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StaticSessionIdPool[MEM_GET_STATIC_LEN_(APPL_NUM_OF_STATIC_SESSIONIDS, sizeof(unsigned long))]; unsigned char StaticForcePool[MEM_GET_STATIC_LEN(APPL_STATIC_FORCE_ENTRIES, ForceVarDesc)]; unsigned char StaticBPPool[MEM_GET_STATIC_LEN(APP_STATIC_BP_ENTRIES, Breakpoint)]; ·pParentApplication¸8Local, Structure, IsCompiled, RelativeInstance, Typified¹ pbyRightsºguidCode»guidData¼udState½ udOpState¾dwDoNotUse_0¿dwDoNotUse_1ÀdwDoNotUse_2ÁdwDoNotUse_3ÂdwDoNotUse_4ÃdwDoNotUse_5ÄdwDoNotUse_6ÅbAppendBootprojectÆbPersistentForceÇdwPSVersionÈdwTargetSettingVersionÉFB_INITÊ 3526140261ËMethodÌbInitRetainsÍbInCopyCodeÎ__INSTANCEPOINTERÏ4Input, IsCompiled, RelativeStack, Implicit, TypifiedÐ __Index__0Ñ2Local, IsCompiled, RelativeStack, NoInit, ImplicitÒ'NonVirtual, Compiled, Typified, LocatedÓ$ff589828-12c2-4e6a-9f0d-1d6dbb3264b6Ô__FB_PARTIALINITÕ 1565233622Ö2NonVirtual, Generated, Compiled, Typified, Located×?Structure, NonVirtual, Compiled, SuperGlobal, Typified, LocatedØ pack_modeÙ8Ú 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(system)ðm4export_32bit_nosignatureñ 124493086òIoMgrConfigGetConnectorByDriveróIOCONFIGCONNECTORôIoConfigConnectorõpIBaseöIBase÷ bIecDriverønIndexùpResultúRTS_IEC_RESULTû%External, Compiled, Typified, Locatedü$06985b41-279f-4177-be30-df6637cf2a9býiostandard, 3.5.15.0 (system)þ 1849640412ÿIoMgrConfigGetConnectorListppConnectorListpnCount$328a63c3-d551-4b32-9422-377bc6aac35e 2797965735IoMgrConfigGetDriver pConnectorpbIecDriver$af3d345a-c11f-478f-b5df-a99d8ebf08b6m4export_nosignature 120351857IoMgrCopyInputBEpChannelIOCONFIGCHANNELMAPIoConfigChannelMap$55d03518-4ee8-4b82-a8b3-766e40682994 3573238966IoMgrCopyInputLE$2c81bc43-6ab4-4b52-9f19-2965d9566ee8 3451368126IoMgrCopyOutputBE$7717607d-0e2d-4e6e-9262-8273e4cd68de 1606949052IoMgrCopyOutputLE$5bc7d463-6913-4718-8a12-5e49d1a76983 2201279776IoMgrGetBusCycleType$b68569cb-9baa-4ce2-a823-c8a751a0fb64 4163672564IoMgrGetConfigApplicationpszConfigApplicationpnMaxLen$b8648e29-04fc-41e1-a469-45f6d098f662 3960301101¡IoMgrGetDriverProperties¢hIoDrv£RTS_IEC_HANDLE¤ppProperties¥$bff24870-39d9-48f3-9d34-114cbabbe751¦ 2015607926§IoMgrGetFirstDriverInstance¨$0e6f29bf-e5f9-4dc0-9040-46a430baf6fd© 189232175ªIoMgrGetNextDriverInstance« pIBasePrev¬$2321c32b-bfa7-46fc-9f42-71436c2534daË | Reconfigure a single connector respectively the corresponding master. | In the reconfigure sequence we call the corresponding IO-driver at the connector the following way: | 1. disable the IO-configuration | 2. enable the IO-configuration | 3. update the mapping | This sequence is called asynchronously so the asynchronous state is transported in the parameter pudiState. :return: The runtime system error code (see CmpErrors.library)® 1931367312¯IoMgrReconfigure°7 Pointer to the corresponding connector to reconfigure ±ù Asynchronous state of the reconfigure operation. Can be one of the the following states (see CmpAsyncMgr.library for details: (ASYNCSTATE_INVALID | ASYNCSTATE_PENDING | ASYNCSTATE_ACTIVE | ASYNCSTATE_READY | ASYNCSTATE_ERROR | ASYNCSTATE_TIMEOUT)² pudiState³$912d5cf9-41b7-4ddc-870c-b8cb86c2711e´ 3203918504µIoMgrRegisterConfigApplication¶$b2f4c643-c7e5-48a2-9923-7da06f28f56f· 1108998563¸IoMgrRegisterInstance2¹ dwClassIdºpItf»$d0558e3e-16a7-4cff-b56f-4bf2bab8dca5¼ 1618632085½IoMgrSetDriverProperties¾ulProperties¿$11359e5a-6c6f-4ab0-ad02-13f1415fc629À 2473575876ÁIoMgrSetDriverProperty ulPropertyÃbValueÄ$0d12bb26-2b08-402c-9be4-7a3d1d749aacÅ 3971059502Æ IoMgrUnregisterConfigApplicationÇ$85fc8796-00e3-4500-8f02-96be88b1acabÈ 2198568135ÉIoMgrUnregisterInstanceÊ hInterfaceË$5c4cac23-de3f-40ac-b8bc-1fcdb219c4c9Ì 3870152214ÍConfigGetConnectorÎpIoConnectorListÏdwModuleTypeÐ dwInstanceÑiÒ*Local, IsCompiled, RelativeStack, TypifiedÓdwCurrentInstanceÔ$05448d5a-856f-498f-8d2c-f54d4a1d2b4bÕ 2183295846ÖConfigGetFirstChild×pFatherØnCountÙ$4ec186af-b262-48d5-b7fc-df5bbfcaba7dÚ 2505514326ÛConfigGetFirstConnectorÜwTypeÝ$f4b6faa7-ed59-4b86-ac5f-530a108dd065Þ 1184247126ßConfigGetNextChildà$24eb7af1-4fea-45c3-9f69-1d59d8d37254á 182680892âConfigGetNextConnectorã$0f720af6-4d60-4925-b3d9-aa0ac2cc321cä 2127479105åConfigGetParameteræIOCONFIGPARAMETERçIoConfigParameterèpIoConnectoré dwParameterIdê$69449550-bc7e-40a6-a2d3-5b7f5d2fe50aë 1690247643ìConfigGetParameterLengthí pParameterî$15163bae-b543-4ae9-85e3-287c9d15f161ï22967866ðConfigGetParameterValueByteñwValueòdwValueó$a482a558-eb9a-4b9b-92ef-440028b1a32eô 2864151311õConfigGetParameterValueDwordöbyValue÷$04e9467c-951f-4e5c-95cf-4a9100c257c9ø 1732278298ùConfigGetParameterValuePointerú$a0bb9009-1f2c-4f47-9efd-e6f6d57f364bû38318646üConfigGetParameterValueWordý$2520e670-523b-47bc-a617-0cf6550b9c99þ''DOCU__COMMENTÿÏ Mapping information for a single channel. Every I/O-channel is described as a parameter, but with special meanings. The datatype of a channel can be simple (BOOL, BYTE, WORD, etc.) or array of simple types. 1485173771& Pointer to the parameter description.? Pointer to the parameter in the process image on the IEC side. pbyIecAddress Bitoffset of the device. wParameterBitOffset5 Bitoffset of pbyIecAddress in the IEC process image.wIecAddressBitOffset Size in bits of the channel.wSizeÁ This parameter is now used for the base type information. This information is needed for a correct swapping action. -- wBaseTypeInformation : WORD; -- compiler relies on the name 'wDummy' herewDummy= Driver specific entry. Reserved for the usage in the driver.dwDriverSpecificXWORD 3799954164$9993a70e-7153-4204-9a17-aa75207d5f4a2Structure, NonVirtual, Compiled, Typified, Locatedw Connector information. Each device is described completely as a set of one input- and one or more output-conenctors. 3076999907P Type of the connector. See category "Connector types" for detailed information.N Connector options. See category "Connector options" for detailed information.wOptionsJ Connector flags. See category "Connector flags" for detailed information.dwFlagsd Registered instance handle of the IO-driver, that operates this device respectively this connector., Number of parameters in the parameter list.dwNumOfParametersO Pointer to the parameter list, that contains all parameters of this connector.pParameterList= Pointer to the father connector to describe the device tree. 2550773687 $7e08b7ae-f8e8-47d2-8a16-44662e62b8ce¡; Connector map to describe all IO-channels of one connector¢ 2929473580£IoConfigConnectorMap¤( Pointer to the corresponding connector.¥ IO-manager specific entry.¦dwIoMgrSpecific§, Number of channels in the channel map list.¨dwNumOfChannels© Pointer to channel map list.ªpChannelMapList« 3660353869¬IOCONFIGCONNECTORMAP$614b5eaf-fe26-4660-8316-12a2d58a3653®T Parameter description. This entry describes completely a parameter of an connector.¯ 837778035°E ID of the parameter. This ID is specified in the device description.±J Value (if is valud < 4 bytes) or a pointer to the value of the parameter.²Q Type class of the parameter. See category "Type class" for detailed information.³! Length of the parameter in bits.´wLenµ¬ Parameter value flags. See category "Parameter value flags" for detailed information. Bit 16 to 31 are used for extended parameters (size exceeding 65535 Bits,8192 Bytes)¶ 3168140343·$0c1f5741-c666-4ac4-8049-47e0d549144b¸# Mapping description for each task.¹ 2318185417ºIoConfigTaskMap» Index of the IEC task.¼dwTaskId½N Input or output type. See category "Task map types" for detailed information.¾5 Number of connector maps int the connector map list.¿wNumOfConnectorMapÀ# Pointer to the connector map list.ÁpConnectorMapList 3888132684ÃIOCONFIGTASKMAPÄ$1e2d8176-ccc8-45ec-9578-1060ca08f642Å 2962471661ÆIoMgrConfigGetConnectorÇpConnectorListÈ$12573be7-5a8e-4ae9-8d45-6c29427b520eÉ 3097191027ÊIoMgrConfigGetFirstChildË$044f0bef-f59d-43ad-8496-90bb6703c2b5Ì 451793610ÍIoMgrConfigGetFirstConnectorÎ$2858dd16-f4fc-4483-bcdf-311c983114f4Ï 797436920ÐIoMgrConfigGetNextChildÑ$e9fb4157-4aac-42be-ac94-2b7115a46f96Ò 2780622961ÓIoMgrConfigGetNextConnectorÔ$9eb80208-afcd-40cc-b7ef-e6ba0e5e4845Õ 3349297925ÖIoMgrConfigGetParameter×$6d324e8a-97b5-4b18-a273-d5a249575d94Ø 3729716360Ù IoMgrConfigGetParameterValueByteÚ$7f0fa515-c756-4bdf-b369-2bc20d75cf4bÛ 1871208306Ü!IoMgrConfigGetParameterValueDwordÝ$edf4b27c-1558-4b38-8740-7733f1cd6224Þ 1664861923ß#IoMgrConfigGetParameterValuePointerà$c7e307ad-2f7f-41c3-a984-0cf8acc87b55á 1378701427â IoMgrConfigGetParameterValueWordã$534433e7-0f3d-4b97-9452-dcee4c3f5982ä 1801502966åIoMgrConfigResetDiagnosisæ$883f4d8a-c225-480c-ab37-0adbd1349dfeç 3771515593èIoMgrConfigSetDiagnosisé$a48fea34-3f67-4013-a0ba-98007fb1f0ffê m4export_hideë 3966152356ìEVTPARAM_CmpIoMgrí 2142005226îEVTPARAM_CMPIOMGRï$0c7ba0e4-3fb3-4e68-be6f-1f18acd66874ð 1571261114ñIoMgrGetModuleDiagnosisò$0e3b12d3-3da9-4300-b32d-a55b095483d1ó 3297191157ô IoMgrIdentifyõ$8f29ce56-8080-4f31-921c-c80d1e131a4bö¿ This function acquires the mutual-exclusion locks for the given operations for critical sections inside the I/O driver's implementation of IoDrvReadInputs(), IoDrvWriteOutputs(), and IoDrvStartBusCycle(). The locks can be released with the function ``IoMgrLockLeave()``. While a lock is held, any other thread is blocked from acquiring the lock and waits until the lock is released. IMPLEMENTATION NOTE: The behavior of the ``dwLockScope`` parameter can't be implemented on all platforms. Platforms without synchronization functionality may not be able to implement this behavior. IoMgrEmbedded of the CODESYSControlEmbedded runtime system for example can only disable and enable all interrupts. :return: error code + ERR_OK: Locks were successfully acquired. + ERR_PARAMETER: The ``pbyIoDrv`` parameter is ``NULL`` (only implementations that use this parameter), or the ``dwLockScope`` parameter has none of the GVL LockScopes set (only implementations that use this parameter). + ERR_FAILED: No driver entry for pbyIoDrv found in device pool.÷ 890733340øIoMgrLockEnterùZ Handle to the driver instance which is returned by the function IoMgrRegisterInstance2().úX The operations for which to acquire locks. See GVL LockScopes for detailed information.ûdwLockScopeü$4fd687bb-454e-46c6-92d3-30d2728a3718ý This function releases the mutual-exclusion locks (that were acquired with the function ``IoMgrLockEnter()``) for the given operations. IMPLEMENTATION NOTE: The behavior of the ``dwLockScope`` parameter can't be implemented on all platforms. Platforms without synchronization functionality may not be able to implement this behavior. IoMgrEmbedded of the CODESYSControlEmbedded runtime system for example can only disable and enable all interrupts. :return: error code + ERR_OK: Locks were successfully released. + ERR_PARAMETER: The ``pbyIoDrv`` parameter is ``NULL`` (only implementations that use this parameter), or the ``dwLockScope`` parameter has none of the GVL LockScopes set (only implementations that use this parameter). + ERR_FAILED: No driver entry for pbyIoDrv found in device pool.þ 1023158587ÿIoMgrLockLeave\ The operations for which to release the locks. See GVL LockScopes for detailed information.$50cd89f4-1210-43ef-b6c6-2969fa64e786 1003358786IoMgrReadInputspTaskMap $d5fc4c8b-d7aa-4c58-861a-b02328639e3c 4078812334IoMgrScanModules$86e554e2-e3be-4617-a91e-b1c3df71e91f 166652967IoMgrStartBusCycle$4a65f552-4c1b-4aa4-92a4-4c8eb2dd5024× Start the bus cycle for a specific connector, and pass the type of this call as an additional option. This way, the driver knows in which conditions (see BusCycleType) was called, by calling IoMgrGetBusCycleType(). 2327419416IoMgrStartBusCycle2$baa69047-4c1f-4c1a-b87c-8471ac7a7ad6 2973243251IoMgrUpdateConfiguration$8e8c1b49-af35-45e8-8dd6-4183dc7c1266 1154303272IoMgrUpdateConfiguration2$d75b572a-b27e-4240-94e8-0565f641933c 169153132IoMgrUpdateMappingpTaskMapList$f05cd498-57b1-4b93-bdc2-c8e263237f40 2002746541IoMgrUpdateMapping2$f51df010-35a8-4d39-b7ab-b84c2159ac76 2557345171IoMgrWatchdogTrigger$adc50bde-6417-4daf-91a3-310b13750941 3660854195¡IoMgrWriteOutputs¢$f3cda08a-24ef-4920-8b1f-737f86549f8b£ 3548116447¤IoMgrReadParameter¥pData¦ dwBitSize§dwBitOffset¨$0f6cb342-4622-47eb-8029-2ed7ce38f7e4© 2902783976ªIoMgrWriteParameter«$59947c7d-7697-4b40-a6f3-1458a495024c¬ 2598087253$ConfigGetParameterValueByte_Internal®pbyValue¯Byte°$ad79290f-4fb0-4668-a246-1230e7f20a89± 743185784²%ConfigGetParameterValueDword_Internal³pdwValue´DWordµ$1682af8a-160c-45a7-8955-5be9ff8acfb2¶ 1882665782·$ConfigGetParameterValueWord_Internal¸pwValue¹Wordº$d13aa643-3f97-483d-bb6d-577d824c73e4» 3023225215¼private_iomgr_memcpy½pDst¾iSize¿$c3db5c9e-2306-4784-86d3-ddc840e503d2À 450027817ÁLogToDeviceÂpMessageÃ$87fa260a-0206-486b-b1c7-ddcd71ec0182ÄJbreakpoint logging functions, 3.5.5.0 (3s - smart software solutions gmbh)Åä Appending of a string to a target string. The string to append and the target have both a maximum length of 255. If there is no more room in the target, the remaining characters will be missing. There won't be an error. .. cds:ranges:: :HEAD: |StringRange255| :TAIL: |StringRange255| .. |StringRange255| replace:: [NULL_STRING,TERMINATED_STRING_LEN0..TERMINATED_STRING_LEN127,TERMINATED_STRING_LEN128..TERMINATED_STRING_LEN255,UNTERMINATED_STRING] Æ 3222489690ÇAppendToStringÈ& Head part of the concatenated result ÉHEADÊ% Tail part of the concatenated resultËTAILÌIntÍindex1ÎindexRetÏ$2534de7b-0ca5-4f62-a5ca-98671b8c49e2Ð linkalwaysÑ 1647294876Ò__DataSegmentsÓnNumOfSegmentsÔ pDataSegmentsÕ __SEGMENTINFOÖ __SegmentInfo× 4060142437Ø__DATASEGMENTSÙ$6d5ee79a-0165-410b-9a03-2dcb86d77084Ú 4207933064Û 1489859144ÜdisplaymodeÝhexÞdsKindOfß__DATASEGMENTFLAGSàuiAreaáudOffsetâudSizeãudHighestUsedAddressä 176517104å$86a3bd70-f6af-446c-a3ca-d70c9d74cefbæ 224398676ç 3195237607è__BasePropertyInfoépVarAdrê 930619704ë__BASEPROPERTYINFOì$31ba9dec-acd8-475d-b624-39b6068c7eafí 461629027î 236822733ï__PropertyInfoStructðpGetterñpSetterò pInstanceó 4145388846ô__PROPERTYINFOSTRUCTõ$85b65d0b-a93f-4e02-80e4-fafd3f54abc3ö 1714484629÷ 3751468166ø__POUInfoStructù dwCRCCodeúdwCRCInterfaceûudiNameStringIndexüusiAreaCodeLocationýusiAreaFPPointerLocationþudiOffsetCodeLocationÿudiOffsetFPPointerLocation 519335429__POUINFOSTRUCT$8467172f-0c66-4acf-9d6b-245b2445da14 2202995516 2428029082 __FBInfoStructdwCRCVFTableudiAreaVFTableLocationudiOffsetVFTableLocation 1621815094__FBINFOSTRUCT$1964cd27-f960-4298-b539-cf555cb4552c 2130618155 901311032__MethodInfoStructudiParentPOUIndex 2699900021__METHODINFOSTRUCT$d277c0d4-0a58-4c92-97d1-0453f8828707 3731023454 2494911014__DUTInfoStruct 2398341060__DUTINFOSTRUCT$76a1e5d2-9eb5-4a1b-a8e7-baf1b7eb9716 1327871788 3489042165__GVLInfoStruct 1374809287__GVLINFOSTRUCT$a40cb7c8-28fe-4494-89ac-d9ba39db98a8 2456846774 994902498¡AnyType¢pValue£diSize¤ TypeClass¥ TYPE_CLASS¦ 3543456108§ANYTYPE¨$b60a5c90-aa6c-4c3f-8332-c02981c0bf59© 696726884ª 2125849342«__CodeLocationStruct¬udiCodeSize 2823972544®__CODELOCATIONSTRUCT¯$bb81851c-8557-43fd-ad66-2f0071e45f53° 802123132± 147588528²__ImplicitReferenceTypesInit³$270c4366-521b-4273-856a-24cad42924c9´ 2353654990µ__TaskSpecificInfo¶ TaskIndex· pTaskInfo¸ 2567373613¹__TASKSPECIFICINFOº$5f3af15b-046d-4359-9fb1-4011c841ebb0» 1278195045¼qualified_only½ 406642837¾__CheckedInterfaceAssign¿InterfaceInputÀ correctionÁ$09818148-288b-4e68-aaac-88d3699e851b 4255647081à __memcmp__iecÄptr1Åptr2Æ$0ac70c4a-9600-4218-ba11-7d8ad957fb05Ç 4118428513Èany32__to__stringÉ diExponentÊdwMantËdiExp10ÌpstrÍdiAfterKommaÎudPowÏdwTODÐdwDateÑpszHelpÒ(Compiled, SuperGlobal, Typified, LocatedÓ$52f276ac-71ea-475d-be1d-c34d7442869eÔF new and better way to convert single precision float values to stringÕ 812339439Önew__real32__to__string× Area: 65535, Offset: 0x0 (0)ØindexÙpdwÚdwÛbSignÜdecexponentÝbinexponentÞbinmantissaßdecmantissaàstrMantissaRawástrMantissaâpstrMantissaãnLenä bFirstCharånNewExponentænPointPositionçnIndexMantissaNewèbNanébInfêExponentëbNegExponentìnTensínOnesî__CONVERSION_CONSTANTSïFðAdrñPFòBoolóbContainsPointôCHAR_0õFLocal, ReplacedConstant, Constant, IsCompiled, RelativeStack, Typifiedö CHAR_POINT÷ CHAR_MINUSøCHAR_Eù$a891eece-ca29-4db8-b9cf-c1a855c9feacú 4263303623ûany64__to__stringüdintHighýudintLowþ udintHighÿLWordulDivulDigbFirstnDigitsnWidth count$3cce6ca9-0c61-42bf-9945-73fd93e91f59 748513653real64__to__stringsz pszSource pszHelpSourcepszDestDIntnSigniExp10nExpSignbSdiEliMxNanxInf$2a265c59-789e-4c94-a95e-f5f70529f084__GETINTERFACEPOINTER__GETINTERFACEREFERENCE__MAIN__VFINITCONFDYNLICCHALLENGEDEMOMODEEXPIREDDEMOMODESTARTEDFB_EXITGENERATEEXCEPTION GETCODEMETERLICENSEVALUE¡GETDEMOLICENSE¢GETLICENSEVALUE£GETLICENSEVALUEBIT¤GETPURELICENSEVALUE¥GETUSERLICENSEVALUE¦LICENSEMISSING§LOGERRORMESSAGE¨READLICENSEFILE©REQDYNLICCHALLENGEªSTORELICENSE«UDINTVALUEOFLINE¬VALUEOFLINEhide_all_locals®l This FB manages the access to license values. There is one global instance of it with the name ``g_olm``.¯ 1762817067°OLM_OnlineLicenseManager± FunctionBlock²_hFile³-Local, IsCompiled, RelativeInstance, Typified´ _udiTargetµ_udiType¶_udiCPU·_udiOS¸_abyFileContent¹gc_uiMaxFileSizeº_uiFileSize» _xFileRead¼_uiStoredLicenses½_udiDynLicReqID¾_udiDynLicReqValue¿_udiDynLicChallengeÀ _xDemoMessageÁ _semaStoreÂ_adwLicensesStoredÃgc_uiMaxStoredLicÄ__VFTABLEPOINTERÅ=Local, IsCompiled, RelativeInstance, NoInit, Implicit, NoCopyÆ 3309119800ÇOLM_ONLINELICENSEMANAGERÈ __Index__1É$85fe17fb-708c-43f1-921d-b15ce3e6d622Ê 726124912ËReadLicenseFileÌresÍuxiSizeÎ udiTargetÏ udiTargetMASKÐudiTypeÑudiCPUÒudiOSÓpsSerialÔpdiÕ uiCheckSumÖabyGen×bØStringÙOnlineLicenseManagerÚstComponentÛstFileÜstrÝtiÞ$Compiled, Typified, Located, Privateß$245266f5-25c0-4347-ba16-cf8db3cb1448à83slicense, 3.5.14.0 (3s - smart software solutions gmbh)á÷ With this method a component that previously asked for a license and received a negative result can post an error log message in a unified way Hence this method should be called after GetUserLicenseValue has been called and returned no license.â 3647277004ãLicenseMissingä name of the componentåstrComponentæ$c917544e-997c-4a95-85b8-b296375d8bdbç 3970679331èUdintValueOfLineéstrIdê$482e9fa5-988d-470b-a26c-e7f543b44f5fë 699475816ìGetLicenseValueBitíudiLicenseIDîusiBitï udiLicenseð$0dd60a5f-bcb6-4ca9-bbbe-47aee3a7178añ 2096955056òfb_initó$05fb8a48-e7b2-4a22-ad11-1fd89ee4b04eô 1640385473õGenerateExceptionö$3e4d0264-ac0c-4627-a2fa-6f413a9caafe÷ 3646185970øLogErrorMessageù$35438eb1-a664-41a5-9c91-1c77ddde2b52úw With this method a component can propagade in a uniform way that its demo mode has expired and it has stopped to work.û 3922114547üDemoModeExpiredý$e0a0ee36-9b29-4376-92d8-210830590ceaþ 2895160340ÿ__GetInterfacePointer pRef 3063148035 fb_exit $fce63f6e-52d8-4464-9446-53dd8cc9eff7 167456217 GetPureLicenseValue xNotFromCache xFromCache udi udiCPUOS ui udiWibu $23227458-e40f-430b-b25c-630ba433fec3 4203605720 StoreLicense udiValue $3c47975d-1574-4342-8c3b-38c7e032490c This method allows to ask for the license value of a component (specified by udiLicenseID) :return: Possible values: +-------------+------------------------------------------------------+ | 0 | no valid license installed | +-------------+------------------------------------------------------+ | 16#FFFFFFFF | demo mode (lasts for 30 min) | +-------------+------------------------------------------------------+ | else | license value; interpretation depends on component | +-------------+------------------------------------------------------+ 1784112674 GetUserLicenseValue O ID of the component that asks for its license value (centrally assigned by 3S) $faf62368-1791-496f-9aac-1dcccaddbebb 1553897900 ConfDynLicChallenge udiNewLicenseValue udiChallenge udiLicenseValue $3c2f7c5c-8743-4910-b672-93d5c08a11db 4275231191 GetCodemeterLicenseValue udiProductCode $2fd2d7ac-965c-4a78-9a9b-c721a84cea62 1869023576¡ GetDemoLicense¢ stHelp£ $3dea640c-ce74-46db-89a9-6a2e7e8a089c¤ With this method a component can propagade in a uniform way that it is running in demo mode and will - after a certain time - stop. This method should be called after it is clear that the license will stay in demo mode, in particular the (possibly later / after initialization phase) confirmation of dynamic licenses should be taken into account. Therefore it is recommended for the OEM to confirm dynamic licenses *during the initialization* (after global init slot 40000) and *before the application* is started.¥ 3669514694¦ DemoModeStarted§ $c9961dd4-2fb3-4d0b-9b3f-67937056004c¨ 3864497688© __GetInterfaceReferenceª nInterfaceId« 4293952¬ GetLicenseValue param® CMPEVENTMGR¯ CmpEventMgr° EVENTPARAM± EventParam² eventparam³ EVENTIDS´ CmpMgr_LicenseRequestµ $d5b19f2e-90e0-4b05-a5e8-3068951f9d50¶ 1280744906· 3890662013¸ ValueOfLine¹ pbyº uiEndOfLine» j¼ usiBitOffs½ byOrig¾ byPerm¿ byBuffÀ byOldÁ xEndOfLine $969097ae-9ac4-46e5-a05b-018cd3f16004à 584426206Ä ReqDynLicChallengeÅ udiTimeÆ $477a8134-64d2-4992-ac2b-50ed5f5a8858Ç 1774802008È Alias, IsCompiled, TypifiedÉ Alias, Compiled, TypifiedÊ $1f187897-1eca-4745-9dd7-6e656076701fË &systypes2 interfaces, 3.5.4.0 (system)Ì 3827756189Í $5de0d991-1359-4458-ba16-a7e779ed9ddcÎ 565296024Ï 8 EventID of the event. Contains the class and the event Ð EventIdÑ Component ID of the provider. Ò CmpIdProviderÓ 0 Id of the parameter structure (see pParameter) Ô usParamIdÕ 5 Version of the parameter structure (see pParameter) Ö usVersion× R Pointer to the event specific parameter, that is specified by Id (see usParamId) Ø 3380528868Ù $708ad4f5-2a48-4fd2-8d88-fb3b143a33a4Ú cmpeventmgr, 3.5.14.0 (system)Û 154268403Ü ulLicenseIDÝ ulLicenseValueÞ 2430688636ß CMPMGR_LICENSEREQUESTà $ec71f5d5-b2a8-42f3-8e75-3a56c8942752á __OffsetI_TESTRESULTFORMATTERâ FORMATã 1989740091ä I_TestResultFormatterå Interfaceæ 45520129ç Formatè The total amount of test suitesé NumberOfTestSuitesê 5 The total amount of test cases (for all test suites)ë NumberOfTestCasesì ? The total amount of test cases that had all ASSERTS successfulí NumberOfSuccessfulTestCasesî C The total amount of test cases that had at least one ASSERT failedï NumberOfFailedTestCasesð Busyñ I_TESTRESULTFORMATTERò $033e8873-ad7a-489b-8ba9-f0de8a344939ó $fa75ee61-43fb-4767-8061-125a3a9e3424ô cfunit, 1.1.0.1 (open source)õ Compiled, Typifiedö This function block reports the results from the tests using CmpLog functionality. It sends the results into the DeviceLog ÷ 2677203639ø FB_LogTestResultFormatterù __INTERFACEPOINTER__376ú Although we can print a message no #1 prior to message no #2, the message #2 can still be displayed before message #1, most likely because of some delay. To workaround this, we add a small delay between each message. In CfUnit, this delay has been removed.û USIntü LastPrintStateý PrintStateþ 3298891267ÿ FB_LOGTESTRESULTFORMATTER $d14d6247-3ce3-459f-be22-6ee3520279ed 1190260893 278100758 ! The total number of test suites ? The total number of test cases (for all test function blocks) @ The total number of test cases that had all ASSERTS successful D The total number of test cases that had at least one ASSERT failed ErrorCode $dba8c729-8b99-4be3-97cd-3a4fea4cd051 2457848138 486230573 2121478464 2899725525 I_TestResultFormatter__Union 1286751965 I_TESTRESULTFORMATTER__UNION CLOSE OPEN READ SAVE 1695361983 FB_FileControl ACCESS_MODE SYSFILE SysFile AM_WRITE_PLUS FileAccessMode FileHandle SYSTYPES SysTypes 2535989555 FB_FILECONTROL $c9bec8fc-2de3-45f4-b839-e6c4276a6b5a¡ 1889971345¢ 2355446001£ 3308839526¤ Read¥ Call with ADR();¦ pString§ Call with SIZEOF(); ¨ Size© FileSizeª RTS_IEC_SIZE« $3984ae50-1cdb-4045-af99-0bb56917afb2¬ Closes the current file 4214760544® Close¯ $519e9011-283c-40b1-afd4-31686c5b81fe° 2474451454± \ Saves the contents of the buffer into a file Be sure to call Open() before calling Save()² 2206094130³ Save´ Call with SIZEOF();µ $c4146a99-50c6-4ce0-88ab-794dbfb1af62¶ Opens a file· 2914156665¸ Open¹ p File name can contain an absolute or relative path to the file. Path entries must be separated with a Slash (/)º filepath/output.xml» FileName¼ T_MAXSTRING½ T_MaxString¾ AM_APPEND_PLUS¿ $1873bb2c-c6a3-4681-8948-02aa2bad0a9bÀ 527503827Á __GETBUFFERSIZE __GETLENGTHà __SETAPPENDÄ __SETLENGTHÅ __SETPREPENDÆ CLEARÇ COPYÈ CUTOFFÉ FINDÊ FINDBACKË SETÌ M This functionblock acts as a stream buffer for use with FB_XmlControl Í 460344340Î FB_StreamBufferÏ pStrBufÐ udiBufSizeÑ udiLengthÒ propertyÓ setÔ Appends a string to the bufferÕ message_guidÖ $ddd7c0b6-46f9-4fa9-946e-0da608268245× AppendØ getÙ Read current BuffersizeÚ $879a667c-416e-4879-91ff-6641233ded93Û BufferSizeÜ $80c3b0fb-2bdc-4829-89c6-017e171b31ebÝ LengthÞ Prepends a string to the bufferß $c4fdd2db-7736-4bc5-a06f-ba3a29618794à Prependá 3894529336â CutOffã udiStartPosä udiCutLenå XmlErroræ E_XMLERRORç iLoopè pByteCuté pByteBufferê FB_STREAMBUFFERë $8914e4f8-8b6c-48c3-ba1f-e0642038624aì $fbccbed5-94ee-455b-a9d5-e8b750ed732eí Find a searchstring in the buffer and returns its position. It's possible to add a preffered startposition within buffer î 2249836283ï Findð sSearchStringñ udiLoopò iSearchó pBufferô pSearchõ $7e38490a-9555-451d-957e-fef284a567e3ö 3770588605÷ FindBackø udiSearchù $7d08b204-2078-4fde-81eb-e04d71986196ú Sets the Buffer û 2765814553ü Setý Set buffer adress (ADR ...)þ pbyAdrÿ Set buffer size (SIZEOF ...)udiSize$59092938-ca22-4896-8f54-1c854a0bd883 3531527356 679612793__getLength $063f44b5-d97e-4feb-bc58-4bdd7430c0c3 431188798+ Clears the buffer and sets the length to 0 245412907Clear$5f0bbce2-2600-4a2e-8c6f-4b957ad03395 3105935666 3726327849__setAppendpByteIn$2498d17a-6a8a-4bf1-a5ce-9c1a248a9710 3911693793__getBufferSize$c7ad50d6-c68e-4f97-8e99-a8d5c013ef7a 1526185124__setLength$c516394c-e0bf-40e3-8a00-92e5ec5cc151 2742528156 1412497707__setPrependTempBufGVL_PARAM_XMLCONTROLGVL_Param_XmlControlMaxFileSizepTempBuf$4ce6b49b-00bd-4bd1-9dcd-2e9ecfab167b 1070739256 1 Copies a string from the character buffer ¡24631700¢Copy£udiStart¤udiEnd¥ udiCopyLen¦ pByteCopy§$b796dd60-63f5-4b75-acc5-8fa40e24be46¨CLEARBUFFER©CLOSETAGª NEWCOMMENT«NEWPARAMETER¬NEWTAG NEWTAGDATA® NEXTPARAMETER¯NEXTTAG° SETBUFFER± TOSTARTBUFFER²WRITEDOCUMENTHEADER³å Organizes parsing and composing of XML data. Data can be treated as STRING or char array. Filebuffersize is default 4096 bytes and can be set via Gvl_Param_XmlControl Usage example: 1. Initiate VAR XML : FB_XMLControl; Buffer: STRING(GVL_Param_XmlControl.udiMaxFileSize); //or Buffer: ARRAY [0..GVL_Param_XmlControl.udiMaxFileSize] OF BYTE; END_VAR XML.pBuffer: = ADR (buffer); XML.LenBuffer: = SIZEOF (buffer); Add your own preferred fileheader like so: XML: <?xml version="1.0" encoding="UTF-8"?> XML.WriteDocumentHeader( '<?xml version="1.0" encoding="UTF-8"?>'); 2. Compose a tag with a parameters: XML: <MyTag ParaName = "11" /> XML.newTag(sTagName: = 'MyTag'); XML.newPara(sName: = 'ParaName', sPara: = sValue); XML.CloseTag(); 3. Add tag value: XML: <MyTag> MyText </ MyTag> XML.newTag(sName := 'MyTag'); XML.newTagData(sTagData :='MyText'); XML.CloseTag(); 4. Jump to the beginning of the XML data XML.toStartBuffer(); 5. Add a comment: XML: <!-- MyComment --> XML.newComment(sTagName: = 'MyComment'); 6. Returns the next tag from the current position in buffer XML.NextTag(); 7. Output the parameter of the tag XML.NextPara(sPara: = LastValue); Feedback: sPara returns the value found (string) ´ 4271593562µ FB_XmlControl¶Buffer·TagList¸sTags¹TagListSeekº sTagsSeek»Tag¼sTag½xTagOpen¾iSelect¿iSelectStartÀ iSelectEndÁiSelectStartParaÂiSelectEndParaÃiSelectTagCloseÄiSelectStartValueÅiSelectEndValueÆudiSearchPosÇ<ÈTAG_OPENÉ7Local, Constant, IsCompiled, RelativeInstance, TypifiedÊ>Ë TAG_CLOSEÌ/>Í END_TAG_CLOSEÎ ÏSPACEÐ=ÑEQUALSÒ"ÓQUOTEÔ\Õ BACK_SLASHÖ/× FORWARD_SLASHØ<!-- ÙOPEN_COMMENTÚ -->Û CLOSE_COMMENTÜ ÝTABÞ ßCR_LFà$4fdf30b6-5fe7-4452-ad0a-85e866e236d0ám Must be called after opening a new tag XML.NewParameter(Name: = 'ParaName', Value: = 'Value'); â 2634837430ãNewParameteräNameåValueæ FB_XMLCONTROLç$60c10606-ff09-4f9b-a3dd-0b54d0f565c7è$f48b7de2-5c07-4763-a8be-3d8ab3c1f58cé 2112014703êI Closes a Tag: XML: <MyTag />' Method: XML.CloseTag(); ë 1350786801ìCloseTagí$eedd2aac-2425-4325-8128-bfe1e984f3f7îP Creates a new Tag: XML: <MyTag> XML.NewTag(Name: = 'MyTag'); ï 3405068434ðNewTagñ$c44bdbda-725a-4943-a5cc-fa5ea9485541ò 2345788106ó 4091577810ôNextTagõ$d039b781-905d-4b69-b5aa-bb0323e598deö 311623939÷ NextParameterø Parameterù$4394d0a2-f7bc-4847-9625-00022c462a79úª Add your own preffered fileheader like: XML: <?xml version="1.0" encoding="UTF-8"?> XML.WriteDocumentHeader('<?xml version="1.0" encoding="UTF-8"?>'); û 1129208895üWriteDocumentHeaderýHeaderþ$14bf2549-9e7d-451f-8ab5-fe662eb30712ÿc Adds a comment; XML: <!-- MyComment --> XML.NewComment(Comment: = 'MyComment'); 1839979298 NewCommentComment$0f41fa45-b92e-4e7e-b2b3-ecb5d5918326 1660387904 $267105d4-b124-4c5c-a359-0434c4992afc 3578040079 3559116989 629852686 NewTagDataData$e4679d3f-10eb-47fd-936c-97e3aaaa3768 3231874346 SetBufferiSizeOf$cbfaa6d5-eab9-48d0-a339-a8bf334e344e1 Clears the contents of the entire buffer 1859166792ClearBuffer$651b4460-232e-47e8-95ba-ecea1541fbb9G Jump to the beginning of the XML data XML.ToStartBuffer(); 480465930 ToStartBuffer$cb065068-a6c8-48d5-8c1d-535a21365348 792755172OPENSAVEANDCLOSE[ This function block reports the results from the tests into a xUnit compatible XmlFile 3642690813FB_XmlFileFormatter* Default path for storing the output file /XmlControl/output.xml szFilename -Input, IsCompiled, RelativeInstance, Typified¡ Default file access mode ¢stFileAccessMode£xBufferInitialised¤File¥Xml¦Minus§ 2827134263¨FB_XMLFILEFORMATTER©$6597c0b3-0890-4d5d-8d3a-2d0d0b2355dbª«FB_Init is always available implicitly and it is used primarily for initialization. The return value is not evaluated. For a specific influence, you can also declare the methods explicitly and provide additional code there with the standard initialization code. You can evaluate the return value.« 1804193831¬FB_InitE TRUE: the retain variables are initialized (reset warm / reset cold)®P TRUE: the instance will be copied to the copy code afterward (online change) ¯$0f23c47b-7245-415e-b489-0ae429217263° 3458144404± 2964840619²OpenSaveAndClose³ msgFmtStr´$84256533-6eb5-465b-b1e5-db6f61e2e6c3µ 3558626984¶ò Responsible for formatting the xml file skeleton <testsuites> => the aggregated result OF all xunit testfiles <testsuite> => the output from a single TestSuite <properties> => the defined properties at test execution <property> => name/value pair for a single property ... </properties> <error></error> => optional information, in place of a test case - normally if the tests in the suite could not be found etc. <testcase> => the results from executing a test method <system-out> => data written to System.out during the test run <system-err> => data written to System.err during the test run <skipped/> => test was skipped <failure> => test failed <error> => test encountered an error </testcase> ... </testsuite> ... </testsuites>· 3622480263¸SuiteCounter¹TestSuiteInstancePathº TestSuiteName»!NumberOfFailedTestsInCurrentSuite¼NumberOfTestsInCurrentSuite½TestCounter¾TestCaseName¿AssertResultÀST_ASSERTRESULTÁST_AssertResultÂ$a5260c9c-7f2d-47c3-a7f2-dd0694d00aaaà 2740787250Ä*Compiled, OnlineChanged, Typified, LocatedÅABORTRUNNINGTESTSUITETESTSÆRUNTESTSUITETESTSÇ] This function block is responsible for holding track of the tests and executing them. È 1759843967ÉFB_CfUnitRunnerÊL Indication of whether all test suites have reported that they are finished ËAllTestSuitesFinishedÌ3 Prints the results to Log to display the results. ÍLogTestResultFormatterÎTestResultPrinterÏG These variables (statistics) are occupied once all tests are complete ÐUIntÑNumberOfTestSuitesFinishedÒ= Indication of that the printing of test results is complete ÓDonePrintingTestResultsÔw If this flag is set, it means that some external event triggered the request to abort running the test suites ÕAbortRunningTestSuitesÖ@ Aliazzz 15-12-2019 run once after all testsuites are finished ×XmlFileFormatterØxUnitFileComposerÙBusyGeneratingXmlÚDoneBusyGeneratingXmlÛ 2153546512ÜFB_CFUNITRUNNERÝ$857e16d6-a26c-468a-935e-aa7317c263b9Þ 2720072996ß 3559952655à` This function sets a flag which makes the runner stop running the tests in the test suites á 832790642âAbortRunningTestSuiteTestsã$3fcbd569-749a-493c-a697-2c976fa6e96aä 1821724164å 3670450116æ 3103747381çRunTestSuiteTestsèCounteréBusyPrintingê¦ We need to hold a temporary state of the statistics (failed, successful, total amount of test cases etc) as we don't consider the tests to be completely finished until all test suites have executed completely. The reason we want to do it this way is because a test suite can run over several cycles. Only once all tests are finished (which might take many cycles), do we gather correct statistics ëNumberOfTestSuitesFinished_TempìNumberOfTestCases_TempíNumberOfFailedTestCases_Tempî NumberOfSuccessfulTestCases_Tempï$d333e6c4-a1da-4b5b-91b3-4b4808e6c299ð 161063444ñ$fc07005b-6ac8-404d-b2cd-f68d25f42f8eò 2671643726ó$a429e267-db3b-4872-871e-1ca509b971e2ô 227646264õU_ExpectedOrActualöboolExpectedOrActual÷bitExpectedOrActualøbyteExpectedOrActualùdwordExpectedOrActualúlwordExpectedOrActualûstringExpectedOrActualüudintExpectedOrActualýuintExpectedOrActualþusintExpectedOrActualÿsintExpectedOrActual intExpectedOrActual wordExpectedOrActual dintExpectedOrActual lintExpectedOrActual ulintExpectedOrActual realExpectedOrActual lrealExpectedOrActual wstringExpectedOrActual timeExpectedOrActual ltimeExpectedOrActual dateExpectedOrActual dateandtimeExpectedOrActual timeofdayExpectedOrActual 25436326 U_EXPECTEDORACTUAL $539c30a7-a560-469c-8422-aaf8c09f45d9 9Structure, NonVirtual, Union, Compiled, Typified, Located 2825047456 Expected Actual Message TestInstancePath 1612349127 $63e20a3e-c451-4aff-a3c2-cc9b3a584290 external_name Task_Info Task information out of the task configuration Task configuration menbers which are used with |IecTaskCreate| are marked with [c], status members are marked with [s]. Note for SIL2: This information is already inside of the data area, so we don't need to tag it as safe anywhere. 61652668 Task_Info2 ! [c] Version of the structure (2) dwVersion [c] Name of the task, mandatory pszName¡ % [c] IEC priority of the task (0..31)¢ nPriority£ 9 [c] Kind of task. See corresponding category |TaskType|.¤ KindOfTask¥ $ [c] Is TRUE, if watchdog is enabled¦ bWatchdog§ C [c] Is TRUE, if profiling is enabled (not used, FALSE recommended)¨ bProfiling© E [c] Function pointer to the event check routine, see |IecTaskCreate|ª dwEventFunctionPointer« 7 [c] Name of the event, if it is an external event task¬ pszExternalEvent F [c] Function pointer to the task code, mandatory, see |IecTaskCreate|® dwTaskEntryFunctionPointer¯ [c] Watchdog sensitivity° dwWatchdogSensitivity± [c] Interval in microseconds² dwInterval³ " [c] Watchdog time in microseconds´ dwWatchdogTimeµ 5 [s] Cycle time in microseconds (last execution time)¶ dwCycleTime· ' [s] Average cycle time in microseconds¸ dwAverageCycleTime¹ ' [s] Maximum cycle time in microsecondsº dwMaxCycleTime» ' [s] Minumum cycle time in microseconds¼ dwMinCycleTime½ [s] Jitter in microseconds¾ iJitter¿ [s] Minimal jitterÀ iJitterMinÁ [s] Maximal jitter iJitterMaxà [s] Cycle counterÄ dwCycleCountÅ ( [s] Task state. See category TaskState.Æ iStateÇ 3 [s] Number jitter statistical distribution entriesÈ wNumOfJitterDistributionsÉ , [s] Statistical jitter distribution entriesÊ pJitterDistributionË JITTER_DISTRIBUTIONÌ Jitter_DistributionÍ [s] Timeslicing enabledÎ bTimeSlicingÏ byDummyÐ - [s] Cycle counter for execution of user codeÑ dwIECCycleCountÒ 2750948561Ó TASK_INFO2Ô $a1e9fbd6-93bf-46b3-bfe6-3b3118b8971aÕ cmpiectask, 3.5.14.0 (system)Ö ) reads the taskinfo from the current task× 380229896Ø GetCurTaskInfoÙ pCurTaskÚ CMPIECTASKÛ CmpIecTaskÜ pCurTaskInfoÝ CurTaskInfoÞ .Output, IsCompiled, RelativeInstance, Typifiedß 4105761433à GETCURTASKINFOá $21adb24c-373e-4435-8059-bba210563e99â 2413748294ã 1915908239ä 4214002233å 2906446323æ GETNAMEç ISFAILEDè ISFINISHEDé SETFAILEDê SETFINISHEDë SETNAMEì ? This function block holds all data that defines a test. í 929400243î FB_Testï TestNameð C Indication of whether this test has had at least one failed assertñ TestIsFailedò TestIsFinishedó 1117055996ô IsFinishedõ FB_TESTö $813a9067-b864-4739-9c14-830160e0eabc÷ $a51e9086-33ec-4162-acad-93a76961e893ø 2617315923ù 2860593324ú 4294720336û 2009680975ü 686902952ý SetNameþ $4c12f6eb-bbe4-4872-ac89-4411e2e81414ÿ 1394032034 SetFailed$b840b41b-4045-4fd9-b97d-0bf226c46fb3 340246040IsFailed$e42409e3-251f-4133-8b14-3630785983d6 486247262 2121735863GetName$94757f0e-9979-49d0-ad9f-e35c823175d4 2325423616SetFinished$e1245d1c-be22-4d60-bc91-fe0262827234Á Detects a rising edge of a boolean signal .. code-block:: codesys (* Example declaration *) RTRIGInst : R_TRIG ; (* Example in ST *) RTRIGInst(CLK := VarBOOL1); VarBOOL2 := RTRIGInst.Q; .. cds:ranges:: :CLK: [TRUE,FALSE] :~CLK_OLD: [TRUE,FALSE] :Q: [TRUE,FALSE] 754564685R_TRIG Boolean signal to be checkedCLK ``TRUE``: Rising edge detectedQM 3552750443$752f4be3-bcd1-4b9f-8c29-de66d869ade4 2057466445 2279655128 725723096 2849467804standard, 3.5.14.0 (system) 1583981908ST_AssertResultInstances* Amount of instances of the "AssertResult"DetectionCountD Amount of instance of the "AssertResult" in this specific PLC-cycle DetectionCountThisCycle¡93536004¢ST_ASSERTRESULTINSTANCES£$018c91ab-7038-42ef-b6e4-5007ea06204f¤ADDASSERTRESULT¥3COPYDETECTIONCOUNTANDRESETDETECTIONCOUNTINTHISCYCLE¦CREATEASSERTRESULTINSTANCE§GETDETECTIONCOUNT¨GETDETECTIONCOUNTTHISCYCLE©$INCREASEDETECTIONCOUNTTHISCYCLEBYONEªREPORTRESULT« This function block is responsible for keeping track of which asserts that have been made. The reason we need to keep track of these is because if the user does the same assert twice (because of running a test suite over several PLC-cycles) we want to know it so we don't print several times (if the assert fails). An instance of an assert is keyed/identified with the following parameters as key: - Value of expected - Value of actual - Message (string) - Test instance path (string) ¬ 2083454144FB_AssertResultStatic®> The total number of instances of each of the "AssertResults" ¯ AssertResults°GVL_PARAM_CFUNIT±GVL_Param_CfUnit²MaxNumberOfAsserts³$ The total number of unique asserts ´TotalAssertsµ. Function block to get the current task cycle ¶GetCurrentTaskIndex·AssertResultInstances¸ The last PLC cycle count ¹ CycleCountº Only run first cycle »FirstCycleExecuted¼ 1249903082½FB_ASSERTRESULTSTATIC¾$9683a633-879e-475e-a97f-0742f9ecfd04¿ 692841312À 1389387818Á 2372914603Â3CopyDetectionCountAndResetDetectionCountInThisCycleÃIteratorCounterÄ$a8cc95e0-191e-40c8-a6bc-8d58d9231bfaÅ hasanytypeÆ 324331413Ç$IncreaseDetectionCountThisCycleByOneÈuselocationÉExpected.pValueÊExpected__pValueË2Local, IsCompiled, RelativeStack, NoInit, TypifiedÌExpected.TypeClassÍExpected__typeClassÎExpected.diSizeÏExpected__sizeOfÐanytypeclassÑANYÒ Actual.pValueÓActual__pValueÔActual.TypeClassÕActual__typeClassÖ Actual.diSize×Actual__sizeOfØ$b4a5f59b-b092-46e9-a592-20ecca6c06c9Ù 1534235042Ú 1576367466Û 875312424ÜCreateAssertResultInstanceÝ$0e48fb23-038c-40ed-90ff-ee834be2653dÞ 4040583768ßGetDetectionCountThisCycleà$9f89a925-0785-44b9-83cb-36f87d5bc546á 1863076118âGetDetectionCountã$75f01348-487a-4441-a0e3-f41feb6c1781ä¸ This method is called in every assert and returns whether this particular assert has already been called. The reason one would like to know whether this assert has already been reported or not is to not report it several times to any logging service. Because a test-suite can consist of several tests, and certain tests can require the test to run over several cycles it means that certain asserts could be called several times and thus we need to keep track of which asserts we've already reported. The user of the framework should not need to care for any of this and he/she should be able to call the asserts in any way they FIND suitable. To know what assert this is we need to check for the total combination of: - Test message - Test instance path - Expected value - Actual value Theoretically we can have a situation where a test has three different asserts, each and one with the same test message/test instance path/actual value/expected value but called within the same or different cycles. In order for us to handle all situations we need a simple algorithm that works according to: - Keep track of how many instances the combination of test message/test instance path/expected value/actual value we have. So for example, if we have called Assert(Exp := 5, Act := 5, 'Hello there', 'PRG.InstanceTestSuite.Test') two times in one cycle, we have two instances of that combination. This is done according to: - Iterate all existing reports. - If we have a new PLC-cycle, set the current detection-count to zero. - If new report does not match in any of the above fields, create it (together with current PLC-cycle). Also store the information that we have one instance of this combination and +1 on the detection-count. - If new report matches in all of the above, +1 in the detection-count. If this detection-count is larger than the stored detection-count for this combination, create a new report and add +1 to the storage of the detection-count. å 2144796275æReportResultçAlreadyReportedè LocationIndexéDataTypesNotEqualsêDataSizeNotEqualsëDataContentNotEqualsìCurrentCycleCountíDetectionCountTempîFoundOneïAdditionalIdenticalAssertð$675e4dfe-54f1-4dc0-a6fd-481bc63973c5ñ 3239381763òAddAssertResultó$22afb213-95b2-4bfd-ada6-e7cf020d9c1dô 3525697315õST_AssertArrayResultö% Size in bytes of the expecteds-array÷ ExpectedsSizeø% The data type of the expecteds-arrayùExpectedsTypeClassú TYPECLASSû# Size in bytes of the actuals-arrayüActualsSizeý# The data type of the actuals-arrayþActualsTypeClassÿ 2307666740ST_ASSERTARRAYRESULT$a97be192-7eab-4934-bf94-f1c1e71902f6 1707683493ST_AssertArrayResultInstancesAssertArrayResult / Amount of instances of the "AssertArrayResult"I Amount of instance of the "AssertArrayResult" in this specific PLC-cycle 2861258322ST_ASSERTARRAYRESULTINSTANCES$32c33d09-e3c1-4756-8559-edad569b31f5ADDASSERTARRAYRESULT This function block is responsible for keeping track of which array-asserts that have been made. The reason we need to keep track of these is because if the user does the same assert twice (because of running a test suite over several PLC-cycles) we want to know it so we don't print several times (if the assert fails). An instance of an array-assert is keyed/identified with the following parameters as key: - Array-size (in bytes) of the expecteds - Datatype of the expecteds - Array-size (in bytes) of the actuals - Datatype of the actuals - Message (string) - Test instance path (string) 285741936FB_AssertArrayResultStaticC The total amount of instances of each of the "AssertArrayResults" AssertArrayResults$ The total amount of unique asserts TotalArrayAssertsAssertArrayResultInstances 3879263428FB_ASSERTARRAYRESULTSTATIC$b20832df-51fb-47f1-8077-6f683834a939 4126057407 2905686437 4129591207$a7fb8083-d80a-4b1b-8816-a954d21029f6 4220474593 2080793920 2799846253$f9a4ac71-1920-4a28-b414-2ab956ba44ba 2199397778$a67f455d-9f04-4265-a3ae-ec73cfedab30 1425005247¡$da11a180-ba29-4114-ba12-6fb4c00ea850¢¸ This method is called in every assert and returns whether this particular assert has already been called. The reason one would like to know whether this assert has already been reported or not is to not report it several times to any logging service. Because a test-suite can consist of several tests, and certain tests can require the test to run over several cycles it means that certain asserts could be called several times and thus we need to keep track of which asserts we've already reported. The user of the framework should not need to care for any of this and he/she should be able to call the asserts in any way they FIND suitable. To know what assert this is we need to check for the total combination of: - Test message - Test instance path - Expecteds size (in bytes) - Actuals size (in bytes) - Expecteds datatype - Actuals datatype Theoretically we can have a situation where a test has three different asserts, each and one with the same test message/test instance path/actuals size&datatype/expecteds size&datatype but called within the same or different cycles. In order for us to handle all situations we need a simple algorithm that works according to: - Keep track of how many instances the combination of test message/test instance path/expecteds size&datatype/ actuals size&datatype we have. So for example, if we have called Assert(Exp := [5,4,3], Act := [5,4,3], 'Hello there', 'PRG.InstanceTestSuite.Test') two times in one cycle, we have two instances of that combination. This is done according to: - Iterate all existing reports. - If we have a new PLC-cycle, set the current detection-count to zero. - If new report does not match in any of the above fields, create it (together with current PLC-cycle). Also store the information that we have one instance of this combination and +1 on the detection-count. - If new report matches in all of the above, +1 in the detection-count. If this detection-count is larger than the stored detection-count for this combination, create a new report and add +1 to the storage of the detection-count. £ 334711663¤$9acdaaa9-94c5-4747-8072-7b7279f5cd81¥ 2602585500¦$909102be-4739-47e1-abb5-2b1a0d9602c4§ 1114810495¨AddAssertArrayResult©$60d61a50-adb0-4323-b700-3d64bcdd7ef0ª __OffsetI_ASSERTMESSAGEFORMATTER«LOGASSERTFAILURE¬ 355528328I_AssertMessageFormatter® 4291550583¯LogAssertFailure°I_ASSERTMESSAGEFORMATTER±$35efab01-6ac8-46a5-a5e1-adb4f1f5f9b2²$71246e7e-3534-44b1-a788-c1f37427a096³¾ This function block is responsible for printing the results of the assertions using the built-in LOGSTR functionality provided in this library. This sends the result to the DeviceLog. ´ 856032233µFB_LogAssertMessageFormatter¶__INTERFACEPOINTER__631· 3082900915¸FB_LOGASSERTMESSAGEFORMATTER¹$54911d7d-b4a4-43a8-a981-a2fc14a13f71º 1702637047» 3821178837¼ 498102394½ 2988799914¾,AdjustAssertFailureMessageToMax252CharLength¿/FB_ADJUSTASSERTFAILUREMESSAGETOMAX252CHARLENGTHÀ/FB_AdjustAssertFailureMessageToMax252CharLengthÁTestInstancePathCleanedÂTestInstancePathFinalÃReturnValueÄTestInstancePathProcessedÅMessageProcessedÆ$48cbc6b0-5380-44b8-a045-57b6ad9f189dÇ 4086985287È 694510288ÉI_AssertMessageFormatter__UnionÊ 1092183428ËI_ASSERTMESSAGEFORMATTER__UNIONÌADDTESTÍADDTESTNAMETOINSTANCEPATHÎALLTESTSFINISHEDÏASSERTARRAY2DEQUALS_LREALÐASSERTARRAY2DEQUALS_REALÑASSERTARRAY3DEQUALS_LREALÒASSERTARRAY3DEQUALS_REALÓASSERTARRAYEQUALS_BOOLÔASSERTARRAYEQUALS_BYTEÕASSERTARRAYEQUALS_DINTÖASSERTARRAYEQUALS_DWORD×ASSERTARRAYEQUALS_INTØASSERTARRAYEQUALS_LINTÙASSERTARRAYEQUALS_LREALÚASSERTARRAYEQUALS_LWORDÛASSERTARRAYEQUALS_REALÜASSERTARRAYEQUALS_SINTÝASSERTARRAYEQUALS_UDINTÞASSERTARRAYEQUALS_UINTßASSERTARRAYEQUALS_ULINTàASSERTARRAYEQUALS_USINTáASSERTARRAYEQUALS_WORDâASSERTEQUALSãASSERTEQUALS_BOOLäASSERTEQUALS_BYTEåASSERTEQUALS_DATEæASSERTEQUALS_DATE_AND_TIMEçASSERTEQUALS_DINTèASSERTEQUALS_DWORDéASSERTEQUALS_INTêASSERTEQUALS_LINTëASSERTEQUALS_LREALìASSERTEQUALS_LTIMEíASSERTEQUALS_LWORDîASSERTEQUALS_REALïASSERTEQUALS_SINTðASSERTEQUALS_STRINGñASSERTEQUALS_TIMEòASSERTEQUALS_TIME_OF_DAYóASSERTEQUALS_UDINTôASSERTEQUALS_UINTõASSERTEQUALS_ULINTöASSERTEQUALS_USINT÷ASSERTEQUALS_WORDøASSERTFALSEù ASSERTTRUEúFINDTESTSUITEINSTANCEPATHûGETINSTANCEPATHüGETNUMBEROFFAILEDTESTSýGETNUMBEROFSUCCESSFULTESTSþGETNUMBEROFTESTSÿ SETTESTFAILEDSETTESTFINISHEDcall_after_init reflectionÁ This function block is responsible for holding the internal state of the test suite. Every test suite can have one or more tests, and every test can do one or more asserts. Itâs also responsible for providing all the assert-methods for asserting different data types. Only failed assertions are recorded. 1004086117 FB_TestSuite instance-pathnoinitInstancePath5Local, IsCompiled, RelativeInstance, NoInit, TypifiedÊ We need to have access to specific information of the current task that this test suite is executed in. This is for instance necessary when we need to know whether a test is defined already. The definition of a test that is defined already is that we call on it with the same name twice in the same cycle NumberOfTestsTests MaxNumberOfTestsForEachTestSuite Rising trigger of whether we have already notified the user of that the test name pointed to by the current position is a duplicate TestDuplicateNameTrigger Last cycle count index for a specific test. Used to detect whether this test has already been defined in the current test suite TestCycleCountIndex Prints the failed asserts to DeviceLog to display the assert message. This assert formatter can be replaced with something else than the DeviceLog LogAssertMessageFormatterAssertMessageFormatteræ | Asserts that two REALs are equal TO within a positive delta. IF they are NOT, an assertion error is created. Parameters: | Expected â REAL expected value | Actual â REAL actual value | Delta â The maximum delta between the absolute value of expected and actual for which both numbers are still considered equal | Message â The identifying message for the assertion error Positive example: .. code-block:: codesys VAR a : REAL := 1234.5; b : REAL := 1234.4; END_VAR TEST('Test_REAL_Equals'); AssertEquals_REAL(Expected := a, Actual := b, Delta := 0.1, Message := 'Values differ'); TEST_FINISHED(); Failing example: VAR a : REAL := 1234.5; b : REAL := 1234.4; END_VAR TEST('Test_REAL_Differ'); AssertEquals_REAL(Expected := a, Actual := b, Delta := 0.05, Message := 'Values differ'); TEST_FINISHED(); 3935931743AssertArrayEquals_REAL REAL array with expected valuesvariable_length_array Dimensions1 Expecteds REAL array with actual valuesActuals¤ The maximum delta between the value of expected and actual for which both numbers are still considered equal, proportional to the Expected value in that array cell Delta¡0 The identifying message for the assertion error¢Equals£ SizeEquals¤Index¥ExpectedString¦ActualString§SizeOfExpecteds¨ SizeOfActuals©ExpectedsIndexªActualsIndex«implicit_input¬Expecteds__Array__Info__ARRAY__DIM__INFO®Actuals__Array__Info¯FB_TESTSUITE°$c42ec40e-0859-4258-a3b2-11b258dab324±$f80c23f2-119d-406b-ae11-06d1991bf64d²ð | Asserts that two BOOLs are equal. If they are not, an assertion error is created. Parameters: | Expected â BOOL expected value | Actual â BOOL actual value | Message â The identifying message for the assertion error Positive example: .. code-block:: codesys VAR a : BOOL := TRUE; b : BOOL := TRUE; END_VAR TEST('Test_BOOL_Equals'); AssertEquals_BOOL(Expected := a, Actual := b, Message := 'Bools differ'); TEST_FINISHED(); Failing example: .. code-block:: codesys VAR a : BOOL := TRUE; b : BOOL := FALSE; END_VAR TEST('Test_BOOL_Differ'); AssertEquals_BOOL(Expected := a, Actual := b, Message := 'Bools differ'); TEST_FINISHED();³ 1285440394´AssertEquals_BOOLµ BOOL expected value¶ BOOL actual value·$0c41b405-ea35-4450-93cc-7c3349bdf754¸È | Asserts that two WORD arrays are equal. If they are not, an assertion error is created. Parameters: | Expecteds â WORD array with expected values | Actuals â WORD array with actual values | Message â The identifying message for the assertion error Positive example: .. code-block:: codesys VAR a : ARRAY[1..5] OF WORD := [16#AAAA, 16#BBBB, 16#CCCC, 16#DDDD, 16#EEEE]; b : ARRAY[1..5] OF WORD := [16#AAAA, 16#BBBB, 16#CCCC, 16#DDDD, 16#EEEE]; END_VAR TEST('Test_WORD_Array_Equals'); AssertArrayEquals_WORD(Expecteds := a, Actuals := b, Message := 'Arrays differ'); TEST_FINISHED(); Failing example 1: .. code-block:: codesys VAR a : ARRAY[1..5] OF WORD := [16#0000, 16#3333, 16#5555, 16#7777, 16#BBBB]; b : ARRAY[1..7] OF WORD := [16#0000, 16#3333, 16#5555, 16#7777, 16#BBBB, 16#FFFF, 16#1122]; END_VAR TEST('Test_WORD_Array_DifferInSize'); AssertArrayEquals_WORD(Expecteds := a, Actuals := b, Message := 'Arrays differ'); TEST_FINISHED(); Failing example 2: .. code-block:: codesys VAR a : ARRAY[1..7] OF WORD := [16#2323, 16#876A, 16#4CD4, 16#F3DC, 16#BBBB, 16#FFFF, 16#1133]; b : ARRAY[1..7] OF WORD := [16#2323, 16#876A, 16#4CD4, 16#F3DC, 16#BBBB, 16#FFFF, 16#1122]; END_VAR TEST('Test_WORD_Array_DifferInContent'); AssertArrayEquals_WORD(Expecteds := a, Actuals := b, Message := 'Arrays differ'); TEST_FINISHED();¹ 2226873030ºAssertArrayEquals_WORD» WORD array with expected values¼ WORD array with actual values½ExpectedDWordString¾ActualDWordString¿$16eada18-ce2b-459d-a8d9-277e84766935ÀÄ | Asserts that two STRINGs are equal. If they are not, an assertion error is created. Parameters: | Expected â STRING expected value | Actual â STRING actual value | Message â The identifying message for the assertion error Positive example: .. code-block:: codesys VAR a : STRING := 'Hello there'; b : STRING := 'Hello there'; END_VAR TEST('Test_STRING_Equals'); AssertEquals_STRING(Expected := a, Actual := b, Message := 'Values differ'); TEST_FINISHED(); Failing example: .. code-block:: codesys VAR a : STRING := 'This is a string'; b : STRING := 'This is another string'; END_VAR TEST('Test_STRING_Differ'); AssertEquals_STRING(Expected := a, Actual := b, Message := 'Values differ'); TEST_FINISHED(); Á 696659643ÂAssertEquals_STRINGà STRING expected valueÄ STRING actual valueÅ$cad7fed3-5db3-4371-9240-856c3c740489Æ | Asserts that two ULINTs are equal. If they are not, an assertion error is created. Parameters: | Expected â ULINT expected value | Actual â ULINT actual value | Message â The identifying message for the assertion error Positive example: .. code-block:: codesys VAR a : ULINT := 45683838383; b : ULINT := 45683838383; END_VAR TEST('Test_ULINT_Equals'); AssertEquals_ULINT(Expected := a, Actual := b, Message := 'Values differ'); TEST_FINISHED(); Failing example: .. code-block:: codesys VAR a : ULINT := 10000; b : ULINT := 53685437234; END_VAR TEST('Test_ULINT_Differ'); AssertEquals_ULINT(Expected := a, Actual := b, Message := 'Values differ'); TEST_FINISHED();Ç 1081954271ÈAssertEquals_ULINTÉ ULINT expected valueÊ ULINT actual valueË$6f1e7566-33c3-4f9c-b92d-7828feb26211ÌÑ | Asserts that two USINT arrays are equal. If they are not, an assertion error is created. Parameters: | Expecteds â USINT array with expected values | Actuals â USINT array with actual values | Message â The identifying message for the assertion error Positive example: .. code-block:: codesys VAR a : ARRAY[0..100] OF USINT := [42, 100(33)]; b : ARRAY[0..100] OF USINT := [42, 100(33)]; END_VAR TEST('Test_USINT_Array_Equals'); AssertArrayEquals_USINT(Expecteds := a, Actuals := b, Message := 'Arrays differ'); TEST_FINISHED(); Failing example 1: .. code-block:: codesys VAR a : ARRAY[0..100] OF USINT := [101(42)]; b : ARRAY[0..70] OF USINT := [71(42)]; END_VAR TEST('Test_USINT_Array_DifferInSize'); AssertArrayEquals_USINT(Expecteds := a, Actuals := b, Message := 'Arrays differ'); TEST_FINISHED(); Failing example 2: .. code-block:: codesys VAR a : ARRAY[0..10] OF USINT := [0,1,2,3,6(4),5]; b : ARRAY[0..10] OF USINT := [0,1,2,3,6(5),6]; END_VAR TEST('Test_USINT_Array_DifferInContent'); AssertArrayEquals_USINT(Expecteds := a, Actuals := b, Message := 'Arrays differ'); TEST_FINISHED();Í 887618224ÎAssertArrayEquals_USINTÏ! USINT array with expected valuesÐ USINT array with actual valuesÑ$b3215098-2f26-48bf-a7e4-ee1a0803a968Ò 3215331727ÓGetNumberOfSuccessfulTestsÔ$635213dc-96ca-4be6-9c0d-c0454c29d34dÕ | Asserts that two BYTE arrays are equal. If they are not, an assertion error is created. Parameters: | Expecteds â BYTE array with expected values | Actuals â BYTE array with actual values | Message â The identifying message for the assertion error Positive example: .. code-block:: codesys VAR a : ARRAY[1..3] OF BYTE := [16#FD, 16#34, 16#9E]; b : ARRAY[1..3] OF BYTE := [16#FD, 16#34, 16#9E]; END_VAR TEST('Test_BYTE_Array_Equals'); AssertArrayEquals_BYTE(Expecteds := a, Actuals := b, Message := 'Arrays differ'); TEST_FINISHED(); Failing example 1: .. code-block:: codesys VAR a : ARRAY[1..2] OF BYTE := [16#AB, 16#CD]; b : ARRAY[1..5] OF BYTE := [16#AB, 16#CD, 16#EF, 16#01, 16#23]; END_VAR TEST('Test_BYTE_Array_DiffersInSize'); AssertArrayEquals_BYTE(Expecteds := a, Actuals := b, Message := 'Arrays differ'); TEST_FINISHED(); Failing example 2: .. code-block:: codesys VAR a : ARRAY[0..3] OF BYTE := [16#AB, 16#AA, 16#BB, 16#89]; b : ARRAY[0..3] OF BYTE := [16#AB, 16#CD, 16#BB, 16#89]; END_VAR TEST('Test_BYTE_Array_DiffersInContent'); AssertArrayEquals_BYTE(Expecteds := a, Actuals := b, Message := 'Arrays differ'); TEST_FINISHED();Ö 843385749×AssertArrayEquals_BYTEØ BYTE array with expected valuesÙ BYTE array with actual valuesÚExpectedByteStringÛActualByteStringÜ$375a5287-a3e9-4833-ac17-bab8f3f0fdc9Ý 2859496217Þ SetTestFailedß$3adab5a4-e3e4-4dd7-8096-bf6ad3b874d9àý | Asserts that two WORDs are equal. If they are not, an assertion error is created. Parameters: | Expected â WORD expected value | Actual â WORD actual value | Message â The identifying message for the assertion error Positive example: .. code-block:: codesys VAR a : WORD := 16#ABCD; b : WORD := 16#ABCD; END_VAR TEST('Test_WORD_Equals'); AssertEquals_WORD(Expected := a, Actual := b, Message := 'Values differ'); TEST_FINISHED(); Failing example: .. code-block:: codesys VAR a : WORD := 16#EF01; b : WORD := 16#2345; END_VAR TEST('Test_WORD_Differ'); AssertEquals_WORD(Expected := a, Actual := b, Message := 'Values differ'); TEST_FINISHED();á 1389270635âAssertEquals_WORDã WORD expected valueä WORD actual valueå$85132cdb-0553-4070-be9a-976fcddd873dæÞ | Asserts that two ULINT arrays are equal. If they are not, an assertion error is created. Parameters: | Expecteds â ULINT array with expected values | Actuals â ULINT array with actual values | Message â The identifying message for the assertion error Positive example: .. code-block:: codesys VAR a : ARRAY[0..3] OF ULINT := [0, 18_446_744_073_709_551_615, 9_400_000_000_000, 3_213_000_444_000]; b : ARRAY[0..3] OF ULINT := [0, 18_446_744_073_709_551_615, 9_400_000_000_000, 3_213_000_444_000]; END_VAR TEST('Test_ULINT_Array_Equals'); AssertArrayEquals_ULINT(Expecteds := a, Actuals := b, Message := 'Arrays differ'); TEST_FINISHED(); Failing example 1: .. code-block:: codesys VAR a : ARRAY[0..1] OF ULINT := [0, 9_400_000_000_000]; b : ARRAY[0..0] OF ULINT := [0]; END_VAR TEST('Test_ULINT_Array_DifferInSize'); AssertArrayEquals_ULINT(Expecteds := a, Actuals := b, Message := 'Arrays differ'); Failing example 2: .. code-block:: codesys VAR a : ARRAY[0..1] OF ULINT := [3_213_000_444_000, 9_400_000_000_000]; b : ARRAY[0..1] OF ULINT := [3_213_000_444_000, 18_446_744_073_709_551_615]; END_VAR TEST('Test_ULINT_Array_DifferInContent'); AssertArrayEquals_ULINT(Expecteds := a, Actuals := b, Message := 'Arrays differ'); TEST_FINISHED();ç 3439473642èAssertArrayEquals_ULINTé! ULINT array with expected valuesê ULINT array with actual valuesë$916529a0-57b3-4947-a5b8-e7b9ff17f35fì 405680698í | Asserts that two LINTs are equal. If they are not, an assertion error is created. Parameters: | Expected â LINT expected value | Actual â LINT actual value | Message â The identifying message for the assertion error Positive example: .. code-block:: codesys VAR a : LINT := -123456789; b : LINT := -123456789; END_VAR TEST('Test_LINT_Equals'); AssertEquals_LINT(Expected := a, Actual := b, Message := 'Values differ'); TEST_FINISHED(); Failing example: .. code-block:: codesys VAR a : LINT := -451416345; b : LINT := 589532453; END_VAR TEST('Test_LINT_Differ'); AssertEquals_LINT(Expected := a, Actual := b, Message := 'Values differ'); TEST_FINISHED();î9335976ïAssertEquals_LINTð LINT expected valueñ LINT actual valueò$9dc34017-cbc7-41a9-83a2-941f39cc7271ó | Asserts that two objects (of any type) are equal. If they are not, an assertion error is created. | For REAL and LREAL itâs recommended to use the AssertEquals_REAL or AssertEquals_LREAL respectively | as these give the possibility to specify a delta between the expected and actual value. Parameters: | Expected â Expected value | Actual â Actual value | Message â The identifying message for the assertion error Positive example: .. code-block:: codesys VAR a : INT := 5; b : INT := 5; END_VAR TEST('Test_ANY_Equals'); AssertEquals(Expected := a, Actual := b, Message := 'Values differ'); TEST_FINISHED(); Failing example: .. code-block:: codesys VAR a : INT := 5; b : UINT := 5; END_VAR TEST('Test_ANY_Differ_DataType'); AssertEquals(Expected := a, Actual := b, Message := 'Values differ'); TEST_FINISHED();ô 2024349150õAssertEqualsö Expected value÷$ The value to check against expectedøCountùExpectedDataStringúActualDataStringû AnyComparatorüFB_ANYCOMPARATORýFB_AnyComparatorþboolExpectedÿ boolActualbyteExpected byteActualdateExpected dateActualdateAndTimeExpected dateAndTimeActualdintExpected dintActual dwordExpecteddwordActualintExpected intActuallintExpected lintActual lrealExpectedlrealActual ltimeExpectedltimeActual lwordExpectedlwordActualrealExpected realActualsintExpected sintActualstringExpectedstringActualtimeExpected timeActualtimeOfDayExpectedtimeOfDayActual udintExpectedudintActual uintExpected¡ uintActual¢ ulintExpected£ulintActual¤ usintExpected¥usintActual¦wordExpected§ wordActual¨$092092ee-35b6-45cc-a1ac-e428e5d747ba©ª | Asserts that two TIME_OF_DAYs are equal. If they are not, an assertion error is created. Parameters: | Expected â TIME_OF_DAY expected value | Actual â TIME_OF_DAY actual value | Message â The identifying message for the assertion error Positive example: .. code-block:: codesys VAR a : TIME_OF_DAY := TIME_OF_DAY#06:21:11.492; b : TIME_OF_DAY := TIME_OF_DAY#06:21:11.492; END_VAR TEST('Test_TIME_OF_DAY_Equals'); AssertEquals_TIME_OF_DAY(Expected := a, Actual := b, Message := 'Values differ'); TEST_FINISHED(); Failing example: .. code-block:: codesys VAR a : TIME_OF_DAY := TIME_OF_DAY#15:36:30.123; b : TIME_OF_DAY := TIME_OF_DAY#06:21:11.492; END_VAR TEST('Test_TIME_OF_DAY_Differ'); AssertEquals_TIME_OF_DAY(Expected := a, Actual := b, Message := 'Values differ'); TEST_FINISHED();ª 262122215«AssertEquals_TIME_OF_DAY¬ TIME_OF_DAY expected value TIME_OF_DAY actual value®$d892dd01-3d32-4eb1-9f95-980dff16616c¯ô | Asserts that two USINTs are equal. If they are not, an assertion error is created. Parameters: | Expected â USINT expected value | Actual â USINT actual value | Message â The identifying message for the assertion error Positive example: .. code-block:: codesys VAR a : USINT := 5; b : USINT := 5; END_VAR TEST('Test_USINT_Equals'); AssertEquals_USINT(Expected := a, Actual := b, Message := 'Values differ'); TEST_FINISHED(); Failing example: .. code-block:: codesys VAR a : USINT := 3; b : USINT := 7; END_VAR TEST('Test_USINT_Differ'); AssertEquals_USINT(Expected := a, Actual := b, Message := 'Values differ'); TEST_FINISHED();° 2368473972±AssertEquals_USINT² USINT expected value³ USINT actual value´$7f12117a-f0ab-475b-ba47-c8a5c801a9acµ² | Asserts that two DINT arrays are equal. If they are not, an assertion error is created. Parameters: | Expecteds â DINT array with expected values | Actuals â DINT array with actual values | Message â The identifying message for the assertion error Positive example: .. code-block:: codesys VAR a : ARRAY[2..7] OF DINT := [64, 98, 2147483647, -2147483648, 0, -63987538]; b : ARRAY[2..7] OF DINT := [64, 98, 2147483647, -2147483648, 0, -63987538]; END_VAR TEST('Test_DINT_Array_Equals'); AssertArrayEquals_DINT(Expecteds := a, Actuals := b, Message := 'Arrays differ'); TEST_FINISHED(); Failing example 1: .. code-block:: codesys VAR a : ARRAY[3..4] OF DINT := [-11, 2147483647]; b : ARRAY[4..6] OF DINT := [-11, 2147483647, 0]; END_VAR TEST('Test_DINT_Array_DifferInSize'); AssertArrayEquals_DINT(Expecteds := a, Actuals := b, Message := 'Arrays differ'); TEST_FINISHED(); Failing example 2: .. code-block:: codesys VAR a : ARRAY[3..5] OF DINT := [-4746, -2147483645, 0]; b : ARRAY[3..5] OF DINT := [-4746, -2147483641, 0]; END_VAR TEST('Test_DINT_Array_DifferInContent'); AssertArrayEquals_DINT(Expecteds := a, Actuals := b, Message := 'Arrays differ'); TEST_FINISHED();¶ 448306293·AssertArrayEquals_DINT¸ DINT array with expected values¹ DINT array with actual valuesº$4f0d9b20-0c78-467d-a52a-6badbd5d37cc»ï | Asserts that two SINTs are equal. If they are not, an assertion error is created. Parameters: | Expected â SINT expected value | Actual â SINT actual value | Message â The identifying message for the assertion error Positive example: .. code-block:: codesys VAR a : SINT := -128; b : SINT := -128; END_VAR TEST('Test_SINT_Equals'); AssertEquals_SINT(Expected := a, Actual := b, Message := 'Values differ'); TEST_FINISHED(); Failing example: .. code-block:: codesys VAR a : SINT := 127; b : SINT := -30; END_VAR TEST('Test_SINT_Differ'); AssertEquals_SINT(Expected := a, Actual := b, Message := 'Values differ'); TEST_FINISHED();¼ 2975568326½AssertEquals_SINT¾ SINT expected value¿ SINT actual valueÀ$10052dfe-cfcb-4a5a-aa97-151e272ce217Á 3094313462ÂGetNumberOfTestsÃ$6f67c6d5-c29e-4577-8651-51bd6db3ab63Ä | Asserts that two LREALs are equal to within a positive delta. If they are not, an assertion error is created. Parameters: | Expected â LREAL expected value | Actual â LREAL actual value | Delta â The maximum delta between the absolute value of expected and actual for which both numbers are still considered equal | Message â The identifying message for the assertion error Positive example: .. code-block:: codesys VAR a : LREAL := 1234567.89; b : LREAL := 1234567.76; END_VAR TEST('Test_LREAL_Equals'); AssertEquals_LREAL(Expected := a, Actual := b, Delta := 0.2, Message := 'Values differ'); TEST_FINISHED(); Failing example: .. code-block:: codesys VAR a : LREAL := 1234567.89; b : LREAL := 1234567.76; END_VAR TEST('Test_LREAL_Differ'); AssertEquals_LREAL(Expected := a, Actual := b, Delta := 0.1, Message := 'Values differ'); TEST_FINISHED(); Å 3690545254ÆAssertEquals_LREALÇ LREAL expected valueÈ LREAL actual valueÉv The maximum delta between the absolute value of expected and actual for which both numbers are still considered equalÊ$205d107c-0a2d-44f7-b68a-eb06720b6a6bËÍ Parameters: | Expecteds â REAL 2d array with expected values | Actuals â REAL 2d array with actual values | Delta - REAL The maximum delta between the value of expected and actual for which both numbers are still considered equal, proportional to the Expected value in that array cell | Message â The identifying message for the assertion error Positive example: .. code-block:: codesys <insert positive testexample here> TEST_FINISHED(); Failing example 1: .. code-block:: codesys <insert failing testexample1 here> TEST_FINISHED(); Failing example 2: .. code-block:: codesys <insert failing testexample2 here> TEST_FINISHED();Ì 4044968825ÍAssertArray2dEquals_REALÎ# REAL 2d array with expected valuesÏ2Ð! REAL 2d array with actual valuesÑ& Index when looping through DimensionsÒDimensionIndexÓ2 Lower bounds of Expecteds array in each dimensionÔLowerBoundExpectedsÕ2 Upper bounds of Expecteds array in each dimensionÖUpperBoundExpecteds×0 Lower bounds of Actuals array in each dimensionØLowerBoundActualsÙ0 Upper bounds of Actuals array in each dimensionÚUpperBoundActualsÛ* Size of Expecteds array in each dimensionÜ( Size of Actuals array in each dimensionÝ? Current Array index offsets from Lower Bound in each dimensionÞOffsetßD Array of current Expected array indexes when looping through arraysàExpectedArrayIndexáB Array of current Actual array indexes when looping through arraysâActualArrayIndexã Single expected valueä Single actual valueå$dc3b5666-7b5a-49ae-9837-cbb9bedd911aæ 598611264çAddTestNameToInstancePathèCompleteTestInstancePathé$abecfe2f-b0e2-4118-a1c6-bb248556b776ê= Searches for the instance path of the calling function blockë 1936542576ìFindTestSuiteInstancePathí$e69a4510-81a2-4d65-94e4-52c06ac49944îÐ Parameters: | Expecteds â LREAL 3d array with expected values | Actuals â LREAL 3d array with actual values | Delta - LREAL The maximum delta between the value of expected and actual for which both numbers are still considered equal, proportional to the Expected value in that array cell | Message â The identifying message for the assertion error Positive example: .. code-block:: codesys <insert positive testexample here> TEST_FINISHED(); Failing example 1: .. code-block:: codesys <insert failing testexample1 here> TEST_FINISHED(); Failing example 2: .. code-block:: codesys <insert failing testexample2 here> TEST_FINISHED();ï 3893451479ðAssertArray3dEquals_LREALñ$ LREAL 3d array with expected valuesò3ó" LREAL 3d array with actual valuesô$251da4d5-4df8-4eed-b154-a479323eb0d5õé | Asserts that two INTs are equal. If they are not, an assertion error is created. Parameters: | Expected â INT expected value | Actual â INT actual value | Message â The identifying message for the assertion error Positive example: .. code-block:: codesys VAR a : INT := -12345; b : INT := -12345; END_VAR TEST('Test_INT_Equals'); AssertEquals_INT(Expected := a, Actual := b, Message := 'Values differ'); TEST_FINISHED(); Failing example: .. code-block:: codesys VAR a : INT := -32000; b : INT := 15423; END_VAR TEST('Test_INT_Differ'); AssertEquals_INT(Expected := a, Actual := b, Message := 'Values differ'); TEST_FINISHED();ö 292426684÷AssertEquals_INTø INT expected valueù INT actual valueú$7c61106e-9bcd-4577-a949-ab96d8862e41û¤ | Asserts that two DATEs are equal. If they are not, an assertion error is created. Parameters: | Expected â DATE expected value | Actual â DATE actual value | Message â The identifying message for the assertion error Positive example: .. code-block:: codesys VAR a : DATE := DATE#1996-05-06; b : DATE := DATE#1996-05-06; END_VAR TEST('Test_DATE_Equals'); AssertEquals_DATE(Expected := a, Actual := b, Message := 'Values differ'); TEST_FINISHED(); Failing example: .. code-block:: codesys VAR a : DATE := DATE#1996-05-06; b : DATE := DATE#2019-01-20; END_VAR TEST('Test_DATE_Differ'); AssertEquals_DATE(Expected := a, Actual := b, Message := 'Values differ'); TEST_FINISHED(); ü 246969074ýAssertEquals_DATEþ DATE expected valueÿ DATE actual value$1645ab79-f969-41aa-a170-f589a5757e7f | Asserts that two DWORDs are equal. If they are not, an assertion error is created. Parameters: | Expected â DWORD expected value | Actual â DWORD actual value | Message â The identifying message for the assertion error Positive example: .. code-block:: codesys VAR a : DWORD := 16#7890ABCD; b : DWORD := 16#7890ABCD; END_VAR TEST('Test_DWORD_Equals'); AssertEquals_DWORD(Expected := a, Actual := b, Message := 'Values differ'); TEST_FINISHED(); Failing example: .. code-block:: codesys VAR a : DWORD := 16#12345678; b : DWORD := 16#90ABCDEF; END_VAR TEST('Test_DWORD_Differ'); AssertEquals_DWORD(Expected := a, Actual := b, Message := 'Values differ'); TEST_FINISHED(); 1252105877AssertEquals_DWORD DWORD expected value DWORD actual value$3ce6ba77-0ab2-46fc-a7c9-978b376b93beé | Asserts that two REALs are equal to within a positive delta. If they are not, an assertion error is created. Parameters: | Expected â REAL expected value | Actual â REAL actual value | Delta â The maximum delta between the absolute value of expected and actual for which both numbers are still considered equal | Message â The identifying message for the assertion error Positive example: .. code-block:: codesys VAR a : REAL := 1234.5; b : REAL := 1234.4; END_VAR TEST('Test_REAL_Equals'); AssertEquals_REAL(Expected := a, Actual := b, Delta := 0.1, Message := 'Values differ'); TEST_FINISHED(); Failing example: .. code-block:: codesys VAR a : REAL := 1234.5; b : REAL := 1234.4; END_VAR TEST('Test_REAL_Differ'); AssertEquals_REAL(Expected := a, Actual := b, Delta := 0.05, Message := 'Values differ'); TEST_FINISHED(); 4233966449AssertEquals_REAL REAL expected value REAL actual value$fba4feaf-27d0-4f8b-9014-3895f7bb9cc7 | Asserts that two UDINTs are equal. If they are not, an assertion error is created. Parameters: | Expected â UDINT expected value | Actual â UDINT actual value | Message â The identifying message for the assertion error Positive example: .. code-block:: codesys VAR a : UDINT := 21845123; b : UDINT := 21845123; END_VAR TEST('Test_UDINT_Equals'); AssertEquals_UDINT(Expected := a, Actual := b, Message := 'Values differ'); TEST_FINISHED(); Failing example: .. code-block:: codesys VAR a : UDINT := 34124214; b : UDINT := 52343244; END_VAR TEST('Test_UDINT_Differ'); AssertEquals_UDINT(Expected := a, Actual := b, Message := 'Values differ'); TEST_FINISHED(); 3714610654AssertEquals_UDINT UDINT expected value UDINT actual value$9c21e8db-62d7-4e5c-8e00-cd508f4f5abcþ | Asserts that two LTIMEs are equal. If they are not, an assertion error is created. Parameters: | Expected â LTIME expected value | Actual â LTIME actual value | Message â The identifying message for the assertion error Positive example: .. code-block:: codesys VAR a : LTIME := LTIME#213503D23H34M33S709MS551US615NS; b : LTIME := LTIME#213503D23H34M33S709MS551US615NS; END_VAR TEST('Test_LTIME_Equals'); AssertEquals_LTIME(Expected := a, Actual := b, Message := 'Values differ'); TEST_FINISHED(); Failing example: .. code-block:: codesys VAR a : LTIME := LTIME#213503D23H34M33S709MS551US615NS; b : LTIME := LTIME#1000D15H23M12S34MS2US44NS; END_VAR TEST('Test_LTIME_Differ'); AssertEquals_LTIME(Expected := a, Actual := b, Message := 'Values differ'); TEST_FINISHED(); 3081469954AssertEquals_LTIME LTIME expected value LTIME actual value$05ea6378-c553-40a9-9e6b-8f3736f63098· | Asserts that two SINT arrays are equal. If they are not, an assertion error is created. Parameters: | Expecteds â SINT array with expected values | Actuals â SINT array with actual values | Message â The identifying message for the assertion error Positive example: .. code-block:: codesys VAR a : ARRAY[0..3] OF SINT := [-128, 127, -34, 62]; b : ARRAY[0..3] OF SINT := [-128, 127, -34, 62]; END_VAR TEST('Test_SINT_Array_Equals'); AssertArrayEquals_SINT(Expecteds := a, Actuals := b, Message := 'Arrays differ'); TEST_FINISHED(); Failing example 1: .. code-block:: codesys VAR a : ARRAY[0..0] OF SINT := [-128]; b : ARRAY[0..1] OF SINT := [-128, 127]; END_VAR TEST('Test_SINT_Array_DifferInSize'); AssertArrayEquals_SINT(Expecteds := a, Actuals := b, Message := 'Arrays differ'); TEST_FINISHED(); Failing example 2: .. code-block:: codesys VAR a : ARRAY[0..0] OF SINT := [-128]; b : ARRAY[0..0] OF SINT := [127]; END_VAR TEST('Test_SINT_Array_DifferInContent'); AssertArrayEquals_SINT(Expecteds := a, Actuals := b, Message := 'Arrays differ'); TEST_FINISHED(); 167706794AssertArrayEquals_SINT SINT array with expected values SINT array with actual values$133c577e-0641-4157-b42b-46dbf29f788e | Asserts that two TIMEs are equal. If they are not, an assertion error is created. Parameters: | Expected â TIME expected value | Actual â TIME actual value | Message â The identifying message for the assertion error Positive example: .. code-block:: codesys VAR a : TIME := T#11H34M13S244MS; b : TIME := T#11H34M13S244MS; END_VAR TEST('Test_TIME_Equals'); AssertEquals_TIME(Expected := a, Actual := b, Message := 'Values differ'); TEST_FINISHED(); Failing example: .. code-block:: codesys VAR a : TIME := T#12H34M15S10MS; b : TIME := T#11H34M13S244MS; END_VAR TEST('Test_TIME_Differ'); AssertEquals_TIME(Expected := a, Actual := b, Message := 'Values differ'); TEST_FINISHED(); 3910873930¡AssertEquals_TIME¢ TIME expected value£ TIME actual value¤$717a0cdd-16a7-4f45-90f3-f5700dba9369¥ì | Asserts that two DATE_AND_TIMEs are equal. If they are not, an assertion error is created. Parameters: | Expected â DATE_AND_TIME expected value | Actual â DATE_AND_TIME actual value | Message â The identifying message for the assertion error Positive example: .. code-block:: codesys VAR a : DATE_AND_TIME := DATE_AND_TIME#2019-01-20-13:54:30; b : DATE_AND_TIME := DATE_AND_TIME#2019-01-20-13:54:30; END_VAR TEST('Test_DATE_AND_TIME_Equals'); AssertEquals_DATE_AND_TIME(Expected := a, Actual := b, Message := 'Values differ'); TEST_FINISHED(); Failing example: .. code-block:: codesys VAR a : DATE_AND_TIME := DATE_AND_TIME#1996-05-06-15:36:30; b : DATE_AND_TIME := DATE_AND_TIME#1972-03-29-00:00:00; END_VAR TEST('Test_DATE_AND_TIME_Differ'); AssertEquals_DATE_AND_TIME(Expected := a, Actual := b, Message := 'Values differ'); TEST_FINISHED();¦ 1401989022§AssertEquals_DATE_AND_TIME¨ DATE_AND_TIME expected value© DATE_AND_TIME actual valueª$42befc01-2199-49e2-b7ef-cf909b8890f9«Í Parameters: | Expecteds â REAL 3d array with expected values | Actuals â REAL 3d array with actual values | Delta - REAL The maximum delta between the value of expected and actual for which both numbers are still considered equal, proportional to the Expected value in that array cell | Message â The identifying message for the assertion error Positive example: .. code-block:: codesys <insert positive testexample here> TEST_FINISHED(); Failing example 1: .. code-block:: codesys <insert failing testexample1 here> TEST_FINISHED(); Failing example 2: .. code-block:: codesys <insert failing testexample2 here> TEST_FINISHED();¬ 1606741492AssertArray3dEquals_REAL®# REAL 3d array with expected values¯! REAL 3d array with actual values°$0dc8fccf-4b9a-4206-8d9f-212f576edb04± 4262076380²FB_init³H if TRUE, the retain variables are initialized (warm start / cold start)´O if TRUE, the instance afterwards gets moved into the copy code (online change)µ$9273f5af-0583-448b-bab6-3359f03f9b91¶ | Asserts that two DINTs are equal. If they are not, an assertion error is created. Parameters: | Expected â BYTE expected value | Actual â BYTE actual value | Message â The identifying message for the assertion error Positive example: .. code-block:: codesys VAR a : DINT := -80000; b : DINT := -80000; END_VAR TEST('Test_DINT_Equals'); AssertEquals_DINT(Expected := a, Actual := b, Message := 'Values differ'); TEST_FINISHED(); Failing example: .. code-block:: codesys VAR a : DINT := -55555; b : DINT := 70000; END_VAR TEST('Test_DINT_Differ'); AssertEquals_DINT(Expected := a, Actual := b, Message := 'Values differ'); TEST_FINISHED(); · 1997820164¸AssertEquals_DINT¹ DINT expected valueº DINT actual value»$b7177b75-64df-4021-85c6-c366f61f5f89¼ä | Asserts that two UDINT arrays are equal. If they are not, an assertion error is created. Parameters: | Expecteds â UDINT array with expected values | Actuals â UDINT array with actual values | Message â The identifying message for the assertion error Positive example: .. code-block:: codesys VAR a : ARRAY[1..3] OF UDINT := [0, 4294967295, 5000]; b : ARRAY[1..3] OF UDINT := [0, 4294967295, 5000]; END_VAR TEST('Test_UDINT_Array_Equals'); AssertArrayEquals_UDINT(Expecteds := a, Actuals := b, Message := 'Arrays differ'); TEST_FINISHED(); Failing example 1: .. code-block:: codesys a : ARRAY[-5..-4] OF UDINT := [4294967295, 0]; b : ARRAY[0..2] OF UDINT := [4294967295, 0, 5000]; END_VAR TEST('Test_UDINT_Array_DifferInSize'); AssertArrayEquals_UDINT(Expecteds := a, Actuals := b, Message := 'Arrays differ'); TEST_FINISHED(); Failing example 2: .. code-block:: codesys VAR a : ARRAY[-5..-4] OF UDINT := [4294967295, 5]; b : ARRAY[0..1] OF UDINT := [4294967295, 4]; END_VAR TEST('Test_UDINT_Array_DifferInContent'); AssertArrayEquals_UDINT(Expecteds := a, Actuals := b, Message := 'Arrays differ'); TEST_FINISHED();½ 523934130¾AssertArrayEquals_UDINT¿! UDINT array with expected valuesÀ UDINT array with actual valuesÁ$5f690331-57e2-4ea1-b1d7-ab65b52dc848 | Asserts that two INT arrays are equal. If they are not, an assertion error is created. Parameters: | Expecteds â INT array with expected values | Actuals â INT array with actual values | Message â The identifying message for the assertion error Positive example: .. code-block:: codesys VAR a : ARRAY[-5..1] OF INT := [64, 98, -32768, 32767, 5478, -378, 42]; b : ARRAY[1..7] OF INT := [64, 98, -32768, 32767, 5478, -378, 42]; END_VAR TEST('Test_INT_Array_Equals'); AssertArrayEquals_INT(Expecteds := a, Actuals := b, Message := 'Arrays differ'); TEST_FINISHED(); Failing example 1: .. code-block:: codesys VAR a : ARRAY[-4..3] OF INT := [64, 98, -32768, 32767, 5478, -378, 42, 6234]; b : ARRAY[1..5] OF INT := [64, 98, -32768, 32767, 5478]; END_VAR TEST('Test_INT_Array_DifferInSize'); AssertArrayEquals_INT(Expecteds := a, Actuals := b, Message := 'Arrays differ'); TEST_FINISHED(); Failing example 2: .. code-block:: codesys VAR a : ARRAY[-8..-6] OF INT := [42, -23, -32768]; b : ARRAY[1..3] OF INT := [42, 24, -32768]; END_VAR TEST('Test_INT_Array_DifferInContent'); AssertArrayEquals_INT(Expecteds := a, Actuals := b, Message := 'Arrays differ'); TEST_FINISHED();à 528458294ÄAssertArrayEquals_INTÅ INT array with expected valuesÆ INT array with actual valuesÇ$d54cf111-a7e7-4f51-bdf4-9853e055f62dÈ | Asserts that a condition is false. If it is not, an assertion error is created. Parameters: | Condition â Condition to be checked | Message â The identifying message for the assertion error Positive example: .. code-block:: codesys VAR a : INT := -33; b : INT := -44; END_VAR TEST('AssertThatINTsAreNotEqual'); AssertFalse(Condition := (a = b), Message := 'INTs are equal'); TEST_FINISHED(); Failing example: .. code-block:: codesys VAR a : INT := -33; b : INT := -44; END_VAR TEST('AssertThatINTsAreEqual'); AssertFalse(Condition := (a <> b), Message := 'INTs are equal'); TEST_FINISHED(); É 1993015657ÊAssertFalseË Condition to be checkedÌ ConditionÍ$022665a8-9003-4aaa-8ef4-bd39fe196883Î 614213211ÏGetNumberOfFailedTestsÐFailedTestsCountÑ$12e4522b-e67f-439a-af1d-8713231888aaÒÈ | Asserts that two LINT arrays are equal. If they are not, an assertion error is created. Parameters: | Expecteds â LINT array with expected values | Actuals â LINT array with actual values | Message â The identifying message for the assertion error Positive example: .. code-block:: codesys VAR a : ARRAY[-1..0] OF LINT := [9_223_372_036_854_775_807, -9_223_372_036_854_775_808]; b : ARRAY[4..5] OF LINT := [9_223_372_036_854_775_807, -9_223_372_036_854_775_808]; END_VAR TEST('Test_LINT_Array_Equals'); AssertArrayEquals_LINT(Expecteds := a, Actuals := b, Message := 'Arrays differ'); TEST_FINISHED(); Failing example 1: .. code-block:: codesys VAR a : ARRAY[-1..1] OF LINT := [9_223_372_036_854_775_807, -9_223_372_036_854_775_808, 55]; b : ARRAY[4..5] OF LINT := [9_223_372_036_854_775_807, -9_223_372_036_854_775_808]; END_VAR TEST('Test_LINT_Array_DifferInSize'); AssertArrayEquals_LINT(Expecteds := a, Actuals := b, Message := 'Arrays differ'); TEST_FINISHED(); Failing example 2: .. code-block:: codesys VAR a : ARRAY[-1..1] OF LINT := [9_223_372_036_854_775_807, -9_223_372_036_853_775_808, 55]; b : ARRAY[4..6] OF LINT := [9_223_372_036_854_775_807, -9_223_372_036_854_775_808, 55]; END_VAR TEST('Test_LINT_Array_DifferInContent'); AssertArrayEquals_LINT(Expecteds := a, Actuals := b, Message := 'Arrays differ'); TEST_FINISHED();Ó 2145025305ÔAssertArrayEquals_LINTÕ LINT array with expected valuesÖ LINT array with actual values×$d7e53e6b-caed-4867-9ef5-3ccb7ae16bf8Øí | Asserts that two LWORD arrays are equal. If they are not, an assertion error is created. Parameters: | Expecteds â LWORD array with expected values | Actuals â LWORD array with actual values | Message â The identifying message for the assertion error Positive example: .. code-block:: codesys VAR a : ARRAY[1..2] OF LWORD := [16#01234567890ABCDE, 16#EDCBA09876543210]; b : ARRAY[1..2] OF LWORD := [16#01234567890ABCDE, 16#EDCBA09876543210]; END_VAR TEST('Test_LWORD_Array_Equals'); AssertArrayEquals_LWORD(Expecteds := a, Actuals := b, Message := 'Arrays differ'); TEST_FINISHED(); Failing example 1: .. code-block:: codesys VAR a : ARRAY[1..1] OF LWORD := [16#EDCBA09876543210]; b : ARRAY[1..2] OF LWORD := [16#01234567890ABCDE, 16#EDCBA09876543210]; END_VAR TEST('Test_LWORD_Array_DifferInSize'); AssertArrayEquals_LWORD(Expecteds := a, Actuals := b, Message := 'Arrays differ'); TEST_FINISHED(); Failing example 2: .. code-block:: codesys VAR a : ARRAY[1..1] OF LWORD := [16#EDCBA09876543210]; b : ARRAY[1..1] OF LWORD := [16#01234567890ABCDE]; END_VAR TEST('Test_LWORD_Array_DifferInContent'); AssertArrayEquals_LWORD(Expecteds := a, Actuals := b, Message := 'Arrays differ'); TEST_FINISHED(); Ù 2393999758ÚAssertArrayEquals_LWORDÛ! LWORD array with expected valuesÜ LWORD array with actual valuesÝ$7bc0c786-fccc-46e3-b38f-2013c44bfcb0Þ÷ | Asserts that two UINTs are equal. If they are not, an assertion error is created. Parameters: | Expected â UINT expected value | Actual â UINT actual value | Message â The identifying message for the assertion error Positive example: .. code-block:: codesys VAR a : UINT := 65535; b : UINT := 65535; END_VAR TEST('Test_UINT_Equals'); AssertEquals_UINT(Expected := a, Actual := b, Message := 'Values differ'); TEST_FINISHED(); Failing example: .. code-block:: codesys VAR a : UINT := 64322; b : UINT := 32312; END_VAR TEST('Test_UINT_Differ'); AssertEquals_UINT(Expected := a, Actual := b, Message := 'Values differ'); TEST_FINISHED(); ß 455476556àAssertEquals_UINTá UINT expected valueâ UINT actual valueã$86b960b9-ebc0-46af-91ed-94a423f501dcä¼ | Asserts that two LWORDs are equal. If they are not, an assertion error is created. Parameters: | Expected â LWORD expected value | Actual â LWORD actual value | Message â The identifying message for the assertion error Positive example: .. code-block:: codesys VAR a : LWORD := 16#0123456789ABCDEF; b : LWORD := 16#0123456789ABCDEF; END_VAR TEST('Test_LWORD_Equals'); AssertEquals_LWORD(Expected := a, Actual := b, Message := 'Values differ'); TEST_FINISHED(); Failing example: .. code-block:: codesys VAR a : LWORD := 16#0123656789ABCBEC; b : LWORD := 16#0123256789ABCAEE; END_VAR TEST('Test_LWORD_Differ'); AssertEquals_LWORD(Expected := a, Actual := b, Message := 'Values differ'); TEST_FINISHED();å 2981194089æAssertEquals_LWORDç LWORD expected valueè LWORD actual valueé$08b090fb-911b-49fa-a51a-7f5edfd3dd2cêÐ Parameters: | Expecteds â LREAL 2d array with expected values | Actuals â LREAL 2d array with actual values | Delta - LREAL The maximum delta between the value of expected and actual for which both numbers are still considered equal, proportional to the Expected value in that array cell | Message â The identifying message for the assertion error Positive example: .. code-block:: codesys <insert positive testexample here> TEST_FINISHED(); Failing example 1: .. code-block:: codesys <insert failing testexample1 here> TEST_FINISHED(); Failing example 2: .. code-block:: codesys <insert failing testexample2 here> TEST_FINISHED();ë 3118050793ìAssertArray2dEquals_LREALí$ LREAL 2d array with expected valuesî" LREAL 2d array with actual valuesï$964c2fec-9de7-47ae-bee4-23c559ae4a3fð 355422951ñß Asserts that two BOOL arrays are equal. If they are not, an assertion error is created. Parameters: * Expecteds â BOOL array with expected values * Actuals â BOOL array with actual values * Message â The identifying message for the assertion error Positive example: .. code-block:: codesys VAR a : ARRAY[1..5] OF BOOL := [TRUE, FALSE, TRUE, FALSE, TRUE]; b : ARRAY[1..5] OF BOOL := [TRUE, FALSE, TRUE, FALSE, TRUE]; END_VAR TEST('Test_BOOL_Array_Equals'); AssertArrayEquals_BOOL(Expecteds := a, Actuals := b, Message := 'Arrays differ'); TEST_FINISHED(); Failing example 1: .. code-block:: codesys VAR a : ARRAY[1..6] OF BOOL := [TRUE, TRUE, TRUE, TRUE, TRUE, TRUE]; b : ARRAY[1..4] OF BOOL := [TRUE, TRUE, TRUE, TRUE]; END_VAR TEST('Test_BYTE_Array_DiffersInSize'); AssertArrayEquals_BOOL(Expecteds := a, Actuals := b, Message := 'Arrays differ'); TEST_FINISHED(); Failing example 2: .. code-block:: codesys VAR a : ARRAY[0..5] OF BOOL := [TRUE, TRUE, FALSE, TRUE, FALSE, TRUE]; b : ARRAY[0..5] OF BOOL := [TRUE, TRUE, TRUE, TRUE, FALSE, FALSE]; END_VAR TEST('Test_BYTE_Array_DiffersInContent'); AssertArrayEquals_BOOL(Expecteds := a, Actuals := b, Message := 'Arrays differ'); TEST_FINISHED(); ò 2327915240óAssertArrayEquals_BOOLô BOOL array with expected valuesõ BOOL array with actual valuesö$3d4059ab-c241-4859-9a9f-090cab6db606÷ Asserts that a condition is true. If it is not, an assertion error is created. Parameters: | Condition â Condition to be checked | Message â The identifying message for the assertion error Positive example: .. code-block:: codesys VAR a : WORD := 16#ABCD; b : WORD := 16#0123; END_VAR TEST('AssertThatWORDsAreNotEqual'); AssertTrue(Condition := (a <> b), Message := 'WORDs are equal'); TEST_FINISHED(); Failing example: .. code-block:: codesys VAR a : WORD := 16#ABCD; b : WORD := 16#0123; END_VAR TEST('AssertThatWORDsAreEqual'); AssertTrue(Condition := (a = b), Message := 'WORDs are not equal'); TEST_FINISHED(); ø 1043909239ù AssertTrueú$c415013c-c271-42ba-83ad-6c2c653d8f2eû 1475975773üAddTestýErrorMessageþFunctionCallResultÿTestWithThisNameAlreadyExistsLowerCasedTestNameTrimmedTestName$d383011f-6bea-4b05-9018-ea4782ad2837 2609692221 | Asserts that two DWORD arrays are equal. If they are not, an assertion error is created. Parameters: | Expecteds â DWORD array with expected values | Actuals â DWORD array with actual values | Message â The identifying message for the assertion error Positive example: .. code-block:: codesys VAR a : ARRAY[2..3] OF DWORD := [16#6789ABCD, 16#EF012345]; b : ARRAY[1..2] OF DWORD := [16#6789ABCD, 16#EF012345]; END_VAR TEST('Test_DWORD_Array_Equals'); AssertArrayEquals_DWORD(Expecteds := a, Actuals := b, Message := 'Arrays differ'); TEST_FINISHED(); Failing example 1: .. code-block:: codesys VAR a : ARRAY[-2..1] OF DWORD := [16#6789ABCD, 16#EF012345, 16#67890ABC, 16#DDDDDDDD]; b : ARRAY[-3..-2] OF DWORD := [16#6789ABCD, 16#EF012345]; END_VAR TEST('Test_DWORD_Array_DifferInSize'); AssertArrayEquals_DWORD(Expecteds := a, Actuals := b, Message := 'Arrays differ'); TEST_FINISHED(); Failing example 2: .. code-block:: codesys VAR a : ARRAY[-2..1] OF DWORD := [16#6789ABCD, 16#EFAA2346, 16#ABABABAB, 16#EEEEEEEE]; b : ARRAY[-2..1] OF DWORD := [16#6789ABCD, 16#EF012345, 16#ABABABAB, 16#EEEEEEEE]; END_VAR TEST('Test_DWORD_Array_DifferInContent'); AssertArrayEquals_DWORD(Expecteds := a, Actuals := b, Message := 'Arrays differ'); TEST_FINISHED(); 2193117219AssertArrayEquals_DWORD! DWORD array with expected values DWORD array with actual values$eec9d02d-95a1-4885-9906-ad4b2d0f4cab 4117816331ö | Asserts that two BYTEs are equal. If they are not, an assertion error is created. Parameters: | Expected â BYTE expected value | Actual â BYTE actual value | Message â The identifying message for the assertion error Positive example: .. code-block:: codesys VAR a : BYTE := 16#CD; b : BYTE := 16#CD; END_VAR TEST('Test_BYTE_Equals'); AssertEquals_BYTE(Expected := a, Actual := b, Message := 'Values differ'); TEST_FINISHED(); Failing example: .. code-block:: codesys VAR a : BYTE := 16#AB; b : BYTE := 16#CD; END_VAR TEST('Test_BYTE_Differ'); AssertEquals_BYTE(Expected := a, Actual := b, Message := 'Values differ'); TEST_FINISHED(); 268346097AssertEquals_BYTE BYTE expected value BYTE actual value$c039f3f1-9c41-4f5e-93a3-393ce160979a 1805835891AllTestsFinished$2b211901-49a8-4e51-90e1-4b1e298f9e0c 2084092420GetInstancePath$178fa338-5ed3-417b-8f4d-e9f120ace4b9 Marks the test as finished in this testsuite. Returns TRUE if test was found, and FALSE if a test with this name was not found in this testsuite 3967847859SetTestFinished$1ec94335-80d7-46d3-a0f0-345f8eda2ea4Ó | Asserts that two UINT arrays are equal. If they are not, an assertion error is created. Parameters: | Expecteds â UINT array with expected values | Actuals â UINT array with actual values | Message â The identifying message for the assertion error Positive example: .. code-block:: codesys VAR a : ARRAY[0..4] OF UINT := [0, 65535, 2000, 34123, 59]; b : ARRAY[0..4] OF UINT := [0, 65535, 2000, 34123, 59]; END_VAR TEST('Test_UINT_Array_Equals'); AssertArrayEquals_UINT(Expecteds := a, Actuals := b, Message := 'Arrays differ'); TEST_FINISHED(); Failing example 1: .. code-block:: codesys VAR a : ARRAY[0..2] OF UINT := [0, 4, 8]; b : ARRAY[0..3] OF UINT := [0, 4, 8, 12]; END_VAR TEST('Test_UINT_Array_DifferInSize'); AssertArrayEquals_UINT(Expecteds := a, Actuals := b, Message := 'Arrays differ'); TEST_FINISHED(); Failing example 2: .. code-block:: codesys VAR a : ARRAY[0..3] OF UINT := [0, 4, 8, 99]; b : ARRAY[0..3] OF UINT := [0, 4, 8, 12]; END_VAR TEST('Test_UINT_Array_DifferInContent'); AssertArrayEquals_UINT(Expecteds := a, Actuals := b, Message := 'Arrays differ'); TEST_FINISHED(); 1542196384AssertArrayEquals_UINT UINT array with expected values UINT array with actual values $358571ac-0a0d-4e71-8097-c7943f718fce¡ | Asserts that two LREALs are equal TO within a positive delta. IF they are NOT, an assertion error is created. Parameters: | Expected â LREAL expected value | Actual â LREAL actual value | Delta â The maximum delta between the absolute value of expected and actual for which both numbers are still considered equal | Message â The identifying message for the assertion error Positive example: .. code-block:: codesys VAR a : LREAL := 1234567.89; b : LREAL := 1234567.76; END_VAR TEST('Test_LREAL_Equals'); AssertEquals_LREAL(Expected := a, Actual := b, Delta := 0.2, Message := 'Values differ'); TEST_FINISHED(); Failing example: VAR a : LREAL := 1234567.89; b : LREAL := 1234567.76; END_VAR TEST('Test_LREAL_Differ'); AssertEquals_LREAL(Expected := a, Actual := b, Delta := 0.1, Message := 'Values differ'); TEST_FINISHED(); ¢ 3785330774£AssertArrayEquals_LREAL¤! LREAL array with expected values¥ LREAL array with actual values¦$fbc23ff0-cdf6-43f2-82cd-e6f3a7903664§ Jitter distribution¨ 3779252147© Maximal rangeª wRangeMax« Jitters events negative¬wCountJitterNeg Jitter event positive®wCountJitterPos¯ 1489059357°$f914311f-5c52-4cd5-b2c8-3263a1508247±Ë This function block is responsible for making sure that the asserted test instance path and test message are not loo long. The total printed message can not be more than 252 characters long. ² 3001289633³ Test instance path´MsgFmtStringµ Test message¶ StringArg·MsgFmtStringProcessed¸StringArgProcessed¹MsgFmtStringTempº...TestName too long»TestNameTooLong¼...TestMsg too long½TestMsgTooLong¾X This is actually 253, but if StrArg-argument is used (which it is in TcUnit) it is 252.¿'MSG_FMT_STRING_MAX_AMOUNT_OF_CHARACTERSÀILocal, ReplacedConstant, Constant, IsCompiled, RelativeInstance, TypifiedÁ 228984903Â$d7648cea-fb9f-427f-b157-93784e5b7cabà 3505840675Ä 197406720Å 2734844869Æ 3297551346Ç 2662650258ÈdiLowerÉdiUpperÊ 3465986364Ë$c2d24aa9-2fc9-4f89-80ac-14d9f558122aÌ 319472823ÍË This FB compares two instances of any object type and returns whether they are the same type, size and value or not. This is necessary for two reasons: 1. So that we can know exactly what differs between the two input parameters 2. It's not possible to do a comparison (= or <>) between two instances of ANY. Î 797308994ÏAnyValueOne.pValueÐAnyValueOne__pValueÑAnyValueOne.TypeClassÒAnyValueOne__typeClassÓAnyValueOne.diSizeÔAnyValueOne__sizeOfÕAnyValueOneÖAnyValueTwo.pValue×AnyValueTwo__pValueØAnyValueTwo.TypeClassÙAnyValueTwo__typeClassÚAnyValueTwo.diSizeÛAnyValueTwo__sizeOfÜAnyValueTwoÝ< The data type of the two ANY input parameters are not equalÞ< The data size of the two ANY input parameters are not equalß? The data content of the two ANY input parameters are not equalà 3159686021á$e4f95c0d-0ece-47a8-977f-f9d45a4f920eâ 3901074272ã11252403ä 173265148å 958090425æ 2765784940ç_Implicit_Task_InfoèKindOfé_IMPLICIT_KINDOFTASKêbProfilingTaskëdwLastCycleTimeìdiJitterídiJitterMinîdiJitterMaxïwTaskStatusð_IMPLICIT_JITTER_DISTRIBUTIONñ_Implicit_Jitter_DistributionòbWithinSPSTimeSlicingóbShouldBlockôbActiveõnCoreConfiguredönCoreCurrent÷ pTaskGroupø_IMPLICIT_TASKGROUP_INFOù_Implicit_TaskGroup_InfoúpszParentTaskNameû 3064147540ü$c4b8e551-3215-5dbb-9355-8dcf3e162bd6ý 4288098520þ 1363320977ÿ 235137531$87c49645-6ce5-5bcf-bae6-132a41e0c4aa 2880228939 2164913627pszGroupNamedwTaskGroupOptions diMaxCoresparrdwCoreBits 638065670$3f237607-46ae-5106-b06d-831888578227 187872831 2860490203$e6fb6cf6-9591-477a-a303-fdedaad04613 __OffsetIBASEADDREF FB_REINITQUERYINTERFACERELEASEcompatibility_id$76B148E2-3A84-40c4-8BF2-2FBE56618A2F 2439911566$de784a2a-6a84-4c6b-a64b-74bfc4713c79 1835024534FB_Exit$d4f5d20f-e146-4306-9ffb-0b952fe8bdb2 805362587QueryInterface InterfaceID iid$eac54f77-5545-412a-8930-013043c93f65 3642965170Release$13829801-a5ee-4705-bf92-a3430e33fe75 951162479¡AddRef¢$63704945-b29a-4e6d-b620-0cc4c326d5f8£ 189822725¤ FB_Reinit¥$e129df86-3969-4c96-8e86-63bc2fcd6c83¦ 331523042§VERSION¨uiMajor©uiMinorª uiServicePack«uiPatch¬ 3231598516$5181460b-9464-4c0f-82f2-1f9633a4c34e® 1518820524¯TWOPLUSTWOEQUALSFOUR°ZEROPLUSZEROEQUALSZERO±CfUnit² 4004392889³FB_Sum_Test´ 2468246447µFB_SUM_TEST¶$69b661ca-5faa-43bb-8b8a-2cae13b2cfe4· 3804393560¸TwoPlusTwoEqualsFour¹SumºFB_SUM»FB_Sum¼Result½ExpectedSum¾$071ba4c3-fe0d-4b0b-be72-a320c9d403a4¿ 470409468À 4018862981ÁZeroPlusZeroEqualsZeroÂ$ac47aa92-0e7a-4876-b0ac-7ef29219d372à 635803319Ä 1660718324Å 3010342448Æ 212020793Ç 476154767ÈPRG_TESTÉ fbSum_TestÊ1Local, IsCompiled, Absolut, Initialized, TypifiedË$5e8cc903-e536-40be-a096-d6b305fbb618Ì 1368625671ÍoneÎtwoÏresultÐ 323964421Ñ$8328f7d8-1dbc-4e08-98b0-eb6438d2b355Ò 855406638Ó 228684100Ô 2173869412Õ 1334945094Ö 204906898× 2338394504Ø_Implicit_Task_Config_InfoÙTODO eventtasksÚwVersionÛnNumOfTasksÜpszApplicationNameÝptasksÞ 3669029852ß_IMPLICIT_TASK_CONFIG_INFOà$00bdef65-acea-502d-a09a-9b27b86d5df1á 1234088797â 1833442206ã__sys__setup__tasksä$a7f75517-fce3-59d9-a7f4-75773ea190a0å <SIL2/>æ 830427680çLogAdd2èhLoggeréudiCmpIDê udiClassIDë udiErrorIDì udiInfoIDípszInfoî$f782c8f1-3e37-44f5-9ca0-ba40c1145169ïcmplog, 3.5.5.0 (system)ð 2222278874ñ__HelpConvertDateòppstrónYearônMonthõnDayöDayOfMonthTable÷$1c137676-f66f-428c-af12-54699e1772b8ø 2130786092ù__HelpConvertTimeúdwHourûdwMinuteüdwSecondý dwMilliSecondþ$13c0f538-7207-41d3-8311-a322a7c20a0eÿ 3586288056__HelpConvertTimeWithUnitdwDay$50f01a4a-c350-4e6e-9dfa-0c242ec58ce8 371843759 __HelpConvert UDInt$fdd0113a-d0f8-4f19-bc73-fa6acf9ecc59 1562513299 __ExtractRealL True iff f is infinity, diM = 1 for +Infinity and -1 for -Infinity, iE is 0fiEdiMxNaNuiEudiM$b4fbe026-742b-4541-9a4b-a710de7d376c 2223293048__HelpConvertLTimeWithUnitlwDaylwHourlwMinutelwSecond lwMilliSecond lwMicroSecondlwNanoSecond$9b7fa8d4-59a0-43f0-a610-be7bd5350ad9 1212736547__ExtractLRealdudiEuliM $0ffc8285-5cf0-4854-bfbf-cfca06799935¡ 3132572671¢__HelpRealConvert£pnBegin¤nDig¥dBegin¦dDiv§bNeg¨ nHelpBegin©dDiffª$e6a8a736-c389-4a55-8363-2e30c26fed79«È Concatenates two strings ``CONCAT(STR1,STR2)`` means: Connect ``STR1`` and ``STR2`` to a single string ``STR1STR2``. .. code-block:: codesys (* Example declaration *) VarSTRING1 : STRING ; (* Example in ST , result is 'SUSIWILLI' *) VarSTRING1 := CONCAT ('SUSI','WILLI'); :return: Concatenated string, max. 255 characters. If the result doesn't fit into these 255 bytes, it will be silently truncated. No error is produced. .. cds:ranges:: :STR1: |StringRange255| :STR2: |StringRange255| .. |StringRange255| replace:: [NULL_STRING,TERMINATED_STRING_LEN0..TERMINATED_STRING_LEN127,TERMINATED_STRING_LEN128..TERMINATED_STRING_LEN255,UNTERMINATED_STRING] ¬ 2972623772CONCAT®1 String 1 to be concatenated, max. 255 characters¯STR1°1 String 2 to be concatenated, max. 255 characters±STR2² 4221632325³LicenseFunctions´dwStructSizeµpfGetUserLicenseValue¶pfConfDynLicChallenge·pfReqDynLicChallenge¸ 1958349117¹LICENSEFUNCTIONSº$54113402-1f1a-4625-9cf5-98f840f808d4»$component manager, 3.5.13.0 (system)¼ 3247230088½CMRegisterLicenseFunctions¾licenseFunctions¿$9d4b8b53-13e6-49d1-812f-48d05c3b6bdeÀ 674459537ÁUnregisterLicenseFunctionsÂlfÃ$fad78c76-def3-4349-88ac-a7d7b1026100Ä49087098ÅSysTargetGetIdÆpulTargetIdÇ/External, Compiled, Typified, Located, InternalÈ$2882c277-8c61-400a-b7f8-fedf8770b0b5É 1255376976ÊSysTargetGetTypeËpulTypeÌ$8626ba32-8246-4efc-a245-c6603743ef15Í 2879083722ÎRegisterLicenseFunctionsÏ$3a698490-0f8e-4b05-ba85-54b389411e5bÐCodeMGetContentByFirmcode2Ñ 3702754381ÒCodeMGetContentByFirmcodeÓduiFirmcodeÔduiProductcodeÕlicenseEntryÖRTS_CMBOXENTRY×*Inout, IsCompiled, RelativeStack, TypifiedØ$22f4fc39-59c8-43ad-9dcc-9e20e4b9a58bÙcmpcodemeter, 3.5.5.0 (system)Ú 669955528Û musBoxMaskÜmulBoxSerialÝ mflFiCtrlÞmulFirmCodeßmusFirmAccessCounteràmusFirmItemRefámulFirmUpdateCounterâmulFirmPreciseTimeãmausFirmItemTextämulProductCodeå mulFeatureMapæmulUnitCounterçmulLicenseQuantityèmusProductItemRefé 3504795969ê$b624d05d-ae57-4b33-b835-ddb290871f29ë<Structure, NonVirtual, Compiled, Typified, Located, Internalìignore_link_allí 3026495541î"CodeMGetFeatureMapByFirmcode_localï%Compiled, Typified, Located, Internalð$8c1740e2-dc30-4803-9b05-2837c6a74377ñ 2158031774òmyUDINT_TO_STRINGói2ôbytõ$126f9170-8764-47f4-b18b-ad639b548e48ö 1069101478÷CMAddComponentøpszComponentùudiCmpIdú udiVersionû$90843a1a-36bb-40cc-8a00-b137a07f82ddü 4264633759ýSysFileOpenþszFileÿam$4e9f3f6c-f1b2-41f5-8e6e-4c9d0f916cb0 2222749035SysFileGetSizeByHandlehFile$203db6ac-ecc2-4b85-b1e0-d533c0597079 3647132921SysFileRead pbyBufferulSize$db542d11-09a1-412e-ba36-040235d1f6a6 3248367802SysFileClose$81419da6-4d52-4d99-806c-f8e599dcca66Ø <description> Test and set a bit in an ULONG variable in one processor step. This operation is to provide a multitasking save operation. </description> <result><p>RESULT: Returns the runtime system error code (see CmpErrors.library). ERR_OK: If bit could be set and was set before, ERR_FAILED: If bit is still set </p></result> 3306130432SysCpuTestAndSet <param name="pulValue" type="IN">Pointer to the unsigned value to test and set a bit inside in one atomic processor step</param> pulValuep <param name="ulBit" type="IN">Bit number inside the variable to test and set. 0=first bit, 31=last bit</param> ulBit$1b91f178-37d6-463f-a613-9f24443e9396!syscpuhandling, 3.5.13.0 (system) 2702096027mySTRING_TO_UDINTuiBase$7c03f9aa-a908-4345-8fdc-2902079aa956Ê Returns the number of characters of a string .. code-block:: codesys (* Example declaration *) VarINT1 : INT ; (* Example in ST , result is '4 *) VarINT1 := LEN ('SUSI'); :return: Length of string ``STR`` .. cds:ranges:: :STR: |StringRange255| .. |StringRange255| replace:: [NULL_STRING,TERMINATED_STRING_LEN0..TERMINATED_STRING_LEN127,TERMINATED_STRING_LEN128..TERMINATED_STRING_LEN255,UNTERMINATED_STRING] 2091238964LEN String to be analyzed STRp $d60923f9-da06-44f9-ab52-de513236e3e2¡ Searches for the position of a partial string within a string. ``FIND(STR1, STR2)`` means: Find the position of the first character where ``STR2`` appears in ``STR1`` for the first time. If STR2 is not found in STR1, then OUT:=0. .. code-block:: codesys (* Example declaration *) arINT1 : INT ; (* Example in ST , result is '4' *) arINT1 := FIND ('abcdef','de'); :return: Character position of the first occurance of ``STR2`` in ``STR1``. If no occurance is found, result is 0 .. cds:ranges:: :STR1: |StringRange255| :STR2: |StringRange255| .. |StringRange255| replace:: [NULL_STRING,TERMINATED_STRING_LEN0..TERMINATED_STRING_LEN127,TERMINATED_STRING_LEN128..TERMINATED_STRING_LEN255,UNTERMINATED_STRING] ¢ 3278768737£* String within which ``STR2`` is searched ¤/ String whose position is searched in ``STR1`` ¥pszComp1¦pszComp2§$182b0d71-64b9-4f59-8550-dfdea6ddbf15¨ç Returns a specific number of characters of a string, starting from left ``LEFT (STR, SIZE)`` means: Return the first ``SIZE`` characters from the left in string ``STR`` .. code-block:: codesys (* Example declaration *) VarSTRING1 : STRING ; (* Example in ST , result is 'SUS' *) VarSTRING1 := LEFT ('SUSI',3); :return: Resulting string .. cds:ranges:: :STR: |StringRange255| :SIZE: [0..255] .. |StringRange255| replace:: [NULL_STRING,TERMINATED_STRING_LEN0..TERMINATED_STRING_LEN127,TERMINATED_STRING_LEN128..TERMINATED_STRING_LEN255,UNTERMINATED_STRING] © 3595690875ªLEFT« String to be analyzed¬ Number of characters SIZE®$305543de-642d-43ec-a366-8f771da1539d¯º Returns a specific number of characters of a string, starting from a specific position ``MID (STR, LEN, POS)`` means: Retrieve ``LEN`` characters from the ``STR`` string beginning with the character at position ``POS``. .. code-block:: codesys (* Example declaration *) VarSTRING1 : STRING ; (* Example in ST , result is 'US' *) VarSTRING1 := MID ('SUSI',2,2); :return: Partial string of ``STR`` .. cds:ranges:: :STR: |StringRange255| :LEN: [0..255] :POS: [0,1..255] .. |StringRange255| replace:: [NULL_STRING,TERMINATED_STRING_LEN0..TERMINATED_STRING_LEN127,TERMINATED_STRING_LEN128..TERMINATED_STRING_LEN255,UNTERMINATED_STRING] ° 176614815±MID², Number of characters, counted from the left³& Start position for the partial string´POSµ$83426200-a15f-4a0f-939b-ec775900aa99¶ë Returns a specific number of characters of a string, starting from right ``RIGHT (STR, SIZE)`` means: Return the first ``SIZE`` characters from the right in string ``STR`` .. code-block:: codesys (* Example declaration *) VarSTRING1 : STRING ; (* Example in ST , result is 'USI' *) VarSTRING1 := RIGHT ('SUSI',3); :return: Resulting string .. cds:ranges:: :STR: |StringRange255| :SIZE: [0..255] .. |StringRange255| replace:: [NULL_STRING,TERMINATED_STRING_LEN0..TERMINATED_STRING_LEN127,TERMINATED_STRING_LEN128..TERMINATED_STRING_LEN255,UNTERMINATED_STRING] · 1359190538¸RIGHT¹ Number of characters ºl»iResult¼$e1f7857b-7abd-48e8-91d6-d6b740f939c9½û Ads a message to the log, if the message is longer then 127 characters it splits into two log messages (max 255 chars = 2 log entries) Usage example: LOGSTR( msgCtrlMask := UDINT_TO_DWORD( CmpLog.LogClass.LOG_INFO ), msgFmtStr := 'Ammount of tests : %s', strArg := uiTestAmmount ); results into the following logstring Ammount of tests : 3 ¾ 4018939086¿LOGSTRÀ/ use UDINT_TO_DWORD( CmpLog.LogClass.LOG_.... )ÁmsgCtrlMaskÂ( Usage example: ' Ammount of tests : %s'à Usage example: uiTestAmmountÄstrArgÅ uiMaxSizeÆsTextÇiCharPosÈ$4faf44db-355b-4967-8254-5b291732f959É <category>Project information</category> * <description> * Contains the project information as specified in the project information dialog in CoDeSys. To use this, the checkbox * "Automatically generate POUs for property access" in the project information dialog be enabled. * </description> * <element name="stProjectName" type="OUT">Project name without ending</element> * <element name="stTitle" type="OUT">Title</element> * <element name="stVersion" type="OUT">Version as string in the format "x.x.x.x"</element> * <element name="stAuthor" type="OUT">Author</element> * <element name="stDescription" type="OUT">Description</element> Ê 3365268717ËPROJECT_INFOÌ stProjectÍstTitleÎ stVersionÏstAuthorÐ stDescriptionÑ 1178342348Ò$c1e43dbd-7721-4bd4-a684-c21620fe030fÓcmpapp, 3.5.15.0 (system)Ô8 reads the application info from the current applicationÕ 3589885213ÖGetCurProjInfo×CMPAPPØCmpAppÙpCurAppÚAPPLICATIONÛpCurProjInfoÜ 1186304137ÝGETCURPROJINFOÞ$a1b4b1d0-961b-443c-bfbc-d2cb7b8d4e24ß 3673772398à 1934937439á 2447250513â 4156868057ã 3449547646ä6F_RemoveInstancePathAndProjectNameFromTestInstancePathåCharacterPositionOfProjectNameæProjectNameWithDotç$7816860e-5623-4ff0-b466-902e340371e3è 3203763967é POINTER TO parent application ê pAppParentë* Id of the application. Is always unique. ìiIdí GUID for IEC code îCodeGuidï GUID for IEC data ðDataGuidñ> State of the application. See definitions Application states òudiStateóR Operating state of the application. See definitions Application operation states ô udiOpStateõ Handle to bootproject öhBootproject÷ Handle to debug task ø hDebugTaskù Global Init Function úpfGlobalInitû Global Exit Function üpfGlobalExitý Handle a pool of session-ids þhSessionIdPoolÿ Handle a pool of force entries hForcePool Handle a pool of breakpoints hBPPool Is persistent force enabled Application name szNameMAX_LEN_APPLNAME7Version number of Programming system (set in download) udiPSVersion?Version number of Target settings used by PS (set in download) udiTargetSettingVersion 1512497683$91664799-0da5-417a-9e5e-db9ec74ea6f2j Close a file specified by handle :return: Returns the runtime system error code (see CmpErrors.library) Handle of the filesysfile, 3.5.15.0 (system)À | Open or create file. A standard path will be added to the filename, if no path is specified in the file name. | If a file extension is specified in the settings, this path will be used (see category settings). .. note:: File name can contain an absolute or relative path to the file. Path entries must be separated with a Slash (/) and not with a Backslash (\\)! :return: Handle to the file or RTS_INVALID_HANDLE if failed File name. File name can contain an absolute or relative path to the file. Path entries must be separated with a Slash (/) and not with a Backslash (\\)!Î | Requested access mode to the file. See |ACCESS_MODE| for details. | Here find some examples: :AM_READ: If file does not exist, an error is returned. If the file exists, the file will be opened :AM_WRITE: If file does not exist, a new file will be created. If the file exists, it will be overwritten! :AM_APPEND: If the file does not exist, an error is returned. If the file exists, the file will be opened = Pointer to runtime system error code (see CmpErrors.library)\ Read number of bytes out of the file :return: Number of bytes read from file. 0=if failed Handle of the file Pointer to buffer for read dataL Number of bytes to read from file. Must be less or equal the buffer size! Write number of bytes to the file. File must be opened with |AM_WRITE| or |AM_APPEND|. :return: Number of bytes written to the file. 0=if failed 1793200295SysFileWrite/ Pointer to buffer with data to write to file M Number of bytes to write in the file. Must be less or equal the buffer size!$a0372ebf-eb9b-4113-942f-e5da73df71dd[ Removes leading spaces from the character string and returns the reduced character string. 1900748652 F_LTrim¡$6ef917e6-7f9e-46f0-99fd-87a9a9b883ad¢O Truncates all trailing spaces from the specified value and returns the result.£ 3142262884¤F_RTrim¥$29c1cd9e-70b7-43a9-8e3e-f8e8ed84bff7¦d The F_ToLCase function converts a specified string to lowercase. Contains portions of OSCAT BASIC§ 886767803¨ F_ToLCase©PTªpos«$4177f901-1a7a-4eea-8fe8-63097fea53f3¬¯ This function converts a decimal number into a hexadecimal STRING (base 16). If the actual number of significant digits is less than the iPrecision parameter, the resulting STRING is filled with zeros FROM the left. If the number of significant digits is greater than the iPrecision parameter, the resulting string is not cut off! If the iPrecision parameter and the in parameter are zero, the resulting string is empty. 1972422664®BYTE_TO_HEXSTR¯) The decimal number requiring conversion.°IN±. Minimum number of displayed digits (digits). ² iPrecision³[ This parameter determines whether lower or upper case letters are used in the conversion. ´bLoCaseµm_Format¶$83e397b4-6883-4c4e-9910-e0278934299a· This function converts a decimal number into a hexadecimal STRING (base 16). If the actual number of significant digits is less than the iPrecision parameter, the resulting STRING is filled with zeros FROM the left. If the number of significant digits is greater than the iPrecision parameter, the resulting string is not cut off! If the iPrecision parameter and the in parameter are zero, the resulting string is empty. This is modified version of the DWORD_TO_STRH made by OSCAT, version 1.3, programmer hugo. ¸ 3725441371¹DWORD_TO_HEXSTRº4 Minimum number of displayed digits (digits). »temp¼pt½m_NumberOfDigits¾m_precision¿$37af6bb4-598b-402b-99e0-bd140fa86122À 1557660451ÁLWORD_TO_HEXSTRÂ$6f6ad65d-94c9-44e7-b5f7-5394a261509cñ This function converts a decimal number into a hexadecimal STRING (base 16). If the actual number of significant digits is less than the iPrecision parameter, the resulting STRING is filled with zeros FROM the left. If the number of significant digits is greater than the iPrecision parameter, the resulting string is not cut off! If the iPrecision parameter and the in parameter are zero, the resulting string is empty. Ä 952797014ÅWORD_TO_HEXSTRÆ$028c7654-6828-48cd-8703-659f86aef415Ç? Copies buffer with size of N bytes from source to destination È 1485283582ÉMEMCPYÊdestAddrËCAAÌPVOIDÍsrcAddrÎnÏ$7d591bcc-b453-4853-8327-1622b58624ccÐ; Realize a target specific data type for general pointers. Ñ 2901015905Ò Prefix: p Ó$607a79a2-c60b-4e09-b161-a4f6d8099b00Ô4caa types extern, 3.5.13.0 (caa technical workgroup)Õe This function takes the type-class of a ANY-variable and returns the STRING representation of it. Ö 3242817338×F_AnyTypeClassToStringØAnyTypeClassÙ$9e1352f3-5f86-40fd-88db-b6807b901391ÚO Funktion to get own task handle :return: Returns the current IEC task handleÛ 4249138636ÜIecTaskGetCurrentÝK Pointer that returns the runtime system error code (see CmpErrors.library)Þ$b1d506b4-a9e7-4ec3-8e73-e6697d723ffbßt Function returns the task information of the specified task :return: Return a pointer to the task info structureà 4205902187áIecTaskGetInfo3â Handle to the specified taskãhIecTaskäptiå$941fd632-1e71-4fc0-a13a-6074eb0adf1cæ 2092783167çF_AnyToUnionValueèAnyValue.pValueéAnyValue__pValueêAnyValue.TypeClassëAnyValue__typeClassìAnyValue.diSizeíAnyValue__sizeOfîAnyValueï$04a97242-7600-4a30-a234-b9e3b1c2770cð 3394829069ñF_IsAnyEqualToUnionValueòuExpectedOrActualóExpectedOrActual.pValueôExpectedOrActual__pValueõExpectedOrActual.TypeClassöExpectedOrActual__typeClass÷ExpectedOrActual.diSizeøExpectedOrActual__sizeOfùExpectedOrActualúAnyExpectedOrActualû$1ab30776-5b8c-4eb4-8ece-b0c087a9b905üF This function runs all test suites that have been initialized. ý 740068242þRUNÿ$bd49b256-e7ba-4b73-b669-380d1f428417c This function declares a new test (if it has not been already declared in an earlier cycle) 2860862278TESTCounterTestSuiteAddressCounterTestName $8dd61791-c583-4b5e-b392-3e0ecf4878492 Sets the currently running test as finished 563735047 TEST_FINISHED$9922b45b-fca5-4323-be8f-93710371a816Ç Extracts the components of a REAL floating point number without interpreting them. Extracts the sign, (biased) exponent, and mantissa of a REAL value. We assume the IEEE 754 binary32 format. All values, including NaN and Infinity are supported. See http://en.wikipedia.org/wiki/Single_precision_floating-point_format 2007885473__ExtractRealRawC The mantissa as stored in the REAL, without the leading bit 24 setpudi$3d3aa07e-b7ec-4780-af79-d77e0e2cb50f 1475096513__HelpLConvert$26023af2-e263-44c0-b290-4197ca6caa6a 202956791__ExtractLRealRawpuliuli$e543e1fd-2bb8-4ac1-a749-ebad37d711fc 1673363469FctConfDynLicChallenge$f9972cfc-8a33-4e40-85fb-7109a5d893d5 2401095727FctGetUserLicenseValue$c20edd8e-8e57-4f8a-87df-58345eb4164f 2469315043FctReqDynLicChallenge $a38e7aa2-cfa8-41d5-adf5-85021e7b5eaa¡ 1900323445¢CMUnregisterLicenseFunctions£$f1a79dd5-021a-4cf4-ad25-7ec56df08e56¤CodeMGetContentByFirmcode_local¥Ñ Replaces a specific number of characters of a string by another string ``REPLACE(STR1, STR2, L, P)`` means: Replace ``L`` characters from ``STR1`` by ``STR2``, beginning with the character in the ``P`` position. .. code-block:: codesys (* Example declaration *) VarSTRING1 : STRING ; (* Example in ST , result is 'SKYSI' *) VarSTRING1 := REPLACE ('SUXYSI','K',2,2); :return: Resulting string .. cds:ranges:: :STR1: |StringRange255| :STR2: |StringRange255| :L: [0..255] :P: [0,1..255] .. |StringRange255| replace:: [NULL_STRING,TERMINATED_STRING_LEN0..TERMINATED_STRING_LEN127,TERMINATED_STRING_LEN128..TERMINATED_STRING_LEN255,UNTERMINATED_STRING] ¦ 517832753§REPLACE¨# String of which a part is replaced©) String which replaces a part of ``STR1``ª) Number of characters, counting from left«L¬s Start position of the characters to be replaced. ``P = 1`` or ``P = 0`` are both addressing the first characterP® indexDest¯indexSource°$f57e2f3d-6edd-4042-ac47-a14833c273c8± 448115908² LogOptions³ Name OF logger ´ Logger active/inactive µbEnable¶ See above log types ·uiType¸0 Log filter. 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flag, if this bit is set to 0, the swapping must be disabled.Á#CMLBT_ENABLEÂ#$ca9ad7fa-6105-44aa-b100-d441fed9fb53Ã# Fieldbus independent parametersÄ# 3214716919Å#BusIndependentParameterIDsÆ#A Parameter to identify netX devices.TRUE indicates a netX device.Ç#FIP_NETX_DEVICEÈ#S Master Watchdog TIME. 0 deactivates the watchdog, 1-0xFFFF sets the watchdog TIME.É#FIP_WATCHDOGÊ#- Slot number of the NetX device e.g. PCI slotË#FIP_NETX_SLOT_NUMBERÌ#8 A NetX chip may have up to four communication channels.Í#FIP_NETX_CHANNEL_NUMBERÎ# Wait time for the BUS_ON signal of the master in the IO Driver. If it is set to 0, the IO driver does not wait for the BUS ON signal.Ï#FIP_BUS_ON_TIMEOUTÐ#e Name of the device, if target setting deviceconfiguration:enableAdditionalParameters is set to TRUE.Ñ#FIP_DEVICENAMEÒ#s Hashcode of DeviceIdentification, if target setting deficeconfiguration:enableAdditionalParameters is set to TRUE.Ó#FIP_DEVICEIDENTIFICATION_HASHÔ#, Value of UpdateIOInStop (see PLC settings).Õ#FIP_UPDATE_IO_IN_STOPÖ#0 Used for Safety. Describing the used protocols.×#FIP_SAFETY_PROTOCOLØ#Q Contains the version of the fieldbus config schema e.g. 16#03050100 for V3.5.1.0Ù#FIP_CONFIG_VERSIONÚ#i Number of parameters beginning at 0x7f000019 (max. 256 Parameters) describing the used safety protocols.Û#FIP_NUMBER_OF_SAFETY_PROTOCOLSÜ# First Safety Protocol ParameterÝ#FIP_FIRST_SAFETY_PROTOCOL_PARAMÞ# Last Safety Protocol Parameterß#FIP_LAST_SAFETY_PROTOCOL_PARAMà#$4a181e1a-4536-4b69-9aaa-cb9b31f14916á#N Connector flags: Flags that specifies diagnostic informations of a connector â# 1256596728ã#ConnectorFlagsä# Connector enabledå# CF_ENABLEæ#8 Connector provides diagnosis for the associated device.ç#CF_DIAG_PROVIDERè#g Only valid if CF_DIAG_PROVIDER is set. Specifies if device is currently enabled (used by Reconfigure).é#CF_DEVICE_ENABLEDê# Demo License is activeë#CF_DEMOLICENSE_ACTIVEì# A driver is availableí#CF_DRIVER_AVAILABLEî#" Connector found (device detected)ï#CF_CONNECTOR_FOUNDð# Connector configuredñ#CF_CONNECTOR_CONFIGUREDò# Connector activeó#CF_CONNECTOR_ACTIVEô# Bus errorõ#CF_CONNECTOR_BUS_ERRORö# General connector error÷#CF_CONNECTOR_ERRORø#! Diagnostic information availableù#!CF_CONNECTOR_DIAGNOSTIC_AVAILABLEú#8 Passive mode of the second master in redundancy systemsû#CF_CONNECTOR_PASSIVEü#0An Error was automatically cleared by the driverý#CF_ERROR_CLEAREDþ#$c718ceaa-635a-4cfd-ba2c-768a82c26857ÿ#A Connector options: Options to specify properties of a connector $ 2882327493$ConnectorOptions$ No option$CO_NONE$¸ Scan the IO-configuration with segmented transfer is supported. In this case, the call of IoDrvScanModules() can return ERR_PENDING to get further calls to transmit more scan results. $CO_SCAN_PENDING_SUPPORTED$$62a7a276-ff5c-4692-9d2b-ead8aef2ed09$= Types of connectors. "0x8000..0x8FFF" are Special Connectors$ 4271018223$ConnectorTypes$6 Programmable connector (can be programmed by CoDeSys)$CT_PROGRAMMABLE$! Connector is only parametrizable$CT_PARAMETRIZABLE$ CANbus$ CT_CAN_BUS$ CANopen Master$ CT_CAN_MASTER$ CANopen Remote Slave$CT_CAN_SLAVE$ CANopen Local Device $ CT_CAN_DEVICE$ CANopen Safety$CT_CANOPEN_SAFETY$ J1939 Manager$CT_J1939_MANAGER$ J1939 ECU$CT_J1939_ECU$ CANopen Safety Slave$CT_CANOPEN_SAFETY_SLAVE$ Profibus Master$CT_PROFIBUS_MASTER $ Profibus Slave¡$CT_PROFIBUS_SLAVE¢$ Profibus Device£$CT_PROFIBUS_DEVICE¤$ Profibus modular Master¥$CT_PROFIBUS_MOD_MASTER¦$ Profibus modular Slave§$CT_PROFIBUS_MOD_SLAVE¨$ Profibus DeviceNet Master©$CT_DEVICENET_MASTERª$ Profibus DeviceNet Slave«$CT_DEVICENET_SLAVE¬$ DeviceNet Device$CT_DEVICENET_DEVICE®$ EtherCAT Master¯$CT_ETHERCAT_MASTER°$ EtherCAT Slave±$CT_ETHERCAT_SLAVE²$ EtherCAT Device³$CT_ETHERCAT_DEVICE´$ EtherNet/IP Scannerµ$CT_ENIP_SCANNER¶$ EtherNet/IP Remote Adapter·$CT_ENIP_REMOTE_ADAPTER¸$ PCI Master¹$ CT_PCI_MASTERº$ PCI Slave»$CT_PCI_SLAVE¼$$c87be3b5-dafe-4495-952e-a6dffce8842d½$ 3062691420¾$DriverPropertyFlags¿$ IO-driver realizes bit-consistency by its own (atomar bit access). If this flag is 0, the bit-consistency is provided by the IO-Manager.À$DRVPROP_CONSISTENCYÁ$¨ The io driver needs a cyclic call TO the IoDrvWatchdogTrigger INTERFACE FUNCTION. The io manager will call the io driver approximately every Watchdogtime/2. The Watchdogtime must be set in the IoConfig parameters (ID 0x70000001). ATTENTION: The io manager will pass a NULL pointer as parameter pConnector to the IIoDrv interface function IoDrvWatchdogTrigger. If this flag is 0, the driver must trigger the watchdog itself.Â$DRVPROP_WATCHDOGÃ$u IO-driver can support redundancy. If the flag DRVPROP_REDUNDANCY is 1, the redundancy is provided by the IO-Manager.Ä$DRVPROP_REDUNDANCYÅ$I If the flag DRVPROP_ACTIVE is 1, the master is active otherwise passive.Æ$DRVPROP_ACTIVEÇ$ The flag DRVPROP_ERROR_ACTIVE is used to tell the redundancy component that the active master has an error and it should switchover (only on active plc).È$DRVPROP_ERROR_ACTIVEÉ$j The flag DRVPROP_ERROR_PASSIVE can be set to inform redundancy component that the communication was lost.Ê$DRVPROP_ERROR_PASSIVEË$ If this property is set, the interface function IoDrvGetModuleDiagnosis() of the driver is called cyclically from a background task. NOTE: In this case, IoDrvGetModuleDiagnosis is called with: IoDrvGetModuleDiagnosis(hIoDrv, NULL); This must be handled correctly in the IO-driver! Ì$DRVPROP_BACKGROUND_GETDIAGÍ$à Disable synchronization for ReadInputs/WriteOutputs/StartBusCycle in the I/O Manager (CmpIoMgr). In this case the I/O driver has to implement the synchronization of these functions itself. CmpIoMgr provides the following functions that can be used by the I/O driver for synchronization: IoMgrLockEnter(), IoMgrLockLeave() Î$DRVPROP_NO_SYNCÏ$$49ec242b-5a81-4d85-9c22-00f1a2026752Ð$ Scopes for mutual-exclusion locks to be used with the ``dwLockScope`` parameters of the functions ``IoMgrLockEnter()`` and ``IoMgrLockLeave()``. Note: Use both locks ``IOMGR_LOCK_WRITE_OUTPUTS OR IOMGR_LOCK_READ_INPUTS`` in the function ``IoDrvStartBusCycle()``.Ñ$ 1750284199Ò$ LockScopesÓ$F Lock critical sections in IoDrvReadInputs() and IoDrvStartBusCycle().Ô$IOMGR_LOCK_READ_INPUTSÕ$H Lock critical sections in IoDrvWriteOutputs() and IoDrvStartBusCycle().Ö$IOMGR_LOCK_WRITE_OUTPUTS×$$8293b298-c8b3-457c-a427-e9ab569ef5b0Ø$ Parameter value flagsÙ$ 2737844889Ú$ParameterValueFlagsÛ$A Functional access TO the parameter, Value is a FUNCTION POINTER.Ü$PVF_FUNCTIONÝ$ Value is a pointer to the valueÞ$PVF_POINTERß$F Value can be interpreted directly as a value (max. 32 Bit datatypes).à$ PVF_VALUEá$ Parameter can be read.â$PVF_READã$ Parameter can be writtenä$ PVF_WRITEå$a Output is bidirectional. There will be a call in IoDrvWriteOutputs as well as in IoDrvReadInputsæ$PVF_BIDIRECTIONALç$$f917dec1-6a21-4f14-b013-9452261c64dbè$# Types of IO-channels in a task mapé$ 3184734194ê$TaskMapTypesë$ Input connector mapsì$ TMT_INPUTSí$ Output connector mapsî$TMT_OUTPUTSï$$5b8f49a3-c5d0-4510-93fe-4205d28c3905ð$ 2201444556ñ$EventIDsò$CMPID_CmpIoMgró$ Parameter IDô$EVTPARAMID_CmpIoMgrõ$ Parameter versionö$EVTVERSION_CmpIoMgr÷$3Event is sent before updating the IO-configuration.ø$EVT_PrepareUpdateConfigurationù$2Event is sent after updating the IO-configuration.ú$EVT_UpdateConfigurationDoneû$6Event is sent after the config application is started.ü$EVT_ConfigAppStartedDoneý$7Event is sent before the config application is stopped.þ$EVT_PrepareConfigAppStoppedÿ$6Event is sent after the config application is stopped.%EVT_ConfigAppStoppedDone%$a036c876-a9b4-48d2-ad0b-64d64266326b%0 Type of the bus cycle to differenciate between:% 1947881383%BusCycleType %9 Bus Cycle is executed at the beginning of the task cycle% BCT_START%3 Bus Cycle is executed at the end of the task cycle%BCT_END%$cd022f44-7898-4d97-b223-ba8a1334a3fe%analysis%-27, -31, -33, -43% 4038458023%SVN_Info_Summary%® Version-Summary-Tag ähnlich zu svnversion.exe. * Beispiel, '12:34M' bedeutet MINREV=12, MAXREV=34, Geändert. * (Siehe SVN-Dokumentation für weitere Informationen) %35125M%sVersionSummary%$1e48524d-73cb-46d1-b590-36eb2c1a7c3f%-27, -31, -33, -43, -113% 1943799135%SVN_Info_SummaryW%WString%wsVersionSummary%$9755c5b0-2092-4717-b940-0c916fcb381c% 3734062428%SVN_Info_URI% Die SVN-URL des Projekts: %^svn://server04/LibrariesV3Source/branches/V3.5.15.0/Intern/IoDriverBase/IoStandard/IoStandard/%wURL%$b1ef4121-f1a4-4c26-958e-7db6863465e5% 4210413777%SVN_Info_Revisions %* Die kleinste Revision der Arbeitskopie. ¡%LInt¢% liMinRevision£%* Die höchste Revision der Arbeitskopie. ¤% liMaxRevision¥%$58c55deb-e981-48ac-bd9d-96ba99db81ac¦% 4231687110§%SVN_Info_Flags¨% TRUE, wenn die Arbeitskopie unvollständig ist * (z.B. die letzte Aktualisierung wegen Verbindungsproblemen abgebrochen, oder lückenhaftes Checkout) ©%xIncompleteª%( TRUE, wenn es lokale Ãnderungen gibt «% xModified¬%/ TRUE, wenn es umgeschaltete Unterbäume gibt % xSwitched®% TRUE, wenn die Version sauber ist. * (MINREVISION == MAXREVISION, nicht unvollständig, nicht geändert, nicht umgeschaltet.) ¯%xClean°%$8e8e011c-3eb6-4b86-9c71-d98f353a1692±%â Warnung: Die Werte der "letzen Ãnderung" hier ist nur genau, wenn der Status ihres Arbeitsverzeichnisses sauber ist. Beispielsweise sind die Werte ungenau, wenn gemischte Revisionen oder lokale Ãnderungen vorhanden sind. ²% 1257847159³%SVN_Info_LastChange´%È Datum und Uhrzeit der letzten Ãnderung als IEC DateTime(UTC). Sie können die IEC Time Bibliotheken verwenden, um auf die lokale Zeit der SPS umzurechnen und nach Ihren Wünschen zu formattieren. µ%DateAndTime¶%dtLastChangeUtc·%È Letzte Ãnderung vorformatiert im Format "2006-07-22 21:42:37 -0700 (Sat, 22 Jul 2006)" (analog zum * SVN-Schlüsselwort $Date$ Keyword), mit Verwendung der lokalen Zeitdes Entwicklungsrechners. ¸%,2019-06-05 08:48:56 +0200 (Wed, 05 Jun 2019)¹%wsLastChangeLocalº% Der Autor des letzen Commits. »%b.brueckmann¼%wsLastChangeAuthor½%$a141e132-98bc-4040-98d9-5ab52651951a¾%global_init_slot¿%40000À% 2434124423Á% GVL_hiddenÂ%gc_CLASSID_LicenseÃ%TimeÄ%gc_tDemoÅ%g_tDemoTimeÆ%g_olmÇ%AGlobal, IsCompiled, Absolut, Initialized, OnlChangeExit, TypifiedÈ% g_udiStartÉ%$60802aa3-0da6-43f2-b1c6-612c13d38103Ê% 3998489052Ë%$6c565d0a-715a-4bda-9c41-364072c0854fÌ%RTS_ACCESS_MODEÍ% 3616192811Î%AM_READÏ%AM_WRITEÐ% AM_APPENDÑ%AM_READ_PLUSÒ%"Enum, Compiled, Typified, InternalÓ%$f6709db2-0787-4cc0-984b-80f9dc50344cÔ%F{attribute 'conditionalshow' := '3SLib_Developer'} {attribute 'hide'}Õ% 4261187534Ö% Variables×%stLogStringØ% pLogStringÙ%$cd51317e-3db2-44da-bb88-6b22ca144fe3Ú% no_assignÛ% 3824552580Ü% GVL_CfUnitÝ%CfUnitRunnerÞ%aGlobal, IsCompiled, Absolut, LocationChanged, OnlChangeCopy, OnlChangeInit, Initialized, Typifiedß%W Indication of whether the last instantiated test suite has an assert instance created à%TestSuiteAssertRegisteredá%! Current test suite being called â%CurrentTestSuiteBeingCalledã%# Current name of test being called ä%CurrentTestNameBeingCalledå%C Whether or not the current test being called has finished running æ%CurrentTestIsFinishedç%û This is a flag that indicates that the current test should be ignored, and thus that all assertions under it should be ignored as well. A test can be ignored either because the user has requested so, or because the test is a duplicate name è%IgnoreCurrentTesté%b The assert function block instance should be 1:1 mapped to the test suite instance path. ê%NumberOfInitializedTestSuitesë%TestSuiteAddressesì%MaxNumberOfTestSuitesí%!Compiled, OnlineChanged, Typifiedî%$78472b76-c9a4-4b27-a580-8e7898edc3d7ï%strictð% 2220631024ñ% E_XmlErrorò%Okó%ErrorMaxBufferLenô%ErrorStringLenõ%Errorö%$05a4fdda-1086-47b5-ad10-7c2bac568355÷% parameterlistø% 2927770536ù%" Filesize in bytes (32 kb default)ú%$69588962-bd3e-4958-957e-7bfb94609af1û% 4284228194ü%$cadec786-f15c-46d7-8a5f-f8454136b189ý% 356200577þ% GVL_Systemÿ% _ST_Logger& _CmpCfLog&$7e465938-43b3-4ac5-bae5-c19fce2bd2bf&¥ | Access mode | File modes to open a file. .. note:: For all ``*_PLUS`` modes be aware, that after reading from a file, writing can only be done after a call to |SysFileGetPos| or |SysFileSetPos|! If you call |SysFileWrite| right after |SysFileRead|, the file pointer could be on an invalid position! Correct example:: SysFileRead(); SysFileGetPos(); SysFileWrite();&K Open an existing file with Read access. If file does not exist, Open fails&L Create new file with Write access. If file does exist, content is discarded &Z Open an existing file with Append (only write) access. If file does not exist, Open fails&Q Open an existing file with Read/Write access. If file does not exist, Open fails&Q Create new file with Read/Write access. If file does exist, content is discarded&g Open an existing file with Append (read/write) access. If file does not exist, Open creates a new file&$52A6FD6D-031C-41c0-A818-0F45FE19AF8F& 3969002541&TYPE_INTERFACE&$18308f84-bb54-40d0-ae45-a2e8c891c222& 1265334668&Errors& Ok&ERR_OK&5 General error - to be used only for internal errors & ERR_FAILED&% Invalid parameter for this operation& ERR_PARAMETER&e Function cannot be executed, since component has not been initialized yet. It may work later, though&ERR_NOTINITIALIZED& Version conflict&ERR_VERSION& Operation timed out&ERR_TIMEOUT&- Insufficient memory to carry out the request&ERR_NOBUFFER&( For async-calls: call not complete, yet&ERR_PENDING&! To many pending calls. Try later &ERR_NUMPENDING¡& The function is not implemented¢&ERR_NOTIMPLEMENTED£&% No object with the provided id found¤& ERR_INVALIDID¥& Integer overflow¦&ERR_OVERFLOW§&, The size of a buffer is to small or invalid¨&ERR_BUFFERSIZE©&- No object with this specified name availableª& ERR_NO_OBJECT«& No heap memory available¬&ERR_NOMEMORY&0 An object with the same name is still available®& ERR_DUPLICATE¯&> Heap memory was written out of bounds! Memory overwrite error°&ERR_MEMORY_OVERWRITE±& Invalid handle TO an object²&ERR_INVALID_HANDLE³& End OF object reached´&ERR_END_OF_OBJECTµ& No changes done¶& ERR_NO_CHANGE·& Invalid OR unknown INTERFACE¸&ERR_INVALID_INTERFACE¹& Functionality NOT supportedº&ERR_NOT_SUPPORTED»&$ No access rights FOR THIS operation¼&ERR_NO_ACCESS_RIGHTS½&( Specified limits OF a resource exceeded¾&ERR_OUT_OF_LIMITS¿&M Remaining entries that could NOT be transmitted because OF buffer limitationÀ&ERR_ENTRIES_REMAININGÁ& Invalid online sessionidÂ&ERR_INVALID_SESSION_IDÃ& Exception occurredÄ& ERR_EXCEPTIONÅ&& Signature mismatch OF an api FUNCTIONÆ&ERR_SIGNATURE_MISMATCHÇ& Version mismatchÈ&ERR_VERSION_MISMATCHÉ& TYPE mismatchÊ&ERR_TYPE_MISMATCHË& ID mismatchÌ&ERR_ID_MISMATCHÍ& Consistency errorÎ&ERR_NO_CONSISTENCYÏ& No COMM_CYCLE neededÐ&ERR_NO_COMM_CYCLEÑ&' DO NOT suspend task after an exceptionÒ&ERR_DONT_SUSPEND_TASKÓ&* Memory cannot be locked in THIS operationÔ&ERR_MEMORY_LOCK_FAILEDÕ& License missing FOR the runtimeÖ&ERR_LICENSE_MISSING×& Operation deniedØ&ERR_OPERATION_DENIEDÙ& Device errorÚ& ERR_DEVICEÛ& Disk fullÜ& ERR_DISK_FULLÝ& Internal use in runtimeÞ&ERR_CRC_FAILEDß&ERR_MEDIA_ERASEà&T File error. e.g. cannot open a file FOR writing because it could be write PROTECTEDá&ERR_FILE_ERRORâ& No RETAIN memory availableã&ERR_NO_RETAIN_MEMORYä&/ Specified minimum-limit of a resource exceededå&ERR_OUT_OF_LIMITS_MINæ&/ Specified maximum-limit of a resource exceededç&ERR_OUT_OF_LIMITS_MAXè& Size mismatch é&ERR_SIZE_MISMATCHê&> Operation is not yet finished, call function again to proceedë&ERR_CALL_AGAINì&+ Operation has nothing TO DO. No execution.í&ERR_NOTHING_TO_DOî&¹ Some security checks have failed. THIS is a generic error code TO report THIS error over PUBLIC channels. In THIS CASE the error code doesn't provide a detailed cause for the error. */ï&ERR_SECURITY_CHECKS_FAILEDð&ERR_INVALID_SEQUENCEñ&f Dereferencing an IEC reference in IecVarAccess failed due to invalid destination address, e. G. NULL.ò&ERR_INVALID_REFERENCEó&1 Conversion of string encodings was not lossless.ô&ERR_CONVERSION_INCOMPLETEõ& Socket not initialized ö&ERR_SOCK_NOTINITIALIZED÷&& The provided socket handle is invalidø&ERR_SOCK_NOTSOCKETù&$ The address family is NOT supportedú&ERR_SOCK_AFUNSUPPORTEDû& Protocol is NOT supportedü&ERR_SOCK_PROTOUNSUPPORTEDý&( NOT enough buffer TO handle the requestþ&ERR_SOCK_NOBUFFERÿ&8 Socket is in nonblocking mode but THIS call would block'ERR_SOCK_WOULDBLOCK'' The provided address is already in use'ERR_SOCK_ADDRINUSE'7 The provided address is NOT available on THIS computer'ERR_SOCK_ADDRNOTAVAILABLE '/ Connection has been refused BY the remote host'ERR_SOCK_CONNREFUSED'ERR_SOCK_TIMEDOUT' The host has NOT been found'ERR_SOCK_HOSTNOTFOUND' Host is unreachable'ERR_SOCK_HOSTUNREACHABLE' Socket is already connected'ERR_SOCK_ISCONNECTED' The socket is NOT connected'ERR_SOCK_NOTCONNECTED'' Shutdown has been called on the socket'ERR_SOCK_SHUTDOWN'P FOR sockets OF TYPE DGRAM. The package TO send exceeds the maximum package size'ERR_SOCK_MSGSIZE'B Socket has been gracefully closed. No more send/receives allowed 'ERR_SOCK_CLOSED', Tag missing in online communication buffer 'ERR_L7_TAG_MISSING' Unknown command group'ERR_L7_UNKNOWNCMDGROUP'/ Unknown command (within a valid command group)'ERR_L7_UNKNOWNCMD' Level 7 service incomplete'ERR_L7_INCOMPLETE'# Certificate validation error codes'ERR_CERT_OK 'B illegal error (FOR uninitialized values, TO avoid ERR_CERT_OK) */¡'"ERR_CERT_UNABLE_TO_GET_ISSUER_CERT¢'ERR_CERT_UNABLE_TO_GET_CRL£')ERR_CERT_UNABLE_TO_DECRYPT_CERT_SIGNATURE¤'(ERR_CERT_UNABLE_TO_DECRYPT_CRL_SIGNATURE¥'+ERR_CERT_UNABLE_TO_DECODE_ISSUER_PUBLIC_KEY¦'ERR_CERT_SIGNATURE_FAILURE§'ERR_CERT_CRL_SIGNATURE_FAILURE¨'ERR_CERT_NOT_YET_VALID©'ERR_CERT_HAS_EXPIREDª'ERR_CERT_CRL_NOT_YET_VALID«'ERR_CERT_CRL_HAS_EXPIRED¬''ERR_CERT_ERROR_IN_CERT_NOT_BEFORE_FIELD'&ERR_CERT_ERROR_IN_CERT_NOT_AFTER_FIELD®''ERR_CERT_ERROR_IN_CRL_LAST_UPDATE_FIELD¯''ERR_CERT_ERROR_IN_CRL_NEXT_UPDATE_FIELD°'ERR_CERT_OUT_OF_MEM±'$ERR_CERT_DEPTH_ZERO_SELF_SIGNED_CERT²'"ERR_CERT_SELF_SIGNED_CERT_IN_CHAIN³'*ERR_CERT_UNABLE_TO_GET_ISSUER_CERT_LOCALLY´'(ERR_CERT_UNABLE_TO_VERIFY_LEAF_SIGNATUREµ'ERR_CERT_CHAIN_TOO_LONG¶'ERR_CERT_REVOKED·'ERR_CERT_INVALID_CA¸'ERR_CERT_PATH_LENGTH_EXCEEDED¹'ERR_CERT_INVALID_PURPOSEº'ERR_CERT_UNTRUSTED»'ERR_CERT_REJECTED¼'7 These are 'informational' when looking for issuer cert½' ERR_CERT_SUBJECT_ISSUER_MISMATCH¾'ERR_CERT_AKID_SKID_MISMATCH¿'$ERR_CERT_AKID_ISSUER_SERIAL_MISMATCHÀ'ERR_CERT_KEYUSAGE_NO_CERTSIGNÁ'!ERR_CERT_UNABLE_TO_GET_CRL_ISSUERÂ'%ERR_CERT_UNHANDLED_CRITICAL_EXTENSIONÃ'ERR_CERT_KEYUSAGE_NO_CRL_SIGNÄ')ERR_CERT_UNHANDLED_CRITICAL_CRL_EXTENSIONÅ'ERR_CERT_INVALID_NON_CAÆ'#ERR_CERT_PROXY_PATH_LENGTH_EXCEEDEDÇ'&ERR_CERT_KEYUSAGE_NO_DIGITAL_SIGNATUREÈ''ERR_CERT_PROXY_CERTIFICATES_NOT_ALLOWEDÉ'ERR_CERT_INVALID_EXTENSIONÊ'!ERR_CERT_INVALID_POLICY_EXTENSIONË'ERR_CERT_NO_EXPLICIT_POLICYÌ'ERR_CERT_DIFFERENT_CRL_SCOPEÍ'&ERR_CERT_UNSUPPORTED_EXTENSION_FEATUREÎ'ERR_CERT_UNNESTED_RESOURCEÏ'ERR_CERT_PERMITTED_VIOLATIONÐ'ERR_CERT_EXCLUDED_VIOLATIONÑ'ERR_CERT_SUBTREE_MINMAXÒ'$ERR_CERT_UNSUPPORTED_CONSTRAINT_TYPEÓ'&ERR_CERT_UNSUPPORTED_CONSTRAINT_SYNTAXÔ' ERR_CERT_UNSUPPORTED_NAME_SYNTAXÕ'"ERR_CERT_CRL_PATH_VALIDATION_ERRORÖ' The application is not 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