source: trunk/FACT++/src/EventBuilderWrapper.h@ 11209

Last change on this file since 11209 was 11207, checked in by tbretz, 14 years ago
Many little and more changed to teh FAD and event builder controls; added DRS temperature transmission
File size: 45.5 KB
Line 
1#ifndef FACT_EventBuilderWrapper
2#define FACT_EventBuilderWrapper
3
4/*
5#if BOOST_VERSION < 104400
6#if (__GNUC__ > 4 || (__GNUC__ == 4 && __GNUC_MINOR__ > 4))
7#undef BOOST_HAS_RVALUE_REFS
8#endif
9#endif
10#include <boost/thread.hpp>
11
12using namespace std;
13*/
14
15#include <boost/date_time/posix_time/posix_time_types.hpp>
16
17#include <CCfits/CCfits>
18
19#include "EventBuilder.h"
20
21extern "C" {
22 extern void StartEvtBuild();
23 extern int CloseRunFile(uint32_t runId, uint32_t closeTime);
24}
25
26namespace ba = boost::asio;
27namespace bs = boost::system;
28
29using ba::ip::tcp;
30
31class DataFileImp
32{
33 uint32_t fRunId;
34
35public:
36 DataFileImp(uint32_t id) : fRunId(id) { }
37
38 virtual bool OpenFile(RUN_HEAD* h) = 0;
39 virtual bool Write(EVENT *) = 0;
40 virtual bool Close(RUN_TAIL * = 0) = 0;
41
42 uint32_t GetRunId() const { return fRunId; }
43
44 // --------------------------------------------------------------------------
45 //
46 //! This creates an appropriate file name for a particular run number and type
47 //! @param runNumber the run number for which a filename is to be created
48 //! @param runType an int describing the kind of run. 0=Data, 1=Pedestal, 2=Calibration, 3=Calibrated data
49 //! @param extension a string containing the extension to be appened to the file name
50 //
51 string FormFileName(uint32_t runType, string extension)
52 {
53 //TODO where am I supposed to get the base directory from ?
54 //TODO also, for creating subsequent directories, should I use the functions from the dataLogger ?
55 string baseDirectory = "./Run";
56
57 ostringstream result;
58// result << baseDirectory;
59// result << Time::fmt("/%Y/%m/%d/") << (Time() - boost::posix_time::time_duration(12,0,0));
60 result << setfill('0') << setw(8) << fRunId;
61 result << ".001_";
62 switch (runType)
63 {
64 case -1:
65 result << 'T';
66 break;
67 case 0:
68 result << 'D';
69 break;
70 case 1:
71 result << 'P';
72 break;
73 case 2:
74 result << 'C';
75 break;
76 case 3:
77 result << 'N';
78 break;
79 default:
80 result << runType;
81 };
82 result << "." << extension;
83
84 return result.str();
85 }
86};
87
88class DataFileNone : public DataFileImp
89{
90public:
91 DataFileNone(uint32_t id) : DataFileImp(id) { }
92
93 bool OpenFile(RUN_HEAD* h)
94 {
95 cout << "OPEN_FILE #" << GetRunId() << " (" << this << ")" << endl;
96 cout << " Ver= " << h->Version << endl;
97 cout << " Typ= " << h->RunType << endl;
98 cout << " Nb = " << h->NBoard << endl;
99 cout << " Np = " << h->NPix << endl;
100 cout << " NTm= " << h->NTm << endl;
101 cout << " roi= " << h->Nroi << endl;
102
103 return true;
104 }
105 bool Write(EVENT *)
106 {
107 return true;
108 }
109 bool Close(RUN_TAIL * = 0)
110 {
111 cout << "CLOSE FILE #" << GetRunId() << " (" << this << ")" << endl;
112 return true;
113 }
114};
115
116class DataFileDebug : public DataFileNone
117{
118public:
119 DataFileDebug(uint32_t id) : DataFileNone(id) { }
120
121 bool Write(EVENT *e)
122 {
123 cout << "WRITE_EVENT #" << GetRunId() << " (" << e->EventNum << ")" << endl;
124 cout << " Typ=" << e->TriggerType << endl;
125 cout << " roi=" << e->Roi << endl;
126 cout << " trg=" << e->SoftTrig << endl;
127 cout << " tim=" << e->PCTime << endl;
128
129 return true;
130 }
131};
132
133#include "FAD.h"
134
135class DataFileRaw : public DataFileImp
136{
137 ofstream fOut;
138
139 off_t fPosTail;
140
141 uint32_t fCounter;
142
143
144 // WRITE uint32_t 0xFAC77e1e (FACT Tele)
145 // ===
146 // WRITE uint32_t TYPE(>0) == 1
147 // WRITE uint32_t ID(>0) == 0
148 // WRITE uint32_t VERSION(>0) == 1
149 // WRITE uint32_t LENGTH
150 // -
151 // WRITE uint32_t TELESCOPE ID
152 // WRITE uint32_t RUNID
153 // ===
154 // WRITE uint32_t TYPE(>0) == 2
155 // WRITE uint32_t ID(>0) == 0
156 // WRITE uint32_t VERSION(>0) == 1
157 // WRITE uint32_t LENGTH
158 // -
159 // WRITE HEADER
160 // ===
161 // [ 40 TIMES
162 // WRITE uint32_t TYPE(>0) == 3
163 // WRITE uint32_t ID(>0) == 0..39
164 // WRITE uint32_t VERSION(>0) == 1
165 // WRITE uint32_t LENGTH
166 // -
167 // WRITE BOARD-HEADER
168 // ]
169 // ===
170 // WRITE uint32_t TYPE(>0) == 4
171 // WRITE uint32_t ID(>0) == 0
172 // WRITE uint32_t VERSION(>0) == 1
173 // WRITE uint32_t LENGTH
174 // -
175 // WRITE FOOTER (empty)
176 // ===
177 // [ N times
178 // WRITE uint32_t TYPE(>0) == 10
179 // WRITE uint32_t ID(>0) == counter
180 // WRITE uint32_t VERSION(>0) == 1
181 // WRITE uint32_t LENGTH HEADER
182 // -
183 // WRITE HEADER+DATA
184 // ]
185 // ===
186 // WRITE uint32_t TYPE ==0
187 // WRITE uint32_t VERSION==0
188 // WRITE uint32_t LENGTH ==0
189 // ===
190 // Go back and write footer
191
192public:
193 DataFileRaw(uint32_t id) : DataFileImp(id) { }
194 ~DataFileRaw() { Close(); }
195
196 void WriteBlockHeader(uint32_t type, uint32_t ver, uint32_t cnt, uint32_t len)
197 {
198 const uint32_t val[4] = { type, ver, cnt, len };
199
200 fOut.write(reinterpret_cast<const char*>(val), sizeof(val));
201 }
202
203 template<typename T>
204 void WriteValue(const T &t)
205 {
206 fOut.write(reinterpret_cast<const char*>(&t), sizeof(T));
207 }
208
209 enum
210 {
211 kEndOfFile = 0,
212 kIdentifier = 1,
213 kRunHeader,
214 kBoardHeader,
215 kRunSummary,
216 kEvent,
217 };
218
219 virtual bool OpenFile(RUN_HEAD *h)
220 {
221 const string name = FormFileName(h->RunType, "bin");
222
223 errno = 0;
224 fOut.open(name.c_str(), ios_base::out);
225 if (!fOut)
226 {
227 //ostringstream str;
228 //str << "Open file " << name << ": " << strerror(errno) << " (errno=" << errno << ")";
229 //Error(str);
230
231 return false;
232 }
233
234 fCounter = 0;
235
236 static uint32_t FACT = 0xFAC77e1e;
237
238 fOut.write(reinterpret_cast<char*>(&FACT), 4);
239
240 WriteBlockHeader(kIdentifier, 1, 0, 8);
241 WriteValue(uint32_t(0));
242 WriteValue(GetRunId());
243
244 WriteBlockHeader(kRunHeader, 1, 0, sizeof(RUN_HEAD)-sizeof(PEVNT_HEADER*));
245 fOut.write(reinterpret_cast<char*>(h), sizeof(RUN_HEAD)-sizeof(PEVNT_HEADER*));
246
247 for (int i=0; i<40; i++)
248 {
249 WriteBlockHeader(kBoardHeader, 1, i, sizeof(PEVNT_HEADER));
250 fOut.write(reinterpret_cast<char*>(h->FADhead+i), sizeof(PEVNT_HEADER));
251 }
252
253 // FIXME: Split this
254 const vector<char> block(sizeof(uint32_t)+sizeof(RUN_TAIL));
255 WriteBlockHeader(kRunSummary, 1, 0, block.size());
256
257 fPosTail = fOut.tellp();
258 fOut.write(block.data(), block.size());
259
260 if (!fOut)
261 {
262 //ostringstream str;
263 //str << "Open file " << name << ": " << strerror(errno) << " (errno=" << errno << ")";
264 //Error(str);
265
266 return false;
267 }
268
269 return true;
270 }
271 virtual bool Write(EVENT *evt)
272 {
273 const int sh = sizeof(EVENT)-2 + NPIX*evt->Roi*2;
274
275 WriteBlockHeader(kEvent, 1, fCounter++, sh);
276 fOut.write(reinterpret_cast<char*>(evt)+2, sh);
277 return true;
278 }
279 virtual bool Close(RUN_TAIL *tail= 0)
280 {
281 WriteBlockHeader(kEndOfFile, 0, 0, 0);
282
283 if (tail)
284 {
285 fOut.seekp(fPosTail);
286
287 WriteValue(uint32_t(1));
288 fOut.write(reinterpret_cast<char*>(tail), sizeof(RUN_TAIL));
289 }
290
291 if (!fOut)
292 {
293 //ostringstream str;
294 //str << "Open file " << name << ": " << strerror(errno) << " (errno=" << errno << ")";
295 //Error(str);
296
297 return false;
298 }
299
300 fOut.close();
301
302 if (!fOut)
303 {
304 //ostringstream str;
305 //str << "Open file " << name << ": " << strerror(errno) << " (errno=" << errno << ")";
306 //Error(str);
307
308 return false;
309 }
310
311 return true;
312 }
313};
314
315#ifdef HAS_FITS
316class DataFileFits : public DataFileImp
317{
318 CCfits::FITS* fFile; /// The pointer to the CCfits FITS file
319 CCfits::Table* fTable; /// The pointer to the CCfits binary table
320
321 uint64_t fNumRows; ///the number of rows that have been written already to the FITS file.
322
323public:
324 DataFileFits(uint32_t runid) : DataFileImp(runid), fFile(0)
325 {
326 }
327
328 // --------------------------------------------------------------------------
329 //
330 //! Default destructor
331 //! The Fits file SHOULD have been closed already, otherwise the informations
332 //! related to the RUN_TAIL will NOT be written to the file.
333 //
334 ~DataFileFits() { Close(); }
335
336 // --------------------------------------------------------------------------
337 //
338 //! Add a new column to the vectors storing the column data.
339 //! @param names the vector of string storing the columns names
340 //! @param types the vector of string storing the FITS data format
341 //! @param numElems the number of elements in this column
342 //! @param type the char describing the FITS data format
343 //! @param name the name of the particular column to be added.
344 //
345 inline void AddColumnEntry(vector<string>& names, vector<string>& types, int numElems, char type, string name)
346 {
347 names.push_back(name);
348
349 ostringstream str;
350 if (numElems != 1)
351 str << numElems;
352 str << type;
353 types.push_back(str.str());
354 }
355
356 // --------------------------------------------------------------------------
357 //
358 //! Writes a single header key entry
359 //! @param name the name of the key
360 //! @param value its value
361 //! @param comment the comment associated to that key
362 //
363 //FIXME this function is a duplicate from the class Fits. should we try to merge it ?
364 template <typename T>
365 void WriteKey(const string &name, const T &value, const string &comment)
366 {
367 try
368 {
369 fTable->addKey(name, value, comment);
370 }
371 catch (CCfits::FitsException e)
372 {
373 ostringstream str;
374 str << "Could not add header key ";
375 //TODO pipe the error message somewhere
376 }
377 }
378
379 template <typename T>
380 void WriteKey(const string &name, const int idx, const T &value, const string &comment)
381 {
382 ostringstream str;
383 str << name << idx;
384
385 WriteKey(str.str(), value, comment);
386 }
387
388 // --------------------------------------------------------------------------
389 //
390 //! DataFileFits constructor. This is the one that should be used, not the default one (parameter-less)
391 //! @param runid This parameter should probably be removed. I first thought it was the run number, but apparently it is not
392 //! @param h a pointer to the RUN_HEAD structure that contains the informations relative to this run
393 //
394 bool OpenFile(RUN_HEAD* h)
395 {
396 //Form filename, based on runid and run-type
397 const string fileName = FormFileName(h->RunType, "fits");
398
399 //create the FITS object
400 try
401 {
402 fFile = new CCfits::FITS(fileName, CCfits::RWmode::Write);
403 }
404 catch (CCfits::FitsException e)
405 {
406 ostringstream str;
407 str << "Could not open FITS file " << fileName << " reason: " << e.message();
408 //TODO display the message somewhere
409
410 return false;
411 }
412
413 //create columns according to header
414 ostringstream arrayTypes;
415
416 // uint32_t EventNum ; // EventNumber as from FTM
417 // uint16_t TriggerType ; // Trigger Type from FTM
418 // uint32_t SoftTrig ; // SoftTrigger Info (TBD)
419 // uint32_t PCTime ; // when did event start to arrive at PC
420 // uint32_t BoardTime[NBOARDS];//
421 // int16_t StartPix[NPIX]; // First Channel per Pixel (Pixels sorted according Software ID) ; -1 if not filled
422 // int16_t StartTM[NTMARK]; // First Channel for TimeMark (sorted Hardware ID) ; -1 if not filled
423 // uint16_t Adc_Data[]; // final length defined by malloc ....
424
425 vector<string> colNames;
426 vector<string> dataTypes;
427 AddColumnEntry(colNames, dataTypes, 1, 'V', "EventNum");
428 AddColumnEntry(colNames, dataTypes, 1, 'U', "TriggerType");
429 AddColumnEntry(colNames, dataTypes, 1, 'V', "SoftTrig");
430 AddColumnEntry(colNames, dataTypes, 1, 'V', "PCTime");
431 AddColumnEntry(colNames, dataTypes, NBOARDS, 'V', "BoardTime");
432 AddColumnEntry(colNames, dataTypes, NPIX, 'I', "StartPix");
433 AddColumnEntry(colNames, dataTypes, NTMARK, 'I', "StartTM");
434 AddColumnEntry(colNames, dataTypes, NPIX*h->Nroi, 'U', "Data");
435
436 //actually create the table
437 try
438 {
439 fTable = fFile->addTable("Events", 0, colNames, dataTypes);
440 if (fTable->rows() != 0)
441 {
442 ostringstream str;
443 str << "Error: table created on the fly looks non-empty.";
444 //TODO giev the error text to some error handler
445 //FIXME I guess that this error checking is useless. remove it for performances.
446 }
447 }
448 catch (const CCfits::FitsException &e)
449 {
450 ostringstream str;
451 str << "Could not create FITS table " << "Events" << " in file " << fileName << " reason: " << e.message();
452 //TODO give the error text to some error handler
453
454 Close();
455 return false;
456 }
457
458 //write header data
459 //first the "standard" keys
460 string stringValue;
461 WriteKey("EXTREL", 1.0f, "Release Number");
462 WriteKey("TELESCOP", "FACT", "Telescope that acquired this data");
463 WriteKey("ORIGIN", "ISDC", "Institution that wrote the file");
464 WriteKey("CREATOR", "FACT++ Event Builder", "Program that wrote this file");
465
466 stringValue = Time().GetAsStr();
467 stringValue[10]= 'T';
468 WriteKey("DATE", stringValue, "File creation data");
469 WriteKey("TIMESYS", "TT", "Time frame system");
470 WriteKey("TIMEUNIT", "d", "Time unit");
471 WriteKey("TIMEREF", "UTC", "Time reference frame");
472 //FIXME should we also put the start and stop time of the received data ?
473 //now the events header related variables
474 WriteKey("VERSION", h->Version, "Builder version");
475 WriteKey("RUNTYPE", h->RunType, "Type of run");
476 WriteKey("NBOARD", h->NBoard, "Number of acquisition boards");
477 WriteKey("NPIX", h->NPix, "Number of pixels");
478 WriteKey("NTM", h->NTm, "Number of Time marks");
479 WriteKey("NROI", h->Nroi, "Number of slices per pixels");
480
481 //now the boards related keywords
482 for (int i=0; i<h->NBoard; i++)
483 {
484 const PEVNT_HEADER &hh = h->FADhead[i];
485
486 WriteKey("STPKGFG", i, hh.start_package_flag,
487 "Start package flag");
488
489 WriteKey("PKGLEN", i, hh.package_length,
490 "Package length");
491
492 WriteKey("VERNO", i, hh.version_no,
493 "Version number");
494
495 WriteKey("PLLLCK", i, hh.PLLLCK,
496 "");
497/*
498 WriteKey("TRIGCRC", i, hh.trigger_crc,
499 "Trigger CRC");
500
501 WriteKey("TRIGTYP", i, hh.trigger_type,
502 "Trigger type");
503
504 WriteKey("TRIGID", i, hh.trigger_id,
505 "Trigger ID");
506
507 WriteKey("EVTCNTR", i, hh.fad_evt_counter,
508 "FAD Event Counter");
509*/
510 WriteKey("REFCLK", i, hh.REFCLK_frequency,
511 "Reference Clock Frequency");
512
513 WriteKey("BOARDID", i, hh.board_id,
514 "Board ID");
515
516 WriteKey("PHASESH", i, hh.adc_clock_phase_shift,
517 "ADC clock phase shift");
518
519 //WriteKey("TRGGEN", i, hh.number_of_triggers_to_generate,
520 // "Number of triggers to generate");
521
522 WriteKey("PRESC", i, hh.trigger_generator_prescaler,
523 "Trigger generator prescaler");
524
525 WriteKey("DNA", i, hh.DNA, "DNA");
526 WriteKey("TIME", i, hh.time, "Time");
527 WriteKey("RUNNB", i, hh.runnumber, "Run number");
528/*
529 for (int j=0;j<NTemp;j++)
530 {
531 str.str(""); str2.str("");
532 str << "DRS_T" << i << j;
533 str2 << "DRS temperature #" << i << " " << j;
534 WriteKey(str.str(), h->FADhead[i].drs_temperature[j], str2.str());
535 }
536*/
537 for (int j=0;j<NDAC;j++)
538 WriteKey("DAC", i*NDAC+j, hh.dac[j], "DAC");
539
540 //Last but not least, add header keys that will be updated when closing the file
541 WriteFooter(NULL);
542 }
543
544 return true;
545 }
546
547
548 int WriteColumns(size_t &start, size_t size, void *e)
549 {
550 int status = 0;
551 fits_write_tblbytes(fFile->fitsPointer(), fNumRows, start, size, reinterpret_cast<unsigned char*>(e), &status);
552 if (status)
553 {
554 char text[30];//max length of cfitsio error strings (from doc)
555 fits_get_errstatus(status, text);
556 //ostringstream str;
557 //str << "Writing FITS row " << i << " in " << groupName << ": " << text << " (file_write_tblbytes, rc=" << status << ")";
558 //Error(str);
559 }
560
561 start += size;
562 return status;
563 }
564
565 // --------------------------------------------------------------------------
566 //
567 //! This writes one event to the file
568 //! @param e the pointer to the EVENT
569 //
570 virtual bool Write(EVENT *e)
571 {
572 //FIXME As discussed earlier, we do not swap the bytes yet.
573 fTable->makeThisCurrent();
574
575 //insert a new row
576 int status(0);
577 if (fits_insert_rows(fTable->fitsPointer(), fNumRows, 1, &status))
578 {
579 //ostringstream str;
580 //str << "Inserting row into " << fFileName << " failed (fits_insert_rows, rc=" << status << ")";
581 //fMess->Error(str);
582 //TODO pipe this error message to the appropriate error stream
583 }
584 fNumRows++;
585
586 const int sh = sizeof(EVENT)+NPIX*e->Roi*2;
587
588 // column size pointer
589 size_t col = 1;
590 if (!WriteColumns(col, sh, e))
591 return true;
592
593 //TODO output an error
594 return false;
595
596 /*
597 //write the data, chunk by chunk
598 //FIXME hard-coded size corresponds to current variables of the event, in bytes.
599 //FIXME no padding was taken into account. Because smallest member is 2 bytes, I don't think that this should be a problem.
600 const long sizeInBytesOfEventBeforePointers = 16;
601
602 long col = 1;
603 if (FitsWriteTblBytes(col, sizeInBytesOfEventBeforePointers, e))
604 {
605 //TODO output an error
606 return false;
607 }
608 if (FitsWriteTblBytes(col, NBOARDS*2, e->BoardTime))
609 {
610 //TODO output an error
611 return false;
612 }
613 if (FitsWriteTblBytes(col, NPIX*2, e->StartPix))
614 {
615 //TODO output an error
616 return false;
617 }
618 if (FitsWriteTblBytes(col, NTMARK*2, e->StartTM))
619 {
620 //TODO output an error
621 return false;
622 }
623 if (FitsWriteTblBytes(col, NPIX*fRoi*2, e->Adc_Data))
624 {
625 //TODO output an error
626 return false;
627 }
628 return true;*/
629 }
630
631 void WriteFooter(RUN_TAIL *rt)
632 {
633 //write final header keys
634 fTable->makeThisCurrent();
635
636 WriteKey("NBEVTOK", rt ? rt->nEventsOk : uint32_t(0),
637 "How many events were written");
638
639 WriteKey("NBEVTREJ", rt ? rt->nEventsRej : uint32_t(0),
640 "How many events were rejected by SW-trig");
641
642 WriteKey("NBEVTBAD", rt ? rt->nEventsBad : uint32_t(0),
643 "How many events were rejected by Error");
644
645 //FIXME shouldn't we convert start and stop time to MjD first ?
646 //FIXME shouldn't we also add an MjD reference ?
647
648 WriteKey("TSTART", rt ? rt->PCtime0 : uint32_t(0),
649 "Time when first event received");
650
651 WriteKey("TSTOP", rt ? rt->PCtimeX : uint32_t(0),
652 "Time when last event received");
653 }
654
655 // --------------------------------------------------------------------------
656 //
657 //! Closes the file, and before this it write the TAIL data
658 //! @param rt the pointer to the RUN_TAIL data structure
659 //
660 virtual bool Close(RUN_TAIL *rt = 0)
661 {
662 if (!fFile)
663 return false;
664
665 WriteFooter(rt);
666
667 delete fFile;
668 fFile = NULL;
669
670 return true;
671 }
672
673};
674#else
675#define DataFileFits DataFileRaw
676#endif
677
678class EventBuilderWrapper
679{
680public:
681 // FIXME
682 static EventBuilderWrapper *This;
683
684 MessageImp &fMsg;
685
686private:
687 boost::thread fThread;
688
689 enum CommandStates_t // g_runStat
690 {
691 kAbort = -2, // quit as soon as possible ('abort')
692 kExit = -1, // stop reading, quit when buffered events done ('exit')
693 kInitialize = 0, // 'initialize' (e.g. dim not yet started)
694 kHybernate = 1, // do nothing for long time ('hybernate') [wakeup within ~1sec]
695 kSleep = 2, // do nothing ('sleep') [wakeup within ~10msec]
696 kModeFlush = 10, // read data from camera, but skip them ('flush')
697 kModeTest = 20, // read data and process them, but do not write to disk ('test')
698 kModeFlag = 30, // read data, process and write all to disk ('flag')
699 kModeRun = 40, // read data, process and write selected to disk ('run')
700 };
701
702 enum
703 {
704 kCurrent = 0,
705 kTotal = 1,
706 kEventId = 2,
707 kTriggerId = 3,
708 };
709
710 enum FileFormat_t
711 {
712 kNone,
713 kDebug,
714 kFits,
715 kRaw
716 };
717
718 FileFormat_t fFileFormat;
719
720
721 uint32_t fMaxRun;
722 uint32_t fLastOpened;
723 uint32_t fLastClosed;
724 uint32_t fNumEvts[4];
725
726 DimDescribedService fDimRuns;
727 DimDescribedService fDimEvents;
728 DimDescribedService fDimEventData;
729 DimDescribedService fDimFwVersion;
730 DimDescribedService fDimRunNumber;
731 DimDescribedService fDimStatus;
732 DimDescribedService fDimDNA;
733 DimDescribedService fDimTemperature;
734 DimDescribedService fDimStatistics;
735
736 bool fDebugStream;
737 bool fDebugRead;
738
739 int Write(const Time &time, const std::string &txt, int qos)
740 {
741 return fMsg.Write(time, txt, qos);
742 }
743
744public:
745 EventBuilderWrapper(MessageImp &imp) : fMsg(imp),
746 fFileFormat(kRaw), fMaxRun(0), fLastOpened(0), fLastClosed(0),
747 fDimRuns ("FAD_CONTROL/RUNS", "I:5", ""),
748 fDimEvents ("FAD_CONTROL/EVENTS", "I:4", ""),
749 fDimEventData ("FAD_CONTROL/EVENT_DATA", "S:1;I:1;S:1;I:2;S:1;S", ""),
750 fDimFwVersion ("FAD_CONTROL/FIRMWARE_VERSION", "F:42", ""),
751 fDimRunNumber ("FAD_CONTROL/RUN_NUMBER", "I:42", ""),
752 fDimStatus ("FAD_CONTROL/STATUS", "S:42", ""),
753 fDimDNA ("FAD_CONTROL/DNA", "X:40", ""),
754 fDimTemperature ("FAD_CONTROL/TEMPERATURE", "F:82", ""),
755 fDimStatistics ("FAD_CONTROL/STATISTICS", "X:8", ""),
756 fDebugStream(false), fDebugRead(false)
757 {
758 if (This)
759 throw logic_error("EventBuilderWrapper cannot be instantiated twice.");
760
761 This = this;
762
763 memset(fNumEvts, 0, sizeof(fNumEvts));
764
765 fDimEvents.Update(fNumEvts);
766
767 for (size_t i=0; i<40; i++)
768 ConnectSlot(i, tcp::endpoint());
769 }
770 ~EventBuilderWrapper()
771 {
772 Abort();
773
774 // FIXME: Used timed_join and abort afterwards
775 // What's the maximum time the eb need to abort?
776 fThread.join();
777 //ffMsg.Info("EventBuilder stopped.");
778
779 for (vector<DataFileImp*>::iterator it=fFiles.begin(); it!=fFiles.end(); it++)
780 delete *it;
781 }
782
783 bool IsThreadRunning()
784 {
785 return !fThread.timed_join(boost::posix_time::microseconds(0));
786 }
787
788 void SetMaxMemory(unsigned int mb) const
789 {
790 if (mb*1000000<GetUsedMemory())
791 {
792 // ffMsg.Warn("...");
793 return;
794 }
795
796 g_maxMem = mb*1000000;
797 }
798
799 void StartThread(const vector<tcp::endpoint> &addr)
800 {
801 if (IsThreadRunning())
802 {
803 fMsg.Warn("Start - EventBuilder still running");
804 return;
805 }
806
807 for (size_t i=0; i<40; i++)
808 ConnectSlot(i, addr[i]);
809
810 g_runStat = kModeRun;
811
812 fMsg.Message("Starting EventBuilder thread");
813
814 fThread = boost::thread(StartEvtBuild);
815 }
816 void ConnectSlot(unsigned int i, const tcp::endpoint &addr)
817 {
818 if (i>39)
819 return;
820
821 if (addr==tcp::endpoint())
822 {
823 DisconnectSlot(i);
824 return;
825 }
826
827 g_port[i].sockAddr.sin_family = AF_INET;
828 g_port[i].sockAddr.sin_addr.s_addr = htonl(addr.address().to_v4().to_ulong());
829 g_port[i].sockAddr.sin_port = htons(addr.port());
830 // In this order
831 g_port[i].sockDef = 1;
832 }
833 void DisconnectSlot(unsigned int i)
834 {
835 if (i>39)
836 return;
837
838 g_port[i].sockDef = 0;
839 // In this order
840 g_port[i].sockAddr.sin_family = AF_INET;
841 g_port[i].sockAddr.sin_addr.s_addr = 0;
842 g_port[i].sockAddr.sin_port = 0;
843 }
844 void IgnoreSlot(unsigned int i)
845 {
846 if (i>39)
847 return;
848 if (g_port[i].sockAddr.sin_port==0)
849 return;
850
851 g_port[i].sockDef = -1;
852 }
853
854
855 void Abort()
856 {
857 fMsg.Message("Signal abort to EventBuilder thread...");
858 g_runStat = kAbort;
859 }
860
861 void Exit()
862 {
863 fMsg.Message("Signal exit to EventBuilder thread...");
864 g_runStat = kExit;
865 }
866
867 /*
868 void Wait()
869 {
870 fThread.join();
871 ffMsg.Message("EventBuilder stopped.");
872 }*/
873
874 void Hybernate() const { g_runStat = kHybernate; }
875 void Sleep() const { g_runStat = kSleep; }
876 void FlushMode() const { g_runStat = kModeFlush; }
877 void TestMode() const { g_runStat = kModeTest; }
878 void FlagMode() const { g_runStat = kModeFlag; }
879 void RunMode() const { g_runStat = kModeRun; }
880
881 // FIXME: To be removed
882 void SetMode(int mode) const { g_runStat = mode; }
883
884 bool IsConnected(int i) const { return gi_NumConnect[i]==7; }
885 bool IsConnecting(int i) const { return !IsConnected(i) && !IsDisconnected(i); }
886 bool IsDisconnected(int i) const { return gi_NumConnect[i]<=0 && g_port[i].sockDef==0; }
887 int GetNumConnected(int i) const { return gi_NumConnect[i]; }
888
889 void SetIgnore(int i, bool b) const { if (g_port[i].sockDef!=0) g_port[i].sockDef=b?-1:1; }
890 bool IsIgnored(int i) const { return g_port[i].sockDef==-1; }
891
892 void SetDebugStream(bool b)
893 {
894 fDebugStream = b;
895 if (b)
896 return;
897
898 for (int i=0; i<40; i++)
899 {
900 if (!fDumpStream[i].is_open())
901 continue;
902
903 fDumpStream[i].close();
904
905 ostringstream name;
906 name << "socket_dump-" << setfill('0') << setw(2) << i << ".bin";
907 fMsg.Message("Closed file '"+name.str()+"'");
908 }
909 }
910
911 void SetDebugRead(bool b)
912 {
913 fDebugRead = b;
914 if (b || !fDumpRead.is_open())
915 return;
916
917 fDumpRead.close();
918 fMsg.Message("Closed file 'socket_events.txt'");
919 }
920
921 size_t GetUsedMemory() const { return gi_usedMem; }
922
923 virtual int CloseOpenFiles() { CloseRunFile(0, 0); return 0; }
924
925
926 /*
927 struct OpenFileToDim
928 {
929 int code;
930 char fileName[FILENAME_MAX];
931 };
932
933 SignalRunOpened(runid, filename);
934 // Send num open files
935 // Send runid, (more info about the run?), filename via dim
936
937 SignalEvtWritten(runid);
938 // Send num events written of newest file
939
940 SignalRunClose(runid);
941 // Send new num open files
942 // Send empty file-name if no file is open
943
944 */
945
946 // -------------- Mapped event builder callbacks ------------------
947
948 void UpdateRuns()
949 {
950 uint32_t values[5] =
951 {
952 static_cast<uint32_t>(fFiles.size()),
953 0xffffffff,
954 0,
955 fLastOpened,
956 fLastClosed
957 };
958
959 for (vector<DataFileImp*>::const_iterator it=fFiles.begin();
960 it!=fFiles.end(); it++)
961 {
962 const DataFileImp *file = *it;
963
964 if (file->GetRunId()<values[1])
965 values[1] = file->GetRunId();
966
967 if (file->GetRunId()>values[2])
968 values[2] = file->GetRunId();
969 }
970
971 fMaxRun = values[2];
972
973 fDimRuns.Update(values);
974 }
975
976 vector<DataFileImp*> fFiles;
977
978 FileHandle_t runOpen(uint32_t runid, RUN_HEAD *h, size_t)
979 {
980 // Check if file already exists...
981 DataFileImp *file = 0;
982 switch (fFileFormat)
983 {
984 case kNone: file = new DataFileNone(runid); break;
985 case kDebug: file = new DataFileDebug(runid); break;
986 case kFits: file = new DataFileFits(runid); break;
987 case kRaw: file = new DataFileNone(runid); break;
988 }
989
990 try
991 {
992 if (!file->OpenFile(h))
993 return 0;
994 }
995 catch (const exception &e)
996 {
997 return 0;
998 }
999
1000 fFiles.push_back(file);
1001
1002 fLastOpened = runid;
1003 UpdateRuns();
1004
1005 fNumEvts[kEventId] = 0;
1006 fNumEvts[kTriggerId] = 0;
1007
1008 fNumEvts[kCurrent] = 0;
1009 fDimEvents.Update(fNumEvts);
1010 // fDimCurrentEvent.Update(uint32_t(0));
1011
1012 return reinterpret_cast<FileHandle_t>(file);
1013 }
1014
1015 int runWrite(FileHandle_t handler, EVENT *e, size_t)
1016 {
1017 DataFileImp *file = reinterpret_cast<DataFileImp*>(handler);
1018
1019 if (!file->Write(e))
1020 return -1;
1021
1022 if (file->GetRunId()==fMaxRun)
1023 {
1024 fNumEvts[kCurrent]++;
1025 fNumEvts[kEventId] = e->EventNum;
1026 fNumEvts[kTriggerId] = e->TriggerType;
1027 }
1028
1029 fNumEvts[kTotal]++;
1030
1031 static Time oldt(boost::date_time::neg_infin);
1032 Time newt;
1033 if (newt>oldt+boost::posix_time::seconds(1))
1034 {
1035 fDimEvents.Update(fNumEvts);
1036 oldt = newt;
1037 }
1038
1039
1040 // ===> SignalEvtWritten(runid);
1041 // Send num events written of newest file
1042
1043 /* close run runId (all all runs if runId=0) */
1044 /* return: 0=close scheduled / >0 already closed / <0 does not exist */
1045 //CloseRunFile(file->GetRunId(), time(NULL)+2) ;
1046
1047 return 0;
1048 }
1049
1050 int runClose(FileHandle_t handler, RUN_TAIL *tail, size_t)
1051 {
1052 DataFileImp *file = reinterpret_cast<DataFileImp*>(handler);
1053
1054 const vector<DataFileImp*>::iterator it = find(fFiles.begin(), fFiles.end(), file);
1055 if (it==fFiles.end())
1056 {
1057 ostringstream str;
1058 str << "File handler (" << handler << ") requested to close by event builder doesn't exist.";
1059 fMsg.Fatal(str);
1060 return -1;
1061 }
1062
1063 ostringstream str;
1064 str << "Closing file for run " << file->GetRunId() << " (" << file << ")" << endl;
1065 fMsg.Info(str);
1066
1067 fFiles.erase(it);
1068
1069 fLastClosed = file->GetRunId();
1070 UpdateRuns();
1071
1072 fDimEvents.Update(fNumEvts);
1073
1074 const bool rc = file->Close(tail);
1075 if (!rc)
1076 {
1077 // Error message
1078 }
1079
1080 delete file;
1081
1082 // ==> SignalRunClose(runid);
1083 // Send new num open files
1084 // Send empty file-name if no file is open
1085
1086 return rc ? 0 : -1;
1087 }
1088
1089 ofstream fDumpStream[40];
1090
1091 void debugStream(int isock, void *buf, int len)
1092 {
1093 if (!fDebugStream)
1094 return;
1095
1096 const int slot = isock/7;
1097 if (slot<0 || slot>39)
1098 return;
1099
1100 if (!fDumpStream[slot].is_open())
1101 {
1102 ostringstream name;
1103 name << "socket_dump-" << setfill('0') << setw(2) << slot << ".bin";
1104
1105 fDumpStream[slot].open(name.str().c_str(), ios::app);
1106 if (!fDumpStream[slot])
1107 {
1108 ostringstream str;
1109 str << "Open file '" << name << "': " << strerror(errno) << " (errno=" << errno << ")";
1110 fMsg.Error(str);
1111
1112 return;
1113 }
1114
1115 fMsg.Message("Opened file '"+name.str()+"' for writing.");
1116 }
1117
1118 fDumpStream[slot].write(reinterpret_cast<const char*>(buf), len);
1119 }
1120
1121 ofstream fDumpRead; // Stream to possibly dump docket events
1122
1123 void debugRead(int isock, int ibyte, uint32_t event, uint32_t ftmevt, uint32_t runno, int state, uint32_t tsec, uint32_t tusec)
1124 {
1125 // isock = socketID (0-279)
1126 // ibyte = #bytes gelesen
1127 // event = eventId (oder 0 wenn noch nicht bekannt)
1128 // state : 1=finished reading data
1129 // 0=reading data
1130 // -1=start reading data (header)
1131 // -2=start reading data,
1132 // eventId not known yet (too little data)
1133 // tsec, tusec = time when reading seconds, microseconds
1134 //
1135 if (!fDebugRead || ibyte==0)
1136 return;
1137
1138 if (!fDumpRead.is_open())
1139 {
1140 fDumpRead.open("socket_events.txt", ios::app);
1141 if (!fDumpRead)
1142 {
1143 ostringstream str;
1144 str << "Open file 'socket_events.txt': " << strerror(errno) << " (errno=" << errno << ")";
1145 fMsg.Error(str);
1146
1147 return;
1148 }
1149
1150 fMsg.Message("Opened file 'socket_events.txt' for writing.");
1151
1152 fDumpRead << "# START: " << Time().GetAsStr() << endl;
1153 fDumpRead << "# state time_sec time_usec socket slot runno event_id trigger_id bytes_received" << endl;
1154 }
1155
1156 fDumpRead
1157 << setw(2) << state << " "
1158 << setw(8) << tsec << " "
1159 << setw(9) << tusec << " "
1160 << setw(3) << isock << " "
1161 << setw(2) << isock/7 << " "
1162 << runno << " "
1163 << event << " "
1164 << ftmevt << " "
1165 << ibyte << endl;
1166 }
1167
1168 struct DimEventData
1169 {
1170 uint16_t Roi ; // #slices per pixel (same for all pixels and tmarks)
1171 uint32_t EventNum ; // EventNumber as from FTM
1172 uint16_t TriggerType ; // Trigger Type from FTM
1173
1174 uint32_t PCTime ; // when did event start to arrive at PC
1175 uint32_t BoardTime; //
1176
1177 int16_t StartPix; // First Channel per Pixel (Pixels sorted according Software ID) ; -1 if not filled
1178 int16_t StartTM; // First Channel for TimeMark (sorted Hardware ID) ; -1 if not filled
1179
1180 uint16_t Adc_Data[]; // final length defined by malloc ....
1181
1182 } __attribute__((__packed__));;
1183
1184 int eventCheck(PEVNT_HEADER *fadhd, EVENT *event)
1185 {
1186
1187 return 0;
1188
1189 /*
1190 fadhd[i] ist ein array mit den 40 fad-headers
1191 (falls ein board nicht gelesen wurde, ist start_package_flag =0 )
1192
1193 event ist die Struktur, die auch die write routine erhaelt;
1194 darin sind im header die 'soll-werte' fuer z.B. eventID
1195 als auch die ADC-Werte (falls Du die brauchst)
1196
1197 Wenn die routine einen negativen Wert liefert, wird das event
1198 geloescht (nicht an die write-routine weitergeleitet [mind. im Prinzip]
1199 */
1200
1201 /*
1202 uint16_t start_package_flag;
1203 uint16_t package_length;
1204 uint16_t version_no;
1205 uint16_t PLLLCK;
1206
1207 uint16_t trigger_crc;
1208 uint16_t trigger_type;
1209 uint32_t trigger_id;
1210
1211 uint32_t fad_evt_counter;
1212 uint32_t REFCLK_frequency;
1213
1214 uint16_t board_id;
1215 uint8_t zeroes;
1216 int8_t adc_clock_phase_shift;
1217 uint16_t number_of_triggers_to_generate;
1218 uint16_t trigger_generator_prescaler;
1219
1220 uint64_t DNA;
1221
1222 uint32_t time;
1223 uint32_t runnumber;
1224
1225 int16_t drs_temperature[NTemp];
1226
1227 uint16_t dac[NDAC];
1228 */
1229
1230 static DimEventData *data = 0;
1231
1232 const size_t sz = sizeof(DimEventData)+event->Roi*2;
1233
1234 if (data && data->Roi != event->Roi)
1235 {
1236 delete data;
1237 data = 0;
1238 }
1239
1240 if (!data)
1241 data = reinterpret_cast<DimEventData*>(new char[sz]);
1242
1243// cout << sizeof(DimEventData) << " " << event->Roi << " " << sz << " " << sizeof(*data) << endl;
1244
1245 data->Roi = event->Roi;
1246 data->EventNum = event->EventNum;
1247 data->TriggerType = event->TriggerType;
1248 data->PCTime = event->PCTime;
1249 data->BoardTime = event->BoardTime[0];
1250 data->StartPix = event->StartPix[0];
1251 data->StartTM = event->StartTM[0];
1252
1253 memcpy(data->Adc_Data, event->Adc_Data, event->Roi*2);
1254
1255 fDimEventData.setData(data, sz);
1256 fDimEventData.updateService();
1257
1258 //delete data;
1259
1260 return 0;
1261 }
1262
1263 void factOut(int severity, int err, const char *message)
1264 {
1265 // FIXME: Make the output to the console stream thread-safe
1266 ostringstream str;
1267 str << "EventBuilder(";
1268 if (err<0)
1269 str << "---";
1270 else
1271 str << err;
1272 str << "): " << message;
1273
1274 static string last;
1275 if (str.str()==last)
1276 return;
1277
1278 last = str.str();
1279 fMsg.Update(str, severity);
1280 }
1281
1282 void factStat(int64_t *stat, int len)
1283 {
1284 if (len!=7)
1285 {
1286 fMsg.Warn("factStat received unknown number of values.");
1287 return;
1288 }
1289
1290 vector<int64_t> data(1, g_maxMem);
1291 data.insert(data.end(), stat, stat+len);
1292
1293 static vector<int64_t> last(8);
1294 if (data==last)
1295 return;
1296 last = data;
1297
1298 fDimStatistics.Update(data);
1299
1300 // len ist die Laenge des arrays.
1301 // array[4] enthaelt wieviele bytes im Buffer aktuell belegt sind; daran
1302 // kannst Du pruefen, ob die 100MB voll sind ....
1303
1304 ostringstream str;
1305 str
1306 << "Wait=" << stat[0] << " "
1307 << "Skip=" << stat[1] << " "
1308 << "Del=" << stat[2] << " "
1309 << "Tot=" << stat[3] << " "
1310 << "Mem=" << stat[4] << "/" << g_maxMem << " "
1311 << "Read=" << stat[5] << " "
1312 << "Conn=" << stat[6];
1313
1314 fMsg.Info(str);
1315 }
1316
1317 boost::array<FAD::EventHeader, 40> fVecHeader;
1318
1319 template<typename T>
1320 boost::array<T, 42> Compare(const FAD::EventHeader *h, const T *t)
1321 {
1322 const int offset = reinterpret_cast<const char *>(t) - reinterpret_cast<const char *>(h);
1323
1324 const T *min = NULL;
1325 const T *val = NULL;
1326 const T *max = NULL;
1327
1328 boost::array<T, 42> vec;
1329
1330 bool rc = true;
1331 for (int i=0; i<40; i++)
1332 {
1333 const char *base = reinterpret_cast<const char*>(&fVecHeader[i]);
1334 const T *ref = reinterpret_cast<const T*>(base+offset);
1335
1336 vec[i] = *ref;
1337
1338 if (gi_NumConnect[i]!=7)
1339 {
1340 vec[i] = 0;
1341 continue;
1342 }
1343
1344 if (!val)
1345 {
1346 min = ref;
1347 val = ref;
1348 max = ref;
1349 }
1350
1351 if (*val<*min)
1352 min = val;
1353
1354 if (*val>*max)
1355 max = val;
1356
1357 if (*val!=*ref)
1358 rc = false;
1359 }
1360
1361 vec[40] = val ? *min : 0xffffffff;
1362 vec[41] = val ? *max : 0;
1363
1364 return vec;
1365 }
1366
1367 template<typename T>
1368 boost::array<T, 42> CompareBits(const FAD::EventHeader *h, const T *t)
1369 {
1370 const int offset = reinterpret_cast<const char *>(t) - reinterpret_cast<const char *>(h);
1371
1372 T val = 0;
1373 T rc = 0;
1374
1375 boost::array<T, 42> vec;
1376
1377 bool first = true;
1378
1379 for (int i=0; i<40; i++)
1380 {
1381 const char *base = reinterpret_cast<const char*>(&fVecHeader[i]);
1382 const T *ref = reinterpret_cast<const T*>(base+offset);
1383
1384 vec[i+2] = *ref;
1385
1386 if (gi_NumConnect[i]!=7)
1387 {
1388 vec[i+2] = 0;
1389 continue;
1390 }
1391
1392 if (first)
1393 {
1394 first = false;
1395 val = *ref;
1396 rc = 0;
1397 }
1398
1399 rc |= val^*ref;
1400 }
1401
1402 vec[0] = rc;
1403 vec[1] = val;
1404
1405 return vec;
1406 }
1407
1408 template<typename T, size_t N>
1409 void Update(DimDescribedService &svc, const boost::array<T, N> &data, int n=N)
1410 {
1411// svc.setQuality(vec[40]<=vec[41]);
1412 svc.setData(const_cast<T*>(data.data()), sizeof(T)*n);
1413 svc.updateService();
1414 }
1415
1416 template<typename T>
1417 void Print(const char *name, const pair<bool,boost::array<T, 43>> &data)
1418 {
1419 cout << name << "|" << data.first << "|" << data.second[1] << "|" << data.second[0] << "<x<" << data.second[1] << ":";
1420 for (int i=0; i<40;i++)
1421 cout << " " << data.second[i+3];
1422 cout << endl;
1423 }
1424
1425 vector<uint> fNumConnected;
1426
1427 void debugHead(int socket, const FAD::EventHeader &h)
1428 {
1429 const uint16_t id = h.Id();
1430 if (id>39)
1431 return;
1432
1433 if (fNumConnected.size()!=40)
1434 fNumConnected.resize(40);
1435
1436 vector<uint> con(gi_NumConnect, gi_NumConnect+40);
1437
1438 bool changed = con!=fNumConnected || !IsThreadRunning();
1439
1440 fNumConnected = con;
1441
1442
1443 const FAD::EventHeader old = fVecHeader[id];
1444 fVecHeader[id] = h;
1445
1446 if (old.fVersion != h.fVersion || changed)
1447 {
1448 const boost::array<uint16_t,42> ver = Compare(&h, &h.fVersion);
1449
1450 boost::array<float,42> data;
1451 for (int i=0; i<42; i++)
1452 {
1453 ostringstream str;
1454 str << (ver[i]>>8) << '.' << (ver[i]&0xff);
1455 data[i] = atof(str.str().c_str());
1456 }
1457 Update(fDimFwVersion, data);
1458 }
1459
1460 if (old.fRunNumber != h.fRunNumber || changed)
1461 {
1462 const boost::array<uint32_t,42> run = Compare(&h, &h.fRunNumber);
1463 fDimRunNumber.Update(run);
1464 }
1465
1466 if (old.fDNA != h.fDNA || changed)
1467 {
1468 const boost::array<uint64_t,42> dna = Compare(&h, &h.fDNA);
1469 Update(fDimDNA, dna, 40);
1470 }
1471
1472 if (old.fStatus != h.fStatus || changed)
1473 {
1474 const boost::array<uint16_t,42> sts = CompareBits(&h, &h.fStatus);
1475 Update(fDimStatus, sts);
1476 }
1477
1478 static Time oldt(boost::date_time::neg_infin);
1479 Time newt;
1480
1481 if (newt>oldt+boost::posix_time::seconds(1))
1482 {
1483 const boost::array<int16_t,42> tmp[4] =
1484 {
1485 Compare(&h, &h.fTempDrs[0]),
1486 Compare(&h, &h.fTempDrs[1]),
1487 Compare(&h, &h.fTempDrs[2]),
1488 Compare(&h, &h.fTempDrs[3])
1489 };
1490
1491 vector<int16_t> data;
1492 data.reserve(82);
1493 data.push_back(tmp[0][0]);
1494 data.insert(data.end(), tmp[0].data()+2, tmp[0].data()+42);
1495 data.push_back(tmp[0][1]);
1496 data.insert(data.end(), tmp[0].data()+2, tmp[0].data()+42);
1497
1498 for (int j=0; j<=3; j++)
1499 {
1500 const boost::array<int16_t,42> &ref = tmp[j];
1501
1502 // Gloabl min
1503 if (ref[40]<data[0])
1504 data[0] = ref[40];
1505
1506 // Global max
1507 if (ref[41]>data[40])
1508 data[40] = ref[41];
1509
1510 for (int i=0; i<40; i++)
1511 {
1512 // min per board
1513 if (ref[i]<data[i+1])
1514 data[i+1] = ref[i];
1515
1516 // max per board
1517 if (ref[i]>data[i+41])
1518 data[i+41] = ref[i];
1519 }
1520 }
1521
1522 vector<float> deg(82);
1523 for (int i=0; i<82; i++)
1524 deg[i] = data[i]/16.;
1525 fDimTemperature.Update(deg);
1526 }
1527
1528
1529
1530 /*
1531 uint16_t fTriggerType;
1532 uint32_t fTriggerId;
1533 uint32_t fEventCounter;
1534 uint32_t fFreqRefClock;
1535 uint16_t fAdcClockPhaseShift;
1536 uint16_t fNumTriggersToGenerate;
1537 uint16_t fTriggerGeneratorPrescaler;
1538 uint32_t fTimeStamp;
1539 int16_t fTempDrs[kNumTemp]; // In units of 1/16 deg(?)
1540 uint16_t fDac[kNumDac];
1541 */
1542 }
1543};
1544
1545EventBuilderWrapper *EventBuilderWrapper::This = 0;
1546
1547// ----------- Event builder callbacks implementation ---------------
1548extern "C"
1549{
1550 FileHandle_t runOpen(uint32_t irun, RUN_HEAD *runhd, size_t len)
1551 {
1552 return EventBuilderWrapper::This->runOpen(irun, runhd, len);
1553 }
1554
1555 int runWrite(FileHandle_t fileId, EVENT *event, size_t len)
1556 {
1557 return EventBuilderWrapper::This->runWrite(fileId, event, len);
1558 }
1559
1560 int runClose(FileHandle_t fileId, RUN_TAIL *runth, size_t len)
1561 {
1562 return EventBuilderWrapper::This->runClose(fileId, runth, len);
1563 }
1564
1565 void factOut(int severity, int err, const char *message)
1566 {
1567 if (severity!=99)
1568 EventBuilderWrapper::This->factOut(severity, err, message);
1569 }
1570
1571 void factStat(int64_t *array, int len)
1572 {
1573 EventBuilderWrapper::This->factStat(array, len);
1574 }
1575
1576 void debugHead(int socket, void *buf)
1577 {
1578 const uint16_t *ptr = reinterpret_cast<uint16_t*>(buf);
1579
1580 EventBuilderWrapper::This->debugHead(socket, FAD::EventHeader(ptr));
1581 }
1582
1583 void debugStream(int isock, void *buf, int len)
1584 {
1585 return EventBuilderWrapper::This->debugStream(isock, buf, len);
1586 }
1587
1588 void debugRead(int isock, int ibyte, int32_t event, int32_t ftmevt, int32_t runno, int state, uint32_t tsec, uint32_t tusec)
1589 {
1590 EventBuilderWrapper::This->debugRead(isock, ibyte, event, ftmevt, runno, state, tsec, tusec);
1591 }
1592
1593 int eventCheck(PEVNT_HEADER *fadhd, EVENT *event)
1594 {
1595 return EventBuilderWrapper::This->eventCheck(fadhd, event);
1596 }
1597}
1598
1599#endif
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