| author | chaieb | 
| Fri, 27 Jul 2007 16:04:26 +0200 | |
| changeset 24000 | 467e77e4e276 | 
| parent 23496 | 84e9216a6d0e | 
| child 24286 | 7619080e49f0 | 
| permissions | -rw-r--r-- | 
| 8924 | 1  | 
(* Title: HOL/SetInterval.thy  | 
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ID: $Id$  | 
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Author: Tobias Nipkow and Clemens Ballarin  | 
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Additions by Jeremy Avigad in March 2004  | 
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Copyright 2000 TU Muenchen  | 
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lessThan, greaterThan, atLeast, atMost and two-sided intervals  | 
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*)  | 
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header {* Set intervals *}
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theory SetInterval  | 
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imports IntArith  | 
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begin  | 
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constdefs  | 
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  lessThan    :: "('a::ord) => 'a set"	("(1{..<_})")
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  "{..<u} == {x. x<u}"
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11609
 
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eliminated theories "equalities" and "mono" (made part of "Typedef",
 
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  atMost      :: "('a::ord) => 'a set"	("(1{.._})")
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3f3d1add4d94
eliminated theories "equalities" and "mono" (made part of "Typedef",
 
wenzelm 
parents: 
10214 
diff
changeset
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  "{..u} == {x. x<=u}"
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  greaterThan :: "('a::ord) => 'a set"	("(1{_<..})")
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  "{l<..} == {x. l<x}"
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11609
 
3f3d1add4d94
eliminated theories "equalities" and "mono" (made part of "Typedef",
 
wenzelm 
parents: 
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  atLeast     :: "('a::ord) => 'a set"	("(1{_..})")
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3f3d1add4d94
eliminated theories "equalities" and "mono" (made part of "Typedef",
 
wenzelm 
parents: 
10214 
diff
changeset
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  "{l..} == {x. l<=x}"
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  greaterThanLessThan :: "['a::ord, 'a] => 'a set"  ("(1{_<..<_})")
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  "{l<..<u} == {l<..} Int {..<u}"
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  atLeastLessThan :: "['a::ord, 'a] => 'a set"      ("(1{_..<_})")
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  "{l..<u} == {l..} Int {..<u}"
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  greaterThanAtMost :: "['a::ord, 'a] => 'a set"    ("(1{_<.._})")
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  "{l<..u} == {l<..} Int {..u}"
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  atLeastAtMost :: "['a::ord, 'a] => 'a set"        ("(1{_.._})")
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  "{l..u} == {l..} Int {..u}"
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text{* A note of warning when using @{term"{..<n}"} on type @{typ
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nat}: it is equivalent to @{term"{0::nat..<n}"} but some lemmas involving
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@{term"{m..<n}"} may not exist in @{term"{..<n}"}-form as well. *}
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syntax  | 
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  "@UNION_le"   :: "nat => nat => 'b set => 'b set"       ("(3UN _<=_./ _)" 10)
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  "@UNION_less" :: "nat => nat => 'b set => 'b set"       ("(3UN _<_./ _)" 10)
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  "@INTER_le"   :: "nat => nat => 'b set => 'b set"       ("(3INT _<=_./ _)" 10)
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  "@INTER_less" :: "nat => nat => 'b set => 'b set"       ("(3INT _<_./ _)" 10)
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syntax (input)  | 
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  "@UNION_le"   :: "nat => nat => 'b set => 'b set"       ("(3\<Union> _\<le>_./ _)" 10)
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  "@UNION_less" :: "nat => nat => 'b set => 'b set"       ("(3\<Union> _<_./ _)" 10)
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  "@INTER_le"   :: "nat => nat => 'b set => 'b set"       ("(3\<Inter> _\<le>_./ _)" 10)
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  "@INTER_less" :: "nat => nat => 'b set => 'b set"       ("(3\<Inter> _<_./ _)" 10)
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syntax (xsymbols)  | 
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  "@UNION_le"   :: "nat \<Rightarrow> nat => 'b set => 'b set"       ("(3\<Union>(00\<^bsub>_ \<le> _\<^esub>)/ _)" 10)
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  "@UNION_less" :: "nat \<Rightarrow> nat => 'b set => 'b set"       ("(3\<Union>(00\<^bsub>_ < _\<^esub>)/ _)" 10)
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  "@INTER_le"   :: "nat \<Rightarrow> nat => 'b set => 'b set"       ("(3\<Inter>(00\<^bsub>_ \<le> _\<^esub>)/ _)" 10)
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  "@INTER_less" :: "nat \<Rightarrow> nat => 'b set => 'b set"       ("(3\<Inter>(00\<^bsub>_ < _\<^esub>)/ _)" 10)
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translations  | 
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  "UN i<=n. A"  == "UN i:{..n}. A"
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  "UN i<n. A"   == "UN i:{..<n}. A"
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  "INT i<=n. A" == "INT i:{..n}. A"
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  "INT i<n. A"  == "INT i:{..<n}. A"
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subsection {* Various equivalences *}
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lemma lessThan_iff [iff]: "(i: lessThan k) = (i<k)"  | 
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by (simp add: lessThan_def)  | 
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lemma Compl_lessThan [simp]:  | 
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"!!k:: 'a::linorder. -lessThan k = atLeast k"  | 
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apply (auto simp add: lessThan_def atLeast_def)  | 
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done  | 
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lemma single_Diff_lessThan [simp]: "!!k:: 'a::order. {k} - lessThan k = {k}"
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81  | 
by auto  | 
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lemma greaterThan_iff [iff]: "(i: greaterThan k) = (k<i)"  | 
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by (simp add: greaterThan_def)  | 
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lemma Compl_greaterThan [simp]:  | 
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"!!k:: 'a::linorder. -greaterThan k = atMost k"  | 
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apply (simp add: greaterThan_def atMost_def le_def, auto)  | 
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done  | 
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lemma Compl_atMost [simp]: "!!k:: 'a::linorder. -atMost k = greaterThan k"  | 
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apply (subst Compl_greaterThan [symmetric])  | 
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apply (rule double_complement)  | 
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done  | 
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lemma atLeast_iff [iff]: "(i: atLeast k) = (k<=i)"  | 
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by (simp add: atLeast_def)  | 
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paulson 
parents: 
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lemma Compl_atLeast [simp]:  | 
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"!!k:: 'a::linorder. -atLeast k = lessThan k"  | 
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apply (simp add: lessThan_def atLeast_def le_def, auto)  | 
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done  | 
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lemma atMost_iff [iff]: "(i: atMost k) = (i<=k)"  | 
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by (simp add: atMost_def)  | 
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lemma atMost_Int_atLeast: "!!n:: 'a::order. atMost n Int atLeast n = {n}"
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by (blast intro: order_antisym)  | 
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subsection {* Logical Equivalences for Set Inclusion and Equality *}
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lemma atLeast_subset_iff [iff]:  | 
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"(atLeast x \<subseteq> atLeast y) = (y \<le> (x::'a::order))"  | 
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e28853da5df5
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paulson 
parents: 
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by (blast intro: order_trans)  | 
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lemma atLeast_eq_iff [iff]:  | 
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"(atLeast x = atLeast y) = (x = (y::'a::linorder))"  | 
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by (blast intro: order_antisym order_trans)  | 
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lemma greaterThan_subset_iff [iff]:  | 
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"(greaterThan x \<subseteq> greaterThan y) = (y \<le> (x::'a::linorder))"  | 
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paulson 
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apply (auto simp add: greaterThan_def)  | 
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apply (subst linorder_not_less [symmetric], blast)  | 
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done  | 
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lemma greaterThan_eq_iff [iff]:  | 
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"(greaterThan x = greaterThan y) = (x = (y::'a::linorder))"  | 
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parents: 
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apply (rule iffI)  | 
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apply (erule equalityE)  | 
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apply (simp_all add: greaterThan_subset_iff)  | 
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done  | 
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lemma atMost_subset_iff [iff]: "(atMost x \<subseteq> atMost y) = (x \<le> (y::'a::order))"  | 
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by (blast intro: order_trans)  | 
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paulson 
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lemma atMost_eq_iff [iff]: "(atMost x = atMost y) = (x = (y::'a::linorder))"  | 
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by (blast intro: order_antisym order_trans)  | 
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lemma lessThan_subset_iff [iff]:  | 
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paulson 
parents: 
15402 
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changeset
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"(lessThan x \<subseteq> lessThan y) = (x \<le> (y::'a::linorder))"  | 
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paulson 
parents: 
15402 
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changeset
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apply (auto simp add: lessThan_def)  | 
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paulson 
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apply (subst linorder_not_less [symmetric], blast)  | 
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done  | 
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lemma lessThan_eq_iff [iff]:  | 
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paulson 
parents: 
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"(lessThan x = lessThan y) = (x = (y::'a::linorder))"  | 
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e28853da5df5
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paulson 
parents: 
15402 
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changeset
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apply (rule iffI)  | 
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paulson 
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15402 
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apply (erule equalityE)  | 
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e28853da5df5
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paulson 
parents: 
15402 
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changeset
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apply (simp_all add: lessThan_subset_iff)  | 
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done  | 
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subsection {*Two-sided intervals*}
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lemma greaterThanLessThan_iff [simp]:  | 
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  "(i : {l<..<u}) = (l < i & i < u)"
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by (simp add: greaterThanLessThan_def)  | 
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lemma atLeastLessThan_iff [simp]:  | 
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  "(i : {l..<u}) = (l <= i & i < u)"
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by (simp add: atLeastLessThan_def)  | 
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lemma greaterThanAtMost_iff [simp]:  | 
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  "(i : {l<..u}) = (l < i & i <= u)"
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by (simp add: greaterThanAtMost_def)  | 
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lemma atLeastAtMost_iff [simp]:  | 
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  "(i : {l..u}) = (l <= i & i <= u)"
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by (simp add: atLeastAtMost_def)  | 
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text {* The above four lemmas could be declared as iffs.
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  If we do so, a call to blast in Hyperreal/Star.ML, lemma @{text STAR_Int}
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seems to take forever (more than one hour). *}  | 
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subsubsection{* Emptyness and singletons *}
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lemma atLeastAtMost_empty [simp]: "n < m ==> {m::'a::order..n} = {}";
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by (auto simp add: atLeastAtMost_def atMost_def atLeast_def);  | 
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lemma atLeastLessThan_empty[simp]: "n \<le> m ==> {m..<n::'a::order} = {}"
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by (auto simp add: atLeastLessThan_def)  | 
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lemma greaterThanAtMost_empty[simp]:"l \<le> k ==> {k<..(l::'a::order)} = {}"
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by(auto simp:greaterThanAtMost_def greaterThan_def atMost_def)  | 
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lemma greaterThanLessThan_empty[simp]:"l \<le> k ==> {k<..(l::'a::order)} = {}"
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by(auto simp:greaterThanLessThan_def greaterThan_def lessThan_def)  | 
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lemma atLeastAtMost_singleton [simp]: "{a::'a::order..a} = {a}";
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by (auto simp add: atLeastAtMost_def atMost_def atLeast_def);  | 
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subsection {* Intervals of natural numbers *}
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subsubsection {* The Constant @{term lessThan} *}
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lemma lessThan_0 [simp]: "lessThan (0::nat) = {}"
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198  | 
by (simp add: lessThan_def)  | 
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lemma lessThan_Suc: "lessThan (Suc k) = insert k (lessThan k)"  | 
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by (simp add: lessThan_def less_Suc_eq, blast)  | 
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lemma lessThan_Suc_atMost: "lessThan (Suc k) = atMost k"  | 
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by (simp add: lessThan_def atMost_def less_Suc_eq_le)  | 
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lemma UN_lessThan_UNIV: "(UN m::nat. lessThan m) = UNIV"  | 
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by blast  | 
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subsubsection {* The Constant @{term greaterThan} *}
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lemma greaterThan_0 [simp]: "greaterThan 0 = range Suc"  | 
212  | 
apply (simp add: greaterThan_def)  | 
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apply (blast dest: gr0_conv_Suc [THEN iffD1])  | 
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done  | 
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lemma greaterThan_Suc: "greaterThan (Suc k) = greaterThan k - {Suc k}"
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apply (simp add: greaterThan_def)  | 
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apply (auto elim: linorder_neqE)  | 
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219  | 
done  | 
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lemma INT_greaterThan_UNIV: "(INT m::nat. greaterThan m) = {}"
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222  | 
by blast  | 
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subsubsection {* The Constant @{term atLeast} *}
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lemma atLeast_0 [simp]: "atLeast (0::nat) = UNIV"  | 
227  | 
by (unfold atLeast_def UNIV_def, simp)  | 
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229  | 
lemma atLeast_Suc: "atLeast (Suc k) = atLeast k - {k}"
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230  | 
apply (simp add: atLeast_def)  | 
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231  | 
apply (simp add: Suc_le_eq)  | 
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232  | 
apply (simp add: order_le_less, blast)  | 
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233  | 
done  | 
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235  | 
lemma atLeast_Suc_greaterThan: "atLeast (Suc k) = greaterThan k"  | 
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236  | 
by (auto simp add: greaterThan_def atLeast_def less_Suc_eq_le)  | 
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lemma UN_atLeast_UNIV: "(UN m::nat. atLeast m) = UNIV"  | 
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239  | 
by blast  | 
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subsubsection {* The Constant @{term atMost} *}
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242  | 
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lemma atMost_0 [simp]: "atMost (0::nat) = {0}"
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244  | 
by (simp add: atMost_def)  | 
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246  | 
lemma atMost_Suc: "atMost (Suc k) = insert (Suc k) (atMost k)"  | 
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247  | 
apply (simp add: atMost_def)  | 
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248  | 
apply (simp add: less_Suc_eq order_le_less, blast)  | 
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249  | 
done  | 
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251  | 
lemma UN_atMost_UNIV: "(UN m::nat. atMost m) = UNIV"  | 
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252  | 
by blast  | 
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subsubsection {* The Constant @{term atLeastLessThan} *}
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255  | 
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256  | 
text{*But not a simprule because some concepts are better left in terms
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257  | 
  of @{term atLeastLessThan}*}
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258  | 
lemma atLeast0LessThan: "{0::nat..<n} = {..<n}"
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by(simp add:lessThan_def atLeastLessThan_def)  | 
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(*  | 
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lemma atLeastLessThan0 [simp]: "{m..<0::nat} = {}"
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262  | 
by (simp add: atLeastLessThan_def)  | 
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*)  | 
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subsubsection {* Intervals of nats with @{term Suc} *}
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265  | 
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266  | 
text{*Not a simprule because the RHS is too messy.*}
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267  | 
lemma atLeastLessThanSuc:  | 
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268  | 
    "{m..<Suc n} = (if m \<le> n then insert n {m..<n} else {})"
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paulson 
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changeset
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269  | 
by (auto simp add: atLeastLessThan_def)  | 
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271  | 
lemma atLeastLessThan_singleton [simp]: "{m..<Suc m} = {m}"
 | 
| 15047 | 272  | 
by (auto simp add: atLeastLessThan_def)  | 
| 16041 | 273  | 
(*  | 
| 15047 | 274  | 
lemma atLeast_sum_LessThan [simp]: "{m + k..<k::nat} = {}"
 | 
275  | 
by (induct k, simp_all add: atLeastLessThanSuc)  | 
|
276  | 
||
277  | 
lemma atLeastSucLessThan [simp]: "{Suc n..<n} = {}"
 | 
|
278  | 
by (auto simp add: atLeastLessThan_def)  | 
|
| 16041 | 279  | 
*)  | 
| 15045 | 280  | 
lemma atLeastLessThanSuc_atLeastAtMost: "{l..<Suc u} = {l..u}"
 | 
| 14485 | 281  | 
by (simp add: lessThan_Suc_atMost atLeastAtMost_def atLeastLessThan_def)  | 
282  | 
||
| 
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283  | 
lemma atLeastSucAtMost_greaterThanAtMost: "{Suc l..u} = {l<..u}"
 | 
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284  | 
by (simp add: atLeast_Suc_greaterThan atLeastAtMost_def  | 
| 14485 | 285  | 
greaterThanAtMost_def)  | 
286  | 
||
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287  | 
lemma atLeastSucLessThan_greaterThanLessThan: "{Suc l..<u} = {l<..<u}"
 | 
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288  | 
by (simp add: atLeast_Suc_greaterThan atLeastLessThan_def  | 
| 14485 | 289  | 
greaterThanLessThan_def)  | 
290  | 
||
| 15554 | 291  | 
lemma atLeastAtMostSuc_conv: "m \<le> Suc n \<Longrightarrow> {m..Suc n} = insert (Suc n) {m..n}"
 | 
292  | 
by (auto simp add: atLeastAtMost_def)  | 
|
293  | 
||
| 
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294  | 
subsubsection {* Image *}
 | 
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295  | 
|
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296  | 
lemma image_add_atLeastAtMost:  | 
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297  | 
  "(%n::nat. n+k) ` {i..j} = {i+k..j+k}" (is "?A = ?B")
 | 
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298  | 
proof  | 
| 
 
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299  | 
show "?A \<subseteq> ?B" by auto  | 
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300  | 
next  | 
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301  | 
show "?B \<subseteq> ?A"  | 
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302  | 
proof  | 
| 
 
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303  | 
fix n assume a: "n : ?B"  | 
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304  | 
    hence "n - k : {i..j}" by auto
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305  | 
moreover have "n = (n - k) + k" using a by auto  | 
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306  | 
ultimately show "n : ?A" by blast  | 
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307  | 
qed  | 
| 
 
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308  | 
qed  | 
| 
 
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309  | 
|
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310  | 
lemma image_add_atLeastLessThan:  | 
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311  | 
  "(%n::nat. n+k) ` {i..<j} = {i+k..<j+k}" (is "?A = ?B")
 | 
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312  | 
proof  | 
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313  | 
show "?A \<subseteq> ?B" by auto  | 
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314  | 
next  | 
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315  | 
show "?B \<subseteq> ?A"  | 
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316  | 
proof  | 
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317  | 
fix n assume a: "n : ?B"  | 
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318  | 
    hence "n - k : {i..<j}" by auto
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319  | 
moreover have "n = (n - k) + k" using a by auto  | 
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320  | 
ultimately show "n : ?A" by blast  | 
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321  | 
qed  | 
| 
 
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322  | 
qed  | 
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323  | 
|
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324  | 
corollary image_Suc_atLeastAtMost[simp]:  | 
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325  | 
  "Suc ` {i..j} = {Suc i..Suc j}"
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326  | 
using image_add_atLeastAtMost[where k=1] by simp  | 
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327  | 
|
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328  | 
corollary image_Suc_atLeastLessThan[simp]:  | 
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329  | 
  "Suc ` {i..<j} = {Suc i..<Suc j}"
 | 
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330  | 
using image_add_atLeastLessThan[where k=1] by simp  | 
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331  | 
|
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332  | 
lemma image_add_int_atLeastLessThan:  | 
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333  | 
    "(%x. x + (l::int)) ` {0..<u-l} = {l..<u}"
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334  | 
apply (auto simp add: image_def)  | 
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335  | 
apply (rule_tac x = "x - l" in bexI)  | 
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336  | 
apply auto  | 
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337  | 
done  | 
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338  | 
|
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339  | 
|
| 14485 | 340  | 
subsubsection {* Finiteness *}
 | 
341  | 
||
| 15045 | 342  | 
lemma finite_lessThan [iff]: fixes k :: nat shows "finite {..<k}"
 | 
| 14485 | 343  | 
by (induct k) (simp_all add: lessThan_Suc)  | 
344  | 
||
345  | 
lemma finite_atMost [iff]: fixes k :: nat shows "finite {..k}"
 | 
|
346  | 
by (induct k) (simp_all add: atMost_Suc)  | 
|
347  | 
||
348  | 
lemma finite_greaterThanLessThan [iff]:  | 
|
| 15045 | 349  | 
  fixes l :: nat shows "finite {l<..<u}"
 | 
| 14485 | 350  | 
by (simp add: greaterThanLessThan_def)  | 
351  | 
||
352  | 
lemma finite_atLeastLessThan [iff]:  | 
|
| 15045 | 353  | 
  fixes l :: nat shows "finite {l..<u}"
 | 
| 14485 | 354  | 
by (simp add: atLeastLessThan_def)  | 
355  | 
||
356  | 
lemma finite_greaterThanAtMost [iff]:  | 
|
| 15045 | 357  | 
  fixes l :: nat shows "finite {l<..u}"
 | 
| 14485 | 358  | 
by (simp add: greaterThanAtMost_def)  | 
359  | 
||
360  | 
lemma finite_atLeastAtMost [iff]:  | 
|
361  | 
  fixes l :: nat shows "finite {l..u}"
 | 
|
362  | 
by (simp add: atLeastAtMost_def)  | 
|
363  | 
||
364  | 
lemma bounded_nat_set_is_finite:  | 
|
365  | 
"(ALL i:N. i < (n::nat)) ==> finite N"  | 
|
366  | 
  -- {* A bounded set of natural numbers is finite. *}
 | 
|
367  | 
apply (rule finite_subset)  | 
|
368  | 
apply (rule_tac [2] finite_lessThan, auto)  | 
|
369  | 
done  | 
|
370  | 
||
371  | 
subsubsection {* Cardinality *}
 | 
|
372  | 
||
| 15045 | 373  | 
lemma card_lessThan [simp]: "card {..<u} = u"
 | 
| 15251 | 374  | 
by (induct u, simp_all add: lessThan_Suc)  | 
| 14485 | 375  | 
|
376  | 
lemma card_atMost [simp]: "card {..u} = Suc u"
 | 
|
377  | 
by (simp add: lessThan_Suc_atMost [THEN sym])  | 
|
378  | 
||
| 15045 | 379  | 
lemma card_atLeastLessThan [simp]: "card {l..<u} = u - l"
 | 
380  | 
  apply (subgoal_tac "card {l..<u} = card {..<u-l}")
 | 
|
| 14485 | 381  | 
apply (erule ssubst, rule card_lessThan)  | 
| 15045 | 382  | 
  apply (subgoal_tac "(%x. x + l) ` {..<u-l} = {l..<u}")
 | 
| 14485 | 383  | 
apply (erule subst)  | 
384  | 
apply (rule card_image)  | 
|
385  | 
apply (simp add: inj_on_def)  | 
|
386  | 
apply (auto simp add: image_def atLeastLessThan_def lessThan_def)  | 
|
387  | 
apply (rule_tac x = "x - l" in exI)  | 
|
388  | 
apply arith  | 
|
389  | 
done  | 
|
390  | 
||
| 
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391  | 
lemma card_atLeastAtMost [simp]: "card {l..u} = Suc u - l"
 | 
| 14485 | 392  | 
by (subst atLeastLessThanSuc_atLeastAtMost [THEN sym], simp)  | 
393  | 
||
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394  | 
lemma card_greaterThanAtMost [simp]: "card {l<..u} = u - l"
 | 
| 14485 | 395  | 
by (subst atLeastSucAtMost_greaterThanAtMost [THEN sym], simp)  | 
396  | 
||
| 15045 | 397  | 
lemma card_greaterThanLessThan [simp]: "card {l<..<u} = u - Suc l"
 | 
| 14485 | 398  | 
by (subst atLeastSucLessThan_greaterThanLessThan [THEN sym], simp)  | 
399  | 
||
400  | 
subsection {* Intervals of integers *}
 | 
|
401  | 
||
| 15045 | 402  | 
lemma atLeastLessThanPlusOne_atLeastAtMost_int: "{l..<u+1} = {l..(u::int)}"
 | 
| 14485 | 403  | 
by (auto simp add: atLeastAtMost_def atLeastLessThan_def)  | 
404  | 
||
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405  | 
lemma atLeastPlusOneAtMost_greaterThanAtMost_int: "{l+1..u} = {l<..(u::int)}"
 | 
| 14485 | 406  | 
by (auto simp add: atLeastAtMost_def greaterThanAtMost_def)  | 
407  | 
||
| 
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408  | 
lemma atLeastPlusOneLessThan_greaterThanLessThan_int:  | 
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409  | 
    "{l+1..<u} = {l<..<u::int}"
 | 
| 14485 | 410  | 
by (auto simp add: atLeastLessThan_def greaterThanLessThan_def)  | 
411  | 
||
412  | 
subsubsection {* Finiteness *}
 | 
|
413  | 
||
| 
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414  | 
lemma image_atLeastZeroLessThan_int: "0 \<le> u ==>  | 
| 15045 | 415  | 
    {(0::int)..<u} = int ` {..<nat u}"
 | 
| 14485 | 416  | 
apply (unfold image_def lessThan_def)  | 
417  | 
apply auto  | 
|
418  | 
apply (rule_tac x = "nat x" in exI)  | 
|
419  | 
apply (auto simp add: zless_nat_conj zless_nat_eq_int_zless [THEN sym])  | 
|
420  | 
done  | 
|
421  | 
||
| 15045 | 422  | 
lemma finite_atLeastZeroLessThan_int: "finite {(0::int)..<u}"
 | 
| 14485 | 423  | 
apply (case_tac "0 \<le> u")  | 
424  | 
apply (subst image_atLeastZeroLessThan_int, assumption)  | 
|
425  | 
apply (rule finite_imageI)  | 
|
426  | 
apply auto  | 
|
427  | 
done  | 
|
428  | 
||
| 15045 | 429  | 
lemma finite_atLeastLessThan_int [iff]: "finite {l..<u::int}"
 | 
430  | 
  apply (subgoal_tac "(%x. x + l) ` {0..<u-l} = {l..<u}")
 | 
|
| 14485 | 431  | 
apply (erule subst)  | 
432  | 
apply (rule finite_imageI)  | 
|
433  | 
apply (rule finite_atLeastZeroLessThan_int)  | 
|
| 
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434  | 
apply (rule image_add_int_atLeastLessThan)  | 
| 14485 | 435  | 
done  | 
436  | 
||
| 
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 | 
437  | 
lemma finite_atLeastAtMost_int [iff]: "finite {l..(u::int)}"
 | 
| 14485 | 438  | 
by (subst atLeastLessThanPlusOne_atLeastAtMost_int [THEN sym], simp)  | 
439  | 
||
| 
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 | 
440  | 
lemma finite_greaterThanAtMost_int [iff]: "finite {l<..(u::int)}"
 | 
| 14485 | 441  | 
by (subst atLeastPlusOneAtMost_greaterThanAtMost_int [THEN sym], simp)  | 
442  | 
||
| 
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443  | 
lemma finite_greaterThanLessThan_int [iff]: "finite {l<..<u::int}"
 | 
| 14485 | 444  | 
by (subst atLeastPlusOneLessThan_greaterThanLessThan_int [THEN sym], simp)  | 
445  | 
||
446  | 
subsubsection {* Cardinality *}
 | 
|
447  | 
||
| 15045 | 448  | 
lemma card_atLeastZeroLessThan_int: "card {(0::int)..<u} = nat u"
 | 
| 14485 | 449  | 
apply (case_tac "0 \<le> u")  | 
450  | 
apply (subst image_atLeastZeroLessThan_int, assumption)  | 
|
451  | 
apply (subst card_image)  | 
|
452  | 
apply (auto simp add: inj_on_def)  | 
|
453  | 
done  | 
|
454  | 
||
| 15045 | 455  | 
lemma card_atLeastLessThan_int [simp]: "card {l..<u} = nat (u - l)"
 | 
456  | 
  apply (subgoal_tac "card {l..<u} = card {0..<u-l}")
 | 
|
| 14485 | 457  | 
apply (erule ssubst, rule card_atLeastZeroLessThan_int)  | 
| 15045 | 458  | 
  apply (subgoal_tac "(%x. x + l) ` {0..<u-l} = {l..<u}")
 | 
| 14485 | 459  | 
apply (erule subst)  | 
460  | 
apply (rule card_image)  | 
|
461  | 
apply (simp add: inj_on_def)  | 
|
| 
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 | 
462  | 
apply (rule image_add_int_atLeastLessThan)  | 
| 14485 | 463  | 
done  | 
464  | 
||
465  | 
lemma card_atLeastAtMost_int [simp]: "card {l..u} = nat (u - l + 1)"
 | 
|
466  | 
apply (subst atLeastLessThanPlusOne_atLeastAtMost_int [THEN sym])  | 
|
467  | 
apply (auto simp add: compare_rls)  | 
|
468  | 
done  | 
|
469  | 
||
| 
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 | 
470  | 
lemma card_greaterThanAtMost_int [simp]: "card {l<..u} = nat (u - l)"
 | 
| 14485 | 471  | 
by (subst atLeastPlusOneAtMost_greaterThanAtMost_int [THEN sym], simp)  | 
472  | 
||
| 15045 | 473  | 
lemma card_greaterThanLessThan_int [simp]: "card {l<..<u} = nat (u - (l + 1))"
 | 
| 14485 | 474  | 
by (subst atLeastPlusOneLessThan_greaterThanLessThan_int [THEN sym], simp)  | 
475  | 
||
476  | 
||
| 13850 | 477  | 
subsection {*Lemmas useful with the summation operator setsum*}
 | 
478  | 
||
| 
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 | 
479  | 
text {* For examples, see Algebra/poly/UnivPoly2.thy *}
 | 
| 13735 | 480  | 
|
| 14577 | 481  | 
subsubsection {* Disjoint Unions *}
 | 
| 13735 | 482  | 
|
| 14577 | 483  | 
text {* Singletons and open intervals *}
 | 
| 13735 | 484  | 
|
485  | 
lemma ivl_disj_un_singleton:  | 
|
| 15045 | 486  | 
  "{l::'a::linorder} Un {l<..} = {l..}"
 | 
487  | 
  "{..<u} Un {u::'a::linorder} = {..u}"
 | 
|
488  | 
  "(l::'a::linorder) < u ==> {l} Un {l<..<u} = {l..<u}"
 | 
|
489  | 
  "(l::'a::linorder) < u ==> {l<..<u} Un {u} = {l<..u}"
 | 
|
490  | 
  "(l::'a::linorder) <= u ==> {l} Un {l<..u} = {l..u}"
 | 
|
491  | 
  "(l::'a::linorder) <= u ==> {l..<u} Un {u} = {l..u}"
 | 
|
| 
14398
 
c5c47703f763
Efficient, graph-based reasoner for linear and partial orders.
 
ballarin 
parents: 
13850 
diff
changeset
 | 
492  | 
by auto  | 
| 13735 | 493  | 
|
| 14577 | 494  | 
text {* One- and two-sided intervals *}
 | 
| 13735 | 495  | 
|
496  | 
lemma ivl_disj_un_one:  | 
|
| 15045 | 497  | 
  "(l::'a::linorder) < u ==> {..l} Un {l<..<u} = {..<u}"
 | 
498  | 
  "(l::'a::linorder) <= u ==> {..<l} Un {l..<u} = {..<u}"
 | 
|
499  | 
  "(l::'a::linorder) <= u ==> {..l} Un {l<..u} = {..u}"
 | 
|
500  | 
  "(l::'a::linorder) <= u ==> {..<l} Un {l..u} = {..u}"
 | 
|
501  | 
  "(l::'a::linorder) <= u ==> {l<..u} Un {u<..} = {l<..}"
 | 
|
502  | 
  "(l::'a::linorder) < u ==> {l<..<u} Un {u..} = {l<..}"
 | 
|
503  | 
  "(l::'a::linorder) <= u ==> {l..u} Un {u<..} = {l..}"
 | 
|
504  | 
  "(l::'a::linorder) <= u ==> {l..<u} Un {u..} = {l..}"
 | 
|
| 
14398
 
c5c47703f763
Efficient, graph-based reasoner for linear and partial orders.
 
ballarin 
parents: 
13850 
diff
changeset
 | 
505  | 
by auto  | 
| 13735 | 506  | 
|
| 14577 | 507  | 
text {* Two- and two-sided intervals *}
 | 
| 13735 | 508  | 
|
509  | 
lemma ivl_disj_un_two:  | 
|
| 15045 | 510  | 
  "[| (l::'a::linorder) < m; m <= u |] ==> {l<..<m} Un {m..<u} = {l<..<u}"
 | 
511  | 
  "[| (l::'a::linorder) <= m; m < u |] ==> {l<..m} Un {m<..<u} = {l<..<u}"
 | 
|
512  | 
  "[| (l::'a::linorder) <= m; m <= u |] ==> {l..<m} Un {m..<u} = {l..<u}"
 | 
|
513  | 
  "[| (l::'a::linorder) <= m; m < u |] ==> {l..m} Un {m<..<u} = {l..<u}"
 | 
|
514  | 
  "[| (l::'a::linorder) < m; m <= u |] ==> {l<..<m} Un {m..u} = {l<..u}"
 | 
|
515  | 
  "[| (l::'a::linorder) <= m; m <= u |] ==> {l<..m} Un {m<..u} = {l<..u}"
 | 
|
516  | 
  "[| (l::'a::linorder) <= m; m <= u |] ==> {l..<m} Un {m..u} = {l..u}"
 | 
|
517  | 
  "[| (l::'a::linorder) <= m; m <= u |] ==> {l..m} Un {m<..u} = {l..u}"
 | 
|
| 
14398
 
c5c47703f763
Efficient, graph-based reasoner for linear and partial orders.
 
ballarin 
parents: 
13850 
diff
changeset
 | 
518  | 
by auto  | 
| 13735 | 519  | 
|
520  | 
lemmas ivl_disj_un = ivl_disj_un_singleton ivl_disj_un_one ivl_disj_un_two  | 
|
521  | 
||
| 14577 | 522  | 
subsubsection {* Disjoint Intersections *}
 | 
| 13735 | 523  | 
|
| 14577 | 524  | 
text {* Singletons and open intervals *}
 | 
| 13735 | 525  | 
|
526  | 
lemma ivl_disj_int_singleton:  | 
|
| 15045 | 527  | 
  "{l::'a::order} Int {l<..} = {}"
 | 
528  | 
  "{..<u} Int {u} = {}"
 | 
|
529  | 
  "{l} Int {l<..<u} = {}"
 | 
|
530  | 
  "{l<..<u} Int {u} = {}"
 | 
|
531  | 
  "{l} Int {l<..u} = {}"
 | 
|
532  | 
  "{l..<u} Int {u} = {}"
 | 
|
| 13735 | 533  | 
by simp+  | 
534  | 
||
| 14577 | 535  | 
text {* One- and two-sided intervals *}
 | 
| 13735 | 536  | 
|
537  | 
lemma ivl_disj_int_one:  | 
|
| 15045 | 538  | 
  "{..l::'a::order} Int {l<..<u} = {}"
 | 
539  | 
  "{..<l} Int {l..<u} = {}"
 | 
|
540  | 
  "{..l} Int {l<..u} = {}"
 | 
|
541  | 
  "{..<l} Int {l..u} = {}"
 | 
|
542  | 
  "{l<..u} Int {u<..} = {}"
 | 
|
543  | 
  "{l<..<u} Int {u..} = {}"
 | 
|
544  | 
  "{l..u} Int {u<..} = {}"
 | 
|
545  | 
  "{l..<u} Int {u..} = {}"
 | 
|
| 
14398
 
c5c47703f763
Efficient, graph-based reasoner for linear and partial orders.
 
ballarin 
parents: 
13850 
diff
changeset
 | 
546  | 
by auto  | 
| 13735 | 547  | 
|
| 14577 | 548  | 
text {* Two- and two-sided intervals *}
 | 
| 13735 | 549  | 
|
550  | 
lemma ivl_disj_int_two:  | 
|
| 15045 | 551  | 
  "{l::'a::order<..<m} Int {m..<u} = {}"
 | 
552  | 
  "{l<..m} Int {m<..<u} = {}"
 | 
|
553  | 
  "{l..<m} Int {m..<u} = {}"
 | 
|
554  | 
  "{l..m} Int {m<..<u} = {}"
 | 
|
555  | 
  "{l<..<m} Int {m..u} = {}"
 | 
|
556  | 
  "{l<..m} Int {m<..u} = {}"
 | 
|
557  | 
  "{l..<m} Int {m..u} = {}"
 | 
|
558  | 
  "{l..m} Int {m<..u} = {}"
 | 
|
| 
14398
 
c5c47703f763
Efficient, graph-based reasoner for linear and partial orders.
 
ballarin 
parents: 
13850 
diff
changeset
 | 
559  | 
by auto  | 
| 13735 | 560  | 
|
561  | 
lemmas ivl_disj_int = ivl_disj_int_singleton ivl_disj_int_one ivl_disj_int_two  | 
|
562  | 
||
| 15542 | 563  | 
subsubsection {* Some Differences *}
 | 
564  | 
||
565  | 
lemma ivl_diff[simp]:  | 
|
566  | 
 "i \<le> n \<Longrightarrow> {i..<m} - {i..<n} = {n..<(m::'a::linorder)}"
 | 
|
567  | 
by(auto)  | 
|
568  | 
||
569  | 
||
570  | 
subsubsection {* Some Subset Conditions *}
 | 
|
571  | 
||
572  | 
lemma ivl_subset[simp]:  | 
|
573  | 
 "({i..<j} \<subseteq> {m..<n}) = (j \<le> i | m \<le> i & j \<le> (n::'a::linorder))"
 | 
|
574  | 
apply(auto simp:linorder_not_le)  | 
|
575  | 
apply(rule ccontr)  | 
|
576  | 
apply(insert linorder_le_less_linear[of i n])  | 
|
577  | 
apply(clarsimp simp:linorder_not_le)  | 
|
578  | 
apply(fastsimp)  | 
|
579  | 
done  | 
|
580  | 
||
| 
15041
 
a6b1f0cef7b3
Got rid of Summation and made it a translation into setsum instead.
 
nipkow 
parents: 
14846 
diff
changeset
 | 
581  | 
|
| 15042 | 582  | 
subsection {* Summation indexed over intervals *}
 | 
583  | 
||
584  | 
syntax  | 
|
585  | 
  "_from_to_setsum" :: "idt \<Rightarrow> 'a \<Rightarrow> 'a \<Rightarrow> 'b \<Rightarrow> 'b" ("(SUM _ = _.._./ _)" [0,0,0,10] 10)
 | 
|
| 15048 | 586  | 
  "_from_upto_setsum" :: "idt \<Rightarrow> 'a \<Rightarrow> 'a \<Rightarrow> 'b \<Rightarrow> 'b" ("(SUM _ = _..<_./ _)" [0,0,0,10] 10)
 | 
| 16052 | 587  | 
  "_upt_setsum" :: "idt \<Rightarrow> 'a \<Rightarrow> 'b \<Rightarrow> 'b" ("(SUM _<_./ _)" [0,0,10] 10)
 | 
588  | 
  "_upto_setsum" :: "idt \<Rightarrow> 'a \<Rightarrow> 'b \<Rightarrow> 'b" ("(SUM _<=_./ _)" [0,0,10] 10)
 | 
|
| 15042 | 589  | 
syntax (xsymbols)  | 
590  | 
  "_from_to_setsum" :: "idt \<Rightarrow> 'a \<Rightarrow> 'a \<Rightarrow> 'b \<Rightarrow> 'b" ("(3\<Sum>_ = _.._./ _)" [0,0,0,10] 10)
 | 
|
| 15048 | 591  | 
  "_from_upto_setsum" :: "idt \<Rightarrow> 'a \<Rightarrow> 'a \<Rightarrow> 'b \<Rightarrow> 'b" ("(3\<Sum>_ = _..<_./ _)" [0,0,0,10] 10)
 | 
| 16052 | 592  | 
  "_upt_setsum" :: "idt \<Rightarrow> 'a \<Rightarrow> 'b \<Rightarrow> 'b" ("(3\<Sum>_<_./ _)" [0,0,10] 10)
 | 
593  | 
  "_upto_setsum" :: "idt \<Rightarrow> 'a \<Rightarrow> 'b \<Rightarrow> 'b" ("(3\<Sum>_\<le>_./ _)" [0,0,10] 10)
 | 
|
| 15042 | 594  | 
syntax (HTML output)  | 
595  | 
  "_from_to_setsum" :: "idt \<Rightarrow> 'a \<Rightarrow> 'a \<Rightarrow> 'b \<Rightarrow> 'b" ("(3\<Sum>_ = _.._./ _)" [0,0,0,10] 10)
 | 
|
| 15048 | 596  | 
  "_from_upto_setsum" :: "idt \<Rightarrow> 'a \<Rightarrow> 'a \<Rightarrow> 'b \<Rightarrow> 'b" ("(3\<Sum>_ = _..<_./ _)" [0,0,0,10] 10)
 | 
| 16052 | 597  | 
  "_upt_setsum" :: "idt \<Rightarrow> 'a \<Rightarrow> 'b \<Rightarrow> 'b" ("(3\<Sum>_<_./ _)" [0,0,10] 10)
 | 
598  | 
  "_upto_setsum" :: "idt \<Rightarrow> 'a \<Rightarrow> 'b \<Rightarrow> 'b" ("(3\<Sum>_\<le>_./ _)" [0,0,10] 10)
 | 
|
| 15056 | 599  | 
syntax (latex_sum output)  | 
| 15052 | 600  | 
"_from_to_setsum" :: "idt \<Rightarrow> 'a \<Rightarrow> 'a \<Rightarrow> 'b \<Rightarrow> 'b"  | 
601  | 
 ("(3\<^raw:$\sum_{>_ = _\<^raw:}^{>_\<^raw:}$> _)" [0,0,0,10] 10)
 | 
|
602  | 
"_from_upto_setsum" :: "idt \<Rightarrow> 'a \<Rightarrow> 'a \<Rightarrow> 'b \<Rightarrow> 'b"  | 
|
603  | 
 ("(3\<^raw:$\sum_{>_ = _\<^raw:}^{<>_\<^raw:}$> _)" [0,0,0,10] 10)
 | 
|
| 16052 | 604  | 
"_upt_setsum" :: "idt \<Rightarrow> 'a \<Rightarrow> 'b \<Rightarrow> 'b"  | 
605  | 
 ("(3\<^raw:$\sum_{>_ < _\<^raw:}$> _)" [0,0,10] 10)
 | 
|
| 15052 | 606  | 
"_upto_setsum" :: "idt \<Rightarrow> 'a \<Rightarrow> 'b \<Rightarrow> 'b"  | 
| 16052 | 607  | 
 ("(3\<^raw:$\sum_{>_ \<le> _\<^raw:}$> _)" [0,0,10] 10)
 | 
| 
15041
 
a6b1f0cef7b3
Got rid of Summation and made it a translation into setsum instead.
 
nipkow 
parents: 
14846 
diff
changeset
 | 
608  | 
|
| 15048 | 609  | 
translations  | 
610  | 
  "\<Sum>x=a..b. t" == "setsum (%x. t) {a..b}"
 | 
|
611  | 
  "\<Sum>x=a..<b. t" == "setsum (%x. t) {a..<b}"
 | 
|
| 16052 | 612  | 
  "\<Sum>i\<le>n. t" == "setsum (\<lambda>i. t) {..n}"
 | 
| 15048 | 613  | 
  "\<Sum>i<n. t" == "setsum (\<lambda>i. t) {..<n}"
 | 
| 
15041
 
a6b1f0cef7b3
Got rid of Summation and made it a translation into setsum instead.
 
nipkow 
parents: 
14846 
diff
changeset
 | 
614  | 
|
| 15052 | 615  | 
text{* The above introduces some pretty alternative syntaxes for
 | 
| 15056 | 616  | 
summation over intervals:  | 
| 15052 | 617  | 
\begin{center}
 | 
618  | 
\begin{tabular}{lll}
 | 
|
| 15056 | 619  | 
Old & New & \LaTeX\\  | 
620  | 
@{term[source]"\<Sum>x\<in>{a..b}. e"} & @{term"\<Sum>x=a..b. e"} & @{term[mode=latex_sum]"\<Sum>x=a..b. e"}\\
 | 
|
621  | 
@{term[source]"\<Sum>x\<in>{a..<b}. e"} & @{term"\<Sum>x=a..<b. e"} & @{term[mode=latex_sum]"\<Sum>x=a..<b. e"}\\
 | 
|
| 16052 | 622  | 
@{term[source]"\<Sum>x\<in>{..b}. e"} & @{term"\<Sum>x\<le>b. e"} & @{term[mode=latex_sum]"\<Sum>x\<le>b. e"}\\
 | 
| 15056 | 623  | 
@{term[source]"\<Sum>x\<in>{..<b}. e"} & @{term"\<Sum>x<b. e"} & @{term[mode=latex_sum]"\<Sum>x<b. e"}
 | 
| 15052 | 624  | 
\end{tabular}
 | 
625  | 
\end{center}
 | 
|
| 15056 | 626  | 
The left column shows the term before introduction of the new syntax,  | 
627  | 
the middle column shows the new (default) syntax, and the right column  | 
|
628  | 
shows a special syntax. The latter is only meaningful for latex output  | 
|
629  | 
and has to be activated explicitly by setting the print mode to  | 
|
| 21502 | 630  | 
@{text latex_sum} (e.g.\ via @{text "mode = latex_sum"} in
 | 
| 15056 | 631  | 
antiquotations). It is not the default \LaTeX\ output because it only  | 
632  | 
works well with italic-style formulae, not tt-style.  | 
|
| 15052 | 633  | 
|
634  | 
Note that for uniformity on @{typ nat} it is better to use
 | 
|
635  | 
@{term"\<Sum>x::nat=0..<n. e"} rather than @{text"\<Sum>x<n. e"}: @{text setsum} may
 | 
|
636  | 
not provide all lemmas available for @{term"{m..<n}"} also in the
 | 
|
637  | 
special form for @{term"{..<n}"}. *}
 | 
|
638  | 
||
| 15542 | 639  | 
text{* This congruence rule should be used for sums over intervals as
 | 
640  | 
the standard theorem @{text[source]setsum_cong} does not work well
 | 
|
641  | 
with the simplifier who adds the unsimplified premise @{term"x:B"} to
 | 
|
642  | 
the context. *}  | 
|
643  | 
||
644  | 
lemma setsum_ivl_cong:  | 
|
645  | 
"\<lbrakk>a = c; b = d; !!x. \<lbrakk> c \<le> x; x < d \<rbrakk> \<Longrightarrow> f x = g x \<rbrakk> \<Longrightarrow>  | 
|
646  | 
 setsum f {a..<b} = setsum g {c..<d}"
 | 
|
647  | 
by(rule setsum_cong, simp_all)  | 
|
| 
15041
 
a6b1f0cef7b3
Got rid of Summation and made it a translation into setsum instead.
 
nipkow 
parents: 
14846 
diff
changeset
 | 
648  | 
|
| 16041 | 649  | 
(* FIXME why are the following simp rules but the corresponding eqns  | 
650  | 
on intervals are not? *)  | 
|
651  | 
||
| 16052 | 652  | 
lemma setsum_atMost_Suc[simp]: "(\<Sum>i \<le> Suc n. f i) = (\<Sum>i \<le> n. f i) + f(Suc n)"  | 
653  | 
by (simp add:atMost_Suc add_ac)  | 
|
654  | 
||
| 16041 | 655  | 
lemma setsum_lessThan_Suc[simp]: "(\<Sum>i < Suc n. f i) = (\<Sum>i < n. f i) + f n"  | 
656  | 
by (simp add:lessThan_Suc add_ac)  | 
|
| 
15041
 
a6b1f0cef7b3
Got rid of Summation and made it a translation into setsum instead.
 
nipkow 
parents: 
14846 
diff
changeset
 | 
657  | 
|
| 15911 | 658  | 
lemma setsum_cl_ivl_Suc[simp]:  | 
| 15561 | 659  | 
  "setsum f {m..Suc n} = (if Suc n < m then 0 else setsum f {m..n} + f(Suc n))"
 | 
660  | 
by (auto simp:add_ac atLeastAtMostSuc_conv)  | 
|
661  | 
||
| 15911 | 662  | 
lemma setsum_op_ivl_Suc[simp]:  | 
| 15561 | 663  | 
  "setsum f {m..<Suc n} = (if n < m then 0 else setsum f {m..<n} + f(n))"
 | 
664  | 
by (auto simp:add_ac atLeastLessThanSuc)  | 
|
| 16041 | 665  | 
(*  | 
| 15561 | 666  | 
lemma setsum_cl_ivl_add_one_nat: "(n::nat) <= m + 1 ==>  | 
667  | 
(\<Sum>i=n..m+1. f i) = (\<Sum>i=n..m. f i) + f(m + 1)"  | 
|
668  | 
by (auto simp:add_ac atLeastAtMostSuc_conv)  | 
|
| 16041 | 669  | 
*)  | 
| 15539 | 670  | 
lemma setsum_add_nat_ivl: "\<lbrakk> m \<le> n; n \<le> p \<rbrakk> \<Longrightarrow>  | 
671  | 
  setsum f {m..<n} + setsum f {n..<p} = setsum f {m..<p::nat}"
 | 
|
672  | 
by (simp add:setsum_Un_disjoint[symmetric] ivl_disj_int ivl_disj_un)  | 
|
673  | 
||
674  | 
lemma setsum_diff_nat_ivl:  | 
|
675  | 
fixes f :: "nat \<Rightarrow> 'a::ab_group_add"  | 
|
676  | 
shows "\<lbrakk> m \<le> n; n \<le> p \<rbrakk> \<Longrightarrow>  | 
|
677  | 
  setsum f {m..<p} - setsum f {m..<n} = setsum f {n..<p}"
 | 
|
678  | 
using setsum_add_nat_ivl [of m n p f,symmetric]  | 
|
679  | 
apply (simp add: add_ac)  | 
|
680  | 
done  | 
|
681  | 
||
| 
16733
 
236dfafbeb63
linear arithmetic now takes "&" in assumptions apart.
 
nipkow 
parents: 
16102 
diff
changeset
 | 
682  | 
subsection{* Shifting bounds *}
 | 
| 
 
236dfafbeb63
linear arithmetic now takes "&" in assumptions apart.
 
nipkow 
parents: 
16102 
diff
changeset
 | 
683  | 
|
| 15539 | 684  | 
lemma setsum_shift_bounds_nat_ivl:  | 
685  | 
  "setsum f {m+k..<n+k} = setsum (%i. f(i + k)){m..<n::nat}"
 | 
|
686  | 
by (induct "n", auto simp:atLeastLessThanSuc)  | 
|
687  | 
||
| 
16733
 
236dfafbeb63
linear arithmetic now takes "&" in assumptions apart.
 
nipkow 
parents: 
16102 
diff
changeset
 | 
688  | 
lemma setsum_shift_bounds_cl_nat_ivl:  | 
| 
 
236dfafbeb63
linear arithmetic now takes "&" in assumptions apart.
 
nipkow 
parents: 
16102 
diff
changeset
 | 
689  | 
  "setsum f {m+k..n+k} = setsum (%i. f(i + k)){m..n::nat}"
 | 
| 
 
236dfafbeb63
linear arithmetic now takes "&" in assumptions apart.
 
nipkow 
parents: 
16102 
diff
changeset
 | 
690  | 
apply (insert setsum_reindex[OF inj_on_add_nat, where h=f and B = "{m..n}"])
 | 
| 
 
236dfafbeb63
linear arithmetic now takes "&" in assumptions apart.
 
nipkow 
parents: 
16102 
diff
changeset
 | 
691  | 
apply (simp add:image_add_atLeastAtMost o_def)  | 
| 
 
236dfafbeb63
linear arithmetic now takes "&" in assumptions apart.
 
nipkow 
parents: 
16102 
diff
changeset
 | 
692  | 
done  | 
| 
 
236dfafbeb63
linear arithmetic now takes "&" in assumptions apart.
 
nipkow 
parents: 
16102 
diff
changeset
 | 
693  | 
|
| 
 
236dfafbeb63
linear arithmetic now takes "&" in assumptions apart.
 
nipkow 
parents: 
16102 
diff
changeset
 | 
694  | 
corollary setsum_shift_bounds_cl_Suc_ivl:  | 
| 
 
236dfafbeb63
linear arithmetic now takes "&" in assumptions apart.
 
nipkow 
parents: 
16102 
diff
changeset
 | 
695  | 
  "setsum f {Suc m..Suc n} = setsum (%i. f(Suc i)){m..n}"
 | 
| 
 
236dfafbeb63
linear arithmetic now takes "&" in assumptions apart.
 
nipkow 
parents: 
16102 
diff
changeset
 | 
696  | 
by (simp add:setsum_shift_bounds_cl_nat_ivl[where k=1,simplified])  | 
| 
 
236dfafbeb63
linear arithmetic now takes "&" in assumptions apart.
 
nipkow 
parents: 
16102 
diff
changeset
 | 
697  | 
|
| 
 
236dfafbeb63
linear arithmetic now takes "&" in assumptions apart.
 
nipkow 
parents: 
16102 
diff
changeset
 | 
698  | 
corollary setsum_shift_bounds_Suc_ivl:  | 
| 
 
236dfafbeb63
linear arithmetic now takes "&" in assumptions apart.
 
nipkow 
parents: 
16102 
diff
changeset
 | 
699  | 
  "setsum f {Suc m..<Suc n} = setsum (%i. f(Suc i)){m..<n}"
 | 
| 
 
236dfafbeb63
linear arithmetic now takes "&" in assumptions apart.
 
nipkow 
parents: 
16102 
diff
changeset
 | 
700  | 
by (simp add:setsum_shift_bounds_nat_ivl[where k=1,simplified])  | 
| 
 
236dfafbeb63
linear arithmetic now takes "&" in assumptions apart.
 
nipkow 
parents: 
16102 
diff
changeset
 | 
701  | 
|
| 
19106
 
6e6b5b1fdc06
* added Library/ASeries (sum of arithmetic series with instantiation to nat and int)
 
kleing 
parents: 
19022 
diff
changeset
 | 
702  | 
lemma setsum_head:  | 
| 
 
6e6b5b1fdc06
* added Library/ASeries (sum of arithmetic series with instantiation to nat and int)
 
kleing 
parents: 
19022 
diff
changeset
 | 
703  | 
fixes n :: nat  | 
| 
 
6e6b5b1fdc06
* added Library/ASeries (sum of arithmetic series with instantiation to nat and int)
 
kleing 
parents: 
19022 
diff
changeset
 | 
704  | 
assumes mn: "m <= n"  | 
| 
 
6e6b5b1fdc06
* added Library/ASeries (sum of arithmetic series with instantiation to nat and int)
 
kleing 
parents: 
19022 
diff
changeset
 | 
705  | 
  shows "(\<Sum>x\<in>{m..n}. P x) = P m + (\<Sum>x\<in>{m<..n}. P x)" (is "?lhs = ?rhs")
 | 
| 
 
6e6b5b1fdc06
* added Library/ASeries (sum of arithmetic series with instantiation to nat and int)
 
kleing 
parents: 
19022 
diff
changeset
 | 
706  | 
proof -  | 
| 
 
6e6b5b1fdc06
* added Library/ASeries (sum of arithmetic series with instantiation to nat and int)
 
kleing 
parents: 
19022 
diff
changeset
 | 
707  | 
from mn  | 
| 
 
6e6b5b1fdc06
* added Library/ASeries (sum of arithmetic series with instantiation to nat and int)
 
kleing 
parents: 
19022 
diff
changeset
 | 
708  | 
  have "{m..n} = {m} \<union> {m<..n}"
 | 
| 
 
6e6b5b1fdc06
* added Library/ASeries (sum of arithmetic series with instantiation to nat and int)
 
kleing 
parents: 
19022 
diff
changeset
 | 
709  | 
by (auto intro: ivl_disj_un_singleton)  | 
| 
 
6e6b5b1fdc06
* added Library/ASeries (sum of arithmetic series with instantiation to nat and int)
 
kleing 
parents: 
19022 
diff
changeset
 | 
710  | 
  hence "?lhs = (\<Sum>x\<in>{m} \<union> {m<..n}. P x)"
 | 
| 
 
6e6b5b1fdc06
* added Library/ASeries (sum of arithmetic series with instantiation to nat and int)
 
kleing 
parents: 
19022 
diff
changeset
 | 
711  | 
by (simp add: atLeast0LessThan)  | 
| 
 
6e6b5b1fdc06
* added Library/ASeries (sum of arithmetic series with instantiation to nat and int)
 
kleing 
parents: 
19022 
diff
changeset
 | 
712  | 
also have "\<dots> = ?rhs" by simp  | 
| 
 
6e6b5b1fdc06
* added Library/ASeries (sum of arithmetic series with instantiation to nat and int)
 
kleing 
parents: 
19022 
diff
changeset
 | 
713  | 
finally show ?thesis .  | 
| 
 
6e6b5b1fdc06
* added Library/ASeries (sum of arithmetic series with instantiation to nat and int)
 
kleing 
parents: 
19022 
diff
changeset
 | 
714  | 
qed  | 
| 
 
6e6b5b1fdc06
* added Library/ASeries (sum of arithmetic series with instantiation to nat and int)
 
kleing 
parents: 
19022 
diff
changeset
 | 
715  | 
|
| 
 
6e6b5b1fdc06
* added Library/ASeries (sum of arithmetic series with instantiation to nat and int)
 
kleing 
parents: 
19022 
diff
changeset
 | 
716  | 
lemma setsum_head_upt:  | 
| 
19022
 
0e6ec4fd204c
* moved ThreeDivides from Isar_examples to better suited HOL/ex
 
kleing 
parents: 
17719 
diff
changeset
 | 
717  | 
fixes m::nat  | 
| 
 
0e6ec4fd204c
* moved ThreeDivides from Isar_examples to better suited HOL/ex
 
kleing 
parents: 
17719 
diff
changeset
 | 
718  | 
assumes m: "0 < m"  | 
| 
19106
 
6e6b5b1fdc06
* added Library/ASeries (sum of arithmetic series with instantiation to nat and int)
 
kleing 
parents: 
19022 
diff
changeset
 | 
719  | 
  shows "(\<Sum>x<m. P x) = P 0 + (\<Sum>x\<in>{1..<m}. P x)"
 | 
| 
19022
 
0e6ec4fd204c
* moved ThreeDivides from Isar_examples to better suited HOL/ex
 
kleing 
parents: 
17719 
diff
changeset
 | 
720  | 
proof -  | 
| 
19106
 
6e6b5b1fdc06
* added Library/ASeries (sum of arithmetic series with instantiation to nat and int)
 
kleing 
parents: 
19022 
diff
changeset
 | 
721  | 
  have "(\<Sum>x<m. P x) = (\<Sum>x\<in>{0..<m}. P x)" 
 | 
| 
19022
 
0e6ec4fd204c
* moved ThreeDivides from Isar_examples to better suited HOL/ex
 
kleing 
parents: 
17719 
diff
changeset
 | 
722  | 
by (simp add: atLeast0LessThan)  | 
| 
19106
 
6e6b5b1fdc06
* added Library/ASeries (sum of arithmetic series with instantiation to nat and int)
 
kleing 
parents: 
19022 
diff
changeset
 | 
723  | 
also  | 
| 
 
6e6b5b1fdc06
* added Library/ASeries (sum of arithmetic series with instantiation to nat and int)
 
kleing 
parents: 
19022 
diff
changeset
 | 
724  | 
from m  | 
| 
 
6e6b5b1fdc06
* added Library/ASeries (sum of arithmetic series with instantiation to nat and int)
 
kleing 
parents: 
19022 
diff
changeset
 | 
725  | 
  have "\<dots> = (\<Sum>x\<in>{0..m - 1}. P x)"
 | 
| 
 
6e6b5b1fdc06
* added Library/ASeries (sum of arithmetic series with instantiation to nat and int)
 
kleing 
parents: 
19022 
diff
changeset
 | 
726  | 
by (cases m) (auto simp add: atLeastLessThanSuc_atLeastAtMost)  | 
| 
 
6e6b5b1fdc06
* added Library/ASeries (sum of arithmetic series with instantiation to nat and int)
 
kleing 
parents: 
19022 
diff
changeset
 | 
727  | 
also  | 
| 
 
6e6b5b1fdc06
* added Library/ASeries (sum of arithmetic series with instantiation to nat and int)
 
kleing 
parents: 
19022 
diff
changeset
 | 
728  | 
  have "\<dots> = P 0 + (\<Sum>x\<in>{0<..m - 1}. P x)"
 | 
| 
 
6e6b5b1fdc06
* added Library/ASeries (sum of arithmetic series with instantiation to nat and int)
 
kleing 
parents: 
19022 
diff
changeset
 | 
729  | 
by (simp add: setsum_head)  | 
| 
 
6e6b5b1fdc06
* added Library/ASeries (sum of arithmetic series with instantiation to nat and int)
 
kleing 
parents: 
19022 
diff
changeset
 | 
730  | 
also  | 
| 
 
6e6b5b1fdc06
* added Library/ASeries (sum of arithmetic series with instantiation to nat and int)
 
kleing 
parents: 
19022 
diff
changeset
 | 
731  | 
from m  | 
| 
 
6e6b5b1fdc06
* added Library/ASeries (sum of arithmetic series with instantiation to nat and int)
 
kleing 
parents: 
19022 
diff
changeset
 | 
732  | 
  have "{0<..m - 1} = {1..<m}" 
 | 
| 
 
6e6b5b1fdc06
* added Library/ASeries (sum of arithmetic series with instantiation to nat and int)
 
kleing 
parents: 
19022 
diff
changeset
 | 
733  | 
by (cases m) (auto simp add: atLeastLessThanSuc_atLeastAtMost)  | 
| 
 
6e6b5b1fdc06
* added Library/ASeries (sum of arithmetic series with instantiation to nat and int)
 
kleing 
parents: 
19022 
diff
changeset
 | 
734  | 
finally show ?thesis .  | 
| 
19022
 
0e6ec4fd204c
* moved ThreeDivides from Isar_examples to better suited HOL/ex
 
kleing 
parents: 
17719 
diff
changeset
 | 
735  | 
qed  | 
| 
 
0e6ec4fd204c
* moved ThreeDivides from Isar_examples to better suited HOL/ex
 
kleing 
parents: 
17719 
diff
changeset
 | 
736  | 
|
| 
17149
 
e2b19c92ef51
Lemmas on dvd, power and finite summation added or strengthened.
 
ballarin 
parents: 
16733 
diff
changeset
 | 
737  | 
subsection {* The formula for geometric sums *}
 | 
| 
 
e2b19c92ef51
Lemmas on dvd, power and finite summation added or strengthened.
 
ballarin 
parents: 
16733 
diff
changeset
 | 
738  | 
|
| 
 
e2b19c92ef51
Lemmas on dvd, power and finite summation added or strengthened.
 
ballarin 
parents: 
16733 
diff
changeset
 | 
739  | 
lemma geometric_sum:  | 
| 
 
e2b19c92ef51
Lemmas on dvd, power and finite summation added or strengthened.
 
ballarin 
parents: 
16733 
diff
changeset
 | 
740  | 
"x ~= 1 ==> (\<Sum>i=0..<n. x ^ i) =  | 
| 22713 | 741  | 
  (x ^ n - 1) / (x - 1::'a::{field, recpower})"
 | 
| 23496 | 742  | 
by (induct "n") (simp_all add:field_simps power_Suc)  | 
| 
17149
 
e2b19c92ef51
Lemmas on dvd, power and finite summation added or strengthened.
 
ballarin 
parents: 
16733 
diff
changeset
 | 
743  | 
|
| 
19469
 
958d2f2dd8d4
moved arithmetic series to geometric series in SetInterval
 
kleing 
parents: 
19376 
diff
changeset
 | 
744  | 
subsection {* The formula for arithmetic sums *}
 | 
| 
 
958d2f2dd8d4
moved arithmetic series to geometric series in SetInterval
 
kleing 
parents: 
19376 
diff
changeset
 | 
745  | 
|
| 
 
958d2f2dd8d4
moved arithmetic series to geometric series in SetInterval
 
kleing 
parents: 
19376 
diff
changeset
 | 
746  | 
lemma gauss_sum:  | 
| 23277 | 747  | 
  "((1::'a::comm_semiring_1) + 1)*(\<Sum>i\<in>{1..n}. of_nat i) =
 | 
| 
19469
 
958d2f2dd8d4
moved arithmetic series to geometric series in SetInterval
 
kleing 
parents: 
19376 
diff
changeset
 | 
748  | 
of_nat n*((of_nat n)+1)"  | 
| 
 
958d2f2dd8d4
moved arithmetic series to geometric series in SetInterval
 
kleing 
parents: 
19376 
diff
changeset
 | 
749  | 
proof (induct n)  | 
| 
 
958d2f2dd8d4
moved arithmetic series to geometric series in SetInterval
 
kleing 
parents: 
19376 
diff
changeset
 | 
750  | 
case 0  | 
| 
 
958d2f2dd8d4
moved arithmetic series to geometric series in SetInterval
 
kleing 
parents: 
19376 
diff
changeset
 | 
751  | 
show ?case by simp  | 
| 
 
958d2f2dd8d4
moved arithmetic series to geometric series in SetInterval
 
kleing 
parents: 
19376 
diff
changeset
 | 
752  | 
next  | 
| 
 
958d2f2dd8d4
moved arithmetic series to geometric series in SetInterval
 
kleing 
parents: 
19376 
diff
changeset
 | 
753  | 
case (Suc n)  | 
| 
23477
 
f4b83f03cac9
tuned and renamed group_eq_simps and ring_eq_simps
 
nipkow 
parents: 
23431 
diff
changeset
 | 
754  | 
then show ?case by (simp add: ring_simps)  | 
| 
19469
 
958d2f2dd8d4
moved arithmetic series to geometric series in SetInterval
 
kleing 
parents: 
19376 
diff
changeset
 | 
755  | 
qed  | 
| 
 
958d2f2dd8d4
moved arithmetic series to geometric series in SetInterval
 
kleing 
parents: 
19376 
diff
changeset
 | 
756  | 
|
| 
 
958d2f2dd8d4
moved arithmetic series to geometric series in SetInterval
 
kleing 
parents: 
19376 
diff
changeset
 | 
757  | 
theorem arith_series_general:  | 
| 23277 | 758  | 
  "((1::'a::comm_semiring_1) + 1) * (\<Sum>i\<in>{..<n}. a + of_nat i * d) =
 | 
| 
19469
 
958d2f2dd8d4
moved arithmetic series to geometric series in SetInterval
 
kleing 
parents: 
19376 
diff
changeset
 | 
759  | 
of_nat n * (a + (a + of_nat(n - 1)*d))"  | 
| 
 
958d2f2dd8d4
moved arithmetic series to geometric series in SetInterval
 
kleing 
parents: 
19376 
diff
changeset
 | 
760  | 
proof cases  | 
| 
 
958d2f2dd8d4
moved arithmetic series to geometric series in SetInterval
 
kleing 
parents: 
19376 
diff
changeset
 | 
761  | 
assume ngt1: "n > 1"  | 
| 
 
958d2f2dd8d4
moved arithmetic series to geometric series in SetInterval
 
kleing 
parents: 
19376 
diff
changeset
 | 
762  | 
let ?I = "\<lambda>i. of_nat i" and ?n = "of_nat n"  | 
| 
 
958d2f2dd8d4
moved arithmetic series to geometric series in SetInterval
 
kleing 
parents: 
19376 
diff
changeset
 | 
763  | 
have  | 
| 
 
958d2f2dd8d4
moved arithmetic series to geometric series in SetInterval
 
kleing 
parents: 
19376 
diff
changeset
 | 
764  | 
    "(\<Sum>i\<in>{..<n}. a+?I i*d) =
 | 
| 
 
958d2f2dd8d4
moved arithmetic series to geometric series in SetInterval
 
kleing 
parents: 
19376 
diff
changeset
 | 
765  | 
     ((\<Sum>i\<in>{..<n}. a) + (\<Sum>i\<in>{..<n}. ?I i*d))"
 | 
| 
 
958d2f2dd8d4
moved arithmetic series to geometric series in SetInterval
 
kleing 
parents: 
19376 
diff
changeset
 | 
766  | 
by (rule setsum_addf)  | 
| 
 
958d2f2dd8d4
moved arithmetic series to geometric series in SetInterval
 
kleing 
parents: 
19376 
diff
changeset
 | 
767  | 
  also from ngt1 have "\<dots> = ?n*a + (\<Sum>i\<in>{..<n}. ?I i*d)" by simp
 | 
| 
 
958d2f2dd8d4
moved arithmetic series to geometric series in SetInterval
 
kleing 
parents: 
19376 
diff
changeset
 | 
768  | 
  also from ngt1 have "\<dots> = (?n*a + d*(\<Sum>i\<in>{1..<n}. ?I i))"
 | 
| 
 
958d2f2dd8d4
moved arithmetic series to geometric series in SetInterval
 
kleing 
parents: 
19376 
diff
changeset
 | 
769  | 
by (simp add: setsum_right_distrib setsum_head_upt mult_ac)  | 
| 
 
958d2f2dd8d4
moved arithmetic series to geometric series in SetInterval
 
kleing 
parents: 
19376 
diff
changeset
 | 
770  | 
  also have "(1+1)*\<dots> = (1+1)*?n*a + d*(1+1)*(\<Sum>i\<in>{1..<n}. ?I i)"
 | 
| 
 
958d2f2dd8d4
moved arithmetic series to geometric series in SetInterval
 
kleing 
parents: 
19376 
diff
changeset
 | 
771  | 
by (simp add: left_distrib right_distrib)  | 
| 
 
958d2f2dd8d4
moved arithmetic series to geometric series in SetInterval
 
kleing 
parents: 
19376 
diff
changeset
 | 
772  | 
  also from ngt1 have "{1..<n} = {1..n - 1}"
 | 
| 
 
958d2f2dd8d4
moved arithmetic series to geometric series in SetInterval
 
kleing 
parents: 
19376 
diff
changeset
 | 
773  | 
by (cases n) (auto simp: atLeastLessThanSuc_atLeastAtMost)  | 
| 
 
958d2f2dd8d4
moved arithmetic series to geometric series in SetInterval
 
kleing 
parents: 
19376 
diff
changeset
 | 
774  | 
also from ngt1  | 
| 
 
958d2f2dd8d4
moved arithmetic series to geometric series in SetInterval
 
kleing 
parents: 
19376 
diff
changeset
 | 
775  | 
  have "(1+1)*?n*a + d*(1+1)*(\<Sum>i\<in>{1..n - 1}. ?I i) = ((1+1)*?n*a + d*?I (n - 1)*?I n)"
 | 
| 
 
958d2f2dd8d4
moved arithmetic series to geometric series in SetInterval
 
kleing 
parents: 
19376 
diff
changeset
 | 
776  | 
by (simp only: mult_ac gauss_sum [of "n - 1"])  | 
| 
23431
 
25ca91279a9b
change simp rules for of_nat to work like int did previously (reorient of_nat_Suc, remove of_nat_mult [simp]); preserve original variable names in legacy int theorems
 
huffman 
parents: 
23413 
diff
changeset
 | 
777  | 
(simp add: mult_ac trans [OF add_commute of_nat_Suc [symmetric]])  | 
| 
19469
 
958d2f2dd8d4
moved arithmetic series to geometric series in SetInterval
 
kleing 
parents: 
19376 
diff
changeset
 | 
778  | 
finally show ?thesis by (simp add: mult_ac add_ac right_distrib)  | 
| 
 
958d2f2dd8d4
moved arithmetic series to geometric series in SetInterval
 
kleing 
parents: 
19376 
diff
changeset
 | 
779  | 
next  | 
| 
 
958d2f2dd8d4
moved arithmetic series to geometric series in SetInterval
 
kleing 
parents: 
19376 
diff
changeset
 | 
780  | 
assume "\<not>(n > 1)"  | 
| 
 
958d2f2dd8d4
moved arithmetic series to geometric series in SetInterval
 
kleing 
parents: 
19376 
diff
changeset
 | 
781  | 
hence "n = 1 \<or> n = 0" by auto  | 
| 
 
958d2f2dd8d4
moved arithmetic series to geometric series in SetInterval
 
kleing 
parents: 
19376 
diff
changeset
 | 
782  | 
thus ?thesis by (auto simp: mult_ac right_distrib)  | 
| 
 
958d2f2dd8d4
moved arithmetic series to geometric series in SetInterval
 
kleing 
parents: 
19376 
diff
changeset
 | 
783  | 
qed  | 
| 
 
958d2f2dd8d4
moved arithmetic series to geometric series in SetInterval
 
kleing 
parents: 
19376 
diff
changeset
 | 
784  | 
|
| 
 
958d2f2dd8d4
moved arithmetic series to geometric series in SetInterval
 
kleing 
parents: 
19376 
diff
changeset
 | 
785  | 
lemma arith_series_nat:  | 
| 
 
958d2f2dd8d4
moved arithmetic series to geometric series in SetInterval
 
kleing 
parents: 
19376 
diff
changeset
 | 
786  | 
  "Suc (Suc 0) * (\<Sum>i\<in>{..<n}. a+i*d) = n * (a + (a+(n - 1)*d))"
 | 
| 
 
958d2f2dd8d4
moved arithmetic series to geometric series in SetInterval
 
kleing 
parents: 
19376 
diff
changeset
 | 
787  | 
proof -  | 
| 
 
958d2f2dd8d4
moved arithmetic series to geometric series in SetInterval
 
kleing 
parents: 
19376 
diff
changeset
 | 
788  | 
have  | 
| 
 
958d2f2dd8d4
moved arithmetic series to geometric series in SetInterval
 
kleing 
parents: 
19376 
diff
changeset
 | 
789  | 
    "((1::nat) + 1) * (\<Sum>i\<in>{..<n::nat}. a + of_nat(i)*d) =
 | 
| 
 
958d2f2dd8d4
moved arithmetic series to geometric series in SetInterval
 
kleing 
parents: 
19376 
diff
changeset
 | 
790  | 
of_nat(n) * (a + (a + of_nat(n - 1)*d))"  | 
| 
 
958d2f2dd8d4
moved arithmetic series to geometric series in SetInterval
 
kleing 
parents: 
19376 
diff
changeset
 | 
791  | 
by (rule arith_series_general)  | 
| 
 
958d2f2dd8d4
moved arithmetic series to geometric series in SetInterval
 
kleing 
parents: 
19376 
diff
changeset
 | 
792  | 
thus ?thesis by (auto simp add: of_nat_id)  | 
| 
 
958d2f2dd8d4
moved arithmetic series to geometric series in SetInterval
 
kleing 
parents: 
19376 
diff
changeset
 | 
793  | 
qed  | 
| 
 
958d2f2dd8d4
moved arithmetic series to geometric series in SetInterval
 
kleing 
parents: 
19376 
diff
changeset
 | 
794  | 
|
| 
 
958d2f2dd8d4
moved arithmetic series to geometric series in SetInterval
 
kleing 
parents: 
19376 
diff
changeset
 | 
795  | 
lemma arith_series_int:  | 
| 
 
958d2f2dd8d4
moved arithmetic series to geometric series in SetInterval
 
kleing 
parents: 
19376 
diff
changeset
 | 
796  | 
  "(2::int) * (\<Sum>i\<in>{..<n}. a + of_nat i * d) =
 | 
| 
 
958d2f2dd8d4
moved arithmetic series to geometric series in SetInterval
 
kleing 
parents: 
19376 
diff
changeset
 | 
797  | 
of_nat n * (a + (a + of_nat(n - 1)*d))"  | 
| 
 
958d2f2dd8d4
moved arithmetic series to geometric series in SetInterval
 
kleing 
parents: 
19376 
diff
changeset
 | 
798  | 
proof -  | 
| 
 
958d2f2dd8d4
moved arithmetic series to geometric series in SetInterval
 
kleing 
parents: 
19376 
diff
changeset
 | 
799  | 
have  | 
| 
 
958d2f2dd8d4
moved arithmetic series to geometric series in SetInterval
 
kleing 
parents: 
19376 
diff
changeset
 | 
800  | 
    "((1::int) + 1) * (\<Sum>i\<in>{..<n}. a + of_nat i * d) =
 | 
| 
 
958d2f2dd8d4
moved arithmetic series to geometric series in SetInterval
 
kleing 
parents: 
19376 
diff
changeset
 | 
801  | 
of_nat(n) * (a + (a + of_nat(n - 1)*d))"  | 
| 
 
958d2f2dd8d4
moved arithmetic series to geometric series in SetInterval
 
kleing 
parents: 
19376 
diff
changeset
 | 
802  | 
by (rule arith_series_general)  | 
| 
 
958d2f2dd8d4
moved arithmetic series to geometric series in SetInterval
 
kleing 
parents: 
19376 
diff
changeset
 | 
803  | 
thus ?thesis by simp  | 
| 
 
958d2f2dd8d4
moved arithmetic series to geometric series in SetInterval
 
kleing 
parents: 
19376 
diff
changeset
 | 
804  | 
qed  | 
| 
15418
 
e28853da5df5
removed two looping simplifications in SetInterval.thy; deleted the .ML file
 
paulson 
parents: 
15402 
diff
changeset
 | 
805  | 
|
| 
19022
 
0e6ec4fd204c
* moved ThreeDivides from Isar_examples to better suited HOL/ex
 
kleing 
parents: 
17719 
diff
changeset
 | 
806  | 
lemma sum_diff_distrib:  | 
| 
 
0e6ec4fd204c
* moved ThreeDivides from Isar_examples to better suited HOL/ex
 
kleing 
parents: 
17719 
diff
changeset
 | 
807  | 
fixes P::"nat\<Rightarrow>nat"  | 
| 
 
0e6ec4fd204c
* moved ThreeDivides from Isar_examples to better suited HOL/ex
 
kleing 
parents: 
17719 
diff
changeset
 | 
808  | 
shows  | 
| 
 
0e6ec4fd204c
* moved ThreeDivides from Isar_examples to better suited HOL/ex
 
kleing 
parents: 
17719 
diff
changeset
 | 
809  | 
"\<forall>x. Q x \<le> P x \<Longrightarrow>  | 
| 
 
0e6ec4fd204c
* moved ThreeDivides from Isar_examples to better suited HOL/ex
 
kleing 
parents: 
17719 
diff
changeset
 | 
810  | 
(\<Sum>x<n. P x) - (\<Sum>x<n. Q x) = (\<Sum>x<n. P x - Q x)"  | 
| 
 
0e6ec4fd204c
* moved ThreeDivides from Isar_examples to better suited HOL/ex
 
kleing 
parents: 
17719 
diff
changeset
 | 
811  | 
proof (induct n)  | 
| 
 
0e6ec4fd204c
* moved ThreeDivides from Isar_examples to better suited HOL/ex
 
kleing 
parents: 
17719 
diff
changeset
 | 
812  | 
case 0 show ?case by simp  | 
| 
 
0e6ec4fd204c
* moved ThreeDivides from Isar_examples to better suited HOL/ex
 
kleing 
parents: 
17719 
diff
changeset
 | 
813  | 
next  | 
| 
 
0e6ec4fd204c
* moved ThreeDivides from Isar_examples to better suited HOL/ex
 
kleing 
parents: 
17719 
diff
changeset
 | 
814  | 
case (Suc n)  | 
| 
 
0e6ec4fd204c
* moved ThreeDivides from Isar_examples to better suited HOL/ex
 
kleing 
parents: 
17719 
diff
changeset
 | 
815  | 
|
| 
 
0e6ec4fd204c
* moved ThreeDivides from Isar_examples to better suited HOL/ex
 
kleing 
parents: 
17719 
diff
changeset
 | 
816  | 
let ?lhs = "(\<Sum>x<n. P x) - (\<Sum>x<n. Q x)"  | 
| 
 
0e6ec4fd204c
* moved ThreeDivides from Isar_examples to better suited HOL/ex
 
kleing 
parents: 
17719 
diff
changeset
 | 
817  | 
let ?rhs = "\<Sum>x<n. P x - Q x"  | 
| 
 
0e6ec4fd204c
* moved ThreeDivides from Isar_examples to better suited HOL/ex
 
kleing 
parents: 
17719 
diff
changeset
 | 
818  | 
|
| 
 
0e6ec4fd204c
* moved ThreeDivides from Isar_examples to better suited HOL/ex
 
kleing 
parents: 
17719 
diff
changeset
 | 
819  | 
from Suc have "?lhs = ?rhs" by simp  | 
| 
 
0e6ec4fd204c
* moved ThreeDivides from Isar_examples to better suited HOL/ex
 
kleing 
parents: 
17719 
diff
changeset
 | 
820  | 
moreover  | 
| 
 
0e6ec4fd204c
* moved ThreeDivides from Isar_examples to better suited HOL/ex
 
kleing 
parents: 
17719 
diff
changeset
 | 
821  | 
from Suc have "?lhs + P n - Q n = ?rhs + (P n - Q n)" by simp  | 
| 
 
0e6ec4fd204c
* moved ThreeDivides from Isar_examples to better suited HOL/ex
 
kleing 
parents: 
17719 
diff
changeset
 | 
822  | 
moreover  | 
| 
 
0e6ec4fd204c
* moved ThreeDivides from Isar_examples to better suited HOL/ex
 
kleing 
parents: 
17719 
diff
changeset
 | 
823  | 
from Suc have  | 
| 
 
0e6ec4fd204c
* moved ThreeDivides from Isar_examples to better suited HOL/ex
 
kleing 
parents: 
17719 
diff
changeset
 | 
824  | 
"(\<Sum>x<n. P x) + P n - ((\<Sum>x<n. Q x) + Q n) = ?rhs + (P n - Q n)"  | 
| 
 
0e6ec4fd204c
* moved ThreeDivides from Isar_examples to better suited HOL/ex
 
kleing 
parents: 
17719 
diff
changeset
 | 
825  | 
by (subst diff_diff_left[symmetric],  | 
| 
 
0e6ec4fd204c
* moved ThreeDivides from Isar_examples to better suited HOL/ex
 
kleing 
parents: 
17719 
diff
changeset
 | 
826  | 
subst diff_add_assoc2)  | 
| 
 
0e6ec4fd204c
* moved ThreeDivides from Isar_examples to better suited HOL/ex
 
kleing 
parents: 
17719 
diff
changeset
 | 
827  | 
(auto simp: diff_add_assoc2 intro: setsum_mono)  | 
| 
 
0e6ec4fd204c
* moved ThreeDivides from Isar_examples to better suited HOL/ex
 
kleing 
parents: 
17719 
diff
changeset
 | 
828  | 
ultimately  | 
| 
 
0e6ec4fd204c
* moved ThreeDivides from Isar_examples to better suited HOL/ex
 
kleing 
parents: 
17719 
diff
changeset
 | 
829  | 
show ?case by simp  | 
| 
 
0e6ec4fd204c
* moved ThreeDivides from Isar_examples to better suited HOL/ex
 
kleing 
parents: 
17719 
diff
changeset
 | 
830  | 
qed  | 
| 
 
0e6ec4fd204c
* moved ThreeDivides from Isar_examples to better suited HOL/ex
 
kleing 
parents: 
17719 
diff
changeset
 | 
831  | 
|
| 
 
0e6ec4fd204c
* moved ThreeDivides from Isar_examples to better suited HOL/ex
 
kleing 
parents: 
17719 
diff
changeset
 | 
832  | 
|
| 
15418
 
e28853da5df5
removed two looping simplifications in SetInterval.thy; deleted the .ML file
 
paulson 
parents: 
15402 
diff
changeset
 | 
833  | 
ML  | 
| 
 
e28853da5df5
removed two looping simplifications in SetInterval.thy; deleted the .ML file
 
paulson 
parents: 
15402 
diff
changeset
 | 
834  | 
{*
 | 
| 
 
e28853da5df5
removed two looping simplifications in SetInterval.thy; deleted the .ML file
 
paulson 
parents: 
15402 
diff
changeset
 | 
835  | 
val Compl_atLeast = thm "Compl_atLeast";  | 
| 
 
e28853da5df5
removed two looping simplifications in SetInterval.thy; deleted the .ML file
 
paulson 
parents: 
15402 
diff
changeset
 | 
836  | 
val Compl_atMost = thm "Compl_atMost";  | 
| 
 
e28853da5df5
removed two looping simplifications in SetInterval.thy; deleted the .ML file
 
paulson 
parents: 
15402 
diff
changeset
 | 
837  | 
val Compl_greaterThan = thm "Compl_greaterThan";  | 
| 
 
e28853da5df5
removed two looping simplifications in SetInterval.thy; deleted the .ML file
 
paulson 
parents: 
15402 
diff
changeset
 | 
838  | 
val Compl_lessThan = thm "Compl_lessThan";  | 
| 
 
e28853da5df5
removed two looping simplifications in SetInterval.thy; deleted the .ML file
 
paulson 
parents: 
15402 
diff
changeset
 | 
839  | 
val INT_greaterThan_UNIV = thm "INT_greaterThan_UNIV";  | 
| 
 
e28853da5df5
removed two looping simplifications in SetInterval.thy; deleted the .ML file
 
paulson 
parents: 
15402 
diff
changeset
 | 
840  | 
val UN_atLeast_UNIV = thm "UN_atLeast_UNIV";  | 
| 
 
e28853da5df5
removed two looping simplifications in SetInterval.thy; deleted the .ML file
 
paulson 
parents: 
15402 
diff
changeset
 | 
841  | 
val UN_atMost_UNIV = thm "UN_atMost_UNIV";  | 
| 
 
e28853da5df5
removed two looping simplifications in SetInterval.thy; deleted the .ML file
 
paulson 
parents: 
15402 
diff
changeset
 | 
842  | 
val UN_lessThan_UNIV = thm "UN_lessThan_UNIV";  | 
| 
 
e28853da5df5
removed two looping simplifications in SetInterval.thy; deleted the .ML file
 
paulson 
parents: 
15402 
diff
changeset
 | 
843  | 
val atLeastAtMost_def = thm "atLeastAtMost_def";  | 
| 
 
e28853da5df5
removed two looping simplifications in SetInterval.thy; deleted the .ML file
 
paulson 
parents: 
15402 
diff
changeset
 | 
844  | 
val atLeastAtMost_iff = thm "atLeastAtMost_iff";  | 
| 
 
e28853da5df5
removed two looping simplifications in SetInterval.thy; deleted the .ML file
 
paulson 
parents: 
15402 
diff
changeset
 | 
845  | 
val atLeastLessThan_def = thm "atLeastLessThan_def";  | 
| 
 
e28853da5df5
removed two looping simplifications in SetInterval.thy; deleted the .ML file
 
paulson 
parents: 
15402 
diff
changeset
 | 
846  | 
val atLeastLessThan_iff = thm "atLeastLessThan_iff";  | 
| 
 
e28853da5df5
removed two looping simplifications in SetInterval.thy; deleted the .ML file
 
paulson 
parents: 
15402 
diff
changeset
 | 
847  | 
val atLeast_0 = thm "atLeast_0";  | 
| 
 
e28853da5df5
removed two looping simplifications in SetInterval.thy; deleted the .ML file
 
paulson 
parents: 
15402 
diff
changeset
 | 
848  | 
val atLeast_Suc = thm "atLeast_Suc";  | 
| 
 
e28853da5df5
removed two looping simplifications in SetInterval.thy; deleted the .ML file
 
paulson 
parents: 
15402 
diff
changeset
 | 
849  | 
val atLeast_def = thm "atLeast_def";  | 
| 
 
e28853da5df5
removed two looping simplifications in SetInterval.thy; deleted the .ML file
 
paulson 
parents: 
15402 
diff
changeset
 | 
850  | 
val atLeast_iff = thm "atLeast_iff";  | 
| 
 
e28853da5df5
removed two looping simplifications in SetInterval.thy; deleted the .ML file
 
paulson 
parents: 
15402 
diff
changeset
 | 
851  | 
val atMost_0 = thm "atMost_0";  | 
| 
 
e28853da5df5
removed two looping simplifications in SetInterval.thy; deleted the .ML file
 
paulson 
parents: 
15402 
diff
changeset
 | 
852  | 
val atMost_Int_atLeast = thm "atMost_Int_atLeast";  | 
| 
 
e28853da5df5
removed two looping simplifications in SetInterval.thy; deleted the .ML file
 
paulson 
parents: 
15402 
diff
changeset
 | 
853  | 
val atMost_Suc = thm "atMost_Suc";  | 
| 
 
e28853da5df5
removed two looping simplifications in SetInterval.thy; deleted the .ML file
 
paulson 
parents: 
15402 
diff
changeset
 | 
854  | 
val atMost_def = thm "atMost_def";  | 
| 
 
e28853da5df5
removed two looping simplifications in SetInterval.thy; deleted the .ML file
 
paulson 
parents: 
15402 
diff
changeset
 | 
855  | 
val atMost_iff = thm "atMost_iff";  | 
| 
 
e28853da5df5
removed two looping simplifications in SetInterval.thy; deleted the .ML file
 
paulson 
parents: 
15402 
diff
changeset
 | 
856  | 
val greaterThanAtMost_def = thm "greaterThanAtMost_def";  | 
| 
 
e28853da5df5
removed two looping simplifications in SetInterval.thy; deleted the .ML file
 
paulson 
parents: 
15402 
diff
changeset
 | 
857  | 
val greaterThanAtMost_iff = thm "greaterThanAtMost_iff";  | 
| 
 
e28853da5df5
removed two looping simplifications in SetInterval.thy; deleted the .ML file
 
paulson 
parents: 
15402 
diff
changeset
 | 
858  | 
val greaterThanLessThan_def = thm "greaterThanLessThan_def";  | 
| 
 
e28853da5df5
removed two looping simplifications in SetInterval.thy; deleted the .ML file
 
paulson 
parents: 
15402 
diff
changeset
 | 
859  | 
val greaterThanLessThan_iff = thm "greaterThanLessThan_iff";  | 
| 
 
e28853da5df5
removed two looping simplifications in SetInterval.thy; deleted the .ML file
 
paulson 
parents: 
15402 
diff
changeset
 | 
860  | 
val greaterThan_0 = thm "greaterThan_0";  | 
| 
 
e28853da5df5
removed two looping simplifications in SetInterval.thy; deleted the .ML file
 
paulson 
parents: 
15402 
diff
changeset
 | 
861  | 
val greaterThan_Suc = thm "greaterThan_Suc";  | 
| 
 
e28853da5df5
removed two looping simplifications in SetInterval.thy; deleted the .ML file
 
paulson 
parents: 
15402 
diff
changeset
 | 
862  | 
val greaterThan_def = thm "greaterThan_def";  | 
| 
 
e28853da5df5
removed two looping simplifications in SetInterval.thy; deleted the .ML file
 
paulson 
parents: 
15402 
diff
changeset
 | 
863  | 
val greaterThan_iff = thm "greaterThan_iff";  | 
| 
 
e28853da5df5
removed two looping simplifications in SetInterval.thy; deleted the .ML file
 
paulson 
parents: 
15402 
diff
changeset
 | 
864  | 
val ivl_disj_int = thms "ivl_disj_int";  | 
| 
 
e28853da5df5
removed two looping simplifications in SetInterval.thy; deleted the .ML file
 
paulson 
parents: 
15402 
diff
changeset
 | 
865  | 
val ivl_disj_int_one = thms "ivl_disj_int_one";  | 
| 
 
e28853da5df5
removed two looping simplifications in SetInterval.thy; deleted the .ML file
 
paulson 
parents: 
15402 
diff
changeset
 | 
866  | 
val ivl_disj_int_singleton = thms "ivl_disj_int_singleton";  | 
| 
 
e28853da5df5
removed two looping simplifications in SetInterval.thy; deleted the .ML file
 
paulson 
parents: 
15402 
diff
changeset
 | 
867  | 
val ivl_disj_int_two = thms "ivl_disj_int_two";  | 
| 
 
e28853da5df5
removed two looping simplifications in SetInterval.thy; deleted the .ML file
 
paulson 
parents: 
15402 
diff
changeset
 | 
868  | 
val ivl_disj_un = thms "ivl_disj_un";  | 
| 
 
e28853da5df5
removed two looping simplifications in SetInterval.thy; deleted the .ML file
 
paulson 
parents: 
15402 
diff
changeset
 | 
869  | 
val ivl_disj_un_one = thms "ivl_disj_un_one";  | 
| 
 
e28853da5df5
removed two looping simplifications in SetInterval.thy; deleted the .ML file
 
paulson 
parents: 
15402 
diff
changeset
 | 
870  | 
val ivl_disj_un_singleton = thms "ivl_disj_un_singleton";  | 
| 
 
e28853da5df5
removed two looping simplifications in SetInterval.thy; deleted the .ML file
 
paulson 
parents: 
15402 
diff
changeset
 | 
871  | 
val ivl_disj_un_two = thms "ivl_disj_un_two";  | 
| 
 
e28853da5df5
removed two looping simplifications in SetInterval.thy; deleted the .ML file
 
paulson 
parents: 
15402 
diff
changeset
 | 
872  | 
val lessThan_0 = thm "lessThan_0";  | 
| 
 
e28853da5df5
removed two looping simplifications in SetInterval.thy; deleted the .ML file
 
paulson 
parents: 
15402 
diff
changeset
 | 
873  | 
val lessThan_Suc = thm "lessThan_Suc";  | 
| 
 
e28853da5df5
removed two looping simplifications in SetInterval.thy; deleted the .ML file
 
paulson 
parents: 
15402 
diff
changeset
 | 
874  | 
val lessThan_Suc_atMost = thm "lessThan_Suc_atMost";  | 
| 
 
e28853da5df5
removed two looping simplifications in SetInterval.thy; deleted the .ML file
 
paulson 
parents: 
15402 
diff
changeset
 | 
875  | 
val lessThan_def = thm "lessThan_def";  | 
| 
 
e28853da5df5
removed two looping simplifications in SetInterval.thy; deleted the .ML file
 
paulson 
parents: 
15402 
diff
changeset
 | 
876  | 
val lessThan_iff = thm "lessThan_iff";  | 
| 
 
e28853da5df5
removed two looping simplifications in SetInterval.thy; deleted the .ML file
 
paulson 
parents: 
15402 
diff
changeset
 | 
877  | 
val single_Diff_lessThan = thm "single_Diff_lessThan";  | 
| 
 
e28853da5df5
removed two looping simplifications in SetInterval.thy; deleted the .ML file
 
paulson 
parents: 
15402 
diff
changeset
 | 
878  | 
|
| 
 
e28853da5df5
removed two looping simplifications in SetInterval.thy; deleted the .ML file
 
paulson 
parents: 
15402 
diff
changeset
 | 
879  | 
val bounded_nat_set_is_finite = thm "bounded_nat_set_is_finite";  | 
| 
 
e28853da5df5
removed two looping simplifications in SetInterval.thy; deleted the .ML file
 
paulson 
parents: 
15402 
diff
changeset
 | 
880  | 
val finite_atMost = thm "finite_atMost";  | 
| 
 
e28853da5df5
removed two looping simplifications in SetInterval.thy; deleted the .ML file
 
paulson 
parents: 
15402 
diff
changeset
 | 
881  | 
val finite_lessThan = thm "finite_lessThan";  | 
| 
 
e28853da5df5
removed two looping simplifications in SetInterval.thy; deleted the .ML file
 
paulson 
parents: 
15402 
diff
changeset
 | 
882  | 
*}  | 
| 
 
e28853da5df5
removed two looping simplifications in SetInterval.thy; deleted the .ML file
 
paulson 
parents: 
15402 
diff
changeset
 | 
883  | 
|
| 8924 | 884  | 
end  |