273 lines
		
	
	
		
			6.0 KiB
		
	
	
	
		
			C++
		
	
	
			
		
		
	
	
			273 lines
		
	
	
		
			6.0 KiB
		
	
	
	
		
			C++
		
	
	
namespace factor
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{
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struct must_start_gc_again {};
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template<typename TargetGeneration, typename Policy> struct gc_workhorse : no_fixup {
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	factor_vm *parent;
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	TargetGeneration *target;
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	Policy policy;
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	code_heap *code;
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	explicit gc_workhorse(factor_vm *parent_, TargetGeneration *target_, Policy policy_) :
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		parent(parent_),
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		target(target_),
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		policy(policy_),
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		code(parent->code) {}
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	object *resolve_forwarding(object *untagged)
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	{
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		parent->check_data_pointer(untagged);
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		/* is there another forwarding pointer? */
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		while(untagged->forwarding_pointer_p())
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			untagged = untagged->forwarding_pointer();
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		/* we've found the destination */
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		return untagged;
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	}
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	object *promote_object(object *untagged)
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	{
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		cell size = untagged->size();
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		object *newpointer = target->allot(size);
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		if(!newpointer) throw must_start_gc_again();
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		memcpy(newpointer,untagged,size);
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		untagged->forward_to(newpointer);
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		policy.promoted_object(newpointer);
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		return newpointer;
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	}
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	object *fixup_data(object *obj)
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	{
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		parent->check_data_pointer(obj);
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		if(!policy.should_copy_p(obj))
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		{
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			policy.visited_object(obj);
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			return obj;
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		}
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		object *forwarding = resolve_forwarding(obj);
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		if(forwarding == obj)
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			return promote_object(obj);
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		else if(policy.should_copy_p(forwarding))
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			return promote_object(forwarding);
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		else
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		{
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			policy.visited_object(forwarding);
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			return forwarding;
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		}
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	}
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	code_block *fixup_code(code_block *compiled)
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	{
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		if(!code->marked_p(compiled))
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		{
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			code->set_marked_p(compiled);
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			parent->mark_stack.push_back((cell)compiled + 1);
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		}
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		return compiled;
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	}
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};
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struct dummy_unmarker {
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	void operator()(card *ptr) {}
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};
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struct simple_unmarker {
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	card unmask;
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	explicit simple_unmarker(card unmask_) : unmask(unmask_) {}
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	void operator()(card *ptr) { *ptr &= ~unmask; }
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};
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struct full_unmarker {
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	explicit full_unmarker() {}
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	void operator()(card *ptr) { *ptr = 0; }
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};
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template<typename TargetGeneration, typename Policy>
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struct collector {
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	factor_vm *parent;
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	data_heap *data;
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	code_heap *code;
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	TargetGeneration *target;
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	gc_workhorse<TargetGeneration,Policy> workhorse;
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	slot_visitor<gc_workhorse<TargetGeneration,Policy> > data_visitor;
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	cell cards_scanned;
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	cell decks_scanned;
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	cell code_blocks_scanned;
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	explicit collector(factor_vm *parent_, TargetGeneration *target_, Policy policy_) :
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		parent(parent_),
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		data(parent_->data),
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		code(parent_->code),
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		target(target_),
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		workhorse(parent,target,policy_),
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		data_visitor(parent,workhorse),
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		cards_scanned(0),
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		decks_scanned(0),
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		code_blocks_scanned(0) {}
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	void trace_handle(cell *handle)
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	{
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		data_visitor.visit_handle(handle);
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	}
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	void trace_object(object *ptr)
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	{
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		data_visitor.visit_slots(ptr);
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		if(ptr->type() == ALIEN_TYPE)
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			((alien *)ptr)->update_address();
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	}
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	void trace_roots()
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	{
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		data_visitor.visit_roots();
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	}
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	void trace_contexts()
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	{
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		data_visitor.visit_contexts();
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	}
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	void trace_code_block_objects(code_block *compiled)
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	{
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		data_visitor.visit_code_block_objects(compiled);
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	}
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	void trace_embedded_literals(code_block *compiled)
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	{
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		data_visitor.visit_embedded_literals(compiled);
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	}
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	void trace_code_heap_roots(std::set<code_block *> *remembered_set)
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	{
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		std::set<code_block *>::const_iterator iter = remembered_set->begin();
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		std::set<code_block *>::const_iterator end = remembered_set->end();
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		for(; iter != end; iter++)
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		{
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			code_block *compiled = *iter;
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			trace_code_block_objects(compiled);
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			trace_embedded_literals(compiled);
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			compiled->flush_icache();
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			code_blocks_scanned++;
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		}
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	}
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	inline cell first_card_in_deck(cell deck)
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	{
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		return deck << (deck_bits - card_bits);
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	}
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	inline cell last_card_in_deck(cell deck)
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	{
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		return first_card_in_deck(deck + 1);
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	}
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	inline cell card_deck_for_address(cell a)
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	{
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		return addr_to_deck(a - data->start);
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	}
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	inline cell card_start_address(cell card)
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	{
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		return (card << card_bits) + data->start;
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	}
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	inline cell card_end_address(cell card)
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	{
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		return ((card + 1) << card_bits) + data->start;
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	}
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	void trace_partial_objects(cell start, cell end, cell card_start, cell card_end)
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	{
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		if(card_start < end)
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		{
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			start += sizeof(cell);
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			if(start < card_start) start = card_start;
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			if(end > card_end) end = card_end;
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			cell *slot_ptr = (cell *)start;
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			cell *end_ptr = (cell *)end;
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			for(; slot_ptr < end_ptr; slot_ptr++)
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				data_visitor.visit_handle(slot_ptr);
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		}
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	}
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	template<typename SourceGeneration, typename Unmarker>
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	void trace_cards(SourceGeneration *gen, card mask, Unmarker unmarker)
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	{
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		card_deck *decks = data->decks;
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		card_deck *cards = data->cards;
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		cell gen_start_card = addr_to_card(gen->start - data->start);
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		cell first_deck = card_deck_for_address(gen->start);
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		cell last_deck = card_deck_for_address(gen->end);
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		cell start = 0, binary_start = 0, end = 0;
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		for(cell deck_index = first_deck; deck_index < last_deck; deck_index++)
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		{
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			if(decks[deck_index] & mask)
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			{
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				decks_scanned++;
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				cell first_card = first_card_in_deck(deck_index);
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				cell last_card = last_card_in_deck(deck_index);
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				for(cell card_index = first_card; card_index < last_card; card_index++)
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				{
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					if(cards[card_index] & mask)
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					{
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						cards_scanned++;
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						if(end < card_start_address(card_index))
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						{
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							start = gen->starts.find_object_containing_card(card_index - gen_start_card);
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							binary_start = start + ((object *)start)->binary_payload_start();
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							end = start + ((object *)start)->size();
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						}
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scan_next_object:				if(start < card_end_address(card_index))
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						{
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							trace_partial_objects(
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								start,
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								binary_start,
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								card_start_address(card_index),
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								card_end_address(card_index));
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							if(end < card_end_address(card_index))
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							{
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								start = gen->next_object_after(start);
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								if(start)
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								{
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									binary_start = start + ((object *)start)->binary_payload_start();
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									end = start + ((object *)start)->size();
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									goto scan_next_object;
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								}
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							}
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						}
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						unmarker(&cards[card_index]);
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						if(!start) return;
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					}
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				}
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				unmarker(&decks[deck_index]);
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			}
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		}
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	}
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};
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}
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