source: trunk/FACT++/src/fadctrl.cc@ 11112

Last change on this file since 11112 was 11112, checked in by tbretz, 13 years ago
Added TOGGLE for singel FAD connections.
File size: 55.5 KB
Line 
1#include <boost/bind.hpp>
2#include <boost/array.hpp>
3#if BOOST_VERSION < 104400
4#if (__GNUC__ > 4 || (__GNUC__ == 4 && __GNUC_MINOR__ > 4))
5#undef BOOST_HAS_RVALUE_REFS
6#endif
7#endif
8#include <boost/thread.hpp>
9//#include <boost/foreach.hpp>
10#include <boost/asio/error.hpp>
11#include <boost/asio/deadline_timer.hpp>
12#include <boost/date_time/posix_time/posix_time_types.hpp>
13
14#include "Dim.h"
15#include "Event.h"
16#include "Shell.h"
17#include "StateMachineDim.h"
18#include "Connection.h"
19#include "Configuration.h"
20#include "Console.h"
21#include "Converter.h"
22#include "LocalControl.h"
23#include "HeadersFAD.h"
24
25#include "tools.h"
26
27namespace ba = boost::asio;
28namespace bs = boost::system;
29
30using ba::ip::tcp;
31
32using namespace std;
33
34// ------------------------------------------------------------------------
35
36class ConnectionFAD : public Connection
37{
38 vector<uint16_t> fBuffer;
39
40protected:
41 FAD::EventHeader fEventHeader;
42 FAD::ChannelHeader fChannelHeader[FAD::kNumChannels];
43
44private:
45 bool fIsVerbose;
46 bool fIsHexOutput;
47 bool fIsDataOutput;
48 bool fBlockTransmission;
49
50 uint64_t fCounter;
51
52protected:
53 void PrintEventHeader()
54 {
55 Out() << endl << kBold << "Header received (N=" << dec << fCounter << "):" << endl;
56 Out() << fEventHeader;
57 if (fIsHexOutput)
58 Out() << Converter::GetHex<uint16_t>(fEventHeader, 16) << endl;
59 }
60
61 void PrintChannelHeaders()
62 {
63 Out() << dec << endl;
64
65 for (unsigned int c=0; c<FAD::kNumChips; c++)
66 {
67 Out() << "ROI|" << fEventHeader.Crate() << ":" << fEventHeader.Board() << ":" << c << ":";
68 for (unsigned int ch=0; ch<FAD::kNumChannelsPerChip; ch++)
69 Out() << " " << setw(4) << fChannelHeader[c*FAD::kNumChannelsPerChip+ch].fRegionOfInterest;
70 Out() << endl;
71 }
72
73 Out() << "CEL|" << fEventHeader.Crate() << ":" << fEventHeader.Board() << ":";
74 for (unsigned int c=0; c<FAD::kNumChips; c++)
75 {
76 if (0)//fIsFullChannelHeader)
77 {
78 for (unsigned int ch=0; ch<FAD::kNumChannelsPerChip; ch++)
79 Out() << " " << setw(4) << fChannelHeader[c*FAD::kNumChannelsPerChip+ch].fStartCell;
80 Out() << endl;
81 }
82 else
83 {
84 Out() << " ";
85 const uint16_t cel = fChannelHeader[c*FAD::kNumChannelsPerChip].fStartCell;
86 for (unsigned int ch=1; ch<FAD::kNumChannelsPerChip; ch++)
87 if (cel!=fChannelHeader[c*FAD::kNumChannelsPerChip+ch].fStartCell)
88 {
89 Out() << "!";
90 break;
91 }
92 Out() << cel;
93 }
94 }
95 Out() << endl;
96
97 if (fIsHexOutput)
98 Out() << Converter::GetHex<uint16_t>(fChannelHeader, 16) << endl;
99
100 }
101
102 virtual void UpdateFirstHeader()
103 {
104 }
105
106 virtual void UpdateEventHeader()
107 {
108 // emit service with trigger counter from header
109 if (fIsVerbose)
110 PrintEventHeader();
111 }
112
113 virtual void UpdateChannelHeaders()
114 {
115 // emit service with trigger counter from header
116 if (fIsVerbose)
117 PrintChannelHeaders();
118
119 }
120
121 virtual void UpdateData(const uint16_t *data, size_t sz)
122 {
123 // emit service with trigger counter from header
124 if (fIsVerbose && fIsDataOutput)
125 Out() << Converter::GetHex<uint16_t>(data, sz, 16, true) << endl;
126 }
127
128private:
129 enum
130 {
131 kReadHeader = 1,
132 kReadData = 2,
133 };
134
135 void HandleReceivedData(const bs::error_code& err, size_t bytes_received, int type)
136 {
137 // Do not schedule a new read if the connection failed.
138 if (bytes_received==0 || err)
139 {
140 if (err==ba::error::eof)
141 Warn("Connection closed by remote host (FAD).");
142
143 // 107: Transport endpoint is not connected (bs::error_code(107, bs::system_category))
144 // 125: Operation canceled
145 if (err && err!=ba::error::eof && // Connection closed by remote host
146 err!=ba::error::basic_errors::not_connected && // Connection closed by remote host
147 err!=ba::error::basic_errors::operation_aborted) // Connection closed by us
148 {
149 ostringstream str;
150 str << "Reading from " << URL() << ": " << err.message() << " (" << err << ")";// << endl;
151 Error(str);
152 }
153 PostClose(err!=ba::error::basic_errors::operation_aborted);
154 return;
155 }
156
157 if (type==kReadHeader)
158 {
159 if (bytes_received!=sizeof(FAD::EventHeader))
160 {
161 ostringstream str;
162 str << "Bytes received (" << bytes_received << " don't match header size " << sizeof(FAD::EventHeader);
163 Error(str);
164 PostClose(false);
165 return;
166 }
167
168 fEventHeader = fBuffer;
169
170 if (fEventHeader.fStartDelimiter!=FAD::kDelimiterStart)
171 {
172 ostringstream str;
173 str << "Invalid header received: start delimiter wrong, received ";
174 str << hex << fEventHeader.fStartDelimiter << ", expected " << FAD::kDelimiterStart << ".";
175 Error(str);
176 PostClose(false);
177 return;
178 }
179
180 if (fCounter==0)
181 UpdateFirstHeader();
182
183 UpdateEventHeader();
184
185 fBuffer.resize(fEventHeader.fPackageLength-sizeof(FAD::EventHeader)/2);
186 AsyncRead(ba::buffer(fBuffer), kReadData);
187 AsyncWait(fInTimeout, 500, &Connection::HandleReadTimeout);
188
189 return;
190 }
191
192 fInTimeout.cancel();
193
194 if (ntohs(fBuffer.back())!=FAD::kDelimiterEnd)
195 {
196 ostringstream str;
197 str << "Invalid data received: end delimiter wrong, received ";
198 str << hex << ntohs(fBuffer.back()) << ", expected " << FAD::kDelimiterEnd << ".";
199 Error(str);
200 PostClose(false);
201 return;
202 }
203
204 uint8_t *ptr = reinterpret_cast<uint8_t*>(fBuffer.data());
205 uint8_t *end = ptr + fBuffer.size()*2;
206 for (unsigned int i=0; i<FAD::kNumChannels; i++)
207 {
208 if (ptr+sizeof(FAD::ChannelHeader) > end)
209 {
210 Error("Channel header exceeds buffer size.");
211 PostClose(false);
212 return;
213 }
214
215 fChannelHeader[i] = vector<uint16_t>((uint16_t*)ptr, (uint16_t*)ptr+sizeof(FAD::ChannelHeader)/2);
216 ptr += sizeof(FAD::ChannelHeader);
217
218 //UpdateChannelHeader(i);
219
220 if (ptr+fChannelHeader[i].fRegionOfInterest*2 > end)
221 {
222 Error("Data block exceeds buffer size.");
223 PostClose(false);
224 return;
225 }
226
227 uint16_t *data = reinterpret_cast<uint16_t*>(ptr);
228
229 /*
230 for (uint16_t *d=data; d<data+fChannelHeader[i].fRegionOfInterest; d++)
231 {
232 const bool sign = *d & 0x2000;
233 const bool overflow = *d & 0x1000;
234
235 if (sign)
236 *d |= 0xf000; // no overflow, nagative
237 else
238 *d &= 0x07ff; // no overlow, positive
239
240 // max = [-2047;2048]
241
242 if (overflow)
243 {
244 if (sign)
245 *d = 0xF800; // overflow, negative
246 else
247 *d = 0x0800; // overflow, positive
248 }
249 }
250 */
251
252 UpdateData(data, fChannelHeader[i].fRegionOfInterest*2);
253 ptr += fChannelHeader[i].fRegionOfInterest*2;
254 }
255
256 if (fIsVerbose)
257 UpdateChannelHeaders();
258
259 fCounter++;
260
261 fBuffer.resize(sizeof(FAD::EventHeader)/2);
262 AsyncRead(ba::buffer(fBuffer), kReadHeader);
263 }
264
265 void HandleReadTimeout(const bs::error_code &error)
266 {
267 if (error==ba::error::basic_errors::operation_aborted)
268 return;
269
270 if (error)
271 {
272 ostringstream str;
273 str << "Read timeout of " << URL() << ": " << error.message() << " (" << error << ")";// << endl;
274 Error(str);
275
276 PostClose();
277 return;
278
279 }
280
281 if (!is_open())
282 {
283 // For example: Here we could schedule a new accept if we
284 // would not want to allow two connections at the same time.
285 return;
286 }
287
288 // Check whether the deadline has passed. We compare the deadline
289 // against the current time since a new asynchronous operation
290 // may have moved the deadline before this actor had a chance
291 // to run.
292 if (fInTimeout.expires_at() > ba::deadline_timer::traits_type::now())
293 return;
294
295 Error("Timeout reading data from "+URL());
296 PostClose();
297 }
298
299 // This is called when a connection was established
300 void ConnectionEstablished()
301 {
302 fEventHeader.clear();
303 for (unsigned int i=0; i<FAD::kNumChannels; i++)
304 fChannelHeader[i].clear();
305
306 fCounter = 0;
307
308 fBuffer.resize(sizeof(FAD::EventHeader)/2);
309 AsyncRead(ba::buffer(fBuffer), kReadHeader);
310
311// for (int i=0; i<36; i++)
312// CmdSetRoi(i, 100);
313
314 Cmd(FAD::kCmdTriggerLine, true);
315 Cmd(FAD::kCmdSingleTrigger);
316 }
317
318public:
319 void PostCmd(std::vector<uint16_t> cmd)
320 {
321 if (fBlockTransmission)
322 return;
323
324#ifdef DEBUG_TX
325 ostringstream msg;
326 msg << "Sending command:" << hex;
327 msg << " 0x" << setw(4) << setfill('0') << cmd[0];
328 msg << " (+ " << cmd.size()-1 << " bytes data)";
329 Message(msg);
330#endif
331 transform(cmd.begin(), cmd.end(), cmd.begin(), htons);
332
333 PostMessage(cmd);
334 }
335
336 void PostCmd(uint16_t cmd)
337 {
338 if (fBlockTransmission)
339 return;
340
341#ifdef DEBUG_TX
342 ostringstream msg;
343 msg << "Sending command:" << hex;
344 msg << " 0x" << setw(4) << setfill('0') << cmd;
345 Message(msg);
346#endif
347 cmd = htons(cmd);
348 PostMessage(&cmd, sizeof(uint16_t));
349 }
350
351 void PostCmd(uint16_t cmd, uint16_t data)
352 {
353 if (fBlockTransmission)
354 return;
355
356#ifdef DEBUG_TX
357 ostringstream msg;
358 msg << "Sending command:" << hex;
359 msg << " 0x" << setw(4) << setfill('0') << cmd;
360 msg << " 0x" << setw(4) << setfill('0') << data;
361 Message(msg);
362#endif
363 const uint16_t d[2] = { htons(cmd), htons(data) };
364 PostMessage(d, sizeof(d));
365 }
366
367public:
368 ConnectionFAD(ba::io_service& ioservice, MessageImp &imp) :
369 Connection(ioservice, imp()),
370 fIsVerbose(false), fIsHexOutput(false), fIsDataOutput(false),
371 fBlockTransmission(false), fCounter(0)
372 {
373 // Maximum possible needed space:
374 // The full header, all channels with all DRS bins
375 // Two trailing shorts
376 fBuffer.reserve(sizeof(FAD::EventHeader) + FAD::kNumChannels*(sizeof(FAD::ChannelHeader) + FAD::kMaxBins*sizeof(uint16_t)) + 2*sizeof(uint16_t));
377
378 SetLogStream(&imp);
379 }
380
381 void Cmd(FAD::Enable cmd, bool on=true)
382 {
383 PostCmd(cmd + (on ? 0 : 0x100));
384 }
385
386 // ------------------------------
387
388 // IMPLEMENT: Abs/Rel
389 void CmdPhaseShift(int16_t val)
390 {
391 vector<uint16_t> cmd(abs(val)+2, FAD::kCmdPhaseApply);
392 cmd[0] = FAD::kCmdPhaseReset;
393 cmd[1] = val<0 ? FAD::kCmdPhaseDecrease : FAD::kCmdPhaseIncrease;
394 PostCmd(cmd);
395 }
396
397 bool CmdSetTriggerRate(int32_t val)
398 {
399 if (val<0 || val>0xffff)
400 return false;
401
402 PostCmd(FAD::kCmdWriteRate, val);//uint8_t(1000./val/12.5));
403 //PostCmd(FAD::kCmdWriteExecute);
404
405 return true;
406 }
407
408 void CmdSetRunNumber(uint32_t num)
409 {
410 PostCmd(FAD::kCmdWriteRunNumberLSW, num&0xffff);
411 PostCmd(FAD::kCmdWriteRunNumberMSW, num>>16);
412 PostCmd(FAD::kCmdWriteExecute);
413 }
414
415 void CmdSetRegister(uint8_t addr, uint16_t val)
416 {
417 // Allowed addr: [0, MAX_ADDR]
418 // Allowed value: [0, MAX_VAL]
419 PostCmd(FAD::kCmdWrite + addr, val);
420 PostCmd(FAD::kCmdWriteExecute);
421 }
422
423 bool CmdSetDacValue(uint8_t addr, uint16_t val)
424 {
425 if (addr>FAD::kMaxDacAddr) // NDAC
426 return false;
427
428 PostCmd(FAD::kCmdWriteDac + addr, val);
429 PostCmd(FAD::kCmdWriteExecute);
430 return true;
431 }
432
433 bool CmdSetRoi(int8_t addr, uint16_t val)
434 {
435 if (val>FAD::kMaxRoiValue)
436 return false;
437
438 if (addr<0)
439 {
440 for (unsigned int i=0; i<=FAD::kMaxRoiAddr; i++)
441 PostCmd(FAD::kCmdWriteRoi + i, val);
442 PostCmd(FAD::kCmdWriteExecute);
443 return true;
444 }
445
446 if (uint8_t(addr)>FAD::kMaxRoiAddr)
447 return false;
448
449 PostCmd(FAD::kCmdWriteRoi + addr, val);
450 PostCmd(FAD::kCmdWriteExecute);
451 return true;
452 }
453
454 bool CmdSetRoi(uint16_t val) { return CmdSetRoi(-1, val); }
455
456 void AmplitudeCalibration()
457 {
458 // ------------- case baseline -----------------
459
460 CmdSetRoi(-1, FAD::kMaxBins);
461
462 CmdSetDacValue(1, 0);
463 CmdSetDacValue(2, 0);
464 CmdSetDacValue(3, 0);
465
466 // Take N events
467
468 /*
469 // ====== Part B: Baseline calibration =====
470
471 // Loop over all channels(ch) and time-slices (t)
472 T0 = TriggerCell[chip]
473 Sum[ch][(t+T0) % kMaxBins] += Data[ch][t];
474 // FIXME: Determine median instead of average
475
476 Baseline[ch][slice] = MEDIAN( sum[ch][slice] )
477 */
478
479 // --------------- case gain -------------------
480
481 // Set new DAC values and start accumulation
482 CmdSetDacValue(1, 50000);
483 CmdSetDacValue(2, 50000);
484 CmdSetDacValue(3, 50000);
485
486 // Take N events
487
488 /*
489 // ====== Part C: Gain calibration =====
490
491 T0 = TriggerCell[chip]
492 Sum[ch][(t+T0) % kMaxBins] += Data[ch][t];
493 // FIXME: Determine median instead of average
494
495 Gain[ch][slice] = MEDIAN( sum[ch][slice] ) - Baseline[ch][slice]
496 */
497
498 // --------------- secondary ------------------
499
500 // FIXME: Can most probably be done together with the baseline calibration
501 // FIXME: Why does the secondary baseline not influence the baseline?
502
503 CmdSetDacValue(1, 0);
504 CmdSetDacValue(2, 0);
505 CmdSetDacValue(3, 0);
506
507 // Take N events
508
509 /*
510 // ====== Part D: Secondary calibration =====
511
512 T0 = TriggerCell[chip]
513 Sum[ch][t] = Data[ch][t] - Baseline[ch][(i-T0) % kMaxBins];
514
515 // Determine secondary baseline if integration finished
516 SecondaryBaseline[ch][t] = MEDIAN( Sum[ch][t] )
517 */
518 }
519
520 void SetVerbose(bool b)
521 {
522 fIsVerbose = b;
523 }
524
525 void SetHexOutput(bool b)
526 {
527 fIsHexOutput = b;
528 }
529
530 void SetDataOutput(bool b)
531 {
532 fIsDataOutput = b;
533 }
534
535 void SetBlockTransmission(bool b)
536 {
537 fBlockTransmission = b;
538 }
539
540 bool IsTransmissionBlocked() const
541 {
542 return fBlockTransmission;
543 }
544
545 void PrintEvent()
546 {
547 if (fCounter>0)
548 {
549 PrintEventHeader();
550 PrintChannelHeaders();
551 }
552 else
553 Out() << "No event received yet." << endl;
554 }
555
556};
557
558// ------------------------------------------------------------------------
559#include "DimDescriptionService.h"
560#include "EventBuilderWrapper.h"
561
562// ------------------------------------------------------------------------
563
564template <class T>
565class StateMachineFAD : public T, public EventBuilderWrapper, public ba::io_service, public ba::io_service::work
566{
567private:
568 typedef pair<tcp::endpoint, ConnectionFAD*> Connection;
569 typedef map<uint8_t, Connection> BoardList;
570
571 BoardList fBoards;
572
573 bool fIsVerbose;
574 bool fIsHexOutput;
575 bool fIsDataOutput;
576
577 bool CheckEventSize(size_t has, const char *name, size_t size)
578 {
579 if (has==size)
580 return true;
581
582 ostringstream msg;
583 msg << name << " - Received event has " << has << " bytes, but expected " << size << ".";
584 T::Fatal(msg);
585 return false;
586 }
587
588 int Cmd(FAD::Enable command)
589 {
590 for (BoardList::iterator i=fBoards.begin(); i!=fBoards.end(); i++)
591 i->second.second->Cmd(command);
592
593 return T::GetCurrentState();
594 }
595
596 int SendCmd(const EventImp &evt)
597 {
598 if (!CheckEventSize(evt.GetSize(), "SendCmd", 4))
599 return T::kSM_FatalError;
600
601 if (evt.GetUInt()>0xffff)
602 {
603 T::Warn("Command value out of range (0-65535).");
604 return T::GetCurrentState();
605 }
606
607 for (BoardList::iterator i=fBoards.begin(); i!=fBoards.end(); i++)
608 i->second.second->PostCmd(evt.GetUInt());
609
610 return T::GetCurrentState();
611 }
612
613 int SendCmdData(const EventImp &evt)
614 {
615 if (!CheckEventSize(evt.GetSize(), "SendCmdData", 8))
616 return T::kSM_FatalError;
617
618 const uint32_t *ptr = evt.Ptr<uint32_t>();
619
620 if (ptr[0]>0xffff)
621 {
622 T::Warn("Command value out of range (0-65535).");
623 return T::GetCurrentState();
624 }
625
626 if (ptr[1]>0xffff)
627 {
628 T::Warn("Data value out of range (0-65535).");
629 return T::GetCurrentState();
630 }
631
632 for (BoardList::iterator i=fBoards.begin(); i!=fBoards.end(); i++)
633 i->second.second->PostCmd(ptr[0], ptr[1]);
634
635 return T::GetCurrentState();
636 }
637
638 int CmdEnable(const EventImp &evt, FAD::Enable command)
639 {
640 if (!CheckEventSize(evt.GetSize(), "CmdEnable", 1))
641 return T::kSM_FatalError;
642
643 for (BoardList::iterator i=fBoards.begin(); i!=fBoards.end(); i++)
644 i->second.second->Cmd(command, evt.GetBool());
645
646 return T::GetCurrentState();
647 }
648
649 bool Check(const uint32_t *dat, uint32_t maxaddr, uint32_t maxval)
650 {
651 if (dat[0]>maxaddr)
652 {
653 ostringstream msg;
654 msg << hex << "Address " << dat[0] << " out of range, max=" << maxaddr << ".";
655 T::Error(msg);
656 return false;
657 }
658
659 if (dat[1]>maxval)
660 {
661 ostringstream msg;
662 msg << hex << "Value " << dat[1] << " out of range, max=" << maxval << ".";
663 T::Error(msg);
664 return false;
665 }
666
667 return true;
668 }
669
670 int SetRegister(const EventImp &evt)
671 {
672 if (!CheckEventSize(evt.GetSize(), "SetRegister", 8))
673 return T::kSM_FatalError;
674
675 const uint32_t *dat = evt.Ptr<uint32_t>();
676
677 if (!Check(dat, FAD::kMaxRegAddr, FAD::kMaxRegValue))
678 return T::GetCurrentState();
679
680 for (BoardList::iterator i=fBoards.begin(); i!=fBoards.end(); i++)
681 i->second.second->CmdSetRegister(dat[0], dat[1]);
682
683 return T::GetCurrentState();
684 }
685
686 int SetRoi(const EventImp &evt)
687 {
688 if (!CheckEventSize(evt.GetSize(), "SetRoi", 8))
689 return T::kSM_FatalError;
690
691 const int32_t *dat = evt.Ptr<int32_t>();
692
693 for (BoardList::iterator i=fBoards.begin(); i!=fBoards.end(); i++)
694 if (!i->second.second->CmdSetRoi(dat[0], dat[1]))
695 {
696 ostringstream msg;
697 msg << hex << "Channel " << dat[0] << " or Value " << dat[1] << " out of range.";
698 T::Error(msg);
699 return false;
700 }
701
702
703 return T::GetCurrentState();
704 }
705
706 int SetDac(const EventImp &evt)
707 {
708 if (!CheckEventSize(evt.GetSize(), "SetDac", 8))
709 return T::kSM_FatalError;
710
711 const uint32_t *dat = evt.Ptr<uint32_t>();
712
713 if (!Check(dat, FAD::kMaxDacAddr, FAD::kMaxDacValue))
714 return T::GetCurrentState();
715
716 for (BoardList::iterator i=fBoards.begin(); i!=fBoards.end(); i++)
717 i->second.second->CmdSetDacValue(dat[0], dat[1]);
718
719 return T::GetCurrentState();
720 }
721
722 int Trigger(int n)
723 {
724 for (int nn=0; nn<n; nn++)
725 for (BoardList::iterator i=fBoards.begin(); i!=fBoards.end(); i++)
726 i->second.second->Cmd(FAD::kCmdSingleTrigger);
727
728 return T::GetCurrentState();
729 }
730
731 int SendTriggers(const EventImp &evt)
732 {
733 if (!CheckEventSize(evt.GetSize(), "SendTriggers", 4))
734 return T::kSM_FatalError;
735
736 Trigger(evt.GetUInt());
737
738 return T::GetCurrentState();
739 }
740
741 int StartRun(const EventImp &evt, bool start)
742 {
743 if (!CheckEventSize(evt.GetSize(), "StartRun", 0))
744 return T::kSM_FatalError;
745
746 for (BoardList::iterator i=fBoards.begin(); i!=fBoards.end(); i++)
747 i->second.second->Cmd(FAD::kCmdRun, start);
748
749 return T::GetCurrentState();
750 }
751
752 int PhaseShift(const EventImp &evt)
753 {
754 if (!CheckEventSize(evt.GetSize(), "PhaseShift", 2))
755 return T::kSM_FatalError;
756
757 for (BoardList::iterator i=fBoards.begin(); i!=fBoards.end(); i++)
758 i->second.second->CmdPhaseShift(evt.GetShort());
759
760 return T::GetCurrentState();
761 }
762
763 int SetTriggerRate(const EventImp &evt)
764 {
765 if (!CheckEventSize(evt.GetSize(), "SetTriggerRate", 4))
766 return T::kSM_FatalError;
767
768 if (evt.GetUShort()>0xff)
769 {
770 ostringstream msg;
771 msg << hex << "Value " << evt.GetUShort() << " out of range, max=" << 0xff << "(?)";
772 T::Error(msg);
773 return false;
774 }
775
776 for (BoardList::iterator i=fBoards.begin(); i!=fBoards.end(); i++)
777 i->second.second->CmdSetTriggerRate(evt.GetUInt());
778
779 return T::GetCurrentState();
780 }
781
782 int SetRunNumber(const EventImp &evt)
783 {
784 if (!CheckEventSize(evt.GetSize(), "SetRunNumber", 8))
785 return T::kSM_FatalError;
786
787 const uint64_t num = evt.GetUXtra();
788
789 if (num>FAD::kMaxRunNumber)
790 {
791 ostringstream msg;
792 msg << hex << "Value " << num << " out of range, max=" << FAD::kMaxRunNumber;
793 T::Error(msg);
794 return false;
795 }
796
797 for (BoardList::iterator i=fBoards.begin(); i!=fBoards.end(); i++)
798 i->second.second->CmdSetRunNumber(num);
799
800 return T::GetCurrentState();
801 }
802
803 int Test(const EventImp &evt)
804 {
805 if (!CheckEventSize(evt.GetSize(), "Test", 2))
806 return T::kSM_FatalError;
807
808
809 SetMode(evt.GetShort());
810
811 return T::GetCurrentState();
812 }
813
814
815 int SetVerbosity(const EventImp &evt)
816 {
817 if (!CheckEventSize(evt.GetSize(), "SetVerbosity", 1))
818 return T::kSM_FatalError;
819
820 for (BoardList::iterator i=fBoards.begin(); i!=fBoards.end(); i++)
821 i->second.second->SetVerbose(evt.GetBool());
822
823 return T::GetCurrentState();
824 }
825
826 int SetHexOutput(const EventImp &evt)
827 {
828 if (!CheckEventSize(evt.GetSize(), "SetHexOutput", 1))
829 return T::kSM_FatalError;
830
831 for (BoardList::iterator i=fBoards.begin(); i!=fBoards.end(); i++)
832 i->second.second->SetHexOutput(evt.GetBool());
833
834 return T::GetCurrentState();
835 }
836
837 int SetDataOutput(const EventImp &evt)
838 {
839 if (!CheckEventSize(evt.GetSize(), "SetDataOutput", 1))
840 return T::kSM_FatalError;
841
842 for (BoardList::iterator i=fBoards.begin(); i!=fBoards.end(); i++)
843 i->second.second->SetDataOutput(evt.GetBool());
844
845 return T::GetCurrentState();
846 }
847
848 const BoardList::iterator GetSlot(uint16_t slot)
849 {
850 const BoardList::iterator it=fBoards.find(slot);
851 if (it==fBoards.end())
852 {
853 ostringstream str;
854 str << "Slot " << slot << " not found.";
855 T::Warn(str);
856 }
857
858 return it;
859 }
860
861 int PrintEvent(const EventImp &evt)
862 {
863 if (!CheckEventSize(evt.GetSize(), "PrintEvent", 2))
864 return T::kSM_FatalError;
865
866 const int16_t slot = evt.Get<int16_t>();
867
868 if (slot<0)
869 {
870 for (BoardList::iterator i=fBoards.begin(); i!=fBoards.end(); i++)
871 i->second.second->PrintEvent();
872 }
873 else
874 {
875 const BoardList::iterator it=GetSlot(slot);
876 if (it!=fBoards.end())
877 it->second.second->PrintEvent();
878 }
879
880 return T::GetCurrentState();
881 }
882
883 int SetBlockTransmission(const EventImp &evt)
884 {
885 if (!CheckEventSize(evt.GetSize(), "SetBlockTransmission", 3))
886 return T::kSM_FatalError;
887
888 const int16_t slot = evt.Get<int32_t>();
889
890 const BoardList::iterator it=GetSlot(slot);
891 if (it!=fBoards.end())
892 it->second.second->SetBlockTransmission(evt.Get<uint8_t>(2));
893
894 return T::GetCurrentState();
895 }
896
897 int SetBlockTransmissionRange(const EventImp &evt)
898 {
899 if (!CheckEventSize(evt.GetSize(), "SetBlockTransmissionRange", 5))
900 return T::kSM_FatalError;
901
902 const int16_t *slot = evt.Ptr<int16_t>();
903 const bool block = evt.Get<uint8_t>(4);
904
905 for (int i=slot[0]; i<=slot[1]; i++)
906 {
907 const BoardList::iterator it=GetSlot(i);
908 if (it!=fBoards.end())
909 it->second.second->SetBlockTransmission(block);
910 }
911
912 return T::GetCurrentState();
913 }
914
915 int SetIgnoreSlot(const EventImp &evt)
916 {
917 if (!CheckEventSize(evt.GetSize(), "SetIgnoreSlot", 3))
918 return T::kSM_FatalError;
919
920 const uint16_t slot = evt.Get<uint16_t>();
921
922 if (slot>39)
923 {
924 T::Warn("Slot out of range (0-39).");
925 return T::GetCurrentState();
926 }
927
928 SetIgnore(slot, evt.Get<uint8_t>(2));
929
930 return T::GetCurrentState();
931 }
932
933 int SetIgnoreSlots(const EventImp &evt)
934 {
935 if (!CheckEventSize(evt.GetSize(), "SetIgnoreSlots", 5))
936 return T::kSM_FatalError;
937
938 const int16_t *slot = evt.Ptr<int16_t>();
939 const bool block = evt.Get<uint8_t>(4);
940
941 if (slot[0]<0 || slot[1]>39 || slot[0]>slot[1])
942 {
943 T::Warn("Slot out of range.");
944 return T::GetCurrentState();
945 }
946
947 for (int i=slot[0]; i<=slot[1]; i++)
948 SetIgnore(i, block);
949
950 return T::GetCurrentState();
951 }
952
953 int SetDumpStream(const EventImp &evt)
954 {
955 if (!CheckEventSize(evt.GetSize(), "SetDumpStream", 1))
956 return T::kSM_FatalError;
957
958 SetDebugStream(evt.Get<uint8_t>());
959
960 return T::GetCurrentState();
961 }
962
963 int SetDumpRecv(const EventImp &evt)
964 {
965 if (!CheckEventSize(evt.GetSize(), "SetDumpRecv", 1))
966 return T::kSM_FatalError;
967
968 SetDebugRead(evt.Get<uint8_t>());
969
970 return T::GetCurrentState();
971 }
972
973 int AddAddress(const EventImp &evt)
974 {
975 const string addr = Tools::Trim(evt.GetText());
976
977 const tcp::endpoint endpoint = GetEndpoint(addr);
978 if (endpoint==tcp::endpoint())
979 return T::GetCurrentState();
980
981 for (BoardList::const_iterator i=fBoards.begin(); i!=fBoards.end(); i++)
982 {
983 if (i->second.first==endpoint)
984 {
985 T::Warn("Address "+addr+" already known.... ignored.");
986 return T::GetCurrentState();
987 }
988 }
989
990 AddEndpoint(endpoint);
991
992 return T::GetCurrentState();
993 }
994
995 int RemoveSlot(const EventImp &evt)
996 {
997 if (!CheckEventSize(evt.GetSize(), "RemoveSlot", 2))
998 return T::kSM_FatalError;
999
1000 const int16_t slot = evt.GetShort();
1001
1002 const BoardList::iterator it = GetSlot(slot);
1003
1004 if (it==fBoards.end())
1005 return T::GetCurrentState();
1006
1007 ConnectSlot(slot, tcp::endpoint());
1008
1009 delete it->second.second;
1010 fBoards.erase(it);
1011
1012 return T::GetCurrentState();
1013 }
1014
1015 int ListSlots()
1016 {
1017 for (BoardList::iterator i=fBoards.begin(); i!=fBoards.end(); i++)
1018 {
1019 const int &idx = i->first;
1020 const Connection &slot = i->second;
1021
1022 ostringstream str;
1023 str << "Slot " << setw(2) << idx << ": " << slot.first;
1024
1025 const ConnectionFAD *c = slot.second;
1026
1027 if (c->IsConnecting())
1028 str << " (0:connecting, ";
1029 else
1030 {
1031 if (c->IsClosed())
1032 str << " (0:disconnected, ";
1033 if (c->IsConnected())
1034 str << " (0:connected, ";
1035 }
1036
1037 switch (fStatus2[idx])
1038 {
1039 case 0: str << "1-7:not connected)"; break;
1040 case 7: str << "1-7:connected)"; break;
1041 default: str << "1-7:connecting [" << (int)fStatus2[idx] << "])"; break;
1042 }
1043
1044 if (c->IsTransmissionBlocked())
1045 str << " [cmd_blocked]";
1046
1047 if (fStatus2[idx]==7 && IsIgnored(idx))
1048 str << " [data_ignored]";
1049
1050 T::Out() << str.str() << endl;
1051 }
1052
1053 T::Out() << "Event builder thread:";
1054 if (!IsThreadRunning())
1055 T::Out() << " not";
1056 T::Out() << " running" << endl;
1057
1058 // FIXME: Output state
1059
1060 return T::GetCurrentState();
1061 }
1062
1063 void EnableConnection(Connection &c, bool enable=true)
1064 {
1065 ConnectionFAD *ptr = c.second;
1066 if (!ptr)
1067 return;
1068
1069 if (!enable)
1070 {
1071 ptr->PostClose(false);
1072 return;
1073 }
1074
1075 ostringstream str;
1076 str << c.first;
1077
1078 if (!ptr->IsDisconnected())
1079 {
1080 T::Warn("Connection to "+str.str()+" already in progress.");
1081 return;
1082 }
1083
1084 ptr->SetEndpoint(str.str());
1085 ptr->StartConnect();
1086 }
1087
1088 void EnableAll(bool enable=true)
1089 {
1090 for (BoardList::iterator i=fBoards.begin(); i!=fBoards.end(); i++)
1091 EnableConnection(i->second, enable);
1092 }
1093
1094 int CloseOpenFiles()
1095 {
1096 EventBuilderWrapper::CloseOpenFiles();
1097 return T::GetCurrentState();
1098 }
1099
1100 int EnableSlot(const EventImp &evt, bool enable)
1101 {
1102 if (!CheckEventSize(evt.GetSize(), "EnableSlot", 2))
1103 return T::kSM_FatalError;
1104
1105 const int16_t slot = evt.GetShort();
1106
1107 const BoardList::iterator it = GetSlot(slot);
1108 if (it==fBoards.end())
1109 return T::GetCurrentState();
1110
1111 EnableConnection(it->second, enable);
1112 ConnectSlot(it->first, enable ? it->second.first : tcp::endpoint());
1113
1114 return T::GetCurrentState();
1115 }
1116
1117 int ToggleSlot(const EventImp &evt)
1118 {
1119 if (!CheckEventSize(evt.GetSize(), "ToggleSlot", 2))
1120 return T::kSM_FatalError;
1121
1122 const int16_t slot = evt.GetShort();
1123
1124 const BoardList::iterator it = GetSlot(slot);
1125 if (it==fBoards.end())
1126 return T::GetCurrentState();
1127
1128 const bool enable = it->second.second->IsDisconnected() && fStatus2[slot]==0;
1129
1130 EnableConnection(it->second, enable);
1131 ConnectSlot(it->first, enable ? it->second.first : tcp::endpoint());
1132
1133 return T::GetCurrentState();
1134 }
1135
1136 int StartConnection()
1137 {
1138 vector<tcp::endpoint> addr(40);
1139
1140 for (BoardList::iterator i=fBoards.begin(); i!=fBoards.end(); i++)
1141 addr[i->first] = i->second.first;
1142
1143 StartThread(addr);
1144 EnableAll(true);
1145
1146 return T::GetCurrentState();
1147 }
1148
1149 int StopConnection()
1150 {
1151 Exit();
1152 EnableAll(false);
1153 return T::GetCurrentState();
1154 }
1155
1156 int AbortConnection()
1157 {
1158 Abort();
1159 EnableAll(false);
1160 return T::GetCurrentState();
1161 }
1162
1163 vector<uint8_t> fStatus1;
1164 vector<uint8_t> fStatus2;
1165
1166 int Execute()
1167 {
1168 // Dispatch (execute) at most one handler from the queue. In contrary
1169 // to run_one(), it doesn't wait until a handler is available
1170 // which can be dispatched, so poll_one() might return with 0
1171 // handlers dispatched. The handlers are always dispatched/executed
1172 // synchronously, i.e. within the call to poll_one()
1173 poll_one();
1174
1175 // ===== Evaluate connection status =====
1176
1177 uint16_t nclosed1 = 0;
1178 uint16_t nconnecting1 = 0;
1179 uint16_t nconnecting2 = 0;
1180 uint16_t nconnected1 = 0;
1181 uint16_t nconnected2 = 0;
1182
1183 vector<uint8_t> stat1(40);
1184 vector<uint8_t> stat2(40);
1185
1186 int cnt = 0; // counter for enbled board
1187
1188 for (int idx=0; idx<40; idx++)
1189 {
1190 // ----- Command socket -----
1191 const BoardList::const_iterator &slot = fBoards.find(idx);
1192 if (slot!=fBoards.end())
1193 {
1194 const ConnectionFAD *c = slot->second.second;
1195 if (c->IsDisconnected())
1196 {
1197 stat1[idx] = 0;
1198 nclosed1++;
1199 }
1200 if (c->IsConnecting())
1201 {
1202 stat1[idx] = 1;
1203 nconnecting1++;
1204 }
1205 if (c->IsConnected())
1206 {
1207 stat1[idx] = 2;
1208 nconnected1++;
1209 }
1210
1211 cnt++;
1212 }
1213
1214 // ----- Event builder -----
1215 stat2[idx] = GetNumConnected(idx);
1216
1217 if (!IsConnected(idx) && !IsDisconnected(idx))
1218 nconnecting2++;
1219
1220 if (IsConnected(idx))
1221 nconnected2++;
1222 }
1223
1224 // ===== Send connection status via dim =====
1225
1226 if (fStatus1!=stat1 || fStatus2!=stat2)
1227 {
1228 fStatus1 = stat1;
1229 fStatus2 = stat2;
1230 UpdateConnectionStatus(stat1, stat2);
1231 }
1232
1233 // ===== Return connection status =====
1234
1235 // fadctrl: Always connecting if not disabled
1236 // event builder:
1237 if (nconnecting1==0 && nconnected1>0 &&
1238 nconnected2==nconnected1)
1239 return FAD::kConnected;
1240
1241 if (nconnecting1>0 || nconnecting2>0 || nconnected1!=nconnected2)
1242 return FAD::kConnecting;
1243
1244// cout << 1 << " " << nconnecting1 << " " << nconnected1 << " " << nclosed1 << endl;
1245// cout << 2 << " " << nconnecting2 << " " << nconnected2 << endl;
1246
1247 // nconnected1 == nconnected2 == 0
1248 return IsThreadRunning() ? FAD::kDisconnected : FAD::kOffline;
1249 }
1250
1251 void AddEndpoint(const tcp::endpoint &addr)
1252 {
1253 int i=0;
1254 while (i<40)
1255 {
1256 if (fBoards.find(i)==fBoards.end())
1257 break;
1258 i++;
1259 }
1260
1261 if (i==40)
1262 {
1263 T::Warn("Not more than 40 slots allowed.");
1264 return;
1265 }
1266
1267 fBoards[i] = make_pair(addr, new ConnectionFAD(*this, *this));
1268 fBoards[i].second->SetVerbose(fIsVerbose);
1269 fBoards[i].second->SetHexOutput(fIsHexOutput);
1270 fBoards[i].second->SetDataOutput(fIsDataOutput);
1271 }
1272
1273
1274 DimDescribedService fDimConnection;
1275 /*
1276 template<class T>
1277 void Update(DimDescribedService &svc, const T &data) const
1278 {
1279 //cout << "Update: " << svc.getName() << " (" << sizeof(T) << ")" << endl;
1280 svc.setData(const_cast<T*>(&data), sizeof(T));
1281 svc.updateService();
1282 }
1283 */
1284 void UpdateConnectionStatus(const vector<uint8_t> &stat1, const vector<uint8_t> &stat2)
1285 {
1286 vector<uint8_t> stat(40);
1287
1288 for (int i=0; i<40; i++)
1289 stat[i] = stat1[i]+stat2[i];
1290
1291 fDimConnection.setData(stat.data(), 40);
1292 fDimConnection.updateService();
1293 }
1294
1295public:
1296 StateMachineFAD(ostream &out=cout) :
1297 T(out, "FAD_CONTROL"), EventBuilderWrapper(*static_cast<MessageImp*>(this)), ba::io_service::work(static_cast<ba::io_service&>(*this)),
1298 fStatus1(40), fStatus2(40),
1299 fDimConnection("FAD_CONTROL/CONNECTIONS", "C:40", "")
1300 {
1301 // ba::io_service::work is a kind of keep_alive for the loop.
1302 // It prevents the io_service to go to stopped state, which
1303 // would prevent any consecutive calls to run()
1304 // or poll() to do nothing. reset() could also revoke to the
1305 // previous state but this might introduce some overhead of
1306 // deletion and creation of threads and more.
1307
1308 // State names
1309 T::AddStateName(FAD::kOffline, "Disengaged",
1310 "All enabled FAD boards are disconnected and the event-builer thread is not running.");
1311
1312 T::AddStateName(FAD::kDisconnected, "Disconnected",
1313 "All enabled FAD boards are disconnected, but the event-builder thread is running.");
1314
1315 T::AddStateName(FAD::kConnecting, "Connecting",
1316 "Only some enabled FAD boards are connected.");
1317
1318 T::AddStateName(FAD::kConnected, "Connected",
1319 "All enabled FAD boards are connected..");
1320
1321 // FAD Commands
1322 T::AddEvent("SEND_CMD", "I:1")
1323 (boost::bind(&StateMachineFAD::SendCmd, this, _1))
1324 ("Send a command to the FADs. Values between 0 and 0xffff are allowed."
1325 "|command[uint16]:Command to be transmittted.");
1326 T::AddEvent("SEND_DATA", "I:2")
1327 (boost::bind(&StateMachineFAD::SendCmdData, this, _1))
1328 ("Send a command with data to the FADs. Values between 0 and 0xffff are allowed."
1329 "|command[uint16]:Command to be transmittted."
1330 "|data[uint16]:Data to be sent with the command.");
1331
1332 T::AddEvent("ENABLE_SRCLK", "B:1")
1333 (boost::bind(&StateMachineFAD::CmdEnable, this, _1, FAD::kCmdSrclk))
1334 ("Set SRCLK");
1335 T::AddEvent("ENABLE_SCLK", "B:1")
1336 (boost::bind(&StateMachineFAD::CmdEnable, this, _1, FAD::kCmdSclk))
1337 ("Set SCLK");
1338 T::AddEvent("ENABLE_DRS", "B:1")
1339 (boost::bind(&StateMachineFAD::CmdEnable, this, _1, FAD::kCmdDrsEnable))
1340 ("Switch Domino wave");
1341 T::AddEvent("ENABLE_DWRITE", "B:1")
1342 (boost::bind(&StateMachineFAD::CmdEnable, this, _1, FAD::kCmdDwrite))
1343 ("Set Dwrite (possibly high / always low)");
1344 T::AddEvent("SET_DEBUG_MODE", "B:1")
1345 (boost::bind(&StateMachineFAD::CmdEnable, this, _1, FAD::kCmdSocket))
1346 ("Set debug mode (yes: dump events through command socket, no=dump events through other sockets)");
1347 T::AddEvent("ENABLE_TRIGGER_LINE", "B:1")
1348 (boost::bind(&StateMachineFAD::CmdEnable, this, _1, FAD::kCmdTriggerLine))
1349 ("Incoming triggers can be accepted/will not be accepted");
1350 T::AddEvent("SET_TRIGGER_RATE", "I:1")
1351 (boost::bind(&StateMachineFAD::SetTriggerRate, this, _1))
1352 ("Enable continous trigger");
1353 T::AddEvent("SEND_SINGLE_TRIGGER")
1354 (boost::bind(&StateMachineFAD::Trigger, this, 1))
1355 ("Issue software triggers");
1356 T::AddEvent("SEND_N_TRIGGERS", "I")
1357 (boost::bind(&StateMachineFAD::SendTriggers, this, _1))
1358 ("Issue software triggers");
1359 T::AddEvent("START_RUN", "")
1360 (boost::bind(&StateMachineFAD::StartRun, this, _1, true))
1361 ("Set FAD DAQ mode. when started, no configurations must be send.");
1362 T::AddEvent("STOP_RUN")
1363 (boost::bind(&StateMachineFAD::StartRun, this, _1, false))
1364 ("");
1365 T::AddEvent("PHASE_SHIFT", "S:1")
1366 (boost::bind(&StateMachineFAD::PhaseShift, this, _1))
1367 ("Adjust ADC phase (in 'steps')");
1368
1369 T::AddEvent("CONTINOUS_TRIGGER_ON")
1370 (boost::bind(&StateMachineFAD::Cmd, this, FAD::kCmdContTriggerOn))
1371 ("");
1372 T::AddEvent("CONTINOUS_TRIGGER_OFF")
1373 (boost::bind(&StateMachineFAD::Cmd, this, FAD::kCmdContTriggerOff))
1374 ("");
1375
1376 T::AddEvent("RESET_TRIGGER_ID")
1377 (boost::bind(&StateMachineFAD::Cmd, this, FAD::kCmdResetTriggerId))
1378 ("");
1379
1380 T::AddEvent("SET_RUN_NUMBER", "X:1")
1381 (boost::bind(&StateMachineFAD::SetRunNumber, this, _1))
1382 ("");
1383
1384 T::AddEvent("SET_REGISTER", "I:2")
1385 (boost::bind(&StateMachineFAD::SetRegister, this, _1))
1386 ("set register to value"
1387 "|addr[short]:Address of register"
1388 "|val[short]:Value to be set");
1389
1390 // FIXME: Maybe add a mask which channels should be set?
1391 T::AddEvent("SET_REGION_OF_INTEREST", "I:2")
1392 (boost::bind(&StateMachineFAD::SetRoi, this, _1))
1393 ("Set region-of-interest to value"
1394 "|addr[short]:Address of register"
1395 "|val[short]:Value to be set");
1396
1397 // FIXME: Maybe add a mask which channels should be set?
1398 T::AddEvent("SET_DAC_VALUE", "I:2")
1399 (boost::bind(&StateMachineFAD::SetDac, this, _1))
1400 ("Set DAC numbers in range to value"
1401 "|addr[short]:Address of register"
1402 "|val[short]:Value to be set");
1403
1404 // Verbosity commands
1405 T::AddEvent("SET_VERBOSE", "B:1")
1406 (boost::bind(&StateMachineFAD::SetVerbosity, this, _1))
1407 ("set verbosity state"
1408 "|verbosity[bool]:disable or enable verbosity for received data (yes/no), except dynamic data");
1409
1410 T::AddEvent("SET_HEX_OUTPUT", "B:1")
1411 (boost::bind(&StateMachineFAD::SetHexOutput, this, _1))
1412 ("enable or disable hex output for received data"
1413 "|hexout[bool]:disable or enable hex output for received data (yes/no)");
1414
1415 T::AddEvent("SET_DATA_OUTPUT", "B:1")
1416 (boost::bind(&StateMachineFAD::SetDataOutput, this, _1))
1417 ("");
1418
1419 T::AddEvent("PRINT_EVENT", "S:1")
1420 (boost::bind(&StateMachineFAD::PrintEvent, this, _1))
1421 ("Print (last) event"
1422 "|board[short]:slot from which the event should be printed (-1 for all)");
1423
1424 T::AddEvent("DUMP_STREAM", "B:1")
1425 (boost::bind(&StateMachineFAD::SetDumpStream, this, _1))
1426 ("For debugging purpose: the binary data stream read from the sockets 0-7 can be dumped to files."
1427 "|switch[bool]:Enable (yes) or disable (no)");
1428
1429 T::AddEvent("DUMP_RECV", "B:1")
1430 (boost::bind(&StateMachineFAD::SetDumpRecv, this, _1))
1431 ("For debugging purpose: the times when data has been receives are dumped to a file."
1432 "|switch[bool]:Enable (yes) or disable (no)");
1433
1434 T::AddEvent("BLOCK_TRANSMISSION", "S:1;B:1")
1435 (boost::bind(&StateMachineFAD::SetBlockTransmission, this, _1))
1436 ("Blocks the transmission of commands to the given slot. Use with care! For debugging pupose only!"
1437 "|slot[short]:Slot to which the command transmission should be blocked (0-39)"
1438 "|enable[bool]:Whether the command transmission should be blockes (yes) or allowed (no)");
1439
1440 T::AddEvent("BLOCK_TRANSMISSION_RANGE", "S:2;B:1")
1441 (boost::bind(&StateMachineFAD::SetBlockTransmissionRange, this, _1))
1442 ("Blocks the transmission of commands to the given range of slots. Use with care! For debugging pupose only!"
1443 "|first[short]:First slot to which the command transmission should be blocked (0-39)"
1444 "|last[short]:Last slot to which the command transmission should be blocked (0-39)"
1445 "|enable[bool]:Whether the command transmission should be blockes (yes) or allowed (no)");
1446
1447 T::AddEvent("IGNORE_EVENTS", "S:1;B:1")
1448 (boost::bind(&StateMachineFAD::SetIgnoreSlot, this, _1))
1449 ("Instructs the event-builder to ignore events from the given slot but still read the data from the socket."
1450 "|slot[short]:Slot from which the data should be ignored when building events"
1451 "|enable[bool]:Whether the event builder should ignore data from this slot (yes) or allowed (no)");
1452
1453 T::AddEvent("IGNORE_EVENTS_RANGE", "S:2;B:1")
1454 (boost::bind(&StateMachineFAD::SetIgnoreSlots, this, _1))
1455 ("Instructs the event-builder to ignore events from the given slot but still read the data from the socket."
1456 "|first[short]:First slot from which the data should be ignored when building events"
1457 "|last[short]:Last slot from which the data should be ignored when building events"
1458 "|enable[bool]:Whether the event builder should ignore data from this slot (yes) or allowed (no)");
1459
1460 // Conenction commands
1461 T::AddEvent("START", FAD::kOffline)
1462 (boost::bind(&StateMachineFAD::StartConnection, this))
1463 ("Start EventBuilder thread and connect all valid slots.");
1464
1465 T::AddEvent("STOP", FAD::kDisconnected, FAD::kConnecting, FAD::kConnected)
1466 (boost::bind(&StateMachineFAD::StopConnection, this))
1467 ("Stop EventBuilder thread (still write buffered events) and disconnect all slots.");
1468
1469 T::AddEvent("ABORT", FAD::kDisconnected, FAD::kConnecting, FAD::kConnected)
1470 (boost::bind(&StateMachineFAD::AbortConnection, this))
1471 ("Immediately abort EventBuilder thread and disconnect all slots.");
1472
1473 T::AddEvent("CONNECT", "S:1", FAD::kDisconnected, FAD::kConnecting, FAD::kConnected)
1474 (boost::bind(&StateMachineFAD::EnableSlot, this, _1, true))
1475 ("Connect a disconnected slot.");
1476
1477 T::AddEvent("DISCONNECT", "S:1", FAD::kConnecting, FAD::kConnected)
1478 (boost::bind(&StateMachineFAD::EnableSlot, this, _1, false))
1479 ("Disconnect a connected slot.");
1480
1481 T::AddEvent("TOGGLE", "S:1", FAD::kDisconnected, FAD::kConnecting, FAD::kConnected)
1482 (boost::bind(&StateMachineFAD::ToggleSlot, this, _1))
1483 ("");
1484
1485 T::AddEvent("CLOSE_OPEN_FILES", FAD::kConnecting, FAD::kConnected)
1486 (boost::bind(&StateMachineFAD::CloseOpenFiles, this))
1487 ("Close all run files opened by the EventBuilder.");
1488
1489 T::AddEvent("TEST", "S:1")
1490 (boost::bind(&StateMachineFAD::Test, this, _1))
1491 ("");
1492
1493 T::AddEvent("ADD_ADDRESS", "C", FAD::kOffline)
1494 (boost::bind(&StateMachineFAD::AddAddress, this, _1))
1495 ("Add the address of a DRS4 board to the first free slot"
1496 "|IP[string]:address in the format <address:port>");
1497 T::AddEvent("REMOVE_SLOT", "S:1", FAD::kOffline)
1498 (boost::bind(&StateMachineFAD::RemoveSlot, this, _1))
1499 ("Remove the Iaddress in slot n. For a list see LIST"
1500 "|slot[short]:Remove the address in slot n from the list");
1501 T::AddEvent("LIST_SLOTS")
1502 (boost::bind(&StateMachineFAD::ListSlots, this))
1503 ("Print a list of all available board addressesa and whether they are enabled");
1504 }
1505
1506 ~StateMachineFAD()
1507 {
1508 for (BoardList::const_iterator i=fBoards.begin(); i!=fBoards.end(); i++)
1509 delete i->second.second;
1510 fBoards.clear();
1511 }
1512
1513 tcp::endpoint GetEndpoint(const string &base)
1514 {
1515 const size_t p0 = base.find_first_of(':');
1516 const size_t p1 = base.find_last_of(':');
1517
1518 if (p0==string::npos || p0!=p1)
1519 {
1520 T::Out() << kRed << "GetEndpoint - Wrong format ('host:port' expected)" << endl;
1521 return tcp::endpoint();
1522 }
1523
1524 tcp::resolver resolver(get_io_service());
1525
1526 boost::system::error_code ec;
1527
1528 const tcp::resolver::query query(base.substr(0, p0), base.substr(p0+1));
1529 const tcp::resolver::iterator iterator = resolver.resolve(query, ec);
1530
1531 if (ec)
1532 {
1533 T::Out() << kRed << "GetEndpoint - Couldn't resolve endpoint '" << base << "': " << ec.message();
1534 return tcp::endpoint();
1535 }
1536
1537 return *iterator;
1538 }
1539
1540 bool SetConfiguration(const Configuration &conf)
1541 {
1542 fIsVerbose = !conf.Get<bool>("quiet");
1543 fIsHexOutput = conf.Get<bool>("hex-out");
1544 fIsDataOutput = conf.Get<bool>("data-out");
1545
1546 SetMaxMemory(conf.Get<unsigned int>("max-mem"));
1547
1548 // vvvvv for debugging vvvvv
1549 if (conf.Has("debug-addr"))
1550 {
1551 const string addr = conf.Get<string>("debug-addr");
1552 const int num = conf.Get<unsigned int>("debug-num");
1553
1554 const tcp::endpoint endpoint = GetEndpoint(addr);
1555 if (endpoint==tcp::endpoint())
1556 return false;
1557
1558 for (int i=0; i<num; i++)
1559 AddEndpoint(tcp::endpoint(endpoint.address(), endpoint.port()+8*i));
1560
1561 StartConnection();
1562 return true;
1563 }
1564 // ^^^^^ for debugging ^^^^^
1565
1566 if (!(conf.Has("base-addr") ^ conf.Has("addr")))
1567 {
1568 T::Out() << kRed << "SetConfiguration - Only --base-addr or --addr allowed." << endl;
1569 return false;
1570 }
1571
1572 if (conf.Has("base-addr"))
1573 {
1574 string base = conf.Get<string>("base-addr");
1575
1576 if (base=="def" || base =="default")
1577 base = "10.0.128.128:5000";
1578
1579 const tcp::endpoint endpoint = GetEndpoint(base);
1580 if (endpoint==tcp::endpoint())
1581 return false;
1582
1583 const ba::ip::address_v4::bytes_type ip = endpoint.address().to_v4().to_bytes();
1584
1585 if (ip[2]>250 || ip[3]>244)
1586 {
1587 T::Out() << kRed << "SetConfiguration - IP address given by --base-addr out-of-range." << endl;
1588 return false;
1589 }
1590
1591 for (int crate=0; crate<4; crate++)
1592 for (int board=0; board<10; board++)
1593 {
1594 ba::ip::address_v4::bytes_type target = endpoint.address().to_v4().to_bytes();
1595 target[2] += crate;
1596 target[3] += board;
1597
1598 AddEndpoint(tcp::endpoint(ba::ip::address_v4(target), endpoint.port()));
1599 }
1600 }
1601
1602 if (conf.Has("addr"))
1603 {
1604 const vector<string> addrs = conf.Get<vector<string>>("addr");
1605 for (vector<string>::const_iterator i=addrs.begin(); i<addrs.end(); i++)
1606 {
1607 const tcp::endpoint endpoint = GetEndpoint(*i);
1608 if (endpoint==tcp::endpoint())
1609 return false;
1610
1611 AddEndpoint(endpoint);
1612 }
1613 }
1614
1615 StartConnection();
1616
1617 return true;
1618 }
1619
1620};
1621
1622// ------------------------------------------------------------------------
1623
1624
1625void RunThread(StateMachineImp *io_service)
1626{
1627 // This is necessary so that the StateMachien Thread can signal the
1628 // Readline to exit
1629 io_service->Run();
1630 Readline::Stop();
1631}
1632
1633/*
1634template<class S>
1635int RunDim(Configuration &conf)
1636{
1637 WindowLog wout;
1638
1639 ReadlineColor::PrintBootMsg(wout, conf.GetName(), false);
1640
1641 if (conf.Has("log"))
1642 if (!wout.OpenLogFile(conf.Get<string>("log")))
1643 wout << kRed << "ERROR - Couldn't open log-file " << conf.Get<string>("log") << ": " << strerror(errno) << endl;
1644
1645 // Start io_service.Run to use the StateMachineImp::Run() loop
1646 // Start io_service.run to only use the commandHandler command detaching
1647 StateMachineFAD<S> io_service(wout);
1648 if (!io_service.SetConfiguration(conf))
1649 return -1;
1650
1651 io_service.Run();
1652
1653 return 0;
1654}
1655*/
1656
1657template<class T, class S>
1658int RunShell(Configuration &conf)
1659{
1660 static T shell(conf.GetName().c_str(), conf.Get<int>("console")!=1);
1661
1662 WindowLog &win = shell.GetStreamIn();
1663 WindowLog &wout = shell.GetStreamOut();
1664
1665 if (conf.Has("log"))
1666 if (!wout.OpenLogFile(conf.Get<string>("log")))
1667 win << kRed << "ERROR - Couldn't open log-file " << conf.Get<string>("log") << ": " << strerror(errno) << endl;
1668
1669 StateMachineFAD<S> io_service(wout);
1670 if (!io_service.SetConfiguration(conf))
1671 return -1;
1672
1673 shell.SetReceiver(io_service);
1674
1675 boost::thread t(boost::bind(RunThread, &io_service));
1676 //boost::thread t(boost::bind(&StateMachineFAD<S>::Run, &io_service));
1677
1678 if (conf.Has("exec"))
1679 {
1680 const vector<string> v = conf.Get<vector<string>>("exec");
1681 for (vector<string>::const_iterator it=v.begin(); it!=v.end(); it++)
1682 shell.Execute(*it);
1683 }
1684
1685 shell.Run(); // Run the shell
1686 io_service.Stop(); // Signal Loop-thread to stop
1687
1688 // Wait until the StateMachine has finished its thread
1689 // before returning and destroying the dim objects which might
1690 // still be in use.
1691 t.join();
1692
1693 return 0;
1694}
1695
1696void SetupConfiguration(Configuration &conf)
1697{
1698 const string n = conf.GetName()+".log";
1699
1700 po::options_description config("Program options");
1701 config.add_options()
1702 ("dns", var<string>("localhost"), "Dim nameserver host name (Overwites DIM_DNS_NODE environment variable)")
1703 ("log,l", var<string>(n), "Write log-file")
1704 ("no-dim,d", po_switch(), "Disable dim services")
1705 ("console,c", var<int>(), "Use console (0=shell, 1=simple buffered, X=simple unbuffered)")
1706 ("exec,e", vars<string>(), "Execute one or more scrips at startup")
1707 ;
1708
1709 po::options_description control("FAD control options");
1710 control.add_options()
1711 ("quiet,q", po_bool(), "Disable printing contents of all received messages in clear text.")
1712 ("hex-out", po_bool(), "Enable printing contents of all printed messages also as hex data.")
1713 ("data-out", po_bool(), "Enable printing received event data.")
1714 ;
1715
1716 po::options_description builder("Event builder options");
1717 builder.add_options()
1718 ("max-mem,m", var<unsigned int>(100), "Maximum memory the event builder thread is allowed to consume for its event buffer")
1719 ;
1720
1721 po::options_description connect("FAD connection options");
1722 connect.add_options()
1723 ("addr", vars<string>(), "Network address of FAD")
1724 ("base-addr", var<string>(), "Base address of all FAD")
1725 ("debug-num,n", var<unsigned int>(40), "Sets the number of fake boards to be connected locally")
1726 ("debug-addr", var<string>(), "")
1727 ;
1728
1729 conf.AddEnv("dns", "DIM_DNS_NODE");
1730
1731 conf.AddOptions(config);
1732 conf.AddOptions(control);
1733 conf.AddOptions(builder);
1734 conf.AddOptions(connect);
1735}
1736
1737void PrintUsage()
1738{
1739 cout <<
1740 "The fadctrl controls the FAD boards.\n"
1741 "\n"
1742 "The default is that the program is started without user intercation. "
1743 "All actions are supposed to arrive as DimCommands. Using the -c "
1744 "option, a local shell can be initialized. With h or help a short "
1745 "help message about the usuage can be brought to the screen.\n"
1746 "\n"
1747 "Usage: fadctrl [-c type] [OPTIONS]\n"
1748 " or: fadctrl [OPTIONS]\n";
1749 cout << endl;
1750}
1751
1752void PrintHelp()
1753{
1754 /* Additional help text which is printed after the configuration
1755 options goes here */
1756}
1757
1758int main(int argc, const char* argv[])
1759{
1760 Configuration conf(argv[0]);
1761 conf.SetPrintUsage(PrintUsage);
1762 SetupConfiguration(conf);
1763
1764 po::variables_map vm;
1765 try
1766 {
1767 vm = conf.Parse(argc, argv);
1768 }
1769#if BOOST_VERSION > 104000
1770 catch (po::multiple_occurrences &e)
1771 {
1772 cerr << "Program options invalid due to: " << e.what() << " of '" << e.get_option_name() << "'." << endl;
1773 return -1;
1774 }
1775#endif
1776 catch (exception& e)
1777 {
1778 cerr << "Program options invalid due to: " << e.what() << endl;
1779 return -1;
1780 }
1781
1782 if (conf.HasVersion() || conf.HasPrint())
1783 return -1;
1784
1785 if (conf.HasHelp())
1786 {
1787 PrintHelp();
1788 return -1;
1789 }
1790
1791 Dim::Setup(conf.Get<string>("dns"));
1792
1793// try
1794 {
1795 // No console access at all
1796 if (!conf.Has("console"))
1797 {
1798 if (conf.Get<bool>("no-dim"))
1799 return RunShell<LocalStream, StateMachine>(conf);
1800 else
1801 return RunShell<LocalStream, StateMachineDim>(conf);
1802 }
1803 // Cosole access w/ and w/o Dim
1804 if (conf.Get<bool>("no-dim"))
1805 {
1806 if (conf.Get<int>("console")==0)
1807 return RunShell<LocalShell, StateMachine>(conf);
1808 else
1809 return RunShell<LocalConsole, StateMachine>(conf);
1810 }
1811 else
1812 {
1813 if (conf.Get<int>("console")==0)
1814 return RunShell<LocalShell, StateMachineDim>(conf);
1815 else
1816 return RunShell<LocalConsole, StateMachineDim>(conf);
1817 }
1818 }
1819/* catch (std::exception& e)
1820 {
1821 cerr << "Exception: " << e.what() << endl;
1822 return -1;
1823 }*/
1824
1825 return 0;
1826}
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