src/HOL/HOL.thy
author haftmann
Tue, 19 Sep 2006 15:21:44 +0200
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child 20698 cb910529d49d
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introduced syntactic classes; moved some setup to Pure/codegen, Pure/nbe or OperationalEquality.thy
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(*  Title:      HOL/HOL.thy
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    ID:         $Id$
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    Author:     Tobias Nipkow, Markus Wenzel, and Larry Paulson
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*)
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header {* The basis of Higher-Order Logic *}
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theory HOL
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imports CPure
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uses ("cladata.ML") ("blastdata.ML") ("simpdata.ML")
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    "Tools/res_atpset.ML"
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begin
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subsection {* Primitive logic *}
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subsubsection {* Core syntax *}
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classes type
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defaultsort type
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global
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typedecl bool
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arities
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  bool :: type
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  "fun" :: (type, type) type
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judgment
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  Trueprop      :: "bool => prop"                   ("(_)" 5)
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consts
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  Not           :: "bool => bool"                   ("~ _" [40] 40)
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  True          :: bool
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  False         :: bool
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  arbitrary     :: 'a
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  undefined     :: 'a
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  The           :: "('a => bool) => 'a"
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  All           :: "('a => bool) => bool"           (binder "ALL " 10)
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  Ex            :: "('a => bool) => bool"           (binder "EX " 10)
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  Ex1           :: "('a => bool) => bool"           (binder "EX! " 10)
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  Let           :: "['a, 'a => 'b] => 'b"
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  "="           :: "['a, 'a] => bool"               (infixl 50)
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  &             :: "[bool, bool] => bool"           (infixr 35)
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  "|"           :: "[bool, bool] => bool"           (infixr 30)
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  -->           :: "[bool, bool] => bool"           (infixr 25)
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local
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consts
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  If            :: "[bool, 'a, 'a] => 'a"           ("(if (_)/ then (_)/ else (_))" 10)
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subsubsection {* Additional concrete syntax *}
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const_syntax (output)
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  "op ="  (infix "=" 50)
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abbreviation
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  not_equal     :: "['a, 'a] => bool"               (infixl "~=" 50)
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  "x ~= y == ~ (x = y)"
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const_syntax (output)
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  not_equal  (infix "~=" 50)
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const_syntax (xsymbols)
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  Not  ("\<not> _" [40] 40)
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  "op &"  (infixr "\<and>" 35)
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  "op |"  (infixr "\<or>" 30)
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  "op -->"  (infixr "\<longrightarrow>" 25)
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  not_equal  (infix "\<noteq>" 50)
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const_syntax (HTML output)
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  Not  ("\<not> _" [40] 40)
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  "op &"  (infixr "\<and>" 35)
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  "op |"  (infixr "\<or>" 30)
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  not_equal  (infix "\<noteq>" 50)
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abbreviation (iff)
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  iff :: "[bool, bool] => bool"  (infixr "<->" 25)
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  "A <-> B == A = B"
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const_syntax (xsymbols)
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  iff  (infixr "\<longleftrightarrow>" 25)
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nonterminals
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  letbinds  letbind
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  case_syn  cases_syn
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syntax
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  "_The"        :: "[pttrn, bool] => 'a"                 ("(3THE _./ _)" [0, 10] 10)
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  "_bind"       :: "[pttrn, 'a] => letbind"              ("(2_ =/ _)" 10)
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  ""            :: "letbind => letbinds"                 ("_")
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  "_binds"      :: "[letbind, letbinds] => letbinds"     ("_;/ _")
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  "_Let"        :: "[letbinds, 'a] => 'a"                ("(let (_)/ in (_))" 10)
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  "_case_syntax":: "['a, cases_syn] => 'b"               ("(case _ of/ _)" 10)
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  "_case1"      :: "['a, 'b] => case_syn"                ("(2_ =>/ _)" 10)
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  ""            :: "case_syn => cases_syn"               ("_")
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  "_case2"      :: "[case_syn, cases_syn] => cases_syn"  ("_/ | _")
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translations
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  "THE x. P"              == "The (%x. P)"
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  "_Let (_binds b bs) e"  == "_Let b (_Let bs e)"
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  "let x = a in e"        == "Let a (%x. e)"
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print_translation {*
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(* To avoid eta-contraction of body: *)
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[("The", fn [Abs abs] =>
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     let val (x,t) = atomic_abs_tr' abs
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     in Syntax.const "_The" $ x $ t end)]
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*}
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syntax (xsymbols)
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  "ALL "        :: "[idts, bool] => bool"                ("(3\<forall>_./ _)" [0, 10] 10)
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  "EX "         :: "[idts, bool] => bool"                ("(3\<exists>_./ _)" [0, 10] 10)
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  "EX! "        :: "[idts, bool] => bool"                ("(3\<exists>!_./ _)" [0, 10] 10)
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  "_case1"      :: "['a, 'b] => case_syn"                ("(2_ \<Rightarrow>/ _)" 10)
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(*"_case2"      :: "[case_syn, cases_syn] => cases_syn"  ("_/ \<orelse> _")*)
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syntax (HTML output)
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  "ALL "        :: "[idts, bool] => bool"                ("(3\<forall>_./ _)" [0, 10] 10)
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  "EX "         :: "[idts, bool] => bool"                ("(3\<exists>_./ _)" [0, 10] 10)
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  "EX! "        :: "[idts, bool] => bool"                ("(3\<exists>!_./ _)" [0, 10] 10)
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syntax (HOL)
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  "ALL "        :: "[idts, bool] => bool"                ("(3! _./ _)" [0, 10] 10)
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  "EX "         :: "[idts, bool] => bool"                ("(3? _./ _)" [0, 10] 10)
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  "EX! "        :: "[idts, bool] => bool"                ("(3?! _./ _)" [0, 10] 10)
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subsubsection {* Axioms and basic definitions *}
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axioms
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  eq_reflection:  "(x=y) ==> (x==y)"
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  refl:           "t = (t::'a)"
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  ext:            "(!!x::'a. (f x ::'b) = g x) ==> (%x. f x) = (%x. g x)"
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    -- {*Extensionality is built into the meta-logic, and this rule expresses
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         a related property.  It is an eta-expanded version of the traditional
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         rule, and similar to the ABS rule of HOL*}
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  the_eq_trivial: "(THE x. x = a) = (a::'a)"
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  impI:           "(P ==> Q) ==> P-->Q"
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  mp:             "[| P-->Q;  P |] ==> Q"
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text{*Thanks to Stephan Merz*}
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theorem subst:
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  assumes eq: "s = t" and p: "P(s)"
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  shows "P(t::'a)"
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proof -
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  from eq have meta: "s \<equiv> t"
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    by (rule eq_reflection)
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  from p show ?thesis
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    by (unfold meta)
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qed
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defs
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  True_def:     "True      == ((%x::bool. x) = (%x. x))"
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  All_def:      "All(P)    == (P = (%x. True))"
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  Ex_def:       "Ex(P)     == !Q. (!x. P x --> Q) --> Q"
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  False_def:    "False     == (!P. P)"
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  not_def:      "~ P       == P-->False"
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  and_def:      "P & Q     == !R. (P-->Q-->R) --> R"
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  or_def:       "P | Q     == !R. (P-->R) --> (Q-->R) --> R"
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  Ex1_def:      "Ex1(P)    == ? x. P(x) & (! y. P(y) --> y=x)"
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axioms
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  iff:          "(P-->Q) --> (Q-->P) --> (P=Q)"
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  True_or_False:  "(P=True) | (P=False)"
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defs
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  Let_def:      "Let s f == f(s)"
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  if_def:       "If P x y == THE z::'a. (P=True --> z=x) & (P=False --> z=y)"
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finalconsts
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  "op ="
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  "op -->"
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  The
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  arbitrary
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  undefined
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subsubsection {* Generic algebraic operations *}
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axclass zero \<subseteq> type
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axclass one \<subseteq> type
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class plus =
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  fixes plus :: "'a \<Rightarrow> 'a \<Rightarrow> 'a" (infixl "\<^loc>+" 65)
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class minus =
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  fixes uminus :: "'a \<Rightarrow> 'a" 
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  fixes minus  :: "'a \<Rightarrow> 'a \<Rightarrow> 'a" (infixl "\<^loc>-" 65)
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  fixes abs    :: "'a \<Rightarrow> 'a"
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class times =
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  fixes times :: "'a \<Rightarrow> 'a \<Rightarrow> 'a" (infixl "\<^loc>*" 70)
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class inverse = 
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  fixes inverse :: "'a \<Rightarrow> 'a"
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  fixes divide :: "'a \<Rightarrow> 'a => 'a" (infixl "\<^loc>'/" 70)
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global
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consts
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  "0"           :: "'a::zero"                       ("0")
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  "1"           :: "'a::one"                        ("1")
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syntax
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  "_index1"  :: index    ("\<^sub>1")
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translations
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  (index) "\<^sub>1" => (index) "\<^bsub>\<struct>\<^esub>"
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local
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typed_print_translation {*
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  let
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    fun tr' c = (c, fn show_sorts => fn T => fn ts =>
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      if T = dummyT orelse not (! show_types) andalso can Term.dest_Type T then raise Match
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      else Syntax.const Syntax.constrainC $ Syntax.const c $ Syntax.term_of_typ show_sorts T);
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  in [tr' "0", tr' "1"] end;
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*} -- {* show types that are presumably too general *}
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syntax
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  uminus :: "'a\<Colon>minus \<Rightarrow> 'a" ("- _" [81] 80)
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syntax (xsymbols)
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  abs :: "'a::minus => 'a"    ("\<bar>_\<bar>")
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syntax (HTML output)
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  abs :: "'a::minus => 'a"    ("\<bar>_\<bar>")
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subsection {*Equality*}
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lemma sym: "s = t ==> t = s"
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  by (erule subst) (rule refl)
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lemma ssubst: "t = s ==> P s ==> P t"
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  by (drule sym) (erule subst)
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lemma trans: "[| r=s; s=t |] ==> r=t"
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  by (erule subst)
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lemma def_imp_eq: assumes meq: "A == B" shows "A = B"
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  by (unfold meq) (rule refl)
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(*Useful with eresolve_tac for proving equalties from known equalities.
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        a = b
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        |   |
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        c = d   *)
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lemma box_equals: "[| a=b;  a=c;  b=d |] ==> c=d"
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apply (rule trans)
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apply (rule trans)
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apply (rule sym)
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apply assumption+
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done
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text {* For calculational reasoning: *}
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lemma forw_subst: "a = b ==> P b ==> P a"
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  by (rule ssubst)
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2ef571f80a55 Moved oderings from HOL into the new Orderings.thy
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lemma back_subst: "P a ==> a = b ==> P b"
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  by (rule subst)
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subsection {*Congruence rules for application*}
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(*similar to AP_THM in Gordon's HOL*)
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lemma fun_cong: "(f::'a=>'b) = g ==> f(x)=g(x)"
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apply (erule subst)
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apply (rule refl)
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done
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(*similar to AP_TERM in Gordon's HOL and FOL's subst_context*)
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lemma arg_cong: "x=y ==> f(x)=f(y)"
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apply (erule subst)
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apply (rule refl)
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done
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lemma arg_cong2: "\<lbrakk> a = b; c = d \<rbrakk> \<Longrightarrow> f a c = f b d"
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apply (erule ssubst)+
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apply (rule refl)
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done
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lemma cong: "[| f = g; (x::'a) = y |] ==> f(x) = g(y)"
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apply (erule subst)+
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apply (rule refl)
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done
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subsection {*Equality of booleans -- iff*}
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lemma iffI: assumes prems: "P ==> Q" "Q ==> P" shows "P=Q"
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  by (iprover intro: iff [THEN mp, THEN mp] impI prems)
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lemma iffD2: "[| P=Q; Q |] ==> P"
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  by (erule ssubst)
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lemma rev_iffD2: "[| Q; P=Q |] ==> P"
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  by (erule iffD2)
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lemmas iffD1 = sym [THEN iffD2, standard]
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lemmas rev_iffD1 = sym [THEN [2] rev_iffD2, standard]
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   316
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lemma iffE:
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  assumes major: "P=Q"
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      and minor: "[| P --> Q; Q --> P |] ==> R"
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356a9f711899 structure ProjectRule;
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  shows R
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   321
  by (iprover intro: minor impI major [THEN iffD2] major [THEN iffD1])
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   322
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   324
subsection {*True*}
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   326
lemma TrueI: "True"
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   327
  by (unfold True_def) (rule refl)
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   328
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   329
lemma eqTrueI: "P ==> P=True"
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   330
  by (iprover intro: iffI TrueI)
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   331
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   332
lemma eqTrueE: "P=True ==> P"
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   333
apply (erule iffD2)
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   334
apply (rule TrueI)
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   335
done
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   336
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   337
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   338
subsection {*Universal quantifier*}
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   339
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lemma allI: assumes p: "!!x::'a. P(x)" shows "ALL x. P(x)"
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   341
apply (unfold All_def)
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apply (iprover intro: ext eqTrueI p)
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   343
done
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   344
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   345
lemma spec: "ALL x::'a. P(x) ==> P(x)"
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   346
apply (unfold All_def)
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   347
apply (rule eqTrueE)
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   348
apply (erule fun_cong)
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   349
done
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   350
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   351
lemma allE:
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  assumes major: "ALL x. P(x)"
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   353
      and minor: "P(x) ==> R"
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   354
  shows "R"
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   355
by (iprover intro: minor major [THEN spec])
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   356
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   357
lemma all_dupE:
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  assumes major: "ALL x. P(x)"
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   359
      and minor: "[| P(x); ALL x. P(x) |] ==> R"
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   360
  shows "R"
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   361
by (iprover intro: minor major major [THEN spec])
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   362
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   363
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   364
subsection {*False*}
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   365
(*Depends upon spec; it is impossible to do propositional logic before quantifiers!*)
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   366
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   367
lemma FalseE: "False ==> P"
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   368
apply (unfold False_def)
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   369
apply (erule spec)
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   370
done
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   371
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   372
lemma False_neq_True: "False=True ==> P"
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   373
by (erule eqTrueE [THEN FalseE])
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   374
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   375
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   376
subsection {*Negation*}
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   377
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   378
lemma notI:
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   379
  assumes p: "P ==> False"
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   380
  shows "~P"
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   381
apply (unfold not_def)
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   382
apply (iprover intro: impI p)
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   383
done
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diff changeset
   384
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   385
lemma False_not_True: "False ~= True"
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   386
apply (rule notI)
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diff changeset
   387
apply (erule False_neq_True)
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   388
done
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parents: 15380
diff changeset
   389
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diff changeset
   390
lemma True_not_False: "True ~= False"
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diff changeset
   391
apply (rule notI)
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diff changeset
   392
apply (drule sym)
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diff changeset
   393
apply (erule False_neq_True)
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   394
done
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diff changeset
   395
1d195de59497 removal of HOL_Lemmas
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diff changeset
   396
lemma notE: "[| ~P;  P |] ==> R"
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diff changeset
   397
apply (unfold not_def)
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diff changeset
   398
apply (erule mp [THEN FalseE])
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diff changeset
   399
apply assumption
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diff changeset
   400
done
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parents: 15380
diff changeset
   401
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diff changeset
   402
(* Alternative ~ introduction rule: [| P ==> ~ Pa; P ==> Pa |] ==> ~ P *)
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diff changeset
   403
lemmas notI2 = notE [THEN notI, standard]
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parents: 15380
diff changeset
   404
1d195de59497 removal of HOL_Lemmas
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diff changeset
   405
1d195de59497 removal of HOL_Lemmas
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diff changeset
   406
subsection {*Implication*}
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diff changeset
   407
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diff changeset
   408
lemma impE:
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   409
  assumes "P-->Q" "P" "Q ==> R"
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parents: 15380
diff changeset
   410
  shows "R"
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parents: 17459
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   411
by (iprover intro: prems mp)
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diff changeset
   412
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diff changeset
   413
(* Reduces Q to P-->Q, allowing substitution in P. *)
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diff changeset
   414
lemma rev_mp: "[| P;  P --> Q |] ==> Q"
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parents: 17459
diff changeset
   415
by (iprover intro: mp)
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diff changeset
   416
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diff changeset
   417
lemma contrapos_nn:
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   418
  assumes major: "~Q"
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   419
      and minor: "P==>Q"
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parents: 15380
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   420
  shows "~P"
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parents: 17459
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   421
by (iprover intro: notI minor major [THEN notE])
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diff changeset
   422
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   423
(*not used at all, but we already have the other 3 combinations *)
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diff changeset
   424
lemma contrapos_pn:
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   425
  assumes major: "Q"
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diff changeset
   426
      and minor: "P ==> ~Q"
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parents: 15380
diff changeset
   427
  shows "~P"
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parents: 17459
diff changeset
   428
by (iprover intro: notI minor major notE)
15411
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diff changeset
   429
1d195de59497 removal of HOL_Lemmas
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diff changeset
   430
lemma not_sym: "t ~= s ==> s ~= t"
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parents: 15380
diff changeset
   431
apply (erule contrapos_nn)
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parents: 15380
diff changeset
   432
apply (erule sym)
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diff changeset
   433
done
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diff changeset
   434
1d195de59497 removal of HOL_Lemmas
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diff changeset
   435
(*still used in HOLCF*)
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diff changeset
   436
lemma rev_contrapos:
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diff changeset
   437
  assumes pq: "P ==> Q"
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diff changeset
   438
      and nq: "~Q"
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paulson
parents: 15380
diff changeset
   439
  shows "~P"
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paulson
parents: 15380
diff changeset
   440
apply (rule nq [THEN contrapos_nn])
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paulson
parents: 15380
diff changeset
   441
apply (erule pq)
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diff changeset
   442
done
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diff changeset
   443
1d195de59497 removal of HOL_Lemmas
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diff changeset
   444
subsection {*Existential quantifier*}
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diff changeset
   445
1d195de59497 removal of HOL_Lemmas
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diff changeset
   446
lemma exI: "P x ==> EX x::'a. P x"
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diff changeset
   447
apply (unfold Ex_def)
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parents: 17459
diff changeset
   448
apply (iprover intro: allI allE impI mp)
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parents: 15380
diff changeset
   449
done
1d195de59497 removal of HOL_Lemmas
paulson
parents: 15380
diff changeset
   450
1d195de59497 removal of HOL_Lemmas
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parents: 15380
diff changeset
   451
lemma exE:
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diff changeset
   452
  assumes major: "EX x::'a. P(x)"
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paulson
parents: 15380
diff changeset
   453
      and minor: "!!x. P(x) ==> Q"
1d195de59497 removal of HOL_Lemmas
paulson
parents: 15380
diff changeset
   454
  shows "Q"
1d195de59497 removal of HOL_Lemmas
paulson
parents: 15380
diff changeset
   455
apply (rule major [unfolded Ex_def, THEN spec, THEN mp])
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58eeffd73be1 renamed rules to iprover
nipkow
parents: 17459
diff changeset
   456
apply (iprover intro: impI [THEN allI] minor)
15411
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paulson
parents: 15380
diff changeset
   457
done
1d195de59497 removal of HOL_Lemmas
paulson
parents: 15380
diff changeset
   458
1d195de59497 removal of HOL_Lemmas
paulson
parents: 15380
diff changeset
   459
1d195de59497 removal of HOL_Lemmas
paulson
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diff changeset
   460
subsection {*Conjunction*}
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diff changeset
   461
1d195de59497 removal of HOL_Lemmas
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diff changeset
   462
lemma conjI: "[| P; Q |] ==> P&Q"
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paulson
parents: 15380
diff changeset
   463
apply (unfold and_def)
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nipkow
parents: 17459
diff changeset
   464
apply (iprover intro: impI [THEN allI] mp)
15411
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diff changeset
   465
done
1d195de59497 removal of HOL_Lemmas
paulson
parents: 15380
diff changeset
   466
1d195de59497 removal of HOL_Lemmas
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parents: 15380
diff changeset
   467
lemma conjunct1: "[| P & Q |] ==> P"
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paulson
parents: 15380
diff changeset
   468
apply (unfold and_def)
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nipkow
parents: 17459
diff changeset
   469
apply (iprover intro: impI dest: spec mp)
15411
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parents: 15380
diff changeset
   470
done
1d195de59497 removal of HOL_Lemmas
paulson
parents: 15380
diff changeset
   471
1d195de59497 removal of HOL_Lemmas
paulson
parents: 15380
diff changeset
   472
lemma conjunct2: "[| P & Q |] ==> Q"
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paulson
parents: 15380
diff changeset
   473
apply (unfold and_def)
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nipkow
parents: 17459
diff changeset
   474
apply (iprover intro: impI dest: spec mp)
15411
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paulson
parents: 15380
diff changeset
   475
done
1d195de59497 removal of HOL_Lemmas
paulson
parents: 15380
diff changeset
   476
1d195de59497 removal of HOL_Lemmas
paulson
parents: 15380
diff changeset
   477
lemma conjE:
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diff changeset
   478
  assumes major: "P&Q"
1d195de59497 removal of HOL_Lemmas
paulson
parents: 15380
diff changeset
   479
      and minor: "[| P; Q |] ==> R"
1d195de59497 removal of HOL_Lemmas
paulson
parents: 15380
diff changeset
   480
  shows "R"
1d195de59497 removal of HOL_Lemmas
paulson
parents: 15380
diff changeset
   481
apply (rule minor)
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paulson
parents: 15380
diff changeset
   482
apply (rule major [THEN conjunct1])
1d195de59497 removal of HOL_Lemmas
paulson
parents: 15380
diff changeset
   483
apply (rule major [THEN conjunct2])
1d195de59497 removal of HOL_Lemmas
paulson
parents: 15380
diff changeset
   484
done
1d195de59497 removal of HOL_Lemmas
paulson
parents: 15380
diff changeset
   485
1d195de59497 removal of HOL_Lemmas
paulson
parents: 15380
diff changeset
   486
lemma context_conjI:
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parents: 15380
diff changeset
   487
  assumes prems: "P" "P ==> Q" shows "P & Q"
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nipkow
parents: 17459
diff changeset
   488
by (iprover intro: conjI prems)
15411
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paulson
parents: 15380
diff changeset
   489
1d195de59497 removal of HOL_Lemmas
paulson
parents: 15380
diff changeset
   490
1d195de59497 removal of HOL_Lemmas
paulson
parents: 15380
diff changeset
   491
subsection {*Disjunction*}
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diff changeset
   492
1d195de59497 removal of HOL_Lemmas
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parents: 15380
diff changeset
   493
lemma disjI1: "P ==> P|Q"
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paulson
parents: 15380
diff changeset
   494
apply (unfold or_def)
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nipkow
parents: 17459
diff changeset
   495
apply (iprover intro: allI impI mp)
15411
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paulson
parents: 15380
diff changeset
   496
done
1d195de59497 removal of HOL_Lemmas
paulson
parents: 15380
diff changeset
   497
1d195de59497 removal of HOL_Lemmas
paulson
parents: 15380
diff changeset
   498
lemma disjI2: "Q ==> P|Q"
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paulson
parents: 15380
diff changeset
   499
apply (unfold or_def)
17589
58eeffd73be1 renamed rules to iprover
nipkow
parents: 17459
diff changeset
   500
apply (iprover intro: allI impI mp)
15411
1d195de59497 removal of HOL_Lemmas
paulson
parents: 15380
diff changeset
   501
done
1d195de59497 removal of HOL_Lemmas
paulson
parents: 15380
diff changeset
   502
1d195de59497 removal of HOL_Lemmas
paulson
parents: 15380
diff changeset
   503
lemma disjE:
1d195de59497 removal of HOL_Lemmas
paulson
parents: 15380
diff changeset
   504
  assumes major: "P|Q"
1d195de59497 removal of HOL_Lemmas
paulson
parents: 15380
diff changeset
   505
      and minorP: "P ==> R"
1d195de59497 removal of HOL_Lemmas
paulson
parents: 15380
diff changeset
   506
      and minorQ: "Q ==> R"
1d195de59497 removal of HOL_Lemmas
paulson
parents: 15380
diff changeset
   507
  shows "R"
17589
58eeffd73be1 renamed rules to iprover
nipkow
parents: 17459
diff changeset
   508
by (iprover intro: minorP minorQ impI
15411
1d195de59497 removal of HOL_Lemmas
paulson
parents: 15380
diff changeset
   509
                 major [unfolded or_def, THEN spec, THEN mp, THEN mp])
1d195de59497 removal of HOL_Lemmas
paulson
parents: 15380
diff changeset
   510
1d195de59497 removal of HOL_Lemmas
paulson
parents: 15380
diff changeset
   511
1d195de59497 removal of HOL_Lemmas
paulson
parents: 15380
diff changeset
   512
subsection {*Classical logic*}
1d195de59497 removal of HOL_Lemmas
paulson
parents: 15380
diff changeset
   513
1d195de59497 removal of HOL_Lemmas
paulson
parents: 15380
diff changeset
   514
1d195de59497 removal of HOL_Lemmas
paulson
parents: 15380
diff changeset
   515
lemma classical:
1d195de59497 removal of HOL_Lemmas
paulson
parents: 15380
diff changeset
   516
  assumes prem: "~P ==> P"
1d195de59497 removal of HOL_Lemmas
paulson
parents: 15380
diff changeset
   517
  shows "P"
1d195de59497 removal of HOL_Lemmas
paulson
parents: 15380
diff changeset
   518
apply (rule True_or_False [THEN disjE, THEN eqTrueE])
1d195de59497 removal of HOL_Lemmas
paulson
parents: 15380
diff changeset
   519
apply assumption
1d195de59497 removal of HOL_Lemmas
paulson
parents: 15380
diff changeset
   520
apply (rule notI [THEN prem, THEN eqTrueI])
1d195de59497 removal of HOL_Lemmas
paulson
parents: 15380
diff changeset
   521
apply (erule subst)
1d195de59497 removal of HOL_Lemmas
paulson
parents: 15380
diff changeset
   522
apply assumption
1d195de59497 removal of HOL_Lemmas
paulson
parents: 15380
diff changeset
   523
done
1d195de59497 removal of HOL_Lemmas
paulson
parents: 15380
diff changeset
   524
1d195de59497 removal of HOL_Lemmas
paulson
parents: 15380
diff changeset
   525
lemmas ccontr = FalseE [THEN classical, standard]
1d195de59497 removal of HOL_Lemmas
paulson
parents: 15380
diff changeset
   526
1d195de59497 removal of HOL_Lemmas
paulson
parents: 15380
diff changeset
   527
(*notE with premises exchanged; it discharges ~R so that it can be used to
1d195de59497 removal of HOL_Lemmas
paulson
parents: 15380
diff changeset
   528
  make elimination rules*)
1d195de59497 removal of HOL_Lemmas
paulson
parents: 15380
diff changeset
   529
lemma rev_notE:
1d195de59497 removal of HOL_Lemmas
paulson
parents: 15380
diff changeset
   530
  assumes premp: "P"
1d195de59497 removal of HOL_Lemmas
paulson
parents: 15380
diff changeset
   531
      and premnot: "~R ==> ~P"
1d195de59497 removal of HOL_Lemmas
paulson
parents: 15380
diff changeset
   532
  shows "R"
1d195de59497 removal of HOL_Lemmas
paulson
parents: 15380
diff changeset
   533
apply (rule ccontr)
1d195de59497 removal of HOL_Lemmas
paulson
parents: 15380
diff changeset
   534
apply (erule notE [OF premnot premp])
1d195de59497 removal of HOL_Lemmas
paulson
parents: 15380
diff changeset
   535
done
1d195de59497 removal of HOL_Lemmas
paulson
parents: 15380
diff changeset
   536
1d195de59497 removal of HOL_Lemmas
paulson
parents: 15380
diff changeset
   537
(*Double negation law*)
1d195de59497 removal of HOL_Lemmas
paulson
parents: 15380
diff changeset
   538
lemma notnotD: "~~P ==> P"
1d195de59497 removal of HOL_Lemmas
paulson
parents: 15380
diff changeset
   539
apply (rule classical)
1d195de59497 removal of HOL_Lemmas
paulson
parents: 15380
diff changeset
   540
apply (erule notE)
1d195de59497 removal of HOL_Lemmas
paulson
parents: 15380
diff changeset
   541
apply assumption
1d195de59497 removal of HOL_Lemmas
paulson
parents: 15380
diff changeset
   542
done
1d195de59497 removal of HOL_Lemmas
paulson
parents: 15380
diff changeset
   543
1d195de59497 removal of HOL_Lemmas
paulson
parents: 15380
diff changeset
   544
lemma contrapos_pp:
1d195de59497 removal of HOL_Lemmas
paulson
parents: 15380
diff changeset
   545
  assumes p1: "Q"
1d195de59497 removal of HOL_Lemmas
paulson
parents: 15380
diff changeset
   546
      and p2: "~P ==> ~Q"
1d195de59497 removal of HOL_Lemmas
paulson
parents: 15380
diff changeset
   547
  shows "P"
17589
58eeffd73be1 renamed rules to iprover
nipkow
parents: 17459
diff changeset
   548
by (iprover intro: classical p1 p2 notE)
15411
1d195de59497 removal of HOL_Lemmas
paulson
parents: 15380
diff changeset
   549
1d195de59497 removal of HOL_Lemmas
paulson
parents: 15380
diff changeset
   550
1d195de59497 removal of HOL_Lemmas
paulson
parents: 15380
diff changeset
   551
subsection {*Unique existence*}
1d195de59497 removal of HOL_Lemmas
paulson
parents: 15380
diff changeset
   552
1d195de59497 removal of HOL_Lemmas
paulson
parents: 15380
diff changeset
   553
lemma ex1I:
1d195de59497 removal of HOL_Lemmas
paulson
parents: 15380
diff changeset
   554
  assumes prems: "P a" "!!x. P(x) ==> x=a"
1d195de59497 removal of HOL_Lemmas
paulson
parents: 15380
diff changeset
   555
  shows "EX! x. P(x)"
17589
58eeffd73be1 renamed rules to iprover
nipkow
parents: 17459
diff changeset
   556
by (unfold Ex1_def, iprover intro: prems exI conjI allI impI)
15411
1d195de59497 removal of HOL_Lemmas
paulson
parents: 15380
diff changeset
   557
1d195de59497 removal of HOL_Lemmas
paulson
parents: 15380
diff changeset
   558
text{*Sometimes easier to use: the premises have no shared variables.  Safe!*}
1d195de59497 removal of HOL_Lemmas
paulson
parents: 15380
diff changeset
   559
lemma ex_ex1I:
1d195de59497 removal of HOL_Lemmas
paulson
parents: 15380
diff changeset
   560
  assumes ex_prem: "EX x. P(x)"
1d195de59497 removal of HOL_Lemmas
paulson
parents: 15380
diff changeset
   561
      and eq: "!!x y. [| P(x); P(y) |] ==> x=y"
1d195de59497 removal of HOL_Lemmas
paulson
parents: 15380
diff changeset
   562
  shows "EX! x. P(x)"
17589
58eeffd73be1 renamed rules to iprover
nipkow
parents: 17459
diff changeset
   563
by (iprover intro: ex_prem [THEN exE] ex1I eq)
15411
1d195de59497 removal of HOL_Lemmas
paulson
parents: 15380
diff changeset
   564
1d195de59497 removal of HOL_Lemmas
paulson
parents: 15380
diff changeset
   565
lemma ex1E:
1d195de59497 removal of HOL_Lemmas
paulson
parents: 15380
diff changeset
   566
  assumes major: "EX! x. P(x)"
1d195de59497 removal of HOL_Lemmas
paulson
parents: 15380
diff changeset
   567
      and minor: "!!x. [| P(x);  ALL y. P(y) --> y=x |] ==> R"
1d195de59497 removal of HOL_Lemmas
paulson
parents: 15380
diff changeset
   568
  shows "R"
1d195de59497 removal of HOL_Lemmas
paulson
parents: 15380
diff changeset
   569
apply (rule major [unfolded Ex1_def, THEN exE])
1d195de59497 removal of HOL_Lemmas
paulson
parents: 15380
diff changeset
   570
apply (erule conjE)
17589
58eeffd73be1 renamed rules to iprover
nipkow
parents: 17459
diff changeset
   571
apply (iprover intro: minor)
15411
1d195de59497 removal of HOL_Lemmas
paulson
parents: 15380
diff changeset
   572
done
1d195de59497 removal of HOL_Lemmas
paulson
parents: 15380
diff changeset
   573
1d195de59497 removal of HOL_Lemmas
paulson
parents: 15380
diff changeset
   574
lemma ex1_implies_ex: "EX! x. P x ==> EX x. P x"
1d195de59497 removal of HOL_Lemmas
paulson
parents: 15380
diff changeset
   575
apply (erule ex1E)
1d195de59497 removal of HOL_Lemmas
paulson
parents: 15380
diff changeset
   576
apply (rule exI)
1d195de59497 removal of HOL_Lemmas
paulson
parents: 15380
diff changeset
   577
apply assumption
1d195de59497 removal of HOL_Lemmas
paulson
parents: 15380
diff changeset
   578
done
1d195de59497 removal of HOL_Lemmas
paulson
parents: 15380
diff changeset
   579
1d195de59497 removal of HOL_Lemmas
paulson
parents: 15380
diff changeset
   580
1d195de59497 removal of HOL_Lemmas
paulson
parents: 15380
diff changeset
   581
subsection {*THE: definite description operator*}
1d195de59497 removal of HOL_Lemmas
paulson
parents: 15380
diff changeset
   582
1d195de59497 removal of HOL_Lemmas
paulson
parents: 15380
diff changeset
   583
lemma the_equality:
1d195de59497 removal of HOL_Lemmas
paulson
parents: 15380
diff changeset
   584
  assumes prema: "P a"
1d195de59497 removal of HOL_Lemmas
paulson
parents: 15380
diff changeset
   585
      and premx: "!!x. P x ==> x=a"
1d195de59497 removal of HOL_Lemmas
paulson
parents: 15380
diff changeset
   586
  shows "(THE x. P x) = a"
1d195de59497 removal of HOL_Lemmas
paulson
parents: 15380
diff changeset
   587
apply (rule trans [OF _ the_eq_trivial])
1d195de59497 removal of HOL_Lemmas
paulson
parents: 15380
diff changeset
   588
apply (rule_tac f = "The" in arg_cong)
1d195de59497 removal of HOL_Lemmas
paulson
parents: 15380
diff changeset
   589
apply (rule ext)
1d195de59497 removal of HOL_Lemmas
paulson
parents: 15380
diff changeset
   590
apply (rule iffI)
1d195de59497 removal of HOL_Lemmas
paulson
parents: 15380
diff changeset
   591
 apply (erule premx)
1d195de59497 removal of HOL_Lemmas
paulson
parents: 15380
diff changeset
   592
apply (erule ssubst, rule prema)
1d195de59497 removal of HOL_Lemmas
paulson
parents: 15380
diff changeset
   593
done
1d195de59497 removal of HOL_Lemmas
paulson
parents: 15380
diff changeset
   594
1d195de59497 removal of HOL_Lemmas
paulson
parents: 15380
diff changeset
   595
lemma theI:
1d195de59497 removal of HOL_Lemmas
paulson
parents: 15380
diff changeset
   596
  assumes "P a" and "!!x. P x ==> x=a"
1d195de59497 removal of HOL_Lemmas
paulson
parents: 15380
diff changeset
   597
  shows "P (THE x. P x)"
17589
58eeffd73be1 renamed rules to iprover
nipkow
parents: 17459
diff changeset
   598
by (iprover intro: prems the_equality [THEN ssubst])
15411
1d195de59497 removal of HOL_Lemmas
paulson
parents: 15380
diff changeset
   599
1d195de59497 removal of HOL_Lemmas
paulson
parents: 15380
diff changeset
   600
lemma theI': "EX! x. P x ==> P (THE x. P x)"
1d195de59497 removal of HOL_Lemmas
paulson
parents: 15380
diff changeset
   601
apply (erule ex1E)
1d195de59497 removal of HOL_Lemmas
paulson
parents: 15380
diff changeset
   602
apply (erule theI)
1d195de59497 removal of HOL_Lemmas
paulson
parents: 15380
diff changeset
   603
apply (erule allE)
1d195de59497 removal of HOL_Lemmas
paulson
parents: 15380
diff changeset
   604
apply (erule mp)
1d195de59497 removal of HOL_Lemmas
paulson
parents: 15380
diff changeset
   605
apply assumption
1d195de59497 removal of HOL_Lemmas
paulson
parents: 15380
diff changeset
   606
done
1d195de59497 removal of HOL_Lemmas
paulson
parents: 15380
diff changeset
   607
1d195de59497 removal of HOL_Lemmas
paulson
parents: 15380
diff changeset
   608
(*Easier to apply than theI: only one occurrence of P*)
1d195de59497 removal of HOL_Lemmas
paulson
parents: 15380
diff changeset
   609
lemma theI2:
1d195de59497 removal of HOL_Lemmas
paulson
parents: 15380
diff changeset
   610
  assumes "P a" "!!x. P x ==> x=a" "!!x. P x ==> Q x"
1d195de59497 removal of HOL_Lemmas
paulson
parents: 15380
diff changeset
   611
  shows "Q (THE x. P x)"
17589
58eeffd73be1 renamed rules to iprover
nipkow
parents: 17459
diff changeset
   612
by (iprover intro: prems theI)
15411
1d195de59497 removal of HOL_Lemmas
paulson
parents: 15380
diff changeset
   613
18697
86b3f73e3fd5 declare the1_equality [elim?];
wenzelm
parents: 18689
diff changeset
   614
lemma the1_equality [elim?]: "[| EX!x. P x; P a |] ==> (THE x. P x) = a"
15411
1d195de59497 removal of HOL_Lemmas
paulson
parents: 15380
diff changeset
   615
apply (rule the_equality)
1d195de59497 removal of HOL_Lemmas
paulson
parents: 15380
diff changeset
   616
apply  assumption
1d195de59497 removal of HOL_Lemmas
paulson
parents: 15380
diff changeset
   617
apply (erule ex1E)
1d195de59497 removal of HOL_Lemmas
paulson
parents: 15380
diff changeset
   618
apply (erule all_dupE)
1d195de59497 removal of HOL_Lemmas
paulson
parents: 15380
diff changeset
   619
apply (drule mp)
1d195de59497 removal of HOL_Lemmas
paulson
parents: 15380
diff changeset
   620
apply  assumption
1d195de59497 removal of HOL_Lemmas
paulson
parents: 15380
diff changeset
   621
apply (erule ssubst)
1d195de59497 removal of HOL_Lemmas
paulson
parents: 15380
diff changeset
   622
apply (erule allE)
1d195de59497 removal of HOL_Lemmas
paulson
parents: 15380
diff changeset
   623
apply (erule mp)
1d195de59497 removal of HOL_Lemmas
paulson
parents: 15380
diff changeset
   624
apply assumption
1d195de59497 removal of HOL_Lemmas
paulson
parents: 15380
diff changeset
   625
done
1d195de59497 removal of HOL_Lemmas
paulson
parents: 15380
diff changeset
   626
1d195de59497 removal of HOL_Lemmas
paulson
parents: 15380
diff changeset
   627
lemma the_sym_eq_trivial: "(THE y. x=y) = x"
1d195de59497 removal of HOL_Lemmas
paulson
parents: 15380
diff changeset
   628
apply (rule the_equality)
1d195de59497 removal of HOL_Lemmas
paulson
parents: 15380
diff changeset
   629
apply (rule refl)
1d195de59497 removal of HOL_Lemmas
paulson
parents: 15380
diff changeset
   630
apply (erule sym)
1d195de59497 removal of HOL_Lemmas
paulson
parents: 15380
diff changeset
   631
done
1d195de59497 removal of HOL_Lemmas
paulson
parents: 15380
diff changeset
   632
1d195de59497 removal of HOL_Lemmas
paulson
parents: 15380
diff changeset
   633
1d195de59497 removal of HOL_Lemmas
paulson
parents: 15380
diff changeset
   634
subsection {*Classical intro rules for disjunction and existential quantifiers*}
1d195de59497 removal of HOL_Lemmas
paulson
parents: 15380
diff changeset
   635
1d195de59497 removal of HOL_Lemmas
paulson
parents: 15380
diff changeset
   636
lemma disjCI:
1d195de59497 removal of HOL_Lemmas
paulson
parents: 15380
diff changeset
   637
  assumes "~Q ==> P" shows "P|Q"
1d195de59497 removal of HOL_Lemmas
paulson
parents: 15380
diff changeset
   638
apply (rule classical)
17589
58eeffd73be1 renamed rules to iprover
nipkow
parents: 17459
diff changeset
   639
apply (iprover intro: prems disjI1 disjI2 notI elim: notE)
15411
1d195de59497 removal of HOL_Lemmas
paulson
parents: 15380
diff changeset
   640
done
1d195de59497 removal of HOL_Lemmas
paulson
parents: 15380
diff changeset
   641
1d195de59497 removal of HOL_Lemmas
paulson
parents: 15380
diff changeset
   642
lemma excluded_middle: "~P | P"
17589
58eeffd73be1 renamed rules to iprover
nipkow
parents: 17459
diff changeset
   643
by (iprover intro: disjCI)
15411
1d195de59497 removal of HOL_Lemmas
paulson
parents: 15380
diff changeset
   644
1d195de59497 removal of HOL_Lemmas
paulson
parents: 15380
diff changeset
   645
text{*case distinction as a natural deduction rule. Note that @{term "~P"}
1d195de59497 removal of HOL_Lemmas
paulson
parents: 15380
diff changeset
   646
   is the second case, not the first.*}
1d195de59497 removal of HOL_Lemmas
paulson
parents: 15380
diff changeset
   647
lemma case_split_thm:
1d195de59497 removal of HOL_Lemmas
paulson
parents: 15380
diff changeset
   648
  assumes prem1: "P ==> Q"
1d195de59497 removal of HOL_Lemmas
paulson
parents: 15380
diff changeset
   649
      and prem2: "~P ==> Q"
1d195de59497 removal of HOL_Lemmas
paulson
parents: 15380
diff changeset
   650
  shows "Q"
1d195de59497 removal of HOL_Lemmas
paulson
parents: 15380
diff changeset
   651
apply (rule excluded_middle [THEN disjE])
1d195de59497 removal of HOL_Lemmas
paulson
parents: 15380
diff changeset
   652
apply (erule prem2)
1d195de59497 removal of HOL_Lemmas
paulson
parents: 15380
diff changeset
   653
apply (erule prem1)
1d195de59497 removal of HOL_Lemmas
paulson
parents: 15380
diff changeset
   654
done
1d195de59497 removal of HOL_Lemmas
paulson
parents: 15380
diff changeset
   655
1d195de59497 removal of HOL_Lemmas
paulson
parents: 15380
diff changeset
   656
(*Classical implies (-->) elimination. *)
1d195de59497 removal of HOL_Lemmas
paulson
parents: 15380
diff changeset
   657
lemma impCE:
1d195de59497 removal of HOL_Lemmas
paulson
parents: 15380
diff changeset
   658
  assumes major: "P-->Q"
1d195de59497 removal of HOL_Lemmas
paulson
parents: 15380
diff changeset
   659
      and minor: "~P ==> R" "Q ==> R"
1d195de59497 removal of HOL_Lemmas
paulson
parents: 15380
diff changeset
   660
  shows "R"
1d195de59497 removal of HOL_Lemmas
paulson
parents: 15380
diff changeset
   661
apply (rule excluded_middle [of P, THEN disjE])
17589
58eeffd73be1 renamed rules to iprover
nipkow
parents: 17459
diff changeset
   662
apply (iprover intro: minor major [THEN mp])+
15411
1d195de59497 removal of HOL_Lemmas
paulson
parents: 15380
diff changeset
   663
done
1d195de59497 removal of HOL_Lemmas
paulson
parents: 15380
diff changeset
   664
1d195de59497 removal of HOL_Lemmas
paulson
parents: 15380
diff changeset
   665
(*This version of --> elimination works on Q before P.  It works best for
1d195de59497 removal of HOL_Lemmas
paulson
parents: 15380
diff changeset
   666
  those cases in which P holds "almost everywhere".  Can't install as
1d195de59497 removal of HOL_Lemmas
paulson
parents: 15380
diff changeset
   667
  default: would break old proofs.*)
1d195de59497 removal of HOL_Lemmas
paulson
parents: 15380
diff changeset
   668
lemma impCE':
1d195de59497 removal of HOL_Lemmas
paulson
parents: 15380
diff changeset
   669
  assumes major: "P-->Q"
1d195de59497 removal of HOL_Lemmas
paulson
parents: 15380
diff changeset
   670
      and minor: "Q ==> R" "~P ==> R"
1d195de59497 removal of HOL_Lemmas
paulson
parents: 15380
diff changeset
   671
  shows "R"
1d195de59497 removal of HOL_Lemmas
paulson
parents: 15380
diff changeset
   672
apply (rule excluded_middle [of P, THEN disjE])
17589
58eeffd73be1 renamed rules to iprover
nipkow
parents: 17459
diff changeset
   673
apply (iprover intro: minor major [THEN mp])+
15411
1d195de59497 removal of HOL_Lemmas
paulson
parents: 15380
diff changeset
   674
done
1d195de59497 removal of HOL_Lemmas
paulson
parents: 15380
diff changeset
   675
1d195de59497 removal of HOL_Lemmas
paulson
parents: 15380
diff changeset
   676
(*Classical <-> elimination. *)
1d195de59497 removal of HOL_Lemmas
paulson
parents: 15380
diff changeset
   677
lemma iffCE:
1d195de59497 removal of HOL_Lemmas
paulson
parents: 15380
diff changeset
   678
  assumes major: "P=Q"
1d195de59497 removal of HOL_Lemmas
paulson
parents: 15380
diff changeset
   679
      and minor: "[| P; Q |] ==> R"  "[| ~P; ~Q |] ==> R"
1d195de59497 removal of HOL_Lemmas
paulson
parents: 15380
diff changeset
   680
  shows "R"
1d195de59497 removal of HOL_Lemmas
paulson
parents: 15380
diff changeset
   681
apply (rule major [THEN iffE])
17589
58eeffd73be1 renamed rules to iprover
nipkow
parents: 17459
diff changeset
   682
apply (iprover intro: minor elim: impCE notE)
15411
1d195de59497 removal of HOL_Lemmas
paulson
parents: 15380
diff changeset
   683
done
1d195de59497 removal of HOL_Lemmas
paulson
parents: 15380
diff changeset
   684
1d195de59497 removal of HOL_Lemmas
paulson
parents: 15380
diff changeset
   685
lemma exCI:
1d195de59497 removal of HOL_Lemmas
paulson
parents: 15380
diff changeset
   686
  assumes "ALL x. ~P(x) ==> P(a)"
1d195de59497 removal of HOL_Lemmas
paulson
parents: 15380
diff changeset
   687
  shows "EX x. P(x)"
1d195de59497 removal of HOL_Lemmas
paulson
parents: 15380
diff changeset
   688
apply (rule ccontr)
17589
58eeffd73be1 renamed rules to iprover
nipkow
parents: 17459
diff changeset
   689
apply (iprover intro: prems exI allI notI notE [of "\<exists>x. P x"])
15411
1d195de59497 removal of HOL_Lemmas
paulson
parents: 15380
diff changeset
   690
done
1d195de59497 removal of HOL_Lemmas
paulson
parents: 15380
diff changeset
   691
1d195de59497 removal of HOL_Lemmas
paulson
parents: 15380
diff changeset
   692
1d195de59497 removal of HOL_Lemmas
paulson
parents: 15380
diff changeset
   693
11750
3e400964893e judgment Trueprop;
wenzelm
parents: 11724
diff changeset
   694
subsection {* Theory and package setup *}
3e400964893e judgment Trueprop;
wenzelm
parents: 11724
diff changeset
   695
15411
1d195de59497 removal of HOL_Lemmas
paulson
parents: 15380
diff changeset
   696
ML
1d195de59497 removal of HOL_Lemmas
paulson
parents: 15380
diff changeset
   697
{*
1d195de59497 removal of HOL_Lemmas
paulson
parents: 15380
diff changeset
   698
val eq_reflection = thm "eq_reflection"
1d195de59497 removal of HOL_Lemmas
paulson
parents: 15380
diff changeset
   699
val refl = thm "refl"
1d195de59497 removal of HOL_Lemmas
paulson
parents: 15380
diff changeset
   700
val subst = thm "subst"
1d195de59497 removal of HOL_Lemmas
paulson
parents: 15380
diff changeset
   701
val ext = thm "ext"
1d195de59497 removal of HOL_Lemmas
paulson
parents: 15380
diff changeset
   702
val impI = thm "impI"
1d195de59497 removal of HOL_Lemmas
paulson
parents: 15380
diff changeset
   703
val mp = thm "mp"
1d195de59497 removal of HOL_Lemmas
paulson
parents: 15380
diff changeset
   704
val True_def = thm "True_def"
1d195de59497 removal of HOL_Lemmas
paulson
parents: 15380
diff changeset
   705
val All_def = thm "All_def"
1d195de59497 removal of HOL_Lemmas
paulson
parents: 15380
diff changeset
   706
val Ex_def = thm "Ex_def"
1d195de59497 removal of HOL_Lemmas
paulson
parents: 15380
diff changeset
   707
val False_def = thm "False_def"
1d195de59497 removal of HOL_Lemmas
paulson
parents: 15380
diff changeset
   708
val not_def = thm "not_def"
1d195de59497 removal of HOL_Lemmas
paulson
parents: 15380
diff changeset
   709
val and_def = thm "and_def"
1d195de59497 removal of HOL_Lemmas
paulson
parents: 15380
diff changeset
   710
val or_def = thm "or_def"
1d195de59497 removal of HOL_Lemmas
paulson
parents: 15380
diff changeset
   711
val Ex1_def = thm "Ex1_def"
1d195de59497 removal of HOL_Lemmas
paulson
parents: 15380
diff changeset
   712
val iff = thm "iff"
1d195de59497 removal of HOL_Lemmas
paulson
parents: 15380
diff changeset
   713
val True_or_False = thm "True_or_False"
1d195de59497 removal of HOL_Lemmas
paulson
parents: 15380
diff changeset
   714
val Let_def = thm "Let_def"
1d195de59497 removal of HOL_Lemmas
paulson
parents: 15380
diff changeset
   715
val if_def = thm "if_def"
1d195de59497 removal of HOL_Lemmas
paulson
parents: 15380
diff changeset
   716
val sym = thm "sym"
1d195de59497 removal of HOL_Lemmas
paulson
parents: 15380
diff changeset
   717
val ssubst = thm "ssubst"
1d195de59497 removal of HOL_Lemmas
paulson
parents: 15380
diff changeset
   718
val trans = thm "trans"
1d195de59497 removal of HOL_Lemmas
paulson
parents: 15380
diff changeset
   719
val def_imp_eq = thm "def_imp_eq"
1d195de59497 removal of HOL_Lemmas
paulson
parents: 15380
diff changeset
   720
val box_equals = thm "box_equals"
1d195de59497 removal of HOL_Lemmas
paulson
parents: 15380
diff changeset
   721
val fun_cong = thm "fun_cong"
1d195de59497 removal of HOL_Lemmas
paulson
parents: 15380
diff changeset
   722
val arg_cong = thm "arg_cong"
1d195de59497 removal of HOL_Lemmas
paulson
parents: 15380
diff changeset
   723
val cong = thm "cong"
1d195de59497 removal of HOL_Lemmas
paulson
parents: 15380
diff changeset
   724
val iffI = thm "iffI"
1d195de59497 removal of HOL_Lemmas
paulson
parents: 15380
diff changeset
   725
val iffD2 = thm "iffD2"
1d195de59497 removal of HOL_Lemmas
paulson
parents: 15380
diff changeset
   726
val rev_iffD2 = thm "rev_iffD2"
1d195de59497 removal of HOL_Lemmas
paulson
parents: 15380
diff changeset
   727
val iffD1 = thm "iffD1"
1d195de59497 removal of HOL_Lemmas
paulson
parents: 15380
diff changeset
   728
val rev_iffD1 = thm "rev_iffD1"
1d195de59497 removal of HOL_Lemmas
paulson
parents: 15380
diff changeset
   729
val iffE = thm "iffE"
1d195de59497 removal of HOL_Lemmas
paulson
parents: 15380
diff changeset
   730
val TrueI = thm "TrueI"
1d195de59497 removal of HOL_Lemmas
paulson
parents: 15380
diff changeset
   731
val eqTrueI = thm "eqTrueI"
1d195de59497 removal of HOL_Lemmas
paulson
parents: 15380
diff changeset
   732
val eqTrueE = thm "eqTrueE"
1d195de59497 removal of HOL_Lemmas
paulson
parents: 15380
diff changeset
   733
val allI = thm "allI"
1d195de59497 removal of HOL_Lemmas
paulson
parents: 15380
diff changeset
   734
val spec = thm "spec"
1d195de59497 removal of HOL_Lemmas
paulson
parents: 15380
diff changeset
   735
val allE = thm "allE"
1d195de59497 removal of HOL_Lemmas
paulson
parents: 15380
diff changeset
   736
val all_dupE = thm "all_dupE"
1d195de59497 removal of HOL_Lemmas
paulson
parents: 15380
diff changeset
   737
val FalseE = thm "FalseE"
1d195de59497 removal of HOL_Lemmas
paulson
parents: 15380
diff changeset
   738
val False_neq_True = thm "False_neq_True"
1d195de59497 removal of HOL_Lemmas
paulson
parents: 15380
diff changeset
   739
val notI = thm "notI"
1d195de59497 removal of HOL_Lemmas
paulson
parents: 15380
diff changeset
   740
val False_not_True = thm "False_not_True"
1d195de59497 removal of HOL_Lemmas
paulson
parents: 15380
diff changeset
   741
val True_not_False = thm "True_not_False"
1d195de59497 removal of HOL_Lemmas
paulson
parents: 15380
diff changeset
   742
val notE = thm "notE"
1d195de59497 removal of HOL_Lemmas
paulson
parents: 15380
diff changeset
   743
val notI2 = thm "notI2"
1d195de59497 removal of HOL_Lemmas
paulson
parents: 15380
diff changeset
   744
val impE = thm "impE"
1d195de59497 removal of HOL_Lemmas
paulson
parents: 15380
diff changeset
   745
val rev_mp = thm "rev_mp"
1d195de59497 removal of HOL_Lemmas
paulson
parents: 15380
diff changeset
   746
val contrapos_nn = thm "contrapos_nn"
1d195de59497 removal of HOL_Lemmas
paulson
parents: 15380
diff changeset
   747
val contrapos_pn = thm "contrapos_pn"
1d195de59497 removal of HOL_Lemmas
paulson
parents: 15380
diff changeset
   748
val not_sym = thm "not_sym"
1d195de59497 removal of HOL_Lemmas
paulson
parents: 15380
diff changeset
   749
val rev_contrapos = thm "rev_contrapos"
1d195de59497 removal of HOL_Lemmas
paulson
parents: 15380
diff changeset
   750
val exI = thm "exI"
1d195de59497 removal of HOL_Lemmas
paulson
parents: 15380
diff changeset
   751
val exE = thm "exE"
1d195de59497 removal of HOL_Lemmas
paulson
parents: 15380
diff changeset
   752
val conjI = thm "conjI"
1d195de59497 removal of HOL_Lemmas
paulson
parents: 15380
diff changeset
   753
val conjunct1 = thm "conjunct1"
1d195de59497 removal of HOL_Lemmas
paulson
parents: 15380
diff changeset
   754
val conjunct2 = thm "conjunct2"
1d195de59497 removal of HOL_Lemmas
paulson
parents: 15380
diff changeset
   755
val conjE = thm "conjE"
1d195de59497 removal of HOL_Lemmas
paulson
parents: 15380
diff changeset
   756
val context_conjI = thm "context_conjI"
1d195de59497 removal of HOL_Lemmas
paulson
parents: 15380
diff changeset
   757
val disjI1 = thm "disjI1"
1d195de59497 removal of HOL_Lemmas
paulson
parents: 15380
diff changeset
   758
val disjI2 = thm "disjI2"
1d195de59497 removal of HOL_Lemmas
paulson
parents: 15380
diff changeset
   759
val disjE = thm "disjE"
1d195de59497 removal of HOL_Lemmas
paulson
parents: 15380
diff changeset
   760
val classical = thm "classical"
1d195de59497 removal of HOL_Lemmas
paulson
parents: 15380
diff changeset
   761
val ccontr = thm "ccontr"
1d195de59497 removal of HOL_Lemmas
paulson
parents: 15380
diff changeset
   762
val rev_notE = thm "rev_notE"
1d195de59497 removal of HOL_Lemmas
paulson
parents: 15380
diff changeset
   763
val notnotD = thm "notnotD"
1d195de59497 removal of HOL_Lemmas
paulson
parents: 15380
diff changeset
   764
val contrapos_pp = thm "contrapos_pp"
1d195de59497 removal of HOL_Lemmas
paulson
parents: 15380
diff changeset
   765
val ex1I = thm "ex1I"
1d195de59497 removal of HOL_Lemmas
paulson
parents: 15380
diff changeset
   766
val ex_ex1I = thm "ex_ex1I"
1d195de59497 removal of HOL_Lemmas
paulson
parents: 15380
diff changeset
   767
val ex1E = thm "ex1E"
1d195de59497 removal of HOL_Lemmas
paulson
parents: 15380
diff changeset
   768
val ex1_implies_ex = thm "ex1_implies_ex"
1d195de59497 removal of HOL_Lemmas
paulson
parents: 15380
diff changeset
   769
val the_equality = thm "the_equality"
1d195de59497 removal of HOL_Lemmas
paulson
parents: 15380
diff changeset
   770
val theI = thm "theI"
1d195de59497 removal of HOL_Lemmas
paulson
parents: 15380
diff changeset
   771
val theI' = thm "theI'"
1d195de59497 removal of HOL_Lemmas
paulson
parents: 15380
diff changeset
   772
val theI2 = thm "theI2"
1d195de59497 removal of HOL_Lemmas
paulson
parents: 15380
diff changeset
   773
val the1_equality = thm "the1_equality"
1d195de59497 removal of HOL_Lemmas
paulson
parents: 15380
diff changeset
   774
val the_sym_eq_trivial = thm "the_sym_eq_trivial"
1d195de59497 removal of HOL_Lemmas
paulson
parents: 15380
diff changeset
   775
val disjCI = thm "disjCI"
1d195de59497 removal of HOL_Lemmas
paulson
parents: 15380
diff changeset
   776
val excluded_middle = thm "excluded_middle"
1d195de59497 removal of HOL_Lemmas
paulson
parents: 15380
diff changeset
   777
val case_split_thm = thm "case_split_thm"
1d195de59497 removal of HOL_Lemmas
paulson
parents: 15380
diff changeset
   778
val impCE = thm "impCE"
1d195de59497 removal of HOL_Lemmas
paulson
parents: 15380
diff changeset
   779
val impCE = thm "impCE"
1d195de59497 removal of HOL_Lemmas
paulson
parents: 15380
diff changeset
   780
val iffCE = thm "iffCE"
1d195de59497 removal of HOL_Lemmas
paulson
parents: 15380
diff changeset
   781
val exCI = thm "exCI"
4868
843a9f5b3c3d nonterminals;
wenzelm
parents: 4793
diff changeset
   782
15411
1d195de59497 removal of HOL_Lemmas
paulson
parents: 15380
diff changeset
   783
(* combination of (spec RS spec RS ...(j times) ... spec RS mp) *)
1d195de59497 removal of HOL_Lemmas
paulson
parents: 15380
diff changeset
   784
local
1d195de59497 removal of HOL_Lemmas
paulson
parents: 15380
diff changeset
   785
  fun wrong_prem (Const ("All", _) $ (Abs (_, _, t))) = wrong_prem t
1d195de59497 removal of HOL_Lemmas
paulson
parents: 15380
diff changeset
   786
  |   wrong_prem (Bound _) = true
1d195de59497 removal of HOL_Lemmas
paulson
parents: 15380
diff changeset
   787
  |   wrong_prem _ = false
15570
8d8c70b41bab Move towards standard functions.
skalberg
parents: 15524
diff changeset
   788
  val filter_right = List.filter (fn t => not (wrong_prem (HOLogic.dest_Trueprop (hd (Thm.prems_of t)))))
15411
1d195de59497 removal of HOL_Lemmas
paulson
parents: 15380
diff changeset
   789
in
1d195de59497 removal of HOL_Lemmas
paulson
parents: 15380
diff changeset
   790
  fun smp i = funpow i (fn m => filter_right ([spec] RL m)) ([mp])
1d195de59497 removal of HOL_Lemmas
paulson
parents: 15380
diff changeset
   791
  fun smp_tac j = EVERY'[dresolve_tac (smp j), atac]
1d195de59497 removal of HOL_Lemmas
paulson
parents: 15380
diff changeset
   792
end
1d195de59497 removal of HOL_Lemmas
paulson
parents: 15380
diff changeset
   793
1d195de59497 removal of HOL_Lemmas
paulson
parents: 15380
diff changeset
   794
1d195de59497 removal of HOL_Lemmas
paulson
parents: 15380
diff changeset
   795
fun strip_tac i = REPEAT(resolve_tac [impI,allI] i)
1d195de59497 removal of HOL_Lemmas
paulson
parents: 15380
diff changeset
   796
1d195de59497 removal of HOL_Lemmas
paulson
parents: 15380
diff changeset
   797
(*Obsolete form of disjunctive case analysis*)
1d195de59497 removal of HOL_Lemmas
paulson
parents: 15380
diff changeset
   798
fun excluded_middle_tac sP =
1d195de59497 removal of HOL_Lemmas
paulson
parents: 15380
diff changeset
   799
    res_inst_tac [("Q",sP)] (excluded_middle RS disjE)
1d195de59497 removal of HOL_Lemmas
paulson
parents: 15380
diff changeset
   800
1d195de59497 removal of HOL_Lemmas
paulson
parents: 15380
diff changeset
   801
fun case_tac a = res_inst_tac [("P",a)] case_split_thm
1d195de59497 removal of HOL_Lemmas
paulson
parents: 15380
diff changeset
   802
*}
1d195de59497 removal of HOL_Lemmas
paulson
parents: 15380
diff changeset
   803
11687
b0fe6e522559 non-oriented infix = and ~= (output only);
wenzelm
parents: 11451
diff changeset
   804
theorems case_split = case_split_thm [case_names True False]
9869
95dca9f991f2 improved meson setup;
wenzelm
parents: 9852
diff changeset
   805
18457
356a9f711899 structure ProjectRule;
wenzelm
parents: 17992
diff changeset
   806
ML {*
356a9f711899 structure ProjectRule;
wenzelm
parents: 17992
diff changeset
   807
structure ProjectRule = ProjectRuleFun
356a9f711899 structure ProjectRule;
wenzelm
parents: 17992
diff changeset
   808
(struct
356a9f711899 structure ProjectRule;
wenzelm
parents: 17992
diff changeset
   809
  val conjunct1 = thm "conjunct1";
356a9f711899 structure ProjectRule;
wenzelm
parents: 17992
diff changeset
   810
  val conjunct2 = thm "conjunct2";
356a9f711899 structure ProjectRule;
wenzelm
parents: 17992
diff changeset
   811
  val mp = thm "mp";
356a9f711899 structure ProjectRule;
wenzelm
parents: 17992
diff changeset
   812
end)
356a9f711899 structure ProjectRule;
wenzelm
parents: 17992
diff changeset
   813
*}
356a9f711899 structure ProjectRule;
wenzelm
parents: 17992
diff changeset
   814
12386
9c38ec9eca1c tuned declarations (rules, sym, etc.);
wenzelm
parents: 12354
diff changeset
   815
9c38ec9eca1c tuned declarations (rules, sym, etc.);
wenzelm
parents: 12354
diff changeset
   816
subsubsection {* Intuitionistic Reasoning *}
9c38ec9eca1c tuned declarations (rules, sym, etc.);
wenzelm
parents: 12354
diff changeset
   817
9c38ec9eca1c tuned declarations (rules, sym, etc.);
wenzelm
parents: 12354
diff changeset
   818
lemma impE':
12937
0c4fd7529467 clarified syntax of ``long'' statements: fixes/assumes/shows;
wenzelm
parents: 12892
diff changeset
   819
  assumes 1: "P --> Q"
0c4fd7529467 clarified syntax of ``long'' statements: fixes/assumes/shows;
wenzelm
parents: 12892
diff changeset
   820
    and 2: "Q ==> R"
0c4fd7529467 clarified syntax of ``long'' statements: fixes/assumes/shows;
wenzelm
parents: 12892
diff changeset
   821
    and 3: "P --> Q ==> P"
0c4fd7529467 clarified syntax of ``long'' statements: fixes/assumes/shows;
wenzelm
parents: 12892
diff changeset
   822
  shows R
12386
9c38ec9eca1c tuned declarations (rules, sym, etc.);
wenzelm
parents: 12354
diff changeset
   823
proof -
9c38ec9eca1c tuned declarations (rules, sym, etc.);
wenzelm
parents: 12354
diff changeset
   824
  from 3 and 1 have P .
9c38ec9eca1c tuned declarations (rules, sym, etc.);
wenzelm
parents: 12354
diff changeset
   825
  with 1 have Q by (rule impE)
9c38ec9eca1c tuned declarations (rules, sym, etc.);
wenzelm
parents: 12354
diff changeset
   826
  with 2 show R .
9c38ec9eca1c tuned declarations (rules, sym, etc.);
wenzelm
parents: 12354
diff changeset
   827
qed
9c38ec9eca1c tuned declarations (rules, sym, etc.);
wenzelm
parents: 12354
diff changeset
   828
9c38ec9eca1c tuned declarations (rules, sym, etc.);
wenzelm
parents: 12354
diff changeset
   829
lemma allE':
12937
0c4fd7529467 clarified syntax of ``long'' statements: fixes/assumes/shows;
wenzelm
parents: 12892
diff changeset
   830
  assumes 1: "ALL x. P x"
0c4fd7529467 clarified syntax of ``long'' statements: fixes/assumes/shows;
wenzelm
parents: 12892
diff changeset
   831
    and 2: "P x ==> ALL x. P x ==> Q"
0c4fd7529467 clarified syntax of ``long'' statements: fixes/assumes/shows;
wenzelm
parents: 12892
diff changeset
   832
  shows Q
12386
9c38ec9eca1c tuned declarations (rules, sym, etc.);
wenzelm
parents: 12354
diff changeset
   833
proof -
9c38ec9eca1c tuned declarations (rules, sym, etc.);
wenzelm
parents: 12354
diff changeset
   834
  from 1 have "P x" by (rule spec)
9c38ec9eca1c tuned declarations (rules, sym, etc.);
wenzelm
parents: 12354
diff changeset
   835
  from this and 1 show Q by (rule 2)
9c38ec9eca1c tuned declarations (rules, sym, etc.);
wenzelm
parents: 12354
diff changeset
   836
qed
9c38ec9eca1c tuned declarations (rules, sym, etc.);
wenzelm
parents: 12354
diff changeset
   837
12937
0c4fd7529467 clarified syntax of ``long'' statements: fixes/assumes/shows;
wenzelm
parents: 12892
diff changeset
   838
lemma notE':
0c4fd7529467 clarified syntax of ``long'' statements: fixes/assumes/shows;
wenzelm
parents: 12892
diff changeset
   839
  assumes 1: "~ P"
0c4fd7529467 clarified syntax of ``long'' statements: fixes/assumes/shows;
wenzelm
parents: 12892
diff changeset
   840
    and 2: "~ P ==> P"
0c4fd7529467 clarified syntax of ``long'' statements: fixes/assumes/shows;
wenzelm
parents: 12892
diff changeset
   841
  shows R
12386
9c38ec9eca1c tuned declarations (rules, sym, etc.);
wenzelm
parents: 12354
diff changeset
   842
proof -
9c38ec9eca1c tuned declarations (rules, sym, etc.);
wenzelm
parents: 12354
diff changeset
   843
  from 2 and 1 have P .
9c38ec9eca1c tuned declarations (rules, sym, etc.);
wenzelm
parents: 12354
diff changeset
   844
  with 1 show R by (rule notE)
9c38ec9eca1c tuned declarations (rules, sym, etc.);
wenzelm
parents: 12354
diff changeset
   845
qed
9c38ec9eca1c tuned declarations (rules, sym, etc.);
wenzelm
parents: 12354
diff changeset
   846
15801
d2f5ca3c048d superceded by Pure.thy and CPure.thy;
wenzelm
parents: 15676
diff changeset
   847
lemmas [Pure.elim!] = disjE iffE FalseE conjE exE
d2f5ca3c048d superceded by Pure.thy and CPure.thy;
wenzelm
parents: 15676
diff changeset
   848
  and [Pure.intro!] = iffI conjI impI TrueI notI allI refl
d2f5ca3c048d superceded by Pure.thy and CPure.thy;
wenzelm
parents: 15676
diff changeset
   849
  and [Pure.elim 2] = allE notE' impE'
d2f5ca3c048d superceded by Pure.thy and CPure.thy;
wenzelm
parents: 15676
diff changeset
   850
  and [Pure.intro] = exI disjI2 disjI1
12386
9c38ec9eca1c tuned declarations (rules, sym, etc.);
wenzelm
parents: 12354
diff changeset
   851
9c38ec9eca1c tuned declarations (rules, sym, etc.);
wenzelm
parents: 12354
diff changeset
   852
lemmas [trans] = trans
9c38ec9eca1c tuned declarations (rules, sym, etc.);
wenzelm
parents: 12354
diff changeset
   853
  and [sym] = sym not_sym
15801
d2f5ca3c048d superceded by Pure.thy and CPure.thy;
wenzelm
parents: 15676
diff changeset
   854
  and [Pure.elim?] = iffD1 iffD2 impE
11750
3e400964893e judgment Trueprop;
wenzelm
parents: 11724
diff changeset
   855
11438
3d9222b80989 declare trans [trans] (*overridden in theory Calculation*);
wenzelm
parents: 11432
diff changeset
   856
11750
3e400964893e judgment Trueprop;
wenzelm
parents: 11724
diff changeset
   857
subsubsection {* Atomizing meta-level connectives *}
3e400964893e judgment Trueprop;
wenzelm
parents: 11724
diff changeset
   858
3e400964893e judgment Trueprop;
wenzelm
parents: 11724
diff changeset
   859
lemma atomize_all [atomize]: "(!!x. P x) == Trueprop (ALL x. P x)"
12003
c09427e5f554 removed obsolete (rule equal_intr_rule);
wenzelm
parents: 11989
diff changeset
   860
proof
9488
f11bece4e2db added all_eq, imp_eq (for blast);
wenzelm
parents: 9352
diff changeset
   861
  assume "!!x. P x"
10383
a092ae7bb2a6 "atomize" for classical tactics;
wenzelm
parents: 9970
diff changeset
   862
  show "ALL x. P x" by (rule allI)
9488
f11bece4e2db added all_eq, imp_eq (for blast);
wenzelm
parents: 9352
diff changeset
   863
next
f11bece4e2db added all_eq, imp_eq (for blast);
wenzelm
parents: 9352
diff changeset
   864
  assume "ALL x. P x"
10383
a092ae7bb2a6 "atomize" for classical tactics;
wenzelm
parents: 9970
diff changeset
   865
  thus "!!x. P x" by (rule allE)
9488
f11bece4e2db added all_eq, imp_eq (for blast);
wenzelm
parents: 9352
diff changeset
   866
qed
f11bece4e2db added all_eq, imp_eq (for blast);
wenzelm
parents: 9352
diff changeset
   867
11750
3e400964893e judgment Trueprop;
wenzelm
parents: 11724
diff changeset
   868
lemma atomize_imp [atomize]: "(A ==> B) == Trueprop (A --> B)"
12003
c09427e5f554 removed obsolete (rule equal_intr_rule);
wenzelm
parents: 11989
diff changeset
   869
proof
9488
f11bece4e2db added all_eq, imp_eq (for blast);
wenzelm
parents: 9352
diff changeset
   870
  assume r: "A ==> B"
10383
a092ae7bb2a6 "atomize" for classical tactics;
wenzelm
parents: 9970
diff changeset
   871
  show "A --> B" by (rule impI) (rule r)
9488
f11bece4e2db added all_eq, imp_eq (for blast);
wenzelm
parents: 9352
diff changeset
   872
next
f11bece4e2db added all_eq, imp_eq (for blast);
wenzelm
parents: 9352
diff changeset
   873
  assume "A --> B" and A
10383
a092ae7bb2a6 "atomize" for classical tactics;
wenzelm
parents: 9970
diff changeset
   874
  thus B by (rule mp)
9488
f11bece4e2db added all_eq, imp_eq (for blast);
wenzelm
parents: 9352
diff changeset
   875
qed
f11bece4e2db added all_eq, imp_eq (for blast);
wenzelm
parents: 9352
diff changeset
   876
14749
9ccfd0f59e11 new atomize theorem
paulson
parents: 14690
diff changeset
   877
lemma atomize_not: "(A ==> False) == Trueprop (~A)"
9ccfd0f59e11 new atomize theorem
paulson
parents: 14690
diff changeset
   878
proof
9ccfd0f59e11 new atomize theorem
paulson
parents: 14690
diff changeset
   879
  assume r: "A ==> False"
9ccfd0f59e11 new atomize theorem
paulson
parents: 14690
diff changeset
   880
  show "~A" by (rule notI) (rule r)
9ccfd0f59e11 new atomize theorem
paulson
parents: 14690
diff changeset
   881
next
9ccfd0f59e11 new atomize theorem
paulson
parents: 14690
diff changeset
   882
  assume "~A" and A
9ccfd0f59e11 new atomize theorem
paulson
parents: 14690
diff changeset
   883
  thus False by (rule notE)
9ccfd0f59e11 new atomize theorem
paulson
parents: 14690
diff changeset
   884
qed
9ccfd0f59e11 new atomize theorem
paulson
parents: 14690
diff changeset
   885
11750
3e400964893e judgment Trueprop;
wenzelm
parents: 11724
diff changeset
   886
lemma atomize_eq [atomize]: "(x == y) == Trueprop (x = y)"
12003
c09427e5f554 removed obsolete (rule equal_intr_rule);
wenzelm
parents: 11989
diff changeset
   887
proof
10432
3dfbc913d184 added axclass inverse and consts inverse, divide (infix "/");
wenzelm
parents: 10383
diff changeset
   888
  assume "x == y"
3dfbc913d184 added axclass inverse and consts inverse, divide (infix "/");
wenzelm
parents: 10383
diff changeset
   889
  show "x = y" by (unfold prems) (rule refl)
3dfbc913d184 added axclass inverse and consts inverse, divide (infix "/");
wenzelm
parents: 10383
diff changeset
   890
next
3dfbc913d184 added axclass inverse and consts inverse, divide (infix "/");
wenzelm
parents: 10383
diff changeset
   891
  assume "x = y"
3dfbc913d184 added axclass inverse and consts inverse, divide (infix "/");
wenzelm
parents: 10383
diff changeset
   892
  thus "x == y" by (rule eq_reflection)
3dfbc913d184 added axclass inverse and consts inverse, divide (infix "/");
wenzelm
parents: 10383
diff changeset
   893
qed
3dfbc913d184 added axclass inverse and consts inverse, divide (infix "/");
wenzelm
parents: 10383
diff changeset
   894
12023
wenzelm
parents: 12003
diff changeset
   895
lemma atomize_conj [atomize]:
19121
d7fd5415a781 simplified Pure conjunction;
wenzelm
parents: 19039
diff changeset
   896
  includes meta_conjunction_syntax
d7fd5415a781 simplified Pure conjunction;
wenzelm
parents: 19039
diff changeset
   897
  shows "(A && B) == Trueprop (A & B)"
12003
c09427e5f554 removed obsolete (rule equal_intr_rule);
wenzelm
parents: 11989
diff changeset
   898
proof
19121
d7fd5415a781 simplified Pure conjunction;
wenzelm
parents: 19039
diff changeset
   899
  assume conj: "A && B"
d7fd5415a781 simplified Pure conjunction;
wenzelm
parents: 19039
diff changeset
   900
  show "A & B"
d7fd5415a781 simplified Pure conjunction;
wenzelm
parents: 19039
diff changeset
   901
  proof (rule conjI)
d7fd5415a781 simplified Pure conjunction;
wenzelm
parents: 19039
diff changeset
   902
    from conj show A by (rule conjunctionD1)
d7fd5415a781 simplified Pure conjunction;
wenzelm
parents: 19039
diff changeset
   903
    from conj show B by (rule conjunctionD2)
d7fd5415a781 simplified Pure conjunction;
wenzelm
parents: 19039
diff changeset
   904
  qed
11953
f98623fdf6ef atomize_conj;
wenzelm
parents: 11824
diff changeset
   905
next
19121
d7fd5415a781 simplified Pure conjunction;
wenzelm
parents: 19039
diff changeset
   906
  assume conj: "A & B"
d7fd5415a781 simplified Pure conjunction;
wenzelm
parents: 19039
diff changeset
   907
  show "A && B"
d7fd5415a781 simplified Pure conjunction;
wenzelm
parents: 19039
diff changeset
   908
  proof -
d7fd5415a781 simplified Pure conjunction;
wenzelm
parents: 19039
diff changeset
   909
    from conj show A ..
d7fd5415a781 simplified Pure conjunction;
wenzelm
parents: 19039
diff changeset
   910
    from conj show B ..
11953
f98623fdf6ef atomize_conj;
wenzelm
parents: 11824
diff changeset
   911
  qed
f98623fdf6ef atomize_conj;
wenzelm
parents: 11824
diff changeset
   912
qed
f98623fdf6ef atomize_conj;
wenzelm
parents: 11824
diff changeset
   913
12386
9c38ec9eca1c tuned declarations (rules, sym, etc.);
wenzelm
parents: 12354
diff changeset
   914
lemmas [symmetric, rulify] = atomize_all atomize_imp
18832
6ab4de872a70 declare 'defn' rules;
wenzelm
parents: 18757
diff changeset
   915
  and [symmetric, defn] = atomize_all atomize_imp atomize_eq
12386
9c38ec9eca1c tuned declarations (rules, sym, etc.);
wenzelm
parents: 12354
diff changeset
   916
11750
3e400964893e judgment Trueprop;
wenzelm
parents: 11724
diff changeset
   917
3e400964893e judgment Trueprop;
wenzelm
parents: 11724
diff changeset
   918
subsubsection {* Classical Reasoner setup *}
9529
d9434a9277a4 lemmas atomize = all_eq imp_eq;
wenzelm
parents: 9488
diff changeset
   919
10383
a092ae7bb2a6 "atomize" for classical tactics;
wenzelm
parents: 9970
diff changeset
   920
use "cladata.ML"
a092ae7bb2a6 "atomize" for classical tactics;
wenzelm
parents: 9970
diff changeset
   921
setup hypsubst_setup
18708
4b3dadb4fe33 setup: theory -> theory;
wenzelm
parents: 18702
diff changeset
   922
setup {* ContextRules.addSWrapper (fn tac => hyp_subst_tac' ORELSE' tac) *}
10383
a092ae7bb2a6 "atomize" for classical tactics;
wenzelm
parents: 9970
diff changeset
   923
setup Classical.setup
20223
89d2758ecddf tuned proofs;
wenzelm
parents: 20172
diff changeset
   924
setup ResAtpSet.setup
89d2758ecddf tuned proofs;
wenzelm
parents: 20172
diff changeset
   925
setup clasetup
19162
67436e2a16df Added setup for "atpset" (a rule set for ATPs).
mengj
parents: 19138
diff changeset
   926
20223
89d2758ecddf tuned proofs;
wenzelm
parents: 20172
diff changeset
   927
lemma contrapos_np: "~ Q ==> (~ P ==> Q) ==> P"
89d2758ecddf tuned proofs;
wenzelm
parents: 20172
diff changeset
   928
  apply (erule swap)
89d2758ecddf tuned proofs;
wenzelm
parents: 20172
diff changeset
   929
  apply (erule (1) meta_mp)
89d2758ecddf tuned proofs;
wenzelm
parents: 20172
diff changeset
   930
  done
10383
a092ae7bb2a6 "atomize" for classical tactics;
wenzelm
parents: 9970
diff changeset
   931
18689
a50587cd8414 prefer ex1I over ex_ex1I in single-step reasoning;
wenzelm
parents: 18595
diff changeset
   932
declare ex_ex1I [rule del, intro! 2]
a50587cd8414 prefer ex1I over ex_ex1I in single-step reasoning;
wenzelm
parents: 18595
diff changeset
   933
  and ex1I [intro]
a50587cd8414 prefer ex1I over ex_ex1I in single-step reasoning;
wenzelm
parents: 18595
diff changeset
   934
12386
9c38ec9eca1c tuned declarations (rules, sym, etc.);
wenzelm
parents: 12354
diff changeset
   935
lemmas [intro?] = ext
9c38ec9eca1c tuned declarations (rules, sym, etc.);
wenzelm
parents: 12354
diff changeset
   936
  and [elim?] = ex1_implies_ex
11977
2e7c54b86763 tuned declaration of rules;
wenzelm
parents: 11953
diff changeset
   937
9869
95dca9f991f2 improved meson setup;
wenzelm
parents: 9852
diff changeset
   938
use "blastdata.ML"
95dca9f991f2 improved meson setup;
wenzelm
parents: 9852
diff changeset
   939
setup Blast.setup
4868
843a9f5b3c3d nonterminals;
wenzelm
parents: 4793
diff changeset
   940
11750
3e400964893e judgment Trueprop;
wenzelm
parents: 11724
diff changeset
   941
17459
9a3925c07392 added code generator setup (from Main.thy);
wenzelm
parents: 17404
diff changeset
   942
subsubsection {* Simplifier setup *}
11750
3e400964893e judgment Trueprop;
wenzelm
parents: 11724
diff changeset
   943
12281
3bd113b8f7a6 converted simp lemmas;
wenzelm
parents: 12256
diff changeset
   944
lemma meta_eq_to_obj_eq: "x == y ==> x = y"
3bd113b8f7a6 converted simp lemmas;
wenzelm
parents: 12256
diff changeset
   945
proof -
3bd113b8f7a6 converted simp lemmas;
wenzelm
parents: 12256
diff changeset
   946
  assume r: "x == y"
3bd113b8f7a6 converted simp lemmas;
wenzelm
parents: 12256
diff changeset
   947
  show "x = y" by (unfold r) (rule refl)
3bd113b8f7a6 converted simp lemmas;
wenzelm
parents: 12256
diff changeset
   948
qed
3bd113b8f7a6 converted simp lemmas;
wenzelm
parents: 12256
diff changeset
   949
3bd113b8f7a6 converted simp lemmas;
wenzelm
parents: 12256
diff changeset
   950
lemma eta_contract_eq: "(%s. f s) = f" ..
3bd113b8f7a6 converted simp lemmas;
wenzelm
parents: 12256
diff changeset
   951
3bd113b8f7a6 converted simp lemmas;
wenzelm
parents: 12256
diff changeset
   952
lemma simp_thms:
12937
0c4fd7529467 clarified syntax of ``long'' statements: fixes/assumes/shows;
wenzelm
parents: 12892
diff changeset
   953
  shows not_not: "(~ ~ P) = P"
15354
9234f5765d9c Added > and >= sugar
nipkow
parents: 15288
diff changeset
   954
  and Not_eq_iff: "((~P) = (~Q)) = (P = Q)"
12937
0c4fd7529467 clarified syntax of ``long'' statements: fixes/assumes/shows;
wenzelm
parents: 12892
diff changeset
   955
  and
12436
a2df07fefed7 Replaced several occurrences of "blast" by "rules".
berghofe
parents: 12386
diff changeset
   956
    "(P ~= Q) = (P = (~Q))"
a2df07fefed7 Replaced several occurrences of "blast" by "rules".
berghofe
parents: 12386
diff changeset
   957
    "(P | ~P) = True"    "(~P | P) = True"
12281
3bd113b8f7a6 converted simp lemmas;
wenzelm
parents: 12256
diff changeset
   958
    "(x = x) = True"
3bd113b8f7a6 converted simp lemmas;
wenzelm
parents: 12256
diff changeset
   959
    "(~True) = False"  "(~False) = True"
12436
a2df07fefed7 Replaced several occurrences of "blast" by "rules".
berghofe
parents: 12386
diff changeset
   960
    "(~P) ~= P"  "P ~= (~P)"
12281
3bd113b8f7a6 converted simp lemmas;
wenzelm
parents: 12256
diff changeset
   961
    "(True=P) = P"  "(P=True) = P"  "(False=P) = (~P)"  "(P=False) = (~P)"
3bd113b8f7a6 converted simp lemmas;
wenzelm
parents: 12256
diff changeset
   962
    "(True --> P) = P"  "(False --> P) = True"
3bd113b8f7a6 converted simp lemmas;
wenzelm
parents: 12256
diff changeset
   963
    "(P --> True) = True"  "(P --> P) = True"
3bd113b8f7a6 converted simp lemmas;
wenzelm
parents: 12256
diff changeset
   964
    "(P --> False) = (~P)"  "(P --> ~P) = (~P)"
3bd113b8f7a6 converted simp lemmas;
wenzelm
parents: 12256
diff changeset
   965
    "(P & True) = P"  "(True & P) = P"
3bd113b8f7a6 converted simp lemmas;
wenzelm
parents: 12256
diff changeset
   966
    "(P & False) = False"  "(False & P) = False"
3bd113b8f7a6 converted simp lemmas;
wenzelm
parents: 12256
diff changeset
   967
    "(P & P) = P"  "(P & (P & Q)) = (P & Q)"
3bd113b8f7a6 converted simp lemmas;
wenzelm
parents: 12256
diff changeset
   968
    "(P & ~P) = False"    "(~P & P) = False"
3bd113b8f7a6 converted simp lemmas;
wenzelm
parents: 12256
diff changeset
   969
    "(P | True) = True"  "(True | P) = True"
3bd113b8f7a6 converted simp lemmas;
wenzelm
parents: 12256
diff changeset
   970
    "(P | False) = P"  "(False | P) = P"
12436
a2df07fefed7 Replaced several occurrences of "blast" by "rules".
berghofe
parents: 12386
diff changeset
   971
    "(P | P) = P"  "(P | (P | Q)) = (P | Q)" and
12281
3bd113b8f7a6 converted simp lemmas;
wenzelm
parents: 12256
diff changeset
   972
    "(ALL x. P) = P"  "(EX x. P) = P"  "EX x. x=t"  "EX x. t=x"
3bd113b8f7a6 converted simp lemmas;
wenzelm
parents: 12256
diff changeset
   973
    -- {* needed for the one-point-rule quantifier simplification procs *}
3bd113b8f7a6 converted simp lemmas;
wenzelm
parents: 12256
diff changeset
   974
    -- {* essential for termination!! *} and
3bd113b8f7a6 converted simp lemmas;
wenzelm
parents: 12256
diff changeset
   975
    "!!P. (EX x. x=t & P(x)) = P(t)"
3bd113b8f7a6 converted simp lemmas;
wenzelm
parents: 12256
diff changeset
   976
    "!!P. (EX x. t=x & P(x)) = P(t)"
3bd113b8f7a6 converted simp lemmas;
wenzelm
parents: 12256
diff changeset
   977
    "!!P. (ALL x. x=t --> P(x)) = P(t)"
12937
0c4fd7529467 clarified syntax of ``long'' statements: fixes/assumes/shows;
wenzelm
parents: 12892
diff changeset
   978
    "!!P. (ALL x. t=x --> P(x)) = P(t)"
17589
58eeffd73be1 renamed rules to iprover
nipkow
parents: 17459
diff changeset
   979
  by (blast, blast, blast, blast, blast, iprover+)
13421
8fcdf4a26468 simplified locale predicates;
wenzelm
parents: 13412
diff changeset
   980
12281
3bd113b8f7a6 converted simp lemmas;
wenzelm
parents: 12256
diff changeset
   981
lemma imp_cong: "(P = P') ==> (P' ==> (Q = Q')) ==> ((P --> Q) = (P' --> Q'))"
17589
58eeffd73be1 renamed rules to iprover
nipkow
parents: 17459
diff changeset
   982
  by iprover
12281
3bd113b8f7a6 converted simp lemmas;
wenzelm
parents: 12256
diff changeset
   983
3bd113b8f7a6 converted simp lemmas;
wenzelm
parents: 12256
diff changeset
   984
lemma ex_simps:
3bd113b8f7a6 converted simp lemmas;
wenzelm
parents: 12256
diff changeset
   985
  "!!P Q. (EX x. P x & Q)   = ((EX x. P x) & Q)"
3bd113b8f7a6 converted simp lemmas;
wenzelm
parents: 12256
diff changeset
   986
  "!!P Q. (EX x. P & Q x)   = (P & (EX x. Q x))"
3bd113b8f7a6 converted simp lemmas;
wenzelm
parents: 12256
diff changeset
   987
  "!!P Q. (EX x. P x | Q)   = ((EX x. P x) | Q)"
3bd113b8f7a6 converted simp lemmas;
wenzelm
parents: 12256
diff changeset
   988
  "!!P Q. (EX x. P | Q x)   = (P | (EX x. Q x))"
3bd113b8f7a6 converted simp lemmas;
wenzelm
parents: 12256
diff changeset
   989
  "!!P Q. (EX x. P x --> Q) = ((ALL x. P x) --> Q)"
3bd113b8f7a6 converted simp lemmas;
wenzelm
parents: 12256
diff changeset
   990
  "!!P Q. (EX x. P --> Q x) = (P --> (EX x. Q x))"
3bd113b8f7a6 converted simp lemmas;
wenzelm
parents: 12256
diff changeset
   991
  -- {* Miniscoping: pushing in existential quantifiers. *}
17589
58eeffd73be1 renamed rules to iprover
nipkow
parents: 17459
diff changeset
   992
  by (iprover | blast)+
12281
3bd113b8f7a6 converted simp lemmas;
wenzelm
parents: 12256
diff changeset
   993
3bd113b8f7a6 converted simp lemmas;
wenzelm
parents: 12256
diff changeset
   994
lemma all_simps:
3bd113b8f7a6 converted simp lemmas;
wenzelm
parents: 12256
diff changeset
   995
  "!!P Q. (ALL x. P x & Q)   = ((ALL x. P x) & Q)"
3bd113b8f7a6 converted simp lemmas;
wenzelm
parents: 12256
diff changeset
   996
  "!!P Q. (ALL x. P & Q x)   = (P & (ALL x. Q x))"
3bd113b8f7a6 converted simp lemmas;
wenzelm
parents: 12256
diff changeset
   997
  "!!P Q. (ALL x. P x | Q)   = ((ALL x. P x) | Q)"
3bd113b8f7a6 converted simp lemmas;
wenzelm
parents: 12256
diff changeset
   998
  "!!P Q. (ALL x. P | Q x)   = (P | (ALL x. Q x))"
3bd113b8f7a6 converted simp lemmas;
wenzelm
parents: 12256
diff changeset
   999
  "!!P Q. (ALL x. P x --> Q) = ((EX x. P x) --> Q)"
3bd113b8f7a6 converted simp lemmas;
wenzelm
parents: 12256
diff changeset
  1000
  "!!P Q. (ALL x. P --> Q x) = (P --> (ALL x. Q x))"
3bd113b8f7a6 converted simp lemmas;
wenzelm
parents: 12256
diff changeset
  1001
  -- {* Miniscoping: pushing in universal quantifiers. *}
17589
58eeffd73be1 renamed rules to iprover
nipkow
parents: 17459
diff changeset
  1002
  by (iprover | blast)+
12281
3bd113b8f7a6 converted simp lemmas;
wenzelm
parents: 12256
diff changeset
  1003
14201
7ad7ab89c402 some basic new lemmas
paulson
parents: 13764
diff changeset
  1004
lemma disj_absorb: "(A | A) = A"
7ad7ab89c402 some basic new lemmas
paulson
parents: 13764
diff changeset
  1005
  by blast
7ad7ab89c402 some basic new lemmas
paulson
parents: 13764
diff changeset
  1006
7ad7ab89c402 some basic new lemmas
paulson
parents: 13764
diff changeset
  1007
lemma disj_left_absorb: "(A | (A | B)) = (A | B)"
7ad7ab89c402 some basic new lemmas
paulson
parents: 13764
diff changeset
  1008
  by blast
7ad7ab89c402 some basic new lemmas
paulson
parents: 13764
diff changeset
  1009
7ad7ab89c402 some basic new lemmas
paulson
parents: 13764
diff changeset
  1010
lemma conj_absorb: "(A & A) = A"
7ad7ab89c402 some basic new lemmas
paulson
parents: 13764
diff changeset
  1011
  by blast
7ad7ab89c402 some basic new lemmas
paulson
parents: 13764
diff changeset
  1012
7ad7ab89c402 some basic new lemmas
paulson
parents: 13764
diff changeset
  1013
lemma conj_left_absorb: "(A & (A & B)) = (A & B)"
7ad7ab89c402 some basic new lemmas
paulson
parents: 13764
diff changeset
  1014
  by blast
7ad7ab89c402 some basic new lemmas
paulson
parents: 13764
diff changeset
  1015
12281
3bd113b8f7a6 converted simp lemmas;
wenzelm
parents: 12256
diff changeset
  1016
lemma eq_ac:
12937
0c4fd7529467 clarified syntax of ``long'' statements: fixes/assumes/shows;
wenzelm
parents: 12892
diff changeset
  1017
  shows eq_commute: "(a=b) = (b=a)"
0c4fd7529467 clarified syntax of ``long'' statements: fixes/assumes/shows;
wenzelm
parents: 12892
diff changeset
  1018
    and eq_left_commute: "(P=(Q=R)) = (Q=(P=R))"
17589
58eeffd73be1 renamed rules to iprover
nipkow
parents: 17459
diff changeset
  1019
    and eq_assoc: "((P=Q)=R) = (P=(Q=R))" by (iprover, blast+)
58eeffd73be1 renamed rules to iprover
nipkow
parents: 17459
diff changeset
  1020
lemma neq_commute: "(a~=b) = (b~=a)" by iprover
12281
3bd113b8f7a6 converted simp lemmas;
wenzelm
parents: 12256
diff changeset
  1021
3bd113b8f7a6 converted simp lemmas;
wenzelm
parents: 12256
diff changeset
  1022
lemma conj_comms:
12937
0c4fd7529467 clarified syntax of ``long'' statements: fixes/assumes/shows;
wenzelm
parents: 12892
diff changeset
  1023
  shows conj_commute: "(P&Q) = (Q&P)"
17589
58eeffd73be1 renamed rules to iprover
nipkow
parents: 17459
diff changeset
  1024
    and conj_left_commute: "(P&(Q&R)) = (Q&(P&R))" by iprover+
58eeffd73be1 renamed rules to iprover
nipkow
parents: 17459
diff changeset
  1025
lemma conj_assoc: "((P&Q)&R) = (P&(Q&R))" by iprover
12281
3bd113b8f7a6 converted simp lemmas;
wenzelm
parents: 12256
diff changeset
  1026
19174
df9de25e87b3 moved the "use" directive
paulson
parents: 19162
diff changeset
  1027
lemmas conj_ac = conj_commute conj_left_commute conj_assoc
df9de25e87b3 moved the "use" directive
paulson
parents: 19162
diff changeset
  1028
12281
3bd113b8f7a6 converted simp lemmas;
wenzelm
parents: 12256
diff changeset
  1029
lemma disj_comms:
12937
0c4fd7529467 clarified syntax of ``long'' statements: fixes/assumes/shows;
wenzelm
parents: 12892
diff changeset
  1030
  shows disj_commute: "(P|Q) = (Q|P)"
17589
58eeffd73be1 renamed rules to iprover
nipkow
parents: 17459
diff changeset
  1031
    and disj_left_commute: "(P|(Q|R)) = (Q|(P|R))" by iprover+
58eeffd73be1 renamed rules to iprover
nipkow
parents: 17459
diff changeset
  1032
lemma disj_assoc: "((P|Q)|R) = (P|(Q|R))" by iprover
12281
3bd113b8f7a6 converted simp lemmas;
wenzelm
parents: 12256
diff changeset
  1033
19174
df9de25e87b3 moved the "use" directive
paulson
parents: 19162
diff changeset
  1034
lemmas disj_ac = disj_commute disj_left_commute disj_assoc
df9de25e87b3 moved the "use" directive
paulson
parents: 19162
diff changeset
  1035
17589
58eeffd73be1 renamed rules to iprover
nipkow
parents: 17459
diff changeset
  1036
lemma conj_disj_distribL: "(P&(Q|R)) = (P&Q | P&R)" by iprover
58eeffd73be1 renamed rules to iprover
nipkow
parents: 17459
diff changeset
  1037
lemma conj_disj_distribR: "((P|Q)&R) = (P&R | Q&R)" by iprover
12281
3bd113b8f7a6 converted simp lemmas;
wenzelm
parents: 12256
diff changeset
  1038
17589
58eeffd73be1 renamed rules to iprover
nipkow
parents: 17459
diff changeset
  1039
lemma disj_conj_distribL: "(P|(Q&R)) = ((P|Q) & (P|R))" by iprover
58eeffd73be1 renamed rules to iprover
nipkow
parents: 17459
diff changeset
  1040
lemma disj_conj_distribR: "((P&Q)|R) = ((P|R) & (Q|R))" by iprover
12281
3bd113b8f7a6 converted simp lemmas;
wenzelm
parents: 12256
diff changeset
  1041
17589
58eeffd73be1 renamed rules to iprover
nipkow
parents: 17459
diff changeset
  1042
lemma imp_conjR: "(P --> (Q&R)) = ((P-->Q) & (P-->R))" by iprover
58eeffd73be1 renamed rules to iprover
nipkow
parents: 17459
diff changeset
  1043
lemma imp_conjL: "((P&Q) -->R)  = (P --> (Q --> R))" by iprover
58eeffd73be1 renamed rules to iprover
nipkow
parents: 17459
diff changeset
  1044
lemma imp_disjL: "((P|Q) --> R) = ((P-->R)&(Q-->R))" by iprover
12281
3bd113b8f7a6 converted simp lemmas;
wenzelm
parents: 12256
diff changeset
  1045
3bd113b8f7a6 converted simp lemmas;
wenzelm
parents: 12256
diff changeset
  1046
text {* These two are specialized, but @{text imp_disj_not1} is useful in @{text "Auth/Yahalom"}. *}
3bd113b8f7a6 converted simp lemmas;
wenzelm
parents: 12256
diff changeset
  1047
lemma imp_disj_not1: "(P --> Q | R) = (~Q --> P --> R)" by blast
3bd113b8f7a6 converted simp lemmas;
wenzelm
parents: 12256
diff changeset
  1048
lemma imp_disj_not2: "(P --> Q | R) = (~R --> P --> Q)" by blast
3bd113b8f7a6 converted simp lemmas;
wenzelm
parents: 12256
diff changeset
  1049
3bd113b8f7a6 converted simp lemmas;
wenzelm
parents: 12256
diff changeset
  1050
lemma imp_disj1: "((P-->Q)|R) = (P--> Q|R)" by blast
3bd113b8f7a6 converted simp lemmas;
wenzelm
parents: 12256
diff changeset
  1051
lemma imp_disj2: "(Q|(P-->R)) = (P--> Q|R)" by blast
3bd113b8f7a6 converted simp lemmas;
wenzelm
parents: 12256
diff changeset
  1052
17589
58eeffd73be1 renamed rules to iprover
nipkow
parents: 17459
diff changeset
  1053
lemma de_Morgan_disj: "(~(P | Q)) = (~P & ~Q)" by iprover
12281
3bd113b8f7a6 converted simp lemmas;
wenzelm
parents: 12256
diff changeset
  1054
lemma de_Morgan_conj: "(~(P & Q)) = (~P | ~Q)" by blast
3bd113b8f7a6 converted simp lemmas;
wenzelm
parents: 12256
diff changeset
  1055
lemma not_imp: "(~(P --> Q)) = (P & ~Q)" by blast
3bd113b8f7a6 converted simp lemmas;
wenzelm
parents: 12256
diff changeset
  1056
lemma not_iff: "(P~=Q) = (P = (~Q))" by blast
3bd113b8f7a6 converted simp lemmas;
wenzelm
parents: 12256
diff changeset
  1057
lemma disj_not1: "(~P | Q) = (P --> Q)" by blast
3bd113b8f7a6 converted simp lemmas;
wenzelm
parents: 12256
diff changeset
  1058
lemma disj_not2: "(P | ~Q) = (Q --> P)"  -- {* changes orientation :-( *}
3bd113b8f7a6 converted simp lemmas;
wenzelm
parents: 12256
diff changeset
  1059
  by blast
3bd113b8f7a6 converted simp lemmas;
wenzelm
parents: 12256
diff changeset
  1060
lemma imp_conv_disj: "(P --> Q) = ((~P) | Q)" by blast
3bd113b8f7a6 converted simp lemmas;
wenzelm
parents: 12256
diff changeset
  1061
17589
58eeffd73be1 renamed rules to iprover
nipkow
parents: 17459
diff changeset
  1062
lemma iff_conv_conj_imp: "(P = Q) = ((P --> Q) & (Q --> P))" by iprover
12281
3bd113b8f7a6 converted simp lemmas;
wenzelm
parents: 12256
diff changeset
  1063
3bd113b8f7a6 converted simp lemmas;
wenzelm
parents: 12256
diff changeset
  1064
3bd113b8f7a6 converted simp lemmas;
wenzelm
parents: 12256
diff changeset
  1065
lemma cases_simp: "((P --> Q) & (~P --> Q)) = Q"
3bd113b8f7a6 converted simp lemmas;
wenzelm
parents: 12256
diff changeset
  1066
  -- {* Avoids duplication of subgoals after @{text split_if}, when the true and false *}
3bd113b8f7a6 converted simp lemmas;
wenzelm
parents: 12256
diff changeset
  1067
  -- {* cases boil down to the same thing. *}
3bd113b8f7a6 converted simp lemmas;
wenzelm
parents: 12256
diff changeset
  1068
  by blast
3bd113b8f7a6 converted simp lemmas;
wenzelm
parents: 12256
diff changeset
  1069
3bd113b8f7a6 converted simp lemmas;
wenzelm
parents: 12256
diff changeset
  1070
lemma not_all: "(~ (! x. P(x))) = (? x.~P(x))" by blast
3bd113b8f7a6 converted simp lemmas;
wenzelm
parents: 12256
diff changeset
  1071
lemma imp_all: "((! x. P x) --> Q) = (? x. P x --> Q)" by blast
17589
58eeffd73be1 renamed rules to iprover
nipkow
parents: 17459
diff changeset
  1072
lemma not_ex: "(~ (? x. P(x))) = (! x.~P(x))" by iprover
58eeffd73be1 renamed rules to iprover
nipkow
parents: 17459
diff changeset
  1073
lemma imp_ex: "((? x. P x) --> Q) = (! x. P x --> Q)" by iprover
12281
3bd113b8f7a6 converted simp lemmas;
wenzelm
parents: 12256
diff changeset
  1074
17589
58eeffd73be1 renamed rules to iprover
nipkow
parents: 17459
diff changeset
  1075
lemma ex_disj_distrib: "(? x. P(x) | Q(x)) = ((? x. P(x)) | (? x. Q(x)))" by iprover
58eeffd73be1 renamed rules to iprover
nipkow
parents: 17459
diff changeset
  1076
lemma all_conj_distrib: "(!x. P(x) & Q(x)) = ((! x. P(x)) & (! x. Q(x)))" by iprover
12281
3bd113b8f7a6 converted simp lemmas;
wenzelm
parents: 12256
diff changeset
  1077
3bd113b8f7a6 converted simp lemmas;
wenzelm
parents: 12256
diff changeset
  1078
text {*
3bd113b8f7a6 converted simp lemmas;
wenzelm
parents: 12256
diff changeset
  1079
  \medskip The @{text "&"} congruence rule: not included by default!
3bd113b8f7a6 converted simp lemmas;
wenzelm
parents: 12256
diff changeset
  1080
  May slow rewrite proofs down by as much as 50\% *}
3bd113b8f7a6 converted simp lemmas;
wenzelm
parents: 12256
diff changeset
  1081
3bd113b8f7a6 converted simp lemmas;
wenzelm
parents: 12256
diff changeset
  1082
lemma conj_cong:
3bd113b8f7a6 converted simp lemmas;
wenzelm
parents: 12256
diff changeset
  1083
    "(P = P') ==> (P' ==> (Q = Q')) ==> ((P & Q) = (P' & Q'))"
17589
58eeffd73be1 renamed rules to iprover
nipkow
parents: 17459
diff changeset
  1084
  by iprover
12281
3bd113b8f7a6 converted simp lemmas;
wenzelm
parents: 12256
diff changeset
  1085
3bd113b8f7a6 converted simp lemmas;
wenzelm
parents: 12256
diff changeset
  1086
lemma rev_conj_cong:
3bd113b8f7a6 converted simp lemmas;
wenzelm
parents: 12256
diff changeset
  1087
    "(Q = Q') ==> (Q' ==> (P = P')) ==> ((P & Q) = (P' & Q'))"
17589
58eeffd73be1 renamed rules to iprover
nipkow
parents: 17459
diff changeset
  1088
  by iprover
12281
3bd113b8f7a6 converted simp lemmas;
wenzelm
parents: 12256
diff changeset
  1089
3bd113b8f7a6 converted simp lemmas;
wenzelm
parents: 12256
diff changeset
  1090
text {* The @{text "|"} congruence rule: not included by default! *}
3bd113b8f7a6 converted simp lemmas;
wenzelm
parents: 12256
diff changeset
  1091
3bd113b8f7a6 converted simp lemmas;
wenzelm
parents: 12256
diff changeset
  1092
lemma disj_cong:
3bd113b8f7a6 converted simp lemmas;
wenzelm
parents: 12256
diff changeset
  1093
    "(P = P') ==> (~P' ==> (Q = Q')) ==> ((P | Q) = (P' | Q'))"
3bd113b8f7a6 converted simp lemmas;
wenzelm
parents: 12256
diff changeset
  1094
  by blast
3bd113b8f7a6 converted simp lemmas;
wenzelm
parents: 12256
diff changeset
  1095
3bd113b8f7a6 converted simp lemmas;
wenzelm
parents: 12256
diff changeset
  1096
lemma eq_sym_conv: "(x = y) = (y = x)"
17589
58eeffd73be1 renamed rules to iprover
nipkow
parents: 17459
diff changeset
  1097
  by iprover
12281
3bd113b8f7a6 converted simp lemmas;
wenzelm
parents: 12256
diff changeset
  1098
3bd113b8f7a6 converted simp lemmas;
wenzelm
parents: 12256
diff changeset
  1099
3bd113b8f7a6 converted simp lemmas;
wenzelm
parents: 12256
diff changeset
  1100
text {* \medskip if-then-else rules *}
3bd113b8f7a6 converted simp lemmas;
wenzelm
parents: 12256
diff changeset
  1101
3bd113b8f7a6 converted simp lemmas;
wenzelm
parents: 12256
diff changeset
  1102
lemma if_True: "(if True then x else y) = x"
3bd113b8f7a6 converted simp lemmas;
wenzelm
parents: 12256
diff changeset
  1103
  by (unfold if_def) blast
3bd113b8f7a6 converted simp lemmas;
wenzelm
parents: 12256
diff changeset
  1104
3bd113b8f7a6 converted simp lemmas;
wenzelm
parents: 12256
diff changeset
  1105
lemma if_False: "(if False then x else y) = y"
3bd113b8f7a6 converted simp lemmas;
wenzelm
parents: 12256
diff changeset
  1106
  by (unfold if_def) blast
3bd113b8f7a6 converted simp lemmas;
wenzelm
parents: 12256
diff changeset
  1107
3bd113b8f7a6 converted simp lemmas;
wenzelm
parents: 12256
diff changeset
  1108
lemma if_P: "P ==> (if P then x else y) = x"
3bd113b8f7a6 converted simp lemmas;
wenzelm
parents: 12256
diff changeset
  1109
  by (unfold if_def) blast
3bd113b8f7a6 converted simp lemmas;
wenzelm
parents: 12256
diff changeset
  1110
3bd113b8f7a6 converted simp lemmas;
wenzelm
parents: 12256
diff changeset
  1111
lemma if_not_P: "~P ==> (if P then x else y) = y"
3bd113b8f7a6 converted simp lemmas;
wenzelm
parents: 12256
diff changeset
  1112
  by (unfold if_def) blast
3bd113b8f7a6 converted simp lemmas;
wenzelm
parents: 12256
diff changeset
  1113
3bd113b8f7a6 converted simp lemmas;
wenzelm
parents: 12256
diff changeset
  1114
lemma split_if: "P (if Q then x else y) = ((Q --> P(x)) & (~Q --> P(y)))"
3bd113b8f7a6 converted simp lemmas;
wenzelm
parents: 12256
diff changeset
  1115
  apply (rule case_split [of Q])
15481
fc075ae929e4 the new subst tactic, by Lucas Dixon
paulson
parents: 15423
diff changeset
  1116
   apply (simplesubst if_P)
fc075ae929e4 the new subst tactic, by Lucas Dixon
paulson
parents: 15423
diff changeset
  1117
    prefer 3 apply (simplesubst if_not_P, blast+)
12281
3bd113b8f7a6 converted simp lemmas;
wenzelm
parents: 12256
diff changeset
  1118
  done
3bd113b8f7a6 converted simp lemmas;
wenzelm
parents: 12256
diff changeset
  1119
3bd113b8f7a6 converted simp lemmas;
wenzelm
parents: 12256
diff changeset
  1120
lemma split_if_asm: "P (if Q then x else y) = (~((Q & ~P x) | (~Q & ~P y)))"
15481
fc075ae929e4 the new subst tactic, by Lucas Dixon
paulson
parents: 15423
diff changeset
  1121
by (simplesubst split_if, blast)
12281
3bd113b8f7a6 converted simp lemmas;
wenzelm
parents: 12256
diff changeset
  1122
3bd113b8f7a6 converted simp lemmas;
wenzelm
parents: 12256
diff changeset
  1123
lemmas if_splits = split_if split_if_asm
3bd113b8f7a6 converted simp lemmas;
wenzelm
parents: 12256
diff changeset
  1124
3bd113b8f7a6 converted simp lemmas;
wenzelm
parents: 12256
diff changeset
  1125
lemma if_def2: "(if Q then x else y) = ((Q --> x) & (~ Q --> y))"
3bd113b8f7a6 converted simp lemmas;
wenzelm
parents: 12256
diff changeset
  1126
  by (rule split_if)
3bd113b8f7a6 converted simp lemmas;
wenzelm
parents: 12256
diff changeset
  1127
3bd113b8f7a6 converted simp lemmas;
wenzelm
parents: 12256
diff changeset
  1128
lemma if_cancel: "(if c then x else x) = x"
15481
fc075ae929e4 the new subst tactic, by Lucas Dixon
paulson
parents: 15423
diff changeset
  1129
by (simplesubst split_if, blast)
12281
3bd113b8f7a6 converted simp lemmas;
wenzelm
parents: 12256
diff changeset
  1130
3bd113b8f7a6 converted simp lemmas;
wenzelm
parents: 12256
diff changeset
  1131
lemma if_eq_cancel: "(if x = y then y else x) = x"
15481
fc075ae929e4 the new subst tactic, by Lucas Dixon
paulson
parents: 15423
diff changeset
  1132
by (simplesubst split_if, blast)
12281
3bd113b8f7a6 converted simp lemmas;
wenzelm
parents: 12256
diff changeset
  1133
3bd113b8f7a6 converted simp lemmas;
wenzelm
parents: 12256
diff changeset
  1134
lemma if_bool_eq_conj: "(if P then Q else R) = ((P-->Q) & (~P-->R))"
19796
d86e7b1fc472 quoted "if";
wenzelm
parents: 19656
diff changeset
  1135
  -- {* This form is useful for expanding @{text "if"}s on the RIGHT of the @{text "==>"} symbol. *}
12281
3bd113b8f7a6 converted simp lemmas;
wenzelm
parents: 12256
diff changeset
  1136
  by (rule split_if)
3bd113b8f7a6 converted simp lemmas;
wenzelm
parents: 12256
diff changeset
  1137
3bd113b8f7a6 converted simp lemmas;
wenzelm
parents: 12256
diff changeset
  1138
lemma if_bool_eq_disj: "(if P then Q else R) = ((P&Q) | (~P&R))"
19796
d86e7b1fc472 quoted "if";
wenzelm
parents: 19656
diff changeset
  1139
  -- {* And this form is useful for expanding @{text "if"}s on the LEFT. *}
15481
fc075ae929e4 the new subst tactic, by Lucas Dixon
paulson
parents: 15423
diff changeset
  1140
  apply (simplesubst split_if, blast)
12281
3bd113b8f7a6 converted simp lemmas;
wenzelm
parents: 12256
diff changeset
  1141
  done
3bd113b8f7a6 converted simp lemmas;
wenzelm
parents: 12256
diff changeset
  1142
17589
58eeffd73be1 renamed rules to iprover
nipkow
parents: 17459
diff changeset
  1143
lemma Eq_TrueI: "P ==> P == True" by (unfold atomize_eq) iprover
58eeffd73be1 renamed rules to iprover
nipkow
parents: 17459
diff changeset
  1144
lemma Eq_FalseI: "~P ==> P == False" by (unfold atomize_eq) iprover
12281
3bd113b8f7a6 converted simp lemmas;
wenzelm
parents: 12256
diff changeset
  1145
15423
761a4f8e6ad6 added simproc for Let
schirmer
parents: 15411
diff changeset
  1146
text {* \medskip let rules for simproc *}
761a4f8e6ad6 added simproc for Let
schirmer
parents: 15411
diff changeset
  1147
761a4f8e6ad6 added simproc for Let
schirmer
parents: 15411
diff changeset
  1148
lemma Let_folded: "f x \<equiv> g x \<Longrightarrow>  Let x f \<equiv> Let x g"
761a4f8e6ad6 added simproc for Let
schirmer
parents: 15411
diff changeset
  1149
  by (unfold Let_def)
761a4f8e6ad6 added simproc for Let
schirmer
parents: 15411
diff changeset
  1150
761a4f8e6ad6 added simproc for Let
schirmer
parents: 15411
diff changeset
  1151
lemma Let_unfold: "f x \<equiv> g \<Longrightarrow>  Let x f \<equiv> g"
761a4f8e6ad6 added simproc for Let
schirmer
parents: 15411
diff changeset
  1152
  by (unfold Let_def)
761a4f8e6ad6 added simproc for Let
schirmer
parents: 15411
diff changeset
  1153
16633
208ebc9311f2 Implemented trick (due to Tobias Nipkow) for fine-tuning simplification
berghofe
parents: 16587
diff changeset
  1154
text {*
16999
307b2ec590ff Turned simp_implies into binary operator.
ballarin
parents: 16775
diff changeset
  1155
  The following copy of the implication operator is useful for
307b2ec590ff Turned simp_implies into binary operator.
ballarin
parents: 16775
diff changeset
  1156
  fine-tuning congruence rules.  It instructs the simplifier to simplify
307b2ec590ff Turned simp_implies into binary operator.
ballarin
parents: 16775
diff changeset
  1157
  its premise.
16633
208ebc9311f2 Implemented trick (due to Tobias Nipkow) for fine-tuning simplification
berghofe
parents: 16587
diff changeset
  1158
*}
208ebc9311f2 Implemented trick (due to Tobias Nipkow) for fine-tuning simplification
berghofe
parents: 16587
diff changeset
  1159
17197
917c6e7ca28d simp_implies: proper named infix;
wenzelm
parents: 16999
diff changeset
  1160
constdefs
917c6e7ca28d simp_implies: proper named infix;
wenzelm
parents: 16999
diff changeset
  1161
  simp_implies :: "[prop, prop] => prop"  (infixr "=simp=>" 1)
917c6e7ca28d simp_implies: proper named infix;
wenzelm
parents: 16999
diff changeset
  1162
  "simp_implies \<equiv> op ==>"
16633
208ebc9311f2 Implemented trick (due to Tobias Nipkow) for fine-tuning simplification
berghofe
parents: 16587
diff changeset
  1163
18457
356a9f711899 structure ProjectRule;
wenzelm
parents: 17992
diff changeset
  1164
lemma simp_impliesI:
16633
208ebc9311f2 Implemented trick (due to Tobias Nipkow) for fine-tuning simplification
berghofe
parents: 16587
diff changeset
  1165
  assumes PQ: "(PROP P \<Longrightarrow> PROP Q)"
208ebc9311f2 Implemented trick (due to Tobias Nipkow) for fine-tuning simplification
berghofe
parents: 16587
diff changeset
  1166
  shows "PROP P =simp=> PROP Q"
208ebc9311f2 Implemented trick (due to Tobias Nipkow) for fine-tuning simplification
berghofe
parents: 16587
diff changeset
  1167
  apply (unfold simp_implies_def)
208ebc9311f2 Implemented trick (due to Tobias Nipkow) for fine-tuning simplification
berghofe
parents: 16587
diff changeset
  1168
  apply (rule PQ)
208ebc9311f2 Implemented trick (due to Tobias Nipkow) for fine-tuning simplification
berghofe
parents: 16587
diff changeset
  1169
  apply assumption
208ebc9311f2 Implemented trick (due to Tobias Nipkow) for fine-tuning simplification
berghofe
parents: 16587
diff changeset
  1170
  done
208ebc9311f2 Implemented trick (due to Tobias Nipkow) for fine-tuning simplification
berghofe
parents: 16587
diff changeset
  1171
208ebc9311f2 Implemented trick (due to Tobias Nipkow) for fine-tuning simplification
berghofe
parents: 16587
diff changeset
  1172
lemma simp_impliesE:
208ebc9311f2 Implemented trick (due to Tobias Nipkow) for fine-tuning simplification
berghofe
parents: 16587
diff changeset
  1173
  assumes PQ:"PROP P =simp=> PROP Q"
208ebc9311f2 Implemented trick (due to Tobias Nipkow) for fine-tuning simplification
berghofe
parents: 16587
diff changeset
  1174
  and P: "PROP P"
208ebc9311f2 Implemented trick (due to Tobias Nipkow) for fine-tuning simplification
berghofe
parents: 16587
diff changeset
  1175
  and QR: "PROP Q \<Longrightarrow> PROP R"
208ebc9311f2 Implemented trick (due to Tobias Nipkow) for fine-tuning simplification
berghofe
parents: 16587
diff changeset
  1176
  shows "PROP R"
208ebc9311f2 Implemented trick (due to Tobias Nipkow) for fine-tuning simplification
berghofe
parents: 16587
diff changeset
  1177
  apply (rule QR)
208ebc9311f2 Implemented trick (due to Tobias Nipkow) for fine-tuning simplification
berghofe
parents: 16587
diff changeset
  1178
  apply (rule PQ [unfolded simp_implies_def])
208ebc9311f2 Implemented trick (due to Tobias Nipkow) for fine-tuning simplification
berghofe
parents: 16587
diff changeset
  1179
  apply (rule P)
208ebc9311f2 Implemented trick (due to Tobias Nipkow) for fine-tuning simplification
berghofe
parents: 16587
diff changeset
  1180
  done
208ebc9311f2 Implemented trick (due to Tobias Nipkow) for fine-tuning simplification
berghofe
parents: 16587
diff changeset
  1181
208ebc9311f2 Implemented trick (due to Tobias Nipkow) for fine-tuning simplification
berghofe
parents: 16587
diff changeset
  1182
lemma simp_implies_cong:
208ebc9311f2 Implemented trick (due to Tobias Nipkow) for fine-tuning simplification
berghofe
parents: 16587
diff changeset
  1183
  assumes PP' :"PROP P == PROP P'"
208ebc9311f2 Implemented trick (due to Tobias Nipkow) for fine-tuning simplification
berghofe
parents: 16587
diff changeset
  1184
  and P'QQ': "PROP P' ==> (PROP Q == PROP Q')"
208ebc9311f2 Implemented trick (due to Tobias Nipkow) for fine-tuning simplification
berghofe
parents: 16587
diff changeset
  1185
  shows "(PROP P =simp=> PROP Q) == (PROP P' =simp=> PROP Q')"
208ebc9311f2 Implemented trick (due to Tobias Nipkow) for fine-tuning simplification
berghofe
parents: 16587
diff changeset
  1186
proof (unfold simp_implies_def, rule equal_intr_rule)
208ebc9311f2 Implemented trick (due to Tobias Nipkow) for fine-tuning simplification
berghofe
parents: 16587
diff changeset
  1187
  assume PQ: "PROP P \<Longrightarrow> PROP Q"
208ebc9311f2 Implemented trick (due to Tobias Nipkow) for fine-tuning simplification
berghofe
parents: 16587
diff changeset
  1188
  and P': "PROP P'"
208ebc9311f2 Implemented trick (due to Tobias Nipkow) for fine-tuning simplification
berghofe
parents: 16587
diff changeset
  1189
  from PP' [symmetric] and P' have "PROP P"
208ebc9311f2 Implemented trick (due to Tobias Nipkow) for fine-tuning simplification
berghofe
parents: 16587
diff changeset
  1190
    by (rule equal_elim_rule1)
208ebc9311f2 Implemented trick (due to Tobias Nipkow) for fine-tuning simplification
berghofe
parents: 16587
diff changeset
  1191
  hence "PROP Q" by (rule PQ)
208ebc9311f2 Implemented trick (due to Tobias Nipkow) for fine-tuning simplification
berghofe
parents: 16587
diff changeset
  1192
  with P'QQ' [OF P'] show "PROP Q'" by (rule equal_elim_rule1)
208ebc9311f2 Implemented trick (due to Tobias Nipkow) for fine-tuning simplification
berghofe
parents: 16587
diff changeset
  1193
next
208ebc9311f2 Implemented trick (due to Tobias Nipkow) for fine-tuning simplification
berghofe
parents: 16587
diff changeset
  1194
  assume P'Q': "PROP P' \<Longrightarrow> PROP Q'"
208ebc9311f2 Implemented trick (due to Tobias Nipkow) for fine-tuning simplification
berghofe
parents: 16587
diff changeset
  1195
  and P: "PROP P"
208ebc9311f2 Implemented trick (due to Tobias Nipkow) for fine-tuning simplification
berghofe
parents: 16587
diff changeset
  1196
  from PP' and P have P': "PROP P'" by (rule equal_elim_rule1)
208ebc9311f2 Implemented trick (due to Tobias Nipkow) for fine-tuning simplification
berghofe
parents: 16587
diff changeset
  1197
  hence "PROP Q'" by (rule P'Q')
208ebc9311f2 Implemented trick (due to Tobias Nipkow) for fine-tuning simplification
berghofe
parents: 16587
diff changeset
  1198
  with P'QQ' [OF P', symmetric] show "PROP Q"
208ebc9311f2 Implemented trick (due to Tobias Nipkow) for fine-tuning simplification
berghofe
parents: 16587
diff changeset
  1199
    by (rule equal_elim_rule1)
208ebc9311f2 Implemented trick (due to Tobias Nipkow) for fine-tuning simplification
berghofe
parents: 16587
diff changeset
  1200
qed
208ebc9311f2 Implemented trick (due to Tobias Nipkow) for fine-tuning simplification
berghofe
parents: 16587
diff changeset
  1201
17459
9a3925c07392 added code generator setup (from Main.thy);
wenzelm
parents: 17404
diff changeset
  1202
9a3925c07392 added code generator setup (from Main.thy);
wenzelm
parents: 17404
diff changeset
  1203
text {* \medskip Actual Installation of the Simplifier. *}
14201
7ad7ab89c402 some basic new lemmas
paulson
parents: 13764
diff changeset
  1204
9869
95dca9f991f2 improved meson setup;
wenzelm
parents: 9852
diff changeset
  1205
use "simpdata.ML"
95dca9f991f2 improved meson setup;
wenzelm
parents: 9852
diff changeset
  1206
setup "Simplifier.method_setup Splitter.split_modifiers" setup simpsetup
95dca9f991f2 improved meson setup;
wenzelm
parents: 9852
diff changeset
  1207
setup Splitter.setup setup Clasimp.setup
18591
04b9f2bf5a48 tuned EqSubst setup;
wenzelm
parents: 18531
diff changeset
  1208
setup EqSubst.setup
15481
fc075ae929e4 the new subst tactic, by Lucas Dixon
paulson
parents: 15423
diff changeset
  1209
17459
9a3925c07392 added code generator setup (from Main.thy);
wenzelm
parents: 17404
diff changeset
  1210
9a3925c07392 added code generator setup (from Main.thy);
wenzelm
parents: 17404
diff changeset
  1211
subsubsection {* Code generator setup *}
9a3925c07392 added code generator setup (from Main.thy);
wenzelm
parents: 17404
diff changeset
  1212
9a3925c07392 added code generator setup (from Main.thy);
wenzelm
parents: 17404
diff changeset
  1213
types_code
9a3925c07392 added code generator setup (from Main.thy);
wenzelm
parents: 17404
diff changeset
  1214
  "bool"  ("bool")
9a3925c07392 added code generator setup (from Main.thy);
wenzelm
parents: 17404
diff changeset
  1215
attach (term_of) {*
9a3925c07392 added code generator setup (from Main.thy);
wenzelm
parents: 17404
diff changeset
  1216
fun term_of_bool b = if b then HOLogic.true_const else HOLogic.false_const;
9a3925c07392 added code generator setup (from Main.thy);
wenzelm
parents: 17404
diff changeset
  1217
*}
9a3925c07392 added code generator setup (from Main.thy);
wenzelm
parents: 17404
diff changeset
  1218
attach (test) {*
9a3925c07392 added code generator setup (from Main.thy);
wenzelm
parents: 17404
diff changeset
  1219
fun gen_bool i = one_of [false, true];
9a3925c07392 added code generator setup (from Main.thy);
wenzelm
parents: 17404
diff changeset
  1220
*}
18887
6ad81e3fa478 Added "evaluation" method and oracle.
berghofe
parents: 18867
diff changeset
  1221
  "prop"  ("bool")
6ad81e3fa478 Added "evaluation" method and oracle.
berghofe
parents: 18867
diff changeset
  1222
attach (term_of) {*
6ad81e3fa478 Added "evaluation" method and oracle.
berghofe
parents: 18867
diff changeset
  1223
fun term_of_prop b =
6ad81e3fa478 Added "evaluation" method and oracle.
berghofe
parents: 18867
diff changeset
  1224
  HOLogic.mk_Trueprop (if b then HOLogic.true_const else HOLogic.false_const);
6ad81e3fa478 Added "evaluation" method and oracle.
berghofe
parents: 18867
diff changeset
  1225
*}
17459
9a3925c07392 added code generator setup (from Main.thy);
wenzelm
parents: 17404
diff changeset
  1226
9a3925c07392 added code generator setup (from Main.thy);
wenzelm
parents: 17404
diff changeset
  1227
consts_code
18887
6ad81e3fa478 Added "evaluation" method and oracle.
berghofe
parents: 18867
diff changeset
  1228
  "Trueprop" ("(_)")
17459
9a3925c07392 added code generator setup (from Main.thy);
wenzelm
parents: 17404
diff changeset
  1229
  "True"    ("true")
9a3925c07392 added code generator setup (from Main.thy);
wenzelm
parents: 17404
diff changeset
  1230
  "False"   ("false")
9a3925c07392 added code generator setup (from Main.thy);
wenzelm
parents: 17404
diff changeset
  1231
  "Not"     ("not")
9a3925c07392 added code generator setup (from Main.thy);
wenzelm
parents: 17404
diff changeset
  1232
  "op |"    ("(_ orelse/ _)")
9a3925c07392 added code generator setup (from Main.thy);
wenzelm
parents: 17404
diff changeset
  1233
  "op &"    ("(_ andalso/ _)")
9a3925c07392 added code generator setup (from Main.thy);
wenzelm
parents: 17404
diff changeset
  1234
  "HOL.If"      ("(if _/ then _/ else _)")
9a3925c07392 added code generator setup (from Main.thy);
wenzelm
parents: 17404
diff changeset
  1235
20590
bf92900995f8 introduced syntactic classes; moved some setup to Pure/codegen, Pure/nbe or OperationalEquality.thy
haftmann
parents: 20453
diff changeset
  1236
setup {*
bf92900995f8 introduced syntactic classes; moved some setup to Pure/codegen, Pure/nbe or OperationalEquality.thy
haftmann
parents: 20453
diff changeset
  1237
let
17459
9a3925c07392 added code generator setup (from Main.thy);
wenzelm
parents: 17404
diff changeset
  1238
9a3925c07392 added code generator setup (from Main.thy);
wenzelm
parents: 17404
diff changeset
  1239
fun eq_codegen thy defs gr dep thyname b t =
9a3925c07392 added code generator setup (from Main.thy);
wenzelm
parents: 17404
diff changeset
  1240
    (case strip_comb t of
9a3925c07392 added code generator setup (from Main.thy);
wenzelm
parents: 17404
diff changeset
  1241
       (Const ("op =", Type (_, [Type ("fun", _), _])), _) => NONE
9a3925c07392 added code generator setup (from Main.thy);
wenzelm
parents: 17404
diff changeset
  1242
     | (Const ("op =", _), [t, u]) =>
9a3925c07392 added code generator setup (from Main.thy);
wenzelm
parents: 17404
diff changeset
  1243
          let
9a3925c07392 added code generator setup (from Main.thy);
wenzelm
parents: 17404
diff changeset
  1244
            val (gr', pt) = Codegen.invoke_codegen thy defs dep thyname false (gr, t);
17639
50878db27b94 eq_codegen now ensures that code for bool type is generated.
berghofe
parents: 17589
diff changeset
  1245
            val (gr'', pu) = Codegen.invoke_codegen thy defs dep thyname false (gr', u);
50878db27b94 eq_codegen now ensures that code for bool type is generated.
berghofe
parents: 17589
diff changeset
  1246
            val (gr''', _) = Codegen.invoke_tycodegen thy defs dep thyname false (gr'', HOLogic.boolT)
17459
9a3925c07392 added code generator setup (from Main.thy);
wenzelm
parents: 17404
diff changeset
  1247
          in
17639
50878db27b94 eq_codegen now ensures that code for bool type is generated.
berghofe
parents: 17589
diff changeset
  1248
            SOME (gr''', Codegen.parens
17459
9a3925c07392 added code generator setup (from Main.thy);
wenzelm
parents: 17404
diff changeset
  1249
              (Pretty.block [pt, Pretty.str " =", Pretty.brk 1, pu]))
9a3925c07392 added code generator setup (from Main.thy);
wenzelm
parents: 17404
diff changeset
  1250
          end
9a3925c07392 added code generator setup (from Main.thy);
wenzelm
parents: 17404
diff changeset
  1251
     | (t as Const ("op =", _), ts) => SOME (Codegen.invoke_codegen
9a3925c07392 added code generator setup (from Main.thy);
wenzelm
parents: 17404
diff changeset
  1252
         thy defs dep thyname b (gr, Codegen.eta_expand t ts 2))
9a3925c07392 added code generator setup (from Main.thy);
wenzelm
parents: 17404
diff changeset
  1253
     | _ => NONE);
9a3925c07392 added code generator setup (from Main.thy);
wenzelm
parents: 17404
diff changeset
  1254
20590
bf92900995f8 introduced syntactic classes; moved some setup to Pure/codegen, Pure/nbe or OperationalEquality.thy
haftmann
parents: 20453
diff changeset
  1255
in
bf92900995f8 introduced syntactic classes; moved some setup to Pure/codegen, Pure/nbe or OperationalEquality.thy
haftmann
parents: 20453
diff changeset
  1256
bf92900995f8 introduced syntactic classes; moved some setup to Pure/codegen, Pure/nbe or OperationalEquality.thy
haftmann
parents: 20453
diff changeset
  1257
Codegen.add_codegen "eq_codegen" eq_codegen
18887
6ad81e3fa478 Added "evaluation" method and oracle.
berghofe
parents: 18867
diff changeset
  1258
20590
bf92900995f8 introduced syntactic classes; moved some setup to Pure/codegen, Pure/nbe or OperationalEquality.thy
haftmann
parents: 20453
diff changeset
  1259
end
bf92900995f8 introduced syntactic classes; moved some setup to Pure/codegen, Pure/nbe or OperationalEquality.thy
haftmann
parents: 20453
diff changeset
  1260
*}
18887
6ad81e3fa478 Added "evaluation" method and oracle.
berghofe
parents: 18867
diff changeset
  1261
20590
bf92900995f8 introduced syntactic classes; moved some setup to Pure/codegen, Pure/nbe or OperationalEquality.thy
haftmann
parents: 20453
diff changeset
  1262
setup {*
bf92900995f8 introduced syntactic classes; moved some setup to Pure/codegen, Pure/nbe or OperationalEquality.thy
haftmann
parents: 20453
diff changeset
  1263
let
18887
6ad81e3fa478 Added "evaluation" method and oracle.
berghofe
parents: 18867
diff changeset
  1264
6ad81e3fa478 Added "evaluation" method and oracle.
berghofe
parents: 18867
diff changeset
  1265
fun evaluation_tac i = Tactical.PRIMITIVE (Drule.fconv_rule
20590
bf92900995f8 introduced syntactic classes; moved some setup to Pure/codegen, Pure/nbe or OperationalEquality.thy
haftmann
parents: 20453
diff changeset
  1266
  (Drule.goals_conv (equal i) Codegen.evaluation_conv));
18887
6ad81e3fa478 Added "evaluation" method and oracle.
berghofe
parents: 18867
diff changeset
  1267
6ad81e3fa478 Added "evaluation" method and oracle.
berghofe
parents: 18867
diff changeset
  1268
val evaluation_meth =
6ad81e3fa478 Added "evaluation" method and oracle.
berghofe
parents: 18867
diff changeset
  1269
  Method.no_args (Method.METHOD (fn _ => evaluation_tac 1 THEN rtac TrueI 1));
6ad81e3fa478 Added "evaluation" method and oracle.
berghofe
parents: 18867
diff changeset
  1270
17459
9a3925c07392 added code generator setup (from Main.thy);
wenzelm
parents: 17404
diff changeset
  1271
in
9a3925c07392 added code generator setup (from Main.thy);
wenzelm
parents: 17404
diff changeset
  1272
20590
bf92900995f8 introduced syntactic classes; moved some setup to Pure/codegen, Pure/nbe or OperationalEquality.thy
haftmann
parents: 20453
diff changeset
  1273
Method.add_method ("evaluation", evaluation_meth, "solve goal by evaluation")
18887
6ad81e3fa478 Added "evaluation" method and oracle.
berghofe
parents: 18867
diff changeset
  1274
17459
9a3925c07392 added code generator setup (from Main.thy);
wenzelm
parents: 17404
diff changeset
  1275
end;
9a3925c07392 added code generator setup (from Main.thy);
wenzelm
parents: 17404
diff changeset
  1276
*}
9a3925c07392 added code generator setup (from Main.thy);
wenzelm
parents: 17404
diff changeset
  1277
19961
5aa2e37e250c new method "normalization"
nipkow
parents: 19890
diff changeset
  1278
15481
fc075ae929e4 the new subst tactic, by Lucas Dixon
paulson
parents: 15423
diff changeset
  1279
subsection {* Other simple lemmas *}
fc075ae929e4 the new subst tactic, by Lucas Dixon
paulson
parents: 15423
diff changeset
  1280
15411
1d195de59497 removal of HOL_Lemmas
paulson
parents: 15380
diff changeset
  1281
declare disj_absorb [simp] conj_absorb [simp]
14201
7ad7ab89c402 some basic new lemmas
paulson
parents: 13764
diff changeset
  1282
13723
c7d104550205 *** empty log message ***
nipkow
parents: 13638
diff changeset
  1283
lemma ex1_eq[iff]: "EX! x. x = t" "EX! x. t = x"
c7d104550205 *** empty log message ***
nipkow
parents: 13638
diff changeset
  1284
by blast+
c7d104550205 *** empty log message ***
nipkow
parents: 13638
diff changeset
  1285
15481
fc075ae929e4 the new subst tactic, by Lucas Dixon
paulson
parents: 15423
diff changeset
  1286
13638
2b234b079245 Added choice_eq.
berghofe
parents: 13598
diff changeset
  1287
theorem choice_eq: "(ALL x. EX! y. P x y) = (EX! f. ALL x. P x (f x))"
2b234b079245 Added choice_eq.
berghofe
parents: 13598
diff changeset
  1288
  apply (rule iffI)
2b234b079245 Added choice_eq.
berghofe
parents: 13598
diff changeset
  1289
  apply (rule_tac a = "%x. THE y. P x y" in ex1I)
2b234b079245 Added choice_eq.
berghofe
parents: 13598
diff changeset
  1290
  apply (fast dest!: theI')
2b234b079245 Added choice_eq.
berghofe
parents: 13598
diff changeset
  1291
  apply (fast intro: ext the1_equality [symmetric])
2b234b079245 Added choice_eq.
berghofe
parents: 13598
diff changeset
  1292
  apply (erule ex1E)
2b234b079245 Added choice_eq.
berghofe
parents: 13598
diff changeset
  1293
  apply (rule allI)
2b234b079245 Added choice_eq.
berghofe
parents: 13598
diff changeset
  1294
  apply (rule ex1I)
2b234b079245 Added choice_eq.
berghofe
parents: 13598
diff changeset
  1295
  apply (erule spec)
2b234b079245 Added choice_eq.
berghofe
parents: 13598
diff changeset
  1296
  apply (erule_tac x = "%z. if z = x then y else f z" in allE)
2b234b079245 Added choice_eq.
berghofe
parents: 13598
diff changeset
  1297
  apply (erule impE)
2b234b079245 Added choice_eq.
berghofe
parents: 13598
diff changeset
  1298
  apply (rule allI)
2b234b079245 Added choice_eq.
berghofe
parents: 13598
diff changeset
  1299
  apply (rule_tac P = "xa = x" in case_split_thm)
14208
144f45277d5a misc tidying
paulson
parents: 14201
diff changeset
  1300
  apply (drule_tac [3] x = x in fun_cong, simp_all)
13638
2b234b079245 Added choice_eq.
berghofe
parents: 13598
diff changeset
  1301
  done
2b234b079245 Added choice_eq.
berghofe
parents: 13598
diff changeset
  1302
13438
527811f00c56 added mk_left_commute to HOL.thy and used it "everywhere"
nipkow
parents: 13421
diff changeset
  1303
text{*Needs only HOL-lemmas:*}
527811f00c56 added mk_left_commute to HOL.thy and used it "everywhere"
nipkow
parents: 13421
diff changeset
  1304
lemma mk_left_commute:
527811f00c56 added mk_left_commute to HOL.thy and used it "everywhere"
nipkow
parents: 13421
diff changeset
  1305
  assumes a: "\<And>x y z. f (f x y) z = f x (f y z)" and
527811f00c56 added mk_left_commute to HOL.thy and used it "everywhere"
nipkow
parents: 13421
diff changeset
  1306
          c: "\<And>x y. f x y = f y x"
527811f00c56 added mk_left_commute to HOL.thy and used it "everywhere"
nipkow
parents: 13421
diff changeset
  1307
  shows "f x (f y z) = f y (f x z)"
527811f00c56 added mk_left_commute to HOL.thy and used it "everywhere"
nipkow
parents: 13421
diff changeset
  1308
by(rule trans[OF trans[OF c a] arg_cong[OF c, of "f y"]])
527811f00c56 added mk_left_commute to HOL.thy and used it "everywhere"
nipkow
parents: 13421
diff changeset
  1309
11750
3e400964893e judgment Trueprop;
wenzelm
parents: 11724
diff changeset
  1310
15481
fc075ae929e4 the new subst tactic, by Lucas Dixon
paulson
parents: 15423
diff changeset
  1311
subsection {* Generic cases and induction *}
11824
f4c1882dde2c setup generic cases and induction (from Inductive.thy);
wenzelm
parents: 11770
diff changeset
  1312
f4c1882dde2c setup generic cases and induction (from Inductive.thy);
wenzelm
parents: 11770
diff changeset
  1313
constdefs
18457
356a9f711899 structure ProjectRule;
wenzelm
parents: 17992
diff changeset
  1314
  induct_forall where "induct_forall P == \<forall>x. P x"
356a9f711899 structure ProjectRule;
wenzelm
parents: 17992
diff changeset
  1315
  induct_implies where "induct_implies A B == A \<longrightarrow> B"
356a9f711899 structure ProjectRule;
wenzelm
parents: 17992
diff changeset
  1316
  induct_equal where "induct_equal x y == x = y"
356a9f711899 structure ProjectRule;
wenzelm
parents: 17992
diff changeset
  1317
  induct_conj where "induct_conj A B == A \<and> B"
11824
f4c1882dde2c setup generic cases and induction (from Inductive.thy);
wenzelm
parents: 11770
diff changeset
  1318
11989
d4bcba4e080e renamed inductive_XXX to induct_XXX;
wenzelm
parents: 11977
diff changeset
  1319
lemma induct_forall_eq: "(!!x. P x) == Trueprop (induct_forall (\<lambda>x. P x))"
18457
356a9f711899 structure ProjectRule;
wenzelm
parents: 17992
diff changeset
  1320
  by (unfold atomize_all induct_forall_def)
11824
f4c1882dde2c setup generic cases and induction (from Inductive.thy);
wenzelm
parents: 11770
diff changeset
  1321
11989
d4bcba4e080e renamed inductive_XXX to induct_XXX;
wenzelm
parents: 11977
diff changeset
  1322
lemma induct_implies_eq: "(A ==> B) == Trueprop (induct_implies A B)"
18457
356a9f711899 structure ProjectRule;
wenzelm
parents: 17992
diff changeset
  1323
  by (unfold atomize_imp induct_implies_def)
11824
f4c1882dde2c setup generic cases and induction (from Inductive.thy);
wenzelm
parents: 11770
diff changeset
  1324
11989
d4bcba4e080e renamed inductive_XXX to induct_XXX;
wenzelm
parents: 11977
diff changeset
  1325
lemma induct_equal_eq: "(x == y) == Trueprop (induct_equal x y)"
18457
356a9f711899 structure ProjectRule;
wenzelm
parents: 17992
diff changeset
  1326
  by (unfold atomize_eq induct_equal_def)
356a9f711899 structure ProjectRule;
wenzelm
parents: 17992
diff changeset
  1327
356a9f711899 structure ProjectRule;
wenzelm
parents: 17992
diff changeset
  1328
lemma induct_conj_eq:
356a9f711899 structure ProjectRule;
wenzelm
parents: 17992
diff changeset
  1329
  includes meta_conjunction_syntax
356a9f711899 structure ProjectRule;
wenzelm
parents: 17992
diff changeset
  1330
  shows "(A && B) == Trueprop (induct_conj A B)"
356a9f711899 structure ProjectRule;
wenzelm
parents: 17992
diff changeset
  1331
  by (unfold atomize_conj induct_conj_def)
356a9f711899 structure ProjectRule;
wenzelm
parents: 17992
diff changeset
  1332
356a9f711899 structure ProjectRule;
wenzelm
parents: 17992
diff changeset
  1333
lemmas induct_atomize = induct_forall_eq induct_implies_eq induct_equal_eq induct_conj_eq
356a9f711899 structure ProjectRule;
wenzelm
parents: 17992
diff changeset
  1334
lemmas induct_rulify [symmetric, standard] = induct_atomize
356a9f711899 structure ProjectRule;
wenzelm
parents: 17992
diff changeset
  1335
lemmas induct_rulify_fallback =
356a9f711899 structure ProjectRule;
wenzelm
parents: 17992
diff changeset
  1336
  induct_forall_def induct_implies_def induct_equal_def induct_conj_def
356a9f711899 structure ProjectRule;
wenzelm
parents: 17992
diff changeset
  1337
11824
f4c1882dde2c setup generic cases and induction (from Inductive.thy);
wenzelm
parents: 11770
diff changeset
  1338
11989
d4bcba4e080e renamed inductive_XXX to induct_XXX;
wenzelm
parents: 11977
diff changeset
  1339
lemma induct_forall_conj: "induct_forall (\<lambda>x. induct_conj (A x) (B x)) =
d4bcba4e080e renamed inductive_XXX to induct_XXX;
wenzelm
parents: 11977
diff changeset
  1340
    induct_conj (induct_forall A) (induct_forall B)"
17589
58eeffd73be1 renamed rules to iprover
nipkow
parents: 17459
diff changeset
  1341
  by (unfold induct_forall_def induct_conj_def) iprover
11824
f4c1882dde2c setup generic cases and induction (from Inductive.thy);
wenzelm
parents: 11770
diff changeset
  1342
11989
d4bcba4e080e renamed inductive_XXX to induct_XXX;
wenzelm
parents: 11977
diff changeset
  1343
lemma induct_implies_conj: "induct_implies C (induct_conj A B) =
d4bcba4e080e renamed inductive_XXX to induct_XXX;
wenzelm
parents: 11977
diff changeset
  1344
    induct_conj (induct_implies C A) (induct_implies C B)"
17589
58eeffd73be1 renamed rules to iprover
nipkow
parents: 17459
diff changeset
  1345
  by (unfold induct_implies_def induct_conj_def) iprover
11989
d4bcba4e080e renamed inductive_XXX to induct_XXX;
wenzelm
parents: 11977
diff changeset
  1346
13598
8bc77b17f59f Fixed problem with induct_conj_curry: variable C should have type prop.
berghofe
parents: 13596
diff changeset
  1347
lemma induct_conj_curry: "(induct_conj A B ==> PROP C) == (A ==> B ==> PROP C)"
8bc77b17f59f Fixed problem with induct_conj_curry: variable C should have type prop.
berghofe
parents: 13596
diff changeset
  1348
proof
8bc77b17f59f Fixed problem with induct_conj_curry: variable C should have type prop.
berghofe
parents: 13596
diff changeset
  1349
  assume r: "induct_conj A B ==> PROP C" and A B
18457
356a9f711899 structure ProjectRule;
wenzelm
parents: 17992
diff changeset
  1350
  show "PROP C" by (rule r) (simp add: induct_conj_def `A` `B`)
13598
8bc77b17f59f Fixed problem with induct_conj_curry: variable C should have type prop.
berghofe
parents: 13596
diff changeset
  1351
next
8bc77b17f59f Fixed problem with induct_conj_curry: variable C should have type prop.
berghofe
parents: 13596
diff changeset
  1352
  assume r: "A ==> B ==> PROP C" and "induct_conj A B"
18457
356a9f711899 structure ProjectRule;
wenzelm
parents: 17992
diff changeset
  1353
  show "PROP C" by (rule r) (simp_all add: `induct_conj A B` [unfolded induct_conj_def])
13598
8bc77b17f59f Fixed problem with induct_conj_curry: variable C should have type prop.
berghofe
parents: 13596
diff changeset
  1354
qed
11824
f4c1882dde2c setup generic cases and induction (from Inductive.thy);
wenzelm
parents: 11770
diff changeset
  1355
11989
d4bcba4e080e renamed inductive_XXX to induct_XXX;
wenzelm
parents: 11977
diff changeset
  1356
lemmas induct_conj = induct_forall_conj induct_implies_conj induct_conj_curry
11824
f4c1882dde2c setup generic cases and induction (from Inductive.thy);
wenzelm
parents: 11770
diff changeset
  1357
11989
d4bcba4e080e renamed inductive_XXX to induct_XXX;
wenzelm
parents: 11977
diff changeset
  1358
hide const induct_forall induct_implies induct_equal induct_conj
11824
f4c1882dde2c setup generic cases and induction (from Inductive.thy);
wenzelm
parents: 11770
diff changeset
  1359
f4c1882dde2c setup generic cases and induction (from Inductive.thy);
wenzelm
parents: 11770
diff changeset
  1360
f4c1882dde2c setup generic cases and induction (from Inductive.thy);
wenzelm
parents: 11770
diff changeset
  1361
text {* Method setup. *}
f4c1882dde2c setup generic cases and induction (from Inductive.thy);
wenzelm
parents: 11770
diff changeset
  1362
f4c1882dde2c setup generic cases and induction (from Inductive.thy);
wenzelm
parents: 11770
diff changeset
  1363
ML {*
f4c1882dde2c setup generic cases and induction (from Inductive.thy);
wenzelm
parents: 11770
diff changeset
  1364
  structure InductMethod = InductMethodFun
f4c1882dde2c setup generic cases and induction (from Inductive.thy);
wenzelm
parents: 11770
diff changeset
  1365
  (struct
15411
1d195de59497 removal of HOL_Lemmas
paulson
parents: 15380
diff changeset
  1366
    val cases_default = thm "case_split"
1d195de59497 removal of HOL_Lemmas
paulson
parents: 15380
diff changeset
  1367
    val atomize = thms "induct_atomize"
18457
356a9f711899 structure ProjectRule;
wenzelm
parents: 17992
diff changeset
  1368
    val rulify = thms "induct_rulify"
356a9f711899 structure ProjectRule;
wenzelm
parents: 17992
diff changeset
  1369
    val rulify_fallback = thms "induct_rulify_fallback"
11824
f4c1882dde2c setup generic cases and induction (from Inductive.thy);
wenzelm
parents: 11770
diff changeset
  1370
  end);
f4c1882dde2c setup generic cases and induction (from Inductive.thy);
wenzelm
parents: 11770
diff changeset
  1371
*}
f4c1882dde2c setup generic cases and induction (from Inductive.thy);
wenzelm
parents: 11770
diff changeset
  1372
f4c1882dde2c setup generic cases and induction (from Inductive.thy);
wenzelm
parents: 11770
diff changeset
  1373
setup InductMethod.setup
f4c1882dde2c setup generic cases and induction (from Inductive.thy);
wenzelm
parents: 11770
diff changeset
  1374
18457
356a9f711899 structure ProjectRule;
wenzelm
parents: 17992
diff changeset
  1375
20590
bf92900995f8 introduced syntactic classes; moved some setup to Pure/codegen, Pure/nbe or OperationalEquality.thy
haftmann
parents: 20453
diff changeset
  1376
text {* itself as a code generator datatype *}
18702
7dc7dcd63224 substantial improvements in code generator
haftmann
parents: 18697
diff changeset
  1377
19598
d68dd20af31f different object logic setup for CodegenTheorems
haftmann
parents: 19536
diff changeset
  1378
setup {*
20590
bf92900995f8 introduced syntactic classes; moved some setup to Pure/codegen, Pure/nbe or OperationalEquality.thy
haftmann
parents: 20453
diff changeset
  1379
let fun add_itself thy =
bf92900995f8 introduced syntactic classes; moved some setup to Pure/codegen, Pure/nbe or OperationalEquality.thy
haftmann
parents: 20453
diff changeset
  1380
  let
bf92900995f8 introduced syntactic classes; moved some setup to Pure/codegen, Pure/nbe or OperationalEquality.thy
haftmann
parents: 20453
diff changeset
  1381
    val v = ("'a", []);
bf92900995f8 introduced syntactic classes; moved some setup to Pure/codegen, Pure/nbe or OperationalEquality.thy
haftmann
parents: 20453
diff changeset
  1382
    val t = Logic.mk_type (TFree v);
bf92900995f8 introduced syntactic classes; moved some setup to Pure/codegen, Pure/nbe or OperationalEquality.thy
haftmann
parents: 20453
diff changeset
  1383
    val Const (c, ty) = t;
bf92900995f8 introduced syntactic classes; moved some setup to Pure/codegen, Pure/nbe or OperationalEquality.thy
haftmann
parents: 20453
diff changeset
  1384
    val (_, Type (dtco, _)) = strip_type ty;
bf92900995f8 introduced syntactic classes; moved some setup to Pure/codegen, Pure/nbe or OperationalEquality.thy
haftmann
parents: 20453
diff changeset
  1385
  in
bf92900995f8 introduced syntactic classes; moved some setup to Pure/codegen, Pure/nbe or OperationalEquality.thy
haftmann
parents: 20453
diff changeset
  1386
    thy
bf92900995f8 introduced syntactic classes; moved some setup to Pure/codegen, Pure/nbe or OperationalEquality.thy
haftmann
parents: 20453
diff changeset
  1387
    |> CodegenData.add_datatype (dtco, (([v], [(c, [])]), CodegenData.lazy (fn () => [])))
bf92900995f8 introduced syntactic classes; moved some setup to Pure/codegen, Pure/nbe or OperationalEquality.thy
haftmann
parents: 20453
diff changeset
  1388
  end
bf92900995f8 introduced syntactic classes; moved some setup to Pure/codegen, Pure/nbe or OperationalEquality.thy
haftmann
parents: 20453
diff changeset
  1389
in add_itself end;
bf92900995f8 introduced syntactic classes; moved some setup to Pure/codegen, Pure/nbe or OperationalEquality.thy
haftmann
parents: 20453
diff changeset
  1390
*} 
18702
7dc7dcd63224 substantial improvements in code generator
haftmann
parents: 18697
diff changeset
  1391
14357
e49d5d5ae66a print translation for ALL x <= n. P x
kleing
parents: 14295
diff changeset
  1392
end