src/HOL/Fun.thy
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(*  Title:      HOL/Fun.thy
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    Author:     Tobias Nipkow, Cambridge University Computer Laboratory
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    Author:     Andrei Popescu, TU Muenchen
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    Copyright   1994, 2012
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*)
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header {* Notions about functions *}
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theory Fun
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imports Set
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keywords "functor" :: thy_goal
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begin
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lemma apply_inverse:
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  "f x = u \<Longrightarrow> (\<And>x. P x \<Longrightarrow> g (f x) = x) \<Longrightarrow> P x \<Longrightarrow> x = g u"
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  by auto
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subsection {* The Identity Function @{text id} *}
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definition id :: "'a \<Rightarrow> 'a" where
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  "id = (\<lambda>x. x)"
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lemma id_apply [simp]: "id x = x"
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  by (simp add: id_def)
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lemma image_id [simp]: "image id = id"
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  by (simp add: id_def fun_eq_iff)
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lemma vimage_id [simp]: "vimage id = id"
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  by (simp add: id_def fun_eq_iff)
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code_printing
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  constant id \<rightharpoonup> (Haskell) "id"
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subsection {* The Composition Operator @{text "f \<circ> g"} *}
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definition comp :: "('b \<Rightarrow> 'c) \<Rightarrow> ('a \<Rightarrow> 'b) \<Rightarrow> 'a \<Rightarrow> 'c" (infixl "o" 55) where
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  "f o g = (\<lambda>x. f (g x))"
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notation (xsymbols)
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  comp  (infixl "\<circ>" 55)
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notation (HTML output)
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  comp  (infixl "\<circ>" 55)
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lemma comp_apply [simp]: "(f o g) x = f (g x)"
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  by (simp add: comp_def)
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lemma comp_assoc: "(f o g) o h = f o (g o h)"
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  by (simp add: fun_eq_iff)
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lemma id_comp [simp]: "id o g = g"
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  by (simp add: fun_eq_iff)
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lemma comp_id [simp]: "f o id = f"
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  by (simp add: fun_eq_iff)
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lemma comp_eq_dest:
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  "a o b = c o d \<Longrightarrow> a (b v) = c (d v)"
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  by (simp add: fun_eq_iff)
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lemma comp_eq_elim:
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  "a o b = c o d \<Longrightarrow> ((\<And>v. a (b v) = c (d v)) \<Longrightarrow> R) \<Longrightarrow> R"
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  by (simp add: fun_eq_iff) 
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lemma comp_eq_dest_lhs: "a o b = c \<Longrightarrow> a (b v) = c v"
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  by clarsimp
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lemma comp_eq_id_dest: "a o b = id o c \<Longrightarrow> a (b v) = c v"
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  by clarsimp
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lemma image_comp:
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  "f ` (g ` r) = (f o g) ` r"
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  by auto
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lemma vimage_comp:
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  "f -` (g -` x) = (g \<circ> f) -` x"
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  by auto
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code_printing
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  constant comp \<rightharpoonup> (SML) infixl 5 "o" and (Haskell) infixr 9 "."
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subsection {* The Forward Composition Operator @{text fcomp} *}
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definition fcomp :: "('a \<Rightarrow> 'b) \<Rightarrow> ('b \<Rightarrow> 'c) \<Rightarrow> 'a \<Rightarrow> 'c" (infixl "\<circ>>" 60) where
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  "f \<circ>> g = (\<lambda>x. g (f x))"
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lemma fcomp_apply [simp]:  "(f \<circ>> g) x = g (f x)"
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  by (simp add: fcomp_def)
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lemma fcomp_assoc: "(f \<circ>> g) \<circ>> h = f \<circ>> (g \<circ>> h)"
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  by (simp add: fcomp_def)
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lemma id_fcomp [simp]: "id \<circ>> g = g"
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  by (simp add: fcomp_def)
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lemma fcomp_id [simp]: "f \<circ>> id = f"
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  by (simp add: fcomp_def)
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code_printing
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  constant fcomp \<rightharpoonup> (Eval) infixl 1 "#>"
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no_notation fcomp (infixl "\<circ>>" 60)
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subsection {* Mapping functions *}
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definition map_fun :: "('c \<Rightarrow> 'a) \<Rightarrow> ('b \<Rightarrow> 'd) \<Rightarrow> ('a \<Rightarrow> 'b) \<Rightarrow> 'c \<Rightarrow> 'd" where
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  "map_fun f g h = g \<circ> h \<circ> f"
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lemma map_fun_apply [simp]:
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  "map_fun f g h x = g (h (f x))"
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  by (simp add: map_fun_def)
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subsection {* Injectivity and Bijectivity *}
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definition inj_on :: "('a \<Rightarrow> 'b) \<Rightarrow> 'a set \<Rightarrow> bool" where -- "injective"
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  "inj_on f A \<longleftrightarrow> (\<forall>x\<in>A. \<forall>y\<in>A. f x = f y \<longrightarrow> x = y)"
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definition bij_betw :: "('a \<Rightarrow> 'b) \<Rightarrow> 'a set \<Rightarrow> 'b set \<Rightarrow> bool" where -- "bijective"
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  "bij_betw f A B \<longleftrightarrow> inj_on f A \<and> f ` A = B"
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text{*A common special case: functions injective, surjective or bijective over
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the entire domain type.*}
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abbreviation
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  "inj f \<equiv> inj_on f UNIV"
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abbreviation surj :: "('a \<Rightarrow> 'b) \<Rightarrow> bool" where -- "surjective"
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  "surj f \<equiv> (range f = UNIV)"
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abbreviation
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  "bij f \<equiv> bij_betw f UNIV UNIV"
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text{* The negated case: *}
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translations
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"\<not> CONST surj f" <= "CONST range f \<noteq> CONST UNIV"
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lemma injI:
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  assumes "\<And>x y. f x = f y \<Longrightarrow> x = y"
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  shows "inj f"
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  using assms unfolding inj_on_def by auto
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theorem range_ex1_eq: "inj f \<Longrightarrow> b : range f = (EX! x. b = f x)"
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  by (unfold inj_on_def, blast)
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lemma injD: "[| inj(f); f(x) = f(y) |] ==> x=y"
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by (simp add: inj_on_def)
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paulson
parents: 12460
diff changeset
   153
32988
d1d4d7a08a66 Inv -> inv_onto, inv abbr. inv_onto UNIV.
nipkow
parents: 32961
diff changeset
   154
lemma inj_on_eq_iff: "inj_on f A ==> x:A ==> y:A ==> (f(x) = f(y)) = (x=y)"
13585
db4005b40cc6 Converted Fun to Isar style.
paulson
parents: 12460
diff changeset
   155
by (force simp add: inj_on_def)
db4005b40cc6 Converted Fun to Isar style.
paulson
parents: 12460
diff changeset
   156
40703
d1fc454d6735 Move some missing lemmas from Andrei Popescus 'Ordinals and Cardinals' AFP entry to the HOL-image.
hoelzl
parents: 40702
diff changeset
   157
lemma inj_on_cong:
d1fc454d6735 Move some missing lemmas from Andrei Popescus 'Ordinals and Cardinals' AFP entry to the HOL-image.
hoelzl
parents: 40702
diff changeset
   158
  "(\<And> a. a : A \<Longrightarrow> f a = g a) \<Longrightarrow> inj_on f A = inj_on g A"
d1fc454d6735 Move some missing lemmas from Andrei Popescus 'Ordinals and Cardinals' AFP entry to the HOL-image.
hoelzl
parents: 40702
diff changeset
   159
unfolding inj_on_def by auto
d1fc454d6735 Move some missing lemmas from Andrei Popescus 'Ordinals and Cardinals' AFP entry to the HOL-image.
hoelzl
parents: 40702
diff changeset
   160
d1fc454d6735 Move some missing lemmas from Andrei Popescus 'Ordinals and Cardinals' AFP entry to the HOL-image.
hoelzl
parents: 40702
diff changeset
   161
lemma inj_on_strict_subset:
56077
d397030fb27e tuned proofs
haftmann
parents: 56015
diff changeset
   162
  "inj_on f B \<Longrightarrow> A \<subset> B \<Longrightarrow> f ` A \<subset> f ` B"
d397030fb27e tuned proofs
haftmann
parents: 56015
diff changeset
   163
  unfolding inj_on_def by blast
40703
d1fc454d6735 Move some missing lemmas from Andrei Popescus 'Ordinals and Cardinals' AFP entry to the HOL-image.
hoelzl
parents: 40702
diff changeset
   164
38620
b40524b74f77 inj_comp and inj_fun
haftmann
parents: 37767
diff changeset
   165
lemma inj_comp:
b40524b74f77 inj_comp and inj_fun
haftmann
parents: 37767
diff changeset
   166
  "inj f \<Longrightarrow> inj g \<Longrightarrow> inj (f \<circ> g)"
b40524b74f77 inj_comp and inj_fun
haftmann
parents: 37767
diff changeset
   167
  by (simp add: inj_on_def)
b40524b74f77 inj_comp and inj_fun
haftmann
parents: 37767
diff changeset
   168
b40524b74f77 inj_comp and inj_fun
haftmann
parents: 37767
diff changeset
   169
lemma inj_fun: "inj f \<Longrightarrow> inj (\<lambda>x y. f x)"
39302
d7728f65b353 renamed lemmas: ext_iff -> fun_eq_iff, set_ext_iff -> set_eq_iff, set_ext -> set_eqI
nipkow
parents: 39213
diff changeset
   170
  by (simp add: inj_on_def fun_eq_iff)
38620
b40524b74f77 inj_comp and inj_fun
haftmann
parents: 37767
diff changeset
   171
32988
d1d4d7a08a66 Inv -> inv_onto, inv abbr. inv_onto UNIV.
nipkow
parents: 32961
diff changeset
   172
lemma inj_eq: "inj f ==> (f(x) = f(y)) = (x=y)"
d1d4d7a08a66 Inv -> inv_onto, inv abbr. inv_onto UNIV.
nipkow
parents: 32961
diff changeset
   173
by (simp add: inj_on_eq_iff)
d1d4d7a08a66 Inv -> inv_onto, inv abbr. inv_onto UNIV.
nipkow
parents: 32961
diff changeset
   174
26147
ae2bf929e33c moved some set lemmas to Set.thy
haftmann
parents: 26105
diff changeset
   175
lemma inj_on_id[simp]: "inj_on id A"
39076
b3a9b6734663 Introduce surj_on and replace surj and bij by abbreviations.
hoelzl
parents: 39075
diff changeset
   176
  by (simp add: inj_on_def)
13585
db4005b40cc6 Converted Fun to Isar style.
paulson
parents: 12460
diff changeset
   177
26147
ae2bf929e33c moved some set lemmas to Set.thy
haftmann
parents: 26105
diff changeset
   178
lemma inj_on_id2[simp]: "inj_on (%x. x) A"
39076
b3a9b6734663 Introduce surj_on and replace surj and bij by abbreviations.
hoelzl
parents: 39075
diff changeset
   179
by (simp add: inj_on_def)
26147
ae2bf929e33c moved some set lemmas to Set.thy
haftmann
parents: 26105
diff changeset
   180
46586
abbec6fa25c8 generalizing inj_on_Int
bulwahn
parents: 46420
diff changeset
   181
lemma inj_on_Int: "inj_on f A \<or> inj_on f B \<Longrightarrow> inj_on f (A \<inter> B)"
40703
d1fc454d6735 Move some missing lemmas from Andrei Popescus 'Ordinals and Cardinals' AFP entry to the HOL-image.
hoelzl
parents: 40702
diff changeset
   182
unfolding inj_on_def by blast
d1fc454d6735 Move some missing lemmas from Andrei Popescus 'Ordinals and Cardinals' AFP entry to the HOL-image.
hoelzl
parents: 40702
diff changeset
   183
40702
cf26dd7395e4 Replace surj by abbreviation; remove surj_on.
hoelzl
parents: 40602
diff changeset
   184
lemma surj_id: "surj id"
cf26dd7395e4 Replace surj by abbreviation; remove surj_on.
hoelzl
parents: 40602
diff changeset
   185
by simp
26147
ae2bf929e33c moved some set lemmas to Set.thy
haftmann
parents: 26105
diff changeset
   186
39101
606432dd1896 Revert bij_betw changes to simp set (Problem in afp/Ordinals_and_Cardinals)
hoelzl
parents: 39076
diff changeset
   187
lemma bij_id[simp]: "bij id"
39076
b3a9b6734663 Introduce surj_on and replace surj and bij by abbreviations.
hoelzl
parents: 39075
diff changeset
   188
by (simp add: bij_betw_def)
13585
db4005b40cc6 Converted Fun to Isar style.
paulson
parents: 12460
diff changeset
   189
db4005b40cc6 Converted Fun to Isar style.
paulson
parents: 12460
diff changeset
   190
lemma inj_onI:
db4005b40cc6 Converted Fun to Isar style.
paulson
parents: 12460
diff changeset
   191
    "(!! x y. [|  x:A;  y:A;  f(x) = f(y) |] ==> x=y) ==> inj_on f A"
db4005b40cc6 Converted Fun to Isar style.
paulson
parents: 12460
diff changeset
   192
by (simp add: inj_on_def)
db4005b40cc6 Converted Fun to Isar style.
paulson
parents: 12460
diff changeset
   193
db4005b40cc6 Converted Fun to Isar style.
paulson
parents: 12460
diff changeset
   194
lemma inj_on_inverseI: "(!!x. x:A ==> g(f(x)) = x) ==> inj_on f A"
db4005b40cc6 Converted Fun to Isar style.
paulson
parents: 12460
diff changeset
   195
by (auto dest:  arg_cong [of concl: g] simp add: inj_on_def)
db4005b40cc6 Converted Fun to Isar style.
paulson
parents: 12460
diff changeset
   196
db4005b40cc6 Converted Fun to Isar style.
paulson
parents: 12460
diff changeset
   197
lemma inj_onD: "[| inj_on f A;  f(x)=f(y);  x:A;  y:A |] ==> x=y"
db4005b40cc6 Converted Fun to Isar style.
paulson
parents: 12460
diff changeset
   198
by (unfold inj_on_def, blast)
db4005b40cc6 Converted Fun to Isar style.
paulson
parents: 12460
diff changeset
   199
db4005b40cc6 Converted Fun to Isar style.
paulson
parents: 12460
diff changeset
   200
lemma inj_on_iff: "[| inj_on f A;  x:A;  y:A |] ==> (f(x)=f(y)) = (x=y)"
56077
d397030fb27e tuned proofs
haftmann
parents: 56015
diff changeset
   201
  by (fact inj_on_eq_iff)
13585
db4005b40cc6 Converted Fun to Isar style.
paulson
parents: 12460
diff changeset
   202
db4005b40cc6 Converted Fun to Isar style.
paulson
parents: 12460
diff changeset
   203
lemma comp_inj_on:
db4005b40cc6 Converted Fun to Isar style.
paulson
parents: 12460
diff changeset
   204
     "[| inj_on f A;  inj_on g (f`A) |] ==> inj_on (g o f) A"
db4005b40cc6 Converted Fun to Isar style.
paulson
parents: 12460
diff changeset
   205
by (simp add: comp_def inj_on_def)
db4005b40cc6 Converted Fun to Isar style.
paulson
parents: 12460
diff changeset
   206
15303
eedbb8d22ca2 added lemmas
nipkow
parents: 15140
diff changeset
   207
lemma inj_on_imageI: "inj_on (g o f) A \<Longrightarrow> inj_on g (f ` A)"
56077
d397030fb27e tuned proofs
haftmann
parents: 56015
diff changeset
   208
  by (simp add: inj_on_def) blast
15303
eedbb8d22ca2 added lemmas
nipkow
parents: 15140
diff changeset
   209
15439
71c0f98e31f1 made diff_less a simp rule
nipkow
parents: 15303
diff changeset
   210
lemma inj_on_image_iff: "\<lbrakk> ALL x:A. ALL y:A. (g(f x) = g(f y)) = (g x = g y);
71c0f98e31f1 made diff_less a simp rule
nipkow
parents: 15303
diff changeset
   211
  inj_on f A \<rbrakk> \<Longrightarrow> inj_on g (f ` A) = inj_on g A"
71c0f98e31f1 made diff_less a simp rule
nipkow
parents: 15303
diff changeset
   212
apply(unfold inj_on_def)
71c0f98e31f1 made diff_less a simp rule
nipkow
parents: 15303
diff changeset
   213
apply blast
71c0f98e31f1 made diff_less a simp rule
nipkow
parents: 15303
diff changeset
   214
done
71c0f98e31f1 made diff_less a simp rule
nipkow
parents: 15303
diff changeset
   215
13585
db4005b40cc6 Converted Fun to Isar style.
paulson
parents: 12460
diff changeset
   216
lemma inj_on_contraD: "[| inj_on f A;  ~x=y;  x:A;  y:A |] ==> ~ f(x)=f(y)"
db4005b40cc6 Converted Fun to Isar style.
paulson
parents: 12460
diff changeset
   217
by (unfold inj_on_def, blast)
12258
5da24e7e9aba got rid of theory Inverse_Image;
wenzelm
parents: 12114
diff changeset
   218
13585
db4005b40cc6 Converted Fun to Isar style.
paulson
parents: 12460
diff changeset
   219
lemma inj_singleton: "inj (%s. {s})"
db4005b40cc6 Converted Fun to Isar style.
paulson
parents: 12460
diff changeset
   220
by (simp add: inj_on_def)
db4005b40cc6 Converted Fun to Isar style.
paulson
parents: 12460
diff changeset
   221
15111
c108189645f8 added some inj_on thms
nipkow
parents: 14565
diff changeset
   222
lemma inj_on_empty[iff]: "inj_on f {}"
c108189645f8 added some inj_on thms
nipkow
parents: 14565
diff changeset
   223
by(simp add: inj_on_def)
c108189645f8 added some inj_on thms
nipkow
parents: 14565
diff changeset
   224
15303
eedbb8d22ca2 added lemmas
nipkow
parents: 15140
diff changeset
   225
lemma subset_inj_on: "[| inj_on f B; A <= B |] ==> inj_on f A"
13585
db4005b40cc6 Converted Fun to Isar style.
paulson
parents: 12460
diff changeset
   226
by (unfold inj_on_def, blast)
db4005b40cc6 Converted Fun to Isar style.
paulson
parents: 12460
diff changeset
   227
15111
c108189645f8 added some inj_on thms
nipkow
parents: 14565
diff changeset
   228
lemma inj_on_Un:
c108189645f8 added some inj_on thms
nipkow
parents: 14565
diff changeset
   229
 "inj_on f (A Un B) =
c108189645f8 added some inj_on thms
nipkow
parents: 14565
diff changeset
   230
  (inj_on f A & inj_on f B & f`(A-B) Int f`(B-A) = {})"
c108189645f8 added some inj_on thms
nipkow
parents: 14565
diff changeset
   231
apply(unfold inj_on_def)
c108189645f8 added some inj_on thms
nipkow
parents: 14565
diff changeset
   232
apply (blast intro:sym)
c108189645f8 added some inj_on thms
nipkow
parents: 14565
diff changeset
   233
done
c108189645f8 added some inj_on thms
nipkow
parents: 14565
diff changeset
   234
c108189645f8 added some inj_on thms
nipkow
parents: 14565
diff changeset
   235
lemma inj_on_insert[iff]:
c108189645f8 added some inj_on thms
nipkow
parents: 14565
diff changeset
   236
  "inj_on f (insert a A) = (inj_on f A & f a ~: f`(A-{a}))"
c108189645f8 added some inj_on thms
nipkow
parents: 14565
diff changeset
   237
apply(unfold inj_on_def)
c108189645f8 added some inj_on thms
nipkow
parents: 14565
diff changeset
   238
apply (blast intro:sym)
c108189645f8 added some inj_on thms
nipkow
parents: 14565
diff changeset
   239
done
c108189645f8 added some inj_on thms
nipkow
parents: 14565
diff changeset
   240
c108189645f8 added some inj_on thms
nipkow
parents: 14565
diff changeset
   241
lemma inj_on_diff: "inj_on f A ==> inj_on f (A-B)"
c108189645f8 added some inj_on thms
nipkow
parents: 14565
diff changeset
   242
apply(unfold inj_on_def)
c108189645f8 added some inj_on thms
nipkow
parents: 14565
diff changeset
   243
apply (blast)
c108189645f8 added some inj_on thms
nipkow
parents: 14565
diff changeset
   244
done
c108189645f8 added some inj_on thms
nipkow
parents: 14565
diff changeset
   245
40703
d1fc454d6735 Move some missing lemmas from Andrei Popescus 'Ordinals and Cardinals' AFP entry to the HOL-image.
hoelzl
parents: 40702
diff changeset
   246
lemma comp_inj_on_iff:
d1fc454d6735 Move some missing lemmas from Andrei Popescus 'Ordinals and Cardinals' AFP entry to the HOL-image.
hoelzl
parents: 40702
diff changeset
   247
  "inj_on f A \<Longrightarrow> inj_on f' (f ` A) \<longleftrightarrow> inj_on (f' o f) A"
d1fc454d6735 Move some missing lemmas from Andrei Popescus 'Ordinals and Cardinals' AFP entry to the HOL-image.
hoelzl
parents: 40702
diff changeset
   248
by(auto simp add: comp_inj_on inj_on_def)
d1fc454d6735 Move some missing lemmas from Andrei Popescus 'Ordinals and Cardinals' AFP entry to the HOL-image.
hoelzl
parents: 40702
diff changeset
   249
d1fc454d6735 Move some missing lemmas from Andrei Popescus 'Ordinals and Cardinals' AFP entry to the HOL-image.
hoelzl
parents: 40702
diff changeset
   250
lemma inj_on_imageI2:
d1fc454d6735 Move some missing lemmas from Andrei Popescus 'Ordinals and Cardinals' AFP entry to the HOL-image.
hoelzl
parents: 40702
diff changeset
   251
  "inj_on (f' o f) A \<Longrightarrow> inj_on f A"
d1fc454d6735 Move some missing lemmas from Andrei Popescus 'Ordinals and Cardinals' AFP entry to the HOL-image.
hoelzl
parents: 40702
diff changeset
   252
by(auto simp add: comp_inj_on inj_on_def)
d1fc454d6735 Move some missing lemmas from Andrei Popescus 'Ordinals and Cardinals' AFP entry to the HOL-image.
hoelzl
parents: 40702
diff changeset
   253
51598
5dbe537087aa generalized lemma fold_image thanks to Peter Lammich
haftmann
parents: 49905
diff changeset
   254
lemma inj_img_insertE:
5dbe537087aa generalized lemma fold_image thanks to Peter Lammich
haftmann
parents: 49905
diff changeset
   255
  assumes "inj_on f A"
5dbe537087aa generalized lemma fold_image thanks to Peter Lammich
haftmann
parents: 49905
diff changeset
   256
  assumes "x \<notin> B" and "insert x B = f ` A"
5dbe537087aa generalized lemma fold_image thanks to Peter Lammich
haftmann
parents: 49905
diff changeset
   257
  obtains x' A' where "x' \<notin> A'" and "A = insert x' A'"
55019
0d5e831175de moved lemmas from 'Fun_More_FP' to where they belong
blanchet
parents: 54578
diff changeset
   258
    and "x = f x'" and "B = f ` A'"
51598
5dbe537087aa generalized lemma fold_image thanks to Peter Lammich
haftmann
parents: 49905
diff changeset
   259
proof -
5dbe537087aa generalized lemma fold_image thanks to Peter Lammich
haftmann
parents: 49905
diff changeset
   260
  from assms have "x \<in> f ` A" by auto
5dbe537087aa generalized lemma fold_image thanks to Peter Lammich
haftmann
parents: 49905
diff changeset
   261
  then obtain x' where *: "x' \<in> A" "x = f x'" by auto
5dbe537087aa generalized lemma fold_image thanks to Peter Lammich
haftmann
parents: 49905
diff changeset
   262
  then have "A = insert x' (A - {x'})" by auto
5dbe537087aa generalized lemma fold_image thanks to Peter Lammich
haftmann
parents: 49905
diff changeset
   263
  with assms * have "B = f ` (A - {x'})"
5dbe537087aa generalized lemma fold_image thanks to Peter Lammich
haftmann
parents: 49905
diff changeset
   264
    by (auto dest: inj_on_contraD)
5dbe537087aa generalized lemma fold_image thanks to Peter Lammich
haftmann
parents: 49905
diff changeset
   265
  have "x' \<notin> A - {x'}" by simp
5dbe537087aa generalized lemma fold_image thanks to Peter Lammich
haftmann
parents: 49905
diff changeset
   266
  from `x' \<notin> A - {x'}` `A = insert x' (A - {x'})` `x = f x'` `B = image f (A - {x'})`
5dbe537087aa generalized lemma fold_image thanks to Peter Lammich
haftmann
parents: 49905
diff changeset
   267
  show ?thesis ..
5dbe537087aa generalized lemma fold_image thanks to Peter Lammich
haftmann
parents: 49905
diff changeset
   268
qed
5dbe537087aa generalized lemma fold_image thanks to Peter Lammich
haftmann
parents: 49905
diff changeset
   269
54578
9387251b6a46 eliminated dependence of BNF on Infinite_Set by moving 3 theorems from the latter to Main
traytel
parents: 54147
diff changeset
   270
lemma linorder_injI:
9387251b6a46 eliminated dependence of BNF on Infinite_Set by moving 3 theorems from the latter to Main
traytel
parents: 54147
diff changeset
   271
  assumes hyp: "\<And>x y. x < (y::'a::linorder) \<Longrightarrow> f x \<noteq> f y"
9387251b6a46 eliminated dependence of BNF on Infinite_Set by moving 3 theorems from the latter to Main
traytel
parents: 54147
diff changeset
   272
  shows "inj f"
9387251b6a46 eliminated dependence of BNF on Infinite_Set by moving 3 theorems from the latter to Main
traytel
parents: 54147
diff changeset
   273
  -- {* Courtesy of Stephan Merz *}
9387251b6a46 eliminated dependence of BNF on Infinite_Set by moving 3 theorems from the latter to Main
traytel
parents: 54147
diff changeset
   274
proof (rule inj_onI)
9387251b6a46 eliminated dependence of BNF on Infinite_Set by moving 3 theorems from the latter to Main
traytel
parents: 54147
diff changeset
   275
  fix x y
9387251b6a46 eliminated dependence of BNF on Infinite_Set by moving 3 theorems from the latter to Main
traytel
parents: 54147
diff changeset
   276
  assume f_eq: "f x = f y"
9387251b6a46 eliminated dependence of BNF on Infinite_Set by moving 3 theorems from the latter to Main
traytel
parents: 54147
diff changeset
   277
  show "x = y" by (rule linorder_cases) (auto dest: hyp simp: f_eq)
9387251b6a46 eliminated dependence of BNF on Infinite_Set by moving 3 theorems from the latter to Main
traytel
parents: 54147
diff changeset
   278
qed
9387251b6a46 eliminated dependence of BNF on Infinite_Set by moving 3 theorems from the latter to Main
traytel
parents: 54147
diff changeset
   279
40702
cf26dd7395e4 Replace surj by abbreviation; remove surj_on.
hoelzl
parents: 40602
diff changeset
   280
lemma surj_def: "surj f \<longleftrightarrow> (\<forall>y. \<exists>x. y = f x)"
cf26dd7395e4 Replace surj by abbreviation; remove surj_on.
hoelzl
parents: 40602
diff changeset
   281
  by auto
39076
b3a9b6734663 Introduce surj_on and replace surj and bij by abbreviations.
hoelzl
parents: 39075
diff changeset
   282
40702
cf26dd7395e4 Replace surj by abbreviation; remove surj_on.
hoelzl
parents: 40602
diff changeset
   283
lemma surjI: assumes *: "\<And> x. g (f x) = x" shows "surj g"
cf26dd7395e4 Replace surj by abbreviation; remove surj_on.
hoelzl
parents: 40602
diff changeset
   284
  using *[symmetric] by auto
13585
db4005b40cc6 Converted Fun to Isar style.
paulson
parents: 12460
diff changeset
   285
39076
b3a9b6734663 Introduce surj_on and replace surj and bij by abbreviations.
hoelzl
parents: 39075
diff changeset
   286
lemma surjD: "surj f \<Longrightarrow> \<exists>x. y = f x"
b3a9b6734663 Introduce surj_on and replace surj and bij by abbreviations.
hoelzl
parents: 39075
diff changeset
   287
  by (simp add: surj_def)
13585
db4005b40cc6 Converted Fun to Isar style.
paulson
parents: 12460
diff changeset
   288
39076
b3a9b6734663 Introduce surj_on and replace surj and bij by abbreviations.
hoelzl
parents: 39075
diff changeset
   289
lemma surjE: "surj f \<Longrightarrow> (\<And>x. y = f x \<Longrightarrow> C) \<Longrightarrow> C"
b3a9b6734663 Introduce surj_on and replace surj and bij by abbreviations.
hoelzl
parents: 39075
diff changeset
   290
  by (simp add: surj_def, blast)
13585
db4005b40cc6 Converted Fun to Isar style.
paulson
parents: 12460
diff changeset
   291
db4005b40cc6 Converted Fun to Isar style.
paulson
parents: 12460
diff changeset
   292
lemma comp_surj: "[| surj f;  surj g |] ==> surj (g o f)"
db4005b40cc6 Converted Fun to Isar style.
paulson
parents: 12460
diff changeset
   293
apply (simp add: comp_def surj_def, clarify)
db4005b40cc6 Converted Fun to Isar style.
paulson
parents: 12460
diff changeset
   294
apply (drule_tac x = y in spec, clarify)
db4005b40cc6 Converted Fun to Isar style.
paulson
parents: 12460
diff changeset
   295
apply (drule_tac x = x in spec, blast)
db4005b40cc6 Converted Fun to Isar style.
paulson
parents: 12460
diff changeset
   296
done
db4005b40cc6 Converted Fun to Isar style.
paulson
parents: 12460
diff changeset
   297
57282
7da3e398804c Two basic lemmas on bij_betw.
ballarin
parents: 56608
diff changeset
   298
lemma bij_betw_imageI:
7da3e398804c Two basic lemmas on bij_betw.
ballarin
parents: 56608
diff changeset
   299
  "\<lbrakk> inj_on f A; f ` A = B \<rbrakk> \<Longrightarrow> bij_betw f A B"
7da3e398804c Two basic lemmas on bij_betw.
ballarin
parents: 56608
diff changeset
   300
unfolding bij_betw_def by clarify
7da3e398804c Two basic lemmas on bij_betw.
ballarin
parents: 56608
diff changeset
   301
7da3e398804c Two basic lemmas on bij_betw.
ballarin
parents: 56608
diff changeset
   302
lemma bij_betw_imp_surj_on: "bij_betw f A B \<Longrightarrow> f ` A = B"
7da3e398804c Two basic lemmas on bij_betw.
ballarin
parents: 56608
diff changeset
   303
  unfolding bij_betw_def by clarify
7da3e398804c Two basic lemmas on bij_betw.
ballarin
parents: 56608
diff changeset
   304
39074
211e4f6aad63 bij <--> bij_betw
hoelzl
parents: 38620
diff changeset
   305
lemma bij_betw_imp_surj: "bij_betw f A UNIV \<Longrightarrow> surj f"
40702
cf26dd7395e4 Replace surj by abbreviation; remove surj_on.
hoelzl
parents: 40602
diff changeset
   306
  unfolding bij_betw_def by auto
39074
211e4f6aad63 bij <--> bij_betw
hoelzl
parents: 38620
diff changeset
   307
40703
d1fc454d6735 Move some missing lemmas from Andrei Popescus 'Ordinals and Cardinals' AFP entry to the HOL-image.
hoelzl
parents: 40702
diff changeset
   308
lemma bij_betw_empty1:
d1fc454d6735 Move some missing lemmas from Andrei Popescus 'Ordinals and Cardinals' AFP entry to the HOL-image.
hoelzl
parents: 40702
diff changeset
   309
  assumes "bij_betw f {} A"
d1fc454d6735 Move some missing lemmas from Andrei Popescus 'Ordinals and Cardinals' AFP entry to the HOL-image.
hoelzl
parents: 40702
diff changeset
   310
  shows "A = {}"
d1fc454d6735 Move some missing lemmas from Andrei Popescus 'Ordinals and Cardinals' AFP entry to the HOL-image.
hoelzl
parents: 40702
diff changeset
   311
using assms unfolding bij_betw_def by blast
d1fc454d6735 Move some missing lemmas from Andrei Popescus 'Ordinals and Cardinals' AFP entry to the HOL-image.
hoelzl
parents: 40702
diff changeset
   312
d1fc454d6735 Move some missing lemmas from Andrei Popescus 'Ordinals and Cardinals' AFP entry to the HOL-image.
hoelzl
parents: 40702
diff changeset
   313
lemma bij_betw_empty2:
d1fc454d6735 Move some missing lemmas from Andrei Popescus 'Ordinals and Cardinals' AFP entry to the HOL-image.
hoelzl
parents: 40702
diff changeset
   314
  assumes "bij_betw f A {}"
d1fc454d6735 Move some missing lemmas from Andrei Popescus 'Ordinals and Cardinals' AFP entry to the HOL-image.
hoelzl
parents: 40702
diff changeset
   315
  shows "A = {}"
d1fc454d6735 Move some missing lemmas from Andrei Popescus 'Ordinals and Cardinals' AFP entry to the HOL-image.
hoelzl
parents: 40702
diff changeset
   316
using assms unfolding bij_betw_def by blast
d1fc454d6735 Move some missing lemmas from Andrei Popescus 'Ordinals and Cardinals' AFP entry to the HOL-image.
hoelzl
parents: 40702
diff changeset
   317
d1fc454d6735 Move some missing lemmas from Andrei Popescus 'Ordinals and Cardinals' AFP entry to the HOL-image.
hoelzl
parents: 40702
diff changeset
   318
lemma inj_on_imp_bij_betw:
d1fc454d6735 Move some missing lemmas from Andrei Popescus 'Ordinals and Cardinals' AFP entry to the HOL-image.
hoelzl
parents: 40702
diff changeset
   319
  "inj_on f A \<Longrightarrow> bij_betw f A (f ` A)"
d1fc454d6735 Move some missing lemmas from Andrei Popescus 'Ordinals and Cardinals' AFP entry to the HOL-image.
hoelzl
parents: 40702
diff changeset
   320
unfolding bij_betw_def by simp
d1fc454d6735 Move some missing lemmas from Andrei Popescus 'Ordinals and Cardinals' AFP entry to the HOL-image.
hoelzl
parents: 40702
diff changeset
   321
39076
b3a9b6734663 Introduce surj_on and replace surj and bij by abbreviations.
hoelzl
parents: 39075
diff changeset
   322
lemma bij_def: "bij f \<longleftrightarrow> inj f \<and> surj f"
40702
cf26dd7395e4 Replace surj by abbreviation; remove surj_on.
hoelzl
parents: 40602
diff changeset
   323
  unfolding bij_betw_def ..
39074
211e4f6aad63 bij <--> bij_betw
hoelzl
parents: 38620
diff changeset
   324
13585
db4005b40cc6 Converted Fun to Isar style.
paulson
parents: 12460
diff changeset
   325
lemma bijI: "[| inj f; surj f |] ==> bij f"
db4005b40cc6 Converted Fun to Isar style.
paulson
parents: 12460
diff changeset
   326
by (simp add: bij_def)
db4005b40cc6 Converted Fun to Isar style.
paulson
parents: 12460
diff changeset
   327
db4005b40cc6 Converted Fun to Isar style.
paulson
parents: 12460
diff changeset
   328
lemma bij_is_inj: "bij f ==> inj f"
db4005b40cc6 Converted Fun to Isar style.
paulson
parents: 12460
diff changeset
   329
by (simp add: bij_def)
db4005b40cc6 Converted Fun to Isar style.
paulson
parents: 12460
diff changeset
   330
db4005b40cc6 Converted Fun to Isar style.
paulson
parents: 12460
diff changeset
   331
lemma bij_is_surj: "bij f ==> surj f"
db4005b40cc6 Converted Fun to Isar style.
paulson
parents: 12460
diff changeset
   332
by (simp add: bij_def)
db4005b40cc6 Converted Fun to Isar style.
paulson
parents: 12460
diff changeset
   333
26105
ae06618225ec moved bij_betw from Library/FuncSet to Fun, redistributed some lemmas, and
nipkow
parents: 25886
diff changeset
   334
lemma bij_betw_imp_inj_on: "bij_betw f A B \<Longrightarrow> inj_on f A"
ae06618225ec moved bij_betw from Library/FuncSet to Fun, redistributed some lemmas, and
nipkow
parents: 25886
diff changeset
   335
by (simp add: bij_betw_def)
ae06618225ec moved bij_betw from Library/FuncSet to Fun, redistributed some lemmas, and
nipkow
parents: 25886
diff changeset
   336
31438
a1c4c1500abe A few finite lemmas
nipkow
parents: 31202
diff changeset
   337
lemma bij_betw_trans:
a1c4c1500abe A few finite lemmas
nipkow
parents: 31202
diff changeset
   338
  "bij_betw f A B \<Longrightarrow> bij_betw g B C \<Longrightarrow> bij_betw (g o f) A C"
a1c4c1500abe A few finite lemmas
nipkow
parents: 31202
diff changeset
   339
by(auto simp add:bij_betw_def comp_inj_on)
a1c4c1500abe A few finite lemmas
nipkow
parents: 31202
diff changeset
   340
40702
cf26dd7395e4 Replace surj by abbreviation; remove surj_on.
hoelzl
parents: 40602
diff changeset
   341
lemma bij_comp: "bij f \<Longrightarrow> bij g \<Longrightarrow> bij (g o f)"
cf26dd7395e4 Replace surj by abbreviation; remove surj_on.
hoelzl
parents: 40602
diff changeset
   342
  by (rule bij_betw_trans)
cf26dd7395e4 Replace surj by abbreviation; remove surj_on.
hoelzl
parents: 40602
diff changeset
   343
40703
d1fc454d6735 Move some missing lemmas from Andrei Popescus 'Ordinals and Cardinals' AFP entry to the HOL-image.
hoelzl
parents: 40702
diff changeset
   344
lemma bij_betw_comp_iff:
d1fc454d6735 Move some missing lemmas from Andrei Popescus 'Ordinals and Cardinals' AFP entry to the HOL-image.
hoelzl
parents: 40702
diff changeset
   345
  "bij_betw f A A' \<Longrightarrow> bij_betw f' A' A'' \<longleftrightarrow> bij_betw (f' o f) A A''"
d1fc454d6735 Move some missing lemmas from Andrei Popescus 'Ordinals and Cardinals' AFP entry to the HOL-image.
hoelzl
parents: 40702
diff changeset
   346
by(auto simp add: bij_betw_def inj_on_def)
d1fc454d6735 Move some missing lemmas from Andrei Popescus 'Ordinals and Cardinals' AFP entry to the HOL-image.
hoelzl
parents: 40702
diff changeset
   347
d1fc454d6735 Move some missing lemmas from Andrei Popescus 'Ordinals and Cardinals' AFP entry to the HOL-image.
hoelzl
parents: 40702
diff changeset
   348
lemma bij_betw_comp_iff2:
d1fc454d6735 Move some missing lemmas from Andrei Popescus 'Ordinals and Cardinals' AFP entry to the HOL-image.
hoelzl
parents: 40702
diff changeset
   349
  assumes BIJ: "bij_betw f' A' A''" and IM: "f ` A \<le> A'"
d1fc454d6735 Move some missing lemmas from Andrei Popescus 'Ordinals and Cardinals' AFP entry to the HOL-image.
hoelzl
parents: 40702
diff changeset
   350
  shows "bij_betw f A A' \<longleftrightarrow> bij_betw (f' o f) A A''"
d1fc454d6735 Move some missing lemmas from Andrei Popescus 'Ordinals and Cardinals' AFP entry to the HOL-image.
hoelzl
parents: 40702
diff changeset
   351
using assms
d1fc454d6735 Move some missing lemmas from Andrei Popescus 'Ordinals and Cardinals' AFP entry to the HOL-image.
hoelzl
parents: 40702
diff changeset
   352
proof(auto simp add: bij_betw_comp_iff)
d1fc454d6735 Move some missing lemmas from Andrei Popescus 'Ordinals and Cardinals' AFP entry to the HOL-image.
hoelzl
parents: 40702
diff changeset
   353
  assume *: "bij_betw (f' \<circ> f) A A''"
d1fc454d6735 Move some missing lemmas from Andrei Popescus 'Ordinals and Cardinals' AFP entry to the HOL-image.
hoelzl
parents: 40702
diff changeset
   354
  thus "bij_betw f A A'"
d1fc454d6735 Move some missing lemmas from Andrei Popescus 'Ordinals and Cardinals' AFP entry to the HOL-image.
hoelzl
parents: 40702
diff changeset
   355
  using IM
d1fc454d6735 Move some missing lemmas from Andrei Popescus 'Ordinals and Cardinals' AFP entry to the HOL-image.
hoelzl
parents: 40702
diff changeset
   356
  proof(auto simp add: bij_betw_def)
d1fc454d6735 Move some missing lemmas from Andrei Popescus 'Ordinals and Cardinals' AFP entry to the HOL-image.
hoelzl
parents: 40702
diff changeset
   357
    assume "inj_on (f' \<circ> f) A"
d1fc454d6735 Move some missing lemmas from Andrei Popescus 'Ordinals and Cardinals' AFP entry to the HOL-image.
hoelzl
parents: 40702
diff changeset
   358
    thus "inj_on f A" using inj_on_imageI2 by blast
d1fc454d6735 Move some missing lemmas from Andrei Popescus 'Ordinals and Cardinals' AFP entry to the HOL-image.
hoelzl
parents: 40702
diff changeset
   359
  next
d1fc454d6735 Move some missing lemmas from Andrei Popescus 'Ordinals and Cardinals' AFP entry to the HOL-image.
hoelzl
parents: 40702
diff changeset
   360
    fix a' assume **: "a' \<in> A'"
d1fc454d6735 Move some missing lemmas from Andrei Popescus 'Ordinals and Cardinals' AFP entry to the HOL-image.
hoelzl
parents: 40702
diff changeset
   361
    hence "f' a' \<in> A''" using BIJ unfolding bij_betw_def by auto
d1fc454d6735 Move some missing lemmas from Andrei Popescus 'Ordinals and Cardinals' AFP entry to the HOL-image.
hoelzl
parents: 40702
diff changeset
   362
    then obtain a where 1: "a \<in> A \<and> f'(f a) = f' a'" using *
d1fc454d6735 Move some missing lemmas from Andrei Popescus 'Ordinals and Cardinals' AFP entry to the HOL-image.
hoelzl
parents: 40702
diff changeset
   363
    unfolding bij_betw_def by force
d1fc454d6735 Move some missing lemmas from Andrei Popescus 'Ordinals and Cardinals' AFP entry to the HOL-image.
hoelzl
parents: 40702
diff changeset
   364
    hence "f a \<in> A'" using IM by auto
d1fc454d6735 Move some missing lemmas from Andrei Popescus 'Ordinals and Cardinals' AFP entry to the HOL-image.
hoelzl
parents: 40702
diff changeset
   365
    hence "f a = a'" using BIJ ** 1 unfolding bij_betw_def inj_on_def by auto
d1fc454d6735 Move some missing lemmas from Andrei Popescus 'Ordinals and Cardinals' AFP entry to the HOL-image.
hoelzl
parents: 40702
diff changeset
   366
    thus "a' \<in> f ` A" using 1 by auto
d1fc454d6735 Move some missing lemmas from Andrei Popescus 'Ordinals and Cardinals' AFP entry to the HOL-image.
hoelzl
parents: 40702
diff changeset
   367
  qed
d1fc454d6735 Move some missing lemmas from Andrei Popescus 'Ordinals and Cardinals' AFP entry to the HOL-image.
hoelzl
parents: 40702
diff changeset
   368
qed
d1fc454d6735 Move some missing lemmas from Andrei Popescus 'Ordinals and Cardinals' AFP entry to the HOL-image.
hoelzl
parents: 40702
diff changeset
   369
26105
ae06618225ec moved bij_betw from Library/FuncSet to Fun, redistributed some lemmas, and
nipkow
parents: 25886
diff changeset
   370
lemma bij_betw_inv: assumes "bij_betw f A B" shows "EX g. bij_betw g B A"
ae06618225ec moved bij_betw from Library/FuncSet to Fun, redistributed some lemmas, and
nipkow
parents: 25886
diff changeset
   371
proof -
ae06618225ec moved bij_betw from Library/FuncSet to Fun, redistributed some lemmas, and
nipkow
parents: 25886
diff changeset
   372
  have i: "inj_on f A" and s: "f ` A = B"
ae06618225ec moved bij_betw from Library/FuncSet to Fun, redistributed some lemmas, and
nipkow
parents: 25886
diff changeset
   373
    using assms by(auto simp:bij_betw_def)
ae06618225ec moved bij_betw from Library/FuncSet to Fun, redistributed some lemmas, and
nipkow
parents: 25886
diff changeset
   374
  let ?P = "%b a. a:A \<and> f a = b" let ?g = "%b. The (?P b)"
ae06618225ec moved bij_betw from Library/FuncSet to Fun, redistributed some lemmas, and
nipkow
parents: 25886
diff changeset
   375
  { fix a b assume P: "?P b a"
56077
d397030fb27e tuned proofs
haftmann
parents: 56015
diff changeset
   376
    hence ex1: "\<exists>a. ?P b a" using s by blast
26105
ae06618225ec moved bij_betw from Library/FuncSet to Fun, redistributed some lemmas, and
nipkow
parents: 25886
diff changeset
   377
    hence uex1: "\<exists>!a. ?P b a" by(blast dest:inj_onD[OF i])
ae06618225ec moved bij_betw from Library/FuncSet to Fun, redistributed some lemmas, and
nipkow
parents: 25886
diff changeset
   378
    hence " ?g b = a" using the1_equality[OF uex1, OF P] P by simp
ae06618225ec moved bij_betw from Library/FuncSet to Fun, redistributed some lemmas, and
nipkow
parents: 25886
diff changeset
   379
  } note g = this
ae06618225ec moved bij_betw from Library/FuncSet to Fun, redistributed some lemmas, and
nipkow
parents: 25886
diff changeset
   380
  have "inj_on ?g B"
ae06618225ec moved bij_betw from Library/FuncSet to Fun, redistributed some lemmas, and
nipkow
parents: 25886
diff changeset
   381
  proof(rule inj_onI)
ae06618225ec moved bij_betw from Library/FuncSet to Fun, redistributed some lemmas, and
nipkow
parents: 25886
diff changeset
   382
    fix x y assume "x:B" "y:B" "?g x = ?g y"
56077
d397030fb27e tuned proofs
haftmann
parents: 56015
diff changeset
   383
    from s `x:B` obtain a1 where a1: "?P x a1" by blast
d397030fb27e tuned proofs
haftmann
parents: 56015
diff changeset
   384
    from s `y:B` obtain a2 where a2: "?P y a2" by blast
26105
ae06618225ec moved bij_betw from Library/FuncSet to Fun, redistributed some lemmas, and
nipkow
parents: 25886
diff changeset
   385
    from g[OF a1] a1 g[OF a2] a2 `?g x = ?g y` show "x=y" by simp
ae06618225ec moved bij_betw from Library/FuncSet to Fun, redistributed some lemmas, and
nipkow
parents: 25886
diff changeset
   386
  qed
ae06618225ec moved bij_betw from Library/FuncSet to Fun, redistributed some lemmas, and
nipkow
parents: 25886
diff changeset
   387
  moreover have "?g ` B = A"
56077
d397030fb27e tuned proofs
haftmann
parents: 56015
diff changeset
   388
  proof(auto simp: image_def)
26105
ae06618225ec moved bij_betw from Library/FuncSet to Fun, redistributed some lemmas, and
nipkow
parents: 25886
diff changeset
   389
    fix b assume "b:B"
56077
d397030fb27e tuned proofs
haftmann
parents: 56015
diff changeset
   390
    with s obtain a where P: "?P b a" by blast
26105
ae06618225ec moved bij_betw from Library/FuncSet to Fun, redistributed some lemmas, and
nipkow
parents: 25886
diff changeset
   391
    thus "?g b \<in> A" using g[OF P] by auto
ae06618225ec moved bij_betw from Library/FuncSet to Fun, redistributed some lemmas, and
nipkow
parents: 25886
diff changeset
   392
  next
ae06618225ec moved bij_betw from Library/FuncSet to Fun, redistributed some lemmas, and
nipkow
parents: 25886
diff changeset
   393
    fix a assume "a:A"
56077
d397030fb27e tuned proofs
haftmann
parents: 56015
diff changeset
   394
    then obtain b where P: "?P b a" using s by blast
d397030fb27e tuned proofs
haftmann
parents: 56015
diff changeset
   395
    then have "b:B" using s by blast
26105
ae06618225ec moved bij_betw from Library/FuncSet to Fun, redistributed some lemmas, and
nipkow
parents: 25886
diff changeset
   396
    with g[OF P] show "\<exists>b\<in>B. a = ?g b" by blast
ae06618225ec moved bij_betw from Library/FuncSet to Fun, redistributed some lemmas, and
nipkow
parents: 25886
diff changeset
   397
  qed
ae06618225ec moved bij_betw from Library/FuncSet to Fun, redistributed some lemmas, and
nipkow
parents: 25886
diff changeset
   398
  ultimately show ?thesis by(auto simp:bij_betw_def)
ae06618225ec moved bij_betw from Library/FuncSet to Fun, redistributed some lemmas, and
nipkow
parents: 25886
diff changeset
   399
qed
ae06618225ec moved bij_betw from Library/FuncSet to Fun, redistributed some lemmas, and
nipkow
parents: 25886
diff changeset
   400
40703
d1fc454d6735 Move some missing lemmas from Andrei Popescus 'Ordinals and Cardinals' AFP entry to the HOL-image.
hoelzl
parents: 40702
diff changeset
   401
lemma bij_betw_cong:
d1fc454d6735 Move some missing lemmas from Andrei Popescus 'Ordinals and Cardinals' AFP entry to the HOL-image.
hoelzl
parents: 40702
diff changeset
   402
  "(\<And> a. a \<in> A \<Longrightarrow> f a = g a) \<Longrightarrow> bij_betw f A A' = bij_betw g A A'"
d1fc454d6735 Move some missing lemmas from Andrei Popescus 'Ordinals and Cardinals' AFP entry to the HOL-image.
hoelzl
parents: 40702
diff changeset
   403
unfolding bij_betw_def inj_on_def by force
d1fc454d6735 Move some missing lemmas from Andrei Popescus 'Ordinals and Cardinals' AFP entry to the HOL-image.
hoelzl
parents: 40702
diff changeset
   404
d1fc454d6735 Move some missing lemmas from Andrei Popescus 'Ordinals and Cardinals' AFP entry to the HOL-image.
hoelzl
parents: 40702
diff changeset
   405
lemma bij_betw_id[intro, simp]:
d1fc454d6735 Move some missing lemmas from Andrei Popescus 'Ordinals and Cardinals' AFP entry to the HOL-image.
hoelzl
parents: 40702
diff changeset
   406
  "bij_betw id A A"
d1fc454d6735 Move some missing lemmas from Andrei Popescus 'Ordinals and Cardinals' AFP entry to the HOL-image.
hoelzl
parents: 40702
diff changeset
   407
unfolding bij_betw_def id_def by auto
d1fc454d6735 Move some missing lemmas from Andrei Popescus 'Ordinals and Cardinals' AFP entry to the HOL-image.
hoelzl
parents: 40702
diff changeset
   408
d1fc454d6735 Move some missing lemmas from Andrei Popescus 'Ordinals and Cardinals' AFP entry to the HOL-image.
hoelzl
parents: 40702
diff changeset
   409
lemma bij_betw_id_iff:
d1fc454d6735 Move some missing lemmas from Andrei Popescus 'Ordinals and Cardinals' AFP entry to the HOL-image.
hoelzl
parents: 40702
diff changeset
   410
  "bij_betw id A B \<longleftrightarrow> A = B"
d1fc454d6735 Move some missing lemmas from Andrei Popescus 'Ordinals and Cardinals' AFP entry to the HOL-image.
hoelzl
parents: 40702
diff changeset
   411
by(auto simp add: bij_betw_def)
d1fc454d6735 Move some missing lemmas from Andrei Popescus 'Ordinals and Cardinals' AFP entry to the HOL-image.
hoelzl
parents: 40702
diff changeset
   412
39075
a18e5946d63c Permutation implies bij function
hoelzl
parents: 39074
diff changeset
   413
lemma bij_betw_combine:
a18e5946d63c Permutation implies bij function
hoelzl
parents: 39074
diff changeset
   414
  assumes "bij_betw f A B" "bij_betw f C D" "B \<inter> D = {}"
a18e5946d63c Permutation implies bij function
hoelzl
parents: 39074
diff changeset
   415
  shows "bij_betw f (A \<union> C) (B \<union> D)"
a18e5946d63c Permutation implies bij function
hoelzl
parents: 39074
diff changeset
   416
  using assms unfolding bij_betw_def inj_on_Un image_Un by auto
a18e5946d63c Permutation implies bij function
hoelzl
parents: 39074
diff changeset
   417
40703
d1fc454d6735 Move some missing lemmas from Andrei Popescus 'Ordinals and Cardinals' AFP entry to the HOL-image.
hoelzl
parents: 40702
diff changeset
   418
lemma bij_betw_subset:
d1fc454d6735 Move some missing lemmas from Andrei Popescus 'Ordinals and Cardinals' AFP entry to the HOL-image.
hoelzl
parents: 40702
diff changeset
   419
  assumes BIJ: "bij_betw f A A'" and
d1fc454d6735 Move some missing lemmas from Andrei Popescus 'Ordinals and Cardinals' AFP entry to the HOL-image.
hoelzl
parents: 40702
diff changeset
   420
          SUB: "B \<le> A" and IM: "f ` B = B'"
d1fc454d6735 Move some missing lemmas from Andrei Popescus 'Ordinals and Cardinals' AFP entry to the HOL-image.
hoelzl
parents: 40702
diff changeset
   421
  shows "bij_betw f B B'"
d1fc454d6735 Move some missing lemmas from Andrei Popescus 'Ordinals and Cardinals' AFP entry to the HOL-image.
hoelzl
parents: 40702
diff changeset
   422
using assms
d1fc454d6735 Move some missing lemmas from Andrei Popescus 'Ordinals and Cardinals' AFP entry to the HOL-image.
hoelzl
parents: 40702
diff changeset
   423
by(unfold bij_betw_def inj_on_def, auto simp add: inj_on_def)
d1fc454d6735 Move some missing lemmas from Andrei Popescus 'Ordinals and Cardinals' AFP entry to the HOL-image.
hoelzl
parents: 40702
diff changeset
   424
13585
db4005b40cc6 Converted Fun to Isar style.
paulson
parents: 12460
diff changeset
   425
lemma surj_image_vimage_eq: "surj f ==> f ` (f -` A) = A"
40702
cf26dd7395e4 Replace surj by abbreviation; remove surj_on.
hoelzl
parents: 40602
diff changeset
   426
by simp
13585
db4005b40cc6 Converted Fun to Isar style.
paulson
parents: 12460
diff changeset
   427
42903
ec9eb1fbfcb8 add surj_vimage_empty
hoelzl
parents: 42238
diff changeset
   428
lemma surj_vimage_empty:
ec9eb1fbfcb8 add surj_vimage_empty
hoelzl
parents: 42238
diff changeset
   429
  assumes "surj f" shows "f -` A = {} \<longleftrightarrow> A = {}"
ec9eb1fbfcb8 add surj_vimage_empty
hoelzl
parents: 42238
diff changeset
   430
  using surj_image_vimage_eq[OF `surj f`, of A]
44890
22f665a2e91c new fastforce replacing fastsimp - less confusing name
nipkow
parents: 44860
diff changeset
   431
  by (intro iffI) fastforce+
42903
ec9eb1fbfcb8 add surj_vimage_empty
hoelzl
parents: 42238
diff changeset
   432
13585
db4005b40cc6 Converted Fun to Isar style.
paulson
parents: 12460
diff changeset
   433
lemma inj_vimage_image_eq: "inj f ==> f -` (f ` A) = A"
db4005b40cc6 Converted Fun to Isar style.
paulson
parents: 12460
diff changeset
   434
by (simp add: inj_on_def, blast)
db4005b40cc6 Converted Fun to Isar style.
paulson
parents: 12460
diff changeset
   435
db4005b40cc6 Converted Fun to Isar style.
paulson
parents: 12460
diff changeset
   436
lemma vimage_subsetD: "surj f ==> f -` B <= A ==> B <= f ` A"
40702
cf26dd7395e4 Replace surj by abbreviation; remove surj_on.
hoelzl
parents: 40602
diff changeset
   437
by (blast intro: sym)
13585
db4005b40cc6 Converted Fun to Isar style.
paulson
parents: 12460
diff changeset
   438
db4005b40cc6 Converted Fun to Isar style.
paulson
parents: 12460
diff changeset
   439
lemma vimage_subsetI: "inj f ==> B <= f ` A ==> f -` B <= A"
db4005b40cc6 Converted Fun to Isar style.
paulson
parents: 12460
diff changeset
   440
by (unfold inj_on_def, blast)
db4005b40cc6 Converted Fun to Isar style.
paulson
parents: 12460
diff changeset
   441
db4005b40cc6 Converted Fun to Isar style.
paulson
parents: 12460
diff changeset
   442
lemma vimage_subset_eq: "bij f ==> (f -` B <= A) = (B <= f ` A)"
db4005b40cc6 Converted Fun to Isar style.
paulson
parents: 12460
diff changeset
   443
apply (unfold bij_def)
db4005b40cc6 Converted Fun to Isar style.
paulson
parents: 12460
diff changeset
   444
apply (blast del: subsetI intro: vimage_subsetI vimage_subsetD)
db4005b40cc6 Converted Fun to Isar style.
paulson
parents: 12460
diff changeset
   445
done
db4005b40cc6 Converted Fun to Isar style.
paulson
parents: 12460
diff changeset
   446
53927
abe2b313f0e5 add lemmas
Andreas Lochbihler
parents: 52435
diff changeset
   447
lemma inj_on_image_eq_iff: "\<lbrakk> inj_on f C; A \<subseteq> C; B \<subseteq> C \<rbrakk> \<Longrightarrow> f ` A = f ` B \<longleftrightarrow> A = B"
abe2b313f0e5 add lemmas
Andreas Lochbihler
parents: 52435
diff changeset
   448
by(fastforce simp add: inj_on_def)
abe2b313f0e5 add lemmas
Andreas Lochbihler
parents: 52435
diff changeset
   449
31438
a1c4c1500abe A few finite lemmas
nipkow
parents: 31202
diff changeset
   450
lemma inj_on_Un_image_eq_iff: "inj_on f (A \<union> B) \<Longrightarrow> f ` A = f ` B \<longleftrightarrow> A = B"
53927
abe2b313f0e5 add lemmas
Andreas Lochbihler
parents: 52435
diff changeset
   451
by(erule inj_on_image_eq_iff) simp_all
31438
a1c4c1500abe A few finite lemmas
nipkow
parents: 31202
diff changeset
   452
13585
db4005b40cc6 Converted Fun to Isar style.
paulson
parents: 12460
diff changeset
   453
lemma inj_on_image_Int:
db4005b40cc6 Converted Fun to Isar style.
paulson
parents: 12460
diff changeset
   454
   "[| inj_on f C;  A<=C;  B<=C |] ==> f`(A Int B) = f`A Int f`B"
db4005b40cc6 Converted Fun to Isar style.
paulson
parents: 12460
diff changeset
   455
apply (simp add: inj_on_def, blast)
db4005b40cc6 Converted Fun to Isar style.
paulson
parents: 12460
diff changeset
   456
done
db4005b40cc6 Converted Fun to Isar style.
paulson
parents: 12460
diff changeset
   457
db4005b40cc6 Converted Fun to Isar style.
paulson
parents: 12460
diff changeset
   458
lemma inj_on_image_set_diff:
db4005b40cc6 Converted Fun to Isar style.
paulson
parents: 12460
diff changeset
   459
   "[| inj_on f C;  A<=C;  B<=C |] ==> f`(A-B) = f`A - f`B"
db4005b40cc6 Converted Fun to Isar style.
paulson
parents: 12460
diff changeset
   460
apply (simp add: inj_on_def, blast)
db4005b40cc6 Converted Fun to Isar style.
paulson
parents: 12460
diff changeset
   461
done
db4005b40cc6 Converted Fun to Isar style.
paulson
parents: 12460
diff changeset
   462
db4005b40cc6 Converted Fun to Isar style.
paulson
parents: 12460
diff changeset
   463
lemma image_Int: "inj f ==> f`(A Int B) = f`A Int f`B"
db4005b40cc6 Converted Fun to Isar style.
paulson
parents: 12460
diff changeset
   464
by (simp add: inj_on_def, blast)
db4005b40cc6 Converted Fun to Isar style.
paulson
parents: 12460
diff changeset
   465
db4005b40cc6 Converted Fun to Isar style.
paulson
parents: 12460
diff changeset
   466
lemma image_set_diff: "inj f ==> f`(A-B) = f`A - f`B"
db4005b40cc6 Converted Fun to Isar style.
paulson
parents: 12460
diff changeset
   467
by (simp add: inj_on_def, blast)
db4005b40cc6 Converted Fun to Isar style.
paulson
parents: 12460
diff changeset
   468
db4005b40cc6 Converted Fun to Isar style.
paulson
parents: 12460
diff changeset
   469
lemma inj_image_mem_iff: "inj f ==> (f a : f`A) = (a : A)"
db4005b40cc6 Converted Fun to Isar style.
paulson
parents: 12460
diff changeset
   470
by (blast dest: injD)
db4005b40cc6 Converted Fun to Isar style.
paulson
parents: 12460
diff changeset
   471
db4005b40cc6 Converted Fun to Isar style.
paulson
parents: 12460
diff changeset
   472
lemma inj_image_subset_iff: "inj f ==> (f`A <= f`B) = (A<=B)"
db4005b40cc6 Converted Fun to Isar style.
paulson
parents: 12460
diff changeset
   473
by (simp add: inj_on_def, blast)
db4005b40cc6 Converted Fun to Isar style.
paulson
parents: 12460
diff changeset
   474
db4005b40cc6 Converted Fun to Isar style.
paulson
parents: 12460
diff changeset
   475
lemma inj_image_eq_iff: "inj f ==> (f`A = f`B) = (A = B)"
db4005b40cc6 Converted Fun to Isar style.
paulson
parents: 12460
diff changeset
   476
by (blast dest: injD)
db4005b40cc6 Converted Fun to Isar style.
paulson
parents: 12460
diff changeset
   477
db4005b40cc6 Converted Fun to Isar style.
paulson
parents: 12460
diff changeset
   478
lemma surj_Compl_image_subset: "surj f ==> -(f`A) <= f`(-A)"
40702
cf26dd7395e4 Replace surj by abbreviation; remove surj_on.
hoelzl
parents: 40602
diff changeset
   479
by auto
13585
db4005b40cc6 Converted Fun to Isar style.
paulson
parents: 12460
diff changeset
   480
db4005b40cc6 Converted Fun to Isar style.
paulson
parents: 12460
diff changeset
   481
lemma inj_image_Compl_subset: "inj f ==> f`(-A) <= -(f`A)"
db4005b40cc6 Converted Fun to Isar style.
paulson
parents: 12460
diff changeset
   482
by (auto simp add: inj_on_def)
5852
4d7320490be4 the function space operator
paulson
parents: 5608
diff changeset
   483
13585
db4005b40cc6 Converted Fun to Isar style.
paulson
parents: 12460
diff changeset
   484
lemma bij_image_Compl_eq: "bij f ==> f`(-A) = -(f`A)"
db4005b40cc6 Converted Fun to Isar style.
paulson
parents: 12460
diff changeset
   485
apply (simp add: bij_def)
db4005b40cc6 Converted Fun to Isar style.
paulson
parents: 12460
diff changeset
   486
apply (rule equalityI)
db4005b40cc6 Converted Fun to Isar style.
paulson
parents: 12460
diff changeset
   487
apply (simp_all (no_asm_simp) add: inj_image_Compl_subset surj_Compl_image_subset)
db4005b40cc6 Converted Fun to Isar style.
paulson
parents: 12460
diff changeset
   488
done
db4005b40cc6 Converted Fun to Isar style.
paulson
parents: 12460
diff changeset
   489
41657
89451110ba8e moved theorem
haftmann
parents: 41505
diff changeset
   490
lemma inj_vimage_singleton: "inj f \<Longrightarrow> f -` {a} \<subseteq> {THE x. f x = a}"
89451110ba8e moved theorem
haftmann
parents: 41505
diff changeset
   491
  -- {* The inverse image of a singleton under an injective function
89451110ba8e moved theorem
haftmann
parents: 41505
diff changeset
   492
         is included in a singleton. *}
89451110ba8e moved theorem
haftmann
parents: 41505
diff changeset
   493
  apply (auto simp add: inj_on_def)
89451110ba8e moved theorem
haftmann
parents: 41505
diff changeset
   494
  apply (blast intro: the_equality [symmetric])
89451110ba8e moved theorem
haftmann
parents: 41505
diff changeset
   495
  done
89451110ba8e moved theorem
haftmann
parents: 41505
diff changeset
   496
43991
f4a7697011c5 finite vimage on arbitrary domains
hoelzl
parents: 43874
diff changeset
   497
lemma inj_on_vimage_singleton:
f4a7697011c5 finite vimage on arbitrary domains
hoelzl
parents: 43874
diff changeset
   498
  "inj_on f A \<Longrightarrow> f -` {a} \<inter> A \<subseteq> {THE x. x \<in> A \<and> f x = a}"
f4a7697011c5 finite vimage on arbitrary domains
hoelzl
parents: 43874
diff changeset
   499
  by (auto simp add: inj_on_def intro: the_equality [symmetric])
f4a7697011c5 finite vimage on arbitrary domains
hoelzl
parents: 43874
diff changeset
   500
35584
768f8d92b767 generalized inj_uminus; added strict_mono_imp_inj_on
hoelzl
parents: 35580
diff changeset
   501
lemma (in ordered_ab_group_add) inj_uminus[simp, intro]: "inj_on uminus A"
35580
0f74806cab22 Rewrite rules for images of minus of intervals
hoelzl
parents: 35416
diff changeset
   502
  by (auto intro!: inj_onI)
13585
db4005b40cc6 Converted Fun to Isar style.
paulson
parents: 12460
diff changeset
   503
35584
768f8d92b767 generalized inj_uminus; added strict_mono_imp_inj_on
hoelzl
parents: 35580
diff changeset
   504
lemma (in linorder) strict_mono_imp_inj_on: "strict_mono f \<Longrightarrow> inj_on f A"
768f8d92b767 generalized inj_uminus; added strict_mono_imp_inj_on
hoelzl
parents: 35580
diff changeset
   505
  by (auto intro!: inj_onI dest: strict_mono_eq)
768f8d92b767 generalized inj_uminus; added strict_mono_imp_inj_on
hoelzl
parents: 35580
diff changeset
   506
55019
0d5e831175de moved lemmas from 'Fun_More_FP' to where they belong
blanchet
parents: 54578
diff changeset
   507
lemma bij_betw_byWitness:
0d5e831175de moved lemmas from 'Fun_More_FP' to where they belong
blanchet
parents: 54578
diff changeset
   508
assumes LEFT: "\<forall>a \<in> A. f'(f a) = a" and
0d5e831175de moved lemmas from 'Fun_More_FP' to where they belong
blanchet
parents: 54578
diff changeset
   509
        RIGHT: "\<forall>a' \<in> A'. f(f' a') = a'" and
0d5e831175de moved lemmas from 'Fun_More_FP' to where they belong
blanchet
parents: 54578
diff changeset
   510
        IM1: "f ` A \<le> A'" and IM2: "f' ` A' \<le> A"
0d5e831175de moved lemmas from 'Fun_More_FP' to where they belong
blanchet
parents: 54578
diff changeset
   511
shows "bij_betw f A A'"
0d5e831175de moved lemmas from 'Fun_More_FP' to where they belong
blanchet
parents: 54578
diff changeset
   512
using assms
0d5e831175de moved lemmas from 'Fun_More_FP' to where they belong
blanchet
parents: 54578
diff changeset
   513
proof(unfold bij_betw_def inj_on_def, safe)
0d5e831175de moved lemmas from 'Fun_More_FP' to where they belong
blanchet
parents: 54578
diff changeset
   514
  fix a b assume *: "a \<in> A" "b \<in> A" and **: "f a = f b"
0d5e831175de moved lemmas from 'Fun_More_FP' to where they belong
blanchet
parents: 54578
diff changeset
   515
  have "a = f'(f a) \<and> b = f'(f b)" using * LEFT by simp
0d5e831175de moved lemmas from 'Fun_More_FP' to where they belong
blanchet
parents: 54578
diff changeset
   516
  with ** show "a = b" by simp
0d5e831175de moved lemmas from 'Fun_More_FP' to where they belong
blanchet
parents: 54578
diff changeset
   517
next
0d5e831175de moved lemmas from 'Fun_More_FP' to where they belong
blanchet
parents: 54578
diff changeset
   518
  fix a' assume *: "a' \<in> A'"
0d5e831175de moved lemmas from 'Fun_More_FP' to where they belong
blanchet
parents: 54578
diff changeset
   519
  hence "f' a' \<in> A" using IM2 by blast
0d5e831175de moved lemmas from 'Fun_More_FP' to where they belong
blanchet
parents: 54578
diff changeset
   520
  moreover
0d5e831175de moved lemmas from 'Fun_More_FP' to where they belong
blanchet
parents: 54578
diff changeset
   521
  have "a' = f(f' a')" using * RIGHT by simp
0d5e831175de moved lemmas from 'Fun_More_FP' to where they belong
blanchet
parents: 54578
diff changeset
   522
  ultimately show "a' \<in> f ` A" by blast
0d5e831175de moved lemmas from 'Fun_More_FP' to where they belong
blanchet
parents: 54578
diff changeset
   523
qed
0d5e831175de moved lemmas from 'Fun_More_FP' to where they belong
blanchet
parents: 54578
diff changeset
   524
0d5e831175de moved lemmas from 'Fun_More_FP' to where they belong
blanchet
parents: 54578
diff changeset
   525
corollary notIn_Un_bij_betw:
0d5e831175de moved lemmas from 'Fun_More_FP' to where they belong
blanchet
parents: 54578
diff changeset
   526
assumes NIN: "b \<notin> A" and NIN': "f b \<notin> A'" and
0d5e831175de moved lemmas from 'Fun_More_FP' to where they belong
blanchet
parents: 54578
diff changeset
   527
       BIJ: "bij_betw f A A'"
0d5e831175de moved lemmas from 'Fun_More_FP' to where they belong
blanchet
parents: 54578
diff changeset
   528
shows "bij_betw f (A \<union> {b}) (A' \<union> {f b})"
0d5e831175de moved lemmas from 'Fun_More_FP' to where they belong
blanchet
parents: 54578
diff changeset
   529
proof-
0d5e831175de moved lemmas from 'Fun_More_FP' to where they belong
blanchet
parents: 54578
diff changeset
   530
  have "bij_betw f {b} {f b}"
0d5e831175de moved lemmas from 'Fun_More_FP' to where they belong
blanchet
parents: 54578
diff changeset
   531
  unfolding bij_betw_def inj_on_def by simp
0d5e831175de moved lemmas from 'Fun_More_FP' to where they belong
blanchet
parents: 54578
diff changeset
   532
  with assms show ?thesis
0d5e831175de moved lemmas from 'Fun_More_FP' to where they belong
blanchet
parents: 54578
diff changeset
   533
  using bij_betw_combine[of f A A' "{b}" "{f b}"] by blast
0d5e831175de moved lemmas from 'Fun_More_FP' to where they belong
blanchet
parents: 54578
diff changeset
   534
qed
0d5e831175de moved lemmas from 'Fun_More_FP' to where they belong
blanchet
parents: 54578
diff changeset
   535
0d5e831175de moved lemmas from 'Fun_More_FP' to where they belong
blanchet
parents: 54578
diff changeset
   536
lemma notIn_Un_bij_betw3:
0d5e831175de moved lemmas from 'Fun_More_FP' to where they belong
blanchet
parents: 54578
diff changeset
   537
assumes NIN: "b \<notin> A" and NIN': "f b \<notin> A'"
0d5e831175de moved lemmas from 'Fun_More_FP' to where they belong
blanchet
parents: 54578
diff changeset
   538
shows "bij_betw f A A' = bij_betw f (A \<union> {b}) (A' \<union> {f b})"
0d5e831175de moved lemmas from 'Fun_More_FP' to where they belong
blanchet
parents: 54578
diff changeset
   539
proof
0d5e831175de moved lemmas from 'Fun_More_FP' to where they belong
blanchet
parents: 54578
diff changeset
   540
  assume "bij_betw f A A'"
0d5e831175de moved lemmas from 'Fun_More_FP' to where they belong
blanchet
parents: 54578
diff changeset
   541
  thus "bij_betw f (A \<union> {b}) (A' \<union> {f b})"
0d5e831175de moved lemmas from 'Fun_More_FP' to where they belong
blanchet
parents: 54578
diff changeset
   542
  using assms notIn_Un_bij_betw[of b A f A'] by blast
0d5e831175de moved lemmas from 'Fun_More_FP' to where they belong
blanchet
parents: 54578
diff changeset
   543
next
0d5e831175de moved lemmas from 'Fun_More_FP' to where they belong
blanchet
parents: 54578
diff changeset
   544
  assume *: "bij_betw f (A \<union> {b}) (A' \<union> {f b})"
0d5e831175de moved lemmas from 'Fun_More_FP' to where they belong
blanchet
parents: 54578
diff changeset
   545
  have "f ` A = A'"
0d5e831175de moved lemmas from 'Fun_More_FP' to where they belong
blanchet
parents: 54578
diff changeset
   546
  proof(auto)
0d5e831175de moved lemmas from 'Fun_More_FP' to where they belong
blanchet
parents: 54578
diff changeset
   547
    fix a assume **: "a \<in> A"
0d5e831175de moved lemmas from 'Fun_More_FP' to where they belong
blanchet
parents: 54578
diff changeset
   548
    hence "f a \<in> A' \<union> {f b}" using * unfolding bij_betw_def by blast
0d5e831175de moved lemmas from 'Fun_More_FP' to where they belong
blanchet
parents: 54578
diff changeset
   549
    moreover
0d5e831175de moved lemmas from 'Fun_More_FP' to where they belong
blanchet
parents: 54578
diff changeset
   550
    {assume "f a = f b"
0d5e831175de moved lemmas from 'Fun_More_FP' to where they belong
blanchet
parents: 54578
diff changeset
   551
     hence "a = b" using * ** unfolding bij_betw_def inj_on_def by blast
0d5e831175de moved lemmas from 'Fun_More_FP' to where they belong
blanchet
parents: 54578
diff changeset
   552
     with NIN ** have False by blast
0d5e831175de moved lemmas from 'Fun_More_FP' to where they belong
blanchet
parents: 54578
diff changeset
   553
    }
0d5e831175de moved lemmas from 'Fun_More_FP' to where they belong
blanchet
parents: 54578
diff changeset
   554
    ultimately show "f a \<in> A'" by blast
0d5e831175de moved lemmas from 'Fun_More_FP' to where they belong
blanchet
parents: 54578
diff changeset
   555
  next
0d5e831175de moved lemmas from 'Fun_More_FP' to where they belong
blanchet
parents: 54578
diff changeset
   556
    fix a' assume **: "a' \<in> A'"
0d5e831175de moved lemmas from 'Fun_More_FP' to where they belong
blanchet
parents: 54578
diff changeset
   557
    hence "a' \<in> f`(A \<union> {b})"
0d5e831175de moved lemmas from 'Fun_More_FP' to where they belong
blanchet
parents: 54578
diff changeset
   558
    using * by (auto simp add: bij_betw_def)
0d5e831175de moved lemmas from 'Fun_More_FP' to where they belong
blanchet
parents: 54578
diff changeset
   559
    then obtain a where 1: "a \<in> A \<union> {b} \<and> f a = a'" by blast
0d5e831175de moved lemmas from 'Fun_More_FP' to where they belong
blanchet
parents: 54578
diff changeset
   560
    moreover
0d5e831175de moved lemmas from 'Fun_More_FP' to where they belong
blanchet
parents: 54578
diff changeset
   561
    {assume "a = b" with 1 ** NIN' have False by blast
0d5e831175de moved lemmas from 'Fun_More_FP' to where they belong
blanchet
parents: 54578
diff changeset
   562
    }
0d5e831175de moved lemmas from 'Fun_More_FP' to where they belong
blanchet
parents: 54578
diff changeset
   563
    ultimately have "a \<in> A" by blast
0d5e831175de moved lemmas from 'Fun_More_FP' to where they belong
blanchet
parents: 54578
diff changeset
   564
    with 1 show "a' \<in> f ` A" by blast
0d5e831175de moved lemmas from 'Fun_More_FP' to where they belong
blanchet
parents: 54578
diff changeset
   565
  qed
0d5e831175de moved lemmas from 'Fun_More_FP' to where they belong
blanchet
parents: 54578
diff changeset
   566
  thus "bij_betw f A A'" using * bij_betw_subset[of f "A \<union> {b}" _ A] by blast
0d5e831175de moved lemmas from 'Fun_More_FP' to where they belong
blanchet
parents: 54578
diff changeset
   567
qed
0d5e831175de moved lemmas from 'Fun_More_FP' to where they belong
blanchet
parents: 54578
diff changeset
   568
41657
89451110ba8e moved theorem
haftmann
parents: 41505
diff changeset
   569
13585
db4005b40cc6 Converted Fun to Isar style.
paulson
parents: 12460
diff changeset
   570
subsection{*Function Updating*}
db4005b40cc6 Converted Fun to Isar style.
paulson
parents: 12460
diff changeset
   571
44277
bcb696533579 moved fundamental lemma fun_eq_iff to theory HOL; tuned whitespace
haftmann
parents: 43991
diff changeset
   572
definition fun_upd :: "('a => 'b) => 'a => 'b => ('a => 'b)" where
26147
ae2bf929e33c moved some set lemmas to Set.thy
haftmann
parents: 26105
diff changeset
   573
  "fun_upd f a b == % x. if x=a then b else f x"
ae2bf929e33c moved some set lemmas to Set.thy
haftmann
parents: 26105
diff changeset
   574
41229
d797baa3d57c replaced command 'nonterminals' by slightly modernized version 'nonterminal';
wenzelm
parents: 40969
diff changeset
   575
nonterminal updbinds and updbind
d797baa3d57c replaced command 'nonterminals' by slightly modernized version 'nonterminal';
wenzelm
parents: 40969
diff changeset
   576
26147
ae2bf929e33c moved some set lemmas to Set.thy
haftmann
parents: 26105
diff changeset
   577
syntax
ae2bf929e33c moved some set lemmas to Set.thy
haftmann
parents: 26105
diff changeset
   578
  "_updbind" :: "['a, 'a] => updbind"             ("(2_ :=/ _)")
ae2bf929e33c moved some set lemmas to Set.thy
haftmann
parents: 26105
diff changeset
   579
  ""         :: "updbind => updbinds"             ("_")
ae2bf929e33c moved some set lemmas to Set.thy
haftmann
parents: 26105
diff changeset
   580
  "_updbinds":: "[updbind, updbinds] => updbinds" ("_,/ _")
35115
446c5063e4fd modernized translations;
wenzelm
parents: 34209
diff changeset
   581
  "_Update"  :: "['a, updbinds] => 'a"            ("_/'((_)')" [1000, 0] 900)
26147
ae2bf929e33c moved some set lemmas to Set.thy
haftmann
parents: 26105
diff changeset
   582
ae2bf929e33c moved some set lemmas to Set.thy
haftmann
parents: 26105
diff changeset
   583
translations
35115
446c5063e4fd modernized translations;
wenzelm
parents: 34209
diff changeset
   584
  "_Update f (_updbinds b bs)" == "_Update (_Update f b) bs"
446c5063e4fd modernized translations;
wenzelm
parents: 34209
diff changeset
   585
  "f(x:=y)" == "CONST fun_upd f x y"
26147
ae2bf929e33c moved some set lemmas to Set.thy
haftmann
parents: 26105
diff changeset
   586
55414
eab03e9cee8a renamed '{prod,sum,bool,unit}_case' to 'case_...'
blanchet
parents: 55066
diff changeset
   587
(* Hint: to define the sum of two functions (or maps), use case_sum.
26147
ae2bf929e33c moved some set lemmas to Set.thy
haftmann
parents: 26105
diff changeset
   588
         A nice infix syntax could be defined (in Datatype.thy or below) by
35115
446c5063e4fd modernized translations;
wenzelm
parents: 34209
diff changeset
   589
notation
55414
eab03e9cee8a renamed '{prod,sum,bool,unit}_case' to 'case_...'
blanchet
parents: 55066
diff changeset
   590
  case_sum  (infixr "'(+')"80)
26147
ae2bf929e33c moved some set lemmas to Set.thy
haftmann
parents: 26105
diff changeset
   591
*)
ae2bf929e33c moved some set lemmas to Set.thy
haftmann
parents: 26105
diff changeset
   592
13585
db4005b40cc6 Converted Fun to Isar style.
paulson
parents: 12460
diff changeset
   593
lemma fun_upd_idem_iff: "(f(x:=y) = f) = (f x = y)"
db4005b40cc6 Converted Fun to Isar style.
paulson
parents: 12460
diff changeset
   594
apply (simp add: fun_upd_def, safe)
db4005b40cc6 Converted Fun to Isar style.
paulson
parents: 12460
diff changeset
   595
apply (erule subst)
db4005b40cc6 Converted Fun to Isar style.
paulson
parents: 12460
diff changeset
   596
apply (rule_tac [2] ext, auto)
db4005b40cc6 Converted Fun to Isar style.
paulson
parents: 12460
diff changeset
   597
done
db4005b40cc6 Converted Fun to Isar style.
paulson
parents: 12460
diff changeset
   598
45603
d2d9ef16ccaf explicit is better than implicit;
wenzelm
parents: 45174
diff changeset
   599
lemma fun_upd_idem: "f x = y ==> f(x:=y) = f"
d2d9ef16ccaf explicit is better than implicit;
wenzelm
parents: 45174
diff changeset
   600
  by (simp only: fun_upd_idem_iff)
13585
db4005b40cc6 Converted Fun to Isar style.
paulson
parents: 12460
diff changeset
   601
45603
d2d9ef16ccaf explicit is better than implicit;
wenzelm
parents: 45174
diff changeset
   602
lemma fun_upd_triv [iff]: "f(x := f x) = f"
d2d9ef16ccaf explicit is better than implicit;
wenzelm
parents: 45174
diff changeset
   603
  by (simp only: fun_upd_idem)
13585
db4005b40cc6 Converted Fun to Isar style.
paulson
parents: 12460
diff changeset
   604
db4005b40cc6 Converted Fun to Isar style.
paulson
parents: 12460
diff changeset
   605
lemma fun_upd_apply [simp]: "(f(x:=y))z = (if z=x then y else f z)"
17084
fb0a80aef0be classical rules must have names for ATP integration
paulson
parents: 16973
diff changeset
   606
by (simp add: fun_upd_def)
13585
db4005b40cc6 Converted Fun to Isar style.
paulson
parents: 12460
diff changeset
   607
db4005b40cc6 Converted Fun to Isar style.
paulson
parents: 12460
diff changeset
   608
(* fun_upd_apply supersedes these two,   but they are useful
db4005b40cc6 Converted Fun to Isar style.
paulson
parents: 12460
diff changeset
   609
   if fun_upd_apply is intentionally removed from the simpset *)
db4005b40cc6 Converted Fun to Isar style.
paulson
parents: 12460
diff changeset
   610
lemma fun_upd_same: "(f(x:=y)) x = y"
db4005b40cc6 Converted Fun to Isar style.
paulson
parents: 12460
diff changeset
   611
by simp
db4005b40cc6 Converted Fun to Isar style.
paulson
parents: 12460
diff changeset
   612
db4005b40cc6 Converted Fun to Isar style.
paulson
parents: 12460
diff changeset
   613
lemma fun_upd_other: "z~=x ==> (f(x:=y)) z = f z"
db4005b40cc6 Converted Fun to Isar style.
paulson
parents: 12460
diff changeset
   614
by simp
db4005b40cc6 Converted Fun to Isar style.
paulson
parents: 12460
diff changeset
   615
db4005b40cc6 Converted Fun to Isar style.
paulson
parents: 12460
diff changeset
   616
lemma fun_upd_upd [simp]: "f(x:=y,x:=z) = f(x:=z)"
39302
d7728f65b353 renamed lemmas: ext_iff -> fun_eq_iff, set_ext_iff -> set_eq_iff, set_ext -> set_eqI
nipkow
parents: 39213
diff changeset
   617
by (simp add: fun_eq_iff)
13585
db4005b40cc6 Converted Fun to Isar style.
paulson
parents: 12460
diff changeset
   618
db4005b40cc6 Converted Fun to Isar style.
paulson
parents: 12460
diff changeset
   619
lemma fun_upd_twist: "a ~= c ==> (m(a:=b))(c:=d) = (m(c:=d))(a:=b)"
db4005b40cc6 Converted Fun to Isar style.
paulson
parents: 12460
diff changeset
   620
by (rule ext, auto)
db4005b40cc6 Converted Fun to Isar style.
paulson
parents: 12460
diff changeset
   621
56077
d397030fb27e tuned proofs
haftmann
parents: 56015
diff changeset
   622
lemma inj_on_fun_updI:
d397030fb27e tuned proofs
haftmann
parents: 56015
diff changeset
   623
  "inj_on f A \<Longrightarrow> y \<notin> f ` A \<Longrightarrow> inj_on (f(x := y)) A"
d397030fb27e tuned proofs
haftmann
parents: 56015
diff changeset
   624
  by (fastforce simp: inj_on_def)
15303
eedbb8d22ca2 added lemmas
nipkow
parents: 15140
diff changeset
   625
15510
9de204d7b699 new foldSet proofs
paulson
parents: 15439
diff changeset
   626
lemma fun_upd_image:
9de204d7b699 new foldSet proofs
paulson
parents: 15439
diff changeset
   627
     "f(x:=y) ` A = (if x \<in> A then insert y (f ` (A-{x})) else f ` A)"
9de204d7b699 new foldSet proofs
paulson
parents: 15439
diff changeset
   628
by auto
9de204d7b699 new foldSet proofs
paulson
parents: 15439
diff changeset
   629
31080
21ffc770ebc0 lemmas by Andreas Lochbihler
nipkow
parents: 30301
diff changeset
   630
lemma fun_upd_comp: "f \<circ> (g(x := y)) = (f \<circ> g)(x := f y)"
44921
58eef4843641 tuned proofs
huffman
parents: 44890
diff changeset
   631
  by auto
31080
21ffc770ebc0 lemmas by Andreas Lochbihler
nipkow
parents: 30301
diff changeset
   632
26147
ae2bf929e33c moved some set lemmas to Set.thy
haftmann
parents: 26105
diff changeset
   633
ae2bf929e33c moved some set lemmas to Set.thy
haftmann
parents: 26105
diff changeset
   634
subsection {* @{text override_on} *}
ae2bf929e33c moved some set lemmas to Set.thy
haftmann
parents: 26105
diff changeset
   635
44277
bcb696533579 moved fundamental lemma fun_eq_iff to theory HOL; tuned whitespace
haftmann
parents: 43991
diff changeset
   636
definition override_on :: "('a \<Rightarrow> 'b) \<Rightarrow> ('a \<Rightarrow> 'b) \<Rightarrow> 'a set \<Rightarrow> 'a \<Rightarrow> 'b" where
26147
ae2bf929e33c moved some set lemmas to Set.thy
haftmann
parents: 26105
diff changeset
   637
  "override_on f g A = (\<lambda>a. if a \<in> A then g a else f a)"
13910
f9a9ef16466f Added thms
nipkow
parents: 13637
diff changeset
   638
15691
900cf45ff0a6 _(_|_) is now override_on
nipkow
parents: 15531
diff changeset
   639
lemma override_on_emptyset[simp]: "override_on f g {} = f"
900cf45ff0a6 _(_|_) is now override_on
nipkow
parents: 15531
diff changeset
   640
by(simp add:override_on_def)
13910
f9a9ef16466f Added thms
nipkow
parents: 13637
diff changeset
   641
15691
900cf45ff0a6 _(_|_) is now override_on
nipkow
parents: 15531
diff changeset
   642
lemma override_on_apply_notin[simp]: "a ~: A ==> (override_on f g A) a = f a"
900cf45ff0a6 _(_|_) is now override_on
nipkow
parents: 15531
diff changeset
   643
by(simp add:override_on_def)
13910
f9a9ef16466f Added thms
nipkow
parents: 13637
diff changeset
   644
15691
900cf45ff0a6 _(_|_) is now override_on
nipkow
parents: 15531
diff changeset
   645
lemma override_on_apply_in[simp]: "a : A ==> (override_on f g A) a = g a"
900cf45ff0a6 _(_|_) is now override_on
nipkow
parents: 15531
diff changeset
   646
by(simp add:override_on_def)
13910
f9a9ef16466f Added thms
nipkow
parents: 13637
diff changeset
   647
26147
ae2bf929e33c moved some set lemmas to Set.thy
haftmann
parents: 26105
diff changeset
   648
ae2bf929e33c moved some set lemmas to Set.thy
haftmann
parents: 26105
diff changeset
   649
subsection {* @{text swap} *}
15510
9de204d7b699 new foldSet proofs
paulson
parents: 15439
diff changeset
   650
56608
8e3c848008fa more simp rules for Fun.swap
haftmann
parents: 56154
diff changeset
   651
definition swap :: "'a \<Rightarrow> 'a \<Rightarrow> ('a \<Rightarrow> 'b) \<Rightarrow> ('a \<Rightarrow> 'b)"
8e3c848008fa more simp rules for Fun.swap
haftmann
parents: 56154
diff changeset
   652
where
22744
5cbe966d67a2 Isar definitions are now added explicitly to code theorem table
haftmann
parents: 22577
diff changeset
   653
  "swap a b f = f (a := f b, b:= f a)"
15510
9de204d7b699 new foldSet proofs
paulson
parents: 15439
diff changeset
   654
56608
8e3c848008fa more simp rules for Fun.swap
haftmann
parents: 56154
diff changeset
   655
lemma swap_apply [simp]:
8e3c848008fa more simp rules for Fun.swap
haftmann
parents: 56154
diff changeset
   656
  "swap a b f a = f b"
8e3c848008fa more simp rules for Fun.swap
haftmann
parents: 56154
diff changeset
   657
  "swap a b f b = f a"
8e3c848008fa more simp rules for Fun.swap
haftmann
parents: 56154
diff changeset
   658
  "c \<noteq> a \<Longrightarrow> c \<noteq> b \<Longrightarrow> swap a b f c = f c"
8e3c848008fa more simp rules for Fun.swap
haftmann
parents: 56154
diff changeset
   659
  by (simp_all add: swap_def)
8e3c848008fa more simp rules for Fun.swap
haftmann
parents: 56154
diff changeset
   660
8e3c848008fa more simp rules for Fun.swap
haftmann
parents: 56154
diff changeset
   661
lemma swap_self [simp]:
8e3c848008fa more simp rules for Fun.swap
haftmann
parents: 56154
diff changeset
   662
  "swap a a f = f"
8e3c848008fa more simp rules for Fun.swap
haftmann
parents: 56154
diff changeset
   663
  by (simp add: swap_def)
15510
9de204d7b699 new foldSet proofs
paulson
parents: 15439
diff changeset
   664
56608
8e3c848008fa more simp rules for Fun.swap
haftmann
parents: 56154
diff changeset
   665
lemma swap_commute:
8e3c848008fa more simp rules for Fun.swap
haftmann
parents: 56154
diff changeset
   666
  "swap a b f = swap b a f"
8e3c848008fa more simp rules for Fun.swap
haftmann
parents: 56154
diff changeset
   667
  by (simp add: fun_upd_def swap_def fun_eq_iff)
15510
9de204d7b699 new foldSet proofs
paulson
parents: 15439
diff changeset
   668
56608
8e3c848008fa more simp rules for Fun.swap
haftmann
parents: 56154
diff changeset
   669
lemma swap_nilpotent [simp]:
8e3c848008fa more simp rules for Fun.swap
haftmann
parents: 56154
diff changeset
   670
  "swap a b (swap a b f) = f"
8e3c848008fa more simp rules for Fun.swap
haftmann
parents: 56154
diff changeset
   671
  by (rule ext, simp add: fun_upd_def swap_def)
8e3c848008fa more simp rules for Fun.swap
haftmann
parents: 56154
diff changeset
   672
8e3c848008fa more simp rules for Fun.swap
haftmann
parents: 56154
diff changeset
   673
lemma swap_comp_involutory [simp]:
8e3c848008fa more simp rules for Fun.swap
haftmann
parents: 56154
diff changeset
   674
  "swap a b \<circ> swap a b = id"
8e3c848008fa more simp rules for Fun.swap
haftmann
parents: 56154
diff changeset
   675
  by (rule ext) simp
15510
9de204d7b699 new foldSet proofs
paulson
parents: 15439
diff changeset
   676
34145
402b7c74799d add lemma swap_triple
huffman
parents: 34101
diff changeset
   677
lemma swap_triple:
402b7c74799d add lemma swap_triple
huffman
parents: 34101
diff changeset
   678
  assumes "a \<noteq> c" and "b \<noteq> c"
402b7c74799d add lemma swap_triple
huffman
parents: 34101
diff changeset
   679
  shows "swap a b (swap b c (swap a b f)) = swap a c f"
39302
d7728f65b353 renamed lemmas: ext_iff -> fun_eq_iff, set_ext_iff -> set_eq_iff, set_ext -> set_eqI
nipkow
parents: 39213
diff changeset
   680
  using assms by (simp add: fun_eq_iff swap_def)
34145
402b7c74799d add lemma swap_triple
huffman
parents: 34101
diff changeset
   681
34101
d689f0b33047 declare swap_self [simp], add lemma comp_swap
huffman
parents: 33318
diff changeset
   682
lemma comp_swap: "f \<circ> swap a b g = swap a b (f \<circ> g)"
56608
8e3c848008fa more simp rules for Fun.swap
haftmann
parents: 56154
diff changeset
   683
  by (rule ext, simp add: fun_upd_def swap_def)
34101
d689f0b33047 declare swap_self [simp], add lemma comp_swap
huffman
parents: 33318
diff changeset
   684
39076
b3a9b6734663 Introduce surj_on and replace surj and bij by abbreviations.
hoelzl
parents: 39075
diff changeset
   685
lemma swap_image_eq [simp]:
b3a9b6734663 Introduce surj_on and replace surj and bij by abbreviations.
hoelzl
parents: 39075
diff changeset
   686
  assumes "a \<in> A" "b \<in> A" shows "swap a b f ` A = f ` A"
b3a9b6734663 Introduce surj_on and replace surj and bij by abbreviations.
hoelzl
parents: 39075
diff changeset
   687
proof -
b3a9b6734663 Introduce surj_on and replace surj and bij by abbreviations.
hoelzl
parents: 39075
diff changeset
   688
  have subset: "\<And>f. swap a b f ` A \<subseteq> f ` A"
b3a9b6734663 Introduce surj_on and replace surj and bij by abbreviations.
hoelzl
parents: 39075
diff changeset
   689
    using assms by (auto simp: image_iff swap_def)
b3a9b6734663 Introduce surj_on and replace surj and bij by abbreviations.
hoelzl
parents: 39075
diff changeset
   690
  then have "swap a b (swap a b f) ` A \<subseteq> (swap a b f) ` A" .
b3a9b6734663 Introduce surj_on and replace surj and bij by abbreviations.
hoelzl
parents: 39075
diff changeset
   691
  with subset[of f] show ?thesis by auto
b3a9b6734663 Introduce surj_on and replace surj and bij by abbreviations.
hoelzl
parents: 39075
diff changeset
   692
qed
b3a9b6734663 Introduce surj_on and replace surj and bij by abbreviations.
hoelzl
parents: 39075
diff changeset
   693
15510
9de204d7b699 new foldSet proofs
paulson
parents: 15439
diff changeset
   694
lemma inj_on_imp_inj_on_swap:
39076
b3a9b6734663 Introduce surj_on and replace surj and bij by abbreviations.
hoelzl
parents: 39075
diff changeset
   695
  "\<lbrakk>inj_on f A; a \<in> A; b \<in> A\<rbrakk> \<Longrightarrow> inj_on (swap a b f) A"
b3a9b6734663 Introduce surj_on and replace surj and bij by abbreviations.
hoelzl
parents: 39075
diff changeset
   696
  by (simp add: inj_on_def swap_def, blast)
15510
9de204d7b699 new foldSet proofs
paulson
parents: 15439
diff changeset
   697
9de204d7b699 new foldSet proofs
paulson
parents: 15439
diff changeset
   698
lemma inj_on_swap_iff [simp]:
39076
b3a9b6734663 Introduce surj_on and replace surj and bij by abbreviations.
hoelzl
parents: 39075
diff changeset
   699
  assumes A: "a \<in> A" "b \<in> A" shows "inj_on (swap a b f) A \<longleftrightarrow> inj_on f A"
39075
a18e5946d63c Permutation implies bij function
hoelzl
parents: 39074
diff changeset
   700
proof
15510
9de204d7b699 new foldSet proofs
paulson
parents: 15439
diff changeset
   701
  assume "inj_on (swap a b f) A"
39075
a18e5946d63c Permutation implies bij function
hoelzl
parents: 39074
diff changeset
   702
  with A have "inj_on (swap a b (swap a b f)) A"
a18e5946d63c Permutation implies bij function
hoelzl
parents: 39074
diff changeset
   703
    by (iprover intro: inj_on_imp_inj_on_swap)
a18e5946d63c Permutation implies bij function
hoelzl
parents: 39074
diff changeset
   704
  thus "inj_on f A" by simp
15510
9de204d7b699 new foldSet proofs
paulson
parents: 15439
diff changeset
   705
next
9de204d7b699 new foldSet proofs
paulson
parents: 15439
diff changeset
   706
  assume "inj_on f A"
34209
c7f621786035 killed a few warnings
krauss
parents: 34153
diff changeset
   707
  with A show "inj_on (swap a b f) A" by (iprover intro: inj_on_imp_inj_on_swap)
15510
9de204d7b699 new foldSet proofs
paulson
parents: 15439
diff changeset
   708
qed
9de204d7b699 new foldSet proofs
paulson
parents: 15439
diff changeset
   709
39076
b3a9b6734663 Introduce surj_on and replace surj and bij by abbreviations.
hoelzl
parents: 39075
diff changeset
   710
lemma surj_imp_surj_swap: "surj f \<Longrightarrow> surj (swap a b f)"
40702
cf26dd7395e4 Replace surj by abbreviation; remove surj_on.
hoelzl
parents: 40602
diff changeset
   711
  by simp
15510
9de204d7b699 new foldSet proofs
paulson
parents: 15439
diff changeset
   712
39076
b3a9b6734663 Introduce surj_on and replace surj and bij by abbreviations.
hoelzl
parents: 39075
diff changeset
   713
lemma surj_swap_iff [simp]: "surj (swap a b f) \<longleftrightarrow> surj f"
40702
cf26dd7395e4 Replace surj by abbreviation; remove surj_on.
hoelzl
parents: 40602
diff changeset
   714
  by simp
21547
9c9fdf4c2949 moved order arities for fun and bool to Fun/Orderings
haftmann
parents: 21327
diff changeset
   715
39076
b3a9b6734663 Introduce surj_on and replace surj and bij by abbreviations.
hoelzl
parents: 39075
diff changeset
   716
lemma bij_betw_swap_iff [simp]:
b3a9b6734663 Introduce surj_on and replace surj and bij by abbreviations.
hoelzl
parents: 39075
diff changeset
   717
  "\<lbrakk> x \<in> A; y \<in> A \<rbrakk> \<Longrightarrow> bij_betw (swap x y f) A B \<longleftrightarrow> bij_betw f A B"
b3a9b6734663 Introduce surj_on and replace surj and bij by abbreviations.
hoelzl
parents: 39075
diff changeset
   718
  by (auto simp: bij_betw_def)
b3a9b6734663 Introduce surj_on and replace surj and bij by abbreviations.
hoelzl
parents: 39075
diff changeset
   719
b3a9b6734663 Introduce surj_on and replace surj and bij by abbreviations.
hoelzl
parents: 39075
diff changeset
   720
lemma bij_swap_iff [simp]: "bij (swap a b f) \<longleftrightarrow> bij f"
b3a9b6734663 Introduce surj_on and replace surj and bij by abbreviations.
hoelzl
parents: 39075
diff changeset
   721
  by simp
39075
a18e5946d63c Permutation implies bij function
hoelzl
parents: 39074
diff changeset
   722
36176
3fe7e97ccca8 replaced generic 'hide' command by more conventional 'hide_class', 'hide_type', 'hide_const', 'hide_fact' -- frees some popular keywords;
wenzelm
parents: 35584
diff changeset
   723
hide_const (open) swap
21547
9c9fdf4c2949 moved order arities for fun and bool to Fun/Orderings
haftmann
parents: 21327
diff changeset
   724
56608
8e3c848008fa more simp rules for Fun.swap
haftmann
parents: 56154
diff changeset
   725
31949
3f933687fae9 moved Inductive.myinv to Fun.inv; tuned
haftmann
parents: 31775
diff changeset
   726
subsection {* Inversion of injective functions *}
3f933687fae9 moved Inductive.myinv to Fun.inv; tuned
haftmann
parents: 31775
diff changeset
   727
33057
764547b68538 inv_onto -> inv_into
nipkow
parents: 33044
diff changeset
   728
definition the_inv_into :: "'a set => ('a => 'b) => ('b => 'a)" where
44277
bcb696533579 moved fundamental lemma fun_eq_iff to theory HOL; tuned whitespace
haftmann
parents: 43991
diff changeset
   729
  "the_inv_into A f == %x. THE y. y : A & f y = x"
32961
61431a41ddd5 added the_inv_onto
nipkow
parents: 32740
diff changeset
   730
33057
764547b68538 inv_onto -> inv_into
nipkow
parents: 33044
diff changeset
   731
lemma the_inv_into_f_f:
764547b68538 inv_onto -> inv_into
nipkow
parents: 33044
diff changeset
   732
  "[| inj_on f A;  x : A |] ==> the_inv_into A f (f x) = x"
764547b68538 inv_onto -> inv_into
nipkow
parents: 33044
diff changeset
   733
apply (simp add: the_inv_into_def inj_on_def)
34209
c7f621786035 killed a few warnings
krauss
parents: 34153
diff changeset
   734
apply blast
32961
61431a41ddd5 added the_inv_onto
nipkow
parents: 32740
diff changeset
   735
done
61431a41ddd5 added the_inv_onto
nipkow
parents: 32740
diff changeset
   736
33057
764547b68538 inv_onto -> inv_into
nipkow
parents: 33044
diff changeset
   737
lemma f_the_inv_into_f:
764547b68538 inv_onto -> inv_into
nipkow
parents: 33044
diff changeset
   738
  "inj_on f A ==> y : f`A  ==> f (the_inv_into A f y) = y"
764547b68538 inv_onto -> inv_into
nipkow
parents: 33044
diff changeset
   739
apply (simp add: the_inv_into_def)
32961
61431a41ddd5 added the_inv_onto
nipkow
parents: 32740
diff changeset
   740
apply (rule the1I2)
61431a41ddd5 added the_inv_onto
nipkow
parents: 32740
diff changeset
   741
 apply(blast dest: inj_onD)
61431a41ddd5 added the_inv_onto
nipkow
parents: 32740
diff changeset
   742
apply blast
61431a41ddd5 added the_inv_onto
nipkow
parents: 32740
diff changeset
   743
done
61431a41ddd5 added the_inv_onto
nipkow
parents: 32740
diff changeset
   744
33057
764547b68538 inv_onto -> inv_into
nipkow
parents: 33044
diff changeset
   745
lemma the_inv_into_into:
764547b68538 inv_onto -> inv_into
nipkow
parents: 33044
diff changeset
   746
  "[| inj_on f A; x : f ` A; A <= B |] ==> the_inv_into A f x : B"
764547b68538 inv_onto -> inv_into
nipkow
parents: 33044
diff changeset
   747
apply (simp add: the_inv_into_def)
32961
61431a41ddd5 added the_inv_onto
nipkow
parents: 32740
diff changeset
   748
apply (rule the1I2)
61431a41ddd5 added the_inv_onto
nipkow
parents: 32740
diff changeset
   749
 apply(blast dest: inj_onD)
61431a41ddd5 added the_inv_onto
nipkow
parents: 32740
diff changeset
   750
apply blast
61431a41ddd5 added the_inv_onto
nipkow
parents: 32740
diff changeset
   751
done
61431a41ddd5 added the_inv_onto
nipkow
parents: 32740
diff changeset
   752
33057
764547b68538 inv_onto -> inv_into
nipkow
parents: 33044
diff changeset
   753
lemma the_inv_into_onto[simp]:
764547b68538 inv_onto -> inv_into
nipkow
parents: 33044
diff changeset
   754
  "inj_on f A ==> the_inv_into A f ` (f ` A) = A"
764547b68538 inv_onto -> inv_into
nipkow
parents: 33044
diff changeset
   755
by (fast intro:the_inv_into_into the_inv_into_f_f[symmetric])
32961
61431a41ddd5 added the_inv_onto
nipkow
parents: 32740
diff changeset
   756
33057
764547b68538 inv_onto -> inv_into
nipkow
parents: 33044
diff changeset
   757
lemma the_inv_into_f_eq:
764547b68538 inv_onto -> inv_into
nipkow
parents: 33044
diff changeset
   758
  "[| inj_on f A; f x = y; x : A |] ==> the_inv_into A f y = x"
32961
61431a41ddd5 added the_inv_onto
nipkow
parents: 32740
diff changeset
   759
  apply (erule subst)
33057
764547b68538 inv_onto -> inv_into
nipkow
parents: 33044
diff changeset
   760
  apply (erule the_inv_into_f_f, assumption)
32961
61431a41ddd5 added the_inv_onto
nipkow
parents: 32740
diff changeset
   761
  done
61431a41ddd5 added the_inv_onto
nipkow
parents: 32740
diff changeset
   762
33057
764547b68538 inv_onto -> inv_into
nipkow
parents: 33044
diff changeset
   763
lemma the_inv_into_comp:
32961
61431a41ddd5 added the_inv_onto
nipkow
parents: 32740
diff changeset
   764
  "[| inj_on f (g ` A); inj_on g A; x : f ` g ` A |] ==>
33057
764547b68538 inv_onto -> inv_into
nipkow
parents: 33044
diff changeset
   765
  the_inv_into A (f o g) x = (the_inv_into A g o the_inv_into (g ` A) f) x"
764547b68538 inv_onto -> inv_into
nipkow
parents: 33044
diff changeset
   766
apply (rule the_inv_into_f_eq)
32961
61431a41ddd5 added the_inv_onto
nipkow
parents: 32740
diff changeset
   767
  apply (fast intro: comp_inj_on)
33057
764547b68538 inv_onto -> inv_into
nipkow
parents: 33044
diff changeset
   768
 apply (simp add: f_the_inv_into_f the_inv_into_into)
764547b68538 inv_onto -> inv_into
nipkow
parents: 33044
diff changeset
   769
apply (simp add: the_inv_into_into)
32961
61431a41ddd5 added the_inv_onto
nipkow
parents: 32740
diff changeset
   770
done
61431a41ddd5 added the_inv_onto
nipkow
parents: 32740
diff changeset
   771
33057
764547b68538 inv_onto -> inv_into
nipkow
parents: 33044
diff changeset
   772
lemma inj_on_the_inv_into:
764547b68538 inv_onto -> inv_into
nipkow
parents: 33044
diff changeset
   773
  "inj_on f A \<Longrightarrow> inj_on (the_inv_into A f) (f ` A)"
56077
d397030fb27e tuned proofs
haftmann
parents: 56015
diff changeset
   774
by (auto intro: inj_onI simp: the_inv_into_f_f)
32961
61431a41ddd5 added the_inv_onto
nipkow
parents: 32740
diff changeset
   775
33057
764547b68538 inv_onto -> inv_into
nipkow
parents: 33044
diff changeset
   776
lemma bij_betw_the_inv_into:
764547b68538 inv_onto -> inv_into
nipkow
parents: 33044
diff changeset
   777
  "bij_betw f A B \<Longrightarrow> bij_betw (the_inv_into A f) B A"
764547b68538 inv_onto -> inv_into
nipkow
parents: 33044
diff changeset
   778
by (auto simp add: bij_betw_def inj_on_the_inv_into the_inv_into_into)
32961
61431a41ddd5 added the_inv_onto
nipkow
parents: 32740
diff changeset
   779
32998
31b19fa0de0b Renamed inv to the_inv and turned it into an abbreviation (based on the_inv_onto).
berghofe
parents: 32988
diff changeset
   780
abbreviation the_inv :: "('a \<Rightarrow> 'b) \<Rightarrow> ('b \<Rightarrow> 'a)" where
33057
764547b68538 inv_onto -> inv_into
nipkow
parents: 33044
diff changeset
   781
  "the_inv f \<equiv> the_inv_into UNIV f"
32998
31b19fa0de0b Renamed inv to the_inv and turned it into an abbreviation (based on the_inv_onto).
berghofe
parents: 32988
diff changeset
   782
31b19fa0de0b Renamed inv to the_inv and turned it into an abbreviation (based on the_inv_onto).
berghofe
parents: 32988
diff changeset
   783
lemma the_inv_f_f:
31b19fa0de0b Renamed inv to the_inv and turned it into an abbreviation (based on the_inv_onto).
berghofe
parents: 32988
diff changeset
   784
  assumes "inj f"
31b19fa0de0b Renamed inv to the_inv and turned it into an abbreviation (based on the_inv_onto).
berghofe
parents: 32988
diff changeset
   785
  shows "the_inv f (f x) = x" using assms UNIV_I
33057
764547b68538 inv_onto -> inv_into
nipkow
parents: 33044
diff changeset
   786
  by (rule the_inv_into_f_f)
32998
31b19fa0de0b Renamed inv to the_inv and turned it into an abbreviation (based on the_inv_onto).
berghofe
parents: 32988
diff changeset
   787
44277
bcb696533579 moved fundamental lemma fun_eq_iff to theory HOL; tuned whitespace
haftmann
parents: 43991
diff changeset
   788
40703
d1fc454d6735 Move some missing lemmas from Andrei Popescus 'Ordinals and Cardinals' AFP entry to the HOL-image.
hoelzl
parents: 40702
diff changeset
   789
subsection {* Cantor's Paradox *}
d1fc454d6735 Move some missing lemmas from Andrei Popescus 'Ordinals and Cardinals' AFP entry to the HOL-image.
hoelzl
parents: 40702
diff changeset
   790
54147
97a8ff4e4ac9 killed most "no_atp", to make Sledgehammer more complete
blanchet
parents: 53927
diff changeset
   791
lemma Cantors_paradox:
40703
d1fc454d6735 Move some missing lemmas from Andrei Popescus 'Ordinals and Cardinals' AFP entry to the HOL-image.
hoelzl
parents: 40702
diff changeset
   792
  "\<not>(\<exists>f. f ` A = Pow A)"
d1fc454d6735 Move some missing lemmas from Andrei Popescus 'Ordinals and Cardinals' AFP entry to the HOL-image.
hoelzl
parents: 40702
diff changeset
   793
proof clarify
d1fc454d6735 Move some missing lemmas from Andrei Popescus 'Ordinals and Cardinals' AFP entry to the HOL-image.
hoelzl
parents: 40702
diff changeset
   794
  fix f assume "f ` A = Pow A" hence *: "Pow A \<le> f ` A" by blast
d1fc454d6735 Move some missing lemmas from Andrei Popescus 'Ordinals and Cardinals' AFP entry to the HOL-image.
hoelzl
parents: 40702
diff changeset
   795
  let ?X = "{a \<in> A. a \<notin> f a}"
d1fc454d6735 Move some missing lemmas from Andrei Popescus 'Ordinals and Cardinals' AFP entry to the HOL-image.
hoelzl
parents: 40702
diff changeset
   796
  have "?X \<in> Pow A" unfolding Pow_def by auto
d1fc454d6735 Move some missing lemmas from Andrei Popescus 'Ordinals and Cardinals' AFP entry to the HOL-image.
hoelzl
parents: 40702
diff changeset
   797
  with * obtain x where "x \<in> A \<and> f x = ?X" by blast
d1fc454d6735 Move some missing lemmas from Andrei Popescus 'Ordinals and Cardinals' AFP entry to the HOL-image.
hoelzl
parents: 40702
diff changeset
   798
  thus False by best
d1fc454d6735 Move some missing lemmas from Andrei Popescus 'Ordinals and Cardinals' AFP entry to the HOL-image.
hoelzl
parents: 40702
diff changeset
   799
qed
31949
3f933687fae9 moved Inductive.myinv to Fun.inv; tuned
haftmann
parents: 31775
diff changeset
   800
40969
fb2d3ccda5a7 moved bootstrap of type_lifting to Fun
haftmann
parents: 40968
diff changeset
   801
subsection {* Setup *} 
fb2d3ccda5a7 moved bootstrap of type_lifting to Fun
haftmann
parents: 40968
diff changeset
   802
fb2d3ccda5a7 moved bootstrap of type_lifting to Fun
haftmann
parents: 40968
diff changeset
   803
subsubsection {* Proof tools *}
22845
5f9138bcb3d7 changed code generator invocation syntax
haftmann
parents: 22744
diff changeset
   804
5f9138bcb3d7 changed code generator invocation syntax
haftmann
parents: 22744
diff changeset
   805
text {* simplifies terms of the form
5f9138bcb3d7 changed code generator invocation syntax
haftmann
parents: 22744
diff changeset
   806
  f(...,x:=y,...,x:=z,...) to f(...,x:=z,...) *}
5f9138bcb3d7 changed code generator invocation syntax
haftmann
parents: 22744
diff changeset
   807
24017
363287741ebe simproc_setup fun_upd2;
wenzelm
parents: 23878
diff changeset
   808
simproc_setup fun_upd2 ("f(v := w, x := y)") = {* fn _ =>
22845
5f9138bcb3d7 changed code generator invocation syntax
haftmann
parents: 22744
diff changeset
   809
let
5f9138bcb3d7 changed code generator invocation syntax
haftmann
parents: 22744
diff changeset
   810
  fun gen_fun_upd NONE T _ _ = NONE
24017
363287741ebe simproc_setup fun_upd2;
wenzelm
parents: 23878
diff changeset
   811
    | gen_fun_upd (SOME f) T x y = SOME (Const (@{const_name fun_upd}, T) $ f $ x $ y)
22845
5f9138bcb3d7 changed code generator invocation syntax
haftmann
parents: 22744
diff changeset
   812
  fun dest_fun_T1 (Type (_, T :: Ts)) = T
5f9138bcb3d7 changed code generator invocation syntax
haftmann
parents: 22744
diff changeset
   813
  fun find_double (t as Const (@{const_name fun_upd},T) $ f $ x $ y) =
5f9138bcb3d7 changed code generator invocation syntax
haftmann
parents: 22744
diff changeset
   814
    let
5f9138bcb3d7 changed code generator invocation syntax
haftmann
parents: 22744
diff changeset
   815
      fun find (Const (@{const_name fun_upd},T) $ g $ v $ w) =
5f9138bcb3d7 changed code generator invocation syntax
haftmann
parents: 22744
diff changeset
   816
            if v aconv x then SOME g else gen_fun_upd (find g) T v w
5f9138bcb3d7 changed code generator invocation syntax
haftmann
parents: 22744
diff changeset
   817
        | find t = NONE
5f9138bcb3d7 changed code generator invocation syntax
haftmann
parents: 22744
diff changeset
   818
    in (dest_fun_T1 T, gen_fun_upd (find f) T x y) end
24017
363287741ebe simproc_setup fun_upd2;
wenzelm
parents: 23878
diff changeset
   819
51717
9e7d1c139569 simplifier uses proper Proof.context instead of historic type simpset;
wenzelm
parents: 51598
diff changeset
   820
  val ss = simpset_of @{context}
9e7d1c139569 simplifier uses proper Proof.context instead of historic type simpset;
wenzelm
parents: 51598
diff changeset
   821
9e7d1c139569 simplifier uses proper Proof.context instead of historic type simpset;
wenzelm
parents: 51598
diff changeset
   822
  fun proc ctxt ct =
24017
363287741ebe simproc_setup fun_upd2;
wenzelm
parents: 23878
diff changeset
   823
    let
363287741ebe simproc_setup fun_upd2;
wenzelm
parents: 23878
diff changeset
   824
      val t = Thm.term_of ct
363287741ebe simproc_setup fun_upd2;
wenzelm
parents: 23878
diff changeset
   825
    in
363287741ebe simproc_setup fun_upd2;
wenzelm
parents: 23878
diff changeset
   826
      case find_double t of
363287741ebe simproc_setup fun_upd2;
wenzelm
parents: 23878
diff changeset
   827
        (T, NONE) => NONE
363287741ebe simproc_setup fun_upd2;
wenzelm
parents: 23878
diff changeset
   828
      | (T, SOME rhs) =>
27330
1af2598b5f7d Logic.all/mk_equals/mk_implies;
wenzelm
parents: 27188
diff changeset
   829
          SOME (Goal.prove ctxt [] [] (Logic.mk_equals (t, rhs))
24017
363287741ebe simproc_setup fun_upd2;
wenzelm
parents: 23878
diff changeset
   830
            (fn _ =>
363287741ebe simproc_setup fun_upd2;
wenzelm
parents: 23878
diff changeset
   831
              rtac eq_reflection 1 THEN
55990
41c6b99c5fb7 more antiquotations;
wenzelm
parents: 55467
diff changeset
   832
              rtac @{thm ext} 1 THEN
51717
9e7d1c139569 simplifier uses proper Proof.context instead of historic type simpset;
wenzelm
parents: 51598
diff changeset
   833
              simp_tac (put_simpset ss ctxt) 1))
24017
363287741ebe simproc_setup fun_upd2;
wenzelm
parents: 23878
diff changeset
   834
    end
363287741ebe simproc_setup fun_upd2;
wenzelm
parents: 23878
diff changeset
   835
in proc end
22845
5f9138bcb3d7 changed code generator invocation syntax
haftmann
parents: 22744
diff changeset
   836
*}
5f9138bcb3d7 changed code generator invocation syntax
haftmann
parents: 22744
diff changeset
   837
5f9138bcb3d7 changed code generator invocation syntax
haftmann
parents: 22744
diff changeset
   838
40969
fb2d3ccda5a7 moved bootstrap of type_lifting to Fun
haftmann
parents: 40968
diff changeset
   839
subsubsection {* Functorial structure of types *}
fb2d3ccda5a7 moved bootstrap of type_lifting to Fun
haftmann
parents: 40968
diff changeset
   840
55467
a5c9002bc54d renamed 'enriched_type' to more informative 'functor' (following the renaming of enriched type constructors to bounded natural functors)
blanchet
parents: 55414
diff changeset
   841
ML_file "Tools/functor.ML"
40969
fb2d3ccda5a7 moved bootstrap of type_lifting to Fun
haftmann
parents: 40968
diff changeset
   842
55467
a5c9002bc54d renamed 'enriched_type' to more informative 'functor' (following the renaming of enriched type constructors to bounded natural functors)
blanchet
parents: 55414
diff changeset
   843
functor map_fun: map_fun
47488
be6dd389639d centralized enriched_type declaration, thanks to in-situ available Isar commands
haftmann
parents: 46950
diff changeset
   844
  by (simp_all add: fun_eq_iff)
be6dd389639d centralized enriched_type declaration, thanks to in-situ available Isar commands
haftmann
parents: 46950
diff changeset
   845
55467
a5c9002bc54d renamed 'enriched_type' to more informative 'functor' (following the renaming of enriched type constructors to bounded natural functors)
blanchet
parents: 55414
diff changeset
   846
functor vimage
49739
13aa6d8268ec consolidated names of theorems on composition;
haftmann
parents: 48891
diff changeset
   847
  by (simp_all add: fun_eq_iff vimage_comp)
13aa6d8268ec consolidated names of theorems on composition;
haftmann
parents: 48891
diff changeset
   848
13aa6d8268ec consolidated names of theorems on composition;
haftmann
parents: 48891
diff changeset
   849
text {* Legacy theorem names *}
13aa6d8268ec consolidated names of theorems on composition;
haftmann
parents: 48891
diff changeset
   850
13aa6d8268ec consolidated names of theorems on composition;
haftmann
parents: 48891
diff changeset
   851
lemmas o_def = comp_def
13aa6d8268ec consolidated names of theorems on composition;
haftmann
parents: 48891
diff changeset
   852
lemmas o_apply = comp_apply
13aa6d8268ec consolidated names of theorems on composition;
haftmann
parents: 48891
diff changeset
   853
lemmas o_assoc = comp_assoc [symmetric]
13aa6d8268ec consolidated names of theorems on composition;
haftmann
parents: 48891
diff changeset
   854
lemmas id_o = id_comp
13aa6d8268ec consolidated names of theorems on composition;
haftmann
parents: 48891
diff changeset
   855
lemmas o_id = comp_id
13aa6d8268ec consolidated names of theorems on composition;
haftmann
parents: 48891
diff changeset
   856
lemmas o_eq_dest = comp_eq_dest
13aa6d8268ec consolidated names of theorems on composition;
haftmann
parents: 48891
diff changeset
   857
lemmas o_eq_elim = comp_eq_elim
55066
blanchet
parents: 55019
diff changeset
   858
lemmas o_eq_dest_lhs = comp_eq_dest_lhs
blanchet
parents: 55019
diff changeset
   859
lemmas o_eq_id_dest = comp_eq_id_dest
47488
be6dd389639d centralized enriched_type declaration, thanks to in-situ available Isar commands
haftmann
parents: 46950
diff changeset
   860
2912
3fac3e8d5d3e moved inj and surj from Set to Fun and Inv -> inv.
nipkow
parents: 1475
diff changeset
   861
end
56015
57e2cfba9c6e bootstrap fundamental Fun theory immediately after Set theory, without dependency on complete lattices
haftmann
parents: 55990
diff changeset
   862