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Author SHA1 Message Date
Milan Hanajik 5641b0512c Reconfigured for iPERL-NEW 2020-02-27 08:20:32 +01:00
Milan Hanajik fa38af65e6 IP addresses in Statistics modified, ver. 2.25.1427 2020-02-27 08:19:47 +01:00
Milan Hanajik 54a28aa8bf Generate CompleteTestInfos from Procedure in case Oracle DB is off, ver. 2.25.1427 2020-02-26 13:47:53 +01:00
Milan Hanajik f10be22c0b 1. ToFirstMonitor and ToSecondMonitor console app.added, 2. GenCode128 project added. 2020-02-26 13:27:23 +01:00
Milan Hanajik 630f7d1e54 Printer.Label supports printing s/n as Code 128 barcode. 2020-02-26 13:27:23 +01:00
Milan Hanajik 85c0003a45 RegisterReaders simulation in FlyingStartMassCollection test method. 2020-02-24 15:12:31 +01:00
Milan Hanajik fe758348ba 'Custom query' added to ResultsBrowser, default settings updated (IP addr.), ver. 2.25.1422 2020-02-24 15:07:06 +01:00
Milan Hanajik 860e369e35 PTest defaults for Krakov, ver. 2.25.1420 2020-02-14 16:27:57 +01:00
Milan Hanajik 658f5d2e27 Database upgrade 2.22 -> 2.24 fixed. 2020-02-14 08:56:11 +01:00
Milan Hanajik 3b1ab9fdca ver. 2.25.1417 2020-02-12 09:55:05 +01:00
Milan Hanajik 98aa74a0d4 Displaying production tracing records fixed. 2020-02-12 09:46:37 +01:00
Milan Hanajik e28b94c367 iPERL comm. (Set Active Mode) after saving results and deleting disabled WMs from the Batch fixed, ver. 2.25.1416 2020-02-12 09:15:52 +01:00
Milan Hanajik 09ccc282a5 Output.Printers.Label with water meter s/n printed as a QR code. 2020-02-12 08:38:08 +01:00
Milan Hanajik 3d3cac81b9 ver. 2.25.1414 2020-02-11 09:31:37 +01:00
Milan Hanajik a7965a7ffc (1) Publish.Internal&Never tests not saved to rslts.DB, (2) Publish.Never tests are in TestRslts, (3) bool Batch.IsRemoteProcedure field, etc. ver. 2.25.1410 2020-02-07 12:40:20 +01:00
Milan Hanajik 7dcb5ba6ce (1) Store/restore RawTestInfos & CompleteTestInfos as well, (2) TestRslt.TestDone = true after RFID, ver. 2.25.1409 2020-02-07 10:08:42 +01:00
Milan Hanajik 14a96ea3e8 (1) PData serialization of strings copes with nulls (2) Correct links MeterTestRslt->TestRslts restored, ver. 2.25.1408 2020-02-07 10:08:42 +01:00
Milan Hanajik a138e1117c Bug fixes in FlyingStartMassCollectionSeq.Simulate1(..) & Simulate2(..) 2020-02-07 10:08:42 +01:00
Milan Hanajik c73f6a857a (1) Save process data after each completed test, (2) Restore process data of an interrupted session via 'Abort' button. 2020-02-05 13:04:00 +01:00
Milan Hanajik 12c9e72d0c ProcessData (aka BatchResults) serialization part 2 2020-02-05 13:03:52 +01:00
Milan Hanajik 61747166ae UpdateTestResults(..) function abandoned from DataEntry components, WMStates component deleted 2020-02-05 10:33:42 +01:00
Milan Hanajik dc31e833ee BatchResults.WaterMeters eliminated, Batch.WaterMeters are used instead ... many changes 2020-02-05 10:33:32 +01:00
Milan Hanajik 51523ea577 BatchResults serialization (WriteBinary/ReadBinary methods) 2020-02-05 10:23:30 +01:00
Milan Hanajik ef75c30af9 Bug fix - more robust. 2020-02-05 10:23:30 +01:00
Milan Hanajik cf236d94b8 DEWA300 component upgraded (29.01.2020) : Zmena zapojenia vyhrevnych okruhov, grafika 2020-02-05 10:23:30 +01:00
Milan Hanajik 65ede62c1f DataEntry windows : StartPosition = CenterParent 2020-02-05 10:23:30 +01:00
Milan Hanajik 08c94aacce Database export/import in progress. 2020-02-05 10:23:30 +01:00
Milan Hanajik 9b11602ab8 TEST_MODE removed from code, ver. 2.25.1407 2020-02-05 10:23:09 +01:00
Milan Hanajik 6ec2852581 DEWA PT300 : Bit 80 / VI11 issue fixed, ver. 2.25.1405 2020-01-27 14:21:00 +01:00
Milan Hanajik 51c24f8c4c Filters in ProceduresDlg : ProceduresCtrl with SplitContainer: 1 UI for filters and 2 ListViewEx, BaseWithListViewEx is not used, ver. 2.25.1404 2020-01-24 08:37:27 +01:00
Milan Hanajik 8b1e0af207 ver. 2.25.1403 2020-01-23 14:54:09 +01:00
Milan Hanajik c448c18a42 Changes in counters, part 2. 2020-01-22 13:51:47 +01:00
Milan Hanajik d8927a9052 Changes in counters, part 1. 2020-01-22 13:51:26 +01:00
Milan Hanajik 073ee3bf30 Name of the exported file is set to the exported procedure name, ver. 2.25.1402 2020-01-22 09:58:31 +01:00
Milan Hanajik 445a16dc6f Qtg added to Test table in Config DB. 2020-01-22 09:06:01 +01:00
Milan Hanajik 2155790ffb (1) MainWnd.UpdateMenuItemsVisibility() called after a user change, (2) TBF depends on RestClient project. 2020-01-21 17:40:31 +01:00
Milan Hanajik 2ad50a9708 Command.Stop enqueued after Emergency stop in similar way as before. 2020-01-21 17:40:31 +01:00
Milan Hanajik 670de424c2 UpgradeSelectionDlg : v.2.22 -> v.2.24 and v.2.24 -> v.2.25 2020-01-21 17:40:23 +01:00
Milan Hanajik 7c070fc635 Config project and DB cleanup 2020-01-13 14:24:39 +01:00
Milan Hanajik 4090bd1618 UsersGroups table added to config DB, User and Group have ManyToMany relation, ver. 2.25.1400 2020-01-13 14:24:25 +01:00
Milan Hanajik ab43cabc57 (1) RestClient project added, (2) Testmethods.Q2CorrectionFromHisotry modified. 2020-01-13 14:10:28 +01:00
Milan Hanajik 91461eb2cc .NET Framework 4.7.2 2020-01-13 14:10:20 +01:00
Milan Hanajik aa18b75ef8 CHARACTER SET utf8 COLLATE utf8_unicode-ci after creating/importing a database. 2020-01-13 14:10:13 +01:00
Milan Hanajik f029fdbd2e Publish and Evaluate were added to PTest, are specified in Test profiles. 2020-01-13 14:08:06 +01:00
Milan Hanajik 003862a109 Fixes for #if IPERL related to recent uncertainty/error flags changes, ver. 2.24.1391 2020-01-10 11:33:37 +01:00
Milan Hanajik 771758892b Solution upgraded to VS2012 2020-01-07 11:09:52 +01:00
Milan Hanajik 42dfbeab2f Testmethods.ManualEntry : (1) UI (yes/no, last values are stored, etc.), (2) PMax pressure and test time fixed, ver. 2.24.1390 2020-01-07 11:05:31 +01:00
Milan Hanajik 6678cb31c5 TestMethods.ManualEntry, Results.ManualEntryItemSpec, Results.Forms.ManualEntryConfig..., etc., ver. 2.24.1389 2019-12-22 11:51:54 +01:00
Milan Hanajik 94b9f564cc Output.DB.ProductionTracing : Alternative profuction tracing DB possible. 2019-12-18 17:53:12 +01:00
Milan Hanajik 4bf4445672 RestoreAndFixBatch functionality modified. 2019-12-18 17:52:46 +01:00
Milan Hanajik b4763441a8 (1) Bug fix in sending FM pump frequencies to control board, (2) More logging, ver. 2.24.1386 2019-12-18 10:45:25 +01:00
Milan Hanajik 296198550a CLosing modeless forms Adjustment.WMErrorsForm and PulsesTest.WMPulsesForm. 2019-12-13 18:08:55 +01:00
Milan Hanajik 9cffd9e5c8 BenchControlPanel localization. 2019-12-13 18:08:54 +01:00
Milan Hanajik 55df6e809e FixedStartDeferredEvalSeq : Delay time before grabbing images introduced. 2019-12-13 18:08:53 +01:00
Milan Hanajik 512530f456 MainSeq bug fix : Program crashed when OuterLoop.Start was started as the first test. 2019-12-13 18:08:52 +01:00
Milan Hanajik 3c7d3e5ea6 E5 modified/fixed 2019-12-13 18:08:51 +01:00
Milan Hanajik 88a7de450a Users cleanup, ver. 2.24.1382 2019-12-13 18:08:38 +01:00
Milan Hanajik 531b5d29ae (1) TestProfiles and TestWizard.TestProfileSel (2) ErrorFlags and some WM params updated from profiles (3) Proc./Profile names case insensitive, ver. 2.24.1369 2019-12-13 11:25:22 +01:00
Milan Hanajik 511ef6a1f3 ErrorFlags : (1) bool --> (sbyte)ErrorFlagsMode, (2) Mode disappeared, (3) Prepared for E1 .. E63 2019-12-13 11:18:12 +01:00
Milan Hanajik c6497ef1b4 Kepno_50 : (1) Component updates (4.12.2019), (2) TestTimeCorrection into SummaryResults 2019-12-12 12:46:17 +01:00
Milan Hanajik 61fe458ea0 French language, ver. 2.24.1368 2019-11-27 15:01:57 +01:00
Milan Hanajik a43031c0a5 TBF.UI.Results namespace --> TBF.UI.ResultsMI, etc. 2019-11-26 18:05:02 +01:00
Milan Hanajik e9c6f58e0d ALZIR_25 symbol and component added 2019-11-26 18:03:24 +01:00
Milan Hanajik 3e026d7129 Elde.RegisterReader.RegisterReader.Position, IRegisterReader.Position, etc. introduced., ver. 2.24.1365 2019-11-20 13:09:38 +01:00
Milan Hanajik dd8ea86fc3 FixedStartDeferredEval a FixedStartMassCollDeferredEval 2019-11-19 07:54:54 +01:00
Milan Hanajik b5be8f74bf (1) FixedStartSeq code cleanup, scale/tank/draining/mass measurement removed, (2) Adjustment.WMErrorsForm-s are more robust, ver. 2.24.1364 2019-11-15 16:53:57 +01:00
Milan Hanajik 0297d74b17 ROMA_200 : (1) Component upgraded (12.11.2019), (2) Dummy scale does not overwrite Tank/DrainValve info, (3) minor changes, ver. 2.24.1363 2019-11-13 08:14:01 +01:00
Milan Hanajik 708610b8ab ROMA_200 : Component added, symbol processing added, ver. 2.24.1359 2019-11-07 14:45:09 +01:00
Milan Hanajik b3fdb11b81 TestProfiles : UI changes 2019-11-07 14:00:30 +01:00
Milan Hanajik ecaca8cc6b Config.Entities.Profile, PTest, Config.Mappings.ProfileMap, PTestMap added. 2019-10-31 14:01:41 +01:00
Milan Hanajik 0a68fed3e9 TBF.UI.Bench.TestProfiles changes. 2019-10-30 09:24:52 +01:00
Milan Hanajik 21cbc4220e TBF.UI : Item.EditXyz added. 2019-10-30 09:24:50 +01:00
Milan Hanajik 7fd4966757 Uncertainty under construction, Results DB TestRslt table modified 2019-10-30 09:24:49 +01:00
Milan Hanajik 424be60a05 Bug fixes : (1) FlowMeterDewa, (2) ControlComWrap.ReferenceFreqs(int i) 2019-10-30 09:24:48 +01:00
Milan Hanajik 68d6479d20 Output.fileWriters.IperlLogger bug fix 2019-10-28 17:05:52 +01:00
Milan Hanajik 1ca6b182d4 iPerlCommunication : DelayBetweenRetries introduced. 2019-10-28 17:05:51 +01:00
Milan Hanajik 870d57fb67 (1) ProcedureDlg: Draining before/after in Process tab, (2) DoDrainingAfter implemented in test method sequences. 2019-10-28 17:05:41 +01:00
Milan Hanajik 28123c3a31 Transition sequences and hydraulic paths are not displayed and cannot be edited for test methods with DoTranisitions( ) == false. 2019-10-24 12:57:52 +02:00
Milan Hanajik d5c0eb9c09 (1) TBF.BenchControl.Elde.SendCommandArgs class and cbCommandQueue (2) DiverterToTank, DiverterToSink commands modified. 2019-10-24 12:57:37 +02:00
Milan Hanajik dbe87a375d TransitionContext.AfterTestWithOverlap, PID coef. set earlier as well, nextHydroTest in MainSeq. 2019-10-24 12:56:59 +02:00
Milan Hanajik f1147031a1 (1) Modifications for WR20, WR21 (2) ProcessData.BenchInfo.TestBenchId/TextBenchName are always used by Oracle and ProductionTracing. 2019-10-24 12:51:08 +02:00
Milan Hanajik c95860dcce iPerl : "Fix' is possible for user 'milan' even when previous records are missing 2019-10-11 16:52:20 +02:00
Milan Hanajik b37023eff7 (1) TestMethods.Dummy component, (2) Three custom shared buttons, (3) ProcedureDlg and Procedures.TestWizard modified. 2019-10-11 16:52:09 +02:00
Milan Hanajik 0934940556 SensusTestInfo extended 2019-10-11 15:06:02 +02:00
Milan Hanajik f7c10daa52 'ShowDisabledPositions' supported when displaying previous results. 2019-10-11 15:06:01 +02:00
Milan Hanajik 1d75cbc239 Oracle DB only : Refactorization : TBF.UI namespace, no change of function, part 2. 2019-10-01 12:11:10 +02:00
Milan Hanajik 2aa8b19c87 FlowMeter, FlowmeterTriplet : Condiiton (flow < 0.1 * NominalFlow) removed from LtrPerPulseCorrected( ) 2019-09-26 15:39:19 +02:00
Milan Hanajik 179735fcd1 Bug fix : Program crashed when on-screen result items were defined for the first time on a PC (columnWidths == null). 2019-09-23 07:17:42 +02:00
Milan Hanajik 9caae8dffd (1) FlowMeteDewa uses EtPulses2, EtPulses3, (2) WMChart fixed, Q4 displayed, (3) Minor MainSeq bug fix. 2019-09-22 16:37:58 +02:00
Milan Hanajik 4fc427d875 (1) StandardCamera.TestStartEndForm fixed (exclamation), (2) Simulate mode for camera with sample.bmp. 2019-09-22 16:37:55 +02:00
Milan Hanajik 688580c29f TBF ver. 2.24.1320 2019-09-22 16:37:46 +02:00
Milan Hanajik 28937ff01d Temperature, Pressure : shorter filter (7s -> 4s) and skip (5s -> 3s) times, ver. 2.24.1317 2019-09-19 15:06:36 +02:00
Milan Hanajik 6dbb6118ea UpgradeSelectionDlg : 2.18 -> 2.22 and 2.22 -> 2.24 2019-09-19 14:22:34 +02:00
Milan Hanajik adc9e4efe4 Clean-up 2019-09-19 07:45:35 +02:00
Milan Hanajik 3333b4baa2 FlowMeterDewa bug fix, wrong indices used when calculating a correction of a sum of flows. 2019-09-19 07:45:21 +02:00
Milan Hanajik a1ef22b809 ver. 2.24.1316 2019-09-19 07:43:29 +02:00
Milan Hanajik 90b760075c TBF.UI.Bench.Uncertainties : Modifications, 3 tab pages completed, 2 in preparation. 2019-09-18 18:49:11 +02:00
Milan Hanajik 74f8c44783 Config.Data.RealDensity etc., DataContainers.Density and Buoyancy components, related metrology tabs modified/created. 2019-09-18 18:49:00 +02:00
Milan Hanajik 0468b5a1f5 Conditions and Uncertainties added to Bench menu, initial versions of dialogs, Config.Entities.Ucertainty, etc. 2019-09-18 18:16:55 +02:00
Milan Hanajik fd6f305f95 ver. 2.24.1315 2019-09-18 18:16:45 +02:00
Milan Hanajik 2ca9c104d2 DEWA_300 component upgraded. 2019-09-18 14:45:21 +02:00
Milan Hanajik 994568799d Refactorization: TBF.UI namespace, no change of function, ver. 2.18.1314 2019-09-17 10:58:44 +02:00
Milan Hanajik 7f8a5c83ed Users : Password change, password requirements, password history, BackupAndSecurity component, ver. 2.18.1313 2019-09-16 08:52:20 +02:00
Milan Hanajik 99b68f1dd6 Bug fix : Crash when closing TBF program (ModelessActivityForm). 2019-09-15 10:51:14 +02:00
Milan Hanajik 604c59723f (1) Production Tracing tab removed from MoreWMResultsDlg, (2) WMChart: testRslt.TestTime used instead of mtr.TestTime, AxisX Minimum and Maximum. 2019-09-15 06:24:42 +02:00
Milan Hanajik 886d87c03d Config.Mappins.UserMap fixed for TURA_IPERL, etc. (Tag) 2019-09-14 10:41:42 +02:00
Milan Hanajik d4eb52d70e RegulValve.SetFlowOp in progress 2019-09-12 13:50:53 +02:00
Milan Hanajik e2650736cd iPerlCommunication simulation 2019-09-12 13:50:47 +02:00
Milan Hanajik 77b71d5a7d LoginDlgWithBenchSelection : Logging with full name fixed, ver. 2.18.1308 2019-09-11 15:46:15 +02:00
Milan Hanajik bd65ff5420 Cosmetical changes 2019-09-10 10:57:58 +02:00
Milan Hanajik 0449c38de2 Polish language, ver. 2.18.1305 2019-09-09 09:35:43 +02:00
Milan Hanajik eb6f76d6f5 Configuratin is encrypted for PUCHONG_200 as well, ver. 2.18.1303 2019-09-05 09:28:04 +02:00
Milan Hanajik 6fdb030b9f GID.MetrologicalAuthority, GID.WaterMeterAuthority added and used in MetrologyDlg, ProcedureDlg (KEMPNO_50), ver. 2.18.1302 2019-09-05 08:52:34 +02:00
Milan Hanajik 6079c8419f (1) Diverter switch time measurement modifications (2) const int CountWhenSendingRdDivCmd = 1, CountWhenReadingDiv = 3. 2019-09-04 15:08:36 +02:00
Milan Hanajik ef6f21eb9e Safer saving corrections to runtime component, test of a null reference. 2019-09-03 09:53:30 +02:00
Milan Hanajik 50db69e5cb ver. 2.18.1300 2019-09-02 10:21:05 +02:00
Milan Hanajik 9194871508 ver. 2.18.1299 2019-09-02 08:38:55 +02:00
Milan Hanajik 5dde27bad9 (1) Database export, import and creation completed, TODO pwd, (2) Warning message with yes/no confirmation when aborting a cycle. 2019-08-27 18:01:48 +02:00
Milan Hanajik e61e5c59cb TestMethods.Q2CorrectionFromHistory sets test results, TODO: Web service. 2019-08-27 14:40:30 +02:00
Milan Hanajik ff3118068d Delete handler subscriptions from controls (memory leak if not done???), ver. 2.18.1298 2019-08-26 14:53:41 +02:00
Milan Hanajik c3d5e157ec TestMethods.Q2CorrectionFromHistory slightly modified, no State.Create() and do {} while loop, ver. 2.18.1297 2019-08-15 18:22:53 +02:00
Milan Hanajik ef5320917a CalculatedInitQ2CorrXY added to ProcessData, used in InitOrReadQ2Correction(...), TestMethods.Q2CorrectionFromHistory added, ver. 2.18.1295 2019-08-15 16:05:17 +02:00
Milan Hanajik e37dd87ece ver. 2.18.1292 2019-08-14 23:02:46 +02:00
Milan Hanajik 128d71bcd8 ver. 2.18.1291 2019-08-14 13:56:52 +02:00
Milan Hanajik da220f4e7f Dramatic changes in displaying results on screen, ver. 2.18.1290 2019-08-14 13:30:20 +02:00
Milan Hanajik 2d42ae95f8 TestProgressControls changes in progress. 2019-08-09 09:55:35 +02:00
Milan Hanajik e0af6a5c20 (1) SaveDiverterCorr calculation fix (2) Corrections applied immediately in SaveFlowmeterCorr and SaveDiverterCorr, ver. 2.18.1285 2019-08-09 09:55:34 +02:00
Milan Hanajik 838ec17b29 TestMethods.DiverterTest bug fix, correction time applied 'DivRepetitions' times now, ver. 2.18.1284 2019-08-08 14:45:35 +02:00
Milan Hanajik b2b0be4097 ver. 2.18.1283 2019-08-07 15:22:30 +02:00
Milan Hanajik 142da5cbec ver. 2.18.1282 2019-08-07 14:27:11 +02:00
Milan Hanajik 969c983d42 Warsaw END component upgraded (16.3.2018), this fixed communication with pressure meters, ver. 2.18.1281 2019-08-07 13:38:18 +02:00
Milan Hanajik 1d86a1289d UserManagement : Config file is encrypted, ver. 2.18.1280 2019-08-07 10:38:48 +02:00
Milan Hanajik d4518ac651 ver. 2.18.1280 2019-08-07 08:57:41 +02:00
Milan Hanajik 73aa148ded ver. 2.18.1279 2019-08-06 15:38:50 +02:00
Milan Hanajik 2041b7b3b1 WR18, WR19 added to Results.Utils, ver. 2.18.1278 2019-08-06 15:37:39 +02:00
Milan Hanajik d708e6e01f Ambiet.Comet : 'Set DTR to 1' property, ver. 2.18.1277 2019-08-06 15:36:10 +02:00
Milan Hanajik 0580e04be4 Back up Configuration/Results added to menu, Import DB added to DatabaseSettingsDlg, ver. 2.18.1275 2019-08-06 15:35:59 +02:00
Milan Hanajik 59f1de4370 Test cardReaders != null before cardReadrs use. 2019-08-05 12:06:37 +02:00
Milan Hanajik bb1efb122e TBF : Configuration saved in C:\TBF\Cfg directory, ver. 2.18.1274 2019-07-25 15:13:06 +02:00
Milan Hanajik 375cea26a6 TURA_IPERL_NEW : (1) Processing symbol implemented, (2) Elde component dated 17.7.2019 added, ver. 2.18.1273 2019-07-24 15:48:32 +02:00
Milan Hanajik 156cec5596 It is not possible to fix a production tracing error if previous step record is still missing : last step is verified once again when fixing, ver. 2.18.1272 2019-07-24 15:15:09 +02:00
Milan Hanajik 98a3730fa3 MoreWMResultsDlg : Production tracing message, ver. 2.18.1271 2019-07-24 13:22:07 +02:00
Milan Hanajik 2f788adb7d (1) ProcedureDlg is initially unlocked after New/Copy/Import, (2) ProceduresDlg displays extra information in 'More' column. 2019-07-23 12:09:24 +02:00
Milan Hanajik e622718c27 (1) Encrypt console app. (2) Decode app.=> Decrypt (3) LocalSettings uses MemStream (4) PaddingMode.Zeros, ver. 2.18.1270 2019-07-23 12:09:22 +02:00
Milan Hanajik e98d633d7f FlyingMassCollComparative method supports multiple lift valves. 2019-07-23 12:09:21 +02:00
Milan Hanajik b83ffb9e9b (1) MonitoringCfg.NetAdapter parameter added, (2) It's IP address used in RegisterWorkplace(), (3) AdapterInfo class moved one level up. 2019-07-23 11:21:44 +02:00
Milan Hanajik 1d31e5c4b7 Output.DB.SaveDiverterCorrections added. 2019-07-23 11:21:43 +02:00
Milan Hanajik 1fbaccf4db Save local settings less frequently, check if UI settings were changed in SaveUISetting(). 2019-07-12 13:26:32 +02:00
Milan Hanajik c0c65f3381 Filipiny PT50 component upgraded, dated 12.7.2019. ver. 2.18.1269 2019-07-12 09:52:06 +02:00
Milan Hanajik d032d26c59 Config.Data bug fixes (Puchong, Munich), ver. 2.18.1268 2019-07-12 09:39:32 +02:00
Milan Hanajik 28a324be8d MainWnd.UI2Settings(): no ls.Save() when no UI change, LocalSettings: Saves either plain or encrypted file, ver. 2.18.1268 2019-07-12 09:19:24 +02:00
Milan Hanajik fa22b6a8c7 DiverterTest : One single statistics (temperature, ...) for complete diverter test loop 2019-07-10 16:00:27 +02:00
Milan Hanajik a89b134a5a RealDensity corrected to 998.2008 (was 988.2008) in SampleConfig/config.xml, Metrology/Density display modifications, ver. 2.18.1265 2019-07-10 15:59:42 +02:00
Milan Hanajik ed21afd82e Decode console application project added. 2019-07-10 10:02:36 +02:00
Milan Hanajik df5b240397 Results.Entities.TestRslt.IsRelErrTest() and IsDiverter() modified, ver. 2.18.1264 2019-07-10 08:58:05 +02:00
Milan Hanajik a6b8fade23 (1) DiverterTest component added, (2) Filipiny_50 component 9.7.2019, (3) flowMeterIdxAndDiv for FILIPINY_50, ver. 2.18.1263 2019-07-09 15:58:13 +02:00
Milan Hanajik 1fb6cf4717 TBF : Local settings encryption, ver. 2.18.1262 2019-07-09 12:37:33 +02:00
Milan Hanajik 4fbf471ea0 TestMethods.SensitivityTest added, STOP handled correctly in SensitivityTestSeq, ver. 2.18.1261 2019-07-08 12:52:28 +02:00
Milan Hanajik b57d22e276 Results.Output.WMChart : MarkerSize for printer = 1, MarkerStyle = Circle, ver. 2.18.1259 2019-06-30 13:15:25 +02:00
Milan Hanajik 9fa7079dc0 ResultsBrowser ver.2.18.1258 2019-06-30 12:47:01 +02:00
Milan Hanajik 2a05126444 ver. 2.18.1258 2019-06-28 14:15:47 +02:00
Milan Hanajik 58d1c1e1ef FILIPINY_50 symbol processing added to sources, component dated 28.6.2019 added, ver. 2.18.1257 2019-06-28 13:04:25 +02:00
Milan Hanajik 430e897429 MainSeq : transitionBefore : case of outer loops handled correctly, ver. 2.18.1256 2019-06-27 21:05:21 +02:00
Milan Hanajik b9b86ecaff MainSeq : transitionBefore is not executed between 2 repetitions of a test, ver. 2.18.1255 2019-06-27 11:14:26 +02:00
Milan Hanajik 1c5c260a82 Puchong : (1) RegValveCalib[] array dimensions changed, (2) component upgraded (26.6.2019), ver. 2.18.1254 2019-06-26 16:25:40 +02:00
Milan Hanajik f46352e8fd Output.FileWriter.IperlLogger bug fix : Q2 error without correction when the name of calculated test in not "Q2". 2019-06-25 18:25:32 +02:00
Milan Hanajik 096b649e40 iPerl : Pruefindex is compared with the max. allowed value only in case WM is Failed (either Pink or Magenta back color), ver. 2.18.1254 2019-06-25 18:24:09 +02:00
Milan Hanajik 4642abac2d SequenceBase : SummaryResults : tstRslt.ConstMasterRaw and tstRslt.RefFlowmeter() unstead of outPath.FlowMeter... (bug fix), ver. 2.18.1252 2019-06-25 12:08:14 +02:00
Milan Hanajik 721904dbae Diverter : flowMtrNr4Cmd fixed for PUCHONG_200, ver. 2.18.1251 2019-06-24 11:22:47 +02:00
Milan Hanajik 899caac18b (1) Puchong-200 component upgraded, 24.6.2019 : dimensions of arrays changed, etc., (2) Related ControlComWrap changes, ver. 2.18.1250 2019-06-24 10:38:20 +02:00
Milan Hanajik a07c54186f Changes simplyfying debugging. 2019-06-21 13:25:47 +02:00
Milan Hanajik e252e55197 (1) Results.Output.Printers.WMChart added, (2) Results.Forms.MoreWMResultsDlg added, (3) Output.Printers.OnePerMeter can print graphs, ver. 2.18.1249 2019-06-21 13:25:13 +02:00
Milan Hanajik b873dd5bf5 TBF : iPerl : Two bug fixes : (1) checking previous records, (2) evaluating MaxProefindex 2019-06-19 15:31:56 +02:00
Milan Hanajik 59eb1902f7 ver. 2.18.1245 2019-06-14 11:25:55 +02:00
Milan Hanajik db6903e406 TBF : SensusTestInfo for Greece added, Q2 correction for Greece modified, ver. 2.18.1244 2019-06-14 11:03:11 +02:00
Milan Hanajik 53bff92b21 Resources: (1) ResultsBrowser: unused strings removed, (2) TracingDB: Process->Workflow, Workstep->Workflow step, ver. 2.18.1243 2019-06-07 14:06:32 +02:00
Milan Hanajik f8458a4275 TURA_IPERL : Diverter.flowMtrNr4Cmd corrected. 2019-06-06 09:03:23 +02:00
Milan Hanajik 0c5003be7b Results.Entities.TestRslt.IsVolumeMethod( ) fixed, ver. 2.18.1241 2019-06-05 14:07:38 +02:00
Milan Hanajik 05bdf0dc06 TURA_IPERL || TURA_SPECIAL : TracingResultsDlg shown after a double-click on a WM results. 2019-06-05 09:02:28 +02:00
Milan Hanajik dfd8e879d1 Bug fix : 'Save results' was inactive when all test were done, but at least one WM position was disabled, ver. 2.18.1240 2019-06-03 14:09:10 +02:00
Milan Hanajik 2382ceea73 TestMethods.LeakTest : Start and End mass saved to test result. 2019-05-30 08:32:37 +02:00
Milan Hanajik 0c72e76ecc TestMethods.LeakTest : Test parameters IsPumpRunning, MaxPressureDrop and MaxMassIncrease added. 2019-05-29 15:31:11 +02:00
Milan Hanajik 6226e069eb Kepno : Component upgraded, 29.05.2019, opravene P4. 2019-05-29 15:31:08 +02:00
Milan Hanajik 47b6bb4cf7 ProductionTracing : wm.IsLastErrorOk used again, ErrorFlags bit E28 set in iPerlCheck appropriately, ver. 2.18.1235 2019-05-23 10:30:28 +02:00
Milan Hanajik bbcbee894d Users : production_tracing_administrator localized, ver. 2.18.1234 2019-05-22 14:35:58 +02:00
Milan Hanajik 944862dde0 iPerlCommunicationForm : (1) OutOfRange / Q2OutOfRange aren't an RFID error, (2) CommFailed cleanup, (3) WriteQ2Correction(..) cleanup (updateQ2adjByCalibFactor arg. 2019-05-22 14:30:10 +02:00
Milan Hanajik 14a5721649 IperlHead : TestEndTelegramIx obtained in a correct way. 2019-05-22 14:29:20 +02:00
Milan Hanajik 93bcde2599 More robust reading of the start sample from opto-data. 2019-05-21 14:40:22 +02:00
Milan Hanajik 05c312fbb9 Selected LogType name passed to caller by GetBestmatch(..) 2019-05-17 08:13:31 +02:00
Milan Hanajik 53795db720 Output. ... .Tracing.CheckPreviousRecordOfSingleWM(.) cleanup : E28 is used everywhere : fixed 2019-05-16 13:35:11 +02:00
Milan Hanajik 156215bea6 (1) Modbus.CometAmbient.Ambient. UpdateProcessData(..) was missing, (2) FixedStartMassCollection : Flow regulation stopped after test. 2019-05-16 10:34:47 +02:00
Milan Hanajik 48c021e9fb ErrorFlags.TestParams : E25, E26, E27, E28 added for IPERL 2019-05-16 10:34:37 +02:00
Milan Hanajik 357a216b6b Stopping flow regulation after test in all remaining FlyingStart.... sequences. 2019-05-15 16:05:14 +02:00
Milan Hanajik d6215178b1 MetrologyDlgEvaporationTab : Resources : Correction -> Evaporation, ver. 2.18.1229 2019-05-15 15:46:36 +02:00
Milan Hanajik 1a122cfa12 Various.Evaporation comp., MetrologyDlgEvaporationTab and IEvaporation/IScaleOrTank/ITankDraining with EvaporationRate(double T) introduced. 2019-05-15 15:14:04 +02:00
Milan Hanajik 59087474d9 Results.Entities.TestRslt.TestTimeCorrection added and used in test methods with diverter. 2019-05-15 11:18:38 +02:00
Milan Hanajik 3fceee156b (1) MetrologyDlgDiverterTab added to UI, (2) double TestTimeCorrection(double flow) added to IDiverter and implemented in Elde.Diverter and Dummy.Diverter. 2019-05-15 11:18:20 +02:00
Milan Hanajik 55ed11ae58 Results.Entities.TestRslt.TimeBtwnMassMsrmnts added, evaluated in test methods, ver. 2.18.1226 2019-05-14 16:59:20 +02:00
Milan Hanajik 39f44ad2e3 (1) ConstMasterCorr added to results, (2) MakeSimulated( ) for FlyingStartMassCollection enhanced. 2019-05-13 11:43:42 +02:00
Milan Hanajik 3075169fd1 Output.ProductionTracing.Tracing.CheckPreviousRecordOfSingleWM(.) cleanup : E28 is used everywhere, ver. 2.18.1225 2019-05-13 09:50:58 +02:00
Milan Hanajik d51edbfbfe Elde.FlowMeterDewa : (1) Exact LtrPerPulseCorrected calc. (2) nominal flow and flowmeters bitfield (=Idx0) calculated from particular flowmeters. 2019-05-12 08:17:52 +02:00
Milan Hanajik 7724c004a0 Elde interface : filters, pidCoef and shortPulses are set by SetFilterPidShortPulses( ) only. 2019-05-10 16:28:18 +02:00
Milan Hanajik 6b42dd091f MetrologyDlgFlowMeterTab, ...BalanceTab, ...PressTab, ...TempTab : Error column added. 2019-05-10 15:11:32 +02:00
Milan Hanajik 4221de3b22 Stopping flow regulation modifications : cmd=Stop, real flowMeterNr used. 2019-05-10 10:53:48 +02:00
Milan Hanajik a4debe7ac0 Bug fixes in Results.Entities (CopyContentFrom(.)) 2019-05-10 10:08:00 +02:00
Milan Hanajik c1cfc67cce Bug fix in calculated Q2 error value MakeQ2CorrectedFrom( ), iPerl.CalibTargetQ2 is used now, ver. 2.18.1219 2019-05-10 08:38:46 +02:00
Milan Hanajik 7fa06079c2 Short pulses bug fix : argument was not sent when reading diverter transitions, ver. 2.18.1218 2019-05-09 16:22:20 +02:00
Milan Hanajik a0818e3605 SensusTestInfo : LogType.DEWA_wo_Q2 added, ver. 2.18.1217 2019-05-09 15:15:05 +02:00
Milan Hanajik 8197777e69 SummaryResults : ErrorMaster from a correction curve for a volume method. 2019-05-09 11:23:43 +02:00
Milan Hanajik 667f548101 ControlComWrap logging levels modified. 2019-05-09 10:42:51 +02:00
Milan Hanajik fa1dc3cc62 (1) DAWA 300 has 10 water meter, (2) Results screen updated after a counter increment. 2019-05-07 14:37:03 +02:00
Milan Hanajik fed11e6439 Short pulses bug fix. 2019-05-07 13:24:33 +02:00
Milan Hanajik d197629cdb Static counters added (not mapped to DB now), ver. 2.18.1213 2019-05-07 12:36:47 +02:00
Milan Hanajik f8a2126c90 TestMethods.Counter added, ver. 2.18.1211 2019-05-06 13:45:07 +02:00
Milan Hanajik 5955a47518 ver. 2.18.1210 2019-05-06 10:22:11 +02:00
Milan Hanajik 32a13ecf49 (1) Ref.flowmeter, Test method Elde (string) added to result items (2) FileWriters.Elde.Writer (3) New DEWA300 component (3.5.2019), ver. 2.18.1209 2019-05-06 10:13:55 +02:00
Milan Hanajik 5936efcad2 IperlHead : Opto data correctly saved in case of test repetitions (iPerlSpecial), ver. 2.18.1208 2019-05-03 12:14:52 +02:00
Milan Hanajik 04547306d0 Bug fix : Purging sequence is executed after cycle selection after a STOP in the previous evacuation sequence, ver. 2.18.1207 2019-05-03 09:47:26 +02:00
Milan Hanajik d0bba74dff (1) filters[] initialized earlier in test method sequences, (2) filters and shortPulses used in SetFlowOp(.), ver. 2.18.1206 2019-05-02 10:23:33 +02:00
Milan Hanajik 1e97a26863 (1) PreviousResults : 'Fix' option added to 'Send again' and 'Reload', (2) Missing PCB nr. does not cause a production tracing error. 2019-04-30 13:17:08 +02:00
Milan Hanajik 6341d5a474 (1) WMTypeID loaded correctly when restoring a batch, (2) WMTypeID, WMTypeRev, E25, E26, E27 and E28 added to results, ver. 2.18.1205 2019-04-30 09:50:29 +02:00
Milan Hanajik e9bda4f1b2 Short pulses test parameter used in SendCommand(..., shortPulses), ver. 2.18.1204 2019-04-29 10:36:08 +02:00
Milan Hanajik 6cc10d221d Output.FileWriters.Elde added, ver. 2.18.1204 2019-04-26 13:00:47 +02:00
Milan Hanajik 3d243c0a19 MainSeq : Cosmetical changes. 2019-04-26 09:50:04 +02:00
Milan Hanajik e32a484e81 IperlHead procedure parameter CalibTargetQ2 added, ver. 2.18.1203 2019-04-25 13:53:08 +02:00
Milan Hanajik 5dad80d031 Stopping flow regulation after a test completes (in three test methods). 2019-04-25 11:00:34 +02:00
Milan Hanajik 24e23d01e8 More changes : RequredFlowLo/Hi, ReferenceFlow, RefereneFreq, etc. float -> double, ver. 2.18.1202 2019-04-25 08:58:54 +02:00
Milan Hanajik b2ae78e0d9 SensusTestInfo for DEWA modified, ver. 2.18.1201 2019-04-24 11:46:01 +02:00
Milan Hanajik 79fe396a6d ver. 2.18.1200 2019-04-23 08:59:14 +02:00
Milan Hanajik cfb29c8149 DataEntry.Fewa.EntryForm added, ver. 2.18.1199 2019-04-20 10:07:31 +02:00
Milan Hanajik 960dc9d53a Output.SensusOracle.Database bug fix, as a consequence sometimes the IperlLogs were not written, ver. 2.18.1198 2019-04-19 11:18:49 +02:00
Milan Hanajik 03180392b0 IperlLogger : (1) Retv.Error handled properly, (2) more logging, ver. 2.18.1197 2019-04-18 11:23:19 +02:00
Milan Hanajik 03aa29cf75 SensusTestInfo for DEWA changed, ver. 2.18.1196 2019-04-18 09:35:40 +02:00
Milan Hanajik d724dab388 ver.2.18.1195 2019-04-15 16:20:55 +02:00
Milan Hanajik 208510921a DEWA : (1) Modification of SensusTestInfo, (2) Minor Q2 correction change, ver. 2.18.1194 2019-04-15 09:06:04 +02:00
Milan Hanajik 51d28fc5a9 ver. 2.18.1193 2019-04-15 08:20:24 +02:00
Milan Hanajik f8671ac516 (1) Range of flow extended to 125%, (2) RequredFlowLo/Hi etc. float -> double, ver. 2.18.1192 2019-04-15 08:15:47 +02:00
Milan Hanajik 556290abf6 DEWA300 double and tripple flowmeters, NominalFlow and LtrPerPulse are doubles, ver. 2.18.1191 2019-04-11 15:39:46 +02:00
Milan Hanajik e1e74e1588 IperlLogger fix (adjustment, negative PruefungsNrLog), etc., ver. 2.18.1189 2019-04-09 13:05:16 +02:00
Milan Hanajik fa7565e541 iPerlSpecial : MainWnd does not process num. keys, coax valve can be controlled manually, ver. 2.18.1188 2019-04-09 09:49:32 +02:00
Milan Hanajik 3c341d4d97 Test method sequences : Correct error message on flow setting timeout. 2019-04-08 10:34:12 +02:00
Milan Hanajik b8a16f1301 Q2 correction calculation and Q2CorrectionCheck activity modifications, ver. 2.18.1187 2019-04-08 09:44:13 +02:00
Milan Hanajik 33947e383f ver. 2.18.1186 2019-04-05 09:49:11 +02:00
Milan Hanajik 6a61c9400b Q2CorrectionCheck modified, ver. 2.18.1185 2019-04-05 09:04:44 +02:00
Milan Hanajik 32d560d164 SensusTestInfo fixes for repeatability and EMP, ver. 2.18.1184 2019-04-04 14:23:50 +02:00
Milan Hanajik 809b067260 Clean-up, Q2Corretion and Q2CorrectionDone removed from Results DB, ver.2.18.1183 2019-04-04 10:23:52 +02:00
Milan Hanajik b235f9ae20 (1) SUEZ cycle: InitOrReadQ2Correction, (Conditional)UpdateQ2Corrections, (2) Flow dir. detection fixed, (3) etc., ver. 2.18.1182 2019-04-03 16:19:46 +02:00
Milan Hanajik e356934ede ver. 2.18.1176 2019-03-28 09:17:33 +01:00
Milan Hanajik 2c4c76343d SensusOracle.Database and ProductionTracing.Tracing : CurrentOp => OpState with ...Scheduled and ...Running satates, ver. 2.18.1174 2019-03-22 11:21:06 +01:00
Milan Hanajik b8c4f35b1a 'completeTestInfo' reloaded when only the procedure changes (and not wmTypeID), usefull for iPerlSpecial, ver. 2.18.1174 2019-03-21 15:36:42 +01:00
Milan Hanajik c855a18c61 SensusTestInfo matching and its use in SensusOracle.Database and IperlLogger.Writer reimplemented, ver. 2.18.1173 2019-03-21 14:20:17 +01:00
Milan Hanajik d40f6a6c15 Output.DB.SensusOracle.Database : TestMode (no writes to DB). 2019-03-20 10:58:09 +01:00
Milan Hanajik a2bb50117e StartInfo is read from DB when previous results were reloaded. 2019-03-20 09:57:41 +01:00
Milan Hanajik 8624f30f71 IperlLogger bug fix, ver. 2.18.1172 2019-03-20 08:47:08 +01:00
Milan Hanajik 9fecf05b3f (1) ProcessTabPageEx: TRefHi, TRefLo (2) Ambient vals. written directly to ProcessData (3) Sequences changed:'readTempPressOps', ver. 2.18.1171 2019-03-20 08:25:01 +01:00
Milan Hanajik 0041ec9616 TURA_SEPCIAL uses ProcessTabPageExCtrl in MainWnd.Designer. 2019-03-20 08:23:03 +01:00
Milan Hanajik 77c26abc02 TBF.Screens.ProcessTabPageHeatMetersCtrl completed. 2019-03-17 12:29:04 +01:00
Milan Hanajik 0c964fdb5b ComponentsManagerDlg : Copying to subsequent cells via right-click implemented, ver. 2.18.1168 2019-03-16 10:19:57 +01:00
Milan Hanajik 84322476d6 SensusOracle and IperlLogger write only data of iPerls without any production issues. 2019-03-15 10:55:12 +01:00
Milan Hanajik f1278dd9a5 IperLogger : (1) Logging of TestInfo-s, (2) using (TextWriter logger = new ... ) { try {...} catch { } } construction. 2019-03-15 10:37:35 +01:00
Milan Hanajik e7164b98ff (1) TBF.Screens.ResultsTabPageCtrl fixes, (2) Results.Forms.BatchResultsDlg fixes : Show previous results displays colors, ver. 2.18.1167 2019-03-15 10:37:20 +01:00
Milan Hanajik 26d49eb4b7 DEWA300 component upgraded (13.3.2019), ver. 2.18.1165 2019-03-14 08:15:42 +01:00
Milan Hanajik b410f473e2 TempMeter zero-based index range extended to 0..15, ver. 2.18.1164 2019-03-13 09:39:10 +01:00
Milan Hanajik 3e54204a17 ResultsTabPageCtrl : iPerl is rejected also when proefindex==limit and it failed the test, ver. 2.18.1163 2019-03-13 08:50:43 +01:00
Milan Hanajik 70cba76ffd (1) iperl_check with Continue/Abort (2) MeterTestRslt.ErrorIndicators (not in DB) (3) ErrorFlags.Errors modif. (4) ResultsTabPage commonBackColor, etc. 2019-03-12 11:15:59 +01:00
Milan Hanajik d45c3f96d6 TBF : (1) flow setting timeout = 300 s = 5 min., (2) stable mass msrmnt. timeout = 300 s = 5 min., ver. 2.18.1162 2019-03-11 08:36:02 +01:00
Milan Hanajik 684fed8fc0 IDataEntry supports bool Completed property. 2019-03-08 10:20:58 +01:00
Milan Hanajik 99bb0cec57 LargeMessageBoxForm : (1) is red, (2) OK button is always visible, (3) auto scroll bar. 2019-03-08 10:20:57 +01:00
Milan Hanajik 263d990be4 Output.DB.ProductionTracing : Checking previous records at the beginning of the cycle. 2019-03-08 10:13:37 +01:00
Milan Hanajik 5f6c1fe70a Output.DB.SensusOracle cleaned up : CheckBarcodeScanningOp removed, ver. 2.18.1161 2019-03-08 07:24:51 +01:00
Milan Hanajik 2e76d595c0 Quido RS 4-4 support added, ver. 2.18.1160. 2019-03-06 10:45:58 +01:00
Milan Hanajik 75e5b75d4d DEWA_300 : (1) component upgraded (6.3.2019), (2) Diverter: flowMtrNr4Cmd fixed, ver. 2.18.1159 2019-03-06 09:42:25 +01:00
Milan Hanajik b47f5e32d4 DEWA_300 symbol usage fixed, ver. 2.18.1158 2019-03-05 15:12:24 +01:00
Milan Hanajik 771af696ae (1) TBF program shutdown modifications, (2) Obligatory tank draining before TBF exit, (3) Shutdown PC after TBF exit option, ver. 2.18.1156 2019-03-05 12:28:58 +01:00
Milan Hanajik b10ab44fa9 (1) MetrologyDlg displays corrections for all pressure meters, (2) Elde.PressureMeter and Modbus.PressureMeter.Meret use corrections. 2019-03-04 09:20:16 +01:00
Milan Hanajik 13eb7138a3 TracingDB : Cleaned-up and upgraded to current version, TBF : Workplace registered for approx. 2 weeks. 2019-03-01 14:16:04 +01:00
Milan Hanajik 02f6c9264a MID Statistics is data driven, no MidId enum, ver. 2.18.1154 2019-02-28 15:13:44 +01:00
Milan Hanajik edb26ccf6e ver. 2.18.1154 2019-02-28 10:03:52 +01:00
Milan Hanajik 2574ce1aee ver. 2.18.1153 2019-02-27 08:11:50 +01:00
Milan Hanajik 5586f58c6e iPerlCommunicationForm : Better try/catch, more logging, ver. 2.18.1152 2019-02-25 16:15:41 +01:00
Milan Hanajik 138e436645 (1) DEWA_300 component added, (2) DEWA_300 symbol added, (3) IZRAEL_200 symbol bug fix, ver. 2.18.1151 2019-02-25 12:49:04 +01:00
Milan Hanajik ea7e727798 (1) Modbus.QuidoRS.ConfirmationForm added, (2) Use of QuidoRS in iPerlCommForm fixed - uses QuidoRS.Variant, ver. 2.18.1149 2019-02-25 11:05:21 +01:00
Milan Hanajik 7a40cfb1f2 More logging in ShowBenchWaitingOp and ShowBenchErrorOp. 2019-02-22 12:48:51 +01:00
Milan Hanajik b2226ad779 iPerlCommunication : TestModeConfig value verified after switching to a test mode. 2019-02-21 16:00:01 +01:00
Milan Hanajik ebf96f655c Output.DB.SaveFlowmeterCorrections : Corrections calculated differently, from FlowVolume, not FlowMean. 2019-02-20 15:11:58 +01:00
Milan Hanajik 4134bf8875 ProcessTabPageHeatMetersCtrl modifications, language resources, etc. 2019-02-20 14:21:18 +01:00
Milan Hanajik fd7149e263 Screens.ProcessTabPageHeatmetersCtrl added, ver. 2.18.1148 2019-02-20 11:35:57 +01:00
Milan Hanajik a40b4ff606 Added: (1) IParallelOutput, (2) StateMachine.BenchWaitingOp/BenchErrorOp, (3) Modbus.QuidoRS support for Quido RS 8/8 (4) etc., ver. 2.18.1147 2019-02-20 08:34:03 +01:00
Milan Hanajik 86c063caee ReasultsBrowser : Histograms added, ver. 2.18.1146 2019-02-19 14:42:46 +01:00
Milan Hanajik bea3c04eb7 Output.DB.SensusOracle.Database : Writing results more robust, preventing program crash. 2019-02-18 09:04:00 +01:00
Milan Hanajik c5644d6999 iPerlCommunication cleanup, ver. 2.18.1144 2019-02-15 15:36:08 +01:00
Milan Hanajik 29c4c869f2 iPerlCommunication 'iPerlCheck' fixed : Writes correct WMPositions (not wmNr0), ver. 2.18.1143 2019-02-14 08:16:16 +01:00
Milan Hanajik 707c093f0c Heat meter results, ver. 2.18.1142 2019-02-13 15:39:44 +01:00
Milan Hanajik abaf756980 (1) Reading Q2 corrections form iPerl fixed (was unsigned), (2) Displaying ProdQ2CorrRL/LR fixed, ver. 2.18.1141 2019-02-13 13:12:52 +01:00
Milan Hanajik 32873ee2b0 (1) Auto. wmTypeRev (2) IperlCheck t.meth. (3) Pruefindex, Q2corr. read from Ora.on start (4) VolStart/VolEnd written to Ora. bounded, (5) iPerlCommForm.ReadQ2Corr() bug fix (6) LU logging cleanup, etc, ver. 2.18.1140 2019-02-13 09:27:22 +01:00
Milan Hanajik dd8273798a TestMethod.Adjustment : Bug fix for the case Publish==Never (Izrael) 2019-02-06 14:05:49 +01:00
Milan Hanajik 0dae18e5e8 Output.DB.SensusOracle cleanup. 2019-02-05 14:13:37 +01:00
Milan Hanajik 17063518ce Bug fix : Saving to Oracle failed due to large VolumeStart/VolumeEnd values, ver. 2.18.1131 2019-02-05 12:36:17 +01:00
Milan Hanajik a4998521f5 ver. 2.18.1131 2019-02-05 12:20:38 +01:00
Milan Hanajik d2df1a678f (1) Writing both Q2 corr. factors fixed, (2) Q2 corr. factors for std. R800 meters calculated differently, (3) Writing WMPosition to iPerlLog, (4) OptoTelegram start/end label. 2019-02-04 13:55:13 +01:00
Milan Hanajik f6aa6ba2d6 ResultsTabPage layout modifications 2019-01-30 15:38:51 +01:00
Milan Hanajik 82743bac05 Results : TestPartStr item added, ver. 2.18.1127 2019-01-30 15:35:25 +01:00
945 changed files with 151330 additions and 32461 deletions
+2
View File
@@ -0,0 +1,2 @@
# Set the default behavior, in case people don't have core.autocrlf set.
* text=auto
+13 -2
View File
@@ -1,15 +1,23 @@
Config/bin/
Config/obj/
Decrypt/bin/
Decrypt/obj/
DeviceTest/bin/
DeviceTest/obj/
Dirichlet.Numerics/bin
Dirichlet.Numerics/obj
Encrypt/bin/
Encrypt/obj/
GemCard/bin
GemCard/obj
GenCode128/bin
GenCode128/obj
GraphLib/bin
GraphLib/obj
TracingDB/bin
TracingDB/obj
RestClient/bin
RestClient/obj
Results/bin/
Results/obj/
ResultsBrowser/bin/
@@ -18,12 +26,15 @@ Statistics/bin/
Statistics/obj/
TBF/bin/
TBF/obj/
TBFSetup/Debug/
TBFSetup/Release/
ToFirstMonitor/bin/
ToFirstMonitor/obj/
ToSecondMonitor/bin/
ToSecondMonitor/obj/
Users/bin/
Users/obj/
UserManagement/bin/
UserManagement/obj/
Doc/
.vs/
*.suo
*.bak
+13 -10
View File
@@ -10,27 +10,30 @@
<AppDesignerFolder>Properties</AppDesignerFolder>
<RootNamespace>Config</RootNamespace>
<AssemblyName>Config</AssemblyName>
<TargetFrameworkVersion>v4.0</TargetFrameworkVersion>
<TargetFrameworkVersion>v4.7.2</TargetFrameworkVersion>
<FileAlignment>512</FileAlignment>
<TargetFrameworkProfile />
</PropertyGroup>
<PropertyGroup Condition=" '$(Configuration)|$(Platform)' == 'Debug|AnyCPU' ">
<DebugSymbols>true</DebugSymbols>
<DebugType>full</DebugType>
<Optimize>false</Optimize>
<OutputPath>bin\Debug\</OutputPath>
<DefineConstants>TRACE;DEBUG;ZAMBIA</DefineConstants>
<DefineConstants>TRACE;DEBUG;TURA_IPERL_NEW;IPERL;ORACLE_DB;LANG_SK</DefineConstants>
<ErrorReport>prompt</ErrorReport>
<WarningLevel>4</WarningLevel>
<AllowUnsafeBlocks>false</AllowUnsafeBlocks>
<PlatformTarget>x86</PlatformTarget>
<Prefer32Bit>false</Prefer32Bit>
</PropertyGroup>
<PropertyGroup Condition=" '$(Configuration)|$(Platform)' == 'Release|AnyCPU' ">
<DebugType>pdbonly</DebugType>
<Optimize>true</Optimize>
<OutputPath>bin\Release\</OutputPath>
<DefineConstants>TRACE;ZAMBIA</DefineConstants>
<DefineConstants>TRACE;TURA_IPERL_NEW;IPERL;ORACLE_DB;LANG_SK</DefineConstants>
<ErrorReport>prompt</ErrorReport>
<WarningLevel>4</WarningLevel>
<Prefer32Bit>false</Prefer32Bit>
</PropertyGroup>
<ItemGroup>
<Reference Include="FluentNHibernate">
@@ -83,15 +86,15 @@
<Compile Include="Entities\MetersPath.cs" />
<Compile Include="Entities\OutputPath.cs" />
<Compile Include="Entities\Procedure.cs" />
<Compile Include="Entities\ProcedureHistory.cs" />
<Compile Include="Entities\Profile.cs" />
<Compile Include="Entities\PTest.cs" />
<Compile Include="Entities\Test.cs" />
<Compile Include="Entities\TransitionSequence.cs" />
<Compile Include="Entities\TransitionStep.cs" />
<Compile Include="Entities\Uncertainty.cs" />
<Compile Include="Entities\User.cs" />
<Compile Include="Entities\VirtualBenchSequence.cs" />
<Compile Include="Entities\VirtualBenchStep.cs" />
<Compile Include="Entities\Watermeter.cs" />
<Compile Include="Entities\WMType.cs" />
<Compile Include="FluentCommon.cs" />
<Compile Include="Formulas.cs" />
<Compile Include="Mappings\BenchPathMap.cs" />
@@ -105,14 +108,13 @@
<Compile Include="Mappings\MetersPathMap.cs" />
<Compile Include="Mappings\OutputPathMap.cs" />
<Compile Include="Mappings\ProcedureMap.cs" />
<Compile Include="Mappings\ProfileMap.cs" />
<Compile Include="Mappings\PTestMap.cs" />
<Compile Include="Mappings\TestMap.cs" />
<Compile Include="Mappings\TransitionSequenceMap.cs" />
<Compile Include="Mappings\TransitionStepMap.cs" />
<Compile Include="Mappings\UncertaintyMap.cs" />
<Compile Include="Mappings\UserMap.cs" />
<Compile Include="Mappings\VirtualBenchSequenceMap.cs" />
<Compile Include="Mappings\VirtualBenchStepMap.cs" />
<Compile Include="Mappings\WatermeterMap.cs" />
<Compile Include="Mappings\WMTypeMap.cs" />
<Compile Include="Properties\AssemblyInfo.cs" />
<Compile Include="Resources\Strings.Designer.cs">
<AutoGen>True</AutoGen>
@@ -125,6 +127,7 @@
<ItemGroup>
<EmbeddedResource Include="Resources\Strings.cs.resx" />
<EmbeddedResource Include="Resources\Strings.de.resx" />
<EmbeddedResource Include="Resources\Strings.fr.resx" />
<EmbeddedResource Include="Resources\Strings.it.resx" />
<EmbeddedResource Include="Resources\Strings.pl.resx" />
<EmbeddedResource Include="Resources\Strings.resx">
+22 -6
View File
@@ -10,8 +10,8 @@ namespace Config
#if MUNICH
public const int WMsCount = 3;
public const int LineSize = 1;
public const int CompoundWMsCount = 1;
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
@@ -20,12 +20,24 @@ namespace Config
public const int CompoundWMsCount = 1;
public const int HeatMetersCount = 0;
public const int MaxPartNr = WMsCount / LineSize;
#elif FUZHOU_300 || FUZHOU_150 || IZRAEL_200 || PUCHONG_200 || GENESIS || SLM_150 || PETERSBURG_200
#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;
@@ -50,7 +62,7 @@ namespace Config
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
#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;
@@ -62,7 +74,7 @@ namespace Config
public const int CompoundWMsCount = 1;
public const int HeatMetersCount = 0;
public const int MaxPartNr = WMsCount / LineSize;
#elif TURA_IPERL
#elif TURA_IPERL || TURA_IPERL_NEW
public const int WMsCount = 40;
public const int LineSize = 20;
public const int CompoundWMsCount = 1;
@@ -98,5 +110,9 @@ namespace Config
/// 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;
}
}
+3 -2
View File
@@ -1,9 +1,8 @@
///
/// Copyright (c) 2013-2015 Sensus Metering Systems
/// Copyright (c) 2013-2019 Sensus Slovensko a.s.
///
using System;
using System.Collections.Generic;
using System.Globalization;
using System.IO;
namespace Config.Entities
@@ -19,6 +18,7 @@ namespace Config.Entities
public virtual LogLevel Logging { get; set; }
public virtual string Parameters { get; set; }
public virtual IList<MeasurementCorrection> Corrections { get; set; }
public virtual IList<Uncertainty> Uncertainties { get; set; }
/// ------------- Additional stuff not mapped into the database -------------
@@ -27,6 +27,7 @@ namespace Config.Entities
Name = string.Empty;
ClassName = string.Empty;
Corrections = new List<MeasurementCorrection>();
Uncertainties = new List<Uncertainty>();
}
public static Component CreateFromCfg(string name, string className, string parentName, int itemNr,
+209 -19
View File
@@ -67,12 +67,12 @@ namespace Config.Entities
public class ProcedureInfo
{
public readonly string Name;
public readonly Users.Entities.DBKind DBKind;
public readonly bool IsRemote;
public ProcedureInfo(string name, Users.Entities.DBKind dbKind)
public ProcedureInfo(string name, bool isRemote)
{
Name = name;
DBKind = dbKind;
IsRemote = isRemote;
}
}
@@ -83,6 +83,23 @@ namespace Config.Entities
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
{
@@ -90,6 +107,10 @@ namespace Config.Entities
[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,
@@ -125,6 +146,9 @@ namespace Config.Entities
#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,
@@ -240,6 +264,11 @@ namespace Config.Entities
[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,
@@ -281,6 +310,10 @@ namespace Config.Entities
[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,
@@ -291,22 +324,16 @@ namespace Config.Entities
[Description("Spread")] Spread,
[Description("Std.dev.")] StdDev,
#endif
Count
Count
}
public enum TestRedType
public enum TestProfile
{
Fix,
/// etc.
Count,
}
public enum FQC1
{
FQC1,
FQP1,
Count,
}
UserDefined,
UserDefinedHeatMeter,
Protected, /// The first protected one
ProtectedHeatMeter,
}
public enum Progress
{
@@ -345,6 +372,14 @@ namespace Config.Entities
[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,
@@ -354,7 +389,7 @@ namespace Config.Entities
[Description("Meter data")] MeterData,
[Description("Meter result")] MeterResult,
#endif
Count,
Count,
}
/// <summary> Possible modes of operation of components and devices. </summary>
@@ -371,6 +406,17 @@ namespace Config.Entities
[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,
@@ -383,7 +429,7 @@ namespace Config.Entities
[Description("Simulate")] Simulate, /// Test bench simulation, this mode does not require any hardware
[Description("Inherit")] Inherit,
#endif
Count,
Count,
}
public enum LogLevel
@@ -430,6 +476,11 @@ namespace Config.Entities
[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,
@@ -479,6 +530,10 @@ namespace Config.Entities
[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,
@@ -496,6 +551,141 @@ namespace Config.Entities
[Description("info")] Info,
[Description("on")] On,
#endif
Count
Count
}
public enum ErrorFlagShift
{
E1 = 0,
E2,
E3,
E4,
E5,
E6,
E7,
E8,
E9,
E10,
E11,
E12,
E13,
E14,
E15,
E16,
E17,
E18,
E19,
E20,
E21,
E22,
E23,
E24,
E25,
E26,
E27,
E28,
E29,
E30,
E31,
E32,
E33,
E34,
E35,
E36,
E37,
E38,
E39,
E40,
E41,
E42,
E43,
E44,
E45,
E46,
E47,
E48,
E49,
E50,
E51,
E52,
E53,
E54,
E55,
E56,
E57,
E58,
E59,
E60,
E61,
E62,
E63,
}
public enum ErrorFlagMask : long
{
E1 = (1 << (int)ErrorFlagShift.E1),
E2 = (1 << (int)ErrorFlagShift.E2),
E3 = (1 << (int)ErrorFlagShift.E3),
E4 = (1 << (int)ErrorFlagShift.E4),
E5 = (1 << (int)ErrorFlagShift.E5),
E6 = (1 << (int)ErrorFlagShift.E6),
E7 = (1 << (int)ErrorFlagShift.E7),
E8 = (1 << (int)ErrorFlagShift.E8),
E9 = (1 << (int)ErrorFlagShift.E9),
E10 = (1 << (int)ErrorFlagShift.E10),
E11 = (1 << (int)ErrorFlagShift.E11),
E12 = (1 << (int)ErrorFlagShift.E12),
E13 = (1 << (int)ErrorFlagShift.E13),
E14 = (1 << (int)ErrorFlagShift.E14),
E15 = (1 << (int)ErrorFlagShift.E15),
E16 = (1 << (int)ErrorFlagShift.E16),
E17 = (1 << (int)ErrorFlagShift.E17),
E18 = (1 << (int)ErrorFlagShift.E18),
E19 = (1 << (int)ErrorFlagShift.E19),
E20 = (1 << (int)ErrorFlagShift.E20),
E21 = (1 << (int)ErrorFlagShift.E21),
E22 = (1 << (int)ErrorFlagShift.E22),
E23 = (1 << (int)ErrorFlagShift.E23),
E24 = (1 << (int)ErrorFlagShift.E24),
E25 = (1 << (int)ErrorFlagShift.E25),
E26 = (1 << (int)ErrorFlagShift.E26),
E27 = (1 << (int)ErrorFlagShift.E27),
E28 = (1 << (int)ErrorFlagShift.E28),
E29 = (1 << (int)ErrorFlagShift.E29),
E30 = (1 << (int)ErrorFlagShift.E30),
E31 = (1 << (int)ErrorFlagShift.E31),
E32 = (1 << (int)ErrorFlagShift.E32),
E33 = (1 << (int)ErrorFlagShift.E33),
E34 = (1 << (int)ErrorFlagShift.E34),
E35 = (1 << (int)ErrorFlagShift.E35),
E36 = (1 << (int)ErrorFlagShift.E36),
E37 = (1 << (int)ErrorFlagShift.E37),
E38 = (1 << (int)ErrorFlagShift.E38),
E39 = (1 << (int)ErrorFlagShift.E39),
E40 = (1 << (int)ErrorFlagShift.E40),
E41 = (1 << (int)ErrorFlagShift.E41),
E42 = (1 << (int)ErrorFlagShift.E42),
E43 = (1 << (int)ErrorFlagShift.E43),
E44 = (1 << (int)ErrorFlagShift.E44),
E45 = (1 << (int)ErrorFlagShift.E45),
E46 = (1 << (int)ErrorFlagShift.E46),
E47 = (1 << (int)ErrorFlagShift.E47),
E48 = (1 << (int)ErrorFlagShift.E48),
E49 = (1 << (int)ErrorFlagShift.E49),
E50 = (1 << (int)ErrorFlagShift.E50),
E51 = (1 << (int)ErrorFlagShift.E51),
E52 = (1 << (int)ErrorFlagShift.E52),
E53 = (1 << (int)ErrorFlagShift.E53),
E54 = (1 << (int)ErrorFlagShift.E54),
E55 = (1 << (int)ErrorFlagShift.E55),
E56 = (1 << (int)ErrorFlagShift.E56),
E57 = (1 << (int)ErrorFlagShift.E57),
E58 = (1 << (int)ErrorFlagShift.E58),
E59 = (1 << (int)ErrorFlagShift.E59),
E60 = (1 << (int)ErrorFlagShift.E60),
E61 = (1 << (int)ErrorFlagShift.E61),
E62 = (1 << (int)ErrorFlagShift.E62),
E63 = (1 << (int)ErrorFlagShift.E63),
}
}
+11 -8
View File
@@ -1,24 +1,27 @@
///
/// Copyright (c) 2013-2017 Sensus Metering Systems
/// Copyright (c) 2013-2020 Sensus Slovensko a.s.
///
using System;
using System.Collections.Generic;
namespace Config.Entities
{
public class Group
{
public virtual int Id { get; protected set; }
public virtual int Gid { get; set; }
public virtual string Name { get; set; }
public virtual Users.Entities.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
public Group()
{
Users = new List<User>();
}
public Group(int gid, string name)
{
Gid = gid;
Name = name;
public Group(Users.Entities.GID gid)
: this()
{
GID = gid;
}
}
}
}
+8
View File
@@ -25,6 +25,14 @@ namespace Config.Entities
Count
}
public enum Counting
{
Arbitrary,
Positive,
Negative,
Count
}
public enum OptoHeadState
{
Disabled,
+337
View File
@@ -0,0 +1,337 @@
///
/// Copyright (c) 2019 Sensus Slovensko a.s.
///
using System;
using System.Globalization;
using System.IO;
namespace Config.Entities
{
/// <summary>
/// Test, consisting of one or more repetitions of the test 'SingleTest'.
/// </summary>
public class PTest : IHasName, IHasItemNr
{
public virtual int Id { get; protected set; }
public virtual int ItemNr { get; set; }
public virtual string Name { get; set; }
public virtual int Part { get; set; } /// Part=0 ... test of all WM-s /// Part>0 ... part of a set of tests with the same Name: subset of WM-s is given by MetersPath
public virtual double CoefQfrom { get; set; } /// Water flow low limit in [m3/h]
public virtual double CoefQto { get; set; } /// Water flow high limit in [m3/h]
public virtual double ErrLimLo { get; set; } /// in [%] usually < 0, in case of heat meters: 1=class1, 2=class2, 3=class3
public virtual double ErrLimHi { get; set; } /// in [%] usually > 0, in case of heat meters: -Qn in m3/h
public virtual double TempLimLo { get; set; } /// Lower limit for the controlled temperature
public virtual double TempLimHi { get; set; } /// Upper limit for the controlled temperature
public virtual double PressLimLo { get; set; } /// [bar] min. water pressure
public virtual double PressLimHi { get; set; } /// [bar] max. water pressure
public virtual sbyte Publish { get; set; } /// 0=no, 1=in all protocols, 2=on screen, 3=internal
public virtual bool Evaluate { get; set; }
public virtual sbyte E1 { get; set; } ///
public virtual sbyte E2 { get; set; } ///
public virtual sbyte E3 { get; set; } ///
public virtual sbyte E4 { get; set; } ///
public virtual sbyte E5 { get; set; } ///
public virtual sbyte E6 { get; set; } ///
public virtual sbyte E7 { get; set; } ///
public virtual sbyte E8 { get; set; } ///
public virtual sbyte E9 { get; set; } /// 0=off, 1=info, 2=evaluate
public virtual sbyte E10 { get; set; } ///
public virtual sbyte E11 { get; set; } ///
public virtual sbyte E12 { get; set; } ///
public virtual sbyte E13 { get; set; } ///
public virtual sbyte E14 { get; set; } ///
public virtual sbyte E15 { get; set; } ///
public virtual sbyte E16 { get; set; } ///
public virtual sbyte E21 { get; set; } ///
public virtual double Delta_Q_pct { get; set; } /// [%] max deviation from the mean flow
public virtual double Delta_T { get; set; } /// [°C] max. T_up or T_down deviation from the mean temperature
public virtual double Delta_Tup_Tdn { get; set; } /// [°C] max. difference abs(T_up - T_down)
public virtual double TestTime_min { get; set; } /// [s]
public virtual double TestTime_max { get; set; } /// [s]
public virtual double AmbTemp_min { get; set; } /// [°C] min. ambient temperature
public virtual double AmbTemp_max { get; set; } /// [°C] max. ambient temperature
public virtual double Coef_E9 { get; set; } /// Coefficient used in E9, default 0.025
public virtual double Coef_E10 { get; set; } /// Coefficient used in E10, default 0.04
public virtual double Coef_E11 { get; set; } /// Coefficient used in E11, default 0.1
public virtual double Coef_E12 { get; set; } /// Coefficient used in E12, default 1
public virtual double Offset_E9 { get; set; } /// [s] default 0 (no offset)
public virtual double Offset_E12 { get; set; } /// [s] default 0 (no offset)
public virtual Profile Profile { get; set; }
/// ------------- Additional stuff not mapped into the database -------------
public PTest()
{
///
/// Default values
///
Part = 0;
CoefQfrom = 1.0;
CoefQto = 1.1;
ErrLimLo = -2.0; /// [%]
ErrLimHi = 2.0; /// [%]
TempLimLo = 15.0; /// [°C]
TempLimHi = 25.0; /// [°C]
PressLimLo = 0; /// [bar]
PressLimHi = 16.0; /// [bar]
Publish = (sbyte)Config.Entities.Publish.Always;
Evaluate = true;
E1 = (sbyte)ErrorFlagsMode.On;
E2 = (sbyte)ErrorFlagsMode.On;
E3 = (sbyte)ErrorFlagsMode.On;
E4 = (sbyte)ErrorFlagsMode.On;
E5 = (sbyte)ErrorFlagsMode.On;
E6 = (sbyte)ErrorFlagsMode.On;
E7 = (sbyte)ErrorFlagsMode.On;
E8 = (sbyte)ErrorFlagsMode.On;
E9 = (sbyte)ErrorFlagsMode.On;
E10 = (sbyte)ErrorFlagsMode.On;
E11 = (sbyte)ErrorFlagsMode.On;
E12 = (sbyte)ErrorFlagsMode.On;
E13 = (sbyte)ErrorFlagsMode.On;
E14 = (sbyte)ErrorFlagsMode.On;
E15 = (sbyte)ErrorFlagsMode.On;
E16 = (sbyte)ErrorFlagsMode.Off;
E21 = (sbyte)ErrorFlagsMode.Off;
Delta_Q_pct = 5.0; /// [%]
Delta_T = 10.0; /// [°C]
Delta_Tup_Tdn = 10.0; /// [°C]
TestTime_min = 0; /// [s]
TestTime_max = 99999; /// [s]
AmbTemp_min = 5.0; /// [°C]
AmbTemp_max = 95.0; /// [°C]
Coef_E9 = 0.025;
Coef_E10 = 0.04;
Coef_E11 = 0.1;
Coef_E12 = 1.0;
Offset_E9 = 0; /// [s]
Offset_E12 = 0; /// [s]
}
public PTest(string name, int itemNr, Profile profile)
: this()
{
Name = name;
ItemNr = itemNr;
Profile = profile;
}
// Makes a new copy of this object (not just a reference)
public virtual PTest Clone()
{
PTest result = new PTest(Name, ItemNr, Profile);
result.Part = Part;
result.CoefQfrom = CoefQfrom;
result.CoefQto = CoefQto;
result.ErrLimLo = ErrLimLo;
result.ErrLimHi = ErrLimHi;
result.TempLimLo = TempLimLo;
result.TempLimHi = TempLimHi;
result.PressLimLo = PressLimLo;
result.PressLimHi = PressLimHi;
result.Publish = Publish;
result.Evaluate = Evaluate;
result.E1 = E1;
result.E2 = E2;
result.E3 = E3;
result.E4 = E4;
result.E5 = E5;
result.E6 = E6;
result.E7 = E7;
result.E8 = E8;
result.E9 = E9;
result.E10 = E10;
result.E11 = E11;
result.E12 = E12;
result.E13 = E13;
result.E14 = E14;
result.E15 = E15;
result.E16 = E16;
result.E21 = E21;
result.Delta_Q_pct = Delta_Q_pct;
result.Delta_T = Delta_T;
result.Delta_Tup_Tdn = Delta_Tup_Tdn;
result.TestTime_min = TestTime_min;
result.TestTime_max = TestTime_max;
result.AmbTemp_min = AmbTemp_min;
result.AmbTemp_max = AmbTemp_max;
result.Coef_E9 = Coef_E9;
result.Coef_E10 = Coef_E10;
result.Coef_E11 = Coef_E11;
result.Coef_E12 = Coef_E12;
result.Offset_E9 = Offset_E9;
result.Offset_E12 = Offset_E12;
return result;
}
public virtual void Export(StreamWriter output)
{
CultureInfo ci = CultureInfo.InvariantCulture;
output.WriteLine(Name);
output.WriteLine(Part);
output.WriteLine(CoefQfrom.ToString(ci));
output.WriteLine(CoefQto.ToString(ci));
output.WriteLine(ErrLimLo.ToString(ci));
output.WriteLine(ErrLimHi.ToString(ci));
output.WriteLine(TempLimLo.ToString(ci));
output.WriteLine(TempLimHi.ToString(ci));
output.WriteLine(PressLimLo.ToString(ci));
output.WriteLine(PressLimHi.ToString(ci));
output.WriteLine(Publish.ToString());
output.WriteLine(Evaluate.ToString());
output.WriteLine(E1.ToString());
output.WriteLine(E2.ToString());
output.WriteLine(E3.ToString());
output.WriteLine(E4.ToString());
output.WriteLine(E5.ToString());
output.WriteLine(E6.ToString());
output.WriteLine(E7.ToString());
output.WriteLine(E8.ToString());
output.WriteLine(E9.ToString());
output.WriteLine(E10.ToString());
output.WriteLine(E11.ToString());
output.WriteLine(E12.ToString());
output.WriteLine(E13.ToString());
output.WriteLine(E14.ToString());
output.WriteLine(E15.ToString());
output.WriteLine(E16.ToString());
output.WriteLine(E21.ToString());
output.WriteLine(Delta_Q_pct.ToString(ci));
output.WriteLine(Delta_T.ToString(ci));
output.WriteLine(Delta_Tup_Tdn.ToString(ci));
output.WriteLine(TestTime_min.ToString(ci));
output.WriteLine(TestTime_max.ToString(ci));
output.WriteLine(AmbTemp_min.ToString(ci));
output.WriteLine(AmbTemp_max.ToString(ci));
output.WriteLine(Coef_E9.ToString(ci));
output.WriteLine(Coef_E10.ToString(ci));
output.WriteLine(Coef_E11.ToString(ci));
output.WriteLine(Coef_E12.ToString(ci));
output.WriteLine(Offset_E9.ToString(ci));
output.WriteLine(Offset_E12.ToString(ci));
}
public static PTest Import(StreamReader input, Profile newProfile)
{
string firstLine = input.ReadLine();
if (string.IsNullOrEmpty(firstLine))
{
return null;
}
CultureInfo ci = CultureInfo.InvariantCulture;
PTest tst = new PTest();
tst.Name = firstLine;
tst.Part = int.Parse(input.ReadLine());
tst.CoefQfrom = double.Parse(input.ReadLine(), ci);
tst.CoefQto = double.Parse(input.ReadLine(), ci);
tst.ErrLimLo = double.Parse(input.ReadLine(), ci);
tst.ErrLimHi = double.Parse(input.ReadLine(), ci);
tst.TempLimLo = double.Parse(input.ReadLine(), ci);
tst.TempLimHi = double.Parse(input.ReadLine(), ci);
tst.Publish = sbyte.Parse(input.ReadLine());
tst.Evaluate = bool.Parse(input.ReadLine());
/// TODO (E1 .. E21)
tst.Delta_Q_pct = double.Parse(input.ReadLine(), ci);
tst.Delta_T = double.Parse(input.ReadLine(), ci);
tst.Delta_Tup_Tdn = double.Parse(input.ReadLine(), ci);
tst.TestTime_min = double.Parse(input.ReadLine(), ci);
tst.TestTime_max = double.Parse(input.ReadLine(), ci);
tst.AmbTemp_min = double.Parse(input.ReadLine(), ci);
tst.AmbTemp_max = double.Parse(input.ReadLine(), ci);
tst.Coef_E9 = double.Parse(input.ReadLine(), ci);
tst.Coef_E10 = double.Parse(input.ReadLine(), ci);
tst.Coef_E11 = double.Parse(input.ReadLine(), ci);
tst.Coef_E12 = double.Parse(input.ReadLine(), ci);
tst.Offset_E9 = double.Parse(input.ReadLine(), ci);
tst.Offset_E12 = double.Parse(input.ReadLine(), ci);
tst.Profile = newProfile;
return tst;
}
public virtual string Compare(StreamReader inp)
{
System.Text.StringBuilder diff = new System.Text.StringBuilder();
string fmt = string.Format("Test {0} : ", Name) + "{0} = {1}\r\n (in the file {2})\r\n";
string ln;
CultureInfo ci = CultureInfo.InvariantCulture;
string firstLine = inp.ReadLine();
if (string.IsNullOrEmpty(firstLine)) return string.Format("Test {0} is missing in the file\r\n", Name);
if (Name != firstLine) { diff.AppendFormat(fmt, "Name", Name, firstLine); };
ln = inp.ReadLine(); if (ln != Part.ToString()) { diff.AppendFormat(fmt, "Part", Part.ToString(), ln); };
ln = inp.ReadLine(); if (ln != CoefQfrom.ToString(ci)) { diff.AppendFormat(fmt, "CoefQfrom", CoefQfrom.ToString(ci), ln); };
ln = inp.ReadLine(); if (ln != CoefQto.ToString(ci)) { diff.AppendFormat(fmt, "CoefQto", CoefQto.ToString(ci), 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 != 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); };
ln = inp.ReadLine(); if (ln != PressLimLo.ToString(ci)) { diff.AppendFormat(fmt, "Pressure_min", PressLimLo.ToString(ci), ln); };
ln = inp.ReadLine(); if (ln != PressLimHi.ToString(ci)) { diff.AppendFormat(fmt, "Pressure_max", PressLimHi.ToString(ci), ln); };
ln = inp.ReadLine(); if (ln != Publish.ToString()) { diff.AppendFormat(fmt, "Publish", Publish.ToString(), ln); };
ln = inp.ReadLine(); if (ln != Evaluate.ToString()) { diff.AppendFormat(fmt, "Evaluate", Evaluate.ToString(), ln); };
ln = inp.ReadLine(); if (ln != E1.ToString()) { diff.AppendFormat(fmt, "E1", E1.ToString(), ln); };
ln = inp.ReadLine(); if (ln != E2.ToString()) { diff.AppendFormat(fmt, "E2", E2.ToString(), ln); };
ln = inp.ReadLine(); if (ln != E3.ToString()) { diff.AppendFormat(fmt, "E3", E3.ToString(), ln); };
ln = inp.ReadLine(); if (ln != E4.ToString()) { diff.AppendFormat(fmt, "E4", E4.ToString(), ln); };
ln = inp.ReadLine(); if (ln != E5.ToString()) { diff.AppendFormat(fmt, "E5", E5.ToString(), ln); };
ln = inp.ReadLine(); if (ln != E6.ToString()) { diff.AppendFormat(fmt, "E6", E6.ToString(), ln); };
ln = inp.ReadLine(); if (ln != E7.ToString()) { diff.AppendFormat(fmt, "E7", E7.ToString(), ln); };
ln = inp.ReadLine(); if (ln != E8.ToString()) { diff.AppendFormat(fmt, "E8", E8.ToString(), ln); };
ln = inp.ReadLine(); if (ln != E9.ToString()) { diff.AppendFormat(fmt, "E9", E9.ToString(), ln); };
ln = inp.ReadLine(); if (ln != E10.ToString()) { diff.AppendFormat(fmt, "E10", E10.ToString(), ln); };
ln = inp.ReadLine(); if (ln != E11.ToString()) { diff.AppendFormat(fmt, "E11", E11.ToString(), ln); };
ln = inp.ReadLine(); if (ln != E12.ToString()) { diff.AppendFormat(fmt, "E12", E12.ToString(), ln); };
ln = inp.ReadLine(); if (ln != E13.ToString()) { diff.AppendFormat(fmt, "E13", E13.ToString(), ln); };
ln = inp.ReadLine(); if (ln != E14.ToString()) { diff.AppendFormat(fmt, "E14", E14.ToString(), ln); };
ln = inp.ReadLine(); if (ln != E15.ToString()) { diff.AppendFormat(fmt, "E15", E15.ToString(), ln); };
ln = inp.ReadLine(); if (ln != E16.ToString()) { diff.AppendFormat(fmt, "E16", E16.ToString(), ln); };
ln = inp.ReadLine(); if (ln != E21.ToString()) { diff.AppendFormat(fmt, "E21", E21.ToString(), ln); };
ln = inp.ReadLine(); if (ln != Delta_Q_pct.ToString(ci)) { diff.AppendFormat(fmt, "Delta_Q_pct", Delta_Q_pct.ToString(ci), ln); };
ln = inp.ReadLine(); if (ln != Delta_T.ToString(ci)) { diff.AppendFormat(fmt, "Delta_T", Delta_T.ToString(ci), ln); };
ln = inp.ReadLine(); if (ln != Delta_Tup_Tdn.ToString(ci)) { diff.AppendFormat(fmt, "Delta_Tup_Tdn", Delta_Tup_Tdn.ToString(ci), ln); };
ln = inp.ReadLine(); if (ln != TestTime_min.ToString(ci)) { diff.AppendFormat(fmt, "TestTime_min", TestTime_min.ToString(ci), ln); };
ln = inp.ReadLine(); if (ln != TestTime_max.ToString(ci)) { diff.AppendFormat(fmt, "TestTime_max", TestTime_max.ToString(ci), ln); };
ln = inp.ReadLine(); if (ln != AmbTemp_min.ToString(ci)) { diff.AppendFormat(fmt, "AmbTemp_min", AmbTemp_min.ToString(ci), ln); };
ln = inp.ReadLine(); if (ln != AmbTemp_max.ToString(ci)) { diff.AppendFormat(fmt, "AmbTemp_max", AmbTemp_max.ToString(ci), ln); };
ln = inp.ReadLine(); if (ln != Coef_E9.ToString(ci)) { diff.AppendFormat(fmt, "Coef_E9", Coef_E9.ToString(ci), ln); };
ln = inp.ReadLine(); if (ln != Coef_E10.ToString(ci)) { diff.AppendFormat(fmt, "Coef_E10", Coef_E10.ToString(ci), ln); };
ln = inp.ReadLine(); if (ln != Coef_E11.ToString(ci)) { diff.AppendFormat(fmt, "Coef_E11", Coef_E11.ToString(ci), ln); };
ln = inp.ReadLine(); if (ln != Coef_E12.ToString(ci)) { diff.AppendFormat(fmt, "Coef_E12", Coef_E12.ToString(ci), ln); };
ln = inp.ReadLine(); if (ln != Offset_E9.ToString(ci)) { diff.AppendFormat(fmt, "Offset_E9", Offset_E9.ToString(ci), ln); };
ln = inp.ReadLine(); if (ln != Offset_E12.ToString(ci)) { diff.AppendFormat(fmt, "Offset_E12", Offset_E12.ToString(ci), ln); };
return diff.ToString();
}
public override string ToString()
{
return string.Format("{0}", Name);
}
}
}
+53 -2
View File
@@ -44,6 +44,11 @@ namespace Config.Entities
public virtual string AltProcName { get; set; } /// Alternative procedure name (null or string.Empty = no alt. procedure)
public virtual int AltProcPeriod { get; set; } /// Period of alternative procedures (0 = no alt. procedure)
public virtual float DN { get; set; } /// Not mapped to DB, valid in ProceduresCtrl for procedure filtering only
public virtual float Qn { get; set; } /// - ' ' -
public virtual string MClass { get; set; } /// - ' ' -
public virtual string Producer { get; set; } /// - ' ' -
public virtual IList<ComponentProcedure> MoreParams { get; set; }
public virtual IList<Test> Tests { get; set; }
@@ -65,6 +70,11 @@ namespace Config.Entities
Watermeters = string.Empty;
Description = string.Empty;
LongDescription = string.Empty;
DN = 0;
Qn = 0;
MClass = string.Empty;
Producer = string.Empty;
}
public Procedure(string name, int itemNr)
@@ -86,12 +96,10 @@ namespace Config.Entities
result.LastChgUser = LastChgUser;
result.LastChgTime = LastChgTime;
result.LongDescription = LongDescription;
result.ProcedureState = ProcedureState;
result.Revision = Revision;
result.PredecessorId = Id;
result.ObtainedByCopy = ObtainedByCopy;
result.MetersKind = MetersKind;
result.Watermeters = Watermeters;
result.Protected = Protected;
@@ -102,6 +110,13 @@ namespace Config.Entities
result.ResultsWriter = ResultsWriter;
result.TransitionStart = TransitionStart;
result.TransitionEnd = TransitionEnd;
result.AltProcName = AltProcName;
result.AltProcPeriod = AltProcPeriod;
result.DN = DN;
result.Qn = Qn;
result.MClass = MClass;
result.Producer = Producer;
foreach (var prms in MoreParams) { result.MoreParams.Add(prms.Clone(result)); }
foreach (var test in Tests) { result.Tests.Add(test.Clone()); }
@@ -234,6 +249,42 @@ namespace Config.Entities
return null;
}
/// <summary>
/// Processes the selection done by the bench control panel in the main sequence.
/// </summary>
/// <param name="selection">Selection.Q1, .Q2, .Q3 or .Test</param>
/// <returns>The selected test or null</returns>
public virtual Test GetTest(string expandedTestName, out int testIx, out int repetNr)
{
for (int ix = 0; ix < Tests.Count; ix++)
{
Test test = Tests[ix];
if (test.Name.Equals(expandedTestName))
{
/// Name is not expanded => Repeats==1
testIx = ix;
repetNr = 1;
return test;
}
for (int r = 1; r <= test.Repeats; r++)
{
if (test.GetExpandedTestName(r).Equals(expandedTestName))
{
testIx = ix;
repetNr = r;
return test;
}
}
}
testIx = 0;
repetNr = 1;
return null;
}
public override string ToString()
{
return string.Format("{0}, rev.{1}", Name, Revision);
-31
View File
@@ -1,31 +0,0 @@
///
/// Copyright (c) 2013-2015 Sensus Metering Systems
///
using System;
using System.Collections.Generic;
namespace Config.Entities
{
public class ProcedureHistory
{
public virtual int Id { get; protected set; }
public virtual Procedure Current { get; set; }
public virtual IList<Procedure> OldProcedures { get; set; }
/// ------------- Additional stuff not mapped into the database -------------
public ProcedureHistory()
{
Current = new Procedure();
OldProcedures = new List<Procedure>();
}
public virtual ProcedureHistory Clone()
{
ProcedureHistory result = new ProcedureHistory();
result.Current = Current.Clone();
foreach (Procedure p in OldProcedures) result.OldProcedures.Add(p.Clone());
return result;
}
}
}
+143
View File
@@ -0,0 +1,143 @@
///
/// Copyright (c) 2019 Sensus Slovensko a.s.
///
using System;
using System.Collections.Generic;
using System.Globalization;
using System.IO;
namespace Config.Entities
{
/// <summary>
/// Stores one test procedure, supports revisions and history log
/// </summary>
public class Profile : IHasName, IHasItemNr
{
public virtual int Id { get; protected set; }
public virtual int ItemNr { get; set; }
public virtual string Name { get; set; }
public virtual string Description { get; set; } /// Short description
public virtual string CreationUser { get; set; } /// Name of the user who has created or changed this procedure
public virtual DateTime CreationTime { get; set; } /// Date and time of the creation or change
public virtual string LastChgUser { get; set; } /// Name of the user who has created or changed this procedure
public virtual DateTime LastChgTime { get; set; } /// Date and time of the creation or change
public virtual ProfileType ProfileType { get; set; }
public virtual ErrorLimitType ErrorLimitType { get; set; }
public virtual IList<PTest> Tests { get; set; }
/// ------------- Additional stuff not mapped into the database -------------
public Profile()
{
Tests = new List<PTest>();
///
/// Default values
///
CreationUser = (Users.GlobalData.CurrentUser != null) ? Users.GlobalData.CurrentUser.UserName : null;
CreationTime = DateTime.Now;
LastChgUser = CreationUser;
LastChgTime = CreationTime;
Description = string.Empty;
}
public Profile(string name, int itemNr)
: this()
{
Name = name;
ItemNr = itemNr;
}
public virtual Profile Clone()
{
Profile result = new Profile();
result.ItemNr = ItemNr;
result.Name = Name;
result.Description = Description;
result.CreationUser = CreationUser;
result.CreationTime = CreationTime;
result.LastChgUser = LastChgUser;
result.LastChgTime = LastChgTime;
result.ProfileType = ProfileType;
result.ErrorLimitType = ErrorLimitType;
foreach (var test in Tests) { result.Tests.Add(test.Clone()); }
return result;
}
public virtual void Export(StreamWriter output)
{
output.WriteLine(ItemNr.ToString(CultureInfo.InvariantCulture));
output.WriteLine(Name);
output.WriteLine(Description);
output.WriteLine(CreationUser);
output.WriteLine(CreationTime.ToString(CultureInfo.InvariantCulture));
output.WriteLine(LastChgUser);
output.WriteLine(LastChgTime.ToString(CultureInfo.InvariantCulture));
foreach (var test in Tests) { test.Export(output); }
output.WriteLine();
output.Close();
}
public static Profile Import(StreamReader input)
{
Profile result = new Profile();
result.ItemNr = int.Parse(input.ReadLine(), CultureInfo.InvariantCulture);
result.Name = input.ReadLine();
result.Description = input.ReadLine();
result.CreationUser = input.ReadLine();
result.CreationTime = DateTime.Parse(input.ReadLine(), CultureInfo.InvariantCulture);
result.LastChgUser = input.ReadLine();
result.LastChgTime = DateTime.Parse(input.ReadLine(), CultureInfo.InvariantCulture);
string line = input.ReadLine();
while (true)
{
PTest tst = PTest.Import(input, result);
if (tst == null)
break;
else
result.Tests.Add(tst);
}
return result;
}
public virtual string Compare(StreamReader inp)
{
System.Text.StringBuilder diff = new System.Text.StringBuilder();
const string fmt = "{0} = {1}\r\n (in the file {2})\r\n";
string ln;
ln = inp.ReadLine(); /// skip ItemNr
ln = inp.ReadLine(); if (ln != Name) { diff.AppendFormat(fmt, "Name", Name, ln); };
ln = inp.ReadLine(); if (ln != Description) { diff.AppendFormat(fmt, "Description", Description, ln); };
ln = inp.ReadLine(); /// skip CreationUser
ln = inp.ReadLine(); /// skip CreationTime
ln = inp.ReadLine(); /// skip LastChgUser
ln = inp.ReadLine(); /// skip LastChgTime
//foreach (var test in Tests)
//{
// string testDiff = test.Compare(inp);
// if (testDiff.Contains(
//}
//bool extraTestsInFile = true;
//while (Test.Import(inp, null) != null) { extraTestsInFile = true; }
return diff.ToString();
}
public override string ToString()
{
return string.Format("{0}", Name);
}
}
}
+59 -20
View File
@@ -1,5 +1,5 @@
///
/// Copyright (c) 2013-2017 Sensus Metering Systems
/// Copyright (c) 2013-2019 Sensus Slovensko a.s.
///
using System;
using System.Collections.Generic;
@@ -18,9 +18,11 @@ namespace Config.Entities
public virtual string Name { get; set; }
public virtual int Part { get; set; } /// Part=0 ... test of all WM-s
/// Part>0 ... part of a set of tests with the same Name: subset of WM-s is given by MetersPath
public virtual sbyte Publish { get; set; } /// 0=no, 1=in all protocols, 2=on screen, 3=internal
public virtual bool DoEvaluate { get; set; }
public virtual float Qfrom { get; set; } /// Water flow low limit in [m3/h]
public virtual TestProfile Profile { get; set; } /// UserDefined, Protected, UserDefinedHeatMeter, ProtectedHeatMeter
public virtual sbyte Publish { get; set; } /// 0=no, 1=in all protocols, 2=on screen, 3=internal
public virtual bool DoEvaluate { get; set; }
public virtual float Qtg { get; set; } /// Target water flow [m3/h]
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]
@@ -30,7 +32,7 @@ namespace Config.Entities
public virtual float Uncertainty { get; set; } /// int [%] makes error limits tighter: 0 <= Uncertainty <= abs(ErrLimXx)
public virtual int Repeats { get; set; }
public virtual bool DoDraining { get; set; }
public virtual bool DoZeroing { get; set; }
public virtual bool DoDrainingAfter { get; set; }
public virtual bool DoControlWaterTemp { get; set; }
public virtual float TempLimLo { get; set; } /// Lower limit for the controlled temperature
public virtual float TempLimHi { get; set; } /// Upper limit for the controlled temperature
@@ -43,7 +45,7 @@ namespace Config.Entities
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 TestRedType RedType { get; set; }
public virtual string RedType { get; set; }
public virtual string FeedingPath { get; set; }
public virtual string BenchPath { get; set; }
public virtual string OutputPath { get; set; }
@@ -53,9 +55,11 @@ namespace Config.Entities
#endif
public virtual string RelTransBefore { get; set; }
public virtual string RelTransBetween { get; set; }
public virtual string RelTransAfter { get; set; }
public virtual string TransitionAfter { get; set; }
public virtual bool IsOuterLoopStart { get; set; } /// Not mapped to database
public virtual bool IsOuterLoopEnd { get; set; } /// Not mapped to database
public virtual IList<ComponentTest> MoreParams { get; set; }
public virtual Procedure Procedure { get; set; }
@@ -69,11 +73,13 @@ namespace Config.Entities
///
/// Default values
///
Publish = (sbyte)Config.Entities.Publish.Always;
Part = 0;
Profile = TestProfile.UserDefined;
Publish = (sbyte)Config.Entities.Publish.Always;
DoEvaluate = true;
Repeats = 1;
DoDraining = false;
DoZeroing = false;
DoDrainingAfter = false;
DoControlWaterTemp = false;
TempLimLo = 15.0f;
TempLimHi = 25.0f;
@@ -91,7 +97,6 @@ namespace Config.Entities
TolerRed = 0; /// = Filter parameter
RelTransBefore = string.Empty;
RelTransBetween = string.Empty;
RelTransAfter = string.Empty;
TransitionAfter = string.Empty;
}
@@ -109,8 +114,10 @@ namespace Config.Entities
Test result = new Test(Name, ItemNr, Procedure);
result.Part = Part;
result.Publish = Publish;
result.Profile = Profile;
result.Publish = Publish;
result.DoEvaluate = DoEvaluate;
result.Qtg = Qtg;
result.Qfrom = Qfrom;
result.Qto = Qto;
result.Volume = Volume;
@@ -121,7 +128,7 @@ namespace Config.Entities
result.Uncertainty = Uncertainty;
result.Repeats = Repeats;
result.DoDraining = DoDraining;
result.DoZeroing = DoZeroing;
result.DoDrainingAfter = DoDrainingAfter;
result.DoControlWaterTemp = DoControlWaterTemp;
result.TempLimLo = TempLimLo;
result.TempLimHi = TempLimHi;
@@ -144,7 +151,6 @@ namespace Config.Entities
#endif
result.RelTransBefore = RelTransBefore;
result.RelTransBetween = RelTransBetween;
result.RelTransAfter = RelTransAfter;
result.TransitionAfter = TransitionAfter;
foreach (var prms in MoreParams) { result.MoreParams.Add(prms.Clone()); }
@@ -159,6 +165,7 @@ namespace Config.Entities
output.WriteLine(Part.ToString(ci));
output.WriteLine(Publish.ToString(ci));
output.WriteLine(DoEvaluate.ToString());
output.WriteLine(Qtg.ToString(ci));
output.WriteLine(Qfrom.ToString(ci));
output.WriteLine(Qto.ToString(ci));
output.WriteLine(Volume.ToString(ci));
@@ -169,7 +176,7 @@ namespace Config.Entities
output.WriteLine(Uncertainty.ToString(ci));
output.WriteLine(Repeats.ToString(ci));
output.WriteLine(DoDraining.ToString());
output.WriteLine(DoZeroing.ToString());
output.WriteLine(DoDrainingAfter.ToString());
output.WriteLine(DoControlWaterTemp.ToString());
output.WriteLine(TempLimLo.ToString(ci));
output.WriteLine(TempLimHi.ToString(ci));
@@ -187,7 +194,7 @@ namespace Config.Entities
output.WriteLine(MetersPath);
output.WriteLine(RelTransBefore);
output.WriteLine(RelTransBetween);
output.WriteLine(RelTransAfter);
output.WriteLine(Profile);
output.WriteLine(TransitionAfter);
foreach (var prms in MoreParams) { prms.Export(output); }
@@ -209,7 +216,8 @@ namespace Config.Entities
tst.Part = int.Parse(input.ReadLine(), ci);
tst.Publish = sbyte.Parse(input.ReadLine(), ci);
tst.DoEvaluate = bool.Parse(input.ReadLine());
tst.Qfrom = float.Parse(input.ReadLine(), ci);
tst.Qtg = float.Parse(input.ReadLine(), ci);
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);
@@ -219,7 +227,7 @@ namespace Config.Entities
tst.Uncertainty = float.Parse(input.ReadLine(), ci);
tst.Repeats = int.Parse(input.ReadLine(), ci);
tst.DoDraining = bool.Parse(input.ReadLine());
tst.DoZeroing = bool.Parse(input.ReadLine());
tst.DoDrainingAfter = bool.Parse(input.ReadLine());
tst.DoControlWaterTemp = bool.Parse(input.ReadLine());
tst.TempLimLo = float.Parse(input.ReadLine(), ci);
tst.TempLimHi = float.Parse(input.ReadLine(), ci);
@@ -237,7 +245,10 @@ namespace Config.Entities
tst.MetersPath = input.ReadLine();
tst.RelTransBefore = input.ReadLine();
tst.RelTransBetween = input.ReadLine();
tst.RelTransAfter = 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();
while (true)
@@ -267,6 +278,7 @@ namespace Config.Entities
ln = inp.ReadLine(); if (ln != Part.ToString(ci)) { diff.AppendFormat(fmt, "Part", Part.ToString(ci), ln); };
ln = inp.ReadLine(); if (ln != Publish.ToString(ci)) { diff.AppendFormat(fmt, "Publish", Publish.ToString(ci), ln); };
ln = inp.ReadLine(); if (ln != DoEvaluate.ToString(ci)) { diff.AppendFormat(fmt, "Evaluate", DoEvaluate.ToString(ci), ln); };
ln = inp.ReadLine(); if (ln != Qtg.ToString(ci)) { diff.AppendFormat(fmt, "Qtg", Qtg.ToString(ci), ln); };
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); };
@@ -277,7 +289,7 @@ namespace Config.Entities
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 != DoZeroing.ToString(ci)) { diff.AppendFormat(fmt, "Zeroing", DoZeroing.ToString(ci), ln); };
ln = inp.ReadLine(); if (ln != DoDrainingAfter.ToString(ci)) { diff.AppendFormat(fmt, "Zeroing", 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); };
@@ -295,7 +307,7 @@ namespace Config.Entities
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 != RelTransAfter) { diff.AppendFormat(fmt, "RelTransAfter", RelTransAfter, 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); };
return diff.ToString();
@@ -310,6 +322,33 @@ namespace Config.Entities
return null;
}
/// <summary>
/// Return test title for a this test and a given repetition number
/// </summary>
/// <param name="repetitonNr">1 .. Nr. repetitions</param>
/// <returns>Test title (string)</returns>
public virtual string GetExpandedTestName(int repetitionNr)
{
if (Repeats == 1)
{
if (Part == 0)
{
/// Single test
return Name;
}
else
{
/// A part of a single test
return string.Format("{0} ({1})", Name, Part);
}
}
else
{
/// More test repetitions
return string.Format("{0} ({1}/{2})", Name, repetitionNr, Repeats);
}
}
public virtual double GetErrLimLo(double volumeCTV, double testTime)
{
if (ErrLimLo <= ErrLimHi)
+20
View File
@@ -0,0 +1,20 @@
///
/// Copyright (c) 2019 Sensus Slovensko a.s.
///
using System;
namespace Config.Entities
{
public class Uncertainty
{
public virtual int Id { get; protected set; }
public virtual float Measurement { get; set; }
public virtual float MainUncertainty { get; set; }
public virtual float Resolution { get; set; }
public virtual float DriftPerYr { get; set; }
public virtual float Conditions { get; set; }
public virtual float UncertaintyOfCorrection { get; set; }
public Uncertainty() { }
}
}
+6 -2
View File
@@ -1,5 +1,5 @@
///
/// Copyright (c) 2013-2017 Sensus Metering Systems
/// Copyright (c) 2013-2019 Sensus Slovensko a.s.
///
using System;
using System.Collections.Generic;
@@ -11,8 +11,12 @@ namespace Config.Entities
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 int Number { get; set; }
public virtual string Tag { get; set; }
public virtual int Number { get; set; }
public virtual string Password { get; set; }
public virtual string Password2 { get; set; }
public virtual string Password3 { get; set; }
public virtual string Password4 { get; set; }
public virtual DateTime LastPwChange { get; set; }
public virtual IList<Group> Groups { get; set; } //User can be a member of a list of groups
-78
View File
@@ -1,78 +0,0 @@
///
/// Copyright (c) 2013-2015 Sensus Metering Systems
///
using System;
using System.Collections.Generic;
using System.Linq;
using System.Text;
/// This class holds the watermeter type specific data
/// that have all watermaters of the same type in common
namespace Config.Entities
{
public class WMType
{
// mapped
public virtual int Id { get; protected set; } /// primary key
public virtual DateTime CreateTime { get; set; } /// Date and time of the creation or change
public virtual string CreateUserName { get; set; } /// Name of the user who has created or changed this procedure
public virtual string CreateDescription { get; set; } /// Description\
public virtual string Name { get; set; } /// type name
public virtual float PulseRate { get; set; } /// Pulses per Liter
// not yet mapped
public virtual int IdentNr { get; protected set; } /// identification number of watermeter tzpe
public virtual int Diameter { get; set; } /// nominal diameter
public virtual int Pressure { get; set; } /// nominal pressure
public virtual int Length { get; set; } /// construction length
public virtual int Temperatur { get; set; } /// nominal temperature in C
public virtual float NominalFlow { get; set; } /// nominal flow Qn
/// ------------- Additional stuff not mapped into the database -------------
public WMType()
{
}
public static WMType DefaultWMType()
{
WMType procedure = new WMType()
{
CreateTime = DateTime.Now,
CreateUserName = Users.GlobalData.CurrentUser.UserName,
CreateDescription = "A default water meter created.",
Name = "Watermeter",
PulseRate = 1000,
};
return procedure;
}
public virtual WMType Clone()
{
WMType result = new WMType();
result.CreateTime = CreateTime;
result.CreateUserName = CreateUserName;
result.CreateDescription = CreateDescription;
result.Name = Name;
result.PulseRate = PulseRate;
return result;
}
public override string ToString()
{
string result = "";
result += "WMTpe: " + Environment.NewLine;
result += " Name = " + Name + Environment.NewLine;
result += " Created by = " + CreateUserName + Environment.NewLine;
result += " Created on = " + CreateTime.ToString() + Environment.NewLine;
result += " Description = " + CreateDescription + Environment.NewLine;
result += " Pulse rate = " + PulseRate.ToString() + Environment.NewLine;
return result;
}
}
}
-40
View File
@@ -1,40 +0,0 @@
///
/// Copyright (c) 2013-2015 Sensus Metering Systems
///
using System;
using System.Collections.Generic;
using System.Linq;
using System.Text;
using NHibernate;
using FluentNHibernate;
namespace Config.Entities
{
public class Watermeter
{
public virtual int Id { get; protected set; } /// primary key
public virtual DateTime CreateTime { get; set; } /// Date and time of the creation or change
public virtual string CreateUserName { get; set; } /// Name of the user who has created or changed this procedure
public virtual string CreateDescription { get; set; } /// Description
/// mapped
public virtual string Serial { get; set; } /// serial number
public virtual WMType WMType { get; set; } /// type of watermeter
///
/// <summary>
/// Load a watermeter from the database
/// </summary>
public static Watermeter LoadBySerialnr(string SerialNr)
{
IList<Watermeter> ListOfWatermeters = FluentCommon.CreateSession(Users.Entities.DBKind.Results)
.CreateQuery("FROM Watermeter WHERE Serial = :SerialNrParameter")
.SetParameter("SerialNrParameter", SerialNr)
.List<Watermeter>();
if (ListOfWatermeters.Count > 0) return ListOfWatermeters.ElementAt(0);
return null;
}
}
}
+28 -22
View File
@@ -145,17 +145,8 @@ namespace Config
using (var transaction = session.BeginTransaction())
{
///
/// Prepare all groups
/// Create user 'admin'
///
var testers = new Config.Entities.Group((int)Users.Grp.GID.Testers, Strings.Tester);
var testingSpecialists = new Config.Entities.Group((int)Users.Grp.GID.TestingSpecialists, Strings.Testing_Specialist);
var headOfLab = new Config.Entities.Group((int)Users.Grp.GID.HeadOfLab, Strings.Head_of_Lab);
var maintenanceSpecialists = new Config.Entities.Group((int)Users.Grp.GID.MaintenanceSpecialists, Strings.Maintenance_Specialist);
var metrologists = new Config.Entities.Group((int)Users.Grp.GID.Metrologists, Strings.Metrologist);
var calibrationSpecialists = new Config.Entities.Group((int)Users.Grp.GID.CalibrationSpecialists, Strings.Calibration_Specialist);
var administrators = new Config.Entities.Group((int)Users.Grp.GID.Administrators, Strings.Administrator);
/// Create the user 'admin' add his groups
var admin = new Config.Entities.User
{
UserName = Data.AdminUsername,
@@ -163,20 +154,35 @@ namespace Config
LastPwChange = DateTime.Now
};
admin.SetPassword(Data.AdminPassword);
admin.AddGroup(testers);
admin.AddGroup(testingSpecialists);
admin.AddGroup(headOfLab);
admin.AddGroup(maintenanceSpecialists);
admin.AddGroup(metrologists);
admin.AddGroup(calibrationSpecialists);
admin.AddGroup(administrators);
session.SaveOrUpdate(admin);
///// Create the control board component
//var cmpnt = (new BenchControl.Elde.ControlBoardCfg(new BenchControl.Elde.ControlBoardFactory())).CreateDbEntity();
//session.SaveOrUpdate(cmpnt);
///
/// Prepare all groups, add some of them to admin
///
for (Users.Entities.GID gid = 0; gid < Users.Entities.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:
#if TURA_IPERL || TURA_IPERL_NEW || TURA_SPECIAL
case Users.Entities.GID.TraceabilityManagement:
#elif KEMPNO_50 || KRAKOW_50 || TORUN_50 || WARSAW_END
case Users.Entities.GID.MetrologicalAuthority:
case Users.Entities.GID.WaterMeterAuthority:
#endif
admin.AddGroup(group);
session.SaveOrUpdate(group); /// Save this group
break;
}
}
session.SaveOrUpdate(admin); /// Save user 'admin'
transaction.Commit();
}
}
+70 -52
View File
@@ -11,14 +11,23 @@ namespace Config
{
private static readonly ILog log = LogManager.GetLogger(typeof(Formulas));
///
/// Tables to calculate specific enthalpy
///
private static readonly int[] Ii;
private static readonly int[] Ji;
private static readonly double[] ni;
private static readonly double[] Di;
///
/// Wrappers
///
public static double RealDensity() { return Data.RealDensity; }
public static double AtTemperature() { return Data.AtTemperature; }
public static double Buoyancy() { return Data.Buoyancy; }
/// Private tables with coeficients to calculate specific enthalpy
static readonly int[] Ii;
static readonly int[] Ji;
static readonly double[] ni;
/// Private table with coeficients to calculate temperature of a platinum thermometer
static readonly double[] Di;
/// <summary>
/// Constructor
@@ -153,9 +162,9 @@ namespace Config
/// </summary>
/// <param name="t">Temperature in [°C]</param>
/// <returns>Density in [kg/m3]</returns>
public static double WaterDensityFromTemp(double t, double realDensity, double atTemperature)
public static double WaterDensityFromTemp(double t)
{
return DistilledWaterDensityFromTemp(t) + DensityCorrection(realDensity, atTemperature);
return DistilledWaterDensityFromTemp(t) + DensityCorrection(RealDensity(), AtTemperature());
}
/// <summary>
@@ -163,7 +172,7 @@ namespace Config
/// </summary>
/// <param name="t">Temperature in [°C]</param>
/// <returns>Density in [kg/m3]</returns>
public static double WaterDensityFromTempPress(double temp, double pressure, double realDensity, double atTemperature)
public static double WaterDensityFromTempPress(double temp, double pressure)
{
double x0 = 5.08821E-10;
double x1 = 1.2639418;
@@ -173,7 +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, realDensity, atTemperature) * (1 + B * Config.Units.ConvertTo(Config.Unit.Pa, pressure));
return WaterDensityFromTemp(temp) * (1 + B * Config.Units.ConvertTo(Config.Unit.Pa, pressure));
}
@@ -221,45 +230,60 @@ namespace Config
return error;
}
/// <summary>
/// Calculates corrected value form 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)
{
if (corrections == null || corrections.Count == 0) return rawValue;
if (rawValue < corrections[0].Measurement)
{
return rawValue + corrections[0].Correction;
}
/// <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);
}
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;
/// <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
double corr;
if (d1 + d2 <= float.Epsilon)
{
corr = (corrections[i - 1].Correction + corrections[i].Correction) / 2.0;
}
else
{
corr = (corrections[i - 1].Correction * d2 + corrections[i].Correction * d1) / (d1 + d2);
}
return rawValue + corr;
}
}
if (rawValue < corrections[0].Measurement)
{
/// rawValue is below the lowest value in the correction table
return corrections[0].Correction;
}
return rawValue + corrections[count - 1].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>
@@ -379,11 +403,5 @@ namespace Config
return (-(R0 * A) + Math.Sqrt(R0 * R0 * A * A - 4 * R0 * B * (R0 - R))) / (2 * R0 * B);
}
public static double Buoyancy()
{
return 1.00103;
}
}
}
+5 -2
View File
@@ -1,5 +1,5 @@
///
/// Copyright (c) 2013-2015 Sensus Metering Systems
/// Copyright (c) 2013-2019 Sensus Slovensko a.s.
///
using FluentNHibernate.Mapping;
using Config.Entities;
@@ -23,6 +23,9 @@ namespace Config.Mappings
HasMany(x => x.Corrections)
.OrderBy("Measurement")
.Cascade.All();
}
HasMany(x => x.Uncertainties)
.OrderBy("Measurement")
.Cascade.All();
}
}
}
+10 -3
View File
@@ -1,5 +1,5 @@
///
/// Copyright (c) 2013-2015 Sensus Metering Systems
/// Copyright (c) 2013-2020 Sensus Slovensko a.s.
///
using FluentNHibernate.Mapping;
@@ -7,11 +7,18 @@ namespace Config.Mappings
{
class GroupMap : ClassMap<Entities.Group>
{
/// <seealso>
/// https://stackoverflow.com/questions/9108083/fluent-nhibernate-many-to-many-mapping-way/9125059
/// </seealso>
public GroupMap()
{
Id(x => x.Id);
Map(x => x.Gid);
Map(x => x.Name);
Map(x => x.GID).Column("Name");
Map(x => x.AccessFlags);
HasManyToMany(x => x.Users)
.Cascade.SaveUpdate()
.Inverse()
.Table("UsersGroups");
}
}
}
+60
View File
@@ -0,0 +1,60 @@
///
/// Copyright (c) 2019 Sensus Slovensko a.s.
///
using FluentNHibernate.Mapping;
using Config.Entities;
namespace Config.Mappings
{
class PTestMap : ClassMap<PTest>
{
public PTestMap()
{
Id(x => x.Id);
Map(x => x.ItemNr);
Map(x => x.Name);
Map(x => x.Part);
Map(x => x.CoefQfrom);
Map(x => x.CoefQto);
Map(x => x.ErrLimLo);
Map(x => x.ErrLimHi);
Map(x => x.TempLimLo);
Map(x => x.TempLimHi);
Map(x => x.PressLimLo);
Map(x => x.PressLimHi);
Map(x => x.Publish);
Map(x => x.Evaluate);
Map(x => x.E1);
Map(x => x.E2);
Map(x => x.E3);
Map(x => x.E4);
Map(x => x.E5);
Map(x => x.E6);
Map(x => x.E7);
Map(x => x.E8);
Map(x => x.E9);
Map(x => x.E10);
Map(x => x.E11);
Map(x => x.E12);
Map(x => x.E13);
Map(x => x.E14);
Map(x => x.E15);
Map(x => x.E16);
Map(x => x.E21);
Map(x => x.Delta_Q_pct);
Map(x => x.Delta_T);
Map(x => x.Delta_Tup_Tdn);
Map(x => x.TestTime_min);
Map(x => x.TestTime_max);
Map(x => x.AmbTemp_min);
Map(x => x.AmbTemp_max);
Map(x => x.Coef_E9);
Map(x => x.Coef_E10);
Map(x => x.Coef_E11);
Map(x => x.Coef_E12);
Map(x => x.Offset_E9);
Map(x => x.Offset_E12);
References(x => x.Profile);
}
}
}
+28
View File
@@ -0,0 +1,28 @@
///
/// Copyright (c) 2019 Sensus Slovensko a.s.
///
using FluentNHibernate.Mapping;
using Config.Entities;
namespace Config.Mappings
{
class ProfileMap : ClassMap<Profile>
{
public ProfileMap()
{
Id(x => x.Id);
Map(x => x.ItemNr);
Map(x => x.Name);
Map(x => x.Description);
Map(x => x.CreationUser);
Map(x => x.CreationTime);
Map(x => x.LastChgUser);
Map(x => x.LastChgTime);
Map(x => x.ProfileType);
Map(x => x.ErrorLimitType);
HasMany(x => x.Tests)
.OrderBy("ItemNr")
.Cascade.All();
}
}
}
+14 -9
View File
@@ -14,17 +14,19 @@ namespace Config.Mappings
Map(x => x.ItemNr);
Map(x => x.Name);
Map(x => x.Part);
Map(x => x.Publish);
Map(x => x.Profile);
Map(x => x.Publish);
Map(x => x.DoEvaluate)
.Column("Evaluate");
Map(x => x.Qfrom);
Map(x => x.Qtg);
Map(x => x.Qfrom);
Map(x => x.Qto);
Map(x => x.Volume);
Map(x => x.TstTime);
Map(x => x.Repeats);
Map(x => x.DoDraining)
.Column("Emptying");
Map(x => x.DoZeroing)
Map(x => x.DoDrainingAfter)
.Column("Zeroing");
Map(x => x.DoControlWaterTemp);
Map(x => x.TempLimLo);
@@ -45,7 +47,7 @@ namespace Config.Mappings
Map(x => x.Uncertainty);
Map(x => x.TolerRed)
.Column("TolerRed"); /// ???
Map(x => x.RedType); /// ???
Map(x => x.RedType);
Map(x => x.FeedingPath);
Map(x => x.BenchPath);
Map(x => x.OutputPath);
@@ -53,11 +55,14 @@ namespace Config.Mappings
#if HEAT_METERS
Map(x => x.HeatMetersPath);
#endif
Map(x => x.RelTransBefore);
Map(x => x.RelTransBetween);
Map(x => x.RelTransAfter);
Map(x => x.TransitionAfter);
HasMany(x => x.MoreParams)
Map(x => x.RelTransBefore)
.Column("RelTransBefore");
Map(x => x.RelTransBetween)
.Column("RelTransBetween");
Map(x => x.TransitionAfter)
.Column("TransitionAfter");
HasMany(x => x.MoreParams)
.Cascade.All();
References(x => x.Procedure);
}
+22
View File
@@ -0,0 +1,22 @@
///
/// Copyright (c) 2019 Sensus Slovensko a.s.
///
using FluentNHibernate.Mapping;
using Config.Entities;
namespace Config.Mappings
{
class UncertaintyMap : ClassMap<Uncertainty>
{
public UncertaintyMap()
{
Id(x => x.Id);
Map(x => x.Measurement);
Map(x => x.MainUncertainty);
Map(x => x.Resolution);
Map(x => x.DriftPerYr);
Map(x => x.Conditions);
Map(x => x.UncertaintyOfCorrection);
}
}
}
+8 -3
View File
@@ -1,5 +1,5 @@
///
/// Copyright (c) 2013-2015 Sensus Metering Systems
/// Copyright (c) 2016-2020 Sensus Slovensko a.s.
///
using FluentNHibernate.Mapping;
@@ -12,11 +12,16 @@ namespace Config.Mappings
Id(x => x.Id);
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.LastPwChange);
HasMany(x => x.Groups)
.Cascade.All();
HasManyToMany(x => x.Groups)
.Cascade.SaveUpdate()
.Table("UsersGroups");
}
}
}
@@ -1,22 +0,0 @@
///
/// Copyright (c) 2013-2015 Sensus Metering Systems
///
using FluentNHibernate.Mapping;
using Config.Entities;
namespace Config.Mappings
{
class VirtualBenchSequenceMap : ClassMap<VirtualBenchSequence>
{
public VirtualBenchSequenceMap()
{
Id(x => x.Id);
Map(x => x.ItemNr);
Map(x => x.Name);
Map(x => x.Description);
HasMany(x => x.VirtualBenchSteps)
.OrderBy("ItemNr")
.Cascade.All();
}
}
}
-20
View File
@@ -1,20 +0,0 @@
///
/// Copyright (c) 2013-2015 Sensus Metering Systems
///
using FluentNHibernate.Mapping;
using Config.Entities;
namespace Config.Mappings
{
class VirtualBenchStepMap : ClassMap<VirtualBenchStep>
{
public VirtualBenchStepMap()
{
Id(x => x.Id);
Map(x => x.ItemNr);
Map(x => x.Duration);
References(x => x.VirtualBenchSequence);
}
}
}
-20
View File
@@ -1,20 +0,0 @@
///
/// Copyright (c) 2013-2015 Sensus Metering Systems
///
using FluentNHibernate.Mapping;
namespace Config.Mappings
{
class WMTypeMap : ClassMap<Entities.WMType>
{
public WMTypeMap()
{
Id(x => x.Id);
Map(x => x.CreateTime);
Map(x => x.CreateUserName);
Map(x => x.CreateDescription);
Map(x => x.Name);
Map(x => x.PulseRate);
}
}
}
-19
View File
@@ -1,19 +0,0 @@
///
/// Copyright (c) 2013-2015 Sensus Metering Systems
///
using FluentNHibernate.Mapping;
namespace Config.Mappings
{
class WatermeterMap : ClassMap<Entities.Watermeter>
{
public WatermeterMap()
{
Id(x => x.Id);
Map(x => x.Serial);
// HasOne(x => x.WMType)
// .Cascade.All();
References(x => x.WMType);
}
}
}
+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("2.18.1122.0")]
[assembly: AssemblyFileVersion("2.18.1122.0")]
[assembly: AssemblyVersion("2.25.1400.0")]
[assembly: AssemblyFileVersion("2.25.1400.0")]
-21
View File
@@ -117,27 +117,6 @@
<resheader name="writer">
<value>System.Resources.ResXResourceWriter, System.Windows.Forms, Version=4.0.0.0, Culture=neutral, PublicKeyToken=b77a5c561934e089</value>
</resheader>
<data name="Administrator" xml:space="preserve">
<value>Administrator</value>
</data>
<data name="Calibration_Specialist" xml:space="preserve">
<value>Kalibriertechniker</value>
</data>
<data name="Head_of_Lab" xml:space="preserve">
<value>Laborleiter</value>
</data>
<data name="Maintenance_Specialist" xml:space="preserve">
<value>Wartungstechniker</value>
</data>
<data name="Metrologist" xml:space="preserve">
<value>Messtechniker</value>
</data>
<data name="Tester" xml:space="preserve">
<value>Prüfer</value>
</data>
<data name="Testing_Specialist" xml:space="preserve">
<value>Prüftechniker</value>
</data>
<data name="Failed" xml:space="preserve">
<value>NiO</value>
</data>
@@ -1,4 +1,4 @@
<?xml version="1.0" encoding="utf-8"?>
<?xml version="1.0" encoding="utf-8"?>
<root>
<!--
Microsoft ResX Schema
@@ -117,64 +117,16 @@
<resheader name="writer">
<value>System.Resources.ResXResourceWriter, System.Windows.Forms, Version=4.0.0.0, Culture=neutral, PublicKeyToken=b77a5c561934e089</value>
</resheader>
<data name="okButton.Text" xml:space="preserve">
<value>OK</value>
<data name="Failed" xml:space="preserve">
<value>Échoué</value>
</data>
<data name="wmStateLabel1.Text" xml:space="preserve">
<value>Stan</value>
<data name="Passed" xml:space="preserve">
<value>Passé</value>
</data>
<data name="snLabel1.Text" xml:space="preserve">
<value>Nr seryjny</value>
<data name="Cannot_open_DB_Cause_0" xml:space="preserve">
<value>Impossible d'ouvrir la base de données Cause\\r\\n{0}</value>
</data>
<data name="groupBox1.Text" xml:space="preserve">
<value>Wodomierz 1</value>
</data>
<data name="wmStateLabel2.Text" xml:space="preserve">
<value>Stan</value>
</data>
<data name="snLabel2.Text" xml:space="preserve">
<value>Nr seryjny</value>
</data>
<data name="groupBox2.Text" xml:space="preserve">
<value>Wodomierz 2</value>
</data>
<data name="wmStateLabel3.Text" xml:space="preserve">
<value>Stan</value>
</data>
<data name="snLabel3.Text" xml:space="preserve">
<value>Nr seryjny</value>
</data>
<data name="groupBox3.Text" xml:space="preserve">
<value>Wodomierz 3</value>
</data>
<data name="wmStateLabel4.Text" xml:space="preserve">
<value>Stan</value>
</data>
<data name="snLabel4.Text" xml:space="preserve">
<value>Nr seryjny</value>
</data>
<data name="groupBox4.Text" xml:space="preserve">
<value>Wodomierz 4</value>
</data>
<data name="wmStateLabel5.Text" xml:space="preserve">
<value>Stan</value>
</data>
<data name="snLabel5.Text" xml:space="preserve">
<value>Nr seryjny</value>
</data>
<data name="groupBox5.Text" xml:space="preserve">
<value>Wodomierz 5</value>
</data>
<data name="wmStateLabel6.Text" xml:space="preserve">
<value>Stan</value>
</data>
<data name="snLabel6.Text" xml:space="preserve">
<value>Nr seryjny</value>
</data>
<data name="groupBox6.Text" xml:space="preserve">
<value>Wodomierz 6</value>
</data>
<data name="$this.Text" xml:space="preserve">
<value>Nr seryjny i stan</value>
<data name="Error" xml:space="preserve">
<value>Erreur</value>
</data>
</root>
-21
View File
@@ -117,27 +117,6 @@
<resheader name="writer">
<value>System.Resources.ResXResourceWriter, System.Windows.Forms, Version=4.0.0.0, Culture=neutral, PublicKeyToken=b77a5c561934e089</value>
</resheader>
<data name="Administrator" xml:space="preserve">
<value>Amministratore</value>
</data>
<data name="Calibration_Specialist" xml:space="preserve">
<value>esperto in calibrazione</value>
</data>
<data name="Head_of_Lab" xml:space="preserve">
<value>capo di laboratorio</value>
</data>
<data name="Maintenance_Specialist" xml:space="preserve">
<value>esperto di manutenzione</value>
</data>
<data name="Metrologist" xml:space="preserve">
<value>metrologo</value>
</data>
<data name="Tester" xml:space="preserve">
<value>tester</value>
</data>
<data name="Testing_Specialist" xml:space="preserve">
<value>esperto di prove </value>
</data>
<data name="Failed" xml:space="preserve">
<value>NOK</value>
</data>
-21
View File
@@ -117,27 +117,6 @@
<resheader name="writer">
<value>System.Resources.ResXResourceWriter, System.Windows.Forms, Version=4.0.0.0, Culture=neutral, PublicKeyToken=b77a5c561934e089</value>
</resheader>
<data name="Administrator" xml:space="preserve">
<value>Administrator</value>
</data>
<data name="Calibration_Specialist" xml:space="preserve">
<value>Specjalista ds. kalibracji</value>
</data>
<data name="Head_of_Lab" xml:space="preserve">
<value>Kierownik Laboratorium</value>
</data>
<data name="Maintenance_Specialist" xml:space="preserve">
<value>Konserwator</value>
</data>
<data name="Metrologist" xml:space="preserve">
<value>Metrolog</value>
</data>
<data name="Tester" xml:space="preserve">
<value>Pracownik przeprowadzający testy</value>
</data>
<data name="Testing_Specialist" xml:space="preserve">
<value>Specjalista ds. testów</value>
</data>
<data name="Failed" xml:space="preserve">
<value>Niepowodzenie</value>
</data>
-21
View File
@@ -117,27 +117,6 @@
<resheader name="writer">
<value>System.Resources.ResXResourceWriter, System.Windows.Forms, Version=4.0.0.0, Culture=neutral, PublicKeyToken=b77a5c561934e089</value>
</resheader>
<data name="Administrator" xml:space="preserve">
<value>Administrator</value>
</data>
<data name="Calibration_Specialist" xml:space="preserve">
<value>Calibration Specialist</value>
</data>
<data name="Head_of_Lab" xml:space="preserve">
<value>Head of Lab</value>
</data>
<data name="Maintenance_Specialist" xml:space="preserve">
<value>Maintenance Specialist</value>
</data>
<data name="Metrologist" xml:space="preserve">
<value>Metrologist</value>
</data>
<data name="Tester" xml:space="preserve">
<value>Tester</value>
</data>
<data name="Testing_Specialist" xml:space="preserve">
<value>Testing Specialist</value>
</data>
<data name="Failed" xml:space="preserve">
<value>NOK</value>
</data>
-21
View File
@@ -117,27 +117,6 @@
<resheader name="writer">
<value>System.Resources.ResXResourceWriter, System.Windows.Forms, Version=4.0.0.0, Culture=neutral, PublicKeyToken=b77a5c561934e089</value>
</resheader>
<data name="Administrator" xml:space="preserve">
<value>Администратор</value>
</data>
<data name="Calibration_Specialist" xml:space="preserve">
<value>Специалист по калибровке</value>
</data>
<data name="Head_of_Lab" xml:space="preserve">
<value>Руководитель лаборатории</value>
</data>
<data name="Maintenance_Specialist" xml:space="preserve">
<value>Специалист по техобслуживанию</value>
</data>
<data name="Metrologist" xml:space="preserve">
<value>Метролог</value>
</data>
<data name="Tester" xml:space="preserve">
<value>Контролер</value>
</data>
<data name="Testing_Specialist" xml:space="preserve">
<value>Специалист по тестированию</value>
</data>
<data name="Failed" xml:space="preserve">
<value>NOK</value>
</data>
+125 -124
View File
@@ -1,128 +1,129 @@
<?xml version="1.0" encoding="utf-8"?>
<root>
<!--
Microsoft ResX Schema
<!--
Microsoft ResX Schema
Version 2.0
The primary goals of this format is to allow a simple XML format
that is mostly human readable. The generation and parsing of the
various data types are done through the TypeConverter classes
associated with the data types.
Example:
... ado.net/XML headers & schema ...
<resheader name="resmimetype">text/microsoft-resx</resheader>
<resheader name="version">2.0</resheader>
<resheader name="reader">System.Resources.ResXResourceReader, System.Windows.Forms, ...</resheader>
<resheader name="writer">System.Resources.ResXResourceWriter, System.Windows.Forms, ...</resheader>
<data name="Name1"><value>this is my long string</value><comment>this is a comment</comment></data>
<data name="Color1" type="System.Drawing.Color, System.Drawing">Blue</data>
<data name="Bitmap1" mimetype="application/x-microsoft.net.object.binary.base64">
<value>[base64 mime encoded serialized .NET Framework object]</value>
</data>
<data name="Icon1" type="System.Drawing.Icon, System.Drawing" mimetype="application/x-microsoft.net.object.bytearray.base64">
<value>[base64 mime encoded string representing a byte array form of the .NET Framework object]</value>
<comment>This is a comment</comment>
</data>
There are any number of "resheader" rows that contain simple
name/value pairs.
Each data row contains a name, and value. The row also contains a
type or mimetype. Type corresponds to a .NET class that support
text/value conversion through the TypeConverter architecture.
Classes that don't support this are serialized and stored with the
mimetype set.
The mimetype is used for serialized objects, and tells the
ResXResourceReader how to depersist the object. This is currently not
extensible. For a given mimetype the value must be set accordingly:
Note - application/x-microsoft.net.object.binary.base64 is the format
that the ResXResourceWriter will generate, however the reader can
read any of the formats listed below.
mimetype: application/x-microsoft.net.object.binary.base64
value : The object must be serialized with
: System.Runtime.Serialization.Formatters.Binary.BinaryFormatter
: and then encoded with base64 encoding.
mimetype: application/x-microsoft.net.object.soap.base64
value : The object must be serialized with
: System.Runtime.Serialization.Formatters.Soap.SoapFormatter
: and then encoded with base64 encoding.
Version 1.3
The primary goals of this format is to allow a simple XML format
that is mostly human readable. The generation and parsing of the
various data types are done through the TypeConverter classes
associated with the data types.
Example:
... ado.net/XML headers & schema ...
<resheader name="resmimetype">text/microsoft-resx</resheader>
<resheader name="version">1.3</resheader>
<resheader name="reader">System.Resources.ResXResourceReader, System.Windows.Forms, ...</resheader>
<resheader name="writer">System.Resources.ResXResourceWriter, System.Windows.Forms, ...</resheader>
<data name="Name1">this is my long string</data>
<data name="Color1" type="System.Drawing.Color, System.Drawing">Blue</data>
<data name="Bitmap1" mimetype="application/x-microsoft.net.object.binary.base64">
[base64 mime encoded serialized .NET Framework object]
</data>
<data name="Icon1" type="System.Drawing.Icon, System.Drawing" mimetype="application/x-microsoft.net.object.bytearray.base64">
[base64 mime encoded string representing a byte array form of the .NET Framework object]
</data>
There are any number of "resheader" rows that contain simple
name/value pairs.
Each data row contains a name, and value. The row also contains a
type or mimetype. Type corresponds to a .NET class that support
text/value conversion through the TypeConverter architecture.
Classes that don't support this are serialized and stored with the
mimetype set.
The mimetype is used for serialized objects, and tells the
ResXResourceReader how to depersist the object. This is currently not
extensible. For a given mimetype the value must be set accordingly:
Note - application/x-microsoft.net.object.binary.base64 is the format
that the ResXResourceWriter will generate, however the reader can
read any of the formats listed below.
mimetype: application/x-microsoft.net.object.binary.base64
value : The object must be serialized with
: System.Serialization.Formatters.Binary.BinaryFormatter
: and then encoded with base64 encoding.
mimetype: application/x-microsoft.net.object.soap.base64
value : The object must be serialized with
: System.Runtime.Serialization.Formatters.Soap.SoapFormatter
: and then encoded with base64 encoding.
mimetype: application/x-microsoft.net.object.bytearray.base64
value : The object must be serialized into a byte array
: using a System.ComponentModel.TypeConverter
: and then encoded with base64 encoding.
-->
<xsd:schema id="root" xmlns="" xmlns:xsd="http://www.w3.org/2001/XMLSchema" xmlns:msdata="urn:schemas-microsoft-com:xml-msdata">
<xsd:element name="root" msdata:IsDataSet="true">
<xsd:complexType>
<xsd:choice maxOccurs="unbounded">
<xsd:element name="data">
<xsd:complexType>
<xsd:sequence>
<xsd:element name="value" type="xsd:string" minOccurs="0" msdata:Ordinal="1" />
<xsd:element name="comment" type="xsd:string" minOccurs="0" msdata:Ordinal="2" />
</xsd:sequence>
<xsd:attribute name="name" type="xsd:string" msdata:Ordinal="1" />
<xsd:attribute name="type" type="xsd:string" msdata:Ordinal="3" />
<xsd:attribute name="mimetype" type="xsd:string" msdata:Ordinal="4" />
</xsd:complexType>
</xsd:element>
<xsd:element name="resheader">
<xsd:complexType>
<xsd:sequence>
<xsd:element name="value" type="xsd:string" minOccurs="0" msdata:Ordinal="1" />
</xsd:sequence>
<xsd:attribute name="name" type="xsd:string" use="required" />
</xsd:complexType>
</xsd:element>
</xsd:choice>
</xsd:complexType>
</xsd:element>
</xsd:schema>
<resheader name="resmimetype">
<value>text/microsoft-resx</value>
</resheader>
<resheader name="version">
<value>1.3</value>
</resheader>
<resheader name="reader">
<value>System.Resources.ResXResourceReader, System.Windows.Forms, Version=2.0.3500.0, Culture=neutral, PublicKeyToken=b77a5c561934e089</value>
</resheader>
<resheader name="writer">
<value>System.Resources.ResXResourceWriter, System.Windows.Forms, Version=2.0.3500.0, Culture=neutral, PublicKeyToken=b77a5c561934e089</value>
</resheader>
<data name="Administrator" xml:space="preserve">
<value>管理员</value>
</data>
<data name="Calibration_Specialist" xml:space="preserve">
<value>校准专员</value>
</data>
<data name="Failed" xml:space="preserve">
<value>NOK</value>
</data>
<data name="Head_of_Lab" xml:space="preserve">
<value>实验室负责人</value>
</data>
<data name="Maintenance_Specialist" xml:space="preserve">
<value>维护专员</value>
</data>
<data name="Metrologist" xml:space="preserve">
<value>计量者</value>
</data>
<data name="Passed" xml:space="preserve">
<value>好</value>
</data>
<data name="Tester" xml:space="preserve">
<value>测试仪</value>
</data>
<data name="Testing_Specialist" xml:space="preserve">
<value>测试专员</value>
</data>
mimetype: application/x-microsoft.net.object.bytearray.base64
value : The object must be serialized into a byte array
: using a System.ComponentModel.TypeConverter
: and then encoded with base64 encoding.
-->
<xsd:schema id="root" xmlns="" xmlns:xsd="http://www.w3.org/2001/XMLSchema" xmlns:msdata="urn:schemas-microsoft-com:xml-msdata">
<xsd:import namespace="http://www.w3.org/XML/1998/namespace" />
<xsd:element name="root" msdata:IsDataSet="true">
<xsd:complexType>
<xsd:choice maxOccurs="unbounded">
<xsd:element name="metadata">
<xsd:complexType>
<xsd:sequence>
<xsd:element name="value" type="xsd:string" minOccurs="0" />
</xsd:sequence>
<xsd:attribute name="name" use="required" type="xsd:string" />
<xsd:attribute name="type" type="xsd:string" />
<xsd:attribute name="mimetype" type="xsd:string" />
<xsd:attribute ref="xml:space" />
</xsd:complexType>
</xsd:element>
<xsd:element name="assembly">
<xsd:complexType>
<xsd:attribute name="alias" type="xsd:string" />
<xsd:attribute name="name" type="xsd:string" />
</xsd:complexType>
</xsd:element>
<xsd:element name="data">
<xsd:complexType>
<xsd:sequence>
<xsd:element name="value" type="xsd:string" minOccurs="0" msdata:Ordinal="1" />
<xsd:element name="comment" type="xsd:string" minOccurs="0" msdata:Ordinal="2" />
</xsd:sequence>
<xsd:attribute name="name" type="xsd:string" use="required" msdata:Ordinal="1" />
<xsd:attribute name="type" type="xsd:string" msdata:Ordinal="3" />
<xsd:attribute name="mimetype" type="xsd:string" msdata:Ordinal="4" />
<xsd:attribute ref="xml:space" />
</xsd:complexType>
</xsd:element>
<xsd:element name="resheader">
<xsd:complexType>
<xsd:sequence>
<xsd:element name="value" type="xsd:string" minOccurs="0" msdata:Ordinal="1" />
</xsd:sequence>
<xsd:attribute name="name" type="xsd:string" use="required" />
</xsd:complexType>
</xsd:element>
</xsd:choice>
</xsd:complexType>
</xsd:element>
</xsd:schema>
<resheader name="resmimetype">
<value>text/microsoft-resx</value>
</resheader>
<resheader name="version">
<value>2.0</value>
</resheader>
<resheader name="reader">
<value>System.Resources.ResXResourceReader, System.Windows.Forms, Version=4.0.0.0, Culture=neutral, PublicKeyToken=b77a5c561934e089</value>
</resheader>
<resheader name="writer">
<value>System.Resources.ResXResourceWriter, System.Windows.Forms, Version=4.0.0.0, Culture=neutral, PublicKeyToken=b77a5c561934e089</value>
</resheader>
<data name="Error" xml:space="preserve">
<value>错误 Error</value>
</data>
<data name="Failed" xml:space="preserve">
<value>NOK</value>
</data>
<data name="Passed" xml:space="preserve">
<value>好</value>
</data>
</root>
+170
View File
@@ -82,5 +82,175 @@ namespace Config
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;
}
}
}
}
+66
View File
@@ -0,0 +1,66 @@
<?xml version="1.0" encoding="utf-8"?>
<Project ToolsVersion="4.0" DefaultTargets="Build" xmlns="http://schemas.microsoft.com/developer/msbuild/2003">
<PropertyGroup>
<Configuration Condition=" '$(Configuration)' == '' ">Debug</Configuration>
<Platform Condition=" '$(Platform)' == '' ">x86</Platform>
<ProductVersion>8.0.30703</ProductVersion>
<SchemaVersion>2.0</SchemaVersion>
<ProjectGuid>{D476ABBE-A455-4476-8A8D-3F6151217B51}</ProjectGuid>
<OutputType>Exe</OutputType>
<AppDesignerFolder>Properties</AppDesignerFolder>
<RootNamespace>Decrypt</RootNamespace>
<AssemblyName>Decrypt</AssemblyName>
<TargetFrameworkVersion>v4.7.2</TargetFrameworkVersion>
<TargetFrameworkProfile>
</TargetFrameworkProfile>
<FileAlignment>512</FileAlignment>
</PropertyGroup>
<PropertyGroup Condition=" '$(Configuration)|$(Platform)' == 'Debug|x86' ">
<PlatformTarget>x86</PlatformTarget>
<DebugSymbols>true</DebugSymbols>
<DebugType>full</DebugType>
<Optimize>false</Optimize>
<OutputPath>bin\Debug\</OutputPath>
<DefineConstants>DEBUG;TRACE</DefineConstants>
<ErrorReport>prompt</ErrorReport>
<WarningLevel>4</WarningLevel>
<Prefer32Bit>false</Prefer32Bit>
</PropertyGroup>
<PropertyGroup Condition=" '$(Configuration)|$(Platform)' == 'Release|x86' ">
<PlatformTarget>x86</PlatformTarget>
<DebugType>pdbonly</DebugType>
<Optimize>true</Optimize>
<OutputPath>bin\Release\</OutputPath>
<DefineConstants>TRACE</DefineConstants>
<ErrorReport>prompt</ErrorReport>
<WarningLevel>4</WarningLevel>
<Prefer32Bit>false</Prefer32Bit>
</PropertyGroup>
<PropertyGroup>
<StartupObject>Decrypt.Program</StartupObject>
</PropertyGroup>
<ItemGroup>
<Reference Include="System" />
<Reference Include="System.Core" />
<Reference Include="System.Xml.Linq" />
<Reference Include="System.Data.DataSetExtensions" />
<Reference Include="Microsoft.CSharp" />
<Reference Include="System.Data" />
<Reference Include="System.Xml" />
</ItemGroup>
<ItemGroup>
<Compile Include="Program.cs" />
<Compile Include="Properties\AssemblyInfo.cs" />
</ItemGroup>
<ItemGroup>
<None Include="app.config" />
</ItemGroup>
<Import Project="$(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>
+9
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@@ -0,0 +1,9 @@
<?xml version="1.0" encoding="utf-8"?>
<Project ToolsVersion="4.0" xmlns="http://schemas.microsoft.com/developer/msbuild/2003">
<PropertyGroup Condition="'$(Configuration)|$(Platform)' == 'Debug|x86'">
<StartArguments>config.xml</StartArguments>
</PropertyGroup>
<PropertyGroup Condition="'$(Configuration)|$(Platform)' == 'Release|x86'">
<StartArguments>config.xml</StartArguments>
</PropertyGroup>
</Project>
+96
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@@ -0,0 +1,96 @@
using System;
using System.IO;
using System.Security.Cryptography;
using System.Text;
namespace Decrypt
{
/// <summary>
/// See also:
/// https://www.fluxbytes.com/csharp/encrypt-and-decrypt-files-in-c/
/// </summary>
class Program
{
static byte[] key = new byte[] { 83, 254, 105, 64, 184, 201, 195, 127, 52, 99, 77, 45, 252, 132, 163, 156 };
static byte[] IV = new byte[] { 189, 23, 137, 56, 204, 241, 242, 118, 28, 89, 9, 198, 224, 111, 186, 125 };
static void Main(string[] args)
{
if ((args.Length < 1) || !File.Exists(args[0]))
{
Console.WriteLine("Usage: Decode <file>");
Console.ReadKey();
return;
}
string fileName = args[0];
string intermediateFile = fileName + ".plain"; /// Intermediate file, output of cryptography decoding
string backupFile = fileName + ".bak";
try
{
using (StreamReader reader = new StreamReader(fileName))
{
if (reader.ReadLine().StartsWith("<?xml version="))
{
Console.WriteLine(string.Format("File {0} is not encrypted.", fileName));
Console.ReadKey();
return;
}
}
bool successful = false;
using (RijndaelManaged aes = new RijndaelManaged { Padding = PaddingMode.Zeros })
{
using (FileStream fsCrypt = new FileStream(fileName, FileMode.Open))
{
using (FileStream fsOut = new FileStream(intermediateFile, FileMode.Create))
{
using (ICryptoTransform decryptor = aes.CreateDecryptor(key, IV))
{
using (CryptoStream cs = new CryptoStream(fsCrypt, decryptor, CryptoStreamMode.Read))
{
int data;
while ((data = cs.ReadByte()) != -1)
{
if (data != 0) fsOut.WriteByte((byte)data);
}
successful = true;
}
}
}
}
}
if (successful)
{
/// File decryption successfuly completed => rotate files
if (File.Exists(backupFile)) File.Delete(backupFile);
File.Move(fileName, backupFile);
File.Move(intermediateFile, fileName);
return;
}
else
{
Failed(fileName, intermediateFile, "");
return;
}
}
catch (Exception e)
{
Failed(fileName, intermediateFile, e.Message);
return;
}
}
static void Failed(string fileName, string toBeDeleted, string message)
{
if (File.Exists(toBeDeleted))
{
File.Delete(toBeDeleted);
}
Console.WriteLine(string.Format("Decryption of file {0} failed: {1}", fileName, message));
Console.ReadKey();
}
}
}
+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("Decrypt")]
[assembly: AssemblyDescription("")]
[assembly: AssemblyConfiguration("")]
[assembly: AssemblyCompany("")]
[assembly: AssemblyProduct("Decrypt")]
[assembly: AssemblyCopyright("Copyright © 2019")]
[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("c17ec788-0e12-4f9c-aadf-ea4e83a9f373")]
// 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("1.0.1.0")]
[assembly: AssemblyFileVersion("1.0.1.0")]
+3
View File
@@ -0,0 +1,3 @@
<?xml version="1.0"?>
<configuration>
<startup><supportedRuntime version="v4.0" sku=".NETFramework,Version=v4.7.2"/></startup></configuration>
+3 -1
View File
@@ -10,7 +10,7 @@
<AppDesignerFolder>Properties</AppDesignerFolder>
<RootNamespace>DeviceTest</RootNamespace>
<AssemblyName>DeviceTest</AssemblyName>
<TargetFrameworkVersion>v4.0</TargetFrameworkVersion>
<TargetFrameworkVersion>v4.7.2</TargetFrameworkVersion>
<TargetFrameworkProfile>
</TargetFrameworkProfile>
<FileAlignment>512</FileAlignment>
@@ -24,6 +24,7 @@
<DefineConstants>DEBUG;TRACE</DefineConstants>
<ErrorReport>prompt</ErrorReport>
<WarningLevel>4</WarningLevel>
<Prefer32Bit>false</Prefer32Bit>
</PropertyGroup>
<PropertyGroup Condition=" '$(Configuration)|$(Platform)' == 'Release|x86' ">
<PlatformTarget>x86</PlatformTarget>
@@ -33,6 +34,7 @@
<DefineConstants>TRACE</DefineConstants>
<ErrorReport>prompt</ErrorReport>
<WarningLevel>4</WarningLevel>
<Prefer32Bit>false</Prefer32Bit>
</PropertyGroup>
<PropertyGroup>
<StartupObject>DeviceTest.Program</StartupObject>
+54 -13
View File
@@ -7,7 +7,6 @@ using System.Threading;
using System.Windows.Forms;
using TBF.BenchControl;
using TBF.BenchControl.Generic;
using TBF.BenchControl.GenericDevices;
using System.Xml.Serialization;
@@ -27,11 +26,11 @@ namespace DeviceTest
IComponentCfg component2Cfg;
IComponentCfg component3Cfg;
static IList<TBF.BenchControl.Generic.IDevice> tbfDevices;
static IList<TBF.BenchControl.Generic.IComponent> tbfComponents;
static TBF.BenchControl.Generic.IComponent tbfComponent1forOp;
static TBF.BenchControl.Generic.IComponent tbfComponent2forOp;
static TBF.BenchControl.Generic.IComponent tbfComponent3forOp;
static IList<IDevice> tbfDevices;
static IList<IComponent> tbfComponents;
static IComponent tbfComponent1forOp;
static IComponent tbfComponent2forOp;
static IComponent tbfComponent3forOp;
static Thread workerThread;
static bool workerThreadRunning;
@@ -276,7 +275,14 @@ namespace DeviceTest
radioButton3.Text = "SelectTank 3";
radioButton4.Text = "SelectTank -";
}
else radioButton1.Text = "spare";
else if (className == "Modbus.QuidoRS")
{
radioButton1.Text = "Close relay 1";
radioButton2.Text = "Close relay 2";
radioButton3.Text = "Close relay 3";
radioButton4.Text = "Open all relays";
}
else radioButton1.Text = "spare";
}
///
void UpdateOperations2(string className)
@@ -296,7 +302,14 @@ namespace DeviceTest
radioButton23.Text = "SelectTank 3";
radioButton24.Text = "SelectTank -";
}
else radioButton21.Text = "spare";
else if (className == "Modbus.QuidoRS")
{
radioButton21.Text = "Close relay 1";
radioButton22.Text = "Close relay 2";
radioButton23.Text = "Close relay 3";
radioButton24.Text = "Open all relays";
}
else radioButton21.Text = "spare";
}
///
void UpdateOperations3(string className)
@@ -316,7 +329,14 @@ namespace DeviceTest
radioButton33.Text = "SelectTank 3";
radioButton34.Text = "SelectTank -";
}
else radioButton31.Text = "spare";
else if (className == "Modbus.QuidoRS")
{
radioButton31.Text = "Close relay 1";
radioButton32.Text = "Close relay 2";
radioButton33.Text = "Close relay 3";
radioButton34.Text = "Open all relays";
}
else radioButton31.Text = "spare";
}
@@ -405,7 +425,7 @@ namespace DeviceTest
cfgControl.Config = parentCfg;
cfgControl.Config.ItemNr = 0;
TBF.ComponentParametersDlg cfgForm = new TBF.ComponentParametersDlg();
ComponentParametersDlg cfgForm = new ComponentParametersDlg();
cfgForm.TbfComponents = new List<Config.Entities.Component>();
cfgForm.ComponentCfgCtrl = cfgControl;
@@ -434,7 +454,7 @@ namespace DeviceTest
cfgControl.Config = component1Cfg;
cfgControl.Config.ItemNr = 1;
TBF.ComponentParametersDlg cfgForm = new TBF.ComponentParametersDlg();
ComponentParametersDlg cfgForm = new ComponentParametersDlg();
///
IList<Config.Entities.Component> compEntities = new List<Config.Entities.Component>();
if (parentFactory != null && parentCfg != null) compEntities.Add(parentCfg.CreateDbEntity());
@@ -468,7 +488,7 @@ namespace DeviceTest
cfgControl.Config = component2Cfg;
cfgControl.Config.ItemNr = 1;
TBF.ComponentParametersDlg cfgForm = new TBF.ComponentParametersDlg();
ComponentParametersDlg cfgForm = new ComponentParametersDlg();
///
IList<Config.Entities.Component> compEntities = new List<Config.Entities.Component>();
if (parentFactory != null && parentCfg != null) compEntities.Add(parentCfg.CreateDbEntity());
@@ -503,7 +523,7 @@ namespace DeviceTest
cfgControl.Config = component3Cfg;
cfgControl.Config.ItemNr = 1;
TBF.ComponentParametersDlg cfgForm = new TBF.ComponentParametersDlg();
ComponentParametersDlg cfgForm = new ComponentParametersDlg();
///
IList<Config.Entities.Component> compEntities = new List<Config.Entities.Component>();
if (parentFactory != null && parentCfg != null) compEntities.Add(parentCfg.CreateDbEntity());
@@ -672,6 +692,13 @@ namespace DeviceTest
//operation3 = (tbfComponent1forOp as TBF.BenchControl.Modbus.TankSelector.TankSelector).SelectTankOp(3);
//operation4 = (tbfComponent1forOp as TBF.BenchControl.Modbus.TankSelector.TankSelector).SelectTankOp(0);
}
else if (tbfComponent3forOp is TBF.BenchControl.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);
}
if (tbfComponent2forOp is TBF.BenchControl.Modbus.PressureMeter.Meret.PressureMeter)
@@ -704,6 +731,13 @@ namespace DeviceTest
//operation23 = (tbfComponent2forOp as TBF.BenchControl.Modbus.TankSelector.TankSelector).SelectTankOp(3);
//operation24 = (tbfComponent2forOp as TBF.BenchControl.Modbus.TankSelector.TankSelector).SelectTankOp(0);
}
else if (tbfComponent3forOp is TBF.BenchControl.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);
}
if (tbfComponent3forOp is TBF.BenchControl.Modbus.PressureMeter.Meret.PressureMeter)
@@ -736,6 +770,13 @@ namespace DeviceTest
//operation33 = (tbfComponent3forOp as TBF.BenchControl.Modbus.TankSelector.TankSelector).SelectTankOp(3);
//operation34 = (tbfComponent3forOp as TBF.BenchControl.Modbus.TankSelector.TankSelector).SelectTankOp(0);
}
else if (tbfComponent3forOp is TBF.BenchControl.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);
}
int time = 0;
+1 -1
View File
@@ -12,7 +12,7 @@ namespace DeviceTest.Properties {
[global::System.Runtime.CompilerServices.CompilerGeneratedAttribute()]
[global::System.CodeDom.Compiler.GeneratedCodeAttribute("Microsoft.VisualStudio.Editors.SettingsDesigner.SettingsSingleFileGenerator", "10.0.0.0")]
[global::System.CodeDom.Compiler.GeneratedCodeAttribute("Microsoft.VisualStudio.Editors.SettingsDesigner.SettingsSingleFileGenerator", "11.0.0.0")]
internal sealed partial class Settings : global::System.Configuration.ApplicationSettingsBase {
private static Settings defaultInstance = ((Settings)(global::System.Configuration.ApplicationSettingsBase.Synchronized(new Settings())));
+1 -1
View File
@@ -1,3 +1,3 @@
<?xml version="1.0"?>
<configuration>
<startup><supportedRuntime version="v4.0" sku=".NETFramework,Version=v4.0"/></startup></configuration>
<startup><supportedRuntime version="v4.0" sku=".NETFramework,Version=v4.7.2"/></startup></configuration>
+7 -4
View File
@@ -1,4 +1,4 @@
<?xml version="1.0" encoding="utf-8"?>
<?xml version="1.0" encoding="utf-8"?>
<Project ToolsVersion="4.0" DefaultTargets="Build" xmlns="http://schemas.microsoft.com/developer/msbuild/2003">
<PropertyGroup>
<Configuration Condition=" '$(Configuration)' == '' ">Debug</Configuration>
@@ -10,9 +10,10 @@
<AppDesignerFolder>Properties</AppDesignerFolder>
<RootNamespace>Dirichlet.Numerics</RootNamespace>
<AssemblyName>Dirichlet.Numerics</AssemblyName>
<TargetFrameworkVersion>v4.0</TargetFrameworkVersion>
<TargetFrameworkVersion>v4.7.2</TargetFrameworkVersion>
<FileAlignment>512</FileAlignment>
<TargetFrameworkProfile>Client</TargetFrameworkProfile>
<TargetFrameworkProfile>
</TargetFrameworkProfile>
</PropertyGroup>
<PropertyGroup Condition=" '$(Configuration)|$(Platform)' == 'Debug|AnyCPU' ">
<DebugSymbols>true</DebugSymbols>
@@ -22,6 +23,7 @@
<DefineConstants>DEBUG;TRACE</DefineConstants>
<ErrorReport>prompt</ErrorReport>
<WarningLevel>4</WarningLevel>
<Prefer32Bit>false</Prefer32Bit>
</PropertyGroup>
<PropertyGroup Condition=" '$(Configuration)|$(Platform)' == 'Release|AnyCPU' ">
<DebugType>pdbonly</DebugType>
@@ -30,6 +32,7 @@
<DefineConstants>TRACE</DefineConstants>
<ErrorReport>prompt</ErrorReport>
<WarningLevel>4</WarningLevel>
<Prefer32Bit>false</Prefer32Bit>
</PropertyGroup>
<ItemGroup>
<Reference Include="System" />
@@ -48,4 +51,4 @@
<Target Name="AfterBuild">
</Target>
-->
</Project>
</Project>
+66
View File
@@ -0,0 +1,66 @@
<?xml version="1.0" encoding="utf-8"?>
<Project ToolsVersion="4.0" DefaultTargets="Build" xmlns="http://schemas.microsoft.com/developer/msbuild/2003">
<PropertyGroup>
<Configuration Condition=" '$(Configuration)' == '' ">Debug</Configuration>
<Platform Condition=" '$(Platform)' == '' ">x86</Platform>
<ProductVersion>8.0.30703</ProductVersion>
<SchemaVersion>2.0</SchemaVersion>
<ProjectGuid>{DA9B09F3-A99D-4883-A954-537560453674}</ProjectGuid>
<OutputType>Exe</OutputType>
<AppDesignerFolder>Properties</AppDesignerFolder>
<RootNamespace>Encrypt</RootNamespace>
<AssemblyName>Encrypt</AssemblyName>
<TargetFrameworkVersion>v4.7.2</TargetFrameworkVersion>
<TargetFrameworkProfile>
</TargetFrameworkProfile>
<FileAlignment>512</FileAlignment>
</PropertyGroup>
<PropertyGroup Condition=" '$(Configuration)|$(Platform)' == 'Debug|x86' ">
<PlatformTarget>x86</PlatformTarget>
<DebugSymbols>true</DebugSymbols>
<DebugType>full</DebugType>
<Optimize>false</Optimize>
<OutputPath>bin\Debug\</OutputPath>
<DefineConstants>DEBUG;TRACE</DefineConstants>
<ErrorReport>prompt</ErrorReport>
<WarningLevel>4</WarningLevel>
<Prefer32Bit>false</Prefer32Bit>
</PropertyGroup>
<PropertyGroup Condition=" '$(Configuration)|$(Platform)' == 'Release|x86' ">
<PlatformTarget>x86</PlatformTarget>
<DebugType>pdbonly</DebugType>
<Optimize>true</Optimize>
<OutputPath>bin\Release\</OutputPath>
<DefineConstants>TRACE</DefineConstants>
<ErrorReport>prompt</ErrorReport>
<WarningLevel>4</WarningLevel>
<Prefer32Bit>false</Prefer32Bit>
</PropertyGroup>
<PropertyGroup>
<StartupObject>Encrypt.Program</StartupObject>
</PropertyGroup>
<ItemGroup>
<Reference Include="System" />
<Reference Include="System.Core" />
<Reference Include="System.Xml.Linq" />
<Reference Include="System.Data.DataSetExtensions" />
<Reference Include="Microsoft.CSharp" />
<Reference Include="System.Data" />
<Reference Include="System.Xml" />
</ItemGroup>
<ItemGroup>
<Compile Include="Program.cs" />
<Compile Include="Properties\AssemblyInfo.cs" />
</ItemGroup>
<ItemGroup>
<None Include="app.config" />
</ItemGroup>
<Import Project="$(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>
+93
View File
@@ -0,0 +1,93 @@
using System;
using System.IO;
using System.Security.Cryptography;
using System.Text;
namespace Encrypt
{
/// <summary>
/// See also:
/// https://www.fluxbytes.com/csharp/encrypt-and-decrypt-files-in-c/
/// </summary>
class Program
{
static byte[] key = new byte[] { 83, 254, 105, 64, 184, 201, 195, 127, 52, 99, 77, 45, 252, 132, 163, 156 };
static byte[] IV = new byte[] { 189, 23, 137, 56, 204, 241, 242, 118, 28, 89, 9, 198, 224, 111, 186, 125 };
static void Main(string[] args)
{
if ((args.Length < 1) || !File.Exists(args[0]))
{
Console.WriteLine("Usage: Encode <file>");
Console.ReadKey();
return;
}
string fileName = args[0];
string intermediateFile = fileName + ".encrypted"; /// Intermediate file, output of cryptography encoding
string backupFile = fileName + ".bak";
try
{
using (StreamReader reader = new StreamReader(fileName))
{
if (!reader.ReadLine().StartsWith("<?xml version="))
{
Console.WriteLine(string.Format("File {0} is already encrypted.", fileName));
Console.ReadKey();
return;
}
}
bool successful = false;
using (RijndaelManaged aes = new RijndaelManaged { Padding = PaddingMode.Zeros })
{
using (FileStream fsCrypt = new FileStream(intermediateFile, FileMode.Create))
{
using (ICryptoTransform encryptor = aes.CreateEncryptor(key, IV))
{
using (CryptoStream cs = new CryptoStream(fsCrypt, encryptor, CryptoStreamMode.Write))
{
using (FileStream fsIn = new FileStream(fileName, FileMode.Open))
{
int data;
while ((data = fsIn.ReadByte()) != -1) cs.WriteByte((byte)data);
successful = true;
}
}
}
}
}
if (successful)
{
/// File encryption successfuly completed => rotate files
if (File.Exists(backupFile)) File.Delete(backupFile);
File.Move(fileName, backupFile);
File.Move(intermediateFile, fileName);
return;
}
else
{
Failed(fileName, intermediateFile);
return;
}
}
catch (Exception)
{
Failed(fileName, intermediateFile);
return;
}
}
static void Failed(string fileName, string toBeDeleted)
{
if (File.Exists(toBeDeleted))
{
File.Delete(toBeDeleted);
}
Console.WriteLine(string.Format("Encryption of file {0} failed.", fileName));
Console.ReadKey();
}
}
}
+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("Encrypt")]
[assembly: AssemblyDescription("")]
[assembly: AssemblyConfiguration("")]
[assembly: AssemblyCompany("")]
[assembly: AssemblyProduct("Encrypt")]
[assembly: AssemblyCopyright("Copyright © 2019")]
[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("0f602531-6f1f-416e-af4d-9242855715a8")]
// 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")]
+3
View File
@@ -0,0 +1,3 @@
<?xml version="1.0"?>
<configuration>
<startup><supportedRuntime version="v4.0" sku=".NETFramework,Version=v4.7.2"/></startup></configuration>
+5 -1
View File
@@ -28,7 +28,7 @@
<UpgradeBackupLocation>
</UpgradeBackupLocation>
<OldToolsVersion>3.5</OldToolsVersion>
<TargetFrameworkVersion>v4.0</TargetFrameworkVersion>
<TargetFrameworkVersion>v4.7.2</TargetFrameworkVersion>
<PublishUrl>publish\</PublishUrl>
<Install>true</Install>
<InstallFrom>Disk</InstallFrom>
@@ -66,6 +66,7 @@
<RemoveIntegerChecks>false</RemoveIntegerChecks>
<TreatWarningsAsErrors>false</TreatWarningsAsErrors>
<WarningLevel>4</WarningLevel>
<Prefer32Bit>false</Prefer32Bit>
</PropertyGroup>
<PropertyGroup Condition=" '$(Configuration)|$(Platform)' == 'Release|AnyCPU' ">
<OutputPath>bin\Release\</OutputPath>
@@ -87,6 +88,7 @@
<RemoveIntegerChecks>false</RemoveIntegerChecks>
<TreatWarningsAsErrors>false</TreatWarningsAsErrors>
<WarningLevel>4</WarningLevel>
<Prefer32Bit>false</Prefer32Bit>
</PropertyGroup>
<PropertyGroup Condition="'$(Configuration)|$(Platform)' == 'Debug|x86'">
<DebugSymbols>true</DebugSymbols>
@@ -99,6 +101,7 @@
<CodeAnalysisIgnoreBuiltInRuleSets>true</CodeAnalysisIgnoreBuiltInRuleSets>
<CodeAnalysisIgnoreBuiltInRules>true</CodeAnalysisIgnoreBuiltInRules>
<CodeAnalysisFailOnMissingRules>false</CodeAnalysisFailOnMissingRules>
<Prefer32Bit>false</Prefer32Bit>
</PropertyGroup>
<PropertyGroup Condition="'$(Configuration)|$(Platform)' == 'Release|x86'">
<OutputPath>bin\x86\Release\</OutputPath>
@@ -110,6 +113,7 @@
<PlatformTarget>x86</PlatformTarget>
<CodeAnalysisIgnoreBuiltInRuleSets>false</CodeAnalysisIgnoreBuiltInRuleSets>
<CodeAnalysisIgnoreBuiltInRules>false</CodeAnalysisIgnoreBuiltInRules>
<Prefer32Bit>false</Prefer32Bit>
</PropertyGroup>
<ItemGroup>
<Reference Include="System">
+51
View File
@@ -0,0 +1,51 @@
using System.Reflection;
// 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("GenCode128")]
[assembly: AssemblyDescription("GenCode128")]
[assembly: AssemblyConfiguration("")]
[assembly: AssemblyCompany("Chris Wuestefeld")]
[assembly: AssemblyProduct("")]
[assembly: AssemblyCopyright("2006 Chris Wuestefeld")]
[assembly: AssemblyTrademark("")]
[assembly: AssemblyCulture("")]
// 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 Revision and Build Numbers
// by using the '*' as shown below:
[assembly: AssemblyVersion("1.0.0.0")]
// In order to sign your assembly you must specify a key to use. Refer to the
// Microsoft .NET Framework documentation for more information on assembly signing.
//
// Use the attributes below to control which key is used for signing.
//
// Notes:
// (*) If no key is specified, the assembly is not signed.
// (*) KeyName refers to a key that has been installed in the Crypto Service
// Provider (CSP) on your machine. KeyFile refers to a file which contains
// a key.
// (*) If the KeyFile and the KeyName values are both specified, the
// following processing occurs:
// (1) If the KeyName can be found in the CSP, that key is used.
// (2) If the KeyName does not exist and the KeyFile does exist, the key
// in the KeyFile is installed into the CSP and used.
// (*) In order to create a KeyFile, you can use the sn.exe (Strong Name) utility.
// When specifying the KeyFile, the location of the KeyFile should be
// relative to the project output directory which is
// %Project Directory%\obj\<configuration>. For example, if your KeyFile is
// located in the project directory, you would specify the AssemblyKeyFile
// attribute as [assembly: AssemblyKeyFile("..\\..\\mykey.snk")]
// (*) Delay Signing is an advanced option - see the Microsoft .NET Framework
// documentation for more information on this.
[assembly: AssemblyDelaySign(false)]
[assembly: AssemblyKeyFile("")]
[assembly: AssemblyKeyName("")]
+139
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namespace GenCode128
{
/// <summary>
/// Static tools for determining codes for individual characters in the content
/// </summary>
public static class Code128Code
{
private const int CShift = 98;
private const int CCodeA = 101;
private const int CCodeB = 100;
private const int CStartA = 103;
private const int CStartB = 104;
private const int CStop = 106;
/// <summary>
/// Indicates which code sets can represent a character -- CodeA, CodeB, or either
/// </summary>
public enum CodeSetAllowed
{
CodeA,
CodeB,
CodeAorB
}
/// <summary>
/// Get the Code128 code value(s) to represent an ASCII character, with
/// optional look-ahead for length optimization
/// </summary>
/// <param name="charAscii">The ASCII value of the character to translate</param>
/// <param name="lookAheadAscii">The next character in sequence (or -1 if none)</param>
/// <param name="currentCodeSet">The current codeset, that the returned codes need to follow;
/// if the returned codes change that, then this value will be changed to reflect it</param>
/// <returns>An array of integers representing the codes that need to be output to produce the
/// given character</returns>
public static int[] CodesForChar(int charAscii, int lookAheadAscii, ref CodeSet currentCodeSet)
{
int[] result;
var shifter = -1;
if (!CharCompatibleWithCodeset(charAscii, currentCodeSet))
{
// if we have a lookahead character AND if the next character is ALSO not compatible
if ((lookAheadAscii != -1) && !CharCompatibleWithCodeset(lookAheadAscii, currentCodeSet))
{
// we need to switch code sets
switch (currentCodeSet)
{
case CodeSet.CodeA:
shifter = CCodeB;
currentCodeSet = CodeSet.CodeB;
break;
case CodeSet.CodeB:
shifter = CCodeA;
currentCodeSet = CodeSet.CodeA;
break;
}
}
else
{
// no need to switch code sets, a temporary SHIFT will suffice
shifter = CShift;
}
}
if (shifter != -1)
{
result = new int[2];
result[0] = shifter;
result[1] = CodeValueForChar(charAscii);
}
else
{
result = new int[1];
result[0] = CodeValueForChar(charAscii);
}
return result;
}
/// <summary>
/// Tells us which codesets a given character value is allowed in
/// </summary>
/// <param name="charAscii">ASCII value of character to look at</param>
/// <returns>Which codeset(s) can be used to represent this character</returns>
public static CodeSetAllowed CodesetAllowedForChar(int charAscii)
{
if (charAscii >= 32 && charAscii <= 95)
{
return CodeSetAllowed.CodeAorB;
}
else
{
return charAscii < 32 ? CodeSetAllowed.CodeA : CodeSetAllowed.CodeB;
}
}
/// <summary>
/// Determine if a character can be represented in a given codeset
/// </summary>
/// <param name="charAscii">character to check for</param>
/// <param name="currentCodeSet">codeset context to test</param>
/// <returns>true if the codeset contains a representation for the ASCII character</returns>
public static bool CharCompatibleWithCodeset(int charAscii, CodeSet currentCodeSet)
{
var csa = CodesetAllowedForChar(charAscii);
return csa == CodeSetAllowed.CodeAorB || (csa == CodeSetAllowed.CodeA && currentCodeSet == CodeSet.CodeA)
|| (csa == CodeSetAllowed.CodeB && currentCodeSet == CodeSet.CodeB);
}
/// <summary>
/// Gets the integer code128 code value for a character (assuming the appropriate code set)
/// </summary>
/// <param name="charAscii">character to convert</param>
/// <returns>code128 symbol value for the character</returns>
public static int CodeValueForChar(int charAscii)
{
return charAscii >= 32 ? charAscii - 32 : charAscii + 64;
}
/// <summary>
/// Return the appropriate START code depending on the codeset we want to be in
/// </summary>
/// <param name="cs">The codeset you want to start in</param>
/// <returns>The code128 code to start a barcode in that codeset</returns>
public static int StartCodeForCodeSet(CodeSet cs)
{
return cs == CodeSet.CodeA ? CStartA : CStartB;
}
/// <summary>
/// Return the Code128 stop code
/// </summary>
/// <returns>the stop code</returns>
public static int StopCode()
{
return CStop;
}
}
}
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namespace GenCode128
{
using System.Collections;
using System.Text;
/// <summary>
/// Represent the set of code values to be output into barcode form
/// </summary>
public class Code128Content
{
/// <summary>
/// Create content based on a string of ASCII data
/// </summary>
/// <param name="asciiData">the string that should be represented</param>
public Code128Content(string asciiData)
{
this.Codes = this.StringToCode128(asciiData);
}
/// <summary>
/// Provides the Code128 code values representing the object's string
/// </summary>
public int[] Codes
{
get { return codes; }
set { codes = value; }
}
int[] codes;
/// <summary>
/// Transform the string into integers representing the Code128 codes
/// necessary to represent it
/// </summary>
/// <param name="asciiData">String to be encoded</param>
/// <returns>Code128 representation</returns>
private int[] StringToCode128(string asciiData)
{
// turn the string into ascii byte data
var asciiBytes = Encoding.ASCII.GetBytes(asciiData);
// decide which codeset to start with
var csa1 = asciiBytes.Length > 0
? Code128Code.CodesetAllowedForChar(asciiBytes[0])
: Code128Code.CodeSetAllowed.CodeAorB;
var csa2 = asciiBytes.Length > 1
? Code128Code.CodesetAllowedForChar(asciiBytes[1])
: Code128Code.CodeSetAllowed.CodeAorB;
var currentCodeSet = this.GetBestStartSet(csa1, csa2);
// set up the beginning of the barcode
// assume no codeset changes, account for start, checksum, and stop
var codes = new ArrayList(asciiBytes.Length + 3) { Code128Code.StartCodeForCodeSet(currentCodeSet) };
// add the codes for each character in the string
for (var i = 0; i < asciiBytes.Length; i++)
{
int thischar = asciiBytes[i];
var nextchar = asciiBytes.Length > i + 1 ? asciiBytes[i + 1] : -1;
codes.AddRange(Code128Code.CodesForChar(thischar, nextchar, ref currentCodeSet));
}
// calculate the check digit
var checksum = (int)codes[0];
for (var i = 1; i < codes.Count; i++)
{
checksum += i * (int)codes[i];
}
codes.Add(checksum % 103);
codes.Add(Code128Code.StopCode());
var result = codes.ToArray(typeof(int)) as int[];
return result;
}
/// <summary>
/// Determines the best starting code set based on the the first two
/// characters of the string to be encoded
/// </summary>
/// <param name="csa1">First character of input string</param>
/// <param name="csa2">Second character of input string</param>
/// <returns>The codeset determined to be best to start with</returns>
private CodeSet GetBestStartSet(Code128Code.CodeSetAllowed csa1, Code128Code.CodeSetAllowed csa2)
{
var vote = 0;
vote += csa1 == Code128Code.CodeSetAllowed.CodeA ? 1 : 0;
vote += csa1 == Code128Code.CodeSetAllowed.CodeB ? -1 : 0;
vote += csa2 == Code128Code.CodeSetAllowed.CodeA ? 1 : 0;
vote += csa2 == Code128Code.CodeSetAllowed.CodeB ? -1 : 0;
return vote > 0 ? CodeSet.CodeA : CodeSet.CodeB; // ties go to codeB due to my own prejudices
}
}
}
+188
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namespace GenCode128
{
using System;
using System.Drawing;
/// <summary>
/// Summary description for Code128Rendering.
/// </summary>
public static class Code128Rendering
{
private const int CQuietWidth = 10;
// Code patterns:
// in principle these rows should each have 6 elements
// however, the last one -- STOP -- has 7. The cost of the
// extra integers is trivial, and this lets the code flow
// much more elegantly
private static readonly int[,] CPatterns =
{
{ 2, 1, 2, 2, 2, 2, 0, 0 }, // 0
{ 2, 2, 2, 1, 2, 2, 0, 0 }, // 1
{ 2, 2, 2, 2, 2, 1, 0, 0 }, // 2
{ 1, 2, 1, 2, 2, 3, 0, 0 }, // 3
{ 1, 2, 1, 3, 2, 2, 0, 0 }, // 4
{ 1, 3, 1, 2, 2, 2, 0, 0 }, // 5
{ 1, 2, 2, 2, 1, 3, 0, 0 }, // 6
{ 1, 2, 2, 3, 1, 2, 0, 0 }, // 7
{ 1, 3, 2, 2, 1, 2, 0, 0 }, // 8
{ 2, 2, 1, 2, 1, 3, 0, 0 }, // 9
{ 2, 2, 1, 3, 1, 2, 0, 0 }, // 10
{ 2, 3, 1, 2, 1, 2, 0, 0 }, // 11
{ 1, 1, 2, 2, 3, 2, 0, 0 }, // 12
{ 1, 2, 2, 1, 3, 2, 0, 0 }, // 13
{ 1, 2, 2, 2, 3, 1, 0, 0 }, // 14
{ 1, 1, 3, 2, 2, 2, 0, 0 }, // 15
{ 1, 2, 3, 1, 2, 2, 0, 0 }, // 16
{ 1, 2, 3, 2, 2, 1, 0, 0 }, // 17
{ 2, 2, 3, 2, 1, 1, 0, 0 }, // 18
{ 2, 2, 1, 1, 3, 2, 0, 0 }, // 19
{ 2, 2, 1, 2, 3, 1, 0, 0 }, // 20
{ 2, 1, 3, 2, 1, 2, 0, 0 }, // 21
{ 2, 2, 3, 1, 1, 2, 0, 0 }, // 22
{ 3, 1, 2, 1, 3, 1, 0, 0 }, // 23
{ 3, 1, 1, 2, 2, 2, 0, 0 }, // 24
{ 3, 2, 1, 1, 2, 2, 0, 0 }, // 25
{ 3, 2, 1, 2, 2, 1, 0, 0 }, // 26
{ 3, 1, 2, 2, 1, 2, 0, 0 }, // 27
{ 3, 2, 2, 1, 1, 2, 0, 0 }, // 28
{ 3, 2, 2, 2, 1, 1, 0, 0 }, // 29
{ 2, 1, 2, 1, 2, 3, 0, 0 }, // 30
{ 2, 1, 2, 3, 2, 1, 0, 0 }, // 31
{ 2, 3, 2, 1, 2, 1, 0, 0 }, // 32
{ 1, 1, 1, 3, 2, 3, 0, 0 }, // 33
{ 1, 3, 1, 1, 2, 3, 0, 0 }, // 34
{ 1, 3, 1, 3, 2, 1, 0, 0 }, // 35
{ 1, 1, 2, 3, 1, 3, 0, 0 }, // 36
{ 1, 3, 2, 1, 1, 3, 0, 0 }, // 37
{ 1, 3, 2, 3, 1, 1, 0, 0 }, // 38
{ 2, 1, 1, 3, 1, 3, 0, 0 }, // 39
{ 2, 3, 1, 1, 1, 3, 0, 0 }, // 40
{ 2, 3, 1, 3, 1, 1, 0, 0 }, // 41
{ 1, 1, 2, 1, 3, 3, 0, 0 }, // 42
{ 1, 1, 2, 3, 3, 1, 0, 0 }, // 43
{ 1, 3, 2, 1, 3, 1, 0, 0 }, // 44
{ 1, 1, 3, 1, 2, 3, 0, 0 }, // 45
{ 1, 1, 3, 3, 2, 1, 0, 0 }, // 46
{ 1, 3, 3, 1, 2, 1, 0, 0 }, // 47
{ 3, 1, 3, 1, 2, 1, 0, 0 }, // 48
{ 2, 1, 1, 3, 3, 1, 0, 0 }, // 49
{ 2, 3, 1, 1, 3, 1, 0, 0 }, // 50
{ 2, 1, 3, 1, 1, 3, 0, 0 }, // 51
{ 2, 1, 3, 3, 1, 1, 0, 0 }, // 52
{ 2, 1, 3, 1, 3, 1, 0, 0 }, // 53
{ 3, 1, 1, 1, 2, 3, 0, 0 }, // 54
{ 3, 1, 1, 3, 2, 1, 0, 0 }, // 55
{ 3, 3, 1, 1, 2, 1, 0, 0 }, // 56
{ 3, 1, 2, 1, 1, 3, 0, 0 }, // 57
{ 3, 1, 2, 3, 1, 1, 0, 0 }, // 58
{ 3, 3, 2, 1, 1, 1, 0, 0 }, // 59
{ 3, 1, 4, 1, 1, 1, 0, 0 }, // 60
{ 2, 2, 1, 4, 1, 1, 0, 0 }, // 61
{ 4, 3, 1, 1, 1, 1, 0, 0 }, // 62
{ 1, 1, 1, 2, 2, 4, 0, 0 }, // 63
{ 1, 1, 1, 4, 2, 2, 0, 0 }, // 64
{ 1, 2, 1, 1, 2, 4, 0, 0 }, // 65
{ 1, 2, 1, 4, 2, 1, 0, 0 }, // 66
{ 1, 4, 1, 1, 2, 2, 0, 0 }, // 67
{ 1, 4, 1, 2, 2, 1, 0, 0 }, // 68
{ 1, 1, 2, 2, 1, 4, 0, 0 }, // 69
{ 1, 1, 2, 4, 1, 2, 0, 0 }, // 70
{ 1, 2, 2, 1, 1, 4, 0, 0 }, // 71
{ 1, 2, 2, 4, 1, 1, 0, 0 }, // 72
{ 1, 4, 2, 1, 1, 2, 0, 0 }, // 73
{ 1, 4, 2, 2, 1, 1, 0, 0 }, // 74
{ 2, 4, 1, 2, 1, 1, 0, 0 }, // 75
{ 2, 2, 1, 1, 1, 4, 0, 0 }, // 76
{ 4, 1, 3, 1, 1, 1, 0, 0 }, // 77
{ 2, 4, 1, 1, 1, 2, 0, 0 }, // 78
{ 1, 3, 4, 1, 1, 1, 0, 0 }, // 79
{ 1, 1, 1, 2, 4, 2, 0, 0 }, // 80
{ 1, 2, 1, 1, 4, 2, 0, 0 }, // 81
{ 1, 2, 1, 2, 4, 1, 0, 0 }, // 82
{ 1, 1, 4, 2, 1, 2, 0, 0 }, // 83
{ 1, 2, 4, 1, 1, 2, 0, 0 }, // 84
{ 1, 2, 4, 2, 1, 1, 0, 0 }, // 85
{ 4, 1, 1, 2, 1, 2, 0, 0 }, // 86
{ 4, 2, 1, 1, 1, 2, 0, 0 }, // 87
{ 4, 2, 1, 2, 1, 1, 0, 0 }, // 88
{ 2, 1, 2, 1, 4, 1, 0, 0 }, // 89
{ 2, 1, 4, 1, 2, 1, 0, 0 }, // 90
{ 4, 1, 2, 1, 2, 1, 0, 0 }, // 91
{ 1, 1, 1, 1, 4, 3, 0, 0 }, // 92
{ 1, 1, 1, 3, 4, 1, 0, 0 }, // 93
{ 1, 3, 1, 1, 4, 1, 0, 0 }, // 94
{ 1, 1, 4, 1, 1, 3, 0, 0 }, // 95
{ 1, 1, 4, 3, 1, 1, 0, 0 }, // 96
{ 4, 1, 1, 1, 1, 3, 0, 0 }, // 97
{ 4, 1, 1, 3, 1, 1, 0, 0 }, // 98
{ 1, 1, 3, 1, 4, 1, 0, 0 }, // 99
{ 1, 1, 4, 1, 3, 1, 0, 0 }, // 100
{ 3, 1, 1, 1, 4, 1, 0, 0 }, // 101
{ 4, 1, 1, 1, 3, 1, 0, 0 }, // 102
{ 2, 1, 1, 4, 1, 2, 0, 0 }, // 103
{ 2, 1, 1, 2, 1, 4, 0, 0 }, // 104
{ 2, 1, 1, 2, 3, 2, 0, 0 }, // 105
{ 2, 3, 3, 1, 1, 1, 2, 0 } // 106
};
/// <summary>
/// Make an image of a Code128 barcode for a given string
/// </summary>
/// <param name="inputData">Message to be encoded</param>
/// <param name="barWeight">Base thickness for bar width (1 or 2 works well)</param>
/// <param name="addQuietZone">Add required horizontal margins (use if output is tight)</param>
/// <returns>An Image of the Code128 barcode representing the message</returns>
public static Image MakeBarcodeImage(string inputData, int barWeight, bool addQuietZone)
{
// get the Code128 codes to represent the message
var content = new Code128Content(inputData);
var codes = content.Codes;
var width = (((codes.Length - 3) * 11) + 35) * barWeight;
var height = Convert.ToInt32(Math.Ceiling(Convert.ToSingle(width) * .15F));
if (addQuietZone)
{
width += 2 * CQuietWidth * barWeight; // on both sides
}
// get surface to draw on
Image myImage = new Bitmap(width, height);
using (var gr = Graphics.FromImage(myImage))
{
// set to white so we don't have to fill the spaces with white
gr.FillRectangle(Brushes.White, 0, 0, width, height);
// skip quiet zone
var cursor = addQuietZone ? CQuietWidth * barWeight : 0;
for (var codeIdx = 0; codeIdx < codes.Length; codeIdx++)
{
var code = codes[codeIdx];
// take the bars two at a time: a black and a white
for (var bar = 0; bar < 8; bar += 2)
{
var barWidth = CPatterns[code, bar] * barWeight;
var spcWidth = CPatterns[code, bar + 1] * barWeight;
// if width is zero, don't try to draw it
if (barWidth > 0)
{
gr.FillRectangle(Brushes.Black, cursor, 0, barWidth, height);
}
// note that we never need to draw the space, since we
// initialized the graphics to all white
// advance cursor beyond this pair
cursor += barWidth + spcWidth;
}
}
}
return myImage;
}
}
}
+9
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@@ -0,0 +1,9 @@
namespace GenCode128
{
public enum CodeSet
{
CodeA,
CodeB
//// CodeC // not supported
}
}
+147
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<?xml version="1.0" encoding="utf-8"?>
<Project DefaultTargets="Build" xmlns="http://schemas.microsoft.com/developer/msbuild/2003" ToolsVersion="14.0">
<PropertyGroup>
<ProjectType>Local</ProjectType>
<ProductVersion>8.0.50727</ProductVersion>
<SchemaVersion>2.0</SchemaVersion>
<ProjectGuid>{32817BF9-E380-4467-9C7F-936F4B122BC7}</ProjectGuid>
<SccProjectName>
</SccProjectName>
<SccLocalPath>
</SccLocalPath>
<SccAuxPath>
</SccAuxPath>
<SccProvider>
</SccProvider>
<Configuration Condition=" '$(Configuration)' == '' ">Debug</Configuration>
<Platform Condition=" '$(Platform)' == '' ">AnyCPU</Platform>
<ApplicationIcon>
</ApplicationIcon>
<AssemblyKeyContainerName>
</AssemblyKeyContainerName>
<AssemblyName>GenCode128</AssemblyName>
<AssemblyOriginatorKeyFile>
</AssemblyOriginatorKeyFile>
<DefaultClientScript>JScript</DefaultClientScript>
<DefaultHTMLPageLayout>Grid</DefaultHTMLPageLayout>
<DefaultTargetSchema>IE50</DefaultTargetSchema>
<DelaySign>false</DelaySign>
<OutputType>Library</OutputType>
<RootNamespace>GenCode128</RootNamespace>
<RunPostBuildEvent>OnBuildSuccess</RunPostBuildEvent>
<StartupObject>
</StartupObject>
<FileUpgradeFlags>
</FileUpgradeFlags>
<UpgradeBackupLocation>
</UpgradeBackupLocation>
<TargetFrameworkVersion>v4.0</TargetFrameworkVersion>
<OldToolsVersion>2.0</OldToolsVersion>
<PublishUrl>publish\</PublishUrl>
<Install>true</Install>
<InstallFrom>Disk</InstallFrom>
<UpdateEnabled>false</UpdateEnabled>
<UpdateMode>Foreground</UpdateMode>
<UpdateInterval>7</UpdateInterval>
<UpdateIntervalUnits>Days</UpdateIntervalUnits>
<UpdatePeriodically>false</UpdatePeriodically>
<UpdateRequired>false</UpdateRequired>
<MapFileExtensions>true</MapFileExtensions>
<ApplicationRevision>0</ApplicationRevision>
<ApplicationVersion>1.0.0.%2a</ApplicationVersion>
<IsWebBootstrapper>false</IsWebBootstrapper>
<UseApplicationTrust>false</UseApplicationTrust>
<BootstrapperEnabled>true</BootstrapperEnabled>
<TargetFrameworkProfile />
</PropertyGroup>
<PropertyGroup Condition=" '$(Configuration)|$(Platform)' == 'Debug|AnyCPU' ">
<OutputPath>bin\Debug\</OutputPath>
<AllowUnsafeBlocks>false</AllowUnsafeBlocks>
<BaseAddress>285212672</BaseAddress>
<CheckForOverflowUnderflow>false</CheckForOverflowUnderflow>
<ConfigurationOverrideFile>
</ConfigurationOverrideFile>
<DefineConstants>DEBUG;TRACE</DefineConstants>
<DocumentationFile>
</DocumentationFile>
<DebugSymbols>true</DebugSymbols>
<FileAlignment>4096</FileAlignment>
<NoStdLib>false</NoStdLib>
<NoWarn>
</NoWarn>
<Optimize>false</Optimize>
<RegisterForComInterop>false</RegisterForComInterop>
<RemoveIntegerChecks>false</RemoveIntegerChecks>
<TreatWarningsAsErrors>false</TreatWarningsAsErrors>
<WarningLevel>4</WarningLevel>
<DebugType>full</DebugType>
<ErrorReport>prompt</ErrorReport>
</PropertyGroup>
<PropertyGroup Condition=" '$(Configuration)|$(Platform)' == 'Release|AnyCPU' ">
<OutputPath>bin\Release\</OutputPath>
<AllowUnsafeBlocks>false</AllowUnsafeBlocks>
<BaseAddress>285212672</BaseAddress>
<CheckForOverflowUnderflow>false</CheckForOverflowUnderflow>
<ConfigurationOverrideFile>
</ConfigurationOverrideFile>
<DefineConstants>TRACE</DefineConstants>
<DocumentationFile>
</DocumentationFile>
<DebugSymbols>false</DebugSymbols>
<FileAlignment>4096</FileAlignment>
<NoStdLib>false</NoStdLib>
<NoWarn>
</NoWarn>
<Optimize>true</Optimize>
<RegisterForComInterop>false</RegisterForComInterop>
<RemoveIntegerChecks>false</RemoveIntegerChecks>
<TreatWarningsAsErrors>false</TreatWarningsAsErrors>
<WarningLevel>4</WarningLevel>
<DebugType>none</DebugType>
<ErrorReport>prompt</ErrorReport>
</PropertyGroup>
<ItemGroup>
<Reference Include="System">
<Name>System</Name>
</Reference>
<Reference Include="System.Data">
<Name>System.Data</Name>
</Reference>
<Reference Include="System.Drawing">
<Name>System.Drawing</Name>
</Reference>
<Reference Include="System.Windows.Forms">
<Name>System.Windows.Forms</Name>
</Reference>
<Reference Include="System.Xml">
<Name>System.XML</Name>
</Reference>
</ItemGroup>
<ItemGroup>
<Compile Include="Code128Code.cs" />
<Compile Include="CodeSet.cs" />
<Compile Include="AssemblyInfo.cs">
<SubType>Code</SubType>
</Compile>
<Compile Include="Code128Content.cs">
<SubType>Code</SubType>
</Compile>
<Compile Include="Code128Rendering.cs">
<SubType>Code</SubType>
</Compile>
</ItemGroup>
<ItemGroup>
<BootstrapperPackage Include="Microsoft.Net.Framework.3.5.SP1">
<Visible>False</Visible>
<ProductName>.NET Framework 3.5 SP1</ProductName>
<Install>true</Install>
</BootstrapperPackage>
</ItemGroup>
<Import Project="$(MSBuildBinPath)\Microsoft.CSharp.targets" />
<PropertyGroup>
<PreBuildEvent>
</PreBuildEvent>
<PostBuildEvent>
</PostBuildEvent>
</PropertyGroup>
</Project>
+4 -1
View File
@@ -10,12 +10,13 @@
<AppDesignerFolder>Properties</AppDesignerFolder>
<RootNamespace>ClassLibrary1</RootNamespace>
<AssemblyName>GraphLib</AssemblyName>
<TargetFrameworkVersion>v4.0</TargetFrameworkVersion>
<TargetFrameworkVersion>v4.7.2</TargetFrameworkVersion>
<FileUpgradeFlags>
</FileUpgradeFlags>
<UpgradeBackupLocation>
</UpgradeBackupLocation>
<OldToolsVersion>2.0</OldToolsVersion>
<TargetFrameworkProfile />
</PropertyGroup>
<PropertyGroup Condition=" '$(Configuration)|$(Platform)' == 'Debug|AnyCPU' ">
<DebugSymbols>true</DebugSymbols>
@@ -25,6 +26,7 @@
<DefineConstants>DEBUG;TRACE</DefineConstants>
<ErrorReport>prompt</ErrorReport>
<WarningLevel>4</WarningLevel>
<Prefer32Bit>false</Prefer32Bit>
</PropertyGroup>
<PropertyGroup Condition=" '$(Configuration)|$(Platform)' == 'Release|AnyCPU' ">
<DebugType>pdbonly</DebugType>
@@ -33,6 +35,7 @@
<DefineConstants>TRACE</DefineConstants>
<ErrorReport>prompt</ErrorReport>
<WarningLevel>4</WarningLevel>
<Prefer32Bit>false</Prefer32Bit>
</PropertyGroup>
<ItemGroup>
<Reference Include="System" />
+12 -12
View File
@@ -1,10 +1,10 @@
//------------------------------------------------------------------------------
// <auto-generated>
// Dieser Code wurde von einem Tool generiert.
// Laufzeitversion:4.0.30319.18408
// This code was generated by a tool.
// Runtime Version:4.0.30319.42000
//
// Änderungen an dieser Datei können falsches Verhalten verursachen und gehen verloren, wenn
// der Code erneut generiert wird.
// Changes to this file may cause incorrect behavior and will be lost if
// the code is regenerated.
// </auto-generated>
//------------------------------------------------------------------------------
@@ -13,12 +13,12 @@ namespace ClassLibrary1.Properties {
/// <summary>
/// Eine stark typisierte Ressourcenklasse zum Suchen von lokalisierten Zeichenfolgen usw.
/// A strongly-typed resource class, for looking up localized strings, etc.
/// </summary>
// Diese Klasse wurde von der StronglyTypedResourceBuilder automatisch generiert
// -Klasse über ein Tool wie ResGen oder Visual Studio automatisch generiert.
// Um einen Member hinzuzufügen oder zu entfernen, bearbeiten Sie die .ResX-Datei und führen dann ResGen
// mit der /str-Option erneut aus, oder Sie erstellen Ihr VS-Projekt neu.
// This class was auto-generated by the StronglyTypedResourceBuilder
// class via a tool like ResGen or Visual Studio.
// To add or remove a member, edit your .ResX file then rerun ResGen
// with the /str option, or rebuild your VS project.
[global::System.CodeDom.Compiler.GeneratedCodeAttribute("System.Resources.Tools.StronglyTypedResourceBuilder", "4.0.0.0")]
[global::System.Diagnostics.DebuggerNonUserCodeAttribute()]
[global::System.Runtime.CompilerServices.CompilerGeneratedAttribute()]
@@ -33,7 +33,7 @@ namespace ClassLibrary1.Properties {
}
/// <summary>
/// Gibt die zwischengespeicherte ResourceManager-Instanz zurück, die von dieser Klasse verwendet wird.
/// Returns the cached ResourceManager instance used by this class.
/// </summary>
[global::System.ComponentModel.EditorBrowsableAttribute(global::System.ComponentModel.EditorBrowsableState.Advanced)]
internal static global::System.Resources.ResourceManager ResourceManager {
@@ -47,8 +47,8 @@ namespace ClassLibrary1.Properties {
}
/// <summary>
/// Überschreibt die CurrentUICulture-Eigenschaft des aktuellen Threads für alle
/// Ressourcenzuordnungen, die diese stark typisierte Ressourcenklasse verwenden.
/// Overrides the current thread's CurrentUICulture property for all
/// resource lookups using this strongly typed resource class.
/// </summary>
[global::System.ComponentModel.EditorBrowsableAttribute(global::System.ComponentModel.EditorBrowsableState.Advanced)]
internal static global::System.Globalization.CultureInfo Culture {
+198
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@@ -0,0 +1,198 @@
using Newtonsoft.Json;
using System;
using System.Collections.Generic;
using System.Diagnostics;
using System.Net;
using System.Net.Http;
using System.Net.Http.Headers;
using System.Threading.Tasks;
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)
{
this._baseUrl = baseUrl;
}
public void SetToken(string token)
{
_authValue = new AuthenticationHeaderValue("Bearer", token);
}
protected Uri GetUrl(string relativeUrl)
{
try
{
return new Uri(_baseUrl + relativeUrl);
}
catch (Exception)
{
Trace.TraceError("Invalid url " + relativeUrl);
return null;
}
}
protected async Task<TResult> GetResultAsync<TResult>(string relativeUrl)
{
ErrorMessage = String.Empty;
Uri url = null;
try
{
url = new Uri(_baseUrl + relativeUrl);
}
catch (Exception)
{
Trace.TraceError("Invalid url " + relativeUrl);
return default(TResult);
}
using (var client = GetClient())
{
try
{
var result = await client.GetAsync(url).ConfigureAwait(false);
var parsedResult = await result.Content.ReadAsStringAsync().ConfigureAwait(false);
if (result.IsSuccessStatusCode)
{
return JsonConvert.DeserializeObject<TResult>(parsedResult);
}
if (result.StatusCode == System.Net.HttpStatusCode.NotFound)
{
//Create not an error message, because communication is okay, only the meter is not available in database.
return default(TResult);
}
try
{
string Messages = await result.Content.ReadAsStringAsync();
var errors = JsonConvert.DeserializeObject<Dictionary<string, object>>(Messages);
string ServiceError = String.Empty;
if (errors != null)
{
ServiceError = errors["Message"].ToString();
}
ErrorMessage = string.Format("Error message: {0}", ServiceError);
}
catch
{
result.EnsureSuccessStatusCode();
}
return default(TResult);
}
catch (Exception ex)
{
string Message = ex.Message;
if (ex.InnerException != null)
{
Message += ". " + ex.InnerException.Message;
}
Trace.TraceError(Message);
ErrorMessage = Message;
return default(TResult);
}
}
}
/// <summary>
/// Post method.
/// </summary>
/// <typeparam name="TResult"></typeparam>
/// <param name="relativeUrl"></param>
/// <param name="Position"></param>
/// /// <param name="withBaseUrl"></param>
/// <returns>The new resource</returns>
protected async Task<string> PostWithReturnDataAsync<TResult>(string relativeUrl, bool withBaseUrl, TResult Position)
{
string data = string.Empty;
ErrorMessage = String.Empty;
Uri url = null;
try
{
if (withBaseUrl)
{
url = new Uri(_baseUrl + relativeUrl);
}
else
{
url = new Uri(relativeUrl);
}
}
catch (Exception ex)
{
Trace.TraceError("Invalid url " + url);
ErrorMessage = ex.Message;
return data;
}
using (var client = GetClient())
{
try
{
string json = JsonConvert.SerializeObject(Position);
HttpContent content = new StringContent(json, System.Text.Encoding.UTF8, "application/json");
HttpResponseMessage response = await client.PostAsync(url.ToString(), content).ConfigureAwait(false);
if (response.IsSuccessStatusCode)
{
data = await response.Content.ReadAsStringAsync().ConfigureAwait(false);
return data;
}
else
{
if (response.StatusCode == HttpStatusCode.NotFound)
{
ErrorMessage = String.Format("Status code: {0}. Url: {1}", response.StatusCode, url);
}
else
{
string errorMessageService = string.Empty;
string message = await response.Content.ReadAsStringAsync().ConfigureAwait(false);
if (string.IsNullOrEmpty(message))
{
errorMessageService = response.ReasonPhrase;
}
else
{
try
{
var errors = JsonConvert.DeserializeObject<Dictionary<string, object>>(message);
errorMessageService = errors["Message"].ToString();
}
catch (Exception)
{
errorMessageService = message;
}
}
ErrorMessage = String.Format("Status code: {0}. Error message: {1}", response.StatusCode, errorMessageService);
}
return data;
}
}
catch (Exception ex)
{
Trace.TraceError(ex.Message);
ErrorMessage = ex.Message;
return data;
}
}
}
protected HttpClient GetClient()
{
HttpClientHandler handler = new HttpClientHandler();
handler.ServerCertificateCustomValidationCallback = (message, cert, chain, errors) => { return true; };
HttpClient client = new HttpClient(handler);
client.DefaultRequestHeaders.Accept.Clear();
client.DefaultRequestHeaders.Accept.Add(new MediaTypeWithQualityHeaderValue("application/json"));
client.DefaultRequestHeaders.Authorization = _authValue;
return client;
}
}
}
+82
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@@ -0,0 +1,82 @@
using System;
using System.Diagnostics;
using System.Threading.Tasks;
using Newtonsoft.Json;
using RestClient.Models;
namespace RestClient
{
public class GetQ2PreCorrectionClient : BaseClient
{
public GetQ2PreCorrectionClient(string baseUrl)
: base(baseUrl)
{ }
public async Task GetToken(string name, string password, string urlLogin)
{
LoginUser user = new LoginUser { Name = name, Password = password };
var response = await PostWithReturnDataAsync(urlLogin, false, user).ConfigureAwait(false);
var tmp = JsonConvert.DeserializeObject<CustomJwt>(response);
if (tmp != null)
{
SetToken(tmp.access_token);
}
else
{
throw new Exception(string.Format("No token loaded: {0}", ErrorMessage));
}
}
public async Task<Q2PreCorrection> GetQ2Correction(string relativeUrl)
{
ErrorMessage = String.Empty;
Uri url = GetUrl(relativeUrl);
if (url == null) return new Q2PreCorrection { AreDataCalculated = false, CorrLR = 0, CorrRL = 0, };
using (var client = GetClient())
{
try
{
var result = await client.GetAsync(url).ConfigureAwait(false);
string jsonResult = await result.Content.ReadAsStringAsync().ConfigureAwait(false);
if (result.IsSuccessStatusCode)
{
Q2PreCorrection retVal = new Q2PreCorrection();
string pattern = "\"areDataCalculated\":";
int position = jsonResult.IndexOf(pattern) + pattern.Length;
int length = jsonResult.Substring(position).IndexOfAny(new char[] { ',', '}', '\r', '\n' });
retVal.AreDataCalculated = bool.Parse(jsonResult.Substring(position, length));
pattern = "\"right\":";
position = jsonResult.IndexOf(pattern) + pattern.Length;
length = jsonResult.Substring(position).IndexOfAny(new char[] { ',', '}', '\r', '\n' });
retVal.CorrLR = int.Parse(jsonResult.Substring(position, length));
pattern = "\"left\":";
position = jsonResult.IndexOf(pattern) + pattern.Length;
length = jsonResult.Substring(position).IndexOfAny(new char[] { ',', '}', '\r', '\n' });
retVal.CorrRL = int.Parse(jsonResult.Substring(position, length));
return retVal;
}
else
{
return new Q2PreCorrection { AreDataCalculated = false, CorrLR = 0, CorrRL = 0, };
}
}
catch (Exception ex)
{
string Message = ex.Message;
if (ex.InnerException != null)
{
Message += ". " + ex.InnerException.Message;
}
Trace.TraceError(Message);
ErrorMessage = Message;
return new Q2PreCorrection { AreDataCalculated = false, CorrLR = 0, CorrRL = 0, };
}
}
}
}
}
+13
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@@ -0,0 +1,13 @@
using System;
using System.Collections.Generic;
using System.Text;
namespace RestClient.Models
{
public class CustomJwt
{
public string access_token { get; set; }
public string token_type { get; set; }
public int expires_in { get; set; }
}
}
+12
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@@ -0,0 +1,12 @@
using System;
using System.Collections.Generic;
using System.Text;
namespace RestClient.Models
{
public class LoginUser
{
public string Name { get; set; }
public string Password { get; set; }
}
}
+36
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@@ -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("RestClient")]
[assembly: AssemblyDescription("")]
[assembly: AssemblyConfiguration("")]
[assembly: AssemblyCompany("")]
[assembly: AssemblyProduct("RestClient")]
[assembly: AssemblyCopyright("Copyright © 2019")]
[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("46e3b0e1-209f-4550-b0dd-d7e2c039b3ce")]
// 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")]
+11
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@@ -0,0 +1,11 @@
using System;
namespace RestClient
{
public class Q2PreCorrection
{
public bool AreDataCalculated;
public int CorrLR;
public int CorrRL;
}
}
+59
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@@ -0,0 +1,59 @@
<?xml version="1.0" encoding="utf-8"?>
<Project ToolsVersion="15.0" 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=" '$(Platform)' == '' ">AnyCPU</Platform>
<ProjectGuid>{46E3B0E1-209F-4550-B0DD-D7E2C039B3CE}</ProjectGuid>
<OutputType>Library</OutputType>
<AppDesignerFolder>Properties</AppDesignerFolder>
<RootNamespace>RestClient</RootNamespace>
<AssemblyName>RestClient</AssemblyName>
<TargetFrameworkVersion>v4.7.2</TargetFrameworkVersion>
<FileAlignment>512</FileAlignment>
</PropertyGroup>
<PropertyGroup Condition=" '$(Configuration)|$(Platform)' == 'Debug|AnyCPU' ">
<DebugSymbols>true</DebugSymbols>
<DebugType>full</DebugType>
<Optimize>false</Optimize>
<OutputPath>bin\Debug\</OutputPath>
<DefineConstants>DEBUG;TRACE</DefineConstants>
<ErrorReport>prompt</ErrorReport>
<WarningLevel>4</WarningLevel>
<PlatformTarget>x86</PlatformTarget>
</PropertyGroup>
<PropertyGroup Condition=" '$(Configuration)|$(Platform)' == 'Release|AnyCPU' ">
<DebugType>pdbonly</DebugType>
<Optimize>true</Optimize>
<OutputPath>bin\Release\</OutputPath>
<DefineConstants>TRACE</DefineConstants>
<ErrorReport>prompt</ErrorReport>
<WarningLevel>4</WarningLevel>
<PlatformTarget>x86</PlatformTarget>
</PropertyGroup>
<ItemGroup>
<Reference Include="Newtonsoft.Json, Version=12.0.0.0, Culture=neutral, PublicKeyToken=30ad4fe6b2a6aeed, processorArchitecture=MSIL">
<HintPath>..\packages\Newtonsoft.Json.12.0.2\lib\net45\Newtonsoft.Json.dll</HintPath>
</Reference>
<Reference Include="System" />
<Reference Include="System.Core" />
<Reference Include="System.Xml.Linq" />
<Reference Include="System.Data.DataSetExtensions" />
<Reference Include="Microsoft.CSharp" />
<Reference Include="System.Data" />
<Reference Include="System.Net.Http" />
<Reference Include="System.Xml" />
</ItemGroup>
<ItemGroup>
<Compile Include="BaseClient.cs" />
<Compile Include="GetQ2PreCorrectionClient.cs" />
<Compile Include="Models\CustomJwt.cs" />
<Compile Include="Models\LoginUser.cs" />
<Compile Include="Properties\AssemblyInfo.cs" />
<Compile Include="Q2PreCorrection.cs" />
</ItemGroup>
<ItemGroup>
<None Include="packages.config" />
</ItemGroup>
<Import Project="$(MSBuildToolsPath)\Microsoft.CSharp.targets" />
</Project>
+4
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@@ -0,0 +1,4 @@
<?xml version="1.0" encoding="utf-8"?>
<packages>
<package id="Newtonsoft.Json" version="12.0.2" targetFramework="net472" />
</packages>
+108 -109
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@@ -1,32 +1,43 @@
using System;
using System.Collections.Generic;
using System.IO;
using System.Linq;
using System.Text;
using Results.Entities;
namespace Results
{
public class BatchResults
public class BatchResults
{
public readonly int WMPositionsCount;
public Batch Batch;
public int WMPositionsCount;
public IList<Entities.TestData> TestDataList;
public IList<Entities.Components> ComponentsList;
public IList<Entities.WaterMeterData> WaterMeterDataList;
public IList<Entities.TestData> TestDataList;
public IList<Entities.Components> ComponentsList;
public IList<Entities.WaterMeterData> WaterMeterDataList;
/// <summary>
/// Parameterless constructor required for serialization
/// </summary>
public BatchResults()
{
TestDataList = new List<Entities.TestData>();
ComponentsList = new List<Entities.Components>();
WaterMeterDataList = new List<Entities.WaterMeterData>();
}
/// <summary>
/// Constructor invoked by static BatchResults NewFromProcedure(...)
/// </summary>
/// <param name="wmPositionsCount">Watermeters count</param>
private BatchResults(int wmPositionsCount)
: this()
{
WMPositionsCount = wmPositionsCount;
TestDataList = new List<Entities.TestData>();
ComponentsList = new List<Entities.Components>();
WaterMeterDataList = new List<Entities.WaterMeterData>();
}
public Batch Batch;
public WaterMeter[] WaterMeters;
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)
@@ -38,6 +49,7 @@ namespace Results
d.Batch = new Batch()
{
BatchNr = batchNr,
ProgramVersion = programVer,
TestBenchId = benchId,
TestBenchName = benchName,
Address1 = a1,
@@ -45,7 +57,6 @@ namespace Results
Address3 = a3,
Address4 = a4,
Address5 = a5,
ProgramVersion = programVer,
UserName = user,
UserNumber = userNr,
ProcedureName = procedure.Name,
@@ -65,62 +76,64 @@ namespace Results
/// Add watermeter to an array, array index is WM position.
/// AddWaterMetersToBatch() has to be used before saving results.
///
d.WaterMeters = new WaterMeter[d.WMPositionsCount];
for (int i = 0; i < d.WMPositionsCount; i++)
for (int wmPos0 = 0; wmPos0 < d.WMPositionsCount; wmPos0++)
{
if (waterMeterDatas[i] == null) continue;
WaterMeterData wmd = WaterMeterData.UpdateList(d.WaterMeterDataList, waterMeterDatas[i]);
d.WaterMeters[i] = new WaterMeter()
{
Batch = d.Batch,
WaterMeterData = wmd,
WMPosition = i + 1,
YearOfProduction = year,
};
if (waterMeterDatas[wmPos0] == null)
{
d.Batch.WaterMeters.Add(new WaterMeter() { Batch = d.Batch,
WaterMeterData = null,
WMPosition = wmPos0 + 1,
YearOfProduction = year,
Disabled = true, });
}
else
{
WaterMeterData wmd = WaterMeterData.UpdateList(d.WaterMeterDataList, waterMeterDatas[wmPos0]);
d.Batch.WaterMeters.Add(new WaterMeter() { Batch = d.Batch,
WaterMeterData = wmd,
WMPosition = wmPos0 + 1,
YearOfProduction = year, });
}
}
foreach (var t in procedure.Tests)
{
if (t.Publish != (byte)Config.Entities.Publish.Never)
TestData td = TestData.UpdateList(d.TestDataList, new TestData(t));
for (int rnr = 1; rnr <= t.Repeats; rnr++)
{
TestData td = TestData.UpdateList(d.TestDataList, new TestData(t));
/// 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 rnr = 1; rnr <= t.Repeats; rnr++)
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.WaterMeters[i] == null) continue;
if (!t.IsPartCompatible(waterMeterParts[i])) continue;
///
/// Create empty watermeter test results and add them to the list and to dictionaries
///
IList<MeterTestRslt> wmtrs = d.WaterMeters[i].MeterTestRslts;
if (d.Batch.Compound)
{
/// Compound water meter
wmtrs.Add(new MeterTestRslt(d.WaterMeters[i], tr, Config.Entities.CompoundMeterId.CompoundMain));
wmtrs.Add(new MeterTestRslt(d.WaterMeters[i], tr, Config.Entities.CompoundMeterId.CompoundAux));
wmtrs.Add(new MeterTestRslt(d.WaterMeters[i], tr, Config.Entities.CompoundMeterId.Compound));
}
else if (d.Batch.HeatMeter)
{
/// Heat meter
wmtrs.Add(new MeterTestRslt(d.WaterMeters[i], tr, Config.Entities.CompoundMeterId.HeatMeterVolume));
wmtrs.Add(new MeterTestRslt(d.WaterMeters[i], tr, Config.Entities.CompoundMeterId.HeatMeterEnergy));
}
else
{
/// Water meter
wmtrs.Add(new MeterTestRslt(d.WaterMeters[i], tr, Config.Entities.CompoundMeterId.Single));
}
}
if (!d.Batch.WaterMeters[i].Disabled && t.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)
{
/// 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));
}
}
}
}
}
@@ -130,13 +143,25 @@ namespace Results
public static BatchResults FromBatch(Batch batch)
{
int wmCount = batch.WaterMeters.Count;
if (wmCount == 0) return null;
if (batch.WaterMeters == null || batch.WaterMeters.Count == 0) return null;
BatchResults batchResults = new BatchResults(wmCount);
int wmPosMax = 0;
foreach (var wm in batch.WaterMeters) if (wm.WMPosition > wmPosMax) wmPosMax = wm.WMPosition;
BatchResults batchResults = new BatchResults(wmPosMax);
batchResults.Batch = batch;
batchResults.WaterMeters = new WaterMeter[wmCount];
for (int i = 0; i < wmCount; i++) batchResults.WaterMeters[i] = batch.WaterMeters[i];
/// Insert missing disabled water meters
for (int wmNr0 = 0; wmNr0 < wmPosMax; wmNr0++)
{
if (batch.WaterMeters[wmNr0].WMPosition > wmNr0 + 1)
{
batch.WaterMeters.Insert(wmNr0, new WaterMeter() { Batch = batch,
WaterMeterData = null,
WMPosition = wmNr0 + 1,
YearOfProduction = 0,
Disabled = true, });
}
}
return batchResults;
}
@@ -146,11 +171,11 @@ 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, Config.Entities.CompoundMeterId meterId)
{
if (WaterMeters[wmnr0] != null)
if (Batch.WaterMeters != null && Batch.WaterMeters.Count > wmNr0 && !Batch.WaterMeters[wmNr0].Disabled)
{
return WaterMeters[wmnr0].GetMeterTestRslt(name, meterId);
return Batch.WaterMeters[wmNr0].GetMeterTestRslt(name, meterId);
}
return null;
}
@@ -162,13 +187,13 @@ namespace Results
/// <returns>true = all tests done</returns>
public bool AllTestsDone()
{
for (int i = 0; i < WMPositionsCount; i++)
for (int wmNr0 = 0; wmNr0 < WMPositionsCount; wmNr0++)
{
if (WaterMeters[i] != null)
if (Batch.WaterMeters != null && Batch.WaterMeters.Count > wmNr0 && !Batch.WaterMeters[wmNr0].Disabled)
{
foreach (var mtr in WaterMeters[i].MeterTestRslts)
foreach (var mtr in Batch.WaterMeters[wmNr0].MeterTestRslts)
{
if (!mtr.TestDone) return false;
if (mtr.Evaluate() && !mtr.TestDone) return false;
}
}
}
@@ -176,43 +201,17 @@ namespace Results
}
/// <summary>
/// Adds non-null water meters from an array to a Batch water meters list.
/// This method should be used when results are prepared and
/// all disabled water meters are deleted.
/// </summary>
public void AddWaterMetersToBatch()
{
for (int i = 0; i < WMPositionsCount; i++)
{
if (WaterMeters[i] != null)
{
WaterMeters[i].Passed = WaterMeters[i].PassedFromTests();
if (!WaterMeters[i].Disabled)
{
Batch.WaterMeters.Add(WaterMeters[i]);
}
}
}
}
public bool IsProduction()
public virtual void WriteBinary(BinaryWriter writer)
{
for (int i = 0; i < WMPositionsCount; i++)
{
if (WaterMeters[i] != null)
{
foreach (var mtr in WaterMeters[i].MeterTestRslts)
{
if (mtr.TestData().Name.ToLower().Contains("adj") || mtr.TestData().Name.ToLower().Contains("just"))
{
return true;
}
}
}
}
return false;
Batch.WriteBinary(writer);
writer.Write(WMPositionsCount);
}
}
public virtual void ReadBinary(BinaryReader reader)
{
Batch = new Batch();
Batch.ReadBinary(reader);
WMPositionsCount = reader.ReadInt32();
}
}
}
+162 -12
View File
@@ -1,26 +1,28 @@
///
/// Copyright (c) 2015-2016 Sensus Metering Systems
/// Copyright (c) 2015-2020 Sensus Slovensko a.s.
///
using System;
using System.Collections.Generic;
using System.IO;
namespace Results.Entities
{
public class Batch
{
public virtual int Id { get; protected set; }
public virtual int Id { get; protected set; }
public virtual int BatchNr { get; set; }
public virtual int TestBenchId { get; set; }
public virtual string ProgramVersion { get; set; }
public virtual int TestBenchId { get; set; }
public virtual string TestBenchName { get; set; } /// CEVAK, not mapped to DB
public virtual string Address1 { get; set; } /// CEVAK, not mapped to DB
public virtual string Address2 { get; set; } /// CEVAK, not mapped to DB
public virtual string Address3 { get; set; } /// CEVAK, not mapped to DB
public virtual string Address4 { get; set; } /// CEVAK, not mapped to DB
public virtual string Address5 { get; set; } /// CEVAK, not mapped to DB
public virtual string ProgramVersion { get; set; }
public virtual string UserName { get; set; }
public virtual int UserNumber { get; set; }
public virtual string ProcedureName { get; set; }
public virtual bool IsRemoteProcedure { get; set; } /// Stara Tura, not mapped to DB
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
@@ -29,7 +31,12 @@ namespace Results.Entities
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 DateTime StartTime { get; set; }
public virtual int Counter6 { get; set; }
public virtual int Counter7 { get; set; }
public virtual int Counter8 { get; set; }
public virtual int Counter9 { get; set; }
public virtual int Counter10 { get; set; }
public virtual DateTime StartTime { get; set; }
public virtual DateTime EndTime { get; set; }
public virtual bool Dirty { get; set; }
public virtual bool RsltsSent { get; set; }
@@ -38,13 +45,29 @@ namespace Results.Entities
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 bool HeatMeter { get; set; } /// Not mapped to DB now ///
public Batch()
{
Tests = new List<TestData>();
WaterMeters = new List<WaterMeter>();
TestRslts = new List<TestRslt>();
ProgramVersion = string.Empty;
TestBenchName = string.Empty;
Address1 = string.Empty;
Address2 = string.Empty;
Address3 = string.Empty;
Address4 = string.Empty;
Address5 = string.Empty;
UserName = string.Empty;
ProcedureName = string.Empty;
IsRemoteProcedure = false;
ProcedureDescription = string.Empty;
WatermetersStr = string.Empty;
ProtocolTitle = string.Empty;
ProtocolTitle = string.Empty;
Remark = string.Empty;
}
public virtual int PassedMetersCount()
@@ -203,11 +226,138 @@ namespace Results.Entities
public virtual string ToString(int i)
{
return string.Format("Batch: BatchNr={0} TestBenchId={1} ProgramVersion={2} UserName={3} UserNumber={4} ProcedureName={5} ProcedureRevision={6} ProtocolTitle={7} Remark={8} DensityCorr={9} Custom2={10} Custom3={11} StartTime={12} EndTime={13} Dirty={14} RsltsSent={15} RsltsPrinted={16}",
BatchNr, TestBenchId, ProgramVersion, UserName, UserNumber,
ProcedureName, ProcedureRevision, ProtocolTitle, Remark, DensityCorr,
Custom2, Custom3, StartTime, EndTime, Dirty,
RsltsSent, RsltsPrinted);
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}",
BatchNr, ProgramVersion, TestBenchId, UserName, UserNumber,
ProcedureName, (IsRemoteProcedure ? "(R)" : ""), ProcedureRevision,
ProtocolTitle, Remark, DensityCorr, Custom2, Custom3,
StartTime, EndTime, Dirty, RsltsSent, RsltsPrinted);
}
}
public virtual void WriteBinary(BinaryWriter writer)
{
writer.Write(BatchNr);
writer.Write((ProgramVersion != null) ? ProgramVersion : string.Empty);
writer.Write((ProcedureName != null) ? ProcedureName : string.Empty);
writer.Write(IsRemoteProcedure);
writer.Write(Id);
writer.Write(TestBenchId);
writer.Write((TestBenchName != null) ? TestBenchName : string.Empty);
writer.Write((Address1 != null) ? Address1 : string.Empty);
writer.Write((Address2 != null) ? Address2 : string.Empty);
writer.Write((Address3 != null) ? Address3 : string.Empty);
writer.Write((Address4 != null) ? Address4 : string.Empty);
writer.Write((Address5 != null) ? Address5 : string.Empty);
writer.Write((UserName != null) ? UserName : string.Empty);
writer.Write(UserNumber);
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(Counter6);
writer.Write(Counter7);
writer.Write(Counter8);
writer.Write(Counter9);
writer.Write(Counter10);
writer.Write(StartTime.ToString());
writer.Write(EndTime.ToString());
writer.Write(Dirty);
writer.Write(RsltsSent);
writer.Write(RsltsPrinted);
writer.Write(Compound);
writer.Write(HeatMeter);
IList<TestData> savedTestDatas = new List<TestData>(); /// Initially empty
writer.Write(TestRslts.Count);
for (int i = 0; i < TestRslts.Count; i++)
{
TestRslts[i].WriteBinary(writer, savedTestDatas);
}
IList<WaterMeterData> savedWMDatas = new List<WaterMeterData>(); /// Initially empty
writer.Write(WaterMeters.Count);
for (int i = 0; i < WaterMeters.Count; i++)
{
WaterMeters[i].WriteBinary(writer, savedWMDatas);
}
}
public static void ReadStart(BinaryReader reader, out int batchNr, out string programVersion, out string procedureName, out bool isRemoteProcedure)
{
batchNr = reader.ReadInt32();
programVersion = reader.ReadString();
procedureName = reader.ReadString();
isRemoteProcedure = reader.ReadBoolean();
}
public virtual void ReadBinary(BinaryReader reader)
{
/// ReadStart() is used to avoid code repetition
int batchNr;
string programVersion;
string procedureName;
bool isRemoteProcedure;
ReadStart(reader, out batchNr, out programVersion, out procedureName, out isRemoteProcedure);
BatchNr = batchNr;
ProgramVersion = programVersion;
ProcedureName = procedureName;
IsRemoteProcedure = isRemoteProcedure;
Id = reader.ReadInt32();
TestBenchId = reader.ReadInt32();
TestBenchName = reader.ReadString();
Address1 = reader.ReadString();
Address2 = reader.ReadString();
Address3 = reader.ReadString();
Address4 = reader.ReadString();
Address5 = reader.ReadString();
UserName = reader.ReadString();
UserNumber = reader.ReadInt32();
ProcedureDescription = reader.ReadString();
ProcedureRevision = reader.ReadInt32();
WatermetersStr = reader.ReadString();
ProtocolTitle = reader.ReadString();
Remark = reader.ReadString();
DensityCorr = reader.ReadInt32();
Custom2 = reader.ReadInt32();
Custom3 = reader.ReadInt32();
Counter6 = reader.ReadInt32();
Counter7 = reader.ReadInt32();
Counter8 = reader.ReadInt32();
Counter9 = reader.ReadInt32();
Counter10 = reader.ReadInt32();
StartTime = DateTime.Parse(reader.ReadString());
EndTime = DateTime.Parse(reader.ReadString());
Dirty = reader.ReadBoolean();
RsltsSent = reader.ReadBoolean();
RsltsPrinted = reader.ReadBoolean();
Compound = reader.ReadBoolean();
HeatMeter = reader.ReadBoolean();
Tests = new List<TestData>(); /// Initially empty
int testRsltsCount = reader.ReadInt32();
TestRslts = new List<TestRslt>();
for (int i = 0; i < testRsltsCount; i++)
{
TestRslts.Add(new TestRslt());
TestRslts[i].ReadBinary(reader, Tests);
TestRslts[i].Batch = this;
}
IList<WaterMeterData> wmDatasRetirevedSoFar = new List<WaterMeterData>(); /// Initially empty
int waterMetersCount = reader.ReadInt32();
WaterMeters = new List<WaterMeter>();
for (int i = 0; i < waterMetersCount; i++)
{
WaterMeters.Add(new WaterMeter());
WaterMeters[i].ReadBinary(reader, wmDatasRetirevedSoFar, TestRslts);
WaterMeters[i].Batch = this;
}
}
}
}
+37 -6
View File
@@ -1,16 +1,17 @@
///
/// Copyright (c) 2016 Sensus Metering Systems
/// Copyright (c) 2016-2020 Sensus Slovensko a.s.
///
using System;
using System.Collections.Generic;
using System.Linq;
using System.IO;
namespace Results.Entities
{
public class Components
public class Components
{
public virtual int Id { get; protected set; }
public virtual int TestBenchId { get; set; }
public virtual int Id { get; protected set; }
public virtual int TestBenchId { get; set; }
public virtual string TestBenchName { get; set; }
public virtual string Pump { get; set; }
public virtual string RegValve { get; set; }
@@ -21,7 +22,7 @@ namespace Results.Entities
public virtual string Custom2 { get; set; }
public virtual string Custom3 { get; set; }
protected Components()
public Components()
{
TestBenchId = 0;
TestBenchName = string.Empty;
@@ -90,5 +91,35 @@ namespace Results.Entities
list.Add(item); /// Item not fund in the list, it is added to the list
return item;
}
}
public virtual void WriteBinary(BinaryWriter writer)
{
writer.Write(Id);
writer.Write(TestBenchId);
writer.Write((TestBenchName != null) ? TestBenchName : string.Empty);
writer.Write((Pump != null) ? Pump : string.Empty);
writer.Write((RegValve != null) ? RegValve : string.Empty);
writer.Write((Flowmeter != null) ? Flowmeter : string.Empty);
writer.Write((Diverter != null) ? Diverter : string.Empty);
writer.Write((Scale != null) ? Scale : string.Empty);
writer.Write((Custom1 != null) ? Custom1 : string.Empty);
writer.Write((Custom2 != null) ? Custom2 : string.Empty);
writer.Write((Custom3 != null) ? Custom3 : string.Empty);
}
public virtual void ReadBinary(BinaryReader reader)
{
Id = reader.ReadInt32();
TestBenchId = reader.ReadInt32();
TestBenchName = reader.ReadString();
Pump = reader.ReadString();
RegValve = reader.ReadString();
Flowmeter = reader.ReadString();
Diverter = reader.ReadString();
Scale = reader.ReadString();
Custom1 = reader.ReadString();
Custom2 = reader.ReadString();
Custom3 = reader.ReadString();
}
}
}
+82 -6
View File
@@ -1,16 +1,17 @@
///
/// Copyright (c) 2013-2018 Sensus Slovensko a.s.
/// Copyright (c) 2013-2020 Sensus Slovensko a.s.
///
using System;
using System.Collections.Generic;
using System.IO;
namespace Results.Entities
{
public class MeterTestRslt
{
public virtual int Id { get; protected set; }
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 depent on localisation and customer
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)
@@ -25,6 +26,8 @@ namespace Results.Entities
/// Main result
public virtual double Error { get; set; } /// [%]
public virtual long ErrorIndicators { get; set; } /// Not mapped to DB !!!, bit24=E25, bit25=E26, bit26=E27, bit27=E28 (error flags)
public virtual long InfoIndicators { get; set; } /// Not mapped to DB !!!, bit24=E25, bit25=E26, bit26=E27, bit27=E28 (info flags)
public virtual double KorrErrQ { get; set; } /// [%] not mapped to results DB, saved to Oracle DB
public virtual bool TestDone { get; set; } /// true = test was completed
public virtual bool Passed { get; set; } /// true = test passed, water meter is OK
@@ -49,14 +52,15 @@ namespace Results.Entities
public virtual TestData TestData() { return TestRslt.TestData; }
///
public virtual int Repeats() { return TestData().Repeats; }
public virtual double Qfrom() { return TestData().Qfrom; } /// [m3/h]
public virtual double Qtg() { return TestData().Qtg; } /// [m3/h]
public virtual double Qfrom() { return TestData().Qfrom; } /// [m3/h]
public virtual double Qto() { return TestData().Qto; } /// [m3/h]
public virtual double TargetVolume() { return TestData().TargetVolume; } /// [l]
public virtual double TargetTime() { return TestData().TargetTime; } /// [s]
public virtual string Method() { return TestData().Method; }
public virtual double ErrLimLo() { return TestData().ErrLimLo; } /// [%]
public virtual double ErrLimHi() { return TestData().ErrLimHi; } /// [%]
public virtual double Uncertainty() { return TestData().Uncertainty; } /// [%]
public virtual double Uncertainty() { return TestData().ErrLimMargin; } /// [%]
public virtual string ProcedureName() { return WaterMeter.Batch.ProcedureName; }
public virtual int BatchNr() { return WaterMeter.Batch.BatchNr; }
@@ -127,14 +131,86 @@ namespace Results.Entities
TimestampEnd = src.TimestampEnd;
TestTime = src.TestTime;
Error = src.Error;
ErrorIndicators = src.ErrorIndicators;
KorrErrQ = src.KorrErrQ;
TestDone = src.TestDone;
Passed = src.Passed;
#if ORACLE_DB
LastError = src.LastError;
#endif
}
public override string ToString()
{
return (TestRslt != null) ? Name() : base.ToString();
}
public virtual void WriteBinary(BinaryWriter writer)
{
writer.Write(Id);
writer.Write(CompoundMeterId);
writer.Write(RegReaderType);
writer.Write(PulsesMeter);
writer.Write(PulsesMaster);
writer.Write(PulsesPerLiter);
writer.Write(VolumeStart);
writer.Write(VolumeEnd);
writer.Write(VolumeMeter);
writer.Write(VolumeRef);
writer.Write(TimestampStart);
writer.Write(TimestampEnd);
writer.Write(TestTime);
writer.Write(Error);
writer.Write(ErrorIndicators);
writer.Write(InfoIndicators);
writer.Write(KorrErrQ);
writer.Write(TestDone);
writer.Write(Passed);
#if ORACLE_DB
writer.Write(LastError);
#endif
writer.Write((TestRslt != null && TestRslt.Name() != null) ? TestRslt.Name() : string.Empty);
writer.Write(TestRslt.Part);
}
public virtual void ReadBinary(BinaryReader reader, IList<TestRslt> testResults)
{
Id = reader.ReadInt32();
CompoundMeterId = reader.ReadByte();
RegReaderType = reader.ReadInt32();
PulsesMeter = reader.ReadDouble();
PulsesMaster = reader.ReadDouble();
PulsesPerLiter = reader.ReadDouble();
VolumeStart = reader.ReadDouble();
VolumeEnd = reader.ReadDouble();
VolumeMeter = reader.ReadDouble();
VolumeRef = reader.ReadDouble();
TimestampStart = reader.ReadDouble();
TimestampEnd = reader.ReadDouble();
TestTime = reader.ReadDouble();
Error = reader.ReadDouble();
ErrorIndicators = reader.ReadInt64();
InfoIndicators = reader.ReadInt64();
KorrErrQ = reader.ReadDouble();
TestDone = reader.ReadBoolean();
Passed = reader.ReadBoolean();
#if ORACLE_DB
LastError = reader.ReadDouble();
#endif
TestRslt = null;
string trName = reader.ReadString();
int trPart = reader.ReadInt32();
if (testResults != null && !string.IsNullOrEmpty(trName))
{
foreach (var tr in testResults)
{
if ((tr.Name() == trName) && (tr.Part == trPart))
{
TestRslt = tr;
break;
}
}
}
}
}
}
+56 -10
View File
@@ -1,28 +1,30 @@
///
/// Copyright (c) 2016 Sensus Metering Systems
/// Copyright (c) 2016-2020 Sensus Slovensko a.s.
///
using System;
using System.Collections.Generic;
using System.Linq;
using System.IO;
namespace Results.Entities
{
/// <summary>
/// Test, consisting of one or more repetitions of the test 'SingleTest'.
/// </summary>
public class TestData
public class TestData
{
public virtual int Id { get; protected set; }
public virtual int Id { get; protected set; }
public virtual string Name { get; set; }
public virtual int Repeats { get; set; }
public virtual double Qfrom { get; set; } /// [m3/h] flow range low limit
public virtual double Qtg { get; set; } /// [m3/h] flow range low limit
public virtual double Qfrom { get; set; } /// [m3/h] flow range low limit
public virtual double Qto { get; set; } /// [m3/h] flow range high limit
public virtual double TargetVolume { get; set; } /// [l] target test volume
public virtual double TargetTime { get; set; } /// [s] target test time
public virtual string Method { get; set; }
public virtual double ErrLimLo { get; set; } /// [%] usually < 0, in case of heat meters: 1=class1, 2=class2, 3=class3
public virtual double ErrLimHi { get; set; } /// [%] usually > 0, in case of heat meters: -Qn in m3/h
public virtual double Uncertainty { get; set; } /// [%] makes error limits tighter: 0 <= Uncertainty <= abs(ErrLimXx)
public virtual double ErrLimMargin { get; set; } /// [%] makes error limits tighter: 0 <= ErrLimMargin <= abs(ErrLimXx)
public virtual bool DoControlWaterTemp { get; set; }
public virtual float TempLimLo { get; set; }
public virtual float TempLimHi { get; set; }
@@ -30,7 +32,7 @@ namespace Results.Entities
public virtual bool Evaluate { get; set; }
protected TestData()
public TestData()
{
Name = string.Empty;
Method = string.Empty;
@@ -41,14 +43,15 @@ namespace Results.Entities
{
Name = test.Name;
Repeats = test.Repeats;
Qfrom = (double)test.Qfrom;
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;
Uncertainty = (double)test.Uncertainty;
ErrLimMargin = (double)test.Uncertainty;
DoControlWaterTemp = test.DoControlWaterTemp;
TempLimLo = test.TempLimLo;
TempLimHi = test.TempLimHi;
@@ -66,14 +69,15 @@ namespace Results.Entities
{
if (!Name.Equals(td.Name)) return false;
if (Repeats != td.Repeats) return false;
if (Qfrom != td.Qfrom) return false;
if (Qtg != td.Qtg) return false;
if (Qfrom != td.Qfrom) return false;
if (Qto != td.Qto) return false;
if (TargetVolume != td.TargetVolume) return false;
if (TargetTime != td.TargetTime) return false;
if (!Method.Equals(td.Method)) return false;
if (ErrLimLo != td.ErrLimLo) return false;
if (ErrLimHi != td.ErrLimHi) return false;
if (Uncertainty != td.Uncertainty) return false;
if (ErrLimMargin != td.ErrLimMargin) return false;
if (DoControlWaterTemp != td.DoControlWaterTemp) return false;
if (DoControlWaterTemp)
{
@@ -104,5 +108,47 @@ namespace Results.Entities
list.Add(item); /// Item not fund in the list, it is added to the list
return item;
}
public virtual void WriteBinary(BinaryWriter writer)
{
writer.Write(Id);
writer.Write((Name != null) ? Name : string.Empty);
writer.Write(Repeats);
writer.Write(Qtg);
writer.Write(Qfrom);
writer.Write(Qto);
writer.Write(TargetVolume);
writer.Write(TargetTime);
writer.Write((Method != null) ? Method : string.Empty);
writer.Write(ErrLimLo);
writer.Write(ErrLimHi);
writer.Write(ErrLimMargin);
writer.Write(DoControlWaterTemp);
writer.Write(TempLimLo);
writer.Write(TempLimHi);
writer.Write(Publish);
writer.Write(Evaluate);
}
public virtual void ReadBinary(BinaryReader reader)
{
Id = reader.ReadInt32();
Name = reader.ReadString();
Repeats = reader.ReadInt32();
Qtg = reader.ReadDouble();
Qfrom = reader.ReadDouble();
Qto = reader.ReadDouble();
TargetVolume = reader.ReadDouble();
TargetTime = reader.ReadDouble();
Method = reader.ReadString();
ErrLimLo = reader.ReadDouble();
ErrLimHi = reader.ReadDouble();
ErrLimMargin = reader.ReadDouble();
DoControlWaterTemp = reader.ReadBoolean();
TempLimLo = reader.ReadSingle();
TempLimHi = reader.ReadSingle();
Publish = reader.ReadSByte();
Evaluate = reader.ReadBoolean();
}
}
}
+358 -34
View File
@@ -1,36 +1,39 @@
///
/// Copyright (c) 2015-2018 Sensus Slovensko a.s.
/// Copyright (c) 2015-2020 Sensus Slovensko a.s.
///
using System;
using System.Collections.Generic;
using System.Text;
using System.IO;
namespace Results.Entities
{
public class TestRslt
{
/// Identity
/// 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 the DB, does not depent on localisation and customer
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] Measurement time in seconds
public virtual double TestTime { get; set; } /// [s] Measurement time in seconds
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 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]
@@ -54,9 +57,9 @@ namespace Results.Entities
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 int ErrorFlags { get; set; } /// bitfield : bit0=E1, bit1=E2, bit2=E3, etc.
public virtual sbyte ErrorFlagsMd { get; set; } /// 0=off, 1=info, 2=on (evaluated in MeterTestRslt.Passed)
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
@@ -113,6 +116,12 @@ namespace Results.Entities
public virtual float FlowMin { get; set; } /// [m3/h]
public virtual float FlowMax { get; set; } /// [m3/h]
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
@@ -124,6 +133,12 @@ namespace Results.Entities
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; }
/// Wrappers
public virtual string Name() { return Utils.GetTestName(TestData.Name, TestData.Repeats, RepetitionNr); }
public virtual int Repeats() { return TestData.Repeats; }
@@ -132,10 +147,25 @@ 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 bool IsRelErrTest() { return (MethodClass != null) ? (MethodClass.Contains("FixedStart") || MethodClass.Contains("FlyingStart") || MethodClass.Contains("CombinedWithDetection")) : true; }
public virtual bool IsPMaxTest() { return (MethodClass != null) ? (MethodClass.Contains("PMaxTest") || MethodClass.Contains("LeakTest")) : true; }
public virtual string RefFlowmeter() { return (Components != null) ? Components.Flowmeter : 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; }
public virtual bool IsDiverter() { return (MethodClass != null) ? (MethodClass.Contains("FlyingStart") && MethodClass.Contains("MassColl")) : true; }
public virtual bool IsDiverter() { return (MethodClass != null) ? ((MethodClass.Contains("FlyingStart") && MethodClass.Contains("MassColl")) || MethodClass.Contains("DiverterTest")) : true; }
public virtual bool IsVolumeMethod() { return (MethodClass != null) ? (MethodClass.Contains("TestMethods.FixedStart.") || MethodClass.Contains("TestMethods.FlyingStart.")) : false; }
public virtual string MethodElde()
{
if (MethodClass == null) return string.Empty;
else if (MethodClass.Contains("TestMethods.FlyingStartMassCollection.")) return "MS";
else if (MethodClass.Contains("TestMethods.FlyingStartMassCollectionProlonged.")) return "MS";
else if (MethodClass.Contains("TestMethods.FlyingStartMassCollectionComparative.")) return "MS";
else if (MethodClass.Contains("TestMethods.FlyingStart.")) return "VS";
else if (MethodClass.Contains("TestMethods.FixedStartMassCollection.")) return "MP";
else if (MethodClass.Contains("TestMethods.FixedStartTankCollection.")) return "VP";
else if (MethodClass.Contains("TestMethods.FixedStart.")) return "VP";
else return string.Empty;
}
public virtual double ErrLimLo()
{
@@ -185,15 +215,17 @@ namespace Results.Entities
}
}
public virtual double Uncertainty() { return TestData.Uncertainty; }
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; }
protected TestRslt()
public TestRslt()
{
MethodClass = string.Empty;
Remark = string.Empty;
}
public TestRslt(Batch batch, TestData testData, int part, int repetitionNr)
@@ -218,10 +250,13 @@ namespace Results.Entities
StartTime = src.StartTime;
EndTime = src.EndTime;
FlowSetTime = src.FlowSetTime;
TimeBtwnMassMsrmnts = src.TimeBtwnMassMsrmnts;
TestTime = src.TestTime;
PulsesMaster = src.PulsesMaster;
TotalPulsesMstr = src.TotalPulsesMstr;
ConstMasterRaw = src.ConstMasterRaw;
ConstMaster = src.ConstMaster;
ConstMasterCorr = src.ConstMasterCorr;
ConstMaster = src.ConstMaster;
MassStartRaw = src.MassStartRaw;
MassStart = src.MassStart;
MassEndRaw = src.MassEndRaw;
@@ -236,9 +271,15 @@ namespace Results.Entities
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;
ErrorFlags = src.ErrorFlags;
ErrorFlagsMd = src.ErrorFlagsMd;
InfoFlags = src.InfoFlags;
RefEnergy = src.RefEnergy;
AmbTempMean = src.AmbTempMean;
AmbTempStart = src.AmbTempStart;
@@ -290,6 +331,7 @@ namespace Results.Entities
FlowEnd = src.FlowEnd;
FlowMin = src.FlowMin;
FlowMax = src.FlowMax;
Custom1 = src.Custom1;
Custom2 = src.Custom2;
Custom3 = src.Custom3;
@@ -300,13 +342,13 @@ namespace Results.Entities
Custom8 = src.Custom8;
Custom9 = src.Custom9;
Custom10 = src.Custom10;
}
/// <summary> Wrapper </summary>
public virtual Config.Entities.ErrorFlagsMode ErrorFlagsMode()
{
return (Config.Entities.ErrorFlagsMode)ErrorFlagsMd;
}
Counter1 = src.Counter1;
Counter2 = src.Counter2;
Counter3 = src.Counter3;
Counter4 = src.Counter4;
Counter5 = src.Counter5;
}
/// <summary> Wrapper </summary>
public virtual string ErrorFlagsStr()
@@ -333,16 +375,16 @@ namespace Results.Entities
public override string ToString()
{
return string.Format("batch={0}, procedure={1}, test={2}, {3} {4}", Batch.BatchNr, Batch.ProcedureName, Name(), StartTime.ToShortDateString(), StartTime.ToShortTimeString());
return string.Format("batch={0}, procedure={1}, test={2}, part={3} start={4} {5}", Batch.BatchNr, Batch.ProcedureName, Name(), Part, StartTime.ToShortDateString(), StartTime.ToShortTimeString());
}
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} ErrorFlagsMd={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} 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}",
Part, RepetitionNr, TestDone, Remark, StartTime, EndTime, FlowSetTime, TestTime,
PulsesMaster, ConstMaster, MassStartRaw, MassStart, MassEndRaw, MassEnd,
DensityIn, DensityLine, DensityDiv, Buoyancy, FlowMass, FlowVolume,
VolumeCTV, VolumeMaster, ErrorMaster, ErrorFlags, ErrorFlagsMd,
VolumeCTV, VolumeMaster, ErrorMaster, ErrorFlags, InfoFlags,
AmbTempMean, AmbTempStart, AmbTempEnd, AmbTempMin, AmbTempMax,
AmbPressMean, AmbPressStart, AmbPressEnd, AmbPressMin, AmbPressMax,
AmbHumiMean, AmbHumiStart, AmbHumiEnd, AmbHumiMin, AmbHumiMax,
@@ -356,5 +398,287 @@ namespace Results.Entities
Custom1, Custom2, Custom3, Custom4, Custom5, Custom6, Custom7, Custom8, Custom9, Custom10,
DiverterStart, DiverterEnd);
}
}
public virtual void WriteBinary(BinaryWriter writer, IList<TestData> savedTestDatas)
{
writer.Write(Id);
/// Save TestData or TestData.Name
if (savedTestDatas != null && !savedTestDatas.Contains(TestData))
{
writer.Write(true);
TestData.WriteBinary(writer);
savedTestDatas.Add(TestData);
}
else
{
writer.Write(false);
writer.Write(TestData.Name);
}
/// Save Components if not null
if (Components != null)
{
writer.Write(true);
Components.WriteBinary(writer); /// Write Components
}
else
{
writer.Write(false);
}
writer.Write(Part);
writer.Write(RepetitionNr);
writer.Write((MethodClass != null) ? MethodClass : string.Empty);
writer.Write(TestDone);
writer.Write((Remark != null) ? Remark : string.Empty);
writer.Write(StartTime.ToString());
writer.Write(EndTime.ToString());
writer.Write(FlowSetTime);
writer.Write(TimeBtwnMassMsrmnts);
writer.Write(TestTime);
writer.Write(TestTimeCorrection);
writer.Write(PulsesMaster);
writer.Write(TotalPulsesMstr);
writer.Write(ConstMasterRaw);
writer.Write(ConstMasterCorr);
writer.Write(ConstMaster);
writer.Write(MassStartRaw);
writer.Write(MassStart);
writer.Write(MassEndRaw);
writer.Write(MassEnd);
writer.Write(DensityIn);
writer.Write(DensityLine);
writer.Write(DensityDiv);
writer.Write(Buoyancy);
writer.Write(FlowMass);
writer.Write(FlowVolume);
writer.Write(VolumeCTV);
writer.Write(VolumeMaster);
writer.Write(ErrorMaster);
writer.Write(DiverterStart);
writer.Write(DivStart10);
writer.Write(DivStart50);
writer.Write(DivStart90);
writer.Write(DiverterEnd);
writer.Write(DivEnd90);
writer.Write(DivEnd50);
writer.Write(DivEnd10);
writer.Write(ErrorFlags);
writer.Write(InfoFlags);
writer.Write(RefEnergy);
writer.Write(AmbTempMean);
writer.Write(AmbTempStart);
writer.Write(AmbTempEnd);
writer.Write(AmbTempMin);
writer.Write(AmbTempMax);
writer.Write(AmbPressMean);
writer.Write(AmbPressStart);
writer.Write(AmbPressEnd);
writer.Write(AmbPressMin);
writer.Write(AmbPressMax);
writer.Write(AmbHumiMean);
writer.Write(AmbHumiStart);
writer.Write(AmbHumiEnd);
writer.Write(AmbHumiMin);
writer.Write(AmbHumiMax);
writer.Write(PressUpMean);
writer.Write(PressUpStart);
writer.Write(PressUpEnd);
writer.Write(PressUpMin);
writer.Write(PressUpMax);
writer.Write(PressDownMean);
writer.Write(PressDownStart);
writer.Write(PressDownEnd);
writer.Write(PressDownMin);
writer.Write(PressDownMax);
writer.Write(PressDeltaMean);
writer.Write(PressDeltaStart);
writer.Write(PressDeltaEnd);
writer.Write(PressDeltaMin);
writer.Write(PressDeltaMax);
writer.Write(TempUpMean);
writer.Write(TempUpStart);
writer.Write(TempUpEnd);
writer.Write(TempUpMin);
writer.Write(TempUpMax);
writer.Write(TempDownMean);
writer.Write(TempDownStart);
writer.Write(TempDownEnd);
writer.Write(TempDownMin);
writer.Write(TempDownMax);
writer.Write(TempDivMean);
writer.Write(TempDivStart);
writer.Write(TempDivEnd);
writer.Write(TempDivMin);
writer.Write(TempDivMax);
writer.Write(FlowMean);
writer.Write(FlowStart);
writer.Write(FlowEnd);
writer.Write(FlowMin);
writer.Write(FlowMax);
writer.Write(Uncertnt);
writer.Write(UncertntScale);
writer.Write(UncertntDensity);
writer.Write(UncertntTemp);
writer.Write(UncertntPressure);
writer.Write(Custom1);
writer.Write(Custom2);
writer.Write(Custom3);
writer.Write(Custom4);
writer.Write(Custom5);
writer.Write(Custom6);
writer.Write(Custom7);
writer.Write(Custom8);
writer.Write(Custom9);
writer.Write(Custom10);
writer.Write(Counter1);
writer.Write(Counter2);
writer.Write(Counter3);
writer.Write(Counter4);
writer.Write(Counter5);
}
public virtual void ReadBinary(BinaryReader reader, IList<TestData> testDatas)
{
Id = reader.ReadInt32();
/// Retrieve TestData
if (reader.ReadBoolean())
{
(TestData = new TestData()).ReadBinary(reader);
if (testDatas != null) testDatas.Add(TestData);
}
else
{
TestData = null;
string testDataName = reader.ReadString();
foreach (var td in testDatas)
{
if (td.Name == testDataName)
{
TestData = td;
break;
}
}
}
if (reader.ReadBoolean())
{
(Components = new Components()).ReadBinary(reader); /// Read Components
}
Part = reader.ReadInt32();
RepetitionNr = reader.ReadInt32();
MethodClass = reader.ReadString();
TestDone = reader.ReadBoolean();
Remark = reader.ReadString();
StartTime = DateTime.Parse(reader.ReadString());
EndTime = DateTime.Parse(reader.ReadString());
FlowSetTime = reader.ReadInt32();
TimeBtwnMassMsrmnts = reader.ReadInt32();
TestTime = reader.ReadDouble();
TestTimeCorrection = reader.ReadDouble();
PulsesMaster = reader.ReadDouble();
TotalPulsesMstr = reader.ReadDouble();
ConstMasterRaw = reader.ReadDouble();
ConstMasterCorr = reader.ReadDouble();
ConstMaster = reader.ReadDouble();
MassStartRaw = reader.ReadDouble();
MassStart = reader.ReadDouble();
MassEndRaw = reader.ReadDouble();
MassEnd = reader.ReadDouble();
DensityIn = reader.ReadDouble();
DensityLine = reader.ReadDouble();
DensityDiv = reader.ReadDouble();
Buoyancy = reader.ReadDouble();
FlowMass = reader.ReadDouble();
FlowVolume = reader.ReadDouble();
VolumeCTV = reader.ReadDouble();
VolumeMaster = reader.ReadDouble();
ErrorMaster = reader.ReadDouble();
DiverterStart = reader.ReadSingle();
DivStart10 = reader.ReadSingle();
DivStart50 = reader.ReadSingle();
DivStart90 = reader.ReadSingle();
DiverterEnd = reader.ReadSingle();
DivEnd90 = reader.ReadSingle();
DivEnd50 = reader.ReadSingle();
DivEnd10 = reader.ReadSingle();
ErrorFlags = reader.ReadInt64();
InfoFlags = reader.ReadInt64();
RefEnergy = reader.ReadDouble();
AmbTempMean = reader.ReadSingle();
AmbTempStart = reader.ReadSingle();
AmbTempEnd = reader.ReadSingle();
AmbTempMin = reader.ReadSingle();
AmbTempMax = reader.ReadSingle();
AmbPressMean = reader.ReadSingle();
AmbPressStart = reader.ReadSingle();
AmbPressEnd = reader.ReadSingle();
AmbPressMin = reader.ReadSingle();
AmbPressMax = reader.ReadSingle();
AmbHumiMean = reader.ReadSingle();
AmbHumiStart = reader.ReadSingle();
AmbHumiEnd = reader.ReadSingle();
AmbHumiMin = reader.ReadSingle();
AmbHumiMax = reader.ReadSingle();
PressUpMean = reader.ReadSingle();
PressUpStart = reader.ReadSingle();
PressUpEnd = reader.ReadSingle();
PressUpMin = reader.ReadSingle();
PressUpMax = reader.ReadSingle();
PressDownMean = reader.ReadSingle();
PressDownStart = reader.ReadSingle();
PressDownEnd = reader.ReadSingle();
PressDownMin = reader.ReadSingle();
PressDownMax = reader.ReadSingle();
PressDeltaMean = reader.ReadSingle();
PressDeltaStart = reader.ReadSingle();
PressDeltaEnd = reader.ReadSingle();
PressDeltaMin = reader.ReadSingle();
PressDeltaMax = reader.ReadSingle();
TempUpMean = reader.ReadSingle();
TempUpStart = reader.ReadSingle();
TempUpEnd = reader.ReadSingle();
TempUpMin = reader.ReadSingle();
TempUpMax = reader.ReadSingle();
TempDownMean = reader.ReadSingle();
TempDownStart = reader.ReadSingle();
TempDownEnd = reader.ReadSingle();
TempDownMin = reader.ReadSingle();
TempDownMax = reader.ReadSingle();
TempDivMean = reader.ReadSingle();
TempDivStart = reader.ReadSingle();
TempDivEnd = reader.ReadSingle();
TempDivMin = reader.ReadSingle();
TempDivMax = reader.ReadSingle();
FlowMean = reader.ReadSingle();
FlowStart = reader.ReadSingle();
FlowEnd = reader.ReadSingle();
FlowMin = reader.ReadSingle();
FlowMax = reader.ReadSingle();
Uncertnt = reader.ReadSingle();
UncertntScale = reader.ReadSingle();
UncertntDensity = reader.ReadSingle();
UncertntTemp = reader.ReadSingle();
UncertntPressure = reader.ReadSingle();
Custom1 = reader.ReadSingle();
Custom2 = reader.ReadSingle();
Custom3 = reader.ReadSingle();
Custom4 = reader.ReadSingle();
Custom5 = reader.ReadSingle();
Custom6 = reader.ReadSingle();
Custom7 = reader.ReadSingle();
Custom8 = reader.ReadSingle();
Custom9 = reader.ReadSingle();
Custom10 = reader.ReadSingle();
Counter1 = reader.ReadInt32();
Counter2 = reader.ReadInt32();
Counter3 = reader.ReadInt32();
Counter4 = reader.ReadInt32();
Counter5 = reader.ReadInt32();
}
}
}
+365 -36
View File
@@ -1,14 +1,15 @@
///
/// Copyright (c) 2015-2017 Sensus Metering Systems
/// Copyright (c) 2015-2020 Sensus Slovensko a.s.
///
using System;
using System.Collections.Generic;
using System.Text;
using System.IO;
using Config.Entities;
using Results.Resources;
namespace Results.Entities
{
public enum ResultCode
{
None = 0,
@@ -40,17 +41,18 @@ namespace Results.Entities
public class WaterMeter
{
public virtual int Id { get; protected set; }
public virtual int Id { get; protected set; }
public virtual string SerialNr { get; set; } /// S/N _or_ S/N of the main meter of a compound meter _or_ PCB Number of an iPerl water meter
public virtual string SerialNrAux { get; set; } /// S/N of the aux. meter of a compound meter _or_ a complete assigned S/N of an iPerl water meter
public virtual string PurchaseOrder { get; set; }
public virtual int YearOfProduction { get; set; }
public virtual int WMPosition { get; set; }
public virtual int WMPosition { get; set; } /// 1-based water meter position
public virtual string EndState { get; set; } /// End state (of the main water meter)
public virtual string EndStateAux { get; set; } /// End state of the auxiliary water meter
public virtual double QRise { get; set; } /// [m3/h] detected Q_rise of a composed meter or 'sensitivity' of a single meter
public virtual double QFall { get; set; } /// [m3/h] detected Q_fall of a composed meter
public virtual int ErrorFlags { get; set; } /// bitfield : bit14=E15, bit15=E16
public virtual long ErrorFlags { get; set; } /// bitfield : bit14=E15, bit15=E16
public virtual long InfoFlags { get; set; } /// bitfield : bit14=E15, bit15=E16
public virtual bool Passed { get; set; }
public virtual int ResultCode { get; set; }
public virtual string ArchivePath { get; set; }
@@ -62,8 +64,6 @@ namespace Results.Entities
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
public virtual double Q2ErrWOCorrection { get; set; }
public virtual bool Q2CorrectionDone { get; set; } /// true = iPerl Q2 correction was done
public virtual double Q2Correction { get; set; } /// !!! obsolete
public virtual int Q2CorrRL { get; set; } /// iPerl Q2 correction for the R-flow written to iPerl
public virtual int Q2CorrLR { get; set; } /// iPerl Q2 correction for the L-flow written to iPerl
public virtual int Q2CorrFlowRight { get; set; } /// 1 = right to left
@@ -91,10 +91,17 @@ namespace Results.Entities
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; } /// Not mapped to DB !!! 0=unknown (saving to Oracle failed), >=1 ... pruefindex
public virtual int HydrPruefung { get; set; } /// Not mapped to DB !!!
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 WaterMeterData WaterMeterData { get; set; }
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
public virtual WaterMeterData WaterMeterData { get; set; }
public virtual Batch Batch { get; set; }
public virtual IList<MeterTestRslt> MeterTestRslts { get; set; }
@@ -126,27 +133,20 @@ namespace Results.Entities
public virtual DateTime StartTime() { return Batch.StartTime; }
public virtual DateTime EndTime() { return Batch.EndTime; }
protected MeterTestRslt lastMeterTestRslts;
public virtual MeterTestRslt LastMeterTestRslts() { return lastMeterTestRslts; }
public virtual int ErrorFlagsFromTests(out ErrorFlagsMode errorFlagsMode)
public virtual long ErrorFlagsFromTests()
{
int errorFlags = 0;
ErrorFlagsMode eFlagsMode = 0; /// = ErrorFlagsMode.Off;
long errorFlags = 0;
foreach (var mtr in MeterTestRslts)
{
if (mtr.Evaluate() && mtr.TestDone) errorFlags |= mtr.TestRslt.ErrorFlags;
if ((int)mtr.TestRslt.ErrorFlagsMode() > (int)eFlagsMode) eFlagsMode = mtr.TestRslt.ErrorFlagsMode();
}
errorFlagsMode = eFlagsMode; /// Maximum from all tests (=ErrorFlagsMode.On if at least one test is ErrorFlagsMode.On)
return errorFlags;
}
public virtual int ErrorFlagsFromTestsAndWM(out ErrorFlagsMode errorFlagsMode)
public virtual long ErrorFlagsFromTestsAndWM()
{
int eFlagsFromTests = ErrorFlagsFromTests(out errorFlagsMode) | ErrorFlags;
return (errorFlagsMode != ErrorFlagsMode.Off) ? (eFlagsFromTests | ErrorFlags) : 0;
return ErrorFlagsFromTests() | ErrorFlags;
}
/// <summary>
@@ -155,8 +155,7 @@ namespace Results.Entities
/// <returns>ErrorFlags string</returns>
public virtual string ErrorFlagsStr()
{
ErrorFlagsMode errorFlagsMode;
string eFlags = Utils.ErrorFlagsStr(ErrorFlagsFromTestsAndWM(out errorFlagsMode));
string eFlags = Utils.ErrorFlagsStr(ErrorFlagsFromTestsAndWM());
#if LANG_PL
return string.IsNullOrEmpty(eFlags) ? "brak" : eFlags;
#else
@@ -166,8 +165,7 @@ namespace Results.Entities
public virtual string PassedOrErrorFlagsStr()
{
ErrorFlagsMode errorFlagsMode;
string eFlags = Utils.ErrorFlagsStr(ErrorFlagsFromTestsAndWM(out errorFlagsMode));
string eFlags = Utils.ErrorFlagsStr(ErrorFlagsFromTestsAndWM());
return string.IsNullOrEmpty(eFlags) ? (WaterMeterData.Text4 + PassedColorStr(null)) : eFlags;
}
@@ -187,19 +185,14 @@ namespace Results.Entities
}
}
ErrorFlagsMode errorFlagsMode;
errFlgsStr.Append(Utils.ErrorFlagsStr(ErrorFlagsFromTestsAndWM(out errorFlagsMode)));
errFlgsStr.Append(Utils.ErrorFlagsStr(ErrorFlagsFromTestsAndWM()));
return errFlgsStr.ToString();
}
public virtual bool PassedFromTests()
{
ErrorFlagsMode eFlagsMode;
int eFlags = ErrorFlagsFromTestsAndWM(out eFlagsMode);
bool passed = true;
if (eFlagsMode == ErrorFlagsMode.On && eFlags != 0) passed = false;
bool passed = (ErrorFlagsFromTestsAndWM() == 0);
foreach (var mtr in MeterTestRslts)
{
@@ -279,7 +272,12 @@ namespace Results.Entities
{
return mtr;
}
}
else if (meterId == Config.Entities.CompoundMeterId.SingleOrCompound &&
mtr.CompoundMeterId == (byte)Config.Entities.CompoundMeterId.HeatMeterEnergy)
{
return mtr;
}
}
}
return null;
}
@@ -341,7 +339,36 @@ namespace Results.Entities
public WaterMeter()
{
MeterTestRslts = new List<MeterTestRslt>();
}
#if ORACLE_DB
Pruefindex = 1;
HydrPruefung = 0;
WMTypeRevision = 0;
RawTestInfos = null;
CompleteTestInfos = null;
#endif
ProcessId = 0;
SessionId = 0;
ErrorFlags = 0;
LastRecordIsNok = false;
/// Initialize strings
SerialNr = string.Empty;
SerialNrAux = string.Empty;
PurchaseOrder = string.Empty;
EndState = string.Empty;
EndStateAux = string.Empty;
ArchivePath = string.Empty;
Remark = string.Empty;
#if TURA_SPECIAL
CompleteSerialNr = string.Empty;
RadioAddress = string.Empty;
ProdUserName = string.Empty;
ProdPurchaseOrder = string.Empty;
#endif
#if IPERL
FWVersion = string.Empty;
#endif
}
public virtual void CopyContentFrom(WaterMeter src)
@@ -365,9 +392,9 @@ namespace Results.Entities
#if IPERL
OrigCalibFactor = src.OrigCalibFactor;
CalibFactor = src.CalibFactor;
OrigCalibFactorLNA = src.OrigCalibFactorLNA;
CalibFactorLNA = src.CalibFactorLNA;
Q2ErrWOCorrection = src.Q2ErrWOCorrection;
Q2CorrectionDone = src.Q2CorrectionDone;
Q2Correction = src.Q2Correction;
Q2CorrRL = src.Q2CorrRL;
Q2CorrLR = src.Q2CorrLR;
Q2CorrFlowRight = src.Q2CorrFlowRight;
@@ -394,7 +421,14 @@ namespace Results.Entities
#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;
foreach (var mtr in MeterTestRslts)
{
MeterTestRslt srcMtr = src.GetMeterTestRslt(mtr.Name(), (Config.Entities.CompoundMeterId)mtr.CompoundMeterId);
@@ -419,5 +453,300 @@ namespace Results.Entities
sb.AppendFormat(" test start: {0} {1} batch={2}", StartTime().ToShortDateString(), StartTime().ToShortTimeString(), BatchNr());
return sb.ToString();
}
/// <summary>
/// Get decorated test names for a specified watermeter
/// </summary>
/// <param name="wMtr">Watermeter results entity</param>
/// <returns>A list of strings</returns>
public virtual IList<string> GetAllDecoratedTestNames()
{
IList<string> testNames = new List<string>();
if (MeterTestRslts != null)
{
foreach (var mtr in MeterTestRslts)
{
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))
{
testNames.Add(mtr.Name());
}
}
}
return testNames;
}
static readonly System.Drawing.Color NotCompletedColor = System.Drawing.Color.White;
static readonly System.Drawing.Color OkColor = System.Drawing.Color.LightGreen;
static readonly System.Drawing.Color NokColor = System.Drawing.Color.LightPink;
static readonly System.Drawing.Color RejectColor = System.Drawing.Color.Magenta;
static readonly System.Drawing.Color ProductionErrorColor = System.Drawing.Color.RoyalBlue;
static readonly System.Drawing.Color WrongDirectionColor = System.Drawing.Color.Gold;
static readonly System.Drawing.Color WrongQ2FactorsColor = System.Drawing.Color.Red;
/// <summary>
/// Get color for highlighting results and an apporpriate text message.
/// </summary>
/// <param name="wMtr">Water meter results entity</param>
/// <param name="message">Appropriate message</param>
/// <returns>Color for results</returns>
public virtual System.Drawing.Color GetColorOfResults(bool maxRepeatsExceeded, out string message)
{
bool wmtrCompleted = CompletedFromTests();
bool wmtrPassed = PassedFromTests();
if ((ErrorFlags & (int)ErrorFlagMask.E28) != 0)
{
message = Strings.Previous_step_is_missing_or_NOK;
return ProductionErrorColor;
}
else if ((ErrorFlags & (int)ErrorFlagMask.E27) != 0)
{
message = Strings.Wrong_iPerl_counting_direction;
return WrongDirectionColor;
}
else if ((ErrorFlags & (int)ErrorFlagMask.E26) != 0)
{
message = Strings.Invalid_Q2_correction_factors;
return WrongQ2FactorsColor;
}
else if (wmtrPassed)
{
/// Water meter passed (therefore is was also completed)
message = Strings.Passed;
return OkColor;
}
else if (wmtrCompleted)
{
/// Water meter was completed but did not pass => Failed
if (maxRepeatsExceeded)
{
message = Strings.Test_repetition_count_exceeded_upper_limit;
return RejectColor;
}
else
{
message = Strings.Failed;
return NokColor;
}
}
else if (Disabled)
{
/// Water meter was not completed yet => did not pass, did not fail
message = Strings.This_position_is_disabled;
return NotCompletedColor;
}
else
{
/// Water meter was not completed yet => did not pass, did not fail
message = Strings.Test_in_progress;
return NotCompletedColor;
}
}
public virtual void WriteBinary(BinaryWriter writer, IList<WaterMeterData> savedWMDatas)
{
writer.Write(Id);
writer.Write((SerialNr != null) ? SerialNr : string.Empty);
writer.Write((SerialNrAux != null) ? SerialNrAux : string.Empty);
writer.Write((PurchaseOrder != null) ? PurchaseOrder : string.Empty);
writer.Write(YearOfProduction);
writer.Write(WMPosition);
writer.Write((EndState != null) ? EndState : string.Empty);
writer.Write((EndStateAux != null) ? EndStateAux : string.Empty);
writer.Write(QRise);
writer.Write(QFall);
writer.Write(ErrorFlags);
writer.Write(InfoFlags);
writer.Write(Passed);
writer.Write(ResultCode);
writer.Write((ArchivePath != null) ? ArchivePath : string.Empty);
writer.Write((Remark != null) ? Remark : string.Empty);
#if IPERL
writer.Write(OrigCalibFactor);
writer.Write(CalibFactor);
writer.Write(OrigCalibFactorLNA);
writer.Write(CalibFactorLNA);
writer.Write(Q2ErrWOCorrection);
writer.Write(Q2CorrRL);
writer.Write(Q2CorrLR);
writer.Write(Q2CorrFlowRight);
writer.Write(Diff2Hz8Hz);
writer.Write(Hz2CorrectionDone);
writer.Write(Hz2Correction);
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);
writer.Write((ProdTestBench != null) ? ProdTestBench : string.Empty);
writer.Write(ProdWMPosition);
writer.Write((ProdUserName != null) ? ProdUserName : string.Empty);
writer.Write((ProdPurchaseOrder != null) ? ProdPurchaseOrder : string.Empty);
writer.Write(ProdPassed);
writer.Write(ProdResultCode);
writer.Write(ProdQ2CorrRL);
writer.Write(ProdQ2CorrLR);
#endif
#if ORACLE_DB
writer.Write(Pruefindex);
writer.Write(HydrPruefung);
writer.Write(WMTypeRevision);
/// Write RawTestInfos
IList<Results.Output.SensusTestInfo> rawTestInfos = RawTestInfos as IList<Results.Output.SensusTestInfo>;
writer.Write((rawTestInfos != null) ? rawTestInfos.Count : 0);
if (rawTestInfos != null)
{
for (int i = 0; i < rawTestInfos.Count; i++) rawTestInfos[i].WriteBinary(writer);
}
/// Write CompleteTestInfos
Results.Output.SensusTestInfo[] completeTestInfos = CompleteTestInfos as Results.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);
/// Save WaterMeterData or WaterMeterData.Id
if (WaterMeterData != null && savedWMDatas != null && !savedWMDatas.Contains(WaterMeterData))
{
writer.Write(true);
WaterMeterData.WriteBinary(writer);
savedWMDatas.Add(WaterMeterData);
}
else
{
writer.Write(false);
}
/// Write MeterTestRslts
int meterTestRsltsCount = MeterTestRslts != null ? MeterTestRslts.Count : 0;
writer.Write(meterTestRsltsCount);
for (int i = 0; i < meterTestRsltsCount; i++)
{
MeterTestRslts[i].WriteBinary(writer);
}
}
public virtual void ReadBinary(BinaryReader reader, IList<WaterMeterData> wmDatasRetrievedSoFar, IList<TestRslt> testRslts)
{
Id = reader.ReadInt32();
SerialNr = reader.ReadString();
SerialNrAux = reader.ReadString();
PurchaseOrder = reader.ReadString();
YearOfProduction = reader.ReadInt32();
WMPosition = reader.ReadInt32();
EndState = reader.ReadString();
EndStateAux = reader.ReadString();
QRise = reader.ReadDouble();
QFall = reader.ReadDouble();
ErrorFlags = reader.ReadInt64();
InfoFlags = reader.ReadInt64();
Passed = reader.ReadBoolean();
ResultCode = reader.ReadInt32();
ArchivePath = reader.ReadString();
Remark = reader.ReadString();
#if IPERL
OrigCalibFactor = reader.ReadDouble();
CalibFactor = reader.ReadDouble();
OrigCalibFactorLNA = reader.ReadDouble();
CalibFactorLNA = reader.ReadDouble();
Q2ErrWOCorrection = reader.ReadDouble();
Q2CorrRL = reader.ReadInt32();
Q2CorrLR = reader.ReadInt32();
Q2CorrFlowRight = reader.ReadInt32();
Diff2Hz8Hz = reader.ReadDouble();
Hz2CorrectionDone = reader.ReadBoolean();
Hz2Correction = reader.ReadInt32();
FWVersion = reader.ReadString();
#endif
#if TURA_SPECIAL
AssignedSerialNr = reader.ReadInt32();
CompleteSerialNr = reader.ReadString();
RadioAddress = reader.ReadString();
PaletteNr = reader.ReadInt32();
UmkartonNr = reader.ReadInt32();
ProdTestBench = reader.ReadString();
ProdWMPosition = reader.ReadInt32();
ProdUserName = reader.ReadString();
ProdPurchaseOrder = reader.ReadString();
ProdPassed = reader.ReadBoolean();
ProdResultCode = reader.ReadInt32();
ProdQ2CorrRL = reader.ReadInt32();
ProdQ2CorrLR = reader.ReadInt32();
#endif
#if ORACLE_DB
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>();
for (int i = 0; i < rawTestInfosCount; i++)
{
Results.Output.SensusTestInfo ti = new Results.Output.SensusTestInfo();
ti.ReadBinary(reader);
rawTestInfos.Add(ti);
}
RawTestInfos = rawTestInfos;
/// Read CompleteTestInfos
int completeTestInfosLen = reader.ReadInt32();
Results.Output.SensusTestInfo[] completeTestInfos = new Results.Output.SensusTestInfo[completeTestInfosLen];
for (int i = 0; i < completeTestInfosLen; i++)
{
Results.Output.SensusTestInfo ti = new Results.Output.SensusTestInfo();
ti.ReadBinary(reader);
completeTestInfos[i] = ti;
}
CompleteTestInfos = completeTestInfos;
#endif
ProcessId = reader.ReadInt32();
SessionId = reader.ReadInt32();
LastRecordIsNok = reader.ReadBoolean();
/// Retrieve TestData
if (reader.ReadBoolean())
{
(WaterMeterData = new WaterMeterData()).ReadBinary(reader);
if (wmDatasRetrievedSoFar != null) wmDatasRetrievedSoFar.Add(WaterMeterData);
}
else
{
WaterMeterData = null;
foreach (var wmd in wmDatasRetrievedSoFar)
{
WaterMeterData = wmd;
break;
}
}
/// Read MeterTestRslts
int meterTestRsltsCount = reader.ReadInt32();
MeterTestRslts = new List<MeterTestRslt>();
for (int i = 0; i < meterTestRsltsCount; i++)
{
MeterTestRslt mtr = new MeterTestRslt();
mtr.WaterMeter = this;
mtr.ReadBinary(reader, testRslts);
MeterTestRslts.Add(mtr);
}
}
}
}
+81 -7
View File
@@ -1,16 +1,16 @@
///
/// Copyright (c) 2015-2017 Sensus Slovensko a.s.
/// Copyright (c) 2015-2020 Sensus Slovensko a.s.
///
using System;
using System.Collections.Generic;
using System.Linq;
using System.IO;
namespace Results.Entities
{
public class WaterMeterData
public class WaterMeterData
{
public virtual int Id { get; protected set; }
public virtual int Id { get; protected set; }
public virtual string ProductName { get; set; }
public virtual string Producer { get; set; }
@@ -54,7 +54,6 @@ namespace Results.Entities
#if ORACLE_DB
public virtual int WMTypeId { get; set; }
public virtual int WMTypeRev { get; set; }
#endif
public WaterMeterData()
@@ -111,7 +110,6 @@ namespace Results.Entities
#if ORACLE_DB
if (WMTypeId != wmd.WMTypeId) return false;
if (WMTypeRev != wmd.WMTypeRev) return false;
#endif
return true;
}
@@ -134,5 +132,81 @@ namespace Results.Entities
list.Add(item); /// Item not fund in the list, it is added to the list
return item;
}
}
public virtual void WriteBinary(BinaryWriter writer)
{
writer.Write(Id);
writer.Write((ProductName != null) ? ProductName : string.Empty);
writer.Write((Producer != null) ? Producer : string.Empty);
writer.Write(DN);
writer.Write(L);
writer.Write((int)Mounting);
writer.Write(NewQnames);
writer.Write(Q4_Qmax);
writer.Write(Q3_Qn);
writer.Write(Q2_Qt);
writer.Write(Q1_Qmin);
writer.Write((MetrologicalClass != null) ? MetrologicalClass : string.Empty);
writer.Write((int)TemperatureClass);
writer.Write((int)PressureLossClass);
writer.Write((int)MaxAdmissiblePressure);
writer.Write((int)FlowProfileSensitivityClass);
writer.Write((ApprovalInfo != null) ? ApprovalInfo : string.Empty);
writer.Write((Certificate != null) ? Certificate : string.Empty);
writer.Write(PulsesPerLtr);
writer.Write((ProducerAux != null) ? ProducerAux : string.Empty);
writer.Write(Q3_Qn_Aux);
writer.Write((MetrologicalClassAux != null) ? MetrologicalClassAux : string.Empty);
writer.Write((ApprovalInfoAux != null) ? ApprovalInfoAux : string.Empty);
writer.Write((int)Medium);
writer.Write((Text1 != null) ? Text1 : string.Empty);
writer.Write((Text2 != null) ? Text2 : string.Empty);
writer.Write((Text3 != null) ? Text3 : string.Empty);
writer.Write((Text4 != null) ? Text4 : string.Empty);
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)
{
Id = reader.ReadInt32();
ProductName = reader.ReadString();
Producer = reader.ReadString();
DN = reader.ReadDouble();
L = reader.ReadDouble();
Mounting = (Config.Entities.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();
ApprovalInfo = reader.ReadString();
Certificate = reader.ReadString();
PulsesPerLtr = reader.ReadDouble();
ProducerAux = reader.ReadString();
Q3_Qn_Aux = reader.ReadDouble();
MetrologicalClassAux = reader.ReadString();
ApprovalInfoAux = reader.ReadString();
Medium = (Config.Entities.Medium)reader.ReadInt32();
Text1 = reader.ReadString();
Text2 = reader.ReadString();
Text3 = reader.ReadString();
Text4 = reader.ReadString();
Text5 = reader.ReadString();
Compound = reader.ReadBoolean();
HeatMeter = reader.ReadBoolean();
#if ORACLE_DB
WMTypeId = reader.ReadInt32();
#endif
}
}
}
+224 -270
View File
@@ -1,14 +1,11 @@
using System;
using System.Collections.Generic;
using System.ComponentModel;
using System.Data;
using System.Drawing;
using System.Linq;
using System.Text;
using System.Windows.Forms;
using log4net;
using Config.Entities;
using Results.Resources;
using NHibernate;
using TracingDB.Entities;
namespace Results.Forms
{
@@ -16,42 +13,33 @@ namespace Results.Forms
{
static readonly ILog log = LogManager.GetLogger(typeof(BatchResultsDlg));
DateTime lastRedraw;
DateTime lastSizeChange;
bool loaded;
///
/// Public members
///
public Results.BatchResults Results;
public IList<Results.WMeterRsltItemSpec> Items;
public MetersArrangement MetersArrangement;
public TestsArrangement TestsArrangement;
public int NrMetersInOneGroup;
public IList<Results.WMeterRsltItemSpec> RsltItems_Screen_SingleWM;
public IList<Results.WMeterRsltItemSpec> RsltItems_Screen_CombinedWM;
public IList<Results.WMeterRsltItemSpec> RsltItems_Screen_HeatM;
public int[] RsltsClmnWidths { set { rsltsClmnWidths = value; } }
public bool ShowDisabledPositions;
public int MinWidth;
public int MinHeight;
public int PopupResultsLeft;
public int PopupResultsTop;
public int PopupResultsWidth;
public int PopupResultsHeight;
public int[] RsltsClmnWidths;
public Results.BatchResults Results { set { Display(value); } }
///
/// Private members
///
Results.BatchResults results;
MetersKind metersKind;
ListView firstListView;
public int[] rsltsClmnWidths;
int rsltsClmnCount { get { return (rsltsClmnWidths != null) ? rsltsClmnWidths.Length : 0; } }
int lvWidth;
int lvHeight;
IOneWMResultsCtrl[] wmRsltsCtrl; /// An array of controls with water meter results.
IOneWMResultsCtrl firstEnabledControl;
DateTime lastRedraw;
DateTime lastSizeChange;
int metersInOneGroup;
int nrGroups;
Timer timer;
@@ -59,291 +47,226 @@ namespace Results.Forms
public BatchResultsDlg()
{
InitializeComponent();
Text = Strings.Results;
firstEnabledControl = null;
lastSizeChange = DateTime.Now;
nrGroups = 1;
metersInOneGroup = 1;
// Create a timer with a ten second interval.
/// Create a timer with one second interval.
timer = new Timer();
timer.Interval = 500; /// ms
timer.Interval = 1000; /// ms
timer.Tick += new EventHandler(OnTimer);
timer.Start();
}
private void BatchResultsDlg_Load(object sender, EventArgs e)
{
if (PopupResultsLeft != 0) Left = PopupResultsLeft;
if (PopupResultsTop != 0) Top = PopupResultsTop;
if (PopupResultsWidth != 0) Width = PopupResultsWidth;
if (PopupResultsLeft != 0) Left = PopupResultsLeft;
if (PopupResultsTop != 0) Top = PopupResultsTop;
if (PopupResultsWidth != 0) Width = PopupResultsWidth;
if (PopupResultsHeight != 0) Height = PopupResultsHeight;
loaded = true;
if (results != null) Redraw();
}
public void Display(Results.BatchResults results)
{
this.results = results;
if (loaded) Redraw();
CreateControlsAndFillPanel(Results);
UpdateColumnWidths(RsltsClmnWidths);
UpdateResults(Results);
}
IList<Results.WMeterRsltItemSpec> GetRsltItems(MetersKind metersKind)
///
/// Handle double-click inside a water meter results control
///
void OnDoubleClick(object sender, Results.Forms.WaterMeterEventArgs args)
{
IList<Results.WMeterRsltItemSpec> srcItems;
switch (metersKind)
if (args.WMPosition > 0)
{
default:
case MetersKind.Single: srcItems = RsltItems_Screen_SingleWM; break;
case MetersKind.Combined: srcItems = RsltItems_Screen_CombinedWM; break;
case MetersKind.HeatMeter: srcItems = RsltItems_Screen_HeatM; break;
foreach (var wm in Results.Batch.WaterMeters)
{
if (!wm.Disabled && (wm.WMPosition == args.WMPosition))
{
ShowMoreWMResults(wm);
return;
}
}
}
IList<Results.WMeterRsltItemSpec> copiedItems = new List<Results.WMeterRsltItemSpec>();
foreach (var it in srcItems) copiedItems.Add(it.Clone());
return copiedItems;
MessageBox.Show(Strings.No_water_meter);
return;
}
void UpdateColumnWidths(int[] columnWidths)
{
foreach (var ctrl in wmRsltsCtrl) ctrl.Update(columnWidths);
}
void UpdateScrollpositions(int scrollStart)
{
/// TODO
}
/// <summary>
/// Re-draw the results. Apply new settings if they changed.
/// </summary>
public void Redraw()
void CreateControlsAndFillPanel(Results.BatchResults results)
{
lastRedraw = DateTime.Now;
this.SuspendLayout();
try
if ((results == null) || (results.WMPositionsCount == 0))
{
/// Determine how many water meters were enabled for result evaluation and printing
int enabledWMsCount = 0;
for (int i = 0; i < results.WMPositionsCount; i++)
/// There are no water meters at all
flowLayoutPanel.Controls.Clear();
wmRsltsCtrl = new OneWMResultsRowsCtrl[0];
firstEnabledControl = null;
return;
}
///
/// Determine water meter positions count
///
int displayedControlsCount = 0;
for (int i = 0; i < results.Batch.WaterMeters.Count; i++)
{
if ((!results.Batch.WaterMeters[i].Disabled) || ShowDisabledPositions)
{
if (results.WaterMeters[i] != null && !results.WaterMeters[i].Disabled)
displayedControlsCount++;
}
}
///
/// Calculate geometry
///
metersInOneGroup = Math.Max(1, Math.Min(displayedControlsCount, NrMetersInOneGroup));
nrGroups = Math.Max(1, (displayedControlsCount + metersInOneGroup - 1) / metersInOneGroup);
int oneWidth;
int oneHeight;
///
if (MetersArrangement == MetersArrangement.Horizontally)
{
flowLayoutPanel.FlowDirection = FlowDirection.LeftToRight;
oneWidth = Math.Max(MinWidth, flowLayoutPanel.Width / metersInOneGroup - 6);
oneHeight = Math.Max(MinHeight, flowLayoutPanel.Height / nrGroups - 6);
}
else
{
flowLayoutPanel.FlowDirection = FlowDirection.TopDown;
oneWidth = Math.Max(MinWidth, flowLayoutPanel.Width / nrGroups - 6);
oneHeight = Math.Max(MinHeight, flowLayoutPanel.Height / metersInOneGroup - 6);
}
///
/// Create controls and fill the FlowLayoutPanel
///
flowLayoutPanel.SuspendLayout();
flowLayoutPanel.Controls.Clear();
flowLayoutPanel.WrapContents = true;
flowLayoutPanel.AutoScroll = true;
wmRsltsCtrl = new IOneWMResultsCtrl[displayedControlsCount];
int ix = 0;
firstEnabledControl = null;
for (int i = 0; i < results.Batch.WaterMeters.Count; i++)
{
if (!results.Batch.WaterMeters[i].Disabled || ShowDisabledPositions)
{
/// Create one water meter position / control
wmRsltsCtrl[ix] = (TestsArrangement == TestsArrangement.Rows)
? new OneWMResultsRowsCtrl() as IOneWMResultsCtrl
: new OneWMResultsColumnsCtrl() as IOneWMResultsCtrl;
wmRsltsCtrl[ix].Width = oneWidth;
wmRsltsCtrl[ix].Height = oneHeight;
if (!results.Batch.WaterMeters[i].Disabled)
{
enabledWMsCount++;
if ((firstEnabledControl == null) && !results.Batch.WaterMeters[i].Disabled)
{
firstEnabledControl = wmRsltsCtrl[ix];
}
//wmRsltsCtrl[ix].Update(results.WaterMeters[i].WMPosition);
wmRsltsCtrl[ix].Update(Items);
wmRsltsCtrl[ix].WMResultsClickedHandler += delegate(object s, Results.Forms.WaterMeterEventArgs args)
{
if (InvokeRequired)
{
Invoke(new EventHandler<Results.Forms.WaterMeterEventArgs>(OnDoubleClick), s, args);
}
else
{
OnDoubleClick(s, args);
}
};
}
flowLayoutPanel.Controls.Add(wmRsltsCtrl[ix] as UserControl);
ix++;
}
}
flowLayoutPanel.ResumeLayout();
lastRedraw = DateTime.Now;
}
void UpdateResults(Results.BatchResults results)
{
if (results != null && results.Batch != null && results.Batch.WaterMeters != null)
{
int ctrlIx = 0;
for (int wmNr0 = 0; wmNr0 < results.Batch.WaterMeters.Count; wmNr0++)
{
if (!results.Batch.WaterMeters[wmNr0].Disabled || ShowDisabledPositions)
{
if (ctrlIx < wmRsltsCtrl.Length) wmRsltsCtrl[ctrlIx++].Update(results.Batch.WaterMeters[wmNr0]);
}
}
}
}
int metersInOneGroup = Math.Max(1, Math.Min(enabledWMsCount, NrMetersInOneGroup));
int nrGroups = Math.Max(1, (enabledWMsCount + metersInOneGroup - 1) / metersInOneGroup);
if (MetersArrangement == MetersArrangement.Horizontally)
void ShowMoreWMResults(Results.Entities.WaterMeter wm)
{
if ((TracingDB.DB.SessionFactory == null) || string.IsNullOrEmpty(wm.SerialNr))
{
new Results.Forms.MoreWMResultsDlg(wm, null).ShowDialog();
}
else
{
using (ISession session = TracingDB.DB.SessionFactory.OpenSession())
{
flowLayoutPanel.FlowDirection = FlowDirection.LeftToRight;
lvWidth = flowLayoutPanel.Width / metersInOneGroup - 6;
lvHeight = flowLayoutPanel.Height / nrGroups - 6;
}
else
{
flowLayoutPanel.FlowDirection = FlowDirection.TopDown;
lvWidth = flowLayoutPanel.Width / nrGroups - 6;
lvHeight = flowLayoutPanel.Height / metersInOneGroup - 6;
}
flowLayoutPanel.Controls.Clear();
flowLayoutPanel.WrapContents = true;
flowLayoutPanel.AutoScroll = true;
bool first = true;
for (int i = 0; i < results.WMPositionsCount; i++)
{
if (results.WaterMeters[i] != null && !results.WaterMeters[i].Disabled)
IList<ReferenceRecord> refRecords = session.QueryOver<ReferenceRecord>()
.Where(x => (x.Code == wm.SerialNr))
.OrderBy(x => x.TimeStamp).Desc
.List();
for (int i = 0; i < refRecords.Count; i++)
{
ListView lview = (TestsArrangement == TestsArrangement.Rows)
? GetResultsTestsAreRows(results.WaterMeters[i], i + 1)
: GetResultsTestsAreColumns(results.WaterMeters[i], i + 1);
if (lview != null)
ReferenceRecord refR = refRecords[i];
if ((refR.Records != null) && (refR.Records.Count > 0))
{
flowLayoutPanel.Controls.Add(lview);
if (first)
/// Reference record has additional records/parts (i.e. it is PCB assembly workflow step)
///
foreach (var rec in refR.Records)
{
firstListView = lview;
first = false;
if (rec.Part.OraDBType.ToLower().Contains("flowtube"))
{
/// rec.Part is a flowtube
///
IList<ReferenceRecord> flowtubeRRs = session.QueryOver<ReferenceRecord>()
.Where(x => (x.Code == rec.Code))
.OrderBy(x => x.TimeStamp).Desc
.List();
foreach (var rr in flowtubeRRs) refRecords.Add(rr);
}
}
}
}
new Results.Forms.MoreWMResultsDlg(wm, refRecords).ShowDialog();
}
}
catch (Exception e)
{
log.FatalFormat("Redrawing results failed : {0}", e.Message);
if (e.InnerException != null)
{
log.FatalFormat("InnerMessage : {0}", e.InnerException.Message);
}
log.FatalFormat("StackTrace : {0}{1}", Environment.NewLine, e.StackTrace);
}
this.ResumeLayout(false);
}
/// <summary>
/// Get an empty ListView control with appropriate parameters.
/// </summary>
/// <returns>ListView control</returns>
ListView GetListView()
{
ListView lview = new ListView();
lview.AllowColumnReorder = false;
lview.Dock = System.Windows.Forms.DockStyle.None;
lview.FullRowSelect = true;
lview.GridLines = true;
lview.Location = new System.Drawing.Point(0, 0);
lview.Size = new System.Drawing.Size(lvWidth, lvHeight);
lview.TabIndex = 0;
lview.UseCompatibleStateImageBehavior = false;
lview.View = System.Windows.Forms.View.Details;
return lview;
}
/// <summary>
/// Get decorated test names for a specified watermeter
/// </summary>
/// <param name="wMtr">Watermeter results entity</param>
/// <returns>A list of strings</returns>
IList<string> GetAllDecoratedTestNames(Results.Entities.WaterMeter wMtr)
{
IList<string> testNames = new List<string>();
foreach (var mtr in wMtr.MeterTestRslts)
{
if (mtr.IsPilotRslt() && mtr.TestDone && (mtr.Publish() != Config.Entities.Publish.Never)
&& (mtr.Publish() != Config.Entities.Publish.Internal))
{
testNames.Add(mtr.Name());
}
}
return testNames;
}
/// <summary>
/// Get a ListView control filled with results of the meter 'mtr'
/// </summary>
/// <param name="mtr">Water meter number (1-based): 1 .. Config.Data.WMsCount</param>
/// <returns>ListView object</returns>
ListView GetResultsTestsAreRows(Results.Entities.WaterMeter wMtr, int printedWMNr)
{
metersKind = wMtr.Compound() ? MetersKind.Combined : (wMtr.HeatMeter() ? MetersKind.HeatMeter : MetersKind.Single);
ListView lview = GetListView();
IList<Results.WMeterRsltItemSpec> items = GetRsltItems(metersKind);
if (items == null || items.Count == 0) return lview;
// Header
lview.Columns.Add(printedWMNr.ToString(), (rsltsClmnCount > 0) ? rsltsClmnWidths[0] : 40);
int col = 1;
foreach (var item in items)
{
lview.Columns.Add(item.Caption, (rsltsClmnCount > col) ? rsltsClmnWidths[col] : 70);
col++;
}
IList<string> testNames = GetAllDecoratedTestNames(wMtr);
int ix = 0;
foreach (var mtr in wMtr.MeterTestRslts)
{
if (mtr != null && mtr.IsPilotRslt() && mtr.TestDone && mtr.Publish() != Config.Entities.Publish.Never
&& mtr.Publish() != Config.Entities.Publish.Internal)
{
ListViewItem lvi = new ListViewItem(testNames[ix++]);
for (int i = 0; i < items.Count; i++)
{
string str = items[i].Print(wMtr, mtr.Name());
/// Extract and use color information
string[] texts = str.Split(new char[] { '|' });
if (texts.Length == 1)
{
lvi.SubItems.Add(str);
}
else if (texts.Length == 2)
{
Color color = texts[1].Equals("Green") ? Color.Green : (texts[1].Equals("Red") ? Color.Red : Color.White);
lvi.UseItemStyleForSubItems = false;
lvi.SubItems.Add(texts[0]);
lvi.SubItems[lvi.SubItems.Count - 1].BackColor = color;
}
else
{
lvi.SubItems.Add(string.Empty);
}
}
lview.Items.Add(lvi);
}
}
return lview;
}
/// <summary>
/// Get a ListView control filled with results of the meter 'mtr'
/// </summary>
/// <param name="mtr">Water meter number (1-based): 1 .. Config.Data.WMsCount</param>
/// <returns>ListView object</returns>
ListView GetResultsTestsAreColumns(Results.Entities.WaterMeter wMtr, int printedWMNr)
{
metersKind = wMtr.Compound() ? MetersKind.Combined : (wMtr.HeatMeter() ? MetersKind.HeatMeter : MetersKind.Single);
ListView lview = GetListView();
IList<Results.WMeterRsltItemSpec> items = GetRsltItems(metersKind);
if (items == null || items.Count == 0) return lview;
// Header
lview.Columns.Add(printedWMNr.ToString(), (rsltsClmnCount > 0) ? rsltsClmnWidths[0] : 40);
int i = 1;
foreach (var str in GetAllDecoratedTestNames(wMtr))
{
lview.Columns.Add(str, (rsltsClmnCount > i) ? rsltsClmnWidths[i] : 70);
i++;
}
foreach (var item in items)
{
ListViewItem lvi = new ListViewItem(item.Caption);
foreach (var mtr in wMtr.MeterTestRslts)
{
if (mtr != null && mtr.IsPilotRslt() && mtr.TestDone && mtr.Publish() != Config.Entities.Publish.Never &&
mtr.Publish() != Config.Entities.Publish.Internal)
{
string str = item.Print(wMtr, mtr.Name());
string[] texts = str.Split(new char[] { '|' });
if (texts.Length == 1)
{
lvi.SubItems.Add(str);
}
else if (texts.Length == 2)
{
Color color = texts[1].Equals("Green") ? Color.Green : (texts[1].Equals("Red") ? Color.Red : Color.White);
lvi.UseItemStyleForSubItems = false;
lvi.SubItems.Add(texts[0]);
lvi.SubItems[lvi.SubItems.Count - 1].BackColor = color;
}
else
{
lvi.SubItems.Add(string.Empty);
}
}
}
lview.Items.Add(lvi);
}
return lview;
}
private void BatchResultsDlg_FormClosing(object sender, FormClosingEventArgs e)
{
@@ -353,6 +276,7 @@ namespace Results.Forms
PopupResultsHeight = Height;
}
private void flowLayoutPanel_SizeChanged(object sender, EventArgs e)
{
lastSizeChange = DateTime.Now;
@@ -362,13 +286,43 @@ namespace Results.Forms
{
if (DateTime.Compare(lastSizeChange, lastRedraw) > 0)
{
/// The last size change was later then the last redraw
/// The last size change was more recent then the last redraw
DateTime now = DateTime.Now;
if (DateTime.Compare(lastSizeChange + new TimeSpan(0, 0, 1), now) < 0)
{
/// More then 1s since the last size change
Redraw();
/// More then 1 second since the last panel size change
/// Calculate geometry
int oneWidth;
int oneHeight;
///
if (MetersArrangement == MetersArrangement.Horizontally)
{
flowLayoutPanel.FlowDirection = FlowDirection.LeftToRight;
oneWidth = Math.Max(MinWidth, flowLayoutPanel.Width / metersInOneGroup - 6);
oneHeight = Math.Max(MinHeight, flowLayoutPanel.Height / nrGroups - 6);
}
else
{
flowLayoutPanel.FlowDirection = FlowDirection.TopDown;
oneWidth = Math.Max(MinWidth, flowLayoutPanel.Width / nrGroups - 6);
oneHeight = Math.Max(MinHeight, flowLayoutPanel.Height / metersInOneGroup - 6);
}
if (wmRsltsCtrl != null)
{
/// Update size of controls
flowLayoutPanel.SuspendLayout();
///
foreach (var oneCtrl in wmRsltsCtrl)
{
oneCtrl.Width = oneWidth;
oneCtrl.Height = oneHeight;
}
///
flowLayoutPanel.ResumeLayout();
}
}
}
}
+25
View File
@@ -0,0 +1,25 @@
///
/// Copyright (c) 2019 Sensus Slovensko a.s.
///
using System;
using System.Collections.Generic;
using System.Drawing;
using System.Windows.Forms;
namespace Results.Forms
{
public interface IOneWMResultsCtrl
{
event EventHandler<WaterMeterEventArgs> WMResultsClickedHandler;
bool Disabled { get; } /// true when water meter position is disabled
int WMPosition { get; } /// 1-based WM position
int Width { get; set; } /// Control width
int Height { get; set; } /// Control height
ListView.ColumnHeaderCollection Columns { get; } /// Embedded ListView control columns
void Update(int[] columnWidths);
void Update(IList<Results.WMeterRsltItemSpec> items);
void Update(Results.Entities.WaterMeter wMtr);
}
}
+258
View File
@@ -0,0 +1,258 @@
namespace Results.Forms
{
partial class ManualEntryConfigCtrl
{
/// <summary>
/// Required designer variable.
/// </summary>
private System.ComponentModel.IContainer components = null;
/// <summary>
/// Clean up any resources being used.
/// </summary>
/// <param name="disposing">true if managed resources should be disposed; otherwise, false.</param>
protected override void Dispose(bool disposing)
{
if (disposing && (components != null))
{
components.Dispose();
}
base.Dispose(disposing);
}
#region Component Designer generated code
/// <summary>
/// Required method for Designer support - do not modify
/// the contents of this method with the code editor.
/// </summary>
private void InitializeComponent()
{
this.availableTabControl = new System.Windows.Forms.TabControl();
this.tabPage1 = new System.Windows.Forms.TabPage();
this.availableByQuantityTreeView = new System.Windows.Forms.TreeView();
this.tabPage2 = new System.Windows.Forms.TabPage();
this.availableByCategoryTreeView = new System.Windows.Forms.TreeView();
this.tabPage3 = new System.Windows.Forms.TabPage();
this.availableAlphabeticTreeView = new System.Windows.Forms.TreeView();
this.downButton = new System.Windows.Forms.Button();
this.upButton = new System.Windows.Forms.Button();
this.selectedResultsListViewEx = new Results.Forms.ListViewEx();
this.removeAllButton = new System.Windows.Forms.Button();
this.removeButton = new System.Windows.Forms.Button();
this.addButton = new System.Windows.Forms.Button();
this.selectedItemsLabel = new System.Windows.Forms.Label();
this.availableItemsLabel = new System.Windows.Forms.Label();
this.availableTabControl.SuspendLayout();
this.tabPage1.SuspendLayout();
this.tabPage2.SuspendLayout();
this.tabPage3.SuspendLayout();
this.SuspendLayout();
//
// availableTabControl
//
this.availableTabControl.Controls.Add(this.tabPage1);
this.availableTabControl.Controls.Add(this.tabPage2);
this.availableTabControl.Controls.Add(this.tabPage3);
this.availableTabControl.Enabled = false;
this.availableTabControl.Location = new System.Drawing.Point(9, 33);
this.availableTabControl.Name = "availableTabControl";
this.availableTabControl.SelectedIndex = 0;
this.availableTabControl.Size = new System.Drawing.Size(206, 453);
this.availableTabControl.TabIndex = 59;
//
// tabPage1
//
this.tabPage1.Controls.Add(this.availableByQuantityTreeView);
this.tabPage1.Location = new System.Drawing.Point(4, 22);
this.tabPage1.Name = "tabPage1";
this.tabPage1.Padding = new System.Windows.Forms.Padding(3);
this.tabPage1.Size = new System.Drawing.Size(198, 427);
this.tabPage1.TabIndex = 0;
this.tabPage1.Text = "A...Z";
this.tabPage1.UseVisualStyleBackColor = true;
//
// availableByQuantityTreeView
//
this.availableByQuantityTreeView.Dock = System.Windows.Forms.DockStyle.Fill;
this.availableByQuantityTreeView.Location = new System.Drawing.Point(3, 3);
this.availableByQuantityTreeView.Name = "availableByQuantityTreeView";
this.availableByQuantityTreeView.Size = new System.Drawing.Size(192, 421);
this.availableByQuantityTreeView.TabIndex = 0;
this.availableByQuantityTreeView.DoubleClick += new System.EventHandler(this.availableByQuantityTreeView_DoubleClick);
//
// tabPage2
//
this.tabPage2.Controls.Add(this.availableByCategoryTreeView);
this.tabPage2.Location = new System.Drawing.Point(4, 22);
this.tabPage2.Name = "tabPage2";
this.tabPage2.Padding = new System.Windows.Forms.Padding(3);
this.tabPage2.Size = new System.Drawing.Size(198, 427);
this.tabPage2.TabIndex = 1;
this.tabPage2.Text = "by quantity";
this.tabPage2.UseVisualStyleBackColor = true;
//
// availableByCategoryTreeView
//
this.availableByCategoryTreeView.Dock = System.Windows.Forms.DockStyle.Fill;
this.availableByCategoryTreeView.Location = new System.Drawing.Point(3, 3);
this.availableByCategoryTreeView.Name = "availableByCategoryTreeView";
this.availableByCategoryTreeView.Size = new System.Drawing.Size(192, 421);
this.availableByCategoryTreeView.TabIndex = 0;
this.availableByCategoryTreeView.DoubleClick += new System.EventHandler(this.availableByCategoryTreeView_DoubleClick);
//
// tabPage3
//
this.tabPage3.Controls.Add(this.availableAlphabeticTreeView);
this.tabPage3.Location = new System.Drawing.Point(4, 22);
this.tabPage3.Name = "tabPage3";
this.tabPage3.Size = new System.Drawing.Size(198, 427);
this.tabPage3.TabIndex = 2;
this.tabPage3.Text = "by category";
this.tabPage3.UseVisualStyleBackColor = true;
//
// availableAlphabeticTreeView
//
this.availableAlphabeticTreeView.Dock = System.Windows.Forms.DockStyle.Fill;
this.availableAlphabeticTreeView.Location = new System.Drawing.Point(0, 0);
this.availableAlphabeticTreeView.Name = "availableAlphabeticTreeView";
this.availableAlphabeticTreeView.Size = new System.Drawing.Size(198, 427);
this.availableAlphabeticTreeView.TabIndex = 0;
this.availableAlphabeticTreeView.DoubleClick += new System.EventHandler(this.availableAlphabeticTreeView_DoubleClick);
//
// downButton
//
this.downButton.Enabled = false;
this.downButton.Location = new System.Drawing.Point(221, 351);
this.downButton.Name = "downButton";
this.downButton.Size = new System.Drawing.Size(93, 30);
this.downButton.TabIndex = 58;
this.downButton.Text = "Down";
this.downButton.UseVisualStyleBackColor = true;
this.downButton.Click += new System.EventHandler(this.downButton_Click);
//
// upButton
//
this.upButton.Enabled = false;
this.upButton.Location = new System.Drawing.Point(221, 315);
this.upButton.Name = "upButton";
this.upButton.Size = new System.Drawing.Size(93, 30);
this.upButton.TabIndex = 57;
this.upButton.Text = "Up";
this.upButton.UseVisualStyleBackColor = true;
this.upButton.Click += new System.EventHandler(this.upButton_Click);
//
// selectedResultsListViewEx
//
this.selectedResultsListViewEx.AllowColumnReorder = true;
this.selectedResultsListViewEx.Anchor = ((System.Windows.Forms.AnchorStyles)((System.Windows.Forms.AnchorStyles.Top | System.Windows.Forms.AnchorStyles.Right)));
this.selectedResultsListViewEx.DoubleClickActivation = false;
this.selectedResultsListViewEx.Enabled = false;
this.selectedResultsListViewEx.FullRowSelect = true;
this.selectedResultsListViewEx.GridLines = true;
this.selectedResultsListViewEx.Location = new System.Drawing.Point(322, 33);
this.selectedResultsListViewEx.Name = "selectedResultsListViewEx";
this.selectedResultsListViewEx.Size = new System.Drawing.Size(594, 453);
this.selectedResultsListViewEx.TabIndex = 56;
this.selectedResultsListViewEx.UseCompatibleStateImageBehavior = false;
this.selectedResultsListViewEx.View = System.Windows.Forms.View.Details;
this.selectedResultsListViewEx.DoubleClick += new System.EventHandler(this.selectedResultsListViewEx_DoubleClick);
//
// removeAllButton
//
this.removeAllButton.Enabled = false;
this.removeAllButton.Location = new System.Drawing.Point(221, 223);
this.removeAllButton.Name = "removeAllButton";
this.removeAllButton.Size = new System.Drawing.Size(94, 30);
this.removeAllButton.TabIndex = 55;
this.removeAllButton.Text = "<< R&emove all";
this.removeAllButton.UseVisualStyleBackColor = true;
this.removeAllButton.Visible = false;
this.removeAllButton.Click += new System.EventHandler(this.removeAllButton_Click);
//
// removeButton
//
this.removeButton.Enabled = false;
this.removeButton.Location = new System.Drawing.Point(221, 188);
this.removeButton.Name = "removeButton";
this.removeButton.Size = new System.Drawing.Size(93, 30);
this.removeButton.TabIndex = 54;
this.removeButton.Text = "< &Remove";
this.removeButton.UseVisualStyleBackColor = true;
this.removeButton.Click += new System.EventHandler(this.removeButton_Click);
//
// addButton
//
this.addButton.Enabled = false;
this.addButton.Location = new System.Drawing.Point(221, 153);
this.addButton.Name = "addButton";
this.addButton.Size = new System.Drawing.Size(93, 30);
this.addButton.TabIndex = 53;
this.addButton.Text = "&Add >";
this.addButton.UseVisualStyleBackColor = true;
this.addButton.Click += new System.EventHandler(this.addButton_Click);
//
// selectedItemsLabel
//
this.selectedItemsLabel.AutoSize = true;
this.selectedItemsLabel.Location = new System.Drawing.Point(321, 11);
this.selectedItemsLabel.Name = "selectedItemsLabel";
this.selectedItemsLabel.Size = new System.Drawing.Size(79, 13);
this.selectedItemsLabel.TabIndex = 52;
this.selectedItemsLabel.Text = "Selected items:";
//
// availableItemsLabel
//
this.availableItemsLabel.AutoSize = true;
this.availableItemsLabel.Location = new System.Drawing.Point(11, 11);
this.availableItemsLabel.Name = "availableItemsLabel";
this.availableItemsLabel.Size = new System.Drawing.Size(80, 13);
this.availableItemsLabel.TabIndex = 51;
this.availableItemsLabel.Text = "Available items:";
//
// ManualEntryConfigCtrl
//
this.AutoScaleDimensions = new System.Drawing.SizeF(6F, 13F);
this.AutoScaleMode = System.Windows.Forms.AutoScaleMode.Font;
this.Controls.Add(this.availableTabControl);
this.Controls.Add(this.downButton);
this.Controls.Add(this.upButton);
this.Controls.Add(this.selectedResultsListViewEx);
this.Controls.Add(this.removeAllButton);
this.Controls.Add(this.removeButton);
this.Controls.Add(this.addButton);
this.Controls.Add(this.selectedItemsLabel);
this.Controls.Add(this.availableItemsLabel);
this.Name = "ManualEntryConfigCtrl";
this.Size = new System.Drawing.Size(925, 496);
this.Load += new System.EventHandler(this.ManualEntryConfigCtrl_Load);
this.KeyPress += new System.Windows.Forms.KeyPressEventHandler(this.ManualEntryConfigCtrl_KeyPress);
this.availableTabControl.ResumeLayout(false);
this.tabPage1.ResumeLayout(false);
this.tabPage2.ResumeLayout(false);
this.tabPage3.ResumeLayout(false);
this.ResumeLayout(false);
this.PerformLayout();
}
#endregion
private System.Windows.Forms.TabControl availableTabControl;
private System.Windows.Forms.TabPage tabPage1;
private System.Windows.Forms.TreeView availableByQuantityTreeView;
private System.Windows.Forms.TabPage tabPage2;
private System.Windows.Forms.TreeView availableByCategoryTreeView;
private System.Windows.Forms.TabPage tabPage3;
private System.Windows.Forms.TreeView availableAlphabeticTreeView;
private System.Windows.Forms.Button downButton;
private System.Windows.Forms.Button upButton;
private ListViewEx selectedResultsListViewEx;
private System.Windows.Forms.Button removeAllButton;
private System.Windows.Forms.Button removeButton;
private System.Windows.Forms.Button addButton;
private System.Windows.Forms.Label selectedItemsLabel;
private System.Windows.Forms.Label availableItemsLabel;
}
}
+450
View File
@@ -0,0 +1,450 @@
using System;
using System.Collections.Generic;
using System.Linq;
using System.Windows.Forms;
using Config.Entities;
using Results.Resources;
namespace Results.Forms
{
public partial class ManualEntryConfigCtrl : UserControl
{
/// <summary>
/// ListViewEx columns
/// </summary>
enum Column
{
Item,
Caption,
Units,
Count,
}
Control[] editors; /// all editors except of units
ComboBox unitsCB; /// units combo box
public IList<ManualEntryItemSpec> SelectedItems;
public bool Unlocked
{
set
{
availableTabControl.Enabled = value;
selectedResultsListViewEx.Enabled = value;
addButton.Enabled = value;
removeButton.Enabled = value;
removeAllButton.Enabled = value;
upButton.Enabled = value;
downButton.Enabled = value;
unlocked = value;
}
get { return unlocked; }
}
bool unlocked;
public ManualEntryConfigCtrl()
{
InitializeComponent();
}
void Localize()
{
Text = Strings.Configuration;
availableItemsLabel.Text = Strings.Available_items;
availableTabControl.TabPages[0].Text = Strings.Quantity;
availableTabControl.TabPages[1].Text = Strings.Category;
availableTabControl.TabPages[2].Text = "A...Z";
selectedItemsLabel.Text = Strings.Selected_items;
addButton.Text = Strings.Add;
removeButton.Text = Strings.Remove;
removeAllButton.Text = Strings.Remove_all;
upButton.Text = Strings.UpBtnText;
downButton.Text = Strings.DownBtnText;
}
private void ManualEntryConfigCtrl_Load(object sender, EventArgs e)
{
Localize();
/// Add columns to ListViewEx
selectedResultsListViewEx.Columns.Add(new ColumnHeader { Text = Strings.Item, Width = 120 });
selectedResultsListViewEx.Columns.Add(new ColumnHeader { Text = Strings.Caption });
selectedResultsListViewEx.Columns.Add(new ColumnHeader { Text = Strings.Units });
/// Create controls used by ListViewEx to edit items
unitsCB = new ComboBox();
ComboBox alignmentCB = new ComboBox();
for (Config.Entities.Alignment a = 0; a < Config.Entities.Alignment.Count; a++)
{
alignmentCB.Items.Add(a.ToDescription());
}
editors = new Control[]
{
null,
new TextBox(), /// caption
unitsCB,
};
foreach (var edi in editors)
{
if (edi != null)
{
edi.Visible = false;
Controls.Add(edi);
}
}
selectedResultsListViewEx.SubItemClicked += new SubItemEventHandler(selectedResultsListViewEx_SubItemClicked);
selectedResultsListViewEx.SubItemEndEditing += new SubItemEndEditingEventHandler(selectedResultsListViewEx_SubItemEndEditing);
availableByQuantityTreeView.ShowNodeToolTips = true;
availableByCategoryTreeView.ShowNodeToolTips = true;
availableAlphabeticTreeView.ShowNodeToolTips = true;
RedrawAvailable();
RedrawSelected();
}
void selectedResultsListViewEx_SubItemClicked(object sender, SubItemEventArgs e)
{
if (e.SubItem == (int)Column.Units)
{
Config.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++)
{
if (Config.Units.IsQuantity(u, quantity)) unitsCB.Items.Add(u.ToDescription());
}
selectedResultsListViewEx.StartEditing(unitsCB, e.Item, e.SubItem);
}
else if ((e.SubItem > 0) && (e.SubItem < (int)Column.Count))
{
selectedResultsListViewEx.StartEditing(editors[e.SubItem], e.Item, e.SubItem);
}
}
void selectedResultsListViewEx_SubItemEndEditing(object sender, SubItemEndEditingEventArgs e)
{
ListViewItem lvi = e.Item;
ManualEntryItemSpec item = lvi.Tag as ManualEntryItemSpec;
switch ((Column)e.SubItem)
{
case Column.Caption: item.Caption = e.DisplayText; return;
case Column.Units:
for (Config.Unit u = 0; u < Config.Unit.Count; u++)
{
if (u.ToDescription().Equals(unitsCB.Text))
{
item.Units = u;
return; /// OK
}
}
break; /// Error
default:
return; /// OK
}
e.DisplayText = e.Item.SubItems[e.SubItem].Text;
e.Cancel = true;
return;
}
/// <summary>
/// Redraw available items (right hand side)
/// </summary>
void RedrawAvailable()
{
RedrawByQuantity(availableByQuantityTreeView);
RedrawByCategory(availableByCategoryTreeView);
RedrawInAlphabeticOrder(availableAlphabeticTreeView);
}
void RedrawInAlphabeticOrder(TreeView treeView)
{
treeView.Nodes.Clear();
IList<ManualEntryItemSpec> alphabeticlList = ManualEntryItemSpec.AllItems.OrderBy(x => x.Name).ToList();
///
foreach (var item in alphabeticlList)
{
TreeNode node = new TreeNode(item.Name);
node.Tag = item;
node.ToolTipText = item.ToolTipText;
treeView.Nodes.Add(node);
}
}
void RedrawByQuantity(TreeView treeView)
{
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<Config.Quantity> sortedQuantities = quantities.OrderBy(x => x.ToDescription()).ToList();
foreach (var q in sortedQuantities)
{
int n = 0;
foreach (var ri in ManualEntryItemSpec.AllItems)
{
if (ri.Quantity == q) n++;
}
if (n > 0)
{
TreeNode[] array = new TreeNode[n];
int i = 0;
foreach (var ri in ManualEntryItemSpec.AllItems)
{
if (ri.Quantity == q)
{
TreeNode node = new TreeNode(ri.Name);
node.Tag = ri;
node.ToolTipText = ri.ToolTipText;
array[i++] = node;
}
}
treeView.Nodes.Add(new TreeNode(q.ToDescription(), array));
}
}
}
void RedrawByCategory(TreeView treeView)
{
treeView.Nodes.Clear();
IList<ItemCategory> categories = new List<ItemCategory>();
for (ItemCategory c = 0; c < ItemCategory.Count; c++) categories.Add(c);
IList<ItemCategory> sortedCategories = categories.OrderBy(x => x.ToDescription()).ToList();
foreach (var c in sortedCategories)
{
int n = 0;
foreach (var ri in ManualEntryItemSpec.AllItems)
{
if (ri.Category == c) n++;
}
if (n > 0)
{
TreeNode[] array = new TreeNode[n];
int i = 0;
foreach (var ri in ManualEntryItemSpec.AllItems)
{
if (ri.Category == c)
{
TreeNode node = new TreeNode(ri.Name);
node.Tag = ri;
node.ToolTipText = ri.ToolTipText;
array[i++] = node;
}
}
treeView.Nodes.Add(new TreeNode(c.ToDescription(), array));
}
}
}
/// <summary>
/// Redraw selected items (right hand side)
/// </summary>
void RedrawSelected()
{
selectedResultsListViewEx.Items.Clear();
if (SelectedItems == null) return;
foreach (var item in SelectedItems)
{
ListViewItem lvi = new ListViewItem(item.Name); /// Item
lvi.Tag = item;
lvi.SubItems.Add(item.Caption); /// Header
lvi.SubItems.Add(item.Units.ToDescription()); /// Units
selectedResultsListViewEx.Items.Add(lvi);
}
}
void UpdateSelectedFromView()
{
}
void addButton_Click(object sender, EventArgs e)
{
switch (availableTabControl.SelectedIndex)
{
case 0:
availableByQuantityTreeView_DoubleClick(this, null);
break;
case 1:
availableByCategoryTreeView_DoubleClick(this, null);
break;
case 2:
availableAlphabeticTreeView_DoubleClick(this, null);
break;
default:
break;
}
}
private void availableByQuantityTreeView_DoubleClick(object sender, EventArgs e)
{
if (availableByQuantityTreeView.SelectedNode != null &&
availableByQuantityTreeView.SelectedNode.Tag is ManualEntryItemSpec)
{
AddItem(availableByQuantityTreeView.SelectedNode.Tag as ManualEntryItemSpec);
}
}
private void availableByCategoryTreeView_DoubleClick(object sender, EventArgs e)
{
if (availableByCategoryTreeView.SelectedNode != null &&
availableByCategoryTreeView.SelectedNode.Tag is ManualEntryItemSpec)
{
AddItem(availableByCategoryTreeView.SelectedNode.Tag as ManualEntryItemSpec);
}
}
private void availableAlphabeticTreeView_DoubleClick(object sender, EventArgs e)
{
if (availableAlphabeticTreeView.SelectedNode != null &&
availableAlphabeticTreeView.SelectedNode.Tag is ManualEntryItemSpec)
{
AddItem(availableAlphabeticTreeView.SelectedNode.Tag as ManualEntryItemSpec);
}
}
void AddItem(ManualEntryItemSpec item)
{
ManualEntryItemSpec newItem = item.Clone();
newItem.Caption = newItem.Name;
SelectedItems.Add(newItem);
RedrawSelected();
/// Select the last item
selectedResultsListViewEx.Focus();
selectedResultsListViewEx.Items[SelectedItems.Count - 1].Selected = true;
selectedResultsListViewEx.Items[SelectedItems.Count - 1].EnsureVisible();
}
private void selectedResultsListViewEx_DoubleClick(object sender, EventArgs e)
{
/// Double click works when just one item is selected
if (selectedResultsListViewEx.SelectedIndices.Count == 1)
{
SelectedItems.RemoveAt(selectedResultsListViewEx.SelectedIndices[0]);
RedrawAvailable();
RedrawSelected();
}
}
void removeButton_Click(object sender, EventArgs e)
{
/// Remove from the list (the last selected item first so that the indexes are not affected)
for (int i = selectedResultsListViewEx.SelectedIndices.Count - 1; i >= 0; i--)
{
SelectedItems.RemoveAt(selectedResultsListViewEx.SelectedIndices[i]);
}
RedrawAvailable();
RedrawSelected();
}
void removeAllButton_Click(object sender, EventArgs e)
{
/// Remove all items from 'Selected' list
SelectedItems.Clear();
RedrawAvailable();
RedrawSelected();
}
//void okButton_Click(object sender, EventArgs e)
//{
// DialogResult = DialogResult.OK;
// Close();
//}
private void ManualEntryConfigCtrl_KeyPress(object sender, KeyPressEventArgs e)
{
e.Handled = true;
}
private void upButton_Click(object sender, EventArgs e)
{
if (selectedResultsListViewEx.SelectedIndices.Count != 1) return;
int selIdx = selectedResultsListViewEx.SelectedIndices[0];
if (selIdx == 0)
{
/// Cannot move up
selectedResultsListViewEx.Focus();
selectedResultsListViewEx.Items[0].Selected = true;
return;
}
ManualEntryItemSpec tmp = SelectedItems[selIdx - 1];
SelectedItems[selIdx - 1] = SelectedItems[selIdx];
SelectedItems[selIdx] = tmp;
RedrawSelected();
selectedResultsListViewEx.Focus();
selectedResultsListViewEx.Items[selIdx - 1].Selected = true;
selectedResultsListViewEx.Items[selIdx - 1].EnsureVisible();
}
private void downButton_Click(object sender, EventArgs e)
{
if (selectedResultsListViewEx.SelectedIndices.Count != 1) return;
int selIdx = selectedResultsListViewEx.SelectedIndices[0];
if (selIdx == SelectedItems.Count - 1)
{
/// Cannot move down
selectedResultsListViewEx.Focus();
selectedResultsListViewEx.Items[SelectedItems.Count - 1].Selected = true;
return;
}
ManualEntryItemSpec tmp = SelectedItems[selIdx + 1];
SelectedItems[selIdx + 1] = SelectedItems[selIdx];
SelectedItems[selIdx] = tmp;
RedrawSelected();
selectedResultsListViewEx.Focus();
selectedResultsListViewEx.Items[selIdx + 1].Selected = true;
selectedResultsListViewEx.Items[selIdx + 1].EnsureVisible();
}
//private void cancelButton_Click(object sender, EventArgs e)
//{
// DialogResult = DialogResult.Cancel;
// Close();
//}
private void availableByCategoryTreeView_NodeMouseHover2(object sender, TreeNodeMouseHoverEventArgs e)
{
ToolTip toolTip = new ToolTip();
toolTip.SetToolTip(this, e.Node.ToolTipText);
}
}
}
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///
/// Copyright (c) 2019 Sensus Slovensko a.s.
///
using System;
using System.Collections.Generic;
using System.Linq;
using System.Windows.Forms;
using log4net;
using Config.Entities;
using Results;
using Results.Resources;
namespace Results.Forms
{
public partial class ManualEntryConfigDlg : Form
{
public IList<ManualEntryItemSpec> SelectedItems
{
set { manualEntryConfigCtrl.SelectedItems = value; }
get { return manualEntryConfigCtrl.SelectedItems; }
}
public ManualEntryConfigDlg()
{
InitializeComponent();
manualEntryConfigCtrl.Unlocked = true;
}
void Localize()
{
Text = Strings.Configuration;
okButton.Text = Strings.OkBtnText;
cancelButton.Text = Strings.CancelBtnText;
}
void ManualEntryConfig_Load(object sender, EventArgs e)
{
Localize();
}
void okButton_Click(object sender, EventArgs e)
{
DialogResult = DialogResult.OK;
Close();
}
private void cancelButton_Click(object sender, EventArgs e)
{
DialogResult = DialogResult.Cancel;
Close();
}
private void ManualEntryConfigDlg_KeyPress(object sender, KeyPressEventArgs e)
{
e.Handled = true;
}
}
}
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///
/// Copyright (c) 2016 Sensus Metering Systems
///
namespace Results.Forms
{
partial class ManualEntryConfigDlg
{
/// <summary>
/// Required designer variable.
/// </summary>
private System.ComponentModel.IContainer components = null;
/// <summary>
/// Clean up any resources being used.
/// </summary>
/// <param name="disposing">true if managed resources should be disposed; otherwise, false.</param>
protected override void Dispose(bool disposing)
{
if (disposing && (components != null))
{
components.Dispose();
}
base.Dispose(disposing);
}
#region Windows Form Designer generated code
/// <summary>
/// Required method for Designer support - do not modify
/// the contents of this method with the code editor.
/// </summary>
private void InitializeComponent()
{
this.okButton = new System.Windows.Forms.Button();
this.cancelButton = new System.Windows.Forms.Button();
this.manualEntryConfigCtrl = new Results.Forms.ManualEntryConfigCtrl();
this.SuspendLayout();
//
// okButton
//
this.okButton.Anchor = ((System.Windows.Forms.AnchorStyles)((System.Windows.Forms.AnchorStyles.Top | System.Windows.Forms.AnchorStyles.Right)));
this.okButton.Location = new System.Drawing.Point(939, 29);
this.okButton.Name = "okButton";
this.okButton.Size = new System.Drawing.Size(105, 42);
this.okButton.TabIndex = 4;
this.okButton.Text = "OK";
this.okButton.UseVisualStyleBackColor = true;
this.okButton.Click += new System.EventHandler(this.okButton_Click);
//
// cancelButton
//
this.cancelButton.Anchor = ((System.Windows.Forms.AnchorStyles)((System.Windows.Forms.AnchorStyles.Top | System.Windows.Forms.AnchorStyles.Right)));
this.cancelButton.DialogResult = System.Windows.Forms.DialogResult.Cancel;
this.cancelButton.Location = new System.Drawing.Point(939, 82);
this.cancelButton.Name = "cancelButton";
this.cancelButton.Size = new System.Drawing.Size(105, 42);
this.cancelButton.TabIndex = 5;
this.cancelButton.Text = "Cancel";
this.cancelButton.UseVisualStyleBackColor = true;
this.cancelButton.Click += new System.EventHandler(this.cancelButton_Click);
//
// manualEntryConfigCtrl
//
this.manualEntryConfigCtrl.Location = new System.Drawing.Point(-1, 1);
this.manualEntryConfigCtrl.Name = "manualEntryConfigCtrl";
this.manualEntryConfigCtrl.Size = new System.Drawing.Size(925, 496);
this.manualEntryConfigCtrl.TabIndex = 6;
this.manualEntryConfigCtrl.Unlocked = false;
//
// ManualEntryConfigDlg
//
this.AutoScaleDimensions = new System.Drawing.SizeF(6F, 13F);
this.AutoScaleMode = System.Windows.Forms.AutoScaleMode.Font;
this.ClientSize = new System.Drawing.Size(1066, 498);
this.Controls.Add(this.manualEntryConfigCtrl);
this.Controls.Add(this.cancelButton);
this.Controls.Add(this.okButton);
this.FormBorderStyle = System.Windows.Forms.FormBorderStyle.FixedDialog;
this.Name = "ManualEntryConfigDlg";
this.SizeGripStyle = System.Windows.Forms.SizeGripStyle.Hide;
this.StartPosition = System.Windows.Forms.FormStartPosition.CenterParent;
this.Text = "ManualEntryConfig";
this.Load += new System.EventHandler(this.ManualEntryConfig_Load);
this.KeyPress += new System.Windows.Forms.KeyPressEventHandler(this.ManualEntryConfigDlg_KeyPress);
this.ResumeLayout(false);
}
#endregion
private System.Windows.Forms.Button okButton;
private System.Windows.Forms.Button cancelButton;
private ManualEntryConfigCtrl manualEntryConfigCtrl;
}
}
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namespace Results.Forms
{
partial class MoreWMResultsDlg
{
/// <summary>
/// Required designer variable.
/// </summary>
private System.ComponentModel.IContainer components = null;
/// <summary>
/// Clean up any resources being used.
/// </summary>
/// <param name="disposing">true if managed resources should be disposed; otherwise, false.</param>
protected override void Dispose(bool disposing)
{
if (disposing && (components != null))
{
components.Dispose();
}
base.Dispose(disposing);
}
#region Windows Form Designer generated code
/// <summary>
/// Required method for Designer support - do not modify
/// the contents of this method with the code editor.
/// </summary>
private void InitializeComponent()
{
this.tabControl1 = new System.Windows.Forms.TabControl();
this.graphsTabPage = new System.Windows.Forms.TabPage();
this.productionTracingTabPage = new System.Windows.Forms.TabPage();
this.productionTracingSplitContainer = new System.Windows.Forms.SplitContainer();
this.messageLabel = new System.Windows.Forms.Label();
this.tracingResultsListView = new System.Windows.Forms.ListView();
this.allResultsTabPage = new System.Windows.Forms.TabPage();
this.tabControl1.SuspendLayout();
this.productionTracingTabPage.SuspendLayout();
((System.ComponentModel.ISupportInitialize)(this.productionTracingSplitContainer)).BeginInit();
this.productionTracingSplitContainer.Panel1.SuspendLayout();
this.productionTracingSplitContainer.Panel2.SuspendLayout();
this.productionTracingSplitContainer.SuspendLayout();
this.SuspendLayout();
//
// tabControl1
//
this.tabControl1.Controls.Add(this.allResultsTabPage);
this.tabControl1.Controls.Add(this.graphsTabPage);
this.tabControl1.Controls.Add(this.productionTracingTabPage);
this.tabControl1.Dock = System.Windows.Forms.DockStyle.Fill;
this.tabControl1.Location = new System.Drawing.Point(0, 0);
this.tabControl1.Name = "tabControl1";
this.tabControl1.SelectedIndex = 0;
this.tabControl1.Size = new System.Drawing.Size(1195, 448);
this.tabControl1.TabIndex = 0;
//
// graphsTabPage
//
this.graphsTabPage.Location = new System.Drawing.Point(4, 22);
this.graphsTabPage.Name = "graphsTabPage";
this.graphsTabPage.Padding = new System.Windows.Forms.Padding(3);
this.graphsTabPage.Size = new System.Drawing.Size(1187, 422);
this.graphsTabPage.TabIndex = 1;
this.graphsTabPage.Text = "Graphs";
this.graphsTabPage.UseVisualStyleBackColor = true;
//
// productionTracingTabPage
//
this.productionTracingTabPage.Controls.Add(this.productionTracingSplitContainer);
this.productionTracingTabPage.Location = new System.Drawing.Point(4, 22);
this.productionTracingTabPage.Name = "productionTracingTabPage";
this.productionTracingTabPage.Size = new System.Drawing.Size(1187, 422);
this.productionTracingTabPage.TabIndex = 2;
this.productionTracingTabPage.Text = "Production tracing";
this.productionTracingTabPage.UseVisualStyleBackColor = true;
//
// productionTracingSplitContainer
//
this.productionTracingSplitContainer.BackColor = System.Drawing.SystemColors.Control;
this.productionTracingSplitContainer.Dock = System.Windows.Forms.DockStyle.Fill;
this.productionTracingSplitContainer.FixedPanel = System.Windows.Forms.FixedPanel.Panel1;
this.productionTracingSplitContainer.IsSplitterFixed = true;
this.productionTracingSplitContainer.Location = new System.Drawing.Point(0, 0);
this.productionTracingSplitContainer.Name = "productionTracingSplitContainer";
this.productionTracingSplitContainer.Orientation = System.Windows.Forms.Orientation.Horizontal;
//
// productionTracingSplitContainer.Panel1
//
this.productionTracingSplitContainer.Panel1.Controls.Add(this.messageLabel);
this.productionTracingSplitContainer.Panel1MinSize = 55;
//
// productionTracingSplitContainer.Panel2
//
this.productionTracingSplitContainer.Panel2.Controls.Add(this.tracingResultsListView);
this.productionTracingSplitContainer.Panel2MinSize = 60;
this.productionTracingSplitContainer.Size = new System.Drawing.Size(1187, 422);
this.productionTracingSplitContainer.SplitterDistance = 55;
this.productionTracingSplitContainer.SplitterWidth = 1;
this.productionTracingSplitContainer.TabIndex = 0;
//
// messageLabel
//
this.messageLabel.AutoSize = true;
this.messageLabel.Font = new System.Drawing.Font("Microsoft Sans Serif", 24F, System.Drawing.FontStyle.Bold, System.Drawing.GraphicsUnit.Point, ((byte)(238)));
this.messageLabel.Location = new System.Drawing.Point(12, 9);
this.messageLabel.Name = "messageLabel";
this.messageLabel.Size = new System.Drawing.Size(152, 37);
this.messageLabel.TabIndex = 1;
this.messageLabel.Text = "Message";
//
// tracingResultsListView
//
this.tracingResultsListView.Dock = System.Windows.Forms.DockStyle.Fill;
this.tracingResultsListView.GridLines = true;
this.tracingResultsListView.Location = new System.Drawing.Point(0, 0);
this.tracingResultsListView.Name = "tracingResultsListView";
this.tracingResultsListView.Size = new System.Drawing.Size(1187, 366);
this.tracingResultsListView.TabIndex = 0;
this.tracingResultsListView.UseCompatibleStateImageBehavior = false;
this.tracingResultsListView.View = System.Windows.Forms.View.Details;
//
// allResultsTabPage
//
this.allResultsTabPage.Location = new System.Drawing.Point(4, 22);
this.allResultsTabPage.Name = "allResultsTabPage";
this.allResultsTabPage.Padding = new System.Windows.Forms.Padding(3);
this.allResultsTabPage.Size = new System.Drawing.Size(1187, 422);
this.allResultsTabPage.TabIndex = 0;
this.allResultsTabPage.Text = "All results";
this.allResultsTabPage.UseVisualStyleBackColor = true;
//
// MoreWMResultsDlg
//
this.AutoScaleDimensions = new System.Drawing.SizeF(6F, 13F);
this.AutoScaleMode = System.Windows.Forms.AutoScaleMode.Font;
this.ClientSize = new System.Drawing.Size(1195, 448);
this.Controls.Add(this.tabControl1);
this.Name = "MoreWMResultsDlg";
this.StartPosition = System.Windows.Forms.FormStartPosition.CenterParent;
this.Text = "Water meter results";
this.tabControl1.ResumeLayout(false);
this.productionTracingTabPage.ResumeLayout(false);
this.productionTracingSplitContainer.Panel1.ResumeLayout(false);
this.productionTracingSplitContainer.Panel1.PerformLayout();
this.productionTracingSplitContainer.Panel2.ResumeLayout(false);
((System.ComponentModel.ISupportInitialize)(this.productionTracingSplitContainer)).EndInit();
this.productionTracingSplitContainer.ResumeLayout(false);
this.ResumeLayout(false);
}
#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;
private System.Windows.Forms.Label messageLabel;
private System.Windows.Forms.ListView tracingResultsListView;
private System.Windows.Forms.TabPage allResultsTabPage;
}
}
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///
/// Copyright (c) 2019 Sensus Slovensko a.s.
///
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.DataVisualization.Charting;
namespace Results.Forms
{
public partial class MoreWMResultsDlg : Form
{
public MoreWMResultsDlg(Results.Entities.WaterMeter wm, IList<ReferenceRecord> refRecords)
{
InitializeComponent();
Localize();
ShowAllResults(wm);
ShowChart(wm);
if (refRecords == null)
{
tabControl1.SelectTab(1);
tabControl1.TabPages.RemoveAt(2);
}
else
{
tabControl1.SelectTab(2);
ShowTracingResults(wm, refRecords);
}
}
void Localize()
{
Text = Strings.Water_meter_results;
tabControl1.TabPages[0].Text = Strings.All_results;
tabControl1.TabPages[1].Text = Strings.Graphs;
tabControl1.TabPages[2].Text = Strings.Production_tracing_results;
}
/// <summary>
/// Display all results for this water meter in the 1st tab page
/// </summary>
/// <param name="wMtr">Water meter entity</param>
void ShowAllResults(Results.Entities.WaterMeter wMtr)
{
// string message;
// Color commonBackColor = wMtr.GetColorOfResults(false, out message); /// Ony message is used later on
//#if ORACLE_DB
// oneWMResultsCtrl.Caption = string.Format("{0} ({1}) {2}", (string.IsNullOrEmpty(wMtr.SerialNr) ? string.Empty : wMtr.SerialNr), (wMtr.Pruefindex % 100), message);
//#else
// oneWMResultsCtrl.Caption = string.Format("s/n = {0}", string.IsNullOrEmpty(wMtr.SerialNr) ? string.Empty : wMtr.SerialNr);
//#endif
// IList<Results.WMeterRsltItemSpec> items = Results.WMeterRsltItemSpec.AllItems;
// // Header
// oneWMResultsCtrl.Columns.Add(wMtr.WMPosition.ToString(), 100);
// int i = 1;
// foreach (var str in wMtr.GetAllDecoratedTestNames())
// {
// oneWMResultsCtrl.Columns.Add(str, 100);
// i++;
// }
// foreach (var item in items)
// {
// ListViewItem lvi = new ListViewItem(item.Name);
// foreach (var mtr in wMtr.MeterTestRslts)
// {
// if (mtr != null && mtr.IsPilotRslt() && mtr.TestDone && mtr.Publish() != Config.Entities.Publish.Never &&
// mtr.Publish() != Config.Entities.Publish.Internal)
// {
// string str = item.Print(wMtr, mtr.Name());
// string[] texts = str.Split(new char[] { '|' });
// if (texts.Length == 1)
// {
// lvi.SubItems.Add(str);
// }
// else if (texts.Length == 2)
// {
// Color color = texts[1].Equals("Green") ? Color.Green : (texts[1].Equals("Red") ? Color.Red : Color.White);
// lvi.UseItemStyleForSubItems = false;
// lvi.SubItems.Add(texts[0]);
// lvi.SubItems[lvi.SubItems.Count - 1].BackColor = color;
// }
// else
// {
// lvi.SubItems.Add(string.Empty);
// }
// }
// }
// oneWMResultsCtrl.Items.Add(lvi);
// }
}
void ShowChart(Results.Entities.WaterMeter wm)
{
//chart.ChartAreas[0].AxisX.LabelStyle.Format = "dd.MM.yy";
//chart.ChartAreas[0].AxisX.Interval = 1;
//chart.ChartAreas[0].AxisX.IntervalType = ;
tabControl1.TabPages[1].Controls.Add(Results.Output.WMChart.GetChart(wm, false));
}
/// <summary>
/// Display tracing results in the 3rd tab page
/// </summary>
/// <param name="wm">Water meter entity</param>
/// <param name="refRecords">ReferenceRecord-s from tracing DB</param>
void ShowTracingResults(Results.Entities.WaterMeter wm, IList<ReferenceRecord> refRecords)
{
tracingResultsListView.Columns.Add(Strings.Date_and_time, 110);
tracingResultsListView.Columns.Add(Strings.Step, 100);
tracingResultsListView.Columns.Add(Strings.Workplace, 100);
tracingResultsListView.Columns.Add(Strings.Name, 100);
tracingResultsListView.Columns.Add(Strings.Result, 70);
tracingResultsListView.Columns.Add(Strings.Part, 90);
tracingResultsListView.Columns.Add(Strings.Code, 150);
tracingResultsListView.Columns.Add(Strings.Workflow, 450);
if (refRecords == null || refRecords.Count == 0)
{
messageLabel.Text = "V sledovaní výroby nie sú žiadne záznamy";
}
else
{
Process proc = refRecords[0].Process;
bool[] isMissing = new bool[proc.Worksteps.Count];
for (int i = 0; i < isMissing.Length; i++) isMissing[i] = true;
foreach (var rr in refRecords)
{
tracingResultsListView.Items.Add(new ListViewItem(new string[]
{
rr.TimeStamp.ToString("dd.MM.yyyy HH:mm"),
(rr.Workstep != null) ? rr.Workstep.Name : string.Empty,
rr.Workplace,
rr.UserName,
rr.Result == 0 ? "OK" : "NOK",
(rr.Workstep != null && rr.Workstep.ReferencePart != null) ? rr.Workstep.ReferencePart.Name : string.Empty,
rr.Code,
(rr.Process != null) ? rr.Process.Name : string.Empty,
}));
for (int i = 0; i < isMissing.Length; i++)
{
if (proc.Worksteps[i] == rr.Workstep) isMissing[i] = false;
}
}
string missingWorkplace = null;
for (int i = 0; i < isMissing.Length; i++)
{
if (isMissing[i])
{
if (missingWorkplace == null)
{
missingWorkplace = proc.Worksteps[i].Name;
messageLabel.Text = string.Format("Chýba záznam z pracoviska {0}", missingWorkplace);
}
else
{
messageLabel.Text = string.Format("Chýba záznam z pracoviska {0} aj z nasledujúcich pracovísk", missingWorkplace);
}
}
}
if (missingWorkplace == null)
{
messageLabel.Text = "Všetko je OK";
}
}
}
}
}
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namespace Results.Forms
{
partial class OneWMResultsColumnsCtrl
{
/// <summary>
/// Required designer variable.
/// </summary>
private System.ComponentModel.IContainer components = null;
/// <summary>
/// Clean up any resources being used.
/// </summary>
/// <param name="disposing">true if managed resources should be disposed; otherwise, false.</param>
protected override void Dispose(bool disposing)
{
if (disposing && (components != null))
{
components.Dispose();
}
base.Dispose(disposing);
}
#region Component Designer generated code
/// <summary>
/// Required method for Designer support - do not modify
/// the contents of this method with the code editor.
/// </summary>
private void InitializeComponent()
{
this.splitContainer1 = new System.Windows.Forms.SplitContainer();
this.tBox = new System.Windows.Forms.TextBox();
this.lView = new System.Windows.Forms.ListView();
((System.ComponentModel.ISupportInitialize)(this.splitContainer1)).BeginInit();
this.splitContainer1.Panel1.SuspendLayout();
this.splitContainer1.Panel2.SuspendLayout();
this.splitContainer1.SuspendLayout();
this.SuspendLayout();
//
// splitContainer1
//
this.splitContainer1.Dock = System.Windows.Forms.DockStyle.Fill;
this.splitContainer1.FixedPanel = System.Windows.Forms.FixedPanel.Panel1;
this.splitContainer1.Location = new System.Drawing.Point(0, 0);
this.splitContainer1.Name = "splitContainer1";
this.splitContainer1.Orientation = System.Windows.Forms.Orientation.Horizontal;
//
// splitContainer1.Panel1
//
this.splitContainer1.Panel1.Controls.Add(this.tBox);
//
// splitContainer1.Panel2
//
this.splitContainer1.Panel2.Controls.Add(this.lView);
this.splitContainer1.Size = new System.Drawing.Size(352, 318);
this.splitContainer1.SplitterDistance = 25;
this.splitContainer1.SplitterWidth = 1;
this.splitContainer1.TabIndex = 0;
//
// tBox
//
this.tBox.Dock = System.Windows.Forms.DockStyle.Fill;
this.tBox.Location = new System.Drawing.Point(0, 0);
this.tBox.Name = "tBox";
this.tBox.Size = new System.Drawing.Size(352, 20);
this.tBox.TabIndex = 0;
this.tBox.MouseDoubleClick += new System.Windows.Forms.MouseEventHandler(this.tBox_MouseDoubleClick);
//
// lView
//
this.lView.Dock = System.Windows.Forms.DockStyle.Fill;
this.lView.FullRowSelect = true;
this.lView.GridLines = true;
this.lView.Location = new System.Drawing.Point(0, 0);
this.lView.Name = "lView";
this.lView.Size = new System.Drawing.Size(352, 292);
this.lView.TabIndex = 0;
this.lView.UseCompatibleStateImageBehavior = false;
this.lView.View = System.Windows.Forms.View.Details;
//
// OneWMResultsCtrl
//
this.AutoScaleDimensions = new System.Drawing.SizeF(6F, 13F);
this.AutoScaleMode = System.Windows.Forms.AutoScaleMode.Font;
this.Controls.Add(this.splitContainer1);
this.Name = "OneWMResultsCtrl";
this.Size = new System.Drawing.Size(352, 318);
this.splitContainer1.Panel1.ResumeLayout(false);
this.splitContainer1.Panel1.PerformLayout();
this.splitContainer1.Panel2.ResumeLayout(false);
((System.ComponentModel.ISupportInitialize)(this.splitContainer1)).EndInit();
this.splitContainer1.ResumeLayout(false);
this.ResumeLayout(false);
}
#endregion
private System.Windows.Forms.SplitContainer splitContainer1;
private System.Windows.Forms.TextBox tBox;
private System.Windows.Forms.ListView lView;
}
}
+159
View File
@@ -0,0 +1,159 @@
///
/// Copyright (c) 2019 Sensus Slovensko a.s.
///
using System;
using System.Drawing;
using System.Windows.Forms;
using System.Collections.Generic;
namespace Results.Forms
{
public partial class OneWMResultsColumnsCtrl : UserControl, IOneWMResultsCtrl
{
public event EventHandler<WaterMeterEventArgs> WMResultsClickedHandler;
///
private void tBox_MouseDoubleClick(object sender, MouseEventArgs e)
{
try
{
if (WMResultsClickedHandler != null) WMResultsClickedHandler(sender, new WaterMeterEventArgs(wmPosition));
}
catch (Exception)
{
}
}
bool disabled;
int wmPosition; /// 1-based water meter position
string caption;
Color bkColor;
int[] columnWidths;
IList<Results.WMeterRsltItemSpec> items;
public bool Disabled { get { return disabled; } } /// Read only
public int WMPosition { get { return wmPosition; } } /// Read only
public ListView.ColumnHeaderCollection Columns { get { return lView.Columns; } } /// Read only
public OneWMResultsColumnsCtrl()
{
InitializeComponent();
disabled = false;
wmPosition = 0;
tBox.Text = caption = "---";
tBox.BackColor = lView.BackColor = bkColor = Color.White;
items = new List<Results.WMeterRsltItemSpec>();
columnWidths = new int[0];
}
public void Update(int[] columnWidths)
{
this.columnWidths = columnWidths;
/// Always update ListView column widths
int col = 0;
foreach (ColumnHeader column in lView.Columns)
{
column.Width = (columnWidths != null && columnWidths.Length > col) ? columnWidths[col] : ((col == 0) ? 40 : 70);
col++;
}
}
public void Update(IList<Results.WMeterRsltItemSpec> items)
{
this.items = items;
}
public void Update(Results.Entities.WaterMeter wMtr)
{
if (wMtr == null || wMtr.Disabled)
{
/// Water meter position is disabled
this.disabled = true;
lView.Items.Clear();
tBox.Text = caption = "---";
tBox.BackColor = lView.BackColor = bkColor = Color.White;
return;
}
/// Update background color
string message = string.Empty;
Update(wMtr.GetColorOfResults(false, out message));
/// Update caption
#if ORACLE_DB
tBox.Text = caption = string.Format("{0} ({1}) {2}", (string.IsNullOrEmpty(wMtr.SerialNr) ? string.Empty : wMtr.SerialNr), (wMtr.Pruefindex % 100), message);
#else
tBox.Text = caption = string.Format("s/n = {0}", string.IsNullOrEmpty(wMtr.SerialNr) ? string.Empty : wMtr.SerialNr);
#endif
/// Header
lView.Columns.Add(wmPosition.ToString(), (columnWidths != null && columnWidths.Length > 0) ? columnWidths[0] : 40);
int col = 1;
foreach (var str in wMtr.GetAllDecoratedTestNames())
{
lView.Columns.Add(str, (columnWidths != null && columnWidths.Length > col) ? columnWidths[col] : 70);
col++;
}
lView.Items.Clear();
if (items == null || items.Count == 0) return;
foreach (var item in items)
{
ListViewItem lvi = new ListViewItem(item.Caption);
foreach (var mtr in wMtr.MeterTestRslts)
{
if (mtr != null && mtr.IsPilotRslt() && mtr.TestDone && mtr.Publish() != Config.Entities.Publish.Never &&
mtr.Publish() != Config.Entities.Publish.Internal)
{
string str = item.Print(wMtr, mtr.Name());
string[] texts = str.Split(new char[] { '|' });
if (texts.Length == 1)
{
lvi.SubItems.Add(str);
}
else if (texts.Length == 2)
{
Color color = texts[1].Equals("Green") ? Color.Green : (texts[1].Equals("Red") ? Color.Red : Color.White);
lvi.UseItemStyleForSubItems = false;
lvi.SubItems.Add(texts[0]);
lvi.SubItems[lvi.SubItems.Count - 1].BackColor = color;
}
else
{
lvi.SubItems.Add(string.Empty);
}
}
}
lView.Items.Add(lvi);
}
}
///
/// Private
///
void Update(int wmPosition)
{
this.wmPosition = wmPosition;
if (lView.Columns.Count > 0)
{
lView.Columns[0].Text = wmPosition.ToString();
}
}
void Update(Color backColor)
{
if (this.bkColor != backColor)
{
tBox.BackColor = lView.BackColor = this.bkColor = backColor;
}
}
}
}
+103
View File
@@ -0,0 +1,103 @@
namespace Results.Forms
{
partial class OneWMResultsRowsCtrl
{
/// <summary>
/// Required designer variable.
/// </summary>
private System.ComponentModel.IContainer components = null;
/// <summary>
/// Clean up any resources being used.
/// </summary>
/// <param name="disposing">true if managed resources should be disposed; otherwise, false.</param>
protected override void Dispose(bool disposing)
{
if (disposing && (components != null))
{
components.Dispose();
}
base.Dispose(disposing);
}
#region Component Designer generated code
/// <summary>
/// Required method for Designer support - do not modify
/// the contents of this method with the code editor.
/// </summary>
private void InitializeComponent()
{
this.splitContainer1 = new System.Windows.Forms.SplitContainer();
this.tBox = new System.Windows.Forms.TextBox();
this.lView = new System.Windows.Forms.ListView();
((System.ComponentModel.ISupportInitialize)(this.splitContainer1)).BeginInit();
this.splitContainer1.Panel1.SuspendLayout();
this.splitContainer1.Panel2.SuspendLayout();
this.splitContainer1.SuspendLayout();
this.SuspendLayout();
//
// splitContainer1
//
this.splitContainer1.Dock = System.Windows.Forms.DockStyle.Fill;
this.splitContainer1.FixedPanel = System.Windows.Forms.FixedPanel.Panel1;
this.splitContainer1.Location = new System.Drawing.Point(0, 0);
this.splitContainer1.Name = "splitContainer1";
this.splitContainer1.Orientation = System.Windows.Forms.Orientation.Horizontal;
//
// splitContainer1.Panel1
//
this.splitContainer1.Panel1.Controls.Add(this.tBox);
//
// splitContainer1.Panel2
//
this.splitContainer1.Panel2.Controls.Add(this.lView);
this.splitContainer1.Size = new System.Drawing.Size(352, 318);
this.splitContainer1.SplitterDistance = 25;
this.splitContainer1.SplitterWidth = 1;
this.splitContainer1.TabIndex = 0;
//
// tBox
//
this.tBox.Dock = System.Windows.Forms.DockStyle.Fill;
this.tBox.Location = new System.Drawing.Point(0, 0);
this.tBox.Name = "tBox";
this.tBox.Size = new System.Drawing.Size(352, 20);
this.tBox.TabIndex = 0;
this.tBox.MouseDoubleClick += new System.Windows.Forms.MouseEventHandler(this.tBox_MouseDoubleClick);
//
// lView
//
this.lView.Dock = System.Windows.Forms.DockStyle.Fill;
this.lView.FullRowSelect = true;
this.lView.GridLines = true;
this.lView.Location = new System.Drawing.Point(0, 0);
this.lView.Name = "lView";
this.lView.Size = new System.Drawing.Size(352, 292);
this.lView.TabIndex = 0;
this.lView.UseCompatibleStateImageBehavior = false;
this.lView.View = System.Windows.Forms.View.Details;
//
// OneWMResultsCtrl
//
this.AutoScaleDimensions = new System.Drawing.SizeF(6F, 13F);
this.AutoScaleMode = System.Windows.Forms.AutoScaleMode.Font;
this.Controls.Add(this.splitContainer1);
this.Name = "OneWMResultsCtrl";
this.Size = new System.Drawing.Size(352, 318);
this.splitContainer1.Panel1.ResumeLayout(false);
this.splitContainer1.Panel1.PerformLayout();
this.splitContainer1.Panel2.ResumeLayout(false);
((System.ComponentModel.ISupportInitialize)(this.splitContainer1)).EndInit();
this.splitContainer1.ResumeLayout(false);
this.ResumeLayout(false);
}
#endregion
private System.Windows.Forms.SplitContainer splitContainer1;
private System.Windows.Forms.TextBox tBox;
private System.Windows.Forms.ListView lView;
}
}
+169
View File
@@ -0,0 +1,169 @@
///
/// Copyright (c) 2019 Sensus Slovensko a.s.
///
using System;
using System.Drawing;
using System.Windows.Forms;
using System.Collections.Generic;
namespace Results.Forms
{
public partial class OneWMResultsRowsCtrl : UserControl, IOneWMResultsCtrl
{
public event EventHandler<WaterMeterEventArgs> WMResultsClickedHandler;
///
private void tBox_MouseDoubleClick(object sender, MouseEventArgs e)
{
try
{
if (WMResultsClickedHandler != null) WMResultsClickedHandler(sender, new WaterMeterEventArgs(wmPosition));
}
catch (Exception)
{
}
}
bool disabled;
int wmPosition; /// 1-based water meter position
string caption;
Color bkColor;
int[] columnWidths;
IList<Results.WMeterRsltItemSpec> items;
public bool Disabled { get { return disabled; } } /// Read only
public int WMPosition { get { return wmPosition; } } /// Read only
public ListView.ColumnHeaderCollection Columns { get { return lView.Columns; } } /// Read only
public OneWMResultsRowsCtrl()
{
InitializeComponent();
disabled = false;
wmPosition = 0;
tBox.Text = caption = "---";
tBox.BackColor = lView.BackColor = bkColor = Color.White;
items = new List<Results.WMeterRsltItemSpec>();
columnWidths = new int[0];
}
public void Update(int[] columnWidths)
{
this.columnWidths = columnWidths;
/// Always update ListView column widths
int col = 0;
foreach (ColumnHeader column in lView.Columns)
{
column.Width = (columnWidths != null && columnWidths.Length > col) ? columnWidths[col] : ((col == 0) ? 40 : 70);
col++;
}
}
public void Update(IList<Results.WMeterRsltItemSpec> items)
{
this.items = items;
/// Always draw ListView header
lView.Columns.Clear();
lView.Columns.Add(wmPosition.ToString(), (columnWidths != null && columnWidths.Length > 0) ? columnWidths[0] : 40);
if (items == null || items.Count == 0) return;
int col = 1;
foreach (var item in items)
{
lView.Columns.Add(item.Caption, (columnWidths != null && columnWidths.Length > col) ? columnWidths[col] : 70);
col++;
}
}
public void Update(Results.Entities.WaterMeter wMtr)
{
if (wMtr == null || wMtr.Disabled)
{
/// Water meter position is disabled
this.disabled = true;
lView.Items.Clear();
tBox.Text = caption = "---";
tBox.BackColor = lView.BackColor = bkColor = Color.White;
return;
}
/// Update background color
string message = string.Empty;
Update(wMtr.GetColorOfResults(false, out message));
/// Update caption
#if ORACLE_DB
tBox.Text = caption = string.Format("{0} ({1}) {2}", (string.IsNullOrEmpty(wMtr.SerialNr) ? string.Empty : wMtr.SerialNr), (wMtr.Pruefindex % 100), message);
#else
tBox.Text = caption = string.Format("s/n = {0}", string.IsNullOrEmpty(wMtr.SerialNr) ? string.Empty : wMtr.SerialNr);
#endif
Update(wMtr.WMPosition);
/// Update test results
IList<string> testNames = wMtr.GetAllDecoratedTestNames();
int ix = 0;
lView.Items.Clear();
foreach (var mtr in wMtr.MeterTestRslts)
{
if (mtr != null && mtr.IsPilotRslt() && mtr.TestDone && mtr.Publish() != Config.Entities.Publish.Never
&& mtr.Publish() != Config.Entities.Publish.Internal)
{
ListViewItem lvi = new ListViewItem(testNames[ix++]);
if (items != null)
{
for (int i = 0; i < items.Count; i++)
{
string str = items[i].Print(wMtr, mtr.Name());
/// Extract and use color information
string[] texts = str.Split(new char[] { '|' });
if (texts.Length == 1)
{
lvi.SubItems.Add(str);
}
else if (texts.Length == 2)
{
Color color = texts[1].Equals("Green") ? Color.Green : (texts[1].Equals("Red") ? Color.Red : Color.White);
lvi.UseItemStyleForSubItems = false;
lvi.SubItems.Add(texts[0]);
lvi.SubItems[lvi.SubItems.Count - 1].BackColor = color;
}
else
{
lvi.SubItems.Add(string.Empty);
}
}
}
lView.Items.Add(lvi);
}
}
}
///
/// Private
///
void Update(int wmPosition)
{
this.wmPosition = wmPosition;
if (lView.Columns.Count > 0)
{
lView.Columns[0].Text = wmPosition.ToString();
}
}
void Update(Color backColor)
{
if (this.bkColor != backColor)
{
tBox.BackColor = lView.BackColor = this.bkColor = backColor;
}
}
}
}
+65
View File
@@ -0,0 +1,65 @@
namespace Results.Forms
{
partial class TracingResultsDlg
{
/// <summary>
/// Required designer variable.
/// </summary>
private System.ComponentModel.IContainer components = null;
/// <summary>
/// Clean up any resources being used.
/// </summary>
/// <param name="disposing">true if managed resources should be disposed; otherwise, false.</param>
protected override void Dispose(bool disposing)
{
if (disposing && (components != null))
{
components.Dispose();
}
base.Dispose(disposing);
}
#region Windows Form Designer generated code
/// <summary>
/// Required method for Designer support - do not modify
/// the contents of this method with the code editor.
/// </summary>
private void InitializeComponent()
{
this.tracingResultsListView = new System.Windows.Forms.ListView();
this.SuspendLayout();
//
// tracingResultsListView
//
this.tracingResultsListView.Dock = System.Windows.Forms.DockStyle.Fill;
this.tracingResultsListView.GridLines = true;
this.tracingResultsListView.Location = new System.Drawing.Point(0, 0);
this.tracingResultsListView.Name = "tracingResultsListView";
this.tracingResultsListView.Size = new System.Drawing.Size(1228, 178);
this.tracingResultsListView.TabIndex = 0;
this.tracingResultsListView.UseCompatibleStateImageBehavior = false;
this.tracingResultsListView.View = System.Windows.Forms.View.Details;
//
// TracingResultsDlg
//
this.AutoScaleDimensions = new System.Drawing.SizeF(6F, 13F);
this.AutoScaleMode = System.Windows.Forms.AutoScaleMode.Font;
this.ClientSize = new System.Drawing.Size(1228, 178);
this.Controls.Add(this.tracingResultsListView);
this.MaximizeBox = false;
this.MinimizeBox = false;
this.Name = "TracingResultsDlg";
this.StartPosition = System.Windows.Forms.FormStartPosition.CenterParent;
this.Text = "TracingResultsDlg";
this.ResumeLayout(false);
}
#endregion
private System.Windows.Forms.ListView tracingResultsListView;
}
}
+44
View File
@@ -0,0 +1,44 @@
///
/// Copyright (c) 2019 Sensus Slovensko a.s.
///
using System;
using System.Collections.Generic;
using System.Windows.Forms;
using TracingDB.Entities;
using Results.Resources;
namespace Results.Forms
{
public partial class TracingResultsDlg : Form
{
public TracingResultsDlg(IList<ReferenceRecord> rRecords)
{
InitializeComponent();
Text = Strings.Production_tracing_results;
tracingResultsListView.Columns.Add(Strings.Date_and_time, 110);
tracingResultsListView.Columns.Add(Strings.Step, 100);
tracingResultsListView.Columns.Add(Strings.Workplace, 100);
tracingResultsListView.Columns.Add(Strings.Name, 100);
tracingResultsListView.Columns.Add(Strings.Result, 70);
tracingResultsListView.Columns.Add(Strings.Part, 90);
tracingResultsListView.Columns.Add(Strings.Code, 150);
tracingResultsListView.Columns.Add(Strings.Workflow, 450);
foreach (var rr in rRecords)
{
tracingResultsListView.Items.Add(new ListViewItem(new string[] {
rr.TimeStamp.ToString("dd.MM.yyyy HH:mm"),
rr.Workstep.Name,
rr.Workplace,
rr.UserName,
rr.Result == 0 ? "OK" : "NOK",
rr.Workstep.ReferencePart.Name,
rr.Code,
rr.Process.Name,
}));
}
}
}
}
+14
View File
@@ -0,0 +1,14 @@
///
/// Copyright (c) 2019 Sensus Slovensko a.s.
///
using System;
namespace Results.Forms
{
public class WaterMeterEventArgs : EventArgs
{
public int WMPosition;
public WaterMeterEventArgs(int wmPosition) { WMPosition = wmPosition; }
}
}
+103 -71
View File
@@ -91,85 +91,85 @@ namespace Results
T_Lo_start, /// 81
T_Lo_end, /// 82
T_Lo_avg, /// 83
P_delta_mean, /// 84
P_delta_start, /// 85
P_delta_end, /// 86
Meter_type, /// 87 Single, Compound or HeatMeter
Volume_main, /// 88
Volume_aux, /// 89
Start_volume, /// 90
Start_volume_main, /// 91
Start_volume_aux, /// 92
End_volume, /// 93
End_volume_main, /// 94
End_volume_aux, /// 95
Error_main, /// 96
Error_aux, /// 97
Serial_Nr_main, /// 98
Serial_Nr_aux, /// 99
End_state_main, /// 100
End_state_aux, /// 101
Q_rise, /// 102
Q_fall, /// 103
P_delta_mean, /// 84
P_delta_start, /// 85
P_delta_end, /// 86
Meter_type, /// 87 Single, Compound or HeatMeter
Volume_main, /// 88
Volume_aux, /// 89
Start_volume, /// 90
Start_volume_main, /// 91
Start_volume_aux, /// 92
End_volume, /// 93
End_volume_main, /// 94
End_volume_aux, /// 95
Error_main, /// 96
Error_aux, /// 97
Serial_Nr_main, /// 98
Serial_Nr_aux, /// 99
End_state_main, /// 100
End_state_aux, /// 101
Q_rise, /// 102
Q_fall, /// 103
/// iPerl
/// iPerl
OrigCalibFactor, /// 104
CalibFactor, /// 105
Q2ErrWOCorrection, /// 106
Q2CorrectionDone, /// 107
CalibFactor, /// 105
Q2ErrWOCorrection, /// 106
Q2CorrectionDone, /// 107
Q2CorrRFlow, /// 108
Q2CorrLFlow, /// 109
Q2CorrFlowRight, /// 110
Q_ref_mean, /// 111
T_up_start, /// 112
T_up_end, /// 113
T_up_avg, /// 114
T_down_start, /// 115
T_down_end, /// 116
T_down_avg, /// 117
T_div_start, /// 118
T_div_end, /// 119
T_div_avg, /// 120
P_up_avg, /// 121
P_down_avg, /// 122
P_delta_avg, /// 123
TestDone, /// 124
TestPassed, /// 125
Q_ref_mean, /// 111
T_up_start, /// 112
T_up_end, /// 113
T_up_avg, /// 114
T_down_start, /// 115
T_down_end, /// 116
T_down_avg, /// 117
T_div_start, /// 118
T_div_end, /// 119
T_div_avg, /// 120
P_up_avg, /// 121
P_down_avg, /// 122
P_delta_avg, /// 123
TestDone, /// 124
TestPassed, /// 125
/// iPerl
FW_Version, /// 126
Mass_start_raw, /// 127
Mass_start, /// 128
Mass_end_raw, /// 129
Mass_end, /// 130
Mass, /// 131
Buoyancy, /// 132
Density_correction, /// 133
Mass_start_raw, /// 127
Mass_start, /// 128
Mass_end_raw, /// 129
Mass_end, /// 130
Mass, /// 131
Buoyancy, /// 132
Density_correction, /// 133
ErrorFlags, /// 134
E1, /// 135
E2, /// 136
E3, /// 137
E4, /// 138
E5, /// 139
E6, /// 140
E7, /// 141
E8, /// 142
E9, /// 143
E10, /// 144
E11, /// 145
E12, /// 146
E13, /// 147
E14, /// 148
E15, /// 149
E16, /// 150
ErrorFlags, /// 134
E1, /// 135
E2, /// 136
E3, /// 137
E4, /// 138
E5, /// 139
E6, /// 140
E7, /// 141
E8, /// 142
E9, /// 143
E10, /// 144
E11, /// 145
E12, /// 146
E13, /// 147
E14, /// 148
E15, /// 149
E16, /// 150
Table_row_nr, /// 151
Table_column_nr, /// 152
WMRemark, /// 153
Table_row_nr, /// 151
Table_column_nr, /// 152
WMRemark, /// 153
User_description, /// 154
Legalizator, /// 155
@@ -181,7 +181,7 @@ namespace Results
Diverter_start_time, /// 159
Diverter_end_time, /// 160
Q_sensitivity, /// 161
Q_ref_min, /// 162
Q_ref_max, /// 163
Q_ref_start, /// 164
@@ -210,7 +210,7 @@ namespace Results
Rho_Wa_calc, /// 183
Formatted_WM_ID, /// 184, Formated WM ID string:
/// {0}=start DateTime {1}-end DateTime, {2}=batch nr., {3}=wm pos.(1..max), {4}=s/n string
/// {0}=start DateTime {1}-end DateTime, {2}=batch nr., {3}=wm pos.(1..max), {4}=s/n string
E21, /// 185
T_line_mean, /// 186
@@ -262,7 +262,7 @@ namespace Results
Bench_address5, /// 227 'Address 5' from IBenchInfo
Max_test_index, /// 228 MaxPruefindex % 100
VolumeCTV, /// 229
VolumeCTV, /// 229
/// iPerl
LastError, /// 230 For iPerl previous test result (test with Proefindex-1)
@@ -285,7 +285,39 @@ namespace Results
Prod_ResultCode, /// 244
Prod_Q2CorrRL, /// 245
Prod_Q2CorrLR, /// 246
TestPartStr, /// 247
Error_heat_mtr_vol, /// 248
Energy_start, /// 249
Energy_end, /// 250
OraWMTypeID, /// 251
OraWMTypeRev, /// 252
E25, /// 253
E26, /// 254
E27, /// 255
E28, /// 256
RefFlowmeter, /// 257
Test_Method_Elde, /// 258
Counter1, /// 259 counterIdx0 = 0
Counter2, /// 260 counterIdx0 = 1
Counter3, /// 261 counterIdx0 = 2
Counter4, /// 262 counterIdx0 = 3
Counter5, /// 263 counterIdx0 = 4
Counter6, /// 264 counterIdx0 = 5
Counter7, /// 265 counterIdx0 = 6
Counter8, /// 266 counterIdx0 = 7
Counter9, /// 267 counterIdx0 = 8
Counter10, /// 268 counterIdx0 = 9
ConstMasterCorr, /// 269
TimeBtwnMassMsrmnts, /// 270
TestTimeCorrection, /// 271
Count,
}
}

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