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HcalTriggerPrimitiveAlgo Class Reference

#include <HcalTriggerPrimitiveAlgo.h>

Classes

struct  HFDetails
 
struct  HFUpgradeDetails
 

Public Member Functions

template<typename T , typename... Args>
void addDigis (const T &collection, const Args &...digis)
 
template<typename T >
void addDigis (const T &collection)
 
template<typename D >
void addDigis (const HcalDataFrameContainer< D > &collection)
 
 HcalTriggerPrimitiveAlgo (bool pf, const std::vector< double > &w, int latency, uint32_t FG_threshold, const std::vector< uint32_t > &FG_HF_thresholds, uint32_t ZS_threshold, int numberOfSamples, int numberOfPresamples, int numberOfFilterPresamplesHBQIE11, int numberOfFilterPresamplesHEQIE11, int numberOfSamplesHF, int numberOfPresamplesHF, bool useTDCInMinBiasBits, uint32_t minSignalThreshold=0, uint32_t PMT_NoiseThreshold=0)
 
void overrideParameters (const edm::ParameterSet &ps)
 
template<typename... Digis>
void run (const HcalTPGCoder *incoder, const HcalTPGCompressor *outcoder, const HcalDbService *conditions, HcalTrigPrimDigiCollection &result, const HcalTrigTowerGeometry *trigTowerGeometry, float rctlsb, const HcalFeatureBit *LongvrsShortCut, const Digis &...digis)
 
void runFEFormatError (const FEDRawDataCollection *rawraw, const HcalElectronicsMap *emap, HcalTrigPrimDigiCollection &result)
 
void runZS (HcalTrigPrimDigiCollection &tp)
 
void setFixSaturationFlag (bool fix_saturation)
 
void setNCTScaleShift (int)
 
void setNumFilterPresamplesHBQIE11 (int presamples)
 
void setNumFilterPresamplesHEQIE11 (int presamples)
 
void setPeakFinderAlgorithm (int algo)
 
void setRCTScaleShift (int)
 
void setUpgradeFlags (bool hb, bool he, bool hf)
 
void setWeightQIE11 (int aieta, double weight)
 
void setWeightsQIE11 (const edm::ParameterSet &weightsQIE11)
 
 ~HcalTriggerPrimitiveAlgo ()
 

Private Types

typedef std::map
< HcalTrigTowerDetId,
std::vector< bool > > 
FGbitMap
 
typedef std::vector
< HcalFinegrainBit::Tower
FGUpgradeContainer
 
typedef std::map
< HcalTrigTowerDetId,
FGUpgradeContainer
FGUpgradeMap
 
typedef std::vector
< HcalFinegrainBit::TowerTDC
FGUpgradeTDCContainer
 
typedef std::map
< HcalTrigTowerDetId,
FGUpgradeTDCContainer
FGUpgradeTDCMap
 
typedef std::map
< HcalTrigTowerDetId, std::map
< uint32_t, HFDetails > > 
HFDetailMap
 
typedef std::map
< HcalTrigTowerDetId, std::map
< uint32_t, std::array
< HFUpgradeDetails, 4 > > > 
HFUpgradeDetailMap
 
typedef std::map
< HcalTrigTowerDetId,
std::vector< bool > > 
SatMap
 
typedef std::vector
< IntegerCaloSamples
SumFGContainer
 
typedef std::map
< HcalTrigTowerDetId,
IntegerCaloSamples
SumMap
 
typedef std::map
< HcalTrigTowerDetId,
SumFGContainer
TowerMapFGSum
 
typedef std::map< uint32_t,
std::vector< bool > > 
TowerMapVeto
 

Private Member Functions

void addFG (const HcalTrigTowerDetId &id, std::vector< bool > &msb)
 
void addSignal (const HBHEDataFrame &frame)
 adds the signal to the map More...
 
void addSignal (const HFDataFrame &frame)
 
void addSignal (const QIE10DataFrame &frame)
 
void addSignal (const QIE11DataFrame &frame)
 
void addSignal (const IntegerCaloSamples &samples)
 
void addUpgradeFG (const HcalTrigTowerDetId &id, int depth, const std::vector< std::bitset< 2 >> &bits)
 
void addUpgradeTDCFG (const HcalTrigTowerDetId &id, const QIE11DataFrame &frame)
 
void analyze (IntegerCaloSamples &samples, HcalTriggerPrimitiveDigi &result)
 adds the actual digis More...
 
void analyzeHF (IntegerCaloSamples &samples, HcalTriggerPrimitiveDigi &result, const int hf_lumi_shift)
 
void analyzeHF2016 (const IntegerCaloSamples &SAMPLES, HcalTriggerPrimitiveDigi &result, const int HF_LUMI_SHIFT, const HcalFeatureBit *HCALFEM)
 
void analyzeHFQIE10 (const IntegerCaloSamples &SAMPLES, HcalTriggerPrimitiveDigi &result, const int HF_LUMI_SHIFT, const HcalFeatureBit *HCALFEM)
 
void analyzeQIE11 (IntegerCaloSamples &samples, std::vector< bool > sample_saturation, HcalTriggerPrimitiveDigi &result, const HcalFinegrainBit &fg_algo)
 
bool needLegacyFG (const HcalTrigTowerDetId &id) const
 
bool needUpgradeID (const HcalTrigTowerDetId &id, int depth) const
 
bool passTDC (const QIE10DataFrame &digi, int ts) const
 
bool validChannel (const QIE10DataFrame &digi, int ts) const
 
bool validUpgradeFG (const HcalTrigTowerDetId &id, int depth) const
 

Private Attributes

const HcalDbServiceconditions_
 
std::vector< uint32_t > FG_HF_thresholds_
 
uint32_t FG_threshold_
 
FGbitMap fgMap_
 
FGUpgradeMap fgUpgradeMap_
 
FGUpgradeTDCMap fgUpgradeTDCMap_
 
bool fix_saturation_ = false
 
TowerMapVeto HF_Veto
 
const HcaluLUTTPGCoderincoder_
 
int latency_
 
HcalFeatureBitLongvrsShortCut
 
uint32_t minSignalThreshold_
 
int NCTScaleShift
 
int numberOfFilterPresamplesHBQIE11_
 
int numberOfFilterPresamplesHEQIE11_
 
int numberOfPresamples_
 
int numberOfPresamplesHF_
 
int numberOfSamples_
 
int numberOfSamplesHF_
 
const HcalTPGCompressoroutcoder_
 
bool override_adc_hf_ = false
 
uint32_t override_adc_hf_value_
 
edm::ParameterSet override_parameters_
 
bool override_tdc_hf_ = false
 
unsigned long long override_tdc_hf_value_
 
int peak_finder_algorithm_
 
bool peakfind_
 
uint32_t PMT_NoiseThreshold_
 
int RCTScaleShift
 
HFDetailMap theHFDetailMap
 
HFUpgradeDetailMap theHFUpgradeDetailMap
 
SatMap theSatMap
 
SumMap theSumMap
 
double theThreshold
 
TowerMapFGSum theTowerMapFGSum
 
const HcalTrigTowerGeometrytheTrigTowerGeometry
 
bool upgrade_hb_ = false
 
bool upgrade_he_ = false
 
bool upgrade_hf_ = false
 
bool useTDCInMinBiasBits_
 
std::vector< double > weights_
 
std::array< std::array< double, 2 >, 29 > weightsQIE11_
 
uint32_t ZS_threshold_
 
int ZS_threshold_I_
 

Static Private Attributes

static const int FIRST_DEPTH7_TOWER = 26
 
static const int FIRST_FINEGRAIN_TOWER = 30
 
static const int HBHE_OVERLAP_TOWER = 16
 
static const int LAST_FINEGRAIN_DEPTH = 6
 
static const int LAST_FINEGRAIN_TOWER = 28
 
static const int QIE10_LINEARIZATION_ET = HcaluLUTTPGCoder::QIE10_LUT_BITMASK
 
static const int QIE10_MAX_LINEARIZATION_ET = 0x7FF
 
static const int QIE11_LINEARIZATION_ET = HcaluLUTTPGCoder::QIE11_LUT_BITMASK
 
static const int QIE11_MAX_LINEARIZATION_ET = 0x7FF
 
static const int QIE8_LINEARIZATION_ET = HcaluLUTTPGCoder::QIE8_LUT_BITMASK
 

Detailed Description

Definition at line 27 of file HcalTriggerPrimitiveAlgo.h.

Member Typedef Documentation

typedef std::map<HcalTrigTowerDetId, std::vector<bool> > HcalTriggerPrimitiveAlgo::FGbitMap
private

Definition at line 210 of file HcalTriggerPrimitiveAlgo.h.

Definition at line 213 of file HcalTriggerPrimitiveAlgo.h.

Definition at line 214 of file HcalTriggerPrimitiveAlgo.h.

Definition at line 217 of file HcalTriggerPrimitiveAlgo.h.

Definition at line 218 of file HcalTriggerPrimitiveAlgo.h.

typedef std::map<HcalTrigTowerDetId, std::map<uint32_t, HFDetails> > HcalTriggerPrimitiveAlgo::HFDetailMap
private

Definition at line 180 of file HcalTriggerPrimitiveAlgo.h.

typedef std::map<HcalTrigTowerDetId, std::map<uint32_t, std::array<HFUpgradeDetails, 4> > > HcalTriggerPrimitiveAlgo::HFUpgradeDetailMap
private

Definition at line 190 of file HcalTriggerPrimitiveAlgo.h.

typedef std::map<HcalTrigTowerDetId, std::vector<bool> > HcalTriggerPrimitiveAlgo::SatMap
private

Definition at line 171 of file HcalTriggerPrimitiveAlgo.h.

Definition at line 193 of file HcalTriggerPrimitiveAlgo.h.

Definition at line 168 of file HcalTriggerPrimitiveAlgo.h.

Definition at line 194 of file HcalTriggerPrimitiveAlgo.h.

typedef std::map<uint32_t, std::vector<bool> > HcalTriggerPrimitiveAlgo::TowerMapVeto
private

Definition at line 207 of file HcalTriggerPrimitiveAlgo.h.

Constructor & Destructor Documentation

HcalTriggerPrimitiveAlgo::HcalTriggerPrimitiveAlgo ( bool  pf,
const std::vector< double > &  w,
int  latency,
uint32_t  FG_threshold,
const std::vector< uint32_t > &  FG_HF_thresholds,
uint32_t  ZS_threshold,
int  numberOfSamples,
int  numberOfPresamples,
int  numberOfFilterPresamplesHBQIE11,
int  numberOfFilterPresamplesHEQIE11,
int  numberOfSamplesHF,
int  numberOfPresamplesHF,
bool  useTDCInMinBiasBits,
uint32_t  minSignalThreshold = 0,
uint32_t  PMT_NoiseThreshold = 0 
)

Definition at line 23 of file HcalTriggerPrimitiveAlgo.cc.

References numberOfPresamples_, numberOfPresamplesHF_, numberOfSamples_, numberOfSamplesHF_, peakfind_, ZS_threshold_, and ZS_threshold_I_.

38  : incoder_(nullptr),
39  outcoder_(nullptr),
40  theThreshold(0),
41  peakfind_(pf),
42  weights_(w),
45  FG_HF_thresholds_(FG_HF_thresholds),
48  numberOfPresamples_(numberOfPresamples),
49  numberOfFilterPresamplesHBQIE11_(numberOfFilterPresamplesHBQIE11),
50  numberOfFilterPresamplesHEQIE11_(numberOfFilterPresamplesHEQIE11),
53  useTDCInMinBiasBits_(useTDCInMinBiasBits),
54  minSignalThreshold_(minSignalThreshold),
55  PMT_NoiseThreshold_(PMT_NoiseThreshold),
56  NCTScaleShift(0),
57  RCTScaleShift(0),
60  //No peak finding setting (for Fastsim)
61  if (!peakfind_) {
62  numberOfSamples_ = 1;
66  }
67  // Switch to integer for comparisons - remove compiler warning
69 }
std::vector< uint32_t > FG_HF_thresholds_
const double w
Definition: UKUtility.cc:23
const HcalTPGCompressor * outcoder_
tuple numberOfSamplesHF
tuple numberOfPresamplesHF
const HcaluLUTTPGCoder * incoder_
HcalTriggerPrimitiveAlgo::~HcalTriggerPrimitiveAlgo ( )

Definition at line 71 of file HcalTriggerPrimitiveAlgo.cc.

71 {}

Member Function Documentation

template<typename T , typename... Args>
void HcalTriggerPrimitiveAlgo::addDigis ( const T collection,
const Args &...  digis 
)
inline

Definition at line 57 of file HcalTriggerPrimitiveAlgo.h.

Referenced by run().

57  {
59  addDigis(digis...);
60  };
void addDigis(const T &collection, const Args &...digis)
template<typename T >
void HcalTriggerPrimitiveAlgo::addDigis ( const T collection)
inline

Definition at line 63 of file HcalTriggerPrimitiveAlgo.h.

References addSignal().

63  {
64  for (const auto& digi : collection) {
65  addSignal(digi);
66  }
67  };
void addSignal(const HBHEDataFrame &frame)
adds the signal to the map
template<typename D >
void HcalTriggerPrimitiveAlgo::addDigis ( const HcalDataFrameContainer< D > &  collection)
inline

Definition at line 70 of file HcalTriggerPrimitiveAlgo.h.

References addSignal(), edm::DataFrameContainer::begin(), edm::DataFrameContainer::end(), and mps_fire::i.

70  {
71  for (auto i = collection.begin(); i != collection.end(); ++i) {
72  D digi(*i);
73  addSignal(digi);
74  }
75  };
const_iterator begin() const
The iterator returned can not safely be used across threads.
DecomposeProduct< arg, typename Div::arg > D
Definition: Factorize.h:141
const_iterator end() const
void addSignal(const HBHEDataFrame &frame)
adds the signal to the map
void HcalTriggerPrimitiveAlgo::addFG ( const HcalTrigTowerDetId id,
std::vector< bool > &  msb 
)
private

Definition at line 833 of file HcalTriggerPrimitiveAlgo.cc.

References fgMap_, mps_fire::i, and gpuClustering::id.

Referenced by addSignal(), and addUpgradeFG().

833  {
834  FGbitMap::iterator itr = fgMap_.find(id);
835  if (itr != fgMap_.end()) {
836  std::vector<bool>& _msb = itr->second;
837  for (size_t i = 0; i < msb.size(); ++i)
838  _msb[i] = _msb[i] || msb[i];
839  } else
840  fgMap_[id] = msb;
841 }
uint16_t *__restrict__ id
void HcalTriggerPrimitiveAlgo::addSignal ( const HBHEDataFrame frame)
private

adds the signal to the map

Definition at line 94 of file HcalTriggerPrimitiveAlgo.cc.

References HcaluLUTTPGCoder::adc2Linear(), addFG(), cms::cuda::assert(), HcalDetId::depth(), mps_fire::i, HBHEDataFrame::id(), incoder_, HcaluLUTTPGCoder::lookupMSB(), HBHEDataFrame::presamples(), HBHEDataFrame::size(), theTrigTowerGeometry, and HcalTrigTowerGeometry::towerIds().

Referenced by addDigis(), and addSignal().

94  {
95  // TODO: Need to add support for seperate 28, 29 in HE
96  //Hack for 300_pre10, should be removed.
97  if (frame.id().depth() == 5)
98  return;
99 
100  std::vector<HcalTrigTowerDetId> ids = theTrigTowerGeometry->towerIds(frame.id());
101  assert(ids.size() == 1 || ids.size() == 2);
102  IntegerCaloSamples samples1(ids[0], int(frame.size()));
103 
104  samples1.setPresamples(frame.presamples());
105  incoder_->adc2Linear(frame, samples1);
106 
107  std::vector<bool> msb;
108  incoder_->lookupMSB(frame, msb);
109 
110  if (ids.size() == 2) {
111  // make a second trigprim for the other one, and split the energy
112  IntegerCaloSamples samples2(ids[1], samples1.size());
113  for (int i = 0; i < samples1.size(); ++i) {
114  samples1[i] = uint32_t(samples1[i] * 0.5);
115  samples2[i] = samples1[i];
116  }
117  samples2.setPresamples(frame.presamples());
118  addSignal(samples2);
119  addFG(ids[1], msb);
120  }
121  addSignal(samples1);
122  addFG(ids[0], msb);
123 }
std::vector< HcalTrigTowerDetId > towerIds(const HcalDetId &cellId) const
the mapping to and from DetIds
constexpr const HcalDetId & id() const
Definition: HBHEDataFrame.h:23
void addFG(const HcalTrigTowerDetId &id, std::vector< bool > &msb)
assert(be >=bs)
const HcalTrigTowerGeometry * theTrigTowerGeometry
constexpr int presamples() const
number of samples before the sample from the triggered beam crossing (according to the hardware) ...
Definition: HBHEDataFrame.h:29
void lookupMSB(const HBHEDataFrame &df, std::vector< bool > &msb) const
constexpr int size() const
total number of samples in the digi
Definition: HBHEDataFrame.h:27
void adc2Linear(const HBHEDataFrame &df, IntegerCaloSamples &ics) const override
const HcaluLUTTPGCoder * incoder_
constexpr int depth() const
get the tower depth
Definition: HcalDetId.h:164
void addSignal(const HBHEDataFrame &frame)
adds the signal to the map
void HcalTriggerPrimitiveAlgo::addSignal ( const HFDataFrame frame)
private

Definition at line 125 of file HcalTriggerPrimitiveAlgo.cc.

References HcaluLUTTPGCoder::adc2Linear(), addSignal(), HcalDetId::depth(), HF_Veto, mps_fire::i, HFDataFrame::id(), incoder_, HcalTriggerPrimitiveAlgo::HFDetails::long_fiber, HcalTriggerPrimitiveAlgo::HFDetails::LongDigi, HcalDetId::maskDepth(), minSignalThreshold_, HFDataFrame::presamples(), IntegerCaloSamples::setPresamples(), HcalTriggerPrimitiveAlgo::HFDetails::short_fiber, HcalTriggerPrimitiveAlgo::HFDetails::ShortDigi, HFDataFrame::size(), theHFDetailMap, theTowerMapFGSum, theTrigTowerGeometry, HcalTrigTowerGeometry::towerIds(), and HcalTrigTowerDetId::version().

125  {
126  if (frame.id().depth() == 1 || frame.id().depth() == 2) {
127  std::vector<HcalTrigTowerDetId> ids = theTrigTowerGeometry->towerIds(frame.id());
128  std::vector<HcalTrigTowerDetId>::const_iterator it;
129  for (it = ids.begin(); it != ids.end(); ++it) {
130  HcalTrigTowerDetId trig_tower_id = *it;
131  IntegerCaloSamples samples(trig_tower_id, frame.size());
132  samples.setPresamples(frame.presamples());
133  incoder_->adc2Linear(frame, samples);
134 
135  // Don't add to final collection yet
136  // HF PMT veto sum is calculated in analyzerHF()
137  IntegerCaloSamples zero_samples(trig_tower_id, frame.size());
138  zero_samples.setPresamples(frame.presamples());
139  addSignal(zero_samples);
140 
141  // Pre-LS1 Configuration
142  if (trig_tower_id.version() == 0) {
143  // Mask off depths: fgid is the same for both depths
144  uint32_t fgid = (frame.id().maskDepth());
145 
146  if (theTowerMapFGSum.find(trig_tower_id) == theTowerMapFGSum.end()) {
147  SumFGContainer sumFG;
148  theTowerMapFGSum.insert(std::pair<HcalTrigTowerDetId, SumFGContainer>(trig_tower_id, sumFG));
149  }
150 
151  SumFGContainer& sumFG = theTowerMapFGSum[trig_tower_id];
152  SumFGContainer::iterator sumFGItr;
153  for (sumFGItr = sumFG.begin(); sumFGItr != sumFG.end(); ++sumFGItr) {
154  if (sumFGItr->id() == fgid) {
155  break;
156  }
157  }
158  // If find
159  if (sumFGItr != sumFG.end()) {
160  for (int i = 0; i < samples.size(); ++i) {
161  (*sumFGItr)[i] += samples[i];
162  }
163  } else {
164  //Copy samples (change to fgid)
165  IntegerCaloSamples sumFGSamples(DetId(fgid), samples.size());
166  sumFGSamples.setPresamples(samples.presamples());
167  for (int i = 0; i < samples.size(); ++i) {
168  sumFGSamples[i] = samples[i];
169  }
170  sumFG.push_back(sumFGSamples);
171  }
172 
173  // set veto to true if Long or Short less than threshold
174  if (HF_Veto.find(fgid) == HF_Veto.end()) {
175  vector<bool> vetoBits(samples.size(), false);
176  HF_Veto[fgid] = vetoBits;
177  }
178  for (int i = 0; i < samples.size(); ++i) {
179  if (samples[i] < minSignalThreshold_) {
180  HF_Veto[fgid][i] = true;
181  }
182  }
183  }
184  // HF 1x1
185  else if (trig_tower_id.version() == 1) {
186  uint32_t fgid = (frame.id().maskDepth());
187  HFDetails& details = theHFDetailMap[trig_tower_id][fgid];
188  // Check the frame type to determine long vs short
189  if (frame.id().depth() == 1) { // Long
190  details.long_fiber = samples;
191  details.LongDigi = frame;
192  } else if (frame.id().depth() == 2) { // Short
193  details.short_fiber = samples;
194  details.ShortDigi = frame;
195  } else {
196  // Neither long nor short... So we have no idea what to do
197  edm::LogWarning("HcalTPAlgo") << "Unable to figure out what to do with data frame for " << frame.id();
198  return;
199  }
200  }
201  // Uh oh, we are in a bad/unknown state! Things will start crashing.
202  else {
203  return;
204  }
205  }
206  }
207 }
std::vector< HcalTrigTowerDetId > towerIds(const HcalDetId &cellId) const
the mapping to and from DetIds
void setPresamples(int pre)
set presample information
std::vector< IntegerCaloSamples > SumFGContainer
const HcalTrigTowerGeometry * theTrigTowerGeometry
constexpr uint32_t maskDepth() const
get the tower depth
Definition: HcalDetId.h:180
constexpr int size() const
total number of samples in the digi
Definition: HFDataFrame.h:27
Definition: DetId.h:17
int version() const
get the version code for the trigger tower
constexpr int presamples() const
number of samples before the sample from the triggered beam crossing (according to the hardware) ...
Definition: HFDataFrame.h:29
void adc2Linear(const HBHEDataFrame &df, IntegerCaloSamples &ics) const override
const HcaluLUTTPGCoder * incoder_
constexpr int depth() const
get the tower depth
Definition: HcalDetId.h:164
Log< level::Warning, false > LogWarning
void addSignal(const HBHEDataFrame &frame)
adds the signal to the map
constexpr HcalDetId const & id() const
Definition: HFDataFrame.h:23
void HcalTriggerPrimitiveAlgo::addSignal ( const QIE10DataFrame frame)
private

Definition at line 209 of file HcalTriggerPrimitiveAlgo.cc.

References HcaluLUTTPGCoder::adc2Linear(), addSignal(), QIE10DataFrame::detid(), HcalForward, gpuClustering::id, QIE10DataFrame::id(), incoder_, HcaluLUTTPGCoder::lookupMSB(), passTDC(), QIE10DataFrame::presamples(), QIE10DataFrame::samples(), IntegerCaloSamples::setPresamples(), HcalDetId::subdet(), theHFUpgradeDetailMap, theTrigTowerGeometry, HcalTrigTowerGeometry::towerIds(), validChannel(), and relval_steps::version.

209  {
210  HcalDetId detId = frame.detid();
211  // prevent QIE10 calibration channels from entering TP emulation
212  if (detId.subdet() != HcalForward)
213  return;
214 
215  auto ids = theTrigTowerGeometry->towerIds(frame.id());
216  for (const auto& id : ids) {
217  if (id.version() == 0) {
218  edm::LogError("HcalTPAlgo") << "Encountered QIE10 data frame mapped to TP version 0:" << id;
219  continue;
220  }
221 
222  int nsamples = frame.samples();
223 
224  IntegerCaloSamples samples(id, nsamples);
225  samples.setPresamples(frame.presamples());
226  incoder_->adc2Linear(frame, samples);
227 
228  // Don't add to final collection yet
229  // HF PMT veto sum is calculated in analyzerHF()
230  IntegerCaloSamples zero_samples(id, nsamples);
231  zero_samples.setPresamples(frame.presamples());
232  addSignal(zero_samples);
233 
234  auto fid = HcalDetId(frame.id());
235  auto& details = theHFUpgradeDetailMap[id][fid.maskDepth()];
236  auto& detail = details[fid.depth() - 1];
237  detail.samples = samples;
238  detail.digi = frame;
239  detail.validity.resize(nsamples);
240  detail.passTDC.resize(nsamples);
241  incoder_->lookupMSB(frame, detail.fgbits);
242  for (int idx = 0; idx < nsamples; ++idx) {
243  detail.validity[idx] = validChannel(frame, idx);
244  detail.passTDC[idx] = passTDC(frame, idx);
245  }
246  }
247 }
HFUpgradeDetailMap theHFUpgradeDetailMap
bool passTDC(const QIE10DataFrame &digi, int ts) const
std::vector< HcalTrigTowerDetId > towerIds(const HcalDetId &cellId) const
the mapping to and from DetIds
uint16_t *__restrict__ id
constexpr edm::DataFrame::id_type id() const
Log< level::Error, false > LogError
bool validChannel(const QIE10DataFrame &digi, int ts) const
constexpr DetId detid() const
Get the detector id.
constexpr HcalSubdetector subdet() const
get the subdetector
Definition: HcalDetId.h:138
const HcalTrigTowerGeometry * theTrigTowerGeometry
void lookupMSB(const HBHEDataFrame &df, std::vector< bool > &msb) const
void adc2Linear(const HBHEDataFrame &df, IntegerCaloSamples &ics) const override
constexpr int presamples() const
for backward compatibility
constexpr int samples() const
total number of samples in the digi
const HcaluLUTTPGCoder * incoder_
void addSignal(const HBHEDataFrame &frame)
adds the signal to the map
void HcalTriggerPrimitiveAlgo::addSignal ( const QIE11DataFrame frame)
private

Definition at line 249 of file HcalTriggerPrimitiveAlgo.cc.

References HcaluLUTTPGCoder::adc2Linear(), addSignal(), addUpgradeFG(), addUpgradeTDCFG(), cms::cuda::assert(), HcalBarrel, HcalEndcap, mps_fire::i, QIE11DataFrame::id(), incoder_, HcaluLUTTPGCoder::lookupMSB(), QIE11DataFrame::presamples(), QIE11DataFrame::samples(), theTrigTowerGeometry, and HcalTrigTowerGeometry::towerIds().

249  {
250  HcalDetId detId(frame.id());
251  // prevent QIE11 calibration channels from entering TP emulation
252  if (detId.subdet() != HcalEndcap && detId.subdet() != HcalBarrel)
253  return;
254 
255  std::vector<HcalTrigTowerDetId> ids = theTrigTowerGeometry->towerIds(detId);
256  assert(ids.size() == 1 || ids.size() == 2);
257  IntegerCaloSamples samples1(ids[0], int(frame.samples()));
258 
259  samples1.setPresamples(frame.presamples());
260  incoder_->adc2Linear(frame, samples1);
261 
262  std::vector<std::bitset<2>> msb(frame.samples(), 0);
263  incoder_->lookupMSB(frame, msb);
264 
265  if (ids.size() == 2) {
266  // make a second trigprim for the other one, and share the energy
267  IntegerCaloSamples samples2(ids[1], samples1.size());
268  for (int i = 0; i < samples1.size(); ++i) {
269  samples1[i] = uint32_t(samples1[i]);
270  samples2[i] = samples1[i];
271  }
272  samples2.setPresamples(frame.presamples());
273  addSignal(samples2);
274  addUpgradeFG(ids[1], detId.depth(), msb);
275  addUpgradeTDCFG(ids[1], frame);
276  }
277  addSignal(samples1);
278  addUpgradeFG(ids[0], detId.depth(), msb);
279  addUpgradeTDCFG(ids[0], frame);
280 }
void addUpgradeTDCFG(const HcalTrigTowerDetId &id, const QIE11DataFrame &frame)
std::vector< HcalTrigTowerDetId > towerIds(const HcalDetId &cellId) const
the mapping to and from DetIds
assert(be >=bs)
const HcalTrigTowerGeometry * theTrigTowerGeometry
void lookupMSB(const HBHEDataFrame &df, std::vector< bool > &msb) const
constexpr int presamples() const
for backward compatibility
constexpr int samples() const
total number of samples in the digi
void adc2Linear(const HBHEDataFrame &df, IntegerCaloSamples &ics) const override
void addUpgradeFG(const HcalTrigTowerDetId &id, int depth, const std::vector< std::bitset< 2 >> &bits)
const HcaluLUTTPGCoder * incoder_
constexpr edm::DataFrame::id_type id() const
void addSignal(const HBHEDataFrame &frame)
adds the signal to the map
void HcalTriggerPrimitiveAlgo::addSignal ( const IntegerCaloSamples samples)
private

Definition at line 282 of file HcalTriggerPrimitiveAlgo.cc.

References cms::cuda::assert(), fix_saturation_, mps_fire::i, gpuClustering::id, IntegerCaloSamples::id(), QIE11_LINEARIZATION_ET, IntegerCaloSamples::size(), theSatMap, and theSumMap.

282  {
283  HcalTrigTowerDetId id(samples.id());
284  SumMap::iterator itr = theSumMap.find(id);
285 
286  if (itr == theSumMap.end()) {
287  theSumMap.insert(std::make_pair(id, samples));
288  } else {
289  // wish CaloSamples had a +=
290  for (int i = 0; i < samples.size(); ++i) {
291  (itr->second)[i] += samples[i];
292  }
293  }
294 
295  // if fix_saturation == true, keep track of tower with saturated input LUT
296  if (fix_saturation_) {
297  SatMap::iterator itr_sat = theSatMap.find(id);
298 
299  assert((itr == theSumMap.end()) == (itr_sat == theSatMap.end()));
300 
301  if (itr_sat == theSatMap.end()) {
302  vector<bool> check_sat;
303  for (int i = 0; i < samples.size(); ++i) {
304  if (!(samples[i] < QIE11_LINEARIZATION_ET)) {
305  check_sat.push_back(true);
306  } else
307  check_sat.push_back(false);
308  }
309  theSatMap.insert(std::make_pair(id, check_sat));
310  } else {
311  for (int i = 0; i < samples.size(); ++i) {
312  if (!(samples[i] < QIE11_LINEARIZATION_ET))
313  (itr_sat->second)[i] = true;
314  }
315  }
316  }
317 }
uint16_t *__restrict__ id
assert(be >=bs)
int size() const
get the size
DetId id() const
get the (generic) id
void HcalTriggerPrimitiveAlgo::addUpgradeFG ( const HcalTrigTowerDetId id,
int  depth,
const std::vector< std::bitset< 2 >> &  bits 
)
private

Definition at line 872 of file HcalTriggerPrimitiveAlgo.cc.

References addFG(), fgUpgradeMap_, mps_fire::i, needLegacyFG(), needUpgradeID(), and validUpgradeFG().

Referenced by addSignal().

874  {
875  if (not validUpgradeFG(id, depth)) {
876  if (needLegacyFG(id)) {
877  std::vector<bool> pseudo(bits.size(), false);
878  addFG(id, pseudo);
879  } else if (needUpgradeID(id, depth)) {
880  // If the tower id is not in the map yet
881  // then for safety's sake add it, otherwise, no need
882  // Likewise, we're here with non-fg depth 7 so the bits are not to be added
883  auto it = fgUpgradeMap_.find(id);
884  if (it == fgUpgradeMap_.end()) {
885  FGUpgradeContainer element;
886  element.resize(bits.size());
887  fgUpgradeMap_.insert(std::make_pair(id, element));
888  }
889  }
890 
891  return;
892  }
893 
894  auto it = fgUpgradeMap_.find(id);
895  if (it == fgUpgradeMap_.end()) {
896  FGUpgradeContainer element;
897  element.resize(bits.size());
898  it = fgUpgradeMap_.insert(std::make_pair(id, element)).first;
899  }
900  for (unsigned int i = 0; i < bits.size(); ++i) {
901  it->second[i][0][depth - 1] = bits[i][0];
902  it->second[i][1][depth - 1] = bits[i][1];
903  }
904 }
void addFG(const HcalTrigTowerDetId &id, std::vector< bool > &msb)
bool needLegacyFG(const HcalTrigTowerDetId &id) const
bool needUpgradeID(const HcalTrigTowerDetId &id, int depth) const
std::vector< HcalFinegrainBit::Tower > FGUpgradeContainer
bool validUpgradeFG(const HcalTrigTowerDetId &id, int depth) const
void HcalTriggerPrimitiveAlgo::addUpgradeTDCFG ( const HcalTrigTowerDetId id,
const QIE11DataFrame frame 
)
private

Definition at line 906 of file HcalTriggerPrimitiveAlgo.cc.

References HcaluLUTTPGCoder::adc2Linear(), cms::cuda::assert(), fgUpgradeTDCMap_, HcaluLUTTPGCoder::group0FGbits(), HcalBarrel, HcalEndcap, mps_fire::i, QIE11DataFrame::id(), incoder_, QIE11DataFrame::presamples(), QIE11DataFrame::samples(), theTrigTowerGeometry, and HcalTrigTowerGeometry::towerIds().

Referenced by addSignal().

906  {
907  HcalDetId detId(frame.id());
908  if (detId.subdet() != HcalEndcap && detId.subdet() != HcalBarrel)
909  return;
910 
911  std::vector<HcalTrigTowerDetId> ids = theTrigTowerGeometry->towerIds(detId);
912  assert(ids.size() == 1 || ids.size() == 2);
913  IntegerCaloSamples samples1(ids[0], int(frame.samples()));
914  samples1.setPresamples(frame.presamples());
915  incoder_->adc2Linear(frame, samples1); // use linearization LUT
916  std::vector<unsigned short> bits12_15 = incoder_->group0FGbits(frame); // get 4 energy bits (12-15) from group 0 LUT
917 
918  auto it = fgUpgradeTDCMap_.find(id);
919  if (it == fgUpgradeTDCMap_.end()) {
920  FGUpgradeTDCContainer element;
921  element.resize(frame.samples());
922  it = fgUpgradeTDCMap_.insert(std::make_pair(id, element)).first;
923  }
924  for (int i = 0; i < frame.samples(); i++) {
925  it->second[i][detId.depth() - 1] = std::make_pair(bits12_15[i], std::make_pair(frame[i].tdc(), samples1[i]));
926  }
927 }
std::vector< HcalTrigTowerDetId > towerIds(const HcalDetId &cellId) const
the mapping to and from DetIds
assert(be >=bs)
std::vector< unsigned short > group0FGbits(const QIE11DataFrame &df) const
const HcalTrigTowerGeometry * theTrigTowerGeometry
constexpr int presamples() const
for backward compatibility
std::vector< HcalFinegrainBit::TowerTDC > FGUpgradeTDCContainer
constexpr int samples() const
total number of samples in the digi
void adc2Linear(const HBHEDataFrame &df, IntegerCaloSamples &ics) const override
const HcaluLUTTPGCoder * incoder_
constexpr edm::DataFrame::id_type id() const
void HcalTriggerPrimitiveAlgo::analyze ( IntegerCaloSamples samples,
HcalTriggerPrimitiveDigi result 
)
private

adds the actual digis

Definition at line 319 of file HcalTriggerPrimitiveAlgo.cc.

References HcalTPGCompressor::compress(), fgMap_, mps_fire::i, IntegerCaloSamples::id(), numberOfPresamples_, numberOfSamples_, outcoder_, convertSQLitetoXML_cfg::output, peak_finder_algorithm_, peakfind_, IntegerCaloSamples::presamples(), QIE8_LINEARIZATION_ET, edm::shift, IntegerCaloSamples::size(), theThreshold, and weights_.

Referenced by run().

319  {
320  int shrink = weights_.size() - 1;
321  std::vector<bool>& msb = fgMap_[samples.id()];
322  IntegerCaloSamples sum(samples.id(), samples.size());
323 
324  //slide algo window
325  for (int ibin = 0; ibin < int(samples.size()) - shrink; ++ibin) {
326  int algosumvalue = 0;
327  for (unsigned int i = 0; i < weights_.size(); i++) {
328  //add up value * scale factor
329  algosumvalue += int(samples[ibin + i] * weights_[i]);
330  }
331  if (algosumvalue < 0)
332  sum[ibin] = 0; // low-side
333  //high-side
334  //else if (algosumvalue>QIE8_LINEARIZATION_ET) sum[ibin]=QIE8_LINEARIZATION_ET;
335  else
336  sum[ibin] = algosumvalue; //assign value to sum[]
337  }
338 
339  // Align digis and TP
340  int dgPresamples = samples.presamples();
341  int tpPresamples = numberOfPresamples_;
342  int shift = dgPresamples - tpPresamples;
343  int dgSamples = samples.size();
344  int tpSamples = numberOfSamples_;
345  if (peakfind_) {
346  if ((shift < shrink) || (shift + tpSamples + shrink > dgSamples - (peak_finder_algorithm_ - 1))) {
347  edm::LogInfo("HcalTriggerPrimitiveAlgo::analyze")
348  << "TP presample or size from the configuration file is out of the accessible range. Using digi values from "
349  "data instead...";
350  shift = shrink;
351  tpPresamples = dgPresamples - shrink;
352  tpSamples = dgSamples - (peak_finder_algorithm_ - 1) - shrink - shift;
353  }
354  }
355 
356  std::vector<int> finegrain(tpSamples, false);
357 
358  IntegerCaloSamples output(samples.id(), tpSamples);
359  output.setPresamples(tpPresamples);
360 
361  for (int ibin = 0; ibin < tpSamples; ++ibin) {
362  // ibin - index for output TP
363  // idx - index for samples + shift
364  int idx = ibin + shift;
365 
366  //Peak finding
367  if (peakfind_) {
368  bool isPeak = false;
369  switch (peak_finder_algorithm_) {
370  case 1:
371  isPeak = (samples[idx] > samples[idx - 1] && samples[idx] >= samples[idx + 1] && samples[idx] > theThreshold);
372  break;
373  case 2:
374  isPeak = (sum[idx] > sum[idx - 1] && sum[idx] >= sum[idx + 1] && sum[idx] > theThreshold);
375  break;
376  default:
377  break;
378  }
379 
380  if (isPeak) {
381  output[ibin] = std::min<unsigned int>(sum[idx], QIE8_LINEARIZATION_ET);
382  finegrain[ibin] = msb[idx];
383  }
384  // Not a peak
385  else
386  output[ibin] = 0;
387  } else { // No peak finding, just output running sum
388  output[ibin] = std::min<unsigned int>(sum[idx], QIE8_LINEARIZATION_ET);
389  finegrain[ibin] = msb[idx];
390  }
391 
392  // Only Pegged for 1-TS algo.
393  if (peak_finder_algorithm_ == 1) {
394  if (samples[idx] >= QIE8_LINEARIZATION_ET)
396  }
397  }
398  outcoder_->compress(output, finegrain, result);
399 }
int presamples() const
access presample information
const HcalTPGCompressor * outcoder_
int size() const
get the size
void compress(const IntegerCaloSamples &ics, const std::vector< int > &fineGrain, HcalTriggerPrimitiveDigi &digi) const
Log< level::Info, false > LogInfo
static unsigned int const shift
DetId id() const
get the (generic) id
void HcalTriggerPrimitiveAlgo::analyzeHF ( IntegerCaloSamples samples,
HcalTriggerPrimitiveDigi result,
const int  hf_lumi_shift 
)
private

Definition at line 508 of file HcalTriggerPrimitiveAlgo.cc.

References cms::cuda::assert(), HcalTPGCompressor::compress(), FG_threshold_, HF_Veto, IntegerCaloSamples::id(), numberOfPresamplesHF_, numberOfSamplesHF_, outcoder_, convertSQLitetoXML_cfg::output, PMT_NoiseThreshold_, IntegerCaloSamples::presamples(), QIE8_LINEARIZATION_ET, edm::shift, IntegerCaloSamples::size(), theTowerMapFGSum, and relval_cleanedupgrade::veto.

Referenced by run().

510  {
511  HcalTrigTowerDetId detId(samples.id());
512 
513  // Align digis and TP
514  int dgPresamples = samples.presamples();
515  int tpPresamples = numberOfPresamplesHF_;
516  int shift = dgPresamples - tpPresamples;
517  int dgSamples = samples.size();
518  int tpSamples = numberOfSamplesHF_;
519  if (shift < 0 || shift + tpSamples > dgSamples) {
520  edm::LogInfo("HcalTriggerPrimitiveAlgo::analyzeHF")
521  << "TP presample or size from the configuration file is out of the accessible range. Using digi values from "
522  "data instead...";
523  tpPresamples = dgPresamples;
524  shift = 0;
525  tpSamples = dgSamples;
526  }
527 
528  std::vector<int> finegrain(tpSamples, false);
529 
530  TowerMapFGSum::const_iterator tower2fg = theTowerMapFGSum.find(detId);
531  assert(tower2fg != theTowerMapFGSum.end());
532 
533  const SumFGContainer& sumFG = tower2fg->second;
534  // Loop over all L+S pairs that mapped from samples.id()
535  // Note: 1 samples.id() = 6 x (L+S) without noZS
536  for (SumFGContainer::const_iterator sumFGItr = sumFG.begin(); sumFGItr != sumFG.end(); ++sumFGItr) {
537  const std::vector<bool>& veto = HF_Veto[sumFGItr->id().rawId()];
538  for (int ibin = 0; ibin < tpSamples; ++ibin) {
539  int idx = ibin + shift;
540  // if not vetod, add L+S to total sum and calculate FG
541  bool vetoed = idx < int(veto.size()) && veto[idx];
542  if (!(vetoed && (*sumFGItr)[idx] > PMT_NoiseThreshold_)) {
543  samples[idx] += (*sumFGItr)[idx];
544  finegrain[ibin] = (finegrain[ibin] || (*sumFGItr)[idx] >= FG_threshold_);
545  }
546  }
547  }
548 
549  IntegerCaloSamples output(samples.id(), tpSamples);
550  output.setPresamples(tpPresamples);
551 
552  for (int ibin = 0; ibin < tpSamples; ++ibin) {
553  int idx = ibin + shift;
554  output[ibin] = samples[idx] >> hf_lumi_shift;
555  static const int MAX_OUTPUT = QIE8_LINEARIZATION_ET; // QIE8_LINEARIZATION_ET = 1023
556  if (output[ibin] > MAX_OUTPUT)
557  output[ibin] = MAX_OUTPUT;
558  }
559  outcoder_->compress(output, finegrain, result);
560 }
int presamples() const
access presample information
const HcalTPGCompressor * outcoder_
assert(be >=bs)
std::vector< IntegerCaloSamples > SumFGContainer
int size() const
get the size
void compress(const IntegerCaloSamples &ics, const std::vector< int > &fineGrain, HcalTriggerPrimitiveDigi &digi) const
Log< level::Info, false > LogInfo
static unsigned int const shift
DetId id() const
get the (generic) id
void HcalTriggerPrimitiveAlgo::analyzeHF2016 ( const IntegerCaloSamples SAMPLES,
HcalTriggerPrimitiveDigi result,
const int  HF_LUMI_SHIFT,
const HcalFeatureBit HCALFEM 
)
private

Definition at line 562 of file HcalTriggerPrimitiveAlgo.cc.

References cms::cuda::assert(), newFWLiteAna::bin, HcalTPGCompressor::compress(), FG_HF_thresholds_, HcalFeatureBit::fineGrainbit(), FIRST_FINEGRAIN_TOWER, IntegerCaloSamples::id(), B2GTnPMonitor_cfi::item, min(), numberOfPresamplesHF_, numberOfSamplesHF_, outcoder_, convertSQLitetoXML_cfg::output, IntegerCaloSamples::presamples(), QIE8_LINEARIZATION_ET, IntegerCaloSamples::size(), and theHFDetailMap.

Referenced by run().

565  {
566  // Align digis and TP
567  const int SHIFT = samples.presamples() - numberOfPresamplesHF_;
568  assert(SHIFT >= 0);
569  assert((SHIFT + numberOfSamplesHF_) <= samples.size());
570 
571  // Try to find the HFDetails from the map corresponding to our samples
572  const HcalTrigTowerDetId detId(samples.id());
573  HFDetailMap::const_iterator it = theHFDetailMap.find(detId);
574  // Missing values will give an empty digi
575  if (it == theHFDetailMap.end()) {
576  return;
577  }
578 
579  std::vector<std::bitset<2>> finegrain(numberOfSamplesHF_, false);
580 
581  // Set up out output of IntergerCaloSamples
583  output.setPresamples(numberOfPresamplesHF_);
584 
585  for (const auto& item : it->second) {
586  auto& details = item.second;
587  for (int ibin = 0; ibin < numberOfSamplesHF_; ++ibin) {
588  const int IDX = ibin + SHIFT;
589  int long_fiber_val = 0;
590  if (IDX < details.long_fiber.size()) {
591  long_fiber_val = details.long_fiber[IDX];
592  }
593  int short_fiber_val = 0;
594  if (IDX < details.short_fiber.size()) {
595  short_fiber_val = details.short_fiber[IDX];
596  }
597  output[ibin] += (long_fiber_val + short_fiber_val);
598 
599  uint32_t ADCLong = details.LongDigi[ibin].adc();
600  uint32_t ADCShort = details.ShortDigi[ibin].adc();
601 
602  if (details.LongDigi.id().ietaAbs() >= FIRST_FINEGRAIN_TOWER) {
603  finegrain[ibin][1] = (ADCLong > FG_HF_thresholds_[0] || ADCShort > FG_HF_thresholds_[0]);
604 
605  if (embit != nullptr)
606  finegrain[ibin][0] = embit->fineGrainbit(details.ShortDigi, details.LongDigi, ibin);
607  }
608  }
609  }
610 
611  for (int bin = 0; bin < numberOfSamplesHF_; ++bin) {
612  static const unsigned int MAX_OUTPUT = QIE8_LINEARIZATION_ET; // QIE8_LINEARIZATION_ET = 1023
613  output[bin] = min({MAX_OUTPUT, output[bin] >> hf_lumi_shift});
614  }
615 
616  std::vector<int> finegrain_converted;
617  finegrain_converted.reserve(finegrain.size());
618  for (const auto& fg : finegrain)
619  finegrain_converted.push_back(fg.to_ulong());
620  outcoder_->compress(output, finegrain_converted, result);
621 }
std::vector< uint32_t > FG_HF_thresholds_
const HcalTPGCompressor * outcoder_
assert(be >=bs)
T min(T a, T b)
Definition: MathUtil.h:58
void compress(const IntegerCaloSamples &ics, const std::vector< int > &fineGrain, HcalTriggerPrimitiveDigi &digi) const
void HcalTriggerPrimitiveAlgo::analyzeHFQIE10 ( const IntegerCaloSamples SAMPLES,
HcalTriggerPrimitiveDigi result,
const int  HF_LUMI_SHIFT,
const HcalFeatureBit HCALFEM 
)
private

Definition at line 651 of file HcalTriggerPrimitiveAlgo.cc.

References cms::cuda::assert(), newFWLiteAna::bin, HcalTPGCompressor::compress(), FG_HF_thresholds_, HcalFeatureBit::fineGrainbit(), FIRST_FINEGRAIN_TOWER, mps_fire::i, IntegerCaloSamples::id(), B2GTnPMonitor_cfi::item, min(), numberOfPresamplesHF_, numberOfSamplesHF_, or, outcoder_, convertSQLitetoXML_cfg::output, IntegerCaloSamples::presamples(), QIE10_LINEARIZATION_ET, QIE10_MAX_LINEARIZATION_ET, edm::shift, IntegerCaloSamples::size(), theHFUpgradeDetailMap, and useTDCInMinBiasBits_.

Referenced by run().

654  {
655  // Align digis and TP
656  const int shift = samples.presamples() - numberOfPresamplesHF_;
657  assert(shift >= 0);
658  assert((shift + numberOfSamplesHF_) <= samples.size());
659  assert(hf_lumi_shift >= 2);
660 
661  // Try to find the HFDetails from the map corresponding to our samples
662  const HcalTrigTowerDetId detId(samples.id());
663  auto it = theHFUpgradeDetailMap.find(detId);
664  // Missing values will give an empty digi
665  if (it == theHFUpgradeDetailMap.end()) {
666  return;
667  }
668 
669  std::vector<std::bitset<2>> finegrain(numberOfSamplesHF_, false);
670 
671  // Set up out output of IntergerCaloSamples
673  output.setPresamples(numberOfPresamplesHF_);
674 
675  for (const auto& item : it->second) {
676  auto& details = item.second;
677  for (int ibin = 0; ibin < numberOfSamplesHF_; ++ibin) {
678  const int idx = ibin + shift;
679 
680  int long_fiber_val = 0;
681  int long_fiber_count = 0;
682  int short_fiber_val = 0;
683  int short_fiber_count = 0;
684 
685  bool saturated = false;
686 
687  for (auto i : {0, 2}) {
688  if (idx < details[i].samples.size() and details[i].validity[idx] and details[i].passTDC[idx]) {
689  long_fiber_val += details[i].samples[idx];
690  saturated = saturated || (details[i].samples[idx] == QIE10_LINEARIZATION_ET);
691  ++long_fiber_count;
692  }
693  }
694  for (auto i : {1, 3}) {
695  if (idx < details[i].samples.size() and details[i].validity[idx] and details[i].passTDC[idx]) {
696  short_fiber_val += details[i].samples[idx];
697  saturated = saturated || (details[i].samples[idx] == QIE10_LINEARIZATION_ET);
698  ++short_fiber_count;
699  }
700  }
701 
702  if (saturated) {
704  } else {
705  // For details of the energy handling, see:
706  // https://cms-docdb.cern.ch/cgi-bin/DocDB/ShowDocument?docid=12306
707  // If both readouts are valid, average of the two energies is taken
708  // division by 2 is compensated by adjusting the total scale shift in the end
709  if (long_fiber_count == 2)
710  long_fiber_val >>= 1;
711  if (short_fiber_count == 2)
712  short_fiber_val >>= 1;
713 
714  auto sum = long_fiber_val + short_fiber_val;
715  // Similar to above, if both channels are valid,
716  // average of the two energies is calculated
717  // division by 2 here is also compensated by adjusting the total scale shift in the end
718  if (long_fiber_count > 0 and short_fiber_count > 0)
719  sum >>= 1;
720 
721  output[ibin] += sum;
722  }
723 
724  for (const auto& detail : details) {
725  if (idx < int(detail.digi.size()) and detail.validity[idx] and
726  HcalDetId(detail.digi.id()).ietaAbs() >= FIRST_FINEGRAIN_TOWER) {
727  if (useTDCInMinBiasBits_ && !detail.passTDC[idx])
728  continue;
729  finegrain[ibin][1] = finegrain[ibin][1] or detail.fgbits[idx][0];
730  // what is commonly called the "second" HF min-bias bit is
731  // actually the 0-th bit, which can also be used instead for the EM bit
732  // (called finegrain[ibin][0] below) in non-HI running
733  finegrain[ibin][0] = finegrain[ibin][0] or detail.fgbits[idx][1];
734  }
735  }
736  // the EM bit is only used if the "second" FG bit is disabled
737  if (embit != nullptr and FG_HF_thresholds_.at(1) != 255) {
738  finegrain[ibin][0] = embit->fineGrainbit(details[1].digi,
739  details[3].digi,
740  details[0].digi,
741  details[2].digi,
742  details[1].validity[idx],
743  details[3].validity[idx],
744  details[0].validity[idx],
745  details[2].validity[idx],
746  idx);
747  }
748  }
749  }
750 
751  for (int bin = 0; bin < numberOfSamplesHF_; ++bin) {
752  output[bin] = min({(unsigned int)QIE10_MAX_LINEARIZATION_ET, output[bin] >> (hf_lumi_shift - 2)});
753  }
754  std::vector<int> finegrain_converted;
755  finegrain_converted.reserve(finegrain.size());
756  for (const auto& fg : finegrain)
757  finegrain_converted.push_back(fg.to_ulong());
758  outcoder_->compress(output, finegrain_converted, result);
759 }
std::vector< uint32_t > FG_HF_thresholds_
HFUpgradeDetailMap theHFUpgradeDetailMap
The Signals That Services Can Subscribe To This is based on ActivityRegistry and is current per Services can connect to the signals distributed by the ActivityRegistry in order to monitor the activity of the application Each possible callback has some defined which we here list in angle e< void, edm::EventIDconst &, edm::Timestampconst & > We also list in braces which AR_WATCH_USING_METHOD_ is used for those or
Definition: Activities.doc:12
static const int QIE10_MAX_LINEARIZATION_ET
const HcalTPGCompressor * outcoder_
assert(be >=bs)
T min(T a, T b)
Definition: MathUtil.h:58
void compress(const IntegerCaloSamples &ics, const std::vector< int > &fineGrain, HcalTriggerPrimitiveDigi &digi) const
static unsigned int const shift
void HcalTriggerPrimitiveAlgo::analyzeQIE11 ( IntegerCaloSamples samples,
std::vector< bool >  sample_saturation,
HcalTriggerPrimitiveDigi result,
const HcalFinegrainBit fg_algo 
)
private

Definition at line 401 of file HcalTriggerPrimitiveAlgo.cc.

References HcalTPGCompressor::compress(), HcalFinegrainBit::compute(), fgUpgradeMap_, fgUpgradeTDCMap_, fix_saturation_, mps_fire::i, IntegerCaloSamples::id(), HcalDetId::ietaAbs(), HcalTopology::lastHBRing(), numberOfFilterPresamplesHBQIE11_, numberOfFilterPresamplesHEQIE11_, numberOfPresamples_, numberOfSamples_, outcoder_, convertSQLitetoXML_cfg::output, IntegerCaloSamples::presamples(), QIE11_MAX_LINEARIZATION_ET, compare_using_db::sample, edm::shift, IntegerCaloSamples::size(), theThreshold, theTrigTowerGeometry, HcalTrigTowerGeometry::topology(), HcalTrigTowerGeometry::towerIds(), and weightsQIE11_.

Referenced by run().

404  {
405  HcalDetId detId(samples.id());
406 
407  // Get the |ieta| for current sample
408  int theIeta = detId.ietaAbs();
409 
410  unsigned int dgSamples = samples.size();
411  unsigned int dgPresamples = samples.presamples();
412 
413  unsigned int tpSamples = numberOfSamples_;
414  unsigned int tpPresamples = numberOfPresamples_;
415 
416  unsigned int filterSamples = weightsQIE11_[theIeta].size();
417  unsigned int filterPresamples = theIeta > theTrigTowerGeometry->topology().lastHBRing()
420 
421  unsigned int shift = dgPresamples - tpPresamples;
422 
423  // shrink keeps the FIR filter from going off the end of the 8TS vector
424  unsigned int shrink = filterSamples - 1;
425 
426  auto& msb = fgUpgradeMap_[samples.id()];
427  auto& timingTDC = fgUpgradeTDCMap_[samples.id()];
428  IntegerCaloSamples sum(samples.id(), samples.size());
429 
430  std::vector<HcalTrigTowerDetId> ids = theTrigTowerGeometry->towerIds(detId);
431 
432  // keep track of tower with saturated energy and force the total TP saturated
433  bool force_saturation[samples.size()];
434  for (int i = 0; i < samples.size(); i++) {
435  force_saturation[i] = false;
436  }
437 
438  //slide algo window
439  for (unsigned int ibin = 0; ibin < dgSamples - shrink; ++ibin) {
440  int algosumvalue = 0;
441  bool check_sat = false;
442  for (unsigned int i = 0; i < filterSamples; i++) {
443  //add up value * scale factor
444  // In addition, divide by two in the 10 degree phi segmentation region
445  // to mimic 5 degree segmentation for the trigger
446  unsigned int sample = samples[ibin + i];
447 
448  if (fix_saturation_ && (sample_saturation.size() > ibin + i))
449  check_sat = (sample_saturation[ibin + i] | (sample > QIE11_MAX_LINEARIZATION_ET));
450  else if (sample > QIE11_MAX_LINEARIZATION_ET)
452 
453  // Usually use a segmentation factor of 1.0 but for ieta >= 21 use 0.5
454  double segmentationFactor = 1.0;
455  if (ids.size() == 2) {
456  segmentationFactor = 0.5;
457  }
458 
459  // Based on the |ieta| of the sample, retrieve the correct region weight
460  double theWeight = weightsQIE11_[theIeta][i];
461 
462  algosumvalue += int(sample * segmentationFactor * theWeight);
463  }
464  if (algosumvalue < 0)
465  sum[ibin] = 0; // low-side
466  //high-side
467  //else if (algosumvalue>QIE11_LINEARIZATION_ET) sum[ibin]=QIE11_LINEARIZATION_ET;
468  else
469  sum[ibin] = algosumvalue; //assign value to sum[]
470 
471  if (check_sat)
472  force_saturation[ibin] = true;
473  }
474 
475  std::vector<int> finegrain(tpSamples, false);
476 
477  IntegerCaloSamples output(samples.id(), tpSamples);
478  output.setPresamples(tpPresamples);
479 
480  for (unsigned int ibin = 0; ibin < tpSamples; ++ibin) {
481  // ibin - index for output TP
482  // idx - index for samples + shift - filterPresamples
483  int idx = ibin + shift - filterPresamples;
484 
485  // When idx is <= 0 peakfind would compare out-of-bounds of the vector. Avoid this ambiguity
486  if (idx <= 0) {
487  output[ibin] = 0;
488  continue;
489  }
490 
491  bool isPeak = (sum[idx] > sum[idx - 1] && sum[idx] >= sum[idx + 1] && sum[idx] > theThreshold);
492 
493  if (isPeak) {
494  output[ibin] = std::min<unsigned int>(sum[idx], QIE11_MAX_LINEARIZATION_ET);
495  if (fix_saturation_ && force_saturation[idx])
497  } else {
498  // Not a peak
499  output[ibin] = 0;
500  }
501  // peak-finding is not applied for FG bits
502  // compute(msb) returns two bits (MIP). compute(timingTDC,ids) returns 6 bits (1 depth, 1 prompt, 1 delayed 01, 1 delayed 10, 2 reserved)
503  finegrain[ibin] = fg_algo.compute(timingTDC[idx], ids[0]).to_ulong() | fg_algo.compute(msb[idx]).to_ulong() << 4;
504  }
505  outcoder_->compress(output, finegrain, result);
506 }
int presamples() const
access presample information
constexpr int ietaAbs() const
get the absolute value of the cell ieta
Definition: HcalDetId.h:148
std::vector< HcalTrigTowerDetId > towerIds(const HcalDetId &cellId) const
the mapping to and from DetIds
const HcalTPGCompressor * outcoder_
int lastHBRing() const
Definition: HcalTopology.h:92
int size() const
get the size
const HcalTrigTowerGeometry * theTrigTowerGeometry
void compress(const IntegerCaloSamples &ics, const std::vector< int > &fineGrain, HcalTriggerPrimitiveDigi &digi) const
std::array< std::array< double, 2 >, 29 > weightsQIE11_
static const int QIE11_MAX_LINEARIZATION_ET
const HcalTopology & topology() const
static unsigned int const shift
std::bitset< 2 > compute(const Tower &) const
DetId id() const
get the (generic) id
bool HcalTriggerPrimitiveAlgo::needLegacyFG ( const HcalTrigTowerDetId id) const
private

Definition at line 853 of file HcalTriggerPrimitiveAlgo.cc.

References HBHE_OVERLAP_TOWER, and upgrade_hb_.

Referenced by addUpgradeFG().

853  {
854  // This tower (ietaAbs == 16) does not accept upgraded FG bits,
855  // but needs pseudo legacy ones to ensure that the tower is processed
856  // even when the QIE8 depths in front of it do not have energy deposits.
857  if (id.ietaAbs() == HBHE_OVERLAP_TOWER and not upgrade_hb_)
858  return true;
859  return false;
860 }
bool HcalTriggerPrimitiveAlgo::needUpgradeID ( const HcalTrigTowerDetId id,
int  depth 
) const
private

Definition at line 862 of file HcalTriggerPrimitiveAlgo.cc.

References FIRST_DEPTH7_TOWER, and LAST_FINEGRAIN_DEPTH.

Referenced by addUpgradeFG().

862  {
863  // Depth 7 for TT 26, 27, and 28 is not considered a fine grain depth.
864  // However, the trigger tower for these ieta should still be added to the fgUpgradeMap_
865  // Otherwise, depth 7-only signal will not be analyzed.
866  unsigned int aieta = id.ietaAbs();
867  if (aieta >= FIRST_DEPTH7_TOWER and aieta <= LAST_FINEGRAIN_TOWER and depth > LAST_FINEGRAIN_DEPTH)
868  return true;
869  return false;
870 }
void HcalTriggerPrimitiveAlgo::overrideParameters ( const edm::ParameterSet ps)

Definition at line 81 of file HcalTriggerPrimitiveAlgo.cc.

References edm::ParameterSet::exists(), edm::ParameterSet::getParameter(), override_adc_hf_, override_adc_hf_value_, override_parameters_, override_tdc_hf_, and override_tdc_hf_value_.

Referenced by HcalTrigPrimDigiProducer::HcalTrigPrimDigiProducer().

81  {
83 
84  if (override_parameters_.exists("ADCThresholdHF")) {
85  override_adc_hf_ = true;
86  override_adc_hf_value_ = override_parameters_.getParameter<uint32_t>("ADCThresholdHF");
87  }
88  if (override_parameters_.exists("TDCMaskHF")) {
89  override_tdc_hf_ = true;
90  override_tdc_hf_value_ = override_parameters_.getParameter<unsigned long long>("TDCMaskHF");
91  }
92 }
bool exists(std::string const &parameterName) const
checks if a parameter exists
unsigned long long override_tdc_hf_value_
T getParameter(std::string const &) const
Definition: ParameterSet.h:303
bool HcalTriggerPrimitiveAlgo::passTDC ( const QIE10DataFrame digi,
int  ts 
) const
private

Definition at line 623 of file HcalTriggerPrimitiveAlgo.cc.

References gpuClustering::adc, conditions_, HcalDbService::getHcalTPParameters(), override_adc_hf_, override_adc_hf_value_, override_tdc_hf_, and override_tdc_hf_value_.

Referenced by addSignal().

623  {
625  auto adc_threshold = parameters->getADCThresholdHF();
626  auto tdc_mask = parameters->getTDCMaskHF();
627 
628  if (override_adc_hf_)
629  adc_threshold = override_adc_hf_value_;
630  if (override_tdc_hf_)
631  tdc_mask = override_tdc_hf_value_;
632 
633  if (digi[ts].adc() < adc_threshold)
634  return true;
635 
636  return (1ul << digi[ts].le_tdc()) & tdc_mask;
637 }
const HcalDbService * conditions_
unsigned long long override_tdc_hf_value_
const HcalTPParameters * getHcalTPParameters() const
uint16_t *__restrict__ uint16_t const *__restrict__ adc
template<typename... Digis>
void HcalTriggerPrimitiveAlgo::run ( const HcalTPGCoder incoder,
const HcalTPGCompressor outcoder,
const HcalDbService conditions,
HcalTrigPrimDigiCollection result,
const HcalTrigTowerGeometry trigTowerGeometry,
float  rctlsb,
const HcalFeatureBit LongvrsShortCut,
const Digis &...  digis 
)

Definition at line 252 of file HcalTriggerPrimitiveAlgo.h.

References addDigis(), analyze(), analyzeHF(), analyzeHF2016(), analyzeHFQIE10(), analyzeQIE11(), edm::SortedCollection< T, SORT >::back(), submitPVValidationJobs::conditions, conditions_, edm::ParameterSet::exists(), fgMap_, fgUpgradeMap_, fgUpgradeTDCMap_, HcalTrigTowerGeometry::firstHFTower(), HcalTPParameters::getFGVersionHBHE(), HcalDbService::getHcalTPParameters(), edm::ParameterSet::getParameter(), HF_Veto, incoder_, B2GTnPMonitor_cfi::item, LongvrsShortCut, NCTScaleShift, or, outcoder_, override_parameters_, edm::SortedCollection< T, SORT >::push_back(), RCTScaleShift, theHFDetailMap, theHFUpgradeDetailMap, theSatMap, theSumMap, theTowerMapFGSum, theTrigTowerGeometry, upgrade_hb_, upgrade_he_, upgrade_hf_, and relval_steps::version.

Referenced by HcalTrigPrimDigiProducer::produce().

259  {
260  theTrigTowerGeometry = trigTowerGeometry;
261 
262  incoder_ = dynamic_cast<const HcaluLUTTPGCoder*>(incoder);
263  outcoder_ = outcoder;
265 
266  theSumMap.clear();
267  theSatMap.clear();
268  theTowerMapFGSum.clear();
269  HF_Veto.clear();
270  fgMap_.clear();
271  fgUpgradeMap_.clear();
272  fgUpgradeTDCMap_.clear();
273  theHFDetailMap.clear();
274  theHFUpgradeDetailMap.clear();
275 
276  // Add all digi collections
277  addDigis(digis...);
278 
279  // Prepare the fine-grain calculation algorithm for HB/HE
280  int version = 0;
283  if (override_parameters_.exists("FGVersionHBHE"))
284  version = override_parameters_.getParameter<uint32_t>("FGVersionHBHE");
285  HcalFinegrainBit fg_algo(version);
286 
287  // VME produces additional bits on the front used by lumi but not the
288  // trigger, this shift corrects those out by right shifting over them.
289  for (auto& item : theSumMap) {
290  result.push_back(HcalTriggerPrimitiveDigi(item.first));
291  HcalTrigTowerDetId detId(item.second.id());
292  if (detId.ietaAbs() >= theTrigTowerGeometry->firstHFTower(detId.version())) {
293  if (detId.version() == 0) {
294  analyzeHF(item.second, result.back(), RCTScaleShift);
295  } else if (detId.version() == 1) {
296  if (upgrade_hf_)
298  else
300  } else {
301  // Things are going to go poorly
302  }
303  } else {
304  // Determine which energy reconstruction path to take based on the
305  // fine-grain availability:
306  // * QIE8 TP add entries into fgMap_
307  // * QIE11 TP add entries into fgUpgradeMap_
308  // (not for tower 16 unless HB is upgraded, too)
309  if (fgMap_.find(item.first) != fgMap_.end()) {
310  analyze(item.second, result.back());
311  } else if (fgUpgradeMap_.find(item.first) != fgUpgradeMap_.end()) {
312  SatMap::iterator item_sat = theSatMap.find(detId);
313  if (item_sat == theSatMap.end())
314  analyzeQIE11(item.second, std::vector<bool>(), result.back(), fg_algo);
315  else
316  analyzeQIE11(item.second, item_sat->second, result.back(), fg_algo);
317  }
318  }
319  }
320 
321  // Free up some memory
322  theSumMap.clear();
323  theSatMap.clear();
324  theTowerMapFGSum.clear();
325  HF_Veto.clear();
326  fgMap_.clear();
327  fgUpgradeMap_.clear();
328  fgUpgradeTDCMap_.clear();
329  theHFDetailMap.clear();
330  theHFUpgradeDetailMap.clear();
331 
332  return;
333 }
void analyze(IntegerCaloSamples &samples, HcalTriggerPrimitiveDigi &result)
adds the actual digis
HFUpgradeDetailMap theHFUpgradeDetailMap
void analyzeHF(IntegerCaloSamples &samples, HcalTriggerPrimitiveDigi &result, const int hf_lumi_shift)
The Signals That Services Can Subscribe To This is based on ActivityRegistry and is current per Services can connect to the signals distributed by the ActivityRegistry in order to monitor the activity of the application Each possible callback has some defined which we here list in angle e< void, edm::EventIDconst &, edm::Timestampconst & > We also list in braces which AR_WATCH_USING_METHOD_ is used for those or
Definition: Activities.doc:12
void analyzeHF2016(const IntegerCaloSamples &SAMPLES, HcalTriggerPrimitiveDigi &result, const int HF_LUMI_SHIFT, const HcalFeatureBit *HCALFEM)
void analyzeHFQIE10(const IntegerCaloSamples &SAMPLES, HcalTriggerPrimitiveDigi &result, const int HF_LUMI_SHIFT, const HcalFeatureBit *HCALFEM)
bool exists(std::string const &parameterName) const
checks if a parameter exists
void push_back(T const &t)
const HcalTPGCompressor * outcoder_
const HcalTrigTowerGeometry * theTrigTowerGeometry
const HcalDbService * conditions_
int getFGVersionHBHE() const
get FineGrain Algorithm Version for HBHE
void analyzeQIE11(IntegerCaloSamples &samples, std::vector< bool > sample_saturation, HcalTriggerPrimitiveDigi &result, const HcalFinegrainBit &fg_algo)
void addDigis(const T &collection, const Args &...digis)
T getParameter(std::string const &) const
Definition: ParameterSet.h:303
const HcalTPParameters * getHcalTPParameters() const
const HcaluLUTTPGCoder * incoder_
const_reference back() const
int firstHFTower(int version) const
void HcalTriggerPrimitiveAlgo::runFEFormatError ( const FEDRawDataCollection rawraw,
const HcalElectronicsMap emap,
HcalTrigPrimDigiCollection result 
)

Definition at line 777 of file HcalTriggerPrimitiveAlgo.cc.

References edm::SortedCollection< T, SORT >::begin(), HcalHTRData::check(), FEDRawData::data(), DetId::det(), runTauDisplay::eid, edm::SortedCollection< T, SORT >::end(), FEDRawDataCollection::FEDData(), HcalHTRData::getErrorsWord(), HcalDCCHeader::getSourceId(), HcalDCCHeader::getSpigotData(), HcalDCCHeader::getSpigotPresent(), HcalBarrel, HcalEndcap, HcalForward, HcalHTRData::htrSlot(), HcalHTRData::htrTopBottom(), mps_fire::i, HcalHTRData::isHistogramEvent(), HcalElectronicsMap::lookup(), FEDNumbering::MAXHCALFEDID, FEDNumbering::MINHCALFEDID, DetId::null(), HcalHTRData::readoutVMECrateId(), HcalElectronicsId::setHTR(), FEDRawData::size(), HcalDCCHeader::SPIGOT_COUNT, DetId::subdetId(), theTrigTowerGeometry, HcalTrigTowerGeometry::towerIds(), and cmsswSequenceInfo::tp.

Referenced by HcalTrigPrimDigiProducer::produce().

779  {
780  std::set<uint32_t> FrontEndErrors;
781 
783  const FEDRawData& raw = rawraw->FEDData(i);
784  if (raw.size() < 12)
785  continue;
786  const HcalDCCHeader* dccHeader = (const HcalDCCHeader*)(raw.data());
787  if (!dccHeader)
788  continue;
789  HcalHTRData htr;
790  for (int spigot = 0; spigot < HcalDCCHeader::SPIGOT_COUNT; spigot++) {
791  if (!dccHeader->getSpigotPresent(spigot))
792  continue;
793  dccHeader->getSpigotData(spigot, htr, raw.size());
794  int dccid = dccHeader->getSourceId();
795  int errWord = htr.getErrorsWord() & 0x1FFFF;
796  bool HTRError = (!htr.check() || htr.isHistogramEvent() || (errWord & 0x800) != 0);
797 
798  if (HTRError) {
799  bool valid = false;
800  for (int fchan = 0; fchan < 3 && !valid; fchan++) {
801  for (int fib = 0; fib < 9 && !valid; fib++) {
802  HcalElectronicsId eid(fchan, fib, spigot, dccid - FEDNumbering::MINHCALFEDID);
803  eid.setHTR(htr.readoutVMECrateId(), htr.htrSlot(), htr.htrTopBottom());
804  DetId detId = emap->lookup(eid);
805  if (detId.null())
806  continue;
807  HcalSubdetector subdet = (HcalSubdetector(detId.subdetId()));
808  if (detId.det() != 4 || (subdet != HcalBarrel && subdet != HcalEndcap && subdet != HcalForward))
809  continue;
810  std::vector<HcalTrigTowerDetId> ids = theTrigTowerGeometry->towerIds(detId);
811  for (std::vector<HcalTrigTowerDetId>::const_iterator triggerId = ids.begin(); triggerId != ids.end();
812  ++triggerId) {
813  FrontEndErrors.insert(triggerId->rawId());
814  }
815  //valid = true;
816  }
817  }
818  }
819  }
820  }
821 
822  // Loop over TP collection
823  // Set TP to zero if there is FE Format Error
824  HcalTriggerPrimitiveSample zeroSample(0);
825  for (HcalTrigPrimDigiCollection::iterator tp = result.begin(); tp != result.end(); ++tp) {
826  if (FrontEndErrors.find(tp->id().rawId()) != FrontEndErrors.end()) {
827  for (int i = 0; i < tp->size(); ++i)
828  tp->setSample(i, zeroSample);
829  }
830  }
831 }
bool check() const
Check for a good event Requires a minimum length, matching wordcount and length, not an empty event...
Definition: HcalHTRData.cc:63
std::vector< HcalTrigTowerDetId > towerIds(const HcalDetId &cellId) const
the mapping to and from DetIds
unsigned int htrTopBottom() const
HcalElectronicsId-style HTR top/bottom (1=top/0=bottom)
Definition: HcalHTRData.cc:369
constexpr bool null() const
is this a null id ?
Definition: DetId.h:59
int getSpigotData(int nspigot, HcalHTRData &decodeTool, int validSize) const
size_t size() const
Lenght of the data buffer in bytes.
Definition: FEDRawData.h:45
unsigned int htrSlot() const
HcalElectronicsId-style HTR slot.
Definition: HcalHTRData.cc:365
const HcalTrigTowerGeometry * theTrigTowerGeometry
const FEDRawData & FEDData(int fedid) const
retrieve data for fed
constexpr int subdetId() const
get the contents of the subdetector field (not cast into any detector&#39;s numbering enum) ...
Definition: DetId.h:48
HcalSubdetector
Definition: HcalAssistant.h:31
bool getSpigotPresent(unsigned int nspigot) const
Read the &quot;PRESENT&quot; bit for this spigot.
std::vector< T >::iterator iterator
const_iterator end() const
int getSourceId() const
Definition: HcalDCCHeader.h:32
Definition: DetId.h:17
unsigned int getErrorsWord() const
Get the errors word.
Definition: HcalHTRData.h:162
unsigned int readoutVMECrateId() const
HcalElectronicsId-style VME crate number.
Definition: HcalHTRData.cc:373
static const int SPIGOT_COUNT
Definition: HcalDCCHeader.h:19
const unsigned char * data() const
Return a const pointer to the beginning of the data buffer.
Definition: FEDRawData.cc:24
Readout chain identification for Hcal.
const DetId lookup(HcalElectronicsId fId) const
lookup the logical detid associated with the given electronics id
bool isHistogramEvent() const
Is this event a histogram event? (do not call standard unpack in this case!!!!!)
Definition: HcalHTRData.cc:409
const_iterator begin() const
constexpr Detector det() const
get the detector field from this detid
Definition: DetId.h:46
void HcalTriggerPrimitiveAlgo::runZS ( HcalTrigPrimDigiCollection tp)

Definition at line 761 of file HcalTriggerPrimitiveAlgo.cc.

References edm::SortedCollection< T, SORT >::begin(), edm::SortedCollection< T, SORT >::end(), mps_fire::i, cmsswSequenceInfo::tp, and ZS_threshold_I_.

Referenced by HcalTrigPrimDigiProducer::produce().

761  {
762  for (HcalTrigPrimDigiCollection::iterator tp = result.begin(); tp != result.end(); ++tp) {
763  bool ZS = true;
764  for (int i = 0; i < tp->size(); ++i) {
765  if (tp->sample(i).compressedEt() > ZS_threshold_I_) {
766  ZS = false;
767  break;
768  }
769  }
770  if (ZS)
771  tp->setZSInfo(false, true);
772  else
773  tp->setZSInfo(true, false);
774  }
775 }
tuple result
Definition: mps_fire.py:311
std::vector< T >::iterator iterator
size_type size() const
void HcalTriggerPrimitiveAlgo::setFixSaturationFlag ( bool  fix_saturation)
void HcalTriggerPrimitiveAlgo::setNCTScaleShift ( int  shift)

Definition at line 951 of file HcalTriggerPrimitiveAlgo.cc.

References NCTScaleShift, and edm::shift.

Referenced by HcalTrigPrimDigiProducer::HcalTrigPrimDigiProducer().

951 { NCTScaleShift = shift; }
static unsigned int const shift
void HcalTriggerPrimitiveAlgo::setNumFilterPresamplesHBQIE11 ( int  presamples)
inline
void HcalTriggerPrimitiveAlgo::setNumFilterPresamplesHEQIE11 ( int  presamples)
inline
void HcalTriggerPrimitiveAlgo::setPeakFinderAlgorithm ( int  algo)

Definition at line 945 of file HcalTriggerPrimitiveAlgo.cc.

References Exception, and peak_finder_algorithm_.

Referenced by HcalTrigPrimDigiProducer::HcalTrigPrimDigiProducer().

945  {
946  if (algo <= 0 || algo > 2)
947  throw cms::Exception("ERROR: Only algo 1 & 2 are supported.") << std::endl;
949 }
void HcalTriggerPrimitiveAlgo::setRCTScaleShift ( int  shift)

Definition at line 953 of file HcalTriggerPrimitiveAlgo.cc.

References RCTScaleShift, and edm::shift.

Referenced by HcalTrigPrimDigiProducer::HcalTrigPrimDigiProducer().

953 { RCTScaleShift = shift; }
static unsigned int const shift
void HcalTriggerPrimitiveAlgo::setUpgradeFlags ( bool  hb,
bool  he,
bool  hf 
)
void HcalTriggerPrimitiveAlgo::setWeightQIE11 ( int  aieta,
double  weight 
)

Definition at line 939 of file HcalTriggerPrimitiveAlgo.cc.

References histoStyle::weight, and weightsQIE11_.

Referenced by HcalTrigPrimDigiProducer::beginRun().

939  {
940  // Simple map of |ieta| in HBHE to weight
941  // Only one weight for SOI-1 TS
942  weightsQIE11_[aieta] = {{weight, 1.0}};
943 }
std::array< std::array< double, 2 >, 29 > weightsQIE11_
int weight
Definition: histoStyle.py:51
void HcalTriggerPrimitiveAlgo::setWeightsQIE11 ( const edm::ParameterSet weightsQIE11)

Definition at line 929 of file HcalTriggerPrimitiveAlgo.cc.

References edm::ParameterSet::getParameter(), edm::ParameterSet::getParameterNames(), findQualityFiles::v, and weightsQIE11_.

Referenced by HcalTrigPrimDigiProducer::HcalTrigPrimDigiProducer().

929  {
930  // Names are just abs(ieta) for HBHE
931  std::vector<std::string> ietaStrs = weightsQIE11.getParameterNames();
932  for (auto& ietaStr : ietaStrs) {
933  // Strip off "ieta" part of key and just use integer value in map
934  auto const& v = weightsQIE11.getParameter<std::vector<double>>(ietaStr);
935  weightsQIE11_[std::stoi(ietaStr.substr(4))] = {{v[0], v[1]}};
936  }
937 }
std::vector< std::string > getParameterNames() const
std::array< std::array< double, 2 >, 29 > weightsQIE11_
T getParameter(std::string const &) const
Definition: ParameterSet.h:303
bool HcalTriggerPrimitiveAlgo::validChannel ( const QIE10DataFrame digi,
int  ts 
) const
private

Definition at line 639 of file HcalTriggerPrimitiveAlgo.cc.

References conditions_, HcalDbService::getHcalTPChannelParameter(), HcalTPChannelParameter::getMask(), QIE10DataFrame::id(), QIE10DataFrame::linkError(), and QIE10DataFrame::samples().

Referenced by addSignal().

639  {
640  // channels with invalid data should not contribute to the sum
641  if (digi.linkError() || ts >= digi.samples() || !digi[ts].ok())
642  return false;
643 
644  auto mask = conditions_->getHcalTPChannelParameter(HcalDetId(digi.id()))->getMask();
645  if (mask)
646  return false;
647 
648  return true;
649 }
constexpr edm::DataFrame::id_type id() const
const HcalDbService * conditions_
constexpr bool linkError() const
constexpr int samples() const
total number of samples in the digi
const HcalTPChannelParameter * getHcalTPChannelParameter(const HcalGenericDetId &fId, bool throwOnFail=true) const
uint32_t getMask() const
get mask for channel validity and self trigger information
bool HcalTriggerPrimitiveAlgo::validUpgradeFG ( const HcalTrigTowerDetId id,
int  depth 
) const
private

Definition at line 843 of file HcalTriggerPrimitiveAlgo.cc.

References HBHE_OVERLAP_TOWER, LAST_FINEGRAIN_DEPTH, LAST_FINEGRAIN_TOWER, and upgrade_hb_.

Referenced by addUpgradeFG().

843  {
845  return false;
846  if (id.ietaAbs() > LAST_FINEGRAIN_TOWER)
847  return false;
848  if (id.ietaAbs() == HBHE_OVERLAP_TOWER and not upgrade_hb_)
849  return false;
850  return true;
851 }

Member Data Documentation

const HcalDbService* HcalTriggerPrimitiveAlgo::conditions_
private

Definition at line 135 of file HcalTriggerPrimitiveAlgo.h.

Referenced by passTDC(), run(), and validChannel().

std::vector<uint32_t> HcalTriggerPrimitiveAlgo::FG_HF_thresholds_
private

Definition at line 142 of file HcalTriggerPrimitiveAlgo.h.

Referenced by analyzeHF2016(), and analyzeHFQIE10().

uint32_t HcalTriggerPrimitiveAlgo::FG_threshold_
private

Definition at line 141 of file HcalTriggerPrimitiveAlgo.h.

Referenced by analyzeHF().

FGbitMap HcalTriggerPrimitiveAlgo::fgMap_
private

Definition at line 211 of file HcalTriggerPrimitiveAlgo.h.

Referenced by addFG(), analyze(), and run().

FGUpgradeMap HcalTriggerPrimitiveAlgo::fgUpgradeMap_
private

Definition at line 215 of file HcalTriggerPrimitiveAlgo.h.

Referenced by addUpgradeFG(), analyzeQIE11(), and run().

FGUpgradeTDCMap HcalTriggerPrimitiveAlgo::fgUpgradeTDCMap_
private

Definition at line 219 of file HcalTriggerPrimitiveAlgo.h.

Referenced by addUpgradeTDCFG(), analyzeQIE11(), and run().

const int HcalTriggerPrimitiveAlgo::FIRST_DEPTH7_TOWER = 26
staticprivate

Definition at line 236 of file HcalTriggerPrimitiveAlgo.h.

Referenced by needUpgradeID().

const int HcalTriggerPrimitiveAlgo::FIRST_FINEGRAIN_TOWER = 30
staticprivate

Definition at line 241 of file HcalTriggerPrimitiveAlgo.h.

Referenced by analyzeHF2016(), and analyzeHFQIE10().

bool HcalTriggerPrimitiveAlgo::fix_saturation_ = false
private

Definition at line 225 of file HcalTriggerPrimitiveAlgo.h.

Referenced by addSignal(), analyzeQIE11(), and setFixSaturationFlag().

const int HcalTriggerPrimitiveAlgo::HBHE_OVERLAP_TOWER = 16
staticprivate

Definition at line 235 of file HcalTriggerPrimitiveAlgo.h.

Referenced by needLegacyFG(), and validUpgradeFG().

TowerMapVeto HcalTriggerPrimitiveAlgo::HF_Veto
private

Definition at line 208 of file HcalTriggerPrimitiveAlgo.h.

Referenced by addSignal(), analyzeHF(), and run().

const HcaluLUTTPGCoder* HcalTriggerPrimitiveAlgo::incoder_
private

Definition at line 133 of file HcalTriggerPrimitiveAlgo.h.

Referenced by addSignal(), addUpgradeTDCFG(), and run().

const int HcalTriggerPrimitiveAlgo::LAST_FINEGRAIN_DEPTH = 6
staticprivate

Definition at line 237 of file HcalTriggerPrimitiveAlgo.h.

Referenced by needUpgradeID(), and validUpgradeFG().

const int HcalTriggerPrimitiveAlgo::LAST_FINEGRAIN_TOWER = 28
staticprivate

Definition at line 238 of file HcalTriggerPrimitiveAlgo.h.

Referenced by validUpgradeFG().

int HcalTriggerPrimitiveAlgo::latency_
private

Definition at line 140 of file HcalTriggerPrimitiveAlgo.h.

HcalFeatureBit* HcalTriggerPrimitiveAlgo::LongvrsShortCut
private

Definition at line 206 of file HcalTriggerPrimitiveAlgo.h.

Referenced by run().

uint32_t HcalTriggerPrimitiveAlgo::minSignalThreshold_
private

Definition at line 152 of file HcalTriggerPrimitiveAlgo.h.

Referenced by addSignal().

int HcalTriggerPrimitiveAlgo::NCTScaleShift
private

Definition at line 154 of file HcalTriggerPrimitiveAlgo.h.

Referenced by run(), and setNCTScaleShift().

int HcalTriggerPrimitiveAlgo::numberOfFilterPresamplesHBQIE11_
private

Definition at line 147 of file HcalTriggerPrimitiveAlgo.h.

Referenced by analyzeQIE11(), and setNumFilterPresamplesHBQIE11().

int HcalTriggerPrimitiveAlgo::numberOfFilterPresamplesHEQIE11_
private

Definition at line 148 of file HcalTriggerPrimitiveAlgo.h.

Referenced by analyzeQIE11(), and setNumFilterPresamplesHEQIE11().

int HcalTriggerPrimitiveAlgo::numberOfPresamples_
private

Definition at line 146 of file HcalTriggerPrimitiveAlgo.h.

Referenced by analyze(), analyzeQIE11(), and HcalTriggerPrimitiveAlgo().

int HcalTriggerPrimitiveAlgo::numberOfPresamplesHF_
private
int HcalTriggerPrimitiveAlgo::numberOfSamples_
private

Definition at line 145 of file HcalTriggerPrimitiveAlgo.h.

Referenced by analyze(), analyzeQIE11(), and HcalTriggerPrimitiveAlgo().

int HcalTriggerPrimitiveAlgo::numberOfSamplesHF_
private
const HcalTPGCompressor* HcalTriggerPrimitiveAlgo::outcoder_
private
bool HcalTriggerPrimitiveAlgo::override_adc_hf_ = false
private

Definition at line 229 of file HcalTriggerPrimitiveAlgo.h.

Referenced by overrideParameters(), and passTDC().

uint32_t HcalTriggerPrimitiveAlgo::override_adc_hf_value_
private

Definition at line 230 of file HcalTriggerPrimitiveAlgo.h.

Referenced by overrideParameters(), and passTDC().

edm::ParameterSet HcalTriggerPrimitiveAlgo::override_parameters_
private

Definition at line 227 of file HcalTriggerPrimitiveAlgo.h.

Referenced by overrideParameters(), and run().

bool HcalTriggerPrimitiveAlgo::override_tdc_hf_ = false
private

Definition at line 231 of file HcalTriggerPrimitiveAlgo.h.

Referenced by overrideParameters(), and passTDC().

unsigned long long HcalTriggerPrimitiveAlgo::override_tdc_hf_value_
private

Definition at line 232 of file HcalTriggerPrimitiveAlgo.h.

Referenced by overrideParameters(), and passTDC().

int HcalTriggerPrimitiveAlgo::peak_finder_algorithm_
private

Definition at line 161 of file HcalTriggerPrimitiveAlgo.h.

Referenced by analyze(), and setPeakFinderAlgorithm().

bool HcalTriggerPrimitiveAlgo::peakfind_
private

Definition at line 137 of file HcalTriggerPrimitiveAlgo.h.

Referenced by analyze(), and HcalTriggerPrimitiveAlgo().

uint32_t HcalTriggerPrimitiveAlgo::PMT_NoiseThreshold_
private

Definition at line 153 of file HcalTriggerPrimitiveAlgo.h.

Referenced by analyzeHF().

const int HcalTriggerPrimitiveAlgo::QIE10_LINEARIZATION_ET = HcaluLUTTPGCoder::QIE10_LUT_BITMASK
staticprivate

Definition at line 244 of file HcalTriggerPrimitiveAlgo.h.

Referenced by analyzeHFQIE10().

const int HcalTriggerPrimitiveAlgo::QIE10_MAX_LINEARIZATION_ET = 0x7FF
staticprivate

Definition at line 247 of file HcalTriggerPrimitiveAlgo.h.

Referenced by analyzeHFQIE10().

const int HcalTriggerPrimitiveAlgo::QIE11_LINEARIZATION_ET = HcaluLUTTPGCoder::QIE11_LUT_BITMASK
staticprivate

Definition at line 245 of file HcalTriggerPrimitiveAlgo.h.

Referenced by addSignal().

const int HcalTriggerPrimitiveAlgo::QIE11_MAX_LINEARIZATION_ET = 0x7FF
staticprivate

Definition at line 248 of file HcalTriggerPrimitiveAlgo.h.

Referenced by analyzeQIE11().

const int HcalTriggerPrimitiveAlgo::QIE8_LINEARIZATION_ET = HcaluLUTTPGCoder::QIE8_LUT_BITMASK
staticprivate

Definition at line 243 of file HcalTriggerPrimitiveAlgo.h.

Referenced by analyze(), analyzeHF(), and analyzeHF2016().

int HcalTriggerPrimitiveAlgo::RCTScaleShift
private

Definition at line 155 of file HcalTriggerPrimitiveAlgo.h.

Referenced by run(), and setRCTScaleShift().

HFDetailMap HcalTriggerPrimitiveAlgo::theHFDetailMap
private

Definition at line 181 of file HcalTriggerPrimitiveAlgo.h.

Referenced by addSignal(), analyzeHF2016(), and run().

HFUpgradeDetailMap HcalTriggerPrimitiveAlgo::theHFUpgradeDetailMap
private

Definition at line 191 of file HcalTriggerPrimitiveAlgo.h.

Referenced by addSignal(), analyzeHFQIE10(), and run().

SatMap HcalTriggerPrimitiveAlgo::theSatMap
private

Definition at line 172 of file HcalTriggerPrimitiveAlgo.h.

Referenced by addSignal(), and run().

SumMap HcalTriggerPrimitiveAlgo::theSumMap
private

Definition at line 169 of file HcalTriggerPrimitiveAlgo.h.

Referenced by addSignal(), and run().

double HcalTriggerPrimitiveAlgo::theThreshold
private

Definition at line 136 of file HcalTriggerPrimitiveAlgo.h.

Referenced by analyze(), and analyzeQIE11().

TowerMapFGSum HcalTriggerPrimitiveAlgo::theTowerMapFGSum
private

Definition at line 195 of file HcalTriggerPrimitiveAlgo.h.

Referenced by addSignal(), analyzeHF(), and run().

const HcalTrigTowerGeometry* HcalTriggerPrimitiveAlgo::theTrigTowerGeometry
private
bool HcalTriggerPrimitiveAlgo::upgrade_hb_ = false
private

Definition at line 221 of file HcalTriggerPrimitiveAlgo.h.

Referenced by needLegacyFG(), run(), setUpgradeFlags(), and validUpgradeFG().

bool HcalTriggerPrimitiveAlgo::upgrade_he_ = false
private

Definition at line 222 of file HcalTriggerPrimitiveAlgo.h.

Referenced by run(), and setUpgradeFlags().

bool HcalTriggerPrimitiveAlgo::upgrade_hf_ = false
private

Definition at line 223 of file HcalTriggerPrimitiveAlgo.h.

Referenced by run(), and setUpgradeFlags().

bool HcalTriggerPrimitiveAlgo::useTDCInMinBiasBits_
private

Definition at line 151 of file HcalTriggerPrimitiveAlgo.h.

Referenced by analyzeHFQIE10().

std::vector<double> HcalTriggerPrimitiveAlgo::weights_
private

Definition at line 138 of file HcalTriggerPrimitiveAlgo.h.

Referenced by analyze().

std::array<std::array<double, 2>, 29> HcalTriggerPrimitiveAlgo::weightsQIE11_
private

Definition at line 139 of file HcalTriggerPrimitiveAlgo.h.

Referenced by analyzeQIE11(), setWeightQIE11(), and setWeightsQIE11().

uint32_t HcalTriggerPrimitiveAlgo::ZS_threshold_
private

Definition at line 143 of file HcalTriggerPrimitiveAlgo.h.

Referenced by HcalTriggerPrimitiveAlgo().

int HcalTriggerPrimitiveAlgo::ZS_threshold_I_
private

Definition at line 144 of file HcalTriggerPrimitiveAlgo.h.

Referenced by HcalTriggerPrimitiveAlgo(), and runZS().