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/** @file |
/** @file |
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* $Source: /home/cvsmanager/yoda/techmodel/Calib2_Ac1Reader.cpp,v $ |
* $Source: /home/cvsmanager/yoda/techmodel/Calib2_Ac1Reader.cpp,v $ |
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* $Id: Calib2_Ac1Reader.cpp,v 2.3 2004/12/21 16:50:45 kusanagi Exp $ |
* $Id: Calib2_Ac1Reader.cpp,v 3.0 2005/03/04 15:54:11 kusanagi Exp $ |
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* $Author: kusanagi $ |
* $Author: kusanagi $ |
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* |
* |
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* Implementation of the Calib2_Ac1Reader class. |
* Implementation of the Calib2_Ac1Reader class. |
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extern "C" { |
extern "C" { |
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#include "CRC.h" |
#include "CRC.h" |
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#include "forroutines/anticounter/AC.h" |
#include "forroutines/anticounter/AC.h" |
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extern int ACcalib(int length, unsigned char* calibpointer, struct calibstruct* calibpointer); |
extern int ACcalib(int length, unsigned char* calibpointer, struct calibstruct *calibpointer); |
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} |
} |
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#include "ReaderAlgorithms.h" |
#include "ReaderAlgorithms.h" |
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* Get a string with the version info of the algorithm. |
* Get a string with the version info of the algorithm. |
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*/ |
*/ |
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std::string Calib2_Ac1Reader::GetVersionInfo(void) const { |
std::string Calib2_Ac1Reader::GetVersionInfo(void) const { |
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return "$Header: /home/cvsmanager/yoda/techmodel/Calib2_Ac1Reader.cpp,v 2.3 2004/12/21 16:50:45 kusanagi Exp $\n"; |
return "$Header: /home/cvsmanager/yoda/techmodel/Calib2_Ac1Reader.cpp,v 3.0 2005/03/04 15:54:11 kusanagi Exp $\n"; |
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} |
} |
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/** |
/** |
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*/ |
*/ |
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void Calib2_Ac1Reader::RunEvent(int EventNumber, long int dataLength) throw (Exception){ |
void Calib2_Ac1Reader::RunEvent(int EventNumber, long int dataLength) throw (Exception){ |
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char subData[dataLength]; |
char *subData = new char[dataLength]; |
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struct calibstruct *output = {0}; |
struct calibstruct output = {0}; |
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InputFile->read(subData, sizeof(unsigned char)*dataLength); |
InputFile->read(subData, sizeof(unsigned char)*dataLength); |
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/* |
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calib2_Ac1->ERROR = ACcalib(dataLength, (unsigned char*)subData, output); |
calib2_Ac1->ERROR = ACcalib(dataLength, (unsigned char*)subData, &output); |
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memcpy(calib2_Ac1->header, output.header, sizeof(output.header)); |
memcpy(calib2_Ac1->header, output.header, sizeof(output.header)); |
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memcpy(calib2_Ac1->status, output.status, sizeof(output.status)); |
memcpy(calib2_Ac1->status, output.status, sizeof(output.status)); |
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memcpy(calib2_Ac1->temp, output.temp, sizeof(output.temp)); |
memcpy(calib2_Ac1->temp, output.temp, sizeof(output.temp)); |
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memcpy(calib2_Ac1->hitmap_tr, output.hitmap_tr, sizeof(output.hitmap_tr)); |
memcpy(calib2_Ac1->hitmap_tr, output.hitmap_tr, sizeof(output.hitmap_tr)); |
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memcpy(calib2_Ac1->curve1, output.curve1, sizeof(output.curve1)); |
memcpy(calib2_Ac1->curve1, output.curve1, sizeof(output.curve1)); |
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memcpy(calib2_Ac1->curve2, output.curve2, sizeof(output.curve2)); |
memcpy(calib2_Ac1->curve2, output.curve2, sizeof(output.curve2)); |
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calib2_Ac1->iCRC = output.iCRC; |
calib2_Ac1->iCRC = output.iCRC; |
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calib2_Ac1->tail = output.tail; |
calib2_Ac1->tail = output.tail; |
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calib2_Ac1->CRC = output.CRC; |
calib2_Ac1->CRC = output.CRC; |
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*/ |
calib2_Ac1->CRCcheck = output.CRCcheck; |
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//delete [] subData; |
//delete [] subData; |
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} |
} |