]> git.uio.no Git - u/mrichter/AliRoot.git/blame - STEER/AliDCSSensorArray.cxx
Pedestal suppression implemented
[u/mrichter/AliRoot.git] / STEER / AliDCSSensorArray.cxx
CommitLineData
7264822f 1/**************************************************************************
2 * Copyright(c) 1998-1999, ALICE Experiment at CERN, All rights reserved. *
3 * *
4 * Author: The ALICE Off-line Project. *
5 * Contributors are mentioned in the code where appropriate. *
6 * *
7 * Permission to use, copy, modify and distribute this software and its *
8 * documentation strictly for non-commercial purposes is hereby granted *
9 * without fee, provided that the above copyright notice appears in all *
10 * copies and that both the copyright notice and this permission notice *
11 * appear in the supporting documentation. The authors make no claims *
12 * about the suitability of this software for any purpose. It is *
13 * provided "as is" without express or implied warranty. *
14 **************************************************************************/
15
16
17///////////////////////////////////////////////////////////////////////////////
18// //
19// Calibration class for DCS sensors //
20// Authors: Marian Ivanov and Haavard Helstrup //
21// //
22///////////////////////////////////////////////////////////////////////////////
23
24#include "AliDCSSensorArray.h"
82dfb6c8 25#include "AliLog.h"
7264822f 26
27ClassImp(AliDCSSensorArray)
28
8cb8848e 29const Double_t kSecInHour = 3600.; // seconds in one hour
7264822f 30
31//_____________________________________________________________________________
7c76a767 32AliDCSSensorArray::AliDCSSensorArray():TNamed(),
e5250086 33 fMinGraph(10),
34 fMinPoints(10),
35 fIter(10),
36 fMaxDelta(0.0),
37 fFitReq(2),
24938b4c 38 fValCut(-1),
39 fDiffCut(-1),
7c76a767 40 fStartTime (2000,1,1,0,0,0),
41 fEndTime (2000,1,1,0,0,0),
42 fSensors(0)
7264822f 43{
44 //
45 // AliDCSSensorArray default constructor
46 //
7264822f 47
48}
49//_____________________________________________________________________________
67a165ed 50AliDCSSensorArray::AliDCSSensorArray(TClonesArray *arr):TNamed(),
24938b4c 51 fMinGraph(10),
52 fMinPoints(10),
53 fIter(10),
54 fMaxDelta(0.0),
55 fFitReq(2),
56 fValCut(-1),
57 fDiffCut(-1),
58 fStartTime (2000,1,1,0,0,0),
59 fEndTime (2000,1,1,0,0,0),
60 fSensors(arr)
61{
62 //
63 // AliDCSSensorArray special constructor taking TClonesArray from ReadList
64 //
65
66}
67//_____________________________________________________________________________
67a165ed 68AliDCSSensorArray::AliDCSSensorArray(Int_t run, const char* dbEntry) :
7c76a767 69 TNamed(),
e5250086 70 fMinGraph(10),
71 fMinPoints(10),
72 fIter(10),
73 fMaxDelta(0.0),
74 fFitReq(2),
24938b4c 75 fValCut(-1),
76 fDiffCut(-1),
7c76a767 77 fStartTime (2000,1,1,0,0,0),
78 fEndTime (2000,1,1,0,0,0),
79 fSensors(0)
7264822f 80{
81 //
24938b4c 82 // Read configuration from OCDB
7264822f 83 //
67a165ed 84
85 AliCDBEntry *entry = AliCDBManager::Instance()->Get(dbEntry,run);
24938b4c 86 TTree *tree = (TTree*) entry->GetObject();
87 fSensors = AliDCSSensor::ReadTree(tree);
88}
89//_____________________________________________________________________________
90AliDCSSensorArray::AliDCSSensorArray(UInt_t startTime, UInt_t endTime,
91 TTree* confTree) :
92 TNamed(),
93 fMinGraph(10),
94 fMinPoints(10),
95 fIter(10),
96 fMaxDelta(0.0),
97 fFitReq(2),
98 fValCut(-1),
99 fDiffCut(-1),
100 fStartTime (2000,1,1,0,0,0),
101 fEndTime (2000,1,1,0,0,0),
102 fSensors(0)
7264822f 103
24938b4c 104{
105 //
67a165ed 106 // AliDCSSensorArray constructor for Shuttle preprocessor
24938b4c 107 // (confTree read from OCDB)
108 //
109 fSensors = AliDCSSensor::ReadTree(confTree);
110 fSensors->BypassStreamer(kFALSE);
008ef66a 111 fStartTime = TTimeStamp((time_t)startTime,0);
112 fEndTime = TTimeStamp((time_t)endTime,0);
7264822f 113}
114
115
17984b61 116//_____________________________________________________________________________
117AliDCSSensorArray::AliDCSSensorArray(UInt_t startTime, UInt_t endTime,
118 TClonesArray *sensors) :
119 TNamed(),
120 fMinGraph(10),
121 fMinPoints(10),
122 fIter(10),
123 fMaxDelta(0.0),
124 fFitReq(2),
125 fValCut(-1),
126 fDiffCut(-1),
127 fStartTime (2000,1,1,0,0,0),
128 fEndTime (2000,1,1,0,0,0),
129 fSensors(sensors)
130
131{
132 //
133 // AliDCSSensorArray constructor for Shuttle preprocessor
134 // (TClonesArray of AliDCSSensor objects)
135 //
008ef66a 136 fStartTime = TTimeStamp((time_t)startTime,0);
137 fEndTime = TTimeStamp((time_t)endTime,0);
17984b61 138}
7264822f 139
140//_____________________________________________________________________________
7c76a767 141AliDCSSensorArray::AliDCSSensorArray(const AliDCSSensorArray &c):TNamed(c),
e5250086 142 fMinGraph(c.fMinGraph),
143 fMinPoints(c.fMinPoints),
144 fIter(c.fIter),
145 fMaxDelta(c.fMaxDelta),
146 fFitReq(c.fFitReq),
147 fValCut(c.fValCut),
148 fDiffCut(c.fDiffCut),
7c76a767 149 fStartTime (c.fStartTime),
150 fEndTime (c.fEndTime),
151 fSensors(0)
152
7264822f 153{
154 //
155 // AliDCSSensorArray copy constructor
156 //
157
67a165ed 158 fSensors = (TClonesArray*)c.fSensors->Clone();
7264822f 159}
160
161///_____________________________________________________________________________
162AliDCSSensorArray::~AliDCSSensorArray()
163{
164 //
165 // AliDCSSensorArray destructor
166 //
167 fSensors->Delete();
168 delete fSensors;
169
170}
171
172//_____________________________________________________________________________
173AliDCSSensorArray &AliDCSSensorArray::operator=(const AliDCSSensorArray &c)
174{
175 //
176 // Assignment operator
177 //
67a165ed 178 if (this != &c) {
179 fSensors->Delete();
180 new (this) AliDCSSensorArray(c);
181 fSensors = (TClonesArray*)c.fSensors->Clone();
182 }
7264822f 183 return *this;
7264822f 184}
185
67a165ed 186//____________________________________________________________________________
7264822f 187
82dfb6c8 188void AliDCSSensorArray::SetGraph(TMap *map)
7264822f 189{
82dfb6c8 190 //
191 // Read graphs from DCS maps
7264822f 192 //
7264822f 193 Int_t nsensors = fSensors->GetEntries();
194 for ( Int_t isensor=0; isensor<nsensors; isensor++) {
195 AliDCSSensor *entry = (AliDCSSensor*)fSensors->At(isensor);
82dfb6c8 196 TString stringID = entry->GetStringID();
24938b4c 197 TGraph *gr = (TGraph*)map->GetValue(stringID.Data());
198 if ( gr !=0 ) {
199 entry->SetGraph((TGraph*)gr->Clone());
82dfb6c8 200 } else {
24938b4c 201 entry->SetGraph(0);
202 }
82dfb6c8 203 }
204}
7264822f 205//_____________________________________________________________________________
82dfb6c8 206void AliDCSSensorArray::MakeSplineFit(TMap *map, Bool_t keepMap)
7264822f 207{
82dfb6c8 208 //
209 // Make spline fits from DCS maps
7264822f 210 //
7264822f 211 Int_t nsensors = fSensors->GetEntries();
212 for ( Int_t isensor=0; isensor<nsensors; isensor++) {
213 AliDCSSensor *entry = (AliDCSSensor*)fSensors->At(isensor);
82dfb6c8 214 TString stringID = entry->GetStringID();
24938b4c 215 TGraph *gr = (TGraph*)map->GetValue(stringID.Data());
008ef66a 216 if (!gr ) {
24938b4c 217 entry->SetFit(0);
82dfb6c8 218 entry->SetGraph(0);
219 AliWarning(Form("sensor %s: no input graph",stringID.Data()));
220 continue;
24938b4c 221 }
7264822f 222 AliSplineFit *fit = new AliSplineFit();
82dfb6c8 223 fit->SetMinPoints(fMinGraph);
e5250086 224 fit->InitKnots(gr,fMinPoints,fIter,fMaxDelta);
225 fit->SplineFit(fFitReq);
7264822f 226 fit->Cleanup();
82dfb6c8 227 if (fit) {
228 entry->SetFit(fit);
229 } else {
230 AliWarning(Form("sensor %s: no fit performed, DCS graph kept.",stringID.Data()));
231 entry->SetGraph(gr);
232 }
8cb8848e 233 if (keepMap) entry->SetGraph(gr);
82dfb6c8 234 }
235}
7264822f 236
67a165ed 237//_____________________________________________________________________________
238Int_t AliDCSSensorArray::NumFits() const
239{
240 //
241 // Return number of sensors where a succesful fit has been made
242 //
243 Int_t nfit=0;
244 Int_t nsensors = fSensors->GetEntries();
245 for ( Int_t isensor=0; isensor<nsensors; isensor++) {
246 AliDCSSensor *entry = (AliDCSSensor*)fSensors->At(isensor);
247 if (entry->GetFit()) nfit++;
248 }
249 return nfit;
250}
7264822f 251//_____________________________________________________________________________
82dfb6c8 252Double_t AliDCSSensorArray::GetValue(UInt_t timeSec, Int_t sensor)
7264822f 253{
82dfb6c8 254 //
7264822f 255 // Return sensor value at time timeSec (obtained from fitted function)
256 // timeSec = time in seconds from start of run
257 //
258 AliDCSSensor *entry = (AliDCSSensor*)fSensors->At(sensor);
259 return entry->GetValue(timeSec);
260}
82dfb6c8 261
7264822f 262
263//_____________________________________________________________________________
82dfb6c8 264TMap* AliDCSSensorArray::ExtractDCS(TMap *dcsMap)
7264822f 265{
266 //
267 // Extract temperature graphs from DCS maps
268 //
269 TMap *values = new TMap;
270 TObjArray * valueSet;
008ef66a 271 //
272 // Keep global start/end times
273 // to avoid extrapolations, the fits will only be valid from first
274 // measured point to last measured point. This is consistent with hardware,
275 // as there would be a new measured point if the value changed.
276
277 TTimeStamp startTime=fStartTime;
278 TTimeStamp endTime=fEndTime;
279
7c76a767 280 Int_t nsensors = fSensors->GetEntries();
281 for ( Int_t isensor=0; isensor<nsensors; isensor++) {
282 AliDCSSensor *entry = (AliDCSSensor*)fSensors->At(isensor);
82dfb6c8 283 TString stringID = entry->GetStringID();
24938b4c 284 TPair *pair = (TPair*)dcsMap->FindObject(stringID.Data());
82dfb6c8 285 if ( pair ) { // only try to read values
24938b4c 286 // if DCS object available
287 valueSet = (TObjArray*)pair->Value();
008ef66a 288 TGraph *graph = MakeGraph(valueSet); // MakeGraph sets start/end time
289 // per sensor
24938b4c 290 values->Add(new TObjString(stringID.Data()),graph);
008ef66a 291 entry->SetStartTime(fStartTime);
292 entry->SetEndTime(fEndTime);
24938b4c 293 }
7264822f 294 }
008ef66a 295 // Reset global start/end time
296 // ..... yes, I know this won't get a prize for structured programming..:-)
297
298 fStartTime=startTime;
299 fEndTime=endTime;
7264822f 300 return values;
301}
302
303//_____________________________________________________________________________
304TGraph* AliDCSSensorArray::MakeGraph(TObjArray* valueSet){
305 //
306 // Make graph of temperature values read from DCS map
307 // (spline fit parameters will subsequently be obtained from this graph)
308 //
309 Int_t nentries = valueSet->GetEntriesFast();
24938b4c 310 if ( nentries == 0 ) return 0;
311
7264822f 312 Float_t *x = new Float_t[nentries];
313 Float_t *y = new Float_t[nentries];
bf84b403 314 Int_t time0=0;
315 TTimeStamp firstTime(0);
316 TTimeStamp lastTime(0);
7264822f 317 Int_t out=0;
318 Int_t skipped=0;
e5250086 319 AliDCSValue *val = (AliDCSValue *)valueSet->At(0);
320 AliDCSValue::Type type = val->GetType();
321 if ( type == AliDCSValue::kInvalid || type == AliDCSValue::kBool ) return 0;
322 Float_t value;
7264822f 323 for (Int_t i=0; i<nentries; i++){
e5250086 324 val = (AliDCSValue *)valueSet->At(i);
7264822f 325 if (!val) continue;
326 if (time0==0){
327 time0=val->GetTimeStamp();
bf84b403 328 firstTime= val->GetTimeStamp();
329 lastTime=val->GetTimeStamp();
7264822f 330 }
e5250086 331 switch ( type )
332 {
333 case AliDCSValue::kFloat:
334 value = val->GetFloat();
335 break;
336 case AliDCSValue::kChar:
24938b4c 337 value = static_cast<Float_t>(val->GetChar());
e5250086 338 break;
339 case AliDCSValue::kInt:
24938b4c 340 value = static_cast<Float_t>(val->GetInt());
e5250086 341 break;
342 case AliDCSValue::kUInt:
24938b4c 343 value = static_cast<Float_t>(val->GetUInt());
e5250086 344 break;
345 default:
346 continue;
347 }
24938b4c 348 if (fValCut>0 && TMath::Abs(value)>fValCut) continue; // refuse values greater than cut
349 if (fDiffCut>0 ) {
350 if ( out>0 && skipped<10 && TMath::Abs(value-y[out-1])>fDiffCut) {
351 skipped++; // refuse values changing
352 continue; // by > cut in one time step
353 }
354 skipped=0;
355 }
7264822f 356 if (val->GetTimeStamp()-time0>1000000) continue;
bf84b403 357 lastTime=val->GetTimeStamp();
8cb8848e 358 x[out] = (val->GetTimeStamp()-time0)/kSecInHour; // give times in fractions of hours
7264822f 359 y[out] = val->GetFloat();
bf84b403 360 out++;
7264822f 361 }
008ef66a 362 fStartTime=firstTime;
363 fEndTime=lastTime;
7264822f 364 TGraph * graph = new TGraph(out,x,y);
365 delete [] x;
366 delete [] y;
367 return graph;
368}
369
370//_____________________________________________________________________________
371AliDCSSensor* AliDCSSensorArray::GetSensor(Int_t IdDCS)
372{
373 //
374 // Return sensor information for sensor specified by IdDCS
375 //
376 Int_t nsensors = fSensors->GetEntries();
377 for (Int_t isensor=0; isensor<nsensors; isensor++) {
378 AliDCSSensor *entry = (AliDCSSensor*)fSensors->At(isensor);
379 if (entry->GetIdDCS() == IdDCS) return entry;
380 }
381 return 0;
382}
383//_____________________________________________________________________________
82dfb6c8 384AliDCSSensor* AliDCSSensorArray::GetSensor(const TString& stringID)
24938b4c 385{
386 //
387 // Return sensor information for sensor specified by IdDCS
388 //
389 Int_t nsensors = fSensors->GetEntries();
390 for (Int_t isensor=0; isensor<nsensors; isensor++) {
391 AliDCSSensor *entry = (AliDCSSensor*)fSensors->At(isensor);
392 if (entry->GetStringID() == stringID) return entry;
393 }
394 return 0;
395}
396//_____________________________________________________________________________
82dfb6c8 397AliDCSSensor* AliDCSSensorArray::GetSensor(Double_t x, Double_t y, Double_t z)
7264822f 398{
399 //
400 // Return sensor closest to given position
401 //
402 Int_t nsensors = fSensors->GetEntries();
403 Double_t dist2min=1e99;
404 Double_t xs,ys,zs,dist2;
405 Int_t ind=-1;
406 for (Int_t isensor=0; isensor<nsensors; isensor++) {
407 AliDCSSensor *entry = (AliDCSSensor*)fSensors->At(isensor);
408 xs = entry->GetX();
409 ys = entry->GetY();
410 zs = entry->GetZ();
411 dist2 = (x-xs)*(x-xs) + (y-ys)*(y-ys) + (z-zs)*(z-zs);
412 if (dist2 < dist2min) {
413 ind=isensor;
414 dist2min = dist2;
82dfb6c8 415 }
7264822f 416 }
417 if ( ind >= 0 ) {
418 return (AliDCSSensor*)fSensors->At(ind);
419 } else {
420 return 0;
421 }
422}
bf84b403 423//_____________________________________________________________________________
82dfb6c8 424AliDCSSensor* AliDCSSensorArray::GetSensorNum(Int_t ind)
8cb8848e 425{
426 //
427 // Return sensor given by array index
428 //
429 return (AliDCSSensor*)fSensors->At(ind);
430}
431
bf84b403 432//_____________________________________________________________________________
82dfb6c8 433void AliDCSSensorArray::RemoveSensorNum(Int_t ind)
434{
435 //
436 // Return sensor given by array index
437 //
438
439 delete fSensors->RemoveAt(ind);
440 fSensors->Compress();
441}
bf84b403 442//_____________________________________________________________________________
82dfb6c8 443void AliDCSSensorArray::RemoveSensor(Int_t IdDCS)
444{
445 //
446 // Deletes Sensor by given IdDCS
447 //
448
449 Int_t nsensors = fSensors->GetEntries();
450 for (Int_t isensor=0; isensor<nsensors; isensor++) { // loop over sensors
451 AliDCSSensor *entry = (AliDCSSensor*)fSensors->At(isensor);
452 if (entry->GetIdDCS()==IdDCS) {
453 delete fSensors->RemoveAt(isensor);
454 break;
455 }
456 }
457 fSensors->Compress();
458}
bf84b403 459//_____________________________________________________________________________
460TArrayI AliDCSSensorArray::OutsideThreshold(Double_t threshold, UInt_t timeSec, Bool_t below) const
461{
462 //
463 // Return sensors with values outside threshold at time defined by second
464 // parameter
465 // By default sensors with values below threshold are listed, if third
466 // parameter is set to kFALSE sensors with values above threshold are listed
467 //
468 Int_t nsensors = fSensors->GetEntries();
469 TArrayI array(nsensors);
470 Int_t outside=0;
471 for (Int_t isensor=0; isensor<nsensors; isensor++) { // loop over sensors
472 AliDCSSensor *entry = (AliDCSSensor*)fSensors->At(isensor);
473 Double_t val=entry->GetValue(timeSec);
474 if (below) {
475 if (val<threshold) array[outside++] = entry->GetIdDCS();
476 } else {
477 if (val>threshold) array[outside++] = entry->GetIdDCS();
478 }
479 }
480 array.Set(outside);
481 return array;
482}
483
484//_____________________________________________________________________________
8cb8848e 485Int_t AliDCSSensorArray::GetFirstIdDCS() const
486{
487 //
488 // Return DCS Id of first sensor
489 //
490 if ( fSensors != 0 ) {
491 return ((AliDCSSensor*)fSensors->At(0))->GetIdDCS();
492 } else {
493 return 0;
494 }
495}
496
bf84b403 497//_____________________________________________________________________________
8cb8848e 498Int_t AliDCSSensorArray::GetLastIdDCS() const
499{
500 //
501 // Return DCS Id of last sensor
502 //
503 if ( fSensors != 0 ) {
504 Int_t last = fSensors->GetEntries();
505 return ((AliDCSSensor*)fSensors->At(last-1))->GetIdDCS();
506 } else {
507 return 0;
508 }
509}
bf84b403 510//_____________________________________________________________________________
24938b4c 511void AliDCSSensorArray::ClearGraph()
512{
513 //
514 // Delete DCS graphs from all sensors in array
515 //
516
517 Int_t nsensors = fSensors->GetEntries();
518 for ( Int_t isensor=0; isensor<nsensors; isensor++) {
519 AliDCSSensor *sensor = (AliDCSSensor*)fSensors->At(isensor);
520 TGraph *gr = sensor->GetGraph();
521 if ( gr != 0 ) {
522 delete gr;
523 gr = 0;
524 }
525 sensor->SetGraph(0);
82dfb6c8 526 }
527}
bf84b403 528//_____________________________________________________________________________
24938b4c 529void AliDCSSensorArray::ClearFit()
530{
531 //
532 // Delete spline fits from all sensors in array
533 //
82dfb6c8 534
24938b4c 535 Int_t nsensors = fSensors->GetEntries();
536 for ( Int_t isensor=0; isensor<nsensors; isensor++) {
537 AliDCSSensor *sensor = (AliDCSSensor*)fSensors->At(isensor);
538 AliSplineFit *fit = sensor->GetFit();
539 if ( fit != 0 ) {
540 delete fit;
541 fit = 0;
542 }
543 sensor->SetFit(0);
82dfb6c8 544 }
545}