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# Copyright (c) P.J.Gawthrop, 1989, 1990, 1991, 1993, 1994, 1995, 1996.

###############################################################
## Version control history
###############################################################
## $Header$
## $Log$



## Revision 1.8  1996/08/12 20:19:52  peter
## Arguments now passed via $1_args.m file
##
## Revision 1.7  1996/08/11 19:49:27  peter
## Parameter passing (via $4) added.
##
## Revision 1.6  1996/08/11 10:40:56  peter







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# Copyright (c) P.J.Gawthrop, 1989, 1990, 1991, 1993, 1994, 1995, 1996.

###############################################################
## Version control history
###############################################################
## $Header$
## $Log$
## Revision 1.9  1996/08/14 09:16:08  peter
## Step response now goes through  m, dat and gdat conversions
##
## Revision 1.8  1996/08/12 20:19:52  peter
## Arguments now passed via $1_args.m file
##
## Revision 1.7  1996/08/11 19:49:27  peter
## Parameter passing (via $4) added.
##
## Revision 1.6  1996/08/11 10:40:56  peter
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# Save up the argument list in a file.
cat > macmic_args.m <<EOF
$4
EOF

# This is the main mtt programme
 
make  -s -f -  $1_$2.$3 << EOF





#Create acausal bond graph figure using xfig 
$1_abg.fig:
	$FIG $1_abg.fig &

#Create empty files (with titles) if not already there
$1_lbl.txt:
	echo Creating $1_lbl.txt
	( \
	echo "%% Label file ($1_lbl.txt)"; \
	echo "%% Each line should be of one of the following forms:"; \







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# Save up the argument list in a file.
cat > macmic_args.m <<EOF
$4
EOF

# This is the main mtt programme
 
make -s  -f -  $1_$2.$3 << EOF

# Cancel implicit rules I don't want
%.dvi: %.tex
%.ps: %.dvi

#Create acausal bond graph figure using xfig 
$1_abg.fig:
	$FIG $1_abg.fig 

#Create empty files (with titles) if not already there
$1_lbl.txt:
	echo Creating $1_lbl.txt
	( \
	echo "%% Label file ($1_lbl.txt)"; \
	echo "%% Each line should be of one of the following forms:"; \
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$1_cse.tex: $1_cse.r  $1_sympar.r
	cse_r2tex $1; latex_tidy $1_cse.tex

#Ordinary differential equations
$1_ode.r: $1_cse.r $1_def.r $1_sympar.r
	cse2ode_r $1; tidy $1_ode.r
$1_ode.m: $1_def.r $1_ode.r $1_sympar.r
	ode_r2m $1; matlab_tidy $1_ode.m
$1_ode.tex: $1_ode.r  $1_sympar.r $1_simp.r
	ode_r2tex $1; latex_tidy $1_ode.tex

#Observer functions for GPC
$1_obs.r: $1_ode.r $1_def.r $1_sympar.r
	ode2obs_r $1; tidy $1_obs.r
$1_obs.m: $1_def.r $1_obs.r $1_sympar.r







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$1_cse.tex: $1_cse.r  $1_sympar.r
	cse_r2tex $1; latex_tidy $1_cse.tex

#Ordinary differential equations
$1_ode.r: $1_cse.r $1_def.r $1_sympar.r
	cse2ode_r $1; tidy $1_ode.r
$1_ode.m: $1_def.r $1_ode.r $1_sympar.r
	ode_r2m $1; matlab_tidy $1_ode.m; matlab_tidy $1_odeo.m
$1_ode.tex: $1_ode.r  $1_sympar.r $1_simp.r
	ode_r2tex $1; latex_tidy $1_ode.tex

#Observer functions for GPC
$1_obs.r: $1_ode.r $1_def.r $1_sympar.r
	ode2obs_r $1; tidy $1_obs.r
$1_obs.m: $1_def.r $1_obs.r $1_sympar.r
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#Time responses
$1_ir.dat: $1_dm.m $1_numpar.m $1_args.m
	dm2ir_m2dat $1 '$4'
$1_sr.m: $1_dm.m $1_numpar.m $1_args.m
	dm2sr_m $1 '$4'



#Frequency responses
$1_fr.dat: $1_dm.m $1_numpar.m $1_args.m
	dm2fr_m2dat $1 '$4'

#Partially-known system indentification structure matrices
$1_pkim.r: $1_tf.r $1_sympar.r 
	tf2pkim_r $1; tidy $1_pki.r
$1_pkim.tex: $1_def.r $1_pkim.r $1_sympar.r
	pkim_r2tex $1; latex_tidy $1_pkim.tex

#Generic conversion of data files from m to dat format
$1_$2.dat: $1_$2.m
	m2dat $1_$2

#Generic conversion of data files from dat to (gplot) gdat format
$1_$2.gdat: $1_$2.dat
	dat2gdat $1_$2

#Generic conversion of Latex to latex document
$1_$2.doc: $1_$2.tex
	showtex $1 $2

#Generic conversion of LaTeX doc to dvi
$1_$2.dvi: $1_$2.doc
	echo Creating $1_$2.dvi
	latex $1_$2.doc > /dev/null


#Create PostScript version of abg fig file
ifeq ('$2','abg')
$1_abg.ps: $1_abg.fig
	echo Creating $1_abg.ps
	fig2dev -Lps $1_abg.fig >$1_abg.ps
endif

#Create PostScript version of cbg fig file
ifeq ('$2','cbg')
$1_cbg.ps: $1_cbg.fig
	echo Creating $1_cbg.ps
	fig2dev -Lps $1_cbg.fig >$1_cbg.ps
endif

#Create PostScript version of dat file
ifeq ('$2','ir')
$1_$2.ps: $1_$2.gdat
	gdat2ps $1_$2
endif

ifeq ('$2','sr')
$1_$2.ps: $1_$2.gdat
	gdat2ps $1_$2
endif

ifeq ('$2','fr')
$1_$2.ps: $1_$2.gdat
	gdat2ps $1_$2
endif

#Generic conversion of dvi to ps
ifneq ('$2','abg')
ifneq ('$2','cbg')
ifneq ('$2','ir')
ifneq ('$2','sr')
ifneq ('$2','fr')
$1_$2.ps: $1_$2.dvi
	echo Creating $1_$2.ps
	dvips -o $1_$2.ps $1_$2.dvi 2> /dev/null
endif
endif
endif
endif
endif

#View a ps file
$1_$2.view: $1_$2.ps
	echo Creating view of $1_$2
	ghostview $1_$2.ps&

#Report generation
$1_rep.tex: $1_sum.tex $1_dae.tex $1_lbl.txt $1_sympar.r $1_cr.r \
            $1_abg.ps
	echo Creating $1_rep.tex 







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#Time responses
$1_ir.dat: $1_dm.m $1_numpar.m $1_args.m
	dm2ir_m2dat $1 '$4'
$1_sr.m: $1_dm.m $1_numpar.m $1_args.m
	dm2sr_m $1 '$4'
$1_odesol.m: $1_ode.m $1_numpar.m $1_args.m
	ode2odesol_m $1 '$4'

#Frequency responses
$1_fr.dat: $1_dm.m $1_numpar.m $1_args.m
	dm2fr_m2dat $1 '$4'

#Partially-known system indentification structure matrices
$1_pkim.r: $1_tf.r $1_sympar.r 
	tf2pkim_r $1; tidy $1_pki.r
$1_pkim.tex: $1_def.r $1_pkim.r $1_sympar.r
	pkim_r2tex $1; latex_tidy $1_pkim.tex

#Generic conversion of data files from m to dat format
%.dat: %.m
	m2dat $1_$2

#Generic conversion of data files from dat to (gplot) gdat format
%.gdat: %.dat
	dat2gdat $1_$2

#Generic conversion of Latex to latex document
%.doc: %.tex
	showtex $1 $2

#Generic conversion of LaTeX doc to dvi
%.dvi: %.doc
	echo Creating $1_$2.dvi
	latex $1_$2.doc > /dev/null


#Create PostScript version of fig files

%.ps : %.fig
	echo Creating $1_$2.ps
	fig2dev -Lps $1_$2.fig >$1_$2.ps


#Create PostScript version of dvi file

%.ps: %.dvi
	echo Creating $1_$2.ps
	dvips -o $1_$2.ps $1_$2


#Create PostScript version of dat file


%.ps: %.gdat




	gdat2ps $1_$2






















#View a ps file
%.view: %.ps
	echo Creating view of $1_$2
	ghostview $1_$2.ps&

#Report generation
$1_rep.tex: $1_sum.tex $1_dae.tex $1_lbl.txt $1_sympar.r $1_cr.r \
            $1_abg.ps
	echo Creating $1_rep.tex 
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	echo Creating $1_rep.ps 
	dvips -o $1_rep.ps $1_rep

$1_rep.html: $1_rep.dvi
	echo Creating $1_rep.html 
	latex2html $1_rep.tex

# Clean up all intermediate files
$1_clean.: 
	echo Cleaning up system $1
	rm -f  *.log *.old *.met *.dvi *.aux *.f2bd
	rm -f  $1_abg.pl $1_cbg.pl  $1_ese.r $1_def.r \
	$1_tf.r  \
	$1_dae.r \
	$1_cse.r $1_dm.r $1_csm.r \
	$1_*_rep.tex \
        $1_rbg.m $1_abg.m $1_cbg.m $1_cbg.fig $1_cbg?.fig

EOF







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	echo Creating $1_rep.ps 
	dvips -o $1_rep.ps $1_rep

$1_rep.html: $1_rep.dvi
	echo Creating $1_rep.html 
	latex2html $1_rep.tex












EOF

MTT: Model Transformation Tools
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