CDF properties of high-mass multi-jet events. More...
Public Member Functions | |
AnalysisHandler & | handler () const |
Access the controlling AnalysisHandler object. | |
void | normalize (AIDA::IHistogram1D *&histo, double norm=1.0) |
void | normalize (AIDA::IHistogram2D *&histo, double norm=1.0) |
void | scale (AIDA::IHistogram1D *&histo, double scale) |
void | scale (AIDA::IHistogram2D *&histo, double scale) |
Analysis & | setCrossSection (double xs) |
Set the cross section from the generator. | |
Constructors etc. | |
CDF_1996_S3349578 () | |
Constructor. | |
Analysis methods | |
void | init () |
Book histograms and initialise projections before the run. | |
void | analyze (const Event &event) |
void | _threeJetAnalysis (const Jets &jets, const double &weight) |
void | _fourJetAnalysis (const Jets &jets, const double &weight) |
void | _fiveJetAnalysis (const Jets &jets, const double &weight) |
void | finalize () |
Normalise histograms etc., after the run. | |
Metadata | |
Metadata is used for querying from the command line and also for building web pages and the analysis pages in the Rivet manual. | |
const AnalysisInfo & | info () const |
Get the actual AnalysisInfo object in which all this metadata is stored. | |
virtual std::string | name () const |
Get the name of the analysis. | |
virtual std::string | spiresId () const |
Get a the SPIRES/Inspire ID code for this analysis. | |
virtual std::vector< std::string > | authors () const |
Names & emails of paper/analysis authors. | |
virtual std::string | summary () const |
Get a short description of the analysis. | |
virtual std::string | description () const |
Get a full description of the analysis. | |
virtual std::string | runInfo () const |
Information about the events needed as input for this analysis. | |
virtual std::string | experiment () const |
Experiment which performed and published this analysis. | |
virtual std::string | collider () const |
Collider on which the experiment ran. | |
virtual std::string | year () const |
When the original experimental analysis was published. | |
virtual std::vector< std::string > | references () const |
Journal, and preprint references. | |
virtual std::string | bibKey () const |
BibTeX citation key for this article. | |
virtual std::string | bibTeX () const |
BibTeX citation entry for this article. | |
virtual std::string | status () const |
Whether this analysis is trusted (in any way!). | |
virtual std::vector< std::string > | todos () const |
Any work to be done on this analysis. | |
virtual const std::vector < PdgIdPair > & | requiredBeams () const |
Return the allowed pairs of incoming beams required by this analysis. | |
virtual Analysis & | setRequiredBeams (const std::vector< PdgIdPair > &requiredBeams) |
Declare the allowed pairs of incoming beams required by this analysis. | |
virtual const std::vector < std::pair< double, double > > & | requiredEnergies () const |
Sets of valid beam energy pairs, in GeV. | |
virtual Analysis & | setRequiredEnergies (const std::vector< std::pair< double, double > > &requiredEnergies) |
Declare the list of valid beam energy pairs, in GeV. | |
bool | needsCrossSection () const |
Return true if this analysis needs to know the process cross-section. | |
Analysis & | setNeedsCrossSection (bool needed=true) |
Declare whether this analysis needs to know the process cross-section from the generator. | |
Internal metadata modifiying methods | |
AnalysisInfo & | info () |
Get the actual AnalysisInfo object in which all this metadata is stored (non-const). | |
virtual Analysis & | setBeams (PdgId beam1, PdgId beam2) |
Run conditions | |
const ParticlePair & | beams () const |
Incoming beams for this run. | |
const PdgIdPair | beamIds () const |
Incoming beam IDs for this run. | |
double | sqrtS () const |
Centre of mass energy for this run. | |
Analysis / beam compatibility testing | |
bool | isCompatible (const ParticlePair &beams) const |
Check if analysis is compatible with the provided beam particle IDs and energies. | |
bool | isCompatible (PdgId beam1, PdgId beam2, double e1, double e2) const |
Check if analysis is compatible with the provided beam particle IDs and energies. | |
bool | isCompatible (const PdgIdPair &beams, const std::pair< double, double > &energies) const |
Check if analysis is compatible with the provided beam particle IDs and energies. | |
Projection "getting" functions | |
std::set< ConstProjectionPtr > | getProjections () const |
Get the contained projections, including recursion. | |
template<typename PROJ > | |
const PROJ & | getProjection (const std::string &name) const |
Get the named projection, specifying return type via a template argument. | |
const Projection & | getProjection (const std::string &name) const |
Projection applying functions | |
template<typename PROJ > | |
const PROJ & | applyProjection (const Event &evt, const PROJ &proj) const |
Apply the supplied projection on event. | |
template<typename PROJ > | |
const PROJ & | applyProjection (const Event &evt, const Projection &proj) const |
Apply the supplied projection on event. | |
template<typename PROJ > | |
const PROJ & | applyProjection (const Event &evt, const std::string &name) const |
Apply the named projection on event. | |
Protected Member Functions | |
Log & | getLog () const |
Get a Log object based on the name() property of the calling analysis object. | |
double | crossSection () const |
Get the process cross-section in pb. Throws if this hasn't been set. | |
double | crossSectionPerEvent () const |
size_t | numEvents () const |
double | sumOfWeights () const |
ProjectionHandler & | getProjHandler () const |
Get a reference to the ProjectionHandler for this thread. | |
AIDA analysis infrastructure. | |
AIDA::IAnalysisFactory & | analysisFactory () |
Access the AIDA analysis factory of the controlling AnalysisHandler object. | |
AIDA::ITree & | tree () |
Access the AIDA tree of the controlling AnalysisHandler object. | |
AIDA::IHistogramFactory & | histogramFactory () |
Access the AIDA histogram factory of the controlling AnalysisHandler object. | |
AIDA::IDataPointSetFactory & | datapointsetFactory () |
Access the AIDA histogram factory of the controlling AnalysisHandler object. | |
const std::string | histoDir () const |
Get the canonical histogram "directory" path for this analysis. | |
const std::string | histoPath (const std::string &hname) const |
Get the canonical histogram path for the named histogram in this analysis. | |
Internal histogram booking (for use by Analysis sub-classes). | |
const BinEdges & | binEdges (const std::string &hname) const |
Get bin edges for a named histo (using ref AIDA caching). | |
const BinEdges & | binEdges (size_t datasetId, size_t xAxisId, size_t yAxisId) const |
Get bin edges for a numbered histo (using ref AIDA caching). | |
BinEdges | logBinEdges (size_t nbins, double lower, double upper) |
Get bin edges with logarithmic widths. | |
AIDA::IHistogram1D * | bookHistogram1D (const std::string &name, size_t nbins, double lower, double upper, const std::string &title="", const std::string &xtitle="", const std::string &ytitle="") |
AIDA::IHistogram1D * | bookHistogram1D (const std::string &name, const std::vector< double > &binedges, const std::string &title="", const std::string &xtitle="", const std::string &ytitle="") |
AIDA::IHistogram1D * | bookHistogram1D (const std::string &name, const std::string &title="", const std::string &xtitle="", const std::string &ytitle="") |
AIDA::IHistogram1D * | bookHistogram1D (size_t datasetId, size_t xAxisId, size_t yAxisId, const std::string &title="", const std::string &xtitle="", const std::string &ytitle="") |
AIDA::IHistogram2D * | bookHistogram2D (const std::string &name, size_t nxbins, double xlower, double xupper, size_t nybins, double ylower, double yupper, const std::string &title="", const std::string &xtitle="", const std::string &ytitle="", const std::string &ztitle="") |
AIDA::IHistogram2D * | bookHistogram2D (const std::string &name, const std::vector< double > &xbinedges, const std::vector< double > &ybinedges, const std::string &title="", const std::string &xtitle="", const std::string &ytitle="", const std::string &ztitle="") |
Internal profile histogram booking (for use by Analysis sub-classes). | |
AIDA::IProfile1D * | bookProfile1D (const std::string &name, size_t nbins, double lower, double upper, const std::string &title="", const std::string &xtitle="", const std::string &ytitle="") |
AIDA::IProfile1D * | bookProfile1D (const std::string &name, const std::vector< double > &binedges, const std::string &title="", const std::string &xtitle="", const std::string &ytitle="") |
AIDA::IProfile1D * | bookProfile1D (const std::string &name, const std::string &title="", const std::string &xtitle="", const std::string &ytitle="") |
AIDA::IProfile1D * | bookProfile1D (size_t datasetId, size_t xAxisId, size_t yAxisId, const std::string &title="", const std::string &xtitle="", const std::string &ytitle="") |
Internal data point set booking (for use by Analysis sub-classes). | |
AIDA::IDataPointSet * | bookDataPointSet (const std::string &name, const std::string &title="", const std::string &xtitle="", const std::string &ytitle="") |
AIDA::IDataPointSet * | bookDataPointSet (const std::string &name, size_t npts, double lower, double upper, const std::string &title="", const std::string &xtitle="", const std::string &ytitle="") |
AIDA::IDataPointSet * | bookDataPointSet (size_t datasetId, size_t xAxisId, size_t yAxisId, const std::string &title="", const std::string &xtitle="", const std::string &ytitle="") |
Projection registration functions | |
template<typename PROJ > | |
const PROJ & | addProjection (const PROJ &proj, const std::string &name) |
const Projection & | _addProjection (const Projection &proj, const std::string &name) |
Untemplated function to do the work... | |
Protected Attributes | |
string | _defaultname |
Name passed to constructor (used to find .info analysis data file, and as a fallback). | |
shared_ptr< AnalysisInfo > | _info |
Pointer to analysis metadata object. | |
bool | _allowProjReg |
Flag to forbid projection registration in analyses until the init phase. | |
Private Member Functions | |
vector< FourMomentum > | _reduce (const vector< FourMomentum > &jets, FourMomentum &combined1, FourMomentum &combined2) |
FourMomentum | _avg_beam_in_lab (const double &m, const double &y) |
double | _psi (const FourMomentum &p1, const FourMomentum &p2, const FourMomentum &p3, const FourMomentum &p4) |
double | _safeMass (const FourMomentum &p) |
Private Attributes | |
Histograms | |
AIDA::IHistogram1D * | _h_3_mNJ |
AIDA::IHistogram1D * | _h_3_X3 |
AIDA::IHistogram1D * | _h_3_X4 |
AIDA::IHistogram1D * | _h_3_costheta3 |
AIDA::IHistogram1D * | _h_3_psi3 |
AIDA::IHistogram1D * | _h_3_f3 |
AIDA::IHistogram1D * | _h_3_f4 |
AIDA::IHistogram1D * | _h_3_f5 |
AIDA::IHistogram1D * | _h_4_mNJ |
AIDA::IHistogram1D * | _h_4_X3 |
AIDA::IHistogram1D * | _h_4_X4 |
AIDA::IHistogram1D * | _h_4_costheta3 |
AIDA::IHistogram1D * | _h_4_psi3 |
AIDA::IHistogram1D * | _h_4_f3 |
AIDA::IHistogram1D * | _h_4_f4 |
AIDA::IHistogram1D * | _h_4_f5 |
AIDA::IHistogram1D * | _h_4_XA |
AIDA::IHistogram1D * | _h_4_psiAB |
AIDA::IHistogram1D * | _h_4_fA |
AIDA::IHistogram1D * | _h_4_fB |
AIDA::IHistogram1D * | _h_5_mNJ |
AIDA::IHistogram1D * | _h_5_X3 |
AIDA::IHistogram1D * | _h_5_X4 |
AIDA::IHistogram1D * | _h_5_costheta3 |
AIDA::IHistogram1D * | _h_5_psi3 |
AIDA::IHistogram1D * | _h_5_f3 |
AIDA::IHistogram1D * | _h_5_f4 |
AIDA::IHistogram1D * | _h_5_f5 |
AIDA::IHistogram1D * | _h_5_XA |
AIDA::IHistogram1D * | _h_5_XC |
AIDA::IHistogram1D * | _h_5_psiAB |
AIDA::IHistogram1D * | _h_5_psiCD |
AIDA::IHistogram1D * | _h_5_fA |
AIDA::IHistogram1D * | _h_5_fB |
AIDA::IHistogram1D * | _h_5_fC |
AIDA::IHistogram1D * | _h_5_fD |
CDF properties of high-mass multi-jet events.
Definition at line 12 of file CDF_1996_S3349578.cc.
CDF_1996_S3349578 | ( | ) | [inline] |
Constructor.
Definition at line 19 of file CDF_1996_S3349578.cc.
References Rivet::ANTIPROTON, Rivet::PROTON, and Analysis::setBeams().
00020 : Analysis("CDF_1996_S3349578") 00021 { 00022 setBeams(PROTON, ANTIPROTON); 00023 }
const Projection & _addProjection | ( | const Projection & | proj, | |
const std::string & | name | |||
) | [protected, inherited] |
Untemplated function to do the work...
Definition at line 33 of file ProjectionApplier.cc.
References ProjectionApplier::_allowProjReg, ProjectionApplier::getProjHandler(), ProjectionApplier::name(), Projection::name(), and ProjectionHandler::registerProjection().
Referenced by ProjectionApplier::addProjection().
00034 { 00035 if (!_allowProjReg) { 00036 cerr << "Trying to register projection '" 00037 << proj.name() << "' before init phase in '" << this->name() << "'." << endl; 00038 exit(2); 00039 } 00040 const Projection& reg = getProjHandler().registerProjection(*this, proj, name); 00041 return reg; 00042 }
FourMomentum _avg_beam_in_lab | ( | const double & | m, | |
const double & | y | |||
) | [inline, private] |
Definition at line 386 of file CDF_1996_S3349578.cc.
References FourMomentum::boostVector(), FourMomentum::E(), and FourMomentum::transform.
Referenced by CDF_1996_S3349578::_fiveJetAnalysis(), CDF_1996_S3349578::_fourJetAnalysis(), and CDF_1996_S3349578::_threeJetAnalysis().
00386 { 00387 const double mt = m/2.0; 00388 FourMomentum beam1(mt, 0, 0, mt); 00389 FourMomentum beam2(mt, 0, 0, -mt); 00390 if (fabs(y)>1e-3) { 00391 FourMomentum boostvec(cosh(y), 0.0, 0.0, sinh(y)); 00392 LorentzTransform cms_boost(-boostvec.boostVector()); 00393 cms_boost = cms_boost.inverse(); 00394 beam1=cms_boost.transform(beam1); 00395 beam2=cms_boost.transform(beam2); 00396 } 00397 if (beam1.E()>beam2.E()) { 00398 return beam1-beam2; 00399 } 00400 else { 00401 return beam2-beam1; 00402 } 00403 }
void _fiveJetAnalysis | ( | const Jets & | jets, | |
const double & | weight | |||
) | [inline] |
Definition at line 244 of file CDF_1996_S3349578.cc.
References CDF_1996_S3349578::_avg_beam_in_lab(), CDF_1996_S3349578::_h_5_costheta3, CDF_1996_S3349578::_h_5_f3, CDF_1996_S3349578::_h_5_f4, CDF_1996_S3349578::_h_5_f5, CDF_1996_S3349578::_h_5_fA, CDF_1996_S3349578::_h_5_fB, CDF_1996_S3349578::_h_5_fC, CDF_1996_S3349578::_h_5_fD, CDF_1996_S3349578::_h_5_mNJ, CDF_1996_S3349578::_h_5_psi3, CDF_1996_S3349578::_h_5_psiAB, CDF_1996_S3349578::_h_5_psiCD, CDF_1996_S3349578::_h_5_X3, CDF_1996_S3349578::_h_5_X4, CDF_1996_S3349578::_h_5_XA, CDF_1996_S3349578::_h_5_XC, CDF_1996_S3349578::_psi(), CDF_1996_S3349578::_reduce(), CDF_1996_S3349578::_safeMass(), FourMomentum::boostVector(), Log::DEBUG, Vector3::dot(), FourMomentum::E(), FourMomentum::Et(), Analysis::getLog(), Rivet::GeV, Jet::momentum(), FourMomentum::rapidity(), Vector3::unit(), and FourVector::vector3().
Referenced by CDF_1996_S3349578::analyze().
00244 { 00245 getLog() << Log::DEBUG << "5 jet analysis" << std::endl; 00246 00247 double sumEt=0.0; 00248 FourMomentum jetsystem(0.0, 0.0, 0.0, 0.0); 00249 foreach (const Jet& jet, jets) { 00250 sumEt+=jet.momentum().Et(); 00251 jetsystem+=jet.momentum(); 00252 } 00253 if (sumEt < 420.0*GeV) return; 00254 00255 const double m5J = _safeMass(jetsystem); 00256 if (m5J < 750*GeV) return; 00257 00258 LorentzTransform cms_boost(-jetsystem.boostVector()); 00259 vector<FourMomentum> jets5; 00260 foreach (Jet jet, jets) { 00261 jets5.push_back(cms_boost.transform(jet.momentum())); 00262 } 00263 std::sort(jets5.begin(), jets5.end(), FourMomentum::byEDescending()); 00264 00265 FourMomentum pC, pD; 00266 vector<FourMomentum> jets4(_reduce(jets5, pC, pD)); 00267 std::sort(jets4.begin(), jets4.end(), FourMomentum::byEDescending()); 00268 00269 FourMomentum pA, pB; 00270 vector<FourMomentum> jets3(_reduce(jets4, pA, pB)); 00271 std::sort(jets3.begin(), jets3.end(), FourMomentum::byEDescending()); 00272 FourMomentum p3(jets3[0]); 00273 FourMomentum p4(jets3[1]); 00274 FourMomentum p5(jets3[2]); 00275 00276 // fill histograms 00277 FourMomentum pAV = cms_boost.transform(_avg_beam_in_lab(m5J, jetsystem.rapidity())); 00278 const double costheta3 = pAV.vector3().unit().dot(p3.vector3().unit()); 00279 const double X3 = 2.0*p3.E()/m5J; 00280 const double X4 = 2.0*p4.E()/m5J; 00281 const double psi3 = _psi(p3, pAV, p4, p5); 00282 const double f3 = _safeMass(p3)/m5J; 00283 const double f4 = _safeMass(p4)/m5J; 00284 const double f5 = _safeMass(p5)/m5J; 00285 const double fA = _safeMass(pA)/m5J; 00286 const double fB = _safeMass(pB)/m5J; 00287 const double XA = pA.E()/(pA.E()+pB.E()); 00288 const double psiAB = _psi(pA, pB, pA+pB, pAV); 00289 const double fC = _safeMass(pC)/m5J; 00290 const double fD = _safeMass(pD)/m5J; 00291 const double XC = pC.E()/(pC.E()+pD.E()); 00292 const double psiCD = _psi(pC, pD, pC+pD, pAV); 00293 00294 _h_5_mNJ->fill(m5J, weight); 00295 _h_5_X3->fill(X3, weight); 00296 _h_5_X4->fill(X4, weight); 00297 _h_5_costheta3->fill(costheta3, weight); 00298 _h_5_psi3->fill(psi3, weight); 00299 _h_5_f3->fill(f3, weight); 00300 _h_5_f4->fill(f4, weight); 00301 _h_5_f5->fill(f5, weight); 00302 _h_5_XA->fill(XA, weight); 00303 _h_5_psiAB->fill(psiAB, weight); 00304 _h_5_fA->fill(fA, weight); 00305 _h_5_fB->fill(fB, weight); 00306 _h_5_XC->fill(XC, weight); 00307 _h_5_psiCD->fill(psiCD, weight); 00308 _h_5_fC->fill(fC, weight); 00309 _h_5_fD->fill(fD, weight); 00310 }
void _fourJetAnalysis | ( | const Jets & | jets, | |
const double & | weight | |||
) | [inline] |
Definition at line 177 of file CDF_1996_S3349578.cc.
References CDF_1996_S3349578::_avg_beam_in_lab(), CDF_1996_S3349578::_h_4_costheta3, CDF_1996_S3349578::_h_4_f3, CDF_1996_S3349578::_h_4_f4, CDF_1996_S3349578::_h_4_f5, CDF_1996_S3349578::_h_4_fA, CDF_1996_S3349578::_h_4_fB, CDF_1996_S3349578::_h_4_mNJ, CDF_1996_S3349578::_h_4_psi3, CDF_1996_S3349578::_h_4_psiAB, CDF_1996_S3349578::_h_4_X3, CDF_1996_S3349578::_h_4_X4, CDF_1996_S3349578::_h_4_XA, CDF_1996_S3349578::_psi(), CDF_1996_S3349578::_reduce(), CDF_1996_S3349578::_safeMass(), FourMomentum::boostVector(), Log::DEBUG, Vector3::dot(), FourMomentum::E(), FourMomentum::Et(), Analysis::getLog(), Rivet::GeV, Jet::momentum(), FourMomentum::rapidity(), Vector3::unit(), and FourVector::vector3().
Referenced by CDF_1996_S3349578::analyze().
00177 { 00178 getLog() << Log::DEBUG << "4 jet analysis" << std::endl; 00179 00180 double sumEt=0.0; 00181 FourMomentum jetsystem(0.0, 0.0, 0.0, 0.0); 00182 foreach (const Jet& jet, jets) { 00183 sumEt+=jet.momentum().Et(); 00184 jetsystem+=jet.momentum(); 00185 } 00186 if (sumEt < 420.0*GeV) return; 00187 00188 const double m4J = _safeMass(jetsystem); 00189 if (m4J < 650*GeV) return; 00190 00191 LorentzTransform cms_boost(-jetsystem.boostVector()); 00192 vector<FourMomentum> jets4; 00193 foreach (Jet jet, jets) { 00194 jets4.push_back(cms_boost.transform(jet.momentum())); 00195 } 00196 std::sort(jets4.begin(), jets4.end(), FourMomentum::byEDescending()); 00197 00198 FourMomentum pA, pB; 00199 vector<FourMomentum> jets3(_reduce(jets4, pA, pB)); 00200 std::sort(jets3.begin(), jets3.end(), FourMomentum::byEDescending()); 00201 FourMomentum p3(jets3[0]); 00202 FourMomentum p4(jets3[1]); 00203 FourMomentum p5(jets3[2]); 00204 00205 FourMomentum pAV = cms_boost.transform(_avg_beam_in_lab(m4J, jetsystem.rapidity())); 00206 double costheta3=pAV.vector3().unit().dot(p3.vector3().unit()); 00207 if (fabs(costheta3)>0.8) { 00208 return; 00209 } 00210 00211 const double X3 = 2.0*p3.E()/m4J; 00212 if (X3>0.9) { 00213 return; 00214 } 00215 00216 // fill histograms 00217 const double X4 = 2.0*p4.E()/m4J; 00218 const double psi3 = _psi(p3, pAV, p4, p5); 00219 const double f3 = _safeMass(p3)/m4J; 00220 const double f4 = _safeMass(p4)/m4J; 00221 const double f5 = _safeMass(p5)/m4J; 00222 const double fA = _safeMass(pA)/m4J; 00223 const double fB = _safeMass(pB)/m4J; 00224 const double XA = pA.E()/(pA.E()+pB.E()); 00225 const double psiAB = _psi(pA, pB, pA+pB, pAV); 00226 00227 _h_4_mNJ->fill(m4J, weight); 00228 _h_4_X3->fill(X3, weight); 00229 _h_4_X4->fill(X4, weight); 00230 _h_4_costheta3->fill(costheta3, weight); 00231 _h_4_psi3->fill(psi3, weight); 00232 _h_4_f3->fill(f3, weight); 00233 _h_4_f4->fill(f4, weight); 00234 _h_4_f5->fill(f5, weight); 00235 _h_4_XA->fill(XA, weight); 00236 _h_4_psiAB->fill(psiAB, weight); 00237 _h_4_fA->fill(fA, weight); 00238 _h_4_fB->fill(fB, weight); 00239 }
double _psi | ( | const FourMomentum & | p1, | |
const FourMomentum & | p2, | |||
const FourMomentum & | p3, | |||
const FourMomentum & | p4 | |||
) | [inline, private] |
Definition at line 405 of file CDF_1996_S3349578.cc.
References Vector3::cross(), Vector3::dot(), Rivet::mapAngle0ToPi(), Vector3::unit(), and FourVector::vector3().
Referenced by CDF_1996_S3349578::_fiveJetAnalysis(), CDF_1996_S3349578::_fourJetAnalysis(), and CDF_1996_S3349578::_threeJetAnalysis().
00406 { 00407 Vector3 p1xp2 = p1.vector3().cross(p2.vector3()); 00408 Vector3 p3xp4 = p3.vector3().cross(p4.vector3()); 00409 return mapAngle0ToPi(acos(p1xp2.unit().dot(p3xp4.unit()))); 00410 }
vector<FourMomentum> _reduce | ( | const vector< FourMomentum > & | jets, | |
FourMomentum & | combined1, | |||
FourMomentum & | combined2 | |||
) | [inline, private] |
Definition at line 362 of file CDF_1996_S3349578.cc.
References Rivet::mass2().
Referenced by CDF_1996_S3349578::_fiveJetAnalysis(), and CDF_1996_S3349578::_fourJetAnalysis().
00364 { 00365 double minMass2 = 1e9; 00366 size_t idx1(jets.size()), idx2(jets.size()); 00367 for (size_t i=0; i<jets.size(); ++i) { 00368 for (size_t j=i+1; j<jets.size(); ++j) { 00369 double mass2 = FourMomentum(jets[i]+jets[j]).mass2(); 00370 if (mass2<minMass2) { 00371 idx1=i; 00372 idx2=j; 00373 } 00374 } 00375 } 00376 vector<FourMomentum> newjets; 00377 for (size_t i=0; i<jets.size(); ++i) { 00378 if (i!=idx1 && i!=idx2) newjets.push_back(jets[i]); 00379 } 00380 newjets.push_back(jets[idx1]+jets[idx2]); 00381 combined1 = jets[idx1]; 00382 combined2 = jets[idx2]; 00383 return newjets; 00384 }
double _safeMass | ( | const FourMomentum & | p | ) | [inline, private] |
Definition at line 412 of file CDF_1996_S3349578.cc.
References Analysis::getLog(), Rivet::m2, FourMomentum::mass2(), Rivet::mass2(), and Log::WARNING.
Referenced by CDF_1996_S3349578::_fiveJetAnalysis(), CDF_1996_S3349578::_fourJetAnalysis(), and CDF_1996_S3349578::_threeJetAnalysis().
00412 { 00413 double mass2=p.mass2(); 00414 if (mass2>0.0) return sqrt(mass2); 00415 else if (mass2<-1.0e-5) { 00416 getLog() << Log::WARNING << "m2 = " << m2 << ". Assuming m2=0." << endl; 00417 return 0.0; 00418 } 00419 else return 0.0; 00420 }
void _threeJetAnalysis | ( | const Jets & | jets, | |
const double & | weight | |||
) | [inline] |
Definition at line 120 of file CDF_1996_S3349578.cc.
References CDF_1996_S3349578::_avg_beam_in_lab(), CDF_1996_S3349578::_h_3_costheta3, CDF_1996_S3349578::_h_3_f3, CDF_1996_S3349578::_h_3_f4, CDF_1996_S3349578::_h_3_f5, CDF_1996_S3349578::_h_3_mNJ, CDF_1996_S3349578::_h_3_psi3, CDF_1996_S3349578::_h_3_X3, CDF_1996_S3349578::_h_3_X4, CDF_1996_S3349578::_psi(), CDF_1996_S3349578::_safeMass(), FourMomentum::boostVector(), Log::DEBUG, Vector3::dot(), FourMomentum::E(), FourMomentum::Et(), Analysis::getLog(), Rivet::GeV, Jet::momentum(), FourMomentum::rapidity(), Vector3::unit(), and FourVector::vector3().
Referenced by CDF_1996_S3349578::analyze().
00120 { 00121 getLog() << Log::DEBUG << "3 jet analysis" << std::endl; 00122 00123 double sumEt=0.0; 00124 FourMomentum jetsystem(0.0, 0.0, 0.0, 0.0); 00125 foreach (const Jet& jet, jets) { 00126 sumEt+=jet.momentum().Et(); 00127 jetsystem+=jet.momentum(); 00128 } 00129 if (sumEt < 420.0*GeV) return; 00130 00131 const double m3J = _safeMass(jetsystem); 00132 if (m3J<600*GeV) { 00133 return; 00134 } 00135 00136 LorentzTransform cms_boost(-jetsystem.boostVector()); 00137 vector<FourMomentum> jets3; 00138 foreach (Jet jet, jets) { 00139 jets3.push_back(cms_boost.transform(jet.momentum())); 00140 } 00141 std::sort(jets3.begin(), jets3.end(), FourMomentum::byEDescending()); 00142 FourMomentum p3(jets3[0]); 00143 FourMomentum p4(jets3[1]); 00144 FourMomentum p5(jets3[2]); 00145 00146 FourMomentum pAV = cms_boost.transform(_avg_beam_in_lab(m3J, jetsystem.rapidity())); 00147 double costheta3=pAV.vector3().unit().dot(p3.vector3().unit()); 00148 if (fabs(costheta3)>0.6) { 00149 return; 00150 } 00151 00152 double X3 = 2.0*p3.E()/m3J; 00153 if (X3>0.9) { 00154 return; 00155 } 00156 00157 const double X4 = 2.0*p4.E()/m3J; 00158 const double psi3 = _psi(p3, pAV, p4, p5); 00159 const double f3 = _safeMass(p3)/m3J; 00160 const double f4 = _safeMass(p4)/m3J; 00161 const double f5 = _safeMass(p5)/m3J; 00162 00163 _h_3_mNJ->fill(m3J, weight); 00164 _h_3_X3->fill(X3, weight); 00165 _h_3_X4->fill(X4, weight); 00166 _h_3_costheta3->fill(costheta3, weight); 00167 _h_3_psi3->fill(psi3, weight); 00168 _h_3_f3->fill(f3, weight); 00169 _h_3_f4->fill(f4, weight); 00170 _h_3_f5->fill(f5, weight); 00171 00172 }
const PROJ& addProjection | ( | const PROJ & | proj, | |
const std::string & | name | |||
) | [inline, protected, inherited] |
Register a contained projection. The type of the argument is used to instantiate a new projection internally: this new object is applied to events rather than the argument object. Hence you are advised to only use locally-scoped Projection objects in your Projection and Analysis constructors, and to avoid polymorphism (e.g. handling ConcreteProjection
via a pointer or reference to type Projection
) since this will screw up the internal type management.
Definition at line 113 of file ProjectionApplier.hh.
References ProjectionApplier::_addProjection().
Referenced by ZFinder::_init(), WFinder::_init(), VetoedFinalState::addVetoOnThisFinalState(), BeamThrust::BeamThrust(), CDF_2009_S8057893::CDF_2009_S8057893::init(), CentralEtHCM::CentralEtHCM(), ChargedFinalState::ChargedFinalState(), ChargedLeptons::ChargedLeptons(), ClusteredPhotons::ClusteredPhotons(), DISKinematics::DISKinematics(), DISLepton::DISLepton(), FinalState::FinalState(), FinalStateHCM::FinalStateHCM(), FoxWolframMoments::FoxWolframMoments(), FParameter::FParameter(), HadronicFinalState::HadronicFinalState(), Hemispheres::Hemispheres(), IdentifiedFinalState::IdentifiedFinalState(), ZEUS_2001_S4815815::init(), UA5_1989_S1926373::init(), UA5_1988_S1867512::init(), UA5_1987_S1640666::init(), UA5_1986_S1583476::init(), UA5_1982_S875503::init(), UA1_1990_S2044935::init(), TASSO_1990_S2148048::init(), STAR_2009_UE_HELEN::init(), STAR_2008_S7993412::init(), STAR_2008_S7869363::init(), STAR_2006_S6870392::init(), STAR_2006_S6860818::init(), STAR_2006_S6500200::init(), SFM_1984_S1178091::init(), PDG_HADRON_MULTIPLICITIES_RATIOS::init(), PDG_HADRON_MULTIPLICITIES::init(), OPAL_2004_S6132243::init(), OPAL_2001_S4553896::init(), OPAL_1998_S3780481::init(), OPAL_1993_S2692198::init(), MC_ZZJETS::init(), MC_ZJETS::init(), MC_WWJETS::init(), MC_WPOL::init(), MC_WJETS::init(), MC_TTBAR::init(), MC_SUSY::init(), MC_PHOTONJETUE::init(), MC_PHOTONJETS::init(), MC_LEADINGJETS::init(), MC_JETS::init(), MC_HJETS::init(), MC_GENERIC::init(), MC_DIPHOTON::init(), MC_DIJET::init(), LHCB_2010_S8758301::init(), JADE_OPAL_2000_S4300807::init(), JADE_1998_S3612880::init(), H1_2000_S4129130::init(), H1_1995_S3167097::init(), H1_1994_S2919893::init(), ExampleAnalysis::init(), E735_1998_S3905616::init(), DELPHI_2003_WUD_03_11::init(), DELPHI_2002_069_CONF_603::init(), DELPHI_1996_S3430090::init(), DELPHI_1995_S3137023::init(), D0_2010_S8821313::init(), D0_2010_S8671338::init(), D0_2010_S8570965::init(), D0_2010_S8566488::init(), D0_2009_S8349509::init(), D0_2009_S8320160::init(), D0_2009_S8202443::init(), D0_2008_S7863608::init(), D0_2008_S7837160::init(), D0_2008_S7719523::init(), D0_2008_S7662670::init(), D0_2008_S7554427::init(), D0_2008_S6879055::init(), D0_2007_S7075677::init(), D0_2006_S6438750::init(), D0_2004_S5992206::init(), D0_2001_S4674421::init(), D0_2000_S4480767::init(), D0_1996_S3324664::init(), D0_1996_S3214044::init(), CMS_2011_S8978280::init(), CMS_2011_S8968497::init(), CMS_2011_S8957746::init(), CMS_2011_S8884919::init(), CMS_2010_S8656010::init(), CMS_2010_S8547297::init(), CDF_2010_S8591881_QCD::init(), CDF_2010_S8591881_DY::init(), CDF_2009_S8436959::init(), CDF_2009_S8383952::init(), CDF_2009_S8233977::init(), CDF_2009_NOTE_9936::init(), CDF_2008_S8095620::init(), CDF_2008_S8093652::init(), CDF_2008_S7828950::init(), CDF_2008_S7782535::init(), CDF_2008_S7541902::init(), CDF_2008_S7540469::init(), CDF_2008_NOTE_9351::init(), CDF_2008_LEADINGJETS::init(), CDF_2007_S7057202::init(), CDF_2006_S6653332::init(), CDF_2006_S6450792::init(), CDF_2005_S6217184::init(), CDF_2005_S6080774::init(), CDF_2004_S5839831::init(), CDF_2002_S4796047::init(), CDF_2001_S4751469::init(), CDF_2001_S4563131::init(), CDF_2001_S4517016::init(), CDF_2000_S4266730::init(), CDF_2000_S4155203::init(), CDF_1998_S3618439::init(), CDF_1997_S3541940::init(), CDF_1996_S3418421::init(), CDF_1996_S3349578::init(), CDF_1996_S3108457::init(), CDF_1994_S2952106::init(), CDF_1993_S2742446::init(), CDF_1990_S2089246::init(), CDF_1988_S1865951::init(), BELLE_2006_S6265367::init(), ATLAS_2011_S9120807::init(), ATLAS_2011_S9019561::init(), ATLAS_2011_S9002537::init(), ATLAS_2011_S8994773::init(), ATLAS_2011_S8983313::init(), ATLAS_2011_S8971293::init(), ATLAS_2011_S8924791::init(), ATLAS_2011_CONF_2011_090::init(), ATLAS_2010_S8919674::init(), ATLAS_2010_S8918562::init(), ATLAS_2010_S8914702::init(), ATLAS_2010_S8894728::init(), ATLAS_2010_S8817804::init(), ATLAS_2010_S8591806::init(), ATLAS_2010_CONF_2010_049::init(), ALICE_2010_S8706239::init(), ALICE_2010_S8625980::init(), ALICE_2010_S8624100::init(), ALEPH_2004_S5765862::init(), ALEPH_1996_S3486095::init(), ALEPH_1996_S3196992::init(), ALEPH_1991_S2435284::init(), IsolationProjection< PROJ1, PROJ2, EST >::IsolationProjection(), JetAlg::JetAlg(), JetShape::JetShape(), LeadingParticlesFinalState::LeadingParticlesFinalState(), LeptonClusters::LeptonClusters(), LossyFinalState< ConstRandomFilter >::LossyFinalState(), MergedFinalState::MergedFinalState(), MissingMomentum::MissingMomentum(), Multiplicity::Multiplicity(), NeutralFinalState::NeutralFinalState(), ParisiTensor::ParisiTensor(), Sphericity::Sphericity(), Spherocity::Spherocity(), SVertex::SVertex(), Thrust::Thrust(), TotalVisibleMomentum::TotalVisibleMomentum(), TriggerCDFRun0Run1::TriggerCDFRun0Run1(), TriggerCDFRun2::TriggerCDFRun2(), TriggerUA5::TriggerUA5(), VetoedFinalState::VetoedFinalState(), and VisibleFinalState::VisibleFinalState().
00113 { 00114 const Projection& reg = _addProjection(proj, name); 00115 const PROJ& rtn = dynamic_cast<const PROJ&>(reg); 00116 return rtn; 00117 }
IAnalysisFactory & analysisFactory | ( | ) | [protected, inherited] |
Access the AIDA analysis factory of the controlling AnalysisHandler object.
Definition at line 50 of file Analysis.cc.
References AnalysisHandler::analysisFactory(), and Analysis::handler().
00050 { 00051 return handler().analysisFactory(); 00052 }
void analyze | ( | const Event & | event | ) | [inline, virtual] |
Analyze one event. A concrete class should here apply the necessary projections on the event and fill the relevant histograms. An overridden function must make sure it first calls the base class function.
Implements Analysis.
Definition at line 83 of file CDF_1996_S3349578.cc.
References CDF_1996_S3349578::_fiveJetAnalysis(), CDF_1996_S3349578::_fourJetAnalysis(), CDF_1996_S3349578::_threeJetAnalysis(), Rivet::deltaR(), FourMomentum::Et(), Rivet::Et(), Rivet::GeV, and Jet::momentum().
00083 { 00084 const double weight = event.weight(); 00085 00086 Jets jets; 00087 FourMomentum jetsystem(0.0, 0.0, 0.0, 0.0); 00088 foreach (const Jet& jet, applyProjection<FastJets>(event, "Jets").jetsByEt()) { 00089 double Et = jet.momentum().Et(); 00090 if (Et > 20.0*GeV) { 00091 bool separated=true; 00092 foreach (const Jet& ref, jets) { 00093 if (deltaR(jet.momentum(), ref.momentum())<0.9) { 00094 separated=false; 00095 break; 00096 } 00097 } 00098 if (!separated) continue; 00099 jets.push_back(jet); 00100 jetsystem += jet.momentum(); 00101 } 00102 if (jets.size()>=5) break; 00103 } 00104 /// @todo include gaussian jet energy resolution smearing? 00105 00106 if (jets.size() > 4) { 00107 _fiveJetAnalysis(jets, weight); 00108 jets.resize(4); 00109 } 00110 if (jets.size() > 3) { 00111 _fourJetAnalysis(jets, weight); 00112 jets.resize(3); 00113 } 00114 if (jets.size() > 2) _threeJetAnalysis(jets, weight); 00115 }
const PROJ& applyProjection | ( | const Event & | evt, | |
const std::string & | name | |||
) | const [inline, inherited] |
Apply the named projection on event.
Definition at line 81 of file ProjectionApplier.hh.
References ProjectionApplier::_applyProjection().
00081 { 00082 return pcast<PROJ>(_applyProjection(evt, name)); 00083 }
const PROJ& applyProjection | ( | const Event & | evt, | |
const Projection & | proj | |||
) | const [inline, inherited] |
Apply the supplied projection on event.
Definition at line 74 of file ProjectionApplier.hh.
References ProjectionApplier::_applyProjection().
00074 { 00075 return pcast<PROJ>(_applyProjection(evt, proj)); 00076 }
const PROJ& applyProjection | ( | const Event & | evt, | |
const PROJ & | proj | |||
) | const [inline, inherited] |
Apply the supplied projection on event.
Definition at line 67 of file ProjectionApplier.hh.
References ProjectionApplier::_applyProjection().
Referenced by HadronicFinalState::project(), and FinalStateHCM::project().
00067 { 00068 return pcast<PROJ>(_applyProjection(evt, proj)); 00069 }
virtual std::vector<std::string> authors | ( | ) | const [inline, virtual, inherited] |
Names & emails of paper/analysis authors.
Names and email of authors in 'NAME <EMAIL>' format. The first name in the list should be the primary contact person.
Definition at line 125 of file Analysis.hh.
References AnalysisInfo::authors(), and Analysis::info().
00125 { 00126 return info().authors(); 00127 }
const PdgIdPair beamIds | ( | ) | const [inherited] |
Incoming beam IDs for this run.
Definition at line 78 of file Analysis.cc.
References AnalysisHandler::beamIds(), and Analysis::handler().
Referenced by UA5_1982_S875503::finalize(), and UA5_1982_S875503::init().
00078 { 00079 return handler().beamIds(); 00080 }
const ParticlePair & beams | ( | ) | const [inherited] |
Incoming beams for this run.
Definition at line 74 of file Analysis.cc.
References AnalysisHandler::beams(), and Analysis::handler().
Referenced by OPAL_1998_S3780481::analyze(), MC_WPOL::analyze(), DELPHI_2002_069_CONF_603::analyze(), DELPHI_1996_S3430090::analyze(), DELPHI_1995_S3137023::analyze(), BELLE_2006_S6265367::analyze(), ALEPH_2004_S5765862::analyze(), ALEPH_1996_S3486095::analyze(), MC_WPOL::init(), and Analysis::isCompatible().
00074 { 00075 return handler().beams(); 00076 }
virtual std::string bibKey | ( | ) | const [inline, virtual, inherited] |
BibTeX citation key for this article.
Definition at line 178 of file Analysis.hh.
References AnalysisInfo::bibKey(), and Analysis::info().
00178 { 00179 return info().bibKey(); 00180 }
virtual std::string bibTeX | ( | ) | const [inline, virtual, inherited] |
BibTeX citation entry for this article.
Definition at line 183 of file Analysis.hh.
References AnalysisInfo::bibTeX(), and Analysis::info().
00183 { 00184 return info().bibTeX(); 00185 }
const BinEdges & binEdges | ( | size_t | datasetId, | |
size_t | xAxisId, | |||
size_t | yAxisId | |||
) | const [protected, inherited] |
Get bin edges for a numbered histo (using ref AIDA caching).
Definition at line 223 of file Analysis.cc.
References Analysis::binEdges().
00223 { 00224 const string hname = makeAxisCode(datasetId, xAxisId, yAxisId); 00225 return binEdges(hname); 00226 }
const BinEdges & binEdges | ( | const std::string & | hname | ) | const [protected, inherited] |
Get bin edges for a named histo (using ref AIDA caching).
Definition at line 208 of file Analysis.cc.
References Analysis::_cacheBinEdges(), Analysis::_histBinEdges, Analysis::getLog(), MSG_TRACE, Analysis::name(), and Log::TRACE.
Referenced by ATLAS_2011_S8994773::analyze(), ATLAS_2010_S8894728::analyze(), Analysis::binEdges(), Analysis::bookHistogram1D(), Analysis::bookProfile1D(), D0_2008_S7837160::init(), CDF_1994_S2952106::init(), ATLAS_2011_S9002537::init(), and ATLAS_2010_S8894728::init().
00208 { 00209 _cacheBinEdges(); 00210 MSG_TRACE("Using histo bin edges for " << name() << ":" << hname); 00211 const BinEdges& edges = _histBinEdges.find(hname)->second; 00212 if (getLog().isActive(Log::TRACE)) { 00213 stringstream edges_ss; 00214 foreach (const double be, edges) { 00215 edges_ss << " " << be; 00216 } 00217 MSG_TRACE("Edges:" << edges_ss.str()); 00218 } 00219 return edges; 00220 }
IDataPointSet * bookDataPointSet | ( | size_t | datasetId, | |
size_t | xAxisId, | |||
size_t | yAxisId, | |||
const std::string & | title = "" , |
|||
const std::string & | xtitle = "" , |
|||
const std::string & | ytitle = "" | |||
) | [protected, inherited] |
Book a 2-dimensional data point set based on the corresponding AIDA data file. The binnings (x-errors) will be obtained by reading the bundled AIDA data record file of the same filename as the analysis' name() property. Book a 2-dimensional data point set based on the paper, dataset and x/y-axis IDs in the corresponding HepData record. The binnings (x-errors) will be obtained by reading the bundled AIDA data record file of the same filename as the analysis' name() property.
Definition at line 418 of file Analysis.cc.
References Analysis::_cacheXAxisData(), Analysis::_dpsData, Analysis::bookDataPointSet(), MSG_TRACE, and Analysis::name().
00420 { 00421 // Get the bin edges (only read the AIDA file once) 00422 _cacheXAxisData(); 00423 // Build the axis code 00424 const string axisCode = makeAxisCode(datasetId, xAxisId, yAxisId); 00425 //const map<string, vector<DPSXPoint> > xpoints = getDPSXValsErrs(papername); 00426 MSG_TRACE("Using DPS x-positions for " << name() << ":" << axisCode); 00427 IDataPointSet* dps = bookDataPointSet(axisCode, title, xtitle, ytitle); 00428 const vector<DPSXPoint> xpts = _dpsData.find(axisCode)->second; 00429 for (size_t pt = 0; pt < xpts.size(); ++pt) { 00430 dps->addPoint(); 00431 IMeasurement* meas = dps->point(pt)->coordinate(0); 00432 meas->setValue(xpts[pt].val); 00433 meas->setErrorPlus(xpts[pt].errplus); 00434 meas->setErrorMinus(xpts[pt].errminus); 00435 } 00436 MSG_TRACE("Made DPS " << axisCode << " for " << name()); 00437 return dps; 00438 }
IDataPointSet * bookDataPointSet | ( | const std::string & | name, | |
size_t | npts, | |||
double | lower, | |||
double | upper, | |||
const std::string & | title = "" , |
|||
const std::string & | xtitle = "" , |
|||
const std::string & | ytitle = "" | |||
) | [protected, inherited] |
Book a 2-dimensional data point set with equally spaced points in a range. (NB. this returns a pointer rather than a reference since it will have to be stored in the analysis class - there's no point in forcing users to explicitly get the pointer from a reference before they can use it!)
Definition at line 400 of file Analysis.cc.
References Analysis::bookDataPointSet().
00403 { 00404 IDataPointSet* dps = bookDataPointSet(hname, title, xtitle, ytitle); 00405 for (size_t pt = 0; pt < npts; ++pt) { 00406 const double binwidth = (upper-lower)/npts; 00407 const double bincentre = lower + (pt + 0.5) * binwidth; 00408 dps->addPoint(); 00409 IMeasurement* meas = dps->point(pt)->coordinate(0); 00410 meas->setValue(bincentre); 00411 meas->setErrorPlus(binwidth/2.0); 00412 meas->setErrorMinus(binwidth/2.0); 00413 } 00414 return dps; 00415 }
IDataPointSet * bookDataPointSet | ( | const std::string & | name, | |
const std::string & | title = "" , |
|||
const std::string & | xtitle = "" , |
|||
const std::string & | ytitle = "" | |||
) | [protected, inherited] |
Book a 2-dimensional data point set. (NB. this returns a pointer rather than a reference since it will have to be stored in the analysis class - there's no point in forcing users to explicitly get the pointer from a reference before they can use it!)
Definition at line 388 of file Analysis.cc.
References Analysis::_makeHistoDir(), Analysis::datapointsetFactory(), Analysis::histoPath(), MSG_TRACE, and Analysis::name().
Referenced by Analysis::bookDataPointSet(), ALEPH_2004_S5765862::finalize(), UA5_1988_S1867512::init(), STAR_2006_S6860818::init(), OPAL_1993_S2692198::init(), MC_XS::init(), MC_JetAnalysis::init(), JADE_OPAL_2000_S4300807::init(), D0_2001_S4674421::init(), CDF_2008_S7782535::init(), CDF_2008_S7541902::init(), CDF_2005_S6217184::init(), CDF_1996_S3418421::init(), CDF_1994_S2952106::init(), ATLAS_2011_S9002537::init(), ATLAS_2010_S8894728::init(), and ALEPH_2004_S5765862::init().
00389 { 00390 _makeHistoDir(); 00391 const string path = histoPath(hname); 00392 IDataPointSet* dps = datapointsetFactory().create(path, title, 2); 00393 MSG_TRACE("Made data point set " << hname << " for " << name()); 00394 dps->setXTitle(xtitle); 00395 dps->setYTitle(ytitle); 00396 return dps; 00397 }
IHistogram1D * bookHistogram1D | ( | size_t | datasetId, | |
size_t | xAxisId, | |||
size_t | yAxisId, | |||
const std::string & | title = "" , |
|||
const std::string & | xtitle = "" , |
|||
const std::string & | ytitle = "" | |||
) | [protected, inherited] |
Book a 1D histogram based on the paper, dataset and x/y-axis IDs in the corresponding HepData record. The binnings will be obtained by reading the bundled AIDA data record file of the same filename as the analysis' name() property.
Definition at line 242 of file Analysis.cc.
References Analysis::bookHistogram1D().
00245 { 00246 const string axisCode = makeAxisCode(datasetId, xAxisId, yAxisId); 00247 return bookHistogram1D(axisCode, title, xtitle, ytitle); 00248 }
IHistogram1D * bookHistogram1D | ( | const std::string & | name, | |
const std::string & | title = "" , |
|||
const std::string & | xtitle = "" , |
|||
const std::string & | ytitle = "" | |||
) | [protected, inherited] |
Book a 1D histogram based on the name in the corresponding AIDA file. The binnings will be obtained by reading the bundled AIDA data record file with the same filename as the analysis' name() property.
Definition at line 251 of file Analysis.cc.
References Analysis::_makeHistoDir(), Analysis::binEdges(), Analysis::histogramFactory(), Analysis::histoPath(), MSG_TRACE, and Analysis::name().
00253 { 00254 // Get the bin edges (only read the AIDA file once) 00255 const BinEdges edges = binEdges(hname); 00256 _makeHistoDir(); 00257 const string path = histoPath(hname); 00258 IHistogram1D* hist = histogramFactory().createHistogram1D(path, title, edges); 00259 MSG_TRACE("Made histogram " << hname << " for " << name()); 00260 hist->setXTitle(xtitle); 00261 hist->setYTitle(ytitle); 00262 return hist; 00263 }
IHistogram1D * bookHistogram1D | ( | const std::string & | name, | |
const std::vector< double > & | binedges, | |||
const std::string & | title = "" , |
|||
const std::string & | xtitle = "" , |
|||
const std::string & | ytitle = "" | |||
) | [protected, inherited] |
Book a 1D histogram with non-uniform bins defined by the vector of bin edges binedges . (NB. this returns a pointer rather than a reference since it will have to be stored in the analysis class - there's no point in forcing users to explicitly get the pointer from a reference before they can use it!)
Definition at line 280 of file Analysis.cc.
References Analysis::_makeHistoDir(), Analysis::histogramFactory(), Analysis::histoPath(), MSG_TRACE, and Analysis::name().
00283 { 00284 _makeHistoDir(); 00285 const string path = histoPath(hname); 00286 IHistogram1D* hist = histogramFactory().createHistogram1D(path, title, binedges); 00287 MSG_TRACE("Made histogram " << hname << " for " << name()); 00288 hist->setXTitle(xtitle); 00289 hist->setYTitle(ytitle); 00290 return hist; 00291 }
IHistogram1D * bookHistogram1D | ( | const std::string & | name, | |
size_t | nbins, | |||
double | lower, | |||
double | upper, | |||
const std::string & | title = "" , |
|||
const std::string & | xtitle = "" , |
|||
const std::string & | ytitle = "" | |||
) | [protected, inherited] |
Book a 1D histogram with nbins uniformly distributed across the range lower - upper . (NB. this returns a pointer rather than a reference since it will have to be stored in the analysis class - there's no point in forcing users to explicitly get the pointer from a reference before they can use it!)
Definition at line 266 of file Analysis.cc.
References Analysis::_makeHistoDir(), Analysis::histogramFactory(), Analysis::histoPath(), MSG_TRACE, and Analysis::name().
Referenced by Analysis::bookHistogram1D(), ZEUS_2001_S4815815::init(), UA5_1989_S1926373::init(), UA5_1987_S1640666::init(), UA5_1986_S1583476::init(), UA5_1982_S875503::init(), UA1_1990_S2044935::init(), TASSO_1990_S2148048::init(), STAR_2008_S7869363::init(), STAR_2006_S6870392::init(), STAR_2006_S6860818::init(), STAR_2006_S6500200::init(), SFM_1984_S1178091::init(), PDG_HADRON_MULTIPLICITIES_RATIOS::init(), PDG_HADRON_MULTIPLICITIES::init(), OPAL_2004_S6132243::init(), OPAL_2001_S4553896::init(), OPAL_1998_S3780481::init(), MC_ZZJETS::init(), MC_ZJETS::init(), MC_WWJETS::init(), MC_WPOL::init(), MC_WJETS::init(), MC_TTBAR::init(), MC_SUSY::init(), MC_PHOTONJETUE::init(), MC_PHOTONJETS::init(), MC_JetAnalysis::init(), MC_HJETS::init(), MC_GENERIC::init(), MC_DIPHOTON::init(), MC_DIJET::init(), LHCB_2010_S8758301::init(), JADE_OPAL_2000_S4300807::init(), JADE_1998_S3612880::init(), H1_2000_S4129130::init(), H1_1995_S3167097::init(), H1_1994_S2919893::init(), ExampleAnalysis::init(), E735_1998_S3905616::init(), DELPHI_2003_WUD_03_11::init(), DELPHI_2002_069_CONF_603::init(), DELPHI_1996_S3430090::init(), DELPHI_1995_S3137023::init(), D0_2010_S8821313::init(), D0_2010_S8671338::init(), D0_2010_S8570965::init(), D0_2010_S8566488::init(), D0_2009_S8349509::init(), D0_2009_S8320160::init(), D0_2009_S8202443::init(), D0_2008_S7863608::init(), D0_2008_S7837160::init(), D0_2008_S7719523::init(), D0_2008_S7662670::init(), D0_2008_S7554427::init(), D0_2008_S6879055::init(), D0_2007_S7075677::init(), D0_2006_S6438750::init(), D0_2004_S5992206::init(), D0_2001_S4674421::init(), D0_2000_S4480767::init(), D0_1996_S3324664::init(), D0_1996_S3214044::init(), CMS_2011_S8978280::init(), CMS_2011_S8968497::init(), CMS_2011_S8957746::init(), CMS_2011_S8884919::init(), CMS_2010_S8656010::init(), CMS_2010_S8547297::init(), CDF_2009_S8436959::init(), CDF_2009_S8383952::init(), CDF_2009_S8233977::init(), CDF_2009_NOTE_9936::init(), CDF_2008_S8095620::init(), CDF_2008_S8093652::init(), CDF_2008_S7828950::init(), CDF_2008_S7541902::init(), CDF_2008_S7540469::init(), CDF_2007_S7057202::init(), CDF_2006_S6653332::init(), CDF_2006_S6450792::init(), CDF_2005_S6080774::init(), CDF_2004_S5839831::init(), CDF_2002_S4796047::init(), CDF_2001_S4751469::init(), CDF_2001_S4563131::init(), CDF_2001_S4517016::init(), CDF_2000_S4266730::init(), CDF_2000_S4155203::init(), CDF_1998_S3618439::init(), CDF_1997_S3541940::init(), CDF_1996_S3418421::init(), CDF_1996_S3349578::init(), CDF_1996_S3108457::init(), CDF_1994_S2952106::init(), CDF_1993_S2742446::init(), CDF_1990_S2089246::init(), CDF_1988_S1865951::init(), BELLE_2006_S6265367::init(), ATLAS_2011_S9120807::init(), ATLAS_2011_S9019561::init(), ATLAS_2011_S9002537::init(), ATLAS_2011_S8983313::init(), ATLAS_2011_S8971293::init(), ATLAS_2011_CONF_2011_090::init(), ATLAS_2010_S8919674::init(), ATLAS_2010_S8918562::init(), ATLAS_2010_S8914702::init(), ATLAS_2010_S8817804::init(), ATLAS_2010_S8591806::init(), ATLAS_2010_CONF_2010_049::init(), ALICE_2010_S8706239::init(), ALICE_2010_S8625980::init(), ALICE_2010_S8624100::init(), ALEPH_2004_S5765862::init(), ALEPH_1996_S3486095::init(), ALEPH_1996_S3196992::init(), and ALEPH_1991_S2435284::init().
00269 { 00270 _makeHistoDir(); 00271 const string path = histoPath(hname); 00272 IHistogram1D* hist = histogramFactory().createHistogram1D(path, title, nbins, lower, upper); 00273 MSG_TRACE("Made histogram " << hname << " for " << name()); 00274 hist->setXTitle(xtitle); 00275 hist->setYTitle(ytitle); 00276 return hist; 00277 }
IHistogram2D * bookHistogram2D | ( | const std::string & | name, | |
const std::vector< double > & | xbinedges, | |||
const std::vector< double > & | ybinedges, | |||
const std::string & | title = "" , |
|||
const std::string & | xtitle = "" , |
|||
const std::string & | ytitle = "" , |
|||
const std::string & | ztitle = "" | |||
) | [protected, inherited] |
Book a 2D histogram with non-uniform bins defined by the vectorx of bin edges xbinedges and ybinedges. (NB. this returns a pointer rather than a reference since it will have to be stored in the analysis class - there's no point in forcing users to explicitly get the pointer from a reference before they can use it!)
Definition at line 313 of file Analysis.cc.
References Analysis::_makeHistoDir(), Analysis::histogramFactory(), Analysis::histoPath(), MSG_TRACE, and Analysis::name().
00317 { 00318 _makeHistoDir(); 00319 const string path = histoPath(hname); 00320 IHistogram2D* hist = 00321 histogramFactory().createHistogram2D(path, title, xbinedges, ybinedges); 00322 MSG_TRACE("Made 2D histogram " << hname << " for " << name()); 00323 hist->setXTitle(xtitle); 00324 hist->setYTitle(ytitle); 00325 hist->setZTitle(ztitle); 00326 return hist; 00327 }
IHistogram2D * bookHistogram2D | ( | const std::string & | name, | |
size_t | nxbins, | |||
double | xlower, | |||
double | xupper, | |||
size_t | nybins, | |||
double | ylower, | |||
double | yupper, | |||
const std::string & | title = "" , |
|||
const std::string & | xtitle = "" , |
|||
const std::string & | ytitle = "" , |
|||
const std::string & | ztitle = "" | |||
) | [protected, inherited] |
Book a 2D histogram with nxbins and nybins uniformly distributed across the ranges xlower - xupper and ylower - yupper respectively along the x- and y-axis. (NB. this returns a pointer rather than a reference since it will have to be stored in the analysis class - there's no point in forcing users to explicitly get the pointer from a reference before they can use it!)
Definition at line 294 of file Analysis.cc.
References Analysis::_makeHistoDir(), Analysis::histogramFactory(), Analysis::histoPath(), MSG_TRACE, and Analysis::name().
00298 { 00299 _makeHistoDir(); 00300 const string path = histoPath(hname); 00301 IHistogram2D* hist = 00302 histogramFactory().createHistogram2D(path, title, nxbins, xlower, xupper, 00303 nybins, ylower, yupper); 00304 MSG_TRACE("Made 2D histogram " << hname << " for " << name()); 00305 hist->setXTitle(xtitle); 00306 hist->setYTitle(ytitle); 00307 hist->setZTitle(ztitle); 00308 return hist; 00309 }
IProfile1D * bookProfile1D | ( | size_t | datasetId, | |
size_t | xAxisId, | |||
size_t | yAxisId, | |||
const std::string & | title = "" , |
|||
const std::string & | xtitle = "" , |
|||
const std::string & | ytitle = "" | |||
) | [protected, inherited] |
Book a 1D profile histogram based on the paper, dataset and x/y-axis IDs in the corresponding HepData record. The binnings will be obtained by reading the bundled AIDA data record file of the same filename as the analysis' name() property.
Definition at line 333 of file Analysis.cc.
References Analysis::bookProfile1D().
00335 { 00336 const string axisCode = makeAxisCode(datasetId, xAxisId, yAxisId); 00337 return bookProfile1D(axisCode, title, xtitle, ytitle); 00338 }
IProfile1D * bookProfile1D | ( | const std::string & | name, | |
const std::string & | title = "" , |
|||
const std::string & | xtitle = "" , |
|||
const std::string & | ytitle = "" | |||
) | [protected, inherited] |
Book a 1D profile histogram based on the name in the corresponding AIDA file. The binnings will be obtained by reading the bundled AIDA data record file with the same filename as the analysis' name() property.
Definition at line 341 of file Analysis.cc.
References Analysis::_makeHistoDir(), Analysis::binEdges(), Analysis::histogramFactory(), Analysis::histoPath(), MSG_TRACE, and Analysis::name().
00343 { 00344 // Get the bin edges (only read the AIDA file once) 00345 const BinEdges edges = binEdges(hname); 00346 _makeHistoDir(); 00347 const string path = histoPath(hname); 00348 IProfile1D* prof = histogramFactory().createProfile1D(path, title, edges); 00349 MSG_TRACE("Made profile histogram " << hname << " for " << name()); 00350 prof->setXTitle(xtitle); 00351 prof->setYTitle(ytitle); 00352 return prof; 00353 }
IProfile1D * bookProfile1D | ( | const std::string & | name, | |
const std::vector< double > & | binedges, | |||
const std::string & | title = "" , |
|||
const std::string & | xtitle = "" , |
|||
const std::string & | ytitle = "" | |||
) | [protected, inherited] |
Book a 1D profile histogram with non-uniform bins defined by the vector of bin edges binedges . (NB. this returns a pointer rather than a reference since it will have to be stored in the analysis class - there's no point in forcing users to explicitly get the pointer from a reference before they can use it!)
Definition at line 370 of file Analysis.cc.
References Analysis::_makeHistoDir(), Analysis::histogramFactory(), Analysis::histoPath(), MSG_TRACE, and Analysis::name().
00373 { 00374 _makeHistoDir(); 00375 const string path = histoPath(hname); 00376 IProfile1D* prof = histogramFactory().createProfile1D(path, title, binedges); 00377 MSG_TRACE("Made profile histogram " << hname << " for " << name()); 00378 prof->setXTitle(xtitle); 00379 prof->setYTitle(ytitle); 00380 return prof; 00381 }
IProfile1D * bookProfile1D | ( | const std::string & | name, | |
size_t | nbins, | |||
double | lower, | |||
double | upper, | |||
const std::string & | title = "" , |
|||
const std::string & | xtitle = "" , |
|||
const std::string & | ytitle = "" | |||
) | [protected, inherited] |
Book a 1D profile histogram with nbins uniformly distributed across the range lower - upper . (NB. this returns a pointer rather than a reference since it will have to be stored in the analysis class - there's no point in forcing users to explicitly get the pointer from a reference before they can use it!)
Definition at line 356 of file Analysis.cc.
References Analysis::_makeHistoDir(), Analysis::histogramFactory(), Analysis::histoPath(), MSG_TRACE, and Analysis::name().
Referenced by Analysis::bookProfile1D(), UA1_1990_S2044935::init(), STAR_2009_UE_HELEN::init(), STAR_2008_S7993412::init(), STAR_2006_S6860818::init(), MC_WPOL::init(), MC_PHOTONJETUE::init(), MC_LEADINGJETS::init(), MC_GENERIC::init(), H1_2000_S4129130::init(), H1_1994_S2919893::init(), DELPHI_2002_069_CONF_603::init(), DELPHI_1996_S3430090::init(), D0_1996_S3324664::init(), CMS_2011_S8884919::init(), CDF_2010_S8591881_QCD::init(), CDF_2010_S8591881_DY::init(), CDF_2009_S8233977::init(), CDF_2008_S7782535::init(), CDF_2008_NOTE_9351::init(), CDF_2008_LEADINGJETS::init(), CDF_2005_S6217184::init(), CDF_2004_S5839831::init(), CDF_2002_S4796047::init(), CDF_2001_S4751469::init(), ATLAS_2011_S8994773::init(), ATLAS_2011_S8924791::init(), ATLAS_2010_S8918562::init(), ATLAS_2010_S8894728::init(), ATLAS_2010_S8591806::init(), and ALICE_2010_S8706239::init().
00359 { 00360 _makeHistoDir(); 00361 const string path = histoPath(hname); 00362 IProfile1D* prof = histogramFactory().createProfile1D(path, title, nbins, lower, upper); 00363 MSG_TRACE("Made profile histogram " << hname << " for " << name()); 00364 prof->setXTitle(xtitle); 00365 prof->setYTitle(ytitle); 00366 return prof; 00367 }
virtual std::string collider | ( | ) | const [inline, virtual, inherited] |
Collider on which the experiment ran.
Definition at line 163 of file Analysis.hh.
References AnalysisInfo::collider(), and Analysis::info().
00163 { 00164 return info().collider(); 00165 }
double crossSection | ( | ) | const [protected, inherited] |
Get the process cross-section in pb. Throws if this hasn't been set.
Definition at line 171 of file Analysis.cc.
References Analysis::_crossSection, Analysis::_gotCrossSection, and Analysis::name().
Referenced by STAR_2006_S6870392::finalize(), MC_ZZJETS::finalize(), MC_ZJETS::finalize(), MC_XS::finalize(), MC_WWJETS::finalize(), MC_WJETS::finalize(), MC_JetAnalysis::finalize(), MC_HJETS::finalize(), MC_DIPHOTON::finalize(), D0_2010_S8570965::finalize(), D0_2010_S8566488::finalize(), D0_2008_S7863608::finalize(), D0_2008_S7719523::finalize(), D0_2008_S7662670::finalize(), D0_2006_S6438750::finalize(), D0_2000_S4480767::finalize(), CDF_2009_S8436959::finalize(), CDF_2009_S8383952::finalize(), CDF_2009_S8233977::finalize(), CDF_2008_S8093652::finalize(), CDF_2008_S7828950::finalize(), CDF_2008_S7541902::finalize(), CDF_2008_S7540469::finalize(), CDF_2006_S6653332::finalize(), CDF_2006_S6450792::finalize(), CDF_2005_S6080774::finalize(), CDF_2001_S4563131::finalize(), CDF_2001_S4517016::finalize(), CDF_2000_S4266730::finalize(), CDF_2000_S4155203::finalize(), CDF_1998_S3618439::finalize(), ATLAS_2011_S9120807::finalize(), ATLAS_2011_CONF_2011_090::finalize(), ATLAS_2010_S8919674::finalize(), ATLAS_2010_S8914702::finalize(), and ATLAS_2010_CONF_2010_049::finalize().
00171 { 00172 if (!_gotCrossSection || std::isnan(_crossSection)) { 00173 string errMsg = "You did not set the cross section for the analysis " + name(); 00174 throw Error(errMsg); 00175 } 00176 return _crossSection; 00177 }
double crossSectionPerEvent | ( | ) | const [protected, inherited] |
Get the process cross-section per generated event in pb. Throws if this hasn't been set.
Definition at line 179 of file Analysis.cc.
References Analysis::_crossSection, and Analysis::sumOfWeights().
Referenced by UA1_1990_S2044935::finalize(), MC_WPOL::finalize(), MC_PHOTONJETS::finalize(), D0_2010_S8671338::finalize(), D0_2009_S8349509::finalize(), D0_2001_S4674421::finalize(), CDF_2007_S7057202::finalize(), CDF_1988_S1865951::finalize(), and ATLAS_2010_S8817804::finalize().
00179 { 00180 const double sumW = sumOfWeights(); 00181 assert(sumW > 0); 00182 return _crossSection / sumW; 00183 }
IDataPointSetFactory & datapointsetFactory | ( | ) | [protected, inherited] |
Access the AIDA histogram factory of the controlling AnalysisHandler object.
Definition at line 65 of file Analysis.cc.
References AnalysisHandler::datapointsetFactory(), and Analysis::handler().
Referenced by Analysis::bookDataPointSet(), and Analysis::scale().
00065 { 00066 return handler().datapointsetFactory(); 00067 }
virtual std::string description | ( | ) | const [inline, virtual, inherited] |
Get a full description of the analysis.
Full textual description of this analysis, what it is useful for, what experimental techniques are applied, etc. Should be treated as a chunk of restructuredText (http://docutils.sourceforge.net/rst.html), with equations to be rendered as LaTeX with amsmath operators.
Definition at line 144 of file Analysis.hh.
References AnalysisInfo::description(), and Analysis::info().
00144 { 00145 return info().description(); 00146 }
virtual std::string experiment | ( | ) | const [inline, virtual, inherited] |
Experiment which performed and published this analysis.
Definition at line 158 of file Analysis.hh.
References AnalysisInfo::experiment(), and Analysis::info().
00158 { 00159 return info().experiment(); 00160 }
void finalize | ( | ) | [inline, virtual] |
Normalise histograms etc., after the run.
Normalise, scale and otherwise manipulate histograms here
Implements Analysis.
Definition at line 314 of file CDF_1996_S3349578.cc.
References CDF_1996_S3349578::_h_3_costheta3, CDF_1996_S3349578::_h_3_f3, CDF_1996_S3349578::_h_3_f4, CDF_1996_S3349578::_h_3_f5, CDF_1996_S3349578::_h_3_mNJ, CDF_1996_S3349578::_h_3_psi3, CDF_1996_S3349578::_h_3_X3, CDF_1996_S3349578::_h_3_X4, CDF_1996_S3349578::_h_4_costheta3, CDF_1996_S3349578::_h_4_f3, CDF_1996_S3349578::_h_4_f4, CDF_1996_S3349578::_h_4_f5, CDF_1996_S3349578::_h_4_fA, CDF_1996_S3349578::_h_4_fB, CDF_1996_S3349578::_h_4_mNJ, CDF_1996_S3349578::_h_4_psi3, CDF_1996_S3349578::_h_4_psiAB, CDF_1996_S3349578::_h_4_X3, CDF_1996_S3349578::_h_4_X4, CDF_1996_S3349578::_h_4_XA, CDF_1996_S3349578::_h_5_costheta3, CDF_1996_S3349578::_h_5_f3, CDF_1996_S3349578::_h_5_f4, CDF_1996_S3349578::_h_5_f5, CDF_1996_S3349578::_h_5_fA, CDF_1996_S3349578::_h_5_fB, CDF_1996_S3349578::_h_5_fC, CDF_1996_S3349578::_h_5_fD, CDF_1996_S3349578::_h_5_mNJ, CDF_1996_S3349578::_h_5_psi3, CDF_1996_S3349578::_h_5_psiAB, CDF_1996_S3349578::_h_5_psiCD, CDF_1996_S3349578::_h_5_X3, CDF_1996_S3349578::_h_5_X4, CDF_1996_S3349578::_h_5_XA, CDF_1996_S3349578::_h_5_XC, and Analysis::normalize().
00314 { 00315 00316 /// Normalise, scale and otherwise manipulate histograms here 00317 normalize(_h_3_mNJ, 1.0); 00318 normalize(_h_3_X3, 1.0); 00319 normalize(_h_3_X4, 1.0); 00320 normalize(_h_3_costheta3, 1.0); 00321 normalize(_h_3_psi3, 1.0); 00322 normalize(_h_3_f3, 1.0); 00323 normalize(_h_3_f4, 1.0); 00324 normalize(_h_3_f5, 1.0); 00325 00326 normalize(_h_4_mNJ, 1.0); 00327 normalize(_h_4_X3, 1.0); 00328 normalize(_h_4_X4, 1.0); 00329 normalize(_h_4_costheta3, 1.0); 00330 normalize(_h_4_psi3, 1.0); 00331 normalize(_h_4_f3, 1.0); 00332 normalize(_h_4_f4, 1.0); 00333 normalize(_h_4_f5, 1.0); 00334 normalize(_h_4_XA, 1.0); 00335 normalize(_h_4_psiAB, 1.0); 00336 normalize(_h_4_fA, 1.0); 00337 normalize(_h_4_fB, 1.0); 00338 00339 normalize(_h_5_mNJ, 1.0); 00340 normalize(_h_5_X3, 1.0); 00341 normalize(_h_5_X4, 1.0); 00342 normalize(_h_5_costheta3, 1.0); 00343 normalize(_h_5_psi3, 1.0); 00344 normalize(_h_5_f3, 1.0); 00345 normalize(_h_5_f4, 1.0); 00346 normalize(_h_5_f5, 1.0); 00347 normalize(_h_5_XA, 1.0); 00348 normalize(_h_5_XC, 1.0); 00349 normalize(_h_5_psiAB, 1.0); 00350 normalize(_h_5_psiCD, 1.0); 00351 normalize(_h_5_fA, 1.0); 00352 normalize(_h_5_fB, 1.0); 00353 normalize(_h_5_fC, 1.0); 00354 normalize(_h_5_fD, 1.0); 00355 00356 }
Log & getLog | ( | ) | const [protected, inherited] |
Get a Log object based on the name() property of the calling analysis object.
Reimplemented from ProjectionApplier.
Definition at line 102 of file Analysis.cc.
References Analysis::name().
Referenced by CDF_2004_S5839831::_calcTransCones(), CDF_1996_S3349578::_fiveJetAnalysis(), CDF_1996_S3349578::_fourJetAnalysis(), D0_1996_S3214044::_safeMass(), CDF_1997_S3541940::_safeMass(), CDF_1996_S3349578::_safeMass(), CDF_1996_S3349578::_threeJetAnalysis(), ZEUS_2001_S4815815::analyze(), UA5_1986_S1583476::analyze(), TASSO_1990_S2148048::analyze(), STAR_2009_UE_HELEN::analyze(), STAR_2008_S7993412::analyze(), STAR_2006_S6870392::analyze(), STAR_2006_S6860818::analyze(), STAR_2006_S6500200::analyze(), SFM_1984_S1178091::analyze(), PDG_HADRON_MULTIPLICITIES_RATIOS::analyze(), OPAL_1998_S3780481::analyze(), MC_SUSY::analyze(), MC_PHOTONJETUE::analyze(), MC_LEADINGJETS::analyze(), MC_JetAnalysis::analyze(), JADE_1998_S3612880::analyze(), H1_1994_S2919893::analyze(), DELPHI_2003_WUD_03_11::analyze(), DELPHI_2002_069_CONF_603::analyze(), DELPHI_1996_S3430090::analyze(), DELPHI_1995_S3137023::analyze(), D0_2009_S8349509::analyze(), D0_2009_S8202443::analyze(), D0_2008_S7863608::analyze(), D0_2008_S7837160::analyze(), D0_2008_S7719523::analyze(), D0_2008_S7662670::analyze(), D0_2008_S7554427::analyze(), D0_2007_S7075677::analyze(), D0_2004_S5992206::analyze(), CMS_2011_S8884919::analyze(), CDF_2010_S8591881_QCD::analyze(), CDF_2010_S8591881_DY::analyze(), CDF_2009_S8383952::analyze(), CDF_2008_S8095620::analyze(), CDF_2008_S7782535::analyze(), CDF_2008_S7540469::analyze(), CDF_2008_NOTE_9351::analyze(), CDF_2008_LEADINGJETS::analyze(), CDF_2006_S6653332::analyze(), CDF_2004_S5839831::analyze(), CDF_2001_S4751469::analyze(), BELLE_2006_S6265367::analyze(), ALEPH_1996_S3486095::analyze(), ALEPH_1991_S2435284::analyze(), Analysis::binEdges(), CDF_2009_S8057893::CDF_2009_S8057893::analyze(), UA5_1986_S1583476::finalize(), STAR_2006_S6860818::finalize(), STAR_2006_S6500200::finalize(), DELPHI_2003_WUD_03_11::finalize(), D0_2001_S4674421::finalize(), CDF_2006_S6653332::finalize(), ZEUS_2001_S4815815::init(), and ALEPH_2004_S5765862::init().
00102 { 00103 string logname = "Rivet.Analysis." + name(); 00104 return Log::getLog(logname); 00105 }
const Projection& getProjection | ( | const std::string & | name | ) | const [inline, inherited] |
Get the named projection (non-templated, so returns as a reference to a Projection base class).
Definition at line 57 of file ProjectionApplier.hh.
References ProjectionHandler::getProjection(), and ProjectionApplier::getProjHandler().
00057 { 00058 return getProjHandler().getProjection(*this, name); 00059 }
const PROJ& getProjection | ( | const std::string & | name | ) | const [inline, inherited] |
Get the named projection, specifying return type via a template argument.
Definition at line 49 of file ProjectionApplier.hh.
References ProjectionHandler::getProjection(), and ProjectionApplier::getProjHandler().
Referenced by ProjectionApplier::_applyProjection(), Rivet::pcmp(), and Hemispheres::project().
00049 { 00050 const Projection& p = getProjHandler().getProjection(*this, name); 00051 return pcast<PROJ>(p); 00052 }
std::set<ConstProjectionPtr> getProjections | ( | ) | const [inline, inherited] |
Get the contained projections, including recursion.
Definition at line 42 of file ProjectionApplier.hh.
References ProjectionHandler::DEEP, ProjectionHandler::getChildProjections(), and ProjectionApplier::getProjHandler().
Referenced by Projection::beamPairs().
00042 { 00043 return getProjHandler().getChildProjections(*this, ProjectionHandler::DEEP); 00044 }
ProjectionHandler& getProjHandler | ( | ) | const [inline, protected, inherited] |
Get a reference to the ProjectionHandler for this thread.
Definition at line 94 of file ProjectionApplier.hh.
References ProjectionApplier::_projhandler.
Referenced by ProjectionApplier::_addProjection(), ProjectionApplier::getProjection(), ProjectionApplier::getProjections(), and ProjectionApplier::~ProjectionApplier().
00094 { 00095 return _projhandler; 00096 }
AnalysisHandler& handler | ( | ) | const [inline, inherited] |
Access the controlling AnalysisHandler object.
Definition at line 285 of file Analysis.hh.
References Analysis::_analysishandler.
Referenced by Analysis::analysisFactory(), Analysis::beamIds(), Analysis::beams(), Analysis::datapointsetFactory(), Analysis::histoDir(), Analysis::histogramFactory(), Analysis::numEvents(), Analysis::sqrtS(), Analysis::sumOfWeights(), and Analysis::tree().
00285 { return *_analysishandler; }
const string histoDir | ( | ) | const [protected, inherited] |
Get the canonical histogram "directory" path for this analysis.
Definition at line 83 of file Analysis.cc.
References Analysis::handler(), Analysis::name(), and AnalysisHandler::runName().
Referenced by Analysis::_makeHistoDir(), STAR_2006_S6860818::finalize(), STAR_2006_S6500200::finalize(), MC_WJETS::finalize(), D0_2008_S7837160::finalize(), D0_2008_S7719523::finalize(), CMS_2011_S8978280::finalize(), and Analysis::histoPath().
00083 { 00084 /// @todo This doesn't change: calc and cache at first use! 00085 string path = "/" + name(); 00086 if (handler().runName().length() > 0) { 00087 path = "/" + handler().runName() + path; 00088 } 00089 while (find_first(path, "//")) { 00090 replace_all(path, "//", "/"); 00091 } 00092 return path; 00093 }
IHistogramFactory & histogramFactory | ( | ) | [protected, inherited] |
Access the AIDA histogram factory of the controlling AnalysisHandler object.
Definition at line 60 of file Analysis.cc.
References Analysis::handler(), and AnalysisHandler::histogramFactory().
Referenced by Analysis::bookHistogram1D(), Analysis::bookHistogram2D(), Analysis::bookProfile1D(), STAR_2006_S6860818::finalize(), STAR_2006_S6500200::finalize(), MC_WJETS::finalize(), MC_JetAnalysis::finalize(), MC_GENERIC::finalize(), H1_1995_S3167097::finalize(), D0_2008_S7837160::finalize(), D0_2008_S7719523::finalize(), CMS_2011_S8978280::finalize(), and ATLAS_2011_S9002537::finalize().
00060 { 00061 return handler().histogramFactory(); 00062 }
const string histoPath | ( | const std::string & | hname | ) | const [protected, inherited] |
Get the canonical histogram path for the named histogram in this analysis.
Definition at line 96 of file Analysis.cc.
References Analysis::histoDir().
Referenced by Analysis::bookDataPointSet(), Analysis::bookHistogram1D(), Analysis::bookHistogram2D(), Analysis::bookProfile1D(), MC_JetAnalysis::finalize(), and MC_GENERIC::finalize().
00096 { 00097 const string path = histoDir() + "/" + hname; 00098 return path; 00099 }
AnalysisInfo& info | ( | ) | [inline, inherited] |
Get the actual AnalysisInfo object in which all this metadata is stored (non-const).
Definition at line 237 of file Analysis.hh.
References Analysis::_info.
const AnalysisInfo& info | ( | ) | const [inline, inherited] |
Get the actual AnalysisInfo object in which all this metadata is stored.
Definition at line 102 of file Analysis.hh.
References Analysis::_info.
Referenced by Analysis::authors(), Analysis::bibKey(), Analysis::bibTeX(), Analysis::collider(), Analysis::description(), Analysis::experiment(), Analysis::name(), Analysis::needsCrossSection(), Analysis::references(), Analysis::requiredBeams(), Analysis::requiredEnergies(), Analysis::runInfo(), Analysis::setNeedsCrossSection(), Analysis::setRequiredBeams(), Analysis::setRequiredEnergies(), Analysis::spiresId(), Analysis::status(), Analysis::summary(), Analysis::todos(), and Analysis::year().
void init | ( | ) | [inline, virtual] |
Book histograms and initialise projections before the run.
Initialise and register projections here
Book histograms here, e.g.:
Implements Analysis.
Definition at line 34 of file CDF_1996_S3349578.cc.
References CDF_1996_S3349578::_h_3_costheta3, CDF_1996_S3349578::_h_3_f3, CDF_1996_S3349578::_h_3_f4, CDF_1996_S3349578::_h_3_f5, CDF_1996_S3349578::_h_3_mNJ, CDF_1996_S3349578::_h_3_psi3, CDF_1996_S3349578::_h_3_X3, CDF_1996_S3349578::_h_3_X4, CDF_1996_S3349578::_h_4_costheta3, CDF_1996_S3349578::_h_4_f3, CDF_1996_S3349578::_h_4_f4, CDF_1996_S3349578::_h_4_f5, CDF_1996_S3349578::_h_4_fA, CDF_1996_S3349578::_h_4_fB, CDF_1996_S3349578::_h_4_mNJ, CDF_1996_S3349578::_h_4_psi3, CDF_1996_S3349578::_h_4_psiAB, CDF_1996_S3349578::_h_4_X3, CDF_1996_S3349578::_h_4_X4, CDF_1996_S3349578::_h_4_XA, CDF_1996_S3349578::_h_5_costheta3, CDF_1996_S3349578::_h_5_f3, CDF_1996_S3349578::_h_5_f4, CDF_1996_S3349578::_h_5_f5, CDF_1996_S3349578::_h_5_fA, CDF_1996_S3349578::_h_5_fB, CDF_1996_S3349578::_h_5_fC, CDF_1996_S3349578::_h_5_fD, CDF_1996_S3349578::_h_5_mNJ, CDF_1996_S3349578::_h_5_psi3, CDF_1996_S3349578::_h_5_psiAB, CDF_1996_S3349578::_h_5_psiCD, CDF_1996_S3349578::_h_5_X3, CDF_1996_S3349578::_h_5_X4, CDF_1996_S3349578::_h_5_XA, CDF_1996_S3349578::_h_5_XC, ProjectionApplier::addProjection(), Analysis::bookHistogram1D(), and FastJets::CDFJETCLU.
00034 { 00035 00036 /// Initialise and register projections here 00037 const FinalState fs(-4.2, 4.2); 00038 addProjection(FastJets(fs, FastJets::CDFJETCLU, 0.7), "Jets"); 00039 00040 /// Book histograms here, e.g.: 00041 _h_3_mNJ = bookHistogram1D(1, 1, 1); 00042 _h_3_X3 = bookHistogram1D(2, 1, 1); 00043 _h_3_X4 = bookHistogram1D(3, 1, 1); 00044 _h_3_costheta3 = bookHistogram1D(8, 1, 1); 00045 _h_3_psi3 = bookHistogram1D(9, 1, 1); 00046 _h_3_f3 = bookHistogram1D(14, 1, 1); 00047 _h_3_f4 = bookHistogram1D(14, 1, 2); 00048 _h_3_f5 = bookHistogram1D(14, 1, 3); 00049 00050 _h_4_mNJ = bookHistogram1D(1, 1, 2); 00051 _h_4_X3 = bookHistogram1D(4, 1, 1); 00052 _h_4_X4 = bookHistogram1D(5, 1, 1); 00053 _h_4_costheta3 = bookHistogram1D(10, 1, 1); 00054 _h_4_psi3 = bookHistogram1D(11, 1, 1); 00055 _h_4_f3 = bookHistogram1D(15, 1, 1); 00056 _h_4_f4 = bookHistogram1D(15, 1, 2); 00057 _h_4_f5 = bookHistogram1D(15, 1, 3); 00058 _h_4_XA = bookHistogram1D(17, 1, 1); 00059 _h_4_psiAB = bookHistogram1D(19, 1, 1); 00060 _h_4_fA = bookHistogram1D(21, 1, 1); 00061 _h_4_fB = bookHistogram1D(21, 1, 2); 00062 00063 _h_5_mNJ = bookHistogram1D(1, 1, 3); 00064 _h_5_X3 = bookHistogram1D(6, 1, 1); 00065 _h_5_X4 = bookHistogram1D(7, 1, 1); 00066 _h_5_costheta3 = bookHistogram1D(12, 1, 1); 00067 _h_5_psi3 = bookHistogram1D(13, 1, 1); 00068 _h_5_f3 = bookHistogram1D(16, 1, 1); 00069 _h_5_f4 = bookHistogram1D(16, 1, 2); 00070 _h_5_f5 = bookHistogram1D(16, 1, 3); 00071 _h_5_XA = bookHistogram1D(18, 1, 1); 00072 _h_5_XC = bookHistogram1D(18, 1, 2); 00073 _h_5_psiAB = bookHistogram1D(20, 1, 1); 00074 _h_5_psiCD = bookHistogram1D(20, 1, 2); 00075 _h_5_fA = bookHistogram1D(22, 1, 1); 00076 _h_5_fB = bookHistogram1D(23, 1, 1); 00077 _h_5_fC = bookHistogram1D(24, 1, 1); 00078 _h_5_fD = bookHistogram1D(25, 1, 1); 00079 00080 }
bool isCompatible | ( | const PdgIdPair & | beams, | |
const std::pair< double, double > & | energies | |||
) | const [inherited] |
Check if analysis is compatible with the provided beam particle IDs and energies.
Check if analysis is compatible with the provided beam particle IDs and energies.
Definition at line 127 of file Analysis.cc.
References Analysis::beams(), and Analysis::isCompatible().
00127 { 00128 PdgIdPair beams(beam1, beam2); 00129 pair<double,double> energies(e1, e2); 00130 return isCompatible(beams, energies); 00131 }
bool isCompatible | ( | const ParticlePair & | beams | ) | const [inherited] |
Check if analysis is compatible with the provided beam particle IDs and energies.
Definition at line 121 of file Analysis.cc.
Referenced by Analysis::isCompatible().
00121 { 00122 return isCompatible(beams.first.pdgId(), beams.second.pdgId(), 00123 beams.first.energy(), beams.second.energy()); 00124 }
BinEdges logBinEdges | ( | size_t | nbins, | |
double | lower, | |||
double | upper | |||
) | [protected, inherited] |
Get bin edges with logarithmic widths.
Definition at line 229 of file Analysis.cc.
Referenced by MC_ZZJETS::init(), MC_ZJETS::init(), MC_WWJETS::init(), MC_WPOL::init(), MC_WJETS::init(), MC_PHOTONJETS::init(), MC_JetAnalysis::init(), MC_HJETS::init(), and MC_DIPHOTON::init().
00229 { 00230 assert(lower>0.0); 00231 assert(upper>lower); 00232 double loglower=log10(lower); 00233 double logupper=log10(upper); 00234 vector<double> binedges; 00235 double stepwidth=(logupper-loglower)/double(nbins); 00236 for (size_t i=0; i<=nbins; ++i) { 00237 binedges.push_back(pow(10.0, loglower+double(i)*stepwidth)); 00238 } 00239 return binedges; 00240 }
virtual std::string name | ( | ) | const [inline, virtual, inherited] |
Get the name of the analysis.
By default this is computed by combining the results of the experiment, year and Spires ID metadata methods and you should only override it if there's a good reason why those won't work.
Implements ProjectionApplier.
Definition at line 112 of file Analysis.hh.
References Analysis::_defaultname, Analysis::info(), and AnalysisInfo::name().
Referenced by Analysis::_cacheBinEdges(), Analysis::_cacheXAxisData(), Analysis::_makeHistoDir(), Analysis::binEdges(), Analysis::bookDataPointSet(), Analysis::bookHistogram1D(), Analysis::bookHistogram2D(), Analysis::bookProfile1D(), Analysis::crossSection(), Analysis::getLog(), Analysis::histoDir(), Analysis::normalize(), HistoHandler::registerAnalysisObject(), and Analysis::scale().
00112 { 00113 return (info().name().empty()) ? _defaultname : info().name(); 00114 }
bool needsCrossSection | ( | ) | const [inline, inherited] |
Return true if this analysis needs to know the process cross-section.
Definition at line 221 of file Analysis.hh.
References Analysis::info(), and AnalysisInfo::needsCrossSection().
00221 { 00222 return info().needsCrossSection(); 00223 }
void normalize | ( | AIDA::IHistogram2D *& | histo, | |
double | norm = 1.0 | |||
) | [inherited] |
Normalize the given histogram, histo. After this call the histogram will have been transformed to a DataPointSet with the same name and path. It has the same effect as scale
(histo, norm/sumOfWeights).
histo | The histogram to be normalised. | |
norm | The new area of the histogram. |
Definition at line 527 of file Analysis.cc.
References MSG_ERROR, MSG_TRACE, MSG_WARNING, Analysis::name(), Analysis::scale(), and Analysis::tree().
00527 { 00528 if (!histo) { 00529 MSG_ERROR("Failed to normalize histo=NULL in analysis " 00530 << name() << " (norm=" << norm << ")"); 00531 return; 00532 } 00533 const string hpath = tree().findPath(dynamic_cast<const AIDA::IManagedObject&>(*histo)); 00534 MSG_TRACE("Normalizing histo " << hpath << " to " << norm); 00535 00536 double oldintg = 0.0; 00537 int nxBins = histo->xAxis().bins(); 00538 int nyBins = histo->yAxis().bins(); 00539 for (int ixBin = 0; ixBin != nxBins; ++ixBin) 00540 for (int iyBin = 0; iyBin != nyBins; ++iyBin) { 00541 // Leaving out factor of binWidth because AIDA's "height" 00542 // already includes a width factor. 00543 oldintg += histo->binHeight(ixBin, iyBin); // * histo->axis().binWidth(iBin); 00544 } 00545 if (oldintg == 0.0) { 00546 MSG_WARNING("Histo " << hpath << " has null integral during normalization"); 00547 return; 00548 } 00549 00550 // Scale by the normalisation factor. 00551 scale(histo, norm/oldintg); 00552 }
void normalize | ( | AIDA::IHistogram1D *& | histo, | |
double | norm = 1.0 | |||
) | [inherited] |
Normalize the given histogram, histo. After this call the histogram will have been transformed to a DataPointSet with the same name and path. It has the same effect as scale
(histo, norm/sumOfWeights).
histo | The histogram to be normalised. | |
norm | The new area of the histogram. |
Definition at line 460 of file Analysis.cc.
References MSG_ERROR, MSG_TRACE, MSG_WARNING, Analysis::name(), Analysis::scale(), and Analysis::tree().
Referenced by TASSO_1990_S2148048::finalize(), STAR_2008_S7869363::finalize(), OPAL_2001_S4553896::finalize(), OPAL_1998_S3780481::finalize(), JADE_1998_S3612880::finalize(), H1_1994_S2919893::finalize(), ExampleAnalysis::finalize(), DELPHI_2003_WUD_03_11::finalize(), DELPHI_2002_069_CONF_603::finalize(), DELPHI_1996_S3430090::finalize(), DELPHI_1995_S3137023::finalize(), D0_2010_S8821313::finalize(), D0_2010_S8671338::finalize(), D0_2009_S8320160::finalize(), D0_2008_S7554427::finalize(), D0_2008_S6879055::finalize(), D0_2007_S7075677::finalize(), D0_2004_S5992206::finalize(), D0_2001_S4674421::finalize(), D0_1996_S3324664::finalize(), D0_1996_S3214044::finalize(), CMS_2011_S8968497::finalize(), CMS_2011_S8957746::finalize(), CMS_2011_S8884919::finalize(), CDF_2009_NOTE_9936::finalize(), CDF_2004_S5839831::finalize(), CDF_2002_S4796047::finalize(), CDF_2001_S4751469::finalize(), CDF_1997_S3541940::finalize(), CDF_1996_S3418421::finalize(), CDF_1996_S3349578::finalize(), CDF_1996_S3108457::finalize(), CDF_1994_S2952106::finalize(), CDF_1993_S2742446::finalize(), ATLAS_2011_S8971293::finalize(), ALICE_2010_S8625980::finalize(), ALICE_2010_S8624100::finalize(), ALEPH_2004_S5765862::finalize(), and ALEPH_1996_S3486095::finalize().
00460 { 00461 if (!histo) { 00462 MSG_ERROR("Failed to normalize histo=NULL in analysis " 00463 << name() << " (norm=" << norm << ")"); 00464 return; 00465 } 00466 const string hpath = tree().findPath(dynamic_cast<const AIDA::IManagedObject&>(*histo)); 00467 MSG_TRACE("Normalizing histo " << hpath << " to " << norm); 00468 00469 double oldintg = 0.0; 00470 int nBins = histo->axis().bins(); 00471 for (int iBin = 0; iBin != nBins; ++iBin) { 00472 // Leaving out factor of binWidth because AIDA's "height" already includes a width factor. 00473 oldintg += histo->binHeight(iBin); // * histo->axis().binWidth(iBin); 00474 } 00475 if (oldintg == 0.0) { 00476 MSG_WARNING("Histo " << hpath << " has null integral during normalization"); 00477 return; 00478 } 00479 00480 // Scale by the normalisation factor. 00481 scale(histo, norm/oldintg); 00482 }
size_t numEvents | ( | ) | const [protected, inherited] |
Get the number of events seen (via the analysis handler). Use in the finalize phase only.
Definition at line 108 of file Analysis.cc.
References Analysis::handler(), and AnalysisHandler::numEvents().
00108 { 00109 return handler().numEvents(); 00110 }
virtual std::vector<std::string> references | ( | ) | const [inline, virtual, inherited] |
Journal, and preprint references.
Definition at line 173 of file Analysis.hh.
References Analysis::info(), and AnalysisInfo::references().
00173 { 00174 return info().references(); 00175 }
virtual const std::vector<PdgIdPair>& requiredBeams | ( | ) | const [inline, virtual, inherited] |
Return the allowed pairs of incoming beams required by this analysis.
Definition at line 199 of file Analysis.hh.
References AnalysisInfo::beams(), and Analysis::info().
00199 { 00200 return info().beams(); 00201 }
virtual const std::vector<std::pair<double, double> >& requiredEnergies | ( | ) | const [inline, virtual, inherited] |
Sets of valid beam energy pairs, in GeV.
Definition at line 210 of file Analysis.hh.
References AnalysisInfo::energies(), and Analysis::info().
Referenced by Analysis::setRequiredEnergies().
00210 { 00211 return info().energies(); 00212 }
virtual std::string runInfo | ( | ) | const [inline, virtual, inherited] |
Information about the events needed as input for this analysis.
Event types, energies, kinematic cuts, particles to be considered stable, etc. etc. Should be treated as a restructuredText bullet list (http://docutils.sourceforge.net/rst.html)
Definition at line 153 of file Analysis.hh.
References Analysis::info(), and AnalysisInfo::runInfo().
00153 { 00154 return info().runInfo(); 00155 }
void scale | ( | AIDA::IHistogram2D *& | histo, | |
double | scale | |||
) | [inherited] |
Multiplicatively scale the given histogram, histo. After this call the histogram will have been transformed to a DataPointSet with the same name and path.
histo | The histogram to be scaled. | |
scale | The factor used to multiply the histogram bin heights. |
Definition at line 555 of file Analysis.cc.
References Analysis::datapointsetFactory(), MSG_ERROR, MSG_TRACE, Analysis::name(), and Analysis::tree().
00555 { 00556 if (!histo) { 00557 MSG_ERROR("Failed to scale histo=NULL in analysis " 00558 << name() << " (scale=" << scale << ")"); 00559 return; 00560 } 00561 const string hpath = 00562 tree().findPath(dynamic_cast<const AIDA::IManagedObject&>(*histo)); 00563 MSG_TRACE("Scaling histo " << hpath); 00564 00565 vector<double> x, y, z, ex, ey, ez; 00566 for (size_t ix = 0, Nx = histo->xAxis().bins(); ix < Nx; ++ix) 00567 for (size_t iy = 0, Ny = histo->yAxis().bins(); iy < Ny; ++iy) { 00568 x.push_back(0.5 * (histo->xAxis().binLowerEdge(ix) + 00569 histo->xAxis().binUpperEdge(ix))); 00570 ex.push_back(histo->xAxis().binWidth(ix)*0.5); 00571 y.push_back(0.5 * (histo->yAxis().binLowerEdge(iy) + 00572 histo->yAxis().binUpperEdge(iy))); 00573 ey.push_back(histo->yAxis().binWidth(iy)*0.5); 00574 00575 // "Bin height" is a misnomer in the AIDA spec: width is neglected. 00576 // We'd like to do this: y.push_back(histo->binHeight(i) * scale); 00577 z.push_back(histo->binHeight(ix, iy)*scale/ 00578 (histo->xAxis().binWidth(ix)*histo->yAxis().binWidth(iy))); 00579 // "Bin error" is a misnomer in the AIDA spec: width is neglected. 00580 // We'd like to do this: ey.push_back(histo->binError(i) * scale); 00581 ez.push_back(histo->binError(ix, iy)*scale/ 00582 (histo->xAxis().binWidth(ix)*histo->yAxis().binWidth(iy))); 00583 } 00584 00585 string title = histo->title(); 00586 string xtitle = histo->xtitle(); 00587 string ytitle = histo->ytitle(); 00588 string ztitle = histo->ztitle(); 00589 00590 tree().mkdir("/tmpnormalize"); 00591 tree().mv(hpath, "/tmpnormalize"); 00592 00593 AIDA::IDataPointSet* dps = 00594 datapointsetFactory().createXYZ(hpath, title, x, y, z, ex, ey, ez); 00595 dps->setXTitle(xtitle); 00596 dps->setYTitle(ytitle); 00597 dps->setZTitle(ztitle); 00598 00599 tree().rm(tree().findPath(dynamic_cast<AIDA::IManagedObject&>(*histo))); 00600 tree().rmdir("/tmpnormalize"); 00601 00602 // Set histo pointer to null - it can no longer be used. 00603 histo = 0; 00604 }
void scale | ( | AIDA::IHistogram1D *& | histo, | |
double | scale | |||
) | [inherited] |
Multiplicatively scale the given histogram, histo. After this call the histogram will have been transformed to a DataPointSet with the same name and path.
histo | The histogram to be scaled. | |
scale | The factor used to multiply the histogram bin heights. |
Definition at line 485 of file Analysis.cc.
References Analysis::datapointsetFactory(), MSG_ERROR, MSG_TRACE, Analysis::name(), and Analysis::tree().
Referenced by UA5_1989_S1926373::finalize(), UA5_1987_S1640666::finalize(), UA5_1986_S1583476::finalize(), UA5_1982_S875503::finalize(), UA1_1990_S2044935::finalize(), STAR_2006_S6870392::finalize(), STAR_2006_S6860818::finalize(), STAR_2006_S6500200::finalize(), SFM_1984_S1178091::finalize(), PDG_HADRON_MULTIPLICITIES_RATIOS::finalize(), PDG_HADRON_MULTIPLICITIES::finalize(), OPAL_2004_S6132243::finalize(), OPAL_1998_S3780481::finalize(), MC_ZZJETS::finalize(), MC_ZJETS::finalize(), MC_WWJETS::finalize(), MC_WPOL::finalize(), MC_WJETS::finalize(), MC_PHOTONJETS::finalize(), MC_JetAnalysis::finalize(), MC_HJETS::finalize(), MC_GENERIC::finalize(), MC_DIPHOTON::finalize(), LHCB_2010_S8758301::finalize(), JADE_OPAL_2000_S4300807::finalize(), H1_2000_S4129130::finalize(), H1_1994_S2919893::finalize(), E735_1998_S3905616::finalize(), DELPHI_1996_S3430090::finalize(), D0_2010_S8671338::finalize(), D0_2010_S8570965::finalize(), D0_2009_S8349509::finalize(), D0_2009_S8202443::finalize(), D0_2008_S7863608::finalize(), D0_2008_S7719523::finalize(), D0_2008_S7662670::finalize(), D0_2006_S6438750::finalize(), D0_2000_S4480767::finalize(), CMS_2011_S8978280::finalize(), CMS_2010_S8656010::finalize(), CMS_2010_S8547297::finalize(), CDF_2009_S8436959::finalize(), CDF_2009_S8383952::finalize(), CDF_2009_S8233977::finalize(), CDF_2008_S8093652::finalize(), CDF_2008_S7540469::finalize(), CDF_2007_S7057202::finalize(), CDF_2006_S6450792::finalize(), CDF_2005_S6080774::finalize(), CDF_2001_S4563131::finalize(), CDF_2000_S4266730::finalize(), CDF_2000_S4155203::finalize(), CDF_1998_S3618439::finalize(), CDF_1990_S2089246::finalize(), CDF_1988_S1865951::finalize(), ATLAS_2011_S9120807::finalize(), ATLAS_2011_CONF_2011_090::finalize(), ATLAS_2010_S8919674::finalize(), ATLAS_2010_S8914702::finalize(), ATLAS_2010_S8591806::finalize(), ATLAS_2010_CONF_2010_049::finalize(), ALICE_2010_S8706239::finalize(), ALICE_2010_S8625980::finalize(), ALEPH_2004_S5765862::finalize(), ALEPH_1996_S3486095::finalize(), ALEPH_1996_S3196992::finalize(), ALEPH_1991_S2435284::finalize(), Analysis::normalize(), and BinnedHistogram< T >::scale().
00485 { 00486 if (!histo) { 00487 MSG_ERROR("Failed to scale histo=NULL in analysis " 00488 << name() << " (scale=" << scale << ")"); 00489 return; 00490 } 00491 const string hpath = tree().findPath(dynamic_cast<const AIDA::IManagedObject&>(*histo)); 00492 MSG_TRACE("Scaling histo " << hpath); 00493 00494 vector<double> x, y, ex, ey; 00495 for (size_t i = 0, N = histo->axis().bins(); i < N; ++i) { 00496 x.push_back(0.5 * (histo->axis().binLowerEdge(i) + histo->axis().binUpperEdge(i))); 00497 ex.push_back(histo->axis().binWidth(i)*0.5); 00498 00499 // "Bin height" is a misnomer in the AIDA spec: width is neglected. 00500 // We'd like to do this: y.push_back(histo->binHeight(i) * scale); 00501 y.push_back(histo->binHeight(i)*scale/histo->axis().binWidth(i)); 00502 00503 // "Bin error" is a misnomer in the AIDA spec: width is neglected. 00504 // We'd like to do this: ey.push_back(histo->binError(i) * scale); 00505 ey.push_back(histo->binError(i)*scale/histo->axis().binWidth(i)); 00506 } 00507 00508 string title = histo->title(); 00509 string xtitle = histo->xtitle(); 00510 string ytitle = histo->ytitle(); 00511 00512 tree().mkdir("/tmpnormalize"); 00513 tree().mv(hpath, "/tmpnormalize"); 00514 00515 AIDA::IDataPointSet* dps = datapointsetFactory().createXY(hpath, title, x, y, ex, ey); 00516 dps->setXTitle(xtitle); 00517 dps->setYTitle(ytitle); 00518 00519 tree().rm(tree().findPath(dynamic_cast<AIDA::IManagedObject&>(*histo))); 00520 tree().rmdir("/tmpnormalize"); 00521 00522 // Set histo pointer to null - it can no longer be used. 00523 histo = 0; 00524 }
Set the required beams
Definition at line 244 of file Analysis.hh.
References Analysis::setRequiredBeams().
Referenced by ALEPH_1991_S2435284::ALEPH_1991_S2435284(), ALEPH_1996_S3196992::ALEPH_1996_S3196992(), ALEPH_1996_S3486095::ALEPH_1996_S3486095(), ALEPH_2004_S5765862::ALEPH_2004_S5765862(), ALICE_2010_S8624100::ALICE_2010_S8624100(), ALICE_2010_S8625980::ALICE_2010_S8625980(), ALICE_2010_S8706239::ALICE_2010_S8706239(), ATLAS_2010_S8817804::ATLAS_2010_S8817804(), ATLAS_2011_S8924791::ATLAS_2011_S8924791(), ATLAS_2011_S9120807::ATLAS_2011_S9120807(), BELLE_2006_S6265367::BELLE_2006_S6265367(), CDF_1988_S1865951::CDF_1988_S1865951(), CDF_1990_S2089246::CDF_1990_S2089246(), CDF_1993_S2742446::CDF_1993_S2742446(), CDF_1994_S2952106::CDF_1994_S2952106(), CDF_1996_S3108457::CDF_1996_S3108457(), CDF_1996_S3349578::CDF_1996_S3349578(), CDF_1996_S3418421::CDF_1996_S3418421(), CDF_1997_S3541940::CDF_1997_S3541940(), CDF_1998_S3618439::CDF_1998_S3618439(), CDF_2000_S4155203::CDF_2000_S4155203(), CDF_2000_S4266730::CDF_2000_S4266730(), CDF_2001_S4517016::CDF_2001_S4517016(), CDF_2001_S4563131::CDF_2001_S4563131(), CDF_2001_S4751469::CDF_2001_S4751469(), CDF_2002_S4796047::CDF_2002_S4796047(), CDF_2004_S5839831::CDF_2004_S5839831(), CDF_2005_S6080774::CDF_2005_S6080774(), CDF_2005_S6217184::CDF_2005_S6217184(), CDF_2006_S6450792::CDF_2006_S6450792(), CDF_2006_S6653332::CDF_2006_S6653332(), CDF_2007_S7057202::CDF_2007_S7057202(), CDF_2008_LEADINGJETS::CDF_2008_LEADINGJETS(), CDF_2008_NOTE_9351::CDF_2008_NOTE_9351(), CDF_2008_S7540469::CDF_2008_S7540469(), CDF_2008_S7541902::CDF_2008_S7541902(), CDF_2008_S7782535::CDF_2008_S7782535(), CDF_2008_S7828950::CDF_2008_S7828950(), CDF_2008_S8093652::CDF_2008_S8093652(), CDF_2008_S8095620::CDF_2008_S8095620(), CDF_2009_NOTE_9936::CDF_2009_NOTE_9936(), CDF_2009_S8057893::CDF_2009_S8057893::CDF_2009_S8057893(), CDF_2009_S8233977::CDF_2009_S8233977(), CDF_2009_S8383952::CDF_2009_S8383952(), CDF_2009_S8436959::CDF_2009_S8436959(), CDF_2010_S8591881_DY::CDF_2010_S8591881_DY(), CDF_2010_S8591881_QCD::CDF_2010_S8591881_QCD(), CMS_2011_S8957746::CMS_2011_S8957746(), D0_1996_S3214044::D0_1996_S3214044(), D0_1996_S3324664::D0_1996_S3324664(), D0_2001_S4674421::D0_2001_S4674421(), D0_2004_S5992206::D0_2004_S5992206(), D0_2006_S6438750::D0_2006_S6438750(), D0_2007_S7075677::D0_2007_S7075677(), D0_2008_S6879055::D0_2008_S6879055(), D0_2008_S7554427::D0_2008_S7554427(), D0_2008_S7662670::D0_2008_S7662670(), D0_2008_S7719523::D0_2008_S7719523(), D0_2008_S7837160::D0_2008_S7837160(), D0_2008_S7863608::D0_2008_S7863608(), D0_2009_S8202443::D0_2009_S8202443(), D0_2009_S8320160::D0_2009_S8320160(), D0_2009_S8349509::D0_2009_S8349509(), D0_2010_S8566488::D0_2010_S8566488(), D0_2010_S8570965::D0_2010_S8570965(), D0_2010_S8671338::D0_2010_S8671338(), DELPHI_1995_S3137023::DELPHI_1995_S3137023(), DELPHI_1996_S3430090::DELPHI_1996_S3430090(), DELPHI_2002_069_CONF_603::DELPHI_2002_069_CONF_603(), E735_1998_S3905616::E735_1998_S3905616(), H1_1994_S2919893::H1_1994_S2919893(), H1_1995_S3167097::H1_1995_S3167097(), H1_2000_S4129130::H1_2000_S4129130(), JADE_1998_S3612880::JADE_1998_S3612880(), JADE_OPAL_2000_S4300807::JADE_OPAL_2000_S4300807(), LHCB_2010_S8758301::LHCB_2010_S8758301(), OPAL_1993_S2692198::OPAL_1993_S2692198(), OPAL_1998_S3780481::OPAL_1998_S3780481(), OPAL_2001_S4553896::OPAL_2001_S4553896(), PDG_HADRON_MULTIPLICITIES::PDG_HADRON_MULTIPLICITIES(), PDG_HADRON_MULTIPLICITIES_RATIOS::PDG_HADRON_MULTIPLICITIES_RATIOS(), SFM_1984_S1178091::SFM_1984_S1178091(), STAR_2006_S6500200::STAR_2006_S6500200(), STAR_2006_S6860818::STAR_2006_S6860818(), STAR_2006_S6870392::STAR_2006_S6870392(), STAR_2008_S7869363::STAR_2008_S7869363(), STAR_2008_S7993412::STAR_2008_S7993412(), STAR_2009_UE_HELEN::STAR_2009_UE_HELEN(), TASSO_1990_S2148048::TASSO_1990_S2148048(), UA1_1990_S2044935::UA1_1990_S2044935(), UA5_1986_S1583476::UA5_1986_S1583476(), UA5_1987_S1640666::UA5_1987_S1640666(), UA5_1988_S1867512::UA5_1988_S1867512(), UA5_1989_S1926373::UA5_1989_S1926373(), and ZEUS_2001_S4815815::ZEUS_2001_S4815815().
00244 { 00245 /// @todo Print out a warning to use setRequiredBeams() instead (and really to use .info files) 00246 return setRequiredBeams(std::vector<PdgIdPair>(1, make_pair(beam1, beam2))); 00247 }
Analysis & setCrossSection | ( | double | xs | ) | [inherited] |
Set the cross section from the generator.
Definition at line 165 of file Analysis.cc.
References Analysis::_crossSection, and Analysis::_gotCrossSection.
00165 { 00166 _crossSection = xs; 00167 _gotCrossSection = true; 00168 return *this; 00169 }
Analysis& setNeedsCrossSection | ( | bool | needed = true |
) | [inline, inherited] |
Declare whether this analysis needs to know the process cross-section from the generator.
Definition at line 225 of file Analysis.hh.
References Analysis::info(), and AnalysisInfo::setNeedsCrossSection().
Referenced by ALICE_2010_S8624100::ALICE_2010_S8624100(), ALICE_2010_S8625980::ALICE_2010_S8625980(), ALICE_2010_S8706239::ALICE_2010_S8706239(), ATLAS_2010_CONF_2010_049::ATLAS_2010_CONF_2010_049(), ATLAS_2010_S8591806::ATLAS_2010_S8591806(), ATLAS_2010_S8817804::ATLAS_2010_S8817804(), ATLAS_2010_S8914702::ATLAS_2010_S8914702(), ATLAS_2010_S8919674::ATLAS_2010_S8919674(), ATLAS_2011_CONF_2011_090::ATLAS_2011_CONF_2011_090(), ATLAS_2011_S8971293::ATLAS_2011_S8971293(), ATLAS_2011_S8983313::ATLAS_2011_S8983313(), ATLAS_2011_S9019561::ATLAS_2011_S9019561(), ATLAS_2011_S9120807::ATLAS_2011_S9120807(), CDF_1988_S1865951::CDF_1988_S1865951(), CDF_1993_S2742446::CDF_1993_S2742446(), CDF_1996_S3108457::CDF_1996_S3108457(), CDF_1998_S3618439::CDF_1998_S3618439(), CDF_2000_S4155203::CDF_2000_S4155203(), CDF_2000_S4266730::CDF_2000_S4266730(), CDF_2001_S4517016::CDF_2001_S4517016(), CDF_2001_S4563131::CDF_2001_S4563131(), CDF_2005_S6080774::CDF_2005_S6080774(), CDF_2006_S6450792::CDF_2006_S6450792(), CDF_2006_S6653332::CDF_2006_S6653332(), CDF_2007_S7057202::CDF_2007_S7057202(), CDF_2008_S7540469::CDF_2008_S7540469(), CDF_2008_S7541902::CDF_2008_S7541902(), CDF_2008_S7828950::CDF_2008_S7828950(), CDF_2008_S8093652::CDF_2008_S8093652(), CDF_2009_NOTE_9936::CDF_2009_NOTE_9936(), CDF_2009_S8233977::CDF_2009_S8233977(), CDF_2009_S8383952::CDF_2009_S8383952(), CDF_2009_S8436959::CDF_2009_S8436959(), CMS_2011_S8884919::CMS_2011_S8884919(), D0_1996_S3214044::D0_1996_S3214044(), D0_1996_S3324664::D0_1996_S3324664(), D0_2000_S4480767::D0_2000_S4480767(), D0_2001_S4674421::D0_2001_S4674421(), D0_2006_S6438750::D0_2006_S6438750(), D0_2008_S7662670::D0_2008_S7662670(), D0_2008_S7719523::D0_2008_S7719523(), D0_2008_S7863608::D0_2008_S7863608(), D0_2009_S8349509::D0_2009_S8349509(), D0_2010_S8566488::D0_2010_S8566488(), D0_2010_S8570965::D0_2010_S8570965(), D0_2010_S8671338::D0_2010_S8671338(), D0_2010_S8821313::D0_2010_S8821313(), LHCB_2010_S8758301::LHCB_2010_S8758301(), MC_DIPHOTON::MC_DIPHOTON(), MC_HJETS::MC_HJETS(), MC_JetAnalysis::MC_JetAnalysis(), MC_JETS::MC_JETS(), MC_PHOTONJETS::MC_PHOTONJETS(), MC_WJETS::MC_WJETS(), MC_WPOL::MC_WPOL(), MC_WWJETS::MC_WWJETS(), MC_XS::MC_XS(), MC_ZJETS::MC_ZJETS(), MC_ZZJETS::MC_ZZJETS(), OPAL_2001_S4553896::OPAL_2001_S4553896(), STAR_2006_S6870392::STAR_2006_S6870392(), STAR_2008_S7869363::STAR_2008_S7869363(), and UA1_1990_S2044935::UA1_1990_S2044935().
00225 { 00226 info().setNeedsCrossSection(needed); 00227 return *this; 00228 }
virtual Analysis& setRequiredBeams | ( | const std::vector< PdgIdPair > & | requiredBeams | ) | [inline, virtual, inherited] |
Declare the allowed pairs of incoming beams required by this analysis.
Definition at line 203 of file Analysis.hh.
References Analysis::info(), and AnalysisInfo::setBeams().
Referenced by Analysis::setBeams().
00203 { 00204 info().setBeams(requiredBeams); 00205 return *this; 00206 }
virtual Analysis& setRequiredEnergies | ( | const std::vector< std::pair< double, double > > & | requiredEnergies | ) | [inline, virtual, inherited] |
Declare the list of valid beam energy pairs, in GeV.
Definition at line 214 of file Analysis.hh.
References Analysis::info(), Analysis::requiredEnergies(), and AnalysisInfo::setEnergies().
00214 { 00215 info().setEnergies(requiredEnergies); 00216 return *this; 00217 }
virtual std::string spiresId | ( | ) | const [inline, virtual, inherited] |
Get a the SPIRES/Inspire ID code for this analysis.
Definition at line 117 of file Analysis.hh.
References Analysis::info(), and AnalysisInfo::spiresId().
00117 { 00118 return info().spiresId(); 00119 }
double sqrtS | ( | ) | const [inherited] |
Centre of mass energy for this run.
Definition at line 70 of file Analysis.cc.
References Analysis::handler(), and AnalysisHandler::sqrtS().
Referenced by UA1_1990_S2044935::analyze(), TASSO_1990_S2148048::analyze(), SFM_1984_S1178091::analyze(), PDG_HADRON_MULTIPLICITIES_RATIOS::analyze(), PDG_HADRON_MULTIPLICITIES::analyze(), JADE_1998_S3612880::analyze(), CDF_2004_S5839831::analyze(), ATLAS_2010_S8918562::analyze(), ATLAS_2010_S8894728::analyze(), ALICE_2010_S8625980::analyze(), ALEPH_2004_S5765862::analyze(), UA1_1990_S2044935::finalize(), PDG_HADRON_MULTIPLICITIES_RATIOS::finalize(), PDG_HADRON_MULTIPLICITIES::finalize(), JADE_1998_S3612880::finalize(), CMS_2011_S8978280::finalize(), CDF_2004_S5839831::finalize(), CDF_2002_S4796047::finalize(), ATLAS_2010_S8918562::finalize(), ALICE_2010_S8625980::finalize(), ALEPH_2004_S5765862::finalize(), UA5_1989_S1926373::init(), UA5_1988_S1867512::init(), UA5_1986_S1583476::init(), UA1_1990_S2044935::init(), TASSO_1990_S2148048::init(), SFM_1984_S1178091::init(), PDG_HADRON_MULTIPLICITIES_RATIOS::init(), PDG_HADRON_MULTIPLICITIES::init(), OPAL_2004_S6132243::init(), MC_ZZJETS::init(), MC_ZJETS::init(), MC_WWJETS::init(), MC_WPOL::init(), MC_WJETS::init(), MC_PHOTONJETS::init(), MC_JetAnalysis::init(), MC_HJETS::init(), MC_DIPHOTON::init(), JADE_OPAL_2000_S4300807::init(), JADE_1998_S3612880::init(), CMS_2011_S8978280::init(), CMS_2011_S8884919::init(), CMS_2010_S8547297::init(), CDF_2004_S5839831::init(), CDF_2002_S4796047::init(), CDF_1990_S2089246::init(), CDF_1988_S1865951::init(), ATLAS_2011_S8994773::init(), ATLAS_2010_S8918562::init(), ATLAS_2010_S8894728::init(), ALICE_2010_S8625980::init(), ALICE_2010_S8624100::init(), and ALEPH_2004_S5765862::init().
00070 { 00071 return handler().sqrtS(); 00072 }
virtual std::string status | ( | ) | const [inline, virtual, inherited] |
Whether this analysis is trusted (in any way!).
Definition at line 188 of file Analysis.hh.
References Analysis::info(), and AnalysisInfo::status().
virtual std::string summary | ( | ) | const [inline, virtual, inherited] |
Get a short description of the analysis.
Short (one sentence) description used as an index entry. Use description() to provide full descriptive paragraphs of analysis details.
Definition at line 134 of file Analysis.hh.
References Analysis::info(), and AnalysisInfo::summary().
00134 { 00135 return info().summary(); 00136 }
double sumOfWeights | ( | ) | const [protected, inherited] |
Get the sum of event weights seen (via the analysis handler). Use in the finalize phase only.
Definition at line 113 of file Analysis.cc.
References Analysis::handler(), and AnalysisHandler::sumOfWeights().
Referenced by Analysis::crossSectionPerEvent(), STAR_2006_S6870392::finalize(), STAR_2006_S6860818::finalize(), STAR_2006_S6500200::finalize(), PDG_HADRON_MULTIPLICITIES::finalize(), OPAL_1998_S3780481::finalize(), OPAL_1993_S2692198::finalize(), MC_ZZJETS::finalize(), MC_ZJETS::finalize(), MC_WWJETS::finalize(), MC_WJETS::finalize(), MC_JetAnalysis::finalize(), MC_HJETS::finalize(), MC_GENERIC::finalize(), MC_DIPHOTON::finalize(), JADE_OPAL_2000_S4300807::finalize(), DELPHI_1995_S3137023::finalize(), D0_2010_S8570965::finalize(), D0_2010_S8566488::finalize(), D0_2008_S7863608::finalize(), D0_2008_S7719523::finalize(), D0_2008_S7662670::finalize(), D0_2006_S6438750::finalize(), D0_2000_S4480767::finalize(), CMS_2011_S8978280::finalize(), CMS_2010_S8656010::finalize(), CMS_2010_S8547297::finalize(), CDF_2009_S8436959::finalize(), CDF_2009_S8383952::finalize(), CDF_2009_S8233977::finalize(), CDF_2008_S8093652::finalize(), CDF_2008_S7828950::finalize(), CDF_2008_S7541902::finalize(), CDF_2008_S7540469::finalize(), CDF_2006_S6653332::finalize(), CDF_2006_S6450792::finalize(), CDF_2005_S6080774::finalize(), CDF_2001_S4563131::finalize(), CDF_2001_S4517016::finalize(), CDF_2000_S4266730::finalize(), CDF_2000_S4155203::finalize(), CDF_1998_S3618439::finalize(), ATLAS_2011_S9120807::finalize(), ATLAS_2011_CONF_2011_090::finalize(), ATLAS_2010_S8919674::finalize(), ATLAS_2010_S8914702::finalize(), ATLAS_2010_CONF_2010_049::finalize(), ALEPH_2004_S5765862::finalize(), ALEPH_1996_S3486095::finalize(), ALEPH_1996_S3196992::finalize(), and ALEPH_1991_S2435284::finalize().
00113 { 00114 return handler().sumOfWeights(); 00115 }
virtual std::vector<std::string> todos | ( | ) | const [inline, virtual, inherited] |
Any work to be done on this analysis.
Definition at line 193 of file Analysis.hh.
References Analysis::info(), and AnalysisInfo::todos().
00193 { 00194 return info().todos(); 00195 }
ITree & tree | ( | ) | [protected, inherited] |
Access the AIDA tree of the controlling AnalysisHandler object.
Definition at line 55 of file Analysis.cc.
References Analysis::handler(), and AnalysisHandler::tree().
Referenced by Analysis::_makeHistoDir(), Analysis::normalize(), and Analysis::scale().
00055 { 00056 return handler().tree(); 00057 }
virtual std::string year | ( | ) | const [inline, virtual, inherited] |
When the original experimental analysis was published.
Definition at line 168 of file Analysis.hh.
References Analysis::info(), and AnalysisInfo::year().
00168 { 00169 return info().year(); 00170 }
bool _allowProjReg [protected, inherited] |
Flag to forbid projection registration in analyses until the init phase.
Definition at line 140 of file ProjectionApplier.hh.
Referenced by ProjectionApplier::_addProjection(), and Analysis::Analysis().
string _defaultname [protected, inherited] |
Name passed to constructor (used to find .info analysis data file, and as a fallback).
Definition at line 533 of file Analysis.hh.
Referenced by Analysis::Analysis(), and Analysis::name().
AIDA::IHistogram1D* _h_3_costheta3 [private] |
Definition at line 430 of file CDF_1996_S3349578.cc.
Referenced by CDF_1996_S3349578::_threeJetAnalysis(), CDF_1996_S3349578::finalize(), and CDF_1996_S3349578::init().
AIDA::IHistogram1D* _h_3_f3 [private] |
Definition at line 432 of file CDF_1996_S3349578.cc.
Referenced by CDF_1996_S3349578::_threeJetAnalysis(), CDF_1996_S3349578::finalize(), and CDF_1996_S3349578::init().
AIDA::IHistogram1D* _h_3_f4 [private] |
Definition at line 433 of file CDF_1996_S3349578.cc.
Referenced by CDF_1996_S3349578::_threeJetAnalysis(), CDF_1996_S3349578::finalize(), and CDF_1996_S3349578::init().
AIDA::IHistogram1D* _h_3_f5 [private] |
Definition at line 434 of file CDF_1996_S3349578.cc.
Referenced by CDF_1996_S3349578::_threeJetAnalysis(), CDF_1996_S3349578::finalize(), and CDF_1996_S3349578::init().
AIDA::IHistogram1D* _h_3_mNJ [private] |
Definition at line 427 of file CDF_1996_S3349578.cc.
Referenced by CDF_1996_S3349578::_threeJetAnalysis(), CDF_1996_S3349578::finalize(), and CDF_1996_S3349578::init().
AIDA::IHistogram1D* _h_3_psi3 [private] |
Definition at line 431 of file CDF_1996_S3349578.cc.
Referenced by CDF_1996_S3349578::_threeJetAnalysis(), CDF_1996_S3349578::finalize(), and CDF_1996_S3349578::init().
AIDA::IHistogram1D* _h_3_X3 [private] |
Definition at line 428 of file CDF_1996_S3349578.cc.
Referenced by CDF_1996_S3349578::_threeJetAnalysis(), CDF_1996_S3349578::finalize(), and CDF_1996_S3349578::init().
AIDA::IHistogram1D* _h_3_X4 [private] |
Definition at line 429 of file CDF_1996_S3349578.cc.
Referenced by CDF_1996_S3349578::_threeJetAnalysis(), CDF_1996_S3349578::finalize(), and CDF_1996_S3349578::init().
AIDA::IHistogram1D* _h_4_costheta3 [private] |
Definition at line 439 of file CDF_1996_S3349578.cc.
Referenced by CDF_1996_S3349578::_fourJetAnalysis(), CDF_1996_S3349578::finalize(), and CDF_1996_S3349578::init().
AIDA::IHistogram1D* _h_4_f3 [private] |
Definition at line 441 of file CDF_1996_S3349578.cc.
Referenced by CDF_1996_S3349578::_fourJetAnalysis(), CDF_1996_S3349578::finalize(), and CDF_1996_S3349578::init().
AIDA::IHistogram1D* _h_4_f4 [private] |
Definition at line 442 of file CDF_1996_S3349578.cc.
Referenced by CDF_1996_S3349578::_fourJetAnalysis(), CDF_1996_S3349578::finalize(), and CDF_1996_S3349578::init().
AIDA::IHistogram1D* _h_4_f5 [private] |
Definition at line 443 of file CDF_1996_S3349578.cc.
Referenced by CDF_1996_S3349578::_fourJetAnalysis(), CDF_1996_S3349578::finalize(), and CDF_1996_S3349578::init().
AIDA::IHistogram1D* _h_4_fA [private] |
Definition at line 446 of file CDF_1996_S3349578.cc.
Referenced by CDF_1996_S3349578::_fourJetAnalysis(), CDF_1996_S3349578::finalize(), and CDF_1996_S3349578::init().
AIDA::IHistogram1D* _h_4_fB [private] |
Definition at line 447 of file CDF_1996_S3349578.cc.
Referenced by CDF_1996_S3349578::_fourJetAnalysis(), CDF_1996_S3349578::finalize(), and CDF_1996_S3349578::init().
AIDA::IHistogram1D* _h_4_mNJ [private] |
Definition at line 436 of file CDF_1996_S3349578.cc.
Referenced by CDF_1996_S3349578::_fourJetAnalysis(), CDF_1996_S3349578::finalize(), and CDF_1996_S3349578::init().
AIDA::IHistogram1D* _h_4_psi3 [private] |
Definition at line 440 of file CDF_1996_S3349578.cc.
Referenced by CDF_1996_S3349578::_fourJetAnalysis(), CDF_1996_S3349578::finalize(), and CDF_1996_S3349578::init().
AIDA::IHistogram1D* _h_4_psiAB [private] |
Definition at line 445 of file CDF_1996_S3349578.cc.
Referenced by CDF_1996_S3349578::_fourJetAnalysis(), CDF_1996_S3349578::finalize(), and CDF_1996_S3349578::init().
AIDA::IHistogram1D* _h_4_X3 [private] |
Definition at line 437 of file CDF_1996_S3349578.cc.
Referenced by CDF_1996_S3349578::_fourJetAnalysis(), CDF_1996_S3349578::finalize(), and CDF_1996_S3349578::init().
AIDA::IHistogram1D* _h_4_X4 [private] |
Definition at line 438 of file CDF_1996_S3349578.cc.
Referenced by CDF_1996_S3349578::_fourJetAnalysis(), CDF_1996_S3349578::finalize(), and CDF_1996_S3349578::init().
AIDA::IHistogram1D* _h_4_XA [private] |
Definition at line 444 of file CDF_1996_S3349578.cc.
Referenced by CDF_1996_S3349578::_fourJetAnalysis(), CDF_1996_S3349578::finalize(), and CDF_1996_S3349578::init().
AIDA::IHistogram1D* _h_5_costheta3 [private] |
Definition at line 452 of file CDF_1996_S3349578.cc.
Referenced by CDF_1996_S3349578::_fiveJetAnalysis(), CDF_1996_S3349578::finalize(), and CDF_1996_S3349578::init().
AIDA::IHistogram1D* _h_5_f3 [private] |
Definition at line 454 of file CDF_1996_S3349578.cc.
Referenced by CDF_1996_S3349578::_fiveJetAnalysis(), CDF_1996_S3349578::finalize(), and CDF_1996_S3349578::init().
AIDA::IHistogram1D* _h_5_f4 [private] |
Definition at line 455 of file CDF_1996_S3349578.cc.
Referenced by CDF_1996_S3349578::_fiveJetAnalysis(), CDF_1996_S3349578::finalize(), and CDF_1996_S3349578::init().
AIDA::IHistogram1D* _h_5_f5 [private] |
Definition at line 456 of file CDF_1996_S3349578.cc.
Referenced by CDF_1996_S3349578::_fiveJetAnalysis(), CDF_1996_S3349578::finalize(), and CDF_1996_S3349578::init().
AIDA::IHistogram1D* _h_5_fA [private] |
Definition at line 461 of file CDF_1996_S3349578.cc.
Referenced by CDF_1996_S3349578::_fiveJetAnalysis(), CDF_1996_S3349578::finalize(), and CDF_1996_S3349578::init().
AIDA::IHistogram1D* _h_5_fB [private] |
Definition at line 462 of file CDF_1996_S3349578.cc.
Referenced by CDF_1996_S3349578::_fiveJetAnalysis(), CDF_1996_S3349578::finalize(), and CDF_1996_S3349578::init().
AIDA::IHistogram1D* _h_5_fC [private] |
Definition at line 463 of file CDF_1996_S3349578.cc.
Referenced by CDF_1996_S3349578::_fiveJetAnalysis(), CDF_1996_S3349578::finalize(), and CDF_1996_S3349578::init().
AIDA::IHistogram1D* _h_5_fD [private] |
Definition at line 464 of file CDF_1996_S3349578.cc.
Referenced by CDF_1996_S3349578::_fiveJetAnalysis(), CDF_1996_S3349578::finalize(), and CDF_1996_S3349578::init().
AIDA::IHistogram1D* _h_5_mNJ [private] |
Definition at line 449 of file CDF_1996_S3349578.cc.
Referenced by CDF_1996_S3349578::_fiveJetAnalysis(), CDF_1996_S3349578::finalize(), and CDF_1996_S3349578::init().
AIDA::IHistogram1D* _h_5_psi3 [private] |
Definition at line 453 of file CDF_1996_S3349578.cc.
Referenced by CDF_1996_S3349578::_fiveJetAnalysis(), CDF_1996_S3349578::finalize(), and CDF_1996_S3349578::init().
AIDA::IHistogram1D* _h_5_psiAB [private] |
Definition at line 459 of file CDF_1996_S3349578.cc.
Referenced by CDF_1996_S3349578::_fiveJetAnalysis(), CDF_1996_S3349578::finalize(), and CDF_1996_S3349578::init().
AIDA::IHistogram1D* _h_5_psiCD [private] |
Definition at line 460 of file CDF_1996_S3349578.cc.
Referenced by CDF_1996_S3349578::_fiveJetAnalysis(), CDF_1996_S3349578::finalize(), and CDF_1996_S3349578::init().
AIDA::IHistogram1D* _h_5_X3 [private] |
Definition at line 450 of file CDF_1996_S3349578.cc.
Referenced by CDF_1996_S3349578::_fiveJetAnalysis(), CDF_1996_S3349578::finalize(), and CDF_1996_S3349578::init().
AIDA::IHistogram1D* _h_5_X4 [private] |
Definition at line 451 of file CDF_1996_S3349578.cc.
Referenced by CDF_1996_S3349578::_fiveJetAnalysis(), CDF_1996_S3349578::finalize(), and CDF_1996_S3349578::init().
AIDA::IHistogram1D* _h_5_XA [private] |
Definition at line 457 of file CDF_1996_S3349578.cc.
Referenced by CDF_1996_S3349578::_fiveJetAnalysis(), CDF_1996_S3349578::finalize(), and CDF_1996_S3349578::init().
AIDA::IHistogram1D* _h_5_XC [private] |
Definition at line 458 of file CDF_1996_S3349578.cc.
Referenced by CDF_1996_S3349578::_fiveJetAnalysis(), CDF_1996_S3349578::finalize(), and CDF_1996_S3349578::init().
shared_ptr<AnalysisInfo> _info [protected, inherited] |
Pointer to analysis metadata object.
Definition at line 536 of file Analysis.hh.
Referenced by Analysis::Analysis(), and Analysis::info().