src/HOL/ex/Predicate_Compile_ex.thy
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developing an executable the operator
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theory Predicate_Compile_ex
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imports Main Predicate_Compile
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begin
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inductive even :: "nat \<Rightarrow> bool" and odd :: "nat \<Rightarrow> bool" where
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    "even 0"
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  | "even n \<Longrightarrow> odd (Suc n)"
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  | "odd n \<Longrightarrow> even (Suc n)"
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code_pred even .
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thm odd.equation
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thm even.equation
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values "{x. even 2}"
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values "{x. odd 2}"
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values 10 "{n. even n}"
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values 10 "{n. odd n}"
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inductive append :: "'a list \<Rightarrow> 'a list \<Rightarrow> 'a list \<Rightarrow> bool" where
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    "append [] xs xs"
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  | "append xs ys zs \<Longrightarrow> append (x # xs) ys (x # zs)"
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code_pred append .
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code_pred (inductify_all) (rpred) append .
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thm append.equation
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thm append.rpred_equation
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values "{(ys, xs). append xs ys [0, Suc 0, 2]}"
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values "{zs. append [0, Suc 0, 2] [17, 8] zs}"
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values "{ys. append [0, Suc 0, 2] ys [0, Suc 0, 2, 17, 0,5]}"
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value [code] "Predicate.the (append_1_2 [0::int, 1, 2] [3, 4, 5])"
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value [code] "Predicate.the (append_3 ([]::int list))"
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inductive tupled_append :: "'a list \<times> 'a list \<times> 'a list \<Rightarrow> bool"
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where
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  "tupled_append ([], xs, xs)"
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| "tupled_append (xs, ys, zs) \<Longrightarrow> tupled_append (x # xs, ys, x # zs)"
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code_pred tupled_append .
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thm tupled_append.equation
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(*
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values "{xs. tupled_append ([1,2,3], [4,5], xs)}"
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*)
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inductive rev where
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    "rev [] []"
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  | "rev xs xs' ==> append xs' [x] ys ==> rev (x#xs) ys"
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code_pred rev .
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thm rev.equation
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values "{xs. rev [0, 1, 2, 3::nat] xs}"
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inductive tupled_rev where
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  "tupled_rev ([], [])"
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| "tupled_rev (xs, xs') \<Longrightarrow> tupled_append (xs', [x], ys) \<Longrightarrow> tupled_rev (x#xs, ys)"
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code_pred tupled_rev .
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thm tupled_rev.equation
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inductive partition :: "('a \<Rightarrow> bool) \<Rightarrow> 'a list \<Rightarrow> 'a list \<Rightarrow> 'a list \<Rightarrow> bool"
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  for f where
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    "partition f [] [] []"
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  | "f x \<Longrightarrow> partition f xs ys zs \<Longrightarrow> partition f (x # xs) (x # ys) zs"
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  | "\<not> f x \<Longrightarrow> partition f xs ys zs \<Longrightarrow> partition f (x # xs) ys (x # zs)"
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code_pred partition .
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inductive tupled_partition :: "('a \<Rightarrow> bool) \<Rightarrow> ('a list \<times> 'a list \<times> 'a list) \<Rightarrow> bool"
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  for f where
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   "tupled_partition f ([], [], [])"
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  | "f x \<Longrightarrow> tupled_partition f (xs, ys, zs) \<Longrightarrow> tupled_partition f (x # xs, x # ys, zs)"
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  | "\<not> f x \<Longrightarrow> tupled_partition f (xs, ys, zs) \<Longrightarrow> tupled_partition f (x # xs, ys, x # zs)"
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code_pred tupled_partition .
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thm tupled_partition.equation
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inductive member
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for xs
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where "x \<in> set xs ==> member xs x"
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lemma [code_pred_intros]:
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  "member (x#xs') x"
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by (auto intro: member.intros)
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lemma [code_pred_intros]:
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"member xs x ==> member (x'#xs) x"
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by (auto intro: member.intros elim!: member.cases)
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(* strange bug must be repaired! *)
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(*
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code_pred member sorry
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*)
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inductive is_even :: "nat \<Rightarrow> bool"
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where
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  "n mod 2 = 0 \<Longrightarrow> is_even n"
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code_pred is_even .
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values 10 "{(ys, zs). partition is_even
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  [0, Suc 0, 2, 3, 4, 5, 6, 7] ys zs}"
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values 10 "{zs. partition is_even zs [0, 2] [3, 5]}"
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values 10 "{zs. partition is_even zs [0, 7] [3, 5]}"
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lemma [code_pred_intros]:
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  "r a b \<Longrightarrow> tranclp r a b"
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  "r a b \<Longrightarrow> tranclp r b c \<Longrightarrow> tranclp r a c"
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  by auto
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code_pred tranclp
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proof -
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  case tranclp
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  from this converse_tranclpE[OF this(1)] show thesis by metis
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qed
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(*
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code_pred (inductify_all) (rpred) tranclp .
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thm tranclp.equation
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thm tranclp.rpred_equation
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*)
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inductive succ :: "nat \<Rightarrow> nat \<Rightarrow> bool" where
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    "succ 0 1"
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  | "succ m n \<Longrightarrow> succ (Suc m) (Suc n)"
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code_pred succ .
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thm succ.equation
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values 10 "{(m, n). succ n m}"
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values "{m. succ 0 m}"
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values "{m. succ m 0}"
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(* FIXME: why does this not terminate? -- value chooses mode [] --> [1] and then starts enumerating all successors *)
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(*
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values 20 "{n. tranclp succ 10 n}"
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values "{n. tranclp succ n 10}"
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values 20 "{(n, m). tranclp succ n m}"
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*)
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subsection{* IMP *}
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types
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  var = nat
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  state = "int list"
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datatype com =
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  Skip |
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  Ass var "state => int" |
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  Seq com com |
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  IF "state => bool" com com |
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  While "state => bool" com
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inductive exec :: "com => state => state => bool" where
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"exec Skip s s" |
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"exec (Ass x e) s (s[x := e(s)])" |
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"exec c1 s1 s2 ==> exec c2 s2 s3 ==> exec (Seq c1 c2) s1 s3" |
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"b s ==> exec c1 s t ==> exec (IF b c1 c2) s t" |
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"~b s ==> exec c2 s t ==> exec (IF b c1 c2) s t" |
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"~b s ==> exec (While b c) s s" |
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"b s1 ==> exec c s1 s2 ==> exec (While b c) s2 s3 ==> exec (While b c) s1 s3"
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code_pred exec .
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values "{t. exec
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 (While (%s. s!0 > 0) (Seq (Ass 0 (%s. s!0 - 1)) (Ass 1 (%s. s!1 + 1))))
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 [3,5] t}"
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inductive tupled_exec :: "(com \<times> state \<times> state) \<Rightarrow> bool" where
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"tupled_exec (Skip, s, s)" |
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"tupled_exec (Ass x e, s, s[x := e(s)])" |
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"tupled_exec (c1, s1, s2) ==> tupled_exec (c2, s2, s3) ==> tupled_exec (Seq c1 c2, s1, s3)" |
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"b s ==> tupled_exec (c1, s, t) ==> tupled_exec (IF b c1 c2, s, t)" |
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"~b s ==> tupled_exec (c2, s, t) ==> tupled_exec (IF b c1 c2, s, t)" |
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"~b s ==> tupled_exec (While b c, s, s)" |
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"b s1 ==> tupled_exec (c, s1, s2) ==> tupled_exec (While b c, s2, s3) ==> tupled_exec (While b c, s1, s3)"
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code_pred tupled_exec .
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subsection{* CCS *}
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text{* This example formalizes finite CCS processes without communication or
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recursion. For simplicity, labels are natural numbers. *}
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datatype proc = nil | pre nat proc | or proc proc | par proc proc
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inductive step :: "proc \<Rightarrow> nat \<Rightarrow> proc \<Rightarrow> bool" where
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"step (pre n p) n p" |
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"step p1 a q \<Longrightarrow> step (or p1 p2) a q" |
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"step p2 a q \<Longrightarrow> step (or p1 p2) a q" |
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"step p1 a q \<Longrightarrow> step (par p1 p2) a (par q p2)" |
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"step p2 a q \<Longrightarrow> step (par p1 p2) a (par p1 q)"
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code_pred step .
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inductive steps where
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"steps p [] p" |
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"step p a q \<Longrightarrow> steps q as r \<Longrightarrow> steps p (a#as) r"
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code_pred steps .
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values 5
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 "{as . steps (par (or (pre 0 nil) (pre 1 nil)) (pre 2 nil)) as (par nil nil)}"
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(* FIXME
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values 3 "{(a,q). step (par nil nil) a q}"
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*)
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inductive tupled_step :: "(proc \<times> nat \<times> proc) \<Rightarrow> bool"
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where
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"tupled_step (pre n p, n, p)" |
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"tupled_step (p1, a, q) \<Longrightarrow> tupled_step (or p1 p2, a, q)" |
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"tupled_step (p2, a, q) \<Longrightarrow> tupled_step (or p1 p2, a, q)" |
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"tupled_step (p1, a, q) \<Longrightarrow> tupled_step (par p1 p2, a, par q p2)" |
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"tupled_step (p2, a, q) \<Longrightarrow> tupled_step (par p1 p2, a, par p1 q)"
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code_pred tupled_step .
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thm tupled_step.equation
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subsection {* divmod *}
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inductive divmod_rel :: "nat \<Rightarrow> nat \<Rightarrow> nat \<Rightarrow> nat \<Rightarrow> bool" where
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    "k < l \<Longrightarrow> divmod_rel k l 0 k"
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  | "k \<ge> l \<Longrightarrow> divmod_rel (k - l) l q r \<Longrightarrow> divmod_rel k l (Suc q) r"
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code_pred divmod_rel ..
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value [code] "Predicate.the (divmod_rel_1_2 1705 42)"
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section {* Executing definitions *}
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definition Min
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where "Min s r x \<equiv> s x \<and> (\<forall>y. r x y \<longrightarrow> x = y)"
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code_pred (inductify_all) Min .
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subsection {* Examples with lists *}
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inductive filterP for Pa where
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"(filterP::('a => bool) => 'a list => 'a list => bool) (Pa::'a => bool) [] []"
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| "[| (res::'a list) = (y::'a) # (resa::'a list); (filterP::('a => bool) => 'a list => 'a list => bool) (Pa::'a => bool) (xt::'a list) resa; Pa y |]
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==> filterP Pa (y # xt) res"
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| "[| (filterP::('a => bool) => 'a list => 'a list => bool) (Pa::'a => bool) (xt::'a list) (res::'a list); ~ Pa (y::'a) |] ==> filterP Pa (y # xt) res"
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(*
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code_pred (inductify_all) (rpred) filterP .
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thm filterP.rpred_equation
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*)
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code_pred (inductify_all) lexord .
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thm lexord.equation
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lemma "(u, v) : lexord r ==> (x @ u, y @ v) : lexord r"
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(*quickcheck[generator=pred_compile]*)
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oops
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lemmas [code_pred_def] = lexn_conv lex_conv lenlex_conv
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code_pred (inductify_all) lexn .
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thm lexn.equation
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code_pred (inductify_all) lenlex .
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thm lenlex.equation
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(*
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code_pred (inductify_all) (rpred) lenlex .
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thm lenlex.rpred_equation
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*)
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thm lists.intros
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code_pred (inductify_all) lists .
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thm lists.equation
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datatype 'a tree = ET | MKT 'a "'a tree" "'a tree" nat
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fun height :: "'a tree => nat" where
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"height ET = 0"
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| "height (MKT x l r h) = max (height l) (height r) + 1"
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consts avl :: "'a tree => bool"
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primrec
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  "avl ET = True"
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  "avl (MKT x l r h) = ((height l = height r \<or> height l = 1 + height r \<or> height r = 1+height l) \<and> 
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  h = max (height l) (height r) + 1 \<and> avl l \<and> avl r)"
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code_pred (inductify_all) avl .
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thm avl.equation
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lemma [code_pred_inline]: "bot_fun_inst.bot_fun == (\<lambda>(y::'a::type). False)"
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unfolding bot_fun_inst.bot_fun[symmetric] bot_bool_eq[symmetric] bot_fun_eq by simp
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fun set_of
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where
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"set_of ET = {}"
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| "set_of (MKT n l r h) = insert n (set_of l \<union> set_of r)"
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fun is_ord
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where
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"is_ord ET = True"
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| "is_ord (MKT n l r h) =
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 ((\<forall>n' \<in> set_of l. n' < n) \<and> (\<forall>n' \<in> set_of r. n < n') \<and> is_ord l \<and> is_ord r)"
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declare Un_def[code_pred_def]
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code_pred (inductify_all) set_of .
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thm set_of.equation
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(* FIXME *)
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(*
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code_pred (inductify_all) is_ord .
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thm is_ord.equation
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*)
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section {* Definitions about Relations *}
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code_pred (inductify_all) converse .
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thm converse.equation
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code_pred (inductify_all) Domain .
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thm Domain.equation
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section {* Context Free Grammar *}
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datatype alphabet = a | b
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inductive_set S\<^isub>1 and A\<^isub>1 and B\<^isub>1 where
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  "[] \<in> S\<^isub>1"
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| "w \<in> A\<^isub>1 \<Longrightarrow> b # w \<in> S\<^isub>1"
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| "w \<in> B\<^isub>1 \<Longrightarrow> a # w \<in> S\<^isub>1"
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| "w \<in> S\<^isub>1 \<Longrightarrow> a # w \<in> A\<^isub>1"
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| "w \<in> S\<^isub>1 \<Longrightarrow> b # w \<in> S\<^isub>1"
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| "\<lbrakk>v \<in> B\<^isub>1; v \<in> B\<^isub>1\<rbrakk> \<Longrightarrow> a # v @ w \<in> B\<^isub>1"
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code_pred (inductify_all) S\<^isub>1p .
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thm S\<^isub>1p.equation
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(*
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theorem S\<^isub>1_sound:
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"w \<in> S\<^isub>1 \<longrightarrow> length [x \<leftarrow> w. x = a] = length [x \<leftarrow> w. x = b]"
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quickcheck[generator=pred_compile]
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oops
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inductive_set S\<^isub>2 and A\<^isub>2 and B\<^isub>2 where
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  "[] \<in> S\<^isub>2"
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| "w \<in> A\<^isub>2 \<Longrightarrow> b # w \<in> S\<^isub>2"
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| "w \<in> B\<^isub>2 \<Longrightarrow> a # w \<in> S\<^isub>2"
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| "w \<in> S\<^isub>2 \<Longrightarrow> a # w \<in> A\<^isub>2"
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| "w \<in> S\<^isub>2 \<Longrightarrow> b # w \<in> B\<^isub>2"
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| "\<lbrakk>v \<in> B\<^isub>2; v \<in> B\<^isub>2\<rbrakk> \<Longrightarrow> a # v @ w \<in> B\<^isub>2"
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(*
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code_pred (inductify_all) (rpred) S\<^isub>2 .
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ML {* Predicate_Compile_Core.intros_of @{theory} @{const_name "B\<^isub>2"} *}
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*)
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theorem S\<^isub>2_sound:
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"w \<in> S\<^isub>2 \<longrightarrow> length [x \<leftarrow> w. x = a] = length [x \<leftarrow> w. x = b]"
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(*quickcheck[generator=SML]*)
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quickcheck[generator=pred_compile, size=15, iterations=100]
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oops
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inductive_set S\<^isub>3 and A\<^isub>3 and B\<^isub>3 where
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  "[] \<in> S\<^isub>3"
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| "w \<in> A\<^isub>3 \<Longrightarrow> b # w \<in> S\<^isub>3"
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| "w \<in> B\<^isub>3 \<Longrightarrow> a # w \<in> S\<^isub>3"
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| "w \<in> S\<^isub>3 \<Longrightarrow> a # w \<in> A\<^isub>3"
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| "w \<in> S\<^isub>3 \<Longrightarrow> b # w \<in> B\<^isub>3"
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| "\<lbrakk>v \<in> B\<^isub>3; w \<in> B\<^isub>3\<rbrakk> \<Longrightarrow> a # v @ w \<in> B\<^isub>3"
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(*
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code_pred (inductify_all) S\<^isub>3 .
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*)
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theorem S\<^isub>3_sound:
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"w \<in> S\<^isub>3 \<longrightarrow> length [x \<leftarrow> w. x = a] = length [x \<leftarrow> w. x = b]"
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quickcheck[generator=pred_compile, size=10, iterations=1]
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oops
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lemma "\<not> (length w > 2) \<or> \<not> (length [x \<leftarrow> w. x = a] = length [x \<leftarrow> w. x = b])"
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quickcheck[size=10, generator = pred_compile]
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oops
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*)
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inductive test
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where
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  "length [x \<leftarrow> w. x = a] = length [x \<leftarrow> w. x = b] ==> test w"
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ML {* @{term "[x \<leftarrow> w. x = a]"} *}
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code_pred (inductify_all) test .
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theorem S\<^isub>3_complete:
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"length [x \<leftarrow> w. x = a] = length [x \<leftarrow> w. x = b] \<longrightarrow> w \<in> S\<^isub>3"
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(*quickcheck[generator=SML]*)
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quickcheck[generator=pred_compile, size=10, iterations=100]
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oops
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inductive_set S\<^isub>4 and A\<^isub>4 and B\<^isub>4 where
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  "[] \<in> S\<^isub>4"
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| "w \<in> A\<^isub>4 \<Longrightarrow> b # w \<in> S\<^isub>4"
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| "w \<in> B\<^isub>4 \<Longrightarrow> a # w \<in> S\<^isub>4"
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| "w \<in> S\<^isub>4 \<Longrightarrow> a # w \<in> A\<^isub>4"
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| "\<lbrakk>v \<in> A\<^isub>4; w \<in> A\<^isub>4\<rbrakk> \<Longrightarrow> b # v @ w \<in> A\<^isub>4"
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| "w \<in> S\<^isub>4 \<Longrightarrow> b # w \<in> B\<^isub>4"
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| "\<lbrakk>v \<in> B\<^isub>4; w \<in> B\<^isub>4\<rbrakk> \<Longrightarrow> a # v @ w \<in> B\<^isub>4"
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theorem S\<^isub>4_sound:
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"w \<in> S\<^isub>4 \<longrightarrow> length [x \<leftarrow> w. x = a] = length [x \<leftarrow> w. x = b]"
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quickcheck[generator = pred_compile, size=2, iterations=1]
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oops
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theorem S\<^isub>4_complete:
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"length [x \<leftarrow> w. x = a] = length [x \<leftarrow> w. x = b] \<longrightarrow> w \<in> S\<^isub>4"
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quickcheck[generator = pred_compile, size=5, iterations=1]
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oops
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theorem S\<^isub>4_A\<^isub>4_B\<^isub>4_sound_and_complete:
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"w \<in> S\<^isub>4 \<longleftrightarrow> length [x \<leftarrow> w. x = a] = length [x \<leftarrow> w. x = b]"
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"w \<in> A\<^isub>4 \<longleftrightarrow> length [x \<leftarrow> w. x = a] = length [x \<leftarrow> w. x = b] + 1"
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"w \<in> B\<^isub>4 \<longleftrightarrow> length [x \<leftarrow> w. x = b] = length [x \<leftarrow> w. x = a] + 1"
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(*quickcheck[generator = pred_compile, size=5, iterations=1]*)
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oops
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section {* Lambda *}
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datatype type =
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    Atom nat
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  | Fun type type    (infixr "\<Rightarrow>" 200)
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datatype dB =
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    Var nat
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  | App dB dB (infixl "\<degree>" 200)
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  | Abs type dB
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   430
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primrec
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  nth_el :: "'a list \<Rightarrow> nat \<Rightarrow> 'a option" ("_\<langle>_\<rangle>" [90, 0] 91)
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where
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  "[]\<langle>i\<rangle> = None"
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| "(x # xs)\<langle>i\<rangle> = (case i of 0 \<Rightarrow> Some x | Suc j \<Rightarrow> xs \<langle>j\<rangle>)"
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(*
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inductive nth_el' :: "'a list \<Rightarrow> nat \<Rightarrow> 'a \<Rightarrow> bool"
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where
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  "nth_el' (x # xs) 0 x"
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| "nth_el' xs i y \<Longrightarrow> nth_el' (x # xs) (Suc i) y"
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*)
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inductive typing :: "type list \<Rightarrow> dB \<Rightarrow> type \<Rightarrow> bool"  ("_ \<turnstile> _ : _" [50, 50, 50] 50)
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   444
  where
90f3ce5d27ae added first version of quickcheck based on the predicate compiler; added a few quickcheck examples
bulwahn
parents: 32670
diff changeset
   445
    Var [intro!]: "nth_el env x = Some T \<Longrightarrow> env \<turnstile> Var x : T"
90f3ce5d27ae added first version of quickcheck based on the predicate compiler; added a few quickcheck examples
bulwahn
parents: 32670
diff changeset
   446
  | Abs [intro!]: "T # env \<turnstile> t : U \<Longrightarrow> env \<turnstile> Abs T t : (T \<Rightarrow> U)"
90f3ce5d27ae added first version of quickcheck based on the predicate compiler; added a few quickcheck examples
bulwahn
parents: 32670
diff changeset
   447
(*  | App [intro!]: "env \<turnstile> s : T \<Rightarrow> U \<Longrightarrow> env \<turnstile> t : T \<Longrightarrow> env \<turnstile> (s \<degree> t) : U" *)
90f3ce5d27ae added first version of quickcheck based on the predicate compiler; added a few quickcheck examples
bulwahn
parents: 32670
diff changeset
   448
  | App [intro!]: "env \<turnstile> s : U \<Rightarrow> T \<Longrightarrow> env \<turnstile> t : T \<Longrightarrow> env \<turnstile> (s \<degree> t) : U"
90f3ce5d27ae added first version of quickcheck based on the predicate compiler; added a few quickcheck examples
bulwahn
parents: 32670
diff changeset
   449
90f3ce5d27ae added first version of quickcheck based on the predicate compiler; added a few quickcheck examples
bulwahn
parents: 32670
diff changeset
   450
primrec
90f3ce5d27ae added first version of quickcheck based on the predicate compiler; added a few quickcheck examples
bulwahn
parents: 32670
diff changeset
   451
  lift :: "[dB, nat] => dB"
90f3ce5d27ae added first version of quickcheck based on the predicate compiler; added a few quickcheck examples
bulwahn
parents: 32670
diff changeset
   452
where
90f3ce5d27ae added first version of quickcheck based on the predicate compiler; added a few quickcheck examples
bulwahn
parents: 32670
diff changeset
   453
    "lift (Var i) k = (if i < k then Var i else Var (i + 1))"
90f3ce5d27ae added first version of quickcheck based on the predicate compiler; added a few quickcheck examples
bulwahn
parents: 32670
diff changeset
   454
  | "lift (s \<degree> t) k = lift s k \<degree> lift t k"
90f3ce5d27ae added first version of quickcheck based on the predicate compiler; added a few quickcheck examples
bulwahn
parents: 32670
diff changeset
   455
  | "lift (Abs T s) k = Abs T (lift s (k + 1))"
32669
462b1dd67a58 added context free grammar example; removed dead code; adapted to work without quick and dirty mode; fixed typo
bulwahn
parents: 32668
diff changeset
   456
32672
90f3ce5d27ae added first version of quickcheck based on the predicate compiler; added a few quickcheck examples
bulwahn
parents: 32670
diff changeset
   457
primrec
90f3ce5d27ae added first version of quickcheck based on the predicate compiler; added a few quickcheck examples
bulwahn
parents: 32670
diff changeset
   458
  subst :: "[dB, dB, nat] => dB"  ("_[_'/_]" [300, 0, 0] 300)
90f3ce5d27ae added first version of quickcheck based on the predicate compiler; added a few quickcheck examples
bulwahn
parents: 32670
diff changeset
   459
where
90f3ce5d27ae added first version of quickcheck based on the predicate compiler; added a few quickcheck examples
bulwahn
parents: 32670
diff changeset
   460
    subst_Var: "(Var i)[s/k] =
90f3ce5d27ae added first version of quickcheck based on the predicate compiler; added a few quickcheck examples
bulwahn
parents: 32670
diff changeset
   461
      (if k < i then Var (i - 1) else if i = k then s else Var i)"
90f3ce5d27ae added first version of quickcheck based on the predicate compiler; added a few quickcheck examples
bulwahn
parents: 32670
diff changeset
   462
  | subst_App: "(t \<degree> u)[s/k] = t[s/k] \<degree> u[s/k]"
90f3ce5d27ae added first version of quickcheck based on the predicate compiler; added a few quickcheck examples
bulwahn
parents: 32670
diff changeset
   463
  | subst_Abs: "(Abs T t)[s/k] = Abs T (t[lift s 0 / k+1])"
90f3ce5d27ae added first version of quickcheck based on the predicate compiler; added a few quickcheck examples
bulwahn
parents: 32670
diff changeset
   464
90f3ce5d27ae added first version of quickcheck based on the predicate compiler; added a few quickcheck examples
bulwahn
parents: 32670
diff changeset
   465
inductive beta :: "[dB, dB] => bool"  (infixl "\<rightarrow>\<^sub>\<beta>" 50)
90f3ce5d27ae added first version of quickcheck based on the predicate compiler; added a few quickcheck examples
bulwahn
parents: 32670
diff changeset
   466
  where
90f3ce5d27ae added first version of quickcheck based on the predicate compiler; added a few quickcheck examples
bulwahn
parents: 32670
diff changeset
   467
    beta [simp, intro!]: "Abs T s \<degree> t \<rightarrow>\<^sub>\<beta> s[t/0]"
90f3ce5d27ae added first version of quickcheck based on the predicate compiler; added a few quickcheck examples
bulwahn
parents: 32670
diff changeset
   468
  | appL [simp, intro!]: "s \<rightarrow>\<^sub>\<beta> t ==> s \<degree> u \<rightarrow>\<^sub>\<beta> t \<degree> u"
90f3ce5d27ae added first version of quickcheck based on the predicate compiler; added a few quickcheck examples
bulwahn
parents: 32670
diff changeset
   469
  | appR [simp, intro!]: "s \<rightarrow>\<^sub>\<beta> t ==> u \<degree> s \<rightarrow>\<^sub>\<beta> u \<degree> t"
90f3ce5d27ae added first version of quickcheck based on the predicate compiler; added a few quickcheck examples
bulwahn
parents: 32670
diff changeset
   470
  | abs [simp, intro!]: "s \<rightarrow>\<^sub>\<beta> t ==> Abs T s \<rightarrow>\<^sub>\<beta> Abs T t"
90f3ce5d27ae added first version of quickcheck based on the predicate compiler; added a few quickcheck examples
bulwahn
parents: 32670
diff changeset
   471
90f3ce5d27ae added first version of quickcheck based on the predicate compiler; added a few quickcheck examples
bulwahn
parents: 32670
diff changeset
   472
lemma "Gamma \<turnstile> t : T \<Longrightarrow> t \<rightarrow>\<^sub>\<beta> t' \<Longrightarrow> Gamma \<turnstile> t' : T"
90f3ce5d27ae added first version of quickcheck based on the predicate compiler; added a few quickcheck examples
bulwahn
parents: 32670
diff changeset
   473
quickcheck[generator = pred_compile, size = 10, iterations = 1000]
90f3ce5d27ae added first version of quickcheck based on the predicate compiler; added a few quickcheck examples
bulwahn
parents: 32670
diff changeset
   474
oops
90f3ce5d27ae added first version of quickcheck based on the predicate compiler; added a few quickcheck examples
bulwahn
parents: 32670
diff changeset
   475
(* FIXME *)
90f3ce5d27ae added first version of quickcheck based on the predicate compiler; added a few quickcheck examples
bulwahn
parents: 32670
diff changeset
   476
(*
90f3ce5d27ae added first version of quickcheck based on the predicate compiler; added a few quickcheck examples
bulwahn
parents: 32670
diff changeset
   477
inductive test for P where
90f3ce5d27ae added first version of quickcheck based on the predicate compiler; added a few quickcheck examples
bulwahn
parents: 32670
diff changeset
   478
"[| filter P vs = res |]
90f3ce5d27ae added first version of quickcheck based on the predicate compiler; added a few quickcheck examples
bulwahn
parents: 32670
diff changeset
   479
==> test P vs res"
90f3ce5d27ae added first version of quickcheck based on the predicate compiler; added a few quickcheck examples
bulwahn
parents: 32670
diff changeset
   480
90f3ce5d27ae added first version of quickcheck based on the predicate compiler; added a few quickcheck examples
bulwahn
parents: 32670
diff changeset
   481
code_pred test .
90f3ce5d27ae added first version of quickcheck based on the predicate compiler; added a few quickcheck examples
bulwahn
parents: 32670
diff changeset
   482
*)
90f3ce5d27ae added first version of quickcheck based on the predicate compiler; added a few quickcheck examples
bulwahn
parents: 32670
diff changeset
   483
(*
90f3ce5d27ae added first version of quickcheck based on the predicate compiler; added a few quickcheck examples
bulwahn
parents: 32670
diff changeset
   484
export_code test_for_1_yields_1_2 in SML file -
90f3ce5d27ae added first version of quickcheck based on the predicate compiler; added a few quickcheck examples
bulwahn
parents: 32670
diff changeset
   485
code_pred (inductify_all) (rpred) test .
90f3ce5d27ae added first version of quickcheck based on the predicate compiler; added a few quickcheck examples
bulwahn
parents: 32670
diff changeset
   486
90f3ce5d27ae added first version of quickcheck based on the predicate compiler; added a few quickcheck examples
bulwahn
parents: 32670
diff changeset
   487
thm test.equation
90f3ce5d27ae added first version of quickcheck based on the predicate compiler; added a few quickcheck examples
bulwahn
parents: 32670
diff changeset
   488
*)
90f3ce5d27ae added first version of quickcheck based on the predicate compiler; added a few quickcheck examples
bulwahn
parents: 32670
diff changeset
   489
90f3ce5d27ae added first version of quickcheck based on the predicate compiler; added a few quickcheck examples
bulwahn
parents: 32670
diff changeset
   490
lemma filter_eq_ConsD:
90f3ce5d27ae added first version of quickcheck based on the predicate compiler; added a few quickcheck examples
bulwahn
parents: 32670
diff changeset
   491
 "filter P ys = x#xs \<Longrightarrow>
90f3ce5d27ae added first version of quickcheck based on the predicate compiler; added a few quickcheck examples
bulwahn
parents: 32670
diff changeset
   492
  \<exists>us vs. ys = ts @ x # vs \<and> (\<forall>u\<in>set us. \<not> P u) \<and> P x \<and> xs = filter P vs"
90f3ce5d27ae added first version of quickcheck based on the predicate compiler; added a few quickcheck examples
bulwahn
parents: 32670
diff changeset
   493
(*quickcheck[generator = pred_compile]*)
90f3ce5d27ae added first version of quickcheck based on the predicate compiler; added a few quickcheck examples
bulwahn
parents: 32670
diff changeset
   494
oops
32669
462b1dd67a58 added context free grammar example; removed dead code; adapted to work without quick and dirty mode; fixed typo
bulwahn
parents: 32668
diff changeset
   495
462b1dd67a58 added context free grammar example; removed dead code; adapted to work without quick and dirty mode; fixed typo
bulwahn
parents: 32668
diff changeset
   496
30374
7311a1546d85 added predicate compiler, as formally checked prototype, not as user package
haftmann
parents:
diff changeset
   497
end