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new DA for amplitude calibration
[u/mrichter/AliRoot.git] / T0 / T0Physda.cxx
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6145b1a7 1/*
2T0 DA for online calibration
271b5bd3 3
6145b1a7 4Contact: Michal.Oledzki@cern.ch
5Link: http://users.jyu.fi/~mioledzk/
6Run Type: PHYSICS
7DA Type: MON
8Number of events needed: 500000
9Input Files: inPhys.dat, external parameters
10Output Files: daPhys.root, to be exported to the DAQ FXS
11Trigger types used: PHYSICS_EVENT
49976464 12------------------------------Alla
13Now trigger type changed to CALICRATION_EVENT
14to have data during test.
15SOULD BE CHANGED BACK BEFORE BEAM
16------------------------------- Alla
6145b1a7 17*/
99194e07 18
6145b1a7 19#define FILE_OUT "daPhys.root"
20#define FILE_IN "inPhys.dat"
21#include <daqDA.h>
99194e07 22#include <event.h>
23#include <monitor.h>
24
25#include <Riostream.h>
26#include <stdio.h>
27#include <stdlib.h>
28
29//AliRoot
30#include <AliRawReaderDate.h>
31#include <AliRawReader.h>
32#include <AliT0RawReader.h>
99194e07 33
34//ROOT
6145b1a7 35#include "TROOT.h"
36#include "TPluginManager.h"
99194e07 37#include "TFile.h"
38#include "TKey.h"
39#include "TH2S.h"
40#include "TObject.h"
41#include "TBenchmark.h"
42#include "TRandom.h"
99194e07 43#include "TCanvas.h"
44#include "TString.h"
45#include "TH1.h"
46#include "TF1.h"
47#include "TSpectrum.h"
48#include "TVirtualFitter.h"
3348cdd2 49int cbx, ccbx, npmtA, npmtC;
6145b1a7 50float clx,cmx,cclx,ccmx;
99194e07 51
52/* Main routine
53 Arguments:
54 1- monitoring data source
55*/
56int main(int argc, char **argv) {
57//int main(){
58 int status;
6145b1a7 59
60 /* magic line */
61 gROOT->GetPluginManager()->AddHandler("TVirtualStreamerInfo",
62 "*",
63 "TStreamerInfo",
64 "RIO",
65 "TStreamerInfo()");
b95e8d87 66
19e2ac29 67 if(daqDA_DB_getFile(FILE_IN, FILE_IN)){
b95e8d87 68 printf("Couldn't get input file >>inPhys.dat<< from DAQ_DB !!!\n");
69 return -1;
19e2ac29 70 }
b95e8d87 71
99194e07 72
6145b1a7 73 FILE *inp;
74 char c;
75 inp = fopen(FILE_IN, "r");
19e2ac29 76 if(!inp){
b95e8d87 77 printf("Input file >>inPhys.dat<< not found !!!\n");
78 return -1;
19e2ac29 79 }
b95e8d87 80
6145b1a7 81 while((c=getc(inp))!=EOF) {
82 switch(c) {
b95e8d87 83 case 'a': {fscanf(inp, "%d", &ccbx ); break;} //N of X bins hCFD1_CFD
84 case 'b': {fscanf(inp, "%f", &cclx ); break;} //Low x hCFD1_CFD
3348cdd2 85 case 'c': {fscanf(inp, "%f", &ccmx ); break;} //High x hCFD1_CF
86 case 'd': {fscanf(inp, "%d", &npmtC ); break;} //number of reference PMTC
87 case 'e': {fscanf(inp, "%d", &npmtA ); break;} //number of reference PMTA
6145b1a7 88 }
89 }
90 fclose(inp);
91
99194e07 92 if (argc!=2) {
93 printf("Wrong number of arguments\n");
94 return -1;
95 }
b95e8d87 96
99194e07 97
98 /* define data source : this is argument 1 */
99 status=monitorSetDataSource( argv[1] );
100 if (status!=0) {
101 printf("monitorSetDataSource() failed : %s\n",monitorDecodeError(status));
102 return -1;
103 }
b95e8d87 104
105
99194e07 106 /* declare monitoring program */
107 status=monitorDeclareMp( __FILE__ );
108 if (status!=0) {
109 printf("monitorDeclareMp() failed : %s\n",monitorDecodeError(status));
110 return -1;
111 }
b95e8d87 112
113
99194e07 114 /* define wait event timeout - 1s max */
115 monitorSetNowait();
116 monitorSetNoWaitNetworkTimeout(1000);
117
b95e8d87 118
99194e07 119 /* log start of process */
120 printf("T0 monitoring program started\n");
b95e8d87 121
99194e07 122 // Allocation of histograms - start
123
ae4882b1 124 TH1F *hCFD1minCFD[24];
6145b1a7 125
b95e8d87 126 for(Int_t ic=0; ic<24; ic++) {
127 hCFD1minCFD[ic] = new TH1F(Form("CFD1-CFD%d",ic+1),"CFD-CFD",ccbx,cclx,ccmx);
128 }
129 TH1F *hVertex = new TH1F("hVertex","Z vertex",ccbx,cclx,ccmx);
130
131 Float_t meanShift[24];
132
99194e07 133 // Allocation of histograms - end
134
135 Int_t iev=0;
136 /* main loop (infinite) */
137 for(;;) {
138 struct eventHeaderStruct *event;
139 eventTypeType eventT;
b95e8d87 140
99194e07 141 /* check shutdown condition */
142 if (daqDA_checkShutdown()) {break;}
143
144 /* get next event (blocking call until timeout) */
145 status=monitorGetEventDynamic((void **)&event);
146 if (status==(int)MON_ERR_EOF) {
147 printf ("End of File detected\n");
148 break; /* end of monitoring file has been reached */
149 }
150
151 if (status!=0) {
152 printf("monitorGetEventDynamic() failed : %s\n",monitorDecodeError(status));
153 break;
154 }
b95e8d87 155
99194e07 156 /* retry if got no event */
157 if (event==NULL) {
158 continue;
159 }
b95e8d87 160
99194e07 161 /* use event - here, just write event id to result file */
162 eventT=event->eventType;
b95e8d87 163
99194e07 164 switch (event->eventType){
b95e8d87 165
99194e07 166 case START_OF_RUN:
167 break;
b95e8d87 168
169 case END_OF_RUN:
170 break;
171
1c26d5e0 172 case PHYSICS_EVENT:
b95e8d87 173 // case CALIBRATION_EVENT:
19e2ac29 174 iev++;
b95e8d87 175
19e2ac29 176 if(iev==1){
b95e8d87 177 printf("First event - %i\n",iev);
19e2ac29 178 }
b95e8d87 179
99194e07 180 // Initalize raw-data reading and decoding
181 AliRawReader *reader = new AliRawReaderDate((void*)event);
b95e8d87 182
99194e07 183 // Enable the following two lines in case of real-data
b95e8d87 184 reader->RequireHeader(kTRUE);
99194e07 185 AliT0RawReader *start = new AliT0RawReader(reader, kTRUE);
b95e8d87 186
99194e07 187 // Read raw data
188 Int_t allData[105][5];
189 for(Int_t i0=0;i0<105;i0++)
190 for(Int_t j0=0;j0<5;j0++)
b95e8d87 191 allData[i0][j0] = 0;
192
193 if(start->Next()){
194 for (Int_t i=0; i<105; i++) {
195 for(Int_t iHit=0;iHit<5;iHit++){
196 allData[i][iHit]= start->GetData(i,iHit);
197 }
198 }
99194e07 199 }
b95e8d87 200 else
271b5bd3 201 printf("No T0 data found!!!\n");
b95e8d87 202
99194e07 203 // Fill the histograms
b95e8d87 204 Float_t besttimeA=9999999;
205 Float_t besttimeC=9999999;
206 Float_t time[24];
ae4882b1 207 for (Int_t ik = 0; ik<24; ik++)
b95e8d87 208 if(allData[ik+1][0]!=0 ){
209 if(ik<12){
3348cdd2 210 hCFD1minCFD[ik]->Fill(allData[ik+1][0]-allData[npmtC][0]);
b95e8d87 211 if(iev == 20000) meanShift[ik] = hCFD1minCFD[ik]->GetMean();
212 }
213 if(ik>11){
3348cdd2 214 hCFD1minCFD[ik]->Fill(allData[ik+45][0]-allData[56+npmtA][0]);
b95e8d87 215 if(iev == 20000)
216 meanShift[ik] = hCFD1minCFD[ik]->GetMean();
217 }
99194e07 218 }
b95e8d87 219 //fill vertex & mean time _ fast reconstruction
220 if (iev > 20000 && iev <50000)
221 {
222 for (Int_t in=0; in<12; in++)
223 {
224 time[in] = allData[in+1][0] - meanShift[in] + 5000 - allData[0][0] ;
225 time[in+12] = allData[in+56+1][0] - meanShift[in+12] + 5000 - allData[0][0];
226 }
227 for (Int_t ipmt=0; ipmt<12; ipmt++){
228 if(time[ipmt] > 1 ) {
229 if(time[ipmt]<besttimeC)
230 besttimeC=time[ipmt]; //timeC
231 }
232 }
233 for ( Int_t ipmt=12; ipmt<24; ipmt++){
234 if(time[ipmt] > 1) {
235 if(time[ipmt]<besttimeA)
236 besttimeA=time[ipmt]; //timeA
237 }
238 }
239 Float_t vertex = 0.0299792 *(besttimeC - besttimeA)*24.4/2.;
240 hVertex->Fill(vertex);
241
242 }
243 delete start;
244 start = 0x0;
245 reader->Reset();
99194e07 246 // End of fill histograms
b95e8d87 247
99194e07 248 }
b95e8d87 249
99194e07 250 /* free resources */
251 free(event);
252
253 /* exit when last event received, no need to wait for TERM signal */
254 if (eventT==END_OF_RUN) {
255 printf("EOR event detected\n");
19e2ac29 256 printf("Number of events processed - %i\n ",iev);
99194e07 257 break;
258 }
259 }
6145b1a7 260 printf("After loop, before writing histos\n");
99194e07 261 // write a file with the histograms
6145b1a7 262 TFile *hist = new TFile(FILE_OUT,"RECREATE");
99194e07 263
264 for(Int_t j=0;j<24;j++){
ae4882b1 265 hCFD1minCFD[j]->Write();
99194e07 266 }
b95e8d87 267 hVertex->Write();
99194e07 268 hist->Close();
269 delete hist;
270
6145b1a7 271 status=0;
272
273 /* export file to FXS */
387638f7 274 if (daqDA_FES_storeFile(FILE_OUT, "PHYSICS")) {
6145b1a7 275 status=-2;
276 }
277
99194e07 278 return status;
279}
280
281