = src.UmkartonNr;
@@ -473,20 +505,23 @@ namespace Results.Entities
ProdQ2CorrRL = src.ProdQ2CorrRL;
ProdQ2CorrLR = src.ProdQ2CorrLR;
#endif
#if ORACLE_DB
Pruefindex = src.Pruefindex;
HydrPruefung = src.HydrPruefung;
WMTypeRevision = src.WMTypeRevision;
RawTestInfos = src.RawTestInfos;
CompleteTestInfos = src.CompleteTestInfos;
#endif
ProcessId = src.ProcessId;
SessionId = src.SessionId;
LastRecordIsNok = src.LastRecordIsNok;
AssignedSerialNr = src.AssignedSerialNr;
Prefix = src.Prefix;
Suffix = src.Suffix;
CompleteSerialNr = src.CompleteSerialNr;
WMTypeRevision = src.WMTypeRevision;
Pruefindex = src.Pruefindex;
HydrPruefung = src.HydrPruefung;
RawTestInfos = src.RawTestInfos; /// Not mapped to DB
CompleteTestInfos = src.CompleteTestInfos; /// Not mapped to DB
ProcessId = src.ProcessId; /// Not mapped to DB
SessionId = src.SessionId; /// Not mapped to DB
LastRecordIsNok = src.LastRecordIsNok; /// Not mapped to DB
foreach (var mtr in MeterTestRslts)
{
MeterTestRslt srcMtr = src.GetMeterTestRslt(mtr.Name(), (Config.Entities.CompoundMeterId)mtr.CompoundMeterId);
MeterTestRslt srcMtr = src.GetMeterTestRslt(mtr.Name(), (CompoundMeterId)mtr.CompoundMeterId);
if (srcMtr != null)
{
mtr.CopyContentFrom(srcMtr);
@@ -525,8 +560,8 @@ namespace Results.Entities
{
if ((mtr.CompoundMeterId == (byte)CompoundMeterId.Single || mtr.CompoundMeterId == (byte)CompoundMeterId.Compound || mtr.CompoundMeterId == (byte)CompoundMeterId.HeatMeterEnergy)
&& mtr.TestDone
&& (mtr.Publish() != Config.Entities.Publish.Never)
&& (mtr.Publish() != Config.Entities.Publish.Internal))
&& (mtr.Publish() != Publish.Never)
&& (mtr.Publish() != Publish.Internal))
{
testNames.Add(mtr.Name());
}
@@ -638,8 +673,6 @@ namespace Results.Entities
writer.Write((FWVersion != null) ? FWVersion : string.Empty);
#endif
#if TURA_SPECIAL
writer.Write(AssignedSerialNr);
writer.Write((CompleteSerialNr != null) ? CompleteSerialNr : string.Empty);
writer.Write((RadioAddress != null) ? RadioAddress : string.Empty);
writer.Write(PaletteNr);
writer.Write(UmkartonNr);
@@ -652,13 +685,16 @@ namespace Results.Entities
writer.Write(ProdQ2CorrRL);
writer.Write(ProdQ2CorrLR);
#endif
#if ORACLE_DB
writer.Write(AssignedSerialNr);
writer.Write((Prefix != null) ? Prefix : string.Empty);
writer.Write((Suffix != null) ? Suffix : string.Empty);
writer.Write((CompleteSerialNr != null) ? CompleteSerialNr : string.Empty);
writer.Write(WMTypeRevision);
writer.Write(Pruefindex);
writer.Write(HydrPruefung);
writer.Write(WMTypeRevision);
/// Write RawTestInfos
IList<Results.Output.SensusTestInfo> rawTestInfos = RawTestInfos as IList<Results.Output.SensusTestInfo>;
IList<Output.SensusTestInfo> rawTestInfos = RawTestInfos as IList<Output.SensusTestInfo>;
writer.Write((rawTestInfos != null) ? rawTestInfos.Count : 0);
if (rawTestInfos != null)
{
@@ -666,13 +702,13 @@ namespace Results.Entities
}
/// Write CompleteTestInfos
Results.Output.SensusTestInfo[] completeTestInfos = CompleteTestInfos as Results.Output.SensusTestInfo[];
Output.SensusTestInfo[] completeTestInfos = CompleteTestInfos as Output.SensusTestInfo[];
writer.Write((completeTestInfos != null) ? completeTestInfos.Length : 0);
if (completeTestInfos != null)
{
for (int i = 0; i < completeTestInfos.Length; i++) completeTestInfos[i].WriteBinary(writer);
}
#endif
writer.Write(ProcessId);
writer.Write(SessionId);
writer.Write(LastRecordIsNok);
@@ -731,8 +767,6 @@ namespace Results.Entities
FWVersion = reader.ReadString();
#endif
#if TURA_SPECIAL
AssignedSerialNr = reader.ReadInt32();
CompleteSerialNr = reader.ReadString();
RadioAddress = reader.ReadString();
PaletteNr = reader.ReadInt32();
UmkartonNr = reader.ReadInt32();
@@ -745,17 +779,20 @@ namespace Results.Entities
ProdQ2CorrRL = reader.ReadInt32();
ProdQ2CorrLR = reader.ReadInt32();
#endif
#if ORACLE_DB
AssignedSerialNr = reader.ReadInt32();
Prefix = reader.ReadString();
Suffix = reader.ReadString();
CompleteSerialNr = reader.ReadString();
WMTypeRevision = reader.ReadInt32();
Pruefindex = reader.ReadInt32();
HydrPruefung = reader.ReadInt32();
WMTypeRevision = reader.ReadInt32();
/// Read RawTestInfos
int rawTestInfosCount = reader.ReadInt32();
IList<Results.Output.SensusTestInfo> rawTestInfos = new List<Results.Output.SensusTestInfo>();
IList<Output.SensusTestInfo> rawTestInfos = new List<Output.SensusTestInfo>();
for (int i = 0; i < rawTestInfosCount; i++)
{
Results.Output.SensusTestInfo ti = new Results.Output.SensusTestInfo();
Output.SensusTestInfo ti = new Output.SensusTestInfo();
ti.ReadBinary(reader);
rawTestInfos.Add(ti);
}
@@ -763,15 +800,15 @@ namespace Results.Entities
/// Read CompleteTestInfos
int completeTestInfosLen = reader.ReadInt32();
Results.Output.SensusTestInfo[] completeTestInfos = new Results.Output.SensusTestInfo[completeTestInfosLen];
Output.SensusTestInfo[] completeTestInfos = new Output.SensusTestInfo[completeTestInfosLen];
for (int i = 0; i < completeTestInfosLen; i++)
{
Results.Output.SensusTestInfo ti = new Results.Output.SensusTestInfo();
Output.SensusTestInfo ti = new Output.SensusTestInfo();
ti.ReadBinary(reader);
completeTestInfos[i] = ti;
}
CompleteTestInfos = completeTestInfos;
#endif
ProcessId = reader.ReadInt32();
SessionId = reader.ReadInt32();
LastRecordIsNok = reader.ReadBoolean();
+81 -65
View File
@@ -1,65 +1,97 @@
///
/// Copyright (c) 2015-2020 Sensus Slovensko a.s.
/// Copyright (c) 2015-2021 Sensus Slovensko a.s.
///
using System;
using System.Collections.Generic;
using System.Linq;
using System.IO;
using Common;
namespace Results.Entities
{
public class WaterMeterData
{
public virtual int Id { get; protected set; }
public virtual string ProductName { get; set; }
public virtual string Producer { get; set; }
public virtual double DN { get; set; } /// [mm]
public virtual double L { get; set; } /// [mm]
public virtual Config.Entities.Mounting Mounting { get; set; } /// H / V / S / F
public virtual bool NewQnames { get; set; } /// Yes = Q3... No = Qn...
public virtual double Q4_Qmax { get; set; } /// [m3/h]
public virtual double Q3_Qn { get; set; } /// [m3/h]
public virtual double Q2_Qt { get; set; } /// [m3/h]
public virtual double Q1_Qmin { get; set; } /// [m3/h]
public virtual string MetrologicalClass { get; set; }
public virtual Config.Entities.TemperatureClass TemperatureClass { get; set; }
public virtual Config.Entities.PressureLossClass PressureLossClass { get; set; }
public virtual Config.Entities.MaxAdmissiblePressure MaxAdmissiblePressure { get; set; }
public virtual Config.Entities.FlowProfileSensitivityClass FlowProfileSensitivityClass { get; set; }
public virtual string ApprovalInfo { get; set; }
public virtual string Certificate { get; set; }
public virtual double PulsesPerLtr { get; set; }
public virtual int Id { get; protected set; }
public virtual string ProductName { get; set; }
public virtual string Producer { get; set; }
public virtual double DN { get; set; } /// [mm]
public virtual double L { get; set; } /// [mm]
public virtual Mounting Mounting { get; set; } /// H / V / S / F
public virtual bool NewQnames { get; set; } /// Yes = Q3... No = Qn...
public virtual double Q4_Qmax { get; set; } /// [m3/h]
public virtual double Q3_Qn { get; set; } /// [m3/h]
public virtual double Q2_Qt { get; set; } /// [m3/h]
public virtual double Q1_Qmin { get; set; } /// [m3/h]
public virtual string MetrologicalClass { get; set; }
public virtual TemperatureClass TemperatureClass { get; set; }
public virtual PressureLossClass PressureLossClass { get; set; }
public virtual MaxAdmissiblePressure MaxAdmissiblePressure { get; set; }
public virtual FlowProfileSensitivityClass FlowProfileSensitivityClass { get; set; }
public virtual string ApprovalInfo { get; set; }
public virtual string Certificate { get; set; }
public virtual double PulsesPerLtr { get; set; }
/// Concerns compound water meters
public virtual string ProducerAux { get; set; }
public virtual double Q3_Qn_Aux { get; set; } /// [m3/h]
public virtual string MetrologicalClassAux { get; set; }
public virtual string ApprovalInfoAux { get; set; }
public virtual string ProducerAux { get; set; }
public virtual double Q3_Qn_Aux { get; set; } /// [m3/h]
public virtual string MetrologicalClassAux { get; set; }
public virtual string ApprovalInfoAux { get; set; }
public virtual Config.Entities.Medium Medium { get; set; }
public virtual string Text1 { get; set; }
public virtual string Text2 { get; set; }
public virtual string Text3 { get; set; }
public virtual string Text4 { get; set; }
public virtual string Text5 { get; set; }
public virtual bool Compound { get; set; }
public virtual bool HeatMeter { get; set; }
#if ORACLE_DB
public virtual int WMTypeId { get; set; }
#endif
public virtual Medium Medium { get; set; }
public virtual string Text1 { get; set; }
public virtual string Text2 { get; set; }
public virtual string Text3 { get; set; }
public virtual string Text4 { get; set; }
public virtual string Text5 { get; set; }
public virtual bool Compound { get; set; }
public virtual bool HeatMeter { get; set; }
public virtual int WMTypeId { get; set; } /// Mapped to DB only when ORACLE_DB is defined
/// <summary>
/// Default constructor, safe values
/// </summary>
public WaterMeterData()
{
}
/// <summary>
/// Copy constructor, copies all except of Id
/// </summary>
public WaterMeterData(WaterMeterData oriWMData)
{
ProductName = oriWMData.ProductName;
Producer = oriWMData.Producer;
DN = oriWMData.DN;
L = oriWMData.L;
Mounting = oriWMData.Mounting;
NewQnames = oriWMData.NewQnames;
Q4_Qmax = oriWMData.Q4_Qmax;
Q3_Qn = oriWMData.Q3_Qn;
Q2_Qt = oriWMData.Q2_Qt;
Q1_Qmin = oriWMData.Q1_Qmin;
MetrologicalClass = oriWMData.MetrologicalClass;
TemperatureClass = oriWMData.TemperatureClass;
PressureLossClass = oriWMData.PressureLossClass;
MaxAdmissiblePressure = oriWMData.MaxAdmissiblePressure;
FlowProfileSensitivityClass = oriWMData.FlowProfileSensitivityClass;
ApprovalInfo = oriWMData.ApprovalInfo;
Certificate = oriWMData.Certificate;
PulsesPerLtr = oriWMData.PulsesPerLtr;
ProducerAux = oriWMData.ProducerAux;
Q3_Qn_Aux = oriWMData.Q3_Qn_Aux;
MetrologicalClassAux = oriWMData.MetrologicalClassAux;
ApprovalInfoAux = oriWMData.ApprovalInfoAux;
Medium = oriWMData.Medium;
Text1 = oriWMData.Text1;
Text2 = oriWMData.Text2;
Text3 = oriWMData.Text3;
Text4 = oriWMData.Text4;
Text5 = oriWMData.Text5;
Compound = oriWMData.Compound;
HeatMeter = oriWMData.HeatMeter;
WMTypeId = oriWMData.WMTypeId;
}
/// <summary>
/// Method to compare the content of two entities
@@ -70,47 +102,35 @@ namespace Results.Entities
{
if (ProductName != wmd.ProductName) return false;
if (Producer != wmd.Producer) return false;
if (DN != wmd.DN) return false;
if (L != wmd.L) return false;
if (Mounting != wmd.Mounting) return false;
if (NewQnames != wmd.NewQnames) return false;
if (Q4_Qmax != wmd.Q4_Qmax) return false;
if (Q3_Qn != wmd.Q3_Qn) return false;
if (Q2_Qt != wmd.Q2_Qt) return false;
if (Q1_Qmin != wmd.Q1_Qmin) return false;
if (MetrologicalClass != wmd.MetrologicalClass) return false;
if (TemperatureClass != wmd.TemperatureClass) return false;
if (PressureLossClass != wmd.PressureLossClass) return false;
if (MaxAdmissiblePressure != wmd.MaxAdmissiblePressure) return false;
if (FlowProfileSensitivityClass != wmd.FlowProfileSensitivityClass) return false;
if (ApprovalInfo != wmd.ApprovalInfo) return false;
if (Certificate != wmd.Certificate) return false;
if (PulsesPerLtr != wmd.PulsesPerLtr) return false;
if (ProducerAux != wmd.ProducerAux) return false;
if (Q3_Qn_Aux != wmd.Q3_Qn_Aux) return false;
if (MetrologicalClassAux != wmd.MetrologicalClassAux) return false;
if (ApprovalInfoAux != wmd.ApprovalInfoAux) return false;
if (Medium != wmd.Medium) return false;
if (Text1 != wmd.Text1) return false;
if (Text2 != wmd.Text2) return false;
if (Text3 != wmd.Text3) return false;
if (Text4 != wmd.Text4) return false;
if (Text5 != wmd.Text5) return false;
if (Compound != wmd.Compound) return false;
if (HeatMeter != wmd.HeatMeter) return false;
#if ORACLE_DB
if (WMTypeId != wmd.WMTypeId) return false;
#endif
return true;
}
@@ -166,9 +186,7 @@ namespace Results.Entities
writer.Write((Text5 != null) ? Text5 : string.Empty);
writer.Write(Compound);
writer.Write(HeatMeter);
#if ORACLE_DB
writer.Write(WMTypeId);
#endif
}
public virtual void ReadBinary(BinaryReader reader)
@@ -178,17 +196,17 @@ namespace Results.Entities
Producer = reader.ReadString();
DN = reader.ReadDouble();
L = reader.ReadDouble();
Mounting = (Config.Entities.Mounting)reader.ReadInt32();
Mounting = (Mounting)reader.ReadInt32();
NewQnames = reader.ReadBoolean();
Q4_Qmax = reader.ReadDouble();
Q3_Qn = reader.ReadDouble();
Q2_Qt = reader.ReadDouble();
Q1_Qmin = reader.ReadDouble();
MetrologicalClass = reader.ReadString();
TemperatureClass = (Config.Entities.TemperatureClass)reader.ReadInt32();
PressureLossClass = (Config.Entities.PressureLossClass)reader.ReadInt32();
MaxAdmissiblePressure = (Config.Entities.MaxAdmissiblePressure)reader.ReadInt32();
FlowProfileSensitivityClass = (Config.Entities.FlowProfileSensitivityClass)reader.ReadInt32();
TemperatureClass = (TemperatureClass)reader.ReadInt32();
PressureLossClass = (PressureLossClass)reader.ReadInt32();
MaxAdmissiblePressure = (MaxAdmissiblePressure)reader.ReadInt32();
FlowProfileSensitivityClass = (FlowProfileSensitivityClass)reader.ReadInt32();
ApprovalInfo = reader.ReadString();
Certificate = reader.ReadString();
PulsesPerLtr = reader.ReadDouble();
@@ -196,7 +214,7 @@ namespace Results.Entities
Q3_Qn_Aux = reader.ReadDouble();
MetrologicalClassAux = reader.ReadString();
ApprovalInfoAux = reader.ReadString();
Medium = (Config.Entities.Medium)reader.ReadInt32();
Medium = (Medium)reader.ReadInt32();
Text1 = reader.ReadString();
Text2 = reader.ReadString();
Text3 = reader.ReadString();
@@ -204,9 +222,7 @@ namespace Results.Entities
Text5 = reader.ReadString();
Compound = reader.ReadBoolean();
HeatMeter = reader.ReadBoolean();
#if ORACLE_DB
WMTypeId = reader.ReadInt32();
#endif
}
}
}
+5 -5
View File
@@ -2,10 +2,10 @@
using System.Collections.Generic;
using System.Windows.Forms;
using log4net;
using Config.Entities;
using Common;
using Results.Resources;
using NHibernate;
using TracingDB.Entities;
using SharedDatabase.Entities;
namespace Results.Forms
{
@@ -227,13 +227,13 @@ namespace Results.Forms
void ShowMoreWMResults(Results.Entities.WaterMeter wm)
{
if ((TracingDB.DB.SessionFactory == null) || string.IsNullOrEmpty(wm.SerialNr))
if ((SharedDatabase.TracingDB.SessionFactory == null) || string.IsNullOrEmpty(wm.SerialNr))
{
new Results.Forms.MoreWMResultsDlg(wm, null).ShowDialog();
}
else
{
using (ISession session = TracingDB.DB.SessionFactory.OpenSession())
using (ISession session = SharedDatabase.TracingDB.SessionFactory.OpenSession())
{
IList<ReferenceRecord> refRecords = session.QueryOver<ReferenceRecord>()
.Where(x => (x.Code == wm.SerialNr))
@@ -284,7 +284,7 @@ namespace Results.Forms
private void OnTimer(object source, EventArgs e)
{
if (DateTime.Compare(lastSizeChange, lastRedraw) > 0)
if (DateTime.Compare(lastSizeChange, lastRedraw) > 0 && !flowLayoutPanel.IsDisposed)
{
/// The last size change was more recent then the last redraw
+10 -10
View File
@@ -2,7 +2,7 @@
using System.Collections.Generic;
using System.Linq;
using System.Windows.Forms;
using Config.Entities;
using Common;
using Results.Resources;
namespace Results.Forms
@@ -78,7 +78,7 @@ namespace Results.Forms
unitsCB = new ComboBox();
ComboBox alignmentCB = new ComboBox();
for (Config.Entities.Alignment a = 0; a < Config.Entities.Alignment.Count; a++)
for (Alignment a = 0; a < Alignment.Count; a++)
{
alignmentCB.Items.Add(a.ToDescription());
}
@@ -113,12 +113,12 @@ namespace Results.Forms
{
if (e.SubItem == (int)Column.Units)
{
Config.Quantity quantity = (e.Item.Tag as ManualEntryItemSpec).Quantity;
Quantity quantity = (e.Item.Tag as ManualEntryItemSpec).Quantity;
unitsCB.Items.Clear();
unitsCB.Items.Add(Config.Unit.None.ToDescription()); /// "---"
for (Config.Unit u = (Config.Unit)1; u < Config.Unit.Count; u++)
unitsCB.Items.Add(Unit.None.ToDescription()); /// "---"
for (Unit u = (Unit)1; u < Unit.Count; u++)
{
if (Config.Units.IsQuantity(u, quantity)) unitsCB.Items.Add(u.ToDescription());
if (Units.IsQuantity(u, quantity)) unitsCB.Items.Add(u.ToDescription());
}
selectedResultsListViewEx.StartEditing(unitsCB, e.Item, e.SubItem);
}
@@ -137,7 +137,7 @@ namespace Results.Forms
{
case Column.Caption: item.Caption = e.DisplayText; return;
case Column.Units:
for (Config.Unit u = 0; u < Config.Unit.Count; u++)
for (Unit u = 0; u < Unit.Count; u++)
{
if (u.ToDescription().Equals(unitsCB.Text))
{
@@ -188,10 +188,10 @@ namespace Results.Forms
{
treeView.Nodes.Clear();
IList<Config.Quantity> quantities = new List<Config.Quantity>();
for (Config.Quantity q = 0; q < Config.Quantity.Count; q++) quantities.Add(q);
IList<Quantity> quantities = new List<Quantity>();
for (Quantity q = 0; q < Quantity.Count; q++) quantities.Add(q);
IList<Config.Quantity> sortedQuantities = quantities.OrderBy(x => x.ToDescription()).ToList();
IList<Quantity> sortedQuantities = quantities.OrderBy(x => x.ToDescription()).ToList();
foreach (var q in sortedQuantities)
{
-1
View File
@@ -153,7 +153,6 @@
#endregion
private System.Windows.Forms.TabControl tabControl1;
private OneWMResultsRowsCtrl oneWMResultsCtrl;
private System.Windows.Forms.TabPage graphsTabPage;
private System.Windows.Forms.TabPage productionTracingTabPage;
private System.Windows.Forms.SplitContainer productionTracingSplitContainer;
+4 -4
View File
@@ -3,12 +3,12 @@
///
using System;
using System.Collections.Generic;
using System.Windows.Forms;
using TracingDB.Entities;
using Results.Resources;
using Config.Entities;
using System.Drawing;
using System.Windows.Forms;
using System.Windows.Forms.DataVisualization.Charting;
using Config.Entities;
using Results.Resources;
using SharedDatabase.Entities;
namespace Results.Forms
{

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