src/HOL/MicroJava/DFA/Err.thy
author haftmann
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(*  Title:      HOL/MicroJava/BV/Err.thy
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    Author:     Tobias Nipkow
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    Copyright   2000 TUM
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*)
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header {* \isaheader{The Error Type} *}
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theory Err
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imports Semilat
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begin
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datatype 'a err = Err | OK 'a
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types 'a ebinop = "'a \<Rightarrow> 'a \<Rightarrow> 'a err"
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      'a esl =    "'a set * 'a ord * 'a ebinop"
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primrec ok_val :: "'a err \<Rightarrow> 'a" where
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  "ok_val (OK x) = x"
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definition lift :: "('a \<Rightarrow> 'b err) \<Rightarrow> ('a err \<Rightarrow> 'b err)" where
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"lift f e == case e of Err \<Rightarrow> Err | OK x \<Rightarrow> f x"
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definition lift2 :: "('a \<Rightarrow> 'b \<Rightarrow> 'c err) \<Rightarrow> 'a err \<Rightarrow> 'b err \<Rightarrow> 'c err" where
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"lift2 f e1 e2 ==
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 case e1 of Err  \<Rightarrow> Err
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          | OK x \<Rightarrow> (case e2 of Err \<Rightarrow> Err | OK y \<Rightarrow> f x y)"
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definition le :: "'a ord \<Rightarrow> 'a err ord" where
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"le r e1 e2 ==
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        case e2 of Err \<Rightarrow> True |
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                   OK y \<Rightarrow> (case e1 of Err \<Rightarrow> False | OK x \<Rightarrow> x <=_r y)"
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definition sup :: "('a \<Rightarrow> 'b \<Rightarrow> 'c) \<Rightarrow> ('a err \<Rightarrow> 'b err \<Rightarrow> 'c err)" where
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"sup f == lift2(%x y. OK(x +_f y))"
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definition err :: "'a set \<Rightarrow> 'a err set" where
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"err A == insert Err {x . ? y:A. x = OK y}"
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definition esl :: "'a sl \<Rightarrow> 'a esl" where
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"esl == %(A,r,f). (A,r, %x y. OK(f x y))"
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definition sl :: "'a esl \<Rightarrow> 'a err sl" where
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"sl == %(A,r,f). (err A, le r, lift2 f)"
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abbreviation
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  err_semilat :: "'a esl \<Rightarrow> bool"
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  where "err_semilat L == semilat(Err.sl L)"
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consts
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  strict  :: "('a \<Rightarrow> 'b err) \<Rightarrow> ('a err \<Rightarrow> 'b err)"
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primrec
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  "strict f Err    = Err"
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  "strict f (OK x) = f x"
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lemma strict_Some [simp]: 
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  "(strict f x = OK y) = (\<exists> z. x = OK z \<and> f z = OK y)"
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  by (cases x, auto)
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lemma not_Err_eq:
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  "(x \<noteq> Err) = (\<exists>a. x = OK a)" 
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  by (cases x) auto
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lemma not_OK_eq:
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  "(\<forall>y. x \<noteq> OK y) = (x = Err)"
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  by (cases x) auto  
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lemma unfold_lesub_err:
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  "e1 <=_(le r) e2 == le r e1 e2"
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  by (simp add: lesub_def)
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lemma le_err_refl:
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  "!x. x <=_r x \<Longrightarrow> e <=_(Err.le r) e"
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apply (unfold lesub_def Err.le_def)
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apply (simp split: err.split)
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done 
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lemma le_err_trans [rule_format]:
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  "order r \<Longrightarrow> e1 <=_(le r) e2 \<longrightarrow> e2 <=_(le r) e3 \<longrightarrow> e1 <=_(le r) e3"
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apply (unfold unfold_lesub_err le_def)
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apply (simp split: err.split)
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apply (blast intro: order_trans)
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done
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lemma le_err_antisym [rule_format]:
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  "order r \<Longrightarrow> e1 <=_(le r) e2 \<longrightarrow> e2 <=_(le r) e1 \<longrightarrow> e1=e2"
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apply (unfold unfold_lesub_err le_def)
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apply (simp split: err.split)
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apply (blast intro: order_antisym)
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done 
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lemma OK_le_err_OK:
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  "(OK x <=_(le r) OK y) = (x <=_r y)"
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  by (simp add: unfold_lesub_err le_def)
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lemma order_le_err [iff]:
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  "order(le r) = order r"
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apply (rule iffI)
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 apply (subst Semilat.order_def)
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 apply (blast dest: order_antisym OK_le_err_OK [THEN iffD2]
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              intro: order_trans OK_le_err_OK [THEN iffD1])
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apply (subst Semilat.order_def)
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apply (blast intro: le_err_refl le_err_trans le_err_antisym
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             dest: order_refl)
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done 
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lemma le_Err [iff]:  "e <=_(le r) Err"
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  by (simp add: unfold_lesub_err le_def)
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lemma Err_le_conv [iff]:
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 "Err <=_(le r) e  = (e = Err)"
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  by (simp add: unfold_lesub_err le_def  split: err.split)
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lemma le_OK_conv [iff]:
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  "e <=_(le r) OK x  =  (? y. e = OK y & y <=_r x)"
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  by (simp add: unfold_lesub_err le_def split: err.split)
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lemma OK_le_conv:
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 "OK x <=_(le r) e  =  (e = Err | (? y. e = OK y & x <=_r y))"
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  by (simp add: unfold_lesub_err le_def split: err.split)
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lemma top_Err [iff]: "top (le r) Err";
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  by (simp add: top_def)
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lemma OK_less_conv [rule_format, iff]:
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  "OK x <_(le r) e = (e=Err | (? y. e = OK y & x <_r y))"
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  by (simp add: lesssub_def lesub_def le_def split: err.split)
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lemma not_Err_less [rule_format, iff]:
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  "~(Err <_(le r) x)"
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  by (simp add: lesssub_def lesub_def le_def split: err.split)
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lemma semilat_errI [intro]:
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  assumes semilat: "semilat (A, r, f)"
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  shows "semilat(err A, Err.le r, lift2(%x y. OK(f x y)))"
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  apply(insert semilat)
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  apply (unfold semilat_Def closed_def plussub_def lesub_def 
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    lift2_def Err.le_def err_def)
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  apply (simp split: err.split)
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  done
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lemma err_semilat_eslI_aux:
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  assumes semilat: "semilat (A, r, f)"
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  shows "err_semilat(esl(A,r,f))"
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haftmann
parents:
diff changeset
   145
  apply (unfold sl_def esl_def)
1bc3b688548c backported parts of abstract byte code verifier from AFP/Jinja
haftmann
parents:
diff changeset
   146
  apply (simp add: semilat_errI[OF semilat])
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haftmann
parents:
diff changeset
   147
  done
1bc3b688548c backported parts of abstract byte code verifier from AFP/Jinja
haftmann
parents:
diff changeset
   148
1bc3b688548c backported parts of abstract byte code verifier from AFP/Jinja
haftmann
parents:
diff changeset
   149
lemma err_semilat_eslI [intro, simp]:
1bc3b688548c backported parts of abstract byte code verifier from AFP/Jinja
haftmann
parents:
diff changeset
   150
 "\<And>L. semilat L \<Longrightarrow> err_semilat(esl L)"
1bc3b688548c backported parts of abstract byte code verifier from AFP/Jinja
haftmann
parents:
diff changeset
   151
by(simp add: err_semilat_eslI_aux split_tupled_all)
1bc3b688548c backported parts of abstract byte code verifier from AFP/Jinja
haftmann
parents:
diff changeset
   152
1bc3b688548c backported parts of abstract byte code verifier from AFP/Jinja
haftmann
parents:
diff changeset
   153
lemma acc_err [simp, intro!]:  "acc r \<Longrightarrow> acc(le r)"
1bc3b688548c backported parts of abstract byte code verifier from AFP/Jinja
haftmann
parents:
diff changeset
   154
apply (unfold acc_def lesub_def le_def lesssub_def)
1bc3b688548c backported parts of abstract byte code verifier from AFP/Jinja
haftmann
parents:
diff changeset
   155
apply (simp add: wf_eq_minimal split: err.split)
1bc3b688548c backported parts of abstract byte code verifier from AFP/Jinja
haftmann
parents:
diff changeset
   156
apply clarify
1bc3b688548c backported parts of abstract byte code verifier from AFP/Jinja
haftmann
parents:
diff changeset
   157
apply (case_tac "Err : Q")
1bc3b688548c backported parts of abstract byte code verifier from AFP/Jinja
haftmann
parents:
diff changeset
   158
 apply blast
1bc3b688548c backported parts of abstract byte code verifier from AFP/Jinja
haftmann
parents:
diff changeset
   159
apply (erule_tac x = "{a . OK a : Q}" in allE)
1bc3b688548c backported parts of abstract byte code verifier from AFP/Jinja
haftmann
parents:
diff changeset
   160
apply (case_tac "x")
1bc3b688548c backported parts of abstract byte code verifier from AFP/Jinja
haftmann
parents:
diff changeset
   161
 apply fast
1bc3b688548c backported parts of abstract byte code verifier from AFP/Jinja
haftmann
parents:
diff changeset
   162
apply blast
1bc3b688548c backported parts of abstract byte code verifier from AFP/Jinja
haftmann
parents:
diff changeset
   163
done 
1bc3b688548c backported parts of abstract byte code verifier from AFP/Jinja
haftmann
parents:
diff changeset
   164
1bc3b688548c backported parts of abstract byte code verifier from AFP/Jinja
haftmann
parents:
diff changeset
   165
lemma Err_in_err [iff]: "Err : err A"
1bc3b688548c backported parts of abstract byte code verifier from AFP/Jinja
haftmann
parents:
diff changeset
   166
  by (simp add: err_def)
1bc3b688548c backported parts of abstract byte code verifier from AFP/Jinja
haftmann
parents:
diff changeset
   167
1bc3b688548c backported parts of abstract byte code verifier from AFP/Jinja
haftmann
parents:
diff changeset
   168
lemma Ok_in_err [iff]: "(OK x : err A) = (x:A)"
1bc3b688548c backported parts of abstract byte code verifier from AFP/Jinja
haftmann
parents:
diff changeset
   169
  by (auto simp add: err_def)
1bc3b688548c backported parts of abstract byte code verifier from AFP/Jinja
haftmann
parents:
diff changeset
   170
1bc3b688548c backported parts of abstract byte code verifier from AFP/Jinja
haftmann
parents:
diff changeset
   171
section {* lift *}
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haftmann
parents:
diff changeset
   172
1bc3b688548c backported parts of abstract byte code verifier from AFP/Jinja
haftmann
parents:
diff changeset
   173
lemma lift_in_errI:
1bc3b688548c backported parts of abstract byte code verifier from AFP/Jinja
haftmann
parents:
diff changeset
   174
  "\<lbrakk> e : err S; !x:S. e = OK x \<longrightarrow> f x : err S \<rbrakk> \<Longrightarrow> lift f e : err S"
1bc3b688548c backported parts of abstract byte code verifier from AFP/Jinja
haftmann
parents:
diff changeset
   175
apply (unfold lift_def)
1bc3b688548c backported parts of abstract byte code verifier from AFP/Jinja
haftmann
parents:
diff changeset
   176
apply (simp split: err.split)
1bc3b688548c backported parts of abstract byte code verifier from AFP/Jinja
haftmann
parents:
diff changeset
   177
apply blast
1bc3b688548c backported parts of abstract byte code verifier from AFP/Jinja
haftmann
parents:
diff changeset
   178
done 
1bc3b688548c backported parts of abstract byte code verifier from AFP/Jinja
haftmann
parents:
diff changeset
   179
1bc3b688548c backported parts of abstract byte code verifier from AFP/Jinja
haftmann
parents:
diff changeset
   180
lemma Err_lift2 [simp]: 
1bc3b688548c backported parts of abstract byte code verifier from AFP/Jinja
haftmann
parents:
diff changeset
   181
  "Err +_(lift2 f) x = Err"
1bc3b688548c backported parts of abstract byte code verifier from AFP/Jinja
haftmann
parents:
diff changeset
   182
  by (simp add: lift2_def plussub_def)
1bc3b688548c backported parts of abstract byte code verifier from AFP/Jinja
haftmann
parents:
diff changeset
   183
1bc3b688548c backported parts of abstract byte code verifier from AFP/Jinja
haftmann
parents:
diff changeset
   184
lemma lift2_Err [simp]: 
1bc3b688548c backported parts of abstract byte code verifier from AFP/Jinja
haftmann
parents:
diff changeset
   185
  "x +_(lift2 f) Err = Err"
1bc3b688548c backported parts of abstract byte code verifier from AFP/Jinja
haftmann
parents:
diff changeset
   186
  by (simp add: lift2_def plussub_def split: err.split)
1bc3b688548c backported parts of abstract byte code verifier from AFP/Jinja
haftmann
parents:
diff changeset
   187
1bc3b688548c backported parts of abstract byte code verifier from AFP/Jinja
haftmann
parents:
diff changeset
   188
lemma OK_lift2_OK [simp]:
1bc3b688548c backported parts of abstract byte code verifier from AFP/Jinja
haftmann
parents:
diff changeset
   189
  "OK x +_(lift2 f) OK y = x +_f y"
1bc3b688548c backported parts of abstract byte code verifier from AFP/Jinja
haftmann
parents:
diff changeset
   190
  by (simp add: lift2_def plussub_def split: err.split)
1bc3b688548c backported parts of abstract byte code verifier from AFP/Jinja
haftmann
parents:
diff changeset
   191
1bc3b688548c backported parts of abstract byte code verifier from AFP/Jinja
haftmann
parents:
diff changeset
   192
1bc3b688548c backported parts of abstract byte code verifier from AFP/Jinja
haftmann
parents:
diff changeset
   193
section {* sup *}
1bc3b688548c backported parts of abstract byte code verifier from AFP/Jinja
haftmann
parents:
diff changeset
   194
1bc3b688548c backported parts of abstract byte code verifier from AFP/Jinja
haftmann
parents:
diff changeset
   195
lemma Err_sup_Err [simp]:
1bc3b688548c backported parts of abstract byte code verifier from AFP/Jinja
haftmann
parents:
diff changeset
   196
  "Err +_(Err.sup f) x = Err"
1bc3b688548c backported parts of abstract byte code verifier from AFP/Jinja
haftmann
parents:
diff changeset
   197
  by (simp add: plussub_def Err.sup_def Err.lift2_def)
1bc3b688548c backported parts of abstract byte code verifier from AFP/Jinja
haftmann
parents:
diff changeset
   198
1bc3b688548c backported parts of abstract byte code verifier from AFP/Jinja
haftmann
parents:
diff changeset
   199
lemma Err_sup_Err2 [simp]:
1bc3b688548c backported parts of abstract byte code verifier from AFP/Jinja
haftmann
parents:
diff changeset
   200
  "x +_(Err.sup f) Err = Err"
1bc3b688548c backported parts of abstract byte code verifier from AFP/Jinja
haftmann
parents:
diff changeset
   201
  by (simp add: plussub_def Err.sup_def Err.lift2_def split: err.split)
1bc3b688548c backported parts of abstract byte code verifier from AFP/Jinja
haftmann
parents:
diff changeset
   202
1bc3b688548c backported parts of abstract byte code verifier from AFP/Jinja
haftmann
parents:
diff changeset
   203
lemma Err_sup_OK [simp]:
1bc3b688548c backported parts of abstract byte code verifier from AFP/Jinja
haftmann
parents:
diff changeset
   204
  "OK x +_(Err.sup f) OK y = OK(x +_f y)"
1bc3b688548c backported parts of abstract byte code verifier from AFP/Jinja
haftmann
parents:
diff changeset
   205
  by (simp add: plussub_def Err.sup_def Err.lift2_def)
1bc3b688548c backported parts of abstract byte code verifier from AFP/Jinja
haftmann
parents:
diff changeset
   206
1bc3b688548c backported parts of abstract byte code verifier from AFP/Jinja
haftmann
parents:
diff changeset
   207
lemma Err_sup_eq_OK_conv [iff]:
1bc3b688548c backported parts of abstract byte code verifier from AFP/Jinja
haftmann
parents:
diff changeset
   208
  "(Err.sup f ex ey = OK z) = (? x y. ex = OK x & ey = OK y & f x y = z)"
1bc3b688548c backported parts of abstract byte code verifier from AFP/Jinja
haftmann
parents:
diff changeset
   209
apply (unfold Err.sup_def lift2_def plussub_def)
1bc3b688548c backported parts of abstract byte code verifier from AFP/Jinja
haftmann
parents:
diff changeset
   210
apply (rule iffI)
1bc3b688548c backported parts of abstract byte code verifier from AFP/Jinja
haftmann
parents:
diff changeset
   211
 apply (simp split: err.split_asm)
1bc3b688548c backported parts of abstract byte code verifier from AFP/Jinja
haftmann
parents:
diff changeset
   212
apply clarify
1bc3b688548c backported parts of abstract byte code verifier from AFP/Jinja
haftmann
parents:
diff changeset
   213
apply simp
1bc3b688548c backported parts of abstract byte code verifier from AFP/Jinja
haftmann
parents:
diff changeset
   214
done
1bc3b688548c backported parts of abstract byte code verifier from AFP/Jinja
haftmann
parents:
diff changeset
   215
1bc3b688548c backported parts of abstract byte code verifier from AFP/Jinja
haftmann
parents:
diff changeset
   216
lemma Err_sup_eq_Err [iff]:
1bc3b688548c backported parts of abstract byte code verifier from AFP/Jinja
haftmann
parents:
diff changeset
   217
  "(Err.sup f ex ey = Err) = (ex=Err | ey=Err)"
1bc3b688548c backported parts of abstract byte code verifier from AFP/Jinja
haftmann
parents:
diff changeset
   218
apply (unfold Err.sup_def lift2_def plussub_def)
1bc3b688548c backported parts of abstract byte code verifier from AFP/Jinja
haftmann
parents:
diff changeset
   219
apply (simp split: err.split)
1bc3b688548c backported parts of abstract byte code verifier from AFP/Jinja
haftmann
parents:
diff changeset
   220
done 
1bc3b688548c backported parts of abstract byte code verifier from AFP/Jinja
haftmann
parents:
diff changeset
   221
1bc3b688548c backported parts of abstract byte code verifier from AFP/Jinja
haftmann
parents:
diff changeset
   222
section {* semilat (err A) (le r) f *}
1bc3b688548c backported parts of abstract byte code verifier from AFP/Jinja
haftmann
parents:
diff changeset
   223
1bc3b688548c backported parts of abstract byte code verifier from AFP/Jinja
haftmann
parents:
diff changeset
   224
lemma semilat_le_err_Err_plus [simp]:
1bc3b688548c backported parts of abstract byte code verifier from AFP/Jinja
haftmann
parents:
diff changeset
   225
  "\<lbrakk> x: err A; semilat(err A, le r, f) \<rbrakk> \<Longrightarrow> Err +_f x = Err"
1bc3b688548c backported parts of abstract byte code verifier from AFP/Jinja
haftmann
parents:
diff changeset
   226
  by (blast intro: Semilat.le_iff_plus_unchanged [OF Semilat.intro, THEN iffD1]
1bc3b688548c backported parts of abstract byte code verifier from AFP/Jinja
haftmann
parents:
diff changeset
   227
                   Semilat.le_iff_plus_unchanged2 [OF Semilat.intro, THEN iffD1])
1bc3b688548c backported parts of abstract byte code verifier from AFP/Jinja
haftmann
parents:
diff changeset
   228
1bc3b688548c backported parts of abstract byte code verifier from AFP/Jinja
haftmann
parents:
diff changeset
   229
lemma semilat_le_err_plus_Err [simp]:
1bc3b688548c backported parts of abstract byte code verifier from AFP/Jinja
haftmann
parents:
diff changeset
   230
  "\<lbrakk> x: err A; semilat(err A, le r, f) \<rbrakk> \<Longrightarrow> x +_f Err = Err"
1bc3b688548c backported parts of abstract byte code verifier from AFP/Jinja
haftmann
parents:
diff changeset
   231
  by (blast intro: Semilat.le_iff_plus_unchanged [OF Semilat.intro, THEN iffD1]
1bc3b688548c backported parts of abstract byte code verifier from AFP/Jinja
haftmann
parents:
diff changeset
   232
                   Semilat.le_iff_plus_unchanged2 [OF Semilat.intro, THEN iffD1])
1bc3b688548c backported parts of abstract byte code verifier from AFP/Jinja
haftmann
parents:
diff changeset
   233
1bc3b688548c backported parts of abstract byte code verifier from AFP/Jinja
haftmann
parents:
diff changeset
   234
lemma semilat_le_err_OK1:
1bc3b688548c backported parts of abstract byte code verifier from AFP/Jinja
haftmann
parents:
diff changeset
   235
  "\<lbrakk> x:A; y:A; semilat(err A, le r, f); OK x +_f OK y = OK z \<rbrakk> 
1bc3b688548c backported parts of abstract byte code verifier from AFP/Jinja
haftmann
parents:
diff changeset
   236
  \<Longrightarrow> x <=_r z";
1bc3b688548c backported parts of abstract byte code verifier from AFP/Jinja
haftmann
parents:
diff changeset
   237
apply (rule OK_le_err_OK [THEN iffD1])
1bc3b688548c backported parts of abstract byte code verifier from AFP/Jinja
haftmann
parents:
diff changeset
   238
apply (erule subst)
1bc3b688548c backported parts of abstract byte code verifier from AFP/Jinja
haftmann
parents:
diff changeset
   239
apply (simp add: Semilat.ub1 [OF Semilat.intro])
1bc3b688548c backported parts of abstract byte code verifier from AFP/Jinja
haftmann
parents:
diff changeset
   240
done
1bc3b688548c backported parts of abstract byte code verifier from AFP/Jinja
haftmann
parents:
diff changeset
   241
1bc3b688548c backported parts of abstract byte code verifier from AFP/Jinja
haftmann
parents:
diff changeset
   242
lemma semilat_le_err_OK2:
1bc3b688548c backported parts of abstract byte code verifier from AFP/Jinja
haftmann
parents:
diff changeset
   243
  "\<lbrakk> x:A; y:A; semilat(err A, le r, f); OK x +_f OK y = OK z \<rbrakk> 
1bc3b688548c backported parts of abstract byte code verifier from AFP/Jinja
haftmann
parents:
diff changeset
   244
  \<Longrightarrow> y <=_r z"
1bc3b688548c backported parts of abstract byte code verifier from AFP/Jinja
haftmann
parents:
diff changeset
   245
apply (rule OK_le_err_OK [THEN iffD1])
1bc3b688548c backported parts of abstract byte code verifier from AFP/Jinja
haftmann
parents:
diff changeset
   246
apply (erule subst)
1bc3b688548c backported parts of abstract byte code verifier from AFP/Jinja
haftmann
parents:
diff changeset
   247
apply (simp add: Semilat.ub2 [OF Semilat.intro])
1bc3b688548c backported parts of abstract byte code verifier from AFP/Jinja
haftmann
parents:
diff changeset
   248
done
1bc3b688548c backported parts of abstract byte code verifier from AFP/Jinja
haftmann
parents:
diff changeset
   249
1bc3b688548c backported parts of abstract byte code verifier from AFP/Jinja
haftmann
parents:
diff changeset
   250
lemma eq_order_le:
1bc3b688548c backported parts of abstract byte code verifier from AFP/Jinja
haftmann
parents:
diff changeset
   251
  "\<lbrakk> x=y; order r \<rbrakk> \<Longrightarrow> x <=_r y"
1bc3b688548c backported parts of abstract byte code verifier from AFP/Jinja
haftmann
parents:
diff changeset
   252
apply (unfold Semilat.order_def)
1bc3b688548c backported parts of abstract byte code verifier from AFP/Jinja
haftmann
parents:
diff changeset
   253
apply blast
1bc3b688548c backported parts of abstract byte code verifier from AFP/Jinja
haftmann
parents:
diff changeset
   254
done
1bc3b688548c backported parts of abstract byte code verifier from AFP/Jinja
haftmann
parents:
diff changeset
   255
1bc3b688548c backported parts of abstract byte code verifier from AFP/Jinja
haftmann
parents:
diff changeset
   256
lemma OK_plus_OK_eq_Err_conv [simp]:
1bc3b688548c backported parts of abstract byte code verifier from AFP/Jinja
haftmann
parents:
diff changeset
   257
  assumes "x:A" and "y:A" and "semilat(err A, le r, fe)"
1bc3b688548c backported parts of abstract byte code verifier from AFP/Jinja
haftmann
parents:
diff changeset
   258
  shows "((OK x) +_fe (OK y) = Err) = (~(? z:A. x <=_r z & y <=_r z))"
1bc3b688548c backported parts of abstract byte code verifier from AFP/Jinja
haftmann
parents:
diff changeset
   259
proof -
1bc3b688548c backported parts of abstract byte code verifier from AFP/Jinja
haftmann
parents:
diff changeset
   260
  have plus_le_conv3: "\<And>A x y z f r. 
1bc3b688548c backported parts of abstract byte code verifier from AFP/Jinja
haftmann
parents:
diff changeset
   261
    \<lbrakk> semilat (A,r,f); x +_f y <=_r z; x:A; y:A; z:A \<rbrakk> 
1bc3b688548c backported parts of abstract byte code verifier from AFP/Jinja
haftmann
parents:
diff changeset
   262
    \<Longrightarrow> x <=_r z \<and> y <=_r z"
1bc3b688548c backported parts of abstract byte code verifier from AFP/Jinja
haftmann
parents:
diff changeset
   263
    by (rule Semilat.plus_le_conv [OF Semilat.intro, THEN iffD1])
1bc3b688548c backported parts of abstract byte code verifier from AFP/Jinja
haftmann
parents:
diff changeset
   264
  from prems show ?thesis
1bc3b688548c backported parts of abstract byte code verifier from AFP/Jinja
haftmann
parents:
diff changeset
   265
  apply (rule_tac iffI)
1bc3b688548c backported parts of abstract byte code verifier from AFP/Jinja
haftmann
parents:
diff changeset
   266
   apply clarify
1bc3b688548c backported parts of abstract byte code verifier from AFP/Jinja
haftmann
parents:
diff changeset
   267
   apply (drule OK_le_err_OK [THEN iffD2])
1bc3b688548c backported parts of abstract byte code verifier from AFP/Jinja
haftmann
parents:
diff changeset
   268
   apply (drule OK_le_err_OK [THEN iffD2])
1bc3b688548c backported parts of abstract byte code verifier from AFP/Jinja
haftmann
parents:
diff changeset
   269
   apply (drule Semilat.lub [OF Semilat.intro, of _ _ _ "OK x" _ "OK y"])
1bc3b688548c backported parts of abstract byte code verifier from AFP/Jinja
haftmann
parents:
diff changeset
   270
        apply assumption
1bc3b688548c backported parts of abstract byte code verifier from AFP/Jinja
haftmann
parents:
diff changeset
   271
       apply assumption
1bc3b688548c backported parts of abstract byte code verifier from AFP/Jinja
haftmann
parents:
diff changeset
   272
      apply simp
1bc3b688548c backported parts of abstract byte code verifier from AFP/Jinja
haftmann
parents:
diff changeset
   273
     apply simp
1bc3b688548c backported parts of abstract byte code verifier from AFP/Jinja
haftmann
parents:
diff changeset
   274
    apply simp
1bc3b688548c backported parts of abstract byte code verifier from AFP/Jinja
haftmann
parents:
diff changeset
   275
   apply simp
1bc3b688548c backported parts of abstract byte code verifier from AFP/Jinja
haftmann
parents:
diff changeset
   276
  apply (case_tac "(OK x) +_fe (OK y)")
1bc3b688548c backported parts of abstract byte code verifier from AFP/Jinja
haftmann
parents:
diff changeset
   277
   apply assumption
1bc3b688548c backported parts of abstract byte code verifier from AFP/Jinja
haftmann
parents:
diff changeset
   278
  apply (rename_tac z)
1bc3b688548c backported parts of abstract byte code verifier from AFP/Jinja
haftmann
parents:
diff changeset
   279
  apply (subgoal_tac "OK z: err A")
1bc3b688548c backported parts of abstract byte code verifier from AFP/Jinja
haftmann
parents:
diff changeset
   280
  apply (drule eq_order_le)
1bc3b688548c backported parts of abstract byte code verifier from AFP/Jinja
haftmann
parents:
diff changeset
   281
    apply (erule Semilat.orderI [OF Semilat.intro])
1bc3b688548c backported parts of abstract byte code verifier from AFP/Jinja
haftmann
parents:
diff changeset
   282
   apply (blast dest: plus_le_conv3) 
1bc3b688548c backported parts of abstract byte code verifier from AFP/Jinja
haftmann
parents:
diff changeset
   283
  apply (erule subst)
1bc3b688548c backported parts of abstract byte code verifier from AFP/Jinja
haftmann
parents:
diff changeset
   284
  apply (blast intro: Semilat.closedI [OF Semilat.intro] closedD)
1bc3b688548c backported parts of abstract byte code verifier from AFP/Jinja
haftmann
parents:
diff changeset
   285
  done 
1bc3b688548c backported parts of abstract byte code verifier from AFP/Jinja
haftmann
parents:
diff changeset
   286
qed
1bc3b688548c backported parts of abstract byte code verifier from AFP/Jinja
haftmann
parents:
diff changeset
   287
1bc3b688548c backported parts of abstract byte code verifier from AFP/Jinja
haftmann
parents:
diff changeset
   288
section {* semilat (err(Union AS)) *}
1bc3b688548c backported parts of abstract byte code verifier from AFP/Jinja
haftmann
parents:
diff changeset
   289
1bc3b688548c backported parts of abstract byte code verifier from AFP/Jinja
haftmann
parents:
diff changeset
   290
(* FIXME? *)
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lemma all_bex_swap_lemma [iff]:
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  "(!x. (? y:A. x = f y) \<longrightarrow> P x) = (!y:A. P(f y))"
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  by blast
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lemma closed_err_Union_lift2I: 
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  "\<lbrakk> !A:AS. closed (err A) (lift2 f); AS ~= {}; 
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      !A:AS.!B:AS. A~=B \<longrightarrow> (!a:A.!b:B. a +_f b = Err) \<rbrakk> 
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  \<Longrightarrow> closed (err(Union AS)) (lift2 f)"
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apply (unfold closed_def err_def)
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apply simp
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apply clarify
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apply simp
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apply fast
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done 
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text {* 
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  If @{term "AS = {}"} the thm collapses to
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  @{prop "order r & closed {Err} f & Err +_f Err = Err"}
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  which may not hold 
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*}
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lemma err_semilat_UnionI:
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  "\<lbrakk> !A:AS. err_semilat(A, r, f); AS ~= {}; 
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      !A:AS.!B:AS. A~=B \<longrightarrow> (!a:A.!b:B. ~ a <=_r b & a +_f b = Err) \<rbrakk> 
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  \<Longrightarrow> err_semilat(Union AS, r, f)"
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apply (unfold semilat_def sl_def)
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apply (simp add: closed_err_Union_lift2I)
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apply (rule conjI)
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 apply blast
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apply (simp add: err_def)
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apply (rule conjI)
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 apply clarify
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 apply (rename_tac A a u B b)
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 apply (case_tac "A = B")
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  apply simp
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 apply simp
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apply (rule conjI)
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 apply clarify
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 apply (rename_tac A a u B b)
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 apply (case_tac "A = B")
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  apply simp
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 apply simp
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apply clarify
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apply (rename_tac A ya yb B yd z C c a b)
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apply (case_tac "A = B")
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 apply (case_tac "A = C")
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  apply simp
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 apply (rotate_tac -1)
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 apply simp
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apply (rotate_tac -1)
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apply (case_tac "B = C")
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 apply simp
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apply (rotate_tac -1)
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apply simp
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done 
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end