author  bulwahn 
Wed, 30 Mar 2011 11:32:52 +0200  
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parent 40049  75d9f57123d6 
child 50055  94041d602ecb 
permissions  rwrr 
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(* Author: Lukas Bulwahn, TU Muenchen *) 
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header {* DepthLimited Sequences with failure element *} 
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theory New_DSequence 
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imports Random_Sequence 
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begin 
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subsection {* Positive DepthLimited Sequence *} 
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type_synonym 'a pos_dseq = "code_numeral => 'a Lazy_Sequence.lazy_sequence" 
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definition pos_empty :: "'a pos_dseq" 
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where 
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"pos_empty = (%i. Lazy_Sequence.empty)" 
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definition pos_single :: "'a => 'a pos_dseq" 
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where 
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"pos_single x = (%i. Lazy_Sequence.single x)" 
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definition pos_bind :: "'a pos_dseq => ('a => 'b pos_dseq) => 'b pos_dseq" 
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where 
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"pos_bind x f = (%i. Lazy_Sequence.bind (x i) (%a. f a i))" 
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definition pos_decr_bind :: "'a pos_dseq => ('a => 'b pos_dseq) => 'b pos_dseq" 
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where 
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"pos_decr_bind x f = (%i. 
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if i = 0 then 
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Lazy_Sequence.empty 
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else 
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Lazy_Sequence.bind (x (i  1)) (%a. f a i))" 
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definition pos_union :: "'a pos_dseq => 'a pos_dseq => 'a pos_dseq" 
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where 
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"pos_union xq yq = (%i. Lazy_Sequence.append (xq i) (yq i))" 
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definition pos_if_seq :: "bool => unit pos_dseq" 
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where 
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"pos_if_seq b = (if b then pos_single () else pos_empty)" 
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definition pos_iterate_upto :: "(code_numeral => 'a) => code_numeral => code_numeral => 'a pos_dseq" 
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where 
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"pos_iterate_upto f n m = (%i. Lazy_Sequence.iterate_upto f n m)" 
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definition pos_map :: "('a => 'b) => 'a pos_dseq => 'b pos_dseq" 
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where 
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"pos_map f xq = (%i. Lazy_Sequence.map f (xq i))" 
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subsection {* Negative DepthLimited Sequence *} 
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type_synonym 'a neg_dseq = "code_numeral => 'a Lazy_Sequence.hit_bound_lazy_sequence" 
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definition neg_empty :: "'a neg_dseq" 
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where 
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"neg_empty = (%i. Lazy_Sequence.empty)" 
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definition neg_single :: "'a => 'a neg_dseq" 
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where 
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"neg_single x = (%i. Lazy_Sequence.hb_single x)" 
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definition neg_bind :: "'a neg_dseq => ('a => 'b neg_dseq) => 'b neg_dseq" 
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where 
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"neg_bind x f = (%i. hb_bind (x i) (%a. f a i))" 
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definition neg_decr_bind :: "'a neg_dseq => ('a => 'b neg_dseq) => 'b neg_dseq" 
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where 
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"neg_decr_bind x f = (%i. 
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if i = 0 then 
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Lazy_Sequence.hit_bound 
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else 
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hb_bind (x (i  1)) (%a. f a i))" 
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definition neg_union :: "'a neg_dseq => 'a neg_dseq => 'a neg_dseq" 
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where 
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"neg_union x y = (%i. Lazy_Sequence.append (x i) (y i))" 
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definition neg_if_seq :: "bool => unit neg_dseq" 
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where 
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"neg_if_seq b = (if b then neg_single () else neg_empty)" 
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definition neg_iterate_upto 
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where 
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"neg_iterate_upto f n m = (%i. Lazy_Sequence.iterate_upto (%i. Some (f i)) n m)" 
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definition neg_map :: "('a => 'b) => 'a neg_dseq => 'b neg_dseq" 
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where 
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"neg_map f xq = (%i. Lazy_Sequence.hb_map f (xq i))" 
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subsection {* Negation *} 
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definition pos_not_seq :: "unit neg_dseq => unit pos_dseq" 
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where 
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"pos_not_seq xq = (%i. Lazy_Sequence.hb_not_seq (xq (3 * i)))" 
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definition neg_not_seq :: "unit pos_dseq => unit neg_dseq" 
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where 
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"neg_not_seq x = (%i. case Lazy_Sequence.yield (x i) of 
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None => Lazy_Sequence.hb_single () 
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 Some ((), xq) => Lazy_Sequence.empty)" 
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hide_type (open) pos_dseq neg_dseq 
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hide_const (open) 
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pos_empty pos_single pos_bind pos_decr_bind pos_union pos_if_seq pos_iterate_upto pos_not_seq pos_map 
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neg_empty neg_single neg_bind neg_decr_bind neg_union neg_if_seq neg_iterate_upto neg_not_seq neg_map 
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hide_fact (open) 
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pos_empty_def pos_single_def pos_bind_def pos_union_def pos_if_seq_def pos_iterate_upto_def pos_not_seq_def pos_map_def 
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neg_empty_def neg_single_def neg_bind_def neg_union_def neg_if_seq_def neg_iterate_upto_def neg_not_seq_def neg_map_def 
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end 