author | Christian Urban <urbanc@in.tum.de> |
Fri, 27 Nov 2009 13:59:52 +0100 | |
changeset 420 | dcfe009c98aa |
parent 419 | b1cd040ff5f7 |
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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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fixes t::"rlam" |
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shows "t \<approx> t" |
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apply(induct t rule: rlam.induct) |
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apply(simp add: a1) |
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apply(simp add: a2) |
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apply(rule a3) |
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apply(subst pt_swap_bij'') |
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apply(rule pt_name_inst) |
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apply(rule at_name_inst) |
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apply(simp) |
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apply(simp) |
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done |
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lemma alpha_EQUIV: |
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shows "EQUIV alpha" |
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sorry |
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quotient lam = rlam / alpha |
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apply(rule alpha_EQUIV) |
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done |
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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 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: |
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"(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: |
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"(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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|
151 |
|
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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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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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|
247 | 165 |
lemma rfv_rsp: "(alpha ===> op =) rfv rfv" |
166 |
sorry |
|
217
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|
167 |
|
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lemma rvar_inject: "rVar a \<approx> rVar b = (a = b)" |
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apply (auto) |
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apply (erule alpha.cases) |
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apply (simp_all add: rlam.inject alpha_refl) |
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done |
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|
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ML {* val qty = @{typ "lam"} *} |
247 | 175 |
ML {* val defs = @{thms Var_def App_def Lam_def perm_lam_def fv_def} *} |
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ML {* val rsp_thms = @{thms perm_rsp fresh_rsp rVar_rsp rApp_rsp rLam_rsp rfv_rsp} @ |
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@{thms ho_all_prs ho_ex_prs} *} |
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|
370
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ML {* val (rty, rel, rel_refl, rel_eqv) = lookup_quot_data @{context} qty *} |
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ML {* val consts = lookup_quot_consts defs *} |
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ML {* val (trans2, reps_same, absrep, quot) = lookup_quot_thms @{context} "lam" *} |
419
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|
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ML {* fun lift_tac_lam lthy t = lift_tac lthy t [rel_eqv] rty [quot] rsp_thms defs *} |
237 | 183 |
|
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lemma pi_var: "(pi\<Colon>('x \<times> 'x) list) \<bullet> Var a = Var (pi \<bullet> a)" |
370
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apply (tactic {* lift_tac_lam @{context} @{thm pi_var_com} 1 *}) |
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|
186 |
done |
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|
187 |
|
376
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lemma pi_app: "(pi\<Colon>('x \<times> 'x) list) \<bullet> App (x\<Colon>lam) (xa\<Colon>lam) = App (pi \<bullet> x) (pi \<bullet> xa)" |
370
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|
189 |
apply (tactic {* lift_tac_lam @{context} @{thm pi_app_com} 1 *}) |
09e28d4c19aa
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|
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done |
376
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|
191 |
|
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|
192 |
lemma pi_lam: "(pi\<Colon>('x \<times> 'x) list) \<bullet> Lam (a\<Colon>name) (x\<Colon>lam) = Lam (pi \<bullet> a) (pi \<bullet> x)" |
370
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|
193 |
apply (tactic {* lift_tac_lam @{context} @{thm pi_lam_com} 1 *}) |
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|
194 |
done |
249
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|
195 |
|
376
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|
196 |
lemma fv_var: "fv (Var (a\<Colon>name)) = {a}" |
370
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|
197 |
apply (tactic {* lift_tac_lam @{context} @{thm rfv_var} 1 *}) |
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|
198 |
done |
376
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|
199 |
|
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|
200 |
lemma fv_app: "fv (App (x\<Colon>lam) (xa\<Colon>lam)) = fv x \<union> fv xa" |
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|
201 |
apply (tactic {* lift_tac_lam @{context} @{thm rfv_app} 1 *}) |
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|
202 |
done |
249
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|
203 |
|
376
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|
204 |
lemma fv_lam: "fv (Lam (a\<Colon>name) (x\<Colon>lam)) = fv x - {a}" |
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|
205 |
apply (tactic {* lift_tac_lam @{context} @{thm rfv_lam} 1 *}) |
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changeset
|
206 |
done |
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diff
changeset
|
207 |
|
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|
208 |
lemma a1: "(a\<Colon>name) = (b\<Colon>name) \<Longrightarrow> Var a = Var b" |
370
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diff
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|
209 |
apply (tactic {* lift_tac_lam @{context} @{thm a1} 1 *}) |
09e28d4c19aa
Lambda & SOLVED' for new quotient_tac
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parents:
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diff
changeset
|
210 |
done |
376
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diff
changeset
|
211 |
|
e99c0334d8bf
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diff
changeset
|
212 |
lemma a2: "\<lbrakk>(x\<Colon>lam) = (xa\<Colon>lam); (xb\<Colon>lam) = (xc\<Colon>lam)\<rbrakk> \<Longrightarrow> App x xb = App xa xc" |
370
09e28d4c19aa
Lambda & SOLVED' for new quotient_tac
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diff
changeset
|
213 |
apply (tactic {* lift_tac_lam @{context} @{thm a2} 1 *}) |
09e28d4c19aa
Lambda & SOLVED' for new quotient_tac
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parents:
292
diff
changeset
|
214 |
done |
376
e99c0334d8bf
lambda_prs and cleaning the existing examples.
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parents:
370
diff
changeset
|
215 |
|
e99c0334d8bf
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370
diff
changeset
|
216 |
lemma a3: "\<lbrakk>(x\<Colon>lam) = [(a\<Colon>name, b\<Colon>name)] \<bullet> (xa\<Colon>lam); a \<notin> fv (Lam b x)\<rbrakk> \<Longrightarrow> Lam a x = Lam b xa" |
e99c0334d8bf
lambda_prs and cleaning the existing examples.
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370
diff
changeset
|
217 |
apply (tactic {* lift_tac_lam @{context} @{thm a3} 1 *}) |
e99c0334d8bf
lambda_prs and cleaning the existing examples.
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parents:
370
diff
changeset
|
218 |
done |
286 | 219 |
|
378
86fba2c4eeef
All examples work again.
Cezary Kaliszyk <kaliszyk@in.tum.de>
parents:
376
diff
changeset
|
220 |
lemma alpha_cases: "\<lbrakk>a1 = a2; \<And>a b. \<lbrakk>a1 = Var a; a2 = Var b; a = b\<rbrakk> \<Longrightarrow> P; |
86fba2c4eeef
All examples work again.
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diff
changeset
|
221 |
\<And>x xa xb xc. \<lbrakk>a1 = App x xb; a2 = App xa xc; x = xa; xb = xc\<rbrakk> \<Longrightarrow> P; |
86fba2c4eeef
All examples work again.
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diff
changeset
|
222 |
\<And>x a b xa. \<lbrakk>a1 = Lam a x; a2 = Lam b xa; x = [(a, b)] \<bullet> xa; a \<notin> fv (Lam b x)\<rbrakk> \<Longrightarrow> P\<rbrakk> |
370
09e28d4c19aa
Lambda & SOLVED' for new quotient_tac
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diff
changeset
|
223 |
\<Longrightarrow> P" |
378
86fba2c4eeef
All examples work again.
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376
diff
changeset
|
224 |
apply (tactic {* lift_tac_lam @{context} @{thm alpha.cases} 1 *}) |
86fba2c4eeef
All examples work again.
Cezary Kaliszyk <kaliszyk@in.tum.de>
parents:
376
diff
changeset
|
225 |
done |
86fba2c4eeef
All examples work again.
Cezary Kaliszyk <kaliszyk@in.tum.de>
parents:
376
diff
changeset
|
226 |
|
86fba2c4eeef
All examples work again.
Cezary Kaliszyk <kaliszyk@in.tum.de>
parents:
376
diff
changeset
|
227 |
lemma alpha_induct: "\<lbrakk>(qx\<Colon>lam) = (qxa\<Colon>lam); \<And>(a\<Colon>name) b\<Colon>name. a = b \<Longrightarrow> (qxb\<Colon>lam \<Rightarrow> lam \<Rightarrow> bool) (Var a) (Var b); |
370
09e28d4c19aa
Lambda & SOLVED' for new quotient_tac
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diff
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|
228 |
\<And>(x\<Colon>lam) (xa\<Colon>lam) (xb\<Colon>lam) xc\<Colon>lam. \<lbrakk>x = xa; qxb x xa; xb = xc; qxb xb xc\<rbrakk> \<Longrightarrow> qxb (App x xb) (App xa xc); |
09e28d4c19aa
Lambda & SOLVED' for new quotient_tac
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diff
changeset
|
229 |
\<And>(x\<Colon>lam) (a\<Colon>name) (b\<Colon>name) xa\<Colon>lam. |
09e28d4c19aa
Lambda & SOLVED' for new quotient_tac
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diff
changeset
|
230 |
\<lbrakk>x = [(a, b)] \<bullet> xa; qxb x ([(a, b)] \<bullet> xa); a \<notin> fv (Lam b x)\<rbrakk> \<Longrightarrow> qxb (Lam a x) (Lam b xa)\<rbrakk> |
09e28d4c19aa
Lambda & SOLVED' for new quotient_tac
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changeset
|
231 |
\<Longrightarrow> qxb qx qxa" |
378
86fba2c4eeef
All examples work again.
Cezary Kaliszyk <kaliszyk@in.tum.de>
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376
diff
changeset
|
232 |
apply (tactic {* lift_tac_lam @{context} @{thm alpha.induct} 1 *}) |
86fba2c4eeef
All examples work again.
Cezary Kaliszyk <kaliszyk@in.tum.de>
parents:
376
diff
changeset
|
233 |
done |
252
e30997c88050
Regularize for equalities and a better tactic. "alpha.cases" now lifts.
Cezary Kaliszyk <kaliszyk@in.tum.de>
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251
diff
changeset
|
234 |
|
376
e99c0334d8bf
lambda_prs and cleaning the existing examples.
Cezary Kaliszyk <kaliszyk@in.tum.de>
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diff
changeset
|
235 |
lemma var_inject: "(Var a = Var b) = (a = b)" |
370
09e28d4c19aa
Lambda & SOLVED' for new quotient_tac
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diff
changeset
|
236 |
apply (tactic {* lift_tac_lam @{context} @{thm rvar_inject} 1 *}) |
09e28d4c19aa
Lambda & SOLVED' for new quotient_tac
Cezary Kaliszyk <kaliszyk@in.tum.de>
parents:
292
diff
changeset
|
237 |
done |
285
8ebdef196fd5
Infrastructure for polymorphic types
Cezary Kaliszyk <kaliszyk@in.tum.de>
parents:
273
diff
changeset
|
238 |
|
249
7dec34d12328
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247
diff
changeset
|
239 |
lemma var_supp: |
7dec34d12328
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diff
changeset
|
240 |
shows "supp (Var a) = ((supp a)::name set)" |
7dec34d12328
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diff
changeset
|
241 |
apply(simp add: supp_def) |
7dec34d12328
added some facts about fresh and support of lam
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247
diff
changeset
|
242 |
apply(simp add: pi_var) |
7dec34d12328
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247
diff
changeset
|
243 |
apply(simp add: var_inject) |
7dec34d12328
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diff
changeset
|
244 |
done |
7dec34d12328
added some facts about fresh and support of lam
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247
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changeset
|
245 |
|
7dec34d12328
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247
diff
changeset
|
246 |
lemma var_fresh: |
7dec34d12328
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247
diff
changeset
|
247 |
fixes a::"name" |
7dec34d12328
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changeset
|
248 |
shows "(a\<sharp>(Var b)) = (a\<sharp>b)" |
7dec34d12328
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changeset
|
249 |
apply(simp add: fresh_def) |
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changeset
|
250 |
apply(simp add: var_supp) |
7dec34d12328
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changeset
|
251 |
done |
247 | 252 |
|
253 |
||
254 |
||
255 |
||
256 |
||
257 |
||
258 |
||
271
1b57f99737fe
Alpha.induct now lifts automatically.
Cezary Kaliszyk <kaliszyk@in.tum.de>
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(* Construction Site code *) |
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237 | 273 |
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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||
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fun |
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option_rel |
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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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||
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declare [[map noption = (option_map, option_rel)]] |
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||
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Removed unused things from QuotMain.
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parents:
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lemma "option_map id = id" |
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parents:
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sorry |
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237 | 290 |
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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using q |
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apply (unfold QUOTIENT_def) |
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apply (case_tac "a :: 'b noption") |
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apply (simp) |
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apply (simp) |
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apply (case_tac "a :: 'b noption") |
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apply (simp only: option_map.simps) |
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apply (subst option_rel.simps) |
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(* Simp starts hanging so don't know how to continue *) |
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sorry |
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