src/HOL/IsaMakefile
author nipkow
Fri, 16 May 1997 17:40:41 +0200
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Distributed Psubset stuff to basic set theory files, incl Finite. Added stuff by bu.
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#
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# $Id$
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#
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# IsaMakefile for HOL
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#
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#### Base system
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OUT = $(ISABELLE_OUTPUT)
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NAMES = HOL Ord Set Fun subset equalities Prod Relation Trancl Sum WF WF_Rel \
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	mono Lfp Gfp NatDef Nat intr_elim indrule Inductive Finite Arith \
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	Sexp Univ List RelPow Option
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FILES = ROOT.ML add_ind_def.ML datatype.ML hologic.ML \
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	ind_syntax.ML cladata.ML simpdata.ML \
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	typedef.ML thy_syntax.ML thy_data.ML ../Pure/section_utils.ML \
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	../Provers/hypsubst.ML ../Provers/classical.ML ../Provers/blast.ML \
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	../Provers/simplifier.ML ../Provers/splitter.ML \
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	../Provers/nat_transitive.ML \
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	$(NAMES:%=%.thy) $(NAMES:%=%.ML)
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$(OUT)/HOL: $(OUT)/Pure $(FILES)
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	@$(ISATOOL) usedir -b $(OUT)/Pure HOL
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	@chmod -w $@
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$(OUT)/Pure:
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	@cd ../Pure; $(ISATOOL) make
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#### Tests and examples
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## Inductive definitions: simple examples
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INDUCT_FILES =  Perm Comb Mutil SList LList LFilter Acc PropLog Term Simult
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INDUCT_FILES = Induct/ROOT.ML \
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	    $(INDUCT_NAMES:%=Induct/%.thy) $(INDUCT_NAMES:%=Induct/%.ML)
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Induct:	$(OUT)/HOL $(INDUCT_FILES)
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	@$(ISATOOL) usedir $(OUT)/HOL Induct
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## IMP-semantics example
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IMP_NAMES = Expr Com Natural Transition Denotation Hoare VC
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IMP_FILES = IMP/ROOT.ML $(IMP_NAMES:%=IMP/%.thy) $(IMP_NAMES:%=IMP/%.ML)
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IMP:	$(OUT)/HOL $(IMP_FILES)
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	@$(ISATOOL) usedir $(OUT)/HOL IMP
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## Hoare logic
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Hoare_NAMES = Hoare Arith2 Examples
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Hoare_FILES = Hoare/ROOT.ML $(Hoare_NAMES:%=Hoare/%.thy) \
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	      $(Hoare_NAMES:%=Hoare/%.ML)
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Hoare:	$(OUT)/HOL $(Hoare_FILES)
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	@$(ISATOOL) usedir $(OUT)/HOL Hoare
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## The integers in HOL
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INTEG_NAMES = Equiv Integ Group Ring Lagrange IntRingDefs IntRing
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INTEG_FILES = Integ/ROOT.ML \
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	      $(INTEG_NAMES:%=Integ/%.thy) $(INTEG_NAMES:%=Integ/%.ML)
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Integ:	$(OUT)/HOL $(INTEG_FILES)
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	@$(ISATOOL) usedir $(OUT)/HOL Integ
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## I/O Automata (meta theory only)
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IOA_FILES = IOA/ROOT.ML IOA/Asig.thy IOA/Asig.ML IOA/IOA.thy \
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  IOA/IOA.ML IOA/Solve.thy IOA/Solve.ML
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IOA: $(OUT)/HOL $(IOA_FILES)
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	@$(ISATOOL) usedir $(OUT)/HOL IOA
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## Authentication & Security Protocols
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Auth_NAMES = Message Shared NS_Shared OtwayRees OtwayRees_AN OtwayRees_Bad \
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	     Recur WooLam Yahalom Yahalom2 Public NS_Public_Bad NS_Public
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AUTH_FILES = Auth/ROOT.ML $(AUTH_NAMES:%=Auth/%.thy) $(AUTH_NAMES:%=Auth/%.ML)
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Auth:	$(OUT)/HOL $(AUTH_FILES)
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	@$(ISATOOL) usedir $(OUT)/HOL Auth
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## Modelchecker invocation
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MC_FILES = Modelcheck/CTL.thy Modelcheck/Example.ML \
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  Modelcheck/Example.thy Modelcheck/MCSyn.ML Modelcheck/MCSyn.thy \
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  Modelcheck/MuCalculus.ML Modelcheck/MuCalculus.thy Modelcheck/ROOT.ML
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Modelcheck: $(OUT)/HOL $(MC_FILES)
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	@$(ISATOOL) usedir $(OUT)/HOL Modelcheck
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## Properties of substitutions
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SUBST_NAMES = AList Subst Unifier UTerm Unify
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SUBST_FILES = Subst/ROOT.ML \
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	      $(SUBST_NAMES:%=Subst/%.thy) $(SUBST_NAMES:%=Subst/%.ML)
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Subst:	$(OUT)/HOL $(SUBST_FILES)
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	@$(ISATOOL) usedir $(OUT)/HOL Subst
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## Confluence of Lambda-calculus
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LAMBDA_NAMES = Lambda ParRed Commutation Eta
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LAMBDA_FILES = Lambda/ROOT.ML \
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	      $(LAMBDA_NAMES:%=Lambda/%.thy) $(LAMBDA_NAMES:%=Lambda/%.ML)
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Lambda:	 $(OUT)/HOL $(LAMBDA_FILES)
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	@$(ISATOOL) usedir $(OUT)/HOL Lambda
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## Type inference without let
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W0_NAMES = I Maybe MiniML Type W
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W0_FILES = W0/ROOT.ML \
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	      $(W0_NAMES:%=W0/%.thy) $(W0_NAMES:%=W0/%.ML)
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W0: $(OUT)/HOL $(W0_FILES)
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	@$(ISATOOL) usedir $(OUT)/HOL W0
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## Type inference with let
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MINIML_NAMES = Generalize Instance Maybe MiniML Type W
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MINIML_FILES = MiniML/ROOT.ML \
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	      $(MINIML_NAMES:%=MiniML/%.thy) $(MINIML_NAMES:%=MiniML/%.ML)
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MiniML: $(OUT)/HOL $(MINIML_FILES)
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	@$(ISATOOL) usedir $(OUT)/HOL MiniML
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## Lexical analysis
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LEX_FILES = Auto AutoChopper Chopper Prefix
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LEX_FILES = Lex/ROOT.ML \
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	    $(LEX_NAMES:%=Lex/%.thy) $(LEX_NAMES:%=Lex/%.ML)
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Lex:	$(OUT)/HOL $(LEX_FILES)
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	@$(ISATOOL) usedir $(OUT)/HOL Lex
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## Axiomatic type classes examples
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AXC_GROUP_FILES = Group.ML Group.thy GroupDefs.ML GroupDefs.thy \
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	GroupInsts.thy Monoid.thy MonoidGroupInsts.thy ROOT.ML Sigs.thy
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AXC_LATTICE_FILES = CLattice.ML CLattice.thy LatInsts.ML LatInsts.thy \
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	LatMorph.ML LatMorph.thy LatPreInsts.ML LatPreInsts.thy \
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	Lattice.ML Lattice.thy OrdDefs.ML OrdDefs.thy OrdInsts.thy \
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	Order.ML Order.thy ROOT.ML tools.ML
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AXC_TUTORIAL_FILES = BoolGroupInsts.thy Group.ML Group.thy Monoid.thy \
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	MonoidGroupInsts.thy ProdGroupInsts.thy Product.thy \
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	ProductInsts.thy ROOT.ML Semigroup.thy Semigroups.thy Sigs.thy \
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	Xor.ML Xor.thy
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AXCLASSES_FILES = AxClasses/ROOT.ML \
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	$(AXC_GROUP_FILES:%=AxClasses/Group/%) \
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	$(AXC_LATTICE_FILES:%=AxClasses/Lattice/%) \
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	$(AXC_TUTORIAL_FILES:%=AxClasses/Tutorial/%)
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AxClasses: $(OUT)/HOL $(AXCLASSES_FILES)
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	@$(ISATOOL) usedir $(OUT)/HOL AxClasses
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	@$(ISATOOL) usedir -s AxClasses-Group $(OUT)/HOL AxClasses/Group
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	@$(ISATOOL) usedir -s AxClasses-Lattice $(OUT)/HOL AxClasses/Lattice
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	@$(ISATOOL) usedir -s AxClasses-Tutorial $(OUT)/HOL AxClasses/Tutorial
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## Higher-order quotients and example fractionals
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QUOT_FILES = Quot/ROOT.ML Quot/PER0.thy Quot/PER0.ML Quot/PER.thy Quot/PER.ML \
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	Quot/HQUOT.thy Quot/HQUOT.ML Quot/NPAIR.thy Quot/NPAIR.ML \
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	Quot/FRACT.thy Quot/FRACT.ML
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Quot:	$(OUT)/HOL $(QUOT_FILES)
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	@$(ISATOOL) usedir $(OUT)/HOL Quot
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## Miscellaneous examples
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EX_NAMES = String BT InSort Qsort LexProd Puzzle Primes NatSum MT
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EX_FILES = ex/ROOT.ML ex/cla.ML ex/meson.ML ex/mesontest.ML ex/rel.ML \
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	   ex/set.ML $(EX_NAMES:%=ex/%.thy) $(EX_NAMES:%=ex/%.ML)
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ex:	$(OUT)/HOL $(EX_FILES)
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	@$(ISATOOL) usedir $(OUT)/HOL ex
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## Full test
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test:	$(OUT)/HOL \
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		Subst Induct IMP Hoare Lex Integ Auth Modelcheck Lambda  \
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		W0 MiniML IOA AxClasses Quot ex
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	echo 'Test examples ran successfully' > test
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.PRECIOUS: $(OUT)/Pure $(OUT)/HOL