| author | wenzelm | 
| Sun, 14 Mar 2021 22:55:52 +0100 | |
| changeset 73439 | cb127ce2c092 | 
| parent 67091 | 1393c2340eec | 
| child 81706 | 7beb0cf38292 | 
| permissions | -rw-r--r-- | 
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changeset | 1 | |
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changeset | 2 | (* Author: Lukas Bulwahn, TU Muenchen *) | 
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changeset | 3 | |
| 60758 | 4 | section \<open>Depth-Limited Sequences with failure element\<close> | 
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changeset | 5 | |
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changeset | 6 | theory Limited_Sequence | 
| 50055 | 7 | imports Lazy_Sequence | 
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changeset | 8 | begin | 
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changeset | 9 | |
| 60758 | 10 | subsection \<open>Depth-Limited Sequence\<close> | 
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changeset | 11 | |
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changeset | 12 | type_synonym 'a dseq = "natural \<Rightarrow> bool \<Rightarrow> 'a lazy_sequence option" | 
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changeset | 13 | |
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changeset | 14 | definition empty :: "'a dseq" | 
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changeset | 15 | where | 
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changeset | 16 | "empty = (\<lambda>_ _. Some Lazy_Sequence.empty)" | 
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changeset | 17 | |
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changeset | 18 | definition single :: "'a \<Rightarrow> 'a dseq" | 
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changeset | 19 | where | 
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changeset | 20 | "single x = (\<lambda>_ _. Some (Lazy_Sequence.single x))" | 
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changeset | 21 | |
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changeset | 22 | definition eval :: "'a dseq \<Rightarrow> natural \<Rightarrow> bool \<Rightarrow> 'a lazy_sequence option" | 
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changeset | 23 | where | 
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changeset | 24 | [simp]: "eval f i pol = f i pol" | 
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changeset | 25 | |
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changeset | 26 | definition yield :: "'a dseq \<Rightarrow> natural \<Rightarrow> bool \<Rightarrow> ('a \<times> 'a dseq) option" 
 | 
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changeset | 27 | where | 
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changeset | 28 | "yield f i pol = (case eval f i pol of | 
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changeset | 29 | None \<Rightarrow> None | 
| 55466 | 30 | | Some s \<Rightarrow> (map_option \<circ> apsnd) (\<lambda>r _ _. Some r) (Lazy_Sequence.yield s))" | 
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changeset | 31 | |
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changeset | 32 | definition map_seq :: "('a \<Rightarrow> 'b dseq) \<Rightarrow> 'a lazy_sequence \<Rightarrow> 'b dseq"
 | 
| 50092 | 33 | where | 
| 55466 | 34 | "map_seq f xq i pol = map_option Lazy_Sequence.flat | 
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changeset | 35 | (Lazy_Sequence.those (Lazy_Sequence.map (\<lambda>x. f x i pol) xq))" | 
| 50092 | 36 | |
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changeset | 37 | lemma map_seq_code [code]: | 
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changeset | 38 | "map_seq f xq i pol = (case Lazy_Sequence.yield xq of | 
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changeset | 39 | None \<Rightarrow> Some Lazy_Sequence.empty | 
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changeset | 40 | | Some (x, xq') \<Rightarrow> (case eval (f x) i pol of | 
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changeset | 41 | None \<Rightarrow> None | 
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changeset | 42 | | Some yq \<Rightarrow> (case map_seq f xq' i pol of | 
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changeset | 43 | None \<Rightarrow> None | 
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changeset | 44 | | Some zq \<Rightarrow> Some (Lazy_Sequence.append yq zq))))" | 
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changeset | 45 | by (cases xq) | 
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changeset | 46 | (auto simp add: map_seq_def Lazy_Sequence.those_def lazy_sequence_eq_iff split: list.splits option.splits) | 
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changeset | 47 | |
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changeset | 48 | definition bind :: "'a dseq \<Rightarrow> ('a \<Rightarrow> 'b dseq) \<Rightarrow> 'b dseq"
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changeset | 49 | where | 
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changeset | 50 | "bind x f = (\<lambda>i pol. | 
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changeset | 51 | if i = 0 then | 
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changeset | 52 | (if pol then Some Lazy_Sequence.empty else None) | 
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changeset | 53 | else | 
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changeset | 54 | (case x (i - 1) pol of | 
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changeset | 55 | None \<Rightarrow> None | 
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changeset | 56 | | Some xq \<Rightarrow> map_seq f xq i pol))" | 
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changeset | 57 | |
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changeset | 58 | definition union :: "'a dseq \<Rightarrow> 'a dseq \<Rightarrow> 'a dseq" | 
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changeset | 59 | where | 
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changeset | 60 | "union x y = (\<lambda>i pol. case (x i pol, y i pol) of | 
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changeset | 61 | (Some xq, Some yq) \<Rightarrow> Some (Lazy_Sequence.append xq yq) | 
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changeset | 62 | | _ \<Rightarrow> None)" | 
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changeset | 63 | |
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changeset | 64 | definition if_seq :: "bool \<Rightarrow> unit dseq" | 
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changeset | 65 | where | 
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changeset | 66 | "if_seq b = (if b then single () else empty)" | 
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changeset | 67 | |
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changeset | 68 | definition not_seq :: "unit dseq \<Rightarrow> unit dseq" | 
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changeset | 69 | where | 
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changeset | 70 | "not_seq x = (\<lambda>i pol. case x i (\<not> pol) of | 
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changeset | 71 | None \<Rightarrow> Some Lazy_Sequence.empty | 
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changeset | 72 | | Some xq \<Rightarrow> (case Lazy_Sequence.yield xq of | 
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changeset | 73 | None \<Rightarrow> Some (Lazy_Sequence.single ()) | 
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changeset | 74 | | Some _ \<Rightarrow> Some (Lazy_Sequence.empty)))" | 
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changeset | 75 | |
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changeset | 76 | definition map :: "('a \<Rightarrow> 'b) \<Rightarrow> 'a dseq \<Rightarrow> 'b dseq"
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changeset | 77 | where | 
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changeset | 78 | "map f g = (\<lambda>i pol. case g i pol of | 
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changeset | 79 | None \<Rightarrow> None | 
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changeset | 80 | | Some xq \<Rightarrow> Some (Lazy_Sequence.map f xq))" | 
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changeset | 81 | |
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changeset | 82 | |
| 60758 | 83 | subsection \<open>Positive Depth-Limited Sequence\<close> | 
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changeset | 84 | |
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changeset | 85 | type_synonym 'a pos_dseq = "natural \<Rightarrow> 'a Lazy_Sequence.lazy_sequence" | 
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changeset | 86 | |
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changeset | 87 | definition pos_empty :: "'a pos_dseq" | 
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changeset | 88 | where | 
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changeset | 89 | "pos_empty = (\<lambda>i. Lazy_Sequence.empty)" | 
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changeset | 90 | |
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changeset | 91 | definition pos_single :: "'a \<Rightarrow> 'a pos_dseq" | 
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changeset | 92 | where | 
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changeset | 93 | "pos_single x = (\<lambda>i. Lazy_Sequence.single x)" | 
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changeset | 94 | |
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changeset | 95 | definition pos_bind :: "'a pos_dseq \<Rightarrow> ('a \<Rightarrow> 'b pos_dseq) \<Rightarrow> 'b pos_dseq"
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changeset | 96 | where | 
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changeset | 97 | "pos_bind x f = (\<lambda>i. Lazy_Sequence.bind (x i) (\<lambda>a. f a i))" | 
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changeset | 98 | |
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changeset | 99 | definition pos_decr_bind :: "'a pos_dseq \<Rightarrow> ('a \<Rightarrow> 'b pos_dseq) \<Rightarrow> 'b pos_dseq"
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changeset | 100 | where | 
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changeset | 101 | "pos_decr_bind x f = (\<lambda>i. | 
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changeset | 102 | if i = 0 then | 
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changeset | 103 | Lazy_Sequence.empty | 
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changeset | 104 | else | 
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changeset | 105 | Lazy_Sequence.bind (x (i - 1)) (\<lambda>a. f a i))" | 
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changeset | 106 | |
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changeset | 107 | definition pos_union :: "'a pos_dseq \<Rightarrow> 'a pos_dseq \<Rightarrow> 'a pos_dseq" | 
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changeset | 108 | where | 
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changeset | 109 | "pos_union xq yq = (\<lambda>i. Lazy_Sequence.append (xq i) (yq i))" | 
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changeset | 110 | |
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changeset | 111 | definition pos_if_seq :: "bool \<Rightarrow> unit pos_dseq" | 
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changeset | 112 | where | 
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changeset | 113 | "pos_if_seq b = (if b then pos_single () else pos_empty)" | 
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changeset | 114 | |
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changeset | 115 | definition pos_iterate_upto :: "(natural \<Rightarrow> 'a) \<Rightarrow> natural \<Rightarrow> natural \<Rightarrow> 'a pos_dseq" | 
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changeset | 116 | where | 
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changeset | 117 | "pos_iterate_upto f n m = (\<lambda>i. Lazy_Sequence.iterate_upto f n m)" | 
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changeset | 118 | |
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changeset | 119 | definition pos_map :: "('a \<Rightarrow> 'b) \<Rightarrow> 'a pos_dseq \<Rightarrow> 'b pos_dseq"
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changeset | 120 | where | 
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changeset | 121 | "pos_map f xq = (\<lambda>i. Lazy_Sequence.map f (xq i))" | 
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changeset | 122 | |
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changeset | 123 | |
| 60758 | 124 | subsection \<open>Negative Depth-Limited Sequence\<close> | 
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changeset | 125 | |
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changeset | 126 | type_synonym 'a neg_dseq = "natural \<Rightarrow> 'a Lazy_Sequence.hit_bound_lazy_sequence" | 
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changeset | 127 | |
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changeset | 128 | definition neg_empty :: "'a neg_dseq" | 
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changeset | 129 | where | 
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changeset | 130 | "neg_empty = (\<lambda>i. Lazy_Sequence.empty)" | 
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changeset | 131 | |
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changeset | 132 | definition neg_single :: "'a \<Rightarrow> 'a neg_dseq" | 
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changeset | 133 | where | 
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changeset | 134 | "neg_single x = (\<lambda>i. Lazy_Sequence.hb_single x)" | 
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changeset | 135 | |
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changeset | 136 | definition neg_bind :: "'a neg_dseq \<Rightarrow> ('a \<Rightarrow> 'b neg_dseq) \<Rightarrow> 'b neg_dseq"
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changeset | 137 | where | 
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changeset | 138 | "neg_bind x f = (\<lambda>i. hb_bind (x i) (\<lambda>a. f a i))" | 
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changeset | 139 | |
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changeset | 140 | definition neg_decr_bind :: "'a neg_dseq \<Rightarrow> ('a \<Rightarrow> 'b neg_dseq) \<Rightarrow> 'b neg_dseq"
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changeset | 141 | where | 
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changeset | 142 | "neg_decr_bind x f = (\<lambda>i. | 
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changeset | 143 | if i = 0 then | 
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changeset | 144 | Lazy_Sequence.hit_bound | 
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changeset | 145 | else | 
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changeset | 146 | hb_bind (x (i - 1)) (\<lambda>a. f a i))" | 
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changeset | 147 | |
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changeset | 148 | definition neg_union :: "'a neg_dseq \<Rightarrow> 'a neg_dseq \<Rightarrow> 'a neg_dseq" | 
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changeset | 149 | where | 
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changeset | 150 | "neg_union x y = (\<lambda>i. Lazy_Sequence.append (x i) (y i))" | 
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changeset | 151 | |
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changeset | 152 | definition neg_if_seq :: "bool \<Rightarrow> unit neg_dseq" | 
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changeset | 153 | where | 
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changeset | 154 | "neg_if_seq b = (if b then neg_single () else neg_empty)" | 
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changeset | 155 | |
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changeset | 156 | definition neg_iterate_upto | 
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changeset | 157 | where | 
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changeset | 158 | "neg_iterate_upto f n m = (\<lambda>i. Lazy_Sequence.iterate_upto (\<lambda>i. Some (f i)) n m)" | 
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changeset | 159 | |
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changeset | 160 | definition neg_map :: "('a \<Rightarrow> 'b) \<Rightarrow> 'a neg_dseq \<Rightarrow> 'b neg_dseq"
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changeset | 161 | where | 
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changeset | 162 | "neg_map f xq = (\<lambda>i. Lazy_Sequence.hb_map f (xq i))" | 
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changeset | 163 | |
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changeset | 164 | |
| 60758 | 165 | subsection \<open>Negation\<close> | 
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changeset | 166 | |
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changeset | 167 | definition pos_not_seq :: "unit neg_dseq \<Rightarrow> unit pos_dseq" | 
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changeset | 168 | where | 
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changeset | 169 | "pos_not_seq xq = (\<lambda>i. Lazy_Sequence.hb_not_seq (xq (3 * i)))" | 
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changeset | 170 | |
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changeset | 171 | definition neg_not_seq :: "unit pos_dseq \<Rightarrow> unit neg_dseq" | 
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changeset | 172 | where | 
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changeset | 173 | "neg_not_seq x = (\<lambda>i. case Lazy_Sequence.yield (x i) of | 
| 67091 | 174 | None \<Rightarrow> Lazy_Sequence.hb_single () | 
| 175 | | Some ((), xq) \<Rightarrow> Lazy_Sequence.empty)" | |
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changeset | 176 | |
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changeset | 177 | |
| 60758 | 178 | ML \<open> | 
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changeset | 179 | signature LIMITED_SEQUENCE = | 
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changeset | 180 | sig | 
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changeset | 181 | type 'a dseq = Code_Numeral.natural -> bool -> 'a Lazy_Sequence.lazy_sequence option | 
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changeset | 182 |   val map : ('a -> 'b) -> 'a dseq -> 'b dseq
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changeset | 183 |   val yield : 'a dseq -> Code_Numeral.natural -> bool -> ('a * 'a dseq) option
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changeset | 184 | val yieldn : int -> 'a dseq -> Code_Numeral.natural -> bool -> 'a list * 'a dseq | 
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changeset | 185 | end; | 
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changeset | 186 | |
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changeset | 187 | structure Limited_Sequence : LIMITED_SEQUENCE = | 
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changeset | 188 | struct | 
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changeset | 189 | |
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changeset | 190 | type 'a dseq = Code_Numeral.natural -> bool -> 'a Lazy_Sequence.lazy_sequence option | 
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changeset | 191 | |
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changeset | 192 | fun map f = @{code Limited_Sequence.map} f;
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changeset | 193 | |
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changeset | 194 | fun yield f = @{code Limited_Sequence.yield} f;
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changeset | 195 | |
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changeset | 196 | fun yieldn n f i pol = (case f i pol of | 
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changeset | 197 | NONE => ([], fn _ => fn _ => NONE) | 
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changeset | 198 | | SOME s => let val (xs, s') = Lazy_Sequence.yieldn n s in (xs, fn _ => fn _ => SOME s') end); | 
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changeset | 199 | |
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changeset | 200 | end; | 
| 60758 | 201 | \<close> | 
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changeset | 202 | |
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changeset | 203 | code_reserved Eval Limited_Sequence | 
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changeset | 204 | |
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changeset | 205 | |
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changeset | 206 | hide_const (open) yield empty single eval map_seq bind union if_seq not_seq map | 
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changeset | 207 | 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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changeset | 208 | 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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changeset | 209 | |
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changeset | 210 | hide_fact (open) yield_def empty_def single_def eval_def map_seq_def bind_def union_def | 
| 34953 | 211 | if_seq_def not_seq_def map_def | 
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changeset | 212 | 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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changeset | 213 | 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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changeset | 214 | |
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changeset | 215 | end | 
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