src/ZF/Makefile
author lcp
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#  $Id$
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#########################################################################
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#									#
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# 			Makefile for Isabelle (ZF)			#
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#									#
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#########################################################################
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#To make the system, cd to this directory and type
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#	make -f Makefile 
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#To make the system and test it on standard examples, type 
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#	make -f Makefile test
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#Environment variable ISABELLECOMP specifies the compiler.
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#Environment variable ISABELLEBIN specifies the destination directory.
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#For Poly/ML, ISABELLEBIN must begin with a /
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#Makes FOL if this file is ABSENT -- but not 
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#if it is out of date, since this Makefile does not know its dependencies!
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BIN = $(ISABELLEBIN)
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COMP = $(ISABELLECOMP)
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NAMES = ZF upair subset pair domrange \
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	func AC simpdata equalities Bool \
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	Sum QPair mono Fixedpt ind_syntax add_ind_def \
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	constructor intr_elim indrule Inductive Perm Rel EquivClass Trancl \
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	WF Order Ordinal Epsilon Arith Univ \
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	QUniv Datatype OrderArith OrderType \
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	Cardinal CardinalArith Cardinal_AC InfDatatype \
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	Zorn Nat Finite List 
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FILES = ROOT.ML thy_syntax.ML ../Pure/section_utils.ML \
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 	$(NAMES:%=%.thy) $(NAMES:%=%.ML)
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#Uses cp rather than make_database because Poly/ML allows only 3 levels
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$(BIN)/ZF:   $(BIN)/FOL  $(FILES) 
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	case "$(COMP)" in \
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	poly*)	cp $(BIN)/FOL $(BIN)/ZF;\
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		echo 'open PolyML; exit_use"ROOT";' | $(COMP) $(BIN)/ZF ;;\
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	sml*)	echo 'exit_use"ROOT.ML"; xML"$(BIN)/ZF" banner;' | $(BIN)/FOL;;\
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	*)	echo Bad value for ISABELLECOMP: \
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                	$(COMP) is not poly or sml; exit 1;;\
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	esac
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$(BIN)/FOL:
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	cd ../FOL;  $(MAKE)
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#### Testing of ZF
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#A macro referring to the object-logic (depends on ML compiler)
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LOGIC:sh=case $ISABELLECOMP in \
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	poly*)	echo "$ISABELLECOMP $ISABELLEBIN/ZF" ;;\
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	sml*)	echo "$ISABELLEBIN/ZF" ;;\
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	*)	echo "echo Bad value for ISABELLECOMP: \
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                	$ISABELLEBIN is not poly or sml; exit 1" ;;\
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##IMP-semantics example
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IMP_NAMES = Com Denotation Equiv
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IMP_FILES = IMP/ROOT.ML $(IMP_NAMES:%=IMP/%.thy) $(IMP_NAMES:%=IMP/%.ML)
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IMP:   $(BIN)/ZF  $(IMP_FILES)
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	echo 'exit_use"IMP/ROOT.ML";quit();' | $(LOGIC)
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##Coinduction example
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COIND_NAMES = ECR Language MT Map Static Types Values 
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COIND_FILES = Coind/ROOT.ML Coind/BCR.thy  Coind/Dynamic.thy \
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              $(COIND_NAMES:%=Coind/%.thy) $(COIND_NAMES:%=Coind/%.ML)
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Coind:  $(BIN)/ZF  $(COIND_FILES)
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	echo 'exit_use"Coind/ROOT.ML";quit();' | $(LOGIC)
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##AC examples
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AC_NAMES = AC_Equiv OrdQuant Transrec2 Cardinal_aux \
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	   AC15_WO6 AC16_WO4 AC16_lemmas AC17_AC1 AC18_AC19 AC1_WO2 \
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           DC DC_lemmas HH Hartog WO1_AC \
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           WO2_AC16 WO6_WO1 WO_AC first recfunAC16 rel_is_fun
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AC_FILES = AC/ROOT.ML AC/AC0_AC1.ML AC/AC10_AC15.ML AC/AC1_AC17.ML \
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           AC/AC2_AC6.ML AC/AC7_AC9.ML \
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           AC/WO1_WO6.ML AC/WO1_WO7.ML AC/WO1_WO8.ML \
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           $(AC_NAMES:%=AC/%.thy) $(AC_NAMES:%=AC/%.ML)
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AC:  $(BIN)/ZF  $(AC_FILES)
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	echo 'exit_use"AC/ROOT.ML";quit();' | $(LOGIC)
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##Residuals example
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RESID_NAMES = Confluence Redex SubUnion Conversion Reduction Substitution \
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              Cube Residuals Terms
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RESID_FILES = Resid/ROOT.ML $(RESID_NAMES:%=Resid/%.thy) \
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                            $(RESID_NAMES:%=Resid/%.ML)
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Resid:  $(BIN)/ZF  $(RESID_FILES)
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	echo 'exit_use"Resid/ROOT.ML";quit();' | $(LOGIC)
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##Miscellaneous examples
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EX_NAMES = Ramsey Integ twos_compl Bin BT Term TF Ntree Brouwer Data Enum \
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	   Rmap PropLog ListN Acc Comb Primrec LList CoUnit 
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EX_FILES = ex/ROOT.ML ex/misc.ML $(EX_NAMES:%=ex/%.thy) $(EX_NAMES:%=ex/%.ML)
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#Test ZF by loading the examples in directory ex
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ex:     $(BIN)/ZF  $(EX_FILES)
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	echo 'exit_use"ex/ROOT.ML";quit();' | $(LOGIC)
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#Full test.
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test:   $(BIN)/ZF IMP Coind AC Resid ex
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	echo 'Test examples ran successfully' > test
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.PRECIOUS:  $(BIN)/FOL $(BIN)/ZF