source: trunk/FACT++/gui/FactGui.h@ 11324

Last change on this file since 11324 was 11322, checked in by tbretz, 14 years ago
Added handling of FAD_CONTROL/STATS service.
File size: 90.9 KB
Line 
1#ifndef FACT_FactGui
2#define FACT_FactGui
3
4#include "MainWindow.h"
5
6#include <iomanip>
7#include <valarray>
8
9#include <boost/bind.hpp>
10
11#include <QTimer>
12#include <QStandardItemModel>
13
14#include "CheckBoxDelegate.h"
15
16#include "src/Dim.h"
17#include "src/Converter.h"
18#include "src/HeadersFTM.h"
19#include "src/HeadersFAD.h"
20#include "src/DimNetwork.h"
21#include "src/tools.h"
22#include "src/FAD.h"
23
24
25#include "TROOT.h"
26#include "TSystem.h"
27#include "TGraph.h"
28#include "TH1.h"
29#include "TStyle.h"
30#include "TMarker.h"
31#include "TColor.h"
32
33using namespace std;
34
35// #########################################################################
36
37class Camera : public TObject
38{
39 typedef pair<double,double> Position;
40 typedef vector<Position> Positions;
41
42 Positions fGeom;
43
44 void CreatePalette()
45 {
46 /*
47 double ss[5] = {0., 0.10, 0.45, 0.75, 1.00};
48 double rr[5] = {0., 0.35, 0.85, 1.00, 1.00};
49 double gg[5] = {0., 0.10, 0.20, 0.73, 1.00};
50 double bb[5] = {0., 0.03, 0.06, 0.00, 1.00};
51 */
52 double ss[5] = {0.00, 0.25, 0.50, 0.75, 1.00};
53 double rr[5] = {0.15, 0.00, 0.00, 1.00, 0.85};
54 double gg[5] = {0.15, 0.00, 1.00, 0.00, 0.85};
55 double bb[5] = {0.15, 1.00, 0.00, 0.00, 0.85};
56
57 const Int_t nn = 1440;
58
59 Int_t idx = TColor::CreateGradientColorTable(5, ss, rr, gg, bb, nn);
60 for (int i=0; i<nn; i++)
61 fPalette.push_back(idx++);
62 }
63
64 void CreateGeometry()
65 {
66 const double gsSin60 = sqrt(3.)/2;
67
68 const int rings = 23;
69
70 // add the first pixel to the list
71
72 fGeom.push_back(make_pair(0, -0.5));
73
74 for (int ring=1; ring<=rings; ring++)
75 {
76 for (int s=0; s<6; s++)
77 {
78 for (int i=1; i<=ring; i++)
79 {
80 double xx, yy;
81 switch (s)
82 {
83 case 0: // Direction South East
84 xx = (ring+i)*0.5;
85 yy = (-ring+i)*gsSin60;
86 break;
87
88 case 1: // Direction North East
89 xx = ring-i*0.5;
90 yy = i*gsSin60;
91 break;
92
93 case 2: // Direction North
94 xx = ring*0.5-i;
95 yy = ring*gsSin60;
96 break;
97
98 case 3: // Direction North West
99 xx = -(ring+i)*0.5;
100 yy = (ring-i)*gsSin60;
101 break;
102
103 case 4: // Direction South West
104 xx = 0.5*i-ring;
105 yy = -i*gsSin60;
106 break;
107
108 case 5: // Direction South
109 xx = i-ring*0.5;
110 yy = -ring*gsSin60;
111 break;
112 }
113
114 if (xx*xx + yy*yy - xx > 395.75)
115 continue;
116
117 fGeom.push_back(make_pair(yy, xx-0.5));
118 }
119 }
120 }
121 }
122
123 valarray<double> fData;
124 vector<bool> fBold;
125 vector<bool> fEnable;
126
127 int fWhite;
128
129public:
130 Camera() : fData(1440), fBold(1440), fEnable(1440), fWhite(-1)
131 {
132 CreatePalette();
133 CreateGeometry();
134
135 for (int i=0; i<1440; i++)
136 {
137 fData[i] = i;
138 fBold[i]=false;
139 fEnable[i]=true;
140 }
141 }
142
143 void Reset() { fBold.assign(1440, false); }
144
145 void SetBold(int idx) { fBold[idx]=true; }
146 void SetWhite(int idx) { fWhite=idx; }
147 void SetEnable(int idx, bool b) { fEnable[idx]=b; }
148 void Toggle(int idx) { fEnable[idx]=!fEnable[idx]; }
149 double GetData(int idx) const { return fData[idx]; }
150
151 const char *GetName() const { return "Camera"; }
152
153 vector<Int_t> fPalette;
154
155 void Paint(const Position &p)
156 {
157 static const Double_t fgCos60 = 0.5; // TMath::Cos(60/TMath::RadToDeg());
158 static const Double_t fgSin60 = sqrt(3.)/2; // TMath::Sin(60/TMath::RadToDeg());
159
160 static const Double_t fgDy[6] = { fgCos60, 0., -fgCos60, -fgCos60, 0., fgCos60 };
161 static const Double_t fgDx[6] = { fgSin60/3, fgSin60*2/3, fgSin60/3, -fgSin60/3, -fgSin60*2/3, -fgSin60/3 };
162
163 //
164 // calculate the positions of the pixel corners
165 //
166 Double_t x[7], y[7];
167 for (Int_t i=0; i<7; i++)
168 {
169 x[i] = p.first + fgDx[i%6];
170 y[i] = p.second + fgDy[i%6];
171 }
172
173 gPad->PaintFillArea(6, x, y);
174 gPad->PaintPolyLine(7, x, y);
175
176 }
177
178 double align(double min, double val, double max) const
179 {
180 if (val<min)
181 return min;
182 if (val>max)
183 return max;
184 return val;
185 }
186
187 void Paint(Option_t *)
188 {
189 gStyle->SetPalette(fPalette.size(), fPalette.data());
190
191 const double r = double(gPad->GetWw())/gPad->GetWh();
192 const double max = 20.5; // 20.5 rings in x and y
193
194 if (r>1)
195 gPad->Range(-r*max, -max, r*max, max);
196 else
197 gPad->Range(-max, -max/r, max, max/r);
198
199 Double_t x1, x2, y1, y2;
200 gPad->GetRange(x1, x2, y1, y2);
201
202 double dmin = fData[0];
203 double dmax = fData[0];
204
205 for (unsigned int i=0; i<fData.size(); i++)
206 {
207 if (!fEnable[i])
208 continue;
209
210 if (fData[i]>dmax)
211 dmax = fData[i];
212 if (fData[i]<dmin)
213 dmin = fData[i];
214 }
215
216 const double min = dmin;
217 const double scale = dmax==dmin ? 1 : dmax-dmin;
218
219 TAttFill fill(0, 1001);
220 TAttLine line;
221
222 int cnt=0;
223 for (Positions::iterator p=fGeom.begin(); p!=fGeom.end(); p++, cnt++)
224 {
225 if (fBold[cnt])
226 continue;
227
228 const double val = align(dmin, fData[cnt], dmax);
229
230 const int col = (val-min)/scale*(fPalette.size()-1);
231
232 if (fEnable[cnt])
233 fill.SetFillColor(gStyle->GetColorPalette(col));
234 else
235 fill.SetFillColor(kWhite);
236
237 fill.Modify();
238
239 Paint(*p);
240 }
241
242 line.SetLineWidth(2);
243 line.Modify();
244
245 cnt = 0;
246 for (Positions::iterator p=fGeom.begin(); p!=fGeom.end(); p++, cnt++)
247 {
248 if (!fBold[cnt])
249 continue;
250
251 const double val = align(dmin, fData[cnt], dmax);
252
253 const int col = (val-min)/scale*(fPalette.size()-1);
254
255 if (fEnable[cnt])
256 fill.SetFillColor(gStyle->GetColorPalette(col));
257 else
258 fill.SetFillColor(kWhite);
259 fill.Modify();
260
261 Paint(*p);
262 }
263
264 TMarker m(0,0,kStar);
265 m.DrawMarker(0, 0);
266
267 if (fWhite<0)
268 return;
269
270 const Position &p = fGeom[fWhite];
271
272 line.SetLineColor(kWhite);
273 line.Modify();
274
275 const double val = align(dmin, fData[fWhite], dmax);
276
277 const int col = (val-min)/scale*(fPalette.size()-1);
278
279 if (fEnable[fWhite])
280 fill.SetFillColor(gStyle->GetColorPalette(col));
281 else
282 fill.SetFillColor(kWhite);
283 fill.Modify();
284
285 Paint(p);
286 }
287
288 int GetIdx(float px, float py) const
289 {
290 static const double sqrt3 = sqrt(3);
291
292 int idx = 0;
293 for (Positions::const_iterator p=fGeom.begin(); p!=fGeom.end(); p++, idx++)
294 {
295 const Double_t dy = py - p->second;
296 if (fabs(dy)>0.5)
297 continue;
298
299 const Double_t dx = px - p->first;
300
301 if (TMath::Abs(dy + dx*sqrt3) > 1)
302 continue;
303
304 if (TMath::Abs(dy - dx*sqrt3) > 1)
305 continue;
306
307 return idx;
308 }
309 return -1;
310 }
311
312 char *GetObjectInfo(Int_t px, Int_t py) const
313 {
314 static stringstream stream;
315 static string str;
316
317 const float x = gPad->AbsPixeltoX(px);
318 const float y = gPad->AbsPixeltoY(py);
319
320 const int idx = GetIdx(x, y);
321
322 stream.seekp(0);
323 if (idx>=0)
324 {
325 stream << "Pixel=" << idx << " Data=" << fData[idx] << '\0';
326 }
327
328 str = stream.str();
329 return const_cast<char*>(str.c_str());
330 }
331
332 Int_t DistancetoPrimitive(Int_t px, Int_t py)
333 {
334 const float x = gPad->AbsPixeltoX(px);
335 const float y = gPad->AbsPixeltoY(py);
336
337 return GetIdx(x, y)>=0 ? 0 : 99999;
338 }
339
340 void SetData(const valarray<double> &data)
341 {
342 fData = data;
343 }
344};
345
346// #########################################################################
347
348
349class FactGui : public MainWindow, public DimNetwork
350{
351private:
352 class FunctionEvent : public QEvent
353 {
354 public:
355 boost::function<void(const QEvent &)> fFunction;
356
357 FunctionEvent(const boost::function<void(const QEvent &)> &f)
358 : QEvent((QEvent::Type)QEvent::registerEventType()),
359 fFunction(f) { }
360
361 bool Exec() { fFunction(*this); return true; }
362 };
363
364 valarray<int8_t> fFtuStatus;
365
366 vector<int> fPixelMapHW; // Software -> Hardware
367 vector<int> fPatchMapHW; // Software -> Hardware
368 vector<int> fPatchHW; // Maps the software(!) pixel id to the hardware(!) patch id
369
370 bool fInChoosePatch; // FIXME. Find a better solution
371
372 DimStampedInfo fDimDNS;
373
374 DimStampedInfo fDimLoggerStats;
375 DimStampedInfo fDimLoggerFilenameNight;
376 DimStampedInfo fDimLoggerFilenameRun;
377 DimStampedInfo fDimLoggerNumSubs;
378
379 DimStampedInfo fDimFtmPassport;
380 DimStampedInfo fDimFtmTriggerCounter;
381 DimStampedInfo fDimFtmError;
382 DimStampedInfo fDimFtmFtuList;
383 DimStampedInfo fDimFtmStaticData;
384 DimStampedInfo fDimFtmDynamicData;
385 DimStampedInfo fDimFtmCounter;
386
387 DimStampedInfo fDimFadWriteStats;
388 DimStampedInfo fDimFadRuns;
389 DimStampedInfo fDimFadEvents;
390 DimStampedInfo fDimFadEventData;
391 DimStampedInfo fDimFadConnections;
392 DimStampedInfo fDimFadFwVersion;
393 DimStampedInfo fDimFadRunNumber;
394 DimStampedInfo fDimFadDNA;
395 DimStampedInfo fDimFadTemperature;
396 DimStampedInfo fDimFadRefClock;
397 DimStampedInfo fDimFadStatus;
398 DimStampedInfo fDimFadStatistics1;
399 DimStampedInfo fDimFadStatistics2;
400
401 map<string, DimInfo*> fServices;
402
403 // ========================== LED Colors ================================
404
405 enum LedColor_t
406 {
407 kLedRed,
408 kLedGreen,
409 kLedYellow,
410 kLedOrange,
411 kLedGray
412 };
413
414 void SetLedColor(QPushButton *button, LedColor_t col, const Time &t)
415 {
416 switch (col)
417 {
418 case kLedRed:
419 button->setIcon(QIcon(":/Resources/icons/red circle 1.png"));
420 break;
421
422 case kLedGreen:
423 button->setIcon(QIcon(":/Resources/icons/green circle 1.png"));
424 break;
425
426 case kLedYellow:
427 button->setIcon(QIcon(":/Resources/icons/yellow circle 1.png"));
428 break;
429
430 case kLedOrange:
431 button->setIcon(QIcon(":/Resources/icons/orange circle 1.png"));
432 break;
433
434 case kLedGray:
435 button->setIcon(QIcon(":/Resources/icons/gray circle 1.png"));
436 break;
437 }
438
439 //button->setToolTip("Last change: "+QDateTime::currentDateTimeUtc().toString()+" UTC");
440 button->setToolTip(("Last change: "+t.GetAsStr()+" (UTC)").c_str());
441 }
442
443 // ===================== Services and Commands ==========================
444
445 QStandardItem *AddServiceItem(const std::string &server, const std::string &service, bool iscmd)
446 {
447 QListView *servers = iscmd ? fDimCmdServers : fDimSvcServers;
448 QListView *services = iscmd ? fDimCmdCommands : fDimSvcServices;
449 QListView *description = iscmd ? fDimCmdDescription : fDimSvcDescription;
450
451 QStandardItemModel *m = dynamic_cast<QStandardItemModel*>(servers->model());
452 if (!m)
453 {
454 m = new QStandardItemModel(this);
455 servers->setModel(m);
456 services->setModel(m);
457 description->setModel(m);
458 }
459
460 QList<QStandardItem*> l = m->findItems(server.c_str());
461
462 if (l.size()>1)
463 {
464 cout << "hae" << endl;
465 return 0;
466 }
467
468 QStandardItem *col = l.size()==0 ? NULL : l[0];
469
470 if (!col)
471 {
472 col = new QStandardItem(server.c_str());
473 m->appendRow(col);
474
475 if (!services->rootIndex().isValid())
476 {
477 services->setRootIndex(col->index());
478 servers->setCurrentIndex(col->index());
479 }
480 }
481
482 QStandardItem *item = 0;
483 for (int i=0; i<col->rowCount(); i++)
484 {
485 QStandardItem *coli = col->child(i);
486 if (coli->text().toStdString()==service)
487 return coli;
488 }
489
490 item = new QStandardItem(service.c_str());
491 col->appendRow(item);
492 col->sortChildren(0);
493
494 if (!description->rootIndex().isValid())
495 {
496 description->setRootIndex(item->index());
497 services->setCurrentIndex(item->index());
498 }
499
500 if (!iscmd)
501 item->setCheckable(true);
502
503 return item;
504 }
505
506 void AddDescription(QStandardItem *item, const vector<Description> &vec)
507 {
508 if (!item)
509 return;
510 if (vec.size()==0)
511 return;
512
513 item->setToolTip(vec[0].comment.c_str());
514
515 const string str = Description::GetHtmlDescription(vec);
516
517 QStandardItem *desc = new QStandardItem(str.c_str());
518 desc->setSelectable(false);
519 item->setChild(0, 0, desc);
520 }
521
522 void AddServer(const std::string &s)
523 {
524 DimNetwork::AddServer(s);
525
526 QApplication::postEvent(this,
527 new FunctionEvent(boost::bind(&FactGui::handleAddServer, this, s)));
528 }
529
530 void AddService(const std::string &server, const std::string &service, const std::string &fmt, bool iscmd)
531 {
532 QApplication::postEvent(this,
533 new FunctionEvent(boost::bind(&FactGui::handleAddService, this, server, service, fmt, iscmd)));
534 }
535
536 void RemoveService(const std::string &server, const std::string &service, bool iscmd)
537 {
538 UnsubscribeService(server+'/'+service, true);
539
540 QApplication::postEvent(this,
541 new FunctionEvent(boost::bind(&FactGui::handleRemoveService, this, server, service, iscmd)));
542 }
543
544 void RemoveAllServices(const std::string &server)
545 {
546 UnsubscribeAllServices(server);
547
548 QApplication::postEvent(this,
549 new FunctionEvent(boost::bind(&FactGui::handleRemoveAllServices, this, server)));
550 }
551
552 void AddDescription(const std::string &server, const std::string &service, const vector<Description> &vec)
553 {
554 QApplication::postEvent(this,
555 new FunctionEvent(boost::bind(&FactGui::handleAddDescription, this, server, service, vec)));
556 }
557
558 // ======================================================================
559
560 void handleAddServer(const std::string &server)
561 {
562 const State s = GetState(server, GetCurrentState(server));
563 handleStateChanged(Time(), server, s);
564 }
565
566 void handleAddService(const std::string &server, const std::string &service, const std::string &/*fmt*/, bool iscmd)
567 {
568 QStandardItem *item = AddServiceItem(server, service, iscmd);
569 const vector<Description> v = GetDescription(server, service);
570 AddDescription(item, v);
571 }
572
573 void handleRemoveService(const std::string &server, const std::string &service, bool iscmd)
574 {
575 QListView *servers = iscmd ? fDimCmdServers : fDimSvcServers;
576
577 QStandardItemModel *m = dynamic_cast<QStandardItemModel*>(servers->model());
578 if (!m)
579 return;
580
581 QList<QStandardItem*> l = m->findItems(server.c_str());
582 if (l.size()!=1)
583 return;
584
585 for (int i=0; i<l[0]->rowCount(); i++)
586 {
587 QStandardItem *row = l[0]->child(i);
588 if (row->text().toStdString()==service)
589 {
590 l[0]->removeRow(row->index().row());
591 return;
592 }
593 }
594 }
595
596 void handleRemoveAllServices(const std::string &server)
597 {
598 handleStateChanged(Time(), server, State(-2, "Offline", "No connection via DIM."));
599
600 QStandardItemModel *m = 0;
601 if ((m=dynamic_cast<QStandardItemModel*>(fDimCmdServers->model())))
602 {
603 QList<QStandardItem*> l = m->findItems(server.c_str());
604 if (l.size()==1)
605 m->removeRow(l[0]->index().row());
606 }
607
608 if ((m = dynamic_cast<QStandardItemModel*>(fDimSvcServers->model())))
609 {
610 QList<QStandardItem*> l = m->findItems(server.c_str());
611 if (l.size()==1)
612 m->removeRow(l[0]->index().row());
613 }
614 }
615
616 void handleAddDescription(const std::string &server, const std::string &service, const vector<Description> &vec)
617 {
618 const bool iscmd = IsCommand(server, service)==true;
619
620 QStandardItem *item = AddServiceItem(server, service, iscmd);
621 AddDescription(item, vec);
622 }
623
624 // ======================================================================
625
626 void SubscribeService(const string &service)
627 {
628 if (fServices.find(service)!=fServices.end())
629 {
630 cout << "ERROR - We are already subscribed to " << service << endl;
631 return;
632 }
633
634 fServices[service] = new DimStampedInfo(service.c_str(), (void*)NULL, 0, this);
635 }
636
637 void UnsubscribeService(const string &service, bool allow_unsubscribed=false)
638 {
639 const map<string,DimInfo*>::iterator i=fServices.find(service);
640
641 if (i==fServices.end())
642 {
643 if (!allow_unsubscribed)
644 cout << "ERROR - We are not subscribed to " << service << endl;
645 return;
646 }
647
648 delete i->second;
649
650 fServices.erase(i);
651 }
652
653 void UnsubscribeAllServices(const string &server)
654 {
655 for (map<string,DimInfo*>::iterator i=fServices.begin();
656 i!=fServices.end(); i++)
657 if (i->first.substr(0, server.length()+1)==server+'/')
658 {
659 delete i->second;
660 fServices.erase(i);
661 }
662 }
663
664 // ======================================================================
665
666 struct DimData
667 {
668 const int qos;
669 const string name;
670 const string format;
671 const vector<char> data;
672 const Time time;
673
674 Time extract(DimInfo *inf) const
675 {
676 // Must be called in exactly this order!
677 const int tsec = inf->getTimestamp();
678 const int tms = inf->getTimestampMillisecs();
679
680 return Time(tsec, tms*1000);
681 }
682
683// DimInfo *info; // this is ONLY for a fast check of the type of the DimData!!
684
685 DimData(DimInfo *inf) :
686 qos(inf->getQuality()),
687 name(inf->getName()),
688 format(inf->getFormat()),
689 data(inf->getString(), inf->getString()+inf->getSize()),
690 time(extract(inf))/*,
691 info(inf)*/
692 {
693 }
694
695 template<typename T>
696 T get(uint32_t offset=0) const { return *reinterpret_cast<const T*>(data.data()+offset); }
697
698 template<typename T>
699 const T *ptr(uint32_t offset=0) const { return reinterpret_cast<const T*>(data.data()+offset); }
700
701 template<typename T>
702 const T &ref(uint32_t offset=0) const { return *reinterpret_cast<const T*>(data.data()+offset); }
703
704// vector<char> vec(int b) const { return vector<char>(data.begin()+b, data.end()); }
705// string str(unsigned int b) const { return b>=data.size()?string():string(data.data()+b, data.size()-b); }
706 const char *c_str() const { return (char*)data.data(); }
707/*
708 vector<boost::any> any() const
709 {
710 const Converter conv(format);
711 conv.Print();
712 return conv.GetAny(data.data(), data.size());
713 }*/
714 size_t size() const { return data.size(); }
715 };
716
717 // ======================= DNS ==========================================
718
719 void handleDimDNS(const DimData &d)
720 {
721 const int version = d.size()!=4 ? 0 : d.get<uint32_t>();
722
723 ostringstream str;
724 str << "V" << version/100 << 'r' << version%100;
725
726 ostringstream dns;
727 dns << (version==0?"No connection":"Connection");
728 dns << " to DIM DNS (" << getenv("DIM_DNS_NODE") << ")";
729 dns << (version==0?".":" established.");
730
731 fStatusDNSLabel->setText(version==0?"Offline":str.str().c_str());
732 fStatusDNSLabel->setToolTip(dns.str().c_str());
733
734 SetLedColor(fStatusDNSLed, version==0 ? kLedRed : kLedGreen, Time());
735 }
736
737
738 // ======================= Logger =======================================
739
740 void handleLoggerStats(const DimData &d)
741 {
742 const bool connected = d.size()!=0;
743
744 fLoggerET->setEnabled(connected);
745 fLoggerRate->setEnabled(connected);
746 fLoggerWritten->setEnabled(connected);
747 fLoggerFreeSpace->setEnabled(connected);
748 fLoggerSpaceLeft->setEnabled(connected);
749
750 if (!connected)
751 return;
752
753 const uint64_t *vals = d.ptr<uint64_t>();
754
755 const size_t space = vals[0];
756 const size_t written = vals[1];
757 const size_t rate = float(vals[2])/vals[3];
758
759 fLoggerFreeSpace->setSuffix(" MB");
760 fLoggerFreeSpace->setDecimals(0);
761 fLoggerFreeSpace->setValue(space*1e-6);
762
763 if (space> 1000000) // > 1GB
764 {
765 fLoggerFreeSpace->setSuffix(" GB");
766 fLoggerFreeSpace->setDecimals(2);
767 fLoggerFreeSpace->setValue(space*1e-9);
768 }
769 if (space>= 3000000) // >= 3GB
770 {
771 fLoggerFreeSpace->setSuffix(" GB");
772 fLoggerFreeSpace->setDecimals(1);
773 fLoggerFreeSpace->setValue(space*1e-9);
774 }
775 if (space>=100000000) // >= 100GB
776 {
777 fLoggerFreeSpace->setSuffix(" GB");
778 fLoggerFreeSpace->setDecimals(0);
779 fLoggerFreeSpace->setValue(space*1e-9);
780 }
781
782 fLoggerET->setTime(QTime().addSecs(rate>0?space/rate:0));
783 fLoggerRate->setValue(rate*1e-3); // kB/s
784 fLoggerWritten->setValue(written*1e-6);
785
786 fLoggerRate->setSuffix(" kB/s");
787 fLoggerRate->setDecimals(2);
788 fLoggerRate->setValue(rate);
789 if (rate> 2) // > 2kB/s
790 {
791 fLoggerRate->setSuffix(" kB/s");
792 fLoggerRate->setDecimals(1);
793 fLoggerRate->setValue(rate);
794 }
795 if (rate>=100) // >100kB/s
796 {
797 fLoggerRate->setSuffix(" kB/s");
798 fLoggerRate->setDecimals(0);
799 fLoggerRate->setValue(rate);
800 }
801 if (rate>=1000) // >100kB/s
802 {
803 fLoggerRate->setSuffix(" MB/s");
804 fLoggerRate->setDecimals(2);
805 fLoggerRate->setValue(rate*1e-3);
806 }
807 if (rate>=10000) // >1MB/s
808 {
809 fLoggerRate->setSuffix(" MB/s");
810 fLoggerRate->setDecimals(1);
811 fLoggerRate->setValue(rate*1e-3);
812 }
813 if (rate>=100000) // >10MB/s
814 {
815 fLoggerRate->setSuffix(" MB/s");
816 fLoggerRate->setDecimals(0);
817 fLoggerRate->setValue(rate*1e-3);
818 }
819
820 if (space/1000000>static_cast<size_t>(fLoggerSpaceLeft->maximum()))
821 fLoggerSpaceLeft->setValue(fLoggerSpaceLeft->maximum()); // GB
822 else
823 fLoggerSpaceLeft->setValue(space/1000000); // MB
824 }
825
826 void handleLoggerFilenameNight(const DimData &d)
827 {
828 const bool connected = d.size()!=0;
829
830 fLoggerFilenameNight->setEnabled(connected);
831 if (!connected)
832 return;
833
834 fLoggerFilenameNight->setText(d.c_str()+4);
835
836 const uint32_t files = d.get<uint32_t>();
837
838 SetLedColor(fLoggerLedLog, files&1 ? kLedGreen : kLedGray, d.time);
839 SetLedColor(fLoggerLedRep, files&2 ? kLedGreen : kLedGray, d.time);
840 SetLedColor(fLoggerLedFits, files&4 ? kLedGreen : kLedGray, d.time);
841 }
842
843 void handleLoggerFilenameRun(const DimData &d)
844 {
845 const bool connected = d.size()!=0;
846
847 fLoggerFilenameRun->setEnabled(connected);
848 if (!connected)
849 return;
850
851 fLoggerFilenameRun->setText(d.c_str()+4);
852
853 const uint32_t files = d.get<uint32_t>();
854
855 SetLedColor(fLoggerLedLog, files&1 ? kLedGreen : kLedGray, d.time);
856 SetLedColor(fLoggerLedRep, files&2 ? kLedGreen : kLedGray, d.time);
857 SetLedColor(fLoggerLedFits, files&4 ? kLedGreen : kLedGray, d.time);
858 }
859
860 void handleLoggerNumSubs(const DimData &d)
861 {
862 const bool connected = d.size()!=0;
863
864 fLoggerSubscriptions->setEnabled(connected);
865 fLoggerOpenFiles->setEnabled(connected);
866 if (!connected)
867 return;
868
869 const uint32_t *vals = d.ptr<uint32_t>();
870
871 fLoggerSubscriptions->setValue(vals[0]);
872 fLoggerOpenFiles->setValue(vals[1]);
873 }
874
875
876 // ===================== All ============================================
877
878 bool CheckSize(const DimData &d, size_t sz) const
879 {
880 if (d.size()==0)
881 return false;
882
883 if (d.size()!=sz)
884 {
885 cout << "Size mismatch in " << d.name << ": Found=" << d.size() << " Expected=" << sz << endl;
886 return false;
887 }
888
889 return true;
890 }
891
892 // ===================== FAD ============================================
893
894 void handleFadWriteStats(const DimData &d)
895 {
896 const bool connected = d.size()!=0;
897
898 fEvtBuilderET->setEnabled(connected);
899 fEvtBuilderRate->setEnabled(connected);
900 fEvtBuilderWritten->setEnabled(connected);
901 fEvtBuilderFreeSpace->setEnabled(connected);
902 fEvtBuilderSpaceLeft->setEnabled(connected);
903
904 if (!connected)
905 return;
906
907 const uint64_t *vals = d.ptr<uint64_t>();
908
909 const size_t space = vals[0];
910 const size_t written = vals[1];
911 const size_t rate = float(vals[2])/vals[3];
912
913 fEvtBuilderFreeSpace->setSuffix(" MB");
914 fEvtBuilderFreeSpace->setDecimals(0);
915 fEvtBuilderFreeSpace->setValue(space*1e-6);
916
917 if (space> 1000000) // > 1GB
918 {
919 fEvtBuilderFreeSpace->setSuffix(" GB");
920 fEvtBuilderFreeSpace->setDecimals(2);
921 fEvtBuilderFreeSpace->setValue(space*1e-9);
922 }
923 if (space>= 3000000) // >= 3GB
924 {
925 fEvtBuilderFreeSpace->setSuffix(" GB");
926 fEvtBuilderFreeSpace->setDecimals(1);
927 fEvtBuilderFreeSpace->setValue(space*1e-9);
928 }
929 if (space>=100000000) // >= 100GB
930 {
931 fEvtBuilderFreeSpace->setSuffix(" GB");
932 fEvtBuilderFreeSpace->setDecimals(0);
933 fEvtBuilderFreeSpace->setValue(space*1e-9);
934 }
935
936 fEvtBuilderET->setTime(QTime().addSecs(rate>0?space/rate:0));
937 fEvtBuilderRate->setValue(rate*1e-3); // kB/s
938 fEvtBuilderWritten->setValue(written*1e-6);
939
940 fEvtBuilderRate->setSuffix(" kB/s");
941 fEvtBuilderRate->setDecimals(2);
942 fEvtBuilderRate->setValue(rate);
943 if (rate> 2) // > 2kB/s
944 {
945 fEvtBuilderRate->setSuffix(" kB/s");
946 fEvtBuilderRate->setDecimals(1);
947 fEvtBuilderRate->setValue(rate);
948 }
949 if (rate>=100) // >100kB/s
950 {
951 fEvtBuilderRate->setSuffix(" kB/s");
952 fEvtBuilderRate->setDecimals(0);
953 fEvtBuilderRate->setValue(rate);
954 }
955 if (rate>=1000) // >100kB/s
956 {
957 fEvtBuilderRate->setSuffix(" MB/s");
958 fEvtBuilderRate->setDecimals(2);
959 fEvtBuilderRate->setValue(rate*1e-3);
960 }
961 if (rate>=10000) // >1MB/s
962 {
963 fEvtBuilderRate->setSuffix(" MB/s");
964 fEvtBuilderRate->setDecimals(1);
965 fEvtBuilderRate->setValue(rate*1e-3);
966 }
967 if (rate>=100000) // >10MB/s
968 {
969 fEvtBuilderRate->setSuffix(" MB/s");
970 fEvtBuilderRate->setDecimals(0);
971 fEvtBuilderRate->setValue(rate*1e-3);
972 }
973
974 if (space/1000000>static_cast<size_t>(fEvtBuilderSpaceLeft->maximum()))
975 fEvtBuilderSpaceLeft->setValue(fEvtBuilderSpaceLeft->maximum()); // GB
976 else
977 fEvtBuilderSpaceLeft->setValue(space/1000000); // MB
978 }
979
980 void handleFadRuns(const DimData &d)
981 {
982 if (d.size()==0)
983 return;
984
985 if (d.size()<20)
986 {
987 cout << "Size mismatch in " << d.name << ": Found=" << d.size() << " Expected>=20" << endl;
988 return;
989 }
990
991 const uint32_t *ptr = d.ptr<uint32_t>();
992
993 fEvtBldOpenFiles->setValue(ptr[0]);
994 fEvtBldOpenStreams->setValue(ptr[0]);
995 fEvtBldRunNumberMin->setValue(ptr[1]);
996 fEvtBldRunNumberMax->setValue(ptr[2]);
997 fEvtBldLastOpened->setValue(ptr[3]);
998 fEvtBldLastClosed->setValue(ptr[4]);
999
1000 if (d.size()>=20)
1001 fEvtBldFilename->setText(d.ptr<char>(20));
1002
1003 if (ptr[0]==0)
1004 fEvtBldFilename->setText("");
1005
1006 }
1007
1008 void handleFadEvents(const DimData &d)
1009 {
1010 if (!CheckSize(d, 16))
1011 return;
1012
1013 const uint32_t *ptr = d.ptr<uint32_t>();
1014
1015 fEvtsSuccessCurRun->setValue(ptr[0]);
1016 fEvtsSuccessTotal->setValue(ptr[1]);
1017 fEvtBldEventId->setValue(ptr[2]);
1018 fEvtBldTriggerId->setValue(ptr[3]);
1019 }
1020
1021 void handleFadTemperature(const DimData &d)
1022 {
1023 if (d.size()==0)
1024 {
1025 fFadTempMin->setEnabled(false);
1026 fFadTempMax->setEnabled(false);
1027 SetLedColor(fFadLedTemp, kLedGray, d.time);
1028 return;
1029 }
1030
1031 if (!CheckSize(d, 82*sizeof(float)))
1032 return;
1033
1034 const float *ptr = d.ptr<float>();
1035
1036 fFadTempMin->setEnabled(true);
1037 fFadTempMax->setEnabled(true);
1038
1039 fFadTempMin->setValue(ptr[0]);
1040 fFadTempMax->setValue(ptr[40]);
1041
1042 handleFadToolTip(d.time, fFadTempMin, ptr+1);
1043 handleFadToolTip(d.time, fFadTempMax, ptr+41);
1044 }
1045
1046 void handleFadRefClock(const DimData &d)
1047 {
1048 if (d.size()==0)
1049 {
1050 fFadRefClockMin->setEnabled(false);
1051 fFadRefClockMax->setEnabled(false);
1052 SetLedColor(fFadLedRefClock, kLedGray, d.time);
1053 return;
1054 }
1055
1056 if (!CheckSize(d, 42*sizeof(uint32_t)))
1057 return;
1058
1059 const uint32_t *ptr = d.ptr<uint32_t>();
1060
1061 fFadRefClockMin->setEnabled(true);
1062 fFadRefClockMax->setEnabled(true);
1063
1064 fFadRefClockMin->setValue(ptr[40]*2.048);
1065 fFadRefClockMax->setValue(ptr[41]*2.048);
1066
1067 const int64_t diff = int64_t(ptr[41]) - int64_t(ptr[40]);
1068
1069 SetLedColor(fFadLedRefClock, abs(diff)>3?kLedRed:kLedGreen, d.time);
1070
1071 handleFadToolTip(d.time, fFadLedRefClock, ptr+2);
1072 }
1073
1074 struct DimEventData
1075 {
1076 uint16_t Roi ; // #slices per pixel (same for all pixels and tmarks)
1077 uint32_t EventNum ; // EventNumber as from FTM
1078 uint16_t TriggerType ; // Trigger Type from FTM
1079
1080 uint32_t PCTime ; // when did event start to arrive at PC
1081 uint32_t BoardTime; //
1082
1083 int16_t StartPix; // First Channel per Pixel (Pixels sorted according Software ID) ; -1 if not filled
1084 int16_t StartTM; // First Channel for TimeMark (sorted Hardware ID) ; -1 if not filled
1085
1086 int16_t Adc_Data[]; // final length defined by malloc ....
1087
1088 } __attribute__((__packed__));;
1089
1090 DimEventData *fEventData;
1091
1092 void DisplayEventData()
1093 {
1094#ifdef HAVE_ROOT
1095 TCanvas *c = fAdcDataCanv->GetCanvas();
1096
1097 TH1 *h = dynamic_cast<TH1*>(c->FindObject("EventData"));
1098 if (h && h->GetNbinsX()!=fEventData->Roi)
1099 {
1100 delete h;
1101 h = 0;
1102 }
1103
1104 if (!h)
1105 {
1106 c->cd();
1107
1108 TH1D hist("EventData", "", fEventData->Roi, -0.5, fEventData->Roi-0.5);
1109 hist.SetStats(kFALSE);
1110 //hist->SetBit(TH1::kNoTitle);
1111 hist.SetMarkerStyle(kFullDotMedium);
1112 hist.SetMarkerColor(kBlue);
1113 hist.SetYTitle("Voltage [mV]");
1114 hist.GetXaxis()->CenterTitle();
1115 hist.GetYaxis()->CenterTitle();
1116 hist.SetMinimum(-1026);
1117 hist.SetMaximum(1025);
1118 h = hist.DrawCopy("PL");
1119 h->SetDirectory(0);
1120 }
1121
1122 ostringstream str;
1123 str << "Event ID = " << fEventData->EventNum << " Trigger type = " << fEventData->TriggerType << " PC Time=" << fEventData->PCTime << " Board time = " << fEventData->BoardTime;
1124 h->SetTitle(str.str().c_str());
1125 str.str("");
1126 str << "ADC Pipeline (start=" << fEventData->StartPix << ")";
1127 h->SetXTitle(str.str().c_str());
1128
1129 //str.str("");
1130 //str << "Crate=" << crate << " Board=" << board << " Channel=" << channel << " [" << d.time() << "]" << endl;
1131 //hist->SetTitle(str.str().c_str());
1132
1133 const uint32_t p = fAdcChannel->value()+fAdcBoard->value()*36+fAdcCrate->value()*360;
1134
1135 for (int i=0; i<fEventData->Roi; i++)
1136 h->SetBinContent(i+1, fEventData->Adc_Data[p*fEventData->Roi+i]*0.5);
1137
1138 if (fAdcAutoScale->isChecked())
1139 {
1140 h->SetMinimum(-1111);
1141 h->SetMaximum(-1111);
1142 }
1143 else
1144 {
1145 if (h->GetMinimumStored()==-1111)
1146 h->SetMinimum(-1026);
1147 if (h->GetMaximumStored()==-1111)
1148 h->SetMaximum(1025);
1149 }
1150
1151 c->Modified();
1152 c->Update();
1153#endif
1154 }
1155
1156 void handleFadEventData(const DimData &d)
1157 {
1158 if (d.size()==0)
1159 return;
1160
1161 if (fAdcStop->isChecked())
1162 return;
1163
1164 const DimEventData &dat = d.ref<DimEventData>();
1165
1166 if (d.size()<sizeof(DimEventData))
1167 {
1168 cout << "Size mismatch in " << d.name << ": Found=" << d.size() << " Expected=" << sizeof(DimEventData) << endl;
1169 return;
1170 }
1171
1172 if (d.size()!=sizeof(DimEventData)+dat.Roi*2*1440)
1173 {
1174 cout << "Size mismatch in " << d.name << ": Found=" << d.size() << " Expected=" << dat.Roi*2+sizeof(DimEventData) << endl;
1175 return;
1176 }
1177
1178 delete fEventData;
1179 fEventData = reinterpret_cast<DimEventData*>(new char[d.size()]);
1180 memcpy(fEventData, d.ptr<void>(), d.size());
1181
1182 DisplayEventData();
1183 }
1184
1185// vector<uint8_t> fFadConnections;
1186
1187 void handleFadConnections(const DimData &d)
1188 {
1189 if (!CheckSize(d, 41))
1190 {
1191 fStatusEventBuilderLabel->setText("Offline");
1192 fStatusEventBuilderLabel->setToolTip("FADs or fadctrl seems to be offline.");
1193 fEvtBldWidget->setEnabled(false);
1194
1195 SetLedColor(fStatusEventBuilderLed, kLedGray, d.time);
1196 return;
1197 }
1198
1199 const uint8_t *ptr = d.ptr<uint8_t>();
1200
1201 for (int i=0; i<40; i++)
1202 {
1203 const uint8_t stat1 = ptr[i]&3;
1204 const uint8_t stat2 = ptr[i]>>3;
1205
1206 if (stat1==0 && stat2==0)
1207 {
1208 SetLedColor(fFadLED[i], kLedGray, d.time);
1209 continue;
1210 }
1211 if (stat1==2 && stat2==8)
1212 {
1213 SetLedColor(fFadLED[i], kLedGreen, d.time);
1214 continue;
1215 }
1216
1217 if (stat1==1 && stat2==1)
1218 SetLedColor(fFadLED[i], kLedRed, d.time);
1219 else
1220 SetLedColor(fFadLED[i], kLedOrange, d.time);
1221 }
1222
1223
1224 const bool runs = ptr[40]!=0;
1225
1226 fStatusEventBuilderLabel->setText(runs?"Running":"Not running");
1227 fStatusEventBuilderLabel->setToolTip(runs?"Event builder thread running.":"Event builder thread stopped.");
1228 fEvtBldWidget->setEnabled(runs);
1229
1230 SetLedColor(fStatusEventBuilderLed, runs?kLedGreen:kLedRed, d.time);
1231
1232// fFadConnections.assign(ptr, ptr+40);
1233 }
1234
1235 template<typename T>
1236 void handleFadToolTip(const Time &time, QWidget *w, T *ptr)
1237 {
1238 ostringstream tip;
1239 tip << "<table border='1'><tr><th colspan='11'>" << time.GetAsStr() << " (UTC)</th></tr><tr><th></th>";
1240 for (int b=0; b<10; b++)
1241 tip << "<th>" << b << "</th>";
1242 tip << "</tr>";
1243
1244 for (int c=0; c<4; c++)
1245 {
1246 tip << "<tr><th>" << c << "</th>";
1247 for (int b=0; b<10; b++)
1248 tip << "<td>" << ptr[c*10+b] << "</td>";
1249 tip << "</tr>";
1250 }
1251 tip << "</table>";
1252
1253 w->setToolTip(tip.str().c_str());
1254 }
1255
1256 template<typename T, class S>
1257 void handleFadMinMax(const DimData &d, QPushButton *led, S *wmin, S *wmax=0)
1258 {
1259 if (!CheckSize(d, 42*sizeof(T)))
1260 return;
1261
1262 const T *ptr = d.ptr<T>();
1263 const T min = ptr[40];
1264 const T max = ptr[41];
1265
1266 if (max<min)
1267 SetLedColor(led, kLedGray, d.time);
1268 else
1269 SetLedColor(led, min==max?kLedGreen: kLedOrange, d.time);
1270
1271 if (!wmax && max!=min)
1272 wmin->setValue(0);
1273 else
1274 wmin->setValue(min);
1275
1276 if (wmax)
1277 wmax->setValue(max);
1278
1279 handleFadToolTip(d.time, led, ptr);
1280 }
1281
1282 void handleFadFwVersion(const DimData &d)
1283 {
1284 handleFadMinMax<float, QDoubleSpinBox>(d, fFadLedFwVersion, fFadFwVersion);
1285 }
1286
1287 void handleFadRunNumber(const DimData &d)
1288 {
1289 handleFadMinMax<uint32_t, QSpinBox>(d, fFadLedRunNumber, fFadRunNumber);
1290 }
1291
1292 void handleFadDNA(const DimData &d)
1293 {
1294 if (!CheckSize(d, 40*sizeof(uint64_t)))
1295 return;
1296
1297 const uint64_t *ptr = d.ptr<uint64_t>();
1298
1299 ostringstream tip;
1300 tip << "<table width='100%'>";
1301 tip << "<tr><th>Crate</th><td></td><th>Board</th><td></td><th>DNA</th></tr>";
1302
1303 for (int i=0; i<40; i++)
1304 {
1305 tip << dec;
1306 tip << "<tr>";
1307 tip << "<td align='center'>" << i/10 << "</td><td>:</td>";
1308 tip << "<td align='center'>" << i%10 << "</td><td>:</td>";
1309 tip << hex;
1310 tip << "<td>0x" << setfill('0') << setw(16) << ptr[i] << "</td>";
1311 tip << "</tr>";
1312 }
1313 tip << "</table>";
1314
1315 fFadDNA->setText(tip.str().c_str());
1316 }
1317
1318 void SetFadLed(QPushButton *led, const DimData &d, uint16_t bitmask, bool invert=false)
1319 {
1320 if (d.size()==0)
1321 {
1322 SetLedColor(led, kLedGray, d.time);
1323 return;
1324 }
1325
1326 const bool quality = d.ptr<uint16_t>()[0]&bitmask;
1327 const bool value = d.ptr<uint16_t>()[1]&bitmask;
1328 const uint16_t *ptr = d.ptr<uint16_t>()+2;
1329
1330 SetLedColor(led, quality?kLedOrange:(value^invert?kLedGreen:kLedRed), d.time);
1331
1332 ostringstream tip;
1333 tip << "<table border='1'><tr><th colspan='11'>" << d.time.GetAsStr() << " (UTC)</th></tr><tr><th></th>";
1334 for (int b=0; b<10; b++)
1335 tip << "<th>" << b << "</th>";
1336 tip << "</tr>";
1337
1338 /*
1339 tip << "<tr>" << hex;
1340 tip << "<th>" << d.ptr<uint16_t>()[0] << " " << (d.ptr<uint16_t>()[0]&bitmask) << "</th>";
1341 tip << "<th>" << d.ptr<uint16_t>()[1] << " " << (d.ptr<uint16_t>()[1]&bitmask) << "</th>";
1342 tip << "</tr>";
1343 */
1344
1345 for (int c=0; c<4; c++)
1346 {
1347 tip << "<tr><th>" << dec << c << "</th>" << hex;
1348 for (int b=0; b<10; b++)
1349 {
1350 tip << "<td>"
1351 << (ptr[c*10+b]&bitmask)
1352 << "</td>";
1353 }
1354 tip << "</tr>";
1355 }
1356 tip << "</table>";
1357
1358 led->setToolTip(tip.str().c_str());
1359 }
1360
1361 void handleFadStatus(const DimData &d)
1362 {
1363 if (d.size()!=0 && !CheckSize(d, 42*sizeof(uint16_t)))
1364 return;
1365
1366 SetFadLed(fFadLedDrsEnabled, d, FAD::EventHeader::kDenable);
1367 SetFadLed(fFadLedDrsWrite, d, FAD::EventHeader::kDwrite);
1368 SetFadLed(fFadLedDcmLocked, d, FAD::EventHeader::kDcmLocked);
1369 SetFadLed(fFadLedDcmReady, d, FAD::EventHeader::kDcmReady);
1370 SetFadLed(fFadLedSpiSclk, d, FAD::EventHeader::kSpiSclk);
1371 SetFadLed(fFadLedRefClockTooLow, d, FAD::EventHeader::kRefClkTooLow, true);
1372 SetFadLed(fFadLedBusy, d, FAD::EventHeader::kBusy);
1373 SetFadLed(fFadLedTriggerLine, d, FAD::EventHeader::kTriggerLine);
1374 SetFadLed(fFadLedContTrigger, d, FAD::EventHeader::kContTrigger);
1375 SetFadLed(fFadLedSocket, d, FAD::EventHeader::kSock17);
1376 SetFadLed(fFadLedPllLock, d, 0xf000);
1377 }
1378
1379 void handleFadStatistics1(const DimData &d)
1380 {
1381 if (!CheckSize(d, sizeof(GUI_STAT)))
1382 return;
1383
1384 const GUI_STAT &stat = d.ref<GUI_STAT>();
1385
1386 /*
1387 //info about status of the main threads
1388 int32_t readStat ; //read thread
1389 int32_t procStat ; //processing thread(s)
1390 int32_t writStat ; //write thread
1391 */
1392
1393 fFadBufferMax->setValue(stat.totMem/1000000);
1394 fFadBuffer->setMaximum(stat.totMem/100);
1395 fFadBuffer->setValue(stat.maxMem/100); // Max mem used in last second
1396
1397 uint32_t sum = 0;
1398 int32_t min = 0x7fffff;
1399 int32_t max = 0;
1400
1401 int cnt = 0;
1402 int err = 0;
1403
1404 for (int i=0; i<40; i++)
1405 {
1406 if (stat.numConn[i]!=7)
1407 continue;
1408
1409 cnt++;
1410
1411 sum += stat.rateBytes[i];
1412 err += stat.errConn[i];
1413
1414 if (stat.rateBytes[i]<min)
1415 min = stat.rateBytes[i];
1416 if (stat.rateBytes[i]>max)
1417 max = stat.rateBytes[i];
1418 }
1419
1420 fFadEvtConn->setValue(cnt);
1421 fFadEvtConnErr->setValue(err);
1422
1423 fFadEvtBufNew->setValue(stat.bufNew); // Incomplete in buffer
1424 fFadEvtBufEvt->setValue(stat.bufEvt); // Complete in buffer
1425 fFadEvtWrite->setValue(stat.evtWrite-stat.evtSkip-stat.evtErr);
1426 fFadEvtSkip->setValue(stat.evtSkip);
1427 fFadEvtErr->setValue(stat.evtErr);
1428
1429 if (stat.deltaT==0)
1430 return;
1431
1432 fFadEthernetRateMin->setValue(min/stat.deltaT);
1433 fFadEthernetRateMax->setValue(max/stat.deltaT);
1434 fFadEthernetRateTot->setValue(sum/stat.deltaT);
1435 fFadEthernetRateAvg->setValue(cnt==0 ? 0 : sum/cnt/stat.deltaT);
1436 fFadEvtRateNew->setValue(1000*stat.rateNew/stat.deltaT);
1437 fFadEvtRateWrite->setValue(1000*stat.rateWrite/stat.deltaT);
1438 }
1439
1440 void handleFadStatistics2(const DimData &d)
1441 {
1442 if (!CheckSize(d, sizeof(EVT_STAT)))
1443 return;
1444
1445 //const EVT_STAT &stat = d.ref<EVT_STAT>();
1446
1447 /*
1448 //some info about what happened since start of program (or last 'reset')
1449 uint32_t reset ; //#if increased, reset all counters
1450 uint32_t numRead[MAX_SOCK] ; //how often succesfull read from N sockets per loop
1451
1452 uint64_t gotByte[NBOARDS] ; //#Bytes read per Board
1453 uint32_t gotErr[NBOARDS] ; //#Communication Errors per Board
1454
1455 uint32_t evtGet; //#new Start of Events read
1456 uint32_t evtTot; //#complete Events read
1457
1458 uint32_t evtErr; //#Events with Errors
1459 uint32_t evtSkp; //#Events incomplete (timeout)
1460
1461
1462 uint32_t procTot; //#Events processed
1463 uint32_t procErr; //#Events showed problem in processing
1464 uint32_t procTrg; //#Events accepted by SW trigger
1465 uint32_t procSkp; //#Events rejected by SW trigger
1466
1467 uint32_t feedTot; //#Events used for feedBack system
1468 uint32_t feedErr; //#Events rejected by feedBack
1469
1470 uint32_t wrtTot; //#Events written to disk
1471 uint32_t wrtErr; //#Events with write-error
1472
1473 uint32_t runOpen; //#Runs opened
1474 uint32_t runClose; //#Runs closed
1475 uint32_t runErr; //#Runs with open/close errors
1476
1477
1478 //info about current connection status
1479 uint8_t numConn[NBOARDS] ; //#Sockets succesfully open per board
1480 */
1481 }
1482
1483 // ===================== FTM ============================================
1484
1485 double fTimeStamp1;
1486
1487 void handleFtmTriggerCounter(const DimData &d)
1488 {
1489 if (!CheckSize(d, sizeof(FTM::DimTriggerCounter)))
1490 return;
1491
1492 const FTM::DimTriggerCounter &sdata = d.ref<FTM::DimTriggerCounter>();
1493
1494 fFtmTime->setText(QString::number(sdata.fTimeStamp/1000000., 'f', 6)+ " s");
1495 fTriggerCounter->setText(QString::number(sdata.fTriggerCounter));
1496
1497 if (sdata.fTimeStamp>0)
1498 fTriggerCounterRate->setValue(1000000.*sdata.fTriggerCounter/sdata.fTimeStamp);
1499 else
1500 fTriggerCounterRate->setValue(0);
1501
1502
1503 // ----------------------------------------------
1504#ifdef HAVE_ROOT
1505
1506 if (fTriggerCounter0<0)
1507 {
1508 fTriggerCounter0 = sdata.fTriggerCounter;
1509 fTimeStamp1 = sdata.fTimeStamp;
1510 return;
1511 }
1512
1513 TCanvas *c = fFtmRateCanv->GetCanvas();
1514
1515 TH1 *h = (TH1*)c->FindObject("TimeFrame");
1516
1517 const double rate = sdata.fTriggerCounter-fTriggerCounter0;
1518 const double tdiff = sdata.fTimeStamp -fTimeStamp1;
1519
1520 fTriggerCounter0 = sdata.fTriggerCounter;
1521 fTimeStamp1 = sdata.fTimeStamp;
1522
1523 if (rate<0 && tdiff<=0)
1524 {
1525 fGraphFtmRate.Set(0);
1526
1527 const double tm = Time().RootTime();
1528
1529 h->SetBins(1, tm, tm+60);
1530 h->GetXaxis()->SetTimeFormat("%M'%S\"");
1531 h->GetXaxis()->SetTitle("Time");
1532
1533 c->Modified();
1534 c->Update();
1535 return;
1536 }
1537
1538 if (rate<0)
1539 return;
1540
1541// const double avgrate = sdata.fTimeStamp>0 ? double(sdata.fTriggerCounter)/sdata.fTimeStamp*1000000 : 1;
1542
1543 const double t1 = h->GetXaxis()->GetXmax();
1544 const double t0 = h->GetXaxis()->GetXmin();
1545
1546 h->SetBins(h->GetNbinsX()+1, t0, t0+sdata.fTimeStamp/1000000.+1);
1547 fGraphFtmRate.SetPoint(fGraphFtmRate.GetN(),
1548 t0+sdata.fTimeStamp/1000000., 1000000*rate/tdiff);
1549
1550 if (t1-t0>60)
1551 {
1552 h->GetXaxis()->SetTimeFormat("%Hh%M'");
1553 h->GetXaxis()->SetTitle("Time");
1554 }
1555
1556 h->SetMinimum(0);
1557// h->SetMaximum(2*avgrate);
1558
1559 c->Modified();
1560 c->Update();
1561#endif
1562 // ----------------------------------------------
1563 }
1564
1565 void handleFtmCounter(const DimData &d)
1566 {
1567 if (!CheckSize(d, sizeof(uint32_t)*6))
1568 return;
1569
1570 const uint32_t *sdata = d.ptr<uint32_t>();
1571
1572 fFtmCounterH->setValue(sdata[0]);
1573 fFtmCounterS->setValue(sdata[1]);
1574 fFtmCounterD->setValue(sdata[2]);
1575 fFtmCounterF->setValue(sdata[3]);
1576 fFtmCounterE->setValue(sdata[4]);
1577 fFtmCounterR->setValue(sdata[5]);
1578 }
1579
1580 int64_t fTriggerCounter0;
1581 int64_t fTimeStamp0;
1582
1583 void handleFtmDynamicData(const DimData &d)
1584 {
1585 if (!CheckSize(d, sizeof(FTM::DimDynamicData)))
1586 return;
1587
1588 const FTM::DimDynamicData &sdata = d.ref<FTM::DimDynamicData>();
1589
1590 fOnTime->setText(QString::number(sdata.fOnTimeCounter/1000000., 'f', 6)+" s");
1591
1592 if (sdata.fTimeStamp>0)
1593 fOnTimeRel->setValue(100.*sdata.fOnTimeCounter/sdata.fTimeStamp);
1594 else
1595 fOnTimeRel->setValue(0);
1596
1597 fFtmTemp0->setValue(sdata.fTempSensor[0]*0.1);
1598 fFtmTemp1->setValue(sdata.fTempSensor[1]*0.1);
1599 fFtmTemp2->setValue(sdata.fTempSensor[2]*0.1);
1600 fFtmTemp3->setValue(sdata.fTempSensor[3]*0.1);
1601
1602
1603#ifdef HAVE_ROOT
1604
1605 // ----------------------------------------------
1606
1607 if (fTimeStamp0<0)
1608 {
1609 fTimeStamp0 = sdata.fTimeStamp;
1610 return;
1611 }
1612
1613 TCanvas *c = fFtmRateCanv->GetCanvas();
1614
1615 TH1 *h = (TH1*)c->FindObject("TimeFrame");
1616
1617 const double tdiff = sdata.fTimeStamp-fTimeStamp0;
1618 fTimeStamp0 = sdata.fTimeStamp;
1619
1620 if (tdiff<0)
1621 {
1622 for (int i=0; i<160; i++)
1623 fGraphPatchRate[i].Set(0);
1624 for (int i=0; i<40; i++)
1625 fGraphBoardRate[i].Set(0);
1626
1627 return;
1628 }
1629
1630 //const double t1 = h->GetXaxis()->GetXmax();
1631 const double t0 = h->GetXaxis()->GetXmin();
1632
1633 for (int i=0; i<160; i++)
1634 fGraphPatchRate[i].SetPoint(fGraphPatchRate[i].GetN(),
1635 t0+sdata.fTimeStamp/1000000., float(sdata.fRatePatch[i])*2/fFtmStaticData.fPrescaling[i]);
1636 for (int i=0; i<40; i++)
1637 fGraphBoardRate[i].SetPoint(fGraphBoardRate[i].GetN(),
1638 t0+sdata.fTimeStamp/1000000., float(sdata.fRateBoard[i])*2/fFtmStaticData.fPrescaling[i]);
1639
1640 c->Modified();
1641 c->Update();
1642
1643 //fGraphFtmRate.ComputeRange(x[0], x[1], x[2], x[3]);
1644
1645 // ----------------------------------------------
1646
1647 if (fThresholdIdx->value()>=0)
1648 {
1649 const int isw = fThresholdIdx->value();
1650 const int ihw = fPatchMapHW[isw];
1651 fPatchRate->setValue(sdata.fRatePatch[ihw]);
1652 }
1653
1654 valarray<double> dat(0., 1440);
1655
1656 // fPatch converts from software id to software patch id
1657 for (int i=0; i<1440; i++)
1658 {
1659 const int ihw = fPatchHW[i];
1660// const int isw = fPatch[i];
1661// const int ihw = fPatchMapHW[isw];
1662 dat[i] = sdata.fRatePatch[ihw];
1663 }
1664
1665 c = fRatesCanv->GetCanvas();
1666 Camera *cam = (Camera*)c->FindObject("Camera");
1667
1668 cam->SetData(dat);
1669
1670 c->Modified();
1671 c->Update();
1672
1673 // ----------------------------------------------
1674#endif
1675 }
1676
1677 void DisplayRates()
1678 {
1679#ifdef HAVE_ROOT
1680 TCanvas *c = fFtmRateCanv->GetCanvas();
1681
1682 while (c->FindObject("PatchRate"))
1683 c->GetListOfPrimitives()->Remove(c->FindObject("PatchRate"));
1684
1685 while (c->FindObject("BoardRate"))
1686 c->GetListOfPrimitives()->Remove(c->FindObject("BoardRate"));
1687
1688 c->cd();
1689
1690 if (fRatePatch1->value()>=0)
1691 {
1692 fGraphPatchRate[fRatePatch1->value()].SetLineColor(kRed);
1693 fGraphPatchRate[fRatePatch1->value()].SetMarkerColor(kRed);
1694 fGraphPatchRate[fRatePatch1->value()].Draw("PL");
1695 }
1696 if (fRatePatch2->value()>=0)
1697 {
1698 fGraphPatchRate[fRatePatch2->value()].SetLineColor(kGreen);
1699 fGraphPatchRate[fRatePatch2->value()].SetMarkerColor(kGreen);
1700 fGraphPatchRate[fRatePatch2->value()].Draw("PL");
1701 }
1702 if (fRateBoard1->value()>=0)
1703 {
1704 fGraphBoardRate[fRateBoard1->value()].SetLineColor(kMagenta);
1705 fGraphBoardRate[fRateBoard1->value()].SetMarkerColor(kMagenta);
1706 fGraphBoardRate[fRateBoard1->value()].Draw("PL");
1707 }
1708 if (fRateBoard2->value()>=0)
1709 {
1710 fGraphBoardRate[fRateBoard2->value()].SetLineColor(kCyan);
1711 fGraphBoardRate[fRateBoard2->value()].SetMarkerColor(kCyan);
1712 fGraphBoardRate[fRateBoard2->value()].Draw("PL");
1713 }
1714#endif
1715 }
1716
1717 void on_fRatePatch1_valueChanged(int)
1718 {
1719 DisplayRates();
1720 }
1721
1722 void on_fRatePatch2_valueChanged(int)
1723 {
1724 DisplayRates();
1725 }
1726
1727 void on_fRateBoard1_valueChanged(int)
1728 {
1729 DisplayRates();
1730 }
1731
1732 void on_fRateBoard2_valueChanged(int)
1733 {
1734 DisplayRates();
1735 }
1736
1737 FTM::DimStaticData fFtmStaticData;
1738
1739 void SetFtuLed(int idx, int counter, const Time &t)
1740 {
1741 if (counter==0 || counter>3)
1742 counter = 3;
1743
1744 if (counter<0)
1745 counter = 0;
1746
1747 const LedColor_t col[4] = { kLedGray, kLedGreen, kLedOrange, kLedRed };
1748
1749 SetLedColor(fFtuLED[idx], col[counter], t);
1750
1751 fFtuStatus[idx] = counter;
1752 }
1753
1754 void SetFtuStatusLed(const Time &t)
1755 {
1756 const int max = fFtuStatus.max();
1757
1758 switch (max)
1759 {
1760 case 0:
1761 SetLedColor(fStatusFTULed, kLedGray, t);
1762 fStatusFTULabel->setText("All disabled");
1763 fStatusFTULabel->setToolTip("All FTUs are disabled");
1764 break;
1765
1766 case 1:
1767 SetLedColor(fStatusFTULed, kLedGreen, t);
1768 fStatusFTULabel->setToolTip("Communication with FTU is smooth.");
1769 fStatusFTULabel->setText("ok");
1770 break;
1771
1772 case 2:
1773 SetLedColor(fStatusFTULed, kLedOrange, t);
1774 fStatusFTULabel->setText("Warning");
1775 fStatusFTULabel->setToolTip("At least one FTU didn't answer immediately");
1776 break;
1777
1778 case 3:
1779 SetLedColor(fStatusFTULed, kLedRed, t);
1780 fStatusFTULabel->setToolTip("At least one FTU didn't answer!");
1781 fStatusFTULabel->setText("ERROR");
1782 break;
1783 }
1784
1785 const int cnt = count(&fFtuStatus[0], &fFtuStatus[40], 0);
1786 fFtuAllOn->setEnabled(cnt!=0);
1787 fFtuAllOff->setEnabled(cnt!=40);
1788 }
1789
1790 void handleFtmStaticData(const DimData &d)
1791 {
1792 if (!CheckSize(d, sizeof(FTM::DimStaticData)))
1793 return;
1794
1795 const FTM::DimStaticData &sdata = d.ref<FTM::DimStaticData>();
1796
1797 fTriggerInterval->setValue(sdata.fTriggerInterval);
1798 fPhysicsCoincidence->setValue(sdata.fMultiplicityPhysics);
1799 fCalibCoincidence->setValue(sdata.fMultiplicityCalib);
1800 fPhysicsWindow->setValue(sdata.fWindowPhysics);
1801 fCalibWindow->setValue(sdata.fWindowCalib);
1802
1803 fTriggerDelay->setValue(sdata.fDelayTrigger);
1804 fTimeMarkerDelay->setValue(sdata.fDelayTimeMarker);
1805 fDeadTime->setValue(sdata.fDeadTime);
1806
1807 fClockCondR0->setValue(sdata.fClockConditioner[0]);
1808 fClockCondR1->setValue(sdata.fClockConditioner[1]);
1809 fClockCondR8->setValue(sdata.fClockConditioner[2]);
1810 fClockCondR9->setValue(sdata.fClockConditioner[3]);
1811 fClockCondR11->setValue(sdata.fClockConditioner[4]);
1812 fClockCondR13->setValue(sdata.fClockConditioner[5]);
1813 fClockCondR14->setValue(sdata.fClockConditioner[6]);
1814 fClockCondR15->setValue(sdata.fClockConditioner[7]);
1815
1816 const uint32_t R0 = sdata.fClockConditioner[0];
1817 const uint32_t R14 = sdata.fClockConditioner[6];
1818 const uint32_t R15 = sdata.fClockConditioner[7];
1819
1820 const uint32_t Ndiv = (R15&0x1ffff00)<<2;
1821 const uint32_t Rdiv = (R14&0x007ff00)>>8;
1822 const uint32_t Cdiv = (R0 &0x000ff00)>>8;
1823
1824 double freq = 40.*Ndiv/(Rdiv*Cdiv);
1825
1826 fClockCondFreqRes->setValue(freq);
1827
1828 //fClockCondFreq->setEditText("");
1829 fClockCondFreq->setCurrentIndex(0);
1830
1831 fTriggerSeqPed->setValue(sdata.fTriggerSeqPed);
1832 fTriggerSeqLPint->setValue(sdata.fTriggerSeqLPint);
1833 fTriggerSeqLPext->setValue(sdata.fTriggerSeqLPext);
1834
1835 fEnableTrigger->setChecked(sdata.HasTrigger());
1836 fEnableVeto->setChecked(sdata.HasVeto());
1837 fEnableExt1->setChecked(sdata.HasExt1());
1838 fEnableExt2->setChecked(sdata.HasExt2());
1839 fEnableClockCond->setChecked(sdata.HasClockConditioner());
1840
1841 for (int i=0; i<40; i++)
1842 {
1843 if (!sdata.IsActive(i))
1844 SetFtuLed(i, -1, d.time);
1845 else
1846 {
1847 if (fFtuStatus[i]==0)
1848 SetFtuLed(i, 1, d.time);
1849 }
1850 fFtuLED[i]->setChecked(false);
1851 }
1852 SetFtuStatusLed(d.time);
1853
1854#ifdef HAVE_ROOT
1855 Camera *cam = (Camera*)fRatesCanv->GetCanvas()->FindObject("Camera");
1856 for (int isw=0; isw<1440; isw++)
1857 {
1858 const int ihw = fPixelMapHW[isw];
1859 cam->SetEnable(isw, sdata.IsEnabled(ihw));
1860 }
1861
1862 fRatesCanv->GetCanvas()->Modified();
1863 fRatesCanv->GetCanvas()->Update();
1864#endif
1865
1866 {
1867 const int isw = fPixelIdx->value();
1868 const int ihw = fPixelMapHW[isw];
1869 const bool on = sdata.IsEnabled(ihw);
1870 fPixelEnable->setChecked(on);
1871 }
1872
1873 if (fThresholdIdx->value()>=0)
1874 {
1875 const int isw = fThresholdIdx->value();
1876 const int ihw = fPatchMapHW[isw];
1877 fThresholdVal->setValue(sdata.fThreshold[ihw]);
1878 }
1879
1880 fPrescalingVal->setValue(sdata.fPrescaling[0]);
1881
1882 fFtmStaticData = sdata;
1883 }
1884
1885 void handleFtmPassport(const DimData &d)
1886 {
1887 if (!CheckSize(d, sizeof(FTM::DimPassport)))
1888 return;
1889
1890 const FTM::DimPassport &sdata = d.ref<FTM::DimPassport>();
1891
1892 stringstream str1, str2;
1893 str1 << hex << "0x" << setfill('0') << setw(16) << sdata.fBoardId;
1894 str2 << sdata.fFirmwareId;
1895
1896 fFtmBoardId->setText(str1.str().c_str());
1897 fFtmFirmwareId->setText(str2.str().c_str());
1898 }
1899
1900 void handleFtmFtuList(const DimData &d)
1901 {
1902 if (!CheckSize(d, sizeof(FTM::DimFtuList)))
1903 return;
1904
1905 fFtuPing->setChecked(false);
1906
1907 const FTM::DimFtuList &sdata = d.ref<FTM::DimFtuList>();
1908
1909 stringstream str;
1910 str << "<table width='100%'>" << setfill('0');
1911 str << "<tr><th>Num</th><th></th><th>Addr</th><th></th><th>DNA</th></tr>";
1912 for (int i=0; i<40; i++)
1913 {
1914 str << "<tr>";
1915 str << "<td align='center'>" << dec << i << hex << "</td>";
1916 str << "<td align='center'>:</td>";
1917 str << "<td align='center'>0x" << setw(2) << (int)sdata.fAddr[i] << "</td>";
1918 str << "<td align='center'>:</td>";
1919 str << "<td align='center'>0x" << setw(16) << sdata.fDNA[i] << "</td>";
1920 str << "</tr>";
1921 }
1922 str << "</table>";
1923
1924 fFtuDNA->setText(str.str().c_str());
1925
1926 fFtuAnswersTotal->setValue(sdata.fNumBoards);
1927 fFtuAnswersCrate0->setValue(sdata.fNumBoardsCrate[0]);
1928 fFtuAnswersCrate1->setValue(sdata.fNumBoardsCrate[1]);
1929 fFtuAnswersCrate2->setValue(sdata.fNumBoardsCrate[2]);
1930 fFtuAnswersCrate3->setValue(sdata.fNumBoardsCrate[3]);
1931
1932 for (int i=0; i<40; i++)
1933 SetFtuLed(i, sdata.IsActive(i) ? sdata.fPing[i] : -1, d.time);
1934
1935 SetFtuStatusLed(d.time);
1936 }
1937
1938 void handleFtmError(const DimData &d)
1939 {
1940 if (!CheckSize(d, sizeof(FTM::DimError)))
1941 return;
1942
1943 const FTM::DimError &sdata = d.ref<FTM::DimError>();
1944
1945 SetFtuLed(sdata.fError.fDestAddress, sdata.fError.fNumCalls, d.time);
1946 SetFtuStatusLed(d.time);
1947
1948 // FIXME: Write to special window!
1949 //Out() << "Error:" << endl;
1950 //Out() << sdata.fError << endl;
1951 }
1952
1953 // ====================== MessageImp ====================================
1954
1955 bool fChatOnline;
1956
1957 void handleStateChanged(const Time &time, const std::string &server,
1958 const State &s)
1959 {
1960 // FIXME: Prefix tooltip with time
1961 if (server=="FTM_CONTROL")
1962 {
1963 // FIXME: Enable FTU page!!!
1964 fStatusFTMLabel->setText(s.name.c_str());
1965 fStatusFTMLabel->setToolTip(s.comment.c_str());
1966
1967 bool enable = false;
1968
1969 if (s.index<FTM::StateMachine::kDisconnected) // No Dim connection
1970 SetLedColor(fStatusFTMLed, kLedGray, time);
1971 if (s.index==FTM::StateMachine::kDisconnected) // Dim connection / FTM disconnected
1972 SetLedColor(fStatusFTMLed, kLedYellow, time);
1973 if (s.index==FTM::StateMachine::kConnected ||
1974 s.index==FTM::StateMachine::kIdle ||
1975 s.index==FTM::StateMachine::kConfiguring1 ||
1976 s.index==FTM::StateMachine::kConfiguring2 ||
1977 s.index==FTM::StateMachine::kConfigured ||
1978 s.index==FTM::StateMachine::kTakingData) // Dim connection / FTM connected
1979 SetLedColor(fStatusFTMLed, kLedGreen, time);
1980
1981 if (s.index==FTM::StateMachine::kConnected ||
1982 s.index==FTM::StateMachine::kIdle) // Dim connection / FTM connected
1983 enable = true;
1984
1985 fTriggerWidget->setEnabled(enable);
1986 fFtuWidget->setEnabled(enable);
1987 fRatesWidget->setEnabled(enable);
1988
1989 if (s.index>=FTM::StateMachine::kConnected)
1990 SetFtuStatusLed(time);
1991 else
1992 {
1993 SetLedColor(fStatusFTULed, kLedGray, time);
1994 fStatusFTULabel->setText("Offline");
1995 fStatusFTULabel->setToolTip("FTM is not online.");
1996 }
1997 }
1998
1999 if (server=="FAD_CONTROL")
2000 {
2001 fStatusFADLabel->setText(s.name.c_str());
2002 fStatusFADLabel->setToolTip(s.comment.c_str());
2003
2004 bool enable = false;
2005
2006 if (s.index<FAD::kOffline) // No Dim connection
2007 {
2008 SetLedColor(fStatusFADLed, kLedGray, time);
2009
2010 /*
2011 fStatusEventBuilderLabel->setText("Offline");
2012 fStatusEventBuilderLabel->setToolTip("No connection to fadctrl.");
2013 fEvtBldWidget->setEnabled(false);
2014
2015 SetLedColor(fStatusEventBuilderLed, kLedGray, time);
2016 */
2017 }
2018 if (s.index==FAD::kOffline) // Dim connection / FTM disconnected
2019 SetLedColor(fStatusFADLed, kLedRed, time);
2020 if (s.index==FAD::kDisconnected) // Dim connection / FTM disconnected
2021 SetLedColor(fStatusFADLed, kLedOrange, time);
2022 if (s.index==FAD::kConnecting) // Dim connection / FTM disconnected
2023 {
2024 SetLedColor(fStatusFADLed, kLedYellow, time);
2025 // FIXME FIXME FIXME: The LEDs are not displayed when disabled!
2026 enable = true;
2027 }
2028 if (s.index>=FAD::kConnected) // Dim connection / FTM connected
2029 {
2030 SetLedColor(fStatusFADLed, kLedGreen, time);
2031 enable = true;
2032 }
2033
2034 fFadWidget->setEnabled(enable);
2035 }
2036
2037 if (server=="FSC_CONTROL")
2038 {
2039 fStatusFSCLabel->setText(s.name.c_str());
2040 fStatusFSCLabel->setToolTip(s.comment.c_str());
2041
2042 bool enable = false;
2043
2044 if (s.index<1) // No Dim connection
2045 SetLedColor(fStatusFSCLed, kLedGray, time);
2046 if (s.index==1) // Dim connection / FTM disconnected
2047 SetLedColor(fStatusFSCLed, kLedRed, time);
2048 if (s.index>=2) // Dim connection / FTM disconnected
2049 {
2050 SetLedColor(fStatusFSCLed, kLedGreen, time);
2051 enable = true;
2052 }
2053
2054 //fFscWidget->setEnabled(enable);
2055 }
2056
2057 if (server=="DATA_LOGGER")
2058 {
2059 fStatusLoggerLabel->setText(s.name.c_str());
2060 fStatusLoggerLabel->setToolTip(s.comment.c_str());
2061
2062 bool enable = true;
2063
2064 if (s.index<=30) // Ready/Waiting
2065 SetLedColor(fStatusLoggerLed, kLedYellow, time);
2066 if (s.index<-1) // Offline
2067 {
2068 SetLedColor(fStatusLoggerLed, kLedGray, time);
2069 enable = false;
2070 }
2071 if (s.index>=0x100) // Error
2072 SetLedColor(fStatusLoggerLed, kLedRed, time);
2073 if (s.index==40) // Logging
2074 SetLedColor(fStatusLoggerLed, kLedGreen, time);
2075
2076 fLoggerWidget->setEnabled(enable);
2077 }
2078
2079 if (server=="CHAT")
2080 {
2081 fStatusChatLabel->setText(s.name.c_str());
2082
2083 fChatOnline = s.index==0;
2084
2085 SetLedColor(fStatusChatLed, fChatOnline ? kLedGreen : kLedGray, time);
2086
2087 fChatSend->setEnabled(fChatOnline);
2088 fChatMessage->setEnabled(fChatOnline);
2089 }
2090
2091 if (server=="SCHEDULER")
2092 {
2093 fStatusSchedulerLabel->setText(s.name.c_str());
2094
2095 SetLedColor(fStatusSchedulerLed, s.index>=0 ? kLedGreen : kLedRed, time);
2096 }
2097 }
2098
2099 void on_fTabWidget_currentChanged(int which)
2100 {
2101 if (fTabWidget->tabText(which)=="Chat")
2102 fTabWidget->setTabIcon(which, QIcon());
2103 }
2104
2105 void handleWrite(const Time &time, const string &text, int qos)
2106 {
2107 stringstream out;
2108
2109 if (text.substr(0, 6)=="CHAT: ")
2110 {
2111 if (qos==MessageImp::kDebug)
2112 return;
2113
2114 out << "<font size='-1' color='navy'>[<B>";
2115 out << Time::fmt("%H:%M:%S") << time << "</B>]</FONT> ";
2116 out << text.substr(6);
2117 fChatText->append(out.str().c_str());
2118
2119 if (fTabWidget->tabText(fTabWidget->currentIndex())=="Chat")
2120 return;
2121
2122 static int num = 0;
2123 if (num++<2)
2124 return;
2125
2126 for (int i=0; i<fTabWidget->count(); i++)
2127 if (fTabWidget->tabText(i)=="Chat")
2128 {
2129 fTabWidget->setTabIcon(i, QIcon(":/Resources/icons/warning 3.png"));
2130 break;
2131 }
2132
2133 return;
2134 }
2135
2136
2137 out << "<font style='font-family:monospace' color='";
2138
2139 switch (qos)
2140 {
2141 case kMessage: out << "black"; break;
2142 case kInfo: out << "green"; break;
2143 case kWarn: out << "#FF6600"; break;
2144 case kError: out << "maroon"; break;
2145 case kFatal: out << "maroon"; break;
2146 case kDebug: out << "navy"; break;
2147 default: out << "navy"; break;
2148 }
2149 out << "'>" << time.GetAsStr() << " - " << text << "</font>";
2150
2151 fLogText->append(out.str().c_str());
2152
2153 if (qos>=kWarn)
2154 fTextEdit->append(out.str().c_str());
2155 }
2156
2157 void IndicateStateChange(const Time &time, const std::string &server)
2158 {
2159 const State s = GetState(server, GetCurrentState(server));
2160
2161 QApplication::postEvent(this,
2162 new FunctionEvent(boost::bind(&FactGui::handleStateChanged, this, time, server, s)));
2163 }
2164
2165 int Write(const Time &time, const string &txt, int qos)
2166 {
2167 QApplication::postEvent(this,
2168 new FunctionEvent(boost::bind(&FactGui::handleWrite, this, time, txt, qos)));
2169
2170 return 0;
2171 }
2172
2173 // ====================== Dim infoHandler================================
2174
2175 void handleDimService(const string &txt)
2176 {
2177 fDimSvcText->append(txt.c_str());
2178 }
2179
2180 void infoHandlerService(DimInfo &info)
2181 {
2182 const string fmt = string(info.getFormat()).empty() ? "C" : info.getFormat();
2183
2184 stringstream dummy;
2185 const Converter conv(dummy, fmt, false);
2186
2187 const Time tm(info.getTimestamp(), info.getTimestampMillisecs()*1000);
2188
2189 stringstream out;
2190 out << "<font size'-1' color='navy'>[" << Time::fmt("%H:%M:%S.%f") << tm << "]</font> <B>" << info.getName() << "</B> - ";
2191
2192 bool iserr = true;
2193 if (!conv)
2194 {
2195 out << "Compilation of format string '" << fmt << "' failed!";
2196 }
2197 else
2198 {
2199 try
2200 {
2201 const string dat = conv.GetString(info.getData(), info.getSize());
2202 out << dat;
2203 iserr = false;
2204 }
2205 catch (const runtime_error &e)
2206 {
2207 out << "Conversion to string failed!<pre>" << e.what() << "</pre>";
2208 }
2209 }
2210
2211 // srand(hash<string>()(string(info.getName())));
2212 // int bg = rand()&0xffffff;
2213
2214 int bg = hash<string>()(string(info.getName()));
2215
2216 // allow only light colors
2217 bg = ~(bg&0x1f1f1f)&0xffffff;
2218
2219 if (iserr)
2220 bg = 0xffffff;
2221
2222 stringstream bgcol;
2223 bgcol << hex << setfill('0') << setw(6) << bg;
2224
2225 const string col = iserr ? "red" : "black";
2226 const string str = "<table width='100%' bgcolor=#"+bgcol.str()+"><tr><td><font color='"+col+"'>"+out.str()+"</font></td></tr></table>";
2227
2228 QApplication::postEvent(this,
2229 new FunctionEvent(boost::bind(&FactGui::handleDimService, this, str)));
2230 }
2231
2232 void CallInfoHandler(void (FactGui::*handler)(const DimData&), const DimData &d)
2233 {
2234 fInHandler = true;
2235 (this->*handler)(d);
2236 fInHandler = false;
2237 }
2238
2239 /*
2240 void CallInfoHandler(const boost::function<void()> &func)
2241 {
2242 // This ensures that newly received values are not sent back to the emitter
2243 // because changing the value emits the valueChanged signal (or similar)
2244 fInHandler = true;
2245 func();
2246 fInHandler = false;
2247 }*/
2248
2249 void PostInfoHandler(void (FactGui::*handler)(const DimData&))
2250 {
2251 //const boost::function<void()> f = boost::bind(handler, this, DimData(getInfo()));
2252
2253 FunctionEvent *evt = new FunctionEvent(boost::bind(&FactGui::CallInfoHandler, this, handler, DimData(getInfo())));
2254 // FunctionEvent *evt = new FunctionEvent(boost::bind(&FactGui::CallInfoHandler, this, f));
2255 // FunctionEvent *evt = new FunctionEvent(boost::bind(handler, this, DimData(getInfo()))));
2256
2257 QApplication::postEvent(this, evt);
2258 }
2259
2260 void infoHandler()
2261 {
2262 // Initialize the time-stamp (what a weird workaround...)
2263 if (getInfo())
2264 getInfo()->getTimestamp();
2265
2266 if (getInfo()==&fDimDNS)
2267 return PostInfoHandler(&FactGui::handleDimDNS);
2268#ifdef DEBUG_DIM
2269 cout << "HandleDimInfo " << getInfo()->getName() << endl;
2270#endif
2271 if (getInfo()==&fDimLoggerStats)
2272 return PostInfoHandler(&FactGui::handleLoggerStats);
2273
2274// if (getInfo()==&fDimFadFiles)
2275// return PostInfoHandler(&FactGui::handleFadFiles);
2276
2277 if (getInfo()==&fDimFadWriteStats)
2278 return PostInfoHandler(&FactGui::handleFadWriteStats);
2279
2280 if (getInfo()==&fDimFadConnections)
2281 return PostInfoHandler(&FactGui::handleFadConnections);
2282
2283 if (getInfo()==&fDimFadFwVersion)
2284 return PostInfoHandler(&FactGui::handleFadFwVersion);
2285
2286 if (getInfo()==&fDimFadRunNumber)
2287 return PostInfoHandler(&FactGui::handleFadRunNumber);
2288
2289 if (getInfo()==&fDimFadDNA)
2290 return PostInfoHandler(&FactGui::handleFadDNA);
2291
2292 if (getInfo()==&fDimFadTemperature)
2293 return PostInfoHandler(&FactGui::handleFadTemperature);
2294
2295 if (getInfo()==&fDimFadRefClock)
2296 return PostInfoHandler(&FactGui::handleFadRefClock);
2297
2298 if (getInfo()==&fDimFadStatus)
2299 return PostInfoHandler(&FactGui::handleFadStatus);
2300
2301 if (getInfo()==&fDimFadStatistics1)
2302 return PostInfoHandler(&FactGui::handleFadStatistics1);
2303
2304 if (getInfo()==&fDimFadStatistics2)
2305 return PostInfoHandler(&FactGui::handleFadStatistics2);
2306
2307 if (getInfo()==&fDimFadEvents)
2308 return PostInfoHandler(&FactGui::handleFadEvents);
2309
2310 if (getInfo()==&fDimFadRuns)
2311 return PostInfoHandler(&FactGui::handleFadRuns);
2312
2313 if (getInfo()==&fDimFadEventData)
2314 return PostInfoHandler(&FactGui::handleFadEventData);
2315
2316/*
2317 if (getInfo()==&fDimFadSetup)
2318 return PostInfoHandler(&FactGui::handleFadSetup);
2319*/
2320 if (getInfo()==&fDimLoggerFilenameNight)
2321 return PostInfoHandler(&FactGui::handleLoggerFilenameNight);
2322
2323 if (getInfo()==&fDimLoggerNumSubs)
2324 return PostInfoHandler(&FactGui::handleLoggerNumSubs);
2325
2326 if (getInfo()==&fDimLoggerFilenameRun)
2327 return PostInfoHandler(&FactGui::handleLoggerFilenameRun);
2328
2329 if (getInfo()==&fDimFtmTriggerCounter)
2330 return PostInfoHandler(&FactGui::handleFtmTriggerCounter);
2331
2332 if (getInfo()==&fDimFtmCounter)
2333 return PostInfoHandler(&FactGui::handleFtmCounter);
2334
2335 if (getInfo()==&fDimFtmDynamicData)
2336 return PostInfoHandler(&FactGui::handleFtmDynamicData);
2337
2338 if (getInfo()==&fDimFtmPassport)
2339 return PostInfoHandler(&FactGui::handleFtmPassport);
2340
2341 if (getInfo()==&fDimFtmFtuList)
2342 return PostInfoHandler(&FactGui::handleFtmFtuList);
2343
2344 if (getInfo()==&fDimFtmStaticData)
2345 return PostInfoHandler(&FactGui::handleFtmStaticData);
2346
2347 if (getInfo()==&fDimFtmError)
2348 return PostInfoHandler(&FactGui::handleFtmError);
2349
2350// if (getInfo()==&fDimFadFiles)
2351// return PostInfoHandler(&FactGui::handleFadFiles);
2352
2353 for (map<string,DimInfo*>::iterator i=fServices.begin(); i!=fServices.end(); i++)
2354 if (i->second==getInfo())
2355 {
2356 infoHandlerService(*i->second);
2357 return;
2358 }
2359
2360 DimNetwork::infoHandler();
2361 }
2362
2363
2364 // ======================================================================
2365
2366 bool event(QEvent *evt)
2367 {
2368 if (dynamic_cast<FunctionEvent*>(evt))
2369 return static_cast<FunctionEvent*>(evt)->Exec();
2370
2371 if (dynamic_cast<CheckBoxEvent*>(evt))
2372 {
2373 const QStandardItem &item = static_cast<CheckBoxEvent*>(evt)->item;
2374 const QStandardItem *par = item.parent();
2375 if (par)
2376 {
2377 const QString server = par->text();
2378 const QString service = item.text();
2379
2380 const string s = (server+'/'+service).toStdString();
2381
2382 if (item.checkState()==Qt::Checked)
2383 SubscribeService(s);
2384 else
2385 UnsubscribeService(s);
2386 }
2387 }
2388
2389 return MainWindow::event(evt); // unrecognized
2390 }
2391
2392 void on_fDimCmdSend_clicked()
2393 {
2394 const QString server = fDimCmdServers->currentIndex().data().toString();
2395 const QString command = fDimCmdCommands->currentIndex().data().toString();
2396 const QString arguments = fDimCmdLineEdit->displayText();
2397
2398 // FIXME: Sending a command exactly when the info Handler changes
2399 // the list it might lead to confusion.
2400 try
2401 {
2402 SendDimCommand(server.toStdString(), command.toStdString()+" "+arguments.toStdString());
2403 fTextEdit->append("<font color='green'>Command '"+server+'/'+command+"' successfully emitted.</font>");
2404 fDimCmdLineEdit->clear();
2405 }
2406 catch (const runtime_error &e)
2407 {
2408 stringstream txt;
2409 txt << e.what();
2410
2411 string buffer;
2412 while (getline(txt, buffer, '\n'))
2413 fTextEdit->append(("<font color='red'><pre>"+buffer+"</pre></font>").c_str());
2414 }
2415 }
2416
2417#ifdef HAVE_ROOT
2418 void slot_RootEventProcessed(TObject *obj, unsigned int evt, TCanvas *canv)
2419 {
2420 // kMousePressEvent // TCanvas processed QEvent mousePressEvent
2421 // kMouseMoveEvent // TCanvas processed QEvent mouseMoveEvent
2422 // kMouseReleaseEvent // TCanvas processed QEvent mouseReleaseEvent
2423 // kMouseDoubleClickEvent // TCanvas processed QEvent mouseDoubleClickEvent
2424 // kKeyPressEvent // TCanvas processed QEvent keyPressEvent
2425 // kEnterEvent // TCanvas processed QEvent enterEvent
2426 // kLeaveEvent // TCanvas processed QEvent leaveEvent
2427 if (dynamic_cast<TCanvas*>(obj))
2428 return;
2429
2430 TQtWidget *tipped = static_cast<TQtWidget*>(sender());
2431
2432 if (evt==11/*kMouseReleaseEvent*/)
2433 {
2434 if (dynamic_cast<Camera*>(obj))
2435 {
2436 const float xx = canv->AbsPixeltoX(tipped->GetEventX());
2437 const float yy = canv->AbsPixeltoY(tipped->GetEventY());
2438
2439 Camera *cam = static_cast<Camera*>(obj);
2440 const int isw = cam->GetIdx(xx, yy);
2441
2442 fPixelIdx->setValue(isw);
2443 ChoosePixel(*cam, isw);
2444 }
2445 return;
2446 }
2447
2448 if (evt==61/*kMouseDoubleClickEvent*/)
2449 {
2450 if (dynamic_cast<Camera*>(obj))
2451 {
2452 const float xx = canv->AbsPixeltoX(tipped->GetEventX());
2453 const float yy = canv->AbsPixeltoY(tipped->GetEventY());
2454
2455 Camera *cam = static_cast<Camera*>(obj);
2456 const int isw = cam->GetIdx(xx, yy);
2457
2458 ChoosePixel(*cam, isw);
2459
2460 fPixelIdx->setValue(isw);
2461
2462 const uint16_t ihw = fPixelMapHW[isw];
2463
2464 Dim::SendCommand("FTM_CONTROL/TOGGLE_PIXEL", ihw);
2465 }
2466
2467 if (dynamic_cast<TAxis*>(obj))
2468 static_cast<TAxis*>(obj)->UnZoom();
2469
2470 return;
2471 }
2472
2473 // Find the object which will get picked by the GetObjectInfo
2474 // due to buffer overflows in many root-versions
2475 // in TH1 and TProfile we have to work around and implement
2476 // our own GetObjectInfo which make everything a bit more
2477 // complicated.
2478 canv->cd();
2479#if ROOT_VERSION_CODE > ROOT_VERSION(5,22,00)
2480 const char *objectInfo =
2481 obj->GetObjectInfo(tipped->GetEventX(),tipped->GetEventY());
2482#else
2483 const char *objectInfo = dynamic_cast<TH1*>(obj) ?
2484 "" : obj->GetObjectInfo(tipped->GetEventX(),tipped->GetEventY());
2485#endif
2486
2487 QString tipText;
2488 tipText += obj->GetName();
2489 tipText += " [";
2490 tipText += obj->ClassName();
2491 tipText += "]: ";
2492 tipText += objectInfo;
2493
2494 if (dynamic_cast<Camera*>(obj))
2495 {
2496 const float xx = canv->AbsPixeltoX(tipped->GetEventX());
2497 const float yy = canv->AbsPixeltoY(tipped->GetEventY());
2498
2499 Camera *cam = static_cast<Camera*>(obj);
2500
2501 const int isw = cam->GetIdx(xx, yy);
2502 const int ihw = fPixelMapHW[isw];
2503
2504 const int idx = fPatchHW[isw];
2505
2506 int ii = 0;
2507 for (; ii<160; ii++)
2508 if (idx==fPatchMapHW[ii])
2509 break;
2510
2511
2512 const int patch = ihw%4;
2513 const int board = (ihw/4)%10;
2514 const int crate = (ihw/4)/10;
2515
2516 ostringstream str;
2517 str << " (hw=" << ihw << ") Patch=" << ii << " (hw=" << fPatchMapHW[idx] << "; Crate=" << crate << " Board=" << board << " Patch=" << patch << ")";
2518
2519 tipText += str.str().c_str();
2520 }
2521
2522
2523 fStatusBar->showMessage(tipText, 3000);
2524
2525 gSystem->ProcessEvents();
2526 //QWhatsThis::display(tipText)
2527 }
2528
2529 void slot_RootUpdate()
2530 {
2531 gSystem->ProcessEvents();
2532 QTimer::singleShot(0, this, SLOT(slot_RootUpdate()));
2533 }
2534
2535 void ChoosePatch(Camera &cam, int isw)
2536 {
2537 cam.Reset();
2538
2539 fThresholdIdx->setValue(isw);
2540
2541 const int ihw = isw<0 ? 0 : fPatchMapHW[isw];
2542
2543 fPatchRate->setEnabled(isw>=0);
2544 fThresholdCrate->setEnabled(isw>=0);
2545 fThresholdBoard->setEnabled(isw>=0);
2546 fThresholdPatch->setEnabled(isw>=0);
2547
2548 if (isw<0)
2549 return;
2550
2551 const int patch = ihw%4;
2552 const int board = (ihw/4)%10;
2553 const int crate = (ihw/4)/10;
2554
2555 fInChoosePatch = true;
2556
2557 fThresholdCrate->setValue(crate);
2558 fThresholdBoard->setValue(board);
2559 fThresholdPatch->setValue(patch);
2560
2561 fInChoosePatch = false;
2562
2563 fThresholdVal->setValue(fFtmStaticData.fThreshold[ihw]);
2564 fPatchRate->setValue(cam.GetData(isw));
2565
2566 // Loop over the software idx of all pixels
2567 for (unsigned int i=0; i<1440; i++)
2568 if (fPatchHW[i]==ihw)
2569 cam.SetBold(i);
2570 }
2571
2572 void ChoosePixel(Camera &cam, int isw)
2573 {
2574 const int ihw = fPixelMapHW[isw];
2575
2576 int ii = 0;
2577 for (; ii<160; ii++)
2578 if (fPatchHW[isw]==fPatchMapHW[ii])
2579 break;
2580
2581 cam.SetWhite(isw);
2582 ChoosePatch(cam, ii);
2583
2584 const bool on = fFtmStaticData.IsEnabled(ihw);
2585 fPixelEnable->setChecked(on);
2586 }
2587
2588 void UpdatePatch(int isw)
2589 {
2590 Camera *cam = (Camera*)fRatesCanv->GetCanvas()->FindObject("Camera");
2591 ChoosePatch(*cam, isw);
2592 }
2593
2594 void on_fThresholdIdx_valueChanged(int isw)
2595 {
2596 UpdatePatch(isw);
2597
2598 fRatesCanv->GetCanvas()->Modified();
2599 fRatesCanv->GetCanvas()->Update();
2600 }
2601
2602 void UpdateThresholdIdx()
2603 {
2604 if (fInChoosePatch)
2605 return;
2606
2607 const int crate = fThresholdCrate->value();
2608 const int board = fThresholdBoard->value();
2609 const int patch = fThresholdPatch->value();
2610
2611 const int ihw = patch + board*4 + crate*40;
2612
2613 int isw = 0;
2614 for (; isw<160; isw++)
2615 if (ihw==fPatchMapHW[isw])
2616 break;
2617
2618 UpdatePatch(isw);
2619 }
2620
2621 void on_fThresholdPatch_valueChanged(int)
2622 {
2623 UpdateThresholdIdx();
2624 }
2625 void on_fThresholdBoard_valueChanged(int)
2626 {
2627 UpdateThresholdIdx();
2628 }
2629 void on_fThresholdCrate_valueChanged(int)
2630 {
2631 UpdateThresholdIdx();
2632 }
2633
2634 void on_fPixelIdx_valueChanged(int isw)
2635 {
2636 Camera *cam = (Camera*)fRatesCanv->GetCanvas()->FindObject("Camera");
2637 ChoosePixel(*cam, isw);
2638
2639 fRatesCanv->GetCanvas()->Modified();
2640 fRatesCanv->GetCanvas()->Update();
2641 }
2642#endif
2643
2644 void on_fPixelEnable_stateChanged(int b)
2645 {
2646 if (fInHandler)
2647 return;
2648
2649 const uint16_t isw = fPixelIdx->value();
2650 const uint16_t ihw = fPixelMapHW[isw];
2651
2652 Dim::SendCommand(b==Qt::Unchecked ?
2653 "FTM_CONTROL/DISABLE_PIXEL" : "FTM_CONTROL/ENABLE_PIXEL",
2654 ihw);
2655 }
2656
2657 void on_fPixelDisableOthers_clicked()
2658 {
2659 const uint16_t isw = fPixelIdx->value();
2660 const uint16_t ihw = fPixelMapHW[isw];
2661
2662 Dim::SendCommand("FTM_CONTROL/DISABLE_ALL_PIXELS_EXCEPT", ihw);
2663 }
2664
2665 void on_fThresholdDisableOthers_clicked()
2666 {
2667 const uint16_t isw = fThresholdIdx->value();
2668 const uint16_t ihw = fPatchMapHW[isw];
2669
2670 Dim::SendCommand("FTM_CONTROL/DISABLE_ALL_PATCHES_EXCEPT", ihw);
2671 }
2672
2673 void on_fThresholdVal_valueChanged(int v)
2674 {
2675 fThresholdVolt->setValue(2500./4095*v);
2676
2677 const int32_t isw = fThresholdIdx->value();
2678 const int32_t ihw = fPatchMapHW[isw];
2679
2680 const int32_t d[2] = { ihw, v };
2681
2682 if (!fInHandler)
2683 Dim::SendCommand("FTM_CONTROL/SET_THRESHOLD", d);
2684 }
2685
2686 TGraph fGraphFtmTemp[4];
2687 TGraph fGraphFtmRate;
2688 TGraph fGraphPatchRate[160];
2689 TGraph fGraphBoardRate[40];
2690
2691#ifdef HAVE_ROOT
2692 TH1 *DrawTimeFrame(const char *ytitle)
2693 {
2694 const double tm = Time().RootTime();
2695
2696 TH1F h("TimeFrame", "", 1, tm, tm+60);//Time().RootTime()-1./24/60/60, Time().RootTime());
2697 h.SetDirectory(0);
2698// h.SetBit(TH1::kCanRebin);
2699 h.SetStats(kFALSE);
2700// h.SetMinimum(0);
2701// h.SetMaximum(1);
2702 h.SetXTitle("Time");
2703 h.SetYTitle(ytitle);
2704 h.GetXaxis()->CenterTitle();
2705 h.GetYaxis()->CenterTitle();
2706 h.GetXaxis()->SetTimeDisplay(true);
2707 h.GetXaxis()->SetTimeFormat("%Mh%S'");
2708 h.GetXaxis()->SetLabelSize(0.025);
2709 h.GetYaxis()->SetLabelSize(0.025);
2710 h.GetYaxis()->SetTitleOffset(1.2);
2711 // h.GetYaxis()->SetTitleSize(1.2);
2712
2713 TH1 *cpy = h.DrawCopy();
2714 cpy->SetDirectory(0);
2715 return cpy;
2716 }
2717#endif
2718
2719public:
2720 FactGui() :
2721 fFtuStatus(40),
2722 fPixelMapHW(1440), fPatchMapHW(160), fPatchHW(1440),
2723 fInChoosePatch(false),
2724 fDimDNS("DIS_DNS/VERSION_NUMBER", 1, int(0), this),
2725 //-
2726 fDimLoggerStats ("DATA_LOGGER/STATS", (void*)NULL, 0, this),
2727 fDimLoggerFilenameNight("DATA_LOGGER/FILENAME_NIGHTLY", (void*)NULL, 0, this),
2728 fDimLoggerFilenameRun ("DATA_LOGGER/FILENAME_RUN", (void*)NULL, 0, this),
2729 fDimLoggerNumSubs ("DATA_LOGGER/NUM_SUBS", (void*)NULL, 0, this),
2730 //-
2731 fDimFtmPassport ("FTM_CONTROL/PASSPORT", (void*)NULL, 0, this),
2732 fDimFtmTriggerCounter ("FTM_CONTROL/TRIGGER_COUNTER", (void*)NULL, 0, this),
2733 fDimFtmError ("FTM_CONTROL/ERROR", (void*)NULL, 0, this),
2734 fDimFtmFtuList ("FTM_CONTROL/FTU_LIST", (void*)NULL, 0, this),
2735 fDimFtmStaticData ("FTM_CONTROL/STATIC_DATA", (void*)NULL, 0, this),
2736 fDimFtmDynamicData ("FTM_CONTROL/DYNAMIC_DATA", (void*)NULL, 0, this),
2737 fDimFtmCounter ("FTM_CONTROL/COUNTER", (void*)NULL, 0, this),
2738 //-
2739 fDimFadWriteStats ("FAD_CONTROL/STATS", (void*)NULL, 0, this),
2740 fDimFadRuns ("FAD_CONTROL/RUNS", (void*)NULL, 0, this),
2741 fDimFadEvents ("FAD_CONTROL/EVENTS", (void*)NULL, 0, this),
2742 fDimFadEventData ("FAD_CONTROL/EVENT_DATA", (void*)NULL, 0, this),
2743 fDimFadConnections ("FAD_CONTROL/CONNECTIONS", (void*)NULL, 0, this),
2744 fDimFadFwVersion ("FAD_CONTROL/FIRMWARE_VERSION", (void*)NULL, 0, this),
2745 fDimFadRunNumber ("FAD_CONTROL/RUN_NUMBER", (void*)NULL, 0, this),
2746 fDimFadDNA ("FAD_CONTROL/DNA", (void*)NULL, 0, this),
2747 fDimFadTemperature ("FAD_CONTROL/TEMPERATURE", (void*)NULL, 0, this),
2748 fDimFadRefClock ("FAD_CONTROL/REFERENCE_CLOCK", (void*)NULL, 0, this),
2749 fDimFadStatus ("FAD_CONTROL/STATUS", (void*)NULL, 0, this),
2750 fDimFadStatistics1 ("FAD_CONTROL/STATISTICS1", (void*)NULL, 0, this),
2751 fDimFadStatistics2 ("FAD_CONTROL/STATISTICS2", (void*)NULL, 0, this),
2752 //-
2753 fEventData(0)
2754 {
2755 fClockCondFreq->addItem("--- Hz", QVariant(-1));
2756 fClockCondFreq->addItem("800 MHz", QVariant(800));
2757 fClockCondFreq->addItem("1 GHz", QVariant(1000));
2758 fClockCondFreq->addItem("2 GHz", QVariant(2000));
2759 fClockCondFreq->addItem("3 GHz", QVariant(3000));
2760 fClockCondFreq->addItem("4 GHz", QVariant(4000));
2761 fClockCondFreq->addItem("5 GHz", QVariant(5000));
2762
2763 fTriggerWidget->setEnabled(false);
2764 fFtuWidget->setEnabled(false);
2765 fRatesWidget->setEnabled(false);
2766 fFadWidget->setEnabled(false);
2767 fEvtBldWidget->setEnabled(false);
2768 fLoggerWidget->setEnabled(false);
2769
2770 fChatSend->setEnabled(false);
2771 fChatMessage->setEnabled(false);
2772
2773 DimClient::sendCommand("CHAT/MSG", "GUI online.");
2774 // + MessageDimRX
2775
2776 // --------------------------------------------------------------------------
2777
2778 ifstream fin1("Trigger-Patches.txt");
2779
2780 int l = 0;
2781
2782 string buf;
2783 while (getline(fin1, buf, '\n'))
2784 {
2785 buf = Tools::Trim(buf);
2786 if (buf[0]=='#')
2787 continue;
2788
2789 stringstream str(buf);
2790 for (int i=0; i<9; i++)
2791 {
2792 unsigned int n;
2793 str >> n;
2794
2795 if (n>=fPatchHW.size())
2796 continue;
2797
2798 fPatchHW[n] = l;
2799 }
2800 l++;
2801 }
2802
2803 if (l!=160)
2804 cerr << "WARNING - Problems reading Trigger-Patches.txt" << endl;
2805
2806 // --------------------------------------------------------------------------
2807
2808 ifstream fin2("MasterList-v3.txt");
2809
2810 l = 0;
2811
2812 while (getline(fin2, buf, '\n'))
2813 {
2814 buf = Tools::Trim(buf);
2815 if (buf[0]=='#')
2816 continue;
2817
2818 unsigned int softid, hardid, dummy;
2819
2820 stringstream str(buf);
2821
2822 str >> softid;
2823 str >> dummy;
2824 str >> hardid;
2825
2826 if (softid>=fPixelMapHW.size())
2827 continue;
2828
2829 fPixelMapHW[softid] = hardid;
2830
2831 l++;
2832 }
2833
2834 if (l!=1440)
2835 cerr << "WARNING - Problems reading MasterList-v3.txt" << endl;
2836
2837 // --------------------------------------------------------------------------
2838
2839 ifstream fin3("PatchList.txt");
2840
2841 l = 0;
2842
2843 while (getline(fin3, buf, '\n'))
2844 {
2845 buf = Tools::Trim(buf);
2846 if (buf[0]=='#')
2847 continue;
2848
2849 unsigned int softid, hardid;
2850
2851 stringstream str(buf);
2852
2853 str >> softid;
2854 str >> hardid;
2855
2856 if (softid>=fPatchMapHW.size())
2857 continue;
2858
2859 fPatchMapHW[softid] = hardid-1;
2860
2861 l++;
2862 }
2863
2864 if (l!=160)
2865 cerr << "WARNING - Problems reading PatchList.txt" << endl;
2866
2867 // --------------------------------------------------------------------------
2868#ifdef HAVE_ROOT
2869
2870 fGraphFtmRate.SetLineColor(kBlue);
2871 fGraphFtmRate.SetMarkerColor(kBlue);
2872 fGraphFtmRate.SetMarkerStyle(kFullDotMedium);
2873
2874 for (int i=0; i<160; i++)
2875 {
2876 fGraphPatchRate[i].SetName("PatchRate");
2877 //fGraphPatchRate[i].SetLineColor(kBlue);
2878 //fGraphPatchRate[i].SetMarkerColor(kBlue);
2879 fGraphPatchRate[i].SetMarkerStyle(kFullDotMedium);
2880 }
2881 for (int i=0; i<40; i++)
2882 {
2883 fGraphBoardRate[i].SetName("BoardRate");
2884 //fGraphBoardRate[i].SetLineColor(kBlue);
2885 //fGraphBoardRate[i].SetMarkerColor(kBlue);
2886 fGraphBoardRate[i].SetMarkerStyle(kFullDotMedium);
2887 }
2888 /*
2889 TCanvas *c = fFtmTempCanv->GetCanvas();
2890 c->SetBit(TCanvas::kNoContextMenu);
2891 c->SetBorderMode(0);
2892 c->SetFrameBorderMode(0);
2893 c->SetFillColor(kWhite);
2894 c->SetRightMargin(0.03);
2895 c->SetTopMargin(0.03);
2896 c->cd();
2897 */
2898 //CreateTimeFrame("Temperature / °C");
2899
2900 fGraphFtmTemp[0].SetMarkerStyle(kFullDotSmall);
2901 fGraphFtmTemp[1].SetMarkerStyle(kFullDotSmall);
2902 fGraphFtmTemp[2].SetMarkerStyle(kFullDotSmall);
2903 fGraphFtmTemp[3].SetMarkerStyle(kFullDotSmall);
2904
2905 fGraphFtmTemp[1].SetLineColor(kBlue);
2906 fGraphFtmTemp[2].SetLineColor(kRed);
2907 fGraphFtmTemp[3].SetLineColor(kGreen);
2908
2909 fGraphFtmTemp[1].SetMarkerColor(kBlue);
2910 fGraphFtmTemp[2].SetMarkerColor(kRed);
2911 fGraphFtmTemp[3].SetMarkerColor(kGreen);
2912
2913 //fGraphFtmTemp[0].Draw("LP");
2914 //fGraphFtmTemp[1].Draw("LP");
2915 //fGraphFtmTemp[2].Draw("LP");
2916 //fGraphFtmTemp[3].Draw("LP");
2917
2918 // --------------------------------------------------------------------------
2919
2920 TCanvas *c = fFtmRateCanv->GetCanvas();
2921 //c->SetBit(TCanvas::kNoContextMenu);
2922 c->SetBorderMode(0);
2923 c->SetFrameBorderMode(0);
2924 c->SetFillColor(kWhite);
2925 c->SetRightMargin(0.03);
2926 c->SetTopMargin(0.03);
2927 c->SetGrid();
2928 c->cd();
2929
2930 TH1 *hf = DrawTimeFrame("Trigger rate [Hz]");
2931 hf->GetYaxis()->SetRangeUser(0, 1010);
2932
2933 fTriggerCounter0 = -1;
2934
2935 fGraphFtmRate.SetMarkerStyle(kFullDotSmall);
2936 fGraphFtmRate.Draw("LP");
2937
2938 // --------------------------------------------------------------------------
2939
2940 c = fRatesCanv->GetCanvas();
2941 //c->SetBit(TCanvas::kNoContextMenu);
2942 c->SetBorderMode(0);
2943 c->SetFrameBorderMode(0);
2944 c->SetFillColor(kWhite);
2945 c->cd();
2946
2947 Camera *cam = new Camera;
2948 cam->SetBit(kCanDelete);
2949 cam->Draw();
2950
2951 ChoosePixel(*cam, 0);
2952
2953 // --------------------------------------------------------------------------
2954
2955 c = fAdcDataCanv->GetCanvas();
2956 //c->SetBit(TCanvas::kNoContextMenu);
2957 c->SetBorderMode(0);
2958 c->SetFrameBorderMode(0);
2959 c->SetFillColor(kWhite);
2960 c->SetGrid();
2961 c->cd();
2962
2963 // Create histogram?
2964
2965 // --------------------------------------------------------------------------
2966
2967// QTimer::singleShot(0, this, SLOT(slot_RootUpdate()));
2968
2969 //widget->setMouseTracking(true);
2970 //widget->EnableSignalEvents(kMouseMoveEvent);
2971
2972 fFtmRateCanv->setMouseTracking(true);
2973 fFtmRateCanv->EnableSignalEvents(kMouseMoveEvent);
2974
2975 fAdcDataCanv->setMouseTracking(true);
2976 fAdcDataCanv->EnableSignalEvents(kMouseMoveEvent);
2977
2978 fRatesCanv->setMouseTracking(true);
2979 fRatesCanv->EnableSignalEvents(kMouseMoveEvent|kMouseReleaseEvent|kMouseDoubleClickEvent);
2980
2981 connect(fRatesCanv, SIGNAL( RootEventProcessed(TObject*, unsigned int, TCanvas*)),
2982 this, SLOT (slot_RootEventProcessed(TObject*, unsigned int, TCanvas*)));
2983 connect(fFtmRateCanv, SIGNAL( RootEventProcessed(TObject*, unsigned int, TCanvas*)),
2984 this, SLOT (slot_RootEventProcessed(TObject*, unsigned int, TCanvas*)));
2985 connect(fAdcDataCanv, SIGNAL( RootEventProcessed(TObject*, unsigned int, TCanvas*)),
2986 this, SLOT (slot_RootEventProcessed(TObject*, unsigned int, TCanvas*)));
2987#endif
2988 }
2989
2990 ~FactGui()
2991 {
2992 // Unsubscribe all services
2993 for (map<string,DimInfo*>::iterator i=fServices.begin();
2994 i!=fServices.end(); i++)
2995 delete i->second;
2996
2997 delete fEventData;
2998 }
2999};
3000
3001#endif
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