393 lines
		
	
	
		
			15 KiB
		
	
	
	
		
			Prolog
		
	
	
	
	
	
			
		
		
	
	
			393 lines
		
	
	
		
			15 KiB
		
	
	
	
		
			Prolog
		
	
	
	
	
	
| %%% -*- Mode: Prolog; -*-
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| 
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| %%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%
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| %
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| %  $Date: 2011-12-06 21:50:45 +0100 (Tue, 06 Dec 2011) $
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| %  $Revision: 6772 $
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| %
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| %  This file is part of ProbLog
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| %  http://dtai.cs.kuleuven.be/problog
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| %
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| %  ProbLog was developed at Katholieke Universiteit Leuven
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| %
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| %  Copyright 2008, 2009, 2010
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| %  Katholieke Universiteit Leuven
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| %
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| %  Main authors of this file:
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| %  Bernd Gutmann
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| %
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| %%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%
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| %
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| % Artistic License 2.0
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| %
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| % Copyright (c) 2000-2006, The Perl Foundation.
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| % General Provisions
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| % this license.
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| % (12) This license does not grant you the right to use any trademark,
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| % (13) This license includes the non-exclusive, worldwide,
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| % HOLDER AND CONTRIBUTORS "AS IS' AND WITHOUT ANY EXPRESS OR IMPLIED
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| % PARTICULAR PURPOSE, OR NON-INFRINGEMENT ARE DISCLAIMED TO THE EXTENT
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| % PERMITTED BY YOUR LOCAL LAW. UNLESS REQUIRED BY LAW, NO COPYRIGHT
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| % OF THE PACKAGE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
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| %
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| %%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%
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| 
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| :- module(utils, [delete_file_silently/1,
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| 		  delete_files_silently/1,
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| 		  delete_file_pattern_silently/2,
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| 		  variable_in_term_exactly_once/2,
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| 		  slice_n/4,
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| 		  sorted_overlap_test/2,
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| 		  prefix_bdd_file_with_header/4,
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| 		  split_list/3,
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| 		  succeeds_n_times/2,
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| 		  sum_forall/3]).
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| 
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| :- use_module(library(system), [delete_file/1]).
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| 
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| % load our own modules
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| :- use_module(os).
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| 
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| :- meta_predicate succeeds_n_times(0,?), sum_forall(?,:,?).
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| 
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| 
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| %========================================================================
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| %= deletes File, if it doesn't exists, it will succeed silently
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| %= delete_file_silently(+File)
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| %========================================================================
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| 
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| delete_file_silently(File) :-
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| 	catch(delete_file(File),_, fail),
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| 	!.
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| delete_file_silently(_).
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| 
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| 
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| %========================================================================
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| %= delete all the files in the list silently
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| %= delete_files_silently(+List)
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| %========================================================================
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| 
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| delete_files_silently([]).
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| delete_files_silently([H|T]) :-
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| 	delete_file_silently(H),
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| 	delete_files_silently(T).
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| 
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| 
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| %========================================================================
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| %= delete all the files matching a certain pattern silently
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| %=  i.e. delete_file_pattern_silently('~/a_path/b_path/','*.txt')
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| %=
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| %= delete_file_pattern_silently(+Path,+Pattern)
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| %========================================================================
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| 
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| delete_file_pattern_silently(Path,Pattern) :-
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| 	concat_path_with_filename(Path,Pattern,AbsolutePattern),
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| 	expand_file_name(AbsolutePattern,Files),
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| 	delete_files_silently(Files).
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| 
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| 
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| %========================================================================
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| %= Split a list into the first n elements and the tail
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| %= slice_n(+List, +Integer, -Prefix, -Residuum)
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| %========================================================================
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| 
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| slice_n([],_,[],[]) :-
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| 	!.
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| slice_n([H|T],N,[H|T2],T3) :-
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| 	N>0,
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| 	!,
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| 	N2 is N-1,
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| 	slice_n(T,N2,T2,T3).
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| slice_n(L,0,[],L).
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| 
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| 
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| %========================================================================
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| %= succeeds if the variable V appears exactly once in the term T
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| %========================================================================
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| 
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| variable_in_term_exactly_once(T,V) :-
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| 	term_variables(T,Vars),
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| 	var_memberchk_once(Vars,V).
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| 
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| var_memberchk_once([H|T],V) :-
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| 	H==V,
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| 	!,
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| 	var_memberchk_none(T,V).
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| var_memberchk_once([_|T],V) :-
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| 	var_memberchk_once(T,V).
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| 
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| var_memberchk_none([H|T],V) :-
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| 	H\==V,
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| 	var_memberchk_none(T,V).
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| var_memberchk_none([],_).
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| 
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| 
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| %========================================================================
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| %= sorted_overlap_test(+L1,+L2)
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| %= L1 and L2 are ground sorted lists
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| %= the predicate is true if there is an element X both appearing in L1 and L2
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| %========================================================================
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| 
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| sorted_overlap_test([H|_],[H|_]) :-
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| 	!.
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| sorted_overlap_test([H1|T1],[H2|T2]) :-
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| 	H1 @> H2,
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| 	!,
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| 	sorted_overlap_test([H1|T1],T2).
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| sorted_overlap_test([_|T1],[H2|T2]) :-
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| 	sorted_overlap_test(T1,[H2|T2]).
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| 
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| %========================================================================
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| %= TmpFile is the file name that contains the "body" of a SimpleCUDD
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| %= script file. This predicate creates a new file BDD_File_Name that
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| %= starts with the right header and contains the body. The body file
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| %= is deleted afterwards.
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| %=
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| %= prefix_bdd_file_with_header(+BDD_File_Name,+VarCount,+IntermediateSteps,+TmpFile)
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| %========================================================================
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| 
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| prefix_bdd_file_with_header(BDD_File_Name,VarCount,IntermediateSteps,TmpFile) :-
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| 	open(BDD_File_Name,write,H),
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| 	% this is the header of the BDD script for problogbdd
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| 	format(H, '@BDD1~n~w~n0~n~w~n',[VarCount,IntermediateSteps]),
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| 
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| 	% append the content of the file TmpFile
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| 	open(TmpFile,read,H2),
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| 
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| 	(
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| 	 repeat,
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| 	 get_code(H2,C),
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| 	 put_code(H,C),
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| 	 at_end_of_stream(H2),
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| 	 !
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| 	),
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| 	close(H2),
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| 	
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| 	close(H),
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| 	delete_file_silently(TmpFile).
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| 
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| 
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| %========================================================================
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| %= Split the list L in the two lists L1 and L2 such that
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| %= append(L1,L2,L) holds.
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| %=
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| %= if length of L is even, then L1 and L2 will have the same length
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| %= if length of L is odd, then L1 will be one element longer than L2
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| %=
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| %= split_list(+L,-L1,-L2)
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| %========================================================================
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| 
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| split_list([],[],[]).
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| split_list([H|T],L1,L2) :-
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| 	length([H|T],Len),
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| 	Len1 is integer(Len/2+0.5),
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| 	split_list_intern(Len1,[H|T],L1,L2).
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| 
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| split_list_intern(0,L,[],L).
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| split_list_intern(N,[H|T],[H|T1],L) :-
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| 	N>0,
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| 	N2 is N-1,
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| 	split_list_intern(N2,T,T1,L).
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| 
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| %========================================================================
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| %= Counts how often Goal succeeds
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| %= (taken from the YAP manual)
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| %========================================================================
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| 
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| succeeds_n_times(Goal, Times) :- 
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| 	Counter = counter(0), 
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| 	( Goal, 
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| 	  arg(1, Counter, N0), 
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| 	  N is N0 + 1, 
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| 	  nb_setarg(1, Counter, N), 
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| 	  fail 
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| 	; arg(1, Counter, Times) 
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| 	).
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| 
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| 
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| %========================================================================
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| %=
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| %=
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| %========================================================================
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| 
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| sum_forall(X,Goal, Sum) :- 
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| 	Temp = sum(0), 
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| 	( Goal, 
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| 	  arg(1, Temp, Sum0),
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| 	  Sum is Sum0+X,
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| 	  nb_setarg(1, Temp, Sum), 
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| 	  fail 
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| 	; arg(1, Temp, Sum) 
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| 	). |