source: trunk/MagicSoft/Mars/mraw/MRawEvtHeader.cc@ 749

Last change on this file since 749 was 749, checked in by tbretz, 24 years ago
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1/* ======================================================================== *\
2!
3! *
4! * This file is part of MARS, the MAGIC Analysis and Reconstruction
5! * Software. It is distributed to you in the hope that it can be a useful
6! * and timesaving tool in analysing Data of imaging Cerenkov telescopes.
7! * It is distributed WITHOUT ANY WARRANTY.
8! *
9! * Permission to use, copy, modify and distribute this software and its
10! * documentation for any purpose is hereby granted without fee,
11! * provided that the above copyright notice appear in all copies and
12! * that both that copyright notice and this permission notice appear
13! * in supporting documentation. It is provided "as is" without express
14! * or implied warranty.
15! *
16!
17!
18! Author(s): Thomas Bretz 12/2000 (tbretz@uni-sw.gwdg.de)
19!
20! Copyright: MAGIC Software Development, 2000-2001
21!
22!
23\* ======================================================================== */
24
25/////////////////////////////////////////////////////////////////////////////
26//
27// MRawEvtHeader
28//
29// One Event is a sample of FADC measurements of different Pixels
30// (Photomultipliers) from the Camera of MAGIC. So all data (FADC) of the
31// interesting pixels are the modules of an event. To describe pixels the
32// class MRawPixel is used and the class MRawCrate to describe Crates.
33// To define a single events some other data members are needed
34// (Time of the events, tirgger pattern of event..)
35//
36// To describe one event on the level of FADC values the Class MRawEvtHeader is
37// created. It has the following data members:
38//
39// UInt_t fDAQEvtNumber
40// -----------------------
41// This it the number of the Event in one
42// data run. The first event in this run get
43// the number zero. The next one is one bigger.
44//
45// Assuming that one run takes 1 hour and a
46// triggerrate of 1kHz the number must be able
47// to reach 3.6e6 Events. To reach this number
48// you need at least 22 bits. This is the reason
49// why we use an integer (of root type UInt_t)
50// with a range to 4.2e9.
51//
52// MTime fRawEvtTime
53// -------------------
54// Time of the event.
55// The start point of the time determination can be
56// the millenium. From that start point the time is
57// measured in 200ns-count. One day for example
58// contains 432.e9 counts. An array of two unsigned Int is able to
59// contain 1.8e19 200ns-counts. This corresponds to 41.e6
60// days. This should be more than the livetime of MAGIC.
61// Private member of MTime.h
62//
63// UInt_t fNumTrigLvl1
64// --------------------
65//
66// Number of first level trigger
67// This member counts the number of First Level Trigger
68// between the last and this event. May be that due to
69// dead time of the DAQ this number is different from 1.
70// If the DAQ is fast enough, this value should be 1.
71// This may be usefull in GammaRayBursts and if we
72// apply a data reduction in the DAQ-chain, which selects
73// only good events.
74//
75// UInt_t fNumTrigLvl2
76// ------------------ -
77//
78// Number of second level trigger
79// This member counts the number of Second Level Trigger
80// between the last and this event.
81//
82// UInt_t fTrigPattern[2]
83// -----------------------
84// Trigger Pattern used for this event
85// Each event triggers for a particular configuration and each
86// configuration shoul have an ID (which is not fixed yet).
87//
88// UShort_t fAllLowGainOn
89// ----------------------
90// Type of Trigger.
91// This is a Byte (8 bit) to indicated if any of the pixels
92// have a non-negligible low gain (1) or not (0)
93//
94/////////////////////////////////////////////////////////////////////////////
95#include "MRawEvtHeader.h"
96
97#include <iomanip.h>
98#include <fstream.h>
99
100#include "MLog.h"
101#include "MTime.h"
102#include "MArrayB.h"
103#include "MRawRunHeader.h"
104
105ClassImp(MRawEvtHeader)
106
107MRawEvtHeader::MRawEvtHeader(const char *name, const char *title)
108{
109 *fName = name ? name : "MRawEvtHeader";
110 *fTitle = title ? title : "Raw Event Header Information";
111
112 //
113 // set all member to zero, init the pointer to ClonesArray,
114 //
115
116 fPixLoGainOn = new MArrayB;
117
118 Clear();
119}
120
121
122MRawEvtHeader::~MRawEvtHeader()
123{
124}
125
126void MRawEvtHeader::Init(MRawRunHeader *rh, MTime *t)
127{
128 //
129 // you have to init the conatainer before you can read from
130 // a raw binary file
131 //
132
133 //
134 // this is the number of entries in the array like specification
135 //
136 UInt_t fN = (rh->GetNumCrates() * rh->GetNumPixInCrate() + 7) / 8;
137
138 //
139 // initialize the array
140 //
141 fPixLoGainOn->Set(fN);
142
143 //
144 // this is the conatiner where we have to store the time of the event we
145 // read from the input stream
146 //
147 fTime = t;
148}
149
150void MRawEvtHeader::Clear(Option_t *)
151{
152 //
153 // Implementation of the Clear function
154 //
155 // Resets all members to zero, clear the list of Pixels
156 //
157 fDAQEvtNumber = 0;
158 fNumTrigLvl1 = 0;
159 fNumTrigLvl2 = 0;
160 fTrigPattern[0] = 0;
161 fTrigPattern[1] = 0;
162 fTrigType = 0;
163 fNumLoGainOn = 0;
164}
165
166void MRawEvtHeader::Print(Option_t *o)
167{
168 //
169 // This member function prints all Data of one Event on screen.
170 //
171 *fLog << "DAQEvtNr: " << dec << fDAQEvtNumber << " (";
172 *fLog << "Trigger: ";
173 *fLog << "NumLvl1=" << fNumTrigLvl1 << " ";
174 *fLog << "NumLvl2=" << fNumTrigLvl2 << " ";
175 *fLog << "Pattern=" << hex << setfill('0');
176 *fLog << setw(2) << fTrigPattern[0];
177 *fLog << setw(2) << fTrigPattern[1] << " " << dec;
178
179 *fLog << "Type=";
180 switch (fTrigType)
181 {
182 case 0:
183 *fLog << "Trigger";
184 break;
185 case 1:
186 *fLog << "Pedestal";
187 break;
188 case 2:
189 *fLog << "Calibration";
190 break;
191 }
192 *fLog << ")" << endl;
193 *fLog << "Number of Lo Gains On: " << fNumLoGainOn << endl;
194
195 for (unsigned int i=0; i<fPixLoGainOn->GetSize(); i++)
196 {
197 for (int j=0; j<8; j++)
198 {
199 const UInt_t on = (*fPixLoGainOn)[i]&(1<<j) ? 1 : 0;
200 *fLog << on;
201 }
202 }
203
204 *fLog << endl;
205
206 *fLog << endl;
207
208}
209
210void MRawEvtHeader::FillHeader(UInt_t uiN, Float_t ulTP)
211{
212 //
213 // used to set the header information (eg. from MC)
214 //
215 fDAQEvtNumber = uiN;
216 fTrigPattern[0] = (UInt_t) (ulTP/4294967296.0) ;
217 fTrigPattern[1] = (UInt_t) (ulTP-fTrigPattern[0]*4294967296.0);
218}
219
220int MRawEvtHeader::ReadEvt(istream &fin)
221{
222 //
223 // read the EVENT HEADER information from the input stream
224 // return FALSE if there is now header anymore, else TRUE
225 //
226 fin.read((Byte_t*)&fDAQEvtNumber, 4);
227
228 UInt_t fAbsTime[2];
229 fin.read((Byte_t*)fAbsTime, 8);
230
231 //
232 // store the time of the event in the corresponding container
233 //
234 fTime->SetTime(fAbsTime[0], fAbsTime[1]);
235
236 Byte_t dummy[4];
237
238 fin.read((Byte_t*)&fNumTrigLvl1, 4);
239 fin.read((Byte_t*)&fNumTrigLvl2, 4);
240 fin.read((Byte_t*)fTrigPattern, 8);
241 fin.read((Byte_t*)&fTrigType, 2);
242 fin.read((Byte_t*)dummy, 2); // was fAllLoGainOn
243 fin.read((Byte_t*)fPixLoGainOn->GetArray(), fPixLoGainOn->GetSize());
244
245 fNumLoGainOn = 0;
246 for (unsigned int i=0; i<fPixLoGainOn->GetSize(); i++)
247 for (int j=0; j<8; j++)
248 if ((*fPixLoGainOn)[i] & (1<<j))
249 fNumLoGainOn++;
250
251 fin.read((Byte_t*)&dummy, 4);
252
253 return !fin.eof();
254}
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