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			67 lines
		
	
	
		
			1.5 KiB
		
	
	
	
		
			Prolog
		
	
	
	
	
	
			
		
		
	
	
			67 lines
		
	
	
		
			1.5 KiB
		
	
	
	
		
			Prolog
		
	
	
	
	
	
| % Sieve of eratosthenes to compute primes
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| % thom fruehwirth 920218-20, 980311
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| % christian holzbaur 980207 for Sicstus CHR
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| 
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| :- use_module(library(chr)).
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| 
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| handler primes.
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| 
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| 
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| % like chemical abstract machine
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| 
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| constraints primes/1, prime/1.
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| 
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| primes(1) <=> true.
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| primes(N) <=> N>1 | M is N-1, prime(N), primes(M).
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| 
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| absorb(J) @ prime(I) \ prime(J) <=> J mod I =:= 0 | true.
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| 
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| 
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| % shorter variant
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| 
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| constraints primes2/1.
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| 
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| primes2(N) ==> N>2 | M is N-1, primes2(M).
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| 
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| absorb2(J) @ primes2(I) \ primes2(J) <=> J mod I =:= 0 | true.
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| 
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| 
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| % faster variant
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| 
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| primes1(N):- primes1(2,N).
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| 
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| constraints primes1/2, prime1/1.
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| 
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| primes1(N,M) <=> N> M | true.
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| primes1(N,M) <=> N=<M | N1 is N+1, prime1(N), primes1(N1,M).
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| 
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| absorb1(J) @ prime1(I) \ prime1(J) <=> J mod I =:= 0 | true.
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| 
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| 
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| % faster variant, rule order sensitive
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| 
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| constraints primes3/1, prime3/1.
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| 
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| primes3(N) ==> prime3(2).
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| primes3(N),prime3(M) <=> M is N+1 | true.
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| 
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| prime3(N) ==> M is N+1, prime3(M).
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| absorb3(J) @ prime3(I) \ prime3(J) <=> J mod I =:= 0 | true.
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| 
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| 
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| % Concurrent program according to Shapiro
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| 
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| constraints primes/2,integers/3,sift/2,filter/3.
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| 
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| primes(N,Ps) <=> integers(2,N,Ns), sift(Ns,Ps).
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| 
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| integers(F,T,Ns) <=> F > T | Ns=[].
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| integers(F,T,Ns) <=> F =< T | Ns=[F|Ns1], F1 is F+1, integers(F1,T,Ns1).
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| 
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| sift([P|Ns],Ps) <=> Ps=[P|Ps1], filter(Ns,P,Ns1), sift(Ns1,Ps1).
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| sift([],Ps) <=> Ps=[].
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| 
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| filter([X|In],P,Out) <=> 0 =\= X mod P | Out=[X|Out1], filter(In,P,Out1).
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| filter([X|In],P,Out) <=> 0 =:= X mod P | filter(In,P,Out).
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| filter([],P,Out) <=> Out=[].
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