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TORINO grounded verification · testcase

VMMP conservative · requirement

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FileKindRowsChecksum
VME-PROD-VehicleMotionManagement - VMMP_LAC_LACDCF.xlsxrequirement3227385d4165d3
VME-PROD-VehicleMotionManagement - VMMP_LAC_LACDC.xlsxrequirement2216b7ded7f53c
VME-PROD-VehicleMotionManagement - VMMP_LAC_LACCA.xlsxrequirement4574c778fc10e6
VME-PROD-VehicleMotionManagement - VMMP_HMS_HMSTC.xlsxrequirement64bedf4df3644e
VME-PROD-VehicleMotionManagement - VMMP_HMS_HMSPC.xlsxrequirement215707be66b24b8
VME-PROD-VehicleMotionManagement - VMMP_HMS_HMSOP.xlsxrequirement1266cefec4b8c99
VME-PROD-VehicleMotionManagement - VMMP_HMS_HMSHOLD.xlsxrequirement201a9877c98c65e
VME-PROD-VehicleMotionManagement - VMMP_HMS_HMSHC.xlsxrequirement265d3cba95ee982
VME-PROD-VehicleMotionManagement - VMMP_GSC.xlsxrequirement347f9a3530486e
VME-PROD-VehicleMotionManagement - VMMP_FSS.xlsxrequirement2337f6368b69844
VME-PROD-VehicleMotionManagement - VMMP_CRM_CRMSA.xlsxrequirement456fd09d9eaad1
VME-PROD-VehicleMotionManagement - VMMP_CRM_CRMFH.xlsxrequirement656c4154af0fc0
VME-PROD-VehicleMotionManagement - VMMP_CRM_CRMEH.xlsxrequirement4581f06686c151
VME-PROD-VehicleMotionManagement - VMMP_ARB_ARBTJCSC.xlsxrequirement31049e9934afc9
VME-PROD-VehicleMotionManagement - VMMP_ARB_ARBPKCSC.xlsxrequirement187c0b573b3d6e6
VME-PROD-VehicleMotionManagement - VMMP_ARB_ARBLLCSC.xlsxrequirement38774c7265e7d19
VME-PROD-VehicleMotionManagement - VMMP_ARB_ARBLGLSCV.xlsxrequirement12063142cb3cf99
VME-PROD-VehicleMotionManagement - VMMP_ARB_ARBLGLSCA.xlsxrequirement141e177fafd88cb
VME-PROD-VehicleMotionManagement - VMMP_ARB_ARBLGLSA.xlsxrequirement70b23f72842974
VME-PROD-VehicleMotionManagement - VMMP_ARB_ARBLGCSC.xlsxrequirement77cb6690dec872

VME-PROD-VehicleMotionManagement - VMMP_SINFCT_CFBACC.xlsx · source records

RowIDTypeStatusRelevantCandidateReasonNormalized text
216662716.0FoldernoFalsetype_not_target, status_filtered, relevance_filtered
Short description
Short description

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  "column_12": "",
  "Foreign ID": "1117906.0",
  "Description": "",
  "Vehicle Launch": "",
  "Vehicle Platform": "E³ 1.2"
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316662717.0InformationnoFalsetype_not_target, status_filtered, relevance_filtered
The module CFBACC (Customer Function Adaptive Cruise Control) is part of the subfunction SINFCT and contains the customer function
The module CFBACC (Customer Function Adaptive Cruise Control) is part of the subfunction SINFCT and contains the customer function ACC (Adaptive Cruise Control).

It represents the docking station between VMM and the customer function ACC. Customer-specific parts are translated by the latter into a VMM-internal signal language and the interfaces are prepared.

Raw

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  "Text": "The module CFBACC (Customer Function Adaptive Cruise Control) is part of the subfunction SINFCT and contains the customer function ACC (Adaptive Cruise Control).\n\rIt represents the docking station between VMM and the customer function ACC. Customer-specific parts are translated by the latter into a VMM-internal signal language and the interfaces are prepared.",
  "Type": "Information",
  "Status": "",
  "Summary": "",
  "Relevant": "no",
  "column_12": "",
  "Foreign ID": "1117911.0",
  "Description": "The module CFBACC (Customer Function Adaptive Cruise Control) is part of the subfunction SINFCT and contains the customer function ACC (Adaptive Cruise Control).\n\rIt represents the docking station between VMM and the customer function ACC. Customer-specific parts are translated by the latter into a VMM-internal signal language and the interfaces are prepared.",
  "Vehicle Launch": "",
  "Vehicle Platform": "E³ 1.2"
}
416662718.0InformationnoFalsetype_not_target, status_filtered, relevance_filtered
CFB modules consist in general of the Signalmonitoring, different Service Bridges (depending on which Service Bridges are used by
CFB modules consist in general of the Signalmonitoring, different Service Bridges (depending on which Service Bridges are used by the individual Customer Function) and the individual (specific) Customer Function part.

Service Bridges and Signalmonitoring are described in a generic way. The connection between the generic parts (Signalmonitoring and Service Bridges) and the individual customer function and its specific signals and parameters is done by the PreCondition "Service Bridge shall use Signalmonitoring with following signal assignment:". This PreCondition is linked by "is related to" from the individual Customer Function to the generic Service Bridge to the Signalmonitoring.

Service Bridges and Signalmonitoring are described in a generic way because they are used in different CFB modules by using "shared" content.

A Service Bridge is a set of signals for a certain purpose, e.g. LgtCtl = Longitudinal Control of the vehicle or LatCtl = Lateral Control of the vehicle.

Overview of all Service Bridges:

* 

 LgtCtl: Longitudinal Control

* 

 LatCtl: Lateral Control

* 

 WarnBrk: Warn Brake

* 

 StgWhlVib: Steering Wheel Vibration

* 

 LgtLimA: Longitudinal Acceleration Limitation

* 

 LgtLimV: Longitudinal Velocity Limitation

* 

 HldCtl: Hold Control

* 

 PrkCtlAly: Park Control Apply

* 

 PrkCtlRls: Park Control Release

* 

 PrkLockCtl: Park Control Lock

* 

 PreCdn: Preconditioning of Brake System

* 

 HydBrkAsi: Hydraulic Brake Assistant

* 

 LgtDir: Longitudinal Driving Direction Request

* 

 StAcvFct: Currently active subfunction of Customer Function

* 

 FailSafeStop: Fail Safe Stop

* 

 TrjCtl: Trajectory Control

* 

 CrvtLim: Curvature Limitation

* 

 ScndCllsnMtgtn: Second Collision Mitigation

Raw

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  "ASIL": "  ",
  "Text": "CFB modules consist in general of the Signalmonitoring, different Service Bridges (depending on which Service Bridges are used by the individual Customer Function) and the individual (specific) Customer Function part.\n\r \n\rService Bridges and Signalmonitoring are described in a generic way. The connection between the generic parts (Signalmonitoring and Service Bridges) and the individual customer function and its specific signals and parameters is done by the PreCondition \"Service Bridge shall use Signalmonitoring with following signal assignment:\". This PreCondition is linked by \"is related to\" from the individual Customer Function to the generic Service Bridge to the Signalmonitoring.\n\rService Bridges and Signalmonitoring are described in a generic way because they are used in different CFB modules by using \"shared\" content.\n\r \n\rA Service Bridge is a set of signals for a certain purpose, e.g. LgtCtl = Longitudinal Control of the vehicle or LatCtl = Lateral Control of the vehicle.\n\r \n\rOverview of all Service Bridges:\n\r* \n\r \n\r LgtCtl: Longitudinal Control\n\r* \n\r \n\r LatCtl: Lateral Control\n\r* \n\r \n\r WarnBrk: Warn Brake\n\r* \n\r \n\r StgWhlVib: Steering Wheel Vibration\n\r* \n\r \n\r LgtLimA: Longitudinal Acceleration Limitation\n\r* \n\r \n\r LgtLimV: Longitudinal Velocity Limitation\n\r* \n\r \n\r HldCtl: Hold Control\n\r* \n\r \n\r PrkCtlAly: Park Control Apply\n\r* \n\r \n\r PrkCtlRls: Park Control Release\n\r* \n\r \n\r PrkLockCtl: Park Control Lock\n\r* \n\r \n\r PreCdn: Preconditioning of Brake System\n\r* \n\r \n\r HydBrkAsi: Hydraulic Brake Assistant\n\r* \n\r \n\r LgtDir: Longitudinal Driving Direction Request\n\r* \n\r \n\r StAcvFct: Currently active subfunction of Customer Function\n\r* \n\r \n\r FailSafeStop: Fail Safe Stop\n\r* \n\r \n\r TrjCtl: Trajectory Control\n\r* \n\r \n\r CrvtLim: Curvature Limitation\n\r* \n\r \n\r ScndCllsnMtgtn: Second Collision Mitigation",
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  "Relevant": "no",
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  "Foreign ID": "1387895.0",
  "Description": "CFB modules consist in general of the Signalmonitoring, different Service Bridges (depending on which Service Bridges are used by the individual Customer Function) and the individual (specific) Customer Function part.\n\r \n\rService Bridges and Signalmonitoring are described in a generic way. The connection between the generic parts (Signalmonitoring and Service Bridges) and the individual customer function and its specific signals and parameters is done by the PreCondition \"Service Bridge shall use Signalmonitoring with following signal assignment:\". This PreCondition is linked by \"is related to\" from the individual Customer Function to the generic Service Bridge to the Signalmonitoring.\n\rService Bridges and Signalmonitoring are described in a generic way because they are used in different CFB modules by using \"shared\" content.\n\r \n\rA Service Bridge is a set of signals for a certain purpose, e.g. LgtCtl = Longitudinal Control of the vehicle or LatCtl = Lateral Control of the vehicle.\n\r \n\rOverview of all Service Bridges:\n\r* \n\r \n\r LgtCtl: Longitudinal Control\n\r* \n\r \n\r LatCtl: Lateral Control\n\r* \n\r \n\r WarnBrk: Warn Brake\n\r* \n\r \n\r StgWhlVib: Steering Wheel Vibration\n\r* \n\r \n\r LgtLimA: Longitudinal Acceleration Limitation\n\r* \n\r \n\r LgtLimV: Longitudinal Velocity Limitation\n\r* \n\r \n\r HldCtl: Hold Control\n\r* \n\r \n\r PrkCtlAly: Park Control Apply\n\r* \n\r \n\r PrkCtlRls: Park Control Release\n\r* \n\r \n\r PrkLockCtl: Park Control Lock\n\r* \n\r \n\r PreCdn: Preconditioning of Brake System\n\r* \n\r \n\r HydBrkAsi: Hydraulic Brake Assistant\n\r* \n\r \n\r LgtDir: Longitudinal Driving Direction Request\n\r* \n\r \n\r StAcvFct: Currently active subfunction of Customer Function\n\r* \n\r \n\r FailSafeStop: Fail Safe Stop\n\r* \n\r \n\r TrjCtl: Trajectory Control\n\r* \n\r \n\r CrvtLim: Curvature Limitation\n\r* \n\r \n\r ScndCllsnMtgtn: Second Collision Mitigation",
  "Vehicle Launch": "",
  "Vehicle Platform": "E³ 1.2"
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516662719.0FoldernoFalsetype_not_target, status_filtered, relevance_filtered
Interface description
Interface description

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  "Vehicle Platform": "E³ 1.2"
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616662720.0InformationnoFalsetype_not_target, status_filtered, relevance_filtered
The valid versions of the signal and parameter files for the relevant SWRS are:
The valid versions of the signal and parameter files for the relevant SWRS are:

Raw

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  "ASIL": "  ",
  "Text": "The valid versions of the signal and parameter files for the relevant SWRS are:",
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  "Relevant": "no",
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  "Vehicle Launch": "",
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716662721.0InformationnoFalsetype_not_target, status_filtered, relevance_filtered, empty_target_text

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  "Text": "No InterWiki reference defined in properties for 'integrity'",
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  "Status": "",
  "Summary": "",
  "Relevant": "no",
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816662722.0InformationnoFalsetype_not_target, status_filtered, relevance_filtered, empty_target_text

Raw

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  "Text": "No InterWiki reference defined in properties for 'integrity'",
  "Type": "Information",
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  "Summary": "",
  "Relevant": "no",
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  "Description": "No InterWiki reference defined in properties for 'integrity'",
  "Vehicle Launch": "",
  "Vehicle Platform": "E³ 1.2"
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916662723.0InformationnoFalsetype_not_target, status_filtered, relevance_filtered
The valid versions of the signals and parameter files to be find in SWC SWRS "SWRS_VMMP" (SWRS_Id : Chapter 2 "Interface descripti
The valid versions of the signals and parameter files to be find in SWC SWRS "SWRS_VMMP" (SWRS_Id : Chapter 2 "Interface description"

Raw

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  "ASIL": "  ",
  "Text": "The valid versions of the signals and parameter files to be find in SWC SWRS \"SWRS_VMMP\" (SWRS_Id No InterWiki reference defined in properties for 'mks'): Chapter 2 \"Interface description\"",
  "Type": "Information",
  "Status": "",
  "Summary": "",
  "Relevant": "no",
  "column_12": "",
  "Foreign ID": "1387896.0",
  "Description": "The valid versions of the signals and parameter files to be find in SWC SWRS \"SWRS_VMMP\" (SWRS_Id No InterWiki reference defined in properties for 'mks'): Chapter 2 \"Interface description\"",
  "Vehicle Launch": "",
  "Vehicle Platform": "E³ 1.2"
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1016662724.0InformationnoFalsetype_not_target, status_filtered, relevance_filtered
The valid version of the signal and parameter files for test basis to be find in CG, which to be tested.
The valid version of the signal and parameter files for test basis to be find in CG, which to be tested.

Raw

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  "Status": "",
  "Summary": "",
  "Relevant": "no",
  "column_12": "",
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  "Description": "The valid version of the signal and parameter files for test basis to be find in CG, which to be tested.",
  "Vehicle Launch": "",
  "Vehicle Platform": "E³ 1.2"
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1116662725.0FoldernoFalsetype_not_target, status_filtered, relevance_filtered
Presetting/Framework/Definitions
Presetting/Framework/Definitions

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  "Status": "",
  "Summary": "Presetting/Framework/Definitions",
  "Relevant": "no",
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1216662726.0FoldernoFalsetype_not_target, status_filtered, relevance_filtered
Traceability
Traceability

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1316662727.0InformationnoFalsetype_not_target, status_filtered, relevance_filtered
SWRS to Testcase: The latest revision of the test specification document is valid for the tracability SWRS to Testcase
SWRS to Testcase:

The latest revision of the test specification document is valid for the tracability SWRS to Testcase

Raw

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  "column_12": "",
  "Foreign ID": "1387904.0",
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  "Vehicle Launch": "",
  "Vehicle Platform": "E³ 1.2"
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1416662728.0InformationnoFalsetype_not_target, status_filtered, relevance_filtered
SWRS to Codebeamer: Codebeamer-IDs are mentioned in the SWRS atrribute DOORS IDs. The latest baseline of the specification docu
SWRS to Codebeamer: 

Codebeamer-IDs are mentioned in the SWRS atrribute DOORS IDs.

The latest baseline of the specification document (Codebeamer) is valid for the traceability SWRS to Codebeamer.

Raw

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  "column_12": "",
  "Foreign ID": "1387902.0",
  "Description": "SWRS to Codebeamer: \n\rCodebeamer-IDs are mentioned in the SWRS atrribute DOORS IDs.\n\rThe latest baseline of the specification document (Codebeamer) is valid for the traceability SWRS to Codebeamer.",
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1516662729.0FoldernoFalsetype_not_target, status_filtered, relevance_filtered
Toolchain
Toolchain

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  "Text": "Toolchain",
  "Type": "Folder",
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  "column_12": "",
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  "Description": "",
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1616662730.0Non-functionalReleasednoFalsetype_not_target, relevance_filtered
The Matlab/Simulink/TargetLink versions have to be used according to the HCP1-Toolchain.
The Matlab/Simulink/TargetLink versions have to be used according to the HCP1-Toolchain.

Raw

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  "Text": "The Matlab/Simulink/TargetLink versions have to be used according to the HCP1-Toolchain.",
  "Type": "Non-functional",
  "Status": "Released",
  "Summary": "",
  "Relevant": "no",
  "column_12": "",
  "Foreign ID": "1117921.0",
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1716662731.0Non-functionalReleasednoFalsetype_not_target, relevance_filtered
For modeling in Simulink the valid EnProVe catalogue of guidelines has to be used.
For modeling in Simulink the valid EnProVe catalogue of guidelines has to be used.

Raw

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  "Relevant": "no",
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1816662732.0FoldernoFalsetype_not_target, status_filtered, relevance_filtered
Bit numbering
Bit numbering

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1916662733.0Non-functionalReleasednoFalsetype_not_target, relevance_filtered
The bit numbering takes place as zero-based numbering method. This means, 1 Byte is equal to Bit 0...7.
The bit numbering takes place as zero-based numbering method. 

This means, 1 Byte is equal to Bit 0...7.

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2016662734.0FoldernoFalsetype_not_target, status_filtered, relevance_filtered
Tolerances
Tolerances

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2116662735.0Non-functionalReleasednoFalsetype_not_target, relevance_filtered
For the comparison of output signals to the expected reactions or by back-to-back tests (MiL-PiL) following tolerances are accepte
For the comparison of output signals to the expected reactions or by back-to-back tests (MiL-PiL) following tolerances are accepted for deviations:

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2216662736.0Non-functionalReleasednoFalsetype_not_target, relevance_filtered
Bool: No deviation allowed
Bool: No deviation allowed

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  "Text": "\n\r \n\r Bool: No deviation allowed",
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2316662737.0Non-functionalReleasednoFalsetype_not_target, relevance_filtered
UInt, Int: No deviation allowed
UInt, Int: No deviation allowed

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  "Text": "UInt, Int: No deviation allowed",
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2416662738.0Non-functionalReleasednoFalsetype_not_target, relevance_filtered
Float: 0.1% related to the permissible value range of the signal
Float: 0.1% related to the permissible value range of the signal

Raw

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2516662739.0Non-functionalReleasednoFalsetype_not_target, relevance_filtered
It must be ensured that an output reaction occurs due to an event at the input within the same calculation step.
It must be ensured that an output reaction occurs due to an event at the input within the same calculation step.

Raw

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  "ASIL": "  QM",
  "Text": "It must be ensured that an output reaction occurs due to an event at the input within the same calculation step.",
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  "Status": "Released",
  "Summary": "",
  "Relevant": "no",
  "column_12": "",
  "Foreign ID": "1117984.0",
  "Description": "It must be ensured that an output reaction occurs due to an event at the input within the same calculation step.",
  "Vehicle Launch": "",
  "Vehicle Platform": "E³ 1.2"
}
2616662740.0FoldernoFalsetype_not_target, status_filtered, relevance_filtered
Linked Constants
Linked Constants

Raw

{
  "ID": "16662740.0",
  "ASIL": "  ",
  "Text": "Linked Constants",
  "Type": "Folder",
  "Status": "",
  "Summary": "Linked Constants",
  "Relevant": "no",
  "column_12": "",
  "Foreign ID": "1353495.0",
  "Description": "",
  "Vehicle Launch": "",
  "Vehicle Platform": "E³ 1.2"
}
2716662741.0Non-functionalReleasednoFalsetype_not_target, relevance_filtered
Linked constants (defined in SPE) need not to be manipulated during the test. If condition describes different value for linked co
Linked constants (defined in SPE) need not to be manipulated during the test. If condition describes different value for linked constant as defined in SPE, test needs not to be performed.

Raw

{
  "ID": "16662741.0",
  "ASIL": "  QM",
  "Text": "Linked constants (defined in SPE) need not to be manipulated during the test. If condition describes different value for linked constant as defined in SPE, test needs not to be performed.",
  "Type": "Non-functional",
  "Status": "Released",
  "Summary": "",
  "Relevant": "no",
  "column_12": "",
  "Foreign ID": "1353494.0",
  "Description": "Linked constants (defined in SPE) need not to be manipulated during the test. If condition describes different value for linked constant as defined in SPE, test needs not to be performed.",
  "Vehicle Launch": "",
  "Vehicle Platform": "E³ 1.2"
}
2816662742.0FoldernoFalsetype_not_target, status_filtered, relevance_filtered
Properties of Inputsignals
Properties of Inputsignals

Raw

{
  "ID": "16662742.0",
  "ASIL": "  ",
  "Text": "Properties of Inputsignals",
  "Type": "Folder",
  "Status": "",
  "Summary": "Properties of Inputsignals",
  "Relevant": "no",
  "column_12": "",
  "Foreign ID": "1476405.0",
  "Description": "",
  "Vehicle Launch": "",
  "Vehicle Platform": "E³ 1.2"
}
2916662743.0Non-functionalReleasednoFalsetype_not_target, relevance_filtered
Set Signal Classifier Bit consistent with Signal Value: Note: Value (ACC_s_LgtCtlA_MdDeceOnly) and Classifier (ACC_sc_LgtCtlA_MdD
Set Signal Classifier Bit consistent with Signal Value:

Note: Value (ACC_s_LgtCtlA_MdDeceOnly) and Classifier (ACC_sc_LgtCtlA_MdDeceOnly) must not be stimulated independently!

IF:

ACC_s_LgtCtlA_MdDeceOnly = 2

THEN:

Classifier Bit3 (FlgIni) of ACC_sc_LgtCtlA_MdDeceOnly has to be set to True

ELSEIF:

ACC_s_LgtCtlA_MdDeceOnly = 3

THEN:

Classifier Bit2 (FlgErrQlf) of ACC_sc_LgtCtlA_MdDeceOnly has to be set to True

ELSE:

ACC_sc_LgtCtlA_MdDeceOnly could be set to any value within the valid signal range

Raw

{
  "ID": "16662743.0",
  "ASIL": "  QM",
  "Text": "Set Signal Classifier Bit consistent with Signal Value:\n\rNote: Value (ACC_s_LgtCtlA_MdDeceOnly) and Classifier (ACC_sc_LgtCtlA_MdDeceOnly) must not be stimulated independently!\n\r \n\rIF:\n\rACC_s_LgtCtlA_MdDeceOnly = 2\n\rTHEN:\n\rClassifier Bit3 (FlgIni) of ACC_sc_LgtCtlA_MdDeceOnly has to be set to True\n\r \n\rELSEIF:\n\rACC_s_LgtCtlA_MdDeceOnly = 3\n\rTHEN:\n\rClassifier Bit2 (FlgErrQlf) of ACC_sc_LgtCtlA_MdDeceOnly has to be set to True\n\r \n\rELSE:\n\rACC_sc_LgtCtlA_MdDeceOnly could be set to any value within the valid signal range",
  "Type": "Non-functional",
  "Status": "Released",
  "Summary": "",
  "Relevant": "no",
  "column_12": "",
  "Foreign ID": "1476403.0",
  "Description": "Set Signal Classifier Bit consistent with Signal Value:\n\rNote: Value (ACC_s_LgtCtlA_MdDeceOnly) and Classifier (ACC_sc_LgtCtlA_MdDeceOnly) must not be stimulated independently!\n\r \n\rIF:\n\rACC_s_LgtCtlA_MdDeceOnly = 2\n\rTHEN:\n\rClassifier Bit3 (FlgIni) of ACC_sc_LgtCtlA_MdDeceOnly has to be set to True\n\r \n\rELSEIF:\n\rACC_s_LgtCtlA_MdDeceOnly = 3\n\rTHEN:\n\rClassifier Bit2 (FlgErrQlf) of ACC_sc_LgtCtlA_MdDeceOnly has to be set to True\n\r \n\rELSE:\n\rACC_sc_LgtCtlA_MdDeceOnly could be set to any value within the valid signal range",
  "Vehicle Launch": "",
  "Vehicle Platform": "E³ 1.2"
}
3016662744.0Non-functionalReleasednoFalsetype_not_target, relevance_filtered
Set Signal Classifier Bit consistent with Signal Value: Note: Value (ACC_s_LgtCtlA_MdTarDyn) and Classifier (ACC_sc_LgtCtlA_MdTar
Set Signal Classifier Bit consistent with Signal Value:

Note: Value (ACC_s_LgtCtlA_MdTarDyn) and Classifier (ACC_sc_LgtCtlA_MdTarDyn) must not be stimulated independently!

IF:

ACC_s_LgtCtlA_MdTarDyn = 2

THEN:

Classifier Bit3 (FlgIni) of ACC_sc_LgtCtlA_MdTarDyn has to be set to True

ELSEIF:

ACC_s_LgtCtlA_MdTarDyn = 3

THEN:

Classifier Bit2 (FlgErrQlf) of ACC_sc_LgtCtlA_MdTarDyn has to be set to True

ELSE:

ACC_sc_LgtCtlA_MdTarDyn could be set to any value within the valid signal range

Raw

{
  "ID": "16662744.0",
  "ASIL": "  QM",
  "Text": "Set Signal Classifier Bit consistent with Signal Value:\n\rNote: Value (ACC_s_LgtCtlA_MdTarDyn) and Classifier (ACC_sc_LgtCtlA_MdTarDyn) must not be stimulated independently!\n\r \n\rIF:\n\rACC_s_LgtCtlA_MdTarDyn = 2\n\rTHEN:\n\rClassifier Bit3 (FlgIni) of ACC_sc_LgtCtlA_MdTarDyn has to be set to True\n\r \n\rELSEIF:\n\rACC_s_LgtCtlA_MdTarDyn = 3\n\rTHEN:\n\rClassifier Bit2 (FlgErrQlf) of ACC_sc_LgtCtlA_MdTarDyn has to be set to True\n\r \n\rELSE:\n\rACC_sc_LgtCtlA_MdTarDyn could be set to any value within the valid signal range",
  "Type": "Non-functional",
  "Status": "Released",
  "Summary": "",
  "Relevant": "no",
  "column_12": "",
  "Foreign ID": "1476409.0",
  "Description": "Set Signal Classifier Bit consistent with Signal Value:\n\rNote: Value (ACC_s_LgtCtlA_MdTarDyn) and Classifier (ACC_sc_LgtCtlA_MdTarDyn) must not be stimulated independently!\n\r \n\rIF:\n\rACC_s_LgtCtlA_MdTarDyn = 2\n\rTHEN:\n\rClassifier Bit3 (FlgIni) of ACC_sc_LgtCtlA_MdTarDyn has to be set to True\n\r \n\rELSEIF:\n\rACC_s_LgtCtlA_MdTarDyn = 3\n\rTHEN:\n\rClassifier Bit2 (FlgErrQlf) of ACC_sc_LgtCtlA_MdTarDyn has to be set to True\n\r \n\rELSE:\n\rACC_sc_LgtCtlA_MdTarDyn could be set to any value within the valid signal range",
  "Vehicle Launch": "",
  "Vehicle Platform": "E³ 1.2"
}
3116662745.0Non-functionalReleasednoFalsetype_not_target, relevance_filtered
Set Signal Classifier Bit consistent with Signal Value: Note: Value (ACC_s_LgtCtl_StSailReq) and Classifier (ACC_sc_LgtCtl_StSail
Set Signal Classifier Bit consistent with Signal Value:

Note: Value (ACC_s_LgtCtl_StSailReq) and Classifier (ACC_sc_LgtCtl_StSailReq) must not be stimulated independently!

IF:

ACC_s_LgtCtl_StSailReq = 2

THEN:

Classifier Bit3 (FlgIni) of ACC_sc_LgtCtl_StSailReq has to be set to True

ELSEIF:

ACC_s_LgtCtl_StSailReq = 3

THEN:

Classifier Bit2 (FlgErrQlf) of ACC_sc_LgtCtl_StSailReq has to be set to True

ELSE:

ACC_sc_LgtCtl_StSailReq could be set to any value within the valid signal range

Raw

{
  "ID": "16662745.0",
  "ASIL": "  QM",
  "Text": "Set Signal Classifier Bit consistent with Signal Value:\n\rNote: Value (ACC_s_LgtCtl_StSailReq) and Classifier (ACC_sc_LgtCtl_StSailReq) must not be stimulated independently!\n\r \n\rIF:\n\rACC_s_LgtCtl_StSailReq = 2\n\rTHEN:\n\rClassifier Bit3 (FlgIni) of ACC_sc_LgtCtl_StSailReq has to be set to True\n\r \n\rELSEIF:\n\rACC_s_LgtCtl_StSailReq = 3\n\rTHEN:\n\rClassifier Bit2 (FlgErrQlf) of ACC_sc_LgtCtl_StSailReq has to be set to True\n\r \n\rELSE:\n\rACC_sc_LgtCtl_StSailReq could be set to any value within the valid signal range",
  "Type": "Non-functional",
  "Status": "Released",
  "Summary": "",
  "Relevant": "no",
  "column_12": "",
  "Foreign ID": "1476411.0",
  "Description": "Set Signal Classifier Bit consistent with Signal Value:\n\rNote: Value (ACC_s_LgtCtl_StSailReq) and Classifier (ACC_sc_LgtCtl_StSailReq) must not be stimulated independently!\n\r \n\rIF:\n\rACC_s_LgtCtl_StSailReq = 2\n\rTHEN:\n\rClassifier Bit3 (FlgIni) of ACC_sc_LgtCtl_StSailReq has to be set to True\n\r \n\rELSEIF:\n\rACC_s_LgtCtl_StSailReq = 3\n\rTHEN:\n\rClassifier Bit2 (FlgErrQlf) of ACC_sc_LgtCtl_StSailReq has to be set to True\n\r \n\rELSE:\n\rACC_sc_LgtCtl_StSailReq could be set to any value within the valid signal range",
  "Vehicle Launch": "",
  "Vehicle Platform": "E³ 1.2"
}
3216662746.0FoldernoFalsetype_not_target, status_filtered, relevance_filtered
Generic Conditions and Requirements (Service Bridges)
Generic Conditions and Requirements (Service Bridges)

Raw

{
  "ID": "16662746.0",
  "ASIL": "  ",
  "Text": "Generic Conditions and Requirements (Service Bridges)",
  "Type": "Folder",
  "Status": "",
  "Summary": "Generic Conditions and Requirements (Service Bridges)",
  "Relevant": "no",
  "column_12": "",
  "Foreign ID": "1338908.0",
  "Description": "",
  "Vehicle Launch": "",
  "Vehicle Platform": "E³ 1.2"
}
3316662747.0InformationnoFalsetype_not_target, status_filtered, relevance_filtered
The customer function brigde CFBACC consists of the generic Service Bridge of LgtCtl-Service. Every Service Bridge requires the ge
The customer function brigde CFBACC consists of the generic Service Bridge of LgtCtl-Service. Every Service Bridge requires the generic Signalmonitoring.

The Pre Conditions and Functional Requirements of Signalmonitoring and the generic Service Bridges are shared from SWRS_VMMP_SINFCT_CFB_Services (1279786) into this document.

Specific Pre Conditions and Functional Requirements that are just required for CFBACC are defined in this document.

Raw

{
  "ID": "16662747.0",
  "ASIL": "  ",
  "Text": "The customer function brigde CFBACC consists of the generic Service Bridge of LgtCtl-Service. Every Service Bridge requires the generic Signalmonitoring.\n\rThe Pre Conditions and Functional Requirements of Signalmonitoring and the generic Service Bridges are shared from SWRS_VMMP_SINFCT_CFB_Services (1279786) into this document.\n\rSpecific Pre Conditions and Functional Requirements that are just required for CFBACC are defined in this document.",
  "Type": "Information",
  "Status": "",
  "Summary": "",
  "Relevant": "no",
  "column_12": "",
  "Foreign ID": "1338906.0",
  "Description": "The customer function brigde CFBACC consists of the generic Service Bridge of LgtCtl-Service. Every Service Bridge requires the generic Signalmonitoring.\n\rThe Pre Conditions and Functional Requirements of Signalmonitoring and the generic Service Bridges are shared from SWRS_VMMP_SINFCT_CFB_Services (1279786) into this document.\n\rSpecific Pre Conditions and Functional Requirements that are just required for CFBACC are defined in this document.",
  "Vehicle Launch": "",
  "Vehicle Platform": "E³ 1.2"
}
3416662748.0FoldernoFalsetype_not_target, status_filtered, relevance_filtered
Signalmonitoring
Signalmonitoring

Raw

{
  "ID": "16662748.0",
  "ASIL": "  ",
  "Text": "Signalmonitoring",
  "Type": "Folder",
  "Status": "",
  "Summary": "Signalmonitoring",
  "Relevant": "no",
  "column_12": "",
  "Foreign ID": "1353510.0",
  "Description": "",
  "Vehicle Launch": "",
  "Vehicle Platform": "E³ 1.2"
}
3516662749.0InformationnoFalsetype_not_target, status_filtered, relevance_filtered
The Signalmonitoring calculates *StDiagEve based on the merged classifier information, the RangeCheck result, the parameter *TurnO
The Signalmonitoring calculates *StDiagEve based on the merged classifier information, the RangeCheck result, the parameter *TurnOff and the constants *FlgIniExcDet and *FlgErrQlfAcv.

*StDiagEve is the result of the input signal monitoring.

Note: If the Signalmonitoring is used for different services with different ASIL-levels, then the highest ASIL is set in the SWRS document (attribute: ASIL level).

Note: The following linked by name keyword describe two states of an internal boolean information:

* Error qualified

* Error not qualified

* internal error qualification is available

* internal error qualification is NOT available

* Initialization qualified

* Initialization not qualified

* internal initialization qualification is available

* internal initialization qualification is NOT available

Note:

The following functional requirements for case description do not need an Else-Path because general Else-Path is not useful. It is not possible that no case is set. At least one of the following cases will be set. If more than one case is set at the same time, prioritization will be used.

* 

 Valid Case: No errors

* 

 Case: Service bridge is deactivated

* 

 Case: Signal not configured (Bit0)

* 

 Case: Monitoring is not activ (Bit5)

* 

 Case: Initialization unqualified (Bit3 not longer than 500 ms)

* 

 Case: Initialization qualified (Bit3 longer than 500 ms)

* 

 Case: Error (Bit2)

* 

 Case: Suspicious, unqualified error (Bit7 or invalid signal range not longer than 500 ms)

* 

 Case: Not valid, qualified error (Bit7 or invalid signal range longer than 500 ms)

Raw

{
  "ID": "16662749.0",
  "ASIL": "  ",
  "Text": "The Signalmonitoring calculates *StDiagEve based on the merged classifier information, the RangeCheck result, the parameter *TurnOff and the constants *FlgIniExcDet and *FlgErrQlfAcv.\n\r \n\r*StDiagEve is the result of the input signal monitoring.\n\r \n\rNote: If the Signalmonitoring is used for different services with different ASIL-levels, then the highest ASIL is set in the SWRS document (attribute: ASIL level).\n\r \n\rNote: The following linked by name keyword describe two states of an internal boolean information:\n\r* Error qualified\n\r* Error not qualified\n\r* internal error qualification is available\n\r* internal error qualification is NOT available\n\r* Initialization qualified\n\r* Initialization not qualified\n\r* internal initialization qualification is available\n\r* internal initialization qualification is NOT available\n\rNote:\n\rThe following functional requirements for case description do not need an Else-Path because general Else-Path is not useful. It is not possible that no case is set. At least one of the following cases will be set. If more than one case is set at the same time, prioritization will be used.\n\r* \n\r \n\r \n\r Valid Case: No errors\n\r* \n\r \n\r \n\r Case: Service bridge is deactivated\n\r* \n\r \n\r \n\r Case: Signal not configured (Bit0)\n\r* \n\r \n\r \n\r Case: Monitoring is not activ (Bit5)\n\r* \n\r \n\r \n\r Case: Initialization unqualified (Bit3 not longer than 500 ms)\n\r* \n\r \n\r \n\r Case: Initialization qualified (Bit3 longer than 500 ms)\n\r* \n\r \n\r \n\r Case: Error (Bit2)\n\r* \n\r \n\r \n\r Case: Suspicious, unqualified error (Bit7 or invalid signal range not longer than 500 ms)\n\r* \n\r \n\r \n\r Case: Not valid, qualified error (Bit7 or invalid signal range longer than 500 ms)",
  "Type": "Information",
  "Status": "",
  "Summary": "",
  "Relevant": "no",
  "column_12": "",
  "Foreign ID": "1353517.0",
  "Description": "The Signalmonitoring calculates *StDiagEve based on the merged classifier information, the RangeCheck result, the parameter *TurnOff and the constants *FlgIniExcDet and *FlgErrQlfAcv.\n\r \n\r*StDiagEve is the result of the input signal monitoring.\n\r \n\rNote: If the Signalmonitoring is used for different services with different ASIL-levels, then the highest ASIL is set in the SWRS document (attribute: ASIL level).\n\r \n\rNote: The following linked by name keyword describe two states of an internal boolean information:\n\r* Error qualified\n\r* Error not qualified\n\r* internal error qualification is available\n\r* internal error qualification is NOT available\n\r* Initialization qualified\n\r* Initialization not qualified\n\r* internal initialization qualification is available\n\r* internal initialization qualification is NOT available\n\rNote:\n\rThe following functional requirements for case description do not need an Else-Path because general Else-Path is not useful. It is not possible that no case is set. At least one of the following cases will be set. If more than one case is set at the same time, prioritization will be used.\n\r* \n\r \n\r \n\r Valid Case: No errors\n\r* \n\r \n\r \n\r Case: Service bridge is deactivated\n\r* \n\r \n\r \n\r Case: Signal not configured (Bit0)\n\r* \n\r \n\r \n\r Case: Monitoring is not activ (Bit5)\n\r* \n\r \n\r \n\r Case: Initialization unqualified (Bit3 not longer than 500 ms)\n\r* \n\r \n\r \n\r Case: Initialization qualified (Bit3 longer than 500 ms)\n\r* \n\r \n\r \n\r Case: Error (Bit2)\n\r* \n\r \n\r \n\r Case: Suspicious, unqualified error (Bit7 or invalid signal range not longer than 500 ms)\n\r* \n\r \n\r \n\r Case: Not valid, qualified error (Bit7 or invalid signal range longer than 500 ms)",
  "Vehicle Launch": "",
  "Vehicle Platform": "E³ 1.2"
}
3616662750.0InformationnoFalsetype_not_target, status_filtered, relevance_filtered
The classifier signal consists of 1 Byte (Bit0 to Bit7). The classifier information of the input signals are merged to one interna
The classifier signal consists of 1 Byte (Bit0 to Bit7). The classifier information of the input signals are merged to one internal classifier by BitwiseOR-operation (merged classifier).

Bit information:

** Bit0 (FlgSigNotConf)

** Bit1 (FlgValCod - Neutral value)

** Bit2 (FlgErrQlf)

** Bit3 (FlgIni)

** Bit4 (not used)

** Bit5 (FlgMonNotAcv)

** Bit6 (not used)

** Bit7 (FlgErrCur)

Raw

{
  "ID": "16662750.0",
  "ASIL": "  ",
  "Text": "The classifier signal consists of 1 Byte (Bit0 to Bit7). The classifier information of the input signals are merged to one internal classifier by BitwiseOR-operation (merged classifier).\n\rBit information:\n\r** Bit0 (FlgSigNotConf)\n\r** Bit1 (FlgValCod - Neutral value)\n\r** Bit2 (FlgErrQlf)\n\r** Bit3 (FlgIni)\n\r** Bit4 (not used)\n\r** Bit5 (FlgMonNotAcv)\n\r** Bit6 (not used)\n\r** Bit7 (FlgErrCur)",
  "Type": "Information",
  "Status": "",
  "Summary": "",
  "Relevant": "no",
  "column_12": "",
  "Foreign ID": "1353505.0",
  "Description": "The classifier signal consists of 1 Byte (Bit0 to Bit7). The classifier information of the input signals are merged to one internal classifier by BitwiseOR-operation (merged classifier).\n\rBit information:\n\r** Bit0 (FlgSigNotConf)\n\r** Bit1 (FlgValCod - Neutral value)\n\r** Bit2 (FlgErrQlf)\n\r** Bit3 (FlgIni)\n\r** Bit4 (not used)\n\r** Bit5 (FlgMonNotAcv)\n\r** Bit6 (not used)\n\r** Bit7 (FlgErrCur)",
  "Vehicle Launch": "",
  "Vehicle Platform": "E³ 1.2"
}
3716662751.0InformationnoFalsetype_not_target, status_filtered, relevance_filtered
If more than one of the following cases of *StDiagEve output signal are set at the same time and therefore different values for *S
If more than one of the following cases of *StDiagEve output signal are set at the same time and therefore different values for *StDiagEve are requested, then only the value (VMMP_c_DiagEveSigDi, VMMP_c_DiagEveSigNotVld, VMMP_c_DiagEveSigFail, VMMP_c_DiagEveSigIni, VMMP_c_DiagEveSigSusp, VMMP_c_DiagEveSigNone) with highest priority shall be assigned to the output signal *StDiagEve.

The prioritization is done according to the following order:

- prio 1 > prio 2 > prio 3 > prio 4 > prio 5 > prio 6

Raw

{
  "ID": "16662751.0",
  "ASIL": "  ",
  "Text": "If more than one of the following cases of *StDiagEve output signal are set at the same time and therefore different values for *StDiagEve are requested, then only the value (VMMP_c_DiagEveSigDi, VMMP_c_DiagEveSigNotVld, VMMP_c_DiagEveSigFail, VMMP_c_DiagEveSigIni, VMMP_c_DiagEveSigSusp, VMMP_c_DiagEveSigNone) with highest priority shall be assigned to the output signal *StDiagEve.\n\r \n\rThe prioritization is done according to the following order:\n\r- prio 1 > prio 2 > prio 3 > prio 4 > prio 5 > prio 6",
  "Type": "Information",
  "Status": "",
  "Summary": "",
  "Relevant": "no",
  "column_12": "",
  "Foreign ID": "1353519.0",
  "Description": "If more than one of the following cases of *StDiagEve output signal are set at the same time and therefore different values for *StDiagEve are requested, then only the value (VMMP_c_DiagEveSigDi, VMMP_c_DiagEveSigNotVld, VMMP_c_DiagEveSigFail, VMMP_c_DiagEveSigIni, VMMP_c_DiagEveSigSusp, VMMP_c_DiagEveSigNone) with highest priority shall be assigned to the output signal *StDiagEve.\n\r \n\rThe prioritization is done according to the following order:\n\r- prio 1 > prio 2 > prio 3 > prio 4 > prio 5 > prio 6",
  "Vehicle Launch": "",
  "Vehicle Platform": "E³ 1.2"
}
3816662752.0Pre ConditionReleasednoFalsetype_not_target, relevance_filtered
Availability of internal error qualification in signal monitoring Initial state of error qualification: Error not qualified IF
Availability of internal error qualification in signal monitoring

Initial state of error qualification:

Error not qualified

IF [AND(1,2,3,4,5)]: 

1) *TurnOff = false

2) Bit0 (FlgSigNotConf) of merged classifier is NOT set

3) Bit5 (FlgMonNotAcv) of merged classifier is NOT set

4) (VMMP_c_TDiagStart * VMMP_c_FrqSmpl) time steps are over after module execution has been started

5) *FlgErrQlfAcv = true

THEN:

internal error qualification shall be available (internal error qualification is available)

ELSE: 

internal error qualification shall not be available (internal error qualification is NOT available)

Note: "(VMMP_c_TDiagStart * VMMP_c_FrqSmpl) time steps are over after module execution has been started" means, that error qualification is not available within the first time steps after module has started the execution. The number of time steps in which error qualification is not available is defined by the time "VMMP_c_TDiagStart" multiplied by the sample frequency "VMMP_c_FrqSmpl".

Raw

{
  "ID": "16662752.0",
  "ASIL": "  ASIL B",
  "Text": "Availability of internal error qualification in signal monitoring\n\rInitial state of error qualification:\n\rError not qualified\n\rIF [AND(1,2,3,4,5)]: \n\r1) *TurnOff = false\n\r2) Bit0 (FlgSigNotConf) of merged classifier is NOT set\n\r3) Bit5 (FlgMonNotAcv) of merged classifier is NOT set\n\r4) (VMMP_c_TDiagStart * VMMP_c_FrqSmpl) time steps are over after module execution has been started\n\r5) *FlgErrQlfAcv = true\n\rTHEN:\n\rinternal error qualification shall be available (internal error qualification is available)\n\rELSE: \n\rinternal error qualification shall not be available (internal error qualification is NOT available)\n\r \n\rNote: \"(VMMP_c_TDiagStart * VMMP_c_FrqSmpl) time steps are over after module execution has been started\" means, that error qualification is not available within the first time steps after module has started the execution. The number of time steps in which error qualification is not available is defined by the time \"VMMP_c_TDiagStart\" multiplied by the sample frequency \"VMMP_c_FrqSmpl\".",
  "Type": "Pre Condition",
  "Status": "Released",
  "Summary": "",
  "Relevant": "no",
  "column_12": "",
  "Foreign ID": "1353523.0",
  "Description": "Availability of internal error qualification in signal monitoring\n\rInitial state of error qualification:\n\rError not qualified\n\rIF [AND(1,2,3,4,5)]: \n\r1) *TurnOff = false\n\r2) Bit0 (FlgSigNotConf) of merged classifier is NOT set\n\r3) Bit5 (FlgMonNotAcv) of merged classifier is NOT set\n\r4) (VMMP_c_TDiagStart * VMMP_c_FrqSmpl) time steps are over after module execution has been started\n\r5) *FlgErrQlfAcv = true\n\rTHEN:\n\rinternal error qualification shall be available (internal error qualification is available)\n\rELSE: \n\rinternal error qualification shall not be available (internal error qualification is NOT available)\n\r \n\rNote: \"(VMMP_c_TDiagStart * VMMP_c_FrqSmpl) time steps are over after module execution has been started\" means, that error qualification is not available within the first time steps after module has started the execution. The number of time steps in which error qualification is not available is defined by the time \"VMMP_c_TDiagStart\" multiplied by the sample frequency \"VMMP_c_FrqSmpl\".",
  "Vehicle Launch": "",
  "Vehicle Platform": "E³ 1.2"
}
3916662753.0Pre ConditionReleasednoFalsetype_not_target, relevance_filtered
Error qualification This PreCondition is relevant if: Error not qualified IF [AND(1,2)]: 1) unqualified Error (Signal range is
Error qualification

This PreCondition is relevant if:

Error not qualified

IF [AND(1,2)]:

1) unqualified Error (Signal range is invalid OR Bit7 (FlgErrCur) of merged classifier is set) is true for 500 ms after internal error qualification is available

2) internal error qualification is available

THEN:

Error shall be qualified (Error qualified)

ELSE:

Error shall not be qualified (Error not qualified)

Note: There are two kinds of unqualified errors:

* 

 Signal range is invalid defined by RangeCheck

* Bit7 (FlgErrCur) of merged classifier is set

If at least one kind of unqualified error is true, the resulting unqualified error shall be true.

Raw

{
  "ID": "16662753.0",
  "ASIL": "  ASIL B",
  "Text": "Error qualification\n\rThis PreCondition is relevant if:\n\rError not qualified\n\r \n\rIF [AND(1,2)]:\n\r1) unqualified Error (Signal range is invalid OR Bit7 (FlgErrCur) of merged classifier is set) is true for 500 ms after internal error qualification is available\n\r2) internal error qualification is available\n\rTHEN:\n\rError shall be qualified (Error qualified)\n\rELSE:\n\rError shall not be qualified (Error not qualified)\n\r \n\rNote: There are two kinds of unqualified errors:\n\r* \n\r \n\r Signal range is invalid defined by RangeCheck\n\r* Bit7 (FlgErrCur) of merged classifier is set\n\rIf at least one kind of unqualified error is true, the resulting unqualified error shall be true.",
  "Type": "Pre Condition",
  "Status": "Released",
  "Summary": "",
  "Relevant": "no",
  "column_12": "",
  "Foreign ID": "1353521.0",
  "Description": "Error qualification\n\rThis PreCondition is relevant if:\n\rError not qualified\n\r \n\rIF [AND(1,2)]:\n\r1) unqualified Error (Signal range is invalid OR Bit7 (FlgErrCur) of merged classifier is set) is true for 500 ms after internal error qualification is available\n\r2) internal error qualification is available\n\rTHEN:\n\rError shall be qualified (Error qualified)\n\rELSE:\n\rError shall not be qualified (Error not qualified)\n\r \n\rNote: There are two kinds of unqualified errors:\n\r* \n\r \n\r Signal range is invalid defined by RangeCheck\n\r* Bit7 (FlgErrCur) of merged classifier is set\n\rIf at least one kind of unqualified error is true, the resulting unqualified error shall be true.",
  "Vehicle Launch": "",
  "Vehicle Platform": "E³ 1.2"
}
4016662754.0Pre ConditionReleasednoFalsetype_not_target, relevance_filtered
Error dequalification This PreCondition is relevant if: Error qualified IF: unqualified Error is false for 1010 ms THEN: Err
Error dequalification

This PreCondition is relevant if:

Error qualified

IF:

unqualified Error is false for 1010 ms

THEN:

Error shall be dequalified (Error not qualified)

ELSE:

Error shall be qualified (Error qualified)

Raw

{
  "ID": "16662754.0",
  "ASIL": "  ASIL B",
  "Text": "Error dequalification\n\rThis PreCondition is relevant if:\n\rError qualified\n\rIF:\n\runqualified Error is false for 1010 ms\n\rTHEN:\n\rError shall be dequalified (Error not qualified)\n\rELSE:\n\rError shall be qualified (Error qualified)",
  "Type": "Pre Condition",
  "Status": "Released",
  "Summary": "",
  "Relevant": "no",
  "column_12": "",
  "Foreign ID": "1353512.0",
  "Description": "Error dequalification\n\rThis PreCondition is relevant if:\n\rError qualified\n\rIF:\n\runqualified Error is false for 1010 ms\n\rTHEN:\n\rError shall be dequalified (Error not qualified)\n\rELSE:\n\rError shall be qualified (Error qualified)",
  "Vehicle Launch": "",
  "Vehicle Platform": "E³ 1.2"
}
4116662755.0Pre ConditionReleasednoFalsetype_not_target, relevance_filtered
Availability of internal initialization qualification in signal monitoring Initial state of initialization qualification: Initia
Availability of internal initialization qualification in signal monitoring

Initial state of initialization qualification:

Initialization not qualified

IF [AND(1,2,3,4,5)]: 

1) *TurnOff = false

2) Bit0 (FlgSigNotConf) of merged classifier is NOT set

3) Bit5 (FlgMonNotAcv) of merged classifier is NOT set

4) (VMMP_c_TDiagStart * VMMP_c_FrqSmpl) time steps are over after module execution has been started

5) *FlgIniExcDet = true

THEN:

internal initialization qualification shall be available (internal initialization qualification is available)

ELSE: 

internal initialization qualification shall not be available (internal initialization qualification is NOT available)

Note: "(VMMP_c_TDiagStart * VMMP_c_FrqSmpl) time steps are over after module execution has been started" means, that initialization qualification is not available within the first time steps after module has started the execution. The number of time steps in which initialization qualification is not available is defined by the time "VMMP_c_TDiagStart" multiplied by the sample frequency "VMMP_c_FrqSmpl".

Raw

{
  "ID": "16662755.0",
  "ASIL": "  ASIL B",
  "Text": "Availability of internal initialization qualification in signal monitoring\n\rInitial state of initialization qualification:\n\rInitialization not qualified\n\rIF [AND(1,2,3,4,5)]: \n\r1) *TurnOff = false\n\r2) Bit0 (FlgSigNotConf) of merged classifier is NOT set\n\r3) Bit5 (FlgMonNotAcv) of merged classifier is NOT set\n\r4) (VMMP_c_TDiagStart * VMMP_c_FrqSmpl) time steps are over after module execution has been started\n\r5) *FlgIniExcDet = true\n\rTHEN:\n\rinternal initialization qualification shall be available (internal initialization qualification is available)\n\rELSE: \n\rinternal initialization qualification shall not be available (internal initialization qualification is NOT available)\n\r \n\r\n\rNote: \"(VMMP_c_TDiagStart * VMMP_c_FrqSmpl) time steps are over after module execution has been started\" means, that initialization qualification is not available within the first time steps after module has started the execution. The number of time steps in which initialization qualification is not available is defined by the time \"VMMP_c_TDiagStart\" multiplied by the sample frequency \"VMMP_c_FrqSmpl\".",
  "Type": "Pre Condition",
  "Status": "Released",
  "Summary": "",
  "Relevant": "no",
  "column_12": "",
  "Foreign ID": "1353524.0",
  "Description": "Availability of internal initialization qualification in signal monitoring\n\rInitial state of initialization qualification:\n\rInitialization not qualified\n\rIF [AND(1,2,3,4,5)]: \n\r1) *TurnOff = false\n\r2) Bit0 (FlgSigNotConf) of merged classifier is NOT set\n\r3) Bit5 (FlgMonNotAcv) of merged classifier is NOT set\n\r4) (VMMP_c_TDiagStart * VMMP_c_FrqSmpl) time steps are over after module execution has been started\n\r5) *FlgIniExcDet = true\n\rTHEN:\n\rinternal initialization qualification shall be available (internal initialization qualification is available)\n\rELSE: \n\rinternal initialization qualification shall not be available (internal initialization qualification is NOT available)\n\r \n\r\n\rNote: \"(VMMP_c_TDiagStart * VMMP_c_FrqSmpl) time steps are over after module execution has been started\" means, that initialization qualification is not available within the first time steps after module has started the execution. The number of time steps in which initialization qualification is not available is defined by the time \"VMMP_c_TDiagStart\" multiplied by the sample frequency \"VMMP_c_FrqSmpl\".",
  "Vehicle Launch": "",
  "Vehicle Platform": "E³ 1.2"
}
4216662756.0Pre ConditionReleasednoFalsetype_not_target, relevance_filtered
Initialization qualification This PreCondition is relevant if: Initialization not qualified If Signalmonitoring is applied for
Initialization qualification

This PreCondition is relevant if:

Initialization not qualified

If Signalmonitoring is applied for the ServiceBridges LgtCtl, LatCtl, WarnBrk, StgWhlVib, LgtLimA, LgtLimV, HldCtl, PrkCtlAly, PrkCtlRls, PreCdn, HydBrkAsi, LgtDir, StAcvFct, FailSafeStop, TrjCtl, CrvtLim or ScndCllsnMtgtn, the following condition shall be used:

IF [AND(1,2)]:

1) after internal initialization qualification is available unqualified Bit3 (FlgIni) of merged classifier is true for 500 ms

2) internal initialization qualification is available

THEN:

Initialization shall be qualified (Initialization qualified)

ELSE:

Initialization shall not be qualified (Initialization not qualified)

Note: The initialization qualification time for PrkLockCtl Service Bridge is different to all other Service Bridges ( LgtCtl, LatCtl, WarnBrk, StgWhlVib, LgtLimA, LgtLimV, HldCtl, PrkCtlAly, PrkCtlRls, PreCdn, HydBrkAsi, LgtDir, StAcvFct, FailSafeStop, TrjCtl, CrvtLim, ScndCllsnMtgtn).

Raw

{
  "ID": "16662756.0",
  "ASIL": "  ASIL B",
  "Text": "Initialization qualification\n\rThis PreCondition is relevant if:\n\rInitialization not qualified\n\r \n\rIf Signalmonitoring is applied for the ServiceBridges LgtCtl, LatCtl, WarnBrk, StgWhlVib, LgtLimA, LgtLimV, HldCtl, PrkCtlAly, PrkCtlRls, PreCdn, HydBrkAsi, LgtDir, StAcvFct, FailSafeStop, TrjCtl, CrvtLim or ScndCllsnMtgtn, the following condition shall be used:\n\rIF [AND(1,2)]:\n\r1) after internal initialization qualification is available unqualified Bit3 (FlgIni) of merged classifier is true for 500 ms\n\r2) internal initialization qualification is available\n\rTHEN:\n\rInitialization shall be qualified (Initialization qualified)\n\rELSE:\n\rInitialization shall not be qualified (Initialization not qualified)\n\r \n\rNote: The initialization qualification time for PrkLockCtl Service Bridge is different to all other Service Bridges ( LgtCtl, LatCtl, WarnBrk, StgWhlVib, LgtLimA, LgtLimV, HldCtl, PrkCtlAly, PrkCtlRls, PreCdn, HydBrkAsi, LgtDir, StAcvFct, FailSafeStop, TrjCtl, CrvtLim, ScndCllsnMtgtn).",
  "Type": "Pre Condition",
  "Status": "Released",
  "Summary": "",
  "Relevant": "no",
  "column_12": "",
  "Foreign ID": "1353522.0",
  "Description": "Initialization qualification\n\rThis PreCondition is relevant if:\n\rInitialization not qualified\n\r \n\rIf Signalmonitoring is applied for the ServiceBridges LgtCtl, LatCtl, WarnBrk, StgWhlVib, LgtLimA, LgtLimV, HldCtl, PrkCtlAly, PrkCtlRls, PreCdn, HydBrkAsi, LgtDir, StAcvFct, FailSafeStop, TrjCtl, CrvtLim or ScndCllsnMtgtn, the following condition shall be used:\n\rIF [AND(1,2)]:\n\r1) after internal initialization qualification is available unqualified Bit3 (FlgIni) of merged classifier is true for 500 ms\n\r2) internal initialization qualification is available\n\rTHEN:\n\rInitialization shall be qualified (Initialization qualified)\n\rELSE:\n\rInitialization shall not be qualified (Initialization not qualified)\n\r \n\rNote: The initialization qualification time for PrkLockCtl Service Bridge is different to all other Service Bridges ( LgtCtl, LatCtl, WarnBrk, StgWhlVib, LgtLimA, LgtLimV, HldCtl, PrkCtlAly, PrkCtlRls, PreCdn, HydBrkAsi, LgtDir, StAcvFct, FailSafeStop, TrjCtl, CrvtLim, ScndCllsnMtgtn).",
  "Vehicle Launch": "",
  "Vehicle Platform": "E³ 1.2"
}
4316662757.0Pre ConditionReleasednoFalsetype_not_target, relevance_filtered
Initialization dequalification This PreCondition is relevant if: Initialization qualified If Signalmonitoring is applied for th
Initialization dequalification

This PreCondition is relevant if:

Initialization qualified

If Signalmonitoring is applied for the ServiceBridges LgtCtl, LatCtl, WarnBrk, StgWhlVib, LgtLimA, LgtLimV, HldCtl, PrkCtlAly, PrkCtlRls, PreCdn, HydBrkAsi, LgtDir, StAcvFct, FailSafeStop, TrjCtl, CrvtLim or ScndCllsnMtgtn, the following condition shall be used:

IF:

unqualified Bit3 (FlgIni) of merged classifier is false for 1010 ms

THEN:

Initialization shall be dequalified (Initialization not qualified)

ELSE:

Initialization shall be qualified (Initialization qualified)

Note: The initialization dequalification time for PrkLockCtl Service Bridge is different to all other Service Bridges ( LgtCtl, LatCtl, WarnBrk, StgWhlVib, LgtLimA, LgtLimV, HldCtl, PrkCtlAly, PrkCtlRls, PreCdn, HydBrkAsi, LgtDir, StAcvFct, FailSafeStop, TrjCtl, CrvtLim, ScndCllsnMtgtn).

Raw

{
  "ID": "16662757.0",
  "ASIL": "  ASIL B",
  "Text": "Initialization dequalification\n\rThis PreCondition is relevant if:\n\rInitialization qualified\n\r \n\rIf Signalmonitoring is applied for the ServiceBridges LgtCtl, LatCtl, WarnBrk, StgWhlVib, LgtLimA, LgtLimV, HldCtl, PrkCtlAly, PrkCtlRls, PreCdn, HydBrkAsi, LgtDir, StAcvFct, FailSafeStop, TrjCtl, CrvtLim or ScndCllsnMtgtn, the following condition shall be used:\n\rIF:\n\runqualified Bit3 (FlgIni) of merged classifier is false for 1010 ms\n\rTHEN:\n\rInitialization shall be dequalified (Initialization not qualified)\n\rELSE:\n\rInitialization shall be qualified (Initialization qualified)\n\r \n\rNote: The initialization dequalification time for PrkLockCtl Service Bridge is different to all other Service Bridges ( LgtCtl, LatCtl, WarnBrk, StgWhlVib, LgtLimA, LgtLimV, HldCtl, PrkCtlAly, PrkCtlRls, PreCdn, HydBrkAsi, LgtDir, StAcvFct, FailSafeStop, TrjCtl, CrvtLim, ScndCllsnMtgtn).",
  "Type": "Pre Condition",
  "Status": "Released",
  "Summary": "",
  "Relevant": "no",
  "column_12": "",
  "Foreign ID": "1353514.0",
  "Description": "Initialization dequalification\n\rThis PreCondition is relevant if:\n\rInitialization qualified\n\r \n\rIf Signalmonitoring is applied for the ServiceBridges LgtCtl, LatCtl, WarnBrk, StgWhlVib, LgtLimA, LgtLimV, HldCtl, PrkCtlAly, PrkCtlRls, PreCdn, HydBrkAsi, LgtDir, StAcvFct, FailSafeStop, TrjCtl, CrvtLim or ScndCllsnMtgtn, the following condition shall be used:\n\rIF:\n\runqualified Bit3 (FlgIni) of merged classifier is false for 1010 ms\n\rTHEN:\n\rInitialization shall be dequalified (Initialization not qualified)\n\rELSE:\n\rInitialization shall be qualified (Initialization qualified)\n\r \n\rNote: The initialization dequalification time for PrkLockCtl Service Bridge is different to all other Service Bridges ( LgtCtl, LatCtl, WarnBrk, StgWhlVib, LgtLimA, LgtLimV, HldCtl, PrkCtlAly, PrkCtlRls, PreCdn, HydBrkAsi, LgtDir, StAcvFct, FailSafeStop, TrjCtl, CrvtLim, ScndCllsnMtgtn).",
  "Vehicle Launch": "",
  "Vehicle Platform": "E³ 1.2"
}
4416662758.0FunctionalReleasedyesTrue
Prioritization of *StDiagEve Note: It is possible, that two or more of the following cases are true at the same time: * Case: Se
Prioritization of *StDiagEve

Note: It is possible, that two or more of the following cases are true at the same time:

* Case: Service bridge is deactivated

* Case: Signal not configured (Bit0)

* Case: Monitoring is not activ (Bit5)

* Case: Initialization unqualified (Bit3 not longer than 500 ms)

* Case: Initialization qualified (Bit3 longer than 500 ms)

* Case: Error (Bit2)

* Case: Suspicious, unqualified error (Bit7 or invalid signal range not longer than 500 ms)

* Case: Not valid, qualified error (Bit7 or invalid signal range longer than 500 ms)

Therefore different values shall be assigned to the signal *StDiagEve. But *StDiagEve shall always take just one value. Therefore the following prioritization shall be applied. The prioritization depends on whether error shall be qualified or error shall not be qualified.

IF: 

Error shall be qualified (Error qualified)

THEN :

- VMMP_c_DiagEveSigDi = prio 1

- VMMP_c_DiagEveSigNotVld = prio 2 

- VMMP_c_DiagEveSigFail = prio 3 

- VMMP_c_DiagEveSigIni = prio 4

- VMMP_c_DiagEveSigSusp = prio 5 

- VMMP_c_DiagEveSigNone = prio 6

ELSE :

- VMMP_c_DiagEveSigDi = prio 1

- VMMP_c_DiagEveSigFail = prio 2 

- VMMP_c_DiagEveSigNotVld = prio 3 

- VMMP_c_DiagEveSigIni = prio 4

- VMMP_c_DiagEveSigSusp = prio 5 

- VMMP_c_DiagEveSigNone = prio 6

Raw

{
  "ID": "16662758.0",
  "ASIL": "  ASIL B",
  "Text": "Prioritization of *StDiagEve\n\rNote: It is possible, that two or more of the following cases are true at the same time:\n\r* Case: Service bridge is deactivated\n\r* Case: Signal not configured (Bit0)\n\r* Case: Monitoring is not activ (Bit5)\n\r* Case: Initialization unqualified (Bit3 not longer than 500 ms)\n\r* Case: Initialization qualified (Bit3 longer than 500 ms)\n\r* Case: Error (Bit2)\n\r* Case: Suspicious, unqualified error (Bit7 or invalid signal range not longer than 500 ms)\n\r* Case: Not valid, qualified error (Bit7 or invalid signal range longer than 500 ms)\n\rTherefore different values shall be assigned to the signal *StDiagEve. But *StDiagEve shall always take just one value. Therefore the following prioritization shall be applied. The prioritization depends on whether error shall be qualified or error shall not be qualified.\n\r \n\rIF: \n\rError shall be qualified (Error qualified)\n\rTHEN :\n\r- VMMP_c_DiagEveSigDi = prio 1\n\r- VMMP_c_DiagEveSigNotVld = prio 2 \n\r- VMMP_c_DiagEveSigFail = prio 3 \n\r- VMMP_c_DiagEveSigIni = prio 4\n\r- VMMP_c_DiagEveSigSusp = prio 5 \n\r- VMMP_c_DiagEveSigNone = prio 6\n\rELSE :\n\r- VMMP_c_DiagEveSigDi = prio 1\n\r- VMMP_c_DiagEveSigFail = prio 2 \n\r- VMMP_c_DiagEveSigNotVld = prio 3 \n\r- VMMP_c_DiagEveSigIni = prio 4\n\r- VMMP_c_DiagEveSigSusp = prio 5 \n\r- VMMP_c_DiagEveSigNone = prio 6",
  "Type": "Functional",
  "Status": "Released",
  "Summary": "",
  "Relevant": "yes",
  "column_12": "",
  "Foreign ID": "1353516.0",
  "Description": "Prioritization of *StDiagEve\n\rNote: It is possible, that two or more of the following cases are true at the same time:\n\r* Case: Service bridge is deactivated\n\r* Case: Signal not configured (Bit0)\n\r* Case: Monitoring is not activ (Bit5)\n\r* Case: Initialization unqualified (Bit3 not longer than 500 ms)\n\r* Case: Initialization qualified (Bit3 longer than 500 ms)\n\r* Case: Error (Bit2)\n\r* Case: Suspicious, unqualified error (Bit7 or invalid signal range not longer than 500 ms)\n\r* Case: Not valid, qualified error (Bit7 or invalid signal range longer than 500 ms)\n\rTherefore different values shall be assigned to the signal *StDiagEve. But *StDiagEve shall always take just one value. Therefore the following prioritization shall be applied. The prioritization depends on whether error shall be qualified or error shall not be qualified.\n\r \n\rIF: \n\rError shall be qualified (Error qualified)\n\rTHEN :\n\r- VMMP_c_DiagEveSigDi = prio 1\n\r- VMMP_c_DiagEveSigNotVld = prio 2 \n\r- VMMP_c_DiagEveSigFail = prio 3 \n\r- VMMP_c_DiagEveSigIni = prio 4\n\r- VMMP_c_DiagEveSigSusp = prio 5 \n\r- VMMP_c_DiagEveSigNone = prio 6\n\rELSE :\n\r- VMMP_c_DiagEveSigDi = prio 1\n\r- VMMP_c_DiagEveSigFail = prio 2 \n\r- VMMP_c_DiagEveSigNotVld = prio 3 \n\r- VMMP_c_DiagEveSigIni = prio 4\n\r- VMMP_c_DiagEveSigSusp = prio 5 \n\r- VMMP_c_DiagEveSigNone = prio 6",
  "Vehicle Launch": "",
  "Vehicle Platform": "E³ 1.2"
}
4516662759.0FunctionalReleasedyesTrue
Valid Case: No errors IF [AND(1,2,3,4,5,6,7)]: 1) *TurnOff = false 2) Bit0 (FlgSigNotConf) of merged classifier is NOT set 3)
Valid Case: No errors

IF [AND(1,2,3,4,5,6,7)]: 

1) *TurnOff = false

2) Bit0 (FlgSigNotConf) of merged classifier is NOT set

3) Bit2 (FlgErrQlf) of merged classifier is NOT set

4) Bit3 (FlgIni) of merged classifier is NOT set

5) Bit5 (FlgMonNotAcv) of merged classifier is NOT set

6) Bit7 (FlgErrCur) of merged classifier is NOT set

7) Signal range is valid

THEN: 

*StDiagEve = VMMP_c_DiagEveSigNone

Raw

{
  "ID": "16662759.0",
  "ASIL": "  ASIL B",
  "Text": "Valid Case: No errors\n\rIF [AND(1,2,3,4,5,6,7)]: \n\r1) *TurnOff = false\n\r2) Bit0 (FlgSigNotConf) of merged classifier is NOT set\n\r3) Bit2 (FlgErrQlf) of merged classifier is NOT set\n\r4) Bit3 (FlgIni) of merged classifier is NOT set\n\r5) Bit5 (FlgMonNotAcv) of merged classifier is NOT set\n\r6) Bit7 (FlgErrCur) of merged classifier is NOT set\n\r7) Signal range is valid\n\rTHEN: \n\r*StDiagEve = VMMP_c_DiagEveSigNone",
  "Type": "Functional",
  "Status": "Released",
  "Summary": "",
  "Relevant": "yes",
  "column_12": "",
  "Foreign ID": "1353507.0",
  "Description": "Valid Case: No errors\n\rIF [AND(1,2,3,4,5,6,7)]: \n\r1) *TurnOff = false\n\r2) Bit0 (FlgSigNotConf) of merged classifier is NOT set\n\r3) Bit2 (FlgErrQlf) of merged classifier is NOT set\n\r4) Bit3 (FlgIni) of merged classifier is NOT set\n\r5) Bit5 (FlgMonNotAcv) of merged classifier is NOT set\n\r6) Bit7 (FlgErrCur) of merged classifier is NOT set\n\r7) Signal range is valid\n\rTHEN: \n\r*StDiagEve = VMMP_c_DiagEveSigNone",
  "Vehicle Launch": "",
  "Vehicle Platform": "E³ 1.2"
}
4616662760.0FunctionalReleasedyesTrue
Case: Service bridge is deactivated IF: *TurnOff = true THEN: *StDiagEve = VMMP_c_DiagEveSigDi
Case: Service bridge is deactivated

IF: 

*TurnOff = true

THEN:

*StDiagEve = VMMP_c_DiagEveSigDi

Raw

{
  "ID": "16662760.0",
  "ASIL": "  ASIL B",
  "Text": "Case: Service bridge is deactivated\n\r \n\r\n\rIF: \n\r*TurnOff = true\n\rTHEN:\n\r*StDiagEve = VMMP_c_DiagEveSigDi",
  "Type": "Functional",
  "Status": "Released",
  "Summary": "",
  "Relevant": "yes",
  "column_12": "",
  "Foreign ID": "1353518.0",
  "Description": "Case: Service bridge is deactivated\n\r \n\r\n\rIF: \n\r*TurnOff = true\n\rTHEN:\n\r*StDiagEve = VMMP_c_DiagEveSigDi",
  "Vehicle Launch": "",
  "Vehicle Platform": "E³ 1.2"
}
4716662761.0FunctionalReleasedyesTrue
Case: Signal not configured (Bit0) IF [AND(1,2)]: 1) *TurnOff = false 2) Bit0 (FlgSigNotConf) of merged classifier is set THE
Case: Signal not configured (Bit0)

IF [AND(1,2)]: 

1) *TurnOff = false

2) Bit0 (FlgSigNotConf) of merged classifier is set

THEN: 

*StDiagEve = VMMP_c_DiagEveSigDi

Raw

{
  "ID": "16662761.0",
  "ASIL": "  ASIL B",
  "Text": "Case: Signal not configured (Bit0)\n\r \n\rIF [AND(1,2)]: \n\r1) *TurnOff = false\n\r2) Bit0 (FlgSigNotConf) of merged classifier is set\n\rTHEN: \n\r*StDiagEve = VMMP_c_DiagEveSigDi",
  "Type": "Functional",
  "Status": "Released",
  "Summary": "",
  "Relevant": "yes",
  "column_12": "",
  "Foreign ID": "1353508.0",
  "Description": "Case: Signal not configured (Bit0)\n\r \n\rIF [AND(1,2)]: \n\r1) *TurnOff = false\n\r2) Bit0 (FlgSigNotConf) of merged classifier is set\n\rTHEN: \n\r*StDiagEve = VMMP_c_DiagEveSigDi",
  "Vehicle Launch": "",
  "Vehicle Platform": "E³ 1.2"
}
4816662762.0FunctionalReleasedyesTrue
Case: Monitoring is not activ (Bit5) IF [AND(1,2)]: 1) *TurnOff = false 2) Bit5 (FlgMonNotAcv) of merged classifier is set TH
Case: Monitoring is not activ (Bit5)

IF [AND(1,2)]: 

1) *TurnOff = false

2) Bit5 (FlgMonNotAcv) of merged classifier is set

THEN: 

*StDiagEve = VMMP_c_DiagEveSigIni

Raw

{
  "ID": "16662762.0",
  "ASIL": "  ASIL B",
  "Text": "Case: Monitoring is not activ (Bit5)\n\r \n\rIF [AND(1,2)]: \n\r1) *TurnOff = false\n\r2) Bit5 (FlgMonNotAcv) of merged classifier is set\n\rTHEN: \n\r*StDiagEve = VMMP_c_DiagEveSigIni",
  "Type": "Functional",
  "Status": "Released",
  "Summary": "",
  "Relevant": "yes",
  "column_12": "",
  "Foreign ID": "1353504.0",
  "Description": "Case: Monitoring is not activ (Bit5)\n\r \n\rIF [AND(1,2)]: \n\r1) *TurnOff = false\n\r2) Bit5 (FlgMonNotAcv) of merged classifier is set\n\rTHEN: \n\r*StDiagEve = VMMP_c_DiagEveSigIni",
  "Vehicle Launch": "",
  "Vehicle Platform": "E³ 1.2"
}
4916662763.0FunctionalReleasedyesTrue
Case: Initialization unqualified (Bit3 not longer than 500 ms) IF [AND(1,2,3)]: 1) *TurnOff = false 2) Bit3 (FlgIni) of merged
Case: Initialization unqualified (Bit3 not longer than 500 ms)

IF [AND(1,2,3)]: 

1) *TurnOff = false

2) Bit3 (FlgIni) of merged classifier is set

3) Bit3 (FlgIni) of merged classifier is NOT qualified (Initialization not qualified)

THEN: 

*StDiagEve = VMMP_c_DiagEveSigIni

Raw

{
  "ID": "16662763.0",
  "ASIL": "  ASIL B",
  "Text": "Case: Initialization unqualified (Bit3 not longer than 500 ms)\n\rIF [AND(1,2,3)]: \n\r1) *TurnOff = false\n\r2) Bit3 (FlgIni) of merged classifier is set\n\r3) Bit3 (FlgIni) of merged classifier is NOT qualified (Initialization not qualified)\n\rTHEN: \n\r*StDiagEve = VMMP_c_DiagEveSigIni",
  "Type": "Functional",
  "Status": "Released",
  "Summary": "",
  "Relevant": "yes",
  "column_12": "",
  "Foreign ID": "1353506.0",
  "Description": "Case: Initialization unqualified (Bit3 not longer than 500 ms)\n\rIF [AND(1,2,3)]: \n\r1) *TurnOff = false\n\r2) Bit3 (FlgIni) of merged classifier is set\n\r3) Bit3 (FlgIni) of merged classifier is NOT qualified (Initialization not qualified)\n\rTHEN: \n\r*StDiagEve = VMMP_c_DiagEveSigIni",
  "Vehicle Launch": "",
  "Vehicle Platform": "E³ 1.2"
}
5016662764.0FunctionalReleasedyesTrue
Case: Initialization qualified (Bit3 longer than 500 ms) IF [AND(1,2,3)]: 1) *TurnOff = false 2) Bit3 (FlgIni) of merged class
Case: Initialization qualified (Bit3 longer than 500 ms)

IF [AND(1,2,3)]: 

1) *TurnOff = false

2) Bit3 (FlgIni) of merged classifier is set

3) Bit3 (FlgIni) of merged classifier is qualified (Initialization qualified)

THEN: 

*StDiagEve = VMMP_c_DiagEveSigNotVld

Raw

{
  "ID": "16662764.0",
  "ASIL": "  ASIL B",
  "Text": "Case: Initialization qualified (Bit3 longer than 500 ms)\n\r \n\rIF [AND(1,2,3)]: \n\r1) *TurnOff = false\n\r2) Bit3 (FlgIni) of merged classifier is set\n\r3) Bit3 (FlgIni) of merged classifier is qualified (Initialization qualified)\n\rTHEN: \n\r*StDiagEve = VMMP_c_DiagEveSigNotVld",
  "Type": "Functional",
  "Status": "Released",
  "Summary": "",
  "Relevant": "yes",
  "column_12": "",
  "Foreign ID": "1353515.0",
  "Description": "Case: Initialization qualified (Bit3 longer than 500 ms)\n\r \n\rIF [AND(1,2,3)]: \n\r1) *TurnOff = false\n\r2) Bit3 (FlgIni) of merged classifier is set\n\r3) Bit3 (FlgIni) of merged classifier is qualified (Initialization qualified)\n\rTHEN: \n\r*StDiagEve = VMMP_c_DiagEveSigNotVld",
  "Vehicle Launch": "",
  "Vehicle Platform": "E³ 1.2"
}
5116662765.0FunctionalReleasedyesTrue
Case: Error (Bit2) IF [AND(1,2)]: 1) *TurnOff = false 2) Bit2 (FlgErrQlf) of merged classifier is set THEN: *StDiagEve = VM
Case: Error (Bit2)

IF [AND(1,2)]: 

1) *TurnOff = false

2) Bit2 (FlgErrQlf) of merged classifier is set

THEN: 

*StDiagEve = VMMP_c_DiagEveSigFail

Raw

{
  "ID": "16662765.0",
  "ASIL": "  ASIL B",
  "Text": "Case: Error (Bit2)\n\rIF [AND(1,2)]: \n\r1) *TurnOff = false\n\r2) Bit2 (FlgErrQlf) of merged classifier is set\n\rTHEN: \n\r*StDiagEve = VMMP_c_DiagEveSigFail",
  "Type": "Functional",
  "Status": "Released",
  "Summary": "",
  "Relevant": "yes",
  "column_12": "",
  "Foreign ID": "1353513.0",
  "Description": "Case: Error (Bit2)\n\rIF [AND(1,2)]: \n\r1) *TurnOff = false\n\r2) Bit2 (FlgErrQlf) of merged classifier is set\n\rTHEN: \n\r*StDiagEve = VMMP_c_DiagEveSigFail",
  "Vehicle Launch": "",
  "Vehicle Platform": "E³ 1.2"
}
5216662766.0FunctionalReleasedyesTrue
Case: Suspicious, unqualified error (Bit7 or invalid signal range not longer than 500 ms) IF [AND(1,OR(2,3),4,5]: 1) *TurnOff =
Case: Suspicious, unqualified error (Bit7 or invalid signal range not longer than 500 ms)

IF [AND(1,OR(2,3),4,5]: 

1) *TurnOff = false

2) Bit7 (FlgErrCur) of merged classifier is set

3) Signal range is invalid

4) Bit7 (FlgErrCur) of merged classifier is set but NOT qualified (Error not qualified)

5) Signal range is invalid but NOT qualified (Error not qualified)

THEN: 

*StDiagEve = VMMP_c_DiagEveSigSusp

Raw

{
  "ID": "16662766.0",
  "ASIL": "  ASIL B",
  "Text": "Case: Suspicious, unqualified error (Bit7 or invalid signal range not longer than 500 ms)\n\r \n\rIF [AND(1,OR(2,3),4,5]: \n\r1) *TurnOff = false\n\r2) Bit7 (FlgErrCur) of merged classifier is set\n\r3) Signal range is invalid\n\r4) Bit7 (FlgErrCur) of merged classifier is set but NOT qualified (Error not qualified)\n\r5) Signal range is invalid but NOT qualified (Error not qualified)\n\rTHEN: \n\r*StDiagEve = VMMP_c_DiagEveSigSusp",
  "Type": "Functional",
  "Status": "Released",
  "Summary": "",
  "Relevant": "yes",
  "column_12": "",
  "Foreign ID": "1353509.0",
  "Description": "Case: Suspicious, unqualified error (Bit7 or invalid signal range not longer than 500 ms)\n\r \n\rIF [AND(1,OR(2,3),4,5]: \n\r1) *TurnOff = false\n\r2) Bit7 (FlgErrCur) of merged classifier is set\n\r3) Signal range is invalid\n\r4) Bit7 (FlgErrCur) of merged classifier is set but NOT qualified (Error not qualified)\n\r5) Signal range is invalid but NOT qualified (Error not qualified)\n\rTHEN: \n\r*StDiagEve = VMMP_c_DiagEveSigSusp",
  "Vehicle Launch": "",
  "Vehicle Platform": "E³ 1.2"
}
5316662767.0FunctionalReleasedyesTrue
Case: Not valid, qualified error (Bit7 or invalid signal range longer than 500 ms) IF [AND(1,OR(2,3)]: 1) *TurnOff = false 2)
Case: Not valid, qualified error (Bit7 or invalid signal range longer than 500 ms)

IF [AND(1,OR(2,3)]: 

1) *TurnOff = false

2) Bit7 (FlgErrCur) of merged classifier is set and qualified (Error qualified)

3) Signal range is invalid and qualified (Error qualified)

THEN: 

*StDiagEve = VMMP_c_DiagEveSigNotVld

Raw

{
  "ID": "16662767.0",
  "ASIL": "  ASIL B",
  "Text": "Case: Not valid, qualified error (Bit7 or invalid signal range longer than 500 ms)\n\r \n\rIF [AND(1,OR(2,3)]: \n\r1) *TurnOff = false\n\r2) Bit7 (FlgErrCur) of merged classifier is set and qualified (Error qualified)\n\r3) Signal range is invalid and qualified (Error qualified)\n\rTHEN: \n\r*StDiagEve = VMMP_c_DiagEveSigNotVld",
  "Type": "Functional",
  "Status": "Released",
  "Summary": "",
  "Relevant": "yes",
  "column_12": "",
  "Foreign ID": "1353511.0",
  "Description": "Case: Not valid, qualified error (Bit7 or invalid signal range longer than 500 ms)\n\r \n\rIF [AND(1,OR(2,3)]: \n\r1) *TurnOff = false\n\r2) Bit7 (FlgErrCur) of merged classifier is set and qualified (Error qualified)\n\r3) Signal range is invalid and qualified (Error qualified)\n\rTHEN: \n\r*StDiagEve = VMMP_c_DiagEveSigNotVld",
  "Vehicle Launch": "",
  "Vehicle Platform": "E³ 1.2"
}
5416662768.0FoldernoFalsetype_not_target, status_filtered, relevance_filtered
LgtCtl Service Bridge
LgtCtl Service Bridge

Raw

{
  "ID": "16662768.0",
  "ASIL": "  ",
  "Text": "LgtCtl Service Bridge",
  "Type": "Folder",
  "Status": "",
  "Summary": "LgtCtl Service Bridge",
  "Relevant": "no",
  "column_12": "",
  "Foreign ID": "1353528.0",
  "Description": "",
  "Vehicle Launch": "",
  "Vehicle Platform": "E³ 1.2"
}
5516662769.0Pre ConditionReleasednoFalsetype_not_target, relevance_filtered
Inputs Signal-Values: CustFctIn_LgtCtl_StAcv CustFctIn_LgtCtlCtlA_ADmd CustFctIn_LgtCtlCtlA_APredTar CustFctIn_LgtCtlCtlA
Inputs 

Signal-Values:

CustFctIn_LgtCtl_StAcv 

CustFctIn_LgtCtlCtlA_ADmd 

CustFctIn_LgtCtlCtlA_APredTar 

CustFctIn_LgtCtlCtlA_AGrdMaxDec 

CustFctIn_LgtCtlCtlA_AGrdMaxInc 

CustFctIn_LgtCtlCtlA_ATlrHiTar 

CustFctIn_LgtCtlCtlA_ATlrHiDyn 

CustFctIn_LgtCtlCtlA_ATlrLoTar 

CustFctIn_LgtCtlCtlA_MdDeceOnly 

CustFctIn_LgtCtlCtlA_MdTarDyn 

CustFctIn_LgtCtlLimD_StAcv 

CustFctIn_LgtCtlLimD_DTar 

CustFctIn_LgtCtlLimD_StUpd 

CustFctIn_LgtCtlStgy_TiRdyDrvOffDmd 

CustFctIn_LgtCtl_StSailReq 

Signal-Classifier:

CustFctIn_LgtCtl_StAcv_sc 

CustFctIn_LgtCtlCtlA_ADmd_sc 

CustFctIn_LgtCtlCtlA_APredTar_sc 

CustFctIn_LgtCtlCtlA_AGrdMaxDec_sc 

CustFctIn_LgtCtlCtlA_AGrdMaxInc_sc 

CustFctIn_LgtCtlCtlA_ATlrHiTar_sc 

CustFctIn_LgtCtlCtlA_ATlrHiDyn_sc 

CustFctIn_LgtCtlCtlA_ATlrLoTar_sc 

CustFctIn_LgtCtlCtlA_MdDeceOnly_sc 

CustFctIn_LgtCtlCtlA_MdTarDyn_sc 

CustFctIn_LgtCtlLimD_StAcv_sc 

CustFctIn_LgtCtlLimD_DTar_sc 

CustFctIn_LgtCtlLimD_StUpd_sc 

CustFctIn_LgtCtlStgy_TiRdyDrvOffDmd_sc 

CustFctIn_LgtCtl_StSailReq_sc 

Parameters 

CustFctIn_LgtCtl_BitFldConf

CustFctIn_LgtCtl_FlgIniExcDet

CustFctIn_LgtCtl_FlgErrQlfAcv

CustFctIn_LgtCtl_TurnOff

Raw

{
  "ID": "16662769.0",
  "ASIL": "  QM",
  "Text": "Inputs \n\rSignal-Values:\n\rCustFctIn_LgtCtl_StAcv \n\rCustFctIn_LgtCtlCtlA_ADmd \n\rCustFctIn_LgtCtlCtlA_APredTar \n\rCustFctIn_LgtCtlCtlA_AGrdMaxDec \n\rCustFctIn_LgtCtlCtlA_AGrdMaxInc \n\rCustFctIn_LgtCtlCtlA_ATlrHiTar \n\rCustFctIn_LgtCtlCtlA_ATlrHiDyn \n\rCustFctIn_LgtCtlCtlA_ATlrLoTar \n\rCustFctIn_LgtCtlCtlA_MdDeceOnly \n\rCustFctIn_LgtCtlCtlA_MdTarDyn \n\r \n\rCustFctIn_LgtCtlLimD_StAcv \n\rCustFctIn_LgtCtlLimD_DTar \n\rCustFctIn_LgtCtlLimD_StUpd \n\r \n\rCustFctIn_LgtCtlStgy_TiRdyDrvOffDmd \n\rCustFctIn_LgtCtl_StSailReq \n\rSignal-Classifier:\n\rCustFctIn_LgtCtl_StAcv_sc \n\rCustFctIn_LgtCtlCtlA_ADmd_sc \n\rCustFctIn_LgtCtlCtlA_APredTar_sc \n\rCustFctIn_LgtCtlCtlA_AGrdMaxDec_sc \n\rCustFctIn_LgtCtlCtlA_AGrdMaxInc_sc \n\rCustFctIn_LgtCtlCtlA_ATlrHiTar_sc \n\rCustFctIn_LgtCtlCtlA_ATlrHiDyn_sc \n\rCustFctIn_LgtCtlCtlA_ATlrLoTar_sc \n\rCustFctIn_LgtCtlCtlA_MdDeceOnly_sc \n\rCustFctIn_LgtCtlCtlA_MdTarDyn_sc \n\r \n\rCustFctIn_LgtCtlLimD_StAcv_sc \n\rCustFctIn_LgtCtlLimD_DTar_sc \n\rCustFctIn_LgtCtlLimD_StUpd_sc \n\r \n\rCustFctIn_LgtCtlStgy_TiRdyDrvOffDmd_sc \n\rCustFctIn_LgtCtl_StSailReq_sc \n\rParameters \n\rCustFctIn_LgtCtl_BitFldConf\n\rCustFctIn_LgtCtl_FlgIniExcDet\n\rCustFctIn_LgtCtl_FlgErrQlfAcv\n\rCustFctIn_LgtCtl_TurnOff",
  "Type": "Pre Condition",
  "Status": "Released",
  "Summary": "",
  "Relevant": "no",
  "column_12": "",
  "Foreign ID": "1353526.0",
  "Description": "Inputs \n\rSignal-Values:\n\rCustFctIn_LgtCtl_StAcv \n\rCustFctIn_LgtCtlCtlA_ADmd \n\rCustFctIn_LgtCtlCtlA_APredTar \n\rCustFctIn_LgtCtlCtlA_AGrdMaxDec \n\rCustFctIn_LgtCtlCtlA_AGrdMaxInc \n\rCustFctIn_LgtCtlCtlA_ATlrHiTar \n\rCustFctIn_LgtCtlCtlA_ATlrHiDyn \n\rCustFctIn_LgtCtlCtlA_ATlrLoTar \n\rCustFctIn_LgtCtlCtlA_MdDeceOnly \n\rCustFctIn_LgtCtlCtlA_MdTarDyn \n\r \n\rCustFctIn_LgtCtlLimD_StAcv \n\rCustFctIn_LgtCtlLimD_DTar \n\rCustFctIn_LgtCtlLimD_StUpd \n\r \n\rCustFctIn_LgtCtlStgy_TiRdyDrvOffDmd \n\rCustFctIn_LgtCtl_StSailReq \n\rSignal-Classifier:\n\rCustFctIn_LgtCtl_StAcv_sc \n\rCustFctIn_LgtCtlCtlA_ADmd_sc \n\rCustFctIn_LgtCtlCtlA_APredTar_sc \n\rCustFctIn_LgtCtlCtlA_AGrdMaxDec_sc \n\rCustFctIn_LgtCtlCtlA_AGrdMaxInc_sc \n\rCustFctIn_LgtCtlCtlA_ATlrHiTar_sc \n\rCustFctIn_LgtCtlCtlA_ATlrHiDyn_sc \n\rCustFctIn_LgtCtlCtlA_ATlrLoTar_sc \n\rCustFctIn_LgtCtlCtlA_MdDeceOnly_sc \n\rCustFctIn_LgtCtlCtlA_MdTarDyn_sc \n\r \n\rCustFctIn_LgtCtlLimD_StAcv_sc \n\rCustFctIn_LgtCtlLimD_DTar_sc \n\rCustFctIn_LgtCtlLimD_StUpd_sc \n\r \n\rCustFctIn_LgtCtlStgy_TiRdyDrvOffDmd_sc \n\rCustFctIn_LgtCtl_StSailReq_sc \n\rParameters \n\rCustFctIn_LgtCtl_BitFldConf\n\rCustFctIn_LgtCtl_FlgIniExcDet\n\rCustFctIn_LgtCtl_FlgErrQlfAcv\n\rCustFctIn_LgtCtl_TurnOff",
  "Vehicle Launch": "",
  "Vehicle Platform": "E³ 1.2"
}
5616662770.0Pre ConditionReleasednoFalsetype_not_target, relevance_filtered
Outputs StAcv CustFctOut_LgtCtl_StAcv All other Outputs CustFctOut_LgtCtlCtlA_ADmd CustFctOut_LgtCtlCtlA_APredTar CustFctOut
Outputs

StAcv

CustFctOut_LgtCtl_StAcv

All other Outputs

CustFctOut_LgtCtlCtlA_ADmd

CustFctOut_LgtCtlCtlA_APredTar

CustFctOut_LgtCtlCtlA_AGrdMaxDec

CustFctOut_LgtCtlCtlA_AGrdMaxInc

CustFctOut_LgtCtlCtlA_ATlrHiTar

CustFctOut_LgtCtlCtlA_ATlrHiDyn

CustFctOut_LgtCtlCtlA_ATlrLoTar

CustFctOut_LgtCtlCtlA_MdDeceOnly

CustFctOut_LgtCtlCtlA_MdTarDyn

CustFctOut_LgtCtlLimD_StAcv

CustFctOut_LgtCtlLimD_DTar

CustFctOut_LgtCtlLimD_FlgUpd

CustFctOut_LgtCtlStgy_TiRdyDrvOffDmd

CustFctOut_LgtCtl_StSailReq

States

CustFctOut_LgtCtl_StDiagEve

Raw

{
  "ID": "16662770.0",
  "ASIL": "  QM",
  "Text": "Outputs\n\rStAcv\n\rCustFctOut_LgtCtl_StAcv\n\r \n\rAll other Outputs\n\rCustFctOut_LgtCtlCtlA_ADmd\n\rCustFctOut_LgtCtlCtlA_APredTar\n\rCustFctOut_LgtCtlCtlA_AGrdMaxDec\n\rCustFctOut_LgtCtlCtlA_AGrdMaxInc\n\rCustFctOut_LgtCtlCtlA_ATlrHiTar\n\rCustFctOut_LgtCtlCtlA_ATlrHiDyn\n\rCustFctOut_LgtCtlCtlA_ATlrLoTar\n\rCustFctOut_LgtCtlCtlA_MdDeceOnly\n\rCustFctOut_LgtCtlCtlA_MdTarDyn\n\rCustFctOut_LgtCtlLimD_StAcv\n\rCustFctOut_LgtCtlLimD_DTar\n\rCustFctOut_LgtCtlLimD_FlgUpd\n\rCustFctOut_LgtCtlStgy_TiRdyDrvOffDmd\n\rCustFctOut_LgtCtl_StSailReq\n\rStates\n\rCustFctOut_LgtCtl_StDiagEve",
  "Type": "Pre Condition",
  "Status": "Released",
  "Summary": "",
  "Relevant": "no",
  "column_12": "",
  "Foreign ID": "1353525.0",
  "Description": "Outputs\n\rStAcv\n\rCustFctOut_LgtCtl_StAcv\n\r \n\rAll other Outputs\n\rCustFctOut_LgtCtlCtlA_ADmd\n\rCustFctOut_LgtCtlCtlA_APredTar\n\rCustFctOut_LgtCtlCtlA_AGrdMaxDec\n\rCustFctOut_LgtCtlCtlA_AGrdMaxInc\n\rCustFctOut_LgtCtlCtlA_ATlrHiTar\n\rCustFctOut_LgtCtlCtlA_ATlrHiDyn\n\rCustFctOut_LgtCtlCtlA_ATlrLoTar\n\rCustFctOut_LgtCtlCtlA_MdDeceOnly\n\rCustFctOut_LgtCtlCtlA_MdTarDyn\n\rCustFctOut_LgtCtlLimD_StAcv\n\rCustFctOut_LgtCtlLimD_DTar\n\rCustFctOut_LgtCtlLimD_FlgUpd\n\rCustFctOut_LgtCtlStgy_TiRdyDrvOffDmd\n\rCustFctOut_LgtCtl_StSailReq\n\rStates\n\rCustFctOut_LgtCtl_StDiagEve",
  "Vehicle Launch": "",
  "Vehicle Platform": "E³ 1.2"
}
5716662771.0Pre ConditionReleasednoFalsetype_not_target, relevance_filtered
Outputs StAcv/FlgAcv CustFctOut_LgtCtl_StAcv CustFctOut_LgtCtlLimD_FlgAcv All other Outputs CustFctOut_LgtCtlCtlA_ADmd CustF
Outputs

StAcv/FlgAcv

CustFctOut_LgtCtl_StAcv

CustFctOut_LgtCtlLimD_FlgAcv

All other Outputs

CustFctOut_LgtCtlCtlA_ADmd

CustFctOut_LgtCtlCtlA_APredTar

CustFctOut_LgtCtlCtlA_AGrdMaxDec

CustFctOut_LgtCtlCtlA_AGrdMaxInc

CustFctOut_LgtCtlCtlA_ATlrHiTar

CustFctOut_LgtCtlCtlA_ATlrHiDyn

CustFctOut_LgtCtlCtlA_ATlrLoTar

CustFctOut_LgtCtlCtlA_MdDeceOnly

CustFctOut_LgtCtlCtlA_MdTarDyn

CustFctOut_LgtCtlLimD_DTar

CustFctOut_LgtCtlLimD_FlgUpd

CustFctOut_LgtCtlStgy_TiRdyDrvOffDmd

CustFctOut_LgtCtl_StSailReq

States

CustFctOut_LgtCtl_StDiagEve

Raw

{
  "ID": "16662771.0",
  "ASIL": "  QM",
  "Text": "Outputs\n\rStAcv/FlgAcv\n\rCustFctOut_LgtCtl_StAcv\n\rCustFctOut_LgtCtlLimD_FlgAcv\n\r \n\rAll other Outputs\n\rCustFctOut_LgtCtlCtlA_ADmd\n\rCustFctOut_LgtCtlCtlA_APredTar\n\rCustFctOut_LgtCtlCtlA_AGrdMaxDec\n\rCustFctOut_LgtCtlCtlA_AGrdMaxInc\n\rCustFctOut_LgtCtlCtlA_ATlrHiTar\n\rCustFctOut_LgtCtlCtlA_ATlrHiDyn\n\rCustFctOut_LgtCtlCtlA_ATlrLoTar\n\rCustFctOut_LgtCtlCtlA_MdDeceOnly\n\rCustFctOut_LgtCtlCtlA_MdTarDyn\n\rCustFctOut_LgtCtlLimD_DTar\n\rCustFctOut_LgtCtlLimD_FlgUpd\n\rCustFctOut_LgtCtlStgy_TiRdyDrvOffDmd\n\rCustFctOut_LgtCtl_StSailReq\n\rStates\n\rCustFctOut_LgtCtl_StDiagEve",
  "Type": "Pre Condition",
  "Status": "Released",
  "Summary": "",
  "Relevant": "no",
  "column_12": "",
  "Foreign ID": "1477081.0",
  "Description": "Outputs\n\rStAcv/FlgAcv\n\rCustFctOut_LgtCtl_StAcv\n\rCustFctOut_LgtCtlLimD_FlgAcv\n\r \n\rAll other Outputs\n\rCustFctOut_LgtCtlCtlA_ADmd\n\rCustFctOut_LgtCtlCtlA_APredTar\n\rCustFctOut_LgtCtlCtlA_AGrdMaxDec\n\rCustFctOut_LgtCtlCtlA_AGrdMaxInc\n\rCustFctOut_LgtCtlCtlA_ATlrHiTar\n\rCustFctOut_LgtCtlCtlA_ATlrHiDyn\n\rCustFctOut_LgtCtlCtlA_ATlrLoTar\n\rCustFctOut_LgtCtlCtlA_MdDeceOnly\n\rCustFctOut_LgtCtlCtlA_MdTarDyn\n\rCustFctOut_LgtCtlLimD_DTar\n\rCustFctOut_LgtCtlLimD_FlgUpd\n\rCustFctOut_LgtCtlStgy_TiRdyDrvOffDmd\n\rCustFctOut_LgtCtl_StSailReq\n\rStates\n\rCustFctOut_LgtCtl_StDiagEve",
  "Vehicle Launch": "",
  "Vehicle Platform": "E³ 1.2"
}
5816662772.0Pre ConditionReleasednoFalsetype_not_target, relevance_filtered
Merged classifier of LgtCtl input signal classifiers (Note: The classifier information of all LgtCtl input signals are merged to
Merged classifier of LgtCtl input signal classifiers

(Note: The classifier information of all LgtCtl input signals are merged to one single internal classifier (merged classifier) by a bitwise OR operation)

IF BitwiseOR: 

one or more of the following classifier Bits are true (Bit0, Bit1, Bit2, Bit3, Bit4, Bit5, Bit6, Bit7)

CustFctIn_LgtCtl_StAcv_sc 

CustFctIn_LgtCtlCtlA_ADmd_sc 

CustFctIn_LgtCtlCtlA_APredTar_sc 

CustFctIn_LgtCtlCtlA_AGrdMaxDec_sc 

CustFctIn_LgtCtlCtlA_AGrdMaxInc_sc 

CustFctIn_LgtCtlCtlA_ATlrHiTar_sc 

CustFctIn_LgtCtlCtlA_ATlrHiDyn_sc 

CustFctIn_LgtCtlCtlA_ATlrLoTar_sc 

CustFctIn_LgtCtlCtlA_MdDeceOnly_sc 

CustFctIn_LgtCtlCtlA_MdTarDyn_sc 

CustFctIn_LgtCtlLimD_StAcv_sc 

CustFctIn_LgtCtlLimD_DTar_sc 

CustFctIn_LgtCtlLimD_StUpd_sc 

CustFctIn_LgtCtlStgy_TiRdyDrvOffDmd_sc 

CustFctIn_LgtCtl_StSailReq_sc

THEN:

the corresponding Bits of the merged classifier (internal) are true

(Bit0, Bit1, Bit2, Bit3, Bit4, Bit5, Bit6, Bit7)

ELSE:

the corresponding Bits of the merged classifier (internal) are false

(Bit0, Bit1, Bit2, Bit3, Bit4, Bit5, Bit6, Bit7)

Raw

{
  "ID": "16662772.0",
  "ASIL": "  ASIL B",
  "Text": "Merged classifier of LgtCtl input signal classifiers\n\r(Note: The classifier information of all LgtCtl input signals are merged to one single internal classifier (merged classifier) by a bitwise OR operation)\n\r \n\rIF BitwiseOR: \n\rone or more of the following classifier Bits are true (Bit0, Bit1, Bit2, Bit3, Bit4, Bit5, Bit6, Bit7)\n\rCustFctIn_LgtCtl_StAcv_sc \n\rCustFctIn_LgtCtlCtlA_ADmd_sc \n\rCustFctIn_LgtCtlCtlA_APredTar_sc \n\rCustFctIn_LgtCtlCtlA_AGrdMaxDec_sc \n\rCustFctIn_LgtCtlCtlA_AGrdMaxInc_sc \n\rCustFctIn_LgtCtlCtlA_ATlrHiTar_sc \n\rCustFctIn_LgtCtlCtlA_ATlrHiDyn_sc \n\rCustFctIn_LgtCtlCtlA_ATlrLoTar_sc \n\rCustFctIn_LgtCtlCtlA_MdDeceOnly_sc \n\rCustFctIn_LgtCtlCtlA_MdTarDyn_sc \n\rCustFctIn_LgtCtlLimD_StAcv_sc \n\rCustFctIn_LgtCtlLimD_DTar_sc \n\rCustFctIn_LgtCtlLimD_StUpd_sc \n\rCustFctIn_LgtCtlStgy_TiRdyDrvOffDmd_sc \n\rCustFctIn_LgtCtl_StSailReq_sc\n\rTHEN:\n\rthe corresponding Bits of the merged classifier (internal) are true\n\r(Bit0, Bit1, Bit2, Bit3, Bit4, Bit5, Bit6, Bit7)\n\rELSE:\n\rthe corresponding Bits of the merged classifier (internal) are false\n\r(Bit0, Bit1, Bit2, Bit3, Bit4, Bit5, Bit6, Bit7)",
  "Type": "Pre Condition",
  "Status": "Released",
  "Summary": "",
  "Relevant": "no",
  "column_12": "",
  "Foreign ID": "1353530.0",
  "Description": "Merged classifier of LgtCtl input signal classifiers\n\r(Note: The classifier information of all LgtCtl input signals are merged to one single internal classifier (merged classifier) by a bitwise OR operation)\n\r \n\rIF BitwiseOR: \n\rone or more of the following classifier Bits are true (Bit0, Bit1, Bit2, Bit3, Bit4, Bit5, Bit6, Bit7)\n\rCustFctIn_LgtCtl_StAcv_sc \n\rCustFctIn_LgtCtlCtlA_ADmd_sc \n\rCustFctIn_LgtCtlCtlA_APredTar_sc \n\rCustFctIn_LgtCtlCtlA_AGrdMaxDec_sc \n\rCustFctIn_LgtCtlCtlA_AGrdMaxInc_sc \n\rCustFctIn_LgtCtlCtlA_ATlrHiTar_sc \n\rCustFctIn_LgtCtlCtlA_ATlrHiDyn_sc \n\rCustFctIn_LgtCtlCtlA_ATlrLoTar_sc \n\rCustFctIn_LgtCtlCtlA_MdDeceOnly_sc \n\rCustFctIn_LgtCtlCtlA_MdTarDyn_sc \n\rCustFctIn_LgtCtlLimD_StAcv_sc \n\rCustFctIn_LgtCtlLimD_DTar_sc \n\rCustFctIn_LgtCtlLimD_StUpd_sc \n\rCustFctIn_LgtCtlStgy_TiRdyDrvOffDmd_sc \n\rCustFctIn_LgtCtl_StSailReq_sc\n\rTHEN:\n\rthe corresponding Bits of the merged classifier (internal) are true\n\r(Bit0, Bit1, Bit2, Bit3, Bit4, Bit5, Bit6, Bit7)\n\rELSE:\n\rthe corresponding Bits of the merged classifier (internal) are false\n\r(Bit0, Bit1, Bit2, Bit3, Bit4, Bit5, Bit6, Bit7)",
  "Vehicle Launch": "",
  "Vehicle Platform": "E³ 1.2"
}
5916662773.0Pre ConditionReleasednoFalsetype_not_target, relevance_filtered
Detect neutral LgtCtlA-Inputs Note: Classifier Bit1 (FlgValCod - Neutral value) of all input signals, which have a neutral value,
Detect neutral LgtCtlA-Inputs

Note: Classifier Bit1 (FlgValCod - Neutral value) of all input signals, which have a neutral value, are considered in the neutral value check. "LgtCtlA-Inputs are neutral" means, that at least one input signal has neutral values. "LgtCtlA-Inputs are NOT neutral" means, that at no input signal has neutral values.

IF: 

Bit1 of BitwiseOR ( 

CustFctIn_LgtCtlCtlA_ADmd_sc 

CustFctIn_LgtCtlCtlA_APredTar_sc 

CustFctIn_LgtCtlCtlA_AGrdMaxDec_sc 

CustFctIn_LgtCtlCtlA_AGrdMaxInc_sc 

CustFctIn_LgtCtlCtlA_ATlrHiTar_sc 

CustFctIn_LgtCtlCtlA_ATlrHiDyn_sc 

CustFctIn_LgtCtlCtlA_ATlrLoTar_sc) 

is set 

THEN: 

LgtCtlA-Inputs are neutral (LgtCtlA-Inputs neutral) 

ELSE: 

LgtCtlA-Inputs are NOT neutral (LgtCtlA-Inputs not neutral)

Raw

{
  "ID": "16662773.0",
  "ASIL": "  ASIL B",
  "Text": "Detect neutral LgtCtlA-Inputs\n\rNote: Classifier Bit1 (FlgValCod - Neutral value) of all input signals, which have a neutral value, are considered in the neutral value check. \"LgtCtlA-Inputs are neutral\" means, that at least one input signal has neutral values. \"LgtCtlA-Inputs are NOT neutral\" means, that at no input signal has neutral values.\n\r \n\rIF: \n\rBit1 of BitwiseOR ( \n\rCustFctIn_LgtCtlCtlA_ADmd_sc \n\rCustFctIn_LgtCtlCtlA_APredTar_sc \n\rCustFctIn_LgtCtlCtlA_AGrdMaxDec_sc \n\rCustFctIn_LgtCtlCtlA_AGrdMaxInc_sc \n\rCustFctIn_LgtCtlCtlA_ATlrHiTar_sc \n\rCustFctIn_LgtCtlCtlA_ATlrHiDyn_sc \n\rCustFctIn_LgtCtlCtlA_ATlrLoTar_sc) \n\ris set \n\rTHEN: \n\rLgtCtlA-Inputs are neutral (LgtCtlA-Inputs neutral) \n\rELSE: \n\rLgtCtlA-Inputs are NOT neutral (LgtCtlA-Inputs not neutral)",
  "Type": "Pre Condition",
  "Status": "Released",
  "Summary": "",
  "Relevant": "no",
  "column_12": "",
  "Foreign ID": "1353532.0",
  "Description": "Detect neutral LgtCtlA-Inputs\n\rNote: Classifier Bit1 (FlgValCod - Neutral value) of all input signals, which have a neutral value, are considered in the neutral value check. \"LgtCtlA-Inputs are neutral\" means, that at least one input signal has neutral values. \"LgtCtlA-Inputs are NOT neutral\" means, that at no input signal has neutral values.\n\r \n\rIF: \n\rBit1 of BitwiseOR ( \n\rCustFctIn_LgtCtlCtlA_ADmd_sc \n\rCustFctIn_LgtCtlCtlA_APredTar_sc \n\rCustFctIn_LgtCtlCtlA_AGrdMaxDec_sc \n\rCustFctIn_LgtCtlCtlA_AGrdMaxInc_sc \n\rCustFctIn_LgtCtlCtlA_ATlrHiTar_sc \n\rCustFctIn_LgtCtlCtlA_ATlrHiDyn_sc \n\rCustFctIn_LgtCtlCtlA_ATlrLoTar_sc) \n\ris set \n\rTHEN: \n\rLgtCtlA-Inputs are neutral (LgtCtlA-Inputs neutral) \n\rELSE: \n\rLgtCtlA-Inputs are NOT neutral (LgtCtlA-Inputs not neutral)",
  "Vehicle Launch": "",
  "Vehicle Platform": "E³ 1.2"
}
6016662774.0Pre ConditionReleasednoFalsetype_not_target, relevance_filtered
Mapping and Neutral-Value-Handling of CustFctIn_LgtCtl_StAcv IF [AND(1,2)]: 1) CustFctIn_LgtCtl_StAcv is equal to VMMP_SINFCT_c
Mapping and Neutral-Value-Handling of CustFctIn_LgtCtl_StAcv

IF [AND(1,2)]: 

1) CustFctIn_LgtCtl_StAcv is equal to VMMP_SINFCT_c_CusFctIn_StReqAcv

2) LgtCtlA-Inputs are NOT neutral (LgtCtlA-Inputs not neutral) 

THEN: 

CustFctOut_LgtCtl_StAcv is equal to VMMP_SINFCT_c_CusFctIn_StReqAcv

ELSEIF [AND(1,2,3)]: 

1) CustFctIn_LgtCtl_StAcv is equal to VMMP_c_StReqCusFctAcv 

2) LgtCtlA-Inputs are neutral (LgtCtlA-Inputs neutral) 

3) Bit position VMMP_SINFCT_c_LgtCtl_IdxBitFldConfMdNeutArbAcv of the input CustFctIn_LgtCtl_BitFldConf is true 

THEN: 

CustFctOut_LgtCtl_StAcv is equal to VMMP_c_StReqCusFctAcvNeut 

ELSE: 

CustFctOut_LgtCtl_StAcv is equal to VMMP_c_StReqCusFctNoReq

Note: The expression "Bit position VMMP_SINFCT_c_LgtCtl_IdxBitFldConfMdNeutArbAcv of the input CustFctIn_LgtCtl_BitFldConf is true" means that the Bit position, described by the mentioned constant, shall be evaluated in the input signal. If constant is equal to 1, Bit1 of the input signal shall be evaluated. If Bit position is true, the expression "Bit position VMMP_SINFCT_c_LgtCtl_IdxBitFldConfMdNeutArbAcv of the input CustFctIn_LgtCtl_BitFldConf is true" shall be true.

Raw

{
  "ID": "16662774.0",
  "ASIL": "  ASIL B",
  "Text": "Mapping and Neutral-Value-Handling of CustFctIn_LgtCtl_StAcv\n\r \n\r\n\rIF [AND(1,2)]: \n\r1) CustFctIn_LgtCtl_StAcv is equal to VMMP_SINFCT_c_CusFctIn_StReqAcv\n\r2) LgtCtlA-Inputs are NOT neutral (LgtCtlA-Inputs not neutral) \n\rTHEN: \n\rCustFctOut_LgtCtl_StAcv is equal to VMMP_SINFCT_c_CusFctIn_StReqAcv\n\r \n\rELSEIF [AND(1,2,3)]: \n\r1) CustFctIn_LgtCtl_StAcv is equal to VMMP_c_StReqCusFctAcv \n\r2) LgtCtlA-Inputs are neutral (LgtCtlA-Inputs neutral) \n\r3) Bit position VMMP_SINFCT_c_LgtCtl_IdxBitFldConfMdNeutArbAcv of the input CustFctIn_LgtCtl_BitFldConf is true \n\rTHEN: \n\rCustFctOut_LgtCtl_StAcv is equal to VMMP_c_StReqCusFctAcvNeut \n\r \n\rELSE: \n\rCustFctOut_LgtCtl_StAcv is equal to VMMP_c_StReqCusFctNoReq\n\r \n\rNote: The expression \"Bit position VMMP_SINFCT_c_LgtCtl_IdxBitFldConfMdNeutArbAcv of the input CustFctIn_LgtCtl_BitFldConf is true\" means that the Bit position, described by the mentioned constant, shall be evaluated in the input signal. If constant is equal to 1, Bit1 of the input signal shall be evaluated. If Bit position is true, the expression \"Bit position VMMP_SINFCT_c_LgtCtl_IdxBitFldConfMdNeutArbAcv of the input CustFctIn_LgtCtl_BitFldConf is true\" shall be true.",
  "Type": "Pre Condition",
  "Status": "Released",
  "Summary": "",
  "Relevant": "no",
  "column_12": "",
  "Foreign ID": "1353533.0",
  "Description": "Mapping and Neutral-Value-Handling of CustFctIn_LgtCtl_StAcv\n\r \n\r\n\rIF [AND(1,2)]: \n\r1) CustFctIn_LgtCtl_StAcv is equal to VMMP_SINFCT_c_CusFctIn_StReqAcv\n\r2) LgtCtlA-Inputs are NOT neutral (LgtCtlA-Inputs not neutral) \n\rTHEN: \n\rCustFctOut_LgtCtl_StAcv is equal to VMMP_SINFCT_c_CusFctIn_StReqAcv\n\r \n\rELSEIF [AND(1,2,3)]: \n\r1) CustFctIn_LgtCtl_StAcv is equal to VMMP_c_StReqCusFctAcv \n\r2) LgtCtlA-Inputs are neutral (LgtCtlA-Inputs neutral) \n\r3) Bit position VMMP_SINFCT_c_LgtCtl_IdxBitFldConfMdNeutArbAcv of the input CustFctIn_LgtCtl_BitFldConf is true \n\rTHEN: \n\rCustFctOut_LgtCtl_StAcv is equal to VMMP_c_StReqCusFctAcvNeut \n\r \n\rELSE: \n\rCustFctOut_LgtCtl_StAcv is equal to VMMP_c_StReqCusFctNoReq\n\r \n\rNote: The expression \"Bit position VMMP_SINFCT_c_LgtCtl_IdxBitFldConfMdNeutArbAcv of the input CustFctIn_LgtCtl_BitFldConf is true\" means that the Bit position, described by the mentioned constant, shall be evaluated in the input signal. If constant is equal to 1, Bit1 of the input signal shall be evaluated. If Bit position is true, the expression \"Bit position VMMP_SINFCT_c_LgtCtl_IdxBitFldConfMdNeutArbAcv of the input CustFctIn_LgtCtl_BitFldConf is true\" shall be true.",
  "Vehicle Launch": "",
  "Vehicle Platform": "E³ 1.2"
}
6116662775.0Pre ConditionReleasednoFalsetype_not_target, relevance_filtered
Neutral-Value-Handling of CustFctIn_LgtCtlLimD_StAcv IF: Bit1 of CustFctIn_LgtCtlLimD_DTar_sc is set THEN: CustFctOut_LgtCt
Neutral-Value-Handling of CustFctIn_LgtCtlLimD_StAcv

IF: 

Bit1 of CustFctIn_LgtCtlLimD_DTar_sc is set 

THEN: 

CustFctOut_LgtCtlLimD_StAcv is equal to VMMP_c_StReqCusFctNoReq

ELSE:

CustFctOut_LgtCtlLimD_StAcv is equal to CustFctIn_LgtCtlLimD_StAcv

Raw

{
  "ID": "16662775.0",
  "ASIL": "  ASIL B",
  "Text": "Neutral-Value-Handling of CustFctIn_LgtCtlLimD_StAcv\n\r \n\rIF: \n\rBit1 of CustFctIn_LgtCtlLimD_DTar_sc is set \n\rTHEN: \n\rCustFctOut_LgtCtlLimD_StAcv is equal to VMMP_c_StReqCusFctNoReq\n\rELSE:\n\rCustFctOut_LgtCtlLimD_StAcv is equal to CustFctIn_LgtCtlLimD_StAcv",
  "Type": "Pre Condition",
  "Status": "Released",
  "Summary": "",
  "Relevant": "no",
  "column_12": "",
  "Foreign ID": "1353541.0",
  "Description": "Neutral-Value-Handling of CustFctIn_LgtCtlLimD_StAcv\n\r \n\rIF: \n\rBit1 of CustFctIn_LgtCtlLimD_DTar_sc is set \n\rTHEN: \n\rCustFctOut_LgtCtlLimD_StAcv is equal to VMMP_c_StReqCusFctNoReq\n\rELSE:\n\rCustFctOut_LgtCtlLimD_StAcv is equal to CustFctIn_LgtCtlLimD_StAcv",
  "Vehicle Launch": "",
  "Vehicle Platform": "E³ 1.2"
}
6216662776.0Pre ConditionReleasednoFalsetype_not_target, relevance_filtered
Neutral-Value-Handling of CustFctIn_LgtCtlLimD_FlgAcv IF: Bit1 of CustFctIn_LgtCtlLimD_DTar_sc is set THEN: CustFctOut_LgtC
Neutral-Value-Handling of CustFctIn_LgtCtlLimD_FlgAcv

IF: 

Bit1 of CustFctIn_LgtCtlLimD_DTar_sc is set 

THEN: 

CustFctOut_LgtCtlLimD_FlgAcv = 0 (false)

ELSEIF [AND(1,2)]:

1) Bit1 of CustFctIn_LgtCtlLimD_DTar_sc is NOT set

2) CustFctIn_LgtCtlLimD_StAcv = 1

THEN: 

CustFctOut_LgtCtlLimD_FlgAcv = 1 (true)

ELSE:

CustFctOut_LgtCtlLimD_FlgAcv = 0 (false)

Raw

{
  "ID": "16662776.0",
  "ASIL": "  ASIL B",
  "Text": "Neutral-Value-Handling of CustFctIn_LgtCtlLimD_FlgAcv\n\r \n\rIF: \n\rBit1 of CustFctIn_LgtCtlLimD_DTar_sc is set \n\rTHEN: \n\rCustFctOut_LgtCtlLimD_FlgAcv = 0 (false)\n\r \n\rELSEIF [AND(1,2)]:\n\r1) Bit1 of CustFctIn_LgtCtlLimD_DTar_sc is NOT set\n\r2) CustFctIn_LgtCtlLimD_StAcv = 1\n\rTHEN: \n\rCustFctOut_LgtCtlLimD_FlgAcv = 1 (true)\n\r \n\rELSE:\n\rCustFctOut_LgtCtlLimD_FlgAcv = 0 (false)",
  "Type": "Pre Condition",
  "Status": "Released",
  "Summary": "",
  "Relevant": "no",
  "column_12": "",
  "Foreign ID": "1477082.0",
  "Description": "Neutral-Value-Handling of CustFctIn_LgtCtlLimD_FlgAcv\n\r \n\rIF: \n\rBit1 of CustFctIn_LgtCtlLimD_DTar_sc is set \n\rTHEN: \n\rCustFctOut_LgtCtlLimD_FlgAcv = 0 (false)\n\r \n\rELSEIF [AND(1,2)]:\n\r1) Bit1 of CustFctIn_LgtCtlLimD_DTar_sc is NOT set\n\r2) CustFctIn_LgtCtlLimD_StAcv = 1\n\rTHEN: \n\rCustFctOut_LgtCtlLimD_FlgAcv = 1 (true)\n\r \n\rELSE:\n\rCustFctOut_LgtCtlLimD_FlgAcv = 0 (false)",
  "Vehicle Launch": "",
  "Vehicle Platform": "E³ 1.2"
}
6316662777.0Pre ConditionReleasednoFalsetype_not_target, relevance_filtered
Neutral-Value-Handling of CustFctIn_LgtCtlStgy_TiRdyDrvOffDmd IF: Bit1 of CustFctIn_LgtCtlStgy_TiRdyDrvOffDmd_sc is set THEN:
Neutral-Value-Handling of CustFctIn_LgtCtlStgy_TiRdyDrvOffDmd

IF:

Bit1 of CustFctIn_LgtCtlStgy_TiRdyDrvOffDmd_sc is set

THEN:

CustFctOut_LgtCtlStgy_TiRdyDrvOffDmd = VMMP_c_NeutValTiRdyDrvOffDmd

ELSE:

CustFctOut_LgtCtlStgy_TiRdyDrvOffDmd is equal to CustFctIn_LgtCtlStgy_TiRdyDrvOffDmd

Raw

{
  "ID": "16662777.0",
  "ASIL": "  ASIL B",
  "Text": "Neutral-Value-Handling of CustFctIn_LgtCtlStgy_TiRdyDrvOffDmd\n\rIF:\n\rBit1 of CustFctIn_LgtCtlStgy_TiRdyDrvOffDmd_sc is set\n\rTHEN:\n\rCustFctOut_LgtCtlStgy_TiRdyDrvOffDmd = VMMP_c_NeutValTiRdyDrvOffDmd\n\rELSE:\n\rCustFctOut_LgtCtlStgy_TiRdyDrvOffDmd is equal to CustFctIn_LgtCtlStgy_TiRdyDrvOffDmd",
  "Type": "Pre Condition",
  "Status": "Released",
  "Summary": "",
  "Relevant": "no",
  "column_12": "",
  "Foreign ID": "1353536.0",
  "Description": "Neutral-Value-Handling of CustFctIn_LgtCtlStgy_TiRdyDrvOffDmd\n\rIF:\n\rBit1 of CustFctIn_LgtCtlStgy_TiRdyDrvOffDmd_sc is set\n\rTHEN:\n\rCustFctOut_LgtCtlStgy_TiRdyDrvOffDmd = VMMP_c_NeutValTiRdyDrvOffDmd\n\rELSE:\n\rCustFctOut_LgtCtlStgy_TiRdyDrvOffDmd is equal to CustFctIn_LgtCtlStgy_TiRdyDrvOffDmd",
  "Vehicle Launch": "",
  "Vehicle Platform": "E³ 1.2"
}
6416662778.0Pre ConditionReleasednoFalsetype_not_target, relevance_filtered
Calculation of output signal CustFctOut_LgtCtlLimD_FlgUpd IF: CustFctIn_LgtCtlLimD_StUpd = VMMP_c_StReqCusFctAcv THEN: CustFct
Calculation of output signal CustFctOut_LgtCtlLimD_FlgUpd

IF:

CustFctIn_LgtCtlLimD_StUpd = VMMP_c_StReqCusFctAcv

THEN:

CustFctOut_LgtCtlLimD_FlgUpd = 1 (true)

ELSE:

CustFctOut_LgtCtlLimD_FlgUpd = 0 (false)

Raw

{
  "ID": "16662778.0",
  "ASIL": "  ASIL B",
  "Text": "Calculation of output signal CustFctOut_LgtCtlLimD_FlgUpd\n\rIF:\n\rCustFctIn_LgtCtlLimD_StUpd = VMMP_c_StReqCusFctAcv\n\rTHEN:\n\rCustFctOut_LgtCtlLimD_FlgUpd = 1 (true)\n\rELSE:\n\rCustFctOut_LgtCtlLimD_FlgUpd = 0 (false)",
  "Type": "Pre Condition",
  "Status": "Released",
  "Summary": "",
  "Relevant": "no",
  "column_12": "",
  "Foreign ID": "1353540.0",
  "Description": "Calculation of output signal CustFctOut_LgtCtlLimD_FlgUpd\n\rIF:\n\rCustFctIn_LgtCtlLimD_StUpd = VMMP_c_StReqCusFctAcv\n\rTHEN:\n\rCustFctOut_LgtCtlLimD_FlgUpd = 1 (true)\n\rELSE:\n\rCustFctOut_LgtCtlLimD_FlgUpd = 0 (false)",
  "Vehicle Launch": "",
  "Vehicle Platform": "E³ 1.2"
}
6516662779.0Pre ConditionReleasednoFalsetype_not_target, relevance_filtered
LgtCtl Service Bridge shall use Signalmonitoring with following signal assignment: Input: *TurnOff equal to CustFctIn_LgtCtl_Tur
LgtCtl Service Bridge shall use Signalmonitoring with following signal assignment:

Input:

*TurnOff equal to CustFctIn_LgtCtl_TurnOff

*FlgIniExcDet equal to CustFctIn_LgtCtl_FlgIniExcDet

*FlgErrQlfAcv equal to CustFctIn_LgtCtl_FlgErrQlfAcv

merged classifier

RangeCheck

Output:

CustFctOut_LgtCtl_StDiagEve equal to *StDiagEve

Note: This PreCondition and the Service Bridge connect the service specific customer function input information (Input: CustFctIn_*, merged classifier, RangeCheck) to the the generic Signalmonitoring (input of Signalmonitoring). Moreover this PreCondition connects also the generic *StDiagEve information (output of Signalmonitoring) to the service specific customer function output information (Output: CustFctOut_*).

Summary: This PreConditions defines the connection between customer function, Service Bridge and Signalmonitoring in the following way:

specific customer function input information --> Service Bridge input --> Signalmonitoring input --> Signalmonitoring output --> Service Bridge output --> specific customer function output information

(This concept is used to allow the generic description of Signalmonitoring and Service Bridge once for all customer functions)

Raw

{
  "ID": "16662779.0",
  "ASIL": "  ASIL B",
  "Text": "LgtCtl Service Bridge shall use Signalmonitoring with following signal assignment:\n\r \n\rInput:\n\r*TurnOff equal to CustFctIn_LgtCtl_TurnOff\n\r*FlgIniExcDet equal to CustFctIn_LgtCtl_FlgIniExcDet\n\r*FlgErrQlfAcv equal to CustFctIn_LgtCtl_FlgErrQlfAcv\n\rmerged classifier\n\rRangeCheck\n\r \n\rOutput:\n\rCustFctOut_LgtCtl_StDiagEve equal to *StDiagEve\n\r \n\rNote: This PreCondition and the Service Bridge connect the service specific customer function input information (Input: CustFctIn_*, merged classifier, RangeCheck) to the the generic Signalmonitoring (input of Signalmonitoring). Moreover this PreCondition connects also the generic *StDiagEve information (output of Signalmonitoring) to the service specific customer function output information (Output: CustFctOut_*).\n\rSummary: This PreConditions defines the connection between customer function, Service Bridge and Signalmonitoring in the following way:\n\rspecific customer function input information --> Service Bridge input --> Signalmonitoring input --> Signalmonitoring output --> Service Bridge output --> specific customer function output information\n\r \n\r(This concept is used to allow the generic description of Signalmonitoring and Service Bridge once for all customer functions)",
  "Type": "Pre Condition",
  "Status": "Released",
  "Summary": "",
  "Relevant": "no",
  "column_12": "",
  "Foreign ID": "1353542.0",
  "Description": "LgtCtl Service Bridge shall use Signalmonitoring with following signal assignment:\n\r \n\rInput:\n\r*TurnOff equal to CustFctIn_LgtCtl_TurnOff\n\r*FlgIniExcDet equal to CustFctIn_LgtCtl_FlgIniExcDet\n\r*FlgErrQlfAcv equal to CustFctIn_LgtCtl_FlgErrQlfAcv\n\rmerged classifier\n\rRangeCheck\n\r \n\rOutput:\n\rCustFctOut_LgtCtl_StDiagEve equal to *StDiagEve\n\r \n\rNote: This PreCondition and the Service Bridge connect the service specific customer function input information (Input: CustFctIn_*, merged classifier, RangeCheck) to the the generic Signalmonitoring (input of Signalmonitoring). Moreover this PreCondition connects also the generic *StDiagEve information (output of Signalmonitoring) to the service specific customer function output information (Output: CustFctOut_*).\n\rSummary: This PreConditions defines the connection between customer function, Service Bridge and Signalmonitoring in the following way:\n\rspecific customer function input information --> Service Bridge input --> Signalmonitoring input --> Signalmonitoring output --> Service Bridge output --> specific customer function output information\n\r \n\r(This concept is used to allow the generic description of Signalmonitoring and Service Bridge once for all customer functions)",
  "Vehicle Launch": "",
  "Vehicle Platform": "E³ 1.2"
}
6616662780.0Pre ConditionReleasednoFalsetype_not_target, relevance_filtered
LgtCtl Service Bridge shall use Signalmonitoring with following signal assignment: Input: *TurnOff equal to CustFctIn_LgtCtl_Tur
LgtCtl Service Bridge shall use Signalmonitoring with following signal assignment:

Input:

*TurnOff equal to CustFctIn_LgtCtl_TurnOff

*FlgIniExcDet equal to CustFctIn_LgtCtl_FlgIniExcDet

*FlgErrQlfAcv equal to CustFctIn_LgtCtl_FlgErrQlfAcv

merged classifier

RangeCheck

Output:

CustFctOut_LgtCtl_StDiagEve_Int equal to *StDiagEve

Note: This PreCondition and the Service Bridge connect the service specific customer function input information (Input: CustFctIn_*, merged classifier, RangeCheck) to the the generic Signalmonitoring (input of Signalmonitoring). Moreover this PreCondition connects also the generic *StDiagEve information (output of Signalmonitoring) to the service specific customer function output information (Output: CustFctOut_*).

Summary: This PreConditions defines the connection between customer function, Service Bridge and Signalmonitoring in the following way:

specific customer function input information --> Service Bridge input --> Signalmonitoring input --> Signalmonitoring output --> Service Bridge output --> specific customer function output information

(This concept is used to allow the generic description of Signalmonitoring and Service Bridge once for all customer functions)

Raw

{
  "ID": "16662780.0",
  "ASIL": "  ASIL B",
  "Text": "LgtCtl Service Bridge shall use Signalmonitoring with following signal assignment:\n\r \n\rInput:\n\r*TurnOff equal to CustFctIn_LgtCtl_TurnOff\n\r*FlgIniExcDet equal to CustFctIn_LgtCtl_FlgIniExcDet\n\r*FlgErrQlfAcv equal to CustFctIn_LgtCtl_FlgErrQlfAcv\n\rmerged classifier\n\rRangeCheck\n\r \n\rOutput:\n\rCustFctOut_LgtCtl_StDiagEve_Int equal to *StDiagEve\n\r \n\rNote: This PreCondition and the Service Bridge connect the service specific customer function input information (Input: CustFctIn_*, merged classifier, RangeCheck) to the the generic Signalmonitoring (input of Signalmonitoring). Moreover this PreCondition connects also the generic *StDiagEve information (output of Signalmonitoring) to the service specific customer function output information (Output: CustFctOut_*).\n\rSummary: This PreConditions defines the connection between customer function, Service Bridge and Signalmonitoring in the following way:\n\rspecific customer function input information --> Service Bridge input --> Signalmonitoring input --> Signalmonitoring output --> Service Bridge output --> specific customer function output information\n\r \n\r(This concept is used to allow the generic description of Signalmonitoring and Service Bridge once for all customer functions)",
  "Type": "Pre Condition",
  "Status": "Released",
  "Summary": "",
  "Relevant": "no",
  "column_12": "",
  "Foreign ID": "1477084.0",
  "Description": "LgtCtl Service Bridge shall use Signalmonitoring with following signal assignment:\n\r \n\rInput:\n\r*TurnOff equal to CustFctIn_LgtCtl_TurnOff\n\r*FlgIniExcDet equal to CustFctIn_LgtCtl_FlgIniExcDet\n\r*FlgErrQlfAcv equal to CustFctIn_LgtCtl_FlgErrQlfAcv\n\rmerged classifier\n\rRangeCheck\n\r \n\rOutput:\n\rCustFctOut_LgtCtl_StDiagEve_Int equal to *StDiagEve\n\r \n\rNote: This PreCondition and the Service Bridge connect the service specific customer function input information (Input: CustFctIn_*, merged classifier, RangeCheck) to the the generic Signalmonitoring (input of Signalmonitoring). Moreover this PreCondition connects also the generic *StDiagEve information (output of Signalmonitoring) to the service specific customer function output information (Output: CustFctOut_*).\n\rSummary: This PreConditions defines the connection between customer function, Service Bridge and Signalmonitoring in the following way:\n\rspecific customer function input information --> Service Bridge input --> Signalmonitoring input --> Signalmonitoring output --> Service Bridge output --> specific customer function output information\n\r \n\r(This concept is used to allow the generic description of Signalmonitoring and Service Bridge once for all customer functions)",
  "Vehicle Launch": "",
  "Vehicle Platform": "E³ 1.2"
}
6716662781.0FunctionalReleasedyesTrue
Consider validity of LgtLimD Request in result of input signal monitoring (CustFctOut_LgtCtl_StDiagEve_Int) IF [AND(1,2,3)]: 1)
Consider validity of LgtLimD Request in result of input signal monitoring (CustFctOut_LgtCtl_StDiagEve_Int)

IF [AND(1,2,3)]: 

1) CustFctOut_LgtCtlLimD_FlgAcv = 1 (true) (considering Neutral-Value-Handling of CustFctIn_LgtCtlLimD_FlgAcv)

2) VSOEM_s_FlgExcThVLgtLimD = 1 (true)

3) CustFctOut_LgtCtl_StDiagEve_Int is not equal to VMMP_c_DiagEveSigDi

THEN: 

CustFctOut_LgtCtl_StDiagEve is equal to VMMP_c_DiagEveSigNotVld

ELSE:

CustFctOut_LgtCtl_StDiagEve is equal to CustFctOut_LgtCtl_StDiagEve_Int

Raw

{
  "ID": "16662781.0",
  "ASIL": "  ASIL B",
  "Text": "Consider validity of LgtLimD Request in result of input signal monitoring (CustFctOut_LgtCtl_StDiagEve_Int)\n\r \n\r\n\rIF [AND(1,2,3)]: \n\r1) CustFctOut_LgtCtlLimD_FlgAcv = 1 (true) (considering Neutral-Value-Handling of CustFctIn_LgtCtlLimD_FlgAcv)\n\r2) VSOEM_s_FlgExcThVLgtLimD = 1 (true)\n\r3) CustFctOut_LgtCtl_StDiagEve_Int is not equal to VMMP_c_DiagEveSigDi\n\rTHEN: \n\rCustFctOut_LgtCtl_StDiagEve is equal to VMMP_c_DiagEveSigNotVld\n\rELSE:\n\rCustFctOut_LgtCtl_StDiagEve is equal to CustFctOut_LgtCtl_StDiagEve_Int",
  "Type": "Functional",
  "Status": "Released",
  "Summary": "",
  "Relevant": "yes",
  "column_12": "",
  "Foreign ID": "1477083.0",
  "Description": "Consider validity of LgtLimD Request in result of input signal monitoring (CustFctOut_LgtCtl_StDiagEve_Int)\n\r \n\r\n\rIF [AND(1,2,3)]: \n\r1) CustFctOut_LgtCtlLimD_FlgAcv = 1 (true) (considering Neutral-Value-Handling of CustFctIn_LgtCtlLimD_FlgAcv)\n\r2) VSOEM_s_FlgExcThVLgtLimD = 1 (true)\n\r3) CustFctOut_LgtCtl_StDiagEve_Int is not equal to VMMP_c_DiagEveSigDi\n\rTHEN: \n\rCustFctOut_LgtCtl_StDiagEve is equal to VMMP_c_DiagEveSigNotVld\n\rELSE:\n\rCustFctOut_LgtCtl_StDiagEve is equal to CustFctOut_LgtCtl_StDiagEve_Int",
  "Vehicle Launch": "",
  "Vehicle Platform": "E³ 1.2"
}
6816662782.0InformationnoFalsetype_not_target, status_filtered, relevance_filtered
The following functional requirement describes the valid case of the LgtCtl Service Bridge. Note: The following functional requi
The following functional requirement describes the valid case of the LgtCtl Service Bridge.

Note:

The following functional requirements for case description do not need an Else-Path because only one case will be set at the same time (all cases refer to the signal "*_StDiagEve" and check one specific value). If one case is not set, an other case will be set. It is not possible that no case is set. It is also not possible that two or more cases are set at the same time.

* Valid Case: No errors. Input signals are routed to the output signals (considering pre-conditions)

* 

 Disable Case:

* 

 NotVld Case:

* 

 Fail Case:

* 

 Init Case:

* 

 Susp Case:

For example: It can't be defined which case is set, if Valid Case is not set. Therefore a general Else-Path is not useful.

Raw

{
  "ID": "16662782.0",
  "ASIL": "  ",
  "Text": "The following functional requirement describes the valid case of the LgtCtl Service Bridge.\n\r \n\rNote:\n\rThe following functional requirements for case description do not need an Else-Path because only one case will be set at the same time (all cases refer to the signal \"*_StDiagEve\" and check one specific value). If one case is not set, an other case will be set. It is not possible that no case is set. It is also not possible that two or more cases are set at the same time.\n\r* Valid Case: No errors. Input signals are routed to the output signals (considering pre-conditions)\n\r* \n\r \n\r \n\r Disable Case:\n\r* \n\r \n\r \n\r NotVld Case:\n\r* \n\r \n\r \n\r Fail Case:\n\r* \n\r \n\r \n\r Init Case:\n\r* \n\r \n\r \n\r Susp Case:\n\rFor example: It can't be defined which case is set, if Valid Case is not set. Therefore a general Else-Path is not useful.",
  "Type": "Information",
  "Status": "",
  "Summary": "",
  "Relevant": "no",
  "column_12": "",
  "Foreign ID": "1353537.0",
  "Description": "The following functional requirement describes the valid case of the LgtCtl Service Bridge.\n\r \n\rNote:\n\rThe following functional requirements for case description do not need an Else-Path because only one case will be set at the same time (all cases refer to the signal \"*_StDiagEve\" and check one specific value). If one case is not set, an other case will be set. It is not possible that no case is set. It is also not possible that two or more cases are set at the same time.\n\r* Valid Case: No errors. Input signals are routed to the output signals (considering pre-conditions)\n\r* \n\r \n\r \n\r Disable Case:\n\r* \n\r \n\r \n\r NotVld Case:\n\r* \n\r \n\r \n\r Fail Case:\n\r* \n\r \n\r \n\r Init Case:\n\r* \n\r \n\r \n\r Susp Case:\n\rFor example: It can't be defined which case is set, if Valid Case is not set. Therefore a general Else-Path is not useful.",
  "Vehicle Launch": "",
  "Vehicle Platform": "E³ 1.2"
}
6916662783.0FunctionalReleasedyesTrue
Valid Case: No errors. Input signals are routed to the output signals (considering pre-conditions) IF: CustFctOut_LgtCtl_StDiag
Valid Case: No errors. Input signals are routed to the output signals (considering pre-conditions)

IF: 

CustFctOut_LgtCtl_StDiagEve = VMMP_c_DiagEveSigNone

THEN: 

CustFctOut_LgtCtl_StAcv = CustFctIn_LgtCtl_StAcv (considering Mapping and Neutral-Value-Handling of CustFctIn_LgtCtl_StAcv)

CustFctOut_LgtCtlCtlA_ADmd = CustFctIn_LgtCtlCtlA_ADmd 

CustFctOut_LgtCtlCtlA_APredTar = CustFctIn_LgtCtlCtlA_APredTar 

CustFctOut_LgtCtlCtlA_AGrdMaxDec = CustFctIn_LgtCtlCtlA_AGrdMaxDec 

CustFctOut_LgtCtlCtlA_AGrdMaxInc = CustFctIn_LgtCtlCtlA_AGrdMaxInc 

CustFctOut_LgtCtlCtlA_ATlrHiTar = CustFctIn_LgtCtlCtlA_ATlrHiTar 

CustFctOut_LgtCtlCtlA_ATlrHiDyn = CustFctIn_LgtCtlCtlA_ATlrHiDyn 

CustFctOut_LgtCtlCtlA_ATlrLoTar = CustFctIn_LgtCtlCtlA_ATlrLoTar 

CustFctOut_LgtCtlCtlA_MdDeceOnly = CustFctIn_LgtCtlCtlA_MdDeceOnly 

CustFctOut_LgtCtlCtlA_MdTarDyn = CustFctIn_LgtCtlCtlA_MdTarDyn 

CustFctOut_LgtCtlLimD_StAcv = CustFctIn_LgtCtlLimD_StAcv (considering Neutral-Value-Handling of CustFctIn_LgtCtlLimD_StAcv) 

CustFctOut_LgtCtlLimD_DTar = CustFctIn_LgtCtlLimD_DTar 

CustFctOut_LgtCtlLimD_FlgUpd = CustFctIn_LgtCtlLimD_StUpd (considering Calculation of output signal CustFctOut_LgtCtlLimD_FlgUpd) 

CustFctOut_LgtCtlStgy_TiRdyDrvOffDmd = CustFctIn_LgtCtlStgy_TiRdyDrvOffDmd (considering Neutral-Value-Handling of CustFctIn_LgtCtlStgy_TiRdyDrvOffDmd) 

CustFctOut_LgtCtl_StSailReq = CustFctIn_LgtCtl_StSailReq

Raw

{
  "ID": "16662783.0",
  "ASIL": "  ASIL B",
  "Text": "Valid Case: No errors. Input signals are routed to the output signals (considering pre-conditions)\n\rIF: \n\rCustFctOut_LgtCtl_StDiagEve = VMMP_c_DiagEveSigNone\n\rTHEN: \n\rCustFctOut_LgtCtl_StAcv = CustFctIn_LgtCtl_StAcv (considering Mapping and Neutral-Value-Handling of CustFctIn_LgtCtl_StAcv)\n\rCustFctOut_LgtCtlCtlA_ADmd = CustFctIn_LgtCtlCtlA_ADmd \n\rCustFctOut_LgtCtlCtlA_APredTar = CustFctIn_LgtCtlCtlA_APredTar \n\rCustFctOut_LgtCtlCtlA_AGrdMaxDec = CustFctIn_LgtCtlCtlA_AGrdMaxDec \n\rCustFctOut_LgtCtlCtlA_AGrdMaxInc = CustFctIn_LgtCtlCtlA_AGrdMaxInc \n\rCustFctOut_LgtCtlCtlA_ATlrHiTar = CustFctIn_LgtCtlCtlA_ATlrHiTar \n\rCustFctOut_LgtCtlCtlA_ATlrHiDyn = CustFctIn_LgtCtlCtlA_ATlrHiDyn \n\rCustFctOut_LgtCtlCtlA_ATlrLoTar = CustFctIn_LgtCtlCtlA_ATlrLoTar \n\rCustFctOut_LgtCtlCtlA_MdDeceOnly = CustFctIn_LgtCtlCtlA_MdDeceOnly \n\rCustFctOut_LgtCtlCtlA_MdTarDyn = CustFctIn_LgtCtlCtlA_MdTarDyn \n\rCustFctOut_LgtCtlLimD_StAcv = CustFctIn_LgtCtlLimD_StAcv (considering Neutral-Value-Handling of CustFctIn_LgtCtlLimD_StAcv) \n\rCustFctOut_LgtCtlLimD_DTar = CustFctIn_LgtCtlLimD_DTar \n\rCustFctOut_LgtCtlLimD_FlgUpd = CustFctIn_LgtCtlLimD_StUpd (considering Calculation of output signal CustFctOut_LgtCtlLimD_FlgUpd) \n\rCustFctOut_LgtCtlStgy_TiRdyDrvOffDmd = CustFctIn_LgtCtlStgy_TiRdyDrvOffDmd (considering Neutral-Value-Handling of CustFctIn_LgtCtlStgy_TiRdyDrvOffDmd) \n\rCustFctOut_LgtCtl_StSailReq = CustFctIn_LgtCtl_StSailReq",
  "Type": "Functional",
  "Status": "Released",
  "Summary": "",
  "Relevant": "yes",
  "column_12": "",
  "Foreign ID": "1353539.0",
  "Description": "Valid Case: No errors. Input signals are routed to the output signals (considering pre-conditions)\n\rIF: \n\rCustFctOut_LgtCtl_StDiagEve = VMMP_c_DiagEveSigNone\n\rTHEN: \n\rCustFctOut_LgtCtl_StAcv = CustFctIn_LgtCtl_StAcv (considering Mapping and Neutral-Value-Handling of CustFctIn_LgtCtl_StAcv)\n\rCustFctOut_LgtCtlCtlA_ADmd = CustFctIn_LgtCtlCtlA_ADmd \n\rCustFctOut_LgtCtlCtlA_APredTar = CustFctIn_LgtCtlCtlA_APredTar \n\rCustFctOut_LgtCtlCtlA_AGrdMaxDec = CustFctIn_LgtCtlCtlA_AGrdMaxDec \n\rCustFctOut_LgtCtlCtlA_AGrdMaxInc = CustFctIn_LgtCtlCtlA_AGrdMaxInc \n\rCustFctOut_LgtCtlCtlA_ATlrHiTar = CustFctIn_LgtCtlCtlA_ATlrHiTar \n\rCustFctOut_LgtCtlCtlA_ATlrHiDyn = CustFctIn_LgtCtlCtlA_ATlrHiDyn \n\rCustFctOut_LgtCtlCtlA_ATlrLoTar = CustFctIn_LgtCtlCtlA_ATlrLoTar \n\rCustFctOut_LgtCtlCtlA_MdDeceOnly = CustFctIn_LgtCtlCtlA_MdDeceOnly \n\rCustFctOut_LgtCtlCtlA_MdTarDyn = CustFctIn_LgtCtlCtlA_MdTarDyn \n\rCustFctOut_LgtCtlLimD_StAcv = CustFctIn_LgtCtlLimD_StAcv (considering Neutral-Value-Handling of CustFctIn_LgtCtlLimD_StAcv) \n\rCustFctOut_LgtCtlLimD_DTar = CustFctIn_LgtCtlLimD_DTar \n\rCustFctOut_LgtCtlLimD_FlgUpd = CustFctIn_LgtCtlLimD_StUpd (considering Calculation of output signal CustFctOut_LgtCtlLimD_FlgUpd) \n\rCustFctOut_LgtCtlStgy_TiRdyDrvOffDmd = CustFctIn_LgtCtlStgy_TiRdyDrvOffDmd (considering Neutral-Value-Handling of CustFctIn_LgtCtlStgy_TiRdyDrvOffDmd) \n\rCustFctOut_LgtCtl_StSailReq = CustFctIn_LgtCtl_StSailReq",
  "Vehicle Launch": "",
  "Vehicle Platform": "E³ 1.2"
}
7016662784.0FunctionalReleasedyesTrue
Valid Case: No errors. Input signals are routed to the output signals (considering pre-conditions) IF: CustFctOut_LgtCtl_StDiag
Valid Case: No errors. Input signals are routed to the output signals (considering pre-conditions)

IF: 

CustFctOut_LgtCtl_StDiagEve = VMMP_c_DiagEveSigNone

THEN: 

CustFctOut_LgtCtl_StAcv = CustFctIn_LgtCtl_StAcv (considering Mapping and Neutral-Value-Handling of CustFctIn_LgtCtl_StAcv)

CustFctOut_LgtCtlCtlA_ADmd = CustFctIn_LgtCtlCtlA_ADmd 

CustFctOut_LgtCtlCtlA_APredTar = CustFctIn_LgtCtlCtlA_APredTar 

CustFctOut_LgtCtlCtlA_AGrdMaxDec = CustFctIn_LgtCtlCtlA_AGrdMaxDec 

CustFctOut_LgtCtlCtlA_AGrdMaxInc = CustFctIn_LgtCtlCtlA_AGrdMaxInc 

CustFctOut_LgtCtlCtlA_ATlrHiTar = CustFctIn_LgtCtlCtlA_ATlrHiTar 

CustFctOut_LgtCtlCtlA_ATlrHiDyn = CustFctIn_LgtCtlCtlA_ATlrHiDyn 

CustFctOut_LgtCtlCtlA_ATlrLoTar = CustFctIn_LgtCtlCtlA_ATlrLoTar 

CustFctOut_LgtCtlCtlA_MdDeceOnly = CustFctIn_LgtCtlCtlA_MdDeceOnly 

CustFctOut_LgtCtlCtlA_MdTarDyn = CustFctIn_LgtCtlCtlA_MdTarDyn 

CustFctOut_LgtCtlLimD_FlgAcv = CustFctIn_LgtCtlLimD_StAcv (considering Neutral-Value-Handling of CustFctIn_LgtCtlLimD_FlgAcv) 

CustFctOut_LgtCtlLimD_DTar = CustFctIn_LgtCtlLimD_DTar 

CustFctOut_LgtCtlLimD_FlgUpd = CustFctIn_LgtCtlLimD_StUpd (considering Calculation of output signal CustFctOut_LgtCtlLimD_FlgUpd) 

CustFctOut_LgtCtlStgy_TiRdyDrvOffDmd = CustFctIn_LgtCtlStgy_TiRdyDrvOffDmd (considering Neutral-Value-Handling of CustFctIn_LgtCtlStgy_TiRdyDrvOffDmd) 

CustFctOut_LgtCtl_StSailReq = CustFctIn_LgtCtl_StSailReq

Raw

{
  "ID": "16662784.0",
  "ASIL": "  ASIL B",
  "Text": "Valid Case: No errors. Input signals are routed to the output signals (considering pre-conditions)\n\rIF: \n\rCustFctOut_LgtCtl_StDiagEve = VMMP_c_DiagEveSigNone\n\rTHEN: \n\rCustFctOut_LgtCtl_StAcv = CustFctIn_LgtCtl_StAcv (considering Mapping and Neutral-Value-Handling of CustFctIn_LgtCtl_StAcv)\n\rCustFctOut_LgtCtlCtlA_ADmd = CustFctIn_LgtCtlCtlA_ADmd \n\rCustFctOut_LgtCtlCtlA_APredTar = CustFctIn_LgtCtlCtlA_APredTar \n\rCustFctOut_LgtCtlCtlA_AGrdMaxDec = CustFctIn_LgtCtlCtlA_AGrdMaxDec \n\rCustFctOut_LgtCtlCtlA_AGrdMaxInc = CustFctIn_LgtCtlCtlA_AGrdMaxInc \n\rCustFctOut_LgtCtlCtlA_ATlrHiTar = CustFctIn_LgtCtlCtlA_ATlrHiTar \n\rCustFctOut_LgtCtlCtlA_ATlrHiDyn = CustFctIn_LgtCtlCtlA_ATlrHiDyn \n\rCustFctOut_LgtCtlCtlA_ATlrLoTar = CustFctIn_LgtCtlCtlA_ATlrLoTar \n\rCustFctOut_LgtCtlCtlA_MdDeceOnly = CustFctIn_LgtCtlCtlA_MdDeceOnly \n\rCustFctOut_LgtCtlCtlA_MdTarDyn = CustFctIn_LgtCtlCtlA_MdTarDyn \n\rCustFctOut_LgtCtlLimD_FlgAcv = CustFctIn_LgtCtlLimD_StAcv (considering Neutral-Value-Handling of CustFctIn_LgtCtlLimD_FlgAcv) \n\rCustFctOut_LgtCtlLimD_DTar = CustFctIn_LgtCtlLimD_DTar \n\rCustFctOut_LgtCtlLimD_FlgUpd = CustFctIn_LgtCtlLimD_StUpd (considering Calculation of output signal CustFctOut_LgtCtlLimD_FlgUpd) \n\rCustFctOut_LgtCtlStgy_TiRdyDrvOffDmd = CustFctIn_LgtCtlStgy_TiRdyDrvOffDmd (considering Neutral-Value-Handling of CustFctIn_LgtCtlStgy_TiRdyDrvOffDmd) \n\rCustFctOut_LgtCtl_StSailReq = CustFctIn_LgtCtl_StSailReq",
  "Type": "Functional",
  "Status": "Released",
  "Summary": "",
  "Relevant": "yes",
  "column_12": "",
  "Foreign ID": "1477085.0",
  "Description": "Valid Case: No errors. Input signals are routed to the output signals (considering pre-conditions)\n\rIF: \n\rCustFctOut_LgtCtl_StDiagEve = VMMP_c_DiagEveSigNone\n\rTHEN: \n\rCustFctOut_LgtCtl_StAcv = CustFctIn_LgtCtl_StAcv (considering Mapping and Neutral-Value-Handling of CustFctIn_LgtCtl_StAcv)\n\rCustFctOut_LgtCtlCtlA_ADmd = CustFctIn_LgtCtlCtlA_ADmd \n\rCustFctOut_LgtCtlCtlA_APredTar = CustFctIn_LgtCtlCtlA_APredTar \n\rCustFctOut_LgtCtlCtlA_AGrdMaxDec = CustFctIn_LgtCtlCtlA_AGrdMaxDec \n\rCustFctOut_LgtCtlCtlA_AGrdMaxInc = CustFctIn_LgtCtlCtlA_AGrdMaxInc \n\rCustFctOut_LgtCtlCtlA_ATlrHiTar = CustFctIn_LgtCtlCtlA_ATlrHiTar \n\rCustFctOut_LgtCtlCtlA_ATlrHiDyn = CustFctIn_LgtCtlCtlA_ATlrHiDyn \n\rCustFctOut_LgtCtlCtlA_ATlrLoTar = CustFctIn_LgtCtlCtlA_ATlrLoTar \n\rCustFctOut_LgtCtlCtlA_MdDeceOnly = CustFctIn_LgtCtlCtlA_MdDeceOnly \n\rCustFctOut_LgtCtlCtlA_MdTarDyn = CustFctIn_LgtCtlCtlA_MdTarDyn \n\rCustFctOut_LgtCtlLimD_FlgAcv = CustFctIn_LgtCtlLimD_StAcv (considering Neutral-Value-Handling of CustFctIn_LgtCtlLimD_FlgAcv) \n\rCustFctOut_LgtCtlLimD_DTar = CustFctIn_LgtCtlLimD_DTar \n\rCustFctOut_LgtCtlLimD_FlgUpd = CustFctIn_LgtCtlLimD_StUpd (considering Calculation of output signal CustFctOut_LgtCtlLimD_FlgUpd) \n\rCustFctOut_LgtCtlStgy_TiRdyDrvOffDmd = CustFctIn_LgtCtlStgy_TiRdyDrvOffDmd (considering Neutral-Value-Handling of CustFctIn_LgtCtlStgy_TiRdyDrvOffDmd) \n\rCustFctOut_LgtCtl_StSailReq = CustFctIn_LgtCtl_StSailReq",
  "Vehicle Launch": "",
  "Vehicle Platform": "E³ 1.2"
}
7116662785.0InformationnoFalsetype_not_target, status_filtered, relevance_filtered
The following functional requirements describe different cases of errors. In cases of errors, the result of input signal monitorin
The following functional requirements describe different cases of errors. In cases of errors, the result of input signal monitoring (*StDiagEve) determines the output signal behaviour.

* CustFctOut_LgtCtl_StAcv is set to a defined value or frozen to the last valid value.

* All other Outputs will be frozen to the last valid value.

Raw

{
  "ID": "16662785.0",
  "ASIL": "  ",
  "Text": "The following functional requirements describe different cases of errors. In cases of errors, the result of input signal monitoring (*StDiagEve) determines the output signal behaviour.\n\r* CustFctOut_LgtCtl_StAcv is set to a defined value or frozen to the last valid value.\n\r* All other Outputs will be frozen to the last valid value.",
  "Type": "Information",
  "Status": "",
  "Summary": "",
  "Relevant": "no",
  "column_12": "",
  "Foreign ID": "1353538.0",
  "Description": "The following functional requirements describe different cases of errors. In cases of errors, the result of input signal monitoring (*StDiagEve) determines the output signal behaviour.\n\r* CustFctOut_LgtCtl_StAcv is set to a defined value or frozen to the last valid value.\n\r* All other Outputs will be frozen to the last valid value.",
  "Vehicle Launch": "",
  "Vehicle Platform": "E³ 1.2"
}
7216662786.0InformationnoFalsetype_not_target, status_filtered, relevance_filtered
The following functional requirements describe different cases of errors. In cases of errors, the result of input signal monitorin
The following functional requirements describe different cases of errors. In cases of errors, the result of input signal monitoring (*StDiagEve) determines the output signal behaviour.

* CustFctOut_LgtCtl_StAcv and CustFctOut_LgtCtlLimD_FlgAcv are set to a defined value or frozen to the last valid value.

* All other Outputs will be frozen to the last valid value.

Raw

{
  "ID": "16662786.0",
  "ASIL": "  ",
  "Text": "The following functional requirements describe different cases of errors. In cases of errors, the result of input signal monitoring (*StDiagEve) determines the output signal behaviour.\n\r* CustFctOut_LgtCtl_StAcv and CustFctOut_LgtCtlLimD_FlgAcv are set to a defined value or frozen to the last valid value.\n\r* All other Outputs will be frozen to the last valid value.",
  "Type": "Information",
  "Status": "",
  "Summary": "",
  "Relevant": "no",
  "column_12": "",
  "Foreign ID": "1477086.0",
  "Description": "The following functional requirements describe different cases of errors. In cases of errors, the result of input signal monitoring (*StDiagEve) determines the output signal behaviour.\n\r* CustFctOut_LgtCtl_StAcv and CustFctOut_LgtCtlLimD_FlgAcv are set to a defined value or frozen to the last valid value.\n\r* All other Outputs will be frozen to the last valid value.",
  "Vehicle Launch": "",
  "Vehicle Platform": "E³ 1.2"
}
7316662787.0FunctionalReleasedyesTrue
Disable Case: IF: CustFctOut_LgtCtl_StDiagEve = VMMP_c_DiagEveSigDi THEN: CustFctOut_LgtCtl_StAcv = VMMP_c_StReqCusFctNoReq
Disable Case:

IF: 

CustFctOut_LgtCtl_StDiagEve = VMMP_c_DiagEveSigDi

THEN: 

CustFctOut_LgtCtl_StAcv = VMMP_c_StReqCusFctNoReq

All other Outputs shall be equal to the value of previous computation cycle (Hold Last Value)

Raw

{
  "ID": "16662787.0",
  "ASIL": "  ASIL B",
  "Text": "Disable Case:\n\r \n\r\n\rIF: \n\rCustFctOut_LgtCtl_StDiagEve = VMMP_c_DiagEveSigDi\n\rTHEN: \n\rCustFctOut_LgtCtl_StAcv = VMMP_c_StReqCusFctNoReq\n\rAll other Outputs shall be equal to the value of previous computation cycle (Hold Last Value)",
  "Type": "Functional",
  "Status": "Released",
  "Summary": "",
  "Relevant": "yes",
  "column_12": "",
  "Foreign ID": "1353529.0",
  "Description": "Disable Case:\n\r \n\r\n\rIF: \n\rCustFctOut_LgtCtl_StDiagEve = VMMP_c_DiagEveSigDi\n\rTHEN: \n\rCustFctOut_LgtCtl_StAcv = VMMP_c_StReqCusFctNoReq\n\rAll other Outputs shall be equal to the value of previous computation cycle (Hold Last Value)",
  "Vehicle Launch": "",
  "Vehicle Platform": "E³ 1.2"
}
7416662788.0FunctionalReleasedyesTrue
Disable Case: IF: CustFctOut_LgtCtl_StDiagEve = VMMP_c_DiagEveSigDi THEN: CustFctOut_LgtCtl_StAcv = VMMP_c_StReqCusFctNoReq
Disable Case:

IF: 

CustFctOut_LgtCtl_StDiagEve = VMMP_c_DiagEveSigDi

THEN: 

CustFctOut_LgtCtl_StAcv = VMMP_c_StReqCusFctNoReq

CustFctOut_LgtCtlLimD_FlgAcv = 0 (false)

All other Outputs shall be equal to the value of previous computation cycle (Hold Last Value)

Raw

{
  "ID": "16662788.0",
  "ASIL": "  ASIL B",
  "Text": "Disable Case:\n\r \n\r\n\rIF: \n\rCustFctOut_LgtCtl_StDiagEve = VMMP_c_DiagEveSigDi\n\rTHEN: \n\rCustFctOut_LgtCtl_StAcv = VMMP_c_StReqCusFctNoReq\n\rCustFctOut_LgtCtlLimD_FlgAcv = 0 (false)\n\rAll other Outputs shall be equal to the value of previous computation cycle (Hold Last Value)",
  "Type": "Functional",
  "Status": "Released",
  "Summary": "",
  "Relevant": "yes",
  "column_12": "",
  "Foreign ID": "1477087.0",
  "Description": "Disable Case:\n\r \n\r\n\rIF: \n\rCustFctOut_LgtCtl_StDiagEve = VMMP_c_DiagEveSigDi\n\rTHEN: \n\rCustFctOut_LgtCtl_StAcv = VMMP_c_StReqCusFctNoReq\n\rCustFctOut_LgtCtlLimD_FlgAcv = 0 (false)\n\rAll other Outputs shall be equal to the value of previous computation cycle (Hold Last Value)",
  "Vehicle Launch": "",
  "Vehicle Platform": "E³ 1.2"
}
7516662789.0FunctionalReleasedyesTrue
NotVld Case: IF: CustFctOut_LgtCtl_StDiagEve = VMMP_c_DiagEveSigNotVld THEN: CustFctOut_LgtCtl_StAcv = VMMP_c_StReqCusFctNoR
NotVld Case:

IF: 

CustFctOut_LgtCtl_StDiagEve = VMMP_c_DiagEveSigNotVld

THEN: 

CustFctOut_LgtCtl_StAcv = VMMP_c_StReqCusFctNoReq

All other Outputs shall be equal to the value of previous computation cycle (Hold Last Value)

Raw

{
  "ID": "16662789.0",
  "ASIL": "  ASIL B",
  "Text": "NotVld Case:\n\r \n\rIF: \n\rCustFctOut_LgtCtl_StDiagEve = VMMP_c_DiagEveSigNotVld\n\rTHEN: \n\rCustFctOut_LgtCtl_StAcv = VMMP_c_StReqCusFctNoReq\n\rAll other Outputs shall be equal to the value of previous computation cycle (Hold Last Value)",
  "Type": "Functional",
  "Status": "Released",
  "Summary": "",
  "Relevant": "yes",
  "column_12": "",
  "Foreign ID": "1353527.0",
  "Description": "NotVld Case:\n\r \n\rIF: \n\rCustFctOut_LgtCtl_StDiagEve = VMMP_c_DiagEveSigNotVld\n\rTHEN: \n\rCustFctOut_LgtCtl_StAcv = VMMP_c_StReqCusFctNoReq\n\rAll other Outputs shall be equal to the value of previous computation cycle (Hold Last Value)",
  "Vehicle Launch": "",
  "Vehicle Platform": "E³ 1.2"
}
7616662790.0FunctionalReleasedyesTrue
NotVld Case: IF: CustFctOut_LgtCtl_StDiagEve = VMMP_c_DiagEveSigNotVld THEN: CustFctOut_LgtCtl_StAcv = VMMP_c_StReqCusFctNoR
NotVld Case:

IF: 

CustFctOut_LgtCtl_StDiagEve = VMMP_c_DiagEveSigNotVld

THEN: 

CustFctOut_LgtCtl_StAcv = VMMP_c_StReqCusFctNoReq

CustFctOut_LgtCtlLimD_FlgAcv = 0 (false)

All other Outputs shall be equal to the value of previous computation cycle (Hold Last Value)

Raw

{
  "ID": "16662790.0",
  "ASIL": "  ASIL B",
  "Text": "NotVld Case:\n\r \n\rIF: \n\rCustFctOut_LgtCtl_StDiagEve = VMMP_c_DiagEveSigNotVld\n\rTHEN: \n\rCustFctOut_LgtCtl_StAcv = VMMP_c_StReqCusFctNoReq\n\rCustFctOut_LgtCtlLimD_FlgAcv = 0 (false)\n\rAll other Outputs shall be equal to the value of previous computation cycle (Hold Last Value)",
  "Type": "Functional",
  "Status": "Released",
  "Summary": "",
  "Relevant": "yes",
  "column_12": "",
  "Foreign ID": "1477088.0",
  "Description": "NotVld Case:\n\r \n\rIF: \n\rCustFctOut_LgtCtl_StDiagEve = VMMP_c_DiagEveSigNotVld\n\rTHEN: \n\rCustFctOut_LgtCtl_StAcv = VMMP_c_StReqCusFctNoReq\n\rCustFctOut_LgtCtlLimD_FlgAcv = 0 (false)\n\rAll other Outputs shall be equal to the value of previous computation cycle (Hold Last Value)",
  "Vehicle Launch": "",
  "Vehicle Platform": "E³ 1.2"
}
7716662791.0FunctionalReleasedyesTrue
Fail Case: IF: CustFctOut_LgtCtl_StDiagEve = VMMP_c_DiagEveSigFail THEN: CustFctOut_LgtCtl_StAcv = VMMP_c_StReqCusFctNoReq
Fail Case:

IF: 

CustFctOut_LgtCtl_StDiagEve = VMMP_c_DiagEveSigFail

THEN: 

CustFctOut_LgtCtl_StAcv = VMMP_c_StReqCusFctNoReq

All other Outputs shall be equal to the value of previous computation cycle (Hold Last Value)

Raw

{
  "ID": "16662791.0",
  "ASIL": "  ASIL B",
  "Text": "Fail Case:\n\r \n\rIF: \n\rCustFctOut_LgtCtl_StDiagEve = VMMP_c_DiagEveSigFail\n\rTHEN: \n\rCustFctOut_LgtCtl_StAcv = VMMP_c_StReqCusFctNoReq\n\rAll other Outputs shall be equal to the value of previous computation cycle (Hold Last Value)",
  "Type": "Functional",
  "Status": "Released",
  "Summary": "",
  "Relevant": "yes",
  "column_12": "",
  "Foreign ID": "1353535.0",
  "Description": "Fail Case:\n\r \n\rIF: \n\rCustFctOut_LgtCtl_StDiagEve = VMMP_c_DiagEveSigFail\n\rTHEN: \n\rCustFctOut_LgtCtl_StAcv = VMMP_c_StReqCusFctNoReq\n\rAll other Outputs shall be equal to the value of previous computation cycle (Hold Last Value)",
  "Vehicle Launch": "",
  "Vehicle Platform": "E³ 1.2"
}
7816662792.0FunctionalReleasedyesTrue
Fail Case: IF: CustFctOut_LgtCtl_StDiagEve = VMMP_c_DiagEveSigFail THEN: CustFctOut_LgtCtl_StAcv = VMMP_c_StReqCusFctNoReq
Fail Case:

IF: 

CustFctOut_LgtCtl_StDiagEve = VMMP_c_DiagEveSigFail

THEN: 

CustFctOut_LgtCtl_StAcv = VMMP_c_StReqCusFctNoReq

CustFctOut_LgtCtlLimD_FlgAcv = 0 (false)

All other Outputs shall be equal to the value of previous computation cycle (Hold Last Value)

Raw

{
  "ID": "16662792.0",
  "ASIL": "  ASIL B",
  "Text": "Fail Case:\n\r \n\rIF: \n\rCustFctOut_LgtCtl_StDiagEve = VMMP_c_DiagEveSigFail\n\rTHEN: \n\rCustFctOut_LgtCtl_StAcv = VMMP_c_StReqCusFctNoReq\n\rCustFctOut_LgtCtlLimD_FlgAcv = 0 (false)\n\rAll other Outputs shall be equal to the value of previous computation cycle (Hold Last Value)",
  "Type": "Functional",
  "Status": "Released",
  "Summary": "",
  "Relevant": "yes",
  "column_12": "",
  "Foreign ID": "1477089.0",
  "Description": "Fail Case:\n\r \n\rIF: \n\rCustFctOut_LgtCtl_StDiagEve = VMMP_c_DiagEveSigFail\n\rTHEN: \n\rCustFctOut_LgtCtl_StAcv = VMMP_c_StReqCusFctNoReq\n\rCustFctOut_LgtCtlLimD_FlgAcv = 0 (false)\n\rAll other Outputs shall be equal to the value of previous computation cycle (Hold Last Value)",
  "Vehicle Launch": "",
  "Vehicle Platform": "E³ 1.2"
}
7916662793.0FunctionalReleasedyesTrue
Init Case: IF: CustFctOut_LgtCtl_StDiagEve = VMMP_c_DiagEveSigIni THEN: CustFctOut_LgtCtl_StAcv = VMMP_c_StReqCusFctNoReq
Init

 Case:

IF: 

CustFctOut_LgtCtl_StDiagEve = VMMP_c_DiagEveSigIni

THEN: 

CustFctOut_LgtCtl_StAcv = VMMP_c_StReqCusFctNoReq

All other Outputs shall be equal to the value of previous computation cycle (Hold Last Value)

Raw

{
  "ID": "16662793.0",
  "ASIL": "  ASIL B",
  "Text": "Init\n\r Case:\n\r \n\rIF: \n\rCustFctOut_LgtCtl_StDiagEve = VMMP_c_DiagEveSigIni\n\rTHEN: \n\rCustFctOut_LgtCtl_StAcv = VMMP_c_StReqCusFctNoReq\n\rAll other Outputs shall be equal to the value of previous computation cycle (Hold Last Value)",
  "Type": "Functional",
  "Status": "Released",
  "Summary": "",
  "Relevant": "yes",
  "column_12": "",
  "Foreign ID": "1353534.0",
  "Description": "Init\n\r Case:\n\r \n\rIF: \n\rCustFctOut_LgtCtl_StDiagEve = VMMP_c_DiagEveSigIni\n\rTHEN: \n\rCustFctOut_LgtCtl_StAcv = VMMP_c_StReqCusFctNoReq\n\rAll other Outputs shall be equal to the value of previous computation cycle (Hold Last Value)",
  "Vehicle Launch": "",
  "Vehicle Platform": "E³ 1.2"
}
8016662794.0FunctionalReleasedyesTrue
Init Case: IF: CustFctOut_LgtCtl_StDiagEve = VMMP_c_DiagEveSigIni THEN: CustFctOut_LgtCtl_StAcv = VMMP_c_StReqCusFctNoReq
Init

 Case:

IF: 

CustFctOut_LgtCtl_StDiagEve = VMMP_c_DiagEveSigIni

THEN: 

CustFctOut_LgtCtl_StAcv = VMMP_c_StReqCusFctNoReq

CustFctOut_LgtCtlLimD_FlgAcv = 0 (false)

All other Outputs shall be equal to the value of previous computation cycle (Hold Last Value)

Raw

{
  "ID": "16662794.0",
  "ASIL": "  ASIL B",
  "Text": "Init\n\r Case:\n\r \n\rIF: \n\rCustFctOut_LgtCtl_StDiagEve = VMMP_c_DiagEveSigIni\n\rTHEN: \n\rCustFctOut_LgtCtl_StAcv = VMMP_c_StReqCusFctNoReq\n\rCustFctOut_LgtCtlLimD_FlgAcv = 0 (false)\n\rAll other Outputs shall be equal to the value of previous computation cycle (Hold Last Value)",
  "Type": "Functional",
  "Status": "Released",
  "Summary": "",
  "Relevant": "yes",
  "column_12": "",
  "Foreign ID": "1477090.0",
  "Description": "Init\n\r Case:\n\r \n\rIF: \n\rCustFctOut_LgtCtl_StDiagEve = VMMP_c_DiagEveSigIni\n\rTHEN: \n\rCustFctOut_LgtCtl_StAcv = VMMP_c_StReqCusFctNoReq\n\rCustFctOut_LgtCtlLimD_FlgAcv = 0 (false)\n\rAll other Outputs shall be equal to the value of previous computation cycle (Hold Last Value)",
  "Vehicle Launch": "",
  "Vehicle Platform": "E³ 1.2"
}
8116662795.0FunctionalReleasedyesTrue
Susp Case: IF: CustFctOut_LgtCtl_StDiagEve = VMMP_c_DiagEveSigSusp THEN: CustFctOut_LgtCtl_StAcv shall be equal to the value
Susp Case:

IF: 

CustFctOut_LgtCtl_StDiagEve = VMMP_c_DiagEveSigSusp

THEN: 

CustFctOut_LgtCtl_StAcv shall be equal to the value of previous computation cycle (Hold Last Value)

All other Outputs shall be equal to the value of previous computation cycle (Hold Last Value)

Raw

{
  "ID": "16662795.0",
  "ASIL": "  ASIL B",
  "Text": "Susp Case:\n\r \n\rIF: \n\rCustFctOut_LgtCtl_StDiagEve = VMMP_c_DiagEveSigSusp\n\rTHEN: \n\rCustFctOut_LgtCtl_StAcv shall be equal to the value of previous computation cycle (Hold Last Value)\n\rAll other Outputs shall be equal to the value of previous computation cycle (Hold Last Value)",
  "Type": "Functional",
  "Status": "Released",
  "Summary": "",
  "Relevant": "yes",
  "column_12": "",
  "Foreign ID": "1353531.0",
  "Description": "Susp Case:\n\r \n\rIF: \n\rCustFctOut_LgtCtl_StDiagEve = VMMP_c_DiagEveSigSusp\n\rTHEN: \n\rCustFctOut_LgtCtl_StAcv shall be equal to the value of previous computation cycle (Hold Last Value)\n\rAll other Outputs shall be equal to the value of previous computation cycle (Hold Last Value)",
  "Vehicle Launch": "",
  "Vehicle Platform": "E³ 1.2"
}
8216662796.0FunctionalReleasedyesTrue
Susp Case: IF: CustFctOut_LgtCtl_StDiagEve = VMMP_c_DiagEveSigSusp THEN: CustFctOut_LgtCtl_StAcv shall be equal to the value
Susp Case:

IF: 

CustFctOut_LgtCtl_StDiagEve = VMMP_c_DiagEveSigSusp

THEN: 

CustFctOut_LgtCtl_StAcv shall be equal to the value of previous computation cycle (Hold Last Value)

CustFctOut_LgtCtlLimD_FlgAcv shall be equal to the value of previous computation cycle (Hold Last Value)

All other Outputs shall be equal to the value of previous computation cycle (Hold Last Value)

Raw

{
  "ID": "16662796.0",
  "ASIL": "  ASIL B",
  "Text": "Susp Case:\n\r \n\rIF: \n\rCustFctOut_LgtCtl_StDiagEve = VMMP_c_DiagEveSigSusp\n\rTHEN: \n\rCustFctOut_LgtCtl_StAcv shall be equal to the value of previous computation cycle (Hold Last Value)\n\rCustFctOut_LgtCtlLimD_FlgAcv shall be equal to the value of previous computation cycle (Hold Last Value)\n\rAll other Outputs shall be equal to the value of previous computation cycle (Hold Last Value)",
  "Type": "Functional",
  "Status": "Released",
  "Summary": "",
  "Relevant": "yes",
  "column_12": "",
  "Foreign ID": "1477091.0",
  "Description": "Susp Case:\n\r \n\rIF: \n\rCustFctOut_LgtCtl_StDiagEve = VMMP_c_DiagEveSigSusp\n\rTHEN: \n\rCustFctOut_LgtCtl_StAcv shall be equal to the value of previous computation cycle (Hold Last Value)\n\rCustFctOut_LgtCtlLimD_FlgAcv shall be equal to the value of previous computation cycle (Hold Last Value)\n\rAll other Outputs shall be equal to the value of previous computation cycle (Hold Last Value)",
  "Vehicle Launch": "",
  "Vehicle Platform": "E³ 1.2"
}
8316662797.0FoldernoFalsetype_not_target, status_filtered, relevance_filtered
Specific Conditions and Requirements
Specific Conditions and Requirements

Raw

{
  "ID": "16662797.0",
  "ASIL": "  ",
  "Text": "Specific Conditions and Requirements",
  "Type": "Folder",
  "Status": "",
  "Summary": "Specific Conditions and Requirements",
  "Relevant": "no",
  "column_12": "",
  "Foreign ID": "1338949.0",
  "Description": "",
  "Vehicle Launch": "",
  "Vehicle Platform": "E³ 1.2"
}
8416662798.0InformationnoFalsetype_not_target, status_filtered, relevance_filtered
The module output values in the initial timestep are not equal to the defined Init Values in the signal specification file. It is
The module output values in the initial timestep are not equal to the defined Init Values in the signal specification file.

It is not necessary to check the output values of the modul within the initial timestep.

Raw

{
  "ID": "16662798.0",
  "ASIL": "  ",
  "Text": "The module output values in the initial timestep are not equal to the defined Init Values in the signal specification file.\n\r \n\rIt is not necessary to check the output values of the modul within the initial timestep.",
  "Type": "Information",
  "Status": "",
  "Summary": "",
  "Relevant": "no",
  "column_12": "",
  "Foreign ID": "1341256.0",
  "Description": "The module output values in the initial timestep are not equal to the defined Init Values in the signal specification file.\n\r \n\rIt is not necessary to check the output values of the modul within the initial timestep.",
  "Vehicle Launch": "",
  "Vehicle Platform": "E³ 1.2"
}
8516662799.0FoldernoFalsetype_not_target, status_filtered, relevance_filtered
ACC LgtCtl Service
ACC LgtCtl Service

Raw

{
  "ID": "16662799.0",
  "ASIL": "  ",
  "Text": "ACC LgtCtl Service",
  "Type": "Folder",
  "Status": "",
  "Summary": "ACC LgtCtl Service",
  "Relevant": "no",
  "column_12": "",
  "Foreign ID": "1338980.0",
  "Description": "",
  "Vehicle Launch": "",
  "Vehicle Platform": "E³ 1.2"
}
8616662800.0Pre ConditionReleasednoFalsetype_not_target, relevance_filtered
Replace generic input signals by specific input signal values, signal classifiers and parameters Inputs Signal-Values: CustFctI
Replace generic input signals by specific input signal values, signal classifiers and parameters

Inputs

Signal-Values:

CustFctIn_LgtCtl_StAcv = ACC_s_LgtCtl_StAcv 

CustFctIn_LgtCtlCtlA_ADmd = ACC_s_LgtCtlA_ADmd 

CustFctIn_LgtCtlCtlA_APredTar = ACC_s_LgtCtlA_APredTar 

CustFctIn_LgtCtlCtlA_AGrdMaxDec = ACC_s_LgtCtlA_AGrdMaxDec 

CustFctIn_LgtCtlCtlA_AGrdMaxInc = ACC_s_LgtCtlA_AGrdMaxInc 

CustFctIn_LgtCtlCtlA_ATlrHiTar = ACC_s_LgtCtlA_ATlrHiTar 

CustFctIn_LgtCtlCtlA_ATlrHiDyn = ACC_s_LgtCtlA_ATlrHiDyn 

CustFctIn_LgtCtlCtlA_ATlrLoTar = ACC_s_LgtCtlA_ATlrLoTar 

CustFctIn_LgtCtlCtlA_MdDeceOnly = ACC_s_LgtCtlA_MdDeceOnly 

CustFctIn_LgtCtlCtlA_MdTarDyn = ACC_s_LgtCtlA_MdTarDyn 

CustFctIn_LgtCtlLimD_StAcv = ACC_s_LgtLimD_StAcv 

CustFctIn_LgtCtlLimD_DTar = ACC_s_LgtLimD_DTar 

CustFctIn_LgtCtlLimD_StUpd = ACC_s_LgtLimD_StUpd 

CustFctIn_LgtCtlStgy_TiRdyDrvOffDmd = ACC_s_LgtStgy_TiRdyDrvOffDmd 

CustFctIn_LgtCtl_StSailReq = ACC_s_LgtCtl_StSailReq

Signal-Classifier:

CustFctIn_LgtCtl_StAcv_sc = ACC_sc_LgtCtl_StAcv 

CustFctIn_LgtCtlCtlA_ADmd_sc = ACC_sc_LgtCtlA_ADmd 

CustFctIn_LgtCtlCtlA_APredTar_sc = ACC_sc_LgtCtlA_APredTar 

CustFctIn_LgtCtlCtlA_AGrdMaxDec_sc = ACC_sc_LgtCtlA_AGrdMaxDec 

CustFctIn_LgtCtlCtlA_AGrdMaxInc_sc = ACC_sc_LgtCtlA_AGrdMaxInc 

CustFctIn_LgtCtlCtlA_ATlrHiTar_sc = ACC_sc_LgtCtlA_ATlrHiTar 

CustFctIn_LgtCtlCtlA_ATlrHiDyn_sc = ACC_sc_LgtCtlA_ATlrHiDyn 

CustFctIn_LgtCtlCtlA_ATlrLoTar_sc = ACC_sc_LgtCtlA_ATlrLoTar 

CustFctIn_LgtCtlCtlA_MdDeceOnly_sc = ACC_sc_LgtCtlA_MdDeceOnly 

CustFctIn_LgtCtlCtlA_MdTarDyn_sc = ACC_sc_LgtCtlA_MdTarDyn 

CustFctIn_LgtCtlLimD_StAcv_sc = ACC_sc_LgtLimD_StAcv 

CustFctIn_LgtCtlLimD_DTar_sc = ACC_sc_LgtLimD_DTar 

CustFctIn_LgtCtlLimD_StUpd_sc = ACC_sc_LgtLimD_StUpd 

CustFctIn_LgtCtlStgy_TiRdyDrvOffDmd_sc = ACC_sc_LgtStgy_TiRdyDrvOffDmd 

CustFctIn_LgtCtl_StSailReq_sc = ACC_sc_LgtCtl_StSailReq

Parameters 

CustFctIn_LgtCtl_BitFldConf = VMMP_CFBACC_p_ACCLgtCtl_BitFldConf

CustFctIn_LgtCtl_FlgIniExcDet = VMMP_CFBACC_c_ACCLgtCtl_FlgIniExcDet

CustFctIn_LgtCtl_FlgErrQlfAcv = VMMP_CFBACC_c_ACCLgtCtl_FlgErrQlfAcv

CustFctIn_LgtCtl_TurnOff = VMMP_CFBACC_p_ACCLgtCtl_TurnOff

Raw

{
  "ID": "16662800.0",
  "ASIL": "  ASIL B",
  "Text": "Replace generic input signals by specific input signal values, signal classifiers and parameters\n\r \n\r\n\rInputs\n\rSignal-Values:\n\rCustFctIn_LgtCtl_StAcv = ACC_s_LgtCtl_StAcv \n\rCustFctIn_LgtCtlCtlA_ADmd = ACC_s_LgtCtlA_ADmd \n\rCustFctIn_LgtCtlCtlA_APredTar = ACC_s_LgtCtlA_APredTar \n\rCustFctIn_LgtCtlCtlA_AGrdMaxDec = ACC_s_LgtCtlA_AGrdMaxDec \n\rCustFctIn_LgtCtlCtlA_AGrdMaxInc = ACC_s_LgtCtlA_AGrdMaxInc \n\rCustFctIn_LgtCtlCtlA_ATlrHiTar = ACC_s_LgtCtlA_ATlrHiTar \n\rCustFctIn_LgtCtlCtlA_ATlrHiDyn = ACC_s_LgtCtlA_ATlrHiDyn \n\rCustFctIn_LgtCtlCtlA_ATlrLoTar = ACC_s_LgtCtlA_ATlrLoTar \n\rCustFctIn_LgtCtlCtlA_MdDeceOnly = ACC_s_LgtCtlA_MdDeceOnly \n\rCustFctIn_LgtCtlCtlA_MdTarDyn = ACC_s_LgtCtlA_MdTarDyn \n\r \n\rCustFctIn_LgtCtlLimD_StAcv = ACC_s_LgtLimD_StAcv \n\rCustFctIn_LgtCtlLimD_DTar = ACC_s_LgtLimD_DTar \n\rCustFctIn_LgtCtlLimD_StUpd = ACC_s_LgtLimD_StUpd \n\r \n\rCustFctIn_LgtCtlStgy_TiRdyDrvOffDmd = ACC_s_LgtStgy_TiRdyDrvOffDmd \n\rCustFctIn_LgtCtl_StSailReq = ACC_s_LgtCtl_StSailReq\n\r \n\rSignal-Classifier:\n\rCustFctIn_LgtCtl_StAcv_sc = ACC_sc_LgtCtl_StAcv \n\rCustFctIn_LgtCtlCtlA_ADmd_sc = ACC_sc_LgtCtlA_ADmd \n\rCustFctIn_LgtCtlCtlA_APredTar_sc = ACC_sc_LgtCtlA_APredTar \n\rCustFctIn_LgtCtlCtlA_AGrdMaxDec_sc = ACC_sc_LgtCtlA_AGrdMaxDec \n\rCustFctIn_LgtCtlCtlA_AGrdMaxInc_sc = ACC_sc_LgtCtlA_AGrdMaxInc \n\rCustFctIn_LgtCtlCtlA_ATlrHiTar_sc = ACC_sc_LgtCtlA_ATlrHiTar \n\rCustFctIn_LgtCtlCtlA_ATlrHiDyn_sc = ACC_sc_LgtCtlA_ATlrHiDyn \n\rCustFctIn_LgtCtlCtlA_ATlrLoTar_sc = ACC_sc_LgtCtlA_ATlrLoTar \n\rCustFctIn_LgtCtlCtlA_MdDeceOnly_sc = ACC_sc_LgtCtlA_MdDeceOnly \n\rCustFctIn_LgtCtlCtlA_MdTarDyn_sc = ACC_sc_LgtCtlA_MdTarDyn \n\r \n\rCustFctIn_LgtCtlLimD_StAcv_sc = ACC_sc_LgtLimD_StAcv \n\rCustFctIn_LgtCtlLimD_DTar_sc = ACC_sc_LgtLimD_DTar \n\rCustFctIn_LgtCtlLimD_StUpd_sc = ACC_sc_LgtLimD_StUpd \n\r \n\rCustFctIn_LgtCtlStgy_TiRdyDrvOffDmd_sc = ACC_sc_LgtStgy_TiRdyDrvOffDmd \n\rCustFctIn_LgtCtl_StSailReq_sc = ACC_sc_LgtCtl_StSailReq\n\r \n\rParameters \n\rCustFctIn_LgtCtl_BitFldConf = VMMP_CFBACC_p_ACCLgtCtl_BitFldConf\n\rCustFctIn_LgtCtl_FlgIniExcDet = VMMP_CFBACC_c_ACCLgtCtl_FlgIniExcDet\n\rCustFctIn_LgtCtl_FlgErrQlfAcv = VMMP_CFBACC_c_ACCLgtCtl_FlgErrQlfAcv\n\rCustFctIn_LgtCtl_TurnOff = VMMP_CFBACC_p_ACCLgtCtl_TurnOff",
  "Type": "Pre Condition",
  "Status": "Released",
  "Summary": "",
  "Relevant": "no",
  "column_12": "",
  "Foreign ID": "1338979.0",
  "Description": "Replace generic input signals by specific input signal values, signal classifiers and parameters\n\r \n\r\n\rInputs\n\rSignal-Values:\n\rCustFctIn_LgtCtl_StAcv = ACC_s_LgtCtl_StAcv \n\rCustFctIn_LgtCtlCtlA_ADmd = ACC_s_LgtCtlA_ADmd \n\rCustFctIn_LgtCtlCtlA_APredTar = ACC_s_LgtCtlA_APredTar \n\rCustFctIn_LgtCtlCtlA_AGrdMaxDec = ACC_s_LgtCtlA_AGrdMaxDec \n\rCustFctIn_LgtCtlCtlA_AGrdMaxInc = ACC_s_LgtCtlA_AGrdMaxInc \n\rCustFctIn_LgtCtlCtlA_ATlrHiTar = ACC_s_LgtCtlA_ATlrHiTar \n\rCustFctIn_LgtCtlCtlA_ATlrHiDyn = ACC_s_LgtCtlA_ATlrHiDyn \n\rCustFctIn_LgtCtlCtlA_ATlrLoTar = ACC_s_LgtCtlA_ATlrLoTar \n\rCustFctIn_LgtCtlCtlA_MdDeceOnly = ACC_s_LgtCtlA_MdDeceOnly \n\rCustFctIn_LgtCtlCtlA_MdTarDyn = ACC_s_LgtCtlA_MdTarDyn \n\r \n\rCustFctIn_LgtCtlLimD_StAcv = ACC_s_LgtLimD_StAcv \n\rCustFctIn_LgtCtlLimD_DTar = ACC_s_LgtLimD_DTar \n\rCustFctIn_LgtCtlLimD_StUpd = ACC_s_LgtLimD_StUpd \n\r \n\rCustFctIn_LgtCtlStgy_TiRdyDrvOffDmd = ACC_s_LgtStgy_TiRdyDrvOffDmd \n\rCustFctIn_LgtCtl_StSailReq = ACC_s_LgtCtl_StSailReq\n\r \n\rSignal-Classifier:\n\rCustFctIn_LgtCtl_StAcv_sc = ACC_sc_LgtCtl_StAcv \n\rCustFctIn_LgtCtlCtlA_ADmd_sc = ACC_sc_LgtCtlA_ADmd \n\rCustFctIn_LgtCtlCtlA_APredTar_sc = ACC_sc_LgtCtlA_APredTar \n\rCustFctIn_LgtCtlCtlA_AGrdMaxDec_sc = ACC_sc_LgtCtlA_AGrdMaxDec \n\rCustFctIn_LgtCtlCtlA_AGrdMaxInc_sc = ACC_sc_LgtCtlA_AGrdMaxInc \n\rCustFctIn_LgtCtlCtlA_ATlrHiTar_sc = ACC_sc_LgtCtlA_ATlrHiTar \n\rCustFctIn_LgtCtlCtlA_ATlrHiDyn_sc = ACC_sc_LgtCtlA_ATlrHiDyn \n\rCustFctIn_LgtCtlCtlA_ATlrLoTar_sc = ACC_sc_LgtCtlA_ATlrLoTar \n\rCustFctIn_LgtCtlCtlA_MdDeceOnly_sc = ACC_sc_LgtCtlA_MdDeceOnly \n\rCustFctIn_LgtCtlCtlA_MdTarDyn_sc = ACC_sc_LgtCtlA_MdTarDyn \n\r \n\rCustFctIn_LgtCtlLimD_StAcv_sc = ACC_sc_LgtLimD_StAcv \n\rCustFctIn_LgtCtlLimD_DTar_sc = ACC_sc_LgtLimD_DTar \n\rCustFctIn_LgtCtlLimD_StUpd_sc = ACC_sc_LgtLimD_StUpd \n\r \n\rCustFctIn_LgtCtlStgy_TiRdyDrvOffDmd_sc = ACC_sc_LgtStgy_TiRdyDrvOffDmd \n\rCustFctIn_LgtCtl_StSailReq_sc = ACC_sc_LgtCtl_StSailReq\n\r \n\rParameters \n\rCustFctIn_LgtCtl_BitFldConf = VMMP_CFBACC_p_ACCLgtCtl_BitFldConf\n\rCustFctIn_LgtCtl_FlgIniExcDet = VMMP_CFBACC_c_ACCLgtCtl_FlgIniExcDet\n\rCustFctIn_LgtCtl_FlgErrQlfAcv = VMMP_CFBACC_c_ACCLgtCtl_FlgErrQlfAcv\n\rCustFctIn_LgtCtl_TurnOff = VMMP_CFBACC_p_ACCLgtCtl_TurnOff",
  "Vehicle Launch": "",
  "Vehicle Platform": "E³ 1.2"
}
8716662801.0Pre ConditionReleasednoFalsetype_not_target, relevance_filtered
RangeCheck: Check if input signal range is valid There is no RangeCheck for ACC LgtCtl-Service: Signal range is valid is always a
RangeCheck: Check if input signal range is valid

There is no RangeCheck for ACC LgtCtl-Service: Signal range is valid is always applied. (Signal range is invalid is never applied)

Raw

{
  "ID": "16662801.0",
  "ASIL": "  ASIL B",
  "Text": "RangeCheck: Check if input signal range is valid\n\r \n\rThere is no RangeCheck for ACC LgtCtl-Service: Signal range is valid is always applied. (Signal range is invalid is never applied)",
  "Type": "Pre Condition",
  "Status": "Released",
  "Summary": "",
  "Relevant": "no",
  "column_12": "",
  "Foreign ID": "1338981.0",
  "Description": "RangeCheck: Check if input signal range is valid\n\r \n\rThere is no RangeCheck for ACC LgtCtl-Service: Signal range is valid is always applied. (Signal range is invalid is never applied)",
  "Vehicle Launch": "",
  "Vehicle Platform": "E³ 1.2"
}
8816662802.0Non-functionalReleasednoFalsetype_not_target, relevance_filtered
Saturation of input signals The following input signals must be saturated to the maximum value of VMMP_SINFCT_c_SrvLgtCtlCtlA_ARn
Saturation of input signals

The following input signals must be saturated to the maximum value of VMMP_SINFCT_c_SrvLgtCtlCtlA_ARngLimHi_Dft and to the minimum value of VMMP_SINFCT_c_SrvLgtCtlCtlA_ARngLimLo_Dft.

* ACC_s_LgtCtlA_ADmd

* ACC_s_LgtCtlA_APredTar

* ACC_s_LgtCtlA_ATlrHiTar

* ACC_s_LgtCtlA_ATlrHiDyn

* ACC_s_LgtCtlA_ATlrLoTar

Raw

{
  "ID": "16662802.0",
  "ASIL": "  ASIL A",
  "Text": "Saturation of input signals\n\r \n\r\n\rThe following input signals must be saturated to the maximum value of VMMP_SINFCT_c_SrvLgtCtlCtlA_ARngLimHi_Dft and to the minimum value of VMMP_SINFCT_c_SrvLgtCtlCtlA_ARngLimLo_Dft.\n\r \n\r* ACC_s_LgtCtlA_ADmd\n\r* ACC_s_LgtCtlA_APredTar\n\r* ACC_s_LgtCtlA_ATlrHiTar\n\r* ACC_s_LgtCtlA_ATlrHiDyn\n\r* ACC_s_LgtCtlA_ATlrLoTar",
  "Type": "Non-functional",
  "Status": "Released",
  "Summary": "",
  "Relevant": "no",
  "column_12": "",
  "Foreign ID": "1355313.0",
  "Description": "Saturation of input signals\n\r \n\r\n\rThe following input signals must be saturated to the maximum value of VMMP_SINFCT_c_SrvLgtCtlCtlA_ARngLimHi_Dft and to the minimum value of VMMP_SINFCT_c_SrvLgtCtlCtlA_ARngLimLo_Dft.\n\r \n\r* ACC_s_LgtCtlA_ADmd\n\r* ACC_s_LgtCtlA_APredTar\n\r* ACC_s_LgtCtlA_ATlrHiTar\n\r* ACC_s_LgtCtlA_ATlrHiDyn\n\r* ACC_s_LgtCtlA_ATlrLoTar",
  "Vehicle Launch": "",
  "Vehicle Platform": "E³ 1.2"
}
8916662803.0Pre ConditionReleasednoFalsetype_not_target, relevance_filtered
Assignment for Mapping *StDiagEve to *StVld: *StDiagEve = CustFctOut_LgtCtl_StDiagEve
Assignment for Mapping *StDiagEve to *StVld:

*StDiagEve = CustFctOut_LgtCtl_StDiagEve

Raw

{
  "ID": "16662803.0",
  "ASIL": "  QM",
  "Text": "Assignment for Mapping *StDiagEve to *StVld:\n\r \n\r*StDiagEve = CustFctOut_LgtCtl_StDiagEve",
  "Type": "Pre Condition",
  "Status": "Released",
  "Summary": "",
  "Relevant": "no",
  "column_12": "",
  "Foreign ID": "1338982.0",
  "Description": "Assignment for Mapping *StDiagEve to *StVld:\n\r \n\r*StDiagEve = CustFctOut_LgtCtl_StDiagEve",
  "Vehicle Launch": "",
  "Vehicle Platform": "E³ 1.2"
}
9016662804.0Pre ConditionReleasednoFalsetype_not_target, relevance_filtered
Mapping *StDiagEve to *StVld IF: *StDiagEve = VMMP_c_DiagEveSigNotVld THEN: *StVld = 3 ELSEIF: *StDiagEve = VMMP_c_DiagEveS
Mapping *StDiagEve to *StVld

IF: 

*StDiagEve = VMMP_c_DiagEveSigNotVld

THEN:

*StVld = 3

ELSEIF:

*StDiagEve = VMMP_c_DiagEveSigFail

THEN:

*StVld = 3

ELSEIF:

*StDiagEve = VMMP_c_DiagEveSigDi

THEN:

*StVld = 2

ELSEIF:

*StDiagEve = VMMP_c_DiagEveSigIni

THEN:

*StVld = 2

ELSEIF:

*StDiagEve = VMMP_c_DiagEveSigSusp

THEN:

*StVld = 0

ELSEIF:

*StDiagEve = VMMP_c_DiagEveSigNone

THEN:

*StVld = 1

Raw

{
  "ID": "16662804.0",
  "ASIL": "  QM",
  "Text": "Mapping *StDiagEve to *StVld\n\r \n\r\n\rIF: \n\r*StDiagEve = VMMP_c_DiagEveSigNotVld\n\rTHEN:\n\r*StVld = 3\n\rELSEIF:\n\r*StDiagEve = VMMP_c_DiagEveSigFail\n\rTHEN:\n\r*StVld = 3\n\rELSEIF:\n\r*StDiagEve = VMMP_c_DiagEveSigDi\n\rTHEN:\n\r*StVld = 2\n\rELSEIF:\n\r*StDiagEve = VMMP_c_DiagEveSigIni\n\rTHEN:\n\r*StVld = 2\n\rELSEIF:\n\r*StDiagEve = VMMP_c_DiagEveSigSusp\n\rTHEN:\n\r*StVld = 0\n\rELSEIF:\n\r*StDiagEve = VMMP_c_DiagEveSigNone\n\rTHEN:\n\r*StVld = 1",
  "Type": "Pre Condition",
  "Status": "Released",
  "Summary": "",
  "Relevant": "no",
  "column_12": "",
  "Foreign ID": "1338991.0",
  "Description": "Mapping *StDiagEve to *StVld\n\r \n\r\n\rIF: \n\r*StDiagEve = VMMP_c_DiagEveSigNotVld\n\rTHEN:\n\r*StVld = 3\n\rELSEIF:\n\r*StDiagEve = VMMP_c_DiagEveSigFail\n\rTHEN:\n\r*StVld = 3\n\rELSEIF:\n\r*StDiagEve = VMMP_c_DiagEveSigDi\n\rTHEN:\n\r*StVld = 2\n\rELSEIF:\n\r*StDiagEve = VMMP_c_DiagEveSigIni\n\rTHEN:\n\r*StVld = 2\n\rELSEIF:\n\r*StDiagEve = VMMP_c_DiagEveSigSusp\n\rTHEN:\n\r*StVld = 0\n\rELSEIF:\n\r*StDiagEve = VMMP_c_DiagEveSigNone\n\rTHEN:\n\r*StVld = 1",
  "Vehicle Launch": "",
  "Vehicle Platform": "E³ 1.2"
}
9116662805.0Non-functionalReleasednoFalsetype_not_target, relevance_filtered
Fault Tolerant Time Interval (FTTI) Note: The Fault Tolerant Time Interval describes minimum time-span from the occurrence of a
Fault Tolerant Time Interval (FTTI) 

Note: The Fault Tolerant Time Interval describes minimum time-span from the occurrence of a fault (e.g. receiving Error Bit2) to a possible occurrence of a hazardous event, if the safety mechanism is not activated (e.g. *StDiagEve = VMMP_c_DiagEveSigFail).

If there is no specific Fault Tolerant Time Interval (FTTI) defined, the fault reaction shall be done within 10 ms (one computational cycle).

Raw

{
  "ID": "16662805.0",
  "ASIL": "  QM",
  "Text": "Fault Tolerant Time Interval (FTTI) \n\rNote: The Fault Tolerant Time Interval describes minimum time-span from the occurrence of a fault (e.g. receiving Error Bit2) to a possible occurrence of a hazardous event, if the safety mechanism is not activated (e.g. *StDiagEve = VMMP_c_DiagEveSigFail).\n\r \n\rIf there is no specific Fault Tolerant Time Interval (FTTI) defined, the fault reaction shall be done within 10 ms (one computational cycle).",
  "Type": "Non-functional",
  "Status": "Released",
  "Summary": "",
  "Relevant": "no",
  "column_12": "",
  "Foreign ID": "1387907.0",
  "Description": "Fault Tolerant Time Interval (FTTI) \n\rNote: The Fault Tolerant Time Interval describes minimum time-span from the occurrence of a fault (e.g. receiving Error Bit2) to a possible occurrence of a hazardous event, if the safety mechanism is not activated (e.g. *StDiagEve = VMMP_c_DiagEveSigFail).\n\r \n\rIf there is no specific Fault Tolerant Time Interval (FTTI) defined, the fault reaction shall be done within 10 ms (one computational cycle).",
  "Vehicle Launch": "",
  "Vehicle Platform": "E³ 1.2"
}
9216662806.0FunctionalReleasedyesTrue
Assign generic output signals to specific output signals Outputs StAcv CFBACC_s_ACCLgtCtl_StAcv = CustFctOut_LgtCtl_StAcv All
Assign generic output signals to specific output signals

Outputs

StAcv

CFBACC_s_ACCLgtCtl_StAcv = CustFctOut_LgtCtl_StAcv

All other Outputs

CFBACC_s_ACCLgtCtlA_ADmd = CustFctOut_LgtCtlCtlA_ADmd

CFBACC_s_ACCLgtCtlA_APredTar = CustFctOut_LgtCtlCtlA_APredTar

CFBACC_s_ACCLgtCtlA_AGrdMaxDec = CustFctOut_LgtCtlCtlA_AGrdMaxDec

CFBACC_s_ACCLgtCtlA_AGrdMaxInc = CustFctOut_LgtCtlCtlA_AGrdMaxInc

CFBACC_s_ACCLgtCtlA_ATlrHiTar = CustFctOut_LgtCtlCtlA_ATlrHiTar

CFBACC_s_ACCLgtCtlA_ATlrHiDyn = CustFctOut_LgtCtlCtlA_ATlrHiDyn

CFBACC_s_ACCLgtCtlA_ATlrLoTar = CustFctOut_LgtCtlCtlA_ATlrLoTar

CFBACC_s_ACCLgtCtlA_MdDeceOnly = CustFctOut_LgtCtlCtlA_MdDeceOnly

CFBACC_s_ACCLgtCtlA_MdTarDyn = CustFctOut_LgtCtlCtlA_MdTarDyn

CFBACC_s_ACCLgtCtl_StAcvLimD = CustFctOut_LgtCtlLimD_StAcv

CFBACC_s_ACCLgtCtl_DTarLimD= CustFctOut_LgtCtlLimD_DTar

CFBACC_s_ACCLgtCtl_FlgUpdLimD = CustFctOut_LgtCtlLimD_FlgUpd

CFBACC_s_ACCLgtStgy_TiRdyDrvOffDmd = CustFctOut_LgtCtlStgy_TiRdyDrvOffDmd

CFBACC_s_ACCLgtCtl_StSailReq = CustFctOut_LgtCtl_StSailReq

States

CFBACC_s_DiagACCLgtCtl_StEve = CustFctOut_LgtCtl_StDiagEve

CFBACC_s_ACCLgtCtl_StVld = *StVld (considering Mapping *StDiagEve to *StVld and CustFctOut_LgtCtl_StDiagEve)

Raw

{
  "ID": "16662806.0",
  "ASIL": "  ASIL B",
  "Text": "Assign generic output signals to specific output signals\n\r \n\rOutputs\n\rStAcv\n\rCFBACC_s_ACCLgtCtl_StAcv = CustFctOut_LgtCtl_StAcv\n\rAll other Outputs\n\rCFBACC_s_ACCLgtCtlA_ADmd = CustFctOut_LgtCtlCtlA_ADmd\n\rCFBACC_s_ACCLgtCtlA_APredTar = CustFctOut_LgtCtlCtlA_APredTar\n\rCFBACC_s_ACCLgtCtlA_AGrdMaxDec = CustFctOut_LgtCtlCtlA_AGrdMaxDec\n\rCFBACC_s_ACCLgtCtlA_AGrdMaxInc = CustFctOut_LgtCtlCtlA_AGrdMaxInc\n\rCFBACC_s_ACCLgtCtlA_ATlrHiTar = CustFctOut_LgtCtlCtlA_ATlrHiTar\n\rCFBACC_s_ACCLgtCtlA_ATlrHiDyn = CustFctOut_LgtCtlCtlA_ATlrHiDyn\n\rCFBACC_s_ACCLgtCtlA_ATlrLoTar = CustFctOut_LgtCtlCtlA_ATlrLoTar\n\rCFBACC_s_ACCLgtCtlA_MdDeceOnly = CustFctOut_LgtCtlCtlA_MdDeceOnly\n\rCFBACC_s_ACCLgtCtlA_MdTarDyn = CustFctOut_LgtCtlCtlA_MdTarDyn\n\rCFBACC_s_ACCLgtCtl_StAcvLimD = CustFctOut_LgtCtlLimD_StAcv\n\rCFBACC_s_ACCLgtCtl_DTarLimD= CustFctOut_LgtCtlLimD_DTar\n\rCFBACC_s_ACCLgtCtl_FlgUpdLimD = CustFctOut_LgtCtlLimD_FlgUpd\n\rCFBACC_s_ACCLgtStgy_TiRdyDrvOffDmd = CustFctOut_LgtCtlStgy_TiRdyDrvOffDmd\n\rCFBACC_s_ACCLgtCtl_StSailReq = CustFctOut_LgtCtl_StSailReq\n\rStates\n\rCFBACC_s_DiagACCLgtCtl_StEve = CustFctOut_LgtCtl_StDiagEve\n\rCFBACC_s_ACCLgtCtl_StVld = *StVld (considering Mapping *StDiagEve to *StVld and CustFctOut_LgtCtl_StDiagEve)",
  "Type": "Functional",
  "Status": "Released",
  "Summary": "",
  "Relevant": "yes",
  "column_12": "",
  "Foreign ID": "1338984.0",
  "Description": "Assign generic output signals to specific output signals\n\r \n\rOutputs\n\rStAcv\n\rCFBACC_s_ACCLgtCtl_StAcv = CustFctOut_LgtCtl_StAcv\n\rAll other Outputs\n\rCFBACC_s_ACCLgtCtlA_ADmd = CustFctOut_LgtCtlCtlA_ADmd\n\rCFBACC_s_ACCLgtCtlA_APredTar = CustFctOut_LgtCtlCtlA_APredTar\n\rCFBACC_s_ACCLgtCtlA_AGrdMaxDec = CustFctOut_LgtCtlCtlA_AGrdMaxDec\n\rCFBACC_s_ACCLgtCtlA_AGrdMaxInc = CustFctOut_LgtCtlCtlA_AGrdMaxInc\n\rCFBACC_s_ACCLgtCtlA_ATlrHiTar = CustFctOut_LgtCtlCtlA_ATlrHiTar\n\rCFBACC_s_ACCLgtCtlA_ATlrHiDyn = CustFctOut_LgtCtlCtlA_ATlrHiDyn\n\rCFBACC_s_ACCLgtCtlA_ATlrLoTar = CustFctOut_LgtCtlCtlA_ATlrLoTar\n\rCFBACC_s_ACCLgtCtlA_MdDeceOnly = CustFctOut_LgtCtlCtlA_MdDeceOnly\n\rCFBACC_s_ACCLgtCtlA_MdTarDyn = CustFctOut_LgtCtlCtlA_MdTarDyn\n\rCFBACC_s_ACCLgtCtl_StAcvLimD = CustFctOut_LgtCtlLimD_StAcv\n\rCFBACC_s_ACCLgtCtl_DTarLimD= CustFctOut_LgtCtlLimD_DTar\n\rCFBACC_s_ACCLgtCtl_FlgUpdLimD = CustFctOut_LgtCtlLimD_FlgUpd\n\rCFBACC_s_ACCLgtStgy_TiRdyDrvOffDmd = CustFctOut_LgtCtlStgy_TiRdyDrvOffDmd\n\rCFBACC_s_ACCLgtCtl_StSailReq = CustFctOut_LgtCtl_StSailReq\n\rStates\n\rCFBACC_s_DiagACCLgtCtl_StEve = CustFctOut_LgtCtl_StDiagEve\n\rCFBACC_s_ACCLgtCtl_StVld = *StVld (considering Mapping *StDiagEve to *StVld and CustFctOut_LgtCtl_StDiagEve)",
  "Vehicle Launch": "",
  "Vehicle Platform": "E³ 1.2"
}
9316662807.0FunctionalReleasedyesTrue
Assign generic output signals to specific output signals Outputs StAcv CFBACC_s_ACCLgtCtl_StAcv = CustFctOut_LgtCtl_StAcv CFBA
Assign generic output signals to specific output signals

Outputs

StAcv

CFBACC_s_ACCLgtCtl_StAcv = CustFctOut_LgtCtl_StAcv

CFBACC_s_ACCLgtCtl_FlgAcvLimD = CustFctOut_LgtCtlLimD_FlgAcv

All other Outputs

CFBACC_s_ACCLgtCtlA_ADmd = CustFctOut_LgtCtlCtlA_ADmd

CFBACC_s_ACCLgtCtlA_APredTar = CustFctOut_LgtCtlCtlA_APredTar

CFBACC_s_ACCLgtCtlA_AGrdMaxDec = CustFctOut_LgtCtlCtlA_AGrdMaxDec

CFBACC_s_ACCLgtCtlA_AGrdMaxInc = CustFctOut_LgtCtlCtlA_AGrdMaxInc

CFBACC_s_ACCLgtCtlA_ATlrHiTar = CustFctOut_LgtCtlCtlA_ATlrHiTar

CFBACC_s_ACCLgtCtlA_ATlrHiDyn = CustFctOut_LgtCtlCtlA_ATlrHiDyn

CFBACC_s_ACCLgtCtlA_ATlrLoTar = CustFctOut_LgtCtlCtlA_ATlrLoTar

CFBACC_s_ACCLgtCtlA_MdDeceOnly = CustFctOut_LgtCtlCtlA_MdDeceOnly

CFBACC_s_ACCLgtCtlA_MdTarDyn = CustFctOut_LgtCtlCtlA_MdTarDyn

CFBACC_s_ACCLgtCtl_DTarLimD= CustFctOut_LgtCtlLimD_DTar

CFBACC_s_ACCLgtCtl_FlgUpdLimD = CustFctOut_LgtCtlLimD_FlgUpd

CFBACC_s_ACCLgtStgy_TiRdyDrvOffDmd = CustFctOut_LgtCtlStgy_TiRdyDrvOffDmd

CFBACC_s_ACCLgtCtl_StSailReq = CustFctOut_LgtCtl_StSailReq

States

CFBACC_s_DiagACCLgtCtl_StEve = CustFctOut_LgtCtl_StDiagEve

CFBACC_s_ACCLgtCtl_StVld = *StVld (considering Mapping *StDiagEve to *StVld and CustFctOut_LgtCtl_StDiagEve)

Raw

{
  "ID": "16662807.0",
  "ASIL": "  ASIL B",
  "Text": "Assign generic output signals to specific output signals\n\r \n\rOutputs\n\rStAcv\n\rCFBACC_s_ACCLgtCtl_StAcv = CustFctOut_LgtCtl_StAcv\n\rCFBACC_s_ACCLgtCtl_FlgAcvLimD = CustFctOut_LgtCtlLimD_FlgAcv\n\rAll other Outputs\n\rCFBACC_s_ACCLgtCtlA_ADmd = CustFctOut_LgtCtlCtlA_ADmd\n\rCFBACC_s_ACCLgtCtlA_APredTar = CustFctOut_LgtCtlCtlA_APredTar\n\rCFBACC_s_ACCLgtCtlA_AGrdMaxDec = CustFctOut_LgtCtlCtlA_AGrdMaxDec\n\rCFBACC_s_ACCLgtCtlA_AGrdMaxInc = CustFctOut_LgtCtlCtlA_AGrdMaxInc\n\rCFBACC_s_ACCLgtCtlA_ATlrHiTar = CustFctOut_LgtCtlCtlA_ATlrHiTar\n\rCFBACC_s_ACCLgtCtlA_ATlrHiDyn = CustFctOut_LgtCtlCtlA_ATlrHiDyn\n\rCFBACC_s_ACCLgtCtlA_ATlrLoTar = CustFctOut_LgtCtlCtlA_ATlrLoTar\n\rCFBACC_s_ACCLgtCtlA_MdDeceOnly = CustFctOut_LgtCtlCtlA_MdDeceOnly\n\rCFBACC_s_ACCLgtCtlA_MdTarDyn = CustFctOut_LgtCtlCtlA_MdTarDyn\n\rCFBACC_s_ACCLgtCtl_DTarLimD= CustFctOut_LgtCtlLimD_DTar\n\rCFBACC_s_ACCLgtCtl_FlgUpdLimD = CustFctOut_LgtCtlLimD_FlgUpd\n\rCFBACC_s_ACCLgtStgy_TiRdyDrvOffDmd = CustFctOut_LgtCtlStgy_TiRdyDrvOffDmd\n\rCFBACC_s_ACCLgtCtl_StSailReq = CustFctOut_LgtCtl_StSailReq\n\rStates\n\rCFBACC_s_DiagACCLgtCtl_StEve = CustFctOut_LgtCtl_StDiagEve\n\rCFBACC_s_ACCLgtCtl_StVld = *StVld (considering Mapping *StDiagEve to *StVld and CustFctOut_LgtCtl_StDiagEve)",
  "Type": "Functional",
  "Status": "Released",
  "Summary": "",
  "Relevant": "yes",
  "column_12": "",
  "Foreign ID": "1477095.0",
  "Description": "Assign generic output signals to specific output signals\n\r \n\rOutputs\n\rStAcv\n\rCFBACC_s_ACCLgtCtl_StAcv = CustFctOut_LgtCtl_StAcv\n\rCFBACC_s_ACCLgtCtl_FlgAcvLimD = CustFctOut_LgtCtlLimD_FlgAcv\n\rAll other Outputs\n\rCFBACC_s_ACCLgtCtlA_ADmd = CustFctOut_LgtCtlCtlA_ADmd\n\rCFBACC_s_ACCLgtCtlA_APredTar = CustFctOut_LgtCtlCtlA_APredTar\n\rCFBACC_s_ACCLgtCtlA_AGrdMaxDec = CustFctOut_LgtCtlCtlA_AGrdMaxDec\n\rCFBACC_s_ACCLgtCtlA_AGrdMaxInc = CustFctOut_LgtCtlCtlA_AGrdMaxInc\n\rCFBACC_s_ACCLgtCtlA_ATlrHiTar = CustFctOut_LgtCtlCtlA_ATlrHiTar\n\rCFBACC_s_ACCLgtCtlA_ATlrHiDyn = CustFctOut_LgtCtlCtlA_ATlrHiDyn\n\rCFBACC_s_ACCLgtCtlA_ATlrLoTar = CustFctOut_LgtCtlCtlA_ATlrLoTar\n\rCFBACC_s_ACCLgtCtlA_MdDeceOnly = CustFctOut_LgtCtlCtlA_MdDeceOnly\n\rCFBACC_s_ACCLgtCtlA_MdTarDyn = CustFctOut_LgtCtlCtlA_MdTarDyn\n\rCFBACC_s_ACCLgtCtl_DTarLimD= CustFctOut_LgtCtlLimD_DTar\n\rCFBACC_s_ACCLgtCtl_FlgUpdLimD = CustFctOut_LgtCtlLimD_FlgUpd\n\rCFBACC_s_ACCLgtStgy_TiRdyDrvOffDmd = CustFctOut_LgtCtlStgy_TiRdyDrvOffDmd\n\rCFBACC_s_ACCLgtCtl_StSailReq = CustFctOut_LgtCtl_StSailReq\n\rStates\n\rCFBACC_s_DiagACCLgtCtl_StEve = CustFctOut_LgtCtl_StDiagEve\n\rCFBACC_s_ACCLgtCtl_StVld = *StVld (considering Mapping *StDiagEve to *StVld and CustFctOut_LgtCtl_StDiagEve)",
  "Vehicle Launch": "",
  "Vehicle Platform": "E³ 1.2"
}
9416662808.0FunctionalReleasedyesTrue
The output signal CFBACC_s_ACCLgtCtl_StVld must always have the values 0, 1, 2 or 3. To test this requirement no separate test is
The output signal CFBACC_s_ACCLgtCtl_StVld must always have the values 0, 1, 2 or 3.

To test this requirement no separate test is necessary. Every implemented test case should check the signal range of *StVld in the end.

Raw

{
  "ID": "16662808.0",
  "ASIL": "  QM",
  "Text": "The output signal CFBACC_s_ACCLgtCtl_StVld must always have the values 0, 1, 2 or 3.\n\r \n\rTo test this requirement no separate test is necessary. Every implemented test case should check the signal range of *StVld in the end.",
  "Type": "Functional",
  "Status": "Released",
  "Summary": "",
  "Relevant": "yes",
  "column_12": "",
  "Foreign ID": "1338953.0",
  "Description": "The output signal CFBACC_s_ACCLgtCtl_StVld must always have the values 0, 1, 2 or 3.\n\r \n\rTo test this requirement no separate test is necessary. Every implemented test case should check the signal range of *StVld in the end.",
  "Vehicle Launch": "",
  "Vehicle Platform": "E³ 1.2"
}