src/HOL/Lattices.thy
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(*  Title:      HOL/Lattices.thy
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    Author:     Tobias Nipkow
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*)
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section \<open>Abstract lattices\<close>
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theory Lattices
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imports Groups
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begin
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subsection \<open>Abstract semilattice\<close>
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text \<open>
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  These locales provide a basic structure for interpretation into
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  bigger structures;  extensions require careful thinking, otherwise
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  undesired effects may occur due to interpretation.
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\<close>
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locale semilattice = abel_semigroup +
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  assumes idem [simp]: "a \<^bold>* a = a"
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begin
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lemma left_idem [simp]: "a \<^bold>* (a \<^bold>* b) = a \<^bold>* b"
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  by (simp add: assoc [symmetric])
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lemma right_idem [simp]: "(a \<^bold>* b) \<^bold>* b = a \<^bold>* b"
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  by (simp add: assoc)
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end
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locale semilattice_neutr = semilattice + comm_monoid
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locale semilattice_order = semilattice +
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    and less :: "'a \<Rightarrow> 'a \<Rightarrow> bool"  (infix "\<^bold><" 50)
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  assumes order_iff: "a \<^bold>\<le> b \<longleftrightarrow> a = a \<^bold>* b"
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    and strict_order_iff: "a \<^bold>< b \<longleftrightarrow> a = a \<^bold>* b \<and> a \<noteq> b"
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begin
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lemma orderI: "a = a \<^bold>* b \<Longrightarrow> a \<^bold>\<le> b"
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  by (simp add: order_iff)
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lemma orderE:
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  assumes "a \<^bold>\<le> b"
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  obtains "a = a \<^bold>* b"
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  using assms by (unfold order_iff)
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sublocale ordering less_eq less
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proof
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  show "a \<^bold>< b \<longleftrightarrow> a \<^bold>\<le> b \<and> a \<noteq> b" for a b
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    by (simp add: order_iff strict_order_iff)
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next
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  show "a \<^bold>\<le> a" for a
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    by (simp add: order_iff)
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next
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  fix a b
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  assume "a \<^bold>\<le> b" "b \<^bold>\<le> a"
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  then have "a = a \<^bold>* b" "a \<^bold>* b = b"
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    by (simp_all add: order_iff commute)
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  then show "a = b" by simp
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next
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  fix a b c
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  assume "a \<^bold>\<le> b" "b \<^bold>\<le> c"
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  then have "a = a \<^bold>* b" "b = b \<^bold>* c"
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    by (simp_all add: order_iff commute)
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  then have "a = a \<^bold>* (b \<^bold>* c)"
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    by simp
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  then have "a = (a \<^bold>* b) \<^bold>* c"
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    by (simp add: assoc)
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  with \<open>a = a \<^bold>* b\<close> [symmetric] have "a = a \<^bold>* c" by simp
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  then show "a \<^bold>\<le> c" by (rule orderI)
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qed
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lemma cobounded1 [simp]: "a \<^bold>* b \<^bold>\<le> a"
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  by (simp add: order_iff commute)
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lemma cobounded2 [simp]: "a \<^bold>* b \<^bold>\<le> b"
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  by (simp add: order_iff)
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lemma boundedI:
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  assumes "a \<^bold>\<le> b" and "a \<^bold>\<le> c"
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  shows "a \<^bold>\<le> b \<^bold>* c"
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proof (rule orderI)
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  from assms obtain "a \<^bold>* b = a" and "a \<^bold>* c = a"
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    by (auto elim!: orderE)
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  then show "a = a \<^bold>* (b \<^bold>* c)"
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    by (simp add: assoc [symmetric])
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qed
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lemma boundedE:
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  assumes "a \<^bold>\<le> b \<^bold>* c"
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  obtains "a \<^bold>\<le> b" and "a \<^bold>\<le> c"
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  using assms by (blast intro: trans cobounded1 cobounded2)
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lemma bounded_iff [simp]: "a \<^bold>\<le> b \<^bold>* c \<longleftrightarrow> a \<^bold>\<le> b \<and> a \<^bold>\<le> c"
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  by (blast intro: boundedI elim: boundedE)
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lemma strict_boundedE:
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  assumes "a \<^bold>< b \<^bold>* c"
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  obtains "a \<^bold>< b" and "a \<^bold>< c"
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  using assms by (auto simp add: commute strict_iff_order elim: orderE intro!: that)+
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lemma coboundedI1: "a \<^bold>\<le> c \<Longrightarrow> a \<^bold>* b \<^bold>\<le> c"
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  by (rule trans) auto
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lemma coboundedI2: "b \<^bold>\<le> c \<Longrightarrow> a \<^bold>* b \<^bold>\<le> c"
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  by (rule trans) auto
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lemma strict_coboundedI1: "a \<^bold>< c \<Longrightarrow> a \<^bold>* b \<^bold>< c"
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  using irrefl
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  by (auto intro: not_eq_order_implies_strict coboundedI1 strict_implies_order
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      elim: strict_boundedE)
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lemma strict_coboundedI2: "b \<^bold>< c \<Longrightarrow> a \<^bold>* b \<^bold>< c"
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  using strict_coboundedI1 [of b c a] by (simp add: commute)
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lemma mono: "a \<^bold>\<le> c \<Longrightarrow> b \<^bold>\<le> d \<Longrightarrow> a \<^bold>* b \<^bold>\<le> c \<^bold>* d"
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  by (blast intro: boundedI coboundedI1 coboundedI2)
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lemma absorb1: "a \<^bold>\<le> b \<Longrightarrow> a \<^bold>* b = a"
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  by (rule antisym) (auto simp: refl)
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lemma absorb2: "b \<^bold>\<le> a \<Longrightarrow> a \<^bold>* b = b"
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  by (rule antisym) (auto simp: refl)
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lemma absorb_iff1: "a \<^bold>\<le> b \<longleftrightarrow> a \<^bold>* b = a"
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  using order_iff by auto
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lemma absorb_iff2: "b \<^bold>\<le> a \<longleftrightarrow> a \<^bold>* b = b"
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  using order_iff by (auto simp add: commute)
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end
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locale semilattice_neutr_order = semilattice_neutr + semilattice_order
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begin
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  by standard (simp add: order_iff)
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end
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subsection \<open>Syntactic infimum and supremum operations\<close>
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class inf =
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  fixes inf :: "'a \<Rightarrow> 'a \<Rightarrow> 'a" (infixl "\<sqinter>" 70)
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class sup =
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  fixes sup :: "'a \<Rightarrow> 'a \<Rightarrow> 'a" (infixl "\<squnion>" 65)
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subsection \<open>Concrete lattices\<close>
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notation
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  less_eq  (infix "\<sqsubseteq>" 50) and
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  less  (infix "\<sqsubset>" 50)
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class semilattice_inf =  order + inf +
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  assumes inf_le1 [simp]: "x \<sqinter> y \<sqsubseteq> x"
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  and inf_le2 [simp]: "x \<sqinter> y \<sqsubseteq> y"
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  and inf_greatest: "x \<sqsubseteq> y \<Longrightarrow> x \<sqsubseteq> z \<Longrightarrow> x \<sqsubseteq> y \<sqinter> z"
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class semilattice_sup = order + sup +
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  assumes sup_ge1 [simp]: "x \<sqsubseteq> x \<squnion> y"
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  and sup_ge2 [simp]: "y \<sqsubseteq> x \<squnion> y"
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  and sup_least: "y \<sqsubseteq> x \<Longrightarrow> z \<sqsubseteq> x \<Longrightarrow> y \<squnion> z \<sqsubseteq> x"
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begin
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text \<open>Dual lattice.\<close>
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lemma dual_semilattice: "class.semilattice_inf sup greater_eq greater"
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  by (rule class.semilattice_inf.intro, rule dual_order)
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    (unfold_locales, simp_all add: sup_least)
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end
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class lattice = semilattice_inf + semilattice_sup
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subsubsection \<open>Intro and elim rules\<close>
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context semilattice_inf
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begin
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lemma le_infI1: "a \<sqsubseteq> x \<Longrightarrow> a \<sqinter> b \<sqsubseteq> x"
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  by (rule order_trans) auto
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lemma le_infI2: "b \<sqsubseteq> x \<Longrightarrow> a \<sqinter> b \<sqsubseteq> x"
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  by (rule order_trans) auto
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lemma le_infI: "x \<sqsubseteq> a \<Longrightarrow> x \<sqsubseteq> b \<Longrightarrow> x \<sqsubseteq> a \<sqinter> b"
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  by (fact inf_greatest) (* FIXME: duplicate lemma *)
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lemma le_infE: "x \<sqsubseteq> a \<sqinter> b \<Longrightarrow> (x \<sqsubseteq> a \<Longrightarrow> x \<sqsubseteq> b \<Longrightarrow> P) \<Longrightarrow> P"
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  by (blast intro: order_trans inf_le1 inf_le2)
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lemma le_inf_iff: "x \<sqsubseteq> y \<sqinter> z \<longleftrightarrow> x \<sqsubseteq> y \<and> x \<sqsubseteq> z"
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  by (blast intro: le_infI elim: le_infE)
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lemma le_iff_inf: "x \<sqsubseteq> y \<longleftrightarrow> x \<sqinter> y = x"
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  by (auto intro: le_infI1 antisym dest: eq_iff [THEN iffD1] simp add: le_inf_iff)
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lemma inf_mono: "a \<sqsubseteq> c \<Longrightarrow> b \<sqsubseteq> d \<Longrightarrow> a \<sqinter> b \<sqsubseteq> c \<sqinter> d"
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  by (fast intro: inf_greatest le_infI1 le_infI2)
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lemma mono_inf: "mono f \<Longrightarrow> f (A \<sqinter> B) \<sqsubseteq> f A \<sqinter> f B" for f :: "'a \<Rightarrow> 'b::semilattice_inf"
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  by (auto simp add: mono_def intro: Lattices.inf_greatest)
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end
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context semilattice_sup
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begin
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lemma le_supI1: "x \<sqsubseteq> a \<Longrightarrow> x \<sqsubseteq> a \<squnion> b"
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  by (rule order_trans) auto
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lemma le_supI2: "x \<sqsubseteq> b \<Longrightarrow> x \<sqsubseteq> a \<squnion> b"
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  by (rule order_trans) auto
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lemma le_supI: "a \<sqsubseteq> x \<Longrightarrow> b \<sqsubseteq> x \<Longrightarrow> a \<squnion> b \<sqsubseteq> x"
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  by (fact sup_least) (* FIXME: duplicate lemma *)
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lemma le_supE: "a \<squnion> b \<sqsubseteq> x \<Longrightarrow> (a \<sqsubseteq> x \<Longrightarrow> b \<sqsubseteq> x \<Longrightarrow> P) \<Longrightarrow> P"
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  by (blast intro: order_trans sup_ge1 sup_ge2)
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lemma le_sup_iff: "x \<squnion> y \<sqsubseteq> z \<longleftrightarrow> x \<sqsubseteq> z \<and> y \<sqsubseteq> z"
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  by (blast intro: le_supI elim: le_supE)
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lemma le_iff_sup: "x \<sqsubseteq> y \<longleftrightarrow> x \<squnion> y = y"
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  by (auto intro: le_supI2 antisym dest: eq_iff [THEN iffD1] simp add: le_sup_iff)
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lemma sup_mono: "a \<sqsubseteq> c \<Longrightarrow> b \<sqsubseteq> d \<Longrightarrow> a \<squnion> b \<sqsubseteq> c \<squnion> d"
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  by (fast intro: sup_least le_supI1 le_supI2)
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lemma mono_sup: "mono f \<Longrightarrow> f A \<squnion> f B \<sqsubseteq> f (A \<squnion> B)" for f :: "'a \<Rightarrow> 'b::semilattice_sup"
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  by (auto simp add: mono_def intro: Lattices.sup_least)
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end
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subsubsection \<open>Equational laws\<close>
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context semilattice_inf
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begin
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sublocale inf: semilattice inf
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proof
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  fix a b c
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  show "(a \<sqinter> b) \<sqinter> c = a \<sqinter> (b \<sqinter> c)"
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    by (rule antisym) (auto intro: le_infI1 le_infI2 simp add: le_inf_iff)
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  show "a \<sqinter> b = b \<sqinter> a"
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    by (rule antisym) (auto simp add: le_inf_iff)
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  show "a \<sqinter> a = a"
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    by (rule antisym) (auto simp add: le_inf_iff)
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qed
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sublocale inf: semilattice_order inf less_eq less
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  by standard (auto simp add: le_iff_inf less_le)
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lemma inf_assoc: "(x \<sqinter> y) \<sqinter> z = x \<sqinter> (y \<sqinter> z)"
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  by (fact inf.assoc)
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lemma inf_commute: "(x \<sqinter> y) = (y \<sqinter> x)"
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  by (fact inf.commute)
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lemma inf_left_commute: "x \<sqinter> (y \<sqinter> z) = y \<sqinter> (x \<sqinter> z)"
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  by (fact inf.left_commute)
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lemma inf_idem: "x \<sqinter> x = x"
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  by (fact inf.idem) (* already simp *)
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lemma inf_left_idem: "x \<sqinter> (x \<sqinter> y) = x \<sqinter> y"
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  by (fact inf.left_idem) (* already simp *)
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lemma inf_right_idem: "(x \<sqinter> y) \<sqinter> y = x \<sqinter> y"
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  by (fact inf.right_idem) (* already simp *)
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lemma inf_absorb1: "x \<sqsubseteq> y \<Longrightarrow> x \<sqinter> y = x"
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  by (rule antisym) auto
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lemma inf_absorb2: "y \<sqsubseteq> x \<Longrightarrow> x \<sqinter> y = y"
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  by (rule antisym) auto
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lemmas inf_aci = inf_commute inf_assoc inf_left_commute inf_left_idem
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end
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context semilattice_sup
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begin
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sublocale sup: semilattice sup
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proof
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  fix a b c
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  show "(a \<squnion> b) \<squnion> c = a \<squnion> (b \<squnion> c)"
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    by (rule antisym) (auto intro: le_supI1 le_supI2 simp add: le_sup_iff)
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  show "a \<squnion> b = b \<squnion> a"
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    by (rule antisym) (auto simp add: le_sup_iff)
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  show "a \<squnion> a = a"
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    by (rule antisym) (auto simp add: le_sup_iff)
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qed
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sublocale sup: semilattice_order sup greater_eq greater
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  by standard (auto simp add: le_iff_sup sup.commute less_le)
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b561cdce6c4c examples for interpretation into target
haftmann
parents: 51593
diff changeset
   303
34973
ae634fad947e dropped mk_left_commute; use interpretation of locale abel_semigroup instead
haftmann
parents: 34209
diff changeset
   304
lemma sup_assoc: "(x \<squnion> y) \<squnion> z = x \<squnion> (y \<squnion> z)"
ae634fad947e dropped mk_left_commute; use interpretation of locale abel_semigroup instead
haftmann
parents: 34209
diff changeset
   305
  by (fact sup.assoc)
21733
131dd2a27137 Modified lattice locale
nipkow
parents: 21619
diff changeset
   306
34973
ae634fad947e dropped mk_left_commute; use interpretation of locale abel_semigroup instead
haftmann
parents: 34209
diff changeset
   307
lemma sup_commute: "(x \<squnion> y) = (y \<squnion> x)"
ae634fad947e dropped mk_left_commute; use interpretation of locale abel_semigroup instead
haftmann
parents: 34209
diff changeset
   308
  by (fact sup.commute)
21733
131dd2a27137 Modified lattice locale
nipkow
parents: 21619
diff changeset
   309
34973
ae634fad947e dropped mk_left_commute; use interpretation of locale abel_semigroup instead
haftmann
parents: 34209
diff changeset
   310
lemma sup_left_commute: "x \<squnion> (y \<squnion> z) = y \<squnion> (x \<squnion> z)"
ae634fad947e dropped mk_left_commute; use interpretation of locale abel_semigroup instead
haftmann
parents: 34209
diff changeset
   311
  by (fact sup.left_commute)
21733
131dd2a27137 Modified lattice locale
nipkow
parents: 21619
diff changeset
   312
44921
58eef4843641 tuned proofs
huffman
parents: 44919
diff changeset
   313
lemma sup_idem: "x \<squnion> x = x"
58eef4843641 tuned proofs
huffman
parents: 44919
diff changeset
   314
  by (fact sup.idem) (* already simp *)
34973
ae634fad947e dropped mk_left_commute; use interpretation of locale abel_semigroup instead
haftmann
parents: 34209
diff changeset
   315
44918
6a80fbc4e72c tune simpset for Complete_Lattices
noschinl
parents: 44845
diff changeset
   316
lemma sup_left_idem [simp]: "x \<squnion> (x \<squnion> y) = x \<squnion> y"
34973
ae634fad947e dropped mk_left_commute; use interpretation of locale abel_semigroup instead
haftmann
parents: 34209
diff changeset
   317
  by (fact sup.left_idem)
21733
131dd2a27137 Modified lattice locale
nipkow
parents: 21619
diff changeset
   318
32642
026e7c6a6d08 be more cautious wrt. simp rules: inf_absorb1, inf_absorb2, sup_absorb1, sup_absorb2 are no simp rules by default any longer
haftmann
parents: 32568
diff changeset
   319
lemma sup_absorb1: "y \<sqsubseteq> x \<Longrightarrow> x \<squnion> y = x"
32064
53ca12ff305d refinement of lattice classes
haftmann
parents: 32063
diff changeset
   320
  by (rule antisym) auto
21733
131dd2a27137 Modified lattice locale
nipkow
parents: 21619
diff changeset
   321
32642
026e7c6a6d08 be more cautious wrt. simp rules: inf_absorb1, inf_absorb2, sup_absorb1, sup_absorb2 are no simp rules by default any longer
haftmann
parents: 32568
diff changeset
   322
lemma sup_absorb2: "x \<sqsubseteq> y \<Longrightarrow> x \<squnion> y = y"
32064
53ca12ff305d refinement of lattice classes
haftmann
parents: 32063
diff changeset
   323
  by (rule antisym) auto
21249
d594c58e24ed renamed Lattice_Locales to Lattices
haftmann
parents:
diff changeset
   324
32064
53ca12ff305d refinement of lattice classes
haftmann
parents: 32063
diff changeset
   325
lemmas sup_aci = sup_commute sup_assoc sup_left_commute sup_left_idem
21733
131dd2a27137 Modified lattice locale
nipkow
parents: 21619
diff changeset
   326
131dd2a27137 Modified lattice locale
nipkow
parents: 21619
diff changeset
   327
end
21249
d594c58e24ed renamed Lattice_Locales to Lattices
haftmann
parents:
diff changeset
   328
21733
131dd2a27137 Modified lattice locale
nipkow
parents: 21619
diff changeset
   329
context lattice
131dd2a27137 Modified lattice locale
nipkow
parents: 21619
diff changeset
   330
begin
131dd2a27137 Modified lattice locale
nipkow
parents: 21619
diff changeset
   331
63322
bc1f17d45e91 misc tuning and modernization;
wenzelm
parents: 63290
diff changeset
   332
lemma dual_lattice: "class.lattice sup (op \<ge>) (op >) inf"
63588
d0e2bad67bd4 misc tuning and modernization;
wenzelm
parents: 63322
diff changeset
   333
  by (rule class.lattice.intro,
d0e2bad67bd4 misc tuning and modernization;
wenzelm
parents: 63322
diff changeset
   334
      rule dual_semilattice,
d0e2bad67bd4 misc tuning and modernization;
wenzelm
parents: 63322
diff changeset
   335
      rule class.semilattice_sup.intro,
d0e2bad67bd4 misc tuning and modernization;
wenzelm
parents: 63322
diff changeset
   336
      rule dual_order)
31991
37390299214a added boolean_algebra type class; tuned lattice duals
haftmann
parents: 30729
diff changeset
   337
    (unfold_locales, auto)
37390299214a added boolean_algebra type class; tuned lattice duals
haftmann
parents: 30729
diff changeset
   338
44918
6a80fbc4e72c tune simpset for Complete_Lattices
noschinl
parents: 44845
diff changeset
   339
lemma inf_sup_absorb [simp]: "x \<sqinter> (x \<squnion> y) = x"
25102
db3e412c4cb1 antisymmetry not a default intro rule any longer
haftmann
parents: 25062
diff changeset
   340
  by (blast intro: antisym inf_le1 inf_greatest sup_ge1)
21733
131dd2a27137 Modified lattice locale
nipkow
parents: 21619
diff changeset
   341
44918
6a80fbc4e72c tune simpset for Complete_Lattices
noschinl
parents: 44845
diff changeset
   342
lemma sup_inf_absorb [simp]: "x \<squnion> (x \<sqinter> y) = x"
25102
db3e412c4cb1 antisymmetry not a default intro rule any longer
haftmann
parents: 25062
diff changeset
   343
  by (blast intro: antisym sup_ge1 sup_least inf_le1)
21733
131dd2a27137 Modified lattice locale
nipkow
parents: 21619
diff changeset
   344
32064
53ca12ff305d refinement of lattice classes
haftmann
parents: 32063
diff changeset
   345
lemmas inf_sup_aci = inf_aci sup_aci
21734
283461c15fa7 renaming
nipkow
parents: 21733
diff changeset
   346
22454
c3654ba76a09 integrated with LOrder.thy
haftmann
parents: 22422
diff changeset
   347
lemmas inf_sup_ord = inf_le1 inf_le2 sup_ge1 sup_ge2
c3654ba76a09 integrated with LOrder.thy
haftmann
parents: 22422
diff changeset
   348
63588
d0e2bad67bd4 misc tuning and modernization;
wenzelm
parents: 63322
diff changeset
   349
text \<open>Towards distributivity.\<close>
21249
d594c58e24ed renamed Lattice_Locales to Lattices
haftmann
parents:
diff changeset
   350
21734
283461c15fa7 renaming
nipkow
parents: 21733
diff changeset
   351
lemma distrib_sup_le: "x \<squnion> (y \<sqinter> z) \<sqsubseteq> (x \<squnion> y) \<sqinter> (x \<squnion> z)"
32064
53ca12ff305d refinement of lattice classes
haftmann
parents: 32063
diff changeset
   352
  by (auto intro: le_infI1 le_infI2 le_supI1 le_supI2)
21734
283461c15fa7 renaming
nipkow
parents: 21733
diff changeset
   353
283461c15fa7 renaming
nipkow
parents: 21733
diff changeset
   354
lemma distrib_inf_le: "(x \<sqinter> y) \<squnion> (x \<sqinter> z) \<sqsubseteq> x \<sqinter> (y \<squnion> z)"
32064
53ca12ff305d refinement of lattice classes
haftmann
parents: 32063
diff changeset
   355
  by (auto intro: le_infI1 le_infI2 le_supI1 le_supI2)
21734
283461c15fa7 renaming
nipkow
parents: 21733
diff changeset
   356
63322
bc1f17d45e91 misc tuning and modernization;
wenzelm
parents: 63290
diff changeset
   357
text \<open>If you have one of them, you have them all.\<close>
21249
d594c58e24ed renamed Lattice_Locales to Lattices
haftmann
parents:
diff changeset
   358
21733
131dd2a27137 Modified lattice locale
nipkow
parents: 21619
diff changeset
   359
lemma distrib_imp1:
63322
bc1f17d45e91 misc tuning and modernization;
wenzelm
parents: 63290
diff changeset
   360
  assumes distrib: "\<And>x y z. x \<sqinter> (y \<squnion> z) = (x \<sqinter> y) \<squnion> (x \<sqinter> z)"
bc1f17d45e91 misc tuning and modernization;
wenzelm
parents: 63290
diff changeset
   361
  shows "x \<squnion> (y \<sqinter> z) = (x \<squnion> y) \<sqinter> (x \<squnion> z)"
21249
d594c58e24ed renamed Lattice_Locales to Lattices
haftmann
parents:
diff changeset
   362
proof-
63322
bc1f17d45e91 misc tuning and modernization;
wenzelm
parents: 63290
diff changeset
   363
  have "x \<squnion> (y \<sqinter> z) = (x \<squnion> (x \<sqinter> z)) \<squnion> (y \<sqinter> z)"
bc1f17d45e91 misc tuning and modernization;
wenzelm
parents: 63290
diff changeset
   364
    by simp
44918
6a80fbc4e72c tune simpset for Complete_Lattices
noschinl
parents: 44845
diff changeset
   365
  also have "\<dots> = x \<squnion> (z \<sqinter> (x \<squnion> y))"
63322
bc1f17d45e91 misc tuning and modernization;
wenzelm
parents: 63290
diff changeset
   366
    by (simp add: distrib inf_commute sup_assoc del: sup_inf_absorb)
21249
d594c58e24ed renamed Lattice_Locales to Lattices
haftmann
parents:
diff changeset
   367
  also have "\<dots> = ((x \<squnion> y) \<sqinter> x) \<squnion> ((x \<squnion> y) \<sqinter> z)"
63322
bc1f17d45e91 misc tuning and modernization;
wenzelm
parents: 63290
diff changeset
   368
    by (simp add: inf_commute)
bc1f17d45e91 misc tuning and modernization;
wenzelm
parents: 63290
diff changeset
   369
  also have "\<dots> = (x \<squnion> y) \<sqinter> (x \<squnion> z)" by(simp add:distrib)
21249
d594c58e24ed renamed Lattice_Locales to Lattices
haftmann
parents:
diff changeset
   370
  finally show ?thesis .
d594c58e24ed renamed Lattice_Locales to Lattices
haftmann
parents:
diff changeset
   371
qed
d594c58e24ed renamed Lattice_Locales to Lattices
haftmann
parents:
diff changeset
   372
21733
131dd2a27137 Modified lattice locale
nipkow
parents: 21619
diff changeset
   373
lemma distrib_imp2:
63322
bc1f17d45e91 misc tuning and modernization;
wenzelm
parents: 63290
diff changeset
   374
  assumes distrib: "\<And>x y z. x \<squnion> (y \<sqinter> z) = (x \<squnion> y) \<sqinter> (x \<squnion> z)"
bc1f17d45e91 misc tuning and modernization;
wenzelm
parents: 63290
diff changeset
   375
  shows "x \<sqinter> (y \<squnion> z) = (x \<sqinter> y) \<squnion> (x \<sqinter> z)"
21249
d594c58e24ed renamed Lattice_Locales to Lattices
haftmann
parents:
diff changeset
   376
proof-
63322
bc1f17d45e91 misc tuning and modernization;
wenzelm
parents: 63290
diff changeset
   377
  have "x \<sqinter> (y \<squnion> z) = (x \<sqinter> (x \<squnion> z)) \<sqinter> (y \<squnion> z)"
bc1f17d45e91 misc tuning and modernization;
wenzelm
parents: 63290
diff changeset
   378
    by simp
44918
6a80fbc4e72c tune simpset for Complete_Lattices
noschinl
parents: 44845
diff changeset
   379
  also have "\<dots> = x \<sqinter> (z \<squnion> (x \<sqinter> y))"
63322
bc1f17d45e91 misc tuning and modernization;
wenzelm
parents: 63290
diff changeset
   380
    by (simp add: distrib sup_commute inf_assoc del: inf_sup_absorb)
21249
d594c58e24ed renamed Lattice_Locales to Lattices
haftmann
parents:
diff changeset
   381
  also have "\<dots> = ((x \<sqinter> y) \<squnion> x) \<sqinter> ((x \<sqinter> y) \<squnion> z)"
63322
bc1f17d45e91 misc tuning and modernization;
wenzelm
parents: 63290
diff changeset
   382
    by (simp add: sup_commute)
bc1f17d45e91 misc tuning and modernization;
wenzelm
parents: 63290
diff changeset
   383
  also have "\<dots> = (x \<sqinter> y) \<squnion> (x \<sqinter> z)" by (simp add:distrib)
21249
d594c58e24ed renamed Lattice_Locales to Lattices
haftmann
parents:
diff changeset
   384
  finally show ?thesis .
d594c58e24ed renamed Lattice_Locales to Lattices
haftmann
parents:
diff changeset
   385
qed
d594c58e24ed renamed Lattice_Locales to Lattices
haftmann
parents:
diff changeset
   386
21733
131dd2a27137 Modified lattice locale
nipkow
parents: 21619
diff changeset
   387
end
21249
d594c58e24ed renamed Lattice_Locales to Lattices
haftmann
parents:
diff changeset
   388
63322
bc1f17d45e91 misc tuning and modernization;
wenzelm
parents: 63290
diff changeset
   389
60758
d8d85a8172b5 isabelle update_cartouches;
wenzelm
parents: 59545
diff changeset
   390
subsubsection \<open>Strict order\<close>
32568
89518a3074e1 some lemmas about strict order in lattices
haftmann
parents: 32512
diff changeset
   391
35028
108662d50512 more consistent naming of type classes involving orderings (and lattices) -- c.f. NEWS
haftmann
parents: 34973
diff changeset
   392
context semilattice_inf
32568
89518a3074e1 some lemmas about strict order in lattices
haftmann
parents: 32512
diff changeset
   393
begin
89518a3074e1 some lemmas about strict order in lattices
haftmann
parents: 32512
diff changeset
   394
63322
bc1f17d45e91 misc tuning and modernization;
wenzelm
parents: 63290
diff changeset
   395
lemma less_infI1: "a \<sqsubset> x \<Longrightarrow> a \<sqinter> b \<sqsubset> x"
32642
026e7c6a6d08 be more cautious wrt. simp rules: inf_absorb1, inf_absorb2, sup_absorb1, sup_absorb2 are no simp rules by default any longer
haftmann
parents: 32568
diff changeset
   396
  by (auto simp add: less_le inf_absorb1 intro: le_infI1)
32568
89518a3074e1 some lemmas about strict order in lattices
haftmann
parents: 32512
diff changeset
   397
63322
bc1f17d45e91 misc tuning and modernization;
wenzelm
parents: 63290
diff changeset
   398
lemma less_infI2: "b \<sqsubset> x \<Longrightarrow> a \<sqinter> b \<sqsubset> x"
32642
026e7c6a6d08 be more cautious wrt. simp rules: inf_absorb1, inf_absorb2, sup_absorb1, sup_absorb2 are no simp rules by default any longer
haftmann
parents: 32568
diff changeset
   399
  by (auto simp add: less_le inf_absorb2 intro: le_infI2)
32568
89518a3074e1 some lemmas about strict order in lattices
haftmann
parents: 32512
diff changeset
   400
89518a3074e1 some lemmas about strict order in lattices
haftmann
parents: 32512
diff changeset
   401
end
89518a3074e1 some lemmas about strict order in lattices
haftmann
parents: 32512
diff changeset
   402
35028
108662d50512 more consistent naming of type classes involving orderings (and lattices) -- c.f. NEWS
haftmann
parents: 34973
diff changeset
   403
context semilattice_sup
32568
89518a3074e1 some lemmas about strict order in lattices
haftmann
parents: 32512
diff changeset
   404
begin
89518a3074e1 some lemmas about strict order in lattices
haftmann
parents: 32512
diff changeset
   405
63322
bc1f17d45e91 misc tuning and modernization;
wenzelm
parents: 63290
diff changeset
   406
lemma less_supI1: "x \<sqsubset> a \<Longrightarrow> x \<sqsubset> a \<squnion> b"
44921
58eef4843641 tuned proofs
huffman
parents: 44919
diff changeset
   407
  using dual_semilattice
58eef4843641 tuned proofs
huffman
parents: 44919
diff changeset
   408
  by (rule semilattice_inf.less_infI1)
32568
89518a3074e1 some lemmas about strict order in lattices
haftmann
parents: 32512
diff changeset
   409
63322
bc1f17d45e91 misc tuning and modernization;
wenzelm
parents: 63290
diff changeset
   410
lemma less_supI2: "x \<sqsubset> b \<Longrightarrow> x \<sqsubset> a \<squnion> b"
44921
58eef4843641 tuned proofs
huffman
parents: 44919
diff changeset
   411
  using dual_semilattice
58eef4843641 tuned proofs
huffman
parents: 44919
diff changeset
   412
  by (rule semilattice_inf.less_infI2)
32568
89518a3074e1 some lemmas about strict order in lattices
haftmann
parents: 32512
diff changeset
   413
89518a3074e1 some lemmas about strict order in lattices
haftmann
parents: 32512
diff changeset
   414
end
89518a3074e1 some lemmas about strict order in lattices
haftmann
parents: 32512
diff changeset
   415
21249
d594c58e24ed renamed Lattice_Locales to Lattices
haftmann
parents:
diff changeset
   416
60758
d8d85a8172b5 isabelle update_cartouches;
wenzelm
parents: 59545
diff changeset
   417
subsection \<open>Distributive lattices\<close>
21249
d594c58e24ed renamed Lattice_Locales to Lattices
haftmann
parents:
diff changeset
   418
22454
c3654ba76a09 integrated with LOrder.thy
haftmann
parents: 22422
diff changeset
   419
class distrib_lattice = lattice +
21249
d594c58e24ed renamed Lattice_Locales to Lattices
haftmann
parents:
diff changeset
   420
  assumes sup_inf_distrib1: "x \<squnion> (y \<sqinter> z) = (x \<squnion> y) \<sqinter> (x \<squnion> z)"
d594c58e24ed renamed Lattice_Locales to Lattices
haftmann
parents:
diff changeset
   421
21733
131dd2a27137 Modified lattice locale
nipkow
parents: 21619
diff changeset
   422
context distrib_lattice
131dd2a27137 Modified lattice locale
nipkow
parents: 21619
diff changeset
   423
begin
131dd2a27137 Modified lattice locale
nipkow
parents: 21619
diff changeset
   424
63322
bc1f17d45e91 misc tuning and modernization;
wenzelm
parents: 63290
diff changeset
   425
lemma sup_inf_distrib2: "(y \<sqinter> z) \<squnion> x = (y \<squnion> x) \<sqinter> (z \<squnion> x)"
44921
58eef4843641 tuned proofs
huffman
parents: 44919
diff changeset
   426
  by (simp add: sup_commute sup_inf_distrib1)
21249
d594c58e24ed renamed Lattice_Locales to Lattices
haftmann
parents:
diff changeset
   427
63322
bc1f17d45e91 misc tuning and modernization;
wenzelm
parents: 63290
diff changeset
   428
lemma inf_sup_distrib1: "x \<sqinter> (y \<squnion> z) = (x \<sqinter> y) \<squnion> (x \<sqinter> z)"
44921
58eef4843641 tuned proofs
huffman
parents: 44919
diff changeset
   429
  by (rule distrib_imp2 [OF sup_inf_distrib1])
21249
d594c58e24ed renamed Lattice_Locales to Lattices
haftmann
parents:
diff changeset
   430
63322
bc1f17d45e91 misc tuning and modernization;
wenzelm
parents: 63290
diff changeset
   431
lemma inf_sup_distrib2: "(y \<squnion> z) \<sqinter> x = (y \<sqinter> x) \<squnion> (z \<sqinter> x)"
44921
58eef4843641 tuned proofs
huffman
parents: 44919
diff changeset
   432
  by (simp add: inf_commute inf_sup_distrib1)
21249
d594c58e24ed renamed Lattice_Locales to Lattices
haftmann
parents:
diff changeset
   433
63322
bc1f17d45e91 misc tuning and modernization;
wenzelm
parents: 63290
diff changeset
   434
lemma dual_distrib_lattice: "class.distrib_lattice sup (op \<ge>) (op >) inf"
36635
080b755377c0 locale predicates of classes carry a mandatory "class" prefix
haftmann
parents: 36352
diff changeset
   435
  by (rule class.distrib_lattice.intro, rule dual_lattice)
31991
37390299214a added boolean_algebra type class; tuned lattice duals
haftmann
parents: 30729
diff changeset
   436
    (unfold_locales, fact inf_sup_distrib1)
37390299214a added boolean_algebra type class; tuned lattice duals
haftmann
parents: 30729
diff changeset
   437
63322
bc1f17d45e91 misc tuning and modernization;
wenzelm
parents: 63290
diff changeset
   438
lemmas sup_inf_distrib = sup_inf_distrib1 sup_inf_distrib2
36008
23dfa8678c7c add/change some lemmas about lattices
huffman
parents: 35724
diff changeset
   439
63322
bc1f17d45e91 misc tuning and modernization;
wenzelm
parents: 63290
diff changeset
   440
lemmas inf_sup_distrib = inf_sup_distrib1 inf_sup_distrib2
36008
23dfa8678c7c add/change some lemmas about lattices
huffman
parents: 35724
diff changeset
   441
63322
bc1f17d45e91 misc tuning and modernization;
wenzelm
parents: 63290
diff changeset
   442
lemmas distrib = sup_inf_distrib1 sup_inf_distrib2 inf_sup_distrib1 inf_sup_distrib2
21249
d594c58e24ed renamed Lattice_Locales to Lattices
haftmann
parents:
diff changeset
   443
21733
131dd2a27137 Modified lattice locale
nipkow
parents: 21619
diff changeset
   444
end
131dd2a27137 Modified lattice locale
nipkow
parents: 21619
diff changeset
   445
21249
d594c58e24ed renamed Lattice_Locales to Lattices
haftmann
parents:
diff changeset
   446
60758
d8d85a8172b5 isabelle update_cartouches;
wenzelm
parents: 59545
diff changeset
   447
subsection \<open>Bounded lattices and boolean algebras\<close>
31991
37390299214a added boolean_algebra type class; tuned lattice duals
haftmann
parents: 30729
diff changeset
   448
52729
412c9e0381a1 factored syntactic type classes for bot and top (by Alessandro Coglio)
haftmann
parents: 52152
diff changeset
   449
class bounded_semilattice_inf_top = semilattice_inf + order_top
52152
b561cdce6c4c examples for interpretation into target
haftmann
parents: 51593
diff changeset
   450
begin
51487
f4bfdee99304 locales for abstract orders
haftmann
parents: 51387
diff changeset
   451
61605
1bf7b186542e qualifier is mandatory by default;
wenzelm
parents: 61169
diff changeset
   452
sublocale inf_top: semilattice_neutr inf top
1bf7b186542e qualifier is mandatory by default;
wenzelm
parents: 61169
diff changeset
   453
  + inf_top: semilattice_neutr_order inf top less_eq less
51487
f4bfdee99304 locales for abstract orders
haftmann
parents: 51387
diff changeset
   454
proof
63322
bc1f17d45e91 misc tuning and modernization;
wenzelm
parents: 63290
diff changeset
   455
  show "x \<sqinter> \<top> = x" for x
51487
f4bfdee99304 locales for abstract orders
haftmann
parents: 51387
diff changeset
   456
    by (rule inf_absorb1) simp
f4bfdee99304 locales for abstract orders
haftmann
parents: 51387
diff changeset
   457
qed
f4bfdee99304 locales for abstract orders
haftmann
parents: 51387
diff changeset
   458
52152
b561cdce6c4c examples for interpretation into target
haftmann
parents: 51593
diff changeset
   459
end
51487
f4bfdee99304 locales for abstract orders
haftmann
parents: 51387
diff changeset
   460
52729
412c9e0381a1 factored syntactic type classes for bot and top (by Alessandro Coglio)
haftmann
parents: 52152
diff changeset
   461
class bounded_semilattice_sup_bot = semilattice_sup + order_bot
52152
b561cdce6c4c examples for interpretation into target
haftmann
parents: 51593
diff changeset
   462
begin
b561cdce6c4c examples for interpretation into target
haftmann
parents: 51593
diff changeset
   463
61605
1bf7b186542e qualifier is mandatory by default;
wenzelm
parents: 61169
diff changeset
   464
sublocale sup_bot: semilattice_neutr sup bot
1bf7b186542e qualifier is mandatory by default;
wenzelm
parents: 61169
diff changeset
   465
  + sup_bot: semilattice_neutr_order sup bot greater_eq greater
51487
f4bfdee99304 locales for abstract orders
haftmann
parents: 51387
diff changeset
   466
proof
63322
bc1f17d45e91 misc tuning and modernization;
wenzelm
parents: 63290
diff changeset
   467
  show "x \<squnion> \<bottom> = x" for x
51487
f4bfdee99304 locales for abstract orders
haftmann
parents: 51387
diff changeset
   468
    by (rule sup_absorb1) simp
f4bfdee99304 locales for abstract orders
haftmann
parents: 51387
diff changeset
   469
qed
f4bfdee99304 locales for abstract orders
haftmann
parents: 51387
diff changeset
   470
52152
b561cdce6c4c examples for interpretation into target
haftmann
parents: 51593
diff changeset
   471
end
b561cdce6c4c examples for interpretation into target
haftmann
parents: 51593
diff changeset
   472
52729
412c9e0381a1 factored syntactic type classes for bot and top (by Alessandro Coglio)
haftmann
parents: 52152
diff changeset
   473
class bounded_lattice_bot = lattice + order_bot
31991
37390299214a added boolean_algebra type class; tuned lattice duals
haftmann
parents: 30729
diff changeset
   474
begin
37390299214a added boolean_algebra type class; tuned lattice duals
haftmann
parents: 30729
diff changeset
   475
51487
f4bfdee99304 locales for abstract orders
haftmann
parents: 51387
diff changeset
   476
subclass bounded_semilattice_sup_bot ..
f4bfdee99304 locales for abstract orders
haftmann
parents: 51387
diff changeset
   477
63322
bc1f17d45e91 misc tuning and modernization;
wenzelm
parents: 63290
diff changeset
   478
lemma inf_bot_left [simp]: "\<bottom> \<sqinter> x = \<bottom>"
31991
37390299214a added boolean_algebra type class; tuned lattice duals
haftmann
parents: 30729
diff changeset
   479
  by (rule inf_absorb1) simp
37390299214a added boolean_algebra type class; tuned lattice duals
haftmann
parents: 30729
diff changeset
   480
63322
bc1f17d45e91 misc tuning and modernization;
wenzelm
parents: 63290
diff changeset
   481
lemma inf_bot_right [simp]: "x \<sqinter> \<bottom> = \<bottom>"
31991
37390299214a added boolean_algebra type class; tuned lattice duals
haftmann
parents: 30729
diff changeset
   482
  by (rule inf_absorb2) simp
37390299214a added boolean_algebra type class; tuned lattice duals
haftmann
parents: 30729
diff changeset
   483
63322
bc1f17d45e91 misc tuning and modernization;
wenzelm
parents: 63290
diff changeset
   484
lemma sup_bot_left: "\<bottom> \<squnion> x = x"
51487
f4bfdee99304 locales for abstract orders
haftmann
parents: 51387
diff changeset
   485
  by (fact sup_bot.left_neutral)
36352
f71978e47cd5 add bounded_lattice_bot and bounded_lattice_top type classes
Cezary Kaliszyk <kaliszyk@in.tum.de>
parents: 36096
diff changeset
   486
63322
bc1f17d45e91 misc tuning and modernization;
wenzelm
parents: 63290
diff changeset
   487
lemma sup_bot_right: "x \<squnion> \<bottom> = x"
51487
f4bfdee99304 locales for abstract orders
haftmann
parents: 51387
diff changeset
   488
  by (fact sup_bot.right_neutral)
36352
f71978e47cd5 add bounded_lattice_bot and bounded_lattice_top type classes
Cezary Kaliszyk <kaliszyk@in.tum.de>
parents: 36096
diff changeset
   489
63322
bc1f17d45e91 misc tuning and modernization;
wenzelm
parents: 63290
diff changeset
   490
lemma sup_eq_bot_iff [simp]: "x \<squnion> y = \<bottom> \<longleftrightarrow> x = \<bottom> \<and> y = \<bottom>"
36352
f71978e47cd5 add bounded_lattice_bot and bounded_lattice_top type classes
Cezary Kaliszyk <kaliszyk@in.tum.de>
parents: 36096
diff changeset
   491
  by (simp add: eq_iff)
f71978e47cd5 add bounded_lattice_bot and bounded_lattice_top type classes
Cezary Kaliszyk <kaliszyk@in.tum.de>
parents: 36096
diff changeset
   492
63322
bc1f17d45e91 misc tuning and modernization;
wenzelm
parents: 63290
diff changeset
   493
lemma bot_eq_sup_iff [simp]: "\<bottom> = x \<squnion> y \<longleftrightarrow> x = \<bottom> \<and> y = \<bottom>"
51593
d40aec502416 added lemma
nipkow
parents: 51546
diff changeset
   494
  by (simp add: eq_iff)
d40aec502416 added lemma
nipkow
parents: 51546
diff changeset
   495
36352
f71978e47cd5 add bounded_lattice_bot and bounded_lattice_top type classes
Cezary Kaliszyk <kaliszyk@in.tum.de>
parents: 36096
diff changeset
   496
end
f71978e47cd5 add bounded_lattice_bot and bounded_lattice_top type classes
Cezary Kaliszyk <kaliszyk@in.tum.de>
parents: 36096
diff changeset
   497
52729
412c9e0381a1 factored syntactic type classes for bot and top (by Alessandro Coglio)
haftmann
parents: 52152
diff changeset
   498
class bounded_lattice_top = lattice + order_top
36352
f71978e47cd5 add bounded_lattice_bot and bounded_lattice_top type classes
Cezary Kaliszyk <kaliszyk@in.tum.de>
parents: 36096
diff changeset
   499
begin
f71978e47cd5 add bounded_lattice_bot and bounded_lattice_top type classes
Cezary Kaliszyk <kaliszyk@in.tum.de>
parents: 36096
diff changeset
   500
51487
f4bfdee99304 locales for abstract orders
haftmann
parents: 51387
diff changeset
   501
subclass bounded_semilattice_inf_top ..
f4bfdee99304 locales for abstract orders
haftmann
parents: 51387
diff changeset
   502
63322
bc1f17d45e91 misc tuning and modernization;
wenzelm
parents: 63290
diff changeset
   503
lemma sup_top_left [simp]: "\<top> \<squnion> x = \<top>"
31991
37390299214a added boolean_algebra type class; tuned lattice duals
haftmann
parents: 30729
diff changeset
   504
  by (rule sup_absorb1) simp
37390299214a added boolean_algebra type class; tuned lattice duals
haftmann
parents: 30729
diff changeset
   505
63322
bc1f17d45e91 misc tuning and modernization;
wenzelm
parents: 63290
diff changeset
   506
lemma sup_top_right [simp]: "x \<squnion> \<top> = \<top>"
31991
37390299214a added boolean_algebra type class; tuned lattice duals
haftmann
parents: 30729
diff changeset
   507
  by (rule sup_absorb2) simp
37390299214a added boolean_algebra type class; tuned lattice duals
haftmann
parents: 30729
diff changeset
   508
63322
bc1f17d45e91 misc tuning and modernization;
wenzelm
parents: 63290
diff changeset
   509
lemma inf_top_left: "\<top> \<sqinter> x = x"
51487
f4bfdee99304 locales for abstract orders
haftmann
parents: 51387
diff changeset
   510
  by (fact inf_top.left_neutral)
31991
37390299214a added boolean_algebra type class; tuned lattice duals
haftmann
parents: 30729
diff changeset
   511
63322
bc1f17d45e91 misc tuning and modernization;
wenzelm
parents: 63290
diff changeset
   512
lemma inf_top_right: "x \<sqinter> \<top> = x"
51487
f4bfdee99304 locales for abstract orders
haftmann
parents: 51387
diff changeset
   513
  by (fact inf_top.right_neutral)
31991
37390299214a added boolean_algebra type class; tuned lattice duals
haftmann
parents: 30729
diff changeset
   514
63322
bc1f17d45e91 misc tuning and modernization;
wenzelm
parents: 63290
diff changeset
   515
lemma inf_eq_top_iff [simp]: "x \<sqinter> y = \<top> \<longleftrightarrow> x = \<top> \<and> y = \<top>"
36008
23dfa8678c7c add/change some lemmas about lattices
huffman
parents: 35724
diff changeset
   516
  by (simp add: eq_iff)
32568
89518a3074e1 some lemmas about strict order in lattices
haftmann
parents: 32512
diff changeset
   517
36352
f71978e47cd5 add bounded_lattice_bot and bounded_lattice_top type classes
Cezary Kaliszyk <kaliszyk@in.tum.de>
parents: 36096
diff changeset
   518
end
f71978e47cd5 add bounded_lattice_bot and bounded_lattice_top type classes
Cezary Kaliszyk <kaliszyk@in.tum.de>
parents: 36096
diff changeset
   519
52729
412c9e0381a1 factored syntactic type classes for bot and top (by Alessandro Coglio)
haftmann
parents: 52152
diff changeset
   520
class bounded_lattice = lattice + order_bot + order_top
36352
f71978e47cd5 add bounded_lattice_bot and bounded_lattice_top type classes
Cezary Kaliszyk <kaliszyk@in.tum.de>
parents: 36096
diff changeset
   521
begin
f71978e47cd5 add bounded_lattice_bot and bounded_lattice_top type classes
Cezary Kaliszyk <kaliszyk@in.tum.de>
parents: 36096
diff changeset
   522
51487
f4bfdee99304 locales for abstract orders
haftmann
parents: 51387
diff changeset
   523
subclass bounded_lattice_bot ..
f4bfdee99304 locales for abstract orders
haftmann
parents: 51387
diff changeset
   524
subclass bounded_lattice_top ..
f4bfdee99304 locales for abstract orders
haftmann
parents: 51387
diff changeset
   525
63322
bc1f17d45e91 misc tuning and modernization;
wenzelm
parents: 63290
diff changeset
   526
lemma dual_bounded_lattice: "class.bounded_lattice sup greater_eq greater inf \<top> \<bottom>"
36352
f71978e47cd5 add bounded_lattice_bot and bounded_lattice_top type classes
Cezary Kaliszyk <kaliszyk@in.tum.de>
parents: 36096
diff changeset
   527
  by unfold_locales (auto simp add: less_le_not_le)
32568
89518a3074e1 some lemmas about strict order in lattices
haftmann
parents: 32512
diff changeset
   528
34007
aea892559fc5 tuned lattices theory fragements; generlized some lemmas from sets to lattices
haftmann
parents: 32781
diff changeset
   529
end
aea892559fc5 tuned lattices theory fragements; generlized some lemmas from sets to lattices
haftmann
parents: 32781
diff changeset
   530
aea892559fc5 tuned lattices theory fragements; generlized some lemmas from sets to lattices
haftmann
parents: 32781
diff changeset
   531
class boolean_algebra = distrib_lattice + bounded_lattice + minus + uminus +
aea892559fc5 tuned lattices theory fragements; generlized some lemmas from sets to lattices
haftmann
parents: 32781
diff changeset
   532
  assumes inf_compl_bot: "x \<sqinter> - x = \<bottom>"
aea892559fc5 tuned lattices theory fragements; generlized some lemmas from sets to lattices
haftmann
parents: 32781
diff changeset
   533
    and sup_compl_top: "x \<squnion> - x = \<top>"
aea892559fc5 tuned lattices theory fragements; generlized some lemmas from sets to lattices
haftmann
parents: 32781
diff changeset
   534
  assumes diff_eq: "x - y = x \<sqinter> - y"
aea892559fc5 tuned lattices theory fragements; generlized some lemmas from sets to lattices
haftmann
parents: 32781
diff changeset
   535
begin
aea892559fc5 tuned lattices theory fragements; generlized some lemmas from sets to lattices
haftmann
parents: 32781
diff changeset
   536
aea892559fc5 tuned lattices theory fragements; generlized some lemmas from sets to lattices
haftmann
parents: 32781
diff changeset
   537
lemma dual_boolean_algebra:
44845
5e51075cbd97 added syntactic classes for "inf" and "sup"
krauss
parents: 44085
diff changeset
   538
  "class.boolean_algebra (\<lambda>x y. x \<squnion> - y) uminus sup greater_eq greater inf \<top> \<bottom>"
63588
d0e2bad67bd4 misc tuning and modernization;
wenzelm
parents: 63322
diff changeset
   539
  by (rule class.boolean_algebra.intro,
d0e2bad67bd4 misc tuning and modernization;
wenzelm
parents: 63322
diff changeset
   540
      rule dual_bounded_lattice,
d0e2bad67bd4 misc tuning and modernization;
wenzelm
parents: 63322
diff changeset
   541
      rule dual_distrib_lattice)
34007
aea892559fc5 tuned lattices theory fragements; generlized some lemmas from sets to lattices
haftmann
parents: 32781
diff changeset
   542
    (unfold_locales, auto simp add: inf_compl_bot sup_compl_top diff_eq)
aea892559fc5 tuned lattices theory fragements; generlized some lemmas from sets to lattices
haftmann
parents: 32781
diff changeset
   543
63322
bc1f17d45e91 misc tuning and modernization;
wenzelm
parents: 63290
diff changeset
   544
lemma compl_inf_bot [simp]: "- x \<sqinter> x = \<bottom>"
34007
aea892559fc5 tuned lattices theory fragements; generlized some lemmas from sets to lattices
haftmann
parents: 32781
diff changeset
   545
  by (simp add: inf_commute inf_compl_bot)
aea892559fc5 tuned lattices theory fragements; generlized some lemmas from sets to lattices
haftmann
parents: 32781
diff changeset
   546
63322
bc1f17d45e91 misc tuning and modernization;
wenzelm
parents: 63290
diff changeset
   547
lemma compl_sup_top [simp]: "- x \<squnion> x = \<top>"
34007
aea892559fc5 tuned lattices theory fragements; generlized some lemmas from sets to lattices
haftmann
parents: 32781
diff changeset
   548
  by (simp add: sup_commute sup_compl_top)
aea892559fc5 tuned lattices theory fragements; generlized some lemmas from sets to lattices
haftmann
parents: 32781
diff changeset
   549
31991
37390299214a added boolean_algebra type class; tuned lattice duals
haftmann
parents: 30729
diff changeset
   550
lemma compl_unique:
34007
aea892559fc5 tuned lattices theory fragements; generlized some lemmas from sets to lattices
haftmann
parents: 32781
diff changeset
   551
  assumes "x \<sqinter> y = \<bottom>"
aea892559fc5 tuned lattices theory fragements; generlized some lemmas from sets to lattices
haftmann
parents: 32781
diff changeset
   552
    and "x \<squnion> y = \<top>"
31991
37390299214a added boolean_algebra type class; tuned lattice duals
haftmann
parents: 30729
diff changeset
   553
  shows "- x = y"
37390299214a added boolean_algebra type class; tuned lattice duals
haftmann
parents: 30729
diff changeset
   554
proof -
37390299214a added boolean_algebra type class; tuned lattice duals
haftmann
parents: 30729
diff changeset
   555
  have "(x \<sqinter> - x) \<squnion> (- x \<sqinter> y) = (x \<sqinter> y) \<squnion> (- x \<sqinter> y)"
37390299214a added boolean_algebra type class; tuned lattice duals
haftmann
parents: 30729
diff changeset
   556
    using inf_compl_bot assms(1) by simp
37390299214a added boolean_algebra type class; tuned lattice duals
haftmann
parents: 30729
diff changeset
   557
  then have "(- x \<sqinter> x) \<squnion> (- x \<sqinter> y) = (y \<sqinter> x) \<squnion> (y \<sqinter> - x)"
37390299214a added boolean_algebra type class; tuned lattice duals
haftmann
parents: 30729
diff changeset
   558
    by (simp add: inf_commute)
37390299214a added boolean_algebra type class; tuned lattice duals
haftmann
parents: 30729
diff changeset
   559
  then have "- x \<sqinter> (x \<squnion> y) = y \<sqinter> (x \<squnion> - x)"
37390299214a added boolean_algebra type class; tuned lattice duals
haftmann
parents: 30729
diff changeset
   560
    by (simp add: inf_sup_distrib1)
34007
aea892559fc5 tuned lattices theory fragements; generlized some lemmas from sets to lattices
haftmann
parents: 32781
diff changeset
   561
  then have "- x \<sqinter> \<top> = y \<sqinter> \<top>"
31991
37390299214a added boolean_algebra type class; tuned lattice duals
haftmann
parents: 30729
diff changeset
   562
    using sup_compl_top assms(2) by simp
34209
c7f621786035 killed a few warnings
krauss
parents: 34007
diff changeset
   563
  then show "- x = y" by simp
31991
37390299214a added boolean_algebra type class; tuned lattice duals
haftmann
parents: 30729
diff changeset
   564
qed
37390299214a added boolean_algebra type class; tuned lattice duals
haftmann
parents: 30729
diff changeset
   565
63322
bc1f17d45e91 misc tuning and modernization;
wenzelm
parents: 63290
diff changeset
   566
lemma double_compl [simp]: "- (- x) = x"
31991
37390299214a added boolean_algebra type class; tuned lattice duals
haftmann
parents: 30729
diff changeset
   567
  using compl_inf_bot compl_sup_top by (rule compl_unique)
37390299214a added boolean_algebra type class; tuned lattice duals
haftmann
parents: 30729
diff changeset
   568
63322
bc1f17d45e91 misc tuning and modernization;
wenzelm
parents: 63290
diff changeset
   569
lemma compl_eq_compl_iff [simp]: "- x = - y \<longleftrightarrow> x = y"
31991
37390299214a added boolean_algebra type class; tuned lattice duals
haftmann
parents: 30729
diff changeset
   570
proof
37390299214a added boolean_algebra type class; tuned lattice duals
haftmann
parents: 30729
diff changeset
   571
  assume "- x = - y"
36008
23dfa8678c7c add/change some lemmas about lattices
huffman
parents: 35724
diff changeset
   572
  then have "- (- x) = - (- y)" by (rule arg_cong)
31991
37390299214a added boolean_algebra type class; tuned lattice duals
haftmann
parents: 30729
diff changeset
   573
  then show "x = y" by simp
37390299214a added boolean_algebra type class; tuned lattice duals
haftmann
parents: 30729
diff changeset
   574
next
37390299214a added boolean_algebra type class; tuned lattice duals
haftmann
parents: 30729
diff changeset
   575
  assume "x = y"
37390299214a added boolean_algebra type class; tuned lattice duals
haftmann
parents: 30729
diff changeset
   576
  then show "- x = - y" by simp
37390299214a added boolean_algebra type class; tuned lattice duals
haftmann
parents: 30729
diff changeset
   577
qed
37390299214a added boolean_algebra type class; tuned lattice duals
haftmann
parents: 30729
diff changeset
   578
63322
bc1f17d45e91 misc tuning and modernization;
wenzelm
parents: 63290
diff changeset
   579
lemma compl_bot_eq [simp]: "- \<bottom> = \<top>"
31991
37390299214a added boolean_algebra type class; tuned lattice duals
haftmann
parents: 30729
diff changeset
   580
proof -
34007
aea892559fc5 tuned lattices theory fragements; generlized some lemmas from sets to lattices
haftmann
parents: 32781
diff changeset
   581
  from sup_compl_top have "\<bottom> \<squnion> - \<bottom> = \<top>" .
31991
37390299214a added boolean_algebra type class; tuned lattice duals
haftmann
parents: 30729
diff changeset
   582
  then show ?thesis by simp
37390299214a added boolean_algebra type class; tuned lattice duals
haftmann
parents: 30729
diff changeset
   583
qed
37390299214a added boolean_algebra type class; tuned lattice duals
haftmann
parents: 30729
diff changeset
   584
63322
bc1f17d45e91 misc tuning and modernization;
wenzelm
parents: 63290
diff changeset
   585
lemma compl_top_eq [simp]: "- \<top> = \<bottom>"
31991
37390299214a added boolean_algebra type class; tuned lattice duals
haftmann
parents: 30729
diff changeset
   586
proof -
34007
aea892559fc5 tuned lattices theory fragements; generlized some lemmas from sets to lattices
haftmann
parents: 32781
diff changeset
   587
  from inf_compl_bot have "\<top> \<sqinter> - \<top> = \<bottom>" .
31991
37390299214a added boolean_algebra type class; tuned lattice duals
haftmann
parents: 30729
diff changeset
   588
  then show ?thesis by simp
37390299214a added boolean_algebra type class; tuned lattice duals
haftmann
parents: 30729
diff changeset
   589
qed
37390299214a added boolean_algebra type class; tuned lattice duals
haftmann
parents: 30729
diff changeset
   590
63322
bc1f17d45e91 misc tuning and modernization;
wenzelm
parents: 63290
diff changeset
   591
lemma compl_inf [simp]: "- (x \<sqinter> y) = - x \<squnion> - y"
31991
37390299214a added boolean_algebra type class; tuned lattice duals
haftmann
parents: 30729
diff changeset
   592
proof (rule compl_unique)
36008
23dfa8678c7c add/change some lemmas about lattices
huffman
parents: 35724
diff changeset
   593
  have "(x \<sqinter> y) \<sqinter> (- x \<squnion> - y) = (y \<sqinter> (x \<sqinter> - x)) \<squnion> (x \<sqinter> (y \<sqinter> - y))"
23dfa8678c7c add/change some lemmas about lattices
huffman
parents: 35724
diff changeset
   594
    by (simp only: inf_sup_distrib inf_aci)
23dfa8678c7c add/change some lemmas about lattices
huffman
parents: 35724
diff changeset
   595
  then show "(x \<sqinter> y) \<sqinter> (- x \<squnion> - y) = \<bottom>"
31991
37390299214a added boolean_algebra type class; tuned lattice duals
haftmann
parents: 30729
diff changeset
   596
    by (simp add: inf_compl_bot)
37390299214a added boolean_algebra type class; tuned lattice duals
haftmann
parents: 30729
diff changeset
   597
next
36008
23dfa8678c7c add/change some lemmas about lattices
huffman
parents: 35724
diff changeset
   598
  have "(x \<sqinter> y) \<squnion> (- x \<squnion> - y) = (- y \<squnion> (x \<squnion> - x)) \<sqinter> (- x \<squnion> (y \<squnion> - y))"
23dfa8678c7c add/change some lemmas about lattices
huffman
parents: 35724
diff changeset
   599
    by (simp only: sup_inf_distrib sup_aci)
23dfa8678c7c add/change some lemmas about lattices
huffman
parents: 35724
diff changeset
   600
  then show "(x \<sqinter> y) \<squnion> (- x \<squnion> - y) = \<top>"
31991
37390299214a added boolean_algebra type class; tuned lattice duals
haftmann
parents: 30729
diff changeset
   601
    by (simp add: sup_compl_top)
37390299214a added boolean_algebra type class; tuned lattice duals
haftmann
parents: 30729
diff changeset
   602
qed
37390299214a added boolean_algebra type class; tuned lattice duals
haftmann
parents: 30729
diff changeset
   603
63322
bc1f17d45e91 misc tuning and modernization;
wenzelm
parents: 63290
diff changeset
   604
lemma compl_sup [simp]: "- (x \<squnion> y) = - x \<sqinter> - y"
44921
58eef4843641 tuned proofs
huffman
parents: 44919
diff changeset
   605
  using dual_boolean_algebra
58eef4843641 tuned proofs
huffman
parents: 44919
diff changeset
   606
  by (rule boolean_algebra.compl_inf)
31991
37390299214a added boolean_algebra type class; tuned lattice duals
haftmann
parents: 30729
diff changeset
   607
36008
23dfa8678c7c add/change some lemmas about lattices
huffman
parents: 35724
diff changeset
   608
lemma compl_mono:
63322
bc1f17d45e91 misc tuning and modernization;
wenzelm
parents: 63290
diff changeset
   609
  assumes "x \<sqsubseteq> y"
bc1f17d45e91 misc tuning and modernization;
wenzelm
parents: 63290
diff changeset
   610
  shows "- y \<sqsubseteq> - x"
36008
23dfa8678c7c add/change some lemmas about lattices
huffman
parents: 35724
diff changeset
   611
proof -
63322
bc1f17d45e91 misc tuning and modernization;
wenzelm
parents: 63290
diff changeset
   612
  from assms have "x \<squnion> y = y" by (simp only: le_iff_sup)
36008
23dfa8678c7c add/change some lemmas about lattices
huffman
parents: 35724
diff changeset
   613
  then have "- (x \<squnion> y) = - y" by simp
23dfa8678c7c add/change some lemmas about lattices
huffman
parents: 35724
diff changeset
   614
  then have "- x \<sqinter> - y = - y" by simp
23dfa8678c7c add/change some lemmas about lattices
huffman
parents: 35724
diff changeset
   615
  then have "- y \<sqinter> - x = - y" by (simp only: inf_commute)
63322
bc1f17d45e91 misc tuning and modernization;
wenzelm
parents: 63290
diff changeset
   616
  then show ?thesis by (simp only: le_iff_inf)
36008
23dfa8678c7c add/change some lemmas about lattices
huffman
parents: 35724
diff changeset
   617
qed
23dfa8678c7c add/change some lemmas about lattices
huffman
parents: 35724
diff changeset
   618
63322
bc1f17d45e91 misc tuning and modernization;
wenzelm
parents: 63290
diff changeset
   619
lemma compl_le_compl_iff [simp]: "- x \<sqsubseteq> - y \<longleftrightarrow> y \<sqsubseteq> x"
43873
8a2f339641c1 more on complement
haftmann
parents: 43753
diff changeset
   620
  by (auto dest: compl_mono)
8a2f339641c1 more on complement
haftmann
parents: 43753
diff changeset
   621
8a2f339641c1 more on complement
haftmann
parents: 43753
diff changeset
   622
lemma compl_le_swap1:
63322
bc1f17d45e91 misc tuning and modernization;
wenzelm
parents: 63290
diff changeset
   623
  assumes "y \<sqsubseteq> - x"
bc1f17d45e91 misc tuning and modernization;
wenzelm
parents: 63290
diff changeset
   624
  shows "x \<sqsubseteq> -y"
43873
8a2f339641c1 more on complement
haftmann
parents: 43753
diff changeset
   625
proof -
8a2f339641c1 more on complement
haftmann
parents: 43753
diff changeset
   626
  from assms have "- (- x) \<sqsubseteq> - y" by (simp only: compl_le_compl_iff)
8a2f339641c1 more on complement
haftmann
parents: 43753
diff changeset
   627
  then show ?thesis by simp
8a2f339641c1 more on complement
haftmann
parents: 43753
diff changeset
   628
qed
8a2f339641c1 more on complement
haftmann
parents: 43753
diff changeset
   629
8a2f339641c1 more on complement
haftmann
parents: 43753
diff changeset
   630
lemma compl_le_swap2:
63322
bc1f17d45e91 misc tuning and modernization;
wenzelm
parents: 63290
diff changeset
   631
  assumes "- y \<sqsubseteq> x"
bc1f17d45e91 misc tuning and modernization;
wenzelm
parents: 63290
diff changeset
   632
  shows "- x \<sqsubseteq> y"
43873
8a2f339641c1 more on complement
haftmann
parents: 43753
diff changeset
   633
proof -
8a2f339641c1 more on complement
haftmann
parents: 43753
diff changeset
   634
  from assms have "- x \<sqsubseteq> - (- y)" by (simp only: compl_le_compl_iff)
8a2f339641c1 more on complement
haftmann
parents: 43753
diff changeset
   635
  then show ?thesis by simp
8a2f339641c1 more on complement
haftmann
parents: 43753
diff changeset
   636
qed
8a2f339641c1 more on complement
haftmann
parents: 43753
diff changeset
   637
63322
bc1f17d45e91 misc tuning and modernization;
wenzelm
parents: 63290
diff changeset
   638
lemma compl_less_compl_iff: "- x \<sqsubset> - y \<longleftrightarrow> y \<sqsubset> x"  (* TODO: declare [simp] ? *)
44919
482f1807976e tune proofs
noschinl
parents: 44918
diff changeset
   639
  by (auto simp add: less_le)
43873
8a2f339641c1 more on complement
haftmann
parents: 43753
diff changeset
   640
8a2f339641c1 more on complement
haftmann
parents: 43753
diff changeset
   641
lemma compl_less_swap1:
63322
bc1f17d45e91 misc tuning and modernization;
wenzelm
parents: 63290
diff changeset
   642
  assumes "y \<sqsubset> - x"
bc1f17d45e91 misc tuning and modernization;
wenzelm
parents: 63290
diff changeset
   643
  shows "x \<sqsubset> - y"
43873
8a2f339641c1 more on complement
haftmann
parents: 43753
diff changeset
   644
proof -
8a2f339641c1 more on complement
haftmann
parents: 43753
diff changeset
   645
  from assms have "- (- x) \<sqsubset> - y" by (simp only: compl_less_compl_iff)
8a2f339641c1 more on complement
haftmann
parents: 43753
diff changeset
   646
  then show ?thesis by simp
8a2f339641c1 more on complement
haftmann
parents: 43753
diff changeset
   647
qed
8a2f339641c1 more on complement
haftmann
parents: 43753
diff changeset
   648
8a2f339641c1 more on complement
haftmann
parents: 43753
diff changeset
   649
lemma compl_less_swap2:
63322
bc1f17d45e91 misc tuning and modernization;
wenzelm
parents: 63290
diff changeset
   650
  assumes "- y \<sqsubset> x"
bc1f17d45e91 misc tuning and modernization;
wenzelm
parents: 63290
diff changeset
   651
  shows "- x \<sqsubset> y"
43873
8a2f339641c1 more on complement
haftmann
parents: 43753
diff changeset
   652
proof -
63588
d0e2bad67bd4 misc tuning and modernization;
wenzelm
parents: 63322
diff changeset
   653
  from assms have "- x \<sqsubset> - (- y)"
d0e2bad67bd4 misc tuning and modernization;
wenzelm
parents: 63322
diff changeset
   654
    by (simp only: compl_less_compl_iff)
43873
8a2f339641c1 more on complement
haftmann
parents: 43753
diff changeset
   655
  then show ?thesis by simp
8a2f339641c1 more on complement
haftmann
parents: 43753
diff changeset
   656
qed
36008
23dfa8678c7c add/change some lemmas about lattices
huffman
parents: 35724
diff changeset
   657
61629
90f54d9e63f2 cancel complementary terms as arguments to sup/inf in boolean algebras
Andreas Lochbihler
parents: 61605
diff changeset
   658
lemma sup_cancel_left1: "sup (sup x a) (sup (- x) b) = top"
63322
bc1f17d45e91 misc tuning and modernization;
wenzelm
parents: 63290
diff changeset
   659
  by (simp add: inf_sup_aci sup_compl_top)
61629
90f54d9e63f2 cancel complementary terms as arguments to sup/inf in boolean algebras
Andreas Lochbihler
parents: 61605
diff changeset
   660
90f54d9e63f2 cancel complementary terms as arguments to sup/inf in boolean algebras
Andreas Lochbihler
parents: 61605
diff changeset
   661
lemma sup_cancel_left2: "sup (sup (- x) a) (sup x b) = top"
63322
bc1f17d45e91 misc tuning and modernization;
wenzelm
parents: 63290
diff changeset
   662
  by (simp add: inf_sup_aci sup_compl_top)
61629
90f54d9e63f2 cancel complementary terms as arguments to sup/inf in boolean algebras
Andreas Lochbihler
parents: 61605
diff changeset
   663
90f54d9e63f2 cancel complementary terms as arguments to sup/inf in boolean algebras
Andreas Lochbihler
parents: 61605
diff changeset
   664
lemma inf_cancel_left1: "inf (inf x a) (inf (- x) b) = bot"
63322
bc1f17d45e91 misc tuning and modernization;
wenzelm
parents: 63290
diff changeset
   665
  by (simp add: inf_sup_aci inf_compl_bot)
61629
90f54d9e63f2 cancel complementary terms as arguments to sup/inf in boolean algebras
Andreas Lochbihler
parents: 61605
diff changeset
   666
90f54d9e63f2 cancel complementary terms as arguments to sup/inf in boolean algebras
Andreas Lochbihler
parents: 61605
diff changeset
   667
lemma inf_cancel_left2: "inf (inf (- x) a) (inf x b) = bot"
63322
bc1f17d45e91 misc tuning and modernization;
wenzelm
parents: 63290
diff changeset
   668
  by (simp add: inf_sup_aci inf_compl_bot)
61629
90f54d9e63f2 cancel complementary terms as arguments to sup/inf in boolean algebras
Andreas Lochbihler
parents: 61605
diff changeset
   669
63588
d0e2bad67bd4 misc tuning and modernization;
wenzelm
parents: 63322
diff changeset
   670
declare inf_compl_bot [simp]
d0e2bad67bd4 misc tuning and modernization;
wenzelm
parents: 63322
diff changeset
   671
  and sup_compl_top [simp]
61629
90f54d9e63f2 cancel complementary terms as arguments to sup/inf in boolean algebras
Andreas Lochbihler
parents: 61605
diff changeset
   672
90f54d9e63f2 cancel complementary terms as arguments to sup/inf in boolean algebras
Andreas Lochbihler
parents: 61605
diff changeset
   673
lemma sup_compl_top_left1 [simp]: "sup (- x) (sup x y) = top"
63322
bc1f17d45e91 misc tuning and modernization;
wenzelm
parents: 63290
diff changeset
   674
  by (simp add: sup_assoc[symmetric])
61629
90f54d9e63f2 cancel complementary terms as arguments to sup/inf in boolean algebras
Andreas Lochbihler
parents: 61605
diff changeset
   675
90f54d9e63f2 cancel complementary terms as arguments to sup/inf in boolean algebras
Andreas Lochbihler
parents: 61605
diff changeset
   676
lemma sup_compl_top_left2 [simp]: "sup x (sup (- x) y) = top"
63322
bc1f17d45e91 misc tuning and modernization;
wenzelm
parents: 63290
diff changeset
   677
  using sup_compl_top_left1[of "- x" y] by simp
61629
90f54d9e63f2 cancel complementary terms as arguments to sup/inf in boolean algebras
Andreas Lochbihler
parents: 61605
diff changeset
   678
90f54d9e63f2 cancel complementary terms as arguments to sup/inf in boolean algebras
Andreas Lochbihler
parents: 61605
diff changeset
   679
lemma inf_compl_bot_left1 [simp]: "inf (- x) (inf x y) = bot"
63322
bc1f17d45e91 misc tuning and modernization;
wenzelm
parents: 63290
diff changeset
   680
  by (simp add: inf_assoc[symmetric])
61629
90f54d9e63f2 cancel complementary terms as arguments to sup/inf in boolean algebras
Andreas Lochbihler
parents: 61605
diff changeset
   681
90f54d9e63f2 cancel complementary terms as arguments to sup/inf in boolean algebras
Andreas Lochbihler
parents: 61605
diff changeset
   682
lemma inf_compl_bot_left2 [simp]: "inf x (inf (- x) y) = bot"
63322
bc1f17d45e91 misc tuning and modernization;
wenzelm
parents: 63290
diff changeset
   683
  using inf_compl_bot_left1[of "- x" y] by simp
61629
90f54d9e63f2 cancel complementary terms as arguments to sup/inf in boolean algebras
Andreas Lochbihler
parents: 61605
diff changeset
   684
90f54d9e63f2 cancel complementary terms as arguments to sup/inf in boolean algebras
Andreas Lochbihler
parents: 61605
diff changeset
   685
lemma inf_compl_bot_right [simp]: "inf x (inf y (- x)) = bot"
63322
bc1f17d45e91 misc tuning and modernization;
wenzelm
parents: 63290
diff changeset
   686
  by (subst inf_left_commute) simp
61629
90f54d9e63f2 cancel complementary terms as arguments to sup/inf in boolean algebras
Andreas Lochbihler
parents: 61605
diff changeset
   687
31991
37390299214a added boolean_algebra type class; tuned lattice duals
haftmann
parents: 30729
diff changeset
   688
end
37390299214a added boolean_algebra type class; tuned lattice duals
haftmann
parents: 30729
diff changeset
   689
61629
90f54d9e63f2 cancel complementary terms as arguments to sup/inf in boolean algebras
Andreas Lochbihler
parents: 61605
diff changeset
   690
ML_file "Tools/boolean_algebra_cancel.ML"
90f54d9e63f2 cancel complementary terms as arguments to sup/inf in boolean algebras
Andreas Lochbihler
parents: 61605
diff changeset
   691
90f54d9e63f2 cancel complementary terms as arguments to sup/inf in boolean algebras
Andreas Lochbihler
parents: 61605
diff changeset
   692
simproc_setup boolean_algebra_cancel_sup ("sup a b::'a::boolean_algebra") =
61799
4cf66f21b764 isabelle update_cartouches -c -t;
wenzelm
parents: 61629
diff changeset
   693
  \<open>fn phi => fn ss => try Boolean_Algebra_Cancel.cancel_sup_conv\<close>
61629
90f54d9e63f2 cancel complementary terms as arguments to sup/inf in boolean algebras
Andreas Lochbihler
parents: 61605
diff changeset
   694
90f54d9e63f2 cancel complementary terms as arguments to sup/inf in boolean algebras
Andreas Lochbihler
parents: 61605
diff changeset
   695
simproc_setup boolean_algebra_cancel_inf ("inf a b::'a::boolean_algebra") =
61799
4cf66f21b764 isabelle update_cartouches -c -t;
wenzelm
parents: 61629
diff changeset
   696
  \<open>fn phi => fn ss => try Boolean_Algebra_Cancel.cancel_inf_conv\<close>
31991
37390299214a added boolean_algebra type class; tuned lattice duals
haftmann
parents: 30729
diff changeset
   697
63322
bc1f17d45e91 misc tuning and modernization;
wenzelm
parents: 63290
diff changeset
   698
61799
4cf66f21b764 isabelle update_cartouches -c -t;
wenzelm
parents: 61629
diff changeset
   699
subsection \<open>\<open>min/max\<close> as special case of lattice\<close>
51540
eea5c4ca4a0e explicit sublocale dependency for Min/Max yields more appropriate Min/Max prefix for a couple of facts
haftmann
parents: 51489
diff changeset
   700
54861
00d551179872 postponed min/max lemmas until abstract lattice is available
haftmann
parents: 54859
diff changeset
   701
context linorder
00d551179872 postponed min/max lemmas until abstract lattice is available
haftmann
parents: 54859
diff changeset
   702
begin
00d551179872 postponed min/max lemmas until abstract lattice is available
haftmann
parents: 54859
diff changeset
   703
61605
1bf7b186542e qualifier is mandatory by default;
wenzelm
parents: 61169
diff changeset
   704
sublocale min: semilattice_order min less_eq less
1bf7b186542e qualifier is mandatory by default;
wenzelm
parents: 61169
diff changeset
   705
  + max: semilattice_order max greater_eq greater
61169
4de9ff3ea29a tuned proofs -- less legacy;
wenzelm
parents: 61076
diff changeset
   706
  by standard (auto simp add: min_def max_def)
51540
eea5c4ca4a0e explicit sublocale dependency for Min/Max yields more appropriate Min/Max prefix for a couple of facts
haftmann
parents: 51489
diff changeset
   707
63322
bc1f17d45e91 misc tuning and modernization;
wenzelm
parents: 63290
diff changeset
   708
lemma min_le_iff_disj: "min x y \<le> z \<longleftrightarrow> x \<le> z \<or> y \<le> z"
54861
00d551179872 postponed min/max lemmas until abstract lattice is available
haftmann
parents: 54859
diff changeset
   709
  unfolding min_def using linear by (auto intro: order_trans)
00d551179872 postponed min/max lemmas until abstract lattice is available
haftmann
parents: 54859
diff changeset
   710
63322
bc1f17d45e91 misc tuning and modernization;
wenzelm
parents: 63290
diff changeset
   711
lemma le_max_iff_disj: "z \<le> max x y \<longleftrightarrow> z \<le> x \<or> z \<le> y"
54861
00d551179872 postponed min/max lemmas until abstract lattice is available
haftmann
parents: 54859
diff changeset
   712
  unfolding max_def using linear by (auto intro: order_trans)
00d551179872 postponed min/max lemmas until abstract lattice is available
haftmann
parents: 54859
diff changeset
   713
63322
bc1f17d45e91 misc tuning and modernization;
wenzelm
parents: 63290
diff changeset
   714
lemma min_less_iff_disj: "min x y < z \<longleftrightarrow> x < z \<or> y < z"
54861
00d551179872 postponed min/max lemmas until abstract lattice is available
haftmann
parents: 54859
diff changeset
   715
  unfolding min_def le_less using less_linear by (auto intro: less_trans)
00d551179872 postponed min/max lemmas until abstract lattice is available
haftmann
parents: 54859
diff changeset
   716
63322
bc1f17d45e91 misc tuning and modernization;
wenzelm
parents: 63290
diff changeset
   717
lemma less_max_iff_disj: "z < max x y \<longleftrightarrow> z < x \<or> z < y"
54861
00d551179872 postponed min/max lemmas until abstract lattice is available
haftmann
parents: 54859
diff changeset
   718
  unfolding max_def le_less using less_linear by (auto intro: less_trans)
00d551179872 postponed min/max lemmas until abstract lattice is available
haftmann
parents: 54859
diff changeset
   719
63322
bc1f17d45e91 misc tuning and modernization;
wenzelm
parents: 63290
diff changeset
   720
lemma min_less_iff_conj [simp]: "z < min x y \<longleftrightarrow> z < x \<and> z < y"
54861
00d551179872 postponed min/max lemmas until abstract lattice is available
haftmann
parents: 54859
diff changeset
   721
  unfolding min_def le_less using less_linear by (auto intro: less_trans)
00d551179872 postponed min/max lemmas until abstract lattice is available
haftmann
parents: 54859
diff changeset
   722
63322
bc1f17d45e91 misc tuning and modernization;
wenzelm
parents: 63290
diff changeset
   723
lemma max_less_iff_conj [simp]: "max x y < z \<longleftrightarrow> x < z \<and> y < z"
54861
00d551179872 postponed min/max lemmas until abstract lattice is available
haftmann
parents: 54859
diff changeset
   724
  unfolding max_def le_less using less_linear by (auto intro: less_trans)
00d551179872 postponed min/max lemmas until abstract lattice is available
haftmann
parents: 54859
diff changeset
   725
63322
bc1f17d45e91 misc tuning and modernization;
wenzelm
parents: 63290
diff changeset
   726
lemma min_max_distrib1: "min (max b c) a = max (min b a) (min c a)"
54862
c65e5cbdbc97 explicit distributivity facts on min/max
haftmann
parents: 54861
diff changeset
   727
  by (auto simp add: min_def max_def not_le dest: le_less_trans less_trans intro: antisym)
c65e5cbdbc97 explicit distributivity facts on min/max
haftmann
parents: 54861
diff changeset
   728
63322
bc1f17d45e91 misc tuning and modernization;
wenzelm
parents: 63290
diff changeset
   729
lemma min_max_distrib2: "min a (max b c) = max (min a b) (min a c)"
54862
c65e5cbdbc97 explicit distributivity facts on min/max
haftmann
parents: 54861
diff changeset
   730
  by (auto simp add: min_def max_def not_le dest: le_less_trans less_trans intro: antisym)
c65e5cbdbc97 explicit distributivity facts on min/max
haftmann
parents: 54861
diff changeset
   731
63322
bc1f17d45e91 misc tuning and modernization;
wenzelm
parents: 63290
diff changeset
   732
lemma max_min_distrib1: "max (min b c) a = min (max b a) (max c a)"
54862
c65e5cbdbc97 explicit distributivity facts on min/max
haftmann
parents: 54861
diff changeset
   733
  by (auto simp add: min_def max_def not_le dest: le_less_trans less_trans intro: antisym)
c65e5cbdbc97 explicit distributivity facts on min/max
haftmann
parents: 54861
diff changeset
   734
63322
bc1f17d45e91 misc tuning and modernization;
wenzelm
parents: 63290
diff changeset
   735
lemma max_min_distrib2: "max a (min b c) = min (max a b) (max a c)"
54862
c65e5cbdbc97 explicit distributivity facts on min/max
haftmann
parents: 54861
diff changeset
   736
  by (auto simp add: min_def max_def not_le dest: le_less_trans less_trans intro: antisym)
c65e5cbdbc97 explicit distributivity facts on min/max
haftmann
parents: 54861
diff changeset
   737
c65e5cbdbc97 explicit distributivity facts on min/max
haftmann
parents: 54861
diff changeset
   738
lemmas min_max_distribs = min_max_distrib1 min_max_distrib2 max_min_distrib1 max_min_distrib2
c65e5cbdbc97 explicit distributivity facts on min/max
haftmann
parents: 54861
diff changeset
   739
63322
bc1f17d45e91 misc tuning and modernization;
wenzelm
parents: 63290
diff changeset
   740
lemma split_min [no_atp]: "P (min i j) \<longleftrightarrow> (i \<le> j \<longrightarrow> P i) \<and> (\<not> i \<le> j \<longrightarrow> P j)"
54861
00d551179872 postponed min/max lemmas until abstract lattice is available
haftmann
parents: 54859
diff changeset
   741
  by (simp add: min_def)
00d551179872 postponed min/max lemmas until abstract lattice is available
haftmann
parents: 54859
diff changeset
   742
63322
bc1f17d45e91 misc tuning and modernization;
wenzelm
parents: 63290
diff changeset
   743
lemma split_max [no_atp]: "P (max i j) \<longleftrightarrow> (i \<le> j \<longrightarrow> P j) \<and> (\<not> i \<le> j \<longrightarrow> P i)"
54861
00d551179872 postponed min/max lemmas until abstract lattice is available
haftmann
parents: 54859
diff changeset
   744
  by (simp add: max_def)
00d551179872 postponed min/max lemmas until abstract lattice is available
haftmann
parents: 54859
diff changeset
   745
63322
bc1f17d45e91 misc tuning and modernization;
wenzelm
parents: 63290
diff changeset
   746
lemma min_of_mono: "mono f \<Longrightarrow> min (f m) (f n) = f (min m n)" for f :: "'a \<Rightarrow> 'b::linorder"
54861
00d551179872 postponed min/max lemmas until abstract lattice is available
haftmann
parents: 54859
diff changeset
   747
  by (auto simp: mono_def Orderings.min_def min_def intro: Orderings.antisym)
00d551179872 postponed min/max lemmas until abstract lattice is available
haftmann
parents: 54859
diff changeset
   748
63322
bc1f17d45e91 misc tuning and modernization;
wenzelm
parents: 63290
diff changeset
   749
lemma max_of_mono: "mono f \<Longrightarrow> max (f m) (f n) = f (max m n)" for f :: "'a \<Rightarrow> 'b::linorder"
54861
00d551179872 postponed min/max lemmas until abstract lattice is available
haftmann
parents: 54859
diff changeset
   750
  by (auto simp: mono_def Orderings.max_def max_def intro: Orderings.antisym)
00d551179872 postponed min/max lemmas until abstract lattice is available
haftmann
parents: 54859
diff changeset
   751
00d551179872 postponed min/max lemmas until abstract lattice is available
haftmann
parents: 54859
diff changeset
   752
end
00d551179872 postponed min/max lemmas until abstract lattice is available
haftmann
parents: 54859
diff changeset
   753
61076
bdc1e2f0a86a eliminated \<Colon>;
wenzelm
parents: 60758
diff changeset
   754
lemma inf_min: "inf = (min :: 'a::{semilattice_inf,linorder} \<Rightarrow> 'a \<Rightarrow> 'a)"
51540
eea5c4ca4a0e explicit sublocale dependency for Min/Max yields more appropriate Min/Max prefix for a couple of facts
haftmann
parents: 51489
diff changeset
   755
  by (auto intro: antisym simp add: min_def fun_eq_iff)
eea5c4ca4a0e explicit sublocale dependency for Min/Max yields more appropriate Min/Max prefix for a couple of facts
haftmann
parents: 51489
diff changeset
   756
61076
bdc1e2f0a86a eliminated \<Colon>;
wenzelm
parents: 60758
diff changeset
   757
lemma sup_max: "sup = (max :: 'a::{semilattice_sup,linorder} \<Rightarrow> 'a \<Rightarrow> 'a)"
51540
eea5c4ca4a0e explicit sublocale dependency for Min/Max yields more appropriate Min/Max prefix for a couple of facts
haftmann
parents: 51489
diff changeset
   758
  by (auto intro: antisym simp add: max_def fun_eq_iff)
eea5c4ca4a0e explicit sublocale dependency for Min/Max yields more appropriate Min/Max prefix for a couple of facts
haftmann
parents: 51489
diff changeset
   759
eea5c4ca4a0e explicit sublocale dependency for Min/Max yields more appropriate Min/Max prefix for a couple of facts
haftmann
parents: 51489
diff changeset
   760
60758
d8d85a8172b5 isabelle update_cartouches;
wenzelm
parents: 59545
diff changeset
   761
subsection \<open>Uniqueness of inf and sup\<close>
22454
c3654ba76a09 integrated with LOrder.thy
haftmann
parents: 22422
diff changeset
   762
35028
108662d50512 more consistent naming of type classes involving orderings (and lattices) -- c.f. NEWS
haftmann
parents: 34973
diff changeset
   763
lemma (in semilattice_inf) inf_unique:
63322
bc1f17d45e91 misc tuning and modernization;
wenzelm
parents: 63290
diff changeset
   764
  fixes f  (infixl "\<triangle>" 70)
bc1f17d45e91 misc tuning and modernization;
wenzelm
parents: 63290
diff changeset
   765
  assumes le1: "\<And>x y. x \<triangle> y \<sqsubseteq> x"
bc1f17d45e91 misc tuning and modernization;
wenzelm
parents: 63290
diff changeset
   766
    and le2: "\<And>x y. x \<triangle> y \<sqsubseteq> y"
bc1f17d45e91 misc tuning and modernization;
wenzelm
parents: 63290
diff changeset
   767
    and greatest: "\<And>x y z. x \<sqsubseteq> y \<Longrightarrow> x \<sqsubseteq> z \<Longrightarrow> x \<sqsubseteq> y \<triangle> z"
22737
haftmann
parents: 22548
diff changeset
   768
  shows "x \<sqinter> y = x \<triangle> y"
22454
c3654ba76a09 integrated with LOrder.thy
haftmann
parents: 22422
diff changeset
   769
proof (rule antisym)
63322
bc1f17d45e91 misc tuning and modernization;
wenzelm
parents: 63290
diff changeset
   770
  show "x \<triangle> y \<sqsubseteq> x \<sqinter> y"
bc1f17d45e91 misc tuning and modernization;
wenzelm
parents: 63290
diff changeset
   771
    by (rule le_infI) (rule le1, rule le2)
bc1f17d45e91 misc tuning and modernization;
wenzelm
parents: 63290
diff changeset
   772
  have leI: "\<And>x y z. x \<sqsubseteq> y \<Longrightarrow> x \<sqsubseteq> z \<Longrightarrow> x \<sqsubseteq> y \<triangle> z"
bc1f17d45e91 misc tuning and modernization;
wenzelm
parents: 63290
diff changeset
   773
    by (blast intro: greatest)
bc1f17d45e91 misc tuning and modernization;
wenzelm
parents: 63290
diff changeset
   774
  show "x \<sqinter> y \<sqsubseteq> x \<triangle> y"
bc1f17d45e91 misc tuning and modernization;
wenzelm
parents: 63290
diff changeset
   775
    by (rule leI) simp_all
22454
c3654ba76a09 integrated with LOrder.thy
haftmann
parents: 22422
diff changeset
   776
qed
c3654ba76a09 integrated with LOrder.thy
haftmann
parents: 22422
diff changeset
   777
35028
108662d50512 more consistent naming of type classes involving orderings (and lattices) -- c.f. NEWS
haftmann
parents: 34973
diff changeset
   778
lemma (in semilattice_sup) sup_unique:
63322
bc1f17d45e91 misc tuning and modernization;
wenzelm
parents: 63290
diff changeset
   779
  fixes f  (infixl "\<nabla>" 70)
bc1f17d45e91 misc tuning and modernization;
wenzelm
parents: 63290
diff changeset
   780
  assumes ge1 [simp]: "\<And>x y. x \<sqsubseteq> x \<nabla> y"
bc1f17d45e91 misc tuning and modernization;
wenzelm
parents: 63290
diff changeset
   781
    and ge2: "\<And>x y. y \<sqsubseteq> x \<nabla> y"
bc1f17d45e91 misc tuning and modernization;
wenzelm
parents: 63290
diff changeset
   782
    and least: "\<And>x y z. y \<sqsubseteq> x \<Longrightarrow> z \<sqsubseteq> x \<Longrightarrow> y \<nabla> z \<sqsubseteq> x"
22737
haftmann
parents: 22548
diff changeset
   783
  shows "x \<squnion> y = x \<nabla> y"
22454
c3654ba76a09 integrated with LOrder.thy
haftmann
parents: 22422
diff changeset
   784
proof (rule antisym)
63322
bc1f17d45e91 misc tuning and modernization;
wenzelm
parents: 63290
diff changeset
   785
  show "x \<squnion> y \<sqsubseteq> x \<nabla> y"
bc1f17d45e91 misc tuning and modernization;
wenzelm
parents: 63290
diff changeset
   786
    by (rule le_supI) (rule ge1, rule ge2)
bc1f17d45e91 misc tuning and modernization;
wenzelm
parents: 63290
diff changeset
   787
  have leI: "\<And>x y z. x \<sqsubseteq> z \<Longrightarrow> y \<sqsubseteq> z \<Longrightarrow> x \<nabla> y \<sqsubseteq> z"
bc1f17d45e91 misc tuning and modernization;
wenzelm
parents: 63290
diff changeset
   788
    by (blast intro: least)
bc1f17d45e91 misc tuning and modernization;
wenzelm
parents: 63290
diff changeset
   789
  show "x \<nabla> y \<sqsubseteq> x \<squnion> y"
bc1f17d45e91 misc tuning and modernization;
wenzelm
parents: 63290
diff changeset
   790
    by (rule leI) simp_all
22454
c3654ba76a09 integrated with LOrder.thy
haftmann
parents: 22422
diff changeset
   791
qed
36008
23dfa8678c7c add/change some lemmas about lattices
huffman
parents: 35724
diff changeset
   792
22454
c3654ba76a09 integrated with LOrder.thy
haftmann
parents: 22422
diff changeset
   793
60758
d8d85a8172b5 isabelle update_cartouches;
wenzelm
parents: 59545
diff changeset
   794
subsection \<open>Lattice on @{typ bool}\<close>
22454
c3654ba76a09 integrated with LOrder.thy
haftmann
parents: 22422
diff changeset
   795
31991
37390299214a added boolean_algebra type class; tuned lattice duals
haftmann
parents: 30729
diff changeset
   796
instantiation bool :: boolean_algebra
25510
38c15efe603b adjustions to due to instance target
haftmann
parents: 25482
diff changeset
   797
begin
38c15efe603b adjustions to due to instance target
haftmann
parents: 25482
diff changeset
   798
63322
bc1f17d45e91 misc tuning and modernization;
wenzelm
parents: 63290
diff changeset
   799
definition bool_Compl_def [simp]: "uminus = Not"
31991
37390299214a added boolean_algebra type class; tuned lattice duals
haftmann
parents: 30729
diff changeset
   800
63322
bc1f17d45e91 misc tuning and modernization;
wenzelm
parents: 63290
diff changeset
   801
definition bool_diff_def [simp]: "A - B \<longleftrightarrow> A \<and> \<not> B"
31991
37390299214a added boolean_algebra type class; tuned lattice duals
haftmann
parents: 30729
diff changeset
   802
63322
bc1f17d45e91 misc tuning and modernization;
wenzelm
parents: 63290
diff changeset
   803
definition [simp]: "P \<sqinter> Q \<longleftrightarrow> P \<and> Q"
25510
38c15efe603b adjustions to due to instance target
haftmann
parents: 25482
diff changeset
   804
63322
bc1f17d45e91 misc tuning and modernization;
wenzelm
parents: 63290
diff changeset
   805
definition [simp]: "P \<squnion> Q \<longleftrightarrow> P \<or> Q"
25510
38c15efe603b adjustions to due to instance target
haftmann
parents: 25482
diff changeset
   806
63322
bc1f17d45e91 misc tuning and modernization;
wenzelm
parents: 63290
diff changeset
   807
instance by standard auto
22454
c3654ba76a09 integrated with LOrder.thy
haftmann
parents: 22422
diff changeset
   808
25510
38c15efe603b adjustions to due to instance target
haftmann
parents: 25482
diff changeset
   809
end
38c15efe603b adjustions to due to instance target
haftmann
parents: 25482
diff changeset
   810
63322
bc1f17d45e91 misc tuning and modernization;
wenzelm
parents: 63290
diff changeset
   811
lemma sup_boolI1: "P \<Longrightarrow> P \<squnion> Q"
41080
294956ff285b nice syntax for lattice INFI, SUPR;
haftmann
parents: 41075
diff changeset
   812
  by simp
32781
19c01bd7f6ae moved lemmas about sup on bool to Lattices.thy
haftmann
parents: 32780
diff changeset
   813
63322
bc1f17d45e91 misc tuning and modernization;
wenzelm
parents: 63290
diff changeset
   814
lemma sup_boolI2: "Q \<Longrightarrow> P \<squnion> Q"
41080
294956ff285b nice syntax for lattice INFI, SUPR;
haftmann
parents: 41075
diff changeset
   815
  by simp
32781
19c01bd7f6ae moved lemmas about sup on bool to Lattices.thy
haftmann
parents: 32780
diff changeset
   816
63322
bc1f17d45e91 misc tuning and modernization;
wenzelm
parents: 63290
diff changeset
   817
lemma sup_boolE: "P \<squnion> Q \<Longrightarrow> (P \<Longrightarrow> R) \<Longrightarrow> (Q \<Longrightarrow> R) \<Longrightarrow> R"
41080
294956ff285b nice syntax for lattice INFI, SUPR;
haftmann
parents: 41075
diff changeset
   818
  by auto
32781
19c01bd7f6ae moved lemmas about sup on bool to Lattices.thy
haftmann
parents: 32780
diff changeset
   819
23878
bd651ecd4b8a simplified HOL bootstrap
haftmann
parents: 23389
diff changeset
   820
60758
d8d85a8172b5 isabelle update_cartouches;
wenzelm
parents: 59545
diff changeset
   821
subsection \<open>Lattice on @{typ "_ \<Rightarrow> _"}\<close>
23878
bd651ecd4b8a simplified HOL bootstrap
haftmann
parents: 23389
diff changeset
   822
51387
dbc4a77488b2 stepwise instantiation is more modular
nipkow
parents: 50615
diff changeset
   823
instantiation "fun" :: (type, semilattice_sup) semilattice_sup
25510
38c15efe603b adjustions to due to instance target
haftmann
parents: 25482
diff changeset
   824
begin
38c15efe603b adjustions to due to instance target
haftmann
parents: 25482
diff changeset
   825
63322
bc1f17d45e91 misc tuning and modernization;
wenzelm
parents: 63290
diff changeset
   826
definition "f \<squnion> g = (\<lambda>x. f x \<squnion> g x)"
41080
294956ff285b nice syntax for lattice INFI, SUPR;
haftmann
parents: 41075
diff changeset
   827
63322
bc1f17d45e91 misc tuning and modernization;
wenzelm
parents: 63290
diff changeset
   828
lemma sup_apply [simp, code]: "(f \<squnion> g) x = f x \<squnion> g x"
41080
294956ff285b nice syntax for lattice INFI, SUPR;
haftmann
parents: 41075
diff changeset
   829
  by (simp add: sup_fun_def)
25510
38c15efe603b adjustions to due to instance target
haftmann
parents: 25482
diff changeset
   830
63588
d0e2bad67bd4 misc tuning and modernization;
wenzelm
parents: 63322
diff changeset
   831
instance
d0e2bad67bd4 misc tuning and modernization;
wenzelm
parents: 63322
diff changeset
   832
  by standard (simp_all add: le_fun_def)
23878
bd651ecd4b8a simplified HOL bootstrap
haftmann
parents: 23389
diff changeset
   833
25510
38c15efe603b adjustions to due to instance target
haftmann
parents: 25482
diff changeset
   834
end
23878
bd651ecd4b8a simplified HOL bootstrap
haftmann
parents: 23389
diff changeset
   835
51387
dbc4a77488b2 stepwise instantiation is more modular
nipkow
parents: 50615
diff changeset
   836
instantiation "fun" :: (type, semilattice_inf) semilattice_inf
dbc4a77488b2 stepwise instantiation is more modular
nipkow
parents: 50615
diff changeset
   837
begin
dbc4a77488b2 stepwise instantiation is more modular
nipkow
parents: 50615
diff changeset
   838
63322
bc1f17d45e91 misc tuning and modernization;
wenzelm
parents: 63290
diff changeset
   839
definition "f \<sqinter> g = (\<lambda>x. f x \<sqinter> g x)"
51387
dbc4a77488b2 stepwise instantiation is more modular
nipkow
parents: 50615
diff changeset
   840
63322
bc1f17d45e91 misc tuning and modernization;
wenzelm
parents: 63290
diff changeset
   841
lemma inf_apply [simp, code]: "(f \<sqinter> g) x = f x \<sqinter> g x"
51387
dbc4a77488b2 stepwise instantiation is more modular
nipkow
parents: 50615
diff changeset
   842
  by (simp add: inf_fun_def)
dbc4a77488b2 stepwise instantiation is more modular
nipkow
parents: 50615
diff changeset
   843
63322
bc1f17d45e91 misc tuning and modernization;
wenzelm
parents: 63290
diff changeset
   844
instance by standard (simp_all add: le_fun_def)
51387
dbc4a77488b2 stepwise instantiation is more modular
nipkow
parents: 50615
diff changeset
   845
dbc4a77488b2 stepwise instantiation is more modular
nipkow
parents: 50615
diff changeset
   846
end
dbc4a77488b2 stepwise instantiation is more modular
nipkow
parents: 50615
diff changeset
   847
dbc4a77488b2 stepwise instantiation is more modular
nipkow
parents: 50615
diff changeset
   848
instance "fun" :: (type, lattice) lattice ..
dbc4a77488b2 stepwise instantiation is more modular
nipkow
parents: 50615
diff changeset
   849
63322
bc1f17d45e91 misc tuning and modernization;
wenzelm
parents: 63290
diff changeset
   850
instance "fun" :: (type, distrib_lattice) distrib_lattice
bc1f17d45e91 misc tuning and modernization;
wenzelm
parents: 63290
diff changeset
   851
  by standard (rule ext, simp add: sup_inf_distrib1)
31991
37390299214a added boolean_algebra type class; tuned lattice duals
haftmann
parents: 30729
diff changeset
   852
34007
aea892559fc5 tuned lattices theory fragements; generlized some lemmas from sets to lattices
haftmann
parents: 32781
diff changeset
   853
instance "fun" :: (type, bounded_lattice) bounded_lattice ..
aea892559fc5 tuned lattices theory fragements; generlized some lemmas from sets to lattices
haftmann
parents: 32781
diff changeset
   854
31991
37390299214a added boolean_algebra type class; tuned lattice duals
haftmann
parents: 30729
diff changeset
   855
instantiation "fun" :: (type, uminus) uminus
37390299214a added boolean_algebra type class; tuned lattice duals
haftmann
parents: 30729
diff changeset
   856
begin
37390299214a added boolean_algebra type class; tuned lattice duals
haftmann
parents: 30729
diff changeset
   857
63322
bc1f17d45e91 misc tuning and modernization;
wenzelm
parents: 63290
diff changeset
   858
definition fun_Compl_def: "- A = (\<lambda>x. - A x)"
31991
37390299214a added boolean_algebra type class; tuned lattice duals
haftmann
parents: 30729
diff changeset
   859
63322
bc1f17d45e91 misc tuning and modernization;
wenzelm
parents: 63290
diff changeset
   860
lemma uminus_apply [simp, code]: "(- A) x = - (A x)"
41080
294956ff285b nice syntax for lattice INFI, SUPR;
haftmann
parents: 41075
diff changeset
   861
  by (simp add: fun_Compl_def)
294956ff285b nice syntax for lattice INFI, SUPR;
haftmann
parents: 41075
diff changeset
   862
31991
37390299214a added boolean_algebra type class; tuned lattice duals
haftmann
parents: 30729
diff changeset
   863
instance ..
37390299214a added boolean_algebra type class; tuned lattice duals
haftmann
parents: 30729
diff changeset
   864
37390299214a added boolean_algebra type class; tuned lattice duals
haftmann
parents: 30729
diff changeset
   865
end
37390299214a added boolean_algebra type class; tuned lattice duals
haftmann
parents: 30729
diff changeset
   866
37390299214a added boolean_algebra type class; tuned lattice duals
haftmann
parents: 30729
diff changeset
   867
instantiation "fun" :: (type, minus) minus
37390299214a added boolean_algebra type class; tuned lattice duals
haftmann
parents: 30729
diff changeset
   868
begin
37390299214a added boolean_algebra type class; tuned lattice duals
haftmann
parents: 30729
diff changeset
   869
63322
bc1f17d45e91 misc tuning and modernization;
wenzelm
parents: 63290
diff changeset
   870
definition fun_diff_def: "A - B = (\<lambda>x. A x - B x)"
31991
37390299214a added boolean_algebra type class; tuned lattice duals
haftmann
parents: 30729
diff changeset
   871
63322
bc1f17d45e91 misc tuning and modernization;
wenzelm
parents: 63290
diff changeset
   872
lemma minus_apply [simp, code]: "(A - B) x = A x - B x"
41080
294956ff285b nice syntax for lattice INFI, SUPR;
haftmann
parents: 41075
diff changeset
   873
  by (simp add: fun_diff_def)
294956ff285b nice syntax for lattice INFI, SUPR;
haftmann
parents: 41075
diff changeset
   874
31991
37390299214a added boolean_algebra type class; tuned lattice duals
haftmann
parents: 30729
diff changeset
   875
instance ..
37390299214a added boolean_algebra type class; tuned lattice duals
haftmann
parents: 30729
diff changeset
   876
37390299214a added boolean_algebra type class; tuned lattice duals
haftmann
parents: 30729
diff changeset
   877
end
37390299214a added boolean_algebra type class; tuned lattice duals
haftmann
parents: 30729
diff changeset
   878
63322
bc1f17d45e91 misc tuning and modernization;
wenzelm
parents: 63290
diff changeset
   879
instance "fun" :: (type, boolean_algebra) boolean_algebra
bc1f17d45e91 misc tuning and modernization;
wenzelm
parents: 63290
diff changeset
   880
  by standard (rule ext, simp_all add: inf_compl_bot sup_compl_top diff_eq)+
26794
354c3844dfde - Now imports Fun rather than Orderings
berghofe
parents: 26233
diff changeset
   881
46631
2c5c003cee35 moved lemmas for orderings and lattices on predicates to corresponding theories, retaining declaration order of classical rules; tuned headings; tuned syntax
haftmann
parents: 46557
diff changeset
   882
60758
d8d85a8172b5 isabelle update_cartouches;
wenzelm
parents: 59545
diff changeset
   883
subsection \<open>Lattice on unary and binary predicates\<close>
46631
2c5c003cee35 moved lemmas for orderings and lattices on predicates to corresponding theories, retaining declaration order of classical rules; tuned headings; tuned syntax
haftmann
parents: 46557
diff changeset
   884
2c5c003cee35 moved lemmas for orderings and lattices on predicates to corresponding theories, retaining declaration order of classical rules; tuned headings; tuned syntax
haftmann
parents: 46557
diff changeset
   885
lemma inf1I: "A x \<Longrightarrow> B x \<Longrightarrow> (A \<sqinter> B) x"
2c5c003cee35 moved lemmas for orderings and lattices on predicates to corresponding theories, retaining declaration order of classical rules; tuned headings; tuned syntax
haftmann
parents: 46557
diff changeset
   886
  by (simp add: inf_fun_def)
2c5c003cee35 moved lemmas for orderings and lattices on predicates to corresponding theories, retaining declaration order of classical rules; tuned headings; tuned syntax
haftmann
parents: 46557
diff changeset
   887
2c5c003cee35 moved lemmas for orderings and lattices on predicates to corresponding theories, retaining declaration order of classical rules; tuned headings; tuned syntax
haftmann
parents: 46557
diff changeset
   888
lemma inf2I: "A x y \<Longrightarrow> B x y \<Longrightarrow> (A \<sqinter> B) x y"
2c5c003cee35 moved lemmas for orderings and lattices on predicates to corresponding theories, retaining declaration order of classical rules; tuned headings; tuned syntax
haftmann
parents: 46557
diff changeset
   889
  by (simp add: inf_fun_def)
2c5c003cee35 moved lemmas for orderings and lattices on predicates to corresponding theories, retaining declaration order of classical rules; tuned headings; tuned syntax
haftmann
parents: 46557
diff changeset
   890
2c5c003cee35 moved lemmas for orderings and lattices on predicates to corresponding theories, retaining declaration order of classical rules; tuned headings; tuned syntax
haftmann
parents: 46557
diff changeset
   891
lemma inf1E: "(A \<sqinter> B) x \<Longrightarrow> (A x \<Longrightarrow> B x \<Longrightarrow> P) \<Longrightarrow> P"
2c5c003cee35 moved lemmas for orderings and lattices on predicates to corresponding theories, retaining declaration order of classical rules; tuned headings; tuned syntax
haftmann
parents: 46557
diff changeset
   892
  by (simp add: inf_fun_def)
2c5c003cee35 moved lemmas for orderings and lattices on predicates to corresponding theories, retaining declaration order of classical rules; tuned headings; tuned syntax
haftmann
parents: 46557
diff changeset
   893
2c5c003cee35 moved lemmas for orderings and lattices on predicates to corresponding theories, retaining declaration order of classical rules; tuned headings; tuned syntax
haftmann
parents: 46557
diff changeset
   894
lemma inf2E: "(A \<sqinter> B) x y \<Longrightarrow> (A x y \<Longrightarrow> B x y \<Longrightarrow> P) \<Longrightarrow> P"
2c5c003cee35 moved lemmas for orderings and lattices on predicates to corresponding theories, retaining declaration order of classical rules; tuned headings; tuned syntax
haftmann
parents: 46557
diff changeset
   895
  by (simp add: inf_fun_def)
2c5c003cee35 moved lemmas for orderings and lattices on predicates to corresponding theories, retaining declaration order of classical rules; tuned headings; tuned syntax
haftmann
parents: 46557
diff changeset
   896
2c5c003cee35 moved lemmas for orderings and lattices on predicates to corresponding theories, retaining declaration order of classical rules; tuned headings; tuned syntax
haftmann
parents: 46557
diff changeset
   897
lemma inf1D1: "(A \<sqinter> B) x \<Longrightarrow> A x"
54857
5c05f7c5f8ae tuning and augmentation of min/max lemmas;
haftmann
parents: 54555
diff changeset
   898
  by (rule inf1E)
46631
2c5c003cee35 moved lemmas for orderings and lattices on predicates to corresponding theories, retaining declaration order of classical rules; tuned headings; tuned syntax
haftmann
parents: 46557
diff changeset
   899
2c5c003cee35 moved lemmas for orderings and lattices on predicates to corresponding theories, retaining declaration order of classical rules; tuned headings; tuned syntax
haftmann
parents: 46557
diff changeset
   900
lemma inf2D1: "(A \<sqinter> B) x y \<Longrightarrow> A x y"
54857
5c05f7c5f8ae tuning and augmentation of min/max lemmas;
haftmann
parents: 54555
diff changeset
   901
  by (rule inf2E)
46631
2c5c003cee35 moved lemmas for orderings and lattices on predicates to corresponding theories, retaining declaration order of classical rules; tuned headings; tuned syntax
haftmann
parents: 46557
diff changeset
   902
2c5c003cee35 moved lemmas for orderings and lattices on predicates to corresponding theories, retaining declaration order of classical rules; tuned headings; tuned syntax
haftmann
parents: 46557
diff changeset
   903
lemma inf1D2: "(A \<sqinter> B) x \<Longrightarrow> B x"
54857
5c05f7c5f8ae tuning and augmentation of min/max lemmas;
haftmann
parents: 54555
diff changeset
   904
  by (rule inf1E)
46631
2c5c003cee35 moved lemmas for orderings and lattices on predicates to corresponding theories, retaining declaration order of classical rules; tuned headings; tuned syntax
haftmann
parents: 46557
diff changeset
   905
2c5c003cee35 moved lemmas for orderings and lattices on predicates to corresponding theories, retaining declaration order of classical rules; tuned headings; tuned syntax
haftmann
parents: 46557
diff changeset
   906
lemma inf2D2: "(A \<sqinter> B) x y \<Longrightarrow> B x y"
54857
5c05f7c5f8ae tuning and augmentation of min/max lemmas;
haftmann
parents: 54555
diff changeset
   907
  by (rule inf2E)
46631
2c5c003cee35 moved lemmas for orderings and lattices on predicates to corresponding theories, retaining declaration order of classical rules; tuned headings; tuned syntax
haftmann
parents: 46557
diff changeset
   908
2c5c003cee35 moved lemmas for orderings and lattices on predicates to corresponding theories, retaining declaration order of classical rules; tuned headings; tuned syntax
haftmann
parents: 46557
diff changeset
   909
lemma sup1I1: "A x \<Longrightarrow> (A \<squnion> B) x"
2c5c003cee35 moved lemmas for orderings and lattices on predicates to corresponding theories, retaining declaration order of classical rules; tuned headings; tuned syntax
haftmann
parents: 46557
diff changeset
   910
  by (simp add: sup_fun_def)
2c5c003cee35 moved lemmas for orderings and lattices on predicates to corresponding theories, retaining declaration order of classical rules; tuned headings; tuned syntax
haftmann
parents: 46557
diff changeset
   911
2c5c003cee35 moved lemmas for orderings and lattices on predicates to corresponding theories, retaining declaration order of classical rules; tuned headings; tuned syntax
haftmann
parents: 46557
diff changeset
   912
lemma sup2I1: "A x y \<Longrightarrow> (A \<squnion> B) x y"
2c5c003cee35 moved lemmas for orderings and lattices on predicates to corresponding theories, retaining declaration order of classical rules; tuned headings; tuned syntax
haftmann
parents: 46557
diff changeset
   913
  by (simp add: sup_fun_def)
2c5c003cee35 moved lemmas for orderings and lattices on predicates to corresponding theories, retaining declaration order of classical rules; tuned headings; tuned syntax
haftmann
parents: 46557
diff changeset
   914
2c5c003cee35 moved lemmas for orderings and lattices on predicates to corresponding theories, retaining declaration order of classical rules; tuned headings; tuned syntax
haftmann
parents: 46557
diff changeset
   915
lemma sup1I2: "B x \<Longrightarrow> (A \<squnion> B) x"
2c5c003cee35 moved lemmas for orderings and lattices on predicates to corresponding theories, retaining declaration order of classical rules; tuned headings; tuned syntax
haftmann
parents: 46557
diff changeset
   916
  by (simp add: sup_fun_def)
2c5c003cee35 moved lemmas for orderings and lattices on predicates to corresponding theories, retaining declaration order of classical rules; tuned headings; tuned syntax
haftmann
parents: 46557
diff changeset
   917
2c5c003cee35 moved lemmas for orderings and lattices on predicates to corresponding theories, retaining declaration order of classical rules; tuned headings; tuned syntax
haftmann
parents: 46557
diff changeset
   918
lemma sup2I2: "B x y \<Longrightarrow> (A \<squnion> B) x y"
2c5c003cee35 moved lemmas for orderings and lattices on predicates to corresponding theories, retaining declaration order of classical rules; tuned headings; tuned syntax
haftmann
parents: 46557
diff changeset
   919
  by (simp add: sup_fun_def)
2c5c003cee35 moved lemmas for orderings and lattices on predicates to corresponding theories, retaining declaration order of classical rules; tuned headings; tuned syntax
haftmann
parents: 46557
diff changeset
   920
2c5c003cee35 moved lemmas for orderings and lattices on predicates to corresponding theories, retaining declaration order of classical rules; tuned headings; tuned syntax
haftmann
parents: 46557
diff changeset
   921
lemma sup1E: "(A \<squnion> B) x \<Longrightarrow> (A x \<Longrightarrow> P) \<Longrightarrow> (B x \<Longrightarrow> P) \<Longrightarrow> P"
2c5c003cee35 moved lemmas for orderings and lattices on predicates to corresponding theories, retaining declaration order of classical rules; tuned headings; tuned syntax
haftmann
parents: 46557
diff changeset
   922
  by (simp add: sup_fun_def) iprover
2c5c003cee35 moved lemmas for orderings and lattices on predicates to corresponding theories, retaining declaration order of classical rules; tuned headings; tuned syntax
haftmann
parents: 46557
diff changeset
   923
2c5c003cee35 moved lemmas for orderings and lattices on predicates to corresponding theories, retaining declaration order of classical rules; tuned headings; tuned syntax
haftmann
parents: 46557
diff changeset
   924
lemma sup2E: "(A \<squnion> B) x y \<Longrightarrow> (A x y \<Longrightarrow> P) \<Longrightarrow> (B x y \<Longrightarrow> P) \<Longrightarrow> P"
2c5c003cee35 moved lemmas for orderings and lattices on predicates to corresponding theories, retaining declaration order of classical rules; tuned headings; tuned syntax
haftmann
parents: 46557
diff changeset
   925
  by (simp add: sup_fun_def) iprover
2c5c003cee35 moved lemmas for orderings and lattices on predicates to corresponding theories, retaining declaration order of classical rules; tuned headings; tuned syntax
haftmann
parents: 46557
diff changeset
   926
63322
bc1f17d45e91 misc tuning and modernization;
wenzelm
parents: 63290
diff changeset
   927
text \<open> \<^medskip> Classical introduction rule: no commitment to \<open>A\<close> vs \<open>B\<close>.\<close>
46631
2c5c003cee35 moved lemmas for orderings and lattices on predicates to corresponding theories, retaining declaration order of classical rules; tuned headings; tuned syntax
haftmann
parents: 46557
diff changeset
   928
2c5c003cee35 moved lemmas for orderings and lattices on predicates to corresponding theories, retaining declaration order of classical rules; tuned headings; tuned syntax
haftmann
parents: 46557
diff changeset
   929
lemma sup1CI: "(\<not> B x \<Longrightarrow> A x) \<Longrightarrow> (A \<squnion> B) x"
2c5c003cee35 moved lemmas for orderings and lattices on predicates to corresponding theories, retaining declaration order of classical rules; tuned headings; tuned syntax
haftmann
parents: 46557
diff changeset
   930
  by (auto simp add: sup_fun_def)
2c5c003cee35 moved lemmas for orderings and lattices on predicates to corresponding theories, retaining declaration order of classical rules; tuned headings; tuned syntax
haftmann
parents: 46557
diff changeset
   931
2c5c003cee35 moved lemmas for orderings and lattices on predicates to corresponding theories, retaining declaration order of classical rules; tuned headings; tuned syntax
haftmann
parents: 46557
diff changeset
   932
lemma sup2CI: "(\<not> B x y \<Longrightarrow> A x y) \<Longrightarrow> (A \<squnion> B) x y"
2c5c003cee35 moved lemmas for orderings and lattices on predicates to corresponding theories, retaining declaration order of classical rules; tuned headings; tuned syntax
haftmann
parents: 46557
diff changeset
   933
  by (auto simp add: sup_fun_def)
2c5c003cee35 moved lemmas for orderings and lattices on predicates to corresponding theories, retaining declaration order of classical rules; tuned headings; tuned syntax
haftmann
parents: 46557
diff changeset
   934
2c5c003cee35 moved lemmas for orderings and lattices on predicates to corresponding theories, retaining declaration order of classical rules; tuned headings; tuned syntax
haftmann
parents: 46557
diff changeset
   935
25062
af5ef0d4d655 global class syntax
haftmann
parents: 24749
diff changeset
   936
no_notation
46691
72d81e789106 tuned syntax declarations; tuned structure
haftmann
parents: 46689
diff changeset
   937
  less_eq (infix "\<sqsubseteq>" 50) and
72d81e789106 tuned syntax declarations; tuned structure
haftmann
parents: 46689
diff changeset
   938
  less (infix "\<sqsubset>" 50)
25062
af5ef0d4d655 global class syntax
haftmann
parents: 24749
diff changeset
   939
21249
d594c58e24ed renamed Lattice_Locales to Lattices
haftmann
parents:
diff changeset
   940
end