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kusanagi |
1.1 |
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// Implementation of the CalibCalPulse2Reader class. |
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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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kusanagi |
1.4 |
#include <log4cxx/logger.h> |
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kusanagi |
1.1 |
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extern "C" { |
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#include "CRC.h" |
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//Struct per il passaggio di dati da e verso la chiamata fortran |
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kusanagi |
2.1 |
extern struct { |
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int iev; |
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int pstwerr[4]; |
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float pperror[4]; |
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float calpuls[4][11][96]; |
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} calpul_; |
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kusanagi |
1.1 |
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//external declaration of the Fortran function |
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kusanagi |
2.1 |
void calpulse_(char*, long int*, int*); |
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kusanagi |
1.1 |
} |
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#include <fstream> |
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#include "stdio.h" |
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#include "ReaderAlgorithms.h" |
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#include "event/CalibCalPulse2Event.h" |
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using namespace pamela; |
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using namespace pamela::techmodel; |
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kusanagi |
1.4 |
static log4cxx::LoggerPtr logger = log4cxx::Logger::getLogger(_T("pamela.techmodel.CalibCalPulse2Reader")); |
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kusanagi |
1.1 |
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/** |
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* Constructor. |
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*/ |
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CalibCalPulse2Reader::CalibCalPulse2Reader(void): |
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TechmodelAlgorithm(PacketType::CalibCalPulse2, "TechmodelCalibCalPulse2Reader") { |
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kusanagi |
1.4 |
logger->debug(_T("Constructor")); |
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kusanagi |
1.1 |
calibCalPulse2 = new CalibCalPulse2Event(); |
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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 CalibCalPulse2Reader::GetVersionInfo(void) const { |
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return |
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kusanagi |
5.0 |
"$Header: /home/cvsmanager/yoda/techmodel/CalibCalPulse2Reader.cpp,v 4.4 2005/05/28 10:44:11 kusanagi Exp $\n"; |
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kusanagi |
1.1 |
} |
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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 CalibCalPulse2Reader::Init(PamelaRun *run) { |
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kusanagi |
1.4 |
logger->debug(_T("Initialize")); |
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kusanagi |
1.1 |
SetInputStream(run); |
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run->WriteSubPacket(this, &calibCalPulse2, calibCalPulse2->Class()); |
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} |
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/** |
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* Unpack the CalibCalPulse2 event from an input file. |
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*/ |
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kusanagi |
2.1 |
void CalibCalPulse2Reader::RunEvent(int EventNumber, long int dataLength) throw (Exception){ |
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kusanagi |
1.4 |
std::stringstream oss; |
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kusanagi |
2.1 |
char packetData[dataLength]; |
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kusanagi |
1.1 |
int ERROR; |
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InputFile->read(packetData, sizeof(packetData)); |
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kusanagi |
2.2 |
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kusanagi |
2.1 |
calpulse_(packetData, &dataLength, &ERROR); |
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kusanagi |
2.2 |
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calibCalPulse2->unpackError = ERROR; |
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kusanagi |
2.1 |
if (ERROR != 0) { |
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char *errmsg; |
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switch (ERROR){ |
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case 1: errmsg = "CALORIMETER NOT FOUND"; |
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} |
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oss.str(""); |
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oss << "Fortran77 function calpulse error code = " << ERROR |
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kusanagi |
2.3 |
<< " " << errmsg; |
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kusanagi |
2.1 |
logger->warn(oss.str().c_str()); |
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kusanagi |
4.1 |
} //else { |
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kusanagi |
2.1 |
//Store the unpacked data |
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calibCalPulse2->iev = calpul_.iev; |
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memcpy(calibCalPulse2->pstwerr, calpul_.pstwerr, sizeof(calibCalPulse2->pstwerr)); |
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memcpy(calibCalPulse2->pperror, calpul_.pperror, sizeof(calibCalPulse2->pperror)); |
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//--------have to invert array because of FORTRAN <-> C different management of the indexes |
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float tempCalpuls[96][11][4]; |
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memcpy(tempCalpuls, calpul_.calpuls, sizeof(tempCalpuls)); |
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for (int i = 0; i < 4; i++){ |
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for (int j = 0; j <11; j++){ |
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for (int z = 0; z < 96; z++){ |
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calibCalPulse2->calpuls[i][j][z] = tempCalpuls[z][j][i]; |
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kusanagi |
1.2 |
} |
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kusanagi |
1.1 |
} |
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} |
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kusanagi |
2.1 |
//----------------------------------------------------------------------------------------- |
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kusanagi |
4.1 |
//} |
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kusanagi |
1.1 |
} |
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