LamEx.thy
author Cezary Kaliszyk <kaliszyk@in.tum.de>
Wed, 04 Nov 2009 09:52:31 +0100
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Lifting 'fold1.simps(2)' and some cleaning.
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theory LamEx
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imports Nominal QuotMain
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begin
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atom_decl name
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thm abs_fresh(1)
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nominal_datatype rlam =
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  rVar "name"
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| rApp "rlam" "rlam"
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| rLam "name" "rlam"
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print_theorems
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function
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  rfv :: "rlam \<Rightarrow> name set"
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where
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  rfv_var: "rfv (rVar a) = {a}"
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| rfv_app: "rfv (rApp t1 t2) = (rfv t1) \<union> (rfv t2)"
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| rfv_lam: "rfv (rLam a t) = (rfv t) - {a}"
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sorry
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termination rfv sorry
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inductive
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  alpha :: "rlam \<Rightarrow> rlam \<Rightarrow> bool" ("_ \<approx> _" [100, 100] 100)
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where
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  a1: "a = b \<Longrightarrow> (rVar a) \<approx> (rVar b)"
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| a2: "\<lbrakk>t1 \<approx> t2; s1 \<approx> s2\<rbrakk> \<Longrightarrow> rApp t1 s1 \<approx> rApp t2 s2"
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| a3: "\<lbrakk>t \<approx> ([(a,b)]\<bullet>s); a \<notin> rfv (rLam b t)\<rbrakk> \<Longrightarrow> rLam a t \<approx> rLam b s"
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print_theorems
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lemma alpha_refl:
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  shows "x \<approx> x"
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  apply (rule rlam.induct)
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  apply (simp_all add:a1 a2)
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  apply (rule a3)
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  apply (simp_all)
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  (* apply (simp add: pt_swap_bij'') *)
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sorry
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quotient lam = rlam / alpha
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print_quotients
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quotient_def 
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  Var :: "name \<Rightarrow> lam"
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where
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  "Var \<equiv> rVar"
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quotient_def 
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  App :: "lam \<Rightarrow> lam \<Rightarrow> lam"
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where
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  "App \<equiv> rApp"
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quotient_def 
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  Lam :: "name \<Rightarrow> lam \<Rightarrow> lam"
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where
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  "Lam \<equiv> rLam"
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thm Var_def
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thm App_def
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thm Lam_def
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quotient_def 
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  fv :: "lam \<Rightarrow> name set"
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where
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  "fv \<equiv> rfv"
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thm fv_def
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(* definition of overloaded permutation function *)
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(* for the lifted type lam                       *)
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overloading
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  perm_lam \<equiv> "perm :: 'x prm \<Rightarrow> lam \<Rightarrow> lam"   (unchecked)
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begin
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quotient_def 
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  perm_lam :: "'x prm \<Rightarrow> lam \<Rightarrow> lam"
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where
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  "perm_lam \<equiv> (perm::'x prm \<Rightarrow> rlam \<Rightarrow> rlam)"
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end
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(*quotient_def (for lam)
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  abs_fun_lam :: "'x prm \<Rightarrow> lam \<Rightarrow> lam"
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where
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  "perm_lam \<equiv> (perm::'x prm \<Rightarrow> rlam \<Rightarrow> rlam)"*)
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thm perm_lam_def
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(* lemmas that need to lift *)
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lemma pi_var_com:
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  fixes pi::"'x prm"
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  shows "(pi\<bullet>rVar a) \<approx> rVar (pi\<bullet>a)"
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  sorry
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lemma pi_app_com:
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  fixes pi::"'x prm"
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  shows "(pi\<bullet>rApp t1 t2) \<approx> rApp (pi\<bullet>t1) (pi\<bullet>t2)"
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  sorry
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lemma pi_lam_com:
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  fixes pi::"'x prm"
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  shows "(pi\<bullet>rLam a t) \<approx> rLam (pi\<bullet>a) (pi\<bullet>t)"
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  sorry
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lemma fv_var:
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  shows "fv (Var a) = {a}"
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sorry
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lemma fv_app:
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  shows "fv (App t1 t2) = (fv t1) \<union> (fv t2)"
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sorry
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lemma fv_lam:
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  shows "fv (Lam a t) = (fv t) - {a}"
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sorry
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lemma real_alpha:
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  assumes "t = [(a,b)]\<bullet>s" "a\<sharp>[b].s"
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  shows "Lam a t = Lam b s"
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sorry
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lemma perm_rsp: "(op = ===> alpha ===> alpha) op \<bullet> op \<bullet>"
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  apply(auto)
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  (* this is propably true if some type conditions are imposed ;o) *)
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  sorry
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lemma fresh_rsp: "(op = ===> alpha ===> op =) fresh fresh" 
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  apply(auto)
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  (* this is probably only true if some type conditions are imposed *)
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  sorry
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   138
234
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lemma rVar_rsp: "(op = ===> alpha) rVar rVar"
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  apply(auto)
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   141
  apply(rule a1)
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  apply(simp)
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   143
  done
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   144
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lemma rApp_rsp: "(alpha ===> alpha ===> alpha) rApp rApp"
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  apply(auto)
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  apply(rule a2)
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  apply (assumption)
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   149
  apply (assumption)
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   150
  done
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   151
811f17de4031 Lifting of the 3 lemmas in LamEx
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lemma rLam_rsp: "(op = ===> alpha ===> alpha) rLam rLam"
229
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  apply(auto)
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  apply(rule a3)
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  apply(rule_tac t="[(x,x)]\<bullet>y" and s="y" in subst)
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  apply(rule sym)
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   157
  apply(rule trans)
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   158
  apply(rule pt_name3)
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   159
  apply(rule at_ds1[OF at_name_inst])
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   160
  apply(simp add: pt_name1)
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   161
  apply(assumption)
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   162
  apply(simp add: abs_fresh)
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diff changeset
   163
  done
217
9cc87d02190a First experiments with Lambda
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diff changeset
   164
247
e83a6e452843 Lemmas about fv.
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   165
lemma rfv_rsp: "(alpha ===> op =) rfv rfv"
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diff changeset
   166
  sorry
217
9cc87d02190a First experiments with Lambda
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diff changeset
   167
9cc87d02190a First experiments with Lambda
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   168
ML {* val qty = @{typ "lam"} *}
247
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   169
ML {* val defs = @{thms Var_def App_def Lam_def perm_lam_def fv_def} *}
271
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   170
ML {* val rsp_thms = @{thms perm_rsp fresh_rsp rVar_rsp rApp_rsp rLam_rsp rfv_rsp} @
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   171
  @{thms ho_all_prs ho_ex_prs} *}
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diff changeset
   172
240
6cff34032a00 Cleaning also in Lam
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diff changeset
   173
ML {* fun lift_thm_lam lthy t = lift_thm lthy qty "lam" rsp_thms defs t *}
237
80f1df49b940 More tests in Lam
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diff changeset
   174
249
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   175
ML {* val pi_var = lift_thm_lam @{context} @{thm pi_var_com} *}
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   176
ML {* val pi_app = lift_thm_lam @{context} @{thm pi_app_com} *}
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   177
ML {* val pi_lam = lift_thm_lam @{context} @{thm pi_lam_com} *}
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diff changeset
   178
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   179
ML {* val fv_var = lift_thm_lam @{context} @{thm rfv_var} *}
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ML {* val fv_app = lift_thm_lam @{context} @{thm rfv_app} *}
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   181
ML {* val fv_lam = lift_thm_lam @{context} @{thm rfv_lam} *}
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diff changeset
   182
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   183
ML {* val a1 = lift_thm_lam @{context} @{thm a1} *}
259
22c199522bef Optimization
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   184
ML {* val a2 = lift_thm_lam @{context} @{thm a2} *}
249
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ML {* val a3 = lift_thm_lam @{context} @{thm a3} *}
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diff changeset
   186
252
e30997c88050 Regularize for equalities and a better tactic. "alpha.cases" now lifts.
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   187
ML {* val alpha_cases = lift_thm_lam @{context} @{thm alpha.cases} *}
271
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   188
ML {* val alpha_induct = lift_thm_lam @{context} @{thm alpha.induct} *}
252
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diff changeset
   189
249
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local_setup {*
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  Quotient.note (@{binding "pi_var"}, pi_var) #> snd #>
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  Quotient.note (@{binding "pi_app"}, pi_app) #> snd #>
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  Quotient.note (@{binding "pi_lam"}, pi_lam) #> snd #>
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   194
  Quotient.note (@{binding "a1"}, a1) #> snd #>
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   195
  Quotient.note (@{binding "a2"}, a2) #> snd #>
252
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diff changeset
   196
  Quotient.note (@{binding "a3"}, a3) #> snd #>
271
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   197
  Quotient.note (@{binding "alpha_cases"}, alpha_cases) #> snd #>
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   198
  Quotient.note (@{binding "alpha_induct"}, alpha_induct) #> snd
249
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   199
*}
237
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diff changeset
   200
249
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   201
thm alpha.cases
252
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   202
thm alpha_cases
271
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   203
thm alpha.induct
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   204
thm alpha_induct
249
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   205
271
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   206
lemma rvar_inject: "rVar a \<approx> rVar b = (a = b)"
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   207
apply (auto)
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   208
apply (erule alpha.cases)
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   209
apply (simp_all add: rlam.inject alpha_refl)
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diff changeset
   210
done
249
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diff changeset
   211
271
1b57f99737fe Alpha.induct now lifts automatically.
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diff changeset
   212
ML {* val var_inject = Toplevel.program (fn () => lift_thm_lam @{context} @{thm rvar_inject}) *}
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diff changeset
   213
1b57f99737fe Alpha.induct now lifts automatically.
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   214
local_setup {*
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   215
  Quotient.note (@{binding "var_inject"}, var_inject) #> snd
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diff changeset
   216
*}
247
e83a6e452843 Lemmas about fv.
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diff changeset
   217
249
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   218
lemma var_supp:
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   219
  shows "supp (Var a) = ((supp a)::name set)"
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   220
  apply(simp add: supp_def)
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   221
  apply(simp add: pi_var)
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   222
  apply(simp add: var_inject)
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   223
  done
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diff changeset
   224
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   225
lemma var_fresh:
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   226
  fixes a::"name"
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   227
  shows "(a\<sharp>(Var b)) = (a\<sharp>b)"
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   228
  apply(simp add: fresh_def)
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   229
  apply(simp add: var_supp)
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diff changeset
   230
  done
247
e83a6e452843 Lemmas about fv.
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diff changeset
   231
e83a6e452843 Lemmas about fv.
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diff changeset
   232
e83a6e452843 Lemmas about fv.
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diff changeset
   233
e83a6e452843 Lemmas about fv.
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diff changeset
   234
e83a6e452843 Lemmas about fv.
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diff changeset
   235
e83a6e452843 Lemmas about fv.
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diff changeset
   236
e83a6e452843 Lemmas about fv.
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diff changeset
   237
271
1b57f99737fe Alpha.induct now lifts automatically.
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diff changeset
   238
1b57f99737fe Alpha.induct now lifts automatically.
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parents: 270
diff changeset
   239
1b57f99737fe Alpha.induct now lifts automatically.
Cezary Kaliszyk <kaliszyk@in.tum.de>
parents: 270
diff changeset
   240
1b57f99737fe Alpha.induct now lifts automatically.
Cezary Kaliszyk <kaliszyk@in.tum.de>
parents: 270
diff changeset
   241
1b57f99737fe Alpha.induct now lifts automatically.
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diff changeset
   242
1b57f99737fe Alpha.induct now lifts automatically.
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diff changeset
   243
(* Construction Site code *)
1b57f99737fe Alpha.induct now lifts automatically.
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diff changeset
   244
1b57f99737fe Alpha.induct now lifts automatically.
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diff changeset
   245
ML {* val (rty, rel, rel_refl, rel_eqv) = lookup_quot_data @{context} qty *}
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Cezary Kaliszyk <kaliszyk@in.tum.de>
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diff changeset
   246
ML {* val consts = lookup_quot_consts defs *}
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Cezary Kaliszyk <kaliszyk@in.tum.de>
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diff changeset
   247
ML {* val (trans2, reps_same, absrep, quot) = lookup_quot_thms @{context} "lam" *}
1b57f99737fe Alpha.induct now lifts automatically.
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diff changeset
   248
253
e169a99c6ada Automatic computation of application preservation and manually finished "alpha.induct". Slow...
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diff changeset
   249
ML {* val t_a = atomize_thm @{thm alpha.induct} *}
e169a99c6ada Automatic computation of application preservation and manually finished "alpha.induct". Slow...
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diff changeset
   250
(* prove {* build_regularize_goal t_a rty rel @{context}  *}
e169a99c6ada Automatic computation of application preservation and manually finished "alpha.induct". Slow...
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diff changeset
   251
ML_prf {*  fun tac ctxt =
e169a99c6ada Automatic computation of application preservation and manually finished "alpha.induct". Slow...
Cezary Kaliszyk <kaliszyk@in.tum.de>
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diff changeset
   252
     (FIRST' [
e169a99c6ada Automatic computation of application preservation and manually finished "alpha.induct". Slow...
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diff changeset
   253
      rtac rel_refl,
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diff changeset
   254
      atac,
e169a99c6ada Automatic computation of application preservation and manually finished "alpha.induct". Slow...
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diff changeset
   255
      rtac @{thm universal_twice},
e169a99c6ada Automatic computation of application preservation and manually finished "alpha.induct". Slow...
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diff changeset
   256
      (rtac @{thm impI} THEN' atac),
e169a99c6ada Automatic computation of application preservation and manually finished "alpha.induct". Slow...
Cezary Kaliszyk <kaliszyk@in.tum.de>
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diff changeset
   257
      rtac @{thm implication_twice},
e169a99c6ada Automatic computation of application preservation and manually finished "alpha.induct". Slow...
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diff changeset
   258
      EqSubst.eqsubst_tac ctxt [0]
e169a99c6ada Automatic computation of application preservation and manually finished "alpha.induct". Slow...
Cezary Kaliszyk <kaliszyk@in.tum.de>
parents: 252
diff changeset
   259
        [(@{thm equiv_res_forall} OF [rel_eqv]),
e169a99c6ada Automatic computation of application preservation and manually finished "alpha.induct". Slow...
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diff changeset
   260
         (@{thm equiv_res_exists} OF [rel_eqv])],
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   261
      (rtac @{thm impI} THEN' (asm_full_simp_tac (Simplifier.context ctxt HOL_ss)) THEN' rtac rel_refl),
e169a99c6ada Automatic computation of application preservation and manually finished "alpha.induct". Slow...
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   262
      (rtac @{thm RIGHT_RES_FORALL_REGULAR})
e169a99c6ada Automatic computation of application preservation and manually finished "alpha.induct". Slow...
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diff changeset
   263
     ]);
e169a99c6ada Automatic computation of application preservation and manually finished "alpha.induct". Slow...
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diff changeset
   264
 *}
e169a99c6ada Automatic computation of application preservation and manually finished "alpha.induct". Slow...
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   265
  apply (tactic {* tac @{context} 1 *}) *)
251
c770f36f9459 Regularization
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ML {* val t_r = regularize t_a rty rel rel_eqv rel_refl @{context} *}
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258
93ea455b29f1 Map does not fully work yet.
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(*ML {*
257
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  val rt = build_repabs_term @{context} t_r consts rty qty
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  val rg = Logic.mk_equals ((Thm.prop_of t_r), rt);
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*}
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prove rg
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apply(atomize(full))
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ML_prf {*
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fun r_mk_comb_tac ctxt rty quot_thm reflex_thm trans_thm rsp_thms =
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  (FIRST' [
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    rtac trans_thm,
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    LAMBDA_RES_TAC ctxt,
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    res_forall_rsp_tac ctxt,
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    res_exists_rsp_tac ctxt,
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    (
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     (simp_tac ((Simplifier.context ctxt HOL_ss) addsimps rsp_thms))
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     THEN_ALL_NEW (fn _ => no_tac)
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    ),
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    (instantiate_tac @{thm REP_ABS_RSP(1)} ctxt THEN' (RANGE [quotient_tac quot_thm])),
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    rtac refl,
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    (APPLY_RSP_TAC rty ctxt THEN' (RANGE [quotient_tac quot_thm, quotient_tac quot_thm])),
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    Cong_Tac.cong_tac @{thm cong},
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    rtac @{thm ext},
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    rtac reflex_thm,
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    atac,
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    (
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     (simp_tac ((Simplifier.context ctxt HOL_ss) addsimps @{thms FUN_REL.simps}))
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     THEN_ALL_NEW (fn _ => no_tac)
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    ),
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    WEAK_LAMBDA_RES_TAC ctxt
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    ]);
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  fun r_mk_comb_tac_lam lthy = r_mk_comb_tac lthy rty quot rel_refl trans2 rsp_thms
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*}
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apply (tactic {* REPEAT_ALL_NEW (r_mk_comb_tac_lam @{context}) 1 *})
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*)
257
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251
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ML {* val t_t = repabs @{context} t_r consts rty qty quot rel_refl trans2 rsp_thms *}
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ML {* val abs = findabs rty (prop_of (atomize_thm @{thm alpha.induct})) *}
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ML {* val aps = findaps rty (prop_of (atomize_thm @{thm alpha.induct})) *}
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3764566c1151 Automatic FORALL_PRS. 'list.induct' lifts automatically. Faster ALLEX_RSP
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ML {* val (alls, exs) = findallex rty qty (prop_of (atomize_thm @{thm alpha.induct})) *}
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ML {* val allthms = map (make_allex_prs_thm @{context} quot @{thm FORALL_PRS} ) alls *}
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ML {* val exthms = map (make_allex_prs_thm @{context} quot @{thm EXISTS_PRS} ) exs *}
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ML {* val t_a = MetaSimplifier.rewrite_rule allthms t_t *}
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ML {* val simp_app_prs_thms = map (make_simp_prs_thm @{context} quot @{thm APP_PRS}) aps *}
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ML {* val simp_lam_prs_thms = map (make_simp_prs_thm @{context} quot @{thm LAMBDA_PRS}) abs *}
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ML {* val t_l = repeat_eqsubst_thm @{context} (simp_lam_prs_thms) t_a *}
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ML {* val t_l1 = repeat_eqsubst_thm @{context} simp_app_prs_thms t_l *}
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e30997c88050 Regularize for equalities and a better tactic. "alpha.cases" now lifts.
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ML {* val defs_sym = add_lower_defs @{context} defs; *}
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ML {* val defs_sym_eq = map (fn x => eq_reflection OF [x]) defs_sym *}
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3764566c1151 Automatic FORALL_PRS. 'list.induct' lifts automatically. Faster ALLEX_RSP
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ML {* val t_d0 = MetaSimplifier.rewrite_rule defs_sym_eq t_l1 *}
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ML {* val t_d = repeat_eqsubst_thm @{context} defs_sym t_d0 *}
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ML {* val t_r = MetaSimplifier.rewrite_rule [reps_same] t_d *}
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ML {* val t_r1 = repeat_eqsubst_thm @{context} @{thms fun_map.simps} t_r *}
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ML {* val t_r2 = MetaSimplifier.rewrite_rule @{thms QUOT_TYPE_I_lam.thm10} t_r1 *}
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   321
ML {* val t_r3 = MetaSimplifier.rewrite_rule @{thms eq_reflection[OF id_apply]} t_r2 *}
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ML {* val alpha_induct = ObjectLogic.rulify t_r3 *}
247
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   323
271
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(*local_setup {*
253
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  Quotient.note (@{binding "alpha_induct"}, alpha_induct) #> snd
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   326
*}*)
247
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259
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thm alpha_induct
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thm alpha.induct
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271
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259
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271
1b57f99737fe Alpha.induct now lifts automatically.
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   337
237
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   338
fun
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  option_map::"('a \<Rightarrow> 'b) \<Rightarrow> ('a noption) \<Rightarrow> ('b noption)"
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where
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  "option_map f (nSome x) = nSome (f x)"
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| "option_map f nNone = nNone"
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fun
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  option_rel
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   346
where
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  "option_rel r (nSome x) (nSome y) = r x y"
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| "option_rel r _ _ = False"
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   349
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declare [[map noption = (option_map, option_rel)]]
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   351
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lemma OPT_QUOTIENT:
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  assumes q: "QUOTIENT R Abs Rep"
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  shows "QUOTIENT (option_rel R) (option_map Abs) (option_map Rep)"
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  apply (unfold QUOTIENT_def)
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  apply (auto)
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   357
  using q
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  apply (unfold QUOTIENT_def)
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  apply (case_tac "a :: 'b noption")
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   360
  apply (simp)
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  apply (simp)
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   362
  apply (case_tac "a :: 'b noption")
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   363
  apply (simp only: option_map.simps)
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   364
  apply (subst option_rel.simps)
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  (* Simp starts hanging so don't know how to continue *)
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   366
  sorry
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   367