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/** @file |
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* $Source: /home/cvsmanager/yoda/techmodel/CalibTrk2Reader.cpp,v $ |
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* $Id: CalibTrk2Reader.cpp,v 1.4 2004/08/19 15:24:46 kusanagi Exp $ |
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* $Author: kusanagi $ |
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* |
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* Implementation of the LogReader class. |
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* ToBeDone: |
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* Control the CRC for the entire data Packet not just for single records |
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*/ |
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|
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#define UINT unsigned int |
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#define BYTE unsigned char |
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#include <string> |
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#include <log4cpp/Category.hh> |
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extern "C" { |
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#include "CRC.h" |
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//Passo il path verso la il file temporaneo |
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extern void trkcalibpkt_(int*, char*); |
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|
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//Struct per il passaggio di dati da e verso la chiamata fortran |
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extern struct { |
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int DAQmode[6]; |
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int DSPnumber[6]; |
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int calibnumber[6]; |
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int ncalib_event[6]; |
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int ped_l1[6]; |
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int ped_l2[6]; |
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int ped_l3[6]; |
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int sig_l1[6]; |
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int sig_l2[6]; |
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int sig_l3[6]; |
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int nbad_l1[6]; |
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int nbad_l2[6]; |
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int nbad_l3[6]; |
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int cal_flag[6]; |
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int checksum[6]; |
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int DSPbad_par[6][3072]; |
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float DSPped_par[6][3072]; |
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float DSPsig_par[6][3072]; |
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} trkcalib_; |
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|
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#include <dirent.h> |
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} |
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|
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#include <fstream> |
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#include "stdio.h" |
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#include "ReaderAlgorithms.h" |
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|
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#include "event/CalibTrk2Event.h" |
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|
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using namespace pamela; |
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using namespace pamela::techmodel; |
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|
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static log4cpp::Category& cat = log4cpp::Category::getInstance("pamela.techmodel.CalibTrk2Reader"); |
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|
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/** |
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* Constructor. |
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*/ |
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CalibTrk2Reader::CalibTrk2Reader(void): |
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TechmodelAlgorithm(PacketType::CalibTrk2, "TechmodelCalibTrk2Reader") { |
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cat << log4cpp::Priority::DEBUG |
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<< "Constructor " |
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<< "\n " << log4cpp::CategoryStream::ENDLINE; |
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calibTrk2 = new CalibTrk2Event(); |
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} |
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|
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/** |
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* Get a string with the version info of the algorithm. |
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*/ |
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std::string CalibTrk2Reader::GetVersionInfo(void) const { |
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return |
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"$Header: /home/cvsmanager/yoda/techmodel/CalibTrk2Reader.cpp,v 1.4 2004/08/19 15:24:46 kusanagi Exp $\n"; |
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} |
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|
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/** |
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* Initialize the algorithm with a special run. This will initialize the |
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* event reader routines for all packet types. |
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*/ |
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void CalibTrk2Reader::Init(PamelaRun *run) { |
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SetInputStream(run); |
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run->WriteSubPacket(this, &calibTrk2, calibTrk2->Class()); |
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} |
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|
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/** |
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* Unpack the CalibTrk2 event from an input file. |
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*/ |
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void CalibTrk2Reader::RunEvent(int EventNumber, long int length) { |
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|
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char *subData; |
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char eventCRC[2]; |
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UINT16 subCRC; //CRC of the data |
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UINT16 readCRC; //CRC read from the end of the subpacket |
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long int dataLength; |
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|
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//the 2 bytes subtracted belong to the final event CRC bytes |
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dataLength = length - (long int)2; |
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|
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subData = new char[dataLength]; |
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InputFile->read(subData, sizeof(unsigned char)*dataLength); |
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subCRC = CM_Compute_CRC16(0, (BYTE*)subData, dataLength); |
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|
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//took the final CRC to compare it with the previous calculated CRC of the data |
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InputFile->read(eventCRC, sizeof(eventCRC)); |
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readCRC = (((UINT16)(eventCRC[0]<<8))&0xFF00) + (((UINT16)eventCRC[1])&0x00FF); |
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|
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if (subCRC == readCRC){ |
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int ERROR; |
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|
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//Scrivo un file temporaneo per passarlo alla routine |
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//Speriamo di cambiare la routine per passargli un buffer..... |
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DIR *dirp; |
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std::string pathDir((char*)getenv("YODA_DATA")); |
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pathDir = pathDir + "/todatemp.dat"; |
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FILE *pfile; |
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pfile = fopen((char*)pathDir.c_str(), "wb"); |
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fwrite(subData, 1, dataLength, pfile); |
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fclose(pfile); |
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|
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//Call to the FORTRAN routin that unpack tracker events |
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trkcalibpkt_(&ERROR, (char*)pathDir.c_str()); |
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|
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//delete the temporary file |
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remove((char*)pathDir.c_str()); |
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|
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//Store the unpacked data |
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memcpy(calibTrk2->DAQmode, trkcalib_.DAQmode, sizeof(calibTrk2->DAQmode)); |
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memcpy(calibTrk2->DSPnumber, trkcalib_.DSPnumber, sizeof(calibTrk2->DSPnumber)); |
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memcpy(calibTrk2->calibnumber, trkcalib_.calibnumber, sizeof(calibTrk2->calibnumber)); |
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memcpy(calibTrk2->DSPnumber, trkcalib_.ncalib_event, sizeof(calibTrk2->ncalib_event)); |
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memcpy(calibTrk2->ped_l1, trkcalib_.ped_l1, sizeof(calibTrk2->ped_l1)); |
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memcpy(calibTrk2->ped_l2, trkcalib_.ped_l2, sizeof(calibTrk2->ped_l2)); |
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memcpy(calibTrk2->ped_l3, trkcalib_.ped_l3, sizeof(calibTrk2->ped_l3)); |
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memcpy(calibTrk2->sig_l1, trkcalib_.sig_l1, sizeof(calibTrk2->sig_l1)); |
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memcpy(calibTrk2->sig_l2, trkcalib_.sig_l2, sizeof(calibTrk2->sig_l2)); |
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memcpy(calibTrk2->sig_l3, trkcalib_.sig_l3, sizeof(calibTrk2->sig_l3)); |
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memcpy(calibTrk2->nbad_l1, trkcalib_.nbad_l1, sizeof(calibTrk2->nbad_l1)); |
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memcpy(calibTrk2->nbad_l2, trkcalib_.nbad_l2, sizeof(calibTrk2->nbad_l2)); |
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memcpy(calibTrk2->nbad_l3, trkcalib_.nbad_l3, sizeof(calibTrk2->nbad_l3)); |
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memcpy(calibTrk2->cal_flag, trkcalib_.cal_flag, sizeof(calibTrk2->cal_flag)); |
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|
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//--------have to invert array because of FORTRAN <-> C different management of the indexes |
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int tempBad_par[3072][6]; |
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int tempPed_par[3072][6]; |
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int tempSig_par[3072][6]; |
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memcpy(tempBad_par,trkcalib_.DSPbad_par, sizeof(tempBad_par)); |
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memcpy(tempPed_par,trkcalib_.DSPped_par, sizeof(tempPed_par)); |
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memcpy(tempSig_par,trkcalib_.DSPsig_par, sizeof(tempSig_par)); |
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|
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for (int i = 0; i < 6; i++){ |
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for (int j = 0; j < 3072; j++){ |
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calibTrk2->DSPbad_par[i][j] = tempBad_par[j][i]; |
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calibTrk2->DSPped_par[i][j] = tempPed_par[j][i]; |
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calibTrk2->DSPsig_par[i][j] = tempSig_par[j][i]; |
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} |
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} |
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//----------------------------------------------------------------------------------------- |
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|
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cat << log4cpp::Priority::ERROR |
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<< "Fortran77 function trkcalibpkt error code = " << ERROR |
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<< "\n " << log4cpp::CategoryStream::ENDLINE; |
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} else { |
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cat << log4cpp::Priority::ERROR |
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<< "Wrong CRC for CalibTrk2 Packet " |
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<< "\n " << log4cpp::CategoryStream::ENDLINE; |
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} |
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delete [] subData; |
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} |
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