Nominal/Ex/Lambda.thy
author Christian Urban <urbanc@in.tum.de>
Fri, 09 Apr 2010 21:51:01 +0200
changeset 1800 78fdc6b36a1c
parent 1797 fddb470720f1
child 1805 f187f20f0a79
permissions -rw-r--r--
changed the eqvt-tac to move only outermost permutations inside; added tracing infrastructure for the eqvt-tac
Ignore whitespace changes - Everywhere: Within whitespace: At end of lines:
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theory Lambda
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imports "../Parser"
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begin
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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"
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| Lam x::"name" l::"lam"  bind x in l
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lemmas supp_fn' = lam.fv[simplified lam.supp]
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section {* Strong Induction Principles*}
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(* 
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  Old way of establishing strong induction
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  principles by chosing a fresh name.
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*)
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lemma
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  fixes c::"'a::fs"
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  assumes a1: "\<And>name c. P c (Var name)"
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  and     a2: "\<And>lam1 lam2 c. \<lbrakk>\<And>d. P d lam1; \<And>d. P d lam2\<rbrakk> \<Longrightarrow> P c (App lam1 lam2)"
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  and     a3: "\<And>name lam c. \<lbrakk>atom name \<sharp> c; \<And>d. P d lam\<rbrakk> \<Longrightarrow> P c (Lam name lam)"
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  shows "P c lam"
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proof -
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  have "\<And>p. P c (p \<bullet> lam)"
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    apply(induct lam arbitrary: c rule: lam.induct)
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    apply(simp only: lam.perm)
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    apply(rule a1)
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    apply(simp only: lam.perm)
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    apply(rule a2)
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    apply(assumption)
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    apply(assumption)
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    apply(subgoal_tac "\<exists>new::name. (atom new) \<sharp> (c, Lam (p \<bullet> name) (p \<bullet> lam))")
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    defer
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    apply(simp add: fresh_def)
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    apply(rule_tac X="supp (c, Lam (p \<bullet> name) (p \<bullet> lam))" in obtain_at_base)
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    apply(simp add: supp_Pair finite_supp)
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    apply(blast)
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    apply(erule exE)
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    apply(rule_tac t="p \<bullet> Lam name lam" and 
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                   s="(((p \<bullet> name) \<leftrightarrow> new) + p) \<bullet> Lam name lam" in subst)
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    apply(simp del: lam.perm)
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    apply(subst lam.perm)
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    apply(subst (2) lam.perm)
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    apply(rule flip_fresh_fresh)
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    apply(simp add: fresh_def)
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    apply(simp only: supp_fn')
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    apply(simp)
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    apply(simp add: fresh_Pair)
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    apply(simp)
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    apply(rule a3)
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    apply(simp add: fresh_Pair)
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    apply(drule_tac x="((p \<bullet> name) \<leftrightarrow> new) + p" in meta_spec)
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    apply(simp)
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    done
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  then have "P c (0 \<bullet> lam)" by blast
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  then show "P c lam" by simp
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qed
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(* 
fddb470720f1 renamed ExLam to Lambda and completed the proof of the strong ind principle; tuned paper
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parents: 1773
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    63
  New way of establishing strong induction
fddb470720f1 renamed ExLam to Lambda and completed the proof of the strong ind principle; tuned paper
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parents: 1773
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    64
  principles by using a appropriate permutation.
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    65
*)
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lemma
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  fixes c::"'a::fs"
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  assumes a1: "\<And>name c. P c (Var name)"
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  and     a2: "\<And>lam1 lam2 c. \<lbrakk>\<And>d. P d lam1; \<And>d. P d lam2\<rbrakk> \<Longrightarrow> P c (App lam1 lam2)"
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  and     a3: "\<And>name lam c. \<lbrakk>atom name \<sharp> c; \<And>d. P d lam\<rbrakk> \<Longrightarrow> P c (Lam name lam)"
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  shows "P c lam"
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proof -
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    73
  have "\<And>p. P c (p \<bullet> lam)"
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    apply(induct lam arbitrary: c rule: lam.induct)
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    75
    apply(simp only: lam.perm)
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    76
    apply(rule a1)
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    77
    apply(simp only: lam.perm)
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    apply(rule a2)
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    apply(assumption)
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fddb470720f1 renamed ExLam to Lambda and completed the proof of the strong ind principle; tuned paper
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    80
    apply(assumption)
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78fdc6b36a1c changed the eqvt-tac to move only outermost permutations inside; added tracing infrastructure for the eqvt-tac
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    81
    apply(subgoal_tac "\<exists>q. (q \<bullet> {p \<bullet> atom name}) \<sharp>* c \<and> supp (p \<bullet> Lam name lam) \<sharp>* q")
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    82
    apply(erule exE)
1800
78fdc6b36a1c changed the eqvt-tac to move only outermost permutations inside; added tracing infrastructure for the eqvt-tac
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    83
    apply(rule_tac t="p \<bullet> Lam name lam" and 
78fdc6b36a1c changed the eqvt-tac to move only outermost permutations inside; added tracing infrastructure for the eqvt-tac
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    84
                   s="q \<bullet> p \<bullet> Lam name lam" in subst)
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    85
    defer
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    86
    apply(simp add: lam.perm)
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    87
    apply(rule a3)
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    88
    apply(simp add: eqvts fresh_star_def)
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parents:
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    89
    apply(drule_tac x="q + p" in meta_spec)
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parents:
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    90
    apply(simp)
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    91
    apply(rule at_set_avoiding2)
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    92
    apply(simp add: finite_supp)
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    93
    apply(simp add: finite_supp)
fddb470720f1 renamed ExLam to Lambda and completed the proof of the strong ind principle; tuned paper
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    94
    apply(simp add: finite_supp)
1800
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    95
    apply(simp only: lam.perm atom_eqvt)
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fddb470720f1 renamed ExLam to Lambda and completed the proof of the strong ind principle; tuned paper
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    96
    apply(simp add: fresh_star_def fresh_def supp_fn')
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    97
    apply(rule supp_perm_eq)
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    98
    apply(simp)
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    99
    done
1800
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   100
  then have "P c (0 \<bullet> lam)" by blast
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   101
  then show "P c lam" by simp
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   102
qed
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parents:
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   103
1800
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   104
section {* size function *}
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   105
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   106
lemma size_eqvt_raw:
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   107
  fixes t::"lam_raw"
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   108
  shows "size (pi \<bullet> t)  = size t"
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   109
  apply (induct rule: lam_raw.inducts)
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   110
  apply simp_all
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   111
  done
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   112
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parents: 1797
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   113
instantiation lam :: size 
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   114
begin
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   115
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quotient_definition
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  "size_lam :: lam \<Rightarrow> nat"
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   118
is
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  "size :: lam_raw \<Rightarrow> nat"
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   120
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lemma size_rsp:
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  "alpha_lam_raw x y \<Longrightarrow> size x = size y"
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  apply (induct rule: alpha_lam_raw.inducts)
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  apply (simp_all only: lam_raw.size)
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  apply (simp_all only: alphas)
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  apply clarify
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  apply (simp_all only: size_eqvt_raw)
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  done
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   129
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lemma [quot_respect]:
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  "(alpha_lam_raw ===> op =) size size"
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  by (simp_all add: size_rsp)
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   133
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lemma [quot_preserve]:
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  "(rep_lam ---> id) size = size"
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  by (simp_all add: size_lam_def)
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   137
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   138
instance
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  by default
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   140
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   141
end
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   142
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   143
lemmas size_lam[simp] = 
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  lam_raw.size(4)[quot_lifted]
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  lam_raw.size(5)[quot_lifted]
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  lam_raw.size(6)[quot_lifted]
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   147
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(* is this needed? *)
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lemma [measure_function]: 
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  "is_measure (size::lam\<Rightarrow>nat)" 
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  by (rule is_measure_trivial)
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   153
section {* Matching *}
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   154
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   155
definition
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   156
  MATCH :: "('c::pt \<Rightarrow> (bool * 'a::pt * 'b::pt)) \<Rightarrow> 'b \<Rightarrow> 'a \<Rightarrow> 'b"
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   157
where
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  "MATCH M d x \<equiv> if (\<exists>!r. \<exists>q. M q = (True, x, r)) then (THE r. \<exists>q. M q = (True, x, r)) else d"
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   159
78fdc6b36a1c changed the eqvt-tac to move only outermost permutations inside; added tracing infrastructure for the eqvt-tac
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   160
(*
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   161
lemma MATCH_eqvt:
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  shows "p \<bullet> (MATCH M d x) = MATCH (p \<bullet> M) (p \<bullet> d) (p \<bullet> x)"
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   163
unfolding MATCH_def
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apply(perm_simp the_eqvt)
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apply (tactic {* Nominal_Permeq.eqvt_tac @{context} 1 *})
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apply(simp)
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thm eqvts_raw 
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apply(subst if_eqvt)
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apply(subst ex1_eqvt)
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apply(subst permute_fun_def)
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apply(subst ex_eqvt)
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apply(subst permute_fun_def)
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apply(subst eq_eqvt)
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apply(subst permute_fun_app_eq[where f="M"])
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   175
apply(simp only: permute_minus_cancel)
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   176
apply(subst permute_prod.simps)
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apply(subst permute_prod.simps)
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apply(simp only: permute_minus_cancel)
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apply(simp only: permute_bool_def)
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apply(simp)
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apply(subst ex1_eqvt)
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apply(subst permute_fun_def)
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   183
apply(subst ex_eqvt)
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apply(subst permute_fun_def)
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apply(subst eq_eqvt)
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   186
78fdc6b36a1c changed the eqvt-tac to move only outermost permutations inside; added tracing infrastructure for the eqvt-tac
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   187
apply(simp only: eqvts)
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apply(simp)
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apply(subgoal_tac "(p \<bullet> (\<exists>!r. \<exists>q. M q = (True, x, r))) = (\<exists>!r. \<exists>q. (p \<bullet> M) q = (True, p \<bullet> x, r))")
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apply(drule sym)
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apply(simp)
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apply(rule impI)
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apply(simp add: perm_bool)
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apply(rule trans)
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apply(rule pt_the_eqvt[OF pta at])
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apply(assumption)
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apply(simp add: pt_ex_eqvt[OF pt at])
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apply(simp add: pt_eq_eqvt[OF ptb at])
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apply(rule cheat)
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apply(rule trans)
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apply(rule pt_ex1_eqvt)
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   202
apply(rule pta)
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apply(rule at)
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apply(simp add: pt_ex_eqvt[OF pt at])
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apply(simp add: pt_eq_eqvt[OF ptb at])
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apply(subst pt_pi_rev[OF pta at])
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apply(subst pt_fun_app_eq[OF pt at])
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apply(subst pt_pi_rev[OF pt at])
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apply(simp)
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done
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   211
78fdc6b36a1c changed the eqvt-tac to move only outermost permutations inside; added tracing infrastructure for the eqvt-tac
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lemma MATCH_cng:
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  assumes a: "M1 = M2" "d1 = d2"
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  shows "MATCH M1 d1 x = MATCH M2 d2 x"
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using a by simp
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lemma MATCH_eq:
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  assumes a: "t = l x" "G x" "\<And>x'. t = l x' \<Longrightarrow> G x' \<Longrightarrow> r x' = r x"
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  shows "MATCH (\<lambda>x. (G x, l x, r x)) d t = r x"
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using a
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unfolding MATCH_def
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apply(subst if_P)
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apply(rule_tac a="r x" in ex1I)
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apply(rule_tac x="x" in exI)
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apply(blast)
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apply(erule exE)
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apply(drule_tac x="q" in meta_spec)
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apply(auto)[1]
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apply(rule the_equality)
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apply(blast)
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apply(erule exE)
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apply(drule_tac x="q" in meta_spec)
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apply(auto)[1]
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done
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lemma MATCH_eq2:
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  assumes a: "t = l x1 x2" "G x1 x2" "\<And>x1' x2'. t = l x1' x2' \<Longrightarrow> G x1' x2' \<Longrightarrow> r x1' x2' = r x1 x2"
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  shows "MATCH (\<lambda>(x1,x2). (G x1 x2, l x1 x2, r x1 x2)) d t = r x1 x2"
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sorry
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lemma MATCH_neq:
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  assumes a: "\<And>x. t = l x \<Longrightarrow> G x \<Longrightarrow> False"
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  shows "MATCH (\<lambda>x. (G x, l x, r x)) d t = d"
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using a
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unfolding MATCH_def
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apply(subst if_not_P)
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apply(blast)
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apply(rule refl)
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done
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lemma MATCH_neq2:
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  assumes a: "\<And>x1 x2. t = l x1 x2 \<Longrightarrow> G x1 x2 \<Longrightarrow> False"
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  shows "MATCH (\<lambda>(x1,x2). (G x1 x2, l x1 x2, r x1 x2)) d t = d"
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using a
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unfolding MATCH_def
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apply(subst if_not_P)
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apply(auto)
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done
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*)
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1594
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end
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892fcdb96c96 Move LamEx out of Test.
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892fcdb96c96 Move LamEx out of Test.
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