Jonathan Hollar's Sandbox

Links to other stuff

TESTCWRPPSLL

Muon efficiencies in the b-tag performance framework

GammaGamma->WW is here

Dimuon stuff is here

List of source-code/cfi discrepencies

OpenHLT egamma validation stuff

Tests of HLT single circulating beam menus for Nov 2009

Primary datasets and Streams for Collisions 2009

ExclusiveDDbar2010

ExclusivdDDbar.masspairplot.png ExclusivdDDbar.masspairplot.zoom.png

This is a new twiki page Test twiki output of trigger rates

Recipe for producing diffs of RECO configs

  • From a release area corresponding to one of the releases you want to compare
    • cvs co UserCode/JHollar/ConfdbDiffRecoConfigs
    • cd UserCode/JHollar/ConfdbDiffRecoConfigs
    • ./DoRecoDiff.sh 'CMSSW_X_Y_Z' (where CMSSW_X_Y_Z is the release you want to compare to)
  • The output is a file "thediff.twikiformat.txt" containing a twiki formatted table
  • By default the configuration it compares is Configuration.StandardSequences.Reconstruction_cff
  • This will only work for releases that have complete python configurations (CMSSW_2_1_X and later)
  • The CSCSegmentProducer cscSegments.algo_psets VPSet will sometimes produce spurious differences due to the python configs changing the
order of parameters within PSets within VPSets (to be fixed).

The menu validation thing

  • This is a simple recipe for running some basic validation checks on new trigger menu, including:
    • Checking for unexpected error/warning messages
    • Checking the number of accepted events compared to the menu run online

Step 1: HLT menu setup

  • Do whatever Andrea says
  • This usually means
    • Setup a new test release (scram project CMSSW CMSSW_3_X_Y)
    • Possibly checkout some extra tags (addpkg VXX-YY-ZZ package/subsystem)
    • Build (scram b)
    • Copy a config file (typically named offline_data.py) to your working directory
      • For example, HLTrigger/Configuration/test if you have that package checked out

Step 2: to submit jobs

  • Submit some crab jobs with the following crab.cfg file.
    • If you're still reading, you probably have permissions to submit jobs to CAF.
    • This assumes your config file is named offline_data.py
    • To choose a different run (run 132716 by default), edit the runselection parameter
      • To make comparing to the old menu easier, it's best to choose a reference run that the analyzer ntuples have already been produced for
    • To choose a different dataset, (MinimumBias by default) edit the datasetpath parameter

   [CRAB]
   
   jobtype                 = cmssw
   scheduler               = caf
   
   [CMSSW]
   datasetpath             = /MinimumBias/Commissioning10-v4/RAW
   pset                    = offline_data.py
   total_number_of_events  = -1
   events_per_job          = 50000
   runselection            = 132716

   [USER]
   return_data             = 1
   use_central_bossDB      = 0
   use_boss_rt             = 0
   
   copy_data = 0

   [GRID]
   rb                      = CERN
   proxy_server            = myproxy.cern.ch
   virtual_organization    = cms
   retry_count             = 0
   lcg_catalog_type        = lfc
   lfc_host                = lfc-cms-test.cern.ch
   lfc_home                = /grid/cms

  • To submit crab jobs:
    • crab -create
    • crab -submit
    • wait...
  • Note: there is no output data for these jobs as configured - they will only return a logfile!

Step 3: to check for errors/warnings/etc.

  • From the directory where you submitted the crab jobs
    • cd crab_<jobnumber>/res
    • grep MSG-e *stdout

Step 4: to produce rates for the old (online) menu

  • Run the RateEff tool on the ntuples for that run with the output sent to a file called "oldmenurates.log"

Step 5: to produce a table of the number of accepted events for the old (online) vs. new menu

  • From the directory where you have the output of the crab jobs (new menu) and RateEff (old menu):
    • cp ~/public/ForTriggerFolk/NewMenuValidation.py .
    • python NewMenuValidation.py
    • This will produce a table of the number of accepted events by trigger path for the old and new menus

Estimated trigger rates

Newly proposed HLT paths should include estimates of the trigger rate, made on high-luminosity 8TeV data from 2012.

Reference run

  • A suggested reference run is 191718, collected with
    • 1331 colliding bunches
    • Peak (online) luminosity of 5.5E33
    • 5E33 prescale column, with parking paths enabled
    • ECAL laser corrections, and spike-killing enabled.

  • To check for dependence on pileup, several sections of the run covering a range of lumi/pileup should be used, for example
    • LS 32-40, with L=5.44E33 from lumiCalc2 JSON
    • LS 100-110, with L=5.00E33 from lumiCalc2 JSON
    • LS 190-200, with L=4.45E33 from lumiCalc2 JSON
    • Note - depending what is used as a reference trigger and how heavily it's prescaled, more or fewer lumisections may be needed.
    • Note 2 - as of 20/04/2012 this data is believed to be good for trigger studies, but has not gone through full DQM certification. The JSON is provided only for convenience to use as a lumi mask
    • To select the LS using one of the JSON's above, you can add at the end of your hlt.py configuration, for example:

         import PhysicsTools.PythonAnalysis.LumiList as LumiList
         import FWCore.ParameterSet.Types as CfgTypes
         myLumis = LumiList.LumiList(filename =  'json_191718_section1.txt').getCMSSWString().split(',')
         process.source.lumisToProcess =  CfgTypes.untracked(CfgTypes.VLuminosityBlockRange())
         process.source.lumisToProcess.extend(myLumis)

Estimating rates for a new path

  • This section assumes you've already added your new path in ConfDB,and dumped an hlt.py configuration, as described on this twiki.
  • To estimate the rate for a new path, you can normalize to an existing trigger that was running online in run 191718. To do this you only need to choose a reference path, and know it's unprescaled rate. This information can be found from the WBM Run Summary here.
  • To see the list of available reference paths, check the HLT summary in WBM for this run - here.
    • Choose wisely - the only requirement for the reference path is that it should be strictly looser than your new trigger (in terms of threshold, ID, isolation, etc.) , in order to make an unbiased measurement. In most cases there will be several possible reference triggers, choosing one with a high rate/low prescale generally helps to maximize statistics.
  • Next, check what the rate for your reference path was in the LumiSections you're interested in by clicking on number in the "RateHz" column next to it and looking at the table below the plot. This is your "reference rate".
  • Finally, check if your reference trigger was prescaled by either HLT or L1 in prescale column 0 (the furthest left one) by looking in the WBM "Trigger Mode" page for the run. For Run 191718 this can be found here. Multiply the reference rate by the product of HLT*L1 prescales.
    • For example, searching for HLT_IsoMu24_eta2p1_v12 shows that it has prescale=1, and is seeded by the Level 1 trigger L1_SingleMu16er. Searching for L1_SingleMu16er (hint - L1 prescales are at the top of the page!) shows it has prescale = 1
    • So in this case the reference rate is just
      30.1 * 1 * 1 = 30.1

  • Now you can run over the data and get the rate of your new trigger, normalized to the reference path. If you've started from the "GRun" menu, you should already have hltTrigReport included in your EndPath. To get it to print out rates in Hz with the proper normalization, add the following two lines to the end of the configuration (for the example described above):

         process.hltTrigReport.ReferencePath      = cms.untracked.string( "HLT_IsoMu24_eta2p1_v12" ) 
         process.hltTrigReport.ReferenceRate      = cms.untracked.double( 30.1 ) 

PPS WW plots

For plots after June 12, see the dedicated page here

May 27, 2014

  • Excl WW vs. Excl tautau
    • Require all cuts in central detector, both signal protons in acceptance of tracking/timing stations of both arms of PPS
      • Scaled to 100fb-1, mu+mu- channel only
      • No pileup protons or beam backgrounds included
      • Sum of signal+ tautau background (open histogram), and tautau background alone (solid green histogram)
    • dimuon pair pT
    • dimuon delta-phi
    • missing mass
      • TBD(ebugged) - few events with protons in acceptance seem to have xi=0

  • Kinematic variables in WW signal MC with and without timing cuts
    • Require all cuts in central detector, two protons (could be signal or pileup) in acceptance of tracking/timing stations of both arms of PPS
      • With and without a (not-optimized) matching between PPS vertex and muon vertex z position
    • Missing mass, dimuon delta-phi, dimuon pair pT. Open histogram is for all pp combinations (signal+pileup protons), red histogram is for events with 1 or both protons from pileup. No ToF cuts.
    • Missing mass, dimuon delta-phi, dimuon pair pT. Open histogram is for all pp combinations (signal+pileup protons), red histogram is for events with 1 or both protons from pileup. ToF simulation with 10ps resolution, requiring 30ps matching between PPS vertex and leading muon vertex in CMS.

May 29, 2014

  • Excl WW vs. Excl tautau
    • Require all cuts in central detector, both signal protons in acceptance of tracking/timing stations of both arms of PPS
      • Plots normalized to unit area, mu+mu- channel only
      • No pileup protons or beam backgrounds included
      • Sum of signal+ tautau background (open histogram), and tautau background alone (solid green histogram)
    • dimuon pair pT
    • dimuon delta-phi
    • missing mass
      • TBD(ebugged) - few events with protons in acceptance seem to have xi=0

Selection step W+W- visible xsection W+W- events/100fb-1 W+W- cumulative efficency tau+tau- visible xsection tau+tau- events/100fb-1 tau+tau- cumulative efficiency
Generated xsection * BF to mu+mu- 0.42 +- 0.01 fb 42 100% 2.10 +- 0.02 fb 210 100%
2 reconstrcuted muons, pT>20 GeV 0.25 +- 0.01 fb 25 60.3% 0.086 +- 0.006 fb 8.6 4.1%
Opposite sign muons, passing tight muon ID 0.22 +- 0.01 fb 22 51.9% 0.061 +- 0.005 fb 6.1 2.8%
Protons in TRK+TOF acceptance of both PPS arms 0.028 +- 0.002 fb 2.8 6.7% 0.004 +- 0.001 fb 0.4 0.2%
No overlap with backgrounds in TOF 0.019 +- 0.002 fb 1.9 4.4% 0.003 +- 0.001 fb 0.3 0.2%

June 10, 2014

  • Relative efficiencies, before and after fix to bypass Pythia for W decays

Selection step W+W- cumulative efficency - original sample W+W- cumulative efficency - corrected sample
Generated xsection * BF to mu+mu- 100% 100%
2 reconstrcuted muons, pT>20 GeV 60.3% 61.4%
Opposite sign muons, passing tight muon ID 51.9% 52.9%
Protons in TRK+TOF acceptance of both PPS arms 6.7% 11.9%
No overlap with backgrounds in TOF 4.4% 7.7%

June 12, 2014

* Updated plots and tables with corrected samples (no Pythia for WW decays)

Exclusive processes: gammagamma->WW signal and gammagamma->tautau background

Selection step W+W- visible xsection W+W- events/100fb-1 W+W- cumulative efficency tau+tau- visible xsection tau+tau- events/100fb-1 tau+tau- cumulative efficiency
Generated xsection * BF to mu+mu- 0.43 +- 0.01 fb 43 100% 0.45 +- 0.01 fb 45 100%
2 reconstrcuted muons, pT>20 GeV 0.26 +- 0.01 fb 26 61.4% 0.047 +- 0.002 fb 5 10.6%
Opposite sign muons, passing tight muon ID 0.23 +- 0.01 fb 23 52.9% 0.040 +- 0.002 fb 4 8.9%
Protons in TRK+TOF acceptance of both PPS arms 0.051 +- 0.003 fb 5.1 11.9% 0.004 +- 0.001 fb 0.4 0.9%
No overlap with backgrounds in TOF 0.033 +- 0.003 fb 3.3 7.7% 0.003+- 0.001 fb 0.3 0.6%

Inclusive background processes: WW with coincidence of pileup protons

  • WW is generated with Pythia, scaled to the MCFM NLO prediction for 13 TeV
  • Central detector is FastSim (caveat - without pileup in the central detector)
  • Ad hoc mixing of pileup protons + PPS simulation reusing the pileup mixed for the tautau sample (caveat - each PU topology from these events is reused ~2.5 times on average)

Selection step W+W- visible xsection W+W- events/100fb-1 W+W- cumulative efficency
Generated xsection * BF to mu+mu- 1293 +- 6 fb 129300 100%
2 reconstrcuted muons, pT>20 GeV 572 +- 8 fb 57200 44%
Opposite sign muons, passing tight muon ID 557 +- 8 fb 55700 43%
Protons in TRK+TOF acceptance of both PPS arms 2.3 +- 0.5 fb 230 0.2%

Timing correlation plots

  • Require all cuts in central detector, all combinations (signal+pileup) of 2 protons in acceptance of tracking/timing stations of both arms of PPS

  • Deflection in x per mm in z: plotted as the difference in X-position between tracking station 2 and tracking station 1, divided by the difference in z positions (11.2 m)

For plots after June 12, see the dedicated page here

</>

  • Testing a link here

-- LucieGAUTHIER - 15-Jun-2011

-- JonathanHollar - 22-Jun-2011

-- JonathanHollar - 01 Oct 2008

Topic attachments
I Attachment History Action Size Date Who Comment
PDFpdf AligmentRunHitMaps.pdf r1 manage 1949.4 K 2017-05-22 - 15:03 JonathanHollar  
PNGpng ExclusivdDDbar.masspairplot.png r1 manage 13.3 K 2010-06-23 - 15:55 JonathanHollar  
PNGpng ExclusivdDDbar.masspairplot.zoom.png r1 manage 7.8 K 2010-06-23 - 15:55 JonathanHollar  
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PDFpdf PPS_Deltax_SignalProtons.pdf r1 manage 18.4 K 2014-06-13 - 10:52 JonathanHollar  
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PDFpdf PPS_WW_mumu_AfterCMSCuts_MuMuKinematics_WWVsTauTau_NoToFNoPU_ptpairNorm.pdf r1 manage 14.1 K 2014-05-29 - 13:46 JonathanHollar  
PDFpdf PPS_WW_mumu_AfterCMSCuts_NoBackgrounds_TimingPlots.pdf r1 manage 26.4 K 2014-05-27 - 13:13 JonathanHollar  
PDFpdf PPS_WW_mumu_AfterCMSCuts_NoNoise_TimingCorrelationPlots.pdf r2 r1 manage 29.6 K 2014-06-13 - 12:46 JonathanHollar  
PDFpdf PPS_WW_mumu_AfterCMSCuts_NoNoise_TimingCorrelationPlots_30ps.pdf r1 manage 29.6 K 2014-06-13 - 12:43 JonathanHollar  
PDFpdf combined45_cleanup_acop9vetopt5_ebars_paperstyle_ARC.pdf r1 manage 15.5 K 2017-03-23 - 14:32 JonathanHollar  
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PDFpdf l1menu_10TeV_8.0e29_startup_2009Mar04CRAFT.pdf r1 manage 24.2 K 2009-03-06 - 16:21 JonathanHollar  
PDFpdf l1menu_10TeV_8.0e29_startup_2009Mar04CRAFTonlyCRAFT.pdf r1 manage 19.7 K 2009-03-08 - 16:44 JonathanHollar L1 rates from L1_Commissioning09 for triggers run online in CRAFT
PDFpdf l1menu_L1Commissioning_8.0e29_startup_2009Mar04CRAFT.pdf r1 manage 20.0 K 2009-03-08 - 14:33 JonathanHollar L1 rates for the L1_Commissioning2009 menu
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GIFgif run124120.minbiaspixelsingletrackrate.gif r1 manage 11.2 K 2009-12-21 - 22:28 JonathanHollar  
GIFgif run124120.photonet.gif r1 manage 5.6 K 2009-12-17 - 21:35 JonathanHollar  
GIFgif run124120.photoneta.gif r1 manage 7.4 K 2009-12-17 - 21:35 JonathanHollar  
GIFgif run124120.photonphi.gif r1 manage 7.9 K 2009-12-17 - 21:35 JonathanHollar  
GIFgif run124120.pixtrketa.gif r1 manage 5.2 K 2009-12-17 - 21:35 JonathanHollar  
GIFgif run124120.pixtrkphi.gif r1 manage 6.4 K 2009-12-17 - 21:36 JonathanHollar  
GIFgif run124120.pixtrkpt.gif r2 r1 manage 5.2 K 2009-12-17 - 22:03 JonathanHollar  
GIFgif run124120.sumet.gif r1 manage 6.0 K 2009-12-17 - 21:36 JonathanHollar  
GIFgif run124120.sumetlog.gif r1 manage 8.1 K 2009-12-17 - 21:36 JonathanHollar  
GIFgif run124120.totalrate.gif r1 manage 9.3 K 2009-12-21 - 22:29 JonathanHollar  
GIFgif run66279.jet.gif r1 manage 9.2 K 2009-03-04 - 14:54 JonathanHollar  
GIFgif run66279.jetetaphi0gevcut.gif r1 manage 33.6 K 2009-03-04 - 14:49 JonathanHollar craft66279etaphinoise
GIFgif run66279.jetetaphi0gevcutHz.gif r1 manage 34.1 K 2009-03-05 - 10:27 JonathanHollar  
GIFgif run66279.jetetaphi10gevcut.gif r1 manage 15.5 K 2009-03-04 - 14:49 JonathanHollar  
GIFgif run66279.jetetaphi6gevcutHz.gif r1 manage 20.5 K 2009-03-05 - 10:27 JonathanHollar  
GIFgif run66279.l1egamma.gif r1 manage 9.4 K 2009-03-04 - 14:50 JonathanHollar  
GIFgif run66279.l1forjet.gif r1 manage 9.6 K 2009-03-05 - 09:25 JonathanHollar  
GIFgif run66279.l1muon.gif r1 manage 9.1 K 2009-03-04 - 14:50 JonathanHollar  
GIFgif run66279.l2muon.gif r1 manage 11.0 K 2009-03-04 - 14:50 JonathanHollar  
GIFgif run66279.met.gif r1 manage 7.7 K 2009-03-04 - 14:50 JonathanHollar  
GIFgif run66279.mul2ptthreshold.gif r1 manage 8.4 K 2009-03-04 - 14:50 JonathanHollar  
GIFgif run66279.tau.gif r1 manage 9.9 K 2009-03-04 - 14:51 JonathanHollar  
GIFgif run68021.jet.gif r1 manage 10.1 K 2009-03-05 - 09:26 JonathanHollar  
GIFgif run68021.jetetaphi0gevcut.gif r1 manage 32.9 K 2009-03-05 - 09:09 JonathanHollar  
GIFgif run68021.jetetaphi0gevcutHz.gif r1 manage 28.5 K 2009-03-05 - 10:27 JonathanHollar  
GIFgif run68021.jetetaphi10gevcut.gif r1 manage 26.4 K 2009-03-05 - 09:09 JonathanHollar  
GIFgif run68021.jetetaphi6gevcutHz.gif r1 manage 23.0 K 2009-03-05 - 10:28 JonathanHollar  
GIFgif run68021.l1cenjet.gif r1 manage 9.2 K 2009-03-05 - 09:26 JonathanHollar  
GIFgif run68021.l1egamma.gif r1 manage 9.5 K 2009-03-05 - 09:26 JonathanHollar  
GIFgif run68021.l1muon.gif r1 manage 8.7 K 2009-03-05 - 09:26 JonathanHollar  
GIFgif run68021.l2muon.gif r1 manage 9.8 K 2009-03-05 - 09:27 JonathanHollar  
GIFgif run68021.met.gif r1 manage 7.7 K 2009-03-05 - 09:27 JonathanHollar  
GIFgif run68021.photon.gif r1 manage 9.3 K 2009-03-05 - 09:59 JonathanHollar  
PDFpdf ximumu_vs_xip_genlevel_singleinelastic_1D.pdf r1 manage 23.3 K 2017-03-23 - 14:32 JonathanHollar  
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Topic revision: r175 - 2018-01-31 - JonathanHollar
 
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