src/HOL/Nominal/Examples/Standardization.thy
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(*  Title:      HOL/Nominal/Examples/Standardization.thy
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    Author:     Stefan Berghofer and Tobias Nipkow
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    Copyright   2005, 2008 TU Muenchen
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*)
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header {* Standardization *}
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theory Standardization
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imports "../Nominal"
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begin
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text {*
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The proof of the standardization theorem, as well as most of the theorems about
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lambda calculus in the following sections, are taken from @{text "HOL/Lambda"}.
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*}
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subsection {* Lambda terms *}
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atom_decl name
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nominal_datatype lam =
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  Var "name"
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| App "lam" "lam" (infixl "\<degree>" 200)
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| Lam "\<guillemotleft>name\<guillemotright>lam" ("Lam [_]._" [0, 10] 10)
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instantiation lam :: size
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begin
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nominal_primrec size_lam
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where
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  "size (Var n) = 0"
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| "size (t \<degree> u) = size t + size u + 1"
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| "size (Lam [x].t) = size t + 1"
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  apply finite_guess+
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  apply (rule TrueI)+
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  apply (simp add: fresh_nat)
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  apply fresh_guess+
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  done
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instance ..
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end
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nominal_primrec
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  subst :: "lam \<Rightarrow> name \<Rightarrow> lam \<Rightarrow> lam"  ("_[_::=_]" [300, 0, 0] 300)
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where
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  subst_Var: "(Var x)[y::=s] = (if x=y then s else (Var x))"
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| subst_App: "(t\<^sub>1 \<degree> t\<^sub>2)[y::=s] = t\<^sub>1[y::=s] \<degree> t\<^sub>2[y::=s]"
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| subst_Lam: "x \<sharp> (y, s) \<Longrightarrow> (Lam [x].t)[y::=s] = (Lam [x].(t[y::=s]))"
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  apply(finite_guess)+
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  apply(rule TrueI)+
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  apply(simp add: abs_fresh)
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  apply(fresh_guess)+
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  done
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lemma subst_eqvt [eqvt]:
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  "(pi::name prm) \<bullet> (t[x::=u]) = (pi \<bullet> t)[(pi \<bullet> x)::=(pi \<bullet> u)]"
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  by (nominal_induct t avoiding: x u rule: lam.strong_induct)
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    (perm_simp add: fresh_bij)+
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lemma subst_rename:
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  "y \<sharp> t \<Longrightarrow> ([(y, x)] \<bullet> t)[y::=u] = t[x::=u]"
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  by (nominal_induct t avoiding: x y u rule: lam.strong_induct)
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    (simp_all add: fresh_atm calc_atm abs_fresh)
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lemma fresh_subst: 
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  "(x::name) \<sharp> t \<Longrightarrow> x \<sharp> u \<Longrightarrow> x \<sharp> t[y::=u]"
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  by (nominal_induct t avoiding: x y u rule: lam.strong_induct)
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    (auto simp add: abs_fresh fresh_atm)
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lemma fresh_subst': 
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  "(x::name) \<sharp> u \<Longrightarrow> x \<sharp> t[x::=u]"
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  by (nominal_induct t avoiding: x u rule: lam.strong_induct)
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    (auto simp add: abs_fresh fresh_atm)
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lemma subst_forget: "(x::name) \<sharp> t \<Longrightarrow> t[x::=u] = t"
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  by (nominal_induct t avoiding: x u rule: lam.strong_induct)
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    (auto simp add: abs_fresh fresh_atm)
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lemma subst_subst:
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  "x \<noteq> y \<Longrightarrow> x \<sharp> v \<Longrightarrow> t[y::=v][x::=u[y::=v]] = t[x::=u][y::=v]"
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  by (nominal_induct t avoiding: x y u v rule: lam.strong_induct)
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    (auto simp add: fresh_subst subst_forget)
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declare subst_Var [simp del]
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lemma subst_eq [simp]: "(Var x)[x::=u] = u"
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  by (simp add: subst_Var)
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lemma subst_neq [simp]: "x \<noteq> y \<Longrightarrow> (Var x)[y::=u] = Var x"
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  by (simp add: subst_Var)
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inductive beta :: "lam \<Rightarrow> lam \<Rightarrow> bool"  (infixl "\<rightarrow>\<^sub>\<beta>" 50)
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  where
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    beta: "x \<sharp> t \<Longrightarrow> (Lam [x].s) \<degree> t \<rightarrow>\<^sub>\<beta> s[x::=t]"
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  | appL [simp, intro!]: "s \<rightarrow>\<^sub>\<beta> t \<Longrightarrow> s \<degree> u \<rightarrow>\<^sub>\<beta> t \<degree> u"
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  | appR [simp, intro!]: "s \<rightarrow>\<^sub>\<beta> t \<Longrightarrow> u \<degree> s \<rightarrow>\<^sub>\<beta> u \<degree> t"
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  | abs [simp, intro!]: "s \<rightarrow>\<^sub>\<beta> t \<Longrightarrow> (Lam [x].s) \<rightarrow>\<^sub>\<beta> (Lam [x].t)"
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equivariance beta
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nominal_inductive beta
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  by (simp_all add: abs_fresh fresh_subst')
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lemma better_beta [simp, intro!]: "(Lam [x].s) \<degree> t \<rightarrow>\<^sub>\<beta> s[x::=t]"
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proof -
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  obtain y::name where y: "y \<sharp> (x, s, t)"
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    by (rule exists_fresh) (rule fin_supp)
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  then have "y \<sharp> t" by simp
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  then have "(Lam [y]. [(y, x)] \<bullet> s) \<degree> t \<rightarrow>\<^sub>\<beta> ([(y, x)] \<bullet> s)[y::=t]"
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    by (rule beta)
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  moreover from y have "(Lam [x].s) = (Lam [y]. [(y, x)] \<bullet> s)"
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    by (auto simp add: lam.inject alpha' fresh_prod fresh_atm)
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  ultimately show ?thesis using y by (simp add: subst_rename)
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qed
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abbreviation
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  beta_reds :: "lam \<Rightarrow> lam \<Rightarrow> bool"  (infixl "\<rightarrow>\<^sub>\<beta>\<^sup>*" 50) where
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  "s \<rightarrow>\<^sub>\<beta>\<^sup>* t \<equiv> beta\<^sup>*\<^sup>* s t"
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subsection {* Application of a term to a list of terms *}
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abbreviation
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  list_application :: "lam \<Rightarrow> lam list \<Rightarrow> lam"  (infixl "\<degree>\<degree>" 150) where
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  "t \<degree>\<degree> ts \<equiv> foldl (op \<degree>) t ts"
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lemma apps_eq_tail_conv [iff]: "(r \<degree>\<degree> ts = s \<degree>\<degree> ts) = (r = s)"
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  by (induct ts rule: rev_induct) (auto simp add: lam.inject)
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lemma Var_eq_apps_conv [iff]: "(Var m = s \<degree>\<degree> ss) = (Var m = s \<and> ss = [])"
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  by (induct ss arbitrary: s) auto
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lemma Var_apps_eq_Var_apps_conv [iff]:
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    "(Var m \<degree>\<degree> rs = Var n \<degree>\<degree> ss) = (m = n \<and> rs = ss)"
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  apply (induct rs arbitrary: ss rule: rev_induct)
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   apply (simp add: lam.inject)
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   apply blast
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  apply (induct_tac ss rule: rev_induct)
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   apply (auto simp add: lam.inject)
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  done
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lemma App_eq_foldl_conv:
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  "(r \<degree> s = t \<degree>\<degree> ts) =
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    (if ts = [] then r \<degree> s = t
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    else (\<exists>ss. ts = ss @ [s] \<and> r = t \<degree>\<degree> ss))"
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  apply (rule_tac xs = ts in rev_exhaust)
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   apply (auto simp add: lam.inject)
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  done
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lemma Abs_eq_apps_conv [iff]:
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    "((Lam [x].r) = s \<degree>\<degree> ss) = ((Lam [x].r) = s \<and> ss = [])"
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  by (induct ss rule: rev_induct) auto
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lemma apps_eq_Abs_conv [iff]: "(s \<degree>\<degree> ss = (Lam [x].r)) = (s = (Lam [x].r) \<and> ss = [])"
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  by (induct ss rule: rev_induct) auto
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lemma Abs_App_neq_Var_apps [iff]:
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    "(Lam [x].s) \<degree> t \<noteq> Var n \<degree>\<degree> ss"
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  by (induct ss arbitrary: s t rule: rev_induct) (auto simp add: lam.inject)
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lemma Var_apps_neq_Abs_apps [iff]:
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    "Var n \<degree>\<degree> ts \<noteq> (Lam [x].r) \<degree>\<degree> ss"
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  apply (induct ss arbitrary: ts rule: rev_induct)
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   apply simp
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  apply (induct_tac ts rule: rev_induct)
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   apply (auto simp add: lam.inject)
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  done
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lemma ex_head_tail:
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  "\<exists>ts h. t = h \<degree>\<degree> ts \<and> ((\<exists>n. h = Var n) \<or> (\<exists>x u. h = (Lam [x].u)))"
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  apply (induct t rule: lam.induct)
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    apply (metis foldl_Nil)
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   apply (metis foldl_Cons foldl_Nil foldl_append)
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  apply (metis foldl_Nil)
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  done
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lemma size_apps [simp]:
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  "size (r \<degree>\<degree> rs) = size r + foldl (op +) 0 (map size rs) + length rs"
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  by (induct rs rule: rev_induct) auto
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lemma lem0: "(0::nat) < k \<Longrightarrow> m \<le> n \<Longrightarrow> m < n + k"
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  by simp
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   183
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lemma subst_map [simp]:
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    "(t \<degree>\<degree> ts)[x::=u] = t[x::=u] \<degree>\<degree> map (\<lambda>t. t[x::=u]) ts"
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  by (induct ts arbitrary: t) simp_all
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   187
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lemma app_last: "(t \<degree>\<degree> ts) \<degree> u = t \<degree>\<degree> (ts @ [u])"
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   189
  by simp
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   190
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lemma perm_apps [eqvt]:
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  "(pi::name prm) \<bullet> (t \<degree>\<degree> ts) = ((pi \<bullet> t) \<degree>\<degree> (pi \<bullet> ts))"
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   193
  by (induct ts rule: rev_induct) (auto simp add: append_eqvt)
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   194
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lemma fresh_apps [simp]: "(x::name) \<sharp> (t \<degree>\<degree> ts) = (x \<sharp> t \<and> x \<sharp> ts)"
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  by (induct ts rule: rev_induct)
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    (auto simp add: fresh_list_append fresh_list_nil fresh_list_cons)
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text {* A customized induction schema for @{text "\<degree>\<degree>"}. *}
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lemma lem:
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  assumes "\<And>n ts (z::'a::fs_name). (\<And>z. \<forall>t \<in> set ts. P z t) \<Longrightarrow> P z (Var n \<degree>\<degree> ts)"
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    and "\<And>x u ts z. x \<sharp> z \<Longrightarrow> (\<And>z. P z u) \<Longrightarrow> (\<And>z. \<forall>t \<in> set ts. P z t) \<Longrightarrow> P z ((Lam [x].u) \<degree>\<degree> ts)"
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  shows "size t = n \<Longrightarrow> P z t"
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  apply (induct n arbitrary: t z rule: nat_less_induct)
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   206
  apply (cut_tac t = t in ex_head_tail)
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  apply clarify
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  apply (erule disjE)
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   209
   apply clarify
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   apply (rule assms)
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   211
   apply clarify
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   212
   apply (erule allE, erule impE)
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    prefer 2
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    apply (erule allE, erule impE, rule refl, erule spec)
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    apply simp
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    apply (simp only: foldl_conv_fold add.commute fold_plus_listsum_rev)
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    apply (fastforce simp add: listsum_map_remove1)
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  apply clarify
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  apply (subgoal_tac "\<exists>y::name. y \<sharp> (x, u, z)")
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   prefer 2
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   apply (blast intro: exists_fresh' fin_supp) 
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  apply (erule exE)
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  apply (subgoal_tac "(Lam [x].u) = (Lam [y].([(y, x)] \<bullet> u))")
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  prefer 2
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  apply (auto simp add: lam.inject alpha' fresh_prod fresh_atm)[]
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   226
  apply (simp (no_asm_simp))
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  apply (rule assms)
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   228
  apply (simp add: fresh_prod)
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   229
   apply (erule allE, erule impE)
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    prefer 2
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    apply (erule allE, erule impE, rule refl, erule spec)
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   232
   apply simp
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   233
  apply clarify
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   234
  apply (erule allE, erule impE)
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   prefer 2
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   apply blast
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  apply simp
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  apply (simp only: foldl_conv_fold add.commute fold_plus_listsum_rev)
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  apply (fastforce simp add: listsum_map_remove1)
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  done
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theorem Apps_lam_induct:
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  assumes "\<And>n ts (z::'a::fs_name). (\<And>z. \<forall>t \<in> set ts. P z t) \<Longrightarrow> P z (Var n \<degree>\<degree> ts)"
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    and "\<And>x u ts z. x \<sharp> z \<Longrightarrow> (\<And>z. P z u) \<Longrightarrow> (\<And>z. \<forall>t \<in> set ts. P z t) \<Longrightarrow> P z ((Lam [x].u) \<degree>\<degree> ts)"
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  shows "P z t"
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   246
  apply (rule_tac t = t and z = z in lem)
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   247
    prefer 3
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   248
    apply (rule refl)
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   249
    using assms apply blast+
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   250
  done
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   251
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subsection {* Congruence rules *}
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lemma apps_preserves_beta [simp]:
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   256
    "r \<rightarrow>\<^sub>\<beta> s \<Longrightarrow> r \<degree>\<degree> ss \<rightarrow>\<^sub>\<beta> s \<degree>\<degree> ss"
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   257
  by (induct ss rule: rev_induct) auto
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   258
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lemma rtrancl_beta_Abs [intro!]:
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    "s \<rightarrow>\<^sub>\<beta>\<^sup>* s' \<Longrightarrow> (Lam [x].s) \<rightarrow>\<^sub>\<beta>\<^sup>* (Lam [x].s')"
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   261
  by (induct set: rtranclp) (blast intro: rtranclp.rtrancl_into_rtrancl)+
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   262
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   263
lemma rtrancl_beta_AppL:
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   264
    "s \<rightarrow>\<^sub>\<beta>\<^sup>* s' \<Longrightarrow> s \<degree> t \<rightarrow>\<^sub>\<beta>\<^sup>* s' \<degree> t"
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  by (induct set: rtranclp) (blast intro: rtranclp.rtrancl_into_rtrancl)+
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   266
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lemma rtrancl_beta_AppR:
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   268
    "t \<rightarrow>\<^sub>\<beta>\<^sup>* t' \<Longrightarrow> s \<degree> t \<rightarrow>\<^sub>\<beta>\<^sup>* s \<degree> t'"
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   269
  by (induct set: rtranclp) (blast intro: rtranclp.rtrancl_into_rtrancl)+
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   270
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   271
lemma rtrancl_beta_App [intro]:
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    "s \<rightarrow>\<^sub>\<beta>\<^sup>* s' \<Longrightarrow> t \<rightarrow>\<^sub>\<beta>\<^sup>* t' \<Longrightarrow> s \<degree> t \<rightarrow>\<^sub>\<beta>\<^sup>* s' \<degree> t'"
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   273
  by (blast intro!: rtrancl_beta_AppL rtrancl_beta_AppR intro: rtranclp_trans)
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   274
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   275
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   276
subsection {* Lifting an order to lists of elements *}
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   277
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definition
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   279
  step1 :: "('a \<Rightarrow> 'a \<Rightarrow> bool) \<Rightarrow> 'a list \<Rightarrow> 'a list \<Rightarrow> bool" where
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   280
  "step1 r =
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   281
    (\<lambda>ys xs. \<exists>us z z' vs. xs = us @ z # vs \<and> r z' z \<and> ys =
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   282
      us @ z' # vs)"
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   283
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   284
lemma not_Nil_step1 [iff]: "\<not> step1 r [] xs"
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   285
  apply (unfold step1_def)
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   286
  apply blast
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berghofe
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   287
  done
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   288
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   289
lemma not_step1_Nil [iff]: "\<not> step1 r xs []"
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berghofe
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   290
  apply (unfold step1_def)
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berghofe
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   291
  apply blast
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berghofe
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   292
  done
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   293
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   294
lemma Cons_step1_Cons [iff]:
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   295
    "(step1 r (y # ys) (x # xs)) =
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berghofe
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   296
      (r y x \<and> xs = ys \<or> x = y \<and> step1 r ys xs)"
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berghofe
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   297
  apply (unfold step1_def)
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berghofe
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   298
  apply (rule iffI)
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berghofe
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diff changeset
   299
   apply (erule exE)
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berghofe
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   300
   apply (rename_tac ts)
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berghofe
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   301
   apply (case_tac ts)
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22f665a2e91c new fastforce replacing fastsimp - less confusing name
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   302
    apply fastforce
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berghofe
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   303
   apply force
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berghofe
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diff changeset
   304
  apply (erule disjE)
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berghofe
parents:
diff changeset
   305
   apply blast
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berghofe
parents:
diff changeset
   306
  apply (blast intro: Cons_eq_appendI)
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berghofe
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   307
  done
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berghofe
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   308
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berghofe
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   309
lemma append_step1I:
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   310
  "step1 r ys xs \<and> vs = us \<or> ys = xs \<and> step1 r vs us
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berghofe
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   311
    \<Longrightarrow> step1 r (ys @ vs) (xs @ us)"
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berghofe
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   312
  apply (unfold step1_def)
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berghofe
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   313
  apply auto
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berghofe
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   314
   apply blast
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berghofe
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   315
  apply (blast intro: append_eq_appendI)
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berghofe
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   316
  done
8e9c19529a4e Added Standardization theory.
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   317
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berghofe
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   318
lemma Cons_step1E [elim!]:
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berghofe
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   319
  assumes "step1 r ys (x # xs)"
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berghofe
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   320
    and "\<And>y. ys = y # xs \<Longrightarrow> r y x \<Longrightarrow> R"
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berghofe
parents:
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   321
    and "\<And>zs. ys = x # zs \<Longrightarrow> step1 r zs xs \<Longrightarrow> R"
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   322
  shows R
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   323
  using assms
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   324
  apply (cases ys)
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   325
   apply (simp add: step1_def)
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   326
  apply blast
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   327
  done
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   328
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   329
lemma Snoc_step1_SnocD:
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   330
  "step1 r (ys @ [y]) (xs @ [x])
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   331
    \<Longrightarrow> (step1 r ys xs \<and> y = x \<or> ys = xs \<and> r y x)"
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   332
  apply (unfold step1_def)
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   333
  apply (clarify del: disjCI)
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   334
  apply (rename_tac vs)
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   335
  apply (rule_tac xs = vs in rev_exhaust)
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   336
   apply force
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   337
  apply simp
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   338
  apply blast
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   339
  done
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   340
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   341
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   342
subsection {* Lifting beta-reduction to lists *}
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   343
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   344
abbreviation
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   345
  list_beta :: "lam list \<Rightarrow> lam list \<Rightarrow> bool"  (infixl "[\<rightarrow>\<^sub>\<beta>]\<^sub>1" 50) where
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   346
  "rs [\<rightarrow>\<^sub>\<beta>]\<^sub>1 ss \<equiv> step1 beta rs ss"
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   347
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   348
lemma head_Var_reduction:
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   349
  "Var n \<degree>\<degree> rs \<rightarrow>\<^sub>\<beta> v \<Longrightarrow> \<exists>ss. rs [\<rightarrow>\<^sub>\<beta>]\<^sub>1 ss \<and> v = Var n \<degree>\<degree> ss"
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   350
  apply (induct u \<equiv> "Var n \<degree>\<degree> rs" v arbitrary: rs set: beta)
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   351
     apply simp
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   352
    apply (rule_tac xs = rs in rev_exhaust)
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   353
     apply simp
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   354
    apply (atomize, force intro: append_step1I iff: lam.inject)
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   355
   apply (rule_tac xs = rs in rev_exhaust)
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   356
    apply simp
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   357
    apply (auto 0 3 intro: disjI2 [THEN append_step1I] simp add: lam.inject)
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   358
  done
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   359
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   360
lemma apps_betasE [case_names appL appR beta, consumes 1]:
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   361
  assumes major: "r \<degree>\<degree> rs \<rightarrow>\<^sub>\<beta> s"
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   362
    and cases: "\<And>r'. r \<rightarrow>\<^sub>\<beta> r' \<Longrightarrow> s = r' \<degree>\<degree> rs \<Longrightarrow> R"
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   363
      "\<And>rs'. rs [\<rightarrow>\<^sub>\<beta>]\<^sub>1 rs' \<Longrightarrow> s = r \<degree>\<degree> rs' \<Longrightarrow> R"
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   364
      "\<And>t u us. (x \<sharp> r \<Longrightarrow> r = (Lam [x].t) \<and> rs = u # us \<and> s = t[x::=u] \<degree>\<degree> us) \<Longrightarrow> R"
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   365
  shows R
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   366
proof -
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   367
  from major have
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   368
   "(\<exists>r'. r \<rightarrow>\<^sub>\<beta> r' \<and> s = r' \<degree>\<degree> rs) \<or>
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   369
    (\<exists>rs'. rs [\<rightarrow>\<^sub>\<beta>]\<^sub>1 rs' \<and> s = r \<degree>\<degree> rs') \<or>
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   370
    (\<exists>t u us. x \<sharp> r \<longrightarrow> r = (Lam [x].t) \<and> rs = u # us \<and> s = t[x::=u] \<degree>\<degree> us)"
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   371
    apply (nominal_induct u \<equiv> "r \<degree>\<degree> rs" s avoiding: x r rs rule: beta.strong_induct)
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   372
    apply (simp add: App_eq_foldl_conv)
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   373
    apply (split split_if_asm)
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   374
    apply simp
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   375
    apply blast
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   376
    apply simp
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   377
    apply (rule impI)+
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   378
    apply (rule disjI2)
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   379
    apply (rule disjI2)
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   380
    apply (subgoal_tac "r = [(xa, x)] \<bullet> (Lam [x].s)")
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   381
    prefer 2
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   382
    apply (simp add: perm_fresh_fresh)
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   383
    apply (drule conjunct1)
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   384
    apply (subgoal_tac "r = (Lam [xa]. [(xa, x)] \<bullet> s)")
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   385
    prefer 2
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   386
    apply (simp add: calc_atm)
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   387
    apply (thin_tac "r = ?t")
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   388
    apply simp
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   389
    apply (rule exI)
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   390
    apply (rule conjI)
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   391
    apply (rule refl)
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   392
    apply (simp add: abs_fresh fresh_atm fresh_left calc_atm subst_rename)
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   393
      apply (drule App_eq_foldl_conv [THEN iffD1])
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   394
      apply (split split_if_asm)
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   395
       apply simp
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   396
       apply blast
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   397
      apply (force intro!: disjI1 [THEN append_step1I] simp add: fresh_list_append)
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   398
     apply (drule App_eq_foldl_conv [THEN iffD1])
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   399
     apply (split split_if_asm)
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   400
      apply simp
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   401
      apply blast
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   402
     apply (clarify, auto 0 3 intro!: exI intro: append_step1I)
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   403
    done
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   404
  with cases show ?thesis by blast
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   405
qed
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   406
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   407
lemma apps_preserves_betas [simp]:
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   408
    "rs [\<rightarrow>\<^sub>\<beta>]\<^sub>1 ss \<Longrightarrow> r \<degree>\<degree> rs \<rightarrow>\<^sub>\<beta> r \<degree>\<degree> ss"
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   409
  apply (induct rs arbitrary: ss rule: rev_induct)
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   410
   apply simp
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   411
  apply simp
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   412
  apply (rule_tac xs = ss in rev_exhaust)
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   413
   apply simp
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   414
  apply simp
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   415
  apply (drule Snoc_step1_SnocD)
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   416
  apply blast
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   417
  done
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   418
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   419
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   420
subsection {* Standard reduction relation *}
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   421
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   422
text {*
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   423
Based on lecture notes by Ralph Matthes,
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   424
original proof idea due to Ralph Loader.
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   425
*}
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   426
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   427
declare listrel_mono [mono_set]
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   428
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   429
lemma listrelp_eqvt [eqvt]:
46317
80dccedd6c14 generalize type of List.listrel
huffman
parents: 46129
diff changeset
   430
  fixes f :: "'a::pt_name \<Rightarrow> 'b::pt_name \<Rightarrow> bool"
27623
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   431
  assumes xy: "listrelp f (x::'a::pt_name list) y"
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   432
  shows "listrelp ((pi::name prm) \<bullet> f) (pi \<bullet> x) (pi \<bullet> y)" using xy
45966
03ce2b2a29a2 tuned proofs
haftmann
parents: 44890
diff changeset
   433
  by induct (simp_all add: listrelp.intros perm_app [symmetric])
27623
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   434
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   435
inductive
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   436
  sred :: "lam \<Rightarrow> lam \<Rightarrow> bool"  (infixl "\<rightarrow>\<^sub>s" 50)
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   437
  and sredlist :: "lam list \<Rightarrow> lam list \<Rightarrow> bool"  (infixl "[\<rightarrow>\<^sub>s]" 50)
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   438
where
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   439
  "s [\<rightarrow>\<^sub>s] t \<equiv> listrelp op \<rightarrow>\<^sub>s s t"
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   440
| Var: "rs [\<rightarrow>\<^sub>s] rs' \<Longrightarrow> Var x \<degree>\<degree> rs \<rightarrow>\<^sub>s Var x \<degree>\<degree> rs'"
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   441
| Abs: "x \<sharp> (ss, ss') \<Longrightarrow> r \<rightarrow>\<^sub>s r' \<Longrightarrow> ss [\<rightarrow>\<^sub>s] ss' \<Longrightarrow> (Lam [x].r) \<degree>\<degree> ss \<rightarrow>\<^sub>s (Lam [x].r') \<degree>\<degree> ss'"
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   442
| Beta: "x \<sharp> (s, ss, t) \<Longrightarrow> r[x::=s] \<degree>\<degree> ss \<rightarrow>\<^sub>s t \<Longrightarrow> (Lam [x].r) \<degree> s \<degree>\<degree> ss \<rightarrow>\<^sub>s t"
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   443
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   444
equivariance sred
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   445
nominal_inductive sred
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   446
  by (simp add: abs_fresh)+
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   447
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   448
lemma better_sred_Abs:
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   449
  assumes H1: "r \<rightarrow>\<^sub>s r'"
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   450
  and H2: "ss [\<rightarrow>\<^sub>s] ss'"
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   451
  shows "(Lam [x].r) \<degree>\<degree> ss \<rightarrow>\<^sub>s (Lam [x].r') \<degree>\<degree> ss'"
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   452
proof -
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   453
  obtain y::name where y: "y \<sharp> (x, r, r', ss, ss')"
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   454
    by (rule exists_fresh) (rule fin_supp)
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   455
  then have "y \<sharp> (ss, ss')" by simp
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   456
  moreover from H1 have "[(y, x)] \<bullet> (r \<rightarrow>\<^sub>s r')" by (rule perm_boolI)
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   457
  then have "([(y, x)] \<bullet> r) \<rightarrow>\<^sub>s ([(y, x)] \<bullet> r')" by (simp add: eqvts)
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   458
  ultimately have "(Lam [y]. [(y, x)] \<bullet> r) \<degree>\<degree> ss \<rightarrow>\<^sub>s (Lam [y]. [(y, x)] \<bullet> r') \<degree>\<degree> ss'" using H2
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   459
    by (rule sred.Abs)
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   460
  moreover from y have "(Lam [x].r) = (Lam [y]. [(y, x)] \<bullet> r)"
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   461
    by (auto simp add: lam.inject alpha' fresh_prod fresh_atm)
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   462
  moreover from y have "(Lam [x].r') = (Lam [y]. [(y, x)] \<bullet> r')"
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   463
    by (auto simp add: lam.inject alpha' fresh_prod fresh_atm)
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   464
  ultimately show ?thesis by simp
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   465
qed
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   466
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   467
lemma better_sred_Beta:
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   468
  assumes H: "r[x::=s] \<degree>\<degree> ss \<rightarrow>\<^sub>s t"
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   469
  shows "(Lam [x].r) \<degree> s \<degree>\<degree> ss \<rightarrow>\<^sub>s t"
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   470
proof -
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   471
  obtain y::name where y: "y \<sharp> (x, r, s, ss, t)"
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   472
    by (rule exists_fresh) (rule fin_supp)
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   473
  then have "y \<sharp> (s, ss, t)" by simp
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   474
  moreover from y H have "([(y, x)] \<bullet> r)[y::=s] \<degree>\<degree> ss \<rightarrow>\<^sub>s t"
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   475
    by (simp add: subst_rename)
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   476
  ultimately have "(Lam [y].[(y, x)] \<bullet> r) \<degree> s \<degree>\<degree> ss \<rightarrow>\<^sub>s t"
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   477
    by (rule sred.Beta)
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   478
  moreover from y have "(Lam [x].r) = (Lam [y]. [(y, x)] \<bullet> r)"
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   479
    by (auto simp add: lam.inject alpha' fresh_prod fresh_atm)
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   480
  ultimately show ?thesis by simp
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   481
qed
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   482
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   483
lemmas better_sred_intros = sred.Var better_sred_Abs better_sred_Beta
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   484
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   485
lemma refl_listrelp: "\<forall>x\<in>set xs. R x x \<Longrightarrow> listrelp R xs xs"
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   486
  by (induct xs) (auto intro: listrelp.intros)
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   487
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   488
lemma refl_sred: "t \<rightarrow>\<^sub>s t"
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   489
  by (nominal_induct t rule: Apps_lam_induct) (auto intro: refl_listrelp better_sred_intros)
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   490
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   491
lemma listrelp_conj1: "listrelp (\<lambda>x y. R x y \<and> S x y) x y \<Longrightarrow> listrelp R x y"
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   492
  by (erule listrelp.induct) (auto intro: listrelp.intros)
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   493
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   494
lemma listrelp_conj2: "listrelp (\<lambda>x y. R x y \<and> S x y) x y \<Longrightarrow> listrelp S x y"
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   495
  by (erule listrelp.induct) (auto intro: listrelp.intros)
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   496
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   497
lemma listrelp_app:
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   498
  assumes xsys: "listrelp R xs ys"
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   499
  shows "listrelp R xs' ys' \<Longrightarrow> listrelp R (xs @ xs') (ys @ ys')" using xsys
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   500
  by (induct arbitrary: xs' ys') (auto intro: listrelp.intros)
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   501
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   502
lemma lemma1:
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   503
  assumes r: "r \<rightarrow>\<^sub>s r'" and s: "s \<rightarrow>\<^sub>s s'"
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   504
  shows "r \<degree> s \<rightarrow>\<^sub>s r' \<degree> s'" using r
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   505
proof induct
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   506
  case (Var rs rs' x)
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   507
  then have "rs [\<rightarrow>\<^sub>s] rs'" by (rule listrelp_conj1)
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   508
  moreover have "[s] [\<rightarrow>\<^sub>s] [s']" by (iprover intro: s listrelp.intros)
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   509
  ultimately have "rs @ [s] [\<rightarrow>\<^sub>s] rs' @ [s']" by (rule listrelp_app)
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   510
  hence "Var x \<degree>\<degree> (rs @ [s]) \<rightarrow>\<^sub>s Var x \<degree>\<degree> (rs' @ [s'])" by (rule sred.Var)
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   511
  thus ?case by (simp only: app_last)
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   512
next
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   513
  case (Abs x ss ss' r r')
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   514
  from Abs(4) have "ss [\<rightarrow>\<^sub>s] ss'" by (rule listrelp_conj1)
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   515
  moreover have "[s] [\<rightarrow>\<^sub>s] [s']" by (iprover intro: s listrelp.intros)
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   516
  ultimately have "ss @ [s] [\<rightarrow>\<^sub>s] ss' @ [s']" by (rule listrelp_app)
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   517
  with `r \<rightarrow>\<^sub>s r'` have "(Lam [x].r) \<degree>\<degree> (ss @ [s]) \<rightarrow>\<^sub>s (Lam [x].r') \<degree>\<degree> (ss' @ [s'])"
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   518
    by (rule better_sred_Abs)
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   519
  thus ?case by (simp only: app_last)
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   520
next
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   521
  case (Beta x u ss t r)
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   522
  hence "r[x::=u] \<degree>\<degree> (ss @ [s]) \<rightarrow>\<^sub>s t \<degree> s'" by (simp only: app_last)
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   523
  hence "(Lam [x].r) \<degree> u \<degree>\<degree> (ss @ [s]) \<rightarrow>\<^sub>s t \<degree> s'" by (rule better_sred_Beta)
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   524
  thus ?case by (simp only: app_last)
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   525
qed
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   526
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   527
lemma lemma1':
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   528
  assumes ts: "ts [\<rightarrow>\<^sub>s] ts'"
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   529
  shows "r \<rightarrow>\<^sub>s r' \<Longrightarrow> r \<degree>\<degree> ts \<rightarrow>\<^sub>s r' \<degree>\<degree> ts'" using ts
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   530
  by (induct arbitrary: r r') (auto intro: lemma1)
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   531
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   532
lemma listrelp_betas:
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   533
  assumes ts: "listrelp op \<rightarrow>\<^sub>\<beta>\<^sup>* ts ts'"
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   534
  shows "\<And>t t'. t \<rightarrow>\<^sub>\<beta>\<^sup>* t' \<Longrightarrow> t \<degree>\<degree> ts \<rightarrow>\<^sub>\<beta>\<^sup>* t' \<degree>\<degree> ts'" using ts
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   535
  by induct auto
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   536
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   537
lemma lemma2:
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   538
  assumes t: "t \<rightarrow>\<^sub>s u"
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   539
  shows "t \<rightarrow>\<^sub>\<beta>\<^sup>* u" using t
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   540
  by induct (auto dest: listrelp_conj2
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   541
    intro: listrelp_betas apps_preserves_beta converse_rtranclp_into_rtranclp)
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   542
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   543
lemma lemma3:
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   544
  assumes r: "r \<rightarrow>\<^sub>s r'"
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   545
  shows "s \<rightarrow>\<^sub>s s' \<Longrightarrow> r[x::=s] \<rightarrow>\<^sub>s r'[x::=s']" using r
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   546
proof (nominal_induct avoiding: x s s' rule: sred.strong_induct)
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   547
  case (Var rs rs' y)
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   548
  hence "map (\<lambda>t. t[x::=s]) rs [\<rightarrow>\<^sub>s] map (\<lambda>t. t[x::=s']) rs'"
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   549
    by induct (auto intro: listrelp.intros Var)
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   550
  moreover have "Var y[x::=s] \<rightarrow>\<^sub>s Var y[x::=s']"
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   551
    by (cases "y = x") (auto simp add: Var intro: refl_sred)
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   552
  ultimately show ?case by simp (rule lemma1')
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   553
next
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   554
  case (Abs y ss ss' r r')
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   555
  then have "r[x::=s] \<rightarrow>\<^sub>s r'[x::=s']" by fast
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   556
  moreover from Abs(8) `s \<rightarrow>\<^sub>s s'` have "map (\<lambda>t. t[x::=s]) ss [\<rightarrow>\<^sub>s] map (\<lambda>t. t[x::=s']) ss'"
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   557
    by induct (auto intro: listrelp.intros Abs)
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   558
  ultimately show ?case using Abs(6) `y \<sharp> x` `y \<sharp> s` `y \<sharp> s'`
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   559
    by simp (rule better_sred_Abs)
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   560
next
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   561
  case (Beta y u ss t r)
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   562
  thus ?case by (auto simp add: subst_subst fresh_atm intro: better_sred_Beta)
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   563
qed
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   564
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   565
lemma lemma4_aux:
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   566
  assumes rs: "listrelp (\<lambda>t u. t \<rightarrow>\<^sub>s u \<and> (\<forall>r. u \<rightarrow>\<^sub>\<beta> r \<longrightarrow> t \<rightarrow>\<^sub>s r)) rs rs'"
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   567
  shows "rs' [\<rightarrow>\<^sub>\<beta>]\<^sub>1 ss \<Longrightarrow> rs [\<rightarrow>\<^sub>s] ss" using rs
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   568
proof (induct arbitrary: ss)
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   569
  case Nil
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   570
  thus ?case by cases (auto intro: listrelp.Nil)
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   571
next
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   572
  case (Cons x y xs ys)
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   573
  note Cons' = Cons
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   574
  show ?case
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   575
  proof (cases ss)
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   576
    case Nil with Cons show ?thesis by simp
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   577
  next
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   578
    case (Cons y' ys')
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   579
    hence ss: "ss = y' # ys'" by simp
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   580
    from Cons Cons' have "y \<rightarrow>\<^sub>\<beta> y' \<and> ys' = ys \<or> y' = y \<and> ys [\<rightarrow>\<^sub>\<beta>]\<^sub>1 ys'" by simp
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   581
    hence "x # xs [\<rightarrow>\<^sub>s] y' # ys'"
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   582
    proof
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   583
      assume H: "y \<rightarrow>\<^sub>\<beta> y' \<and> ys' = ys"
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   584
      with Cons' have "x \<rightarrow>\<^sub>s y'" by blast
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   585
      moreover from Cons' have "xs [\<rightarrow>\<^sub>s] ys" by (iprover dest: listrelp_conj1)
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   586
      ultimately have "x # xs [\<rightarrow>\<^sub>s] y' # ys" by (rule listrelp.Cons)
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   587
      with H show ?thesis by simp
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   588
    next
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   589
      assume H: "y' = y \<and> ys [\<rightarrow>\<^sub>\<beta>]\<^sub>1 ys'"
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   590
      with Cons' have "x \<rightarrow>\<^sub>s y'" by blast
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   591
      moreover from H have "xs [\<rightarrow>\<^sub>s] ys'" by (blast intro: Cons')
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   592
      ultimately show ?thesis by (rule listrelp.Cons)
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   593
    qed
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   594
    with ss show ?thesis by simp
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   595
  qed
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   596
qed
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   597
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   598
lemma lemma4:
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   599
  assumes r: "r \<rightarrow>\<^sub>s r'"
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   600
  shows "r' \<rightarrow>\<^sub>\<beta> r'' \<Longrightarrow> r \<rightarrow>\<^sub>s r''" using r
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   601
proof (nominal_induct avoiding: r'' rule: sred.strong_induct)
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   602
  case (Var rs rs' x)
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   603
  then obtain ss where rs: "rs' [\<rightarrow>\<^sub>\<beta>]\<^sub>1 ss" and r'': "r'' = Var x \<degree>\<degree> ss"
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   604
    by (blast dest: head_Var_reduction)
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   605
  from Var(1) [simplified] rs have "rs [\<rightarrow>\<^sub>s] ss" by (rule lemma4_aux)
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   606
  hence "Var x \<degree>\<degree> rs \<rightarrow>\<^sub>s Var x \<degree>\<degree> ss" by (rule sred.Var)
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   607
  with r'' show ?case by simp
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   608
next
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   609
  case (Abs x ss ss' r r')
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   610
  from `(Lam [x].r') \<degree>\<degree> ss' \<rightarrow>\<^sub>\<beta> r''` show ?case
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   611
  proof (cases rule: apps_betasE [where x=x])
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   612
    case (appL s)
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   613
    then obtain r''' where s: "s = (Lam [x].r''')" and r''': "r' \<rightarrow>\<^sub>\<beta> r'''" using `x \<sharp> r''`
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   614
      by (cases rule: beta.strong_cases) (auto simp add: abs_fresh lam.inject alpha)
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   615
    from r''' have "r \<rightarrow>\<^sub>s r'''" by (blast intro: Abs)
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   616
    moreover from Abs have "ss [\<rightarrow>\<^sub>s] ss'" by (iprover dest: listrelp_conj1)
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   617
    ultimately have "(Lam [x].r) \<degree>\<degree> ss \<rightarrow>\<^sub>s (Lam [x].r''') \<degree>\<degree> ss'" by (rule better_sred_Abs)
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   618
    with appL s show "(Lam [x].r) \<degree>\<degree> ss \<rightarrow>\<^sub>s r''" by simp
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   619
  next
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   620
    case (appR rs')
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   621
    from Abs(6) [simplified] `ss' [\<rightarrow>\<^sub>\<beta>]\<^sub>1 rs'`
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   622
    have "ss [\<rightarrow>\<^sub>s] rs'" by (rule lemma4_aux)
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   623
    with `r \<rightarrow>\<^sub>s r'` have "(Lam [x].r) \<degree>\<degree> ss \<rightarrow>\<^sub>s (Lam [x].r') \<degree>\<degree> rs'" by (rule better_sred_Abs)
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   624
    with appR show "(Lam [x].r) \<degree>\<degree> ss \<rightarrow>\<^sub>s r''" by simp
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   625
  next
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   626
    case (beta t u' us')
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   627
    then have Lam_eq: "(Lam [x].r') = (Lam [x].t)" and ss': "ss' = u' # us'"
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   628
      and r'': "r'' = t[x::=u'] \<degree>\<degree> us'"
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   629
      by (simp_all add: abs_fresh)
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   630
    from Abs(6) ss' obtain u us where
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   631
      ss: "ss = u # us" and u: "u \<rightarrow>\<^sub>s u'" and us: "us [\<rightarrow>\<^sub>s] us'"
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   632
      by cases (auto dest!: listrelp_conj1)
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   633
    have "r[x::=u] \<rightarrow>\<^sub>s r'[x::=u']" using `r \<rightarrow>\<^sub>s r'` and u by (rule lemma3)
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   634
    with us have "r[x::=u] \<degree>\<degree> us \<rightarrow>\<^sub>s r'[x::=u'] \<degree>\<degree> us'" by (rule lemma1')
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   635
    hence "(Lam [x].r) \<degree> u \<degree>\<degree> us \<rightarrow>\<^sub>s r'[x::=u'] \<degree>\<degree> us'" by (rule better_sred_Beta)
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   636
    with ss r'' Lam_eq show "(Lam [x].r) \<degree>\<degree> ss \<rightarrow>\<^sub>s r''" by (simp add: lam.inject alpha)
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   637
  qed
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   638
next
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   639
  case (Beta x s ss t r)
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   640
  show ?case
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   641
    by (rule better_sred_Beta) (rule Beta)+
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   642
qed
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   643
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   644
lemma rtrancl_beta_sred:
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   645
  assumes r: "r \<rightarrow>\<^sub>\<beta>\<^sup>* r'"
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   646
  shows "r \<rightarrow>\<^sub>s r'" using r
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   647
  by induct (iprover intro: refl_sred lemma4)+
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   648
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   649
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   650
subsection {* Terms in normal form *}
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   651
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   652
lemma listsp_eqvt [eqvt]:
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   653
  assumes xs: "listsp p (xs::'a::pt_name list)"
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   654
  shows "listsp ((pi::name prm) \<bullet> p) (pi \<bullet> xs)" using xs
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   655
  apply induct
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   656
  apply simp
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   657
  apply simp
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   658
  apply (rule listsp.intros)
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   659
  apply (drule_tac pi=pi in perm_boolI)
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   660
  apply perm_simp
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   661
  apply assumption
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   662
  done
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   663
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   664
inductive NF :: "lam \<Rightarrow> bool"
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   665
where
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   666
  App: "listsp NF ts \<Longrightarrow> NF (Var x \<degree>\<degree> ts)"
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   667
| Abs: "NF t \<Longrightarrow> NF (Lam [x].t)"
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   668
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   669
equivariance NF
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   670
nominal_inductive NF
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   671
  by (simp add: abs_fresh)
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   672
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   673
lemma Abs_NF:
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   674
  assumes NF: "NF ((Lam [x].t) \<degree>\<degree> ts)"
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   675
  shows "ts = []" using NF
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   676
proof cases
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   677
  case (App us i)
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   678
  thus ?thesis by (simp add: Var_apps_neq_Abs_apps [THEN not_sym])
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   679
next
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   680
  case (Abs u)
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   681
  thus ?thesis by simp
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   682
qed
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   683
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   684
text {*
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   685
@{term NF} characterizes exactly the terms that are in normal form.
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   686
*}
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   687
  
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   688
lemma NF_eq: "NF t = (\<forall>t'. \<not> t \<rightarrow>\<^sub>\<beta> t')"
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   689
proof
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   690
  assume H: "NF t"
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   691
  show "\<forall>t'. \<not> t \<rightarrow>\<^sub>\<beta> t'"
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   692
  proof
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   693
    fix t'
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   694
    from H show "\<not> t \<rightarrow>\<^sub>\<beta> t'"
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   695
    proof (nominal_induct avoiding: t' rule: NF.strong_induct)
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   696
      case (App ts t)
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   697
      show ?case
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   698
      proof
32960
69916a850301 eliminated hard tabulators, guessing at each author's individual tab-width;
wenzelm
parents: 29097
diff changeset
   699
        assume "Var t \<degree>\<degree> ts \<rightarrow>\<^sub>\<beta> t'"
69916a850301 eliminated hard tabulators, guessing at each author's individual tab-width;
wenzelm
parents: 29097
diff changeset
   700
        then obtain rs where "ts [\<rightarrow>\<^sub>\<beta>]\<^sub>1 rs"
69916a850301 eliminated hard tabulators, guessing at each author's individual tab-width;
wenzelm
parents: 29097
diff changeset
   701
          by (iprover dest: head_Var_reduction)
69916a850301 eliminated hard tabulators, guessing at each author's individual tab-width;
wenzelm
parents: 29097
diff changeset
   702
        with App show False
69916a850301 eliminated hard tabulators, guessing at each author's individual tab-width;
wenzelm
parents: 29097
diff changeset
   703
          by (induct rs arbitrary: ts) (auto del: in_listspD)
27623
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   704
      qed
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   705
    next
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   706
      case (Abs t x)
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   707
      show ?case
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   708
      proof
32960
69916a850301 eliminated hard tabulators, guessing at each author's individual tab-width;
wenzelm
parents: 29097
diff changeset
   709
        assume "(Lam [x].t) \<rightarrow>\<^sub>\<beta> t'"
69916a850301 eliminated hard tabulators, guessing at each author's individual tab-width;
wenzelm
parents: 29097
diff changeset
   710
        then show False using Abs
69916a850301 eliminated hard tabulators, guessing at each author's individual tab-width;
wenzelm
parents: 29097
diff changeset
   711
          by (cases rule: beta.strong_cases) (auto simp add: abs_fresh lam.inject alpha)
27623
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   712
      qed
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   713
    qed
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   714
  qed
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   715
next
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   716
  assume H: "\<forall>t'. \<not> t \<rightarrow>\<^sub>\<beta> t'"
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   717
  then show "NF t"
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   718
  proof (nominal_induct t rule: Apps_lam_induct)
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   719
    case (1 n ts)
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   720
    then have "\<forall>ts'. \<not> ts [\<rightarrow>\<^sub>\<beta>]\<^sub>1 ts'"
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   721
      by (iprover intro: apps_preserves_betas)
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   722
    with 1(1) have "listsp NF ts"
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   723
      by (induct ts) (auto simp add: in_listsp_conv_set)
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   724
    then show ?case by (rule NF.App)
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   725
  next
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   726
    case (2 x u ts)
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   727
    show ?case
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   728
    proof (cases ts)
39459
7753083c00e6 tidied a few proofs
paulson
parents: 32960
diff changeset
   729
      case Nil thus ?thesis by (metis 2 NF.Abs abs foldl_Nil)
27623
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   730
    next
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   731
      case (Cons r rs)
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   732
      have "(Lam [x].u) \<degree> r \<rightarrow>\<^sub>\<beta> u[x::=r]" ..
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   733
      then have "(Lam [x].u) \<degree> r \<degree>\<degree> rs \<rightarrow>\<^sub>\<beta> u[x::=r] \<degree>\<degree> rs"
32960
69916a850301 eliminated hard tabulators, guessing at each author's individual tab-width;
wenzelm
parents: 29097
diff changeset
   734
        by (rule apps_preserves_beta)
27623
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   735
      with Cons have "(Lam [x].u) \<degree>\<degree> ts \<rightarrow>\<^sub>\<beta> u[x::=r] \<degree>\<degree> rs"
32960
69916a850301 eliminated hard tabulators, guessing at each author's individual tab-width;
wenzelm
parents: 29097
diff changeset
   736
        by simp
27623
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   737
      with 2 show ?thesis by iprover
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   738
    qed
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   739
  qed
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   740
qed
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   741
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   742
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   743
subsection {* Leftmost reduction and weakly normalizing terms *}
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   744
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   745
inductive
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   746
  lred :: "lam \<Rightarrow> lam \<Rightarrow> bool"  (infixl "\<rightarrow>\<^sub>l" 50)
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   747
  and lredlist :: "lam list \<Rightarrow> lam list \<Rightarrow> bool"  (infixl "[\<rightarrow>\<^sub>l]" 50)
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   748
where
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   749
  "s [\<rightarrow>\<^sub>l] t \<equiv> listrelp op \<rightarrow>\<^sub>l s t"
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   750
| Var: "rs [\<rightarrow>\<^sub>l] rs' \<Longrightarrow> Var x \<degree>\<degree> rs \<rightarrow>\<^sub>l Var x \<degree>\<degree> rs'"
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   751
| Abs: "r \<rightarrow>\<^sub>l r' \<Longrightarrow> (Lam [x].r) \<rightarrow>\<^sub>l (Lam [x].r')"
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   752
| Beta: "r[x::=s] \<degree>\<degree> ss \<rightarrow>\<^sub>l t \<Longrightarrow> (Lam [x].r) \<degree> s \<degree>\<degree> ss \<rightarrow>\<^sub>l t"
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   753
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   754
lemma lred_imp_sred:
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   755
  assumes lred: "s \<rightarrow>\<^sub>l t"
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   756
  shows "s \<rightarrow>\<^sub>s t" using lred
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   757
proof induct
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   758
  case (Var rs rs' x)
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   759
  then have "rs [\<rightarrow>\<^sub>s] rs'"
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   760
    by induct (iprover intro: listrelp.intros)+
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   761
  then show ?case by (rule sred.Var)
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   762
next
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   763
  case (Abs r r' x)
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   764
  from `r \<rightarrow>\<^sub>s r'`
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   765
  have "(Lam [x].r) \<degree>\<degree> [] \<rightarrow>\<^sub>s (Lam [x].r') \<degree>\<degree> []" using listrelp.Nil
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   766
    by (rule better_sred_Abs)
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   767
  then show ?case by simp
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   768
next
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   769
  case (Beta r x s ss t)
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   770
  from `r[x::=s] \<degree>\<degree> ss \<rightarrow>\<^sub>s t`
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   771
  show ?case by (rule better_sred_Beta)
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   772
qed
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   773
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   774
inductive WN :: "lam \<Rightarrow> bool"
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   775
  where
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   776
    Var: "listsp WN rs \<Longrightarrow> WN (Var n \<degree>\<degree> rs)"
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   777
  | Lambda: "WN r \<Longrightarrow> WN (Lam [x].r)"
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   778
  | Beta: "WN ((r[x::=s]) \<degree>\<degree> ss) \<Longrightarrow> WN (((Lam [x].r) \<degree> s) \<degree>\<degree> ss)"
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   779
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   780
lemma listrelp_imp_listsp1:
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   781
  assumes H: "listrelp (\<lambda>x y. P x) xs ys"
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   782
  shows "listsp P xs" using H
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   783
  by induct auto
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   784
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   785
lemma listrelp_imp_listsp2:
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   786
  assumes H: "listrelp (\<lambda>x y. P y) xs ys"
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   787
  shows "listsp P ys" using H
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   788
  by induct auto
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   789
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   790
lemma lemma5:
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   791
  assumes lred: "r \<rightarrow>\<^sub>l r'"
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   792
  shows "WN r" and "NF r'" using lred
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   793
  by induct
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   794
    (iprover dest: listrelp_conj1 listrelp_conj2
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   795
     listrelp_imp_listsp1 listrelp_imp_listsp2 intro: WN.intros
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   796
     NF.intros)+
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   797
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   798
lemma lemma6:
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   799
  assumes wn: "WN r"
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   800
  shows "\<exists>r'. r \<rightarrow>\<^sub>l r'" using wn
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   801
proof induct
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   802
  case (Var rs n)
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   803
  then have "\<exists>rs'. rs [\<rightarrow>\<^sub>l] rs'"
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   804
    by induct (iprover intro: listrelp.intros)+
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   805
  then show ?case by (iprover intro: lred.Var)
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   806
qed (iprover intro: lred.intros)+
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   807
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   808
lemma lemma7:
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   809
  assumes r: "r \<rightarrow>\<^sub>s r'"
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   810
  shows "NF r' \<Longrightarrow> r \<rightarrow>\<^sub>l r'" using r
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   811
proof induct
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   812
  case (Var rs rs' x)
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   813
  from `NF (Var x \<degree>\<degree> rs')` have "listsp NF rs'"
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   814
    by cases simp_all
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   815
  with Var(1) have "rs [\<rightarrow>\<^sub>l] rs'"
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   816
  proof induct
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   817
    case Nil
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   818
    show ?case by (rule listrelp.Nil)
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   819
  next
39459
7753083c00e6 tidied a few proofs
paulson
parents: 32960
diff changeset
   820
    case (Cons x y xs ys) 
27623
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   821
    hence "x \<rightarrow>\<^sub>l y" and "xs [\<rightarrow>\<^sub>l] ys" by (auto del: in_listspD)
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   822
    thus ?case by (rule listrelp.Cons)
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   823
  qed
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   824
  thus ?case by (rule lred.Var)
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   825
next
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   826
  case (Abs x ss ss' r r')
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   827
  from `NF ((Lam [x].r') \<degree>\<degree> ss')`
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   828
  have ss': "ss' = []" by (rule Abs_NF)
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   829
  from Abs(4) have ss: "ss = []" using ss'
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   830
    by cases simp_all
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   831
  from ss' Abs have "NF (Lam [x].r')" by simp
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   832
  hence "NF r'" by (cases rule: NF.strong_cases) (auto simp add: abs_fresh lam.inject alpha)
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   833
  with Abs have "r \<rightarrow>\<^sub>l r'" by simp
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   834
  hence "(Lam [x].r) \<rightarrow>\<^sub>l (Lam [x].r')" by (rule lred.Abs)
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   835
  with ss ss' show ?case by simp
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   836
next
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   837
  case (Beta x s ss t r)
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   838
  hence "r[x::=s] \<degree>\<degree> ss \<rightarrow>\<^sub>l t" by simp
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   839
  thus ?case by (rule lred.Beta)
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   840
qed
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   841
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   842
lemma WN_eq: "WN t = (\<exists>t'. t \<rightarrow>\<^sub>\<beta>\<^sup>* t' \<and> NF t')"
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   843
proof
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   844
  assume "WN t"
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   845
  then have "\<exists>t'. t \<rightarrow>\<^sub>l t'" by (rule lemma6)
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   846
  then obtain t' where t': "t \<rightarrow>\<^sub>l t'" ..
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   847
  then have NF: "NF t'" by (rule lemma5)
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   848
  from t' have "t \<rightarrow>\<^sub>s t'" by (rule lred_imp_sred)
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   849
  then have "t \<rightarrow>\<^sub>\<beta>\<^sup>* t'" by (rule lemma2)
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   850
  with NF show "\<exists>t'. t \<rightarrow>\<^sub>\<beta>\<^sup>* t' \<and> NF t'" by iprover
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   851
next
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   852
  assume "\<exists>t'. t \<rightarrow>\<^sub>\<beta>\<^sup>* t' \<and> NF t'"
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   853
  then obtain t' where t': "t \<rightarrow>\<^sub>\<beta>\<^sup>* t'" and NF: "NF t'"
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   854
    by iprover
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   855
  from t' have "t \<rightarrow>\<^sub>s t'" by (rule rtrancl_beta_sred)
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   856
  then have "t \<rightarrow>\<^sub>l t'" using NF by (rule lemma7)
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   857
  then show "WN t" by (rule lemma5)
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   858
qed
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   859
8e9c19529a4e Added Standardization theory.
berghofe
parents:
diff changeset
   860
end
47397
d654c73e4b12 no preference wrt. fold(l/r); prefer fold rather than foldr for iterating over lists in generated code
haftmann
parents: 46317
diff changeset
   861