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# Copyright (C) 2000 by Peter J. Gawthrop

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



## Revision 1.9  2000/11/07 16:56:24  peterg
## Version from Geraint
##
## Revision 1.2  2000/11/03 00:55:42  geraint
## typo: missed out 'd' in mttedx
## todo: need to accommodate mttsimpar
##







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# Copyright (C) 2000 by Peter J. Gawthrop

###############################################################
## Version control history
###############################################################
## $Id$
## $Log$
## Revision 1.10  2000/11/07 17:20:51  peterg
## useful-functions.hh now included locally
##
## Revision 1.9  2000/11/07 16:56:24  peterg
## Version from Geraint
##
## Revision 1.2  2000/11/03 00:55:42  geraint
## typo: missed out 'd' in mttedx
## todo: need to accommodate mttsimpar
##
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##
###############################################################

# Arguments
system=$1
rep=$2
language=$3

#args=$4
#output=$5
#extras=$6

# Find system constants
Nx=`mtt_getsize $system x` # States
Nxx=`mtt_getsize $system xx` # States x States







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##
###############################################################

# Arguments
system=$1
rep=$2
language=$3
fun_name=${1}_${2}
#args=$4
#output=$5
#extras=$6

# Find system constants
Nx=`mtt_getsize $system x` # States
Nxx=`mtt_getsize $system xx` # States x States
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	;;
    input)
	states=yes;
	inputs=no;
	parameters=yes;
        output=mttu
        args=$inputeqnargs

	;;
    logic)
	states=no;
	inputs=no;
	parameters=yes;
        output=open
        args=$eqnargs


	;;
    numpar)
	states=no;
	inputs=no;
	parameters=no;
        output='mttpar'
	;;







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	;;
    input)
	states=yes;
	inputs=no;
	parameters=yes;
        output=mttu
        args=$inputeqnargs
        declareinputs=yes
	;;
    logic)
	states=no;
	inputs=no;
	parameters=yes;
        output=mttopen
        args=$eqnargs
        declareinputs=yes
        declarestates=yes
	;;
    numpar)
	states=no;
	inputs=no;
	parameters=no;
        output='mttpar'
	;;
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    odeo)
	states=yes;
        inputs=yes;
	parameters=yes;
        output='mtty'
        args=$eqnargs
	;;







    simpar)
	states=no;
	inputs=no;
	parameters=no;
        output='mttsimpar_map'
	;;
    sm)
	states=no;
	inputs=no;
	parameters=yes;
        output='mtta,mttb,mttc,mttd'
        args=mttpar
	;;














    state)
	states=no;
	inputs=no;
	parameters=yes;
        output=mttx
        args=mttpar

	;;
    *)
	echo Representation $rep not supported - sorry; exit 1
esac

## Sort out parentheses
if [ -n "$args" ]; then







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    odeo)
	states=yes;
        inputs=yes;
	parameters=yes;
        output='mtty'
        args=$eqnargs
	;;
    ode2odes)
	states=no;
        inputs=no;
	parameters=no;
        output='y,x,t'
        args='x,par,simpar'
	;;
    simpar)
	states=no;
	inputs=no;
	parameters=no;
        output='mttsimpar'
	;;
    sm)
	states=no;
	inputs=no;
	parameters=yes;
        output='mtta,mttb,mttc,mttd'
        args=mttpar
	;;
    smxa)
	states=no;
        inputs=no;
	parameters=yes;
        output='mtta'
        args=$eqnargs
	;;
    smxax)
	states=no;
        inputs=no;
	parameters=yes;
        output='mttax'
        args=$eqnargs
	;;
    state)
	states=no;
	inputs=no;
	parameters=yes;
        output=mttx
        args=mttpar
        declarestates=yes
	;;
    *)
	echo Representation $rep not supported - sorry; exit 1
esac

## Sort out parentheses
if [ -n "$args" ]; then
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	Lb='(';
	Rb=')';
	function="function"
	declaration="$Output$1_$rep$Args;"
	noglobals=true; # Fudge to make mtt_m2p work
        start='## BEGIN Code'
        finish='## END Code'



	;;
    txt)
	modeline='## -*-octave-*- Put Emacs into octave-mode ##';
	Lc='##';
	Rc='';
	Lb='(';
	Rb=')';
	function=""
	declaration=""
        start=''
        parameters=no
	states=no
	inputs=no


	;;
    oct)
	modeline="// -*-c++-*- Put Emacs into c++-mode";
	Lc='//';
	oct_header=yes;




	;;
    *)
	echo Language $language not supported - sorry; exit 1
esac


































































# Argument specific stuff
function get_arg_specific_stuff ()
{
    arg_name=${1:-""}
    case ${arg_name} in
	mtta | mtte)







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	Lb='(';
	Rb=')';
	function="function"
	declaration="$Output$1_$rep$Args;"
	noglobals=true; # Fudge to make mtt_m2p work
        start='## BEGIN Code'
        finish='## END Code'
        var_declaration=$Lc
        declarestates=no
        declareinputs=no
	;;
    txt)
	modeline='## -*-octave-*- Put Emacs into octave-mode ##';
	Lc='##';
	Rc='';
	Lb='(';
	Rb=')';
	function=""
	declaration=""
        start=''
        parameters=no
	states=no
	inputs=no
        declarestates=no
        declareinputs=no
	;;
    oct)
	modeline="// -*-c++-*- Put Emacs into c++-mode";
	Lc='//';
	oct_header=yes;
        constant_declaration="const double "
        var_declaration="double "
	minusone="-1"
	map="_map"
	;;
    *)
	echo Language $language not supported - sorry; exit 1
esac

if [ "$rep" = "simpar" ]; then
   output=${output}${map}    # Output is simpar_map in this case
fi

function declare_vars(){
# Grab the names
names=`awk '{if ($1==var_type) print tolower($4)}' var_type=$1 ${system}_struc.txt`

# Comments
cat <<EOF

$Lc  Declarations for $1 names $Rc
EOF
# Declarations
for name in $names; do
    echo '  '$var_declaration $name';'
done
}


function array2constant() {
# Parameters
if [ "$parameters" = "yes" ]; then
cat <<EOF

$Lc Parameters $Rc
EOF
sympar2par_txt2m ${system} ""  "$constant_declaration" "$minusone"
fi

# States
if [ "$states" = "yes" ]; then
cat <<EOF

$Lc States $Rc
EOF
N=`n2m 1 $Nx`
for i in $N; do
    echo $constant_declaration 'mttx'$i' = mttx('$i$minusone');'
done
fi

if [ "$declarestates" = "yes" ]; then
  declare_vars state
fi

# Inputs
if [ "$inputs" = "yes" ]; then
cat <<EOF

$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

}

# Argument specific stuff
function get_arg_specific_stuff ()
{
    arg_name=${1:-""}
    case ${arg_name} in
	mtta | mtte)
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	    arg_type="Matrix"
	    arg_size="(MTTNY,MTTNX)"
	    ;;
	mttd)
	    arg_type="Matrix"
	    arg_size="(MTTNY,MTTNU)"
	    ;;
	mttax | mttdx | mttedx | mttx | open)
	    arg_type="ColumnVector"
	    arg_size="(MTTNX)"
	    ;;
	mttpar)
	    arg_type="ColumnVector"
	    arg_size="(MTTNPAR)"
	    ;;







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	    arg_type="Matrix"
	    arg_size="(MTTNY,MTTNX)"
	    ;;
	mttd)
	    arg_type="Matrix"
	    arg_size="(MTTNY,MTTNU)"
	    ;;
	mttax | mttdx | mttedx | mttx | mttopen)
	    arg_type="ColumnVector"
	    arg_size="(MTTNX)"
	    ;;
	mttpar)
	    arg_type="ColumnVector"
	    arg_size="(MTTNPAR)"
	    ;;
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#include <octave/toplev.h>

#include "useful-functions.hh"
#include "${system}_def.h"
#include "${system}_sympar.h"

DEFUN_DLD (${system}_${rep}, args, ,

"Octave ${rep} representation of system ${system}
Generated by MTT on $(date)")
{

  octave_value_list retval;

EOF
}


function map_DLD_inputs ()
{
    s=${1:-""}					# comma separated input list
    if [ -z ${s} ];then return; fi
    c=$(get_field ${s} 0)			# count of inputs
    i=0
    printf "  if (${c} != args.length ()) usage (\"expected ${c} argument(s): ${s}\");\n\n"
    while [ ${i} -lt ${c} ]; do
	j=${i}
	i=$((${i} + 1))
	w=$(get_field ${s} ${i})		# argument name
	get_arg_specific_stuff ${w}
	case ${arg_type} in
	    "const double")







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#include <octave/toplev.h>

#include "useful-functions.hh"
#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;

EOF
}


function map_DLD_inputs ()
{
    s=${1:-""}					# comma separated input list
    if [ -z ${s} ];then return; fi
    c=$(get_field ${s} 0)			# count of inputs
    i=0
    printf "  if (${c} != args.length ()) usage (\"${fun_name} expected ${c} argument(s): ${s}\");\n\n"
    while [ ${i} -lt ${c} ]; do
	j=${i}
	i=$((${i} + 1))
	w=$(get_field ${s} ${i})		# argument name
	get_arg_specific_stuff ${w}
	case ${arg_type} in
	    "const double")
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    i=0
    while [ ${i} -lt ${c} ]; do
	i=$((${i} + 1))
	w=$(get_field ${s} ${i})		# argument name
	get_arg_specific_stuff ${w}
	printf "  ${arg_type}\t${w}\t${arg_size};\n"
    done
    cat <<EOF

// BEGIN Code

EOF
}


function return_DLD_outputs ()
{
    s=${1:-""}					# comma separated output list
    c=$(get_field ${s} 0)			# count of outputs







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    i=0
    while [ ${i} -lt ${c} ]; do
	i=$((${i} + 1))
	w=$(get_field ${s} ${i})		# argument name
	get_arg_specific_stuff ${w}
	printf "  ${arg_type}\t${w}\t${arg_size};\n"
    done





}


function return_DLD_outputs ()
{
    s=${1:-""}					# comma separated output list
    c=$(get_field ${s} 0)			# count of outputs
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EOF

if [ ${language} = "oct" ];then
    write_DLD_header
    map_DLD_inputs ${args}
    undeclared=$(get_extra_fields ${args:-"nil"} ${output:-"nil"})
    declare_DLD_outputs ${undeclared}






    return_DLD_outputs ${output}
else

if [ -n "$noglobals" ]; then
cat<<EOF

## Horrible fudge to make mtt_m2p work
global ...
mtt_no_globals ;
EOF
fi




# Mark start of code
echo
echo $start

# Parameters
if [ "$parameters" = "yes" ]; then
cat <<EOF

$Lc Parameters $Rc
EOF
sympar2par_txt2m $1 
fi
# States
if [ "$states" = "yes" ]; then
cat <<EOF

$Lc States $Rc
EOF
N=`n2m 1 $Nx`
for i in $N; do
    echo '  mttx'$i' = mttx('$i');'
done
fi

# Inputs
if [ "$inputs" = "yes" ]; then
cat <<EOF

$Lc Inputs $Rc
EOF

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

fi







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EOF

if [ ${language} = "oct" ];then
    write_DLD_header
    map_DLD_inputs ${args}
    undeclared=$(get_extra_fields ${args:-"nil"} ${output:-"nil"})
    declare_DLD_outputs ${undeclared}
    array2constant
    cat <<EOF

// BEGIN Code

EOF
    return_DLD_outputs ${output}
else

if [ -n "$noglobals" ]; then
cat<<EOF

## Horrible fudge to make mtt_m2p work
global ...
mtt_no_globals ;
EOF
fi

## Arrays 
array2constant

# Mark start of code
echo
echo $start








fi



























MTT: Model Transformation Tools
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