| author | wenzelm | 
| Wed, 11 Oct 2023 14:03:16 +0200 | |
| changeset 78763 | b7157c137855 | 
| parent 69597 | ff784d5a5bfb | 
| permissions | -rw-r--r-- | 
| 8011 | 1  | 
(* Title: HOL/MicroJava/J/State.thy  | 
2  | 
Author: David von Oheimb  | 
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3  | 
Copyright 1999 Technische Universitaet Muenchen  | 
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*)  | 
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section \<open>Program State\<close>  | 
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8  | 
theory State  | 
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9  | 
imports TypeRel Value  | 
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10  | 
begin  | 
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type_synonym  | 
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fields' = "(vname \<times> cname \<rightharpoonup> val)" \<comment> \<open>field name, defining class, value\<close>  | 
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type_synonym  | 
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obj = "cname \<times> fields'" \<comment> \<open>class instance with class name and fields\<close>  | 
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definition obj_ty :: "obj => ty" where  | 
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"obj_ty obj == Class (fst obj)"  | 
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21  | 
definition init_vars :: "('a \<times> ty) list => ('a \<rightharpoonup> val)" where
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"init_vars == map_of o map (\<lambda>(n,T). (n,default_val T))"  | 
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23  | 
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type_synonym aheap = "loc \<rightharpoonup> obj" \<comment> \<open>"\<open>heap\<close>" used in a translation below\<close>  | 
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type_synonym locals = "vname \<rightharpoonup> val" \<comment> \<open>simple state, i.e. variable contents\<close>  | 
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27  | 
type_synonym state = "aheap \<times> locals" \<comment> \<open>heap, local parameter including This\<close>  | 
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28  | 
type_synonym xstate = "val option \<times> state" \<comment> \<open>state including exception information\<close>  | 
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abbreviation (input)  | 
31  | 
heap :: "state => aheap"  | 
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where "heap == fst"  | 
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||
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abbreviation (input)  | 
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locals :: "state => locals"  | 
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where "locals == snd"  | 
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||
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abbreviation "Norm s == (None, s)"  | 
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abbreviation (input)  | 
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abrupt :: "xstate \<Rightarrow> val option"  | 
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where "abrupt == fst"  | 
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abbreviation (input)  | 
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store :: "xstate \<Rightarrow> state"  | 
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where "store == snd"  | 
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||
48  | 
abbreviation  | 
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lookup_obj :: "state \<Rightarrow> val \<Rightarrow> obj"  | 
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where "lookup_obj s a' == the (heap s (the_Addr a'))"  | 
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52  | 
definition raise_if :: "bool \<Rightarrow> xcpt \<Rightarrow> val option \<Rightarrow> val option" where  | 
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"raise_if b x xo \<equiv> if b \<and> (xo = None) then Some (Addr (XcptRef x)) else xo"  | 
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text \<open>Make \<open>new_Addr\<close> completely specified (at least for the code generator)\<close>  | 
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56  | 
(*  | 
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57  | 
definition new_Addr :: "aheap => loc \<times> val option" where  | 
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"new_Addr h \<equiv> SOME (a,x). (h a = None \<and> x = None) | x = Some (Addr (XcptRef OutOfMemory))"  | 
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parents: 
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59  | 
*)  | 
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60  | 
consts nat_to_loc' :: "nat => loc'"  | 
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61  | 
code_datatype nat_to_loc'  | 
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parents: 
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62  | 
definition new_Addr :: "aheap => loc \<times> val option" where  | 
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"new_Addr h \<equiv>  | 
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if \<exists>n. h (Loc (nat_to_loc' n)) = None  | 
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then (Loc (nat_to_loc' (LEAST n. h (Loc (nat_to_loc' n)) = None)), None)  | 
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322d1657c40c
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Andreas Lochbihler 
parents: 
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66  | 
else (Loc (nat_to_loc' 0), Some (Addr (XcptRef OutOfMemory)))"  | 
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68  | 
definition np :: "val => val option => val option" where  | 
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"np v == raise_if (v = Null) NullPointer"  | 
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definition c_hupd :: "aheap => xstate => xstate" where  | 
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"c_hupd h'== \<lambda>(xo,(h,l)). if xo = None then (None,(h',l)) else (xo,(h,l))"  | 
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74  | 
definition cast_ok :: "'c prog => cname => aheap => val => bool" where  | 
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"cast_ok G C h v == v = Null \<or> G\<turnstile>obj_ty (the (h (the_Addr v)))\<preceq> Class C"  | 
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76  | 
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lemma obj_ty_def2 [simp]: "obj_ty (C,fs) = Class C"  | 
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apply (unfold obj_ty_def)  | 
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apply (simp (no_asm))  | 
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done  | 
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lemma new_AddrD: "new_Addr hp = (ref, xcp) \<Longrightarrow>  | 
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hp ref = None \<and> xcp = None \<or> xcp = Some (Addr (XcptRef OutOfMemory))"  | 
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apply (drule sym)  | 
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apply (unfold new_Addr_def)  | 
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apply (simp split: if_split_asm)  | 
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322d1657c40c
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Andreas Lochbihler 
parents: 
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apply (erule LeastI)  | 
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done  | 
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lemma raise_if_True [simp]: "raise_if True x y \<noteq> None"  | 
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apply (unfold raise_if_def)  | 
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apply auto  | 
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done  | 
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lemma raise_if_False [simp]: "raise_if False x y = y"  | 
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apply (unfold raise_if_def)  | 
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apply auto  | 
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done  | 
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lemma raise_if_Some [simp]: "raise_if c x (Some y) \<noteq> None"  | 
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102  | 
apply (unfold raise_if_def)  | 
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103  | 
apply auto  | 
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104  | 
done  | 
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105  | 
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lemma raise_if_Some2 [simp]:  | 
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"raise_if c z (if x = None then Some y else x) \<noteq> None"  | 
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unfolding raise_if_def by (induct x) auto  | 
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109  | 
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110  | 
lemma raise_if_SomeD [rule_format (no_asm)]:  | 
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"raise_if c x y = Some z \<longrightarrow> c \<and> Some z = Some (Addr (XcptRef x)) | y = Some z"  | 
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112  | 
apply (unfold raise_if_def)  | 
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113  | 
apply auto  | 
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114  | 
done  | 
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115  | 
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lemma raise_if_NoneD [rule_format (no_asm)]:  | 
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"raise_if c x y = None --> \<not> c \<and> y = None"  | 
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118  | 
apply (unfold raise_if_def)  | 
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119  | 
apply auto  | 
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120  | 
done  | 
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121  | 
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lemma np_NoneD [rule_format (no_asm)]:  | 
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"np a' x' = None --> x' = None \<and> a' \<noteq> Null"  | 
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apply (unfold np_def raise_if_def)  | 
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125  | 
apply auto  | 
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126  | 
done  | 
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127  | 
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128  | 
lemma np_None [rule_format (no_asm), simp]: "a' \<noteq> Null --> np a' x' = x'"  | 
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129  | 
apply (unfold np_def raise_if_def)  | 
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130  | 
apply auto  | 
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131  | 
done  | 
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132  | 
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133  | 
lemma np_Some [simp]: "np a' (Some xc) = Some xc"  | 
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134  | 
apply (unfold np_def raise_if_def)  | 
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135  | 
apply auto  | 
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136  | 
done  | 
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137  | 
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lemma np_Null [simp]: "np Null None = Some (Addr (XcptRef NullPointer))"  | 
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139  | 
apply (unfold np_def raise_if_def)  | 
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140  | 
apply auto  | 
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141  | 
done  | 
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142  | 
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143  | 
lemma np_Addr [simp]: "np (Addr a) None = None"  | 
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144  | 
apply (unfold np_def raise_if_def)  | 
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145  | 
apply auto  | 
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146  | 
done  | 
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147  | 
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148  | 
lemma np_raise_if [simp]: "(np Null (raise_if c xc None)) =  | 
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Some (Addr (XcptRef (if c then xc else NullPointer)))"  | 
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150  | 
apply (unfold raise_if_def)  | 
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151  | 
apply (simp (no_asm))  | 
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152  | 
done  | 
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lemma c_hupd_fst [simp]: "fst (c_hupd h (x, s)) = x"  | 
155  | 
by (simp add: c_hupd_def split_beta)  | 
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156  | 
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text \<open>Naive implementation for \<^term>\<open>new_Addr\<close> by exhaustive search\<close>  | 
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158  | 
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159  | 
definition gen_new_Addr :: "aheap => nat \<Rightarrow> loc \<times> val option" where  | 
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160  | 
"gen_new_Addr h n \<equiv>  | 
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161  | 
if \<exists>a. a \<ge> n \<and> h (Loc (nat_to_loc' a)) = None  | 
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162  | 
then (Loc (nat_to_loc' (LEAST a. a \<ge> n \<and> h (Loc (nat_to_loc' a)) = None)), None)  | 
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163  | 
else (Loc (nat_to_loc' 0), Some (Addr (XcptRef OutOfMemory)))"  | 
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164  | 
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165  | 
lemma new_Addr_code_code [code]:  | 
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166  | 
"new_Addr h = gen_new_Addr h 0"  | 
| 62390 | 167  | 
by(simp only: new_Addr_def gen_new_Addr_def split: if_split) simp  | 
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168  | 
|
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169  | 
lemma gen_new_Addr_code [code]:  | 
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170  | 
"gen_new_Addr h n = (if h (Loc (nat_to_loc' n)) = None then (Loc (nat_to_loc' n), None) else gen_new_Addr h (Suc n))"  | 
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171  | 
apply(simp add: gen_new_Addr_def)  | 
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172  | 
apply(rule impI)  | 
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173  | 
apply(rule conjI)  | 
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174  | 
apply safe[1]  | 
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175  | 
apply(auto intro: arg_cong[where f=nat_to_loc'] Least_equality)[1]  | 
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176  | 
apply(rule arg_cong[where f=nat_to_loc'])  | 
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177  | 
apply(rule arg_cong[where f=Least])  | 
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178  | 
apply(rule ext)  | 
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179  | 
apply(safe, simp_all)[1]  | 
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180  | 
apply(rename_tac "n'")  | 
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181  | 
apply(case_tac "n = n'", simp_all)[1]  | 
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182  | 
apply clarify  | 
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183  | 
apply(subgoal_tac "a = n")  | 
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184  | 
apply(auto intro: Least_equality arg_cong[where f=nat_to_loc'])[1]  | 
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185  | 
apply(rule ccontr)  | 
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186  | 
apply(erule_tac x="a" in allE)  | 
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187  | 
apply simp  | 
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188  | 
done  | 
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189  | 
|
| 47394 | 190  | 
instantiation loc' :: equal  | 
191  | 
begin  | 
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192  | 
||
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193  | 
definition "HOL.equal (l :: loc') l' \<longleftrightarrow> l = l'"  | 
| 61169 | 194  | 
instance by standard (simp add: equal_loc'_def)  | 
| 47394 | 195  | 
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| 8011 | 196  | 
end  | 
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197  | 
|
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198  | 
end  |