Belle II Software  release-08-01-10
PXDUnpackerOldModule.cc
1 /**************************************************************************
2  * basf2 (Belle II Analysis Software Framework) *
3  * Author: The Belle II Collaboration *
4  * *
5  * See git log for contributors and copyright holders. *
6  * This file is licensed under LGPL-3.0, see LICENSE.md. *
7  **************************************************************************/
8 
9 #include <pxd/unpacking/PXDRawDataDefinitions.h>
10 #include <pxd/unpacking/PXDRawDataStructs.h>
11 #include <pxd/unpacking/PXDMappingLookup.h>
12 #include <pxd/modules/pxdUnpacking/PXDUnpackerOldModule.h>
13 #include <framework/datastore/DataStore.h>
14 #include <framework/logging/Logger.h>
15 #include <framework/datastore/StoreObjPtr.h>
16 
17 #include <boost/endian/arithmetic.hpp>
18 
19 using namespace std;
20 using namespace Belle2;
21 using namespace Belle2::PXD;
22 using namespace Belle2::PXD::PXDError;
23 
24 //-----------------------------------------------------------------
25 // Register the Module
26 //-----------------------------------------------------------------
27 REG_MODULE(PXDUnpackerOld);
28 
29 //-----------------------------------------------------------------
30 // Implementation
31 //-----------------------------------------------------------------
32 
36 
37 PXDUnpackerOldModule::PXDUnpackerOldModule() :
38  Module(),
39  m_storeRawHits(),
40  m_storeROIs(),
41  m_storeRawAdc()
42 {
43  //Set module properties
44  setDescription("Unpack Raw PXD Hits from ONSEN data stream");
46 
47  addParam("RawPXDsName", m_RawPXDsName, "The name of the StoreArray of RawPXDs to be processed", std::string(""));
48  addParam("PXDRawHitsName", m_PXDRawHitsName, "The name of the StoreArray of generated PXDRawHits", std::string(""));
49  addParam("PXDDAQEvtStatsName", m_PXDDAQEvtStatsName, "The name of the StoreObjPtr of generated PXDDAQEvtStats", std::string(""));
50  addParam("PXDRawAdcsName", m_PXDRawAdcsName, "The name of the StoreArray of generated PXDRawAdcs", std::string(""));
51  addParam("PXDRawROIsName", m_PXDRawROIsName, "The name of the StoreArray of generated PXDRawROIs", std::string(""));
52  addParam("DoNotStore", m_doNotStore, "only unpack and check, but do not store", false);
53 // addParam("CriticalErrorMask", m_criticalErrorMask, "Set error mask which stops processing by returning false by task", 0);
54  // m_criticalErrorMask not longer a aparameter
55  // the constructor default to zero anyway
56 // addParam("SuppressErrorMask", m_suppressErrorMask, "Set mask for errors msgs which are not printed", getSilenceMask());
57  // m_suppressErrorMask not longer a aparameter
58  m_suppressErrorMask = getSilenceMask();
59  addParam("ForceMapping", m_forceMapping, "Force Mapping even if DHH bit is NOT requesting it", false);
60  addParam("ForceNoMapping", m_forceNoMapping, "Force NO Mapping even if DHH bit is requesting it", false);
61  addParam("CheckPaddingCRC", m_checkPaddingCRC, "Check for susp. padding (debug option, many false positive)", false);
62  addParam("MaxDHPFrameDiff", m_maxDHPFrameDiff, "Maximum DHP Frame Nr Difference w/o reporting error", 2u);
63  addParam("FormatBonnDAQ", m_formatBonnDAQ, "ONSEN or BonnDAQ format", false);
64  addParam("Verbose", m_verbose, "Turn on extra verbosity for log-level debug", false);
65  addParam("ContinueOnError", m_continueOnError, "Continue package depacking on error (for debugging)", false);
66 // (
67 // /*EPXDErrFlag::c_DHC_END | EPXDErrFlag::c_DHE_START | EPXDErrFlag::c_DATA_OUTSIDE |*/
68 // EPXDErrFlag::c_FIX_SIZE | EPXDErrFlag::c_DHE_CRC | EPXDErrFlag::c_DHC_UNKNOWN | /*EPXDErrFlag::c_MERGER_CRC |*/
69 // EPXDErrFlag::c_DHP_SIZE | /*EPXDErrFlag::c_DHP_PIX_WO_ROW | EPXDErrFlag::c_DHE_START_END_ID | EPXDErrFlag::c_DHE_START_ID |*/
70 // EPXDErrFlag::c_DHE_START_WO_END | EPXDErrFlag::c_DHP_NOT_CONT
71 // ));
72 
73  // this is not really a parameter, it should be fixed.
74  m_errorSkipPacketMask[c_nrDHE_CRC] = true;
75  m_errorSkipPacketMask[c_nrFIX_SIZE] = true;
76 }
77 
79 {
80  // Required input
81  m_eventMetaData.isRequired();
82  // Optional input
83  m_storeRawPXD.isOptional(m_RawPXDsName);
84 
85  //Register output collections
86  m_storeRawHits.registerInDataStore(m_PXDRawHitsName, DataStore::EStoreFlags::c_ErrorIfAlreadyRegistered);
87  m_storeRawAdc.registerInDataStore(m_PXDRawAdcsName, DataStore::EStoreFlags::c_ErrorIfAlreadyRegistered);
88  m_storeROIs.registerInDataStore(m_PXDRawROIsName, DataStore::EStoreFlags::c_ErrorIfAlreadyRegistered);
89  m_storeDAQEvtStats.registerInDataStore(m_PXDDAQEvtStatsName, DataStore::EStoreFlags::c_ErrorIfAlreadyRegistered);
91 
92  B2DEBUG(29, "ForceMapping: " << m_forceMapping);
93  B2DEBUG(29, "ForceNoMapping: " << m_forceNoMapping);
94  B2DEBUG(29, "CheckPaddingCRC: " << m_checkPaddingCRC);
95  B2DEBUG(29, "MaxDHPFrameDiff: " << m_maxDHPFrameDiff);
96 
97  m_sendunfiltered = 0;
98  m_sendrois = 0;
99  m_notaccepted = 0;
101  for (int i = 0; i < ONSEN_MAX_TYPE_ERR; i++) m_errorCounter[i] = 0;
102 
103 }
104 
106 {
107  int flag = 0;
108  string errstr = "Statistic ( ;";
109  errstr += to_string(m_unpackedEventsCount) + ";";
110  for (int i = 0; i < ONSEN_MAX_TYPE_ERR; i++) { errstr += to_string(m_errorCounter[i]) + ";"; flag |= m_errorCounter[i];}
111  if (flag != 0) {
112  B2RESULT("PXD Unpacker --> Error Statistics (counted once per event!) in Events: " << m_unpackedEventsCount);
113  B2RESULT(errstr + " )");
114  for (int i = 0; i < ONSEN_MAX_TYPE_ERR; i++) {
115  if (m_errorCounter[i]) {
116  B2RESULT(getPXDBitErrorName(i) << ": " << m_errorCounter[i]);
117  }
118  }
119  } else {
120  B2RESULT("PXD Unpacker --> No Error found in Events: " << m_unpackedEventsCount);
121  }
122  B2RESULT("Statistic 2: !Accepted: " << m_notaccepted << " SendROIs: " << m_sendrois << " Unfiltered: " << m_sendunfiltered);
123 }
124 
126 {
127  m_storeDAQEvtStats.create();
128 
129  m_errorMask = 0;
130  m_errorMaskEvent = 0;
131 
132  m_meta_event_nr = m_eventMetaData->getEvent();// used for error output below
133 
134  if (!m_storeRawPXD) {// if no input, nothing to do
135  m_errorMask[c_nrNO_PXD] = true;
136  } else {
137  int nRaws = m_storeRawPXD.getEntries();
138  if (m_verbose) {
139  B2DEBUG(29, "PXD Unpacker --> RawPXD Objects in event: " << LogVar("Objects", nRaws));
140  };
141 
142  m_meta_run_nr = m_eventMetaData->getRun();
143  m_meta_subrun_nr = m_eventMetaData->getSubrun();
144  m_meta_experiment = m_eventMetaData->getExperiment();
145  m_meta_time = m_eventMetaData->getTime();
146  m_meta_ticks = (unsigned int)std::round((m_meta_time % 1000000000ull) * 0.127216); // calculate ticks in 127MHz RF clock
147  m_meta_sec = (unsigned int)(m_meta_time / 1000000000ull) & 0x1FFFF;
148 
149  int inx = 0; // count index for output objects
150  for (auto& it : m_storeRawPXD) {
151  if (m_verbose) {
152  B2DEBUG(29, "PXD Unpacker --> Unpack Objects: ");
153  };
154  unpack_rawpxd(it, inx++);
155  }
156 
157  if (nRaws == 0) m_errorMask[c_nrNO_PXD] = true;
158  }
160  m_storeDAQEvtStats->setErrorMask(m_errorMaskEvent);
161 
163  {
164  for (unsigned int i = 0; i < ONSEN_MAX_TYPE_ERR; i++) {
165  if (m_errorMaskEvent[i]) m_errorCounter[i]++;
166  }
167  }
168 
169  if ((PXDErrorFlags(m_criticalErrorMask) & m_errorMaskEvent) != PXDErrorFlags(0)) B2ERROR("Error in PXD unpacking" <<
170  LogVar("event nr", m_meta_event_nr));
171  setReturnValue(PXDErrorFlags(0) == (PXDErrorFlags(m_criticalErrorMask) & m_errorMaskEvent));
172 }
173 
175 {
176  int Frames_in_event;
177  int fullsize;
178  int datafullsize;
179 
180  m_errorMaskDHE = 0;
181  m_errorMaskDHC = 0;
182  m_errorMaskPacket = 0;
183  PXDDAQPacketStatus& daqpktstat = m_storeDAQEvtStats->newPacket(inx);
184 
185  if (px.size() <= 0 || px.size() > 16 * 1024 * 1024) {
186  if (!(m_suppressErrorMask[c_nrPACKET_SIZE])) {
187  B2WARNING("PXD Unpacker --> invalid packet size" <<
188  LogVar("size [32bit words] $", static_cast < std::ostringstream && >(std::ostringstream() << hex << px.size()).str()));
189  }
190  m_errorMask[c_nrPACKET_SIZE] = true;
191  return;
192  }
193  std::vector<unsigned int> data(px.size());
194  fullsize = px.size() * 4;
195  std::copy_n(px.data(), px.size(), data.begin());
196 
197  if (fullsize < 8) {
198  if (!(m_suppressErrorMask[c_nrPACKET_SIZE])) {
199  B2WARNING("Data is to small to hold a valid Header! Will not unpack anything." << LogVar("size [32bit words] $",
200  static_cast < std::ostringstream && >(std::ostringstream() << hex << fullsize).str()));
201  }
202  m_errorMask[c_nrPACKET_SIZE] = true;
203  return;
204  }
205 
206  if (data[0] != 0xCAFEBABE && data[0] != 0xBEBAFECA) {
207  if (!(m_suppressErrorMask[c_nrMAGIC])) {
208  B2WARNING("Magic invalid: Will not unpack anything. Header corrupted." <<
209  LogVar("Header Magic $", static_cast < std::ostringstream && >(std::ostringstream() << hex << data[0]).str()));
210  }
211  m_errorMask[c_nrMAGIC] = true;
212  return;
213  }
214 
215 
216  Frames_in_event = ((ubig32_t*)data.data())[1];
217  if (Frames_in_event < 0 || Frames_in_event > 256) {
218  if (!(m_suppressErrorMask[c_nrFRAME_NR])) {
219  B2WARNING("Number of Frames invalid: Will not unpack anything. Header corrupted!" << LogVar("Frames in event", Frames_in_event));
220  }
221  m_errorMask[c_nrFRAME_NR] = true;
222  return;
223  }
224  if (Frames_in_event < 3) {
225  if (!(m_suppressErrorMask[c_nrNR_FRAMES_TO_SMALL])) {
226  B2WARNING("Number of Frames too small: It cannot contain anything useful." << LogVar("Frames in event", Frames_in_event));
227  }
228  m_errorMask[c_nrNR_FRAMES_TO_SMALL] = true;
229  }
230 
232  if (m_verbose) {
233  B2DEBUG(29, "PXD Unpacker --> data[0]: <-- Magic $" << hex << data[0]);
234  B2DEBUG(29, "PXD Unpacker --> data[1]: <-- #Frames $" << hex << data[1]);
235  if (data[1] >= 1 && fullsize < 12) B2DEBUG(29, "PXD Unpacker --> data[2]: <-- Frame 1 len $" << hex << data[2]);
236  if (data[1] >= 2 && fullsize < 16) B2DEBUG(29, "PXD Unpacker --> data[3]: <-- Frame 2 len $" << hex << data[3]);
237  if (data[1] >= 3 && fullsize < 20) B2DEBUG(29, "PXD Unpacker --> data[4]: <-- Frame 3 len $" << hex << data[4]);
238  if (data[1] >= 4 && fullsize < 24) B2DEBUG(29, "PXD Unpacker --> data[5]: <-- Frame 4 len $" << hex << data[5]);
239  };
240 
241  unsigned int* tableptr;
242  tableptr = &data[2]; // skip header!!!
243 
244  unsigned int* dataptr;
245  dataptr = &tableptr[Frames_in_event];
246  datafullsize = fullsize - 2 * 4 - Frames_in_event * 4; // Size is fullsize minus header minus table
247 
248  int ll = 0; // Offset in dataptr in bytes
249  for (int j = 0; j < Frames_in_event; j++) {
250  int lo;
251 
252  lo = ((ubig32_t*)tableptr)[j];
253  if (lo <= 0) {
254  if (!(m_suppressErrorMask[c_nrFRAME_SIZE])) {
255  B2WARNING("size of frame invalid");
256  B2DEBUG(29, "size of frame invalid: " << j << "size " << lo << " at byte offset in dataptr " << ll);
257  }
258  m_errorMask[c_nrFRAME_SIZE] = true;
259  return;
260  }
261  if (ll + lo > datafullsize) {
262  if (!(m_suppressErrorMask[c_nrFRAME_SIZE])) {
263  B2WARNING("Frames exceed packet size");
264  B2DEBUG(29, "Frames exceed packet size: " << j << " size " << lo << " at byte offset in dataptr " << ll << " of datafullsize " <<
265  datafullsize << " of fullsize " << fullsize);
266  }
267  m_errorMask[c_nrFRAME_SIZE] = true;
268  return;
269  }
270  if (lo & 0x3) {
271  if (!(m_suppressErrorMask[c_nrFRAME_SIZE])) {
272  B2WARNING("SKIP Frame with Data with not MOD 4 length");
273  B2DEBUG(29, "SKIP Frame with Data with not MOD 4 length " << " ( $" << hex << lo << " ) ");
274  }
275  ll += (lo + 3) & 0xFFFFFFFC;
276  m_errorMask[c_nrFRAME_SIZE] = true;
277  } else {
278  B2DEBUG(29, "unpack DHE(C) frame: " << j << " with size " << lo << " at byte offset in dataptr " << ll);
279  unpack_dhc_frame(ll + (char*)dataptr, lo, j, Frames_in_event, daqpktstat);
280  ll += lo;
281  }
286  m_errorMask = 0;
287 
288  if (!m_continueOnError && (m_errorMaskPacket & PXDErrorFlags(m_errorSkipPacketMask)) != PXDErrorFlags(0)) {
289  // skip full package on error, recovery to next DHC/DHE Start might be possible in some cases
290  // But thats to hard to implement
291  // Remark: PXD data for broken events is removed in next PXDPostChecker module, thus skipping the
292  // unpacking is not strictly necessary here.
293  break;
294  }
295  }
296  daqpktstat.setErrorMask(m_errorMaskPacket);
297 }
298 
299 void PXDUnpackerOldModule::unpack_dhp_raw(void* data, unsigned int frame_len, unsigned int dhe_ID, unsigned dhe_DHPport,
300  VxdID vxd_id)
301 {
302 // unsigned int nr_words = frame_len / 2; // frame_len in bytes (excl. CRC)!!!
303  ubig16_t* dhp_pix = (ubig16_t*)data;
304 
311 
312  // Size: 64*768 + 8 bytes for a full frame readout
313  if (frame_len != 0xC008) {
314  if (!(m_suppressErrorMask[c_nrFIX_SIZE])) B2WARNING("Frame size unsupported for RAW ADC frame! $" <<
315  LogVar("size [bytes] $", static_cast < std::ostringstream && >(std::ostringstream() << hex << frame_len).str())
316  << LogVar("DHE", dhe_ID) << LogVar("DHP", dhe_DHPport));
317  m_errorMask[c_nrFIX_SIZE] = true;
318  return;
319  }
320  unsigned int dhp_header_type = 0;
321 // unsigned int dhp_reserved = 0;
322  unsigned int dhp_dhe_id = 0;
323  unsigned int dhp_dhp_id = 0;
324 
325  dhp_header_type = (dhp_pix[2] & 0xE000) >> 13;
326 // dhp_reserved = (dhp_pix[2] >> 8) & 0x1F;
327  dhp_dhe_id = (dhp_pix[2] & 0x00FC) >> 2;
328  dhp_dhp_id = dhp_pix[2] & 0x0003;
329 
330  if (dhe_ID != dhp_dhe_id) {
331  if (!(m_suppressErrorMask[c_nrDHE_DHP_DHEID])) {
332  B2WARNING("DHE ID in DHE and DHP header differ");
333  B2DEBUG(29, "DHE ID in DHE and DHP header differ $" << hex << dhe_ID << " != $" << dhp_dhe_id);
334  }
335  m_errorMask[c_nrDHE_DHP_DHEID] = true;
336  }
337  if (dhe_DHPport != dhp_dhp_id) {
338  if (!(m_suppressErrorMask[c_nrDHE_DHP_PORT])) {
339  B2WARNING("DHP ID (Chip/Port) in DHE and DHP header differ");
340  B2DEBUG(29, "DHP ID (Chip/Port) in DHE and DHP header differ $" << hex << dhe_DHPport << " != $" << dhp_dhp_id);
341  }
342  m_errorMask[c_nrDHE_DHP_PORT] = true;
343  }
344 
345  if (dhp_header_type != EDHPFrameHeaderDataType::c_RAW) {
346  if (!(m_suppressErrorMask[c_nrHEADERTYPE_INV])) {
347  B2WARNING("Header type invalid for this kind of DHE frame");
348  B2DEBUG(29, "Header type invalid for this kind of DHE frame: $" << hex << dhp_header_type);
349  }
350  m_errorMask[c_nrHEADERTYPE_INV] = true;
351  return;
352  }
353 
355  B2DEBUG(29, "Raw ADC Data");
356  // size checked already above
357  m_storeRawAdc.appendNew(vxd_id, data, frame_len);
358 };
359 
360 void PXDUnpackerOldModule::unpack_fce([[maybe_unused]] unsigned short* data, [[maybe_unused]] unsigned int length,
361  [[maybe_unused]] VxdID vxd_id)
362 {
369 
370  B2WARNING("FCE (Cluster) Packet have not yet been tested with real HW clusters. Dont assume that this code is working!");
371  return;
372 
373  // implement the unpacking here and not as a separate module ... when it is available in HW
374 // ubig16_t* cluster = (ubig16_t*)data;
375 // int nr_words; //words in dhp frame
376 // unsigned int words_in_cluster = 0; //counts 16bit words in cluster
377 // nr_words = length / 2;
378 // ubig16_t sor;
379 // sor = 0x0000;
380 //
381 // for (int i = 2 ; i < nr_words ; i++) {
382 // if (i != 2) { //skip header
383 // if ((((cluster[i] & 0x8000) == 0)
384 // && ((cluster[i] & 0x4000) >> 14) == 1)) { //searches for start of row frame with start of cluster flag = 1 => new cluster
385 // if (!m_doNotStore) m_storeRawCluster.appendNew(&data[i - words_in_cluster], words_in_cluster, vxd_id);
386 // words_in_cluster = 0;
387 // }
388 // }
389 // if ((cluster[i] & 0x8000) == 0) {
390 // sor = cluster[i];
391 // }
392 // words_in_cluster++;
393 //
394 // if ((cluster[nr_words - 1] & 0xFFFF) == (sor &
395 // 0xFFFF)) {//if frame is not 32bit aligned last word will be the last start of row word
396 // cluster[nr_words - 1] = 0x0000;//overwrites the last redundant word with zero to make checking easier in PXDHardwareClusterUnpacker
397 // }
398 //
399 // if (i == nr_words - 1) {
400 // if (!m_doNotStore) m_storeRawCluster.appendNew(&data[i - words_in_cluster + 1], words_in_cluster, vxd_id);
401 // }
402 // }
403 }
404 
405 void PXDUnpackerOldModule::dump_dhp(void* data, unsigned int frame_len)
406 {
407  // called only for debugging purpose, will never be called in normal running
408  unsigned int w = frame_len / 2;
409  ubig16_t* d = (ubig16_t*)data;
410 
411  B2WARNING("HEADER -- $" << hex << d[0] << ",$" << hex << d[1] << ",$" << hex << d[2] << ",$" << hex << d[3] << " -- ");
412 
413  auto dhp_header_type = (d[2] & 0xE000) >> 13;
414  auto dhp_reserved = (d[2] & 0x1F00) >> 8;
415  auto dhp_dhe_id = (d[2] & 0x00FC) >> 2;
416  auto dhp_dhp_id = d[2] & 0x0003;
417 
418  B2WARNING("DHP type | $" << hex << dhp_header_type << " ( " << dec << dhp_header_type << " ) ");
419  B2WARNING("DHP reserved | $" << hex << dhp_reserved << " ( " << dec << dhp_reserved << " ) ");
420  B2WARNING("DHP DHE ID | $" << hex << dhp_dhe_id << " ( " << dec << dhp_dhe_id << " ) ");
421  B2WARNING("DHP DHP ID | $" << hex << dhp_dhp_id << " ( " << dec << dhp_dhp_id << " ) ");
422  for (unsigned int i = 4; i < w; i++) {
423  B2WARNING("DHP DATA $" << hex << d[i]);
424  }
425  B2WARNING("DHP CRC $" << hex << d[w] << ",$" << hex << d[w + 1]);
426 }
427 
428 void PXDUnpackerOldModule::dump_roi(void* data, unsigned int frame_len)
429 {
430  // called only for debugging purpose, will never be called in normal running
431  unsigned int w = frame_len / 4;
432  ubig32_t* d = (ubig32_t*)data;
433 
434  B2WARNING("HEADER -- $" << hex << d[0] << ",$" << hex << d[1] << ",$" << hex << d[2] << ",$" << hex << d[3] << " -- Len $" << hex
435  << frame_len);
436 
437  for (unsigned int i = 0; i < w; i++) {
438  B2WARNING("ROI DATA $" << hex << d[i]);
439  }
440  B2WARNING("ROI CRC $" << hex << d[w]);
441 }
442 
443 void PXDUnpackerOldModule::unpack_dhp(void* data, unsigned int frame_len, unsigned int dhe_first_readout_frame_id_lo,
444  unsigned int dhe_ID, unsigned dhe_DHPport, unsigned dhe_reformat, VxdID vxd_id,
445  PXDDAQPacketStatus& daqpktstat)
446 {
447  unsigned int nr_words = frame_len / 2; // frame_len in bytes (excl. CRC)!!!
448  ubig16_t* dhp_pix = (ubig16_t*)data;
449 
450  unsigned int dhp_readout_frame_lo = 0;
451  unsigned int dhp_header_type = 0;
452  unsigned int dhp_reserved = 0;
453  unsigned int dhp_dhe_id = 0;
454  unsigned int dhp_dhp_id = 0;
455 
456  // cppcheck-suppress unreadVariable
457  unsigned int dhp_row = 0, dhp_col = 0, dhp_adc = 0, dhp_cm = 0;
458 // unsigned int dhp_offset = 0;
459  bool rowflag = false;
460  bool pixelflag = true; // just for first row start
461 
462  if (nr_words < 4) {
463  if (!(m_suppressErrorMask[c_nrDHP_SIZE])) B2WARNING("DHP frame size error (too small)" << LogVar("Nr words", nr_words));
464  m_errorMask[c_nrDHP_SIZE] = true;
465  return;
466  }
467 
468  B2DEBUG(29, "HEADER -- $" << hex << dhp_pix[0] << hex << dhp_pix[1] << hex << dhp_pix[2] << hex << dhp_pix[3] << " -- ");
469 
470  B2DEBUG(29, "DHP Header | $" << hex << dhp_pix[2] << " ( " << dec << dhp_pix[2] << " ) ");
471  dhp_header_type = (dhp_pix[2] & 0xE000) >> 13;
472  dhp_reserved = (dhp_pix[2] & 0x1F00) >> 8;
473  dhp_dhe_id = (dhp_pix[2] & 0x00FC) >> 2;
474  dhp_dhp_id = dhp_pix[2] & 0x0003;
475 
476  B2DEBUG(29, "DHP type | $" << hex << dhp_header_type << " ( " << dec << dhp_header_type << " ) ");
477  B2DEBUG(29, "DHP reserved | $" << hex << dhp_reserved << " ( " << dec << dhp_reserved << " ) ");
478  B2DEBUG(29, "DHP DHE ID | $" << hex << dhp_dhe_id << " ( " << dec << dhp_dhe_id << " ) ");
479  B2DEBUG(29, "DHP DHP ID | $" << hex << dhp_dhp_id << " ( " << dec << dhp_dhp_id << " ) ");
480 
481  if (dhe_ID != dhp_dhe_id) {
482  if (!(m_suppressErrorMask[c_nrDHE_DHP_DHEID])) {
483  B2WARNING("DHE ID in DHE and DHP header differ");
484  B2DEBUG(29, "DHE ID in DHE and DHP header differ $" << hex << dhe_ID << " != $" << dhp_dhe_id);
485  }
486  m_errorMask[c_nrDHE_DHP_DHEID] = true;
487  }
488  if (dhe_DHPport != dhp_dhp_id) {
489  if (!(m_suppressErrorMask[c_nrDHE_DHP_PORT])) {
490  B2WARNING("DHP ID (Chip/Port) in DHE and DHP header differ");
491  B2DEBUG(29, "DHP ID (Chip/Port) in DHE and DHP header differ $" << hex << dhe_DHPport << " != $" << dhp_dhp_id);
492  }
493  m_errorMask[c_nrDHE_DHP_PORT] = true;
494  }
495 
496  if (dhp_header_type != EDHPFrameHeaderDataType::c_ZSD) {
497  if (!(m_suppressErrorMask[c_nrHEADERTYPE_INV])) {
498  B2WARNING("Header type invalid for this kind of DHE frame");
499  B2DEBUG(29, "Header type invalid for this kind of DHE frame: $" << hex << dhp_header_type);
500  }
501  m_errorMask[c_nrHEADERTYPE_INV] = true;
502  return;
503  }
504 
505 // static int offtab[4] = {0, 64, 128, 192};
506 // dhp_offset = offtab[dhp_dhp_id];
507 
508  dhp_readout_frame_lo = dhp_pix[3] & 0xFFFF;
509  B2DEBUG(29, "DHP Frame Nr | $" << hex << dhp_readout_frame_lo << " ( " << dec << dhp_readout_frame_lo << " ) ");
510 
511  /* // TODO removed because data format error is not to be fixed soon
512  if (((dhp_readout_frame_lo - dhe_first_readout_frame_id_lo) & 0x3F) > m_maxDHPFrameDiff) {
513  if (!m_suppressErrorMask[c_nrDHP_DHE_FRAME_DIFFER]) B2WARNING("DHP Frame Nr differ from DHE Frame Nr by >1 DHE " <<
514  dhe_first_readout_frame_id_lo << " != DHP " << (dhp_readout_frame_lo & 0x3F) << " delta " << ((
515  dhp_readout_frame_lo - dhe_first_readout_frame_id_lo) & 0x3F));
516  m_errorMask[c_nrDHP_DHE_FRAME_DIFFER] = true;
517  }
518  */
519  /* // TODO removed because data format error is not to be fixed soon
520  if (m_last_dhp_readout_frame_lo[dhp_dhp_id] != -1) {
521  if (((dhp_readout_frame_lo - m_last_dhp_readout_frame_lo[dhp_dhp_id]) & 0xFFFF) > m_maxDHPFrameDiff) {
522  if(!m_suppressErrorMask&c_DHP_NOT_CONT ) B2WARNING("Two DHP Frames per sensor which frame number differ more than one! " << m_last_dhp_readout_frame_lo[dhp_dhp_id] << ", " <<
523  dhp_readout_frame_lo);
524  m_errorMask[c_nrDHP_NOT_CONT] = true;
525  }
526  }
527  */
528 
529  if (daqpktstat.dhc_size() > 0) {
530  if (daqpktstat.dhc_back().dhe_size() > 0) {
531  // only is we have a DHC and DHE object... or back() is undefined
532  // Remark, if we have a broken data (DHE_START/END) structure, we might fill the
533  // previous DHE object ... but then the data is junk anyway
534  daqpktstat.dhc_back().dhe_back().newDHP(dhp_dhp_id, dhp_readout_frame_lo);
535  }
536  }
537 
538  /* // TODO removed because the data is not ordered as expected in current firmware
539  for (auto j = 0; j < 4; j++) {
540  if (m_last_dhp_readout_frame_lo[j] != -1) {
541  if (((dhp_readout_frame_lo - m_last_dhp_readout_frame_lo[j]) & 0xFFFF) > m_maxDHPFrameDiff) {
542  if(!m_suppressErrorMask&c_DHP_DHP_FRAME_DIFFER ) B2WARNING("Two DHP Frames (different DHP) per sensor which frame number differ more than one! " << m_last_dhp_readout_frame_lo[j] <<
543  ", " <<
544  dhp_readout_frame_lo);
545  m_errorMask[c_nrDHP_DHP_FRAME_DIFFER] = true;
546  break;// give msg only once
547  }
548  }
549  }
550  */
551  m_last_dhp_readout_frame_lo[dhp_dhp_id] = dhp_readout_frame_lo;
552 
553 // TODO Please check if this can happen by accident with valid data!
554  if (dhp_pix[2] == dhp_pix[4] && dhp_pix[3] + 1 == dhp_pix[5]) {
555  // We see a second "header" with framenr+1 ...
556  if (!(m_suppressErrorMask[c_nrDHP_DBL_HEADER])) {
557  B2WARNING("DHP data: seems to be double header! skipping.");
558  B2DEBUG(29, "DHP data: seems to be double header! skipping." << LogVar("Length",
559  frame_len));
560  }
561  m_errorMask[c_nrDHP_DBL_HEADER] = true;
562  // dump_dhp(data, frame_len); print out guilty dhp packet
563  return;
564  }
565 
566  // Start with offset 4, thus skipping header words
567  for (unsigned int i = 4; i < nr_words ; i++) {
568 
569  B2DEBUG(29, "-- $" << hex << dhp_pix[i] << " -- " << dec << i);
570  {
571  if (((dhp_pix[i] & 0x8000) >> 15) == 0) {
572  rowflag = true;
573  if (!pixelflag) {
574  if (!(m_suppressErrorMask[c_nrDHP_ROW_WO_PIX])) B2WARNING("DHP Unpacking: Row w/o Pix");
575  m_errorMask[c_nrDHP_ROW_WO_PIX] = true;
576  }
577  pixelflag = false;
578  dhp_row = (dhp_pix[i] & 0xFFC0) >> 5;
579  dhp_cm = dhp_pix[i] & 0x3F;
580  if (dhp_cm == 63) { // fifo overflow
581  B2WARNING("DHP data loss (CM=63) in " << LogVar("DHE", dhe_ID) << LogVar("DHP", dhp_dhp_id));
583  m_errorMask[c_nrDHH_MISC_ERROR] = true;
584  }
585  if (daqpktstat.dhc_size() > 0) {
586  if (daqpktstat.dhc_back().dhe_size() > 0) {
587  PXDDAQDHPComMode cm(dhp_dhp_id, dhp_row, dhp_cm);
588  // only is we have a DHC and DHE object... or back() is undefined
589  // Remark, if we have a broken data (DHE_START/END) structure, we might fill the
590  // previous DHE object ... but then the data is junk anyway
591  daqpktstat.dhc_back().dhe_back().addCM(cm);
592  }
593  }
594  B2DEBUG(29, "SetRow: $" << hex << dhp_row << " CM $" << hex << dhp_cm);
595  } else {
596  if (!rowflag) {
597  if (!(m_suppressErrorMask[c_nrDHP_PIX_WO_ROW])) B2WARNING("DHP Unpacking: Pix without Row!!! skip dhp data ");
598  m_errorMask[c_nrDHP_PIX_WO_ROW] = true;
599  // dump_dhp(data, frame_len);// print out faulty dhp frame
600  return;
601  } else {
602  pixelflag = true;
603  dhp_row = (dhp_row & 0xFFE) | ((dhp_pix[i] & 0x4000) >> 14);
604  dhp_col = ((dhp_pix[i] & 0x3F00) >> 8);
605  unsigned int v_cellID, u_cellID;
606  v_cellID = dhp_row;// defaults for no mapping
607  if (dhp_row >= 768) {
608  if (!(m_suppressErrorMask[c_nrROW_OVERFLOW])) B2WARNING("DHP ROW Overflow " << LogVar("Row", dhp_row));
609  m_errorMask[c_nrROW_OVERFLOW] = true;
610  }
611  // we cannot do col overflow check before mapping :-(
612 
613  if ((dhe_reformat == 0 && !m_forceNoMapping) || m_forceMapping) {
614  u_cellID = dhp_col;// defaults for no mapping
615  // data has not been pre-processed by DHH, thus we have to do the mapping ourselves
616  if ((dhe_ID & 0x21) == 0x00 || (dhe_ID & 0x21) == 0x21) {
617  // if IFOB
618  PXDMappingLookup::map_rc_to_uv_IF_OB(v_cellID, u_cellID, dhp_dhp_id, dhe_ID);
619  } else { // else OFIB
620  PXDMappingLookup::map_rc_to_uv_IB_OF(v_cellID, u_cellID, dhp_dhp_id, dhe_ID);
621  }
622  } else {
623  u_cellID = dhp_col + 64 * dhp_dhp_id; // defaults for already mapped
624  }
625  if (u_cellID >= 250) {
626  if (!(m_suppressErrorMask[c_nrCOL_OVERFLOW])) {
627  B2WARNING("DHP COL Overflow (unconnected drain lines)");
628  B2DEBUG(29, "DHP COL Overflow (unconnected drain lines) " << u_cellID << ", reformat " << dhe_reformat << ", dhpcol " << dhp_col <<
629  ", id " << dhp_dhp_id);
630  }
631  m_errorMask[c_nrCOL_OVERFLOW] = true;
632  }
633  dhp_adc = dhp_pix[i] & 0xFF;
634  B2DEBUG(29, "SetPix: Row $" << hex << dhp_row << " Col $" << hex << dhp_col << " ADC $" << hex << dhp_adc
635  << " CM $" << hex << dhp_cm);
636 
637  if (dhp_adc == 0) {
638  // if !supress error flag
639  B2WARNING("DHE Event truncation in DHE " << dhe_ID << " DHP " << dhp_dhp_id);
640  // m_errorMask |= c_DHE_EVENT_TRUNC;
641  daqpktstat.dhc_back().dhe_back().dhp_back().setTruncated();
642  } else {
643  if (!m_doNotStore) m_storeRawHits.appendNew(vxd_id, v_cellID, u_cellID, dhp_adc,
644  (dhp_readout_frame_lo - dhe_first_readout_frame_id_lo) & 0x3F);
645  }
646  }
647  }
648  }
649  }
650 
651  B2DEBUG(29, "(DHE) DHE_ID $" << hex << dhe_ID << " (DHE) DHP ID $" << hex << dhe_DHPport << " (DHP) DHE_ID $" << hex << dhp_dhe_id
652  << " (DHP) DHP ID $" << hex << dhp_dhp_id);
653  /*for (int i = 0; i < raw_nr_words ; i++) {
654  B2DEBUG(29, "RAW | " << hex << p_pix[i]);
655  printf("raw %08X | ", p_pix[i]);
656  B2DEBUG(29, "row " << hex << ((p_pix[i] >> 20) & 0xFFF) << dec << " ( " << ((p_pix[i] >> 20) & 0xFFF) << " ) " << " col " << hex << ((p_pix[i] >> 8) & 0xFFF)
657  << " ( " << dec << ((p_pix[i] >> 8) & 0xFFF) << " ) " << " adc " << hex << (p_pix[i] & 0xFF) << " ( " << (p_pix[i] & 0xFF) << " ) "
658  );
659  }*/
660 }
661 
662 void PXDUnpackerOldModule::unpack_dhc_frame(void* data, const int len, const int Frame_Number, const int Frames_in_event,
663  PXDDAQPacketStatus& daqpktstat)
664 {
668  static unsigned int eventNrOfOnsenTrgFrame = 0;
669  static int countedBytesInDHC = 0;
670  static bool cancheck_countedBytesInDHC = false;
671  static int countedBytesInDHE = 0;
672  static bool cancheck_countedBytesInDHE = false;
673  static int countedDHEStartFrames = 0;
674  static int countedDHEEndFrames = 0;
675  static int mask_active_dhe = 0;// DHE mask (5 bit)
676  static int nr_active_dhe =
677  0;// TODO just count the active DHEs. Until now, it is not possible to check for the bit mask. we would need the info on which DHE connects to which DHC at which port from gearbox/geometry?
678  static int mask_active_dhp = 0;// DHP active mask, 4 bit, per current DHE
679  static int found_mask_active_dhp = 0;// mask which DHP send data and check on DHE END frame if it matches
680  static unsigned int dhe_first_readout_frame_id_lo = 0;
681  // cppcheck-suppress variableScope
682  static unsigned int dhe_first_triggergate = 0;
683  static unsigned int currentDHCID = 0xFFFFFFFF;
684  static unsigned int currentDHEID = 0xFFFFFFFF;
685  static unsigned int currentVxdId = 0;
686  static bool isFakedData_event = false;
687  static bool isUnfiltered_event = false;
688 
689 
690  if (Frame_Number == 0) {
691  // We reset the counters on the first event
692  // we do this before any other check is done
693  eventNrOfOnsenTrgFrame = 0;
694  countedDHEStartFrames = 0;
695  countedDHEEndFrames = 0;
696  countedBytesInDHC = 0;
697  cancheck_countedBytesInDHC = false;
698  countedBytesInDHE = 0;
699  cancheck_countedBytesInDHE = false;
700  currentDHCID = 0xFFFFFFFF;
701  currentDHEID = 0xFFFFFFFF;
702  currentVxdId = 0;
703  isUnfiltered_event = false;
704  isFakedData_event = false;
705  mask_active_dhe = 0;
706  nr_active_dhe = 0;
707  mask_active_dhp = 0;
708  found_mask_active_dhp = 0;
709  }
710 
712 
713  dhc_frames dhc;
714  dhc.set(data, hw->getFrameType(), len);
715 
716  {
717  // if a fixed size frame has a different length, how can we rely on its content???
718  // AND we could by typecasting access memory beyond end of data (but very unlikely)
719  // for that reason this we have to check before any CRC and stop unpacking the frame
720  int s = dhc.getFixedSize();
721  if (len != s && s != 0) {
722  if (!(m_suppressErrorMask[c_nrFIX_SIZE])) {
723  B2WARNING("Fixed frame type size does not match specs" << LogVar("expected length",
724  len) << LogVar("length in data", s));
725  }
726  m_errorMask[c_nrFIX_SIZE] = true;
727  if (!m_continueOnError) return;
728  }
729  }
730 
731  // What do we do with wrong checksum frames? As we do not know WHAT is wrong, we have to skip them alltogether.
732  // As they might contain HEADER Info, we might better skip the processing of the full package, too.
733  dhc.check_crc(m_errorMask, m_suppressErrorMask[c_nrDHE_CRC]);
734  if (!m_continueOnError && m_errorMask[c_nrDHE_CRC]) {
735  // if CRC is wrong, we cannot rely on the content of the frame, thus skipping is the best option
736  return;
737  }
738 
739  unsigned int eventNrOfThisFrame = dhc.getEventNrLo();
740  int frame_type = dhc.getFrameType();
741 
742  if (Frame_Number == 0) {
743  if (m_formatBonnDAQ) {
744  if (frame_type != EDHCFrameHeaderDataType::c_DHC_START) {
745  if (!(m_suppressErrorMask[c_nrEVENT_STRUCT])) B2WARNING("This looks not like BonnDAQ format.");
746  m_errorMask[c_nrEVENT_STRUCT] = true;
747 // if (!m_continueOnError) return; // requires more testing
748  }
749  } else {
750  if (frame_type == EDHCFrameHeaderDataType::c_DHC_START) {
751  if (!(m_suppressErrorMask[c_nrEVENT_STRUCT]))
752  B2WARNING("This looks like BonnDAQ or old Desy 2013/14 testbeam format. Please use formatBonnDAQ or the pxdUnpackerDesy1314 module.");
753  m_errorMask[c_nrEVENT_STRUCT] = true;
754 // if (!m_continueOnError) return; // requires more testing
755  }
756  }
757  }
758 
759  if (!m_formatBonnDAQ) {
760  if (Frame_Number == 1) {
761  if (frame_type == EDHCFrameHeaderDataType::c_DHC_START) {
762  isFakedData_event = dhc.data_dhc_start_frame->isFakedData();
763  }
764  }
765 
766  // please check if this mask is suitable. At least here we are limited by the 16 bit trigger number in the DHH packet header.
767  // we can use more bits in the DHC and DHE START Frame
768  if ((eventNrOfThisFrame & 0xFFFF) != (m_meta_event_nr & 0xFFFF)) {
769  if (!isFakedData_event) {
770  if (!(m_suppressErrorMask[c_nrMETA_MM])) {
771  B2WARNING("Event Numbers do not match for this frame");
772  B2DEBUG(29, "Event Numbers do not match for this frame" <<
773  LogVar("Event nr in frame $", static_cast < std::ostringstream
774  && >(std::ostringstream() << hex << eventNrOfThisFrame).str()) <<
775  LogVar("Event nr in MetaInfo (bits masked) $",
776  static_cast < std::ostringstream && >(std::ostringstream() << hex << m_meta_event_nr).str()));
777  }
778  m_errorMask[c_nrMETA_MM] = true;
779 // if (!m_continueOnError) return; // requires more testing
780  }
781  }
782 
783  if (Frame_Number > 1 && Frame_Number < Frames_in_event - 1) {
784  if (countedDHEStartFrames != countedDHEEndFrames + 1)
785  if (frame_type != EDHCFrameHeaderDataType::c_ONSEN_ROI && frame_type != EDHCFrameHeaderDataType::c_DHE_START) {
786  if (!(m_suppressErrorMask[c_nrDATA_OUTSIDE])) B2WARNING("Data Frame outside a DHE START/END");
787  m_errorMask[c_nrDATA_OUTSIDE] = true;
788 // if (!m_continueOnError) return; // requires more testing
789  }
790  }
791  }
792 
793  // TODO How do we handle Frames where Error Bit is set in header?
794  // Currently there is no documentation what it actually means... only an error bit is set (below)
795  // the following errors must be "accepted", as all firmware sets it wrong from Ghost frames.
796  if (hw->getErrorFlag()) {
797  if (frame_type != EDHCFrameHeaderDataType::c_GHOST) {
798  if (!(m_suppressErrorMask[c_nrHEADER_ERR])) B2ERROR("Error Bit set in DHE Header");
799  m_errorMask[c_nrHEADER_ERR] = true;// TODO this should have some effect ... when does it mean something? documentation missing
800  }
801  } else {
802  if (frame_type == EDHCFrameHeaderDataType::c_GHOST) {
803  m_errorMask[c_nrHEADER_ERR_GHOST] = true;
804  }
805  }
806 
807  switch (frame_type) {
808  case EDHCFrameHeaderDataType::c_DHP_RAW: {
809 
811  if (currentDHEID != dhc.data_direct_readout_frame_raw->getDHEId()) {
812  if (!(m_suppressErrorMask[c_nrDHE_START_ID])) {
813  B2WARNING("DHE ID from DHE Start and this frame do not match");
814  B2DEBUG(29, "DHE ID from DHE Start and this frame do not match" <<
815  LogVar("DHEID in this frame $", static_cast < std::ostringstream
816  && >(std::ostringstream() << hex << dhc.data_direct_readout_frame_raw->getDHEId()).str()) <<
817  LogVar("DHEID expected $", static_cast < std::ostringstream && >(std::ostringstream() << hex << currentDHEID).str()));
818  }
819  m_errorMask[c_nrDHE_START_ID] = true;
820  }
821  dhc.check_crc(m_errorMask, m_suppressErrorMask[c_nrDHE_CRC]);
822  found_mask_active_dhp |= 1 << dhc.data_direct_readout_frame->getDHPPort();
823 
824  unpack_dhp_raw(data, len - 4,
827  currentVxdId);
828 
829  break;
830  };
831  case EDHCFrameHeaderDataType::c_ONSEN_DHP:
832  // Set the counted size invalid if negativ, needs a large negative value because we are adding up to that
833  cancheck_countedBytesInDHC = false;
834  cancheck_countedBytesInDHE = false;
835  [[fallthrough]];
836  case EDHCFrameHeaderDataType::c_DHP_ZSD: {
837 
839  if (isUnfiltered_event) {
840  if (frame_type == EDHCFrameHeaderDataType::c_ONSEN_DHP) m_errorMask[c_nrSENDALL_TYPE] = true;
841  } else {
842  if (frame_type == EDHCFrameHeaderDataType::c_DHP_ZSD) m_errorMask[c_nrNOTSENDALL_TYPE] = true;
843  }
844 
845  //m_errorMask |= dhc.data_direct_readout_frame->check_error();
846 
847  if (currentDHEID != dhc.data_direct_readout_frame_raw->getDHEId()) {
848  if (!(m_suppressErrorMask[c_nrDHE_START_ID])) {
849  B2WARNING("DHE ID from DHE Start and this frame do not match");
850  B2DEBUG(29, "DHE ID from DHE Start and this frame do not match" <<
851  LogVar("DHEID in this frame $", static_cast < std::ostringstream
852  && >(std::ostringstream() << hex << dhc.data_direct_readout_frame_raw->getDHEId()).str()) <<
853  LogVar("DHEID expected $", static_cast < std::ostringstream && >(std::ostringstream() << hex << currentDHEID).str()));
854  }
855  m_errorMask[c_nrDHE_START_ID] = true;
856  }
857  dhc.check_crc(m_errorMask, m_suppressErrorMask[c_nrDHE_CRC]);
858  found_mask_active_dhp |= 1 << dhc.data_direct_readout_frame->getDHPPort();
859  if (m_checkPaddingCRC) dhc.check_padding(m_errorMask); // isUnfiltered_event
860 
861 
862  unpack_dhp(data, len - 4,
863  dhe_first_readout_frame_id_lo,
867  currentVxdId, daqpktstat);
868 
869  break;
870  };
871  case EDHCFrameHeaderDataType::c_ONSEN_FCE:
872  // Set the counted size invalid if negativ, needs a large negative value because we are adding up to that
873  cancheck_countedBytesInDHC = false;
874  cancheck_countedBytesInDHE = false;
875  [[fallthrough]];
876  case EDHCFrameHeaderDataType::c_FCE_RAW: {
877  if (!(m_suppressErrorMask[c_nrUNEXPECTED_FRAME_TYPE])) B2WARNING("Unexpected Frame Type (Clustering FCE)");
878  m_errorMask[c_nrUNEXPECTED_FRAME_TYPE] = true;
879  if (m_verbose) hw->print();
880  if (isUnfiltered_event) {
881  if (frame_type == EDHCFrameHeaderDataType::c_ONSEN_FCE) {
882  // TODO add error message
883  m_errorMask[c_nrSENDALL_TYPE] = true;
884  }
885  } else {
886  if (frame_type == EDHCFrameHeaderDataType::c_FCE_RAW) {
887  // TODO add error message
888  m_errorMask[c_nrNOTSENDALL_TYPE] = true;
889  }
890  }
891 
892  if (currentDHEID != dhc.data_direct_readout_frame_raw->getDHEId()) {
893  if (!(m_suppressErrorMask[c_nrDHE_START_ID])) {
894  B2WARNING("DHE ID from DHE Start and this frame do not match");
895  B2DEBUG(29, "DHE ID from DHE Start and this frame do not match" <<
896  LogVar("DHEID in this frame $", static_cast < std::ostringstream
897  && >(std::ostringstream() << hex << dhc.data_direct_readout_frame_raw->getDHEId()).str()) <<
898  LogVar("DHEID expected $", static_cast < std::ostringstream && >(std::ostringstream() << hex << currentDHEID).str()));
899  }
900  m_errorMask[c_nrDHE_START_ID] = true;
901  }
902  dhc.check_crc(m_errorMask, m_suppressErrorMask[c_nrDHE_CRC]);
903  found_mask_active_dhp |= 1 << dhc.data_direct_readout_frame->getDHPPort();
904 
905  B2DEBUG(29, "UNPACK FCE FRAME with len $" << hex << len);
906  unpack_fce((unsigned short*) data, len - 4, currentVxdId);
907 
908  break;
909  };
910  case EDHCFrameHeaderDataType::c_COMMODE: {
911  // this frame type has up to now not been well defined, we do not expect it until
912  // the firmware supports clustering in hardware
913  if (!(m_suppressErrorMask[c_nrUNEXPECTED_FRAME_TYPE])) B2WARNING("Unexpected Frame Type (COMMODE)");
914  m_errorMask[c_nrUNEXPECTED_FRAME_TYPE] = true;
915 
916  if (m_verbose) hw->print();
917  if (currentDHEID != dhc.data_commode_frame->getDHEId()) {
918  if (!(m_suppressErrorMask[c_nrDHE_START_ID])) {
919  B2WARNING("DHE ID from DHE Start and this frame do not match");
920  B2DEBUG(29, "DHE ID from DHE Start and this frame do not match" <<
921  LogVar("DHEID in this frame $", static_cast < std::ostringstream
922  && >(std::ostringstream() << hex << dhc.data_commode_frame->getDHEId()).str()) <<
923  LogVar("DHEID expected $", static_cast < std::ostringstream && >(std::ostringstream() << hex << currentDHEID).str()));
924  }
925  m_errorMask[c_nrDHE_START_ID] = true;
926  }
927  dhc.check_crc(m_errorMask, m_suppressErrorMask[c_nrDHE_CRC]);
928  break;
929  };
930  case EDHCFrameHeaderDataType::c_DHC_START: {
931  countedBytesInDHC = 0;
932  cancheck_countedBytesInDHC = true;
933  if (isFakedData_event != dhc.data_dhc_start_frame->isFakedData()) {
934  if (!(m_suppressErrorMask[c_nrFAKE_NO_FAKE_DATA])) B2WARNING("DHC START mixed Fake/no Fake event.");
935  m_errorMask[c_nrFAKE_NO_FAKE_DATA] = true;
936  }
937  if (dhc.data_dhc_start_frame->isFakedData()) {
938  if (!(m_suppressErrorMask[c_nrFAKE_NO_DATA_TRIG])) B2WARNING("Faked DHC START Data -> trigger without Data!");
939  m_errorMask[c_nrFAKE_NO_DATA_TRIG] = true;
940  } else {
942  }
943 
944 // eventNrOfOnsenTrgFrame = eventNrOfThisFrame;
945  currentDHEID = 0xFFFFFFFF;
946  currentVxdId = 0;
947  currentDHCID = dhc.data_dhc_start_frame->get_dhc_id();
948  dhc.check_crc(m_errorMask, m_suppressErrorMask[c_nrDHE_CRC]);
949 
950  if (m_formatBonnDAQ) eventNrOfOnsenTrgFrame = eventNrOfThisFrame;
951 
952  if (!isFakedData_event) {
956  if (!(m_suppressErrorMask[c_nrMETA_MM_DHC_ERS])) {
957  B2WARNING("DHC-Meta Experiment number mismatch");
958  B2DEBUG(29, "DHC-Meta Experiment number mismatch" <<
959  LogVar("DHC exp nr",
961  LogVar("META exp nr", m_meta_experiment));
962  }
963  m_errorMask[c_nrMETA_MM_DHC_ERS] = true;
964  }
966  if (!(m_suppressErrorMask[c_nrMETA_MM_DHC_ERS])) {
967  B2WARNING("DHC-Meta Run number mismatch");
968  B2DEBUG(29, "DHC-Meta Run number mismatch" <<
969  LogVar("DHC Run nr",
970  dhc.data_dhc_start_frame->get_run()) <<
971  LogVar("META run nr", m_meta_run_nr));
972  }
973  m_errorMask[c_nrMETA_MM_DHC_ERS] = true;
974  }
976  if (!(m_suppressErrorMask[c_nrMETA_MM_DHC_ERS])) {
977  B2WARNING("DHC-Meta Sub-Run number mismatch");
978  B2DEBUG(29, "DHC-Meta Sub-Run number mismatch" <<
979  LogVar("DHC subrun nr",
981  LogVar("META subrun nr", m_meta_subrun_nr));
982  }
983  m_errorMask[c_nrMETA_MM_DHC_ERS] = true;
984  }
985  if ((((unsigned int)dhc.data_dhc_start_frame->getEventNrHi() << 16) | dhc.data_dhc_start_frame->getEventNrLo()) !=
986  (m_meta_event_nr & 0xFFFFFFFF)) {
987  if (!(m_suppressErrorMask[c_nrMETA_MM_DHC])) {
988  B2WARNING("DHC-Meta 32 bit event number mismatch");
989  B2DEBUG(29, "DHC-Meta 32 bit event number mismatch" <<
990  LogVar("DHC trigger nr", (((unsigned int) dhc.data_dhc_start_frame->getEventNrHi() << 16) |
992  LogVar("META trigger nr", (unsigned int)(m_meta_event_nr & 0xFFFFFFFF)));
993  }
994  m_errorMask[c_nrMETA_MM_DHC] = true;
995  }
996  uint32_t trig_ticks = (((unsigned int)dhc.data_dhc_start_frame->time_tag_mid & 0x7FFF) << 12) | ((unsigned int)
998  uint32_t trig_sec = (dhc.data_dhc_start_frame->time_tag_hi * 2) ;
999  if (dhc.data_dhc_start_frame->time_tag_mid & 0x8000) trig_sec++;
1000 
1001  if ((trig_ticks - m_meta_ticks) != 0 || (trig_sec - m_meta_sec) != 0) {
1002  m_errorMask[c_nrMETA_MM_DHC_TT] = true;
1003  if (!(m_suppressErrorMask[c_nrMETA_MM_DHC_TT])) {
1004  B2WARNING("DHC-Meta TimeTag mismatch");
1005  B2DEBUG(29, "DHC-Meta TimeTag mismatch" <<
1006  LogVar("Header Time $", static_cast < std::ostringstream && >(std::ostringstream() <<
1007  hex << dhc.data_dhc_start_frame->time_tag_hi << "." <<
1008  dhc.data_dhc_start_frame->time_tag_mid << "." <<
1010  LogVar("Meta Time $", static_cast < std::ostringstream && >(std::ostringstream() << hex << m_meta_time).str()) <<
1011  LogVar("Trigger Type", static_cast < std::ostringstream
1012  && >(std::ostringstream() << hex << (dhc.data_dhc_start_frame->time_tag_lo_and_type & 0xF)).str()) <<
1013  LogVar("Meta seconds: $", static_cast < std::ostringstream && >(std::ostringstream() << hex << m_meta_sec).str()) <<
1014  LogVar("DHC seconds $", static_cast < std::ostringstream && >(std::ostringstream() << hex << trig_sec).str()) <<
1015  LogVar("Seconds difference $", static_cast < std::ostringstream
1016  && >(std::ostringstream() << hex << (trig_sec - m_meta_sec)).str()) <<
1017  LogVar("Meta ticks from 127MHz $", static_cast < std::ostringstream && >(std::ostringstream() << hex << m_meta_ticks).str()) <<
1018  LogVar("DHC ticks from 127MHz $", static_cast < std::ostringstream && >(std::ostringstream() << hex << trig_ticks).str()) <<
1019  LogVar("Tick difference $", static_cast < std::ostringstream
1020  && >(std::ostringstream() << hex << (trig_ticks - m_meta_ticks)).str()));
1021  }
1022  } else {
1023  B2DEBUG(29, "DHC TT: $" << hex << dhc.data_dhc_start_frame->time_tag_hi << "." << dhc.data_dhc_start_frame->time_tag_mid << "." <<
1024  dhc.data_dhc_start_frame->time_tag_lo_and_type << " META " << m_meta_time << " TRG Type " <<
1026  }
1027  }
1028  mask_active_dhe = dhc.data_dhc_start_frame->get_active_dhe_mask();
1029  nr_active_dhe = nr5bits(mask_active_dhe);
1030 
1031  m_errorMaskDHC = m_errorMask; // forget about anything before this frame
1032  daqpktstat.newDHC(currentDHCID, m_errorMask);
1035 
1036  break;
1037  };
1038  case EDHCFrameHeaderDataType::c_DHE_START: {
1039  countedBytesInDHE = 0;
1040  cancheck_countedBytesInDHE = true;
1045  if (m_verbose) dhc.data_dhe_start_frame->print();
1046  dhe_first_readout_frame_id_lo = dhc.data_dhe_start_frame->getStartFrameNr();
1047  dhe_first_triggergate = dhc.data_dhe_start_frame->getTriggerGate();
1048  if (currentDHEID != 0xFFFFFFFF && (currentDHEID & 0xFFFF) >= dhc.data_dhe_start_frame->getDHEId()) {
1049  if (!(m_suppressErrorMask[c_nrDHE_WRONG_ID_SEQ])) {
1050  B2WARNING("DHH IDs are not in expected order");
1051  B2DEBUG(29, "DHH IDs are not in expected order" <<
1052  LogVar("Previous ID", (currentDHEID & 0xFFFF)) <<
1053  LogVar("Current ID", dhc.data_dhe_start_frame->getDHEId()));
1054  }
1055  m_errorMask[c_nrDHE_WRONG_ID_SEQ] = true;
1056  }
1057  currentDHEID = dhc.data_dhe_start_frame->getDHEId();
1058  dhc.check_crc(m_errorMask, m_suppressErrorMask[c_nrDHE_CRC]);
1059 
1060  if (countedDHEStartFrames > countedDHEEndFrames) {
1061  if (!(m_suppressErrorMask[c_nrDHE_START_WO_END])) B2WARNING("DHE_START without DHE_END");
1062  m_errorMask[c_nrDHE_START_WO_END] = true;
1063  }
1064  countedDHEStartFrames++;
1065 
1066  found_mask_active_dhp = 0;
1067  mask_active_dhp = dhc.data_dhe_start_frame->getActiveDHPMask();
1068 
1069  if ((((unsigned int)dhc.data_dhe_start_frame->getEventNrHi() << 16) | dhc.data_dhe_start_frame->getEventNrLo()) != (unsigned int)(
1070  m_meta_event_nr & 0xFFFFFFFF)) {
1071  if (!(m_suppressErrorMask[c_nrMETA_MM_DHE])) {
1072  B2WARNING("DHE START trigger mismatch in EVT32b/HI WORD");
1073  B2DEBUG(29, "DHE START trigger mismatch in EVT32b/HI WORD" <<
1074  LogVar("DHE Start trigger nr", (dhc.data_dhe_start_frame->getEventNrHi() << 16) | dhc.data_dhe_start_frame->getEventNrLo()) <<
1075  LogVar("Meta trigger nr", (m_meta_event_nr & 0xFFFFFFFF)));
1076  }
1077  m_errorMask[c_nrMETA_MM_DHE] = true;
1078  }
1079 // B2WARNING("DHE TT: $" << hex << dhc.data_dhe_start_frame->dhe_time_tag_hi << "." << dhc.data_dhe_start_frame->dhe_time_tag_lo <<
1080 // " META " << m_meta_time);
1081 
1082  if (currentDHEID == 0) {
1083  if (!(m_suppressErrorMask[c_nrDHE_ID_INVALID])) B2WARNING("DHE ID is invalid=0 (not initialized)");
1084  m_errorMask[c_nrDHE_ID_INVALID] = true;
1085  }
1086  // calculate the VXDID for DHE and save them for DHP unpacking
1087  {
1094  unsigned short sensor, ladder, layer;
1095  sensor = (currentDHEID & 0x1) + 1;
1096  ladder = (currentDHEID & 0x1E) >> 1; // no +1
1097  layer = ((currentDHEID & 0x20) >> 5) + 1;
1098  currentVxdId = VxdID(layer, ladder, sensor);
1099  if (ladder == 0 || (layer == 1 && ladder > 8) || (layer == 2 && ladder > 12)) {
1100  if (!(m_suppressErrorMask[c_nrDHE_ID_INVALID])) {
1101  B2WARNING("DHE ID is invalid");
1102  B2DEBUG(29, "DHE ID is invalid" <<
1103  LogVar("DHE ID", currentDHEID) <<
1104  LogVar("Layer", layer) <<
1105  LogVar("Ladder", ladder) <<
1106  LogVar("Sensor", sensor));
1107  }
1108  m_errorMask[c_nrDHE_ID_INVALID] = true;
1109  }
1110  }
1111 
1112  m_errorMaskDHE = m_errorMask; // forget about anything before this frame
1113  if (daqpktstat.dhc_size() > 0) {
1114  // if no DHC has been defined yet, do nothing!
1115  daqpktstat.dhc_back().newDHE(currentVxdId, currentDHEID, m_errorMask, dhe_first_triggergate, dhe_first_readout_frame_id_lo);
1116  }
1117  break;
1118  };
1119  case EDHCFrameHeaderDataType::c_GHOST:
1120  if (m_verbose) dhc.data_ghost_frame->print();
1121  if (currentDHEID != dhc.data_ghost_frame->getDHEId()) {
1122  if (!(m_suppressErrorMask[c_nrDHE_START_ID])) {
1123  B2WARNING("DHE ID from DHE Start and this frame do not match");
1124  B2DEBUG(29, "Start ID $" << hex << currentDHEID << " != $" << dhc.data_ghost_frame->getDHEId());
1125  }
1126  m_errorMask[c_nrDHE_START_ID] = true;
1127  }
1129  found_mask_active_dhp |= 1 << dhc.data_ghost_frame->getDHPPort();
1130 
1131  dhc.check_crc(m_errorMask, m_suppressErrorMask[c_nrDHE_CRC]);
1132 
1133  break;
1134  case EDHCFrameHeaderDataType::c_DHC_END: {
1135  if (dhc.data_dhc_end_frame->isFakedData() != isFakedData_event) {
1136  if (!(m_suppressErrorMask[c_nrFAKE_NO_FAKE_DATA])) B2WARNING("DHC END mixed Fake/no Fake event.");
1137  m_errorMask[c_nrFAKE_NO_FAKE_DATA] = true;
1138  }
1139  if (dhc.data_dhc_end_frame->isFakedData()) {
1140  if (!(m_suppressErrorMask[c_nrFAKE_NO_DATA_TRIG])) B2WARNING("Faked DHC END Data -> trigger without Data!");
1141  m_errorMask[c_nrFAKE_NO_DATA_TRIG] = true;
1142  } else {
1143  if (m_verbose) dhc.data_dhc_end_frame->print();
1144  }
1145 
1146  if (!isFakedData_event) {
1147  if (dhc.data_dhc_end_frame->get_dhc_id() != currentDHCID) {
1148  if (!(m_suppressErrorMask[c_nrDHC_DHCID_START_END_MM])) {
1149  B2WARNING("DHC ID Mismatch between Start and End");
1150  B2DEBUG(29, "DHC ID Mismatch between Start and End $" << std::hex <<
1151  currentDHCID << "!=$" << dhc.data_dhc_end_frame->get_dhc_id());
1152  }
1153  m_errorMask[c_nrDHC_DHCID_START_END_MM] = true;
1154  }
1155  int w;
1156  w = dhc.data_dhc_end_frame->get_words() * 4;
1157  if (cancheck_countedBytesInDHC) {
1158  if (countedBytesInDHC != w) {
1159  if (!(m_suppressErrorMask[c_nrDHC_WIE])) {
1160  B2WARNING("Number of Words in DHC END does not match");
1161  B2DEBUG(29, "Number of Words in DHC END does not match: WIE $" << hex << countedBytesInDHC << " != DHC END $" << hex << w);
1162  }
1163  m_errorMask[c_nrDHC_WIE] = true;
1164  } else {
1165  if (m_verbose)
1166  B2DEBUG(29, "EVT END: WIE $" << hex << countedBytesInDHC << " == DHC END $" << hex << w);
1167  }
1168  // else ... processed data -> length invalid
1169  }
1170  }
1172  if (dhc.data_dhc_end_frame->getErrorInfo() != 0) {
1173  if (!(m_suppressErrorMask[c_nrDHH_END_ERRORBITS])) B2ERROR("DHC END Error Info set to $" << hex <<
1175  m_errorMask[c_nrDHH_END_ERRORBITS] = true;
1176  }
1177  dhc.check_crc(m_errorMask, m_suppressErrorMask[c_nrDHE_CRC]);
1178  m_errorMaskDHC |= m_errorMask; // do latest updates
1179 
1180  if (daqpktstat.dhc_size() > 0) {
1181  // only is we have a DHC object... or back() is undefined
1182  // Remark, if we have a broken data (DHC_START/END) structure, we might fill the
1183  // previous DHC object ... but then the data is junk anyway
1184  daqpktstat.dhc_back().setErrorMask(m_errorMaskDHC);
1185  //B2DEBUG(98,"** DHC "<<currentDHCID<<" Raw"<<dhc.data_dhc_end_frame->get_words() * 4 <<" Red"<<countedBytesInDHC);
1186  daqpktstat.dhc_back().setCounters(dhc.data_dhc_end_frame->get_words() * 4, countedBytesInDHC);
1188  }
1189  m_errorMaskDHC = 0;
1190  currentDHEID = 0xFFFFFFFF;
1191  currentDHCID = 0xFFFFFFFF;
1192  currentVxdId = 0;
1193  break;
1194  };
1195  case EDHCFrameHeaderDataType::c_DHE_END: {
1196  if (m_verbose) dhc.data_dhe_end_frame->print();
1197  if (currentDHEID != dhc.data_dhe_end_frame->getDHEId()) {
1198  if (!(m_suppressErrorMask[c_nrDHE_START_END_ID])) {
1199  B2WARNING("DHE ID from DHE Start and this frame do not match");
1200  B2DEBUG(29, "DHE ID from DHE Start and this frame do not match $" << hex << currentDHEID << " != $" <<
1201  dhc.data_dhe_end_frame->getDHEId());
1202  }
1203  m_errorMask[c_nrDHE_START_END_ID] = true;
1204  }
1206  if (dhc.data_dhe_end_frame->getErrorInfo() != 0) {
1207  if (!(m_suppressErrorMask[c_nrDHH_END_ERRORBITS])) {
1208  B2ERROR("DHE END Error Info set to $" << hex <<
1210  }
1211  m_errorMask[c_nrDHH_END_ERRORBITS] = true;
1212  }
1213  dhc.check_crc(m_errorMask, m_suppressErrorMask[c_nrDHE_CRC]);
1214  if (found_mask_active_dhp != mask_active_dhp) {
1215  if (!(m_suppressErrorMask[c_nrDHP_ACTIVE])) {
1216  B2WARNING("DHE_END: DHP active mask differs from found data");
1217  B2DEBUG(29, "DHE_END: DHP active mask differs from found data $" << hex << mask_active_dhp << " != $" << hex <<
1218  found_mask_active_dhp
1219  << " mask of found dhp/ghost frames");
1220  }
1221  m_errorMask[c_nrDHP_ACTIVE] = true;
1222  }
1223  countedDHEEndFrames++;
1224  if (countedDHEStartFrames < countedDHEEndFrames) {
1225  // the other case is checked in Start
1226  if (!(m_suppressErrorMask[c_nrDHE_END_WO_START])) B2WARNING("DHE_END without DHE_START");
1227  m_errorMask[c_nrDHE_END_WO_START] = true;
1228  }
1229  {
1230  int w;
1231  w = dhc.data_dhe_end_frame->get_words() * 2;
1232  if (cancheck_countedBytesInDHE) {
1233  if (countedBytesInDHE != w) {
1234  if (!(m_suppressErrorMask[c_nrDHE_WIE])) {
1235  B2WARNING("Number of Words in DHE END does not match");
1236  B2DEBUG(29, "Number of Words in DHE END does not match: WIE $" << hex << countedBytesInDHE << " != DHE END $" << hex << w);
1237  }
1238  m_errorMask[c_nrDHE_WIE] = true;
1239  } else {
1240  if (m_verbose)
1241  B2DEBUG(29, "EVT END: WIE $" << hex << countedBytesInDHE << " == DHE END $" << hex << w);
1242  }
1243  // else ... processed data -> length invalid
1244  }
1245  }
1246  m_errorMaskDHE |= m_errorMask; // do latest updates
1247 
1248  if (daqpktstat.dhc_size() > 0) {
1249  if (daqpktstat.dhc_back().dhe_size() > 0) {
1250  // only is we have a DHC and DHE object... or back() is undefined
1251  // Remark, if we have a broken data (DHE_START/END) structure, we might fill the
1252  // previous DHE object ... but then the data is junk anyway
1253  daqpktstat.dhc_back().dhe_back().setErrorMask(m_errorMaskDHE);
1254  // B2DEBUG(98,"** DHC "<<currentDHEID<<" Raw "<<dhc.data_dhe_end_frame->get_words() * 2 <<" Red"<<countedBytesInDHE);
1255  daqpktstat.dhc_back().dhe_back().setCounters(dhc.data_dhe_end_frame->get_words() * 2, countedBytesInDHE);
1257  }
1258  }
1259  m_errorMaskDHE = 0;
1260  currentDHEID |= 0xFF000000;// differenciate from 0xFFFFFFFFF as initial value
1261  currentVxdId = 0;
1262  break;
1263  };
1264  case EDHCFrameHeaderDataType::c_ONSEN_ROI:
1265  if (m_verbose) dhc.data_onsen_roi_frame->print();
1266  dhc.data_onsen_roi_frame->check_error(m_errorMask, len, m_suppressErrorMask[c_nrROI_PACKET_INV_SIZE]);
1268  len - 4);
1269  dhc.check_crc(m_errorMask, m_suppressErrorMask[c_nrDHE_CRC]);
1270  if (!m_doNotStore) {
1271  //dhc.data_onsen_roi_frame->save(m_storeROIs, len, (unsigned int*) data);
1272  // void save(StoreArray<PXDRawROIs>& sa, unsigned int length, unsigned int* data) const
1273  // 4 byte header, ROIS (n*8), 4 byte copy of inner CRC, 4 byte outer CRC
1274  if (len >= dhc.data_onsen_roi_frame->getMinSize()) {
1275  //if ((len - dhc.data_onsen_roi_frame->getMinSize()) % 8 != 0) {
1276  // error checking in check_error() above, this is only for dump-ing
1277  // dump_roi(data, len - 4); // dump ROI payload, minus CRC
1278  //}
1279  unsigned int l;
1280  l = (len - dhc.data_onsen_roi_frame->getMinSize()) / 8;
1281  // Endian swapping is done in Contructor of RawRoi object
1282  m_storeROIs.appendNew(l, &((unsigned int*) data)[1]);
1283  }
1284  }
1285  break;
1286  case EDHCFrameHeaderDataType::c_ONSEN_TRG:
1287  eventNrOfOnsenTrgFrame = eventNrOfThisFrame;
1288  if (dhc.data_onsen_trigger_frame->get_trig_nr1() != (unsigned int)(m_meta_event_nr & 0xFFFFFFFF)) {
1289  if (!(m_suppressErrorMask[c_nrMETA_MM_ONS_HLT])) {
1290  B2WARNING("Trigger Frame HLT Trigger Nr mismatch");
1291  B2DEBUG(29, "Trigger Frame HLT Trigger Nr mismatch: HLT $" <<
1292  dhc.data_onsen_trigger_frame->get_trig_nr1() << " META " << (m_meta_event_nr & 0xFFFFFFFF));
1293  }
1294  m_errorMask[c_nrMETA_MM_ONS_HLT] = true;
1295  }
1299  if (!(m_suppressErrorMask[c_nrMETA_MM_ONS_HLT])) {
1300  B2WARNING("Trigger Frame HLT Exp/Run/Subrun Nr mismatch");
1301  B2DEBUG(29, "Trigger Frame HLT Exp/Run/Subrun Nr mismatch: Exp HLT $" <<
1303  " Run HLT $" << dhc.data_onsen_trigger_frame->get_run1() << " META " << m_meta_run_nr <<
1304  " Subrun HLT $" << dhc.data_onsen_trigger_frame->get_subrun1() << " META " << m_meta_subrun_nr);
1305  }
1306  m_errorMask[c_nrMETA_MM_ONS_HLT] = true;
1307  }
1308 
1310  if (dhc.data_onsen_trigger_frame->get_trig_nr2() != (unsigned int)(m_meta_event_nr & 0xFFFFFFFF)) {
1311  if (!(m_suppressErrorMask[c_nrMETA_MM_ONS_DC])) {
1312  B2WARNING("Trigger Frame DATCON Trigger Nr mismatch");
1313  B2DEBUG(29, "Trigger Frame DATCON Trigger Nr mismatch: DC $" <<
1314  dhc.data_onsen_trigger_frame->get_trig_nr2() << " META " << (m_meta_event_nr & 0xFFFFFFFF));
1315  }
1316  m_errorMask[c_nrMETA_MM_ONS_DC] = true;
1317  }
1321  if (!(m_suppressErrorMask[c_nrMETA_MM_ONS_DC])) {
1322  B2WARNING("Trigger Frame DATCON Exp/Run/Subrun Nr mismatch");
1323  B2DEBUG(29, "Trigger Frame DATCON Exp/Run/Subrun Nr mismatch: Exp DC $" <<
1325  " Run DC $" << dhc.data_onsen_trigger_frame->get_run2() << " META " << m_meta_run_nr <<
1326  " Subrun DC $" << dhc.data_onsen_trigger_frame->get_subrun2() << " META " << m_meta_subrun_nr);
1327  }
1328  m_errorMask[c_nrMETA_MM_ONS_DC] = true;
1329  }
1330  }
1331 
1332 // B2WARNING("TRG TAG HLT: $" << hex << dhc.data_onsen_trigger_frame->get_trig_tag1() << " DATCON $" << dhc.data_onsen_trigger_frame->get_trig_tag2() << " META " << m_meta_time);
1333 
1336  m_suppressErrorMask[c_nrHLTROI_MAGIC],
1337  m_suppressErrorMask[c_nrMERGER_TRIGNR]);
1338  dhc.check_crc(m_errorMask, m_suppressErrorMask[c_nrDHE_CRC]);
1339  if (Frame_Number != 0) {
1340  if (!(m_suppressErrorMask[c_nrEVENT_STRUCT])) B2WARNING("ONSEN TRG Frame must be the first one.");
1341  m_errorMask[c_nrEVENT_STRUCT] = true;
1342  }
1343  isUnfiltered_event = dhc.data_onsen_trigger_frame->is_SendUnfiltered();
1344  if (isUnfiltered_event) m_sendunfiltered++;
1347  break;
1348  default:
1349  if (!(m_suppressErrorMask[c_nrDHC_UNKNOWN])) B2WARNING("UNKNOWN DHC frame type");
1350  m_errorMask[c_nrDHC_UNKNOWN] = true;
1351  if (m_verbose) hw->print();
1352  break;
1353  }
1354 
1355  if (eventNrOfThisFrame != eventNrOfOnsenTrgFrame && !isFakedData_event) {
1356  if (!(m_suppressErrorMask[c_nrFRAME_TNR_MM])) {
1357  B2WARNING("Frame TrigNr != ONSEN Trig Nr");
1358  B2DEBUG(29, "Frame TrigNr != ONSEN Trig Nr $" << hex << eventNrOfThisFrame << " != $" << eventNrOfOnsenTrgFrame);
1359  }
1360  m_errorMask[c_nrFRAME_TNR_MM] = true;
1361  }
1362 
1363  if (Frame_Number == 0) {
1365  if (frame_type != EDHCFrameHeaderDataType::c_ONSEN_TRG) {
1366  if (!m_formatBonnDAQ) {
1367  if (!(m_suppressErrorMask[c_nrONSEN_TRG_FIRST])) B2WARNING("First frame is not a ONSEN Trigger frame");
1368  m_errorMask[c_nrONSEN_TRG_FIRST] = true;
1369  }
1370  }
1371  } else { // (Frame_Number != 0 &&
1373  if (frame_type == EDHCFrameHeaderDataType::c_ONSEN_TRG) {
1374  if (!(m_suppressErrorMask[c_nrONSEN_TRG_FIRST])) B2WARNING("More than one ONSEN Trigger frame");
1375  m_errorMask[c_nrONSEN_TRG_FIRST] = true;
1376  }
1377  }
1378 
1379  if (!m_formatBonnDAQ) {
1380  if (Frame_Number == 1) {
1382  if (frame_type != EDHCFrameHeaderDataType::c_DHC_START) {
1383  if (!(m_suppressErrorMask[c_nrDHC_START_SECOND])) B2WARNING("Second frame is not a DHC start of subevent frame");
1384  m_errorMask[c_nrDHC_START_SECOND] = true;
1385  }
1386  } else { // (Frame_Number != 0 &&
1388  if (frame_type == EDHCFrameHeaderDataType::c_DHC_START) {
1389  if (!(m_suppressErrorMask[c_nrDHC_START_SECOND])) B2WARNING("More than one DHC start of subevent frame");
1390  m_errorMask[c_nrDHC_START_SECOND] = true;
1391  }
1392  }
1393  }
1394 
1395  if (Frame_Number == Frames_in_event - 1) {
1397  if (frame_type != EDHCFrameHeaderDataType::c_DHC_END) {
1398  if (!(m_suppressErrorMask[c_nrDHC_END_MISS])) B2WARNING("Last frame is not a DHC end of subevent frame");
1399  m_errorMask[c_nrDHC_END_MISS] = true;
1400  }
1401 
1403  if (countedDHEStartFrames != countedDHEEndFrames || countedDHEStartFrames != nr_active_dhe) {
1404  if (!(m_suppressErrorMask[c_nrDHE_ACTIVE]) || !(m_suppressErrorMask[c_nrDHE_START_WO_END])
1405  || !(m_suppressErrorMask[c_nrDHE_END_WO_START])) {
1406  B2WARNING("The number of DHE Start/End does not match the number of active DHE in DHC Header!");
1407  B2DEBUG(29, "The number of DHE Start/End does not match the number of active DHE in DHC Header! Header: " << nr_active_dhe <<
1408  " Start: " << countedDHEStartFrames << " End: " << countedDHEEndFrames << " Mask: $" << hex << mask_active_dhe << " in Event Nr " <<
1409  eventNrOfThisFrame);
1410  }
1411  if (countedDHEStartFrames == countedDHEEndFrames) m_errorMask[c_nrDHE_ACTIVE] = true;
1412  if (countedDHEStartFrames > countedDHEEndFrames) m_errorMask[c_nrDHE_START_WO_END] = true;
1413  if (countedDHEStartFrames < countedDHEEndFrames) m_errorMask[c_nrDHE_END_WO_START] = true;
1414  }
1415 
1416  } else { // (Frame_Number != Frames_in_event - 1 &&
1418  if (frame_type == EDHCFrameHeaderDataType::c_DHC_END) {
1419  if (!(m_suppressErrorMask[c_nrDHC_END_DBL])) B2WARNING("More than one DHC end of subevent frame");
1420  m_errorMask[c_nrDHC_END_DBL] = true;
1421  }
1422  }
1423 
1424  if (!m_formatBonnDAQ) {
1426  if (Frame_Number == 2 && nr_active_dhe != 0 && frame_type != EDHCFrameHeaderDataType::c_DHE_START) {
1427  if (!(m_suppressErrorMask[c_nrDHE_START_THIRD])) B2WARNING("Third frame is not a DHE start frame");
1428  m_errorMask[c_nrDHE_START_THIRD] = true;
1429  }
1430  }
1431 
1432  if (frame_type != EDHCFrameHeaderDataType::c_ONSEN_ROI && frame_type != EDHCFrameHeaderDataType::c_ONSEN_TRG) {
1433  // actually, they should not be withing Start and End, but better be sure.
1434  countedBytesInDHC += len;
1435  countedBytesInDHE += len;
1436  }
1437  B2DEBUG(29, "DHC/DHE $" << hex << countedBytesInDHC << ", $" << hex << countedBytesInDHE);
1438 }
1439 
1441 {
1443  const int lut[32] = {
1444  0, 1, 1, 2, 1, 2, 2, 3, 1, 2, 2, 3, 2, 3, 3, 4,
1445  1, 2, 2, 3, 2, 3, 3, 4, 2, 3, 3, 4, 3, 4, 4, 5
1446  };
1447  return lut[i & 0x1F];
1448 }
1449 
Base class for Modules.
Definition: Module.h:72
void setDescription(const std::string &description)
Sets the description of the module.
Definition: Module.cc:214
void setPropertyFlags(unsigned int propertyFlags)
Sets the flags for the module properties.
Definition: Module.cc:208
void setReturnValue(int value)
Sets the return value for this module as integer.
Definition: Module.cc:220
@ c_ParallelProcessingCertified
This module can be run in parallel processing mode safely (All I/O must be done through the data stor...
Definition: Module.h:80
void setErrorMask(const PXDErrorFlags &mask)
Set Error bit mask This should be the OR of error masks of all sub-objects (DHC, DHE)
PXDDAQDHEStatus & dhe_back()
Returns PXDDAQDHEStatus for last DHE.
void setGatedFlag(bool gm)
set gating info from the DHC END
PXDDAQDHEStatus & newDHE(Args &&... params)
Add new DHE information.
void setGatedHER(bool isher)
set HER/LER gating info from the DHC END
void setEndErrorInfo(uint32_t e)
set errorinfo from the DHC END
size_t dhe_size() const
Returns number of DHEs.
void setCounters(uint32_t raw, uint32_t red)
Set Data counters for reduction calculation.
void setErrorMask(const PXDErrorFlags &mask)
Set Error bit mask.
PXDDAQDHPStatus & dhp_back()
Returns PXDDAQDHPStatus for the last DHP.
auto addCM(PXDDAQDHPComMode &daqcm)
Add Common Mode information.
void setEndErrorInfo(uint32_t e)
set erroinfo from the DHE END
PXDDAQDHPStatus & newDHP(Args &&... params)
New DHP information.
void setCounters(uint32_t raw, uint32_t red)
Set Data counters for reduction calculation.
void setTruncated(void)
set Truncation
The PXD DAQ Packet Status class.
void setErrorMask(const PXDErrorFlags &mask)
Set Error bit mask This should be the OR of error masks of all sub-objects (DHC, DHE)
PXDDAQDHCStatus & newDHC(Args &&... params)
Add new DHC information.
size_t dhc_size() const
Returns number of DHCs.
PXDDAQDHCStatus & dhc_back()
Returns PXDDAQDHCStatus for last DHC.
static void map_rc_to_uv_IF_OB(unsigned int &row_u, unsigned int &col_v, const unsigned int dhp_id, const unsigned int dhe_ID)
Maps row/col of inner forward (IF) and outer backward (OB) modules of the PXD to U/V cell.
static void map_rc_to_uv_IB_OF(unsigned int &row_u, unsigned int &col_v, const unsigned int dhp_id, const unsigned int dhe_ID)
Maps row/cols of inner backward (IB) and outer forward (OF) modules of the PXD to U/V cell.
std::string m_PXDRawHitsName
The name of the StoreArray of PXDRawHits to be generated.
void initialize() override final
Initialize the module.
unsigned long m_meta_experiment
Experiment from MetaInfo.
PXDError::PXDErrorFlags m_errorMaskEvent
Error Mask set per packet / event.
StoreObjPtr< PXDDAQStatus > m_storeDAQEvtStats
Output array for DAQ Status.
bool m_doNotStore
Only unpack, but Do Not Store anything to file.
StoreArray< RawPXD > m_storeRawPXD
Input array for PXD Raw.
bool m_forceNoMapping
Force No Mapping even if DHH bit is requesting it.
std::string m_PXDDAQEvtStatsName
The name of the StoreObjPtr of PXDDAQStatus to be generated.
static void dump_roi(void *data, unsigned int frame_len)
dump to a file, helper function for debugging.
PXDError::PXDErrorFlags m_suppressErrorMask
Mask for suppressing selected error messages.
bool m_formatBonnDAQ
flag ONSEN or BonnDAQ format
unsigned int m_errorCounter[PXDError::ONSEN_MAX_TYPE_ERR]
Error counters.
StoreArray< PXDRawROIs > m_storeROIs
Output array for Raw ROIs.
unsigned int m_sendunfiltered
counter for send unfiltered
PXDError::PXDErrorFlags m_errorMaskDHC
Error Mask set per packet / DHC.
PXDError::PXDErrorFlags m_errorMaskPacket
Error Mask set per packet / packet.
std::string m_RawPXDsName
The name of the StoreArray of processed RawPXDs.
void unpack_dhp(void *data, unsigned int len, unsigned int dhe_first_readout_frame_lo, unsigned int dhe_ID, unsigned dhe_DHPport, unsigned dhe_reformat, VxdID vxd_id, PXDDAQPacketStatus &daqpktstat)
Unpack DHP data within one DHE frame.
void terminate() override final
Terminate the module.
StoreObjPtr< EventMetaData > m_eventMetaData
Input ptr for EventMetaData.
int m_last_dhp_readout_frame_lo[4]
some workaround check for continouous frame ids
unsigned long m_meta_subrun_nr
Subrun Number from MetaInfo.
void event() override final
do the unpacking
StoreArray< PXDRawAdc > m_storeRawAdc
Output array for Raw Adcs.
unsigned long m_meta_event_nr
Event Number from MetaInfo.
PXDError::PXDErrorFlags m_errorSkipPacketMask
Mask for error which stop package unpacking directly.
static int nr5bits(int i)
helper function to "count" nr of set bits within lower 5 bits.
void unpack_fce(unsigned short *data, unsigned int length, VxdID vxd_id)
Unpack DHP/FCE data within one DHE frame Not fully implemented as cluster format not 100% fixed.
std::string m_PXDRawAdcsName
The name of the StoreArray of PXDRawAdcs to be generated.
unsigned long m_meta_run_nr
Run Number from MetaInfo.
bool m_continueOnError
flag continue unpacking of frames even after error (for debugging)
unsigned int m_notaccepted
counter for not accepted events...
unsigned int m_meta_sec
Time(Tag) from MetaInfo, seconds (masked to lower bits)
void unpack_dhp_raw(void *data, unsigned int len, unsigned int dhe_ID, unsigned dhe_DHPport, VxdID vxd_id)
Unpack DHP RAW data within one DHE frame (pedestals, etc)
PXDError::PXDErrorFlags m_criticalErrorMask
Critical error mask which defines return value of task.
unsigned int m_sendrois
counter for send debug rois
static void dump_dhp(void *data, unsigned int frame_len)
dump to a file, helper function for debugging.
void unpack_rawpxd(RawPXD &px, int inx)
Unpack one event (several frames) stored in RawPXD object.
unsigned long long int m_meta_time
Time(Tag) from MetaInfo.
unsigned int m_maxDHPFrameDiff
Maximum DHP frame difference until error is reported.
PXDError::PXDErrorFlags m_errorMask
Error Mask set per packet / frame.
unsigned int m_unpackedEventsCount
Event counter.
StoreArray< PXDRawHit > m_storeRawHits
Output array for Raw Hits.
void unpack_dhc_frame(void *data, const int len, const int Frame_Number, const int Frames_in_event, PXDDAQPacketStatus &daqpktstat)
Unpack one frame (within an event).
bool m_forceMapping
Force Mapping even if DHH bit is not requesting it.
unsigned int m_meta_ticks
Time(Tag) from MetaInfo, Ticks of 127MHz.
bool m_verbose
give verbose unpacking information
PXDError::PXDErrorFlags m_errorMaskDHE
Error Mask set per packet / DHE.
std::string m_PXDRawROIsName
The name of the StoreArray of PXDRawROIs to be generated.
DHC frame wrapper class.
const dhc_ghost_frame * data_ghost_frame
data_ghost_frame
unsigned int getEventNrLo(void) const
get event nr lo (from data)
const dhc_end_frame * data_dhc_end_frame
data_dhc_end_frame
unsigned int getFixedSize(void)
get fixed size
int getFrameType(void)
get type of frame
const dhc_dhe_start_frame * data_dhe_start_frame
data_dhe_start_frame
void set(const void *d, unsigned int t)
set data and type (and length to 0)
const dhc_start_frame * data_dhc_start_frame
data_dhc_start_frame
const dhc_direct_readout_frame * data_direct_readout_frame
data_direct_readout_frame
const dhc_dhe_end_frame * data_dhe_end_frame
data_dhe_end_frame
void check_padding(PXDErrorFlags &errormask)
check padding and return it
const dhc_onsen_roi_frame * data_onsen_roi_frame
data_onsen_roi_frame
const dhc_direct_readout_frame_raw * data_direct_readout_frame_raw
data_direct_readout_frame_raw
const dhc_commode_frame * data_commode_frame
data_commode_frame
void check_crc(PXDErrorFlags &errormask, bool ignore_crc_flag=false)
check crc and return it
const dhc_onsen_trigger_frame * data_onsen_trigger_frame
data_onsen_trigger_frame
The Raw PXD class.
Definition: RawPXD.h:27
virtual int * data(void)
get pointer to data
Definition: RawPXD.cc:81
virtual int size() const
get size of buffer in 32 Bit words
Definition: RawPXD.cc:76
Class to uniquely identify a any structure of the PXD and SVD.
Definition: VxdID.h:33
Class to store variables with their name which were sent to the logging service.
void addParam(const std::string &name, T &paramVariable, const std::string &description, const T &defaultValue)
Adds a new parameter to the module.
Definition: Module.h:560
#define REG_MODULE(moduleName)
Register the given module (without 'Module' suffix) with the framework.
Definition: Module.h:650
std::tuple< uint8_t, uint16_t, uint8_t > PXDDAQDHPComMode
tuple of Chip ID (2 bit), Row (10 bit), Common Mode (6 bit)
Namespace to encapsulate code needed for simulation and reconstrucion of the PXD.
boost::endian::big_uint32_t ubig32_t
define alias ubig32_t
boost::endian::big_uint16_t ubig16_t
define alias ubig16_t
Abstract base class for different kinds of events.
unsigned int getDHEId(void) const
get DHE Id (from word0)
unsigned int get_words(void) const
get words
unsigned int getDHEId(void) const
get DHE Id
unsigned int getErrorInfo(void) const
get error info
unsigned int getDHEId(void) const
get DHE Id (from word0)
unsigned short getEventNrLo(void) const
get trigger_nr_lo
unsigned short getTriggerGate(void) const
trigger gate (updated to 8 bit, before 10!)
unsigned short getStartFrameNr(void) const
last DHP frame before trigger
unsigned short getEventNrHi(void) const
get trigger_nr_hi
unsigned int getActiveDHPMask(void) const
get Active DHP Mask (from word0)
bool getDataReformattedFlag(void) const
get DataReformattedFlag (from word0)
unsigned short getDHEId(void) const
get DHE Id (from word0)
unsigned short getDHPPort(void) const
get DHP Port (from word0)
void print(void) const
print
unsigned int get_words(void) const
get words
bool isFakedData(void) const
is faked data
unsigned int get_dhc_id(void) const
get dhc id (from word0)
unsigned int getErrorInfo(void) const
get error info
DHC frame header word data struct.
unsigned short getFrameType(void) const
get type of frame
unsigned short getErrorFlag(void) const
get error flag
unsigned short getDHEId(void) const
get DHE Id (from word0)
unsigned short getDHPPort(void) const
get DDHP port (from word0)
unsigned int check_inner_crc(PXDErrorFlags &, unsigned int) const
check inner crc (currently not implemented/needed)
void check_error(PXDErrorFlags &errormask, int length, bool ignore_inv_size_flag=false) const
check error and return error mask
int getMinSize(void) const
4 byte header, ROIS (n*8), 4 byte copy of inner CRC, 4 byte outer CRC
unsigned short get_subrun1(void) const
get subrun1 (from trigtag1)
unsigned int get_trig_nr1(void) const
get trignr1
bool is_SendUnfiltered(void) const
is sendUnfiltered
bool is_SendROIs(void) const
is sendROIs
void check_error(PXDErrorFlags &errormask, bool ignore_datcon_flag=false, bool ignore_hltroi_magic_flag=false, bool ignore_merger_mm_flag=false) const
check error and return error mask
unsigned short get_run2(void) const
get run2 (from trigtag2)
bool is_fake_datcon(void) const
is fake datcon
unsigned short get_experiment1(void) const
get experiment1 (from trigtag1)
unsigned int get_trig_nr2(void) const
get trignr2
unsigned short get_experiment2(void) const
get experiment2
unsigned short get_subrun2(void) const
get subrun2 (from trigtag2)
bool is_Accepted(void) const
is accepted
unsigned short get_run1(void) const
get run1 (from trigtag1)
void print(void) const
print
unsigned short get_gated_isher(void) const
get gated_isher (from word0)
unsigned short get_subrun(void) const
get subrun (from run_subrun)
unsigned short get_run(void) const
get run (from run_subrun)
unsigned short get_dhc_id(void) const
get dhc_id (from word0)
const ubig16_t time_tag_hi
time_tag_hi
const ubig16_t time_tag_mid
time_tag_mid
bool isFakedData(void) const
isFakedData
unsigned short getEventNrLo(void) const
get trigger_nr_lo
unsigned short get_experiment(void) const
get experiment (from exp_run)
unsigned short get_gated_flag(void) const
get gated_flag (from word0)
unsigned short get_active_dhe_mask(void) const
get active_dhe_mask (from word0)
const ubig16_t time_tag_lo_and_type
time_tag_lo_and_type
unsigned short getEventNrHi(void) const
get trigger_nr_hi