LamEx.thy
author Cezary Kaliszyk <kaliszyk@in.tum.de>
Thu, 29 Oct 2009 13:29:03 +0100
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Cleaning of 'map id' and 'prod_fun id id' in lower_defs.
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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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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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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\<sharp>[b].s\<rbrakk> \<Longrightarrow> rLam a t \<approx> rLam b s"
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quotient lam = rlam / alpha
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print_quotients
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quotient_def (for lam)
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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 (for lam)
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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 (for lam)
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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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(* 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 (for lam)
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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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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 real_alpha:
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  assumes "t = ([(a,b)]\<bullet>s)" "a\<sharp>s"
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  shows "Lam a t = Lam b s"
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sorry
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(* Construction Site code *)
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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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lemma rVar_rsp: "(op = ===> alpha) rVar rVar"
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  apply(auto)
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  apply(rule a1)
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  apply(simp)
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  done
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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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  apply (assumption)
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  done
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lemma rLam_rsp: "(op = ===> alpha ===> alpha) rLam rLam"
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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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  apply(rule trans)
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  apply(rule pt_name3)
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  apply(rule at_ds1[OF at_name_inst])
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  apply(simp add: pt_name1)
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  apply(assumption)
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  apply(simp add: abs_fresh)
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  done
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ML {* val defs = @{thms Var_def App_def Lam_def perm_lam_def} *}
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ML {* val consts = [@{const_name "rVar"}, @{const_name "rApp"}, @{const_name "rLam"}, @{const_name "perm"}]; *}
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ML {* val rty = @{typ "rlam"} *}
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ML {* val qty = @{typ "lam"} *}
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ML {* val rel = @{term "alpha"} *}
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ML {* val rel_eqv = (#equiv_thm o hd) (quotdata_lookup @{context}) *}
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ML {* val rel_refl = @{thm EQUIV_REFL} OF [rel_eqv] *}
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ML {* val quot = @{thm QUOTIENT_lam} *}
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ML {* val rsp_thms = @{thms perm_rsp fresh_rsp rVar_rsp rApp_rsp rLam_rsp} @ @{thms ho_all_prs ho_ex_prs} *}
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ML {* val trans2 = @{thm QUOT_TYPE_I_lam.R_trans2} *}
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ML {* val reps_same = @{thm QUOT_TYPE_I_lam.REPS_same} *}
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ML {* add_lower_defs @{context} @{thms perm_lam_def} *}
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ML {* val rr = @{thm eq_reflection} OF [hd (rev (add_lower_defs @{context} @{thms perm_lam_def}))] *}
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lemma prod_fun_id: "prod_fun id id = id"
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  apply (simp add: prod_fun_def)
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done
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lemma map_id: "map id x = x"
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  apply (induct x)
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  apply (simp_all add: map.simps)
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done
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ML {* val rrr = repeat_eqsubst_thm @{context} @{thms prod_fun_id map_id} rr *}
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ML {*
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fun lift_thm_lam lthy t =
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  lift_thm lthy consts rty qty rel rel_eqv rel_refl quot rsp_thms trans2 reps_same defs t
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*}
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ML {* val t1 = Toplevel.program (fn () => lift_thm_lam @{context} @{thm pi_var_com}) *}
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ML {* val t2 = eqsubst_thm @{context} [rrr] (atomize_thm t1) *}
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ML {* ObjectLogic.rulify t2 *}
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ML {* val t1 = Toplevel.program (fn () => lift_thm_lam @{context} @{thm pi_app_com}) *}
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ML {* val t2 = repeat_eqsubst_thm @{context} [rrr] (atomize_thm t1) *}
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ML {* ObjectLogic.rulify t2 *}
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ML {* val t1 = Toplevel.program (fn () => lift_thm_lam @{context} @{thm pi_lam_com}) *}
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ML {* val t2 = repeat_eqsubst_thm @{context} [rrr] (atomize_thm t1) *}
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ML {* ObjectLogic.rulify t2 *}
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