src/HOL/BNF/Equiv_Relations_More.thy
author bulwahn
Sat, 20 Oct 2012 09:09:34 +0200
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(*  Title:      HOL/BNF/Equiv_Relations_More.thy
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    Author:     Andrei Popescu, TU Muenchen
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    Copyright   2012
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Some preliminaries on equivalence relations and quotients.
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*)
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header {* Some Preliminaries on Equivalence Relations and Quotients *}
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theory Equiv_Relations_More
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imports Equiv_Relations Hilbert_Choice
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begin
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(* Recall the following constants and lemmas:
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term Eps
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term "A//r"
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lemmas equiv_def
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lemmas refl_on_def
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 -- note that "reflexivity on" also assumes inclusion of the relation's field into r
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*)
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definition proj where "proj r x = r `` {x}"
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definition univ where "univ f X == f (Eps (%x. x \<in> X))"
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lemma proj_preserves:
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"x \<in> A \<Longrightarrow> proj r x \<in> A//r"
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unfolding proj_def by (rule quotientI)
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lemma proj_in_iff:
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assumes "equiv A r"
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shows "(proj r x \<in> A//r) = (x \<in> A)"
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apply(rule iffI, auto simp add: proj_preserves)
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unfolding proj_def quotient_def proof clarsimp
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  fix y assume y: "y \<in> A" and "r `` {x} = r `` {y}"
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  moreover have "y \<in> r `` {y}" using assms y unfolding equiv_def refl_on_def by blast
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  ultimately have "(x,y) \<in> r" by blast
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  thus "x \<in> A" using assms unfolding equiv_def refl_on_def by blast
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qed
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lemma proj_iff:
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"\<lbrakk>equiv A r; {x,y} \<subseteq> A\<rbrakk> \<Longrightarrow> (proj r x = proj r y) = ((x,y) \<in> r)"
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by (simp add: proj_def eq_equiv_class_iff)
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(*
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lemma in_proj: "\<lbrakk>equiv A r; x \<in> A\<rbrakk> \<Longrightarrow> x \<in> proj r x"
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unfolding proj_def equiv_def refl_on_def by blast
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*)
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lemma proj_image: "(proj r) ` A = A//r"
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unfolding proj_def[abs_def] quotient_def by blast
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lemma in_quotient_imp_non_empty:
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"\<lbrakk>equiv A r; X \<in> A//r\<rbrakk> \<Longrightarrow> X \<noteq> {}"
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unfolding quotient_def using equiv_class_self by fast
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lemma in_quotient_imp_in_rel:
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"\<lbrakk>equiv A r; X \<in> A//r; {x,y} \<subseteq> X\<rbrakk> \<Longrightarrow> (x,y) \<in> r"
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using quotient_eq_iff by fastforce
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lemma in_quotient_imp_closed:
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"\<lbrakk>equiv A r; X \<in> A//r; x \<in> X; (x,y) \<in> r\<rbrakk> \<Longrightarrow> y \<in> X"
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unfolding quotient_def equiv_def trans_def by blast
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lemma in_quotient_imp_subset:
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"\<lbrakk>equiv A r; X \<in> A//r\<rbrakk> \<Longrightarrow> X \<subseteq> A"
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using assms in_quotient_imp_in_rel equiv_type by fastforce
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lemma equiv_Eps_in:
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"\<lbrakk>equiv A r; X \<in> A//r\<rbrakk> \<Longrightarrow> Eps (%x. x \<in> X) \<in> X"
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apply (rule someI2_ex)
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using in_quotient_imp_non_empty by blast
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lemma equiv_Eps_preserves:
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assumes ECH: "equiv A r" and X: "X \<in> A//r"
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shows "Eps (%x. x \<in> X) \<in> A"
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apply (rule in_mono[rule_format])
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 using assms apply (rule in_quotient_imp_subset)
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by (rule equiv_Eps_in) (rule assms)+
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lemma proj_Eps:
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assumes "equiv A r" and "X \<in> A//r"
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shows "proj r (Eps (%x. x \<in> X)) = X"
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unfolding proj_def proof auto
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  fix x assume x: "x \<in> X"
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  thus "(Eps (%x. x \<in> X), x) \<in> r" using assms equiv_Eps_in in_quotient_imp_in_rel by fast
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next
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  fix x assume "(Eps (%x. x \<in> X),x) \<in> r"
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  thus "x \<in> X" using in_quotient_imp_closed[OF assms equiv_Eps_in[OF assms]] by fast
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qed
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(*
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lemma Eps_proj:
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assumes "equiv A r" and "x \<in> A"
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shows "(Eps (%y. y \<in> proj r x), x) \<in> r"
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proof-
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  have 1: "proj r x \<in> A//r" using assms proj_preserves by fastforce
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  hence "Eps(%y. y \<in> proj r x) \<in> proj r x" using assms equiv_Eps_in by auto
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  moreover have "x \<in> proj r x" using assms in_proj by fastforce
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  ultimately show ?thesis using assms 1 in_quotient_imp_in_rel by fastforce
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qed
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lemma equiv_Eps_iff:
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assumes "equiv A r" and "{X,Y} \<subseteq> A//r"
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shows "((Eps (%x. x \<in> X),Eps (%y. y \<in> Y)) \<in> r) = (X = Y)"
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proof-
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  have "Eps (%x. x \<in> X) \<in> X \<and> Eps (%y. y \<in> Y) \<in> Y" using assms equiv_Eps_in by auto
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  thus ?thesis using assms quotient_eq_iff by fastforce
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qed
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lemma equiv_Eps_inj_on:
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assumes "equiv A r"
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shows "inj_on (%X. Eps (%x. x \<in> X)) (A//r)"
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unfolding inj_on_def proof clarify
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diff changeset
   118
  fix X Y assume X: "X \<in> A//r" and Y: "Y \<in> A//r" and Eps: "Eps (%x. x \<in> X) = Eps (%y. y \<in> Y)"
7f79f94a432c added new (co)datatype package + theories of ordinals and cardinals (with Dmitriy and Andrei)
blanchet
parents:
diff changeset
   119
  hence "Eps (%x. x \<in> X) \<in> A" using assms equiv_Eps_preserves by auto
7f79f94a432c added new (co)datatype package + theories of ordinals and cardinals (with Dmitriy and Andrei)
blanchet
parents:
diff changeset
   120
  hence "(Eps (%x. x \<in> X), Eps (%y. y \<in> Y)) \<in> r"
7f79f94a432c added new (co)datatype package + theories of ordinals and cardinals (with Dmitriy and Andrei)
blanchet
parents:
diff changeset
   121
  using assms Eps unfolding quotient_def equiv_def refl_on_def by auto
7f79f94a432c added new (co)datatype package + theories of ordinals and cardinals (with Dmitriy and Andrei)
blanchet
parents:
diff changeset
   122
  thus "X= Y" using X Y assms equiv_Eps_iff by auto
7f79f94a432c added new (co)datatype package + theories of ordinals and cardinals (with Dmitriy and Andrei)
blanchet
parents:
diff changeset
   123
qed
7f79f94a432c added new (co)datatype package + theories of ordinals and cardinals (with Dmitriy and Andrei)
blanchet
parents:
diff changeset
   124
*)
7f79f94a432c added new (co)datatype package + theories of ordinals and cardinals (with Dmitriy and Andrei)
blanchet
parents:
diff changeset
   125
7f79f94a432c added new (co)datatype package + theories of ordinals and cardinals (with Dmitriy and Andrei)
blanchet
parents:
diff changeset
   126
lemma univ_commute:
7f79f94a432c added new (co)datatype package + theories of ordinals and cardinals (with Dmitriy and Andrei)
blanchet
parents:
diff changeset
   127
assumes ECH: "equiv A r" and RES: "f respects r" and x: "x \<in> A"
7f79f94a432c added new (co)datatype package + theories of ordinals and cardinals (with Dmitriy and Andrei)
blanchet
parents:
diff changeset
   128
shows "(univ f) (proj r x) = f x"
7f79f94a432c added new (co)datatype package + theories of ordinals and cardinals (with Dmitriy and Andrei)
blanchet
parents:
diff changeset
   129
unfolding univ_def proof -
7f79f94a432c added new (co)datatype package + theories of ordinals and cardinals (with Dmitriy and Andrei)
blanchet
parents:
diff changeset
   130
  have prj: "proj r x \<in> A//r" using x proj_preserves by fast
7f79f94a432c added new (co)datatype package + theories of ordinals and cardinals (with Dmitriy and Andrei)
blanchet
parents:
diff changeset
   131
  hence "Eps (%y. y \<in> proj r x) \<in> A" using ECH equiv_Eps_preserves by fast
7f79f94a432c added new (co)datatype package + theories of ordinals and cardinals (with Dmitriy and Andrei)
blanchet
parents:
diff changeset
   132
  moreover have "proj r (Eps (%y. y \<in> proj r x)) = proj r x" using ECH prj proj_Eps by fast
7f79f94a432c added new (co)datatype package + theories of ordinals and cardinals (with Dmitriy and Andrei)
blanchet
parents:
diff changeset
   133
  ultimately have "(x, Eps (%y. y \<in> proj r x)) \<in> r" using x ECH proj_iff by fast
7f79f94a432c added new (co)datatype package + theories of ordinals and cardinals (with Dmitriy and Andrei)
blanchet
parents:
diff changeset
   134
  thus "f (Eps (%y. y \<in> proj r x)) = f x" using RES unfolding congruent_def by fastforce
7f79f94a432c added new (co)datatype package + theories of ordinals and cardinals (with Dmitriy and Andrei)
blanchet
parents:
diff changeset
   135
qed
7f79f94a432c added new (co)datatype package + theories of ordinals and cardinals (with Dmitriy and Andrei)
blanchet
parents:
diff changeset
   136
7f79f94a432c added new (co)datatype package + theories of ordinals and cardinals (with Dmitriy and Andrei)
blanchet
parents:
diff changeset
   137
(*
7f79f94a432c added new (co)datatype package + theories of ordinals and cardinals (with Dmitriy and Andrei)
blanchet
parents:
diff changeset
   138
lemma univ_unique:
7f79f94a432c added new (co)datatype package + theories of ordinals and cardinals (with Dmitriy and Andrei)
blanchet
parents:
diff changeset
   139
assumes ECH: "equiv A r" and
7f79f94a432c added new (co)datatype package + theories of ordinals and cardinals (with Dmitriy and Andrei)
blanchet
parents:
diff changeset
   140
        RES: "f respects r" and  COM: "\<forall> x \<in> A. G (proj r x) = f x"
7f79f94a432c added new (co)datatype package + theories of ordinals and cardinals (with Dmitriy and Andrei)
blanchet
parents:
diff changeset
   141
shows "\<forall> X \<in> A//r. G X = univ f X"
7f79f94a432c added new (co)datatype package + theories of ordinals and cardinals (with Dmitriy and Andrei)
blanchet
parents:
diff changeset
   142
proof
7f79f94a432c added new (co)datatype package + theories of ordinals and cardinals (with Dmitriy and Andrei)
blanchet
parents:
diff changeset
   143
  fix X assume "X \<in> A//r"
7f79f94a432c added new (co)datatype package + theories of ordinals and cardinals (with Dmitriy and Andrei)
blanchet
parents:
diff changeset
   144
  then obtain x where x: "x \<in> A" and X: "X = proj r x" using ECH proj_image[of r A] by blast
7f79f94a432c added new (co)datatype package + theories of ordinals and cardinals (with Dmitriy and Andrei)
blanchet
parents:
diff changeset
   145
  have "G X = f x" unfolding X using x COM by simp
7f79f94a432c added new (co)datatype package + theories of ordinals and cardinals (with Dmitriy and Andrei)
blanchet
parents:
diff changeset
   146
  thus "G X = univ f X" unfolding X using ECH RES x univ_commute by fastforce
7f79f94a432c added new (co)datatype package + theories of ordinals and cardinals (with Dmitriy and Andrei)
blanchet
parents:
diff changeset
   147
qed
7f79f94a432c added new (co)datatype package + theories of ordinals and cardinals (with Dmitriy and Andrei)
blanchet
parents:
diff changeset
   148
*)
7f79f94a432c added new (co)datatype package + theories of ordinals and cardinals (with Dmitriy and Andrei)
blanchet
parents:
diff changeset
   149
7f79f94a432c added new (co)datatype package + theories of ordinals and cardinals (with Dmitriy and Andrei)
blanchet
parents:
diff changeset
   150
lemma univ_preserves:
7f79f94a432c added new (co)datatype package + theories of ordinals and cardinals (with Dmitriy and Andrei)
blanchet
parents:
diff changeset
   151
assumes ECH: "equiv A r" and RES: "f respects r" and
7f79f94a432c added new (co)datatype package + theories of ordinals and cardinals (with Dmitriy and Andrei)
blanchet
parents:
diff changeset
   152
        PRES: "\<forall> x \<in> A. f x \<in> B"
7f79f94a432c added new (co)datatype package + theories of ordinals and cardinals (with Dmitriy and Andrei)
blanchet
parents:
diff changeset
   153
shows "\<forall> X \<in> A//r. univ f X \<in> B"
7f79f94a432c added new (co)datatype package + theories of ordinals and cardinals (with Dmitriy and Andrei)
blanchet
parents:
diff changeset
   154
proof
7f79f94a432c added new (co)datatype package + theories of ordinals and cardinals (with Dmitriy and Andrei)
blanchet
parents:
diff changeset
   155
  fix X assume "X \<in> A//r"
7f79f94a432c added new (co)datatype package + theories of ordinals and cardinals (with Dmitriy and Andrei)
blanchet
parents:
diff changeset
   156
  then obtain x where x: "x \<in> A" and X: "X = proj r x" using ECH proj_image[of r A] by blast
7f79f94a432c added new (co)datatype package + theories of ordinals and cardinals (with Dmitriy and Andrei)
blanchet
parents:
diff changeset
   157
  hence "univ f X = f x" using assms univ_commute by fastforce
7f79f94a432c added new (co)datatype package + theories of ordinals and cardinals (with Dmitriy and Andrei)
blanchet
parents:
diff changeset
   158
  thus "univ f X \<in> B" using x PRES by simp
7f79f94a432c added new (co)datatype package + theories of ordinals and cardinals (with Dmitriy and Andrei)
blanchet
parents:
diff changeset
   159
qed
7f79f94a432c added new (co)datatype package + theories of ordinals and cardinals (with Dmitriy and Andrei)
blanchet
parents:
diff changeset
   160
7f79f94a432c added new (co)datatype package + theories of ordinals and cardinals (with Dmitriy and Andrei)
blanchet
parents:
diff changeset
   161
end