transform.icl 108 KB
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implementation module transform

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import syntax, check, StdCompare, utilities, mergecases; //, RWSDebug
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::	LiftState =
	{	ls_var_heap		:: !.VarHeap
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	,	ls_x 			:: !.LiftStateX
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	,	ls_expr_heap	:: !.ExpressionHeap
	}
	
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::	LiftStateX = {
		x_fun_defs :: !.{#FunDef},
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		x_macro_defs :: !.{#.{#FunDef}},
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		x_main_dcl_module_n :: !Int
	}

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class lift a :: !a !*LiftState -> (!a, !*LiftState)

instance lift [a] | lift a
where
	lift l ls = mapSt lift l ls

instance lift (a,b) | lift a & lift b
where
	lift t ls = app2St (lift,lift) t ls

instance lift (Optional a) | lift a
where
	lift (Yes x) ls
		# (x, ls) = lift x ls
		= (Yes x, ls)
	lift no ls
		= (no, ls)
	
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instance lift CheckedAlternative
where
	lift ca=:{ca_rhs} ls
		# (ca_rhs, ls) = lift ca_rhs ls
		= ({ ca & ca_rhs = ca_rhs }, ls)
	
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instance lift Expression
where
	lift (FreeVar {fv_name,fv_info_ptr}) ls=:{ls_var_heap}
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		# (var_info, ls_var_heap) = readPtr fv_info_ptr ls_var_heap
		  ls = { ls & ls_var_heap = ls_var_heap }
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		= case var_info of
			 VI_LiftedVariable var_info_ptr
			 	# (var_expr_ptr, ls_expr_heap) = newPtr EI_Empty ls.ls_expr_heap
			 	-> (Var { var_name = fv_name, var_info_ptr = var_info_ptr, var_expr_ptr = var_expr_ptr }, { ls & ls_expr_heap = ls_expr_heap})
			 _
			 	# (var_expr_ptr, ls_expr_heap) = newPtr EI_Empty ls.ls_expr_heap
			 	-> (Var { var_name = fv_name, var_info_ptr = fv_info_ptr, var_expr_ptr = var_expr_ptr }, { ls & ls_expr_heap = ls_expr_heap})
	lift (App app) ls
		# (app, ls) = lift app ls
		= (App app, ls)
	lift (expr @ exprs) ls
		# ((expr,exprs), ls) = lift (expr,exprs) ls
		= (expr @ exprs, ls)
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	lift (Let lad=:{let_strict_binds, let_lazy_binds, let_expr}) ls
		# (let_strict_binds, ls) = lift let_strict_binds ls
		  (let_lazy_binds, ls) = lift let_lazy_binds ls
		  (let_expr, ls) = lift let_expr ls
		= (Let {lad & let_strict_binds = let_strict_binds, let_lazy_binds = let_lazy_binds, let_expr = let_expr}, ls)
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	lift (Case case_expr) ls
		# (case_expr, ls) = lift case_expr ls
		= (Case case_expr, ls)
	lift (Selection is_unique expr selectors) ls
		# (selectors, ls) = lift selectors ls
		  (expr, ls) = lift expr ls
		= (Selection is_unique expr selectors, ls)
	lift (Update expr1 selectors expr2) ls
		# (selectors, ls) = lift selectors ls
		  (expr1, ls) = lift expr1 ls
		  (expr2, ls) = lift expr2 ls
		= (Update expr1 selectors expr2, ls)
	lift (RecordUpdate cons_symbol expression expressions) ls
		# (expression, ls) = lift expression ls
		  (expressions, ls) = lift expressions ls
		= (RecordUpdate cons_symbol expression expressions, ls)
	lift (TupleSelect symbol argn_nr expr) ls
		# (expr, ls) = lift expr ls
		= (TupleSelect symbol argn_nr expr, ls)
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	lift (MatchExpr opt_tuple cons_symb expr) ls
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		# (expr, ls) = lift expr ls
		= (MatchExpr opt_tuple cons_symb expr, ls)
	lift expr ls
		= (expr, ls)

instance lift Selection
where
	lift (ArraySelection array_select expr_ptr index_expr) ls
		# (index_expr, ls) = lift index_expr ls
		= (ArraySelection array_select expr_ptr index_expr, ls)
	lift record_selection ls
		= (record_selection, ls)

instance lift App
where
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	lift app=:{app_symb = app_symbol=:{symb_kind = SK_Function {glob_object,glob_module}}, app_args} ls
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		| glob_module == ls.ls_x.LiftStateX.x_main_dcl_module_n
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			# (fun_def,ls) = ls!ls_x.x_fun_defs.[glob_object]
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			= lift_function_app app fun_def.fun_info.fi_free_vars ls
			# (app_args, ls) = lift app_args ls
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			= ({ app & app_args = app_args }, ls)
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	lift app=:{app_symb = {symb_kind = SK_LocalMacroFunction glob_object},app_args} ls
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		# (fun_def,ls) = ls!ls_x.x_fun_defs.[glob_object]
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		= lift_function_app app fun_def.fun_info.fi_free_vars ls
	lift app=:{app_symb = {symb_kind = SK_LocalDclMacroFunction {glob_object,glob_module}}} ls
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		# (fun_def,ls) = ls!ls_x.x_macro_defs.[glob_module,glob_object]
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		= lift_function_app app fun_def.fun_info.fi_free_vars ls
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	lift app=:{app_args} ls
		# (app_args, ls) = lift app_args ls
		= ({ app & app_args = app_args }, ls)

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lift_function_app app=:{app_symb=app_symbol,app_args} [] ls
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	# (app_args, ls) = lift app_args ls
	= ({ app & app_args = app_args }, ls)
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lift_function_app app=:{app_args} fi_free_vars ls
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	# (app_args, ls) = lift app_args ls
	# (app_args, ls_var_heap, ls_expr_heap) = add_free_variables_in_app fi_free_vars app_args ls.ls_var_heap ls.ls_expr_heap
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	# app = { app & app_args = app_args }
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	= (app,	{ ls & ls_var_heap = ls_var_heap, ls_expr_heap = ls_expr_heap })
where
	add_free_variables_in_app :: ![FreeVar] ![Expression] !*VarHeap !*ExpressionHeap -> (![Expression],!*VarHeap,!*ExpressionHeap)
	add_free_variables_in_app [] app_args var_heap expr_heap
		= (app_args, var_heap, expr_heap)
	add_free_variables_in_app [{fv_name, fv_info_ptr} : free_vars] app_args var_heap expr_heap
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		# (var_info,var_heap) = readPtr fv_info_ptr var_heap
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		= case var_info of
			VI_LiftedVariable var_info_ptr
			 	# (var_expr_ptr, expr_heap) = newPtr EI_Empty expr_heap
				-> add_free_variables_in_app free_vars [Var { var_name = fv_name, var_info_ptr = var_info_ptr, var_expr_ptr = var_expr_ptr } : app_args]
						var_heap expr_heap
			_
			 	# (var_expr_ptr, expr_heap) = newPtr EI_Empty expr_heap
				-> add_free_variables_in_app free_vars [Var { var_name = fv_name, var_info_ptr = fv_info_ptr, var_expr_ptr = var_expr_ptr } : app_args]
						var_heap expr_heap
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instance lift LetBind
where
	lift bind=:{lb_src} ls
		# (lb_src, ls) = lift lb_src ls
		= ({ bind & lb_src = lb_src }, ls)

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instance lift (Bind a b) | lift a
where
	lift bind=:{bind_src} ls
		# (bind_src, ls) = lift bind_src ls
		= ({ bind & bind_src = bind_src }, ls)

instance lift Case
where
	lift kees=:{ case_expr,case_guards,case_default } ls
		# ((case_expr,(case_guards,case_default)), ls) = lift (case_expr,(case_guards,case_default)) ls
		= ({ kees & case_expr = case_expr,case_guards = case_guards, case_default = case_default }, ls)

instance lift CasePatterns
where
	lift (AlgebraicPatterns type patterns) ls
		# (patterns, ls) = lift patterns ls
		= (AlgebraicPatterns type patterns, ls)
	lift (BasicPatterns type patterns) ls
		# (patterns, ls) = lift patterns ls
		= (BasicPatterns type patterns, ls)
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	lift (OverloadedListPatterns type decons_expr patterns) ls
		# (patterns, ls) = lift patterns ls
		# (decons_expr, ls) = lift decons_expr ls
		= (OverloadedListPatterns type decons_expr patterns, ls)
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	lift (DynamicPatterns patterns) ls
		# (patterns, ls) = lift patterns ls
		= (DynamicPatterns patterns, ls)

instance lift AlgebraicPattern
where
	lift pattern=:{ap_expr} ls
		# (ap_expr, ls) = lift ap_expr ls
		= ({ pattern & ap_expr = ap_expr }, ls)

instance lift BasicPattern
where
	lift pattern=:{bp_expr} ls
		# (bp_expr, ls) = lift bp_expr ls
		= ({ pattern & bp_expr = bp_expr }, ls)

instance lift DynamicPattern
where
	lift pattern=:{dp_rhs} ls
		# (dp_rhs, ls) = lift dp_rhs ls
		= ({ pattern & dp_rhs = dp_rhs }, ls)

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liftFunctions :: [FunctionOrMacroIndex] Int Int *{#FunDef} *{#*{#FunDef}} *(Heap VarInfo) *(Heap ExprInfo) -> .LiftState;
liftFunctions group group_index main_dcl_module_n fun_defs macro_defs var_heap expr_heap
	# (contains_free_vars, lifted_function_called, fun_defs,macro_defs)
			= foldSt (add_free_vars_of_non_recursive_calls_to_function group_index) group (False, False, fun_defs,macro_defs)
	| contains_free_vars
		# (fun_defs,macro_defs) = iterateSt (add_free_vars_of_recursive_calls_to_functions group_index group) (fun_defs,macro_defs)
		= lift_functions group {ls_x={x_fun_defs=fun_defs,x_macro_defs=macro_defs,x_main_dcl_module_n=main_dcl_module_n},ls_var_heap=var_heap,ls_expr_heap=expr_heap}
	| lifted_function_called
		= lift_functions group {ls_x={x_fun_defs=fun_defs,x_macro_defs=macro_defs,x_main_dcl_module_n=main_dcl_module_n},ls_var_heap=var_heap,ls_expr_heap=expr_heap}
		= {ls_x={x_fun_defs=fun_defs,x_macro_defs=macro_defs,x_main_dcl_module_n=main_dcl_module_n},ls_var_heap=var_heap, ls_expr_heap=expr_heap}
where
	add_free_vars_of_non_recursive_calls_to_function group_index (FunctionOrIclMacroIndex fun) (contains_free_vars, lifted_function_called, fun_defs,macro_defs)
		# (fun_def=:{fun_info}, fun_defs) = fun_defs![fun]
		  { fi_free_vars,fi_def_level,fi_calls } = fun_info
		  (lifted_function_called, fi_free_vars, fun_defs,macro_defs)
				= add_free_vars_of_non_recursive_calls fi_def_level group_index fi_calls lifted_function_called fi_free_vars fun_defs macro_defs
		= (contains_free_vars || not (isEmpty fi_free_vars), lifted_function_called, 
			{ fun_defs & [fun] = { fun_def & fun_info = { fun_info & fi_free_vars = fi_free_vars }}},macro_defs)
	add_free_vars_of_non_recursive_calls_to_function group_index (DclMacroIndex macro_module_index macro_index) (contains_free_vars, lifted_function_called, fun_defs,macro_defs)
		# (fun_def=:{fun_info}, macro_defs) = macro_defs![macro_module_index,macro_index]
		  { fi_free_vars,fi_def_level,fi_calls } = fun_info
		  (lifted_function_called, fi_free_vars, fun_defs,macro_defs)
		  		= add_free_vars_of_non_recursive_calls fi_def_level group_index fi_calls lifted_function_called fi_free_vars fun_defs macro_defs
		= (contains_free_vars || not (isEmpty fi_free_vars), lifted_function_called, 
			fun_defs,{ macro_defs & [macro_module_index,macro_index] = { fun_def & fun_info = { fun_info & fi_free_vars = fi_free_vars }}})

	add_free_vars_of_non_recursive_calls fi_def_level group_index fi_calls lifted_function_called fi_free_vars fun_defs macro_defs
		= foldSt (add_free_vars_of_non_recursive_call fi_def_level group_index) fi_calls (lifted_function_called, fi_free_vars, fun_defs,macro_defs)
	where
		add_free_vars_of_non_recursive_call fun_def_level group_index (FunCall fc_index _) (lifted_function_called, free_vars, fun_defs,macro_defs)
			# ({fun_info = {fi_free_vars,fi_group_index}}, fun_defs) = fun_defs![fc_index]
			| (if (fi_group_index>=NoIndex) (fi_group_index==group_index) (-2-fi_group_index==group_index)) || (isEmpty fi_free_vars)
				= (lifted_function_called, free_vars, fun_defs,macro_defs)
				# (free_vars_added, free_vars) = add_free_variables fun_def_level fi_free_vars (False, free_vars)
				= (True, free_vars, fun_defs,macro_defs)
		add_free_vars_of_non_recursive_call fun_def_level group_index (MacroCall macro_module_index fc_index _) (lifted_function_called, free_vars, fun_defs,macro_defs)
			# ({fun_info = {fi_free_vars,fi_group_index}}, macro_defs) = macro_defs![macro_module_index,fc_index]
			| (if (fi_group_index>=NoIndex) (fi_group_index==group_index) (-2-fi_group_index==group_index)) || (isEmpty fi_free_vars)
				= (lifted_function_called, free_vars, fun_defs,macro_defs)
				# (free_vars_added, free_vars) = add_free_variables fun_def_level fi_free_vars (False, free_vars)
				= (True, free_vars, fun_defs,macro_defs)

	add_free_vars_of_recursive_calls_to_functions group_index group (fun_defs,macro_defs)
		= foldSt (add_free_vars_of_recursive_calls_to_function group_index) group (False, (fun_defs,macro_defs))

	add_free_vars_of_recursive_calls_to_function group_index (FunctionOrIclMacroIndex fun) (free_vars_added, (fun_defs,macro_defs))
		# (fun_def=:{fun_info}, fun_defs) = fun_defs![fun]
		  { fi_free_vars,fi_def_level,fi_calls } = fun_info
		  (free_vars_added, fi_free_vars, fun_defs,macro_defs)
				= foldSt (add_free_vars_of_recursive_call fi_def_level group_index) fi_calls (free_vars_added, fi_free_vars, fun_defs,macro_defs)
		  fun_defs = { fun_defs & [fun] = { fun_def & fun_info = { fun_info & fi_free_vars = fi_free_vars }}}
		= (free_vars_added, (fun_defs,macro_defs))
	add_free_vars_of_recursive_calls_to_function group_index (DclMacroIndex module_index fun) (free_vars_added, (fun_defs,macro_defs))
		# (fun_def=:{fun_info}, macro_defs) = macro_defs![module_index,fun]
		  { fi_free_vars,fi_def_level,fi_calls } = fun_info
		  (free_vars_added, fi_free_vars, fun_defs,macro_defs)
				= foldSt (add_free_vars_of_recursive_call fi_def_level group_index) fi_calls (free_vars_added, fi_free_vars, fun_defs,macro_defs)
		  macro_defs = { macro_defs & [module_index,fun] = { fun_def & fun_info = { fun_info & fi_free_vars = fi_free_vars }}}
		= (free_vars_added, (fun_defs,macro_defs))

	add_free_vars_of_recursive_call fun_def_level group_index (FunCall fc_index _) (free_vars_added, free_vars, fun_defs,macro_defs)
		# ({fun_info = {fi_free_vars,fi_group_index}}, fun_defs) = fun_defs![fc_index]
		| if (fi_group_index>=NoIndex) (fi_group_index==group_index) (-2-fi_group_index==group_index)
			# (free_vars_added, free_vars) = add_free_variables fun_def_level fi_free_vars (free_vars_added, free_vars)
			= (free_vars_added, free_vars, fun_defs,macro_defs)
			= (free_vars_added, free_vars, fun_defs,macro_defs)
	add_free_vars_of_recursive_call fun_def_level group_index (MacroCall module_index fc_index _) (free_vars_added, free_vars, fun_defs,macro_defs)
		# ({fun_info = {fi_free_vars,fi_group_index}}, macro_defs) = macro_defs![module_index,fc_index]
		| if (fi_group_index>=NoIndex) (fi_group_index==group_index) (-2-fi_group_index==group_index)
			# (free_vars_added, free_vars) = add_free_variables fun_def_level fi_free_vars (free_vars_added, free_vars)
			= (free_vars_added, free_vars, fun_defs,macro_defs)
			= (free_vars_added, free_vars, fun_defs,macro_defs)

	add_free_variables fun_level new_vars (free_vars_added, free_vars)
		= add_free_global_variables (skip_local_variables fun_level new_vars) (free_vars_added, free_vars)
	where
		skip_local_variables level vars=:[{fv_def_level}:rest_vars]
			| fv_def_level > level
				= skip_local_variables level rest_vars
				= vars
		skip_local_variables _ []
			= []

		add_free_global_variables []  (free_vars_added, free_vars)
			= (free_vars_added, free_vars)
		add_free_global_variables free_vars (free_vars_added, [])
			= (True, free_vars)
		add_free_global_variables [var:vars] (free_vars_added, free_vars)
			# (free_var_added, free_vars) = newFreeVariable var free_vars
			= add_free_global_variables vars (free_var_added || free_vars_added, free_vars)

	lift_functions group lift_state
		= foldSt lift_function group lift_state
	where
		lift_function (FunctionOrIclMacroIndex fun) {ls_x=ls_x=:{x_fun_defs=fun_defs=:{[fun] = fun_def}}, ls_var_heap=var_heap, ls_expr_heap=expr_heap}
			# {fi_free_vars} = fun_def.fun_info
			  fun_lifted = length fi_free_vars
			  (PartitioningFunction {cb_args,cb_rhs} fun_number) = fun_def.fun_body
			  (cb_args, var_heap) = add_lifted_args fi_free_vars cb_args var_heap
			  (cb_rhs, {ls_x,ls_var_heap,ls_expr_heap}) = lift cb_rhs { ls_x={ls_x & x_fun_defs = fun_defs}, ls_var_heap = var_heap, ls_expr_heap = expr_heap }
			  ls_var_heap = remove_lifted_args fi_free_vars ls_var_heap
			  fun_defs = ls_x.x_fun_defs
			  fun_defs = { fun_defs & [fun] = { fun_def & fun_lifted = fun_lifted, fun_body = PartitioningFunction {cb_args = cb_args, cb_rhs = cb_rhs} fun_number}}
			= {ls_x={ls_x & x_fun_defs=fun_defs}, ls_var_heap=ls_var_heap, ls_expr_heap= ls_expr_heap}
//				 ---> ("lift_function", fun_def.fun_symb, fi_free_vars, cb_args, cb_rhs)
		lift_function (DclMacroIndex module_index fun) {ls_x=ls_x=:{x_macro_defs=macro_defs=:{[module_index,fun] = fun_def}}, ls_var_heap=var_heap, ls_expr_heap=expr_heap}
			# {fi_free_vars} = fun_def.fun_info
			  fun_lifted = length fi_free_vars
			  (PartitioningFunction {cb_args,cb_rhs} fun_number) = fun_def.fun_body
			  (cb_args, var_heap) = add_lifted_args fi_free_vars cb_args var_heap
			  (cb_rhs, {ls_x,ls_var_heap,ls_expr_heap}) = lift cb_rhs { ls_x={ls_x & x_macro_defs = macro_defs}, ls_var_heap = var_heap, ls_expr_heap = expr_heap }
			  ls_var_heap = remove_lifted_args fi_free_vars ls_var_heap
			  macro_defs = ls_x.x_macro_defs
			  macro_defs = { macro_defs & [module_index].[fun] = { fun_def & fun_lifted = fun_lifted, fun_body = PartitioningFunction {cb_args = cb_args, cb_rhs = cb_rhs} fun_number}}
			= {ls_x={ls_x & x_macro_defs=macro_defs}, ls_var_heap=ls_var_heap, ls_expr_heap= ls_expr_heap}

		remove_lifted_args vars var_heap
			= foldl (\var_heap {fv_name,fv_info_ptr} -> writePtr fv_info_ptr VI_Empty var_heap) var_heap vars
	
		add_lifted_args [lifted_arg=:{fv_name,fv_info_ptr} : lifted_args] args var_heap
			# (new_info_ptr, var_heap) = newPtr VI_Empty var_heap
			  args = [{ lifted_arg & fv_info_ptr = new_info_ptr } : args ]
			= add_lifted_args lifted_args args (writePtr fv_info_ptr (VI_LiftedVariable new_info_ptr) var_heap)
		add_lifted_args [] args var_heap
			= (args, var_heap)

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unfoldVariable :: !BoundVar UnfoldInfo !*UnfoldState -> (!Expression, !*UnfoldState)
unfoldVariable var=:{var_name,var_info_ptr} ui us
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	# (var_info, us) = readVarInfo var_info_ptr us
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	= case var_info of 
		VI_Expression expr
			-> (expr, us)
		VI_Variable var_name var_info_ptr
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		 	# (var_expr_ptr, us_symbol_heap) = newPtr EI_Empty us.us_symbol_heap
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			-> (Var {var_name = var_name, var_info_ptr = var_info_ptr, var_expr_ptr = var_expr_ptr}, { us & us_symbol_heap = us_symbol_heap})
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		VI_Body fun_symb _ vars
			-> (App {	app_symb = fun_symb,
						app_args = [ Var { var_name=fv_name, var_info_ptr=fv_info_ptr, var_expr_ptr=nilPtr }
									\\ {fv_name,fv_info_ptr}<-vars],
						app_info_ptr = nilPtr }, us)
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		VI_Dictionary app_symb app_args class_type
			# (new_class_type, us_opt_type_heaps) = substitute_class_types class_type us.us_opt_type_heaps
			  (new_info_ptr, us_symbol_heap) = newPtr (EI_DictionaryType new_class_type) us.us_symbol_heap
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			  app = App { app_symb = app_symb, app_args = app_args, app_info_ptr = new_info_ptr }
			  us = { us & us_opt_type_heaps = us_opt_type_heaps, us_symbol_heap = us_symbol_heap }
			-> unfold app ui us
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		_
			-> (Var var, us)
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  where
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	substitute_class_types class_types No
		= (class_types, No)
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	substitute_class_types class_types (Yes type_heaps)
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		# (_,new_class_types, type_heaps) = substitute class_types type_heaps
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		= (new_class_types, Yes type_heaps)

readVarInfo var_info_ptr us
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	# (var_info, us_var_heap) = readPtr var_info_ptr us.us_var_heap
	  us = { us & us_var_heap = us_var_heap }
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	= case var_info of
		VI_Extended _ original	-> (original, us)
		_						-> (var_info, us)

writeVarInfo :: VarInfoPtr VarInfo *VarHeap -> *VarHeap
writeVarInfo var_info_ptr new_var_info var_heap
	# (old_var_info, var_heap) = readPtr var_info_ptr var_heap
	= case old_var_info of
		VI_Extended extensions _	-> writePtr var_info_ptr (VI_Extended extensions new_var_info) var_heap
		_							-> writePtr var_info_ptr new_var_info var_heap

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::	CopiedLocalFunction = {
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		old_function_n :: !FunctionOrMacroIndex,
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		new_function_n :: !Int
	}

::	CopiedLocalFunctions = {
		copied_local_functions :: [CopiedLocalFunction],
		used_copied_local_functions :: [CopiedLocalFunction],
		new_copied_local_functions :: [CopiedLocalFunction],
		next_local_function_n :: !Int
	}

::	UnfoldState =
	{	us_var_heap				:: !.VarHeap
	,	us_symbol_heap			:: !.ExpressionHeap
	,	us_opt_type_heaps		:: !.Optional .TypeHeaps,
		us_cleanup_info			:: ![ExprInfoPtr],
		us_local_macro_functions :: !Optional CopiedLocalFunctions
	}

::	UnfoldInfo =
	{	ui_handle_aci_free_vars	:: !AciFreeVarHandleMode,
		ui_convert_module_n :: !Int, // -1 if no conversion
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		ui_conversion_table :: !Optional {#Int}
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	}

:: AciFreeVarHandleMode = LeaveThem | RemoveThem | SubstituteThem

class unfold a :: !a !UnfoldInfo !*UnfoldState -> (!a, !*UnfoldState)

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instance unfold Expression
where
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	unfold (Var var) ui us
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		= unfoldVariable var ui us
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	unfold (App app) ui us
		# (app, us) = unfold app ui us
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		= (App app, us)
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	unfold (expr @ exprs) ui us
		# ((expr,exprs), us) = unfold (expr,exprs) ui us
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		= (expr @ exprs, us)
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	unfold (Let lad) ui us
		# (lad, us) = unfold lad ui us
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		= (Let lad, us)
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	unfold (Case case_expr) ui us
		# (case_expr, us) = unfold case_expr ui us
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		= (Case case_expr, us)
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	unfold (Selection is_unique expr selectors) ui us
		# ((expr, selectors), us) = unfold (expr, selectors) ui us
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		= (Selection is_unique expr selectors, us)
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	unfold (Update expr1 selectors expr2) ui us
		# (((expr1, expr2), selectors), us) = unfold ((expr1, expr2), selectors) ui us
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		= (Update expr1 selectors expr2, us)
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	unfold (RecordUpdate cons_symbol expression expressions) ui us
		# ((expression, expressions), us) = unfold (expression, expressions) ui us
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		= (RecordUpdate cons_symbol expression expressions, us)
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	unfold (TupleSelect symbol argn_nr expr) ui us
		# (expr, us) = unfold expr ui us
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		= (TupleSelect symbol argn_nr expr, us)
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	unfold (MatchExpr opt_tuple cons_symb expr) ui us
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		# (expr, us) = unfold expr ui us
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		= (MatchExpr opt_tuple cons_symb expr, us)
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	unfold (DynamicExpr expr) ui us
		# (expr, us) = unfold expr ui us
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		= (DynamicExpr expr, us)
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	unfold expr ui us
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		= (expr, us)

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instance unfold DynamicExpr
where
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	unfold expr=:{dyn_expr} ui us
		# (dyn_expr, us) = unfold dyn_expr ui us
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		= ({ expr & dyn_expr = dyn_expr }, us)

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instance unfold Selection
where
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	unfold (ArraySelection array_select expr_ptr index_expr) ui us=:{us_symbol_heap}
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		# (new_ptr, us_symbol_heap) = newPtr EI_Empty us_symbol_heap
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		  (index_expr, us) = unfold index_expr ui { us & us_symbol_heap = us_symbol_heap}
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		= (ArraySelection array_select new_ptr index_expr, us)
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	unfold (DictionarySelection var selectors expr_ptr index_expr) ui us=:{us_symbol_heap}
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		# (new_ptr, us_symbol_heap) = newPtr EI_Empty us_symbol_heap
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		  (index_expr, us) = unfold index_expr ui { us & us_symbol_heap = us_symbol_heap}
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		  (var_expr, us) = unfoldVariable var ui us
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		= case var_expr of 
			App {app_symb={symb_kind= SK_Constructor _ }, app_args}
				# [RecordSelection _ field_index:_] = selectors
				  (App { app_symb = {symb_name, symb_kind = SK_Function array_select}}) =  app_args !! field_index
				-> (ArraySelection { array_select & glob_object = { ds_ident = symb_name, ds_arity = 2, ds_index = array_select.glob_object}}
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							new_ptr index_expr, us)
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			Var var
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				-> (DictionarySelection var selectors new_ptr index_expr, us)
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	unfold record_selection ui us
		= (record_selection, us)
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instance unfold FreeVar
where
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	unfold fv=:{fv_info_ptr,fv_name} ui us=:{us_var_heap}
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		# (new_info_ptr, us_var_heap) = newPtr VI_Empty us_var_heap
		= ({ fv & fv_info_ptr = new_info_ptr }, { us & us_var_heap = writePtr fv_info_ptr (VI_Variable fv_name new_info_ptr) us_var_heap })
instance unfold App
where
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	unfold app=:{app_symb={symb_kind}, app_args, app_info_ptr} ui=:{ui_convert_module_n,ui_conversion_table} us
		= case symb_kind of
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			SK_Function {glob_module,glob_object}
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				-> unfold_function_app app ui us
			SK_IclMacro macro_index
/*				| ui_convert_module_n<> (-1)
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					# (Yes conversion_table) = ui_conversion_table
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					# app={app & app_symb.symb_kind=SK_IclMacro (conversion_table.[macro_index])}
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					-> unfold_function_app app ui us
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*/
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					-> unfold_function_app app ui us
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			SK_DclMacro {glob_module,glob_object}
/*				| ui_convert_module_n==glob_module
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					# (Yes conversion_table) = ui_conversion_table
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					# app={app & app_symb.symb_kind=SK_DclMacro {glob_module=glob_module,glob_object=conversion_table.[glob_object]}}
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					-> unfold_function_app app ui us
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*/
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					-> unfold_function_app app ui us
			SK_OverloadedFunction {glob_module,glob_object}
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				-> unfold_function_app app ui us
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			SK_LocalMacroFunction local_macro_function_n
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				-> unfold_local_macro_function (FunctionOrIclMacroIndex local_macro_function_n)
			SK_LocalDclMacroFunction {glob_module,glob_object}
				-> unfold_local_macro_function (DclMacroIndex glob_module glob_object)
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			SK_Constructor _
				| not (isNilPtr app_info_ptr)
					# (app_info, us_symbol_heap) = readPtr app_info_ptr us.us_symbol_heap
					  (new_app_info, us_opt_type_heaps) = substitute_EI_DictionaryType app_info us.us_opt_type_heaps
					  (new_info_ptr, us_symbol_heap) = newPtr new_app_info us_symbol_heap
					  us={ us & us_symbol_heap = us_symbol_heap, us_opt_type_heaps = us_opt_type_heaps }
					  (app_args, us) = unfold app_args ui us
					-> ({ app & app_args = app_args, app_info_ptr = new_info_ptr}, us) 
					# (app_args, us) = unfold app_args ui us
					-> ({ app & app_args = app_args}, us)
			_
				# (app_args, us) = unfold app_args ui us
				-> ({ app & app_args = app_args, app_info_ptr = nilPtr}, us) 
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	where
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		unfold_function_app app=:{app_args, app_info_ptr} ui us
			# (new_info_ptr, us_symbol_heap) = newPtr EI_Empty us.us_symbol_heap
			# us={ us & us_symbol_heap = us_symbol_heap }
			# (app_args, us) = unfold app_args ui us
			= ({ app & app_args = app_args, app_info_ptr = new_info_ptr}, us) 
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		unfold_local_macro_function local_macro_function_n
			# (us_local_macro_functions,us) = us!us_local_macro_functions
			= case us_local_macro_functions of
				No
					-> unfold_function_app app ui us
				uslocal_macro_functions=:(Yes local_macro_functions)
					# (new_local_macro_function_n,us_local_macro_functions) = determine_new_local_macro_function_n local_macro_function_n local_macro_functions
						with
							determine_new_local_macro_function_n local_macro_function_n local_macro_functions=:{copied_local_functions,used_copied_local_functions,new_copied_local_functions,next_local_function_n}
								# new_local_macro_function_n = search_new_local_macro_function_n used_copied_local_functions
								| new_local_macro_function_n>=0
									= (new_local_macro_function_n,us_local_macro_functions)
								# (new_local_macro_function_n,used_copied_local_functions) = search_new_local_macro_function_n_and_add_to_used_functions copied_local_functions used_copied_local_functions
								| new_local_macro_function_n>=0
									= (new_local_macro_function_n,Yes {local_macro_functions & used_copied_local_functions=used_copied_local_functions})
								# (new_local_macro_function_n,used_copied_local_functions) = search_new_local_macro_function_n_and_add_to_used_functions new_copied_local_functions used_copied_local_functions
								| new_local_macro_function_n>=0
									= (new_local_macro_function_n,Yes {local_macro_functions & used_copied_local_functions=used_copied_local_functions})
									# new_local_function = {old_function_n=local_macro_function_n,new_function_n=next_local_function_n}
									# new_copied_local_functions=new_copied_local_functions++[new_local_function]
									# us_local_macro_functions=Yes {copied_local_functions=copied_local_functions,
																	new_copied_local_functions=new_copied_local_functions,
																	used_copied_local_functions=[new_local_function:used_copied_local_functions],
																	next_local_function_n=next_local_function_n+1}
									= (next_local_function_n,us_local_macro_functions)
								where
									search_new_local_macro_function_n [{old_function_n,new_function_n}:local_functions]
										| local_macro_function_n==old_function_n
											= new_function_n
										 	= search_new_local_macro_function_n local_functions
									search_new_local_macro_function_n []
										= -1

									search_new_local_macro_function_n_and_add_to_used_functions [copied_local_function=:{old_function_n,new_function_n}:local_functions] used_copied_local_functions
										| local_macro_function_n==old_function_n
											= (new_function_n,[copied_local_function:used_copied_local_functions])
										 	= search_new_local_macro_function_n_and_add_to_used_functions local_functions used_copied_local_functions
									search_new_local_macro_function_n_and_add_to_used_functions [] used_copied_local_functions
										= (-1,used_copied_local_functions)
					# us={us & us_local_macro_functions=us_local_macro_functions}
					# app={app & app_symb.symb_kind=SK_LocalMacroFunction new_local_macro_function_n}
					-> unfold_function_app app ui us

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		substitute_EI_DictionaryType (EI_DictionaryType class_type) (Yes type_heaps)
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			# (_,new_class_type, type_heaps) = substitute class_type type_heaps
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			= (EI_DictionaryType new_class_type, Yes type_heaps)
		substitute_EI_DictionaryType x opt_type_heaps
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			= (x, opt_type_heaps)
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instance unfold LetBind
where
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	unfold bind=:{lb_src} ui us
		# (lb_src, us) = unfold lb_src ui us
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		= ({ bind & lb_src = lb_src }, us)

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instance unfold (Bind a b) | unfold a
where
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	unfold bind=:{bind_src} ui us
		# (bind_src, us) = unfold bind_src ui us
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		= ({ bind & bind_src = bind_src }, us)

instance unfold Case
where
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	unfold kees=:{ case_expr,case_guards,case_default,case_info_ptr} ui us=:{us_cleanup_info}
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		# (old_case_info, us_symbol_heap) = readPtr case_info_ptr us.us_symbol_heap
		  (new_case_info, us_opt_type_heaps) = substitute_let_or_case_type old_case_info us.us_opt_type_heaps
		  (new_info_ptr, us_symbol_heap) = newPtr new_case_info us_symbol_heap
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		  us_cleanup_info = case old_case_info of
								EI_Extended _ _	-> [new_info_ptr:us_cleanup_info]
								_				-> us_cleanup_info
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		  us = { us & us_symbol_heap = us_symbol_heap, us_opt_type_heaps = us_opt_type_heaps, us_cleanup_info=us_cleanup_info }
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		  ((case_guards,case_default), us) = unfold (case_guards,case_default) ui us
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		  (case_expr, us) = update_active_case_info_and_unfold case_expr new_info_ptr us
		= ({ kees & case_expr = case_expr,case_guards = case_guards, case_default = case_default, case_info_ptr =  new_info_ptr}, us)
	where
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		update_active_case_info_and_unfold case_expr=:(Var {var_info_ptr}) case_info_ptr us
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			# (case_info, us_symbol_heap) = readPtr case_info_ptr us.us_symbol_heap
			  us = { us & us_symbol_heap = us_symbol_heap }
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			= case case_info of
				EI_Extended (EEI_ActiveCase aci=:{aci_free_vars}) ei
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					# (new_aci_free_vars, us) = case ui.ui_handle_aci_free_vars of
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													LeaveThem		-> (aci_free_vars, us)
													RemoveThem		-> (No, us)
													SubstituteThem	-> case aci_free_vars of
																		No		-> (No, us)
																		Yes fvs	# (fvs_subst, us) = mapSt unfoldBoundVar fvs us
																				-> (Yes fvs_subst, us)
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					  (var_info, us) = readVarInfo var_info_ptr us
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					-> case var_info of
						VI_Body fun_symb {tb_args, tb_rhs} new_aci_params
							# tb_args_ptrs = [ fv_info_ptr \\ {fv_info_ptr}<-tb_args ] 
							  (original_bindings, us_var_heap) = mapSt readPtr tb_args_ptrs us.us_var_heap
							  us_var_heap = fold2St bind tb_args_ptrs new_aci_params us_var_heap
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							  (tb_rhs, us) = unfold tb_rhs ui { us & us_var_heap = us_var_heap }
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							  us_var_heap = fold2St writePtr tb_args_ptrs original_bindings us.us_var_heap
							  new_aci = { aci & aci_params = new_aci_params, aci_opt_unfolder = Yes fun_symb, aci_free_vars = new_aci_free_vars }
							  new_eei = (EI_Extended (EEI_ActiveCase new_aci) ei)
							  us_symbol_heap = writePtr case_info_ptr new_eei us.us_symbol_heap
							-> (tb_rhs, { us & us_var_heap = us_var_heap, us_symbol_heap = us_symbol_heap })
						_	# new_eei = EI_Extended (EEI_ActiveCase { aci & aci_free_vars = new_aci_free_vars }) ei
							  us_symbol_heap = writePtr case_info_ptr new_eei us.us_symbol_heap
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							-> unfold case_expr ui { us & us_symbol_heap = us_symbol_heap }
				_	-> unfold case_expr ui us	
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		  where 
			// XXX consider to store BoundVars in VI_Body
			bind fv_info_ptr {fv_name=name, fv_info_ptr=info_ptr} var_heap
				= writeVarInfo fv_info_ptr (VI_Expression (Var {var_name=name, var_info_ptr=info_ptr, var_expr_ptr = nilPtr})) var_heap
/*
			bind ({fv_info_ptr}, var_bound_var) var_heap
				= writeVarInfo fv_info_ptr (VI_Expression var_bound_var) var_heap
*/

/*		update_active_case_info_and_unfold case_expr=:(Var {var_info_ptr}) case_info_ptr us
			#! var_info = sreadPtr var_info_ptr us.us_var_heap
			= case var_info of
				VI_Body fun_symb fun_body new_aci_var_info_ptr
					# (fun_body, us) = unfold fun_body us
					  (EI_Extended (EEI_ActiveCase aci) ei, us_symbol_heap) = readPtr case_info_ptr us.us_symbol_heap
					  new_aci = { aci & aci_var_info_ptr = new_aci_var_info_ptr, aci_opt_unfolder = Yes fun_symb }
					  us_symbol_heap = writePtr case_info_ptr (EI_Extended (EEI_ActiveCase new_aci) ei) us_symbol_heap
					-> (fun_body, { us & us_symbol_heap = us_symbol_heap })
				_	-> unfold case_expr us
*/
		update_active_case_info_and_unfold case_expr _ us
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			= unfold case_expr ui us
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		unfoldBoundVar {var_info_ptr} us
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			# (VI_Expression (Var act_var), us_var_heap) = readPtr var_info_ptr us.us_var_heap
			= (act_var, { us & us_var_heap = us_var_heap })
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instance unfold Let
where
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	unfold lad=:{let_strict_binds, let_lazy_binds, let_expr, let_info_ptr} ui us
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		# (let_strict_binds, us) = copy_bound_vars let_strict_binds us
		# (let_lazy_binds, us) = copy_bound_vars let_lazy_binds us
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		# (let_strict_binds, us) = unfold let_strict_binds ui us
		# (let_lazy_binds, us) = unfold let_lazy_binds ui us
		# (let_expr, us) = unfold let_expr ui us
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		  (old_let_info, us_symbol_heap) = readPtr let_info_ptr us.us_symbol_heap
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		  (new_let_info, us_opt_type_heaps) = substitute_let_or_case_type old_let_info us.us_opt_type_heaps
		  (new_info_ptr, us_symbol_heap) = newPtr new_let_info us_symbol_heap
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		= ({lad & let_strict_binds = let_strict_binds, let_lazy_binds = let_lazy_binds, let_expr = let_expr, let_info_ptr = new_info_ptr},
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			{ us & us_symbol_heap = us_symbol_heap, us_opt_type_heaps = us_opt_type_heaps })
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		where
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			copy_bound_vars [bind=:{lb_dst} : binds] us
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				# (lb_dst, us) = unfold lb_dst ui us
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				  (binds, us) = copy_bound_vars binds us
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				= ([ {bind & lb_dst = lb_dst} : binds ], us)
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			copy_bound_vars [] us
				= ([], us)

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substitute_let_or_case_type	expr_info No
	= (expr_info, No)
substitute_let_or_case_type	(EI_Extended extensions expr_info) yes_type_heaps
	# (new_expr_info, yes_type_heaps) = substitute_let_or_case_type expr_info yes_type_heaps
	= (EI_Extended extensions new_expr_info, yes_type_heaps)
substitute_let_or_case_type	(EI_CaseType case_type) (Yes type_heaps)
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	# (_,new_case_type, type_heaps) = substitute case_type type_heaps
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	= (EI_CaseType new_case_type, Yes type_heaps)
substitute_let_or_case_type	(EI_LetType let_type) (Yes type_heaps)
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	# (_,new_let_type, type_heaps) = substitute let_type type_heaps
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	= (EI_LetType new_let_type, Yes type_heaps)

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instance unfold CasePatterns
where
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	unfold (AlgebraicPatterns type patterns) ui us
		# (patterns, us) = unfold patterns ui us
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		= (AlgebraicPatterns type patterns, us)
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	unfold (BasicPatterns type patterns) ui us
		# (patterns, us) = unfold patterns ui us
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		= (BasicPatterns type patterns, us)
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	unfold (OverloadedListPatterns type decons_expr patterns) ui us
		# (patterns, us) = unfold patterns ui us
		# (decons_expr, us) = unfold decons_expr ui us
		= (OverloadedListPatterns type decons_expr patterns, us)
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	unfold (DynamicPatterns patterns) ui us
		# (patterns, us) = unfold patterns ui us
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		= (DynamicPatterns patterns, us)

instance unfold AlgebraicPattern
where
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	unfold guard=:{ap_vars,ap_expr} ui us
		# (ap_vars, us) = unfold ap_vars ui us
		  (ap_expr, us) = unfold ap_expr ui us
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		= ({ guard & ap_vars = ap_vars, ap_expr = ap_expr }, us)

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instance unfold BasicPattern
where
	unfold guard=:{bp_expr} ui us
		# (bp_expr, us) = unfold bp_expr ui us
		= ({ guard & bp_expr = bp_expr }, us)

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instance unfold DynamicPattern
where
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	unfold guard=:{dp_var,dp_rhs} ui us
		# (dp_var, us) = unfold dp_var ui us
		  (dp_rhs, us) = unfold dp_rhs ui us
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		= ({ guard & dp_var = dp_var, dp_rhs = dp_rhs }, us)

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instance unfold [a] | unfold a
where
	unfold l ui us
		= map_st l us
		where
			map_st [x : xs] s
			 	# (x, s) = unfold x ui s
				  (xs, s) = map_st xs s
				#! s = s
				= ([x : xs], s)
			map_st [] s
			 	= ([], s)

instance unfold (a,b) | unfold a & unfold b
where
	unfold (a,b) ui us
		# (a,us) = unfold a ui us
		# (b,us) = unfold b ui us
		= ((a,b),us)

instance unfold (Optional a) | unfold a
where
	unfold (Yes x) ui us
		# (x, us) = unfold x ui us
		= (Yes x, us)
	unfold no ui us
		= (no, us)

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updateFunctionCalls :: ![FunCall] ![FunCall] !*{# FunDef} !*SymbolTable
	-> (![FunCall], !*{# FunDef}, !*SymbolTable)
updateFunctionCalls calls collected_calls fun_defs symbol_table
	= foldSt add_function_call calls (collected_calls, fun_defs, symbol_table)
where
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	add_function_call fc=:(FunCall fc_index _) (collected_calls, fun_defs, symbol_table)
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//		# fc_index = trace ("add_function_call: "+++toString fc_index+++" ") fc_index
		# ({fun_symb}, fun_defs) = fun_defs![fc_index]
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		  (collected_calls, symbol_table) = examineFunctionCall fun_symb fc (collected_calls, symbol_table) 
		= (collected_calls, fun_defs, symbol_table)

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examineFunctionCall {id_info} fc=:(FunCall fc_index _) (calls, symbol_table)
	# (entry, symbol_table) = readPtr id_info symbol_table
	= case entry.ste_kind of
		STE_Called indexes
			| is_member fc_index indexes
				-> (calls, symbol_table)
				-> ([ fc : calls ], symbol_table <:= (id_info, { entry & ste_kind = STE_Called [ FunctionOrIclMacroIndex fc_index : indexes ]}))
		_
			-> ( [ fc : calls ], symbol_table <:=
					(id_info, { ste_kind = STE_Called [FunctionOrIclMacroIndex fc_index], ste_index = NoIndex, ste_def_level = NotALevel, ste_previous = entry }))
	where
		is_member fc_index [FunctionOrIclMacroIndex index:indexes]
			| fc_index==index
				= True
				= is_member fc_index indexes
		is_member fc_index [_:indexes]
			= is_member fc_index indexes
		is_member _ []
			= False
examineFunctionCall {id_info} fc=:(MacroCall macro_module_index fc_index _) (calls, symbol_table)
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	# (entry, symbol_table) = readPtr id_info symbol_table
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	= case entry.ste_kind of
		STE_Called indexes
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			| is_member macro_module_index fc_index indexes
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				-> (calls, symbol_table)
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				-> ([ fc : calls ], symbol_table <:= (id_info, { entry & ste_kind = STE_Called [ DclMacroIndex macro_module_index fc_index : indexes ]}))
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		_
			-> ( [ fc : calls ], symbol_table <:=
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					(id_info, { ste_kind = STE_Called [DclMacroIndex macro_module_index fc_index], ste_index = NoIndex, ste_def_level = NotALevel, ste_previous = entry }))
	where
		is_member macro_module_index fc_index [DclMacroIndex module_index index:indexes]
			| fc_index==index && module_index==macro_module_index
				= True
				= is_member macro_module_index fc_index indexes
		is_member macro_module_index fc_index [_:indexes]
			= is_member macro_module_index fc_index indexes
		is_member _ _ []
			= False
			
::	ExpandState =
	{	es_symbol_table	:: !.SymbolTable
	,	es_var_heap		:: !.VarHeap
	,	es_symbol_heap 	:: !.ExpressionHeap
	,	es_error 		:: !.ErrorAdmin,
		es_fun_defs :: !.{#FunDef},
		es_macro_defs :: !.{#.{#FunDef}},
		es_main_dcl_module_n :: !Int,
		es_dcl_modules :: !.{# DclModule},
		es_expand_in_imp_module :: !Bool,
		es_new_fun_def_numbers :: ![Int]
	}
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copy_macro_and_local_functions :: FunDef (Optional CopiedLocalFunctions) Bool *ExpandState -> (!FunDef,![(CopiedLocalFunction,FunDef)],!Optional CopiedLocalFunctions,!*ExpandState);
copy_macro_and_local_functions macro=:{fun_kind} local_macro_functions is_def_macro es
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	# (macro,local_macro_functions,es) = copy_macro_or_local_macro_function is_def_macro macro local_macro_functions es
	# (new_functions,local_macro_functions,es) = copy_local_functions_of_macro local_macro_functions is_def_macro [] es
	= (macro,new_functions,local_macro_functions,es)

copy_local_functions_of_macro :: (Optional CopiedLocalFunctions) Bool [CopiedLocalFunction] *ExpandState -> (![(CopiedLocalFunction,FunDef)],!Optional CopiedLocalFunctions,!*ExpandState);
copy_local_functions_of_macro local_macro_functions is_def_macro local_functions_to_be_copied es
	# (local_functions_to_be_copied,local_macro_functions) = add_new_local_functions_to_be_copied local_functions_to_be_copied local_macro_functions
		with
			add_new_local_functions_to_be_copied local_functions_to_be_copied local_macro_functions=:(Yes copied_local_macro_functions=:{new_copied_local_functions=[]})
				= (local_functions_to_be_copied,Yes {copied_local_macro_functions & used_copied_local_functions=[]})
			add_new_local_functions_to_be_copied local_functions_to_be_copied (Yes {copied_local_functions,new_copied_local_functions,next_local_function_n})
				# local_macro_functions=Yes {copied_local_functions=copied_local_functions++new_copied_local_functions,
											new_copied_local_functions=[],used_copied_local_functions=[],next_local_function_n=next_local_function_n}
				= (local_functions_to_be_copied++new_copied_local_functions,local_macro_functions)
	= case local_functions_to_be_copied of
		[]
			-> ([],local_macro_functions,es)
		[(old_and_new_function_n=:{old_function_n,new_function_n}):local_functions_to_be_copied]
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			# (function,es)
				= case old_function_n of
					FunctionOrIclMacroIndex old_function_index
						# (function,es)=es!es_fun_defs.[old_function_index]			
						#! function_group_index=function.fun_info.fi_group_index
						# es = {es & es_fun_defs.[old_function_index].fun_info.fi_group_index= if (function_group_index>NoIndex) (-2-function_group_index) function_group_index}
						# function = {function & fun_info.fi_group_index=if (function_group_index<NoIndex) (-2-function_group_index) function_group_index}
						-> (function,es)
					DclMacroIndex old_function_module_index old_function_index
						# (function,es)=es!es_macro_defs.[old_function_module_index,old_function_index]			
						#! function_group_index=function.fun_info.fi_group_index
						# es = {es & es_macro_defs.[old_function_module_index].[old_function_index].fun_info.fi_group_index= if (function_group_index>NoIndex) (-2-function_group_index) function_group_index}
						# function = {function & fun_info.fi_group_index=if (function_group_index<NoIndex) (-2-function_group_index) function_group_index}
						-> (function,es)
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			# (function,local_macro_functions,es) = copy_macro_or_local_macro_function is_def_macro function local_macro_functions es
			# (new_functions,local_macro_functions,es) = copy_local_functions_of_macro local_macro_functions is_def_macro local_functions_to_be_copied es
			-> ([(old_and_new_function_n,function):new_functions],local_macro_functions,es)

update_calls calls No
	= calls
update_calls calls (Yes {used_copied_local_functions=[]})
	= calls
update_calls calls (Yes {used_copied_local_functions})
	# calls = remove_old_calls calls
	= add_new_calls used_copied_local_functions calls
where
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	remove_old_calls [call=:(FunCall fc_index _):calls]
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		| contains_old_function_n used_copied_local_functions
//			# calls = trace ("remove_old_calls1: "+++toString fc_index) calls
			= remove_old_calls calls
//			# calls = trace ("remove_old_calls2: "+++toString fc_index) calls
			= [call:remove_old_calls calls]
	where
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		contains_old_function_n [{old_function_n=FunctionOrIclMacroIndex old_function_index }:local_functions]
			= fc_index==old_function_index || contains_old_function_n local_functions
		contains_old_function_n [_:local_functions]
			= contains_old_function_n local_functions
		contains_old_function_n []
			= False
	remove_old_calls [call=:(MacroCall macro_module_index fc_index _):calls]
		| contains_old_function_n used_copied_local_functions
			= remove_old_calls calls
			= [call:remove_old_calls calls]
	where
		contains_old_function_n [{old_function_n=DclMacroIndex old_macro_module_index old_function_index }:local_functions]
			= fc_index==old_function_index && macro_module_index==old_macro_module_index || contains_old_function_n local_functions
		contains_old_function_n [_:local_functions]
			= contains_old_function_n local_functions
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		contains_old_function_n []
			= False
	remove_old_calls []
		= []
	
	add_new_calls [{new_function_n}:local_functions] calls
//		# local_functions = trace ("add_new_calls: "+++toString new_function_n) local_functions
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		= add_new_calls local_functions [FunCall new_function_n NotALevel:calls]
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	add_new_calls [] calls
		= calls

copy_macro_or_local_macro_function :: !Bool !FunDef !(Optional CopiedLocalFunctions) !*ExpandState -> (!FunDef,!Optional CopiedLocalFunctions,!.ExpandState);
copy_macro_or_local_macro_function is_def_macro macro=:{fun_body = TransformedBody {tb_args,tb_rhs},fun_kind,fun_info={fi_local_vars,fi_calls}} local_macro_functions es=:{es_var_heap,es_symbol_heap,es_expand_in_imp_module,es_main_dcl_module_n,es_dcl_modules}
	# (tb_args,es_var_heap) = create_new_arguments tb_args es_var_heap
		with
			create_new_arguments [var=:{fv_name,fv_info_ptr} : vars] var_heap
				# (new_vars,var_heap) = create_new_arguments vars var_heap
				# (new_info, var_heap) = newPtr VI_Empty var_heap
				# new_var = { fv_name = fv_name, fv_def_level = NotALevel, fv_info_ptr = new_info, fv_count = 0 }
				= ([new_var : new_vars], writePtr fv_info_ptr (VI_Variable fv_name new_info) var_heap)
			create_new_arguments [] var_heap
				= ([],var_heap)
	# us = { us_symbol_heap = es_symbol_heap, us_var_heap = es_var_heap, us_opt_type_heaps = No,us_cleanup_info = [],
			 us_local_macro_functions = local_macro_functions }
	# (result_expr,dcl_modules,{us_local_macro_functions,us_symbol_heap,us_var_heap}) = unfold_and_convert es_dcl_modules us
		with
			unfold_and_convert dcl_modules us
				| es_expand_in_imp_module && is_def_macro
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					# (dcl_mod,dcl_modules) = dcl_modules![es_main_dcl_module_n]					
					# ui = {ui_handle_aci_free_vars = RemoveThem, ui_convert_module_n = es_main_dcl_module_n, ui_conversion_table=dcl_mod.dcl_macro_conversions }
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					# (expr,es) = unfold tb_rhs ui us
					= (expr,dcl_modules,es)
			
					# ui = {ui_handle_aci_free_vars = RemoveThem, ui_convert_module_n = -1 ,ui_conversion_table=No }
					# (expr,es) = unfold tb_rhs ui us
					= (expr,dcl_modules,es)
	# (fi_local_vars,us_var_heap) = update_local_vars fi_local_vars us_var_heap
		with
			update_local_vars :: ![FreeVar] !*(Heap VarInfo) -> (![FreeVar],!*Heap VarInfo);
			update_local_vars [fv=:{fv_info_ptr}:fvs] var_heap
				# (fvs,var_heap)=update_local_vars fvs var_heap
				# (fv_info,var_heap) = readPtr fv_info_ptr var_heap
				# fv = {fv & fv_info_ptr=case fv_info of 
											(VI_Variable _ info_ptr) -> info_ptr
						}
				= ([fv:fvs],var_heap)
			update_local_vars [] var_heap
				= ([],var_heap)
	# fi_calls = update_calls fi_calls us_local_macro_functions
	= ({macro & fun_body = TransformedBody {tb_args=tb_args,tb_rhs=result_expr},fun_info.fi_local_vars=fi_local_vars,fun_info.fi_calls=fi_calls},us_local_macro_functions,
		{es & es_var_heap=us_var_heap, es_symbol_heap=us_symbol_heap, es_dcl_modules=dcl_modules})

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unfoldMacro :: !FunDef ![Expression] !Bool !*ExpandInfo -> (!Expression, !*ExpandInfo)
unfoldMacro {fun_body =fun_body=: TransformedBody {tb_args,tb_rhs}, fun_info = {fi_calls},fun_kind,fun_symb} args is_def_macro (calls, es=:{es_var_heap,es_symbol_heap,es_fun_defs,es_expand_in_imp_module,es_main_dcl_module_n,es_dcl_modules})
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	# (let_binds, var_heap) = bind_expressions tb_args args [] es_var_heap
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	#! size_fun_defs = size es_fun_defs
	# copied_local_functions = Yes { copied_local_functions=[],used_copied_local_functions=[],new_copied_local_functions=[],next_local_function_n=size_fun_defs}
	# us = { us_symbol_heap = es_symbol_heap, us_var_heap = var_heap, us_opt_type_heaps = No,us_cleanup_info = [], us_local_macro_functions = copied_local_functions }
	# (result_expr,dcl_modules,{us_local_macro_functions,us_symbol_heap,us_var_heap}) = unfold_and_convert es_dcl_modules us
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		with
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			unfold_and_convert dcl_modules us
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				| es_expand_in_imp_module && is_def_macro
					# (dcl_mod,dcl_modules) = dcl_modules![es_main_dcl_module_n]
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					# ui = {ui_handle_aci_free_vars = RemoveThem, ui_convert_module_n = es_main_dcl_module_n, ui_conversion_table=dcl_mod.dcl_macro_conversions }
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					# (result_expr,us) = unfold tb_rhs ui us
					= (result_expr,dcl_modules,us)

					# ui = {ui_handle_aci_free_vars = RemoveThem, ui_convert_module_n = -1 ,ui_conversion_table=No }
					# (result_expr,us) = unfold tb_rhs ui us
					= (result_expr,dcl_modules,us)
					
	# es = {es & es_var_heap = us_var_heap, es_symbol_heap = us_symbol_heap, es_dcl_modules=dcl_modules}
	# fi_calls = update_calls fi_calls us_local_macro_functions
	# (new_functions,us_local_macro_functions,es) = copy_local_functions_of_macro us_local_macro_functions is_def_macro [] es
	# {es_symbol_heap,es_symbol_table,es_fun_defs,es_new_fun_def_numbers} = es
	# (es_fun_defs,es_new_fun_def_numbers) = case new_functions of
		[]
			-> (es_fun_defs,es_new_fun_def_numbers)
		_
			# last_function_index = case us_local_macro_functions of (Yes {next_local_function_n}) -> next_local_function_n-1
			# new_fun_defs = new_fun_defs
				with
					new_fun_defs :: *{!FunDef}
					new_fun_defs => {fun_def \\ (_,fun_def)<-new_functions}
			-> ({if (i<size_fun_defs) es_fun_defs.[i] new_fun_defs.[i-size_fun_defs] \\ i<-[0..last_function_index]} // inefficient
				,[size_fun_defs:es_new_fun_def_numbers])
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	# (calls, fun_defs, es_symbol_table) = updateFunctionCalls fi_calls calls es_fun_defs es_symbol_table
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	| isEmpty let_binds
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		= (result_expr, (calls, { es & es_symbol_table = es_symbol_table, es_fun_defs=fun_defs,es_new_fun_def_numbers=es_new_fun_def_numbers }))
		# (new_info_ptr, es_symbol_heap) = newPtr EI_Empty es_symbol_heap
		# result_expr=Let { let_strict_binds = [], let_lazy_binds = let_binds, let_expr = result_expr, let_info_ptr = new_info_ptr, let_expr_position = NoPos }
		= (result_expr, (calls, { es & es_symbol_table = es_symbol_table, es_symbol_heap=es_symbol_heap, es_fun_defs=fun_defs,es_new_fun_def_numbers=es_new_fun_def_numbers }))
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where
	bind_expressions [var : vars] [expr : exprs] binds var_heap
		# (binds, var_heap) = bind_expressions vars exprs binds var_heap
		= bind_expression var expr binds var_heap
	bind_expressions _ _ binds var_heap
		= (binds, var_heap)

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	bind_expression :: FreeVar Expression [LetBind] *(Heap VarInfo) -> (![LetBind],!*Heap VarInfo);
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	bind_expression {fv_count} expr binds var_heap
		| fv_count == 0
			= (binds, var_heap)
	bind_expression {fv_info_ptr} (Var {var_name,var_info_ptr}) binds var_heap
		= (binds, writePtr fv_info_ptr (VI_Variable var_name var_info_ptr) var_heap)
	bind_expression {fv_name,fv_info_ptr,fv_count} expr binds var_heap
		| fv_count == 1
			= (binds, writePtr fv_info_ptr (VI_Expression expr) var_heap)
		# (new_info, var_heap) = newPtr VI_Empty var_heap
		  new_var = { fv_name = fv_name, fv_def_level = NotALevel, fv_info_ptr = new_info, fv_count = 0 }
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		= ([{ lb_src = expr, lb_dst = new_var, lb_position = NoPos} : binds], writePtr fv_info_ptr (VI_Variable fv_name new_info) var_heap)
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::	Group =
	{	group_members	:: ![Int]
	}

::	PartitioningInfo = 
	{	pi_symbol_table	:: !.SymbolTable
	,	pi_var_heap		:: !.VarHeap
	,	pi_symbol_heap	:: !.ExpressionHeap
	,	pi_error		:: !.ErrorAdmin
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	,	pi_fun_defs		:: !.{#FunDef}
	,	pi_macro_defs	:: !.{#.{#FunDef}}
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	,	pi_next_num		:: !Int
	,	pi_next_group	:: !Int
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	,	pi_groups		:: ![[FunctionOrMacroIndex]]
	,	pi_deps			:: ![FunctionOrMacroIndex]
	,	pi_unexpanded_dcl_macros :: ![(Int,Int,FunDef)]
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	}

NotChecked :== -1	

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:: PredefSymbolsForTransform = { predef_alias_dummy :: !PredefinedSymbol, predef_and :: !PredefinedSymbol, predef_or :: !PredefinedSymbol };

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reset_body_of_rhs_macros pi_deps fun_defs macro_defs
	= foldSt reset_body_of_rhs_macro pi_deps (fun_defs,macro_defs)
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	where
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		reset_body_of_rhs_macro (FunctionOrIclMacroIndex macro_index) (fun_defs,macro_defs)
			# (macro_def,fun_defs) = fun_defs![macro_index]
			= case macro_def.fun_body of
				RhsMacroBody body
					-> ({ fun_defs & [macro_index] = { macro_def & fun_body = CheckedBody body }},macro_defs)
				_
					-> (fun_defs,macro_defs)
		reset_body_of_rhs_macro (DclMacroIndex module_index macro_index) (fun_defs,macro_defs)
			# (macro_def,macro_defs) = macro_defs![module_index,macro_index]
			= case macro_def.fun_body of
				RhsMacroBody body
					-> (fun_defs,{ macro_defs & [module_index,macro_index] = { macro_def & fun_body = CheckedBody body }})
				_
					-> (fun_defs,macro_defs)

expand_simple_macro mod_index macro=:{fun_body = CheckedBody body, fun_info, fun_symb, fun_pos,fun_kind} expand_in_imp_module
		predef_symbols_for_transform modules pi=:{pi_symbol_table,pi_symbol_heap,pi_var_heap,pi_fun_defs,pi_macro_defs,pi_error}
  	# identPos = newPosition fun_symb fun_pos
	# es = { es_symbol_table = pi_symbol_table, es_var_heap = pi_var_heap,
			 es_symbol_heap = pi_symbol_heap, es_error = setErrorAdmin identPos pi_error,
			 es_fun_defs=pi_fun_defs, es_macro_defs=pi_macro_defs, es_main_dcl_module_n = mod_index, es_dcl_modules=modules,
			 es_expand_in_imp_module=expand_in_imp_module,es_new_fun_def_numbers=[]
		   }			
	# (tb_args, tb_rhs, local_vars, fi_calls, fi_dynamics,{es_symbol_table, es_var_heap, es_symbol_heap, es_error,es_dcl_modules,es_fun_defs,es_macro_defs})
			= expandMacrosInBody [] body fun_info.fi_dynamics predef_symbols_for_transform es
	# macro = { macro & fun_body = TransformedBody { tb_args = tb_args, tb_rhs = tb_rhs},
	  			fun_info = { fun_info & fi_calls = fi_calls, fi_local_vars = local_vars, fi_dynamics=fi_dynamics }}
	= ( macro, es_dcl_modules,
			{ pi & pi_symbol_table = es_symbol_table, pi_symbol_heap = es_symbol_heap, pi_var_heap = es_var_heap, pi_fun_defs = es_fun_defs,pi_macro_defs=es_macro_defs,pi_error = es_error })

expand_dcl_macro_if_simple mod_index macro_index macro=:{fun_body = CheckedBody body, fun_info}
		predef_symbols_for_transform (modules, pi=:{pi_symbol_table,pi_symbol_heap,pi_var_heap,pi_fun_defs,pi_macro_defs,pi_error})
	| macros_are_simple fun_info.fi_calls pi_fun_defs pi_macro_defs && has_no_curried_macro body.cb_rhs pi_fun_defs pi_macro_defs
		# (macro,modules,pi) = expand_simple_macro mod_index macro False predef_symbols_for_transform modules pi
		= (modules, { pi & pi_macro_defs.[mod_index,macro_index] = macro })
		= (modules, { pi & pi_deps = [DclMacroIndex mod_index macro_index:pi.pi_deps], pi_macro_defs.[mod_index,macro_index] = { macro & fun_body = RhsMacroBody body }}) 

expand_icl_macro_if_simple mod_index macro_index macro=:{fun_body = CheckedBody body, fun_info}
		predef_symbols_for_transform (modules, pi=:{pi_symbol_table,pi_symbol_heap,pi_var_heap,pi_fun_defs,pi_macro_defs,pi_error})
	| macros_are_simple fun_info.fi_calls pi_fun_defs pi_macro_defs && has_no_curried_macro body.cb_rhs pi_fun_defs pi_macro_defs
		# (macro,modules,pi) = expand_simple_macro mod_index macro True predef_symbols_for_transform modules pi
		= (modules, { pi & pi_fun_defs.[macro_index] = macro })
		= (modules, { pi & pi_deps = [FunctionOrIclMacroIndex macro_index:pi.pi_deps], pi_fun_defs.[macro_index] = { macro & fun_body = RhsMacroBody body }}) 

macros_are_simple :: [FunCall] {#FunDef} {#{#FunDef}} -> Bool;
macros_are_simple [] fun_defs macro_defs
	= True
macros_are_simple [FunCall fc_index _ : calls ] fun_defs macro_defs
	# {fun_kind,fun_body, fun_symb} = fun_defs.[fc_index]
	= is_a_pattern_macro fun_kind fun_body && macros_are_simple calls fun_defs macro_defs
macros_are_simple [MacroCall module_index fc_index _ : calls ] fun_defs macro_defs
	# {fun_kind,fun_body, fun_symb} = macro_defs.[module_index,fc_index]
	= is_a_pattern_macro fun_kind fun_body && macros_are_simple calls fun_defs macro_defs

is_a_pattern_macro FK_Macro (TransformedBody {tb_args})
	= True
is_a_pattern_macro _ _
	= False

visit_macro mod_index max_fun_nr predef_symbols_for_transform (FunCall fc_index _) modules_pi
	= partitionate_icl_macro mod_index max_fun_nr predef_symbols_for_transform fc_index modules_pi
visit_macro mod_index max_fun_nr predef_symbols_for_transform (MacroCall macro_module_index fc_index _) modules_pi
	= partitionate_dcl_macro macro_module_index max_fun_nr predef_symbols_for_transform fc_index modules_pi

partitionate_dcl_macro mod_index max_fun_nr predef_symbols_for_transform macro_index (modules, pi)
	# (macro_def, pi) = pi!pi_macro_defs.[mod_index,macro_index]
	| case macro_def.fun_kind of FK_Macro->True ; _ -> False
	 	= case macro_def.fun_body of
	 		CheckedBody body
	 			# pi={ pi & pi_macro_defs.[mod_index,macro_index] = { macro_def & fun_body = PartitioningMacro }}
		  		# macros_modules_pi = foldSt (visit_macro mod_index max_fun_nr predef_symbols_for_transform) macro_def.fun_info.fi_calls (modules, pi)
				-> expand_dcl_macro_if_simple mod_index macro_index macro_def predef_symbols_for_transform macros_modules_pi
	 		PartitioningMacro
	  			# identPos = newPosition macro_def.fun_symb macro_def.fun_pos
	 			-> (modules, { pi &  pi_error = checkError macro_def.fun_symb "recursive macro definition" (setErrorAdmin identPos pi.pi_error)  })
	 		_
	 			-> (modules, pi)
		= (modules, pi)

partitionate_icl_macro mod_index max_fun_nr predef_symbols_for_transform macro_index (modules, pi)
	# (macro_def, pi) = pi!pi_fun_defs.[macro_index]
	| case macro_def.fun_kind of FK_Macro->True; _ -> False
	 	= case macro_def.fun_body of
	 		CheckedBody body
	 			# pi={ pi & pi_fun_defs.[macro_index] = { macro_def & fun_body = PartitioningMacro }}
		  		# macros_modules_pi = foldSt (visit_macro mod_index max_fun_nr predef_symbols_for_transform) macro_def.fun_info.fi_calls (modules, pi)
				-> expand_icl_macro_if_simple mod_index macro_index macro_def predef_symbols_for_transform macros_modules_pi
	 		PartitioningMacro
	  			# identPos = newPosition macro_def.fun_symb macro_def.fun_pos
	 			-> (modules, { pi &  pi_error = checkError macro_def.fun_symb "recursive macro definition" (setErrorAdmin identPos pi.pi_error)  })
	 		_
	 			-> (modules, pi)
		= (modules, pi)

partitionateDclMacros :: !IndexRange !Index !PredefSymbolsForTransform !*{#FunDef} !*{#*{#FunDef}} !*{#DclModule} !*VarHeap !*ExpressionHeap !*SymbolTable !*ErrorAdmin
																   -> (!*{#FunDef},!*{#*{#FunDef}},!.{#DclModule},!*VarHeap,!*ExpressionHeap,!*SymbolTable,!*ErrorAdmin )
partitionateDclMacros {ir_from,ir_to} mod_index predef_symbols_for_transform fun_defs macro_defs modules var_heap symbol_heap symbol_table error
	#! max_fun_nr = cMAXINT
	# partitioning_info = { pi_var_heap = var_heap, pi_symbol_heap = symbol_heap,
							pi_symbol_table = symbol_table, pi_fun_defs=fun_defs, pi_macro_defs=macro_defs,
							pi_error = error, pi_deps<