1 |
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2 |
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3 | /-----------------------------------------\
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4 | | 09 February 2009: release Version1.4beta |
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5 | \-----------------------------------------/
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6 |
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7 | * Changes relative to V.1.3beta:
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8 | - new overal header and program output to screen.
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9 | - new trigger cards ATLAS and CMS-like
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10 | - new detector card ATLAS oriented
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11 | - New input parameters in the datacard for very forward detectors
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12 | - Modification of the Resolution.cpp code to run on the output of Delphes directly
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13 | - #include statements have been cleaned ; more include paths
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14 | in the compilation, leading to easier #include statements.
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15 | - extensive use of 'valgrind' for the search for memory leaks.
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16 | No more explicit leak is in the code. The only leaks left are
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17 | related to ROOT, to mcfio dependecy and to Hector.
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18 | This implied the systematic addition of copy-constructor,
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19 | operator= and correct destructors in Delphes classes
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20 | - update of the BField simulation; still in the case of B = Bz only
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21 | - JetsUtil* files renamed to JetsUtil*
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22 | * Private modifications in dependencies
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23 | - memory leaks removed in FROG (applied on Frog v1.106)
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24 | - systematic change of by-value parameters to "by-const-reference"
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25 | in Hector (applied on Hector v1.3.1)
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26 |
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27 | /-----------------------------------------\
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28 | | 29 January 2009: release Version1.3beta |
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29 | \-----------------------------------------/
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30 |
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31 | * Changes relative to V.1.2beta:
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32 | - Cleaning of non necessary comments
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33 | - Removal of the minimal transverse momentum applied on tracks and calotowers when the magnetic field is simulated
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34 | - Correction of the FROG interface
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35 | - Addition of a new standalone code to run FROG on the analysis output ROOT file
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36 | - New magnetic field algorithm: exact computation in case of magnetic field having a Bz component only
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37 | - Time performance monitoring
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38 | - Cleaner tarball
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39 | * Known limitations of this release are:
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40 | -Work is currently being done on eta/phi variables leading to some uncertainties on these quantities when the magnetic field is switched on
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41 |
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42 |
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43 |
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44 | /-----------------------------------------\
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45 | | 18 December 2008: release Version1.2beta |
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46 | \-----------------------------------------/
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47 |
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48 | * Changes relative to V.1.1beta:
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49 | - Reconstruction of jets: the number of defined cell
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50 | towers is now correctly taken into account by the
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51 | jet algorithms
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52 | - Input for jet reconstruction: calotowers instead
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53 | of generated particles
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54 | - Input datacard parameters now taken into account by
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55 | the jets, very forward detectors, magnetic field
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56 | propagation steps
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57 |
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58 |
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59 | /-----------------------------------------\
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60 | | 13 December 2008: release Version1.1beta |
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61 | \-----------------------------------------/
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62 |
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63 | * Changes relative to V.1.0beta:
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64 | - Addition of a class that run the FROG code on the
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65 | reconstructed events to perform visualisation of
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66 | events and detector geometry
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67 | - Addition in the datacard of flags to switch on/off
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68 | magnetic field, very forward detectors, trigger and FROG
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69 | running
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70 |
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71 |
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72 | /-----------------------------------------\
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73 | | December 2008: release Version1.0beta |
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74 | \-----------------------------------------/
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75 |
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76 | * First available release
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77 | * Includes
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78 | - Classes that perform
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79 | - Conversion of HepMC, LHE and root file conversion
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80 | - Simulation of charged particles into a magnetic field
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81 | - Smearing of the energy of undecaying particles
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82 | according to some applied resolution functions
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83 | - Reconstruction of jets using the FastJet package
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84 | - Simulation of very forward detector selection
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85 | - Application of a trigger selection
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86 | - An input datacard that permit two easily change running
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87 | configuration of the detector simulation (e.g. data/DataCardDet.dat).
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88 | - An input trigger datacard to apply a selection of events
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89 | with user defined trigger bits (e.g. data/trigger.dat).
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90 | - An example of user code to run on the output root file of
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91 | the DELPHES program.
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92 | * Known limitations of this release are
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93 | - Imperfect reconstruction of jets: the number of defined cell
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94 | towers not correctly taken into account by the jet algorithms.
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95 | - Reconstruction of very forward detectors not entirely completed.
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