GLAST / LAT > DAQ and FSW > FSW > Doxygen Index> QSE / V2-3-2 > qse / linux-gcc


Interface   Data Structures   File List   Data Fields   Globals  

Class List

Here are the classes, structs, unions and interfaces with brief descriptions:
_Hdr0Maps out the fields as a union of a 16-bit integer and its bit field representation
_Hdr0_bfMaps out the fields of the first header word as bit fields
_Hdr1Maps out the fields as a union of a 16-bit integer and its bit field representation
_Hdr1_bfMaps out the fields of the second header word as bit fields
_Hdr2Maps out the fields as a union of a 16-bit integer and its bit field representation
_Hdr2_bfMaps out the fields of the third header word as bit fields
_LayerCntUnion of an uninterpretted 32-bit value with the bit-field representation of the the layer count structure
_LayerCnt_bfLayerCnt_bf
_LayerHdrUnion of an uninterpretted 32-bit value with the bit-field representation of the the layer count structure
_LayerHdr_bfLayerHdr_bf
_QDF_acdCtxThe data used in decoding the compressed data
_QDF_acdEvtIntermediate format to hold the ACD data while it is being decoded
_QDF_acdHdrEvtStandard header that most go on the top of the standard and pedestal event structures
_QDF_acdPedEvtRepresentation to make it easier to pack
_QDF_acdStdEvtIntermediate format to hold the ACD data while it is being decoded
_QDF_aem_ped_listsChannel bit lists, by cable
_QDF_aem_ped_phaxDescribes a PHA exception value.as union between the field representation and an unsigned 32-bit integer
_QDF_aem_ped_phax_fDescribes a PHA exception value.in the field representation
_QDF_cal_prdConstants used when predicting one gain range from another
_QDF_cal_prd_layerThe range predictors for one range of one layer
_QDF_cal_prd_logThe prediction constants for one log
_QDF_cal_prd_log_end_tableThe table prediction constants for one log end
_QDF_cal_prd_towerConstants used when predicting one gain range from another, one tower's worth
_QDF_calCtxThe data used in decoding the compressed data
_QDF_calEvtIntermediate format to hold the CAL data while it is being decoded
_QDF_calEvtAdrsLyrCaptures the hit log information for one layer
_QDF_calEvtAdrsTwrCaptures the hit log information for one tower
_QDF_calEvtCopyDirCaptures the beginning address and log count for each tower
_QDF_calEvtCopyDscCaptures the beginning address and log count for each tower
_QDF_calEvtPhasCaptures the hit log information for LAT
_QDF_calPedEvtIntermediate format to hold the CAL data while it is being decoded in the pedestal format
_QDF_calStdEvtIntermediate format to hold the CAL data while it is being decoded in the standard format
_QDF_dgnCalAcceptStructure for the decoded CAL diagnostic accept data
_QDF_dgnCalAcceptMatchStruct of the perfect accepts maps
_QDF_dgnCalAcceptTwrUnion of the perfect and imperfect accepts maps for one tower
_QDF_dgnCalDatThe CAL diagnostic data, binds the CAL trigger and CAL accept data
_QDF_dgnCalTrgStructure for the decoded CAL diagnostic trigger data
_QDF_dgnCtxDiagnostic Block, decoding context
_QDF_dgnDatThe diagnostic data, binding together the CAL and TKR diagnostic data
_QDF_dgnEvtIntermediate format to hold the diagnostic data while it is being decoded
_QDF_dgnHdrEvtStandard header that most go on the top of the standard and pedestal event structures
_QDF_dgnPedEvtDiagnostic Block, binds together all the information used by the higher compression levels to format the diagnostic data from a pedestal event
_QDF_dgnStdEvtDiagnostic Block, binds together all the information used by the higher compression levels to format the diagnostic data from a standard event
_QDF_dgnTkrAcceptStructure for the decoded TKR diagnostic accept data
_QDF_dgnTkrDatThe TKR diagnostic data. This is really more for symmetry, paralleling the QDF_dgnCalDat structure
_QDF_errCtxThe data used in decoding the compressed data
_QDF_errEvtTemporary structure to hold the ERR event as it is being decoded
_QDF_errTemThe decoded error data for one tower
_QDF_errTemHeaderTEM header error information. This captures the contents of the fixed sized information
_QDF_errTemRepackAllActs as the storage area for all the error repacking parameters
_QDF_errTemRepackBugAStructure to repack the error information for one TEM by using the decoding of the common TEM BUG A
_QDF_errTemRepackBugBStructure to repack the error information for one TEM by using the decoding of the common TEM BUG B
_QDF_errTemRepackCopyStructure to repack the error information for one TEM by using a simple copy
_QDF_errTemTkrTKR error information for TEM BUG A blocks
_QDF_esbCtxEvent Summary Block, decoding context
_QDF_esbEvtEvent Summary Block, binds together all the information used by the higher compression levels to format an event
_QDF_eswUnion of an unsigned 32-bit integer with the bit field representation of the first header summary word
_QDF_esw_bfThe summary word mapped out by bit fields
_QDF_excThe exception handling context
_QDF_gemCtxThe data used in decoding the compressed data
_QDF_gemEvtThe unpacked GEM data plus any out-of-band support data
_QDF_mapsMaps of towers/triggers where the diagnostic data does not match the actual data. In a perfect world these would always be 0
_QDF_temCtxThe combined CAL, TKR DGN and ERR contexts
_QDF_temEvtThe combined CAL, TKR DGN and ERR event data
_QDF_tkrBsaThe tracks bulk storage area
_QDF_tkrCtxThe data used in decoding the compressed data
_QDF_tkrEvtTemporary structure to hold the TKR event as it is being decoded
_QDF_tkrSplitsThe lo and hi split points for entire TKR expressed as a union of field definition and an array definition
_QDF_tkrSplitsLayerThe lo and hi split points for one layer expressed as a union of field definition and an array definition
_QDF_tkrSplitsLimitDefines the low and high strip numbers for each layer end
_QDF_tkrSplitsTowerThe lo and hi split points for one tower expressed as a union of field definition and an array definition
_QDF_tkrTwrErrData needed to reconstitute a tower in error
_QDF_tkrTwrErrDataHolds all the data associated with an erroring tower
_QDF_tkrTwrErrTimeoutData needed to reconstitute a tower in error when the TKR is a timeout tower
_QDF_tkrTwrErrTimeoutLzsData needed to reconstitute the leading zeroes for the CCs with timeout errors is a timeout tower
_QDF_tkrTwrErrTotsHolds decoded TOTs stored in a dense fashion
_QDF_tkrTwrErrZcopyData reneeded to reconstitute a tower in error when the TKR data is zcopied
_QSE_acdHolds the unpacked ACD information
_QSE_acdRemapDefines the information necessary to remap all ACD information laid out in electronics space to a geographical space
_QSE_acdRemapBrdStructure defining the remapping the ACD data on a single board from electronics space into the standard 4 geographically oriented lists
_QSE_aemHolds the unpacked QSE_aem information
_QSE_aem_cableStatusSummary cable bit status masks
_QSE_aem_chn_afMaps out the information for one ADC channel as an alternative bit field representation, where the end bit is paired with the tile address to form the extended tile address and where all the fields of the PHA vector (ADC range, ADC value and PHA parity error fields are presented as a single PHA vector field
_QSE_aem_chn_bfMaps out the information for one ADC channel as the most primitve bit fields possible
_QSE_aem_chn_cfMaps out the information for one channel, as alternative bit field representation favoring consolidating all the state information as a single field and combining the ADC range and ADC value field as a single PHA field
_QSE_aem_chn_uMaps out the information for one channel, union of bit field with unsigned int
_QSE_calStructure containing the unpacked CAL data for all towers
_QSE_calLogMaps out the 32-bit value of a CAL log data field both in bit fields and as an unsigned 32-bit integer
_QSE_calLog_bfMaps out the 32-bit value of a CAL log data field as bit fields
_QSE_calLog_cfMaps out the 32-bit value of a CAL log data field as bit fields. This mapping keeps the RNG and ADC value contigious
_QSE_calTwrStructure containing the unpacked CAL data for this tower
_QSE_ctxBinds together all the meta-information about an event
_QSE_ctxCountersMaps out the counters
_QSE_ctxTimeThe time/clock information for the 1-second of the first event and the previous 1-second period
_QSE_ctxUpdateInfoThe information needed by QSE_ctxUpdateAtEvent
_QSE_ebfEvtDescribes an EBF formatted event
_QSE_ebfHdrDescribes the packet header on a returned EBF structure
_QSE_ecalStructure containing the unpacked CAL data for all towers
_QSE_ecalGblGlobal energies
_QSE_ecalTwrStructure containing the unpacked CAL data for one tower
_QSE_evtRepresentation of the event
_QSE_evtAllAll the possible representations of an event
_QSE_tkrStructure containing the unpacked TKR data for all towers
_QSE_tkrLyrInformation about the hit strips in one layer
_QSE_tkrTwrStructure containing the unpacked TKR data for this tower
_TKR_2stripsMaps out the first word containing strip addresses
_TKR_2strips_bfMaps out the first word containing strip addresses
_TKR_8strips0Maps out the first word of the 3 strip address pattern words as bit fields and uninterpretted 32-bit integer
_TKR_8strips0_bfMaps out the first word of the 3 strip address pattern words as bit fields
_TKR_8strips1Maps out the second word of the 3 strip address pattern words as bit fields and uninterpretted 32-bit integer
_TKR_8strips1_bfMaps out the second word of the 3 strip address pattern words as bit fields
_TKR_8strips2Maps out the third word of the 3 strip address pattern words as bit fields and uninterpretted 32-bit integer
_TKR_8strips2_bfMaps out the third word of the 3 strip address pattern words as bit fields

Generated on Fri Sep 30 18:30:25 2011 by  doxygen 1.5.8