Quot/Nominal/LFex.thy
author Cezary Kaliszyk <kaliszyk@in.tum.de>
Wed, 24 Feb 2010 10:47:41 +0100
changeset 1240 9348581d7d92
parent 1239 ae73578feb64
child 1241 ab1aa1b48547
permissions -rw-r--r--
Rename also the lifted types to non-capital.
Ignore whitespace changes - Everywhere: Within whitespace: At end of lines:
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theory LFex
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imports "Nominal2_Atoms" "Nominal2_Eqvt" "Nominal2_Supp" "Abs" "Perm" "Fv"
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begin
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atom_decl name
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atom_decl ident
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datatype rkind =
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    Type
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  | KPi "rty" "name" "rkind"
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and rty =
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    TConst "ident"
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  | TApp "rty" "rtrm"
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  | TPi "rty" "name" "rty"
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and rtrm =
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    Const "ident"
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  | Var "name"
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  | App "rtrm" "rtrm"
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  | Lam "rty" "name" "rtrm"
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setup {* snd o define_raw_perms ["rkind", "rty", "rtrm"] ["LFex.rkind", "LFex.rty", "LFex.rtrm"] *}
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local_setup {*
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  snd o define_fv_alpha "LFex.rkind"
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  [[ [], [[], [(NONE, 1)], [(NONE, 1)]] ],
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   [ [[]], [[], []], [[], [(NONE, 1)], [(NONE, 1)]] ],
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   [ [[]], [[]], [[], []], [[], [(NONE, 1)], [(NONE, 1)]]]] *}
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notation
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    alpha_rkind  ("_ \<approx>ki _" [100, 100] 100)
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and alpha_rty    ("_ \<approx>ty _" [100, 100] 100)
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and alpha_rtrm   ("_ \<approx>tr _" [100, 100] 100)
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thm fv_rkind_fv_rty_fv_rtrm.simps alpha_rkind_alpha_rty_alpha_rtrm.intros
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local_setup {* (fn ctxt => snd (Local_Theory.note ((@{binding alpha_rkind_alpha_rty_alpha_rtrm_inj}, []), (build_alpha_inj @{thms alpha_rkind_alpha_rty_alpha_rtrm.intros} @{thms rkind.distinct rty.distinct rtrm.distinct rkind.inject rty.inject rtrm.inject} @{thms alpha_rkind.cases alpha_rty.cases alpha_rtrm.cases} ctxt)) ctxt)) *}
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thm alpha_rkind_alpha_rty_alpha_rtrm_inj
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992
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lemma rfv_eqvt[eqvt]:
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  "((pi\<bullet>fv_rkind t1) = fv_rkind (pi\<bullet>t1))"
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  "((pi\<bullet>fv_rty t2) = fv_rty (pi\<bullet>t2))"
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  "((pi\<bullet>fv_rtrm t3) = fv_rtrm (pi\<bullet>t3))"
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apply(induct t1 and t2 and t3 rule: rkind_rty_rtrm.inducts)
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apply(simp_all add: union_eqvt Diff_eqvt)
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apply(simp_all add: permute_set_eq atom_eqvt)
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done
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lemma alpha_eqvt:
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  "t1 \<approx>ki s1 \<Longrightarrow> (pi \<bullet> t1) \<approx>ki (pi \<bullet> s1)"
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  "t2 \<approx>ty s2 \<Longrightarrow> (pi \<bullet> t2) \<approx>ty (pi \<bullet> s2)"
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  "t3 \<approx>tr s3 \<Longrightarrow> (pi \<bullet> t3) \<approx>tr (pi \<bullet> s3)"
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apply(induct rule: alpha_rkind_alpha_rty_alpha_rtrm.inducts)
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apply (simp_all add: alpha_rkind_alpha_rty_alpha_rtrm.intros)
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apply (simp_all add: alpha_rkind_alpha_rty_alpha_rtrm_inj)
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apply (rule alpha_gen_atom_eqvt)
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apply (simp add: rfv_eqvt)
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apply assumption
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apply (rule alpha_gen_atom_eqvt)
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apply (simp add: rfv_eqvt)
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apply assumption
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apply (rule alpha_gen_atom_eqvt)
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apply (simp add: rfv_eqvt)
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apply assumption
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done
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local_setup {* (fn ctxt => snd (Local_Theory.note ((@{binding alpha_equivps}, []),
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  (build_equivps [@{term alpha_rkind}, @{term alpha_rty}, @{term alpha_rtrm}]
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     @{thm rkind_rty_rtrm.induct} @{thm alpha_rkind_alpha_rty_alpha_rtrm.induct} 
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     @{thms rkind.inject rty.inject rtrm.inject} @{thms alpha_rkind_alpha_rty_alpha_rtrm_inj}
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     @{thms rkind.distinct rty.distinct rtrm.distinct}
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     @{thms alpha_rkind.cases alpha_rty.cases alpha_rtrm.cases}
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     @{thms alpha_eqvt} ctxt)) ctxt)) *}
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thm alpha_equivps
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quotient_type kind = rkind / alpha_rkind
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  by (rule alpha_equivps)
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quotient_type
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    ty = rty / alpha_rty and
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    trm = rtrm / alpha_rtrm
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  by (auto intro: alpha_equivps)
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quotient_definition
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   "TYP :: kind"
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is
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  "Type"
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quotient_definition
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   "KPI :: ty \<Rightarrow> name \<Rightarrow> kind \<Rightarrow> kind"
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is
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  "KPi"
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quotient_definition
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   "TCONST :: ident \<Rightarrow> ty"
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is
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  "TConst"
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quotient_definition
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   "TAPP :: ty \<Rightarrow> trm \<Rightarrow> ty"
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is
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  "TApp"
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quotient_definition
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   "TPI :: ty \<Rightarrow> name \<Rightarrow> ty \<Rightarrow> ty"
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is
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  "TPi"
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(* FIXME: does not work with CONST *)
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quotient_definition
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   "CONS :: ident \<Rightarrow> trm"
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is
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  "Const"
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quotient_definition
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   "VAR :: name \<Rightarrow> trm"
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is
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  "Var"
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   116
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quotient_definition
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   "APP :: trm \<Rightarrow> trm \<Rightarrow> trm"
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is
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  "App"
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   121
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quotient_definition
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   "LAM :: ty \<Rightarrow> name \<Rightarrow> trm \<Rightarrow> trm"
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is
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  "Lam"
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   126
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(* FIXME: print out a warning if the type contains a liftet type, like rkind \<Rightarrow> name set *)
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quotient_definition
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   "fv_kind :: kind \<Rightarrow> atom set"
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is
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  "fv_rkind"
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quotient_definition
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   "fv_ty :: ty \<Rightarrow> atom set"
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is
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  "fv_rty"
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   137
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quotient_definition
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   "fv_trm :: trm \<Rightarrow> atom set"
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is
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  "fv_rtrm"
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   142
ef8a2b0b237a Ported existing part of LF to new permutations and alphas.
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lemma alpha_rfv:
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  shows "(t \<approx>ki s \<longrightarrow> fv_rkind t = fv_rkind s) \<and>
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     (t1 \<approx>ty s1 \<longrightarrow> fv_rty t1 = fv_rty s1) \<and>
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   146
     (t2 \<approx>tr s2 \<longrightarrow> fv_rtrm t2 = fv_rtrm s2)"
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  apply(rule alpha_rkind_alpha_rty_alpha_rtrm.induct)
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163d6917af62 LF ported to alpha_gen, equivp solved and one of the missing proofs in support<-> fv solved. Still some supp properties left.
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  apply(simp_all add: alpha_gen)
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  done
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   150
ef8a2b0b237a Ported existing part of LF to new permutations and alphas.
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   151
lemma perm_rsp[quot_respect]:
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  "(op = ===> alpha_rkind ===> alpha_rkind) permute permute"
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  "(op = ===> alpha_rty ===> alpha_rty) permute permute"
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   154
  "(op = ===> alpha_rtrm ===> alpha_rtrm) permute permute"
992
74e9a580448c equivariance of rfv and alpha.
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  by (simp_all add:alpha_eqvt)
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   156
ef8a2b0b237a Ported existing part of LF to new permutations and alphas.
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   157
lemma tconst_rsp[quot_respect]: 
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  "(op = ===> alpha_rty) TConst TConst"
38eb2bd9ad3a LF renaming part 3 (proper names of alpha equvalences)
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   159
  apply (auto intro: alpha_rkind_alpha_rty_alpha_rtrm.intros) done
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   160
lemma tapp_rsp[quot_respect]: 
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   161
  "(alpha_rty ===> alpha_rtrm ===> alpha_rty) TApp TApp" 
38eb2bd9ad3a LF renaming part 3 (proper names of alpha equvalences)
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   162
  apply (auto intro: alpha_rkind_alpha_rty_alpha_rtrm.intros) done
985
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   163
lemma var_rsp[quot_respect]: 
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   164
  "(op = ===> alpha_rtrm) Var Var"
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   165
  apply (auto intro: alpha_rkind_alpha_rty_alpha_rtrm.intros) done
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   166
lemma app_rsp[quot_respect]: 
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   167
  "(alpha_rtrm ===> alpha_rtrm ===> alpha_rtrm) App App"
38eb2bd9ad3a LF renaming part 3 (proper names of alpha equvalences)
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   168
  apply (auto intro: alpha_rkind_alpha_rty_alpha_rtrm.intros) done
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   169
lemma const_rsp[quot_respect]: 
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   170
  "(op = ===> alpha_rtrm) Const Const"
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   171
  apply (auto intro: alpha_rkind_alpha_rty_alpha_rtrm.intros) done
992
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   172
74e9a580448c equivariance of rfv and alpha.
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   173
lemma kpi_rsp[quot_respect]: 
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   174
  "(alpha_rty ===> op = ===> alpha_rkind ===> alpha_rkind) KPi KPi"
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   175
  apply (auto intro: alpha_rkind_alpha_rty_alpha_rtrm.intros)
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   176
  apply (rule alpha_rkind_alpha_rty_alpha_rtrm.intros(2)) apply simp_all
993
5c0d9a507bcb Fixed the induction problem + some more proofs.
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diff changeset
   177
  apply (rule_tac x="0" in exI)
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   178
  apply (simp add: fresh_star_def fresh_zero_perm alpha_rfv alpha_gen)
993
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   179
  done
5c0d9a507bcb Fixed the induction problem + some more proofs.
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diff changeset
   180
992
74e9a580448c equivariance of rfv and alpha.
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   181
lemma tpi_rsp[quot_respect]: 
1237
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   182
  "(alpha_rty ===> op = ===> alpha_rty ===> alpha_rty) TPi TPi"
38eb2bd9ad3a LF renaming part 3 (proper names of alpha equvalences)
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diff changeset
   183
  apply (auto intro: alpha_rkind_alpha_rty_alpha_rtrm.intros)
38eb2bd9ad3a LF renaming part 3 (proper names of alpha equvalences)
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diff changeset
   184
  apply (rule alpha_rkind_alpha_rty_alpha_rtrm.intros(5)) apply simp_all
993
5c0d9a507bcb Fixed the induction problem + some more proofs.
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parents: 992
diff changeset
   185
  apply (rule_tac x="0" in exI)
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parents: 1022
diff changeset
   186
  apply (simp add: fresh_star_def fresh_zero_perm alpha_rfv alpha_gen)
993
5c0d9a507bcb Fixed the induction problem + some more proofs.
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parents: 992
diff changeset
   187
  done
985
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   188
lemma lam_rsp[quot_respect]: 
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   189
  "(alpha_rty ===> op = ===> alpha_rtrm ===> alpha_rtrm) Lam Lam"
38eb2bd9ad3a LF renaming part 3 (proper names of alpha equvalences)
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diff changeset
   190
  apply (auto intro: alpha_rkind_alpha_rty_alpha_rtrm.intros)
38eb2bd9ad3a LF renaming part 3 (proper names of alpha equvalences)
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diff changeset
   191
  apply (rule alpha_rkind_alpha_rty_alpha_rtrm.intros(9)) apply simp_all
993
5c0d9a507bcb Fixed the induction problem + some more proofs.
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parents: 992
diff changeset
   192
  apply (rule_tac x="0" in exI)
1027
163d6917af62 LF ported to alpha_gen, equivp solved and one of the missing proofs in support<-> fv solved. Still some supp properties left.
Cezary Kaliszyk <kaliszyk@in.tum.de>
parents: 1022
diff changeset
   193
  apply (simp add: fresh_star_def fresh_zero_perm alpha_rfv alpha_gen)
993
5c0d9a507bcb Fixed the induction problem + some more proofs.
Cezary Kaliszyk <kaliszyk@in.tum.de>
parents: 992
diff changeset
   194
  done
992
74e9a580448c equivariance of rfv and alpha.
Cezary Kaliszyk <kaliszyk@in.tum.de>
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diff changeset
   195
1236
ca3c69545a78 LF renaming part 2 (proper fv functions)
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diff changeset
   196
lemma fv_rty_rsp[quot_respect]: 
1237
38eb2bd9ad3a LF renaming part 3 (proper names of alpha equvalences)
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diff changeset
   197
  "(alpha_rty ===> op =) fv_rty fv_rty"
985
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   198
  by (simp add: alpha_rfv)
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diff changeset
   199
lemma fv_rkind_rsp[quot_respect]:
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diff changeset
   200
  "(alpha_rkind ===> op =) fv_rkind fv_rkind"
985
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   201
  by (simp add: alpha_rfv)
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diff changeset
   202
lemma fv_rtrm_rsp[quot_respect]:
1237
38eb2bd9ad3a LF renaming part 3 (proper names of alpha equvalences)
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diff changeset
   203
  "(alpha_rtrm ===> op =) fv_rtrm fv_rtrm"
985
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   204
  by (simp add: alpha_rfv)
ef8a2b0b237a Ported existing part of LF to new permutations and alphas.
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   205
1234
1240d5eb275d LF renaming part1.
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   206
thm rkind_rty_rtrm.induct
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   207
lemmas kind_ty_trm_induct = rkind_rty_rtrm.induct[quot_lifted]
985
ef8a2b0b237a Ported existing part of LF to new permutations and alphas.
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diff changeset
   208
1234
1240d5eb275d LF renaming part1.
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   209
thm rkind_rty_rtrm.inducts
1240
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diff changeset
   210
lemmas kind_ty_trm_inducts = rkind_rty_rtrm.inducts[quot_lifted]
994
333c24bd595d More in the LF example in the new nominal way, all is clear until support.
Cezary Kaliszyk <kaliszyk@in.tum.de>
parents: 993
diff changeset
   211
1240
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diff changeset
   212
instantiation kind and ty and trm :: pt
985
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diff changeset
   213
begin
ef8a2b0b237a Ported existing part of LF to new permutations and alphas.
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   214
ef8a2b0b237a Ported existing part of LF to new permutations and alphas.
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diff changeset
   215
quotient_definition
1240
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parents: 1239
diff changeset
   216
  "permute_kind :: perm \<Rightarrow> kind \<Rightarrow> kind"
1139
c4001cda9da3 renamed 'as' to 'is' everywhere.
Cezary Kaliszyk <kaliszyk@in.tum.de>
parents: 1129
diff changeset
   217
is
1234
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Cezary Kaliszyk <kaliszyk@in.tum.de>
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diff changeset
   218
  "permute :: perm \<Rightarrow> rkind \<Rightarrow> rkind"
985
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parents:
diff changeset
   219
ef8a2b0b237a Ported existing part of LF to new permutations and alphas.
Cezary Kaliszyk <kaliszyk@in.tum.de>
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diff changeset
   220
quotient_definition
1240
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diff changeset
   221
  "permute_ty :: perm \<Rightarrow> ty \<Rightarrow> ty"
1139
c4001cda9da3 renamed 'as' to 'is' everywhere.
Cezary Kaliszyk <kaliszyk@in.tum.de>
parents: 1129
diff changeset
   222
is
1234
1240d5eb275d LF renaming part1.
Cezary Kaliszyk <kaliszyk@in.tum.de>
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diff changeset
   223
  "permute :: perm \<Rightarrow> rty \<Rightarrow> rty"
985
ef8a2b0b237a Ported existing part of LF to new permutations and alphas.
Cezary Kaliszyk <kaliszyk@in.tum.de>
parents:
diff changeset
   224
ef8a2b0b237a Ported existing part of LF to new permutations and alphas.
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quotient_definition
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  "permute_trm :: perm \<Rightarrow> trm \<Rightarrow> trm"
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is
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  "permute :: perm \<Rightarrow> rtrm \<Rightarrow> rtrm"
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lemmas permute_ktt[simp] = permute_rkind_permute_rty_permute_rtrm.simps[quot_lifted]
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lemma perm_zero_ok: "0 \<bullet> (x :: kind) = x \<and> 0 \<bullet> (y :: ty) = y \<and> 0 \<bullet> (z :: trm) = z"
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apply (induct rule: kind_ty_trm_induct)
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apply (simp_all)
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done
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lemma perm_add_ok:
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  "((p + q) \<bullet> (x1 :: kind) = (p \<bullet> q \<bullet> x1))"
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  "((p + q) \<bullet> (x2 :: ty) = p \<bullet> q \<bullet> x2)"
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  "((p + q) \<bullet> (x3 :: trm) = p \<bullet> q \<bullet> x3)"
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apply (induct x1 and x2 and x3 rule: kind_ty_trm_inducts)
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apply (simp_all)
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done
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ef8a2b0b237a Ported existing part of LF to new permutations and alphas.
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instance
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apply default
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apply (simp_all add: perm_zero_ok perm_add_ok)
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done
ef8a2b0b237a Ported existing part of LF to new permutations and alphas.
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ef8a2b0b237a Ported existing part of LF to new permutations and alphas.
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end
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lemmas ALPHA_kind_ALPHA_ty_ALPHA_trm_inducts = alpha_rkind_alpha_rty_alpha_rtrm.inducts[unfolded alpha_gen, quot_lifted, folded alpha_gen]
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lemmas kind_ty_trm_INJECT = alpha_rkind_alpha_rty_alpha_rtrm_inj[unfolded alpha_gen, quot_lifted, folded alpha_gen]
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lemmas fv_kind_ty_trm = fv_rkind_fv_rty_fv_rtrm.simps[quot_lifted]
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lemmas fv_eqvt = rfv_eqvt[quot_lifted]
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lemma supp_rkind_rty_rtrm_easy:
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 "supp TYP = {}"
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 "supp (TCONST i) = {atom i}"
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 "supp (TAPP A M) = supp A \<union> supp M"
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 "supp (CONS i) = {atom i}"
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 "supp (VAR x) = {atom x}"
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 "supp (APP M N) = supp M \<union> supp N"
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apply (simp_all add: supp_def permute_ktt)
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apply (simp_all only: kind_ty_trm_INJECT)
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apply (simp_all only: supp_at_base[simplified supp_def])
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apply (simp_all add: Collect_imp_eq Collect_neg_eq)
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done
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lemma supp_bind:
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  "(supp (atom na, (ty, ki))) supports (KPI ty na ki)"
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  "(supp (atom na, (ty, ty2))) supports (TPI ty na ty2)"
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  "(supp (atom na, (ty, rtrm))) supports (LAM ty na rtrm)"
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apply(simp_all add: supports_def)
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apply(fold fresh_def)
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apply(simp_all add: fresh_Pair swap_fresh_fresh)
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apply(clarify)
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apply(subst swap_at_base_simps(3))
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apply(simp_all add: fresh_atom)
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apply(clarify)
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apply(subst swap_at_base_simps(3))
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apply(simp_all add: fresh_atom)
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apply(clarify)
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apply(subst swap_at_base_simps(3))
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apply(simp_all add: fresh_atom)
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done
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   290
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lemma kind_ty_trm_fs:
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  "finite (supp (x\<Colon>kind))"
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  "finite (supp (y\<Colon>ty))"
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  "finite (supp (z\<Colon>trm))"
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apply(induct x and y and z rule: kind_ty_trm_inducts)
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1240d5eb275d LF renaming part1.
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apply(simp_all add: supp_rkind_rty_rtrm_easy)
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3f227ed7e3e5 More proofs in the LF example.
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apply(rule supports_finite)
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apply(rule supp_bind(1))
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   299
apply(simp add: supp_Pair supp_atom)
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apply(rule supports_finite)
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apply(rule supp_bind(2))
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apply(simp add: supp_Pair supp_atom)
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apply(rule supports_finite)
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apply(rule supp_bind(3))
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   305
apply(simp add: supp_Pair supp_atom)
3f227ed7e3e5 More proofs in the LF example.
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   306
done
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   307
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   308
instance kind and ty and trm :: fs
1002
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   309
apply(default)
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   310
apply(simp_all only: kind_ty_trm_fs)
1002
3f227ed7e3e5 More proofs in the LF example.
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   311
done
3f227ed7e3e5 More proofs in the LF example.
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   312
994
333c24bd595d More in the LF example in the new nominal way, all is clear until support.
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   313
lemma supp_fv:
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ca3c69545a78 LF renaming part 2 (proper fv functions)
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   314
 "supp t1 = fv_kind t1"
ca3c69545a78 LF renaming part 2 (proper fv functions)
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   315
 "supp t2 = fv_ty t2"
ca3c69545a78 LF renaming part 2 (proper fv functions)
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   316
 "supp t3 = fv_trm t3"
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   317
apply(induct t1 and t2 and t3 rule: kind_ty_trm_inducts)
1234
1240d5eb275d LF renaming part1.
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   318
apply (simp_all add: supp_rkind_rty_rtrm_easy)
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ca3c69545a78 LF renaming part 2 (proper fv functions)
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diff changeset
   319
apply (simp_all add: fv_kind_ty_trm)
1234
1240d5eb275d LF renaming part1.
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   320
apply(subgoal_tac "supp (KPI rty name rkind) = supp rty \<union> supp (Abs {atom name} rkind)")
1027
163d6917af62 LF ported to alpha_gen, equivp solved and one of the missing proofs in support<-> fv solved. Still some supp properties left.
Cezary Kaliszyk <kaliszyk@in.tum.de>
parents: 1022
diff changeset
   321
apply(simp add: supp_Abs Set.Un_commute)
1002
3f227ed7e3e5 More proofs in the LF example.
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   322
apply(simp (no_asm) add: supp_def)
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diff changeset
   323
apply(simp add: kind_ty_trm_INJECT)
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diff changeset
   324
apply(simp add: Abs_eq_iff)
aaac8274f08c The alpha-equivalence relation for let-rec. Not sure if correct...
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diff changeset
   325
apply(simp add: alpha_gen)
1045
7a975641efbc another adaptation for the eqvt-change
Christian Urban <urbanc@in.tum.de>
parents: 1036
diff changeset
   326
apply(simp add: Collect_imp_eq Collect_neg_eq Set.Un_commute insert_eqvt empty_eqvt atom_eqvt)
7a975641efbc another adaptation for the eqvt-change
Christian Urban <urbanc@in.tum.de>
parents: 1036
diff changeset
   327
apply(simp add: supp_eqvt[symmetric] fv_eqvt[symmetric])
1234
1240d5eb275d LF renaming part1.
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diff changeset
   328
apply(subgoal_tac "supp (TPI rty1 name rty2) = supp rty1 \<union> supp (Abs {atom name} rty2)")
1036
aaac8274f08c The alpha-equivalence relation for let-rec. Not sure if correct...
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diff changeset
   329
apply(simp add: supp_Abs Set.Un_commute)
aaac8274f08c The alpha-equivalence relation for let-rec. Not sure if correct...
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diff changeset
   330
apply(simp (no_asm) add: supp_def)
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diff changeset
   331
apply(simp add: kind_ty_trm_INJECT)
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aaac8274f08c The alpha-equivalence relation for let-rec. Not sure if correct...
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diff changeset
   332
apply(simp add: Abs_eq_iff)
aaac8274f08c The alpha-equivalence relation for let-rec. Not sure if correct...
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diff changeset
   333
apply(simp add: alpha_gen)
1045
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Christian Urban <urbanc@in.tum.de>
parents: 1036
diff changeset
   334
apply(simp add: supp_eqvt[symmetric] fv_eqvt[symmetric] insert_eqvt empty_eqvt atom_eqvt)
1002
3f227ed7e3e5 More proofs in the LF example.
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   335
apply(simp add: Collect_imp_eq Collect_neg_eq Set.Un_commute)
1234
1240d5eb275d LF renaming part1.
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diff changeset
   336
apply(subgoal_tac "supp (LAM rty name rtrm) = supp rty \<union> supp (Abs {atom name} rtrm)")
1036
aaac8274f08c The alpha-equivalence relation for let-rec. Not sure if correct...
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diff changeset
   337
apply(simp add: supp_Abs Set.Un_commute)
aaac8274f08c The alpha-equivalence relation for let-rec. Not sure if correct...
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diff changeset
   338
apply(simp (no_asm) add: supp_def)
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diff changeset
   339
apply(simp add: kind_ty_trm_INJECT)
1036
aaac8274f08c The alpha-equivalence relation for let-rec. Not sure if correct...
Cezary Kaliszyk <kaliszyk@in.tum.de>
parents: 1027
diff changeset
   340
apply(simp add: Abs_eq_iff)
aaac8274f08c The alpha-equivalence relation for let-rec. Not sure if correct...
Cezary Kaliszyk <kaliszyk@in.tum.de>
parents: 1027
diff changeset
   341
apply(simp add: alpha_gen)
1045
7a975641efbc another adaptation for the eqvt-change
Christian Urban <urbanc@in.tum.de>
parents: 1036
diff changeset
   342
apply(simp add: supp_eqvt[symmetric] fv_eqvt[symmetric] insert_eqvt empty_eqvt atom_eqvt)
1036
aaac8274f08c The alpha-equivalence relation for let-rec. Not sure if correct...
Cezary Kaliszyk <kaliszyk@in.tum.de>
parents: 1027
diff changeset
   343
apply(simp add: Collect_imp_eq Collect_neg_eq Set.Un_commute)
aaac8274f08c The alpha-equivalence relation for let-rec. Not sure if correct...
Cezary Kaliszyk <kaliszyk@in.tum.de>
parents: 1027
diff changeset
   344
done
994
333c24bd595d More in the LF example in the new nominal way, all is clear until support.
Cezary Kaliszyk <kaliszyk@in.tum.de>
parents: 993
diff changeset
   345
1036
aaac8274f08c The alpha-equivalence relation for let-rec. Not sure if correct...
Cezary Kaliszyk <kaliszyk@in.tum.de>
parents: 1027
diff changeset
   346
(* Not needed anymore *)
1027
163d6917af62 LF ported to alpha_gen, equivp solved and one of the missing proofs in support<-> fv solved. Still some supp properties left.
Cezary Kaliszyk <kaliszyk@in.tum.de>
parents: 1022
diff changeset
   347
lemma supp_kpi_pre: "supp (KPI A x K) = (supp (Abs {atom x} K)) \<union> supp A"
1240
9348581d7d92 Rename also the lifted types to non-capital.
Cezary Kaliszyk <kaliszyk@in.tum.de>
parents: 1239
diff changeset
   348
apply (simp add: permute_set_eq supp_def Abs_eq_iff kind_ty_trm_INJECT)
1036
aaac8274f08c The alpha-equivalence relation for let-rec. Not sure if correct...
Cezary Kaliszyk <kaliszyk@in.tum.de>
parents: 1027
diff changeset
   349
apply (simp add: alpha_gen supp_fv)
aaac8274f08c The alpha-equivalence relation for let-rec. Not sure if correct...
Cezary Kaliszyk <kaliszyk@in.tum.de>
parents: 1027
diff changeset
   350
apply (simp add: Collect_imp_eq Collect_neg_eq add: atom_eqvt Set.Un_commute)
997
b7d259ded92e Ported LF to the generic lambda and solved the simpler _supp cases.
Cezary Kaliszyk <kaliszyk@in.tum.de>
parents: 994
diff changeset
   351
done
994
333c24bd595d More in the LF example in the new nominal way, all is clear until support.
Cezary Kaliszyk <kaliszyk@in.tum.de>
parents: 993
diff changeset
   352
1234
1240d5eb275d LF renaming part1.
Cezary Kaliszyk <kaliszyk@in.tum.de>
parents: 1219
diff changeset
   353
lemma supp_rkind_rty_rtrm:
994
333c24bd595d More in the LF example in the new nominal way, all is clear until support.
Cezary Kaliszyk <kaliszyk@in.tum.de>
parents: 993
diff changeset
   354
 "supp TYP = {}"
333c24bd595d More in the LF example in the new nominal way, all is clear until support.
Cezary Kaliszyk <kaliszyk@in.tum.de>
parents: 993
diff changeset
   355
 "supp (KPI A x K) = supp A \<union> (supp K - {atom x})"
333c24bd595d More in the LF example in the new nominal way, all is clear until support.
Cezary Kaliszyk <kaliszyk@in.tum.de>
parents: 993
diff changeset
   356
 "supp (TCONST i) = {atom i}"
333c24bd595d More in the LF example in the new nominal way, all is clear until support.
Cezary Kaliszyk <kaliszyk@in.tum.de>
parents: 993
diff changeset
   357
 "supp (TAPP A M) = supp A \<union> supp M"
333c24bd595d More in the LF example in the new nominal way, all is clear until support.
Cezary Kaliszyk <kaliszyk@in.tum.de>
parents: 993
diff changeset
   358
 "supp (TPI A x B) = supp A \<union> (supp B - {atom x})"
333c24bd595d More in the LF example in the new nominal way, all is clear until support.
Cezary Kaliszyk <kaliszyk@in.tum.de>
parents: 993
diff changeset
   359
 "supp (CONS i) = {atom i}"
333c24bd595d More in the LF example in the new nominal way, all is clear until support.
Cezary Kaliszyk <kaliszyk@in.tum.de>
parents: 993
diff changeset
   360
 "supp (VAR x) = {atom x}"
333c24bd595d More in the LF example in the new nominal way, all is clear until support.
Cezary Kaliszyk <kaliszyk@in.tum.de>
parents: 993
diff changeset
   361
 "supp (APP M N) = supp M \<union> supp N"
333c24bd595d More in the LF example in the new nominal way, all is clear until support.
Cezary Kaliszyk <kaliszyk@in.tum.de>
parents: 993
diff changeset
   362
 "supp (LAM A x M) = supp A \<union> (supp M - {atom x})"
1234
1240d5eb275d LF renaming part1.
Cezary Kaliszyk <kaliszyk@in.tum.de>
parents: 1219
diff changeset
   363
apply (simp_all only: supp_rkind_rty_rtrm_easy)
1236
ca3c69545a78 LF renaming part 2 (proper fv functions)
Cezary Kaliszyk <kaliszyk@in.tum.de>
parents: 1234
diff changeset
   364
apply (simp_all only: supp_fv fv_kind_ty_trm)
1036
aaac8274f08c The alpha-equivalence relation for let-rec. Not sure if correct...
Cezary Kaliszyk <kaliszyk@in.tum.de>
parents: 1027
diff changeset
   365
done
994
333c24bd595d More in the LF example in the new nominal way, all is clear until support.
Cezary Kaliszyk <kaliszyk@in.tum.de>
parents: 993
diff changeset
   366
985
ef8a2b0b237a Ported existing part of LF to new permutations and alphas.
Cezary Kaliszyk <kaliszyk@in.tum.de>
parents:
diff changeset
   367
end
ef8a2b0b237a Ported existing part of LF to new permutations and alphas.
Cezary Kaliszyk <kaliszyk@in.tum.de>
parents:
diff changeset
   368
ef8a2b0b237a Ported existing part of LF to new permutations and alphas.
Cezary Kaliszyk <kaliszyk@in.tum.de>
parents:
diff changeset
   369
ef8a2b0b237a Ported existing part of LF to new permutations and alphas.
Cezary Kaliszyk <kaliszyk@in.tum.de>
parents:
diff changeset
   370
ef8a2b0b237a Ported existing part of LF to new permutations and alphas.
Cezary Kaliszyk <kaliszyk@in.tum.de>
parents:
diff changeset
   371