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/** @file |
/** @file |
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* $Source: /home/cvsmanager/yoda/techmodel/physics/CalorimeterReader.cpp,v $ |
* $Source: /home/cvsmanager/yoda/techmodel/physics/CalorimeterReader.cpp,v $ |
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* $Id: CalorimeterReader.cpp,v 1.5 2004/09/21 20:24:53 kusanagi Exp $ |
* $Id: CalorimeterReader.cpp,v 2.7 2005/01/13 14:50:01 kusanagi Exp $ |
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* $Author: kusanagi $ |
* $Author: kusanagi $ |
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* |
* |
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* Implementation of the CalorimeterReader class. |
* Implementation of the CalorimeterReader class. |
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extern "C" { |
extern "C" { |
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extern struct { |
extern struct { |
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int IEV2; |
int iev; |
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int stwerr; |
int stwerr[4]; |
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int perror; |
float perror[4]; |
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int dexy[2][22][96]; |
float dexy[2][22][96]; |
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int dexyc[2][22][96]; |
float dexyc[2][22][96]; |
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int base[2][22][96]; |
float base[2][22][6]; |
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int calselftrig[4][7]; |
float calselftrig[4][7]; |
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int calIItrig[4]; |
float calIItrig[4]; |
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int calstripshift[4]; |
float calstriphit[4]; |
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int calDSPtaberr[4]; |
float calDSPtaberr[4]; |
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int calevnum[4]; |
float calevnum[4]; |
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} evento_; |
} evento_; |
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void calunpack_(short[], long int*, int*); |
void calunpack_(unsigned char[], long int*, int*); |
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//Struct per il passaggio di dati da e verso la chiamata fortran |
//Struct per il passaggio di dati da e verso la chiamata fortran |
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} |
} |
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*/ |
*/ |
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std::string CalorimeterReader::GetVersionInfo(void) const { |
std::string CalorimeterReader::GetVersionInfo(void) const { |
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return |
return |
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"$Header: /home/cvsmanager/yoda/techmodel/physics/CalorimeterReader.cpp,v 1.5 2004/09/21 20:24:53 kusanagi Exp $"; |
"$Header: /home/cvsmanager/yoda/techmodel/physics/CalorimeterReader.cpp,v 2.7 2005/01/13 14:50:01 kusanagi Exp $"; |
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} |
} |
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/** |
/** |
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memcpy(data, subData, length); |
memcpy(data, subData, length); |
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int ERROR = 0; |
int ERROR = 0; |
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unsigned short convdata[length]; |
/*unsigned short convdata[length]; |
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for (int i = 0; i<length; i++){ |
for (int i = 0; i<length; i++){ |
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convdata[i] = (unsigned short)((unsigned char)subData[i]&0xFF); |
convdata[i] = (unsigned short)((unsigned char)subData[i]&0xFF); |
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} |
}*/ |
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//Call to the routine that unpack calorimeter events |
//Call to the routine that unpack calorimeter events |
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calunpack_((short*)convdata, &length, &ERROR); |
calunpack_((unsigned char*)data, &length, &ERROR); |
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calorimeter->unpackError = ERROR; |
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if (ERROR != 0) { |
if (ERROR != 0) { |
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char *errmsg; |
char *errmsg; |
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switch (ERROR){ |
switch (ERROR){ |
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case 1: errmsg = "CALORIMETER NOT FOUND"; |
case 1: errmsg = "CALORIMETER NOT FOUND"; |
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} |
} |
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oss.flush(); |
oss.str(""); |
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oss << "Fortran77 function calunpack: " << errmsg; |
oss << "Fortran77 function calunpack: " << errmsg; |
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logger->warn(oss.str().c_str()); |
logger->warn(oss.str().c_str()); |
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} else { |
} |
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calorimeter->IEV2 = evento_.IEV2; |
// In case of "ERROR != 0" the calunpack will take care to set all |
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calorimeter->stwerr = evento_.stwerr; |
// parameters to zero |
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calorimeter->perror = evento_.perror; |
//} else { |
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calorimeter->iev = evento_.iev; |
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memcpy(calorimeter->stwerr, evento_.stwerr, sizeof(calorimeter->stwerr)); |
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memcpy(calorimeter->perror, evento_.perror, sizeof(calorimeter->perror)); |
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//--------have to invert array because of FORTRAN <-> C different management of the indexes |
//--------have to invert array because of FORTRAN <-> C different management of the indexes |
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int tempDexy[96][22][2]; |
float tempDexy[96][22][2]; |
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int tempDexyc[96][22][2]; |
float tempDexyc[96][22][2]; |
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int tempBase[96][22][2]; |
float tempBase[6][22][2]; |
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int tempCalselftrig[7][4]; |
float tempCalselftrig[7][4]; |
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memcpy(tempDexy, evento_.dexy, sizeof(tempDexy)); |
memcpy(tempDexy, evento_.dexy, sizeof(tempDexy)); |
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memcpy(tempDexyc, evento_.dexyc, sizeof(tempDexyc)); |
memcpy(tempDexyc, evento_.dexyc, sizeof(tempDexyc)); |
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memcpy(tempBase, evento_.base, sizeof(tempBase)); |
memcpy(tempBase, evento_.base, sizeof(tempBase)); |
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for (int z = 0; z < 96; z++){ |
for (int z = 0; z < 96; z++){ |
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calorimeter->dexy[i][j][z] = tempDexy[z][j][i]; |
calorimeter->dexy[i][j][z] = tempDexy[z][j][i]; |
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calorimeter->dexyc[i][j][z] = tempDexyc[z][j][i]; |
calorimeter->dexyc[i][j][z] = tempDexyc[z][j][i]; |
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} |
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for (int z = 0; z < 6; z++){ |
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calorimeter->base[i][j][z] = tempBase[z][j][i]; |
calorimeter->base[i][j][z] = tempBase[z][j][i]; |
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} |
} |
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} |
} |
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} |
} |
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//----------------------------------------------------------------------------------------- |
//----------------------------------------------------------------------------------------- |
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memcpy(calorimeter->calIItrig, evento_.calIItrig, sizeof(calorimeter->calIItrig)); |
memcpy(calorimeter->calIItrig, evento_.calIItrig, sizeof(calorimeter->calIItrig)); |
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memcpy(calorimeter->calstripshift, evento_.calstripshift, sizeof(calorimeter->calstripshift)); |
memcpy(calorimeter->calstriphit, evento_.calstriphit, sizeof(calorimeter->calstriphit)); |
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memcpy(calorimeter->calDSPtaberr, evento_.calDSPtaberr, sizeof(calorimeter->calDSPtaberr)); |
memcpy(calorimeter->calDSPtaberr, evento_.calDSPtaberr, sizeof(calorimeter->calDSPtaberr)); |
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memcpy(calorimeter->calevnum, evento_.calevnum, sizeof(calorimeter->calevnum)); |
memcpy(calorimeter->calevnum, evento_.calevnum, sizeof(calorimeter->calevnum)); |
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} |
//} |
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delete[] data; |
delete[] data; |
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} |
} |