check.icl 216 KB
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implementation module check

import StdEnv

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import syntax, typesupport, parse, checksupport, utilities, checktypes, transform, predef
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import explicitimports, comparedefimp, checkFunctionBodies, containers, portToNewSyntax, compilerSwitches
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import genericsupport
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// import RWSDebug
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cUndef :== (-1)
cDummyArray :== {}
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isMainModule :: ModuleKind -> Bool
isMainModule MK_Main	= True
isMainModule _ 			= False

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// AA: new implementation of generics ...
checkGenericDefs :: !Index !(Optional (CopiedDefinitions, Int)) !*{#GenericDef} !*{#CheckedTypeDef} !*{#ClassDef} !*{#DclModule} !*Heaps !*CheckState
	-> (!*{#GenericDef}, !*{#CheckedTypeDef}, !*{#ClassDef}, !*{#DclModule}, !*Heaps, !*CheckState)
checkGenericDefs mod_index opt_icl_info gen_defs type_defs class_defs modules heaps cs 	
	= check_generics 0 mod_index opt_icl_info gen_defs type_defs class_defs modules heaps cs
where
	check_generics index mod_index opt_icl_info gen_defs type_defs class_defs modules heaps cs
		# (n_generics, gen_defs) = usize gen_defs
		| index == n_generics 
			= (gen_defs, type_defs, class_defs, modules, heaps, cs)
			# (gen_defs, type_defs, class_defs, modules, heaps, cs) 
				= check_generic_def index mod_index opt_icl_info gen_defs type_defs class_defs modules heaps cs
			= check_generics (inc index) mod_index opt_icl_info gen_defs type_defs class_defs modules heaps cs		

	check_generic_def index mod_index opt_icl_info gen_defs type_defs class_defs modules heaps cs
		| has_to_be_checked mod_index index opt_icl_info 	
			= check_generic index mod_index gen_defs type_defs class_defs modules heaps cs		
				//---> ("check_generic", mod_index, index)
			= (gen_defs, type_defs, class_defs, modules, heaps, cs)
				//---> ("skipped check_generic", mod_index, index)

	has_to_be_checked module_index generic_index No 
		= True
	has_to_be_checked module_index generic_index (Yes ({copied_generic_defs}, n_cached_dcl_mods))
		= not (module_index < n_cached_dcl_mods && generic_index < size copied_generic_defs && copied_generic_defs.[generic_index])
			
	check_generic index mod_index gen_defs type_defs class_defs modules heaps cs		
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		#(gen_def=:{gen_name, gen_pos}, gen_defs) = gen_defs ! [index]
		# cs = pushErrorAdmin (newPosition gen_name gen_pos) cs
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		# (gen_def, heaps) = alloc_gen_info gen_def heaps
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		# (gen_def, type_defs, class_defs, modules, heaps, cs)
			= check_generic_type gen_def mod_index type_defs class_defs modules heaps cs
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		//# (heaps, cs) = check_generic_vars gen_def heaps cs

		# gen_defs = {gen_defs & [index] = gen_def} 
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		# (cs=:{cs_x}) = popErrorAdmin cs
		#! cs = { cs & cs_x = {cs_x & x_needed_modules = cs_x.x_needed_modules bitor cNeedStdGeneric}}			
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		= (gen_defs, type_defs, class_defs, modules, heaps, cs)
				//---> ("check_generic", gen_name, gen_def.gen_vars, gen_def.gen_type)

	alloc_gen_info gen_def heaps=:{hp_generic_heap}
		# initial_info = 
			{ gen_classes = createArray 32 []
			, gen_cases = []
			, gen_var_kinds = []
			, gen_star_case = {gi_module=NoIndex, gi_index=NoIndex}
			}
		# (gen_info_ptr, hp_generic_heap) = newPtr initial_info hp_generic_heap 
		= (	{gen_def & gen_info_ptr = gen_info_ptr}, 
			{heaps & hp_generic_heap = hp_generic_heap})

	check_generic_vars {gen_vars,gen_type} heaps=:{hp_type_heaps=hp_type_heaps=:{th_vars}} cs	
		#! types = [gen_type.st_result:gen_type.st_args]
		#! th_vars = performOnTypeVars mark_var types th_vars
		#! (th_vars,cs) = foldSt check_var_marked gen_vars (th_vars,cs)
		#! th_vars = performOnTypeVars initializeToTVI_Empty types th_vars
		= ({heaps & hp_type_heaps={hp_type_heaps&th_vars=th_vars}}, cs)
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	where
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		mark_var _ {tv_name,tv_info_ptr} th_vars
			= writePtr tv_info_ptr TVI_Used th_vars
		check_var_marked {tv_name,tv_info_ptr} (th_vars,cs=:{cs_error})
			#! (tv_info, th_vars) = readPtr tv_info_ptr th_vars
			#! cs_error = case tv_info of  
				TVI_Empty -> checkError tv_name "generic variable not used" cs_error
				TVI_Used -> cs_error
			= (th_vars, {cs & cs_error = cs_error})	

	check_generic_type gen_def=:{gen_type, gen_vars, gen_name, gen_pos} module_index type_defs class_defs modules heaps=:{hp_type_heaps} cs

		#! (checked_gen_type, _, type_defs, class_defs, modules, hp_type_heaps, cs) =
			checkFunctionType module_index gen_type SP_None type_defs class_defs modules hp_type_heaps cs
		
		#! (checked_gen_vars, cs) = check_generic_vars gen_vars checked_gen_type.st_vars cs		
		#! checked_gen_type = { checked_gen_type & st_vars = move_gen_vars checked_gen_vars checked_gen_type.st_vars}
				
		#! (hp_type_heaps, cs) = check_no_generic_vars_in_contexts checked_gen_type checked_gen_vars hp_type_heaps cs
		= 	( {gen_def & gen_type = checked_gen_type, gen_vars = checked_gen_vars}
			, type_defs
			, class_defs
			, modules
			, {heaps & hp_type_heaps = hp_type_heaps}
			, cs
			)
			//---> ("check_genric_type", gen_vars, checked_gen_vars, checked_gen_type)
	where
		check_generic_vars gen_vars st_vars cs=:{cs_error}
			# (gen_vars, _, cs_error) = foldSt check_generic_var gen_vars ([], st_vars, cs_error)
			= (reverse gen_vars, {cs & cs_error = cs_error})
	
		// make sure generic variables are first
		move_gen_vars gen_vars st_vars
			= gen_vars ++ (removeMembers st_vars gen_vars)
				
		check_generic_var gv (acc_gvs, [], error)
			= (acc_gvs, [], checkError gv.tv_name "generic variable not used" error) 
		check_generic_var gv (acc_gvs, [tv:tvs], error)
			| gv.tv_name.id_name == tv.tv_name.id_name
				= ([tv:acc_gvs], tvs, error)
				# (acc_gvs, tvs, error) = check_generic_var gv (acc_gvs, tvs, error)
				= (acc_gvs, [tv:tvs], error)
									
	// returns reversed variable list		
	add_vars_to_symbol_table gen_vars type_heaps=:{th_vars} cs=:{cs_error, cs_symbol_table}
		#! (rev_gen_vars,cs_symbol_table,th_vars, cs_error) 
			= foldSt add_var_to_symbol_table gen_vars ([],cs.cs_symbol_table,th_vars, cs_error)
		= (	rev_gen_vars,
			{type_heaps & th_vars = th_vars}, 
			{cs & cs_error = cs_error, cs_symbol_table = cs_symbol_table})			
	
	add_var_to_symbol_table :: !TypeVar !(![TypeVar], !*SymbolTable, !*TypeVarHeap, !*ErrorAdmin)
		-> (![TypeVar],!*SymbolTable,!*TypeVarHeap,!*ErrorAdmin)
	add_var_to_symbol_table tv=:{tv_name={id_name,id_info}} (rev_class_args, symbol_table, th_vars, error)
	  	#! (entry, symbol_table) = readPtr id_info symbol_table
		| entry.ste_kind == STE_Empty || entry.ste_def_level < cGlobalScope
			# (new_var_ptr, th_vars) = newPtr TVI_Empty th_vars
			# symbol_table = NewEntry symbol_table id_info (STE_TypeVariable new_var_ptr) NoIndex cGlobalScope entry
			= ([{ tv & tv_info_ptr = new_var_ptr} : rev_class_args], symbol_table, th_vars, error)
			= (rev_class_args, symbol_table, th_vars, checkError id_name "generic variable already defined" error)
	
	// also reverses variable list (but does not make coffe)
	remove_vars_from_symbol_table rev_gen_vars cs=:{cs_symbol_table}
		#! (gen_vars, cs_symbol_table) = foldSt remove_var_from_symbol_table rev_gen_vars ([], cs_symbol_table)
		= (gen_vars, { cs & cs_symbol_table = cs_symbol_table})
	remove_var_from_symbol_table tv=:{tv_name={id_name,id_info}} (gen_vars, symbol_table)
	  	#! (entry, symbol_table) = readPtr id_info symbol_table
		#! symbol_table = writePtr id_info entry.ste_previous symbol_table
		=([tv:gen_vars], symbol_table)

	check_no_generic_vars_in_contexts :: !SymbolType ![TypeVar] !*TypeHeaps !*CheckState
		-> (!*TypeHeaps, !*CheckState)
	check_no_generic_vars_in_contexts gen_type gen_vars th=:{th_vars} cs=:{cs_error}
	
		#! th_vars = clear_type_vars gen_type.st_vars th_vars
		#! th_vars = mark_type_vars_used gen_vars th_vars
		#! (th_vars, cs_error) = check_type_vars_not_used gen_type.st_context th_vars cs_error
		#! th_vars = clear_type_vars gen_type.st_vars th_vars
	
		= ({th & th_vars = th_vars}, {cs & cs_error = cs_error})
	where
		mark_type_vars_used gen_vars th_vars
			= foldSt (write_type_var_info TVI_Used) gen_vars th_vars
		clear_type_vars gen_vars th_vars
			= foldSt (write_type_var_info TVI_Empty) gen_vars th_vars
		write_type_var_info tvi {tv_name, tv_info_ptr} th_vars 
			= writePtr tv_info_ptr tvi th_vars
		
		check_type_vars_not_used :: ![TypeContext] !*TypeVarHeap !*ErrorAdmin -> (!*TypeVarHeap, !*ErrorAdmin) 
		check_type_vars_not_used contexts th_vars cs_error
			# types	= flatten [tc_types \\ {tc_types} <- contexts]		
			# atypes = [{at_type=t,at_attribute=TA_None} \\ t <- types]
			= performOnTypeVars check_type_var_not_used atypes (th_vars, cs_error)
		check_type_var_not_used attr tv=:{tv_name, tv_info_ptr} (th_vars, cs_error)
			#! (tv_info, th_vars) = readPtr tv_info_ptr th_vars
			= case tv_info of
				TVI_Empty  
					-> (th_vars, cs_error)
				TVI_Used
					#! cs_error = checkError tv_name "context restrictions on generic variables are not allowed" cs_error 
					-> (th_vars, cs_error)
				_	-> abort ("check_no_generic_vars_in_contexts: wrong TVI" ---> (tv, tv_info))	
							
checkGenericCaseDefs :: !Index !*{#GenericCaseDef} !*{#GenericDef} !u:{#CheckedTypeDef} !*{#DclModule} !*Heaps !*CheckState
	-> (!*{#GenericCaseDef}, !*{#GenericDef}, !u:{#CheckedTypeDef}, !*{#DclModule},!.Heaps,!.CheckState)
checkGenericCaseDefs mod_index gen_case_defs generic_defs type_defs modules heaps cs
	= check_instances 0 mod_index gen_case_defs generic_defs type_defs modules heaps cs
where
	check_instances index mod_index gen_case_defs generic_defs type_defs modules heaps cs
		# (n_gc, gen_inst_defs) = usize gen_case_defs
		| index == n_gc  
			= (gen_case_defs, generic_defs, type_defs, modules, heaps, cs)	
			# (gen_case_defs, generic_defs, type_defs, modules, heaps, cs) 
				= check_instance index mod_index gen_case_defs generic_defs type_defs modules heaps cs
			= check_instances (inc index)  mod_index gen_case_defs generic_defs type_defs modules heaps cs			

	check_instance index mod_index gen_case_defs generic_defs type_defs modules heaps cs

		#! (case_def=:{gc_name,gc_gname,gc_pos,gc_type}, gen_case_defs) = gen_case_defs ! [index]

		#! cs = pushErrorAdmin (newPosition gc_name gc_pos) cs

		#! (gc_type, gc_type_cons, type_defs, modules, heaps, cs)
		 	= check_instance_type mod_index gc_type type_defs modules heaps cs 

		#! (generic_gi, cs) = get_generic_index gc_gname mod_index cs 
		| not cs.cs_error.ea_ok
			# cs = popErrorAdmin cs
			= (gen_case_defs, generic_defs, type_defs, modules, heaps, cs)
				 
		#! case_def = 
			{ case_def 
			& gc_generic = generic_gi
			, gc_type = gc_type
			, gc_type_cons = gc_type_cons
			}
		#! gen_case_defs = { gen_case_defs & [index] = case_def }
				
		#! (generic_def, generic_defs, modules) = get_generic_def generic_gi mod_index generic_defs modules
		#! gindex = {gi_module=mod_index,gi_index=index}
		#! heaps = add_case_to_generic generic_def gindex heaps 		
	
		#! (heaps, cs) = check_star_case gc_type_cons generic_def gindex heaps cs 
			
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		#! (cs=:{cs_x}) = popErrorAdmin cs	
		#! cs = { cs & cs_x = {cs_x & x_needed_modules = cs_x.x_needed_modules bitor cNeedStdGeneric}}			
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		= (gen_case_defs, generic_defs, type_defs, modules, heaps, cs)
			//---> ("check_generic_case", gc_name, gc_type_cons)

	check_instance_type module_index (TA type_cons []) type_defs modules heaps=:{hp_type_heaps} cs 

		# (entry, cs_symbol_table) = readPtr type_cons.type_name.id_info cs.cs_symbol_table
		# cs = {cs & cs_symbol_table = cs_symbol_table}
	  	# (type_index, type_module) = retrieveGlobalDefinition entry STE_Type module_index
		| type_index == NotFound
			# cs_error = checkError type_cons.type_name "generic argument type undefined" cs.cs_error
 			= (TA type_cons [], TypeConsSymb type_cons, type_defs, modules,{heaps&hp_type_heaps = hp_type_heaps}, {cs&cs_error=cs_error})
		# (type_def, type_defs, modules) 
			= getTypeDef module_index {glob_module=type_module, glob_object=type_index} type_defs modules		
		# type_cons = { type_cons & type_index = { glob_object = type_index, glob_module = type_module }}
		= (TA type_cons [], TypeConsSymb type_cons, type_defs, modules,{heaps&hp_type_heaps = hp_type_heaps}, cs)
	check_instance_type module_index (TB b) type_defs modules heaps cs
		= (TB b, TypeConsBasic b, type_defs, modules,heaps, cs) 
	check_instance_type module_index TArrow type_defs modules heaps cs
		= (TArrow, TypeConsArrow, type_defs, modules, heaps , cs) 		
// General instance ..
	check_instance_type module_index (TV tv) type_defs modules heaps=:{hp_type_heaps} cs
		# (tv_info_ptr, th_vars) = newPtr TVI_Empty hp_type_heaps.th_vars
		# tv = {tv & tv_info_ptr = tv_info_ptr}		
		= 	( TV tv, TypeConsVar tv, type_defs, modules
			, {heaps& hp_type_heaps = {hp_type_heaps & th_vars = th_vars}}, cs) 
	
// .. General instance
	check_instance_type module_index ins_type type_defs modules heaps cs=:{cs_error}
		# cs_error = checkError {id_name="<>",id_info=nilPtr} "invalid generic type argument" cs_error
		= (ins_type, TypeConsArrow, type_defs, modules, heaps, {cs & cs_error=cs_error})

	get_generic_index :: !Ident !Index !*CheckState -> (!GlobalIndex, !*CheckState)
	get_generic_index {id_name,id_info} mod_index cs=:{cs_symbol_table}
 		# (ste, cs_symbol_table) = readPtr id_info cs_symbol_table
 		# cs = {cs & cs_symbol_table = cs_symbol_table}
 		= case ste.ste_kind of
			STE_Generic
				-> ({gi_module=mod_index,gi_index = ste.ste_index}, cs) 
			STE_Imported STE_Generic imported_generic_module
				-> ({gi_module=imported_generic_module,gi_index = ste.ste_index}, cs)
			_	->	//abort "--------------" ---> ("STE_Kind", ste.ste_kind)			
					( {gi_module=NoIndex,gi_index = NoIndex}
					, {cs & cs_error = checkError id_name "generic undefined" cs.cs_error})

	get_generic_def :: !GlobalIndex !Int !u:{#GenericDef} !v:{#DclModule} -> (!GenericDef,!u:{#GenericDef},!v:{#DclModule})
	get_generic_def {gi_module, gi_index} mod_index generic_defs modules
		| gi_module == mod_index
			# (generic_def, generic_defs) = generic_defs![gi_index]
			= (generic_def, generic_defs, modules)
			# (dcl_mod, modules) = modules![gi_module]
			= (dcl_mod.dcl_common.com_generic_defs.[gi_index], generic_defs, modules)

	add_case_to_generic :: !GenericDef !GlobalIndex !*Heaps -> !*Heaps
	add_case_to_generic {gen_info_ptr} index heaps=:{hp_generic_heap} 
		# (info=:{gen_cases}, hp_generic_heap) = readPtr gen_info_ptr hp_generic_heap
		# info = { info & gen_cases = [index:gen_cases]}
		= { heaps & hp_generic_heap = writePtr gen_info_ptr info hp_generic_heap} 
								
	check_star_case :: !TypeCons !GenericDef !GlobalIndex !*Heaps !*CheckState -> (!*Heaps, !*CheckState)
	check_star_case (TypeConsVar _) {gen_name, gen_info_ptr} index heaps=:{hp_generic_heap} cs=:{cs_error} 
		# (info=:{gen_star_case}, hp_generic_heap) = readPtr gen_info_ptr hp_generic_heap
		| gen_star_case.gi_module <> NoIndex
			# cs_error = checkError gen_name "general kind-* case is already defined" cs_error 
			= ({ heaps & hp_generic_heap = hp_generic_heap}, {cs & cs_error = cs_error})   
			# info = { info & gen_star_case = index }
			# hp_generic_heap = writePtr gen_info_ptr info hp_generic_heap	
			= ({ heaps & hp_generic_heap = hp_generic_heap}, {cs & cs_error = cs_error}) 
	check_star_case _ _ _ heaps cs 
		= (heaps, cs)
				
								
// ... AA: new implementation of generics

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checkTypeClasses :: !Index !(Optional (CopiedDefinitions, Int)) !*{#ClassDef} !*{#MemberDef} !*{#CheckedTypeDef} !*{#DclModule} !*Heaps !*CheckState
	-> (!*{#ClassDef}, !*{#MemberDef}, !*{#CheckedTypeDef}, !*{#DclModule}, !*Heaps, !*CheckState)
checkTypeClasses module_index opt_icl_info class_defs member_defs type_defs modules heaps=:{hp_type_heaps} cs
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	#! n_classes = size class_defs
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	# (class_defs,member_defs,type_defs,modules,hp_type_heaps,cs) 
		= iFoldSt (check_type_class module_index opt_icl_info) 0 n_classes (class_defs, member_defs, type_defs, modules, hp_type_heaps, cs)
	= (class_defs,member_defs,type_defs,modules,{heaps & hp_type_heaps = hp_type_heaps},cs)
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where
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	check_type_class module_index opt_icl_info class_index (class_defs, member_defs, type_defs, modules, type_heaps, cs=:{cs_symbol_table,cs_error})
		| has_to_be_checked module_index opt_icl_info class_index
			# (class_def=:{class_name,class_pos,class_args,class_context,class_members}, class_defs) = class_defs![class_index]
			  cs = {cs & cs_error = setErrorAdmin (newPosition class_name class_pos) cs_error }
			  (class_args, class_context, type_defs, class_defs, modules, type_heaps, cs)
			  		= checkSuperClasses class_args class_context module_index type_defs class_defs modules type_heaps cs
			  class_defs = { class_defs & [class_index] = { class_def & class_context = class_context, class_args = class_args }}
			  member_defs = set_classes_in_member_defs 0 class_members {glob_object = class_index, glob_module = module_index} member_defs 
			= (class_defs, member_defs, type_defs, modules, type_heaps, cs)
			= (class_defs, member_defs, type_defs, modules, type_heaps, cs)

	has_to_be_checked module_index No class_index
		= True
	has_to_be_checked module_index (Yes ({copied_class_defs}, n_cached_dcl_mods)) class_index
		= not (module_index < n_cached_dcl_mods && class_index < size copied_class_defs && copied_class_defs.[class_index])

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	set_classes_in_member_defs mem_offset class_members glob_class_index member_defs
		| mem_offset == size class_members
			= member_defs
			# {ds_index} = class_members.[mem_offset]
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			# (member_def, member_defs) = member_defs![ds_index]
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			= set_classes_in_member_defs (inc mem_offset) class_members glob_class_index { member_defs & [ds_index] = { member_def & me_class = glob_class_index }}

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checkSpecial :: !Index !FunType !Index !SpecialSubstitution !(!Index, ![FunType], !*Heaps,!*PredefinedSymbols,!*ErrorAdmin)
	-> (!Special, !(!Index, ![FunType], !*Heaps,!*PredefinedSymbols, !*ErrorAdmin))
checkSpecial mod_index fun_type=:{ft_type} fun_index subst (next_inst_index, special_types, heaps, predef_symbols,error)
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	# (special_type, hp_type_heaps, error) = substitute_type ft_type subst heaps.hp_type_heaps error
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	  (spec_types, predef_symbols, error) = checkAndCollectTypesOfContextsOfSpecials special_type.st_context predef_symbols error
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	  ft_type = { special_type & st_context = [] }
	  (new_info_ptr, hp_var_heap) = newPtr VI_Empty heaps.hp_var_heap
	= ( { spec_index = { glob_module = mod_index, glob_object = next_inst_index }, spec_types = spec_types, spec_vars = subst.ss_vars, spec_attrs = subst.ss_attrs },
			((inc next_inst_index), [{ fun_type & ft_type = ft_type, ft_specials = SP_FunIndex fun_index, ft_type_ptr = new_info_ptr} : special_types ],
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					{ heaps & hp_type_heaps = hp_type_heaps, hp_var_heap = hp_var_heap }, predef_symbols, error))
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where	
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	substitute_type st=:{st_vars,st_attr_vars,st_args,st_result,st_context,st_attr_env} environment type_heaps error
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		# (st_vars, st_attr_vars, [st_result : st_args], st_context, st_attr_env, _, type_heaps, error)
			= instantiateTypes st_vars st_attr_vars [ st_result : st_args ] st_context st_attr_env environment [] type_heaps error
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		= ({st & st_vars = st_vars, st_args = st_args, st_result = st_result, st_attr_vars = st_attr_vars,
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			st_context = st_context, st_attr_env = st_attr_env }, type_heaps, error)
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checkDclFunctions :: !Index !Index ![FunType] !v:{#CheckedTypeDef} !x:{#ClassDef} !v:{#.DclModule} !*Heaps !*CheckState
	-> (!Index, ![FunType], ![FunType], !v:{#CheckedTypeDef}, !x:{#ClassDef}, !v:{#DclModule}, !*Heaps, !*CheckState)
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checkDclFunctions module_index first_inst_index fun_types type_defs class_defs modules heaps cs
	= check_dcl_functions module_index fun_types 0 first_inst_index [] [] type_defs class_defs modules heaps cs
where
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	check_dcl_functions ::  !Index ![FunType]   !Index  !Index ![FunType] ![FunType] !v:{#CheckedTypeDef} !x:{#ClassDef} !v:{#DclModule} !*Heaps !*CheckState
		 -> (!Index, ![FunType], ![FunType],!v:{#CheckedTypeDef}, !x:{#ClassDef}, !v:{#DclModule}, !*Heaps, !*CheckState)
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	check_dcl_functions module_index [] fun_index next_inst_index collected_funtypes collected_instances type_defs class_defs modules heaps cs
		= (next_inst_index, collected_funtypes, collected_instances, type_defs, class_defs, modules, heaps, cs)
	check_dcl_functions module_index [fun_type=:{ft_symb,ft_type,ft_pos,ft_specials} : fun_types] fun_index
			next_inst_index collected_funtypes collected_instances type_defs class_defs modules heaps cs
		# position = newPosition ft_symb ft_pos
		  cs = { cs & cs_error = setErrorAdmin position cs.cs_error }
		  (ft_type, ft_specials, type_defs,  class_defs, modules, hp_type_heaps, cs)
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		  		= checkFunctionType module_index ft_type ft_specials type_defs class_defs modules heaps.hp_type_heaps cs
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		  (spec_types, next_inst_index, collected_instances, heaps, cs_predef_symbols,cs_error)
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		  		= check_specials module_index { fun_type & ft_type = ft_type } fun_index ft_specials next_inst_index collected_instances
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		  				{ heaps & hp_type_heaps = hp_type_heaps } cs.cs_predef_symbols cs.cs_error
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		  (new_info_ptr, hp_var_heap) = newPtr VI_Empty heaps.hp_var_heap
		= check_dcl_functions module_index fun_types (inc fun_index) next_inst_index [
				{ fun_type & ft_type = ft_type, ft_specials = spec_types, ft_type_ptr = new_info_ptr } : collected_funtypes]
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					collected_instances type_defs class_defs modules { heaps & hp_var_heap = hp_var_heap } { cs & cs_predef_symbols=cs_predef_symbols,cs_error = cs_error }

	check_specials :: !Index !FunType !Index !Specials !Index ![FunType] !*Heaps !*PredefinedSymbols !*ErrorAdmin
		-> (!Specials, !Index, ![FunType], !*Heaps, !*PredefinedSymbols, !*ErrorAdmin)
	check_specials mod_index fun_type fun_index (SP_Substitutions substs) next_inst_index all_instances heaps predef_symbols error
		# (list_of_specials, (next_inst_index, all_instances, heaps, cs_predef_symbols,cs_error))
				= mapSt (checkSpecial mod_index fun_type fun_index) substs (next_inst_index, all_instances, heaps, predef_symbols,error)
		= (SP_ContextTypes list_of_specials, next_inst_index, all_instances, heaps, cs_predef_symbols,cs_error)
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	check_specials mod_index fun_type fun_index SP_None next_inst_index all_instances heaps predef_symbols error
		= (SP_None, next_inst_index, all_instances, heaps, predef_symbols,error)

checkSpecialsOfInstances :: !Index !Index ![ClassInstance] !Index ![ClassInstance] ![FunType] {# FunType} *{! [Special] } !*Heaps !*PredefinedSymbols !*ErrorAdmin
		-> (!Index, ![ClassInstance], ![FunType], !*{! [Special]}, !*Heaps, !*PredefinedSymbols,!*ErrorAdmin)
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checkSpecialsOfInstances mod_index first_mem_index [class_inst=:{ins_members,ins_specials} : class_insts] next_inst_index all_class_instances all_specials
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		new_inst_defs all_spec_types heaps predef_symbols error
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	= case ins_specials of
		SP_TypeOffset type_offset
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			# (next_inst_index, rev_mem_specials, all_specials, all_spec_types, heaps,predef_symbols, error)
				= check_and_build_members mod_index first_mem_index 0 ins_members type_offset next_inst_index [] all_specials new_inst_defs all_spec_types heaps predef_symbols error
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			  class_inst = { class_inst & ins_members = { mem \\ mem <- reverse rev_mem_specials } }
			-> checkSpecialsOfInstances mod_index first_mem_index class_insts next_inst_index [class_inst : all_class_instances]
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					all_specials new_inst_defs all_spec_types heaps predef_symbols error
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		SP_None
			-> checkSpecialsOfInstances mod_index first_mem_index class_insts next_inst_index [class_inst : all_class_instances]
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					all_specials new_inst_defs all_spec_types heaps predef_symbols error
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where
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	check_and_build_members :: !Index !Index !Int {# DefinedSymbol} !Int !Index ![DefinedSymbol] ![FunType] !{#FunType} !*{! [Special]} !*Heaps !*PredefinedSymbols !*ErrorAdmin
		-> (!Index, ![DefinedSymbol], ![FunType], !*{! [Special]}, !*Heaps, !*PredefinedSymbols,!*ErrorAdmin)
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	check_and_build_members mod_index first_mem_index member_offset ins_members type_offset next_inst_index rev_mem_specials all_specials inst_spec_defs
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			all_spec_types heaps predef_symbols error
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		| member_offset < size ins_members
			# member = ins_members.[member_offset]
			  member_index = member.ds_index
			  spec_member_index = member_index - first_mem_index
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		 	# (spec_types, all_spec_types) = all_spec_types![spec_member_index]
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		 	# mem_inst = inst_spec_defs.[spec_member_index]
		 	  (SP_Substitutions specials) = mem_inst.ft_specials
		 	  env = specials !! type_offset
			  member = { member & ds_index = next_inst_index }
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			  (spec_type, (next_inst_index, all_specials, heaps, predef_symbols,error))
			  		= checkSpecial mod_index mem_inst member_index env (next_inst_index, all_specials, heaps, predef_symbols,error)
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			  all_spec_types = { all_spec_types & [spec_member_index] = [ spec_type : spec_types] }
			= check_and_build_members mod_index first_mem_index (inc member_offset) ins_members type_offset next_inst_index [ member : rev_mem_specials ]
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					all_specials inst_spec_defs all_spec_types heaps predef_symbols error
			= (next_inst_index, rev_mem_specials, all_specials, all_spec_types, heaps, predef_symbols,error)
checkSpecialsOfInstances mod_index first_mem_index [] next_inst_index all_class_instances all_specials inst_spec_defs all_spec_types heaps predef_symbols error
	= (next_inst_index, all_class_instances, all_specials, all_spec_types, heaps, predef_symbols,error)
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checkMemberTypes :: !Index !(Optional (CopiedDefinitions, Int)) !*{#MemberDef} !*{#CheckedTypeDef} !*{#ClassDef} !*{#DclModule} !*Heaps !*CheckState
	-> (!*{#MemberDef}, !*{#CheckedTypeDef}, !*{#ClassDef}, !*{#DclModule}, !*Heaps, !*CheckState)
checkMemberTypes module_index opt_icl_info member_defs type_defs class_defs modules heaps=:{hp_type_heaps,hp_var_heap} cs
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	#! nr_of_members = size member_defs
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	# (mds,tds,cds,modules,hp_type_heaps,hp_var_heap,cs) 
		= iFoldSt (check_class_member module_index opt_icl_info) 0 nr_of_members (member_defs, type_defs, class_defs, modules, hp_type_heaps, hp_var_heap, cs)
	= (mds,tds,cds,modules,{heaps & hp_type_heaps = hp_type_heaps,hp_var_heap = hp_var_heap},cs) 
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where
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	check_class_member module_index opt_icl_info member_index (member_defs, type_defs, class_defs, modules, type_heaps, var_heap, cs)
		# (member_def=:{me_symb,me_type,me_pos,me_class}, member_defs) = member_defs![member_index]
		| has_to_be_checked opt_icl_info me_class
			# position = newPosition me_symb me_pos
			  cs = { cs & cs_error = setErrorAdmin position cs.cs_error }
			  (me_type, type_defs, class_defs, modules, type_heaps, cs)
			   		= checkMemberType module_index me_type type_defs class_defs modules type_heaps cs
			  me_class_vars = [ type_var \\ (TV type_var) <- (hd me_type.st_context).tc_types ]
			  (me_type_ptr, var_heap) = newPtr VI_Empty var_heap		   
			= ({ member_defs & [member_index] = { member_def & me_type = me_type, me_class_vars = me_class_vars, me_type_ptr = me_type_ptr }},
					type_defs, class_defs, modules, type_heaps, var_heap, cs)
			= (member_defs, type_defs, class_defs, modules, type_heaps, var_heap, cs)

	has_to_be_checked No glob_class_index
		= True
	has_to_be_checked (Yes ({copied_class_defs}, n_cached_dcl_mods)) {glob_module,glob_object}
		= not (glob_module < n_cached_dcl_mods && glob_object < size copied_class_defs && copied_class_defs.[glob_object])
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::	InstanceSymbols =
	{	is_type_defs		:: !.{# CheckedTypeDef}
	,	is_class_defs		:: !.{# ClassDef}
	,	is_member_defs		:: !.{# MemberDef}
	,	is_modules			:: !.{# DclModule}
	}

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// AA..
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checkInstanceDefs :: !Index !*{#ClassInstance} !u:{#CheckedTypeDef} !u:{#ClassDef} !u:{#MemberDef} !u:{#DclModule} !*Heaps !*CheckState
	-> (!.{#ClassInstance},!u:{#CheckedTypeDef},!u:{#ClassDef},!u:{#MemberDef}, !u:{#DclModule},!.Heaps,!.CheckState)
checkInstanceDefs mod_index instance_defs type_defs class_defs member_defs modules heaps=:{hp_type_heaps} cs
	# is = { is_type_defs = type_defs, is_class_defs = class_defs, is_member_defs = member_defs, is_modules = modules }
	  (instance_defs, is, hp_type_heaps, cs) = check_instance_defs 0 mod_index instance_defs is hp_type_heaps cs
	= (instance_defs, is.is_type_defs, is.is_class_defs, is.is_member_defs, is.is_modules, {heaps & hp_type_heaps = hp_type_heaps}, cs)
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where
	check_instance_defs :: !Index !Index !*{# ClassInstance} !u:InstanceSymbols !*TypeHeaps !*CheckState
		-> (!*{# ClassInstance},!u:InstanceSymbols,!*TypeHeaps,!*CheckState)
	check_instance_defs inst_index mod_index instance_defs is type_heaps cs
		| inst_index < size instance_defs
			# (instance_def, instance_defs) = instance_defs![inst_index]
			  (instance_def, is, type_heaps, cs) = check_instance mod_index instance_def is type_heaps cs
			= check_instance_defs (inc inst_index) mod_index { instance_defs & [inst_index] = instance_def } is type_heaps cs
			= (instance_defs, is, type_heaps, cs)
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	check_instance :: !Index !ClassInstance !u:InstanceSymbols !*TypeHeaps !*CheckState -> (!ClassInstance, !u:InstanceSymbols, !*TypeHeaps, !*CheckState)
	check_instance module_index
			ins=:{ins_members,ins_class={glob_object = class_name =: {ds_ident = {id_name,id_info},ds_arity}},ins_type,ins_specials,ins_pos,ins_ident}
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			is=:{is_class_defs,is_modules} type_heaps cs=:{cs_symbol_table}
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		#  	(entry, cs_symbol_table) = readPtr id_info cs_symbol_table
		# 	cs = pushErrorAdmin (newPosition ins_ident ins_pos) { cs & cs_symbol_table = cs_symbol_table }
		#   (ins, is, type_heaps, cs) = case entry.ste_kind of
				STE_Class				
					# (class_def, is) = class_by_index entry.ste_index is
					-> check_class_instance	class_def module_index entry.ste_index module_index ins is type_heaps cs 
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				STE_Imported STE_Class decl_index	
					# (class_def, is) = class_by_module_index decl_index entry.ste_index is
					-> check_class_instance class_def module_index entry.ste_index decl_index ins is type_heaps cs
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				ste -> (ins, is, type_heaps, { cs & cs_error = checkError id_name "class undefined" cs.cs_error })
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		= (ins, is, type_heaps, popErrorAdmin cs)

	where
			class_by_index class_index is=:{is_class_defs}
				#	(class_def, is_class_defs) = is_class_defs![class_index]
 				= (class_def, {is & is_class_defs = is_class_defs})
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			class_by_module_index decl_index class_index is=:{is_modules}
 				# 	(dcl_mod, is_modules) = is_modules![decl_index]
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					class_def = dcl_mod.dcl_common.com_class_defs.[class_index]
				= (class_def, {is & is_modules = is_modules })
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	check_class_instance :: ClassDef !Index !Index !Index !ClassInstance !u:InstanceSymbols !*TypeHeaps !*CheckState 
		-> (!ClassInstance, !u:InstanceSymbols, !*TypeHeaps, !*CheckState)
	check_class_instance class_def module_index class_index class_mod_index
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			ins=:{ins_members,ins_class={glob_object = class_name =: {ds_ident = {id_name,id_info},ds_arity}},ins_type,ins_specials,ins_pos,ins_ident}
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			is=:{is_class_defs,is_modules} type_heaps cs=:{cs_symbol_table}	
		| class_def.class_arity == ds_arity
			# ins_class = { glob_object = { class_name & ds_index = class_index }, glob_module = class_mod_index}
			  (ins_type, ins_specials, is_type_defs, is_class_defs, is_modules, type_heaps, cs)
			  		= checkInstanceType module_index ins_class ins_type ins_specials
							is.is_type_defs is.is_class_defs is.is_modules type_heaps cs
			  is = { is & is_type_defs = is_type_defs, is_class_defs = is_class_defs, is_modules = is_modules }
			= ({ins & ins_class = ins_class, ins_type = ins_type, ins_specials = ins_specials}, is, type_heaps, cs)
		// otherwise
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			= ( ins, is, type_heaps
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			  , { cs & cs_error = checkError id_name ("wrong arity: expected "+++toString class_def.class_arity+++" found "+++toString ds_arity) cs.cs_error }
			  )
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checkInstances :: !Index !*CommonDefs !u:{# DclModule} !*VarHeap !*TypeHeaps !*CheckState
	-> (![(Index,SymbolType)], !*CommonDefs, !u:{# DclModule}, !*VarHeap , !*TypeHeaps, !*CheckState)
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checkInstances mod_index icl_common=:{com_instance_defs,com_class_defs,com_member_defs,com_generic_defs,com_type_defs} modules var_heap type_heaps cs=:{cs_error}
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	| cs_error.ea_ok
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		# (instance_types, com_instance_defs, com_class_defs, com_member_defs, com_generic_defs, com_type_defs, modules, var_heap, type_heaps, cs)
				= check_instances 0 mod_index [] com_instance_defs com_class_defs com_member_defs /*AA*/com_generic_defs com_type_defs modules var_heap type_heaps cs
		= (instance_types, { icl_common & com_instance_defs = com_instance_defs,com_class_defs = com_class_defs,com_member_defs = com_member_defs, /*AA*/com_generic_defs = com_generic_defs, com_type_defs = com_type_defs },
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			 	modules, var_heap, type_heaps, cs)
		= ([], icl_common, modules, var_heap, type_heaps, cs)
where
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	check_instances :: !Index !Index ![(Index,SymbolType)] !x:{# ClassInstance} !w:{# ClassDef} !v:{# MemberDef} /*AA*/!w:{# GenericDef} !nerd:{# CheckedTypeDef} !u:{# DclModule}
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		!*VarHeap !*TypeHeaps !*CheckState
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			-> (![(Index,SymbolType)], !x:{# ClassInstance}, !w:{# ClassDef}, !v:{# MemberDef}, /*AA*/!w:{# GenericDef}, !nerd:{# CheckedTypeDef}, !u:{# DclModule}, !*VarHeap, !*TypeHeaps, !*CheckState)
	check_instances inst_index mod_index instance_types instance_defs class_defs member_defs generic_defs type_defs modules var_heap type_heaps cs
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		| inst_index < size instance_defs
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			# (instance_def=:{ins_ident, ins_pos}, instance_defs) = instance_defs![inst_index]
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			# (instance_types, class_defs, member_defs, generic_defs, type_defs, modules, var_heap, type_heaps, cs) =
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					check_class_instance instance_def mod_index instance_types class_defs member_defs generic_defs type_defs modules var_heap type_heaps cs				 
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			= check_instances (inc inst_index) mod_index instance_types instance_defs class_defs member_defs generic_defs type_defs modules var_heap type_heaps cs 
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		// otherwise
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			= (instance_types, instance_defs, class_defs, member_defs, generic_defs, type_defs, modules, var_heap, type_heaps, cs)
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	check_class_instance {ins_pos,ins_class,ins_members,ins_type} mod_index instance_types class_defs member_defs generic_defs type_defs modules var_heap type_heaps cs
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			# ({class_members,class_name}, class_defs, modules) = getClassDef ins_class mod_index class_defs modules
			  class_size = size class_members
			| class_size == size ins_members
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				# (instance_types, member_defs, type_defs, modules, var_heap, type_heaps, cs) 
						= check_member_instances mod_index ins_class.glob_module
			  	        	 0 class_size ins_members class_members class_name ins_pos ins_type instance_types member_defs type_defs modules var_heap type_heaps cs
				= (instance_types, class_defs, member_defs, generic_defs, type_defs, modules, var_heap, type_heaps, cs)
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			// otherwise
				# cs = { cs & cs_error = checkError class_name "different number of members specified" cs.cs_error }
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				= (instance_types, class_defs, member_defs, generic_defs, type_defs, modules, var_heap, type_heaps, cs)
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/*
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	check_generic_instance {ins_class, ins_members, ins_generate} mod_index instance_types class_defs member_defs generic_defs type_defs modules var_heap type_heaps cs
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			# ({gen_name, gen_member_name}, generic_defs, modules) = getGenericDef ins_class mod_index generic_defs modules		
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			//| ins_generate 
			//	= (instance_types, class_defs, member_defs, generic_defs, type_defs, modules, var_heap, type_heaps, cs)
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			| size ins_members <> 1 				
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				# cs = { cs & cs_error = checkError gen_name "generic instance must have one member" cs.cs_error }
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				= (instance_types, class_defs, member_defs, generic_defs, type_defs, modules, var_heap, type_heaps, cs)
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			# member_name = ins_members.[0].ds_ident
			| member_name <> gen_member_name
				# cs = { cs & cs_error = checkError member_name "wrong member name" cs.cs_error }
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				= (instance_types, class_defs, member_defs, generic_defs, type_defs, modules, var_heap, type_heaps, cs)				
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			// otherwise
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				= (instance_types, class_defs, member_defs, generic_defs, type_defs, modules, var_heap, type_heaps, cs)
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*/
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	check_member_instances :: !Index !Index !Int !Int !{#DefinedSymbol} !{#DefinedSymbol} Ident !Position !InstanceType ![(Index,SymbolType)]
		!v:{# MemberDef} !blah:{# CheckedTypeDef} !u:{# DclModule} !*VarHeap !*TypeHeaps !*CheckState
			-> (![(Index,SymbolType)], !v:{# MemberDef}, !blah:{# CheckedTypeDef}, !u:{# DclModule},!*VarHeap, !*TypeHeaps, !*CheckState)
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	check_member_instances module_index member_mod_index mem_offset class_size ins_members class_members
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				class_name ins_pos ins_type instance_types member_defs type_defs modules var_heap type_heaps cs=:{cs_x={x_main_dcl_module_n}}
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		| mem_offset == class_size
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			= (instance_types, member_defs, type_defs, modules, var_heap, type_heaps, cs)
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			# ins_member = ins_members.[mem_offset]
			  class_member = class_members.[mem_offset]
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			  cs = setErrorAdmin (newPosition class_name ins_pos) cs
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			| ins_member.ds_ident <> class_member.ds_ident
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				= check_member_instances module_index member_mod_index (inc mem_offset) class_size ins_members class_members class_name ins_pos ins_type 
						instance_types member_defs type_defs modules var_heap type_heaps
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							{ cs & cs_error = checkError class_member.ds_ident "instance of class member expected" cs.cs_error}
			| ins_member.ds_arity <> class_member.ds_arity
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				= check_member_instances module_index member_mod_index (inc mem_offset) class_size ins_members class_members class_name ins_pos ins_type
						instance_types member_defs type_defs modules var_heap type_heaps
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							{ cs & cs_error = checkError class_member.ds_ident "used with wrong arity" cs.cs_error}
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				# ({me_symb, me_type,me_class_vars,me_pos}, member_defs, modules) = getMemberDef member_mod_index class_member.ds_index module_index member_defs modules
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				  (instance_type, _, type_heaps, Yes (modules, type_defs), cs_error)
				  		= determineTypeOfMemberInstance me_type me_class_vars ins_type SP_None type_heaps (Yes (modules, type_defs, x_main_dcl_module_n)) cs.cs_error
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				  (st_context, var_heap) = initializeContextVariables instance_type.st_context var_heap
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				= check_member_instances module_index member_mod_index (inc mem_offset) class_size ins_members class_members class_name ins_pos ins_type
						[ (ins_member.ds_index, { instance_type & st_context = st_context }) : instance_types ] member_defs type_defs modules var_heap type_heaps { cs & cs_error = cs_error }
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getClassDef :: !(Global DefinedSymbol) !Int !u:{#ClassDef} !v:{#DclModule} -> (!ClassDef,!u:{#ClassDef},!v:{#DclModule})
getClassDef {glob_module, glob_object={ds_ident, ds_index}} mod_index class_defs modules
	| glob_module == mod_index
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		# (class_def, class_defs) = class_defs![ds_index]
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		= (class_def, class_defs, modules)
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		# (dcl_mod, modules) = modules![glob_module]
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		= (dcl_mod.dcl_common.com_class_defs.[ds_index], class_defs, modules)
		
getMemberDef :: !Int Int !Int !u:{#MemberDef} !v:{#DclModule} -> (!MemberDef,!u:{#MemberDef},!v:{#DclModule})
getMemberDef mem_mod mem_index mod_index member_defs modules
	| mem_mod == mod_index
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		# (member_def,member_defs) = member_defs![mem_index]
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		= (member_def, member_defs, modules)
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		# (dcl_mod,modules) = modules![mem_mod]
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		= (dcl_mod.dcl_common.com_member_defs.[mem_index], member_defs, modules)

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getGenericDef :: !(Global DefinedSymbol) !Int !u:{#GenericDef} !v:{#DclModule} -> (!GenericDef,!u:{#GenericDef},!v:{#DclModule})
getGenericDef {glob_module, glob_object={ds_ident, ds_index}} mod_index generic_defs modules
	| glob_module == mod_index
		# (generic_def, generic_defs) = generic_defs![ds_index]
		= (generic_def, generic_defs, modules)
		# (dcl_mod, modules) = modules![glob_module]
		= (dcl_mod.dcl_common.com_generic_defs.[ds_index], generic_defs, modules)

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instantiateTypes :: ![TypeVar] ![AttributeVar] ![AType] ![TypeContext] ![AttrInequality] !SpecialSubstitution ![SpecialSubstitution] !*TypeHeaps !*ErrorAdmin
	-> (![TypeVar], ![AttributeVar], ![AType], ![TypeContext], ![AttrInequality], ![SpecialSubstitution], !*TypeHeaps, !*ErrorAdmin)
instantiateTypes old_type_vars old_attr_vars types type_contexts attr_env {ss_environ, ss_vars, ss_attrs, ss_context} special_subst_list type_heaps=:{th_vars, th_attrs} error
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	# th_vars = clear_vars old_type_vars th_vars

	  (new_type_vars, th_vars) = foldSt build_var_subst ss_vars ([], th_vars)
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	  (new_attr_vars, th_attrs) = foldSt build_attr_var_subst ss_attrs ([], th_attrs)
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	  type_heaps = foldSt build_type_subst ss_environ { type_heaps & th_vars = th_vars, th_attrs = th_attrs }
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	  (ok1, new_ss_context, type_heaps) = substitute ss_context type_heaps
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	  (inst_vars, th_vars)			= foldSt determine_free_var old_type_vars (new_type_vars, type_heaps.th_vars) 
	  (inst_attr_vars, th_attrs)	= foldSt build_attr_var_subst old_attr_vars (new_attr_vars, type_heaps.th_attrs)
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	  (inst_types, (ok2, type_heaps))	= mapSt substitue_arg_type types (True, { type_heaps & th_vars = th_vars, th_attrs = th_attrs })
//	  (ok2, inst_types, type_heaps)		= substitute types { type_heaps & th_vars = th_vars, th_attrs = th_attrs }
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	  (ok3, inst_contexts, type_heaps)	= substitute type_contexts type_heaps
	  (ok4, inst_attr_env, type_heaps)	= substitute attr_env type_heaps
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	  (special_subst_list, th_vars) 	= mapSt adjust_special_subst special_subst_list type_heaps.th_vars
	  error = case ok1 && ok2 && ok3 && ok4 of
	  				True
	  					-> error
	  				False
	  					-> checkError "instance type incompatible with class type" "" error

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	= (inst_vars, inst_attr_vars, inst_types, new_ss_context ++ inst_contexts, inst_attr_env, special_subst_list, { type_heaps & th_vars = th_vars }, error)
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where
	clear_vars type_vars type_var_heap = foldSt (\tv -> writePtr tv.tv_info_ptr TVI_Empty) type_vars type_var_heap
	
	determine_free_var tv=:{tv_info_ptr} (free_vars, type_var_heap)
		# (type_var_info, type_var_heap) = readPtr tv_info_ptr type_var_heap
		= case type_var_info of
			TVI_Empty
				-> build_var_subst tv (free_vars, type_var_heap)
			_
				-> (free_vars, type_var_heap)

	build_type_subst {bind_src,bind_dst} type_heaps
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		# (_, bind_src, type_heaps) = substitute bind_src type_heaps
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// RWS ...
/*
	FIXME: this is a patch for the following incorrect function type (in a dcl module)


    f :: a | c a b special
        a=[], b = Int
        a=T, b = Char

   The type variable b doesn't occur in f's type, but this is checked in a later
   phase. Probably it's a better solution to change the order of checking.

*/
		| isNilPtr bind_dst.tv_info_ptr
			= type_heaps
// ... RWS
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		= { type_heaps & th_vars = writePtr bind_dst.tv_info_ptr (TVI_Type bind_src) type_heaps.th_vars}

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	substitue_arg_type at=:{at_type = TFA type_vars type} (was_ok, type_heaps)
		# (fresh_type_vars, type_heaps) = foldSt build_avar_subst type_vars ([], type_heaps)
		  (ok, new_at, type_heaps) = substitute {at & at_type = type} type_heaps
		= ({ new_at & at_type = TFA fresh_type_vars new_at.at_type}, (was_ok && ok, type_heaps))
	substitue_arg_type type (was_ok, type_heaps)
		# (ok, type, type_heaps) = substitute type type_heaps
		= (type, (was_ok && ok, type_heaps))
		
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	build_var_subst var (free_vars, type_var_heap)
		# (new_info_ptr, type_var_heap) = newPtr TVI_Empty type_var_heap
		  new_fv = { var & tv_info_ptr = new_info_ptr}
	  	= ([ new_fv : free_vars ], writePtr var.tv_info_ptr (TVI_Type (TV new_fv)) type_var_heap)

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	build_avar_subst atv=:{atv_variable,atv_attribute} (free_vars, type_heaps)
		# (new_info_ptr, th_vars) = newPtr TVI_Empty type_heaps.th_vars
		  new_fv = { atv_variable & tv_info_ptr = new_info_ptr}
		  th_vars = th_vars <:= (atv_variable.tv_info_ptr, TVI_Type (TV new_fv))
		  (new_attr, th_attrs) = build_attr_subst atv_attribute type_heaps.th_attrs
		= ([ { atv & atv_variable = new_fv, atv_attribute = new_attr } : free_vars], { type_heaps & th_vars = th_vars, th_attrs = th_attrs })
	where		  
		 build_attr_subst (TA_Var avar) attr_var_heap
			# (new_info_ptr, attr_var_heap) = newPtr AVI_Empty attr_var_heap
			  new_attr = { avar & av_info_ptr = new_info_ptr}
			= (TA_Var new_attr, attr_var_heap <:= (avar.av_info_ptr, AVI_Attr (TA_Var new_attr)))
		 build_attr_subst attr attr_var_heap
			= (attr, attr_var_heap)

	build_attr_var_subst attr (free_attrs, attr_var_heap)
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		# (new_info_ptr, attr_var_heap) = newPtr AVI_Empty attr_var_heap
		  new_attr = { attr & av_info_ptr = new_info_ptr}
		= ([new_attr : free_attrs], writePtr attr.av_info_ptr (AVI_Attr (TA_Var new_attr)) attr_var_heap)
	
	adjust_special_subst special_subst=:{ss_environ} type_var_heap
		# (ss_environ, type_var_heap) = mapSt adjust_special_bind ss_environ type_var_heap
		= ({ special_subst & ss_environ = ss_environ }, type_var_heap)
		
	adjust_special_bind bind=:{bind_dst={tv_info_ptr}} type_var_heap
		# (TVI_Type (TV new_tv), type_var_heap) = readPtr tv_info_ptr type_var_heap
		= ({ bind & bind_dst = new_tv }, type_var_heap)

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determineTypeOfMemberInstance :: !SymbolType ![TypeVar] !InstanceType !Specials !*TypeHeaps !u:(Optional (v:{#DclModule}, w:{#CheckedTypeDef}, Index)) !*ErrorAdmin
		-> (!SymbolType, !Specials, !*TypeHeaps, !u:Optional (v:{#DclModule}, w:{#CheckedTypeDef}), !*ErrorAdmin)
determineTypeOfMemberInstance mem_st class_vars {it_types,it_vars,it_attr_vars,it_context} specials type_heaps opt_modules error
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	# env = { ss_environ = foldl2 (\binds var type -> [ {bind_src = type, bind_dst = var} : binds]) [] class_vars it_types,
			  ss_context = it_context, ss_vars = it_vars, ss_attrs = it_attr_vars} 
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	  (st, specials, type_heaps, error)
	  		= determine_type_of_member_instance mem_st env specials type_heaps error
	  (type_heaps, opt_modules, error)
	  		= check_attribution_consistency mem_st type_heaps opt_modules error
	= (st, specials, type_heaps, opt_modules, error)
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where
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	determine_type_of_member_instance mem_st=:{st_context} env (SP_Substitutions substs) type_heaps error
		# (mem_st, substs, type_heaps, error) 
				= substitute_symbol_type { mem_st &  st_context = tl st_context } env substs type_heaps error
		= (mem_st, SP_Substitutions substs, type_heaps, error) 
	determine_type_of_member_instance mem_st=:{st_context} env SP_None type_heaps error
		# (mem_st, _, type_heaps, error)
				= substitute_symbol_type { mem_st &  st_context = tl st_context } env [] type_heaps error
		= (mem_st, SP_None, type_heaps, error)

	substitute_symbol_type st=:{st_vars,st_attr_vars,st_args,st_result,st_context,st_attr_env} environment specials type_heaps error
		# (st_vars, st_attr_vars, [st_result : st_args], st_context, st_attr_env, specials, type_heaps, error)
			= instantiateTypes st_vars st_attr_vars [ st_result : st_args ] st_context st_attr_env environment specials type_heaps error
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		= ({st & st_vars = st_vars, st_args = st_args, st_result = st_result, st_attr_vars = st_attr_vars,
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			st_context = st_context, st_attr_env = st_attr_env }, specials, type_heaps, error)
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	check_attribution_consistency {st_args, st_result} type_heaps No error
		= (type_heaps, No, error)
	check_attribution_consistency {st_args, st_result} type_heaps=:{th_vars} (Yes (modules, type_defs, x_main_dcl_module_n)) error
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		// it is assumed that all type vars bindings done in instantiateTypes are still valid
		# (_, th_vars, modules, type_defs, error)
				= foldSt (foldATypeSt (check_it x_main_dcl_module_n) (\_ st -> st))
						[st_result:st_args]
						(False, th_vars, modules, type_defs, error)
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		= ({ type_heaps & th_vars = th_vars }, Yes (modules, type_defs), error)
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	check_it _ {at_attribute} (error_already_given, th_vars, modules, type_defs, error)
		| at_attribute==TA_Unique || error_already_given
			= (error_already_given, th_vars, modules, type_defs, error)
		// otherwise GOTO next alternative
	check_it x_main_dcl_module_n {at_type=TV tv} (_, th_vars, modules, type_defs, error)
  		= must_not_be_essentially_unique x_main_dcl_module_n tv th_vars modules type_defs error
	check_it x_main_dcl_module_n {at_type= (CV tv) :@: _} (_, th_vars, modules, type_defs, error)
  		= must_not_be_essentially_unique x_main_dcl_module_n tv th_vars modules type_defs error
	check_it _ _ state
		= state
		
	must_not_be_essentially_unique x_main_dcl_module_n {tv_name, tv_info_ptr} th_vars modules type_defs error
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		# (TVI_Type type, th_vars) = readPtr tv_info_ptr th_vars
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		= case type of
			TA {type_name, type_index} _
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				-> must_not_be_essentially_unique_for_TA type_name type_index th_vars
			TAS {type_name, type_index} _ _
				-> must_not_be_essentially_unique_for_TA type_name type_index th_vars
			_
				-> (False, th_vars, modules, type_defs, error)
		where
			must_not_be_essentially_unique_for_TA type_name type_index th_vars
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				# (type_def, type_defs, modules)
						= getTypeDef x_main_dcl_module_n type_index type_defs modules
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				= case type_def.td_attribute of
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					TA_Unique
						-> (True, th_vars, modules, type_defs,
							checkError type_name 
								(   "is unique but instanciates class variable "
								 +++tv_name.id_name
								 +++" that is non uniquely used in a member type"
								) error
						   )
					_
						-> (False, th_vars, modules, type_defs, error)
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getTypeDef :: !Index !(Global Index) !v:{#CheckedTypeDef} !w:{#DclModule}
		-> (!CheckedTypeDef, !v:{#CheckedTypeDef}, !w:{#DclModule})
getTypeDef x_main_dcl_module_n {glob_module,glob_object} type_defs modules
	| glob_module==x_main_dcl_module_n
		# (type_def, type_defs)
				= type_defs![glob_object]
		= (type_def, type_defs, modules)
	# (type_def, modules)
			= modules![glob_module].dcl_common.com_type_defs.[glob_object]
	= (type_def, type_defs, modules)
		
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determineTypesOfInstances :: !Index !Index !*{#ClassInstance} !*{# ClassDef} !*{# MemberDef} 
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							 !*{#DclModule} !*TypeHeaps !*VarHeap !*CheckState
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	-> (![FunType], !Index, ![ClassInstance], !*{#ClassInstance}, !*{# ClassDef}, !*{# MemberDef}, !*{#DclModule}, !*TypeHeaps, !*VarHeap, !*CheckState)
determineTypesOfInstances first_memb_inst_index mod_index com_instance_defs com_class_defs com_member_defs
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		modules type_heaps var_heap cs=:{cs_error,cs_predef_symbols,cs_x={x_main_dcl_module_n}}
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	| cs_error.ea_ok
		#! nr_of_class_instances = size com_instance_defs
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		# (memb_inst_defs, next_mem_inst_index, all_class_specials, com_class_defs, com_member_defs, modules, com_instance_defs, type_heaps, var_heap, cs_predef_symbols,cs_error)
				= determine_types_of_instances x_main_dcl_module_n 0 nr_of_class_instances first_memb_inst_index mod_index [] com_class_defs com_member_defs 
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						modules com_instance_defs type_heaps var_heap cs_predef_symbols cs_error
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		= (memb_inst_defs, next_mem_inst_index, all_class_specials, com_instance_defs, com_class_defs,
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		   com_member_defs, modules, type_heaps, var_heap, { cs & cs_predef_symbols=cs_predef_symbols,cs_error = cs_error })
		= ([], first_memb_inst_index, [], com_instance_defs, com_class_defs, com_member_defs, modules, type_heaps, var_heap, cs)
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where
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	determine_types_of_instances :: !Index !Index !Index !Index !Index ![ClassInstance] !v:{#ClassDef} !w:{#MemberDef}
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		!x:{#DclModule} !*{#ClassInstance} !*TypeHeaps !*VarHeap !*PredefinedSymbols !*ErrorAdmin
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			-> (![FunType], !Index, ![ClassInstance], !v:{#ClassDef}, !w:{#MemberDef}, !x:{#DclModule}, !*{#ClassInstance}, !*TypeHeaps, !*VarHeap, !*PredefinedSymbols,!*ErrorAdmin)
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	determine_types_of_instances x_main_dcl_module_n inst_index next_class_inst_index next_mem_inst_index mod_index all_class_specials
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			class_defs member_defs modules instance_defs type_heaps var_heap predef_symbols error
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		| inst_index < size instance_defs
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			# (instance_def=:{ins_class,ins_pos,ins_type,ins_specials}, instance_defs) = instance_defs![inst_index]
			# ({class_name, class_members}, class_defs, modules) = getClassDef ins_class mod_index class_defs modules
			  class_size = size class_members
			  (ins_members, memb_inst_defs1, member_defs, modules, type_heaps, var_heap, error)
			  		= determine_instance_symbols_and_types x_main_dcl_module_n next_mem_inst_index 0 mod_index ins_class.glob_module class_size class_members
			  				ins_type ins_specials class_name ins_pos member_defs modules type_heaps var_heap error
			  instance_def = { instance_def & ins_members = { member \\ member <- ins_members }}
			  (ins_specials, next_class_inst_index, all_class_specials, type_heaps, predef_symbols,error)
					= check_instance_specials mod_index instance_def inst_index ins_specials next_class_inst_index all_class_specials type_heaps predef_symbols error
			  (memb_inst_defs2, next_mem_inst_index, all_class_specials, class_defs, member_defs, modules, instance_defs, type_heaps, var_heap, predef_symbols,error)
			  		= determine_types_of_instances x_main_dcl_module_n (inc inst_index) next_class_inst_index (next_mem_inst_index + class_size) mod_index all_class_specials
			  				class_defs member_defs modules { instance_defs & [inst_index] = { instance_def & ins_specials = ins_specials }} type_heaps var_heap predef_symbols error

			= (memb_inst_defs1 ++ memb_inst_defs2, next_mem_inst_index, all_class_specials, class_defs, member_defs, modules, instance_defs, type_heaps, var_heap, predef_symbols,error)
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			= ([], next_mem_inst_index, all_class_specials, class_defs, member_defs, modules, instance_defs, type_heaps, var_heap, predef_symbols,error)
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	determine_instance_symbols_and_types :: !Index !Index !Index !Index !Index !Int !{#DefinedSymbol} !InstanceType !Specials Ident !Position
			!w:{#MemberDef} !u:{#DclModule} !*TypeHeaps !*VarHeap !*ErrorAdmin
					-> (![DefinedSymbol], ![FunType], !w:{#MemberDef}, !u:{#DclModule}, !*TypeHeaps, !*VarHeap, !.ErrorAdmin)
	determine_instance_symbols_and_types x_main_dcl_module_n first_inst_index mem_offset module_index member_mod_index class_size class_members
			ins_type ins_specials class_name ins_pos member_defs modules type_heaps var_heap cs_error
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		| mem_offset == class_size
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			=  ([], [], member_defs, modules, type_heaps, var_heap, cs_error)
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			# class_member = class_members.[mem_offset]
			  ({me_symb,me_type,me_priority,me_class_vars}, member_defs, modules) = getMemberDef member_mod_index class_member.ds_index module_index member_defs modules
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			  cs_error
			  		= pushErrorAdmin (newPosition class_name ins_pos) cs_error
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			  (instance_type, new_ins_specials, type_heaps, Yes (modules, _), cs_error)
			  		= determineTypeOfMemberInstance me_type me_class_vars ins_type ins_specials type_heaps (Yes (modules, {}, cUndef)) cs_error
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			  cs_error
			  		= popErrorAdmin cs_error
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			  (new_info_ptr, var_heap) = newPtr VI_Empty var_heap
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			  inst_def = MakeNewFunctionType me_symb me_type.st_arity me_priority instance_type ins_pos new_ins_specials new_info_ptr
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			  (inst_symbols, memb_inst_defs, member_defs, modules, type_heaps, var_heap, cs_error)
			  		= determine_instance_symbols_and_types x_main_dcl_module_n first_inst_index (inc mem_offset) module_index member_mod_index
			  				class_size class_members ins_type ins_specials class_name ins_pos member_defs modules type_heaps var_heap cs_error
			= ([{ class_member & ds_index = first_inst_index +  mem_offset } : inst_symbols], [inst_def : memb_inst_defs], member_defs, modules, type_heaps, var_heap, cs_error)
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	check_instance_specials :: !Index !ClassInstance !Index !Specials !Index ![ClassInstance] !*TypeHeaps !*PredefinedSymbols !*ErrorAdmin
		-> (!Specials, !Index, ![ClassInstance], !*TypeHeaps, !*PredefinedSymbols,!*ErrorAdmin)
	check_instance_specials mod_index inst_type inst_index (SP_Substitutions substs) next_inst_index all_instances type_heaps predef_symbols error
		# (list_of_specials, next_inst_index, all_instances, type_heaps, predef_symbols,error)
			= check_specials mod_index inst_type 0 substs [] next_inst_index all_instances type_heaps predef_symbols error
		= (SP_ContextTypes list_of_specials, next_inst_index, all_instances, type_heaps, predef_symbols, error)
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	where
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		check_specials mod_index inst=:{ins_type} type_offset [ subst : substs ] list_of_specials next_inst_index all_instances type_heaps predef_symbols error
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			# (special_type, type_heaps, error) = substitute_instance_type ins_type subst type_heaps error
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			  (spec_types, predef_symbols,error) = checkAndCollectTypesOfContextsOfSpecials special_type.it_context predef_symbols error
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			  special = { spec_index = { glob_module = mod_index, glob_object = next_inst_index }, spec_types = spec_types,
			  				spec_vars = subst.ss_vars, spec_attrs = subst.ss_attrs }
			= check_specials mod_index inst (inc type_offset) substs [ special : list_of_specials ] (inc next_inst_index)
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					[{ inst & ins_type = { special_type & it_context = [] }, ins_specials = SP_TypeOffset type_offset} : all_instances ] type_heaps predef_symbols error
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		where
			substitute_instance_type :: !InstanceType !SpecialSubstitution !*TypeHeaps !*ErrorAdmin -> (!InstanceType,!*TypeHeaps,!.ErrorAdmin)
			substitute_instance_type it=:{it_vars,it_attr_vars,it_types,it_context} environment type_heaps cs_error
				# (it_vars, it_attr_vars, it_atypes, it_context, _, _, type_heaps, cs_error)	
					= instantiateTypes it_vars it_attr_vars [MakeAttributedType type \\ type <- it_types] it_context [] environment [] type_heaps cs_error
				= ({it & it_vars = it_vars, it_types = [ at_type \\ {at_type} <- it_atypes ], it_attr_vars = it_attr_vars, it_context = it_context }, type_heaps, cs_error)

			
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		check_specials mod_index inst=:{ins_type} type_offset [] list_of_specials next_inst_index all_instances type_heaps predef_symbols error
			= (list_of_specials,  next_inst_index, all_instances, type_heaps, predef_symbols, error)
	check_instance_specials mod_index fun_type fun_index SP_None next_inst_index all_instances type_heaps predef_symbols error
		= (SP_None, next_inst_index, all_instances, type_heaps, predef_symbols,error)
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mapSt2 f l s1 s2 :== map_st2 l s1 s2
where
	map_st2 [x : xs] s1 s2
	 	# (x, s1,s2) = f x s1 s2
		  (xs, s1,s2) = map_st2 xs s1 s2
		#! s1 = s1
		#! s2 = s2
		= ([x : xs], s1,s2)
	map_st2 [] s1 s2
	 	= ([], s1,s2)
	
checkAndCollectTypesOfContextsOfSpecials :: [TypeContext] *PredefinedSymbols *ErrorAdmin -> (![[Type]],!*PredefinedSymbols,!*ErrorAdmin);
checkAndCollectTypesOfContextsOfSpecials type_contexts predef_symbols error
	= mapSt2 check_and_collect_context_types_of_special type_contexts predef_symbols error
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where	
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	check_and_collect_context_types_of_special {tc_class=TCClass {glob_object={ds_ident,ds_index},glob_module},tc_types} predef_symbols error
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		| hasNoTypeVariables tc_types
			= (tc_types, predef_symbols,error)
		# {pds_def,pds_module} = predef_symbols.[PD_ArrayClass]
		| glob_module==pds_module && ds_index==pds_def && is_lazy_or_strict_array tc_types predef_symbols
			= (tc_types, predef_symbols,error)
		# {pds_def,pds_module} = predef_symbols.[PD_ListClass]
		| glob_module==pds_module && ds_index==pds_def && is_lazy_or_strict_list tc_types predef_symbols
			= (tc_types, predef_symbols,error)
			= (tc_types, predef_symbols,checkError ds_ident.id_name "illegal specialization" error)
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	check_and_collect_context_types_of_special {tc_class=TCGeneric {gtc_generic},tc_types} predef_symbols error
		= (tc_types, predef_symbols,checkError gtc_generic.glob_object.ds_ident.id_name "genenric specials are illegal" error) 
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	hasNoTypeVariables []
		= True
	hasNoTypeVariables [TV tvar : types]
		= False
	hasNoTypeVariables [ _ : types]
		= hasNoTypeVariables types
	
	is_lazy_or_strict_array [TA {type_index={glob_module,glob_object}} [],TV var] predef_symbols
		# {pds_def,pds_module} = predef_symbols.[PD_LazyArrayType]
		| glob_module==pds_module && glob_object==pds_def
			= True
		# {pds_def,pds_module} = predef_symbols.[PD_StrictArrayType]
		| glob_module==pds_module && glob_object==pds_def
			= True
			= False
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	is_lazy_or_strict_array _ predef_symbols
		= False
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	is_lazy_or_strict_list [TA {type_index={glob_module,glob_object}} [],TV var] predef_symbols
		# {pds_def,pds_module} = predef_symbols.[PD_ListType]
		| glob_module==pds_module && glob_object==pds_def
			= True
		# {pds_def,pds_module} = predef_symbols.[PD_StrictListType]
		| glob_module==pds_module && glob_object==pds_def
			= True
		# {pds_def,pds_module} = predef_symbols.[PD_TailStrictListType]
		| glob_module==pds_module && glob_object==pds_def
			= True
		# {pds_def,pds_module} = predef_symbols.[PD_StrictTailStrictListType]
		| glob_module==pds_module && glob_object==pds_def
			= True
			= False
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	is_lazy_or_strict_list _ predef_symbols
		= False
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initializeContextVariables :: ![TypeContext] !*VarHeap ->  (![TypeContext], !*VarHeap)
initializeContextVariables contexts var_heap
	= mapSt add_variable_to_context contexts var_heap
where
	add_variable_to_context context var_heap
		# (new_info_ptr, var_heap) = newPtr VI_Empty var_heap
		= ({ context & tc_var = new_info_ptr}, var_heap)

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ident_for_errors_from_fun_symb_and_fun_kind :: Ident FunKind -> Ident;
ident_for_errors_from_fun_symb_and_fun_kind {id_name} (FK_Function fun_name_is_location_dependent)
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	| fun_name_is_location_dependent && size id_name>0
		# beautiful_name = if (id_name.[0]==backslash) "lambda" "comprehension"
		= { id_name=beautiful_name, id_info=nilPtr }
ident_for_errors_from_fun_symb_and_fun_kind fun_symb _
	= fun_symb

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