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\begin{longtable}{p{1.5cm}p{12cm}}
\hline
\multicolumn{1}{c}{{\textbf{Section} \texttt{extra}}} & \multicolumn{1}{c}{{\textbf{Description}}} \\
\hline
{\tt debug} &
A logical variable which can be used during a
debugging phase to mandate special behaviours.
Passed by common block {\tt common/debug/debug}. \\
{\tt verbose} &
A logical variable which can be used during a debugging phase to write
special information. Passed in common block {\tt common/verbose/verbose}. \\
{\tt new\_pspace} &
A logical variable which can be used during a debugging phase to test alternative versions of the phase space.
Passed in common block {\tt common/new\_pspace/new\_pspace}. \\
{\tt spira} &
A logical variable. If {\tt spira} is \texttt{.true.}, we calculate the
width of the Higgs boson by interpolating from a table
calculated using the NLO code of M. Spira. The default value is \texttt{.true.}.
Otherwise the LO value valid for low Higgs masses only is used. \\
{\tt noglue} &
A logical variable.
The default value is \texttt{.false.}. If set to \texttt{.true.}, no processes
involving initial gluons are included. \\
{\tt ggonly} &
A logical variable.
The default value is \texttt{.false.}. If set to \texttt{.true.},
only the processes
involving initial gluons in both hadrons are included.\\
{\tt gqonly} &
A logical variable. The default value is \texttt{.false.}. If set to \texttt{.true.},
only the processes
involving an initial gluon in one hadron and an initial quark
or antiquark in the other hadron (or vice versa) are included.\\
{\tt omitgg} &
A logical variable.
The default value is \texttt{.false.}. If set to \texttt{.true.}, the gluon-gluon
initial state is not included.\\
{\tt clustering} &
This logical parameter determines whether clustering is performed to yield
jets. Only during a debugging phase should this variable be set to \texttt{.false.}. \\
{\tt colourchoice} &
If colourchoice=0, all colour structures are included ($W,Z+2$~jets).
If colourchoice=1, only the leading
colour structure is included ($W,Z+2$~jets). \\
{\tt rtsmin} &
A minimum value of $\sqrt{s_{12}}$, which ensures that the invariant mass
of the incoming partons can never be less than {\tt rtsmin}. \\
% {\tt cutoff} & When performing calculations, the code implements a small cutoff
% on all invariant masses in order to ensure numerical stability. This is
% performed according to \texttt{src/Need/smallnew.f} \\
\texttt{reweight} & Flag to set the use of
the user-implemented reweighting procedure \texttt{reweight\_user}
in the routine \texttt{src/User/gencuts\_user.f90}.\\
\hline
\end{longtable}