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			613 lines
		
	
	
		
			21 KiB
		
	
	
	
		
			ObjectPascal
		
	
	
	
	
	
			
		
		
	
	
			613 lines
		
	
	
		
			21 KiB
		
	
	
	
		
			ObjectPascal
		
	
	
	
	
	
| {
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|     DFA
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| 
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|     Copyright (c) 2007 by Florian Klaempfl
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| 
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|     This program is free software; you can redistribute it and/or modify
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|     it under the terms of the GNU General Public License as published by
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|     the Free Software Foundation; either version 2 of the License, or
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|     (at your option) any later version.
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| 
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|     This program is distributed in the hope that it will be useful,
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|     but WITHOUT ANY WARRANTY; without even the implied warranty of
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|     MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
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|     GNU General Public License for more details.
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| 
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|     You should have received a copy of the GNU General Public License
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|     along with this program; if not, write to the Free Software
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|     Foundation, Inc., 675 Mass Ave, Cambridge, MA 02139, USA.
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| 
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|  ****************************************************************************
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| }
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| 
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| { $define DEBUG_DFA}
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| { $define EXTDEBUG_DFA}
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| 
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| { this unit implements routines to perform dfa }
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| unit optdfa;
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| 
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| {$i fpcdefs.inc}
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| 
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|   interface
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| 
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|     uses
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|       node,optutils;
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| 
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|     type
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|       TDFABuilder = class
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|       protected
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|         procedure CreateLifeInfo(node : tnode;map : TIndexedNodeSet);
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|       public
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|         resultnode : tnode;
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|         nodemap : TIndexedNodeSet;
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|         { reset all dfa info, this is required before creating dfa info
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|           if the tree has been changed without updating dfa }
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|         procedure resetdfainfo(node : tnode);
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| 
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|         procedure createdfainfo(node : tnode);
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|         destructor destroy;override;
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|       end;
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| 
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|   implementation
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| 
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|     uses
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|       globtype,globals,
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|       verbose,
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|       cpuinfo,
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|       symconst,symdef,
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|       defutil,
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|       procinfo,
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|       nutils,
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|       nbas,nflw,ncon,ninl,ncal,nset,
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|       optbase;
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| 
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| 
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|     (*
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|     function initnodes(var n:tnode; arg: pointer) : foreachnoderesult;
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|       begin
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|         { node worth to add? }
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|         if (node_complexity(n)>1) and (tstoreddef(n.resultdef).is_intregable or tstoreddef(n.resultdef).is_fpuregable) then
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|           begin
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|             plists(arg)^.nodelist.Add(n);
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|             plists(arg)^.locationlist.Add(@n);
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|             result:=fen_false;
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|           end
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|         else
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|           result:=fen_norecurse_false;
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|       end;
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|     *)
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| 
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|     {
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|       x:=f;         read: [f]
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| 
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|       while x do    read: []
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| 
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|         a:=b;       read: [a,b,d]  def: [a]       life:  read*def=[a]
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|           c:=d;     read: [a,d]    def: [a,c]     life:  read*def=[a]
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|             e:=a;   read: [a]      def: [a,c,e]   life:  read*def=[a]
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| 
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| 
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|       function f(b,d,x : type) : type;
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| 
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|         begin
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|           while x do        alive: b,d,x
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|             begin
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|               a:=b;         alive: b,d,x
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|               c:=d;         alive: a,d,x
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|               e:=a+c;       alive: a,c,x
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|               dec(x);       alive: c,e,x
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|             end;
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|           result:=c+e;      alive: c,e
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|         end;                alive: result
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| 
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|     }
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| 
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|     type
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|       tdfainfo = record
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|         use : PDFASet;
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|         def : PDFASet;
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|         map : TIndexedNodeSet
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|       end;
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|       pdfainfo = ^tdfainfo;
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| 
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|     function AddDefUse(var n: tnode; arg: pointer): foreachnoderesult;
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|       begin
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|         case n.nodetype of
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|           loadn:
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|             begin
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|               pdfainfo(arg)^.map.Add(n);
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|               if nf_modify in n.flags then
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|                 begin
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|                   DFASetInclude(pdfainfo(arg)^.use^,n.optinfo^.index);
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|                   DFASetInclude(pdfainfo(arg)^.def^,n.optinfo^.index)
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|                 end
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|               else if nf_write in n.flags then
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|                 DFASetInclude(pdfainfo(arg)^.def^,n.optinfo^.index)
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|               else
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|                 DFASetInclude(pdfainfo(arg)^.use^,n.optinfo^.index);
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|               {
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|               write('Use Set: ');
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|               PrintDFASet(output,pdfainfo(arg)^.use^);
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|               write(' Def Set: ');
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|               PrintDFASet(output,pdfainfo(arg)^.def^);
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|               writeln;
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|               }
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|             end;
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|         end;
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|         result:=fen_false;
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|       end;
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| 
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| 
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|     function ResetProcessing(var n: tnode; arg: pointer): foreachnoderesult;
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|       begin
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|         exclude(n.flags,nf_processing);
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|         result:=fen_false;
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|       end;
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| 
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| 
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|     function ResetDFA(var n: tnode; arg: pointer): foreachnoderesult;
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|       begin
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|         if assigned(n.optinfo) then
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|           begin
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|             with n.optinfo^ do
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|               begin
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|                 life:=nil;
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|                 def:=nil;
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|                 use:=nil;
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|                 defsum:=nil;
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|               end;
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|           end;
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|         result:=fen_false;
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|       end;
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| 
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| 
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|     procedure TDFABuilder.CreateLifeInfo(node : tnode;map : TIndexedNodeSet);
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| 
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|       var
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|         changed : boolean;
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| 
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|       procedure CreateInfo(node : tnode);
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| 
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|         { update life entry of a node with l, set changed if this changes
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|           life info for the node
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|         }
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|         procedure updatelifeinfo(n : tnode;l : TDFASet);
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|           var
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|             b : boolean;
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|           begin
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|             b:=DFASetNotEqual(l,n.optinfo^.life);
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|             {
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|             if b then
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|               begin
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|                 printnode(output,n);
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|                 printdfaset(output,l);
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|                 writeln;
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|                 printdfaset(output,n.optinfo^.life);
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|                 writeln;
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|               end;
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|             }
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| {$ifdef DEBUG_DFA}
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|             if not(changed) and b then
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|               writeln('Another DFA pass caused by: ',nodetype2str[n.nodetype],'(',n.fileinfo.line,',',n.fileinfo.column,')');
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| {$endif DEBUG_DFA}
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| 
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|             changed:=changed or b;
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|             node.optinfo^.life:=l;
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|           end;
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| 
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|         procedure calclife(n : tnode);
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|           var
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|             l : TDFASet;
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|           begin
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|             if assigned(n.successor) then
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|               begin
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|                 {
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|                 write('Successor Life: ');
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|                 printdfaset(output,n.successor.optinfo^.life);
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|                 writeln;
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|                 write('Def.');
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|                 printdfaset(output,n.optinfo^.def);
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|                 writeln;
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|                 }
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|                 { ensure we can access optinfo }
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|                 DFASetDiff(l,n.successor.optinfo^.life,n.optinfo^.def);
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|                 {
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|                 printdfaset(output,l);
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|                 writeln;
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|                 }
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|                 DFASetIncludeSet(l,n.optinfo^.use);
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|                 DFASetIncludeSet(l,n.optinfo^.life);
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|               end
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|             else
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|               begin
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|                 { last node, not exit or raise node and function? }
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|                 if assigned(resultnode) and
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|                   not(node.nodetype in [raisen,exitn]) then
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|                   begin
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|                     { if yes, result lifes }
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|                     DFASetDiff(l,resultnode.optinfo^.life,n.optinfo^.def);
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|                     DFASetIncludeSet(l,n.optinfo^.use);
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|                     DFASetIncludeSet(l,n.optinfo^.life);
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|                   end
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|                 else
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|                   begin
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|                     l:=n.optinfo^.use;
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|                     DFASetIncludeSet(l,n.optinfo^.life);
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|                   end;
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|               end;
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|             updatelifeinfo(n,l);
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|           end;
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| 
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|         var
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|           dfainfo : tdfainfo;
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|           l : TDFASet;
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|           save: TDFASet;
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|           i : longint;
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| 
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|         begin
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|           if node=nil then
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|             exit;
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| 
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|           { ensure we've already optinfo set }
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|           node.allocoptinfo;
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| 
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|           if nf_processing in node.flags then
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|             exit;
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|           include(node.flags,nf_processing);
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| 
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|           if assigned(node.successor) then
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|             CreateInfo(node.successor);
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| 
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| {$ifdef EXTDEBUG_DFA}
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|           writeln('Handling: ',nodetype2str[node.nodetype],'(',node.fileinfo.line,',',node.fileinfo.column,')');
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| {$endif EXTDEBUG_DFA}
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|           { life:=succesorlive-definition+use }
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| 
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|           case node.nodetype of
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|             whilerepeatn:
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|               begin
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|                 { analyze the loop condition }
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|                 if not(assigned(node.optinfo^.def)) and
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|                    not(assigned(node.optinfo^.use)) then
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|                   begin
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|                     dfainfo.use:=@node.optinfo^.use;
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|                     dfainfo.def:=@node.optinfo^.def;
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|                     dfainfo.map:=map;
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|                     foreachnodestatic(pm_postprocess,twhilerepeatnode(node).left,@AddDefUse,@dfainfo);
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|                   end;
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| 
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|                 { NB: this node should typically have empty def set }                  
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|                 if assigned(node.successor) then
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|                   DFASetDiff(l,node.successor.optinfo^.life,node.optinfo^.def)
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|                 else if assigned(resultnode) then
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|                   DFASetDiff(l,resultnode.optinfo^.life,node.optinfo^.def)
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|                 else
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|                   l:=nil;
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| 
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|                 { for repeat..until, node use set in included at the end of loop }
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|                 if not (lnf_testatbegin in twhilerepeatnode(node).loopflags) then
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|                   DFASetIncludeSet(l,node.optinfo^.use);
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| 
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|                 DFASetIncludeSet(l,node.optinfo^.life);
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| 
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|                 save:=node.optinfo^.life;
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|                 { to process body correctly, we need life info in place (because
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|                   whilerepeatnode is successor of its body). }
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|                 node.optinfo^.life:=l;
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| 
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|                 { now process the body }
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|                 CreateInfo(twhilerepeatnode(node).right);
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| 
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|                 { restore, to prevent infinite recursion via changed flag }
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|                 node.optinfo^.life:=save;
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| 
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|                 { for while loops, node use set is included at the beginning of loop }
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|                 l:=twhilerepeatnode(node).right.optinfo^.life;
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|                 if lnf_testatbegin in twhilerepeatnode(node).loopflags then
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|                   DFASetIncludeSet(l,node.optinfo^.use);
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| 
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|                 UpdateLifeInfo(node,l);
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| 
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|                 { ... and a second iteration for fast convergence }
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|                 CreateInfo(twhilerepeatnode(node).right);
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|               end;
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| 
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|             forn:
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|               begin
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|                 {
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|                   left: loopvar
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|                   right: from
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|                   t1: to
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|                   t2: body
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|                 }
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|                 { take care of the sucessor if it's possible that we don't have one execution of the body }
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|                 if not((tfornode(node).right.nodetype=ordconstn) and (tfornode(node).t1.nodetype=ordconstn)) then
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|                   calclife(node);
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|                 node.allocoptinfo;
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|                 if not(assigned(node.optinfo^.def)) and
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|                    not(assigned(node.optinfo^.use)) then
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|                   begin
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|                     dfainfo.use:=@node.optinfo^.use;
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|                     dfainfo.def:=@node.optinfo^.def;
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|                     dfainfo.map:=map;
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|                     foreachnodestatic(pm_postprocess,tfornode(node).left,@AddDefUse,@dfainfo);
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|                     foreachnodestatic(pm_postprocess,tfornode(node).right,@AddDefUse,@dfainfo);
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|                     foreachnodestatic(pm_postprocess,tfornode(node).t1,@AddDefUse,@dfainfo);
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|                   end;
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|                 { take care of the sucessor if it's possible that we don't have one execution of the body }
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|                 if not((tfornode(node).right.nodetype=ordconstn) and (tfornode(node).t1.nodetype=ordconstn)) then
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|                   calclife(node);
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| 
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|                 { create life for the body }
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|                 CreateInfo(tfornode(node).t2);
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| 
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|                 { update for node }
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|                 { life:=life+use+body }
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|                 l:=copy(node.optinfo^.life);
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|                 DFASetIncludeSet(l,node.optinfo^.use);
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|                 DFASetIncludeSet(l,tfornode(node).t2.optinfo^.life);
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|                 { the for loop always updates its control variable }
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|                 DFASetDiff(l,l,node.optinfo^.def);
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|                 UpdateLifeInfo(node,l);
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| 
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|                 { ... and a second iteration for fast convergence }
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|                 CreateInfo(tfornode(node).t2);
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|               end;
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| 
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|             temprefn,
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|             loadn,
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|             typeconvn,
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|             assignn:
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|               begin
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|                 if not(assigned(node.optinfo^.def)) and
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|                   not(assigned(node.optinfo^.use)) then
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|                   begin
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|                     dfainfo.use:=@node.optinfo^.use;
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|                     dfainfo.def:=@node.optinfo^.def;
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|                     dfainfo.map:=map;
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|                     foreachnodestatic(pm_postprocess,node,@AddDefUse,@dfainfo);
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|                   end;
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|                 calclife(node);
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|               end;
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| 
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|             statementn:
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|               begin
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|                 { nested statement }
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|                 CreateInfo(tstatementnode(node).statement);
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|                 { inherit info }
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|                 node.optinfo^.life:=tstatementnode(node).statement.optinfo^.life;
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|               end;
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| 
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|             blockn:
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|               begin
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|                 CreateInfo(tblocknode(node).statements);
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|                 if assigned(tblocknode(node).statements) then
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|                   node.optinfo^.life:=tblocknode(node).statements.optinfo^.life;
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|               end;
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| 
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|             ifn:
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|               begin
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|                 { get information from cond. expression }
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|                 if not(assigned(node.optinfo^.def)) and
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|                    not(assigned(node.optinfo^.use)) then
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|                   begin
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|                     dfainfo.use:=@node.optinfo^.use;
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|                     dfainfo.def:=@node.optinfo^.def;
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|                     dfainfo.map:=map;
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|                     foreachnodestatic(pm_postprocess,tifnode(node).left,@AddDefUse,@dfainfo);
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|                   end;
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|                 { create life info for then and else node }
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|                 CreateInfo(tifnode(node).right);
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|                 CreateInfo(tifnode(node).t1);
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| 
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|                 { ensure that we don't remove life info }
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|                 l:=node.optinfo^.life;
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| 
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|                 { get life info from then branch }
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|                 if assigned(tifnode(node).right) then
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|                   DFASetIncludeSet(l,tifnode(node).right.optinfo^.life);
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|                 { get life info from else branch }
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|                 if assigned(tifnode(node).t1) then
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|                   DFASetIncludeSet(l,tifnode(node).t1.optinfo^.life)
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|                 else
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|                   if assigned(node.successor) then
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|                     DFASetIncludeSet(l,node.successor.optinfo^.life)
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|                   { last node and function? }
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|                 else
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|                   if assigned(resultnode) then
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|                     DFASetIncludeSet(l,resultnode.optinfo^.life);
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| 
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|                 { add use info from the cond. expression }
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|                 DFASetIncludeSet(l,tifnode(node).optinfo^.use);
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|                 { finally, update the life info of the node }
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|                 UpdateLifeInfo(node,l);
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|               end;
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| 
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|             casen:
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|               begin
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|                 { get information from "case" expression }
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|                 if not(assigned(node.optinfo^.def)) and
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|                    not(assigned(node.optinfo^.use)) then
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|                   begin
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|                     dfainfo.use:=@node.optinfo^.use;
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|                     dfainfo.def:=@node.optinfo^.def;
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|                     dfainfo.map:=map;
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|                     foreachnodestatic(pm_postprocess,tcasenode(node).left,@AddDefUse,@dfainfo);
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|                   end;
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| 
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|                 { create life info for block and else nodes }
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|                 for i:=0 to tcasenode(node).blocks.count-1 do
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|                   CreateInfo(pcaseblock(tcasenode(node).blocks[i])^.statement);
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| 
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|                 CreateInfo(tcasenode(node).elseblock);
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| 
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|                 { ensure that we don't remove life info }
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|                 l:=node.optinfo^.life;
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| 
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|                 { get life info from case branches }
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|                 for i:=0 to tcasenode(node).blocks.count-1 do
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|                   DFASetIncludeSet(l,pcaseblock(tcasenode(node).blocks[i])^.statement.optinfo^.life);
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| 
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|                 { get life info from else branch or the succesor }
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|                 if assigned(tcasenode(node).elseblock) then
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|                   DFASetIncludeSet(l,tcasenode(node).elseblock.optinfo^.life)
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|                 else
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|                   if assigned(node.successor) then
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|                     DFASetIncludeSet(l,node.successor.optinfo^.life)
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|                   { last node and function? }
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|                 else
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|                   if assigned(resultnode) then
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|                     DFASetIncludeSet(l,resultnode.optinfo^.life);
 | |
| 
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|                 { add use info from the "case" expression }
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|                 DFASetIncludeSet(l,tcasenode(node).optinfo^.use);
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| 
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|                 { finally, update the life info of the node }
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|                 UpdateLifeInfo(node,l);
 | |
|               end;
 | |
| 
 | |
|             exitn:
 | |
|               begin
 | |
|                 if not(is_void(current_procinfo.procdef.returndef)) and
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|                   not(current_procinfo.procdef.proctypeoption=potype_constructor) then
 | |
|                   begin
 | |
|                     if not(assigned(node.optinfo^.def)) and
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|                        not(assigned(node.optinfo^.use)) then
 | |
|                       begin
 | |
|                         if assigned(texitnode(node).left) then
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|                           begin
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|                             node.optinfo^.def:=resultnode.optinfo^.def;
 | |
| 
 | |
|                             dfainfo.use:=@node.optinfo^.use;
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|                             dfainfo.def:=@node.optinfo^.def;
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|                             dfainfo.map:=map;
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|                             foreachnodestatic(pm_postprocess,texitnode(node).left,@AddDefUse,@dfainfo);
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|                             calclife(node);
 | |
|                           end
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|                         else
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|                           begin
 | |
|                             { get info from faked resultnode }
 | |
|                             node.optinfo^.use:=resultnode.optinfo^.use;
 | |
|                             node.optinfo^.life:=node.optinfo^.use;
 | |
|                             changed:=true;
 | |
|                           end;
 | |
|                       end;
 | |
|                   end;
 | |
|               end;
 | |
| 
 | |
|             raisen:
 | |
|               begin
 | |
|                 if not(assigned(node.optinfo^.life)) then
 | |
|                   begin
 | |
|                     dfainfo.use:=@node.optinfo^.use;
 | |
|                     dfainfo.def:=@node.optinfo^.def;
 | |
|                     dfainfo.map:=map;
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|                     foreachnodestatic(pm_postprocess,traisenode(node).left,@AddDefUse,@dfainfo);
 | |
|                     foreachnodestatic(pm_postprocess,traisenode(node).right,@AddDefUse,@dfainfo);
 | |
|                     foreachnodestatic(pm_postprocess,traisenode(node).third,@AddDefUse,@dfainfo);
 | |
|                     { update node }
 | |
|                     l:=node.optinfo^.life;
 | |
|                     DFASetIncludeSet(l,node.optinfo^.use);
 | |
|                     UpdateLifeInfo(node,l);
 | |
|                     printdfainfo(output,node);
 | |
|                   end;
 | |
|               end;
 | |
| 
 | |
|             calln:
 | |
|               begin
 | |
|                 if not(assigned(node.optinfo^.def)) and
 | |
|                   not(assigned(node.optinfo^.use)) then
 | |
|                   begin
 | |
|                     dfainfo.use:=@node.optinfo^.use;
 | |
|                     dfainfo.def:=@node.optinfo^.def;
 | |
|                     dfainfo.map:=map;
 | |
|                     foreachnodestatic(pm_postprocess,node,@AddDefUse,@dfainfo);
 | |
|                   end;
 | |
|                 calclife(node);
 | |
|               end;
 | |
| 
 | |
|             tempcreaten,
 | |
|             tempdeleten,
 | |
|             inlinen,
 | |
|             nothingn,
 | |
|             continuen,
 | |
|             goton,
 | |
|             breakn,
 | |
|             labeln:
 | |
|               begin
 | |
|                 calclife(node);
 | |
|               end;
 | |
|             else
 | |
|               begin
 | |
|                 writeln(nodetype2str[node.nodetype]);
 | |
|                 internalerror(2007050502);
 | |
|               end;
 | |
|           end;
 | |
| 
 | |
|           // exclude(node.flags,nf_processing);
 | |
|         end;
 | |
| 
 | |
|       var
 | |
|         runs : integer;
 | |
|         dfarec : tdfainfo;
 | |
|       begin
 | |
|         runs:=0;
 | |
|         if not(is_void(current_procinfo.procdef.returndef)) and
 | |
|           not(current_procinfo.procdef.proctypeoption=potype_constructor) then
 | |
|           begin
 | |
|             { create a fake node using the result }
 | |
|             resultnode:=load_result_node;
 | |
|             resultnode.allocoptinfo;
 | |
|             dfarec.use:=@resultnode.optinfo^.use;
 | |
|             dfarec.def:=@resultnode.optinfo^.def;
 | |
|             dfarec.map:=map;
 | |
|             AddDefUse(resultnode,@dfarec);
 | |
|             resultnode.optinfo^.life:=resultnode.optinfo^.use;
 | |
|           end
 | |
|         else
 | |
|           resultnode:=nil;
 | |
| 
 | |
|         repeat
 | |
|           inc(runs);
 | |
|           changed:=false;
 | |
|           CreateInfo(node);
 | |
|           foreachnodestatic(pm_postprocess,node,@ResetProcessing,nil);
 | |
| {$ifdef DEBUG_DFA}
 | |
|           PrintIndexedNodeSet(output,map);
 | |
|           PrintDFAInfo(output,node);
 | |
| {$endif DEBUG_DFA}
 | |
|         until not(changed);
 | |
| {$ifdef DEBUG_DFA}
 | |
|         writeln('DFA solver iterations: ',runs);
 | |
| {$endif DEBUG_DFA}
 | |
|       end;
 | |
| 
 | |
| 
 | |
|     { reset all dfa info, this is required before creating dfa info
 | |
|       if the tree has been changed without updating dfa }
 | |
|     procedure TDFABuilder.resetdfainfo(node : tnode);
 | |
|       begin
 | |
|         foreachnodestatic(pm_postprocess,node,@ResetDFA,nil);
 | |
|       end;
 | |
| 
 | |
| 
 | |
|     procedure TDFABuilder.createdfainfo(node : tnode);
 | |
|       begin
 | |
|         if not(assigned(nodemap)) then
 | |
|           nodemap:=TIndexedNodeSet.Create;
 | |
|         { add controll flow information }
 | |
|         SetNodeSucessors(node);
 | |
|         { now, collect life information }
 | |
|         CreateLifeInfo(node,nodemap);
 | |
|       end;
 | |
| 
 | |
| 
 | |
|     destructor TDFABuilder.Destroy;
 | |
|       begin
 | |
|         Resultnode.free;
 | |
|         nodemap.free;
 | |
|         inherited destroy;
 | |
|       end;
 | |
| 
 | |
| end.
 | 
