/[PAMELA software]/yoda/techmodel/CalibCalPedReader.cpp
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Contents of /yoda/techmodel/CalibCalPedReader.cpp

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Revision 2.4 - (show annotations) (download)
Thu Jan 13 14:48:04 2005 UTC (19 years, 11 months ago) by kusanagi
Branch: MAIN
Changes since 2.3: +5 -5 lines
Added unpackError initialization.

1 #include <log4cxx/logger.h>
2 #include <fstream>
3
4 extern "C" {
5
6 //Struct per il passaggio di dati da e verso la chiamata fortran
7 extern struct {
8 int iev;
9 int cstwerr[4];
10 float cperror[4];
11 float calped[4][11][96];
12 float calgood[4][11][96];
13 float calthr[4][11][6];
14 float calrms[4][11][96];
15 float calbase[4][11][6];
16 float calvar[4][11][6];
17 float calpuls[4][11][96];
18 } calib_;
19 //external declaration of the Fortran function
20 void calpedestal_(char*, long int*, int*);
21 }
22
23 #include "ReaderAlgorithms.h"
24 #include "event/CalibCalPedEvent.h"
25
26 using namespace pamela;
27 using namespace pamela::techmodel;
28
29 static log4cxx::LoggerPtr logger = log4cxx::Logger::getLogger(_T("pamela.techmodel.CalibCalPedReader"));
30
31 /**
32 * Constructor.
33 */
34 CalibCalPedReader::CalibCalPedReader(void):
35 TechmodelAlgorithm(PacketType::Log, "TechmodelCalibCalPedReader") {
36 logger->debug(_T("Constructor"));
37 calibCalPed = new CalibCalPedEvent();
38 }
39
40 /**
41 * Get a string with the version info of the algorithm.
42 */
43 std::string CalibCalPedReader::GetVersionInfo(void) const {
44 return
45 "$Header: /home/cvsmanager/yoda/techmodel/CalibCalPedReader.cpp,v 2.3 2004/12/09 13:17:24 kusanagi Exp $\n";
46 }
47
48 /**
49 * Initialize the algorithm with a special run. This will initialize the
50 * event reader routines for all packet types.
51 */
52 void CalibCalPedReader::Init(PamelaRun *run) {
53 logger->debug(_T("Initialize"));
54 SetInputStream(run);
55 run->WriteSubPacket(this, &calibCalPed, calibCalPed->Class());
56 }
57
58 /**
59 * Unpack the CalibCalPed event from an input file.
60 */
61 void CalibCalPedReader::RunEvent(int EventNumber, long int dataLength) throw (Exception){
62 stringstream oss;
63 int ERROR;
64 char packetData[dataLength];
65 InputFile->read(packetData, sizeof(packetData));
66
67 calpedestal_((char*)packetData, &dataLength, &ERROR);
68
69 calibCalPed->unpackError = ERROR;
70 if (ERROR != 0) {
71 char *errmsg;
72 switch (ERROR){
73 case 1: errmsg = "CALORIMETER NOT FOUND";
74 }
75 oss.str("");
76 oss << "Fortran77 function calpedestal error code = " << ERROR
77 << "\n" <<errmsg;
78 logger->warn(oss.str().c_str());
79 } else {
80 //Store the unpacked data
81 calibCalPed->iev = calib_.iev;
82 memcpy(calibCalPed->cstwerr, calib_.cstwerr, sizeof(calibCalPed->cstwerr));
83 memcpy(calibCalPed->cperror, calib_.cperror, sizeof(calibCalPed->cperror));
84 //--------have to invert array because of FORTRAN <-> C different management of the indexes
85 float tempCalped[96][11][4];
86 float tempCalgood[96][11][4];
87 float tempCalthr[6][11][4];
88 float tempCalrms[96][11][4];
89 float tempCalbase[6][11][4];
90 float tempCalvar[6][11][4];
91 float tempCalpuls[96][11][4];
92
93 memcpy(tempCalped, calib_.calped, sizeof(tempCalped));
94 memcpy(tempCalgood, calib_.calgood, sizeof(tempCalgood));
95 memcpy(tempCalthr, calib_.calthr, sizeof(tempCalthr));
96 memcpy(tempCalrms, calib_.calrms, sizeof(tempCalrms));
97 memcpy(tempCalbase, calib_.calbase, sizeof(tempCalbase));
98 memcpy(tempCalvar, calib_.calvar, sizeof(tempCalvar));
99 memcpy(tempCalpuls, calib_.calpuls, sizeof(tempCalpuls));
100
101 for (int i = 0; i < 4; i++){
102 for (int j = 0; j <11; j++){
103 for (int z = 0; z < 96; z++){
104 calibCalPed->calped[i][j][z] = tempCalped[z][j][i];
105 calibCalPed->calgood[i][j][z] = tempCalgood[z][j][i];
106 calibCalPed->calrms[i][j][z] = tempCalrms[z][j][i];
107 calibCalPed->calpuls[i][j][z] = tempCalpuls[z][j][i];
108 }
109 }
110 }
111
112 for (int i = 0; i < 4; i++){
113 for (int j = 0; j <11; j++){
114 for (int z = 0; z < 6; z++){
115 calibCalPed->calthr[i][j][z] = tempCalthr[z][j][i];
116 calibCalPed->calbase[i][j][z] = tempCalbase[z][j][i];
117 calibCalPed->calvar[i][j][z] = tempCalvar[z][j][i];
118 }
119 }
120 }
121 //-----------------------------------------------------------------------------------------
122 }
123 }
124
125

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