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# Copyright (C) 2000 by Peter J. Gawthrop

###############################################################
## Version control history
###############################################################
## $Id$
## $Log$









## Revision 1.30  2001/03/30 15:13:58  gawthrop
## Rationalised simulation modes to each return mtt_data
##
## Revision 1.29  2001/03/27 13:10:23  geraint
## Improved determination of Octave version.
##
## Revision 1.28  2001/02/17 03:48:17  geraint







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# Copyright (C) 2000 by Peter J. Gawthrop

###############################################################
## Version control history
###############################################################
## $Id$
## $Log$
## Revision 1.31.2.1  2001/05/04 04:07:24  geraint
## Numerical solution of algebraic equations.
## sys_ae.cc written for unsolved inputs.
## Solution of equations using hybrd from MINPACK (as used by Octave fsolve).
##
## Revision 1.31  2001/04/03 14:49:42  gawthrop
## Revised to incorporate new ssim (sensitivity simulation)
## representation (m only just now).
##
## Revision 1.30  2001/03/30 15:13:58  gawthrop
## Rationalised simulation modes to each return mtt_data
##
## Revision 1.29  2001/03/27 13:10:23  geraint
## Improved determination of Octave version.
##
## Revision 1.28  2001/02/17 03:48:17  geraint
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# Representation-specific stuff

eqnargs='mttx,mttu,mttt,mttpar'
inputeqnargs='mttx,mtty,mttt,mttpar'
case $rep in







    cse)
	states=yes;
        inputs=yes;
	parameters=yes;
        output='mttdx,mtte'
        args=$eqnargs
	;;







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# Representation-specific stuff

eqnargs='mttx,mttu,mttt,mttpar'
inputeqnargs='mttx,mtty,mttt,mttpar'
case $rep in
    ae)
	states=yes;
	inputs=yes;
	parameters=yes;
	output=mttyz;
	args=$eqnargs;
	;;
    cse)
	states=yes;
        inputs=yes;
	parameters=yes;
        output='mttdx,mtte'
        args=$eqnargs
	;;
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	  states=no;
	  parameters=no;
          declareinputs=no;
        else
	  states=yes;
	  parameters=yes;
          declareinputs=yes

        fi
	;;
    logic)
	states=no;
	inputs=no;
	parameters=yes;
        output=mttopen







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	  states=no;
	  parameters=no;
          declareinputs=no;
        else
	  states=yes;
	  parameters=yes;
          declareinputs=yes
	  declarestates=yes
        fi
	;;
    logic)
	states=no;
	inputs=no;
	parameters=yes;
        output=mttopen
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$Lc Inputs $Rc
EOF

N=`n2m 1 $Nu`
for i in $N; do
  echo $constant_declaration 'mttu'$i' = mttu('$i$minusone');'
done









fi

if [ "$declareinputs" = "yes" ]; then
  declare_vars input
fi

if [ "$declaredummies" = "yes" ]; then







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$Lc Inputs $Rc
EOF

N=`n2m 1 $Nu`
for i in $N; do
  echo $constant_declaration 'mttu'$i' = mttu('$i$minusone');'
done
cat <<EOF

$Lc Unknown Inputs $Rc
EOF

Ni=`n2m 1 $Nyz`
for i in $Ni; do
  echo $constant_declaration 'mttui'$i' = mttu('$Nu+$i$minusone');'
done
fi

if [ "$declareinputs" = "yes" ]; then
  declare_vars input
fi

if [ "$declaredummies" = "yes" ]; then
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	    arg_type="Octave_map"
	    arg_size="";
	    ;;
	mttu)
	    arg_type="ColumnVector"
	    arg_size="(MTTNU)"
	    ;;




	mtty)
	    arg_type="ColumnVector"
	    arg_size="(MTTNY)"
	    ;;
	mttt)
	    arg_type="const double"
	    arg_size=""







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	    arg_type="Octave_map"
	    arg_size="";
	    ;;
	mttu)
	    arg_type="ColumnVector"
	    arg_size="(MTTNU)"
	    ;;
	mttyz)
	    arg_type="ColumnVector"
	    arg_size="(MTTNYZ)"
	    ;;
	mtty)
	    arg_type="ColumnVector"
	    arg_size="(MTTNY)"
	    ;;
	mttt)
	    arg_type="const double"
	    arg_size=""
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#include <math.h>
#include "useful-functions.hh"
#include "${system}_cr.h"
#include "${system}_def.h"
#include "${system}_sympar.h"

DEFUN_DLD (${system}_${rep}, args, ,
"Usage: [$output] = ${system}_${rep}($args)
Octave ${rep} representation of system ${system}
Generated by MTT on `date`")
{

  octave_value_list retval;
#endif // ! STANDALONE

EOF
}







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#include <math.h>
#include "useful-functions.hh"
#include "${system}_cr.h"
#include "${system}_def.h"
#include "${system}_sympar.h"

DEFUN_DLD (${system}_${rep}, args, ,
"Usage: [$output] = ${system}_${rep}($args)\nOctave ${rep} representation of system ${system}\nGenerated by MTT on `date`")


{

  octave_value_list retval;
#endif // ! STANDALONE

EOF
}

MTT: Model Transformation Tools
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