Identical LHE file before and after reweighting

Asked by Peter Meiring on 2019-05-07

Dear MadGraph experts,

I'm trying to reweight Higgs pair events using the following reweight_card.dat:

change output default
change mode NLO_tree # Define type of Reweighting. For LO sample this command
                # has no effect since only "LO" mode is allowed.
change model loop_sm-no_b_mass
change process g g > h h [sqrvirt=QCD]
change process p p > h h j [sqrvirt=QCD] --add
launch
/afs/cern.ch/work/p/pmeiring/private/ATLAS/MG5_aMC_v2_6_4/gghhnlo/Cards/param_card2.dat

The process finishes with no problem, but the LHE file before and after reweighting are identical. An example LHE file of 10 events is shown below. Do you know what is inside the various weight blocks (<initrwgt>, <mgrwgt>, <rwgt>)? Also, do you have an idea what I'm doing wrong when trying to reweight?

Thanks in advance, as always your help is highly appreciated!
Cheers,

Peter Meiring

<LesHouchesEvents version="3.0">
  <header>
  <MG5ProcCard>
#************************************************************
#* MadGraph5_aMC@NLO *
#* *
#* * * *
#* * * * * *
#* * * * * 5 * * * * *
#* * * * * *
#* * * *
#* *
#* *
#* VERSION 2.6.4 2018-11-09 *
#* *
#* The MadGraph5_aMC@NLO Development Team - Find us at *
#* https://server06.fynu.ucl.ac.be/projects/madgraph *
#* *
#************************************************************
#* *
#* Command File for MadGraph5_aMC@NLO *
#* *
#* run as ./bin/mg5_aMC filename *
#* *
#************************************************************
set default_unset_couplings 99
set group_subprocesses Auto
set ignore_six_quark_processes False
set loop_optimized_output True
set low_mem_multicore_nlo_generation False
set loop_color_flows False
set gauge unitary
set complex_mass_scheme False
set max_npoint_for_channel 0
import model sm
define p = g u c d s u~ c~ d~ s~
define j = g u c d s u~ c~ d~ s~
define l+ = e+ mu+
define l- = e- mu-
define vl = ve vm vt
define vl~ = ve~ vm~ vt~
define l = l+ l-
define v = vl vl~
import model SMEFT_UFO-no_b_mass
define p = 21 2 4 1 3 -2 -4 -1 -3 5 -5
define j = p
generate p p > H H [QCD]
output gghhnlo
  </MG5ProcCard>
  <slha>
######################################################################
## PARAM_CARD AUTOMATICALY GENERATED BY MG5 FOLLOWING UFO MODEL ####
######################################################################
## ##
## Width set on Auto will be computed following the information ##
## present in the decay.py files of the model. ##
## See arXiv:1402.1178 for more details. ##
## ##
######################################################################

###################################
## INFORMATION FOR MASS
###################################
Block mass
    6 1.730000e+02 # MT
   15 1.777000e+00 # MTA
   23 9.118760e+01 # MZ
   25 1.250000e+02 # MH
## Dependent parameters, given by model restrictions.
## Those values should be edited following the
## analytical expression. MG5 ignores those values
## but they are important for interfacing the output of MG5
## to external program such as Pythia.
  1 0.000000 # d : 0.0
  2 0.000000 # u : 0.0
  3 0.000000 # s : 0.0
  4 0.000000 # c : 0.0
  5 0.000000 # b : 0.0
  11 0.000000 # e- : 0.0
  12 0.000000 # ve : 0.0
  13 0.000000 # mu- : 0.0
  14 0.000000 # vm : 0.0
  16 0.000000 # vt : 0.0
  21 0.000000 # g : 0.0
  22 0.000000 # a : 0.0
  24 79.824360 # w+ : cmath.sqrt(MZ__exp__2/2. + cmath.sqrt(MZ__exp__4/4. - (aEW*cmath.pi*MZ__exp__2)/(Gf*sqrt__2)))
  9000002 91.187600 # ghz : MZ
  9000003 79.824360 # ghwp : MW
  9000004 79.824360 # ghwm : MW
  250 91.187600 # g0 : MZ
  251 79.824360 # g+ : MW

###################################
## INFORMATION FOR SMINPUTS
###################################
Block sminputs
    1 1.279000e+02 # aEWM1
    2 1.166370e-05 # Gf
    3 1.184000e-01 # aS

###################################
## INFORMATION FOR YUKAWA
###################################
Block yukawa
    6 1.730000e+02 # ymt
   15 1.777000e+00 # ymtau

###################################
## INFORMATION FOR DECAY
###################################
DECAY 6 1.508336e+00 # WT
DECAY 23 2.495200e+00 # WZ
DECAY 24 2.085000e+00 # WW
DECAY 25 5.753088e-03 # WH
## Dependent parameters, given by model restrictions.
## Those values should be edited following the
## analytical expression. MG5 ignores those values
## but they are important for interfacing the output of MG5
## to external program such as Pythia.
DECAY 1 0.000000 # d : 0.0
DECAY 2 0.000000 # u : 0.0
DECAY 3 0.000000 # s : 0.0
DECAY 4 0.000000 # c : 0.0
DECAY 5 0.000000 # b : 0.0
DECAY 11 0.000000 # e- : 0.0
DECAY 12 0.000000 # ve : 0.0
DECAY 13 0.000000 # mu- : 0.0
DECAY 14 0.000000 # vm : 0.0
DECAY 15 0.000000 # ta- : 0.0
DECAY 16 0.000000 # vt : 0.0
DECAY 21 0.000000 # g : 0.0
DECAY 22 0.000000 # a : 0.0
DECAY 9000002 2.495200 # ghz : WZ
DECAY 9000003 2.085000 # ghwp : WW
DECAY 9000004 2.085000 # ghwm : WW
DECAY 250 2.495200 # g0 : WZ
DECAY 251 2.085000 # g+ : WW
#===========================================================
# QUANTUM NUMBERS OF NEW STATE(S) (NON SM PDG CODE)
#===========================================================

Block QNUMBERS 9000001 # gha
        1 0 # 3 times electric charge
        2 1 # number of spin states (2S+1)
        3 1 # colour rep (1: singlet, 3: triplet, 8: octet)
        4 1 # Particle/Antiparticle distinction (0=own anti)
Block QNUMBERS 9000002 # ghz
        1 0 # 3 times electric charge
        2 1 # number of spin states (2S+1)
        3 1 # colour rep (1: singlet, 3: triplet, 8: octet)
        4 1 # Particle/Antiparticle distinction (0=own anti)
Block QNUMBERS 9000003 # ghwp
        1 3 # 3 times electric charge
        2 1 # number of spin states (2S+1)
        3 1 # colour rep (1: singlet, 3: triplet, 8: octet)
        4 1 # Particle/Antiparticle distinction (0=own anti)
Block QNUMBERS 9000004 # ghwm
        1 -3 # 3 times electric charge
        2 1 # number of spin states (2S+1)
        3 1 # colour rep (1: singlet, 3: triplet, 8: octet)
        4 1 # Particle/Antiparticle distinction (0=own anti)
Block QNUMBERS 9000005 # ghg
        1 0 # 3 times electric charge
        2 1 # number of spin states (2S+1)
        3 8 # colour rep (1: singlet, 3: triplet, 8: octet)
        4 1 # Particle/Antiparticle distinction (0=own anti)
Block QNUMBERS 250 # g0
        1 0 # 3 times electric charge
        2 1 # number of spin states (2S+1)
        3 1 # colour rep (1: singlet, 3: triplet, 8: octet)
        4 0 # Particle/Antiparticle distinction (0=own anti)
Block QNUMBERS 251 # g+
        1 3 # 3 times electric charge
        2 1 # number of spin states (2S+1)
        3 1 # colour rep (1: singlet, 3: triplet, 8: octet)
        4 1 # Particle/Antiparticle distinction (0=own anti)
  </slha>
  <MGRunCard>
#***********************************************************************
# MadGraph5_aMC@NLO *
# *
# run_card.dat aMC@NLO *
# *
# This file is used to set the parameters of the run. *
# *
# Some notation/conventions: *
# *
# Lines starting with a hash (#) are info or comments *
# *
# mind the format: value = variable ! comment *
# *
# Some of the values of variables can be list. These can either be *
# comma or space separated. *
# *
# To display additional parameter, you can use the command: *
# update to_full *
#***********************************************************************
#
#*******************
# Running parameters
#*******************
#
#***********************************************************************
# Tag name for the run (one word) *
#***********************************************************************
  tag_1 = run_tag ! name of the run
#***********************************************************************
# Number of LHE events (and their normalization) and the required *
# (relative) accuracy on the Xsec. *
# These values are ignored for fixed order runs *
#***********************************************************************
         10 = nevents
 -1.0 = req_acc ! Required accuracy (-1=auto determined from nevents)
 -1 = nevt_job! Max number of events per job in event generation.
                 ! (-1= no split).
#***********************************************************************
# Normalize the weights of LHE events such that they sum or average to *
# the total cross section *
#***********************************************************************
 average = event_norm ! valid settings: average, sum, bias
#***********************************************************************
# Number of points per itegration channel (ignored for aMC@NLO runs) *
#***********************************************************************
 0.01 = req_acc_FO ! Required accuracy (-1=ignored, and use the
                     ! number of points and iter. below)
# These numbers are ignored except if req_acc_FO is equal to -1
 5000 = npoints_FO_grid ! number of points to setup grids
 4 = niters_FO_grid ! number of iter. to setup grids
 10000 = npoints_FO ! number of points to compute Xsec
 6 = niters_FO ! number of iter. to compute Xsec
#***********************************************************************
# Random number seed *
#***********************************************************************
         68 = iseed
#***********************************************************************
# Collider type and energy *
#***********************************************************************
 1 = lpp1 ! beam 1 type (0 = no PDF)
 1 = lpp2 ! beam 2 type (0 = no PDF)
 6500.0 = ebeam1 ! beam 1 energy in GeV
 6500.0 = ebeam2 ! beam 2 energy in GeV
#***********************************************************************
# PDF choice: this automatically fixes also alpha_s(MZ) and its evol. *
#***********************************************************************
 nn23nlo = pdlabel ! PDF set
 244600 = lhaid ! If pdlabel=lhapdf, this is the lhapdf number. Only
              ! numbers for central PDF sets are allowed. Can be a list;
              ! PDF sets beyond the first are included via reweighting.
#***********************************************************************
# Include the NLO Monte Carlo subtr. terms for the following parton *
# shower (HERWIG6 | HERWIGPP | PYTHIA6Q | PYTHIA6PT | PYTHIA8) *
# WARNING: PYTHIA6PT works only for processes without FSR!!!! *
#***********************************************************************
  HERWIG6 = parton_shower
  1.0 = shower_scale_factor ! multiply default shower starting
                                  ! scale by this factor
#***********************************************************************
# Renormalization and factorization scales *
# (Default functional form for the non-fixed scales is the sum of *
# the transverse masses divided by two of all final state particles *
# and partons. This can be changed in SubProcesses/set_scales.f or via *
# dynamical_scale_choice option) *
#***********************************************************************
 False = fixed_ren_scale ! if .true. use fixed ren scale
 False = fixed_fac_scale ! if .true. use fixed fac scale
 91.118 = muR_ref_fixed ! fixed ren reference scale
 91.118 = muF_ref_fixed ! fixed fact reference scale
 10 = dynamical_scale_choice ! Choose one (or more) of the predefined
           ! dynamical choices. Can be a list; scale choices beyond the
           ! first are included via reweighting
 1.0 = muR_over_ref ! ratio of current muR over reference muR
 1.0 = muF_over_ref ! ratio of current muF over reference muF
#***********************************************************************
# Reweight variables for scale dependence and PDF uncertainty *
#***********************************************************************
 1.0, 2.0, 0.5 = rw_rscale ! muR factors to be included by reweighting
 1.0, 2.0, 0.5 = rw_fscale ! muF factors to be included by reweighting
 True = reweight_scale ! Reweight to get scale variation using the
            ! rw_rscale and rw_fscale factors. Should be a list of
            ! booleans of equal length to dynamical_scale_choice to
            ! specify for which choice to include scale dependence.
 False = reweight_PDF ! Reweight to get PDF uncertainty. Should be a
            ! list booleans of equal length to lhaid to specify for
            ! which PDF set to include the uncertainties.
#***********************************************************************
# Store reweight information in the LHE file for off-line model- *
# parameter reweighting at NLO+PS accuracy *
#***********************************************************************
 True = store_rwgt_info ! Store info for reweighting in LHE file
#***********************************************************************
# ickkw parameter: *
# 0: No merging *
# 3: FxFx Merging - WARNING! Applies merging only at the hard-event *
# level. After showering an MLM-type merging should be applied as *
# well. See http://amcatnlo.cern.ch/FxFx_merging.htm for details. *
# 4: UNLOPS merging (with pythia8 only). No interface from within *
# MG5_aMC available, but available in Pythia8. *
# -1: NNLL+NLO jet-veto computation. See arxiv:1412.8408 [hep-ph]. *
#***********************************************************************
 0 = ickkw
#***********************************************************************
#
#***********************************************************************
# BW cutoff (M+/-bwcutoff*Gamma). Determines which resonances are *
# written in the LHE event file *
#***********************************************************************
 15.0 = bwcutoff
#***********************************************************************
# Cuts on the jets. Jet clustering is performed by FastJet. *
# - When matching to a parton shower, these generation cuts should be *
# considerably softer than the analysis cuts. *
# - More specific cuts can be specified in SubProcesses/cuts.f *
#***********************************************************************
  1.0 = jetalgo ! FastJet jet algorithm (1=kT, 0=C/A, -1=anti-kT)
  0.7 = jetradius ! The radius parameter for the jet algorithm
 10.0 = ptj ! Min jet transverse momentum
 -1.0 = etaj ! Max jet abs(pseudo-rap) (a value .lt.0 means no cut)
#***********************************************************************
# Cuts on the charged leptons (e+, e-, mu+, mu-, tau+ and tau-) *
# More specific cuts can be specified in SubProcesses/cuts.f *
#***********************************************************************
  7.0 = ptl ! Min lepton transverse momentum
  2.8 = etal ! Max lepton abs(pseudo-rap) (a value .lt.0 means no cut)
  0.0 = drll ! Min distance between opposite sign lepton pairs
  0.0 = drll_sf ! Min distance between opp. sign same-flavor lepton pairs
  0.0 = mll ! Min inv. mass of all opposite sign lepton pairs
 30.0 = mll_sf ! Min inv. mass of all opp. sign same-flavor lepton pairs
#***********************************************************************
# Photon-isolation cuts, according to hep-ph/9801442. When ptgmin=0, *
# all the other parameters are ignored. *
# More specific cuts can be specified in SubProcesses/cuts.f *
#***********************************************************************
 20.0 = ptgmin ! Min photon transverse momentum
 -1.0 = etagamma ! Max photon abs(pseudo-rap)
  0.4 = R0gamma ! Radius of isolation code
  1.0 = xn ! n parameter of eq.(3.4) in hep-ph/9801442
  1.0 = epsgamma ! epsilon_gamma parameter of eq.(3.4) in hep-ph/9801442
 True = isoEM ! isolate photons from EM energy (photons and leptons)
#***********************************************************************
# Cuts associated to MASSIVE particles identified by their PDG codes. *
# All cuts are applied to both particles and anti-particles, so use *
# POSITIVE PDG CODES only. Example of the syntax is {6 : 100} or *
# {6:100, 25:200} for multiple particles *
#***********************************************************************
  {} = pt_min_pdg ! Min pT for a massive particle
  {} = pt_max_pdg ! Max pT for a massive particle
  {} = mxx_min_pdg ! inv. mass for any pair of (anti)particles
#***********************************************************************
# For aMCfast+APPLGRID use in PDF fitting (http://amcfast.hepforge.org)*
#***********************************************************************
 0 = iappl ! aMCfast switch (0=OFF, 1=prepare grids, 2=fill grids)
#***********************************************************************
  </MGRunCard>
  <scalesfunctionalform>
    muR User-defined dynamical scale
    muF1 User-defined dynamical scale
    muF2 User-defined dynamical scale
    QES User-defined dynamical scale
  </scalesfunctionalform>
  <MonteCarloMasses>
       1 0.320000E+00
       2 0.320000E+00
       3 0.500000E+00
       4 0.155000E+01
       5 0.495000E+01
      11 0.510999E-03
      13 0.105658E+00
      15 0.177682E+01
      21 0.750000E+00
  </MonteCarloMasses>
  <initrwgt>
    <weightgroup name='scale_variation 10' combine='envelope'>
      <weight id='1001'> dyn= 10 muR=0.10000E+01 muF=0.10000E+01 </weight>
      <weight id='1002'> dyn= 10 muR=0.20000E+01 muF=0.10000E+01 </weight>
      <weight id='1003'> dyn= 10 muR=0.50000E+00 muF=0.10000E+01 </weight>
      <weight id='1004'> dyn= 10 muR=0.10000E+01 muF=0.20000E+01 </weight>
      <weight id='1005'> dyn= 10 muR=0.20000E+01 muF=0.20000E+01 </weight>
      <weight id='1006'> dyn= 10 muR=0.50000E+00 muF=0.20000E+01 </weight>
      <weight id='1007'> dyn= 10 muR=0.10000E+01 muF=0.50000E+00 </weight>
      <weight id='1008'> dyn= 10 muR=0.20000E+01 muF=0.50000E+00 </weight>
      <weight id='1009'> dyn= 10 muR=0.50000E+00 muF=0.50000E+00 </weight>
    </weightgroup>
  </initrwgt>
  </header>
  <init>
   2212 2212 0.65000000E+04 0.65000000E+04 -1 -1 244800 244800 -4 1
 0.23366029E-01 0.10606162E-03 0.28258268E-01 0
  </init>
  <event>
  4 0 0.28258268E-01 0.15401727E+03 0.78186083E-02 0.99013078E-01
       21 -1 0 0 502 501 0.00000000E+00 0.00000000E+00 0.51250480E+03 0.51250535E+03 0.75000000E+00 0.0000E+00 0.9000E+01
       21 -1 0 0 501 502 0.00000000E+00 0.00000000E+00 -.23300114E+03 0.23300234E+03 0.75000000E+00 0.0000E+00 0.9000E+01
       25 1 1 2 0 0 0.84713367E+02 0.30330904E+02 -.19393131E+03 0.24765030E+03 0.12500000E+03 0.0000E+00 0.9000E+01
       25 1 1 2 0 0 -.84713367E+02 -.30330904E+02 0.47343497E+03 0.49785740E+03 0.12500000E+03 0.0000E+00 0.9000E+01
#aMCatNLO 1 0 0 2 2 0.19105886E+03 0.00000000E+00 -9 5 0 0.00000000E+00 0.00000000E+00 0.00000000E+00 0.00000000E+00 0.00000000E+00
  <mgrwgt>
 0.2825826800D-02 15 2 0
 0.345564547982480D+03 0.000000000000000D+00 0.000000000000000D+00 0.345564547982480D+03
 0.345564547982480D+03 0.000000000000000D+00 0.000000000000000D+00 -.345564547982480D+03
 0.345564547982480D+03 0.847133669854398D+02 0.303309036387575D+02 -.309343722355541D+03
 0.345564547982480D+03 -.847133669854398D+02 -.303309036387575D+02 0.309343722355541D+03
 0.000000000000000D+00 0.000000000000000D+00 0.000000000000000D+00 -.000000000000000D+00
 0.394399311278512D+03 0.000000000000000D+00 0.000000000000000D+00 0.394399311278512D+03
 0.612915839181426D+03 0.000000000000000D+00 0.000000000000000D+00 -.612915839181426D+03
 0.334078815693910D+03 -.634797083167915D+01 0.158056888803888D+02 -.309343722355541D+03
 0.382972727712900D+03 -.182325706809667D+03 -.459010702209930D+02 0.309343722355541D+03
 0.290263607053127D+03 0.188673677641346D+03 0.300953813406042D+02 -.218516527902914D+03
0.108820095076D-04 0.000000000000D+00 0.000000000000D+00 0.432168803793D-04 0.000000000000D+00 5 21 21 25 25 21 4 0.78847028D-01 0.35846464D-01 0.11941486D+06 0.11941486D+06 0.11941486D+06 0.11154528D+01 1 2 2 2 5 2 21 0.191274597204D-01 0.100000000000D+01
-.136025118845D-05 0.105663733023D-05 0.897360048847D-07 0.432168803793D-04 0.000000000000D+00 5 21 21 25 25 21 6 0.78847028D-01 0.35846464D-01 0.11941486D+06 0.11941486D+06 0.11941486D+06 0.11154528D+01 1 2 3 2 5 2 21 -.297488192615D-02 0.100000000000D+01
0.309122465643D-05 0.000000000000D+00 0.000000000000D+00 0.432168803793D-04 0.000000000000D+00 5 21 21 25 25 21 6 0.78847028D-01 0.35846464D-01 0.11941486D+06 0.11941486D+06 0.11941486D+06 0.11154528D+01 1 2 15 2 5 2 21 0.676053690536D-02 0.100000000000D+01
-.412351049443D-04 0.000000000000D+00 -.145312437005D-04 0.432168803793D-04 0.000000000000D+00 5 21 21 25 25 21 6 0.78847028D-01 0.70380359D-01 0.11941486D+06 0.11941486D+06 0.11941486D+06 0.11154528D+01 1 2 5 2 5 2 21 -.210754416829D-01 0.100000000000D+01
0.235324789473D-04 0.000000000000D+00 0.669991438035D-05 0.432168803793D-04 0.000000000000D+00 5 21 21 25 25 21 6 0.78847028D-01 0.35846464D-01 0.11941486D+06 0.11941486D+06 0.11941486D+06 0.11154528D+01 1 2 6 2 5 2 21 0.514657490412D-01 0.100000000000D+01
-.918493401519D-05 0.000000000000D+00 -.349421533779D-05 0.432168803793D-04 0.000000000000D+00 5 21 -2 25 25 -2 6 0.78847028D-01 0.70380359D-01 0.11941486D+06 0.11941486D+06 0.11941486D+06 0.11154528D+01 1 2 5 5 5 2 21 -.465616660100D-03 0.100000000000D+01
-.918493401519D-05 0.000000000000D+00 -.349421533779D-05 0.432168803793D-04 0.000000000000D+00 5 21 -4 25 25 -4 6 0.78847028D-01 0.70380359D-01 0.11941486D+06 0.11941486D+06 0.11941486D+06 0.11154528D+01 1 2 5 5 5 2 21 -.213747517699D-03 0.100000000000D+01
-.918493401519D-05 0.000000000000D+00 -.349421533779D-05 0.432168803793D-04 0.000000000000D+00 5 21 -1 25 25 -1 6 0.78847028D-01 0.70380359D-01 0.11941486D+06 0.11941486D+06 0.11941486D+06 0.11154528D+01 1 2 5 5 5 2 21 -.575850076233D-03 0.100000000000D+01
-.918493401519D-05 0.000000000000D+00 -.349421533779D-05 0.432168803793D-04 0.000000000000D+00 5 21 -3 25 25 -3 6 0.78847028D-01 0.70380359D-01 0.11941486D+06 0.11941486D+06 0.11941486D+06 0.11154528D+01 1 2 5 5 5 2 21 -.307276976961D-03 0.100000000000D+01
-.918493401519D-05 0.000000000000D+00 -.349421533779D-05 0.432168803793D-04 0.000000000000D+00 5 21 -5 25 25 -5 6 0.78847028D-01 0.70380359D-01 0.11941486D+06 0.11941486D+06 0.11941486D+06 0.11154528D+01 1 2 5 5 5 2 21 -.134527239795D-03 0.100000000000D+01
-.918493401519D-05 0.000000000000D+00 -.349421533779D-05 0.432168803793D-04 0.000000000000D+00 5 21 2 25 25 2 6 0.78847028D-01 0.70380359D-01 0.11941486D+06 0.11941486D+06 0.11941486D+06 0.11154528D+01 1 2 5 6 5 2 21 -.216166900541D-02 0.100000000000D+01
-.918493401519D-05 0.000000000000D+00 -.349421533779D-05 0.432168803793D-04 0.000000000000D+00 5 21 4 25 25 4 6 0.78847028D-01 0.70380359D-01 0.11941486D+06 0.11941486D+06 0.11941486D+06 0.11154528D+01 1 2 5 6 5 2 21 -.213747517699D-03 0.100000000000D+01
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Question information

Language:
English Edit question
Status:
Solved
For:
MadGraph5_aMC@NLO Edit question
Assignee:
No assignee Edit question
Solved by:
Peter Meiring
Solved:
2019-05-09
Last query:
2019-05-09
Last reply:
2019-05-09
Peter Meiring (pmeiring) said : #1

Dear MadGraph experts,

I may have found a possible issue; Below is (part of) the content of the run_xx_tag_1_debug.log in the process folder.
I'm however confused as to why it suddenly gives a problem regarding the fortran compiler. When I do gfortran --version, it outputs:
GNU Fortran (GCC) 4.9.3
Copyright (C) 2015 Free Software Foundation, Inc.

Cheers,
Peter Meiring

Traceback (most recent call last):
  File "/afs/cern.ch/work/p/pmeiring/private/ATLAS/MG5_aMC_v2_6_4/gghhnlo/bin/internal/extended_cmd.py", line 1501, in onecmd
    return self.onecmd_orig(line, **opt)
  File "/afs/cern.ch/work/p/pmeiring/private/ATLAS/MG5_aMC_v2_6_4/gghhnlo/bin/internal/extended_cmd.py", line 1450, in onecmd_orig
    return func(arg, **opt)
  File "/afs/cern.ch/work/p/pmeiring/private/ATLAS/MG5_aMC_v2_6_4/gghhnlo/bin/internal/common_run_interface.py", line 2140, in do_reweight
    reweight_cmd.import_command_file(path)
  File "/afs/cern.ch/work/p/pmeiring/private/ATLAS/MG5_aMC_v2_6_4/madgraph/interface/extended_cmd.py", line 1643, in import_command_file
    self.exec_cmd(line, precmd=True)
  File "/afs/cern.ch/work/p/pmeiring/private/ATLAS/MG5_aMC_v2_6_4/madgraph/interface/extended_cmd.py", line 1528, in exec_cmd
    stop = Cmd.onecmd_orig(current_interface, line, **opt)
  File "/afs/cern.ch/work/p/pmeiring/private/ATLAS/MG5_aMC_v2_6_4/madgraph/interface/extended_cmd.py", line 1450, in onecmd_orig
    return func(arg, **opt)
  File "/afs/cern.ch/work/p/pmeiring/private/ATLAS/MG5_aMC_v2_6_4/madgraph/various/misc.py", line 100, in f_with_no_logger
    out = f(self, *args, **opt)
  File "/afs/cern.ch/work/p/pmeiring/private/ATLAS/MG5_aMC_v2_6_4/madgraph/interface/reweight_interface.py", line 488, in do_launch
    self.compile()
  File "/afs/cern.ch/work/p/pmeiring/private/ATLAS/MG5_aMC_v2_6_4/madgraph/interface/reweight_interface.py", line 1698, in compile
    misc.compile(['allmatrix2py.so'], cwd=pdir, nb_core=nb_core)
  File "/afs/cern.ch/work/p/pmeiring/private/ATLAS/MG5_aMC_v2_6_4/madgraph/various/misc.py", line 527, in compile
    raise MadGraph5Error, error_text
MadGraph5Error: A compilation Error occurs when trying to compile /afs/cern.ch/work/p/pmeiring/private/ATLAS/MG5_aMC_v2_6_4/gghhnlo/rw_me_second/SubProcesses.
The compilation fails with the following output message:
    /cvmfs/sft.cern.ch/lcg/releases/LCG_87/gcc/4.9.3/x86_64-slc6/bin/gfortran -O -w -fbounds-check -fPIC -ffixed-line-length-132 -c MadLoopParamReader.f -o MadLoopParamReader.o -I /afs/cern.ch/work/p/pmeiring/private/ATLAS/MG5_aMC_v2_6_4/HEPTools/include -I /afs/cern.ch/work/p/pmeiring/private/ATLAS/MG5_aMC_v2_6_4/HEPTools/include
    /cvmfs/sft.cern.ch/lcg/releases/LCG_87/gcc/4.9.3/x86_64-slc6/bin/gfortran -O -w -fbounds-check -fPIC -ffixed-line-length-132 -c MadLoopCommons.f -o MadLoopCommons.o -I /afs/cern.ch/work/p/pmeiring/private/ATLAS/MG5_aMC_v2_6_4/HEPTools/include -I /afs/cern.ch/work/p/pmeiring/private/ATLAS/MG5_aMC_v2_6_4/HEPTools/include
    /cvmfs/sft.cern.ch/lcg/releases/LCG_87/gcc/4.9.3/x86_64-slc6/bin/gfortran -w -fPIC -ffixed-line-length-132 -O3 -c P0_gg_hhg/polynomial.f -o P0_gg_hhg/polynomial.o -I /afs/cern.ch/work/p/pmeiring/private/ATLAS/MG5_aMC_v2_6_4/HEPTools/include -I /afs/cern.ch/work/p/pmeiring/private/ATLAS/MG5_aMC_v2_6_4/HEPTools/include
    /cvmfs/sft.cern.ch/lcg/releases/LCG_87/gcc/4.9.3/x86_64-slc6/bin/gfortran -w -fPIC -ffixed-line-length-132 -O3 -c P2_gg_hh/polynomial.f -o P2_gg_hh/polynomial.o -I /afs/cern.ch/work/p/pmeiring/private/ATLAS/MG5_aMC_v2_6_4/HEPTools/include -I /afs/cern.ch/work/p/pmeiring/private/ATLAS/MG5_aMC_v2_6_4/HEPTools/include
    /cvmfs/sft.cern.ch/lcg/releases/LCG_87/gcc/4.9.3/x86_64-slc6/bin/gfortran -w -fPIC -ffixed-line-length-132 -O3 -c P3_gu_hhu/polynomial.f -o P3_gu_hhu/polynomial.o -I /afs/cern.ch/work/p/pmeiring/private/ATLAS/MG5_aMC_v2_6_4/HEPTools/include -I /afs/cern.ch/work/p/pmeiring/private/ATLAS/MG5_aMC_v2_6_4/HEPTools/include
    /cvmfs/sft.cern.ch/lcg/releases/LCG_87/gcc/4.9.3/x86_64-slc6/bin/gfortran -w -fPIC -ffixed-line-length-132 -O3 -c P4_gux_hhux/polynomial.f -o P4_gux_hhux/polynomial.o -I /afs/cern.ch/work/p/pmeiring/private/ATLAS/MG5_aMC_v2_6_4/HEPTools/include -I /afs/cern.ch/work/p/pmeiring/private/ATLAS/MG5_aMC_v2_6_4/HEPTools/include
    /cvmfs/sft.cern.ch/lcg/releases/LCG_87/gcc/4.9.3/x86_64-slc6/bin/gfortran -w -fPIC -ffixed-line-length-132 -O3 -c P5_uux_hhg/polynomial.f -o P5_uux_hhg/polynomial.o -I /afs/cern.ch/work/p/pmeiring/private/ATLAS/MG5_aMC_v2_6_4/HEPTools/include -I /afs/cern.ch/work/p/pmeiring/private/ATLAS/MG5_aMC_v2_6_4/HEPTools/include
    /cvmfs/sft.cern.ch/lcg/releases/LCG_87/gcc/4.9.3/x86_64-slc6/bin/gfortran -O -w -fbounds-check -fPIC -ffixed-line-length-132 -c P0_gg_hhg/loop_matrix.f -o P0_gg_hhg/loop_matrix.o -I /afs/cern.ch/work/p/pmeiring/private/ATLAS/MG5_aMC_v2_6_4/HEPTools/include -I /afs/cern.ch/work/p/pmeiring/private/ATLAS/MG5_aMC_v2_6_4/HEPTools/include
    /cvmfs/sft.cern.ch/lcg/releases/LCG_87/gcc/4.9.3/x86_64-slc6/bin/gfortran -O -w -fbounds-check -fPIC -ffixed-line-length-132 -c P2_gg_hh/loop_matrix.f -o P2_gg_hh/loop_matrix.o -I /afs/cern.ch/work/p/pmeiring/private/ATLAS/MG5_aMC_v2_6_4/HEPTools/include -I /afs/cern.ch/work/p/pmeiring/private/ATLAS/MG5_aMC_v2_6_4/HEPTools/include
    /cvmfs/sft.cern.ch/lcg/releases/LCG_87/gcc/4.9.3/x86_64-slc6/bin/gfortran -O -w -fbounds-check -fPIC -ffixed-line-length-132 -c P3_gu_hhu/loop_matrix.f -o P3_gu_hhu/loop_matrix.o -I /afs/cern.ch/work/p/pmeiring/private/ATLAS/MG5_aMC_v2_6_4/HEPTools/include -I /afs/cern.ch/work/p/pmeiring/private/ATLAS/MG5_aMC_v2_6_4/HEPTools/include
    /cvmfs/sft.cern.ch/lcg/releases/LCG_87/gcc/4.9.3/x86_64-slc6/bin/gfortran -O -w -fbounds-check -fPIC -ffixed-line-length-132 -c P4_gux_hhux/loop_matrix.f -o P4_gux_hhux/loop_matrix.o -I /afs/cern.ch/work/p/pmeiring/private/ATLAS/MG5_aMC_v2_6_4/HEPTools/include -I /afs/cern.ch/work/p/pmeiring/private/ATLAS/MG5_aMC_v2_6_4/HEPTools/include
    /cvmfs/sft.cern.ch/lcg/releases/LCG_87/gcc/4.9.3/x86_64-slc6/bin/gfortran -O -w -fbounds-check -fPIC -ffixed-line-length-132 -c P5_uux_hhg/loop_matrix.f -o P5_uux_hhg/loop_matrix.o -I /afs/cern.ch/work/p/pmeiring/private/ATLAS/MG5_aMC_v2_6_4/HEPTools/include -I /afs/cern.ch/work/p/pmeiring/private/ATLAS/MG5_aMC_v2_6_4/HEPTools/include
    /cvmfs/sft.cern.ch/lcg/releases/LCG_87/gcc/4.9.3/x86_64-slc6/bin/gfortran -O -w -fbounds-check -fPIC -ffixed-line-length-132 -c P0_gg_hhg/improve_ps.f -o P0_gg_hhg/improve_ps.o -I /afs/cern.ch/work/p/pmeiring/private/ATLAS/MG5_aMC_v2_6_4/HEPTools/include -I /afs/cern.ch/work/p/pmeiring/private/ATLAS/MG5_aMC_v2_6_4/HEPTools/include
    /cvmfs/sft.cern.ch/lcg/releases/LCG_87/gcc/4.9.3/x86_64-slc6/bin/gfortran -O -w -fbounds-check -fPIC -ffixed-line-length-132 -c P2_gg_hh/improve_ps.f -o P2_gg_hh/improve_ps.o -I /afs/cern.ch/work/p/pmeiring/private/ATLAS/MG5_aMC_v2_6_4/HEPTools/include -I /afs/cern.ch/work/p/pmeiring/private/ATLAS/MG5_aMC_v2_6_4/HEPTools/include
    /cvmfs/sft.cern.ch/lcg/releases/LCG_87/gcc/4.9.3/x86_64-slc6/bin/gfortran -O -w -fbounds-check -fPIC -ffixed-line-length-132 -c P3_gu_hhu/improve_ps.f -o P3_gu_hhu/improve_ps.o -I /afs/cern.ch/work/p/pmeiring/private/ATLAS/MG5_aMC_v2_6_4/HEPTools/include -I /afs/cern.ch/work/p/pmeiring/private/ATLAS/MG5_aMC_v2_6_4/HEPTools/include
    /cvmfs/sft.cern.ch/lcg/releases/LCG_87/gcc/4.9.3/x86_64-slc6/bin/gfortran -O -w -fbounds-check -fPIC -ffixed-line-length-132 -c P4_gux_hhux/improve_ps.f -o P4_gux_hhux/improve_ps.o -I /afs/cern.ch/work/p/pmeiring/private/ATLAS/MG5_aMC_v2_6_4/HEPTools/include -I /afs/cern.ch/work/p/pmeiring/private/ATLAS/MG5_aMC_v2_6_4/HEPTools/include
    /cvmfs/sft.cern.ch/lcg/releases/LCG_87/gcc/4.9.3/x86_64-slc6/bin/gfortran -O -w -fbounds-check -fPIC -ffixed-line-length-132 -c P5_uux_hhg/improve_ps.f -o P5_uux_hhg/improve_ps.o -I /afs/cern.ch/work/p/pmeiring/private/ATLAS/MG5_aMC_v2_6_4/HEPTools/include -I /afs/cern.ch/work/p/pmeiring/private/ATLAS/MG5_aMC_v2_6_4/HEPTools/include
    /cvmfs/sft.cern.ch/lcg/releases/LCG_87/gcc/4.9.3/x86_64-slc6/bin/gfortran -O -w -fbounds-check -fPIC -ffixed-line-length-132 -c P0_gg_hhg/CT_interface.f -o P0_gg_hhg/CT_interface.o -I /afs/cern.ch/work/p/pmeiring/private/ATLAS/MG5_aMC_v2_6_4/HEPTools/include -I /afs/cern.ch/work/p/pmeiring/private/ATLAS/MG5_aMC_v2_6_4/HEPTools/include
    /cvmfs/sft.cern.ch/lcg/releases/LCG_87/gcc/4.9.3/x86_64-slc6/bin/gfortran -O -w -fbounds-check -fPIC -ffixed-line-length-132 -c P2_gg_hh/CT_interface.f -o P2_gg_hh/CT_interface.o -I /afs/cern.ch/work/p/pmeiring/private/ATLAS/MG5_aMC_v2_6_4/HEPTools/include -I /afs/cern.ch/work/p/pmeiring/private/ATLAS/MG5_aMC_v2_6_4/HEPTools/include
    /cvmfs/sft.cern.ch/lcg/releases/LCG_87/gcc/4.9.3/x86_64-slc6/bin/gfortran -O -w -fbounds-check -fPIC -ffixed-line-length-132 -c P3_gu_hhu/CT_interface.f -o P3_gu_hhu/CT_interface.o -I /afs/cern.ch/work/p/pmeiring/private/ATLAS/MG5_aMC_v2_6_4/HEPTools/include -I /afs/cern.ch/work/p/pmeiring/private/ATLAS/MG5_aMC_v2_6_4/HEPTools/include
    /cvmfs/sft.cern.ch/lcg/releases/LCG_87/gcc/4.9.3/x86_64-slc6/bin/gfortran -O -w -fbounds-check -fPIC -ffixed-line-length-132 -c P4_gux_hhux/CT_interface.f -o P4_gux_hhux/CT_interface.o -I /afs/cern.ch/work/p/pmeiring/private/ATLAS/MG5_aMC_v2_6_4/HEPTools/include -I /afs/cern.ch/work/p/pmeiring/private/ATLAS/MG5_aMC_v2_6_4/HEPTools/include
    /cvmfs/sft.cern.ch/lcg/releases/LCG_87/gcc/4.9.3/x86_64-slc6/bin/gfortran -O -w -fbounds-check -fPIC -ffixed-line-length-132 -c P5_uux_hhg/CT_interface.f -o P5_uux_hhg/CT_interface.o -I /afs/cern.ch/work/p/pmeiring/private/ATLAS/MG5_aMC_v2_6_4/HEPTools/include -I /afs/cern.ch/work/p/pmeiring/private/ATLAS/MG5_aMC_v2_6_4/HEPTools/include
    /cvmfs/sft.cern.ch/lcg/releases/LCG_87/gcc/4.9.3/x86_64-slc6/bin/gfortran -O -w -fbounds-check -fPIC -ffixed-line-length-132 -c P0_gg_hhg/loop_num.f -o P0_gg_hhg/loop_num.o -I /afs/cern.ch/work/p/pmeiring/private/ATLAS/MG5_aMC_v2_6_4/HEPTools/include -I /afs/cern.ch/work/p/pmeiring/private/ATLAS/MG5_aMC_v2_6_4/HEPTools/include
    /cvmfs/sft.cern.ch/lcg/releases/LCG_87/gcc/4.9.3/x86_64-slc6/bin/gfortran -O -w -fbounds-check -fPIC -ffixed-line-length-132 -c P2_gg_hh/loop_num.f -o P2_gg_hh/loop_num.o -I /afs/cern.ch/work/p/pmeiring/private/ATLAS/MG5_aMC_v2_6_4/HEPTools/include -I /afs/cern.ch/work/p/pmeiring/private/ATLAS/MG5_aMC_v2_6_4/HEPTools/include
    /cvmfs/sft.cern.ch/lcg/releases/LCG_87/gcc/4.9.3/x86_64-slc6/bin/gfortran -O -w -fbounds-check -fPIC -ffixed-line-length-132 -c P3_gu_hhu/loop_num.f -o P3_gu_hhu/loop_num.o -I /afs/cern.ch/work/p/pmeiring/private/ATLAS/MG5_aMC_v2_6_4/HEPTools/include -I /afs/cern.ch/work/p/pmeiring/private/ATLAS/MG5_aMC_v2_6_4/HEPTools/include
    /cvmfs/sft.cern.ch/lcg/releases/LCG_87/gcc/4.9.3/x86_64-slc6/bin/gfortran -O -w -fbounds-check -fPIC -ffixed-line-length-132 -c P4_gux_hhux/loop_num.f -o P4_gux_hhux/loop_num.o -I /afs/cern.ch/work/p/pmeiring/private/ATLAS/MG5_aMC_v2_6_4/HEPTools/include -I /afs/cern.ch/work/p/pmeiring/private/ATLAS/MG5_aMC_v2_6_4/HEPTools/include
    /cvmfs/sft.cern.ch/lcg/releases/LCG_87/gcc/4.9.3/x86_64-slc6/bin/gfortran -O -w -fbounds-check -fPIC -ffixed-line-length-132 -c P5_uux_hhg/loop_num.f -o P5_uux_hhg/loop_num.o -I /afs/cern.ch/work/p/pmeiring/private/ATLAS/MG5_aMC_v2_6_4/HEPTools/include -I /afs/cern.ch/work/p/pmeiring/private/ATLAS/MG5_aMC_v2_6_4/HEPTools/include
    /cvmfs/sft.cern.ch/lcg/releases/LCG_87/gcc/4.9.3/x86_64-slc6/bin/gfortran -O -w -fbounds-check -fPIC -ffixed-line-length-132 -c P0_gg_hhg/helas_calls_ampb_1.f -o P0_gg_hhg/helas_calls_ampb_1.o -I /afs/cern.ch/work/p/pmeiring/private/ATLAS/MG5_aMC_v2_6_4/HEPTools/include -I /afs/cern.ch/work/p/pmeiring/private/ATLAS/MG5_aMC_v2_6_4/HEPTools/include
    /cvmfs/sft.cern.ch/lcg/releases/LCG_87/gcc/4.9.3/x86_64-slc6/bin/gfortran -O -w -fbounds-check -fPIC -ffixed-line-length-132 -c P2_gg_hh/helas_calls_ampb_1.f -o P2_gg_hh/helas_calls_ampb_1.o -I /afs/cern.ch/work/p/pmeiring/private/ATLAS/MG5_aMC_v2_6_4/HEPTools/include -I /afs/cern.ch/work/p/pmeiring/private/ATLAS/MG5_aMC_v2_6_4/HEPTools/include
    /cvmfs/sft.cern.ch/lcg/releases/LCG_87/gcc/4.9.3/x86_64-slc6/bin/gfortran -O -w -fbounds-check -fPIC -ffixed-line-length-132 -c P3_gu_hhu/helas_calls_ampb_1.f -o P3_gu_hhu/helas_calls_ampb_1.o -I /afs/cern.ch/work/p/pmeiring/private/ATLAS/MG5_aMC_v2_6_4/HEPTools/include -I /afs/cern.ch/work/p/pmeiring/private/ATLAS/MG5_aMC_v2_6_4/HEPTools/include
    /cvmfs/sft.cern.ch/lcg/releases/LCG_87/gcc/4.9.3/x86_64-slc6/bin/gfortran -O -w -fbounds-check -fPIC -ffixed-line-length-132 -c P4_gux_hhux/helas_calls_ampb_1.f -o P4_gux_hhux/helas_calls_ampb_1.o -I /afs/cern.ch/work/p/pmeiring/private/ATLAS/MG5_aMC_v2_6_4/HEPTools/include -I /afs/cern.ch/work/p/pmeiring/private/ATLAS/MG5_aMC_v2_6_4/HEPTools/include
    /cvmfs/sft.cern.ch/lcg/releases/LCG_87/gcc/4.9.3/x86_64-slc6/bin/gfortran -O -w -fbounds-check -fPIC -ffixed-line-length-132 -c P5_uux_hhg/helas_calls_ampb_1.f -o P5_uux_hhg/helas_calls_ampb_1.o -I /afs/cern.ch/work/p/pmeiring/private/ATLAS/MG5_aMC_v2_6_4/HEPTools/include -I /afs/cern.ch/work/p/pmeiring/private/ATLAS/MG5_aMC_v2_6_4/HEPTools/include
    /cvmfs/sft.cern.ch/lcg/releases/LCG_87/gcc/4.9.3/x86_64-slc6/bin/gfortran -O -w -fbounds-check -fPIC -ffixed-line-length-132 -c P0_gg_hhg/mp_compute_loop_coefs.f -o P0_gg_hhg/mp_compute_loop_coefs.o -I /afs/cern.ch/work/p/pmeiring/private/ATLAS/MG5_aMC_v2_6_4/HEPTools/include -I /afs/cern.ch/work/p/pmeiring/private/ATLAS/MG5_aMC_v2_6_4/HEPTools/include
    /cvmfs/sft.cern.ch/lcg/releases/LCG_87/gcc/4.9.3/x86_64-slc6/bin/gfortran -O -w -fbounds-check -fPIC -ffixed-line-length-132 -c P2_gg_hh/mp_compute_loop_coefs.f -o P2_gg_hh/mp_compute_loop_coefs.o -I /afs/cern.ch/work/p/pmeiring/private/ATLAS/MG5_aMC_v2_6_4/HEPTools/include -I /afs/cern.ch/work/p/pmeiring/private/ATLAS/MG5_aMC_v2_6_4/HEPTools/include
    /cvmfs/sft.cern.ch/lcg/releases/LCG_87/gcc/4.9.3/x86_64-slc6/bin/gfortran -O -w -fbounds-check -fPIC -ffixed-line-length-132 -c P3_gu_hhu/mp_compute_loop_coefs.f -o P3_gu_hhu/mp_compute_loop_coefs.o -I /afs/cern.ch/work/p/pmeiring/private/ATLAS/MG5_aMC_v2_6_4/HEPTools/include -I /afs/cern.ch/work/p/pmeiring/private/ATLAS/MG5_aMC_v2_6_4/HEPTools/include
    /cvmfs/sft.cern.ch/lcg/releases/LCG_87/gcc/4.9.3/x86_64-slc6/bin/gfortran -O -w -fbounds-check -fPIC -ffixed-line-length-132 -c P4_gux_hhux/mp_compute_loop_coefs.f -o P4_gux_hhux/mp_compute_loop_coefs.o -I /afs/cern.ch/work/p/pmeiring/private/ATLAS/MG5_aMC_v2_6_4/HEPTools/include -I /afs/cern.ch/work/p/pmeiring/private/ATLAS/MG5_aMC_v2_6_4/HEPTools/include
    /cvmfs/sft.cern.ch/lcg/releases/LCG_87/gcc/4.9.3/x86_64-slc6/bin/gfortran -O -w -fbounds-check -fPIC -ffixed-line-length-132 -c P5_uux_hhg/mp_compute_loop_coefs.f -o P5_uux_hhg/mp_compute_loop_coefs.o -I /afs/cern.ch/work/p/pmeiring/private/ATLAS/MG5_aMC_v2_6_4/HEPTools/include -I /afs/cern.ch/work/p/pmeiring/private/ATLAS/MG5_aMC_v2_6_4/HEPTools/include
    /cvmfs/sft.cern.ch/lcg/releases/LCG_87/gcc/4.9.3/x86_64-slc6/bin/gfortran -O -w -fbounds-check -fPIC -ffixed-line-length-132 -c P0_gg_hhg/mp_helas_calls_ampb_1.f -o P0_gg_hhg/mp_helas_calls_ampb_1.o -I /afs/cern.ch/work/p/pmeiring/private/ATLAS/MG5_aMC_v2_6_4/HEPTools/include -I /afs/cern.ch/work/p/pmeiring/private/ATLAS/MG5_aMC_v2_6_4/HEPTools/include
    /cvmfs/sft.cern.ch/lcg/releases/LCG_87/gcc/4.9.3/x86_64-slc6/bin/gfortran -O -w -fbounds-check -fPIC -ffixed-line-length-132 -c P2_gg_hh/mp_helas_calls_ampb_1.f -o P2_gg_hh/mp_helas_calls_ampb_1.o -I /afs/cern.ch/work/p/pmeiring/private/ATLAS/MG5_aMC_v2_6_4/HEPTools/include -I /afs/cern.ch/work/p/pmeiring/private/ATLAS/MG5_aMC_v2_6_4/HEPTools/include
    /cvmfs/sft.cern.ch/lcg/releases/LCG_87/gcc/4.9.3/x86_64-slc6/bin/gfortran -O -w -fbounds-check -fPIC -ffixed-line-length-132 -c P3_gu_hhu/mp_helas_calls_ampb_1.f -o P3_gu_hhu/mp_helas_calls_ampb_1.o -I /afs/cern.ch/work/p/pmeiring/private/ATLAS/MG5_aMC_v2_6_4/HEPTools/include -I /afs/cern.ch/work/p/pmeiring/private/ATLAS/MG5_aMC_v2_6_4/HEPTools/include
    /cvmfs/sft.cern.ch/lcg/releases/LCG_87/gcc/4.9.3/x86_64-slc6/bin/gfortran -O -w -fbounds-check -fPIC -ffixed-line-length-132 -c P4_gux_hhux/mp_helas_calls_ampb_1.f -o P4_gux_hhux/mp_helas_calls_ampb_1.o -I /afs/cern.ch/work/p/pmeiring/private/ATLAS/MG5_aMC_v2_6_4/HEPTools/include -I /afs/cern.ch/work/p/pmeiring/private/ATLAS/MG5_aMC_v2_6_4/HEPTools/include
    /cvmfs/sft.cern.ch/lcg/releases/LCG_87/gcc/4.9.3/x86_64-slc6/bin/gfortran -O -w -fbounds-check -fPIC -ffixed-line-length-132 -c P5_uux_hhg/mp_helas_calls_ampb_1.f -o P5_uux_hhg/mp_helas_calls_ampb_1.o -I /afs/cern.ch/work/p/pmeiring/private/ATLAS/MG5_aMC_v2_6_4/HEPTools/include -I /afs/cern.ch/work/p/pmeiring/private/ATLAS/MG5_aMC_v2_6_4/HEPTools/include
    /cvmfs/sft.cern.ch/lcg/releases/LCG_87/gcc/4.9.3/x86_64-slc6/bin/gfortran -O -w -fbounds-check -fPIC -ffixed-line-length-132 -c P0_gg_hhg/coef_construction_1.f -o P0_gg_hhg/coef_construction_1.o -I /afs/cern.ch/work/p/pmeiring/private/ATLAS/MG5_aMC_v2_6_4/HEPTools/include -I /afs/cern.ch/work/p/pmeiring/private/ATLAS/MG5_aMC_v2_6_4/HEPTools/include
    /cvmfs/sft.cern.ch/lcg/releases/LCG_87/gcc/4.9.3/x86_64-slc6/bin/gfortran -O -w -fbounds-check -fPIC -ffixed-line-length-132 -c P2_gg_hh/coef_construction_1.f -o P2_gg_hh/coef_construction_1.o -I /afs/cern.ch/work/p/pmeiring/private/ATLAS/MG5_aMC_v2_6_4/HEPTools/include -I /afs/cern.ch/work/p/pmeiring/private/ATLAS/MG5_aMC_v2_6_4/HEPTools/include
    /cvmfs/sft.cern.ch/lcg/releases/LCG_87/gcc/4.9.3/x86_64-slc6/bin/gfortran -O -w -fbounds-check -fPIC -ffixed-line-length-132 -c P3_gu_hhu/coef_construction_1.f -o P3_gu_hhu/coef_construction_1.o -I /afs/cern.ch/work/p/pmeiring/private/ATLAS/MG5_aMC_v2_6_4/HEPTools/include -I /afs/cern.ch/work/p/pmeiring/private/ATLAS/MG5_aMC_v2_6_4/HEPTools/include
    /cvmfs/sft.cern.ch/lcg/releases/LCG_87/gcc/4.9.3/x86_64-slc6/bin/gfortran -O -w -fbounds-check -fPIC -ffixed-line-length-132 -c P4_gux_hhux/coef_construction_1.f -o P4_gux_hhux/coef_construction_1.o -I /afs/cern.ch/work/p/pmeiring/private/ATLAS/MG5_aMC_v2_6_4/HEPTools/include -I /afs/cern.ch/work/p/pmeiring/private/ATLAS/MG5_aMC_v2_6_4/HEPTools/include
    /cvmfs/sft.cern.ch/lcg/releases/LCG_87/gcc/4.9.3/x86_64-slc6/bin/gfortran -O -w -fbounds-check -fPIC -ffixed-line-length-132 -c P5_uux_hhg/coef_construction_1.f -o P5_uux_hhg/coef_construction_1.o -I /afs/cern.ch/work/p/pmeiring/private/ATLAS/MG5_aMC_v2_6_4/HEPTools/include -I /afs/cern.ch/work/p/pmeiring/private/ATLAS/MG5_aMC_v2_6_4/HEPTools/include
    /cvmfs/sft.cern.ch/lcg/releases/LCG_87/gcc/4.9.3/x86_64-slc6/bin/gfortran -O -w -fbounds-check -fPIC -ffixed-line-length-132 -c P0_gg_hhg/loop_CT_calls_1.f -o P0_gg_hhg/loop_CT_calls_1.o -I /afs/cern.ch/work/p/pmeiring/private/ATLAS/MG5_aMC_v2_6_4/HEPTools/include -I /afs/cern.ch/work/p/pmeiring/private/ATLAS/MG5_aMC_v2_6_4/HEPTools/include
    /cvmfs/sft.cern.ch/lcg/releases/LCG_87/gcc/4.9.3/x86_64-slc6/bin/gfortran -O -w -fbounds-check -fPIC -ffixed-line-length-132 -c P2_gg_hh/loop_CT_calls_1.f -o P2_gg_hh/loop_CT_calls_1.o -I /afs/cern.ch/work/p/pmeiring/private/ATLAS/MG5_aMC_v2_6_4/HEPTools/include -I /afs/cern.ch/work/p/pmeiring/private/ATLAS/MG5_aMC_v2_6_4/HEPTools/include
    /cvmfs/sft.cern.ch/lcg/releases/LCG_87/gcc/4.9.3/x86_64-slc6/bin/gfortran -O -w -fbounds-check -fPIC -ffixed-line-length-132 -c P3_gu_hhu/loop_CT_calls_1.f -o P3_gu_hhu/loop_CT_calls_1.o -I /afs/cern.ch/work/p/pmeiring/private/ATLAS/MG5_aMC_v2_6_4/HEPTools/include -I /afs/cern.ch/work/p/pmeiring/private/ATLAS/MG5_aMC_v2_6_4/HEPTools/include
    /cvmfs/sft.cern.ch/lcg/releases/LCG_87/gcc/4.9.3/x86_64-slc6/bin/gfortran -O -w -fbounds-check -fPIC -ffixed-line-length-132 -c P4_gux_hhux/loop_CT_calls_1.f -o P4_gux_hhux/loop_CT_calls_1.o -I /afs/cern.ch/work/p/pmeiring/private/ATLAS/MG5_aMC_v2_6_4/HEPTools/include -I /afs/cern.ch/work/p/pmeiring/private/ATLAS/MG5_aMC_v2_6_4/HEPTools/include
    /cvmfs/sft.cern.ch/lcg/releases/LCG_87/gcc/4.9.3/x86_64-slc6/bin/gfortran -O -w -fbounds-check -fPIC -ffixed-line-length-132 -c P5_uux_hhg/loop_CT_calls_1.f -o P5_uux_hhg/loop_CT_calls_1.o -I /afs/cern.ch/work/p/pmeiring/private/ATLAS/MG5_aMC_v2_6_4/HEPTools/include -I /afs/cern.ch/work/p/pmeiring/private/ATLAS/MG5_aMC_v2_6_4/HEPTools/include
    /cvmfs/sft.cern.ch/lcg/releases/LCG_87/gcc/4.9.3/x86_64-slc6/bin/gfortran -O -w -fbounds-check -fPIC -ffixed-line-length-132 -c P0_gg_hhg/mp_coef_construction_1.f -o P0_gg_hhg/mp_coef_construction_1.o -I /afs/cern.ch/work/p/pmeiring/private/ATLAS/MG5_aMC_v2_6_4/HEPTools/include -I /afs/cern.ch/work/p/pmeiring/private/ATLAS/MG5_aMC_v2_6_4/HEPTools/include
    /cvmfs/sft.cern.ch/lcg/releases/LCG_87/gcc/4.9.3/x86_64-slc6/bin/gfortran -O -w -fbounds-check -fPIC -ffixed-line-length-132 -c P2_gg_hh/mp_coef_construction_1.f -o P2_gg_hh/mp_coef_construction_1.o -I /afs/cern.ch/work/p/pmeiring/private/ATLAS/MG5_aMC_v2_6_4/HEPTools/include -I /afs/cern.ch/work/p/pmeiring/private/ATLAS/MG5_aMC_v2_6_4/HEPTools/include
    /cvmfs/sft.cern.ch/lcg/releases/LCG_87/gcc/4.9.3/x86_64-slc6/bin/gfortran -O -w -fbounds-check -fPIC -ffixed-line-length-132 -c P3_gu_hhu/mp_coef_construction_1.f -o P3_gu_hhu/mp_coef_construction_1.o -I /afs/cern.ch/work/p/pmeiring/private/ATLAS/MG5_aMC_v2_6_4/HEPTools/include -I /afs/cern.ch/work/p/pmeiring/private/ATLAS/MG5_aMC_v2_6_4/HEPTools/include
    /cvmfs/sft.cern.ch/lcg/releases/LCG_87/gcc/4.9.3/x86_64-slc6/bin/gfortran -O -w -fbounds-check -fPIC -ffixed-line-length-132 -c P4_gux_hhux/mp_coef_construction_1.f -o P4_gux_hhux/mp_coef_construction_1.o -I /afs/cern.ch/work/p/pmeiring/private/ATLAS/MG5_aMC_v2_6_4/HEPTools/include -I /afs/cern.ch/work/p/pmeiring/private/ATLAS/MG5_aMC_v2_6_4/HEPTools/include
    /cvmfs/sft.cern.ch/lcg/releases/LCG_87/gcc/4.9.3/x86_64-slc6/bin/gfortran -O -w -fbounds-check -fPIC -ffixed-line-length-132 -c P5_uux_hhg/mp_coef_construction_1.f -o P5_uux_hhg/mp_coef_construction_1.o -I /afs/cern.ch/work/p/pmeiring/private/ATLAS/MG5_aMC_v2_6_4/HEPTools/include -I /afs/cern.ch/work/p/pmeiring/private/ATLAS/MG5_aMC_v2_6_4/HEPTools/include
    /cvmfs/sft.cern.ch/lcg/releases/LCG_87/gcc/4.9.3/x86_64-slc6/bin/gfortran -O -w -fbounds-check -fPIC -ffixed-line-length-132 -c P0_gg_hhg/TIR_interface.f -o P0_gg_hhg/TIR_interface.o -I /afs/cern.ch/work/p/pmeiring/private/ATLAS/MG5_aMC_v2_6_4/HEPTools/include -I /afs/cern.ch/work/p/pmeiring/private/ATLAS/MG5_aMC_v2_6_4/HEPTools/include
    /cvmfs/sft.cern.ch/lcg/releases/LCG_87/gcc/4.9.3/x86_64-slc6/bin/gfortran -O -w -fbounds-check -fPIC -ffixed-line-length-132 -c P2_gg_hh/TIR_interface.f -o P2_gg_hh/TIR_interface.o -I /afs/cern.ch/work/p/pmeiring/private/ATLAS/MG5_aMC_v2_6_4/HEPTools/include -I /afs/cern.ch/work/p/pmeiring/private/ATLAS/MG5_aMC_v2_6_4/HEPTools/include
    /cvmfs/sft.cern.ch/lcg/releases/LCG_87/gcc/4.9.3/x86_64-slc6/bin/gfortran -O -w -fbounds-check -fPIC -ffixed-line-length-132 -c P3_gu_hhu/TIR_interface.f -o P3_gu_hhu/TIR_interface.o -I /afs/cern.ch/work/p/pmeiring/private/ATLAS/MG5_aMC_v2_6_4/HEPTools/include -I /afs/cern.ch/work/p/pmeiring/private/ATLAS/MG5_aMC_v2_6_4/HEPTools/include
    /cvmfs/sft.cern.ch/lcg/releases/LCG_87/gcc/4.9.3/x86_64-slc6/bin/gfortran -O -w -fbounds-check -fPIC -ffixed-line-length-132 -c P4_gux_hhux/TIR_interface.f -o P4_gux_hhux/TIR_interface.o -I /afs/cern.ch/work/p/pmeiring/private/ATLAS/MG5_aMC_v2_6_4/HEPTools/include -I /afs/cern.ch/work/p/pmeiring/private/ATLAS/MG5_aMC_v2_6_4/HEPTools/include
    /cvmfs/sft.cern.ch/lcg/releases/LCG_87/gcc/4.9.3/x86_64-slc6/bin/gfortran -O -w -fbounds-check -fPIC -ffixed-line-length-132 -c P5_uux_hhg/TIR_interface.f -o P5_uux_hhg/TIR_interface.o -I /afs/cern.ch/work/p/pmeiring/private/ATLAS/MG5_aMC_v2_6_4/HEPTools/include -I /afs/cern.ch/work/p/pmeiring/private/ATLAS/MG5_aMC_v2_6_4/HEPTools/include
    /cvmfs/sft.cern.ch/lcg/releases/LCG_87/gcc/4.9.3/x86_64-slc6/bin/gfortran -O -w -fbounds-check -fPIC -ffixed-line-length-132 -c P0_gg_hhg/COLLIER_interface.f -o P0_gg_hhg/COLLIER_interface.o -I /afs/cern.ch/work/p/pmeiring/private/ATLAS/MG5_aMC_v2_6_4/HEPTools/include -I /afs/cern.ch/work/p/pmeiring/private/ATLAS/MG5_aMC_v2_6_4/HEPTools/include
    /cvmfs/sft.cern.ch/lcg/releases/LCG_87/gcc/4.9.3/x86_64-slc6/bin/gfortran -O -w -fbounds-check -fPIC -ffixed-line-length-132 -c P2_gg_hh/COLLIER_interface.f -o P2_gg_hh/COLLIER_interface.o -I /afs/cern.ch/work/p/pmeiring/private/ATLAS/MG5_aMC_v2_6_4/HEPTools/include -I /afs/cern.ch/work/p/pmeiring/private/ATLAS/MG5_aMC_v2_6_4/HEPTools/include
    /cvmfs/sft.cern.ch/lcg/releases/LCG_87/gcc/4.9.3/x86_64-slc6/bin/gfortran -O -w -fbounds-check -fPIC -ffixed-line-length-132 -c P3_gu_hhu/COLLIER_interface.f -o P3_gu_hhu/COLLIER_interface.o -I /afs/cern.ch/work/p/pmeiring/private/ATLAS/MG5_aMC_v2_6_4/HEPTools/include -I /afs/cern.ch/work/p/pmeiring/private/ATLAS/MG5_aMC_v2_6_4/HEPTools/include
    /cvmfs/sft.cern.ch/lcg/releases/LCG_87/gcc/4.9.3/x86_64-slc6/bin/gfortran -O -w -fbounds-check -fPIC -ffixed-line-length-132 -c P4_gux_hhux/COLLIER_interface.f -o P4_gux_hhux/COLLIER_interface.o -I /afs/cern.ch/work/p/pmeiring/private/ATLAS/MG5_aMC_v2_6_4/HEPTools/include -I /afs/cern.ch/work/p/pmeiring/private/ATLAS/MG5_aMC_v2_6_4/HEPTools/include
    /cvmfs/sft.cern.ch/lcg/releases/LCG_87/gcc/4.9.3/x86_64-slc6/bin/gfortran -O -w -fbounds-check -fPIC -ffixed-line-length-132 -c P5_uux_hhg/COLLIER_interface.f -o P5_uux_hhg/COLLIER_interface.o -I /afs/cern.ch/work/p/pmeiring/private/ATLAS/MG5_aMC_v2_6_4/HEPTools/include -I /afs/cern.ch/work/p/pmeiring/private/ATLAS/MG5_aMC_v2_6_4/HEPTools/include
    /cvmfs/sft.cern.ch/lcg/releases/LCG_87/gcc/4.9.3/x86_64-slc6/bin/gfortran -O -w -fbounds-check -fPIC -ffixed-line-length-132 -c P0_gg_hhg/compute_color_flows.f -o P0_gg_hhg/compute_color_flows.o -I /afs/cern.ch/work/p/pmeiring/private/ATLAS/MG5_aMC_v2_6_4/HEPTools/include -I /afs/cern.ch/work/p/pmeiring/private/ATLAS/MG5_aMC_v2_6_4/HEPTools/include
    /cvmfs/sft.cern.ch/lcg/releases/LCG_87/gcc/4.9.3/x86_64-slc6/bin/gfortran -O -w -fbounds-check -fPIC -ffixed-line-length-132 -c P2_gg_hh/compute_color_flows.f -o P2_gg_hh/compute_color_flows.o -I /afs/cern.ch/work/p/pmeiring/private/ATLAS/MG5_aMC_v2_6_4/HEPTools/include -I /afs/cern.ch/work/p/pmeiring/private/ATLAS/MG5_aMC_v2_6_4/HEPTools/include
    /cvmfs/sft.cern.ch/lcg/releases/LCG_87/gcc/4.9.3/x86_64-slc6/bin/gfortran -O -w -fbounds-check -fPIC -ffixed-line-length-132 -c P3_gu_hhu/compute_color_flows.f -o P3_gu_hhu/compute_color_flows.o -I /afs/cern.ch/work/p/pmeiring/private/ATLAS/MG5_aMC_v2_6_4/HEPTools/include -I /afs/cern.ch/work/p/pmeiring/private/ATLAS/MG5_aMC_v2_6_4/HEPTools/include
    /cvmfs/sft.cern.ch/lcg/releases/LCG_87/gcc/4.9.3/x86_64-slc6/bin/gfortran -O -w -fbounds-check -fPIC -ffixed-line-length-132 -c P4_gux_hhux/compute_color_flows.f -o P4_gux_hhux/compute_color_flows.o -I /afs/cern.ch/work/p/pmeiring/private/ATLAS/MG5_aMC_v2_6_4/HEPTools/include -I /afs/cern.ch/work/p/pmeiring/private/ATLAS/MG5_aMC_v2_6_4/HEPTools/include
    /cvmfs/sft.cern.ch/lcg/releases/LCG_87/gcc/4.9.3/x86_64-slc6/bin/gfortran -O -w -fbounds-check -fPIC -ffixed-line-length-132 -c P5_uux_hhg/compute_color_flows.f -o P5_uux_hhg/compute_color_flows.o -I /afs/cern.ch/work/p/pmeiring/private/ATLAS/MG5_aMC_v2_6_4/HEPTools/include -I /afs/cern.ch/work/p/pmeiring/private/ATLAS/MG5_aMC_v2_6_4/HEPTools/include
    ar rcs libMadLoop.a MadLoopParamReader.o MadLoopCommons.o P0_gg_hhg/polynomial.o P2_gg_hh/polynomial.o P3_gu_hhu/polynomial.o P4_gux_hhux/polynomial.o P5_uux_hhg/polynomial.o P0_gg_hhg/loop_matrix.o P2_gg_hh/loop_matrix.o P3_gu_hhu/loop_matrix.o P4_gux_hhux/loop_matrix.o P5_uux_hhg/loop_matrix.o P0_gg_hhg/improve_ps.o P2_gg_hh/improve_ps.o P3_gu_hhu/improve_ps.o P4_gux_hhux/improve_ps.o P5_uux_hhg/improve_ps.o P0_gg_hhg/CT_interface.o P2_gg_hh/CT_interface.o P3_gu_hhu/CT_interface.o P4_gux_hhux/CT_interface.o P5_uux_hhg/CT_interface.o P0_gg_hhg/loop_num.o P2_gg_hh/loop_num.o P3_gu_hhu/loop_num.o P4_gux_hhux/loop_num.o P5_uux_hhg/loop_num.o P0_gg_hhg/helas_calls_ampb_1.o P2_gg_hh/helas_calls_ampb_1.o P3_gu_hhu/helas_calls_ampb_1.o P4_gux_hhux/helas_calls_ampb_1.o P5_uux_hhg/helas_calls_ampb_1.o P0_gg_hhg/mp_compute_loop_coefs.o P2_gg_hh/mp_compute_loop_coefs.o P3_gu_hhu/mp_compute_loop_coefs.o P4_gux_hhux/mp_compute_loop_coefs.o P5_uux_hhg/mp_compute_loop_coefs.o P0_gg_hhg/mp_helas_calls_ampb_1.o P2_gg_hh/mp_helas_calls_ampb_1.o P3_gu_hhu/mp_helas_calls_ampb_1.o P4_gux_hhux/mp_helas_calls_ampb_1.o P5_uux_hhg/mp_helas_calls_ampb_1.o P0_gg_hhg/coef_construction_1.o P2_gg_hh/coef_construction_1.o P3_gu_hhu/coef_construction_1.o P4_gux_hhux/coef_construction_1.o P5_uux_hhg/coef_construction_1.o P0_gg_hhg/loop_CT_calls_1.o P2_gg_hh/loop_CT_calls_1.o P3_gu_hhu/loop_CT_calls_1.o P4_gux_hhux/loop_CT_calls_1.o P5_uux_hhg/loop_CT_calls_1.o P0_gg_hhg/mp_coef_construction_1.o P2_gg_hh/mp_coef_construction_1.o P3_gu_hhu/mp_coef_construction_1.o P4_gux_hhux/mp_coef_construction_1.o P5_uux_hhg/mp_coef_construction_1.o P0_gg_hhg/TIR_interface.o P2_gg_hh/TIR_interface.o P3_gu_hhu/TIR_interface.o P4_gux_hhux/TIR_interface.o P5_uux_hhg/TIR_interface.o P0_gg_hhg/COLLIER_interface.o P2_gg_hh/COLLIER_interface.o P3_gu_hhu/COLLIER_interface.o P4_gux_hhux/COLLIER_interface.o P5_uux_hhg/COLLIER_interface.o P0_gg_hhg/compute_color_flows.o P2_gg_hh/compute_color_flows.o P3_gu_hhu/compute_color_flows.o P4_gux_hhux/compute_color_flows.o P5_uux_hhg/compute_color_flows.o
    mv libMadLoop.a ../lib/libMadLoop.a
    touch __init__.py
    f2py ../lib/libMadLoop.a -m allmatrix2py -c all_matrix.f P0_gg_hhg/f2py_wrapper.f P2_gg_hh/f2py_wrapper.f P3_gu_hhu/f2py_wrapper.f P4_gux_hhux/f2py_wrapper.f P5_uux_hhg/f2py_wrapper.f --fcompiler=/cvmfs/sft.cern.ch/lcg/releases/LCG_87/gcc/4.9.3/x86_64-slc6/bin/gfortran -L../lib/ -ldhelas -lmodel -L../lib/ -lcts -liregi -L/afs/cern.ch/work/p/pmeiring/private/ATLAS/MG5_aMC_v2_6_4/HEPTools/lib/ -lninja -L/afs/cern.ch/work/p/pmeiring/private/ATLAS/MG5_aMC_v2_6_4/HEPTools/lib/ -lavh_olo -L/afs/cern.ch/work/p/pmeiring/private/ATLAS/MG5_aMC_v2_6_4/HEPTools/lib/ -lcollier -lstdc++
    Unknown vendor: "/cvmfs/sft.cern.ch/lcg/releases/LCG_87/gcc/4.9.3/x86_64-slc6/bin/gfortran"
    running build
    running config_cc
    unifing config_cc, config, build_clib, build_ext, build commands --compiler options
    running config_fc
    unifing config_fc, config, build_clib, build_ext, build commands --fcompiler options
    running build_src
    build_src
    building extension "allmatrix2py" sources
    f2py options: []
    f2py:> /tmp/pmeiring/tmpd2u7Nd/src.linux-x86_64-2.7/allmatrix2pymodule.c
    creating /tmp/pmeiring/tmpd2u7Nd/src.linux-x86_64-2.7
    updatevars:pdgs: attempt to change 'dimension(npdg)' to 'dimension(*)'. Ignoring.
    updatevars:p: attempt to change 'dimension(0:3,npdg)' to 'dimension(*)'. Ignoring.
    analyzevars: character array "character*20 prefix(17)" is considered as "character prefix(17,20)"; "intent(c)" is forced.
    analyzevars: character array "character*20 pref(17)" is considered as "character pref(17,20)"; "intent(c)" is forced.
    analyzevars: character array "character*20 chosen_loop_so_indices(1)" is considered as "character chosen_loop_so_indices(1,20)"; "intent(c)" is forced.
    analyzevars: character array "character*20 chosen_loop_so_indices(1)" is considered as "character chosen_loop_so_indices(1,20)"; "intent(c)" is forced.
    analyzevars: character array "character*20 chosen_loop_so_indices(1)" is considered as "character chosen_loop_so_indices(1,20)"; "intent(c)" is forced.
    analyzevars: character array "character*20 chosen_loop_so_indices(1)" is considered as "character chosen_loop_so_indices(1,20)"; "intent(c)" is forced.
    analyzevars: character array "character*20 chosen_loop_so_indices(1)" is considered as "character chosen_loop_so_indices(1,20)"; "intent(c)" is forced.
    Reading fortran codes...
     Reading file 'all_matrix.f' (format:fix,strict)
    Line #25 in all_matrix.f:" CALL SETPARA(PATH) !first call to setup the paramaters"
     analyzeline: No name/args pattern found for line.
     Reading file 'P0_gg_hhg/f2py_wrapper.f' (format:fix,strict)
     Reading file 'coupl.inc' (format:fix)
     Reading file 'P0_gg_hhg/nexternal.inc' (format:fix)
     Reading file 'coupl.inc' (format:fix)
     Reading file 'P0_gg_hhg/ngraphs.inc' (format:fix)
     Reading file 'P0_gg_hhg/nsquaredSO.inc' (format:fix)
     Reading file 'P0_gg_hhg/pmass.inc' (format:fix)
     Reading file 'P2_gg_hh/f2py_wrapper.f' (format:fix,strict)
     Reading file 'coupl.inc' (format:fix)
     Reading file 'P2_gg_hh/nexternal.inc' (format:fix)
     Reading file 'coupl.inc' (format:fix)
     Reading file 'P2_gg_hh/ngraphs.inc' (format:fix)
     Reading file 'P2_gg_hh/nsquaredSO.inc' (format:fix)
     Reading file 'P2_gg_hh/pmass.inc' (format:fix)
     Reading file 'P3_gu_hhu/f2py_wrapper.f' (format:fix,strict)
     Reading file 'coupl.inc' (format:fix)
     Reading file 'P3_gu_hhu/nexternal.inc' (format:fix)
     Reading file 'coupl.inc' (format:fix)
     Reading file 'P3_gu_hhu/ngraphs.inc' (format:fix)
     Reading file 'P3_gu_hhu/nsquaredSO.inc' (format:fix)
     Reading file 'P3_gu_hhu/pmass.inc' (format:fix)
     Reading file 'P4_gux_hhux/f2py_wrapper.f' (format:fix,strict)
     Reading file 'coupl.inc' (format:fix)
     Reading file 'P4_gux_hhux/nexternal.inc' (format:fix)
     Reading file 'coupl.inc' (format:fix)
     Reading file 'P4_gux_hhux/ngraphs.inc' (format:fix)
     Reading file 'P4_gux_hhux/nsquaredSO.inc' (format:fix)
     Reading file 'P4_gux_hhux/pmass.inc' (format:fix)
     Reading file 'P5_uux_hhg/f2py_wrapper.f' (format:fix,strict)
     Reading file 'coupl.inc' (format:fix)
     Reading file 'P5_uux_hhg/nexternal.inc' (format:fix)
     Reading file 'coupl.inc' (format:fix)
     Reading file 'P5_uux_hhg/ngraphs.inc' (format:fix)
     Reading file 'P5_uux_hhg/nsquaredSO.inc' (format:fix)
     Reading file 'P5_uux_hhg/pmass.inc' (format:fix)
    Post-processing...
     Block: allmatrix2py
       Block: initialise
       Block: set_madloop_path
       Block: smatrixhel
       Block: get_pdg_order
       Block: get_prefix
       Block: ml5_0_initialise
       Block: ml5_0_get_me
       Block: ml5_2_initialise
       Block: ml5_2_get_me
       Block: ml5_3_initialise
       Block: ml5_3_get_me
       Block: ml5_4_initialise
       Block: ml5_4_get_me
       Block: ml5_5_initialise
       Block: ml5_5_get_me
    Post-processing (stage 2)...
    Building modules...
     Building module "allmatrix2py"...
      Constructing wrapper function "initialise"...
        initialise(path)
      Constructing wrapper function "set_madloop_path"...
        set_madloop_path(path)
      Constructing wrapper function "smatrixhel"...
        ans,returncode = smatrixhel(pdgs,p,alphas,scales2,nhel,[npdg])
      Constructing wrapper function "get_pdg_order"...
        out = get_pdg_order()
      Constructing wrapper function "get_prefix"...
        prefix = get_prefix()
      Constructing wrapper function "ml5_0_initialise"...
        ml5_0_initialise(path)
      Constructing wrapper function "ml5_0_get_me"...
        ans,returncode = ml5_0_get_me(p,alphas,scale2,nhel)
      Constructing wrapper function "ml5_2_initialise"...
        ml5_2_initialise(path)
      Constructing wrapper function "ml5_2_get_me"...
        ans,returncode = ml5_2_get_me(p,alphas,scale2,nhel)
      Constructing wrapper function "ml5_3_initialise"...
        ml5_3_initialise(path)
      Constructing wrapper function "ml5_3_get_me"...
        ans,returncode = ml5_3_get_me(p,alphas,scale2,nhel)
      Constructing wrapper function "ml5_4_initialise"...
        ml5_4_initialise(path)
      Constructing wrapper function "ml5_4_get_me"...
        ans,returncode = ml5_4_get_me(p,alphas,scale2,nhel)
      Constructing wrapper function "ml5_5_initialise"...
        ml5_5_initialise(path)
      Constructing wrapper function "ml5_5_get_me"...
        ans,returncode = ml5_5_get_me(p,alphas,scale2,nhel)
      Constructing COMMON block support for "widths"...
        mdl_wz,mdl_wh,mdl_ww,mdl_wt
      Constructing COMMON block support for "rscale"...
        mu_r
      Constructing COMMON block support for "weak"...
        gal
      Constructing COMMON block support for "couplings"...
        r2_gght,r2_gghht,gc_4,gc_5,gc_30,gc_37
      Constructing COMMON block support for "strong"...
        g
      Constructing COMMON block support for "masses"...
        mdl_mh,mdl_mz,mdl_mt,mdl_mw,mdl_mta
      Constructing COMMON block support for "ml5_0_chosen_loop_sqso"...
        chosen_loop_so_configs
      Constructing COMMON block support for "ml5_2_chosen_loop_sqso"...
        chosen_loop_so_configs
      Constructing COMMON block support for "ml5_3_chosen_loop_sqso"...
        chosen_loop_so_configs
      Constructing COMMON block support for "ml5_4_chosen_loop_sqso"...
        chosen_loop_so_configs
      Constructing COMMON block support for "ml5_5_chosen_loop_sqso"...
        chosen_loop_so_configs
     Wrote C/API module "allmatrix2py" to file "/tmp/pmeiring/tmpd2u7Nd/src.linux-x86_64-2.7/allmatrix2pymodule.c"
     Fortran 77 wrappers are saved to "/tmp/pmeiring/tmpd2u7Nd/src.linux-x86_64-2.7/allmatrix2py-f2pywrappers.f"
      adding '/tmp/pmeiring/tmpd2u7Nd/src.linux-x86_64-2.7/fortranobject.c' to sources.
      adding '/tmp/pmeiring/tmpd2u7Nd/src.linux-x86_64-2.7' to include_dirs.
    copying /cvmfs/sft.cern.ch/lcg/releases/numpy/1.11.0-8b1f8/x86_64-slc6-gcc49-opt/lib/python2.7/site-packages/numpy-1.11.0-py2.7-linux-x86_64.egg/numpy/f2py/src/fortranobject.c -> /tmp/pmeiring/tmpd2u7Nd/src.linux-x86_64-2.7
    copying /cvmfs/sft.cern.ch/lcg/releases/numpy/1.11.0-8b1f8/x86_64-slc6-gcc49-opt/lib/python2.7/site-packages/numpy-1.11.0-py2.7-linux-x86_64.egg/numpy/f2py/src/fortranobject.h -> /tmp/pmeiring/tmpd2u7Nd/src.linux-x86_64-2.7
      adding '/tmp/pmeiring/tmpd2u7Nd/src.linux-x86_64-2.7/allmatrix2py-f2pywrappers.f' to sources.
    build_src: building npy-pkg config files
    running build_ext
    customize UnixCCompiler
    customize UnixCCompiler using build_ext
    don't know how to compile Fortran code on platform 'posix' with '/cvmfs/sft.cern.ch/lcg/releases/lcg_87/gcc/4.9.3/x86_64-slc6/bin/gfortran' compiler. Supported compilers are: intelvem,none,absoft,compaq,nag,gnu,lahey,pathf95,intelem,gnu95,intelv,g95,intele,intelev,pg,intel,sun,mips,hpux,vast,ibm)
    warning: build_ext: f77_compiler=/cvmfs/sft.cern.ch/lcg/releases/lcg_87/gcc/4.9.3/x86_64-slc6/bin/gfortran is not available.

    building 'allmatrix2py' extension
    error: extension 'allmatrix2py' has Fortran sources but no Fortran compiler found
    make: *** [allmatrix2py.so] Error 1

Please try to fix this compilations issue and retry.

Hi,

I already faced such error.
Not sure if this is fixed in 2.6.5 or (in the future 2.6.6). Can you try with 2.6.5?

Olivier

Peter Meiring (pmeiring) said : #3

Dear Olivier,

Thanks for the quick response.
I tried it with MG5_aMC_v2.6.5, but still get the same error.
Is there any work-around or fix that you know of (that I could implement myself before v2.6.6)?

Cheers,
Peter Meiring

Could you test with this tarball?
https://bazaar.launchpad.net/~mg5core1/mg5amcnlo/2.6.6/tarball/317

Like this I do not see any/which version in 2.6.6 fix the issue.
So the best would be to see if you reproduce this with 2.6.6 to be sure if this is the same bug as the one that I fixed.

Cheers and thanks,

Olivier

Peter Meiring (pmeiring) said : #5

Dear Olivier,

It seems that version is working; During the reweighting process I can see it is looping over events now:

REWEIGHT: starts to compute weight for events with the following modification to the param_card:
REWEIGHT: change model loop_sm-no_b_mass
 change process g g > h h [sqrvirt=QCD]
 change process p p > h h j [sqrvirt=QCD]
REWEIGHT: Event nb 0 current time: 11h37
REWEIGHT: Event nb 10 2.8s
REWEIGHT: Event nb 20 3s
REWEIGHT: Event nb 30 3.2s
REWEIGHT: Event nb 40 3.7s
REWEIGHT: Event nb 50 3.9s
REWEIGHT: Event nb 60 4.2s
REWEIGHT: Event nb 70 4.6s
REWEIGHT: Event nb 80 5.1s
REWEIGHT: Event nb 90 5.6s
REWEIGHT: All event done (nb_event: 100) 5.8s
REWEIGHT: Event /afs/cern.ch/work/p/pmeiring/private/ATLAS/~mg5core1/mg5amcnlo/2.6.6/gghhnlo/Events/run_02/events.lhe have now the additional weight
REWEIGHT: new cross-section is (_tree): 0.0301609 pb (indicative error: 0.0107802 pb)
REWEIGHT: Original cross-section: 0.02334366 +- 0.00010005703 pb (cross-section from sum of weights: 0.02218332636)
REWEIGHT: Computed cross-section:
REWEIGHT: rwgt_1_tree : 0.0301609233475 +- 0.0107802440711 pb
REWEIGHT: quit rwgt

Also, there is no run_02_tag_1_debug.log in the process folder showing the error we had before and the run_02_tag_1_banner.txt in the run folder looks clean.
Finally, the lhe file also seems to have changed, with an additional entry ("rwgt_1_tree") in the <rwgt> block.
I posted part of the lhe file with 1 event below. I will try to generate a bigger sample to see how the distributions look before and after reweighting.

Thanks for the help! Cheers,
Peter

<initrwgt>
<weightgroup name='scale_variation 10' combine='envelope'>
      <weight id='1001'> dyn= 10 muR=0.10000E+01 muF=0.10000E+01 </weight>
      <weight id='1002'> dyn= 10 muR=0.20000E+01 muF=0.10000E+01 </weight>
      <weight id='1003'> dyn= 10 muR=0.50000E+00 muF=0.10000E+01 </weight>
      <weight id='1004'> dyn= 10 muR=0.10000E+01 muF=0.20000E+01 </weight>
      <weight id='1005'> dyn= 10 muR=0.20000E+01 muF=0.20000E+01 </weight>
      <weight id='1006'> dyn= 10 muR=0.50000E+00 muF=0.20000E+01 </weight>
      <weight id='1007'> dyn= 10 muR=0.10000E+01 muF=0.50000E+00 </weight>
      <weight id='1008'> dyn= 10 muR=0.20000E+01 muF=0.50000E+00 </weight>
      <weight id='1009'> dyn= 10 muR=0.50000E+00 muF=0.50000E+00 </weight>
    </weightgroup>
<weightgroup name='mg_reweighting' weight_name_strategy='includeIdInWeightName'>
<weight id='rwgt_1_tree'>change model loop_sm-no_b_mass
 change process g g > h h [sqrvirt=QCD]
 change process p p > h h j [sqrvirt=QCD]
######################################################################
## PARAM_CARD AUTOMATICALY GENERATED BY MG5 FOLLOWING UFO MODEL ####
######################################################################
## ##
## Width set on Auto will be computed following the information ##
## present in the decay.py files of the model. ##
## See arXiv:1402.1178 for more details. ##
## ##
######################################################################
###################################
## INFORMATION FOR LOOP
###################################
Block loop
    1 9.118800e+01 # MU_R
###################################
## INFORMATION FOR MASS
###################################
Block mass
    6 1.730000e+02 # MT
   15 1.777000e+00 # MTA
   23 9.118800e+01 # MZ
   25 1.250000e+02 # MH
## Dependent parameters, given by model restrictions.
## Those values should be edited following the
## analytical expression. MG5 ignores those values
## but they are important for interfacing the output of MG5
## to external program such as Pythia.
  1 0.000000 # d : 0.0
  2 0.000000 # u : 0.0
  3 0.000000 # s : 0.0
  4 0.000000 # c : 0.0
  5 0.000000 # b : 0.0
  11 0.000000 # e- : 0.0
  12 0.000000 # ve : 0.0
  13 0.000000 # mu- : 0.0
  14 0.000000 # vm : 0.0
  16 0.000000 # vt : 0.0
  21 0.000000 # g : 0.0
  22 0.000000 # a : 0.0
  24 80.419002 # w+ : cmath.sqrt(MZ__exp__2/2. + cmath.sqrt(MZ__exp__4/4. - (aEW*cmath.pi*MZ__exp__2)/(Gf*sqrt__2)))
###################################
## INFORMATION FOR SMINPUTS
###################################
Block sminputs
    1 1.325070e+02 # aEWM1
    2 1.166390e-05 # Gf
    3 1.180000e-01 # aS
###################################
## INFORMATION FOR YUKAWA
###################################
Block yukawa
    6 1.730000e+02 # ymt
   15 1.777000e+00 # ymtau
###################################
## INFORMATION FOR DECAY
###################################
DECAY 6 1.491500e+00 # WT
DECAY 23 2.441404e+00 # WZ
DECAY 24 2.047600e+00 # WW
DECAY 25 6.382339e-03 # WH
## Dependent parameters, given by model restrictions.
## Those values should be edited following the
## analytical expression. MG5 ignores those values
## but they are important for interfacing the output of MG5
## to external program such as Pythia.
DECAY 1 0.000000 # d : 0.0
DECAY 2 0.000000 # u : 0.0
DECAY 3 0.000000 # s : 0.0
DECAY 4 0.000000 # c : 0.0
DECAY 5 0.000000 # b : 0.0
DECAY 11 0.000000 # e- : 0.0
DECAY 12 0.000000 # ve : 0.0
DECAY 13 0.000000 # mu- : 0.0
DECAY 14 0.000000 # vm : 0.0
DECAY 15 0.000000 # ta- : 0.0
DECAY 16 0.000000 # vt : 0.0
DECAY 21 0.000000 # g : 0.0
DECAY 22 0.000000 # a : 0.0
</weight>
</weightgroup>
</initrwgt>
<montecarlomasses>
1 0.320000E+00
       2 0.320000E+00
       3 0.500000E+00
       4 0.155000E+01
       5 0.495000E+01
      11 0.510999E-03
      13 0.105658E+00
      15 0.177682E+01
      21 0.750000E+00
</montecarlomasses>
<scalesfunctionalform>
muR User-defined dynamical scale
    muF1 User-defined dynamical scale
    muF2 User-defined dynamical scale
    QES User-defined dynamical scale
</scalesfunctionalform>
</header>
<init>
2212 2212 0.65000000E+04 0.65000000E+04 -1 -1 244800 244800 -4 1
 0.23343660E-01 0.10005703E-03 0.28440162E-01 0
</init>
<event>
 4 0 +2.8440162e-02 5.84820340e+02 7.81860830e-03 9.28715520e-02
       21 -1 0 0 502 501 +0.0000000000e+00 +0.0000000000e+00 +8.4484280000e+02 8.4484313000e+02 7.5000000000e-01 0.0000e+00 9.0000e+00
       21 -1 0 0 501 502 +0.0000000000e+00 +0.0000000000e+00 -4.0559944000e+02 4.0560014000e+02 7.5000000000e-01 0.0000e+00 9.0000e+00
       25 1 1 2 0 0 -1.4341045000e+01 +5.7112535000e+02 +1.9231631000e+02 6.1563008000e+02 1.2500000000e+02 0.0000e+00 9.0000e+00
       25 1 1 2 0 0 +1.4341045000e+01 -5.7112535000e+02 +2.4692704000e+02 6.3481319000e+02 1.2500000000e+02 0.0000e+00 9.0000e+00
#aMCatNLO 1 0 0 2 1 0.42153222E+02 0.00000000E+00 -9 5 0 0.00000000E+00 0.00000000E+00 0.00000000E+00 0.00000000E+00 0.00000000E+00
<mgrwgt>
0.2844016200D-03 4 2 0
0.585378861530630D+03 0.000000000000000D+00 0.000000000000000D+00 0.585378861530630D+03
0.585378861530630D+03 0.000000000000000D+00 0.000000000000000D+00 -.585378861530630D+03
0.585378861530630D+03 -.143410446304338D+02 0.571125346159844D+03 -.255653073441814D+02
0.585378861530630D+03 0.143410446304338D+02 -.571125346159844D+03 0.255653073441814D+02
0.000000000000000D+00 -.000000000000000D+00 -.000000000000000D+00 0.000000000000000D+00
0.947290786851088D+03 0.000000000000000D+00 0.000000000000000D+00 0.947290786851088D+03
0.586986894364116D+03 0.000000000000000D+00 0.000000000000000D+00 -.586986894364116D+03
0.604311825122332D+03 -.558418980886510D+01 0.590663198334940D+03 -.255653073441814D+02
0.567204517145699D+03 0.228247668534067D+02 -.552196893642993D+03 0.255653073441814D+02
0.362761338947173D+03 -.172405770445416D+02 -.384663046919464D+02 0.360303892486971D+03
0.437293066410D-03 0.000000000000D+00 0.000000000000D+00 0.361414027723D-03 0.000000000000D+00 5 21 21 25 25 21 4 0.12997589D+00 0.62399993D-01 0.34266841D+06 0.34266841D+06 0.34266841D+06 0.10803047D+01 1 2 2 2 5 2 21 0.512898627972D-01 0.100000000000D+01
-.546616333013D-04 0.424609239586D-04 0.360603735147D-05 0.361414027723D-03 0.000000000000D+00 5 21 21 25 25 21 6 0.12997589D+00 0.62399993D-01 0.34266841D+06 0.34266841D+06 0.34266841D+06 0.10803047D+01 1 2 3 2 5 2 21 -.748228279917D-02 0.100000000000D+01
0.109626177937D-03 0.000000000000D+00 0.000000000000D+00 0.361414027723D-03 0.000000000000D+00 5 21 21 25 25 21 6 0.12997589D+00 0.62399993D-01 0.34266841D+06 0.34266841D+06 0.34266841D+06 0.10803047D+01 1 2 15 2 5 2 21 0.150060292014D-01 0.100000000000D+01
-.112717485301D-04 0.000000000000D+00 0.000000000000D+00 0.361414027723D-03 0.000000000000D+00 5 21 21 25 25 21 6 0.12997589D+00 0.62399993D-01 0.34266841D+06 0.34266841D+06 0.34266841D+06 0.10803047D+01 1 2 4 2 5 2 21 -.154291785755D-02 0.100000000000D+01
</mgrwgt>
<rwgt>
<wgt id='1001'> +2.8440000e-02 </wgt>
<wgt id='1002'> +2.7295000e-02 </wgt>
<wgt id='1003'> +2.8866000e-02 </wgt>
<wgt id='1004'> +2.5095000e-02 </wgt>
<wgt id='1005'> +2.4034000e-02 </wgt>
<wgt id='1006'> +2.5553000e-02 </wgt>
<wgt id='1007'> +3.2513000e-02 </wgt>
<wgt id='1008'> +3.1270000e-02 </wgt>
<wgt id='1009'> +3.2892000e-02 </wgt>
<wgt id='rwgt_1_tree'> +1.8164681e-03 </wgt>
</rwgt>
</event>

THanks,

I think that I found the required patch:
https://bazaar.launchpad.net/~mg5core1/mg5amcnlo/2.6.6/revision/289
(you only need to apply the patch to the makefile, the second file is an unrelated bug)

Cheers,

Olivier

Peter Meiring (pmeiring) said : #7

Dear Olivier,

You are right! When I apply the patch to the makefile, the reweighting works properly.

One final question:
If I convert my reweighted LHE file to ROOT using Delphes for example, I can see the weigths correspond to the entries in the <rwgt> block of the LHE file. If I plot distributions using the "rwgt_1_tree" weight, all looks fine. Should I try to decay/shower with MadSpin and/or Pythia8, is the "rwgt_1_tree" weight automatically propagated through the process?

Thanks again for all the help!
Peter

Hi,

For MadSpin, yes it fully supports the various weight.
For Pythia8, It can keep them all but this might depend on how you run pythia8.
(and the output type that you want)

Cheers,

Olivier

> On 8 May 2019, at 13:52, Peter Meiring <email address hidden> wrote:
>
> Question #680677 on MadGraph5_aMC@NLO changed:
> https://answers.launchpad.net/mg5amcnlo/+question/680677
>
> Peter Meiring posted a new comment:
> Dear Olivier,
>
> You are right! When I apply the patch to the makefile, the reweighting
> works properly.
>
> One final question:
> If I convert my reweighted LHE file to ROOT using Delphes for example, I can see the weigths correspond to the entries in the <rwgt> block of the LHE file. If I plot distributions using the "rwgt_1_tree" weight, all looks fine. Should I try to decay/shower with MadSpin and/or Pythia8, is the "rwgt_1_tree" weight automatically propagated through the process?
>
> Thanks again for all the help!
> Peter
>
> --
> You received this question notification because you are an answer
> contact for MadGraph5_aMC@NLO.

Peter Meiring (pmeiring) said : #9

Thanks Olivier! That solves my questions;