src/HOL/Euclidean_Division.thy
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(*  Title:      HOL/Euclidean_Division.thy
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    Author:     Manuel Eberl, TU Muenchen
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    Author:     Florian Haftmann, TU Muenchen
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*)
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section \<open>Division in euclidean (semi)rings\<close>
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theory Euclidean_Division
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  imports Int Lattices_Big
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begin
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subsection \<open>Euclidean (semi)rings with explicit division and remainder\<close>
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class euclidean_semiring = semidom_modulo + 
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  fixes euclidean_size :: "'a \<Rightarrow> nat"
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  assumes size_0 [simp]: "euclidean_size 0 = 0"
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  assumes mod_size_less: 
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    "b \<noteq> 0 \<Longrightarrow> euclidean_size (a mod b) < euclidean_size b"
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  assumes size_mult_mono:
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    "b \<noteq> 0 \<Longrightarrow> euclidean_size a \<le> euclidean_size (a * b)"
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begin
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lemma euclidean_size_eq_0_iff [simp]:
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  "euclidean_size b = 0 \<longleftrightarrow> b = 0"
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proof
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  assume "b = 0"
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  then show "euclidean_size b = 0"
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    by simp
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next
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  assume "euclidean_size b = 0"
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  show "b = 0"
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  proof (rule ccontr)
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    assume "b \<noteq> 0"
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    with mod_size_less have "euclidean_size (b mod b) < euclidean_size b" .
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    with \<open>euclidean_size b = 0\<close> show False
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      by simp
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  qed
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qed
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lemma euclidean_size_greater_0_iff [simp]:
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  "euclidean_size b > 0 \<longleftrightarrow> b \<noteq> 0"
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  using euclidean_size_eq_0_iff [symmetric, of b] by safe simp
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lemma size_mult_mono': "b \<noteq> 0 \<Longrightarrow> euclidean_size a \<le> euclidean_size (b * a)"
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  by (subst mult.commute) (rule size_mult_mono)
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lemma dvd_euclidean_size_eq_imp_dvd:
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  assumes "a \<noteq> 0" and "euclidean_size a = euclidean_size b"
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    and "b dvd a" 
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  shows "a dvd b"
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proof (rule ccontr)
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  assume "\<not> a dvd b"
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  hence "b mod a \<noteq> 0" using mod_0_imp_dvd [of b a] by blast
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  then have "b mod a \<noteq> 0" by (simp add: mod_eq_0_iff_dvd)
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  from \<open>b dvd a\<close> have "b dvd b mod a" by (simp add: dvd_mod_iff)
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  then obtain c where "b mod a = b * c" unfolding dvd_def by blast
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    with \<open>b mod a \<noteq> 0\<close> have "c \<noteq> 0" by auto
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  with \<open>b mod a = b * c\<close> have "euclidean_size (b mod a) \<ge> euclidean_size b"
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    using size_mult_mono by force
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  moreover from \<open>\<not> a dvd b\<close> and \<open>a \<noteq> 0\<close>
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  have "euclidean_size (b mod a) < euclidean_size a"
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    using mod_size_less by blast
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  ultimately show False using \<open>euclidean_size a = euclidean_size b\<close>
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    by simp
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qed
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lemma euclidean_size_times_unit:
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  assumes "is_unit a"
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  shows   "euclidean_size (a * b) = euclidean_size b"
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proof (rule antisym)
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  from assms have [simp]: "a \<noteq> 0" by auto
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  thus "euclidean_size (a * b) \<ge> euclidean_size b" by (rule size_mult_mono')
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  from assms have "is_unit (1 div a)" by simp
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  hence "1 div a \<noteq> 0" by (intro notI) simp_all
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  hence "euclidean_size (a * b) \<le> euclidean_size ((1 div a) * (a * b))"
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    by (rule size_mult_mono')
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  also from assms have "(1 div a) * (a * b) = b"
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    by (simp add: algebra_simps unit_div_mult_swap)
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  finally show "euclidean_size (a * b) \<le> euclidean_size b" .
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qed
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lemma euclidean_size_unit:
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  "is_unit a \<Longrightarrow> euclidean_size a = euclidean_size 1"
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  using euclidean_size_times_unit [of a 1] by simp
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lemma unit_iff_euclidean_size: 
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  "is_unit a \<longleftrightarrow> euclidean_size a = euclidean_size 1 \<and> a \<noteq> 0"
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proof safe
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  assume A: "a \<noteq> 0" and B: "euclidean_size a = euclidean_size 1"
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  show "is_unit a"
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    by (rule dvd_euclidean_size_eq_imp_dvd [OF A B]) simp_all
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qed (auto intro: euclidean_size_unit)
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lemma euclidean_size_times_nonunit:
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  assumes "a \<noteq> 0" "b \<noteq> 0" "\<not> is_unit a"
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  shows   "euclidean_size b < euclidean_size (a * b)"
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proof (rule ccontr)
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  assume "\<not>euclidean_size b < euclidean_size (a * b)"
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  with size_mult_mono'[OF assms(1), of b] 
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    have eq: "euclidean_size (a * b) = euclidean_size b" by simp
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  have "a * b dvd b"
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    by (rule dvd_euclidean_size_eq_imp_dvd [OF _ eq]) (insert assms, simp_all)
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  hence "a * b dvd 1 * b" by simp
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  with \<open>b \<noteq> 0\<close> have "is_unit a" by (subst (asm) dvd_times_right_cancel_iff)
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  with assms(3) show False by contradiction
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qed
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lemma dvd_imp_size_le:
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  assumes "a dvd b" "b \<noteq> 0" 
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  shows   "euclidean_size a \<le> euclidean_size b"
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  using assms by (auto elim!: dvdE simp: size_mult_mono)
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lemma dvd_proper_imp_size_less:
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  assumes "a dvd b" "\<not> b dvd a" "b \<noteq> 0" 
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  shows   "euclidean_size a < euclidean_size b"
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proof -
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  from assms(1) obtain c where "b = a * c" by (erule dvdE)
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  hence z: "b = c * a" by (simp add: mult.commute)
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  from z assms have "\<not>is_unit c" by (auto simp: mult.commute mult_unit_dvd_iff)
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  with z assms show ?thesis
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    by (auto intro!: euclidean_size_times_nonunit)
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qed
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lemma unit_imp_mod_eq_0:
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  "a mod b = 0" if "is_unit b"
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  using that by (simp add: mod_eq_0_iff_dvd unit_imp_dvd)
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lemma mod_eq_self_iff_div_eq_0:
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  "a mod b = a \<longleftrightarrow> a div b = 0" (is "?P \<longleftrightarrow> ?Q")
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proof
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  assume ?P
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  with div_mult_mod_eq [of a b] show ?Q
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    by auto
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next
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  assume ?Q
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  with div_mult_mod_eq [of a b] show ?P
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    by simp
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qed
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lemma coprime_mod_left_iff [simp]:
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  "coprime (a mod b) b \<longleftrightarrow> coprime a b" if "b \<noteq> 0"
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  by (rule; rule coprimeI)
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    (use that in \<open>auto dest!: dvd_mod_imp_dvd coprime_common_divisor simp add: dvd_mod_iff\<close>)
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lemma coprime_mod_right_iff [simp]:
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  "coprime a (b mod a) \<longleftrightarrow> coprime a b" if "a \<noteq> 0"
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  using that coprime_mod_left_iff [of a b] by (simp add: ac_simps)
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end
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class euclidean_ring = idom_modulo + euclidean_semiring
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begin
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lemma dvd_diff_commute [ac_simps]:
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  "a dvd c - b \<longleftrightarrow> a dvd b - c"
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proof -
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  have "a dvd c - b \<longleftrightarrow> a dvd (c - b) * - 1"
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    by (subst dvd_mult_unit_iff) simp_all
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  then show ?thesis
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parents: 66840
diff changeset
   160
    by simp
960509bfd47e added lemmas and tuned proofs
haftmann
parents: 66840
diff changeset
   161
qed
960509bfd47e added lemmas and tuned proofs
haftmann
parents: 66840
diff changeset
   162
 
960509bfd47e added lemmas and tuned proofs
haftmann
parents: 66840
diff changeset
   163
end
64785
ae0bbc8e45ad moved euclidean ring to HOL
haftmann
parents:
diff changeset
   164
66840
0d689d71dbdc canonical multiplicative euclidean size
haftmann
parents: 66839
diff changeset
   165
66806
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   166
subsection \<open>Euclidean (semi)rings with cancel rules\<close>
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   167
70147
1657688a6406 backed out a93e6472ac9c, which does not bring anything substantial: division_ring is not commutative in multiplication but semidom_divide is
haftmann
parents: 70094
diff changeset
   168
class euclidean_semiring_cancel = euclidean_semiring +
1657688a6406 backed out a93e6472ac9c, which does not bring anything substantial: division_ring is not commutative in multiplication but semidom_divide is
haftmann
parents: 70094
diff changeset
   169
  assumes div_mult_self1 [simp]: "b \<noteq> 0 \<Longrightarrow> (a + c * b) div b = c + a div b"
1657688a6406 backed out a93e6472ac9c, which does not bring anything substantial: division_ring is not commutative in multiplication but semidom_divide is
haftmann
parents: 70094
diff changeset
   170
  and div_mult_mult1 [simp]: "c \<noteq> 0 \<Longrightarrow> (c * a) div (c * b) = a div b"
66806
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   171
begin
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   172
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   173
lemma div_mult_self2 [simp]:
70147
1657688a6406 backed out a93e6472ac9c, which does not bring anything substantial: division_ring is not commutative in multiplication but semidom_divide is
haftmann
parents: 70094
diff changeset
   174
  assumes "b \<noteq> 0"
1657688a6406 backed out a93e6472ac9c, which does not bring anything substantial: division_ring is not commutative in multiplication but semidom_divide is
haftmann
parents: 70094
diff changeset
   175
  shows "(a + b * c) div b = c + a div b"
1657688a6406 backed out a93e6472ac9c, which does not bring anything substantial: division_ring is not commutative in multiplication but semidom_divide is
haftmann
parents: 70094
diff changeset
   176
  using assms div_mult_self1 [of b a c] by (simp add: mult.commute)
66806
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   177
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   178
lemma div_mult_self3 [simp]:
70147
1657688a6406 backed out a93e6472ac9c, which does not bring anything substantial: division_ring is not commutative in multiplication but semidom_divide is
haftmann
parents: 70094
diff changeset
   179
  assumes "b \<noteq> 0"
1657688a6406 backed out a93e6472ac9c, which does not bring anything substantial: division_ring is not commutative in multiplication but semidom_divide is
haftmann
parents: 70094
diff changeset
   180
  shows "(c * b + a) div b = c + a div b"
1657688a6406 backed out a93e6472ac9c, which does not bring anything substantial: division_ring is not commutative in multiplication but semidom_divide is
haftmann
parents: 70094
diff changeset
   181
  using assms by (simp add: add.commute)
66806
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   182
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   183
lemma div_mult_self4 [simp]:
70147
1657688a6406 backed out a93e6472ac9c, which does not bring anything substantial: division_ring is not commutative in multiplication but semidom_divide is
haftmann
parents: 70094
diff changeset
   184
  assumes "b \<noteq> 0"
1657688a6406 backed out a93e6472ac9c, which does not bring anything substantial: division_ring is not commutative in multiplication but semidom_divide is
haftmann
parents: 70094
diff changeset
   185
  shows "(b * c + a) div b = c + a div b"
1657688a6406 backed out a93e6472ac9c, which does not bring anything substantial: division_ring is not commutative in multiplication but semidom_divide is
haftmann
parents: 70094
diff changeset
   186
  using assms by (simp add: add.commute)
66806
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   187
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   188
lemma mod_mult_self1 [simp]: "(a + c * b) mod b = a mod b"
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   189
proof (cases "b = 0")
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   190
  case True then show ?thesis by simp
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   191
next
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   192
  case False
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   193
  have "a + c * b = (a + c * b) div b * b + (a + c * b) mod b"
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   194
    by (simp add: div_mult_mod_eq)
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   195
  also from False div_mult_self1 [of b a c] have
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   196
    "\<dots> = (c + a div b) * b + (a + c * b) mod b"
70147
1657688a6406 backed out a93e6472ac9c, which does not bring anything substantial: division_ring is not commutative in multiplication but semidom_divide is
haftmann
parents: 70094
diff changeset
   197
      by (simp add: algebra_simps)
66806
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   198
  finally have "a = a div b * b + (a + c * b) mod b"
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   199
    by (simp add: add.commute [of a] add.assoc distrib_right)
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   200
  then have "a div b * b + (a + c * b) mod b = a div b * b + a mod b"
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   201
    by (simp add: div_mult_mod_eq)
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   202
  then show ?thesis by simp
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   203
qed
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   204
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   205
lemma mod_mult_self2 [simp]:
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   206
  "(a + b * c) mod b = a mod b"
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   207
  by (simp add: mult.commute [of b])
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   208
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   209
lemma mod_mult_self3 [simp]:
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   210
  "(c * b + a) mod b = a mod b"
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   211
  by (simp add: add.commute)
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   212
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   213
lemma mod_mult_self4 [simp]:
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   214
  "(b * c + a) mod b = a mod b"
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   215
  by (simp add: add.commute)
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   216
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   217
lemma mod_mult_self1_is_0 [simp]:
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   218
  "b * a mod b = 0"
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   219
  using mod_mult_self2 [of 0 b a] by simp
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   220
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   221
lemma mod_mult_self2_is_0 [simp]:
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   222
  "a * b mod b = 0"
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   223
  using mod_mult_self1 [of 0 a b] by simp
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   224
70147
1657688a6406 backed out a93e6472ac9c, which does not bring anything substantial: division_ring is not commutative in multiplication but semidom_divide is
haftmann
parents: 70094
diff changeset
   225
lemma div_add_self1:
1657688a6406 backed out a93e6472ac9c, which does not bring anything substantial: division_ring is not commutative in multiplication but semidom_divide is
haftmann
parents: 70094
diff changeset
   226
  assumes "b \<noteq> 0"
1657688a6406 backed out a93e6472ac9c, which does not bring anything substantial: division_ring is not commutative in multiplication but semidom_divide is
haftmann
parents: 70094
diff changeset
   227
  shows "(b + a) div b = a div b + 1"
1657688a6406 backed out a93e6472ac9c, which does not bring anything substantial: division_ring is not commutative in multiplication but semidom_divide is
haftmann
parents: 70094
diff changeset
   228
  using assms div_mult_self1 [of b a 1] by (simp add: add.commute)
1657688a6406 backed out a93e6472ac9c, which does not bring anything substantial: division_ring is not commutative in multiplication but semidom_divide is
haftmann
parents: 70094
diff changeset
   229
1657688a6406 backed out a93e6472ac9c, which does not bring anything substantial: division_ring is not commutative in multiplication but semidom_divide is
haftmann
parents: 70094
diff changeset
   230
lemma div_add_self2:
1657688a6406 backed out a93e6472ac9c, which does not bring anything substantial: division_ring is not commutative in multiplication but semidom_divide is
haftmann
parents: 70094
diff changeset
   231
  assumes "b \<noteq> 0"
1657688a6406 backed out a93e6472ac9c, which does not bring anything substantial: division_ring is not commutative in multiplication but semidom_divide is
haftmann
parents: 70094
diff changeset
   232
  shows "(a + b) div b = a div b + 1"
1657688a6406 backed out a93e6472ac9c, which does not bring anything substantial: division_ring is not commutative in multiplication but semidom_divide is
haftmann
parents: 70094
diff changeset
   233
  using assms div_add_self1 [of b a] by (simp add: add.commute)
1657688a6406 backed out a93e6472ac9c, which does not bring anything substantial: division_ring is not commutative in multiplication but semidom_divide is
haftmann
parents: 70094
diff changeset
   234
66806
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   235
lemma mod_add_self1 [simp]:
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   236
  "(b + a) mod b = a mod b"
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   237
  using mod_mult_self1 [of a 1 b] by (simp add: add.commute)
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   238
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   239
lemma mod_add_self2 [simp]:
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   240
  "(a + b) mod b = a mod b"
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   241
  using mod_mult_self1 [of a 1 b] by simp
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   242
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   243
lemma mod_div_trivial [simp]:
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   244
  "a mod b div b = 0"
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   245
proof (cases "b = 0")
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   246
  assume "b = 0"
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   247
  thus ?thesis by simp
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   248
next
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   249
  assume "b \<noteq> 0"
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   250
  hence "a div b + a mod b div b = (a mod b + a div b * b) div b"
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   251
    by (rule div_mult_self1 [symmetric])
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   252
  also have "\<dots> = a div b"
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   253
    by (simp only: mod_div_mult_eq)
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   254
  also have "\<dots> = a div b + 0"
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   255
    by simp
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   256
  finally show ?thesis
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   257
    by (rule add_left_imp_eq)
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   258
qed
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   259
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   260
lemma mod_mod_trivial [simp]:
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   261
  "a mod b mod b = a mod b"
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   262
proof -
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   263
  have "a mod b mod b = (a mod b + a div b * b) mod b"
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   264
    by (simp only: mod_mult_self1)
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   265
  also have "\<dots> = a mod b"
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   266
    by (simp only: mod_div_mult_eq)
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   267
  finally show ?thesis .
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   268
qed
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   269
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   270
lemma mod_mod_cancel:
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   271
  assumes "c dvd b"
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   272
  shows "a mod b mod c = a mod c"
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   273
proof -
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   274
  from \<open>c dvd b\<close> obtain k where "b = c * k"
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   275
    by (rule dvdE)
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   276
  have "a mod b mod c = a mod (c * k) mod c"
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   277
    by (simp only: \<open>b = c * k\<close>)
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   278
  also have "\<dots> = (a mod (c * k) + a div (c * k) * k * c) mod c"
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   279
    by (simp only: mod_mult_self1)
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   280
  also have "\<dots> = (a div (c * k) * (c * k) + a mod (c * k)) mod c"
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   281
    by (simp only: ac_simps)
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   282
  also have "\<dots> = a mod c"
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   283
    by (simp only: div_mult_mod_eq)
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   284
  finally show ?thesis .
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   285
qed
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   286
70147
1657688a6406 backed out a93e6472ac9c, which does not bring anything substantial: division_ring is not commutative in multiplication but semidom_divide is
haftmann
parents: 70094
diff changeset
   287
lemma div_mult_mult2 [simp]:
1657688a6406 backed out a93e6472ac9c, which does not bring anything substantial: division_ring is not commutative in multiplication but semidom_divide is
haftmann
parents: 70094
diff changeset
   288
  "c \<noteq> 0 \<Longrightarrow> (a * c) div (b * c) = a div b"
1657688a6406 backed out a93e6472ac9c, which does not bring anything substantial: division_ring is not commutative in multiplication but semidom_divide is
haftmann
parents: 70094
diff changeset
   289
  by (drule div_mult_mult1) (simp add: mult.commute)
1657688a6406 backed out a93e6472ac9c, which does not bring anything substantial: division_ring is not commutative in multiplication but semidom_divide is
haftmann
parents: 70094
diff changeset
   290
1657688a6406 backed out a93e6472ac9c, which does not bring anything substantial: division_ring is not commutative in multiplication but semidom_divide is
haftmann
parents: 70094
diff changeset
   291
lemma div_mult_mult1_if [simp]:
1657688a6406 backed out a93e6472ac9c, which does not bring anything substantial: division_ring is not commutative in multiplication but semidom_divide is
haftmann
parents: 70094
diff changeset
   292
  "(c * a) div (c * b) = (if c = 0 then 0 else a div b)"
1657688a6406 backed out a93e6472ac9c, which does not bring anything substantial: division_ring is not commutative in multiplication but semidom_divide is
haftmann
parents: 70094
diff changeset
   293
  by simp_all
1657688a6406 backed out a93e6472ac9c, which does not bring anything substantial: division_ring is not commutative in multiplication but semidom_divide is
haftmann
parents: 70094
diff changeset
   294
66806
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   295
lemma mod_mult_mult1:
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   296
  "(c * a) mod (c * b) = c * (a mod b)"
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   297
proof (cases "c = 0")
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   298
  case True then show ?thesis by simp
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   299
next
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   300
  case False
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   301
  from div_mult_mod_eq
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   302
  have "((c * a) div (c * b)) * (c * b) + (c * a) mod (c * b) = c * a" .
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   303
  with False have "c * ((a div b) * b + a mod b) + (c * a) mod (c * b)
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   304
    = c * a + c * (a mod b)" by (simp add: algebra_simps)
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   305
  with div_mult_mod_eq show ?thesis by simp
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   306
qed
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   307
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   308
lemma mod_mult_mult2:
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   309
  "(a * c) mod (b * c) = (a mod b) * c"
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   310
  using mod_mult_mult1 [of c a b] by (simp add: mult.commute)
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   311
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   312
lemma mult_mod_left: "(a mod b) * c = (a * c) mod (b * c)"
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   313
  by (fact mod_mult_mult2 [symmetric])
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   314
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   315
lemma mult_mod_right: "c * (a mod b) = (c * a) mod (c * b)"
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   316
  by (fact mod_mult_mult1 [symmetric])
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   317
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   318
lemma dvd_mod: "k dvd m \<Longrightarrow> k dvd n \<Longrightarrow> k dvd (m mod n)"
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   319
  unfolding dvd_def by (auto simp add: mod_mult_mult1)
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   320
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   321
lemma div_plus_div_distrib_dvd_left:
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   322
  "c dvd a \<Longrightarrow> (a + b) div c = a div c + b div c"
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   323
  by (cases "c = 0") (auto elim: dvdE)
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   324
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   325
lemma div_plus_div_distrib_dvd_right:
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   326
  "c dvd b \<Longrightarrow> (a + b) div c = a div c + b div c"
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   327
  using div_plus_div_distrib_dvd_left [of c b a]
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   328
  by (simp add: ac_simps)
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   329
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   330
named_theorems mod_simps
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   331
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   332
text \<open>Addition respects modular equivalence.\<close>
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   333
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   334
lemma mod_add_left_eq [mod_simps]:
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   335
  "(a mod c + b) mod c = (a + b) mod c"
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   336
proof -
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   337
  have "(a + b) mod c = (a div c * c + a mod c + b) mod c"
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   338
    by (simp only: div_mult_mod_eq)
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   339
  also have "\<dots> = (a mod c + b + a div c * c) mod c"
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   340
    by (simp only: ac_simps)
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   341
  also have "\<dots> = (a mod c + b) mod c"
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   342
    by (rule mod_mult_self1)
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   343
  finally show ?thesis
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   344
    by (rule sym)
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   345
qed
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   346
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   347
lemma mod_add_right_eq [mod_simps]:
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   348
  "(a + b mod c) mod c = (a + b) mod c"
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   349
  using mod_add_left_eq [of b c a] by (simp add: ac_simps)
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   350
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   351
lemma mod_add_eq:
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   352
  "(a mod c + b mod c) mod c = (a + b) mod c"
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   353
  by (simp add: mod_add_left_eq mod_add_right_eq)
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   354
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   355
lemma mod_sum_eq [mod_simps]:
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   356
  "(\<Sum>i\<in>A. f i mod a) mod a = sum f A mod a"
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   357
proof (induct A rule: infinite_finite_induct)
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   358
  case (insert i A)
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   359
  then have "(\<Sum>i\<in>insert i A. f i mod a) mod a
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   360
    = (f i mod a + (\<Sum>i\<in>A. f i mod a)) mod a"
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   361
    by simp
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   362
  also have "\<dots> = (f i + (\<Sum>i\<in>A. f i mod a) mod a) mod a"
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   363
    by (simp add: mod_simps)
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   364
  also have "\<dots> = (f i + (\<Sum>i\<in>A. f i) mod a) mod a"
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   365
    by (simp add: insert.hyps)
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   366
  finally show ?case
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   367
    by (simp add: insert.hyps mod_simps)
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   368
qed simp_all
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   369
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   370
lemma mod_add_cong:
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   371
  assumes "a mod c = a' mod c"
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   372
  assumes "b mod c = b' mod c"
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   373
  shows "(a + b) mod c = (a' + b') mod c"
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   374
proof -
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   375
  have "(a mod c + b mod c) mod c = (a' mod c + b' mod c) mod c"
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   376
    unfolding assms ..
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   377
  then show ?thesis
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   378
    by (simp add: mod_add_eq)
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   379
qed
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   380
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   381
text \<open>Multiplication respects modular equivalence.\<close>
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   382
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   383
lemma mod_mult_left_eq [mod_simps]:
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   384
  "((a mod c) * b) mod c = (a * b) mod c"
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   385
proof -
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   386
  have "(a * b) mod c = ((a div c * c + a mod c) * b) mod c"
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   387
    by (simp only: div_mult_mod_eq)
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   388
  also have "\<dots> = (a mod c * b + a div c * b * c) mod c"
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   389
    by (simp only: algebra_simps)
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   390
  also have "\<dots> = (a mod c * b) mod c"
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   391
    by (rule mod_mult_self1)
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   392
  finally show ?thesis
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   393
    by (rule sym)
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   394
qed
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   395
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   396
lemma mod_mult_right_eq [mod_simps]:
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   397
  "(a * (b mod c)) mod c = (a * b) mod c"
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   398
  using mod_mult_left_eq [of b c a] by (simp add: ac_simps)
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   399
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   400
lemma mod_mult_eq:
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   401
  "((a mod c) * (b mod c)) mod c = (a * b) mod c"
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   402
  by (simp add: mod_mult_left_eq mod_mult_right_eq)
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   403
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   404
lemma mod_prod_eq [mod_simps]:
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   405
  "(\<Prod>i\<in>A. f i mod a) mod a = prod f A mod a"
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   406
proof (induct A rule: infinite_finite_induct)
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   407
  case (insert i A)
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   408
  then have "(\<Prod>i\<in>insert i A. f i mod a) mod a
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   409
    = (f i mod a * (\<Prod>i\<in>A. f i mod a)) mod a"
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   410
    by simp
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   411
  also have "\<dots> = (f i * ((\<Prod>i\<in>A. f i mod a) mod a)) mod a"
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   412
    by (simp add: mod_simps)
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   413
  also have "\<dots> = (f i * ((\<Prod>i\<in>A. f i) mod a)) mod a"
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   414
    by (simp add: insert.hyps)
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   415
  finally show ?case
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   416
    by (simp add: insert.hyps mod_simps)
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   417
qed simp_all
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   418
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   419
lemma mod_mult_cong:
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   420
  assumes "a mod c = a' mod c"
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   421
  assumes "b mod c = b' mod c"
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   422
  shows "(a * b) mod c = (a' * b') mod c"
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   423
proof -
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   424
  have "(a mod c * (b mod c)) mod c = (a' mod c * (b' mod c)) mod c"
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   425
    unfolding assms ..
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   426
  then show ?thesis
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   427
    by (simp add: mod_mult_eq)
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   428
qed
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   429
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   430
text \<open>Exponentiation respects modular equivalence.\<close>
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   431
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   432
lemma power_mod [mod_simps]: 
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   433
  "((a mod b) ^ n) mod b = (a ^ n) mod b"
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   434
proof (induct n)
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   435
  case 0
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   436
  then show ?case by simp
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   437
next
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   438
  case (Suc n)
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   439
  have "(a mod b) ^ Suc n mod b = (a mod b) * ((a mod b) ^ n mod b) mod b"
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   440
    by (simp add: mod_mult_right_eq)
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   441
  with Suc show ?case
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   442
    by (simp add: mod_mult_left_eq mod_mult_right_eq)
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   443
qed
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   444
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   445
end
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   446
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   447
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   448
class euclidean_ring_cancel = euclidean_ring + euclidean_semiring_cancel
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   449
begin
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   450
70147
1657688a6406 backed out a93e6472ac9c, which does not bring anything substantial: division_ring is not commutative in multiplication but semidom_divide is
haftmann
parents: 70094
diff changeset
   451
subclass idom_divide ..
1657688a6406 backed out a93e6472ac9c, which does not bring anything substantial: division_ring is not commutative in multiplication but semidom_divide is
haftmann
parents: 70094
diff changeset
   452
1657688a6406 backed out a93e6472ac9c, which does not bring anything substantial: division_ring is not commutative in multiplication but semidom_divide is
haftmann
parents: 70094
diff changeset
   453
lemma div_minus_minus [simp]: "(- a) div (- b) = a div b"
1657688a6406 backed out a93e6472ac9c, which does not bring anything substantial: division_ring is not commutative in multiplication but semidom_divide is
haftmann
parents: 70094
diff changeset
   454
  using div_mult_mult1 [of "- 1" a b] by simp
66806
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   455
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   456
lemma mod_minus_minus [simp]: "(- a) mod (- b) = - (a mod b)"
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   457
  using mod_mult_mult1 [of "- 1" a b] by simp
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   458
70147
1657688a6406 backed out a93e6472ac9c, which does not bring anything substantial: division_ring is not commutative in multiplication but semidom_divide is
haftmann
parents: 70094
diff changeset
   459
lemma div_minus_right: "a div (- b) = (- a) div b"
1657688a6406 backed out a93e6472ac9c, which does not bring anything substantial: division_ring is not commutative in multiplication but semidom_divide is
haftmann
parents: 70094
diff changeset
   460
  using div_minus_minus [of "- a" b] by simp
1657688a6406 backed out a93e6472ac9c, which does not bring anything substantial: division_ring is not commutative in multiplication but semidom_divide is
haftmann
parents: 70094
diff changeset
   461
66806
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   462
lemma mod_minus_right: "a mod (- b) = - ((- a) mod b)"
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   463
  using mod_minus_minus [of "- a" b] by simp
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   464
70147
1657688a6406 backed out a93e6472ac9c, which does not bring anything substantial: division_ring is not commutative in multiplication but semidom_divide is
haftmann
parents: 70094
diff changeset
   465
lemma div_minus1_right [simp]: "a div (- 1) = - a"
1657688a6406 backed out a93e6472ac9c, which does not bring anything substantial: division_ring is not commutative in multiplication but semidom_divide is
haftmann
parents: 70094
diff changeset
   466
  using div_minus_right [of a 1] by simp
1657688a6406 backed out a93e6472ac9c, which does not bring anything substantial: division_ring is not commutative in multiplication but semidom_divide is
haftmann
parents: 70094
diff changeset
   467
66806
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   468
lemma mod_minus1_right [simp]: "a mod (- 1) = 0"
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   469
  using mod_minus_right [of a 1] by simp
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   470
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   471
text \<open>Negation respects modular equivalence.\<close>
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   472
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   473
lemma mod_minus_eq [mod_simps]:
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   474
  "(- (a mod b)) mod b = (- a) mod b"
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   475
proof -
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   476
  have "(- a) mod b = (- (a div b * b + a mod b)) mod b"
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   477
    by (simp only: div_mult_mod_eq)
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   478
  also have "\<dots> = (- (a mod b) + - (a div b) * b) mod b"
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   479
    by (simp add: ac_simps)
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   480
  also have "\<dots> = (- (a mod b)) mod b"
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   481
    by (rule mod_mult_self1)
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   482
  finally show ?thesis
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   483
    by (rule sym)
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   484
qed
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   485
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   486
lemma mod_minus_cong:
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   487
  assumes "a mod b = a' mod b"
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   488
  shows "(- a) mod b = (- a') mod b"
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   489
proof -
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   490
  have "(- (a mod b)) mod b = (- (a' mod b)) mod b"
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   491
    unfolding assms ..
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   492
  then show ?thesis
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   493
    by (simp add: mod_minus_eq)
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   494
qed
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   495
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   496
text \<open>Subtraction respects modular equivalence.\<close>
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   497
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   498
lemma mod_diff_left_eq [mod_simps]:
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   499
  "(a mod c - b) mod c = (a - b) mod c"
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   500
  using mod_add_cong [of a c "a mod c" "- b" "- b"]
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   501
  by simp
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   502
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   503
lemma mod_diff_right_eq [mod_simps]:
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   504
  "(a - b mod c) mod c = (a - b) mod c"
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   505
  using mod_add_cong [of a c a "- b" "- (b mod c)"] mod_minus_cong [of "b mod c" c b]
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   506
  by simp
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   507
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   508
lemma mod_diff_eq:
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   509
  "(a mod c - b mod c) mod c = (a - b) mod c"
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   510
  using mod_add_cong [of a c "a mod c" "- b" "- (b mod c)"] mod_minus_cong [of "b mod c" c b]
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   511
  by simp
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   512
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   513
lemma mod_diff_cong:
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   514
  assumes "a mod c = a' mod c"
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   515
  assumes "b mod c = b' mod c"
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   516
  shows "(a - b) mod c = (a' - b') mod c"
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   517
  using assms mod_add_cong [of a c a' "- b" "- b'"] mod_minus_cong [of b c "b'"]
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   518
  by simp
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   519
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   520
lemma minus_mod_self2 [simp]:
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   521
  "(a - b) mod b = a mod b"
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   522
  using mod_diff_right_eq [of a b b]
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   523
  by (simp add: mod_diff_right_eq)
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   524
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   525
lemma minus_mod_self1 [simp]:
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   526
  "(b - a) mod b = - a mod b"
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   527
  using mod_add_self2 [of "- a" b] by simp
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   528
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   529
lemma mod_eq_dvd_iff:
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   530
  "a mod c = b mod c \<longleftrightarrow> c dvd a - b" (is "?P \<longleftrightarrow> ?Q")
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   531
proof
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   532
  assume ?P
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   533
  then have "(a mod c - b mod c) mod c = 0"
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   534
    by simp
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   535
  then show ?Q
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   536
    by (simp add: dvd_eq_mod_eq_0 mod_simps)
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   537
next
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   538
  assume ?Q
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   539
  then obtain d where d: "a - b = c * d" ..
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   540
  then have "a = c * d + b"
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   541
    by (simp add: algebra_simps)
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   542
  then show ?P by simp
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   543
qed
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   544
66837
6ba663ff2b1c tuned proofs
haftmann
parents: 66817
diff changeset
   545
lemma mod_eqE:
6ba663ff2b1c tuned proofs
haftmann
parents: 66817
diff changeset
   546
  assumes "a mod c = b mod c"
6ba663ff2b1c tuned proofs
haftmann
parents: 66817
diff changeset
   547
  obtains d where "b = a + c * d"
6ba663ff2b1c tuned proofs
haftmann
parents: 66817
diff changeset
   548
proof -
6ba663ff2b1c tuned proofs
haftmann
parents: 66817
diff changeset
   549
  from assms have "c dvd a - b"
6ba663ff2b1c tuned proofs
haftmann
parents: 66817
diff changeset
   550
    by (simp add: mod_eq_dvd_iff)
6ba663ff2b1c tuned proofs
haftmann
parents: 66817
diff changeset
   551
  then obtain d where "a - b = c * d" ..
6ba663ff2b1c tuned proofs
haftmann
parents: 66817
diff changeset
   552
  then have "b = a + c * - d"
6ba663ff2b1c tuned proofs
haftmann
parents: 66817
diff changeset
   553
    by (simp add: algebra_simps)
6ba663ff2b1c tuned proofs
haftmann
parents: 66817
diff changeset
   554
  with that show thesis .
6ba663ff2b1c tuned proofs
haftmann
parents: 66817
diff changeset
   555
qed
6ba663ff2b1c tuned proofs
haftmann
parents: 66817
diff changeset
   556
67051
e7e54a0b9197 dedicated definition for coprimality
haftmann
parents: 66886
diff changeset
   557
lemma invertible_coprime:
e7e54a0b9197 dedicated definition for coprimality
haftmann
parents: 66886
diff changeset
   558
  "coprime a c" if "a * b mod c = 1"
e7e54a0b9197 dedicated definition for coprimality
haftmann
parents: 66886
diff changeset
   559
  by (rule coprimeI) (use that dvd_mod_iff [of _ c "a * b"] in auto)
e7e54a0b9197 dedicated definition for coprimality
haftmann
parents: 66886
diff changeset
   560
66806
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   561
end
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   562
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   563
  
64785
ae0bbc8e45ad moved euclidean ring to HOL
haftmann
parents:
diff changeset
   564
subsection \<open>Uniquely determined division\<close>
ae0bbc8e45ad moved euclidean ring to HOL
haftmann
parents:
diff changeset
   565
  
ae0bbc8e45ad moved euclidean ring to HOL
haftmann
parents:
diff changeset
   566
class unique_euclidean_semiring = euclidean_semiring + 
66840
0d689d71dbdc canonical multiplicative euclidean size
haftmann
parents: 66839
diff changeset
   567
  assumes euclidean_size_mult: "euclidean_size (a * b) = euclidean_size a * euclidean_size b"
66838
17989f6bc7b2 clarified uniqueness criterion for euclidean rings
haftmann
parents: 66837
diff changeset
   568
  fixes division_segment :: "'a \<Rightarrow> 'a"
66839
909ba5ed93dd clarified parity
haftmann
parents: 66838
diff changeset
   569
  assumes is_unit_division_segment [simp]: "is_unit (division_segment a)"
66838
17989f6bc7b2 clarified uniqueness criterion for euclidean rings
haftmann
parents: 66837
diff changeset
   570
    and division_segment_mult:
17989f6bc7b2 clarified uniqueness criterion for euclidean rings
haftmann
parents: 66837
diff changeset
   571
    "a \<noteq> 0 \<Longrightarrow> b \<noteq> 0 \<Longrightarrow> division_segment (a * b) = division_segment a * division_segment b"
17989f6bc7b2 clarified uniqueness criterion for euclidean rings
haftmann
parents: 66837
diff changeset
   572
    and division_segment_mod:
17989f6bc7b2 clarified uniqueness criterion for euclidean rings
haftmann
parents: 66837
diff changeset
   573
    "b \<noteq> 0 \<Longrightarrow> \<not> b dvd a \<Longrightarrow> division_segment (a mod b) = division_segment b"
64785
ae0bbc8e45ad moved euclidean ring to HOL
haftmann
parents:
diff changeset
   574
  assumes div_bounded:
66838
17989f6bc7b2 clarified uniqueness criterion for euclidean rings
haftmann
parents: 66837
diff changeset
   575
    "b \<noteq> 0 \<Longrightarrow> division_segment r = division_segment b
64785
ae0bbc8e45ad moved euclidean ring to HOL
haftmann
parents:
diff changeset
   576
    \<Longrightarrow> euclidean_size r < euclidean_size b
ae0bbc8e45ad moved euclidean ring to HOL
haftmann
parents:
diff changeset
   577
    \<Longrightarrow> (q * b + r) div b = q"
ae0bbc8e45ad moved euclidean ring to HOL
haftmann
parents:
diff changeset
   578
begin
ae0bbc8e45ad moved euclidean ring to HOL
haftmann
parents:
diff changeset
   579
66839
909ba5ed93dd clarified parity
haftmann
parents: 66838
diff changeset
   580
lemma division_segment_not_0 [simp]:
909ba5ed93dd clarified parity
haftmann
parents: 66838
diff changeset
   581
  "division_segment a \<noteq> 0"
909ba5ed93dd clarified parity
haftmann
parents: 66838
diff changeset
   582
  using is_unit_division_segment [of a] is_unitE [of "division_segment a"] by blast
909ba5ed93dd clarified parity
haftmann
parents: 66838
diff changeset
   583
64785
ae0bbc8e45ad moved euclidean ring to HOL
haftmann
parents:
diff changeset
   584
lemma divmod_cases [case_names divides remainder by0]:
ae0bbc8e45ad moved euclidean ring to HOL
haftmann
parents:
diff changeset
   585
  obtains 
ae0bbc8e45ad moved euclidean ring to HOL
haftmann
parents:
diff changeset
   586
    (divides) q where "b \<noteq> 0"
ae0bbc8e45ad moved euclidean ring to HOL
haftmann
parents:
diff changeset
   587
      and "a div b = q"
ae0bbc8e45ad moved euclidean ring to HOL
haftmann
parents:
diff changeset
   588
      and "a mod b = 0"
ae0bbc8e45ad moved euclidean ring to HOL
haftmann
parents:
diff changeset
   589
      and "a = q * b"
66814
a24cde9588bb generalized some rules
haftmann
parents: 66813
diff changeset
   590
  | (remainder) q r where "b \<noteq> 0"
66838
17989f6bc7b2 clarified uniqueness criterion for euclidean rings
haftmann
parents: 66837
diff changeset
   591
      and "division_segment r = division_segment b"
64785
ae0bbc8e45ad moved euclidean ring to HOL
haftmann
parents:
diff changeset
   592
      and "euclidean_size r < euclidean_size b"
66814
a24cde9588bb generalized some rules
haftmann
parents: 66813
diff changeset
   593
      and "r \<noteq> 0"
64785
ae0bbc8e45ad moved euclidean ring to HOL
haftmann
parents:
diff changeset
   594
      and "a div b = q"
ae0bbc8e45ad moved euclidean ring to HOL
haftmann
parents:
diff changeset
   595
      and "a mod b = r"
ae0bbc8e45ad moved euclidean ring to HOL
haftmann
parents:
diff changeset
   596
      and "a = q * b + r"
ae0bbc8e45ad moved euclidean ring to HOL
haftmann
parents:
diff changeset
   597
  | (by0) "b = 0"
ae0bbc8e45ad moved euclidean ring to HOL
haftmann
parents:
diff changeset
   598
proof (cases "b = 0")
ae0bbc8e45ad moved euclidean ring to HOL
haftmann
parents:
diff changeset
   599
  case True
ae0bbc8e45ad moved euclidean ring to HOL
haftmann
parents:
diff changeset
   600
  then show thesis
ae0bbc8e45ad moved euclidean ring to HOL
haftmann
parents:
diff changeset
   601
  by (rule by0)
ae0bbc8e45ad moved euclidean ring to HOL
haftmann
parents:
diff changeset
   602
next
ae0bbc8e45ad moved euclidean ring to HOL
haftmann
parents:
diff changeset
   603
  case False
ae0bbc8e45ad moved euclidean ring to HOL
haftmann
parents:
diff changeset
   604
  show thesis
ae0bbc8e45ad moved euclidean ring to HOL
haftmann
parents:
diff changeset
   605
  proof (cases "b dvd a")
ae0bbc8e45ad moved euclidean ring to HOL
haftmann
parents:
diff changeset
   606
    case True
ae0bbc8e45ad moved euclidean ring to HOL
haftmann
parents:
diff changeset
   607
    then obtain q where "a = b * q" ..
ae0bbc8e45ad moved euclidean ring to HOL
haftmann
parents:
diff changeset
   608
    with \<open>b \<noteq> 0\<close> divides
ae0bbc8e45ad moved euclidean ring to HOL
haftmann
parents:
diff changeset
   609
    show thesis
ae0bbc8e45ad moved euclidean ring to HOL
haftmann
parents:
diff changeset
   610
      by (simp add: ac_simps)
ae0bbc8e45ad moved euclidean ring to HOL
haftmann
parents:
diff changeset
   611
  next
ae0bbc8e45ad moved euclidean ring to HOL
haftmann
parents:
diff changeset
   612
    case False
ae0bbc8e45ad moved euclidean ring to HOL
haftmann
parents:
diff changeset
   613
    then have "a mod b \<noteq> 0"
ae0bbc8e45ad moved euclidean ring to HOL
haftmann
parents:
diff changeset
   614
      by (simp add: mod_eq_0_iff_dvd)
66838
17989f6bc7b2 clarified uniqueness criterion for euclidean rings
haftmann
parents: 66837
diff changeset
   615
    moreover from \<open>b \<noteq> 0\<close> \<open>\<not> b dvd a\<close> have "division_segment (a mod b) = division_segment b"
17989f6bc7b2 clarified uniqueness criterion for euclidean rings
haftmann
parents: 66837
diff changeset
   616
      by (rule division_segment_mod)
64785
ae0bbc8e45ad moved euclidean ring to HOL
haftmann
parents:
diff changeset
   617
    moreover have "euclidean_size (a mod b) < euclidean_size b"
ae0bbc8e45ad moved euclidean ring to HOL
haftmann
parents:
diff changeset
   618
      using \<open>b \<noteq> 0\<close> by (rule mod_size_less)
ae0bbc8e45ad moved euclidean ring to HOL
haftmann
parents:
diff changeset
   619
    moreover have "a = a div b * b + a mod b"
ae0bbc8e45ad moved euclidean ring to HOL
haftmann
parents:
diff changeset
   620
      by (simp add: div_mult_mod_eq)
ae0bbc8e45ad moved euclidean ring to HOL
haftmann
parents:
diff changeset
   621
    ultimately show thesis
66838
17989f6bc7b2 clarified uniqueness criterion for euclidean rings
haftmann
parents: 66837
diff changeset
   622
      using \<open>b \<noteq> 0\<close> by (blast intro!: remainder)
64785
ae0bbc8e45ad moved euclidean ring to HOL
haftmann
parents:
diff changeset
   623
  qed
ae0bbc8e45ad moved euclidean ring to HOL
haftmann
parents:
diff changeset
   624
qed
ae0bbc8e45ad moved euclidean ring to HOL
haftmann
parents:
diff changeset
   625
ae0bbc8e45ad moved euclidean ring to HOL
haftmann
parents:
diff changeset
   626
lemma div_eqI:
66838
17989f6bc7b2 clarified uniqueness criterion for euclidean rings
haftmann
parents: 66837
diff changeset
   627
  "a div b = q" if "b \<noteq> 0" "division_segment r = division_segment b"
64785
ae0bbc8e45ad moved euclidean ring to HOL
haftmann
parents:
diff changeset
   628
    "euclidean_size r < euclidean_size b" "q * b + r = a"
ae0bbc8e45ad moved euclidean ring to HOL
haftmann
parents:
diff changeset
   629
proof -
ae0bbc8e45ad moved euclidean ring to HOL
haftmann
parents:
diff changeset
   630
  from that have "(q * b + r) div b = q"
ae0bbc8e45ad moved euclidean ring to HOL
haftmann
parents:
diff changeset
   631
    by (auto intro: div_bounded)
ae0bbc8e45ad moved euclidean ring to HOL
haftmann
parents:
diff changeset
   632
  with that show ?thesis
ae0bbc8e45ad moved euclidean ring to HOL
haftmann
parents:
diff changeset
   633
    by simp
ae0bbc8e45ad moved euclidean ring to HOL
haftmann
parents:
diff changeset
   634
qed
ae0bbc8e45ad moved euclidean ring to HOL
haftmann
parents:
diff changeset
   635
ae0bbc8e45ad moved euclidean ring to HOL
haftmann
parents:
diff changeset
   636
lemma mod_eqI:
66838
17989f6bc7b2 clarified uniqueness criterion for euclidean rings
haftmann
parents: 66837
diff changeset
   637
  "a mod b = r" if "b \<noteq> 0" "division_segment r = division_segment b"
64785
ae0bbc8e45ad moved euclidean ring to HOL
haftmann
parents:
diff changeset
   638
    "euclidean_size r < euclidean_size b" "q * b + r = a" 
ae0bbc8e45ad moved euclidean ring to HOL
haftmann
parents:
diff changeset
   639
proof -
ae0bbc8e45ad moved euclidean ring to HOL
haftmann
parents:
diff changeset
   640
  from that have "a div b = q"
ae0bbc8e45ad moved euclidean ring to HOL
haftmann
parents:
diff changeset
   641
    by (rule div_eqI)
ae0bbc8e45ad moved euclidean ring to HOL
haftmann
parents:
diff changeset
   642
  moreover have "a div b * b + a mod b = a"
ae0bbc8e45ad moved euclidean ring to HOL
haftmann
parents:
diff changeset
   643
    by (fact div_mult_mod_eq)
ae0bbc8e45ad moved euclidean ring to HOL
haftmann
parents:
diff changeset
   644
  ultimately have "a div b * b + a mod b = a div b * b + r"
ae0bbc8e45ad moved euclidean ring to HOL
haftmann
parents:
diff changeset
   645
    using \<open>q * b + r = a\<close> by simp
ae0bbc8e45ad moved euclidean ring to HOL
haftmann
parents:
diff changeset
   646
  then show ?thesis
ae0bbc8e45ad moved euclidean ring to HOL
haftmann
parents:
diff changeset
   647
    by simp
ae0bbc8e45ad moved euclidean ring to HOL
haftmann
parents:
diff changeset
   648
qed
ae0bbc8e45ad moved euclidean ring to HOL
haftmann
parents:
diff changeset
   649
66806
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   650
subclass euclidean_semiring_cancel
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   651
proof
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   652
  show "(a + c * b) div b = c + a div b" if "b \<noteq> 0" for a b c
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   653
  proof (cases a b rule: divmod_cases)
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   654
    case by0
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   655
    with \<open>b \<noteq> 0\<close> show ?thesis
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   656
      by simp
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   657
  next
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   658
    case (divides q)
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   659
    then show ?thesis
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   660
      by (simp add: ac_simps)
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   661
  next
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   662
    case (remainder q r)
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   663
    then show ?thesis
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   664
      by (auto intro: div_eqI simp add: algebra_simps)
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   665
  qed
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   666
next
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   667
  show"(c * a) div (c * b) = a div b" if "c \<noteq> 0" for a b c
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   668
  proof (cases a b rule: divmod_cases)
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   669
    case by0
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   670
    then show ?thesis
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   671
      by simp
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   672
  next
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   673
    case (divides q)
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   674
    with \<open>c \<noteq> 0\<close> show ?thesis
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   675
      by (simp add: mult.left_commute [of c])
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   676
  next
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   677
    case (remainder q r)
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   678
    from \<open>b \<noteq> 0\<close> \<open>c \<noteq> 0\<close> have "b * c \<noteq> 0"
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   679
      by simp
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   680
    from remainder \<open>c \<noteq> 0\<close>
66838
17989f6bc7b2 clarified uniqueness criterion for euclidean rings
haftmann
parents: 66837
diff changeset
   681
    have "division_segment (r * c) = division_segment (b * c)"
66806
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   682
      and "euclidean_size (r * c) < euclidean_size (b * c)"
66840
0d689d71dbdc canonical multiplicative euclidean size
haftmann
parents: 66839
diff changeset
   683
      by (simp_all add: division_segment_mult division_segment_mod euclidean_size_mult)
66806
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   684
    with remainder show ?thesis
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   685
      by (auto intro!: div_eqI [of _ "c * (a mod b)"] simp add: algebra_simps)
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   686
        (use \<open>b * c \<noteq> 0\<close> in simp)
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   687
  qed
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   688
qed
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   689
66814
a24cde9588bb generalized some rules
haftmann
parents: 66813
diff changeset
   690
lemma div_mult1_eq:
a24cde9588bb generalized some rules
haftmann
parents: 66813
diff changeset
   691
  "(a * b) div c = a * (b div c) + a * (b mod c) div c"
a24cde9588bb generalized some rules
haftmann
parents: 66813
diff changeset
   692
proof (cases "a * (b mod c)" c rule: divmod_cases)
a24cde9588bb generalized some rules
haftmann
parents: 66813
diff changeset
   693
  case (divides q)
a24cde9588bb generalized some rules
haftmann
parents: 66813
diff changeset
   694
  have "a * b = a * (b div c * c + b mod c)"
a24cde9588bb generalized some rules
haftmann
parents: 66813
diff changeset
   695
    by (simp add: div_mult_mod_eq)
a24cde9588bb generalized some rules
haftmann
parents: 66813
diff changeset
   696
  also have "\<dots> = (a * (b div c) + q) * c"
a24cde9588bb generalized some rules
haftmann
parents: 66813
diff changeset
   697
    using divides by (simp add: algebra_simps)
a24cde9588bb generalized some rules
haftmann
parents: 66813
diff changeset
   698
  finally have "(a * b) div c = \<dots> div c"
a24cde9588bb generalized some rules
haftmann
parents: 66813
diff changeset
   699
    by simp
a24cde9588bb generalized some rules
haftmann
parents: 66813
diff changeset
   700
  with divides show ?thesis
a24cde9588bb generalized some rules
haftmann
parents: 66813
diff changeset
   701
    by simp
a24cde9588bb generalized some rules
haftmann
parents: 66813
diff changeset
   702
next
a24cde9588bb generalized some rules
haftmann
parents: 66813
diff changeset
   703
  case (remainder q r)
a24cde9588bb generalized some rules
haftmann
parents: 66813
diff changeset
   704
  from remainder(1-3) show ?thesis
a24cde9588bb generalized some rules
haftmann
parents: 66813
diff changeset
   705
  proof (rule div_eqI)
a24cde9588bb generalized some rules
haftmann
parents: 66813
diff changeset
   706
    have "a * b = a * (b div c * c + b mod c)"
a24cde9588bb generalized some rules
haftmann
parents: 66813
diff changeset
   707
      by (simp add: div_mult_mod_eq)
a24cde9588bb generalized some rules
haftmann
parents: 66813
diff changeset
   708
    also have "\<dots> = a * c * (b div c) + q * c + r"
a24cde9588bb generalized some rules
haftmann
parents: 66813
diff changeset
   709
      using remainder by (simp add: algebra_simps)
a24cde9588bb generalized some rules
haftmann
parents: 66813
diff changeset
   710
    finally show "(a * (b div c) + a * (b mod c) div c) * c + r = a * b"
a24cde9588bb generalized some rules
haftmann
parents: 66813
diff changeset
   711
      using remainder(5-7) by (simp add: algebra_simps)
a24cde9588bb generalized some rules
haftmann
parents: 66813
diff changeset
   712
  qed
a24cde9588bb generalized some rules
haftmann
parents: 66813
diff changeset
   713
next
a24cde9588bb generalized some rules
haftmann
parents: 66813
diff changeset
   714
  case by0
a24cde9588bb generalized some rules
haftmann
parents: 66813
diff changeset
   715
  then show ?thesis
a24cde9588bb generalized some rules
haftmann
parents: 66813
diff changeset
   716
    by simp
a24cde9588bb generalized some rules
haftmann
parents: 66813
diff changeset
   717
qed
a24cde9588bb generalized some rules
haftmann
parents: 66813
diff changeset
   718
a24cde9588bb generalized some rules
haftmann
parents: 66813
diff changeset
   719
lemma div_add1_eq:
a24cde9588bb generalized some rules
haftmann
parents: 66813
diff changeset
   720
  "(a + b) div c = a div c + b div c + (a mod c + b mod c) div c"
a24cde9588bb generalized some rules
haftmann
parents: 66813
diff changeset
   721
proof (cases "a mod c + b mod c" c rule: divmod_cases)
a24cde9588bb generalized some rules
haftmann
parents: 66813
diff changeset
   722
  case (divides q)
a24cde9588bb generalized some rules
haftmann
parents: 66813
diff changeset
   723
  have "a + b = (a div c * c + a mod c) + (b div c * c + b mod c)"
a24cde9588bb generalized some rules
haftmann
parents: 66813
diff changeset
   724
    using mod_mult_div_eq [of a c] mod_mult_div_eq [of b c] by (simp add: ac_simps)
a24cde9588bb generalized some rules
haftmann
parents: 66813
diff changeset
   725
  also have "\<dots> = (a div c + b div c) * c + (a mod c + b mod c)"
a24cde9588bb generalized some rules
haftmann
parents: 66813
diff changeset
   726
    by (simp add: algebra_simps)
a24cde9588bb generalized some rules
haftmann
parents: 66813
diff changeset
   727
  also have "\<dots> = (a div c + b div c + q) * c"
a24cde9588bb generalized some rules
haftmann
parents: 66813
diff changeset
   728
    using divides by (simp add: algebra_simps)
a24cde9588bb generalized some rules
haftmann
parents: 66813
diff changeset
   729
  finally have "(a + b) div c = (a div c + b div c + q) * c div c"
a24cde9588bb generalized some rules
haftmann
parents: 66813
diff changeset
   730
    by simp
a24cde9588bb generalized some rules
haftmann
parents: 66813
diff changeset
   731
  with divides show ?thesis
a24cde9588bb generalized some rules
haftmann
parents: 66813
diff changeset
   732
    by simp
a24cde9588bb generalized some rules
haftmann
parents: 66813
diff changeset
   733
next
a24cde9588bb generalized some rules
haftmann
parents: 66813
diff changeset
   734
  case (remainder q r)
a24cde9588bb generalized some rules
haftmann
parents: 66813
diff changeset
   735
  from remainder(1-3) show ?thesis
a24cde9588bb generalized some rules
haftmann
parents: 66813
diff changeset
   736
  proof (rule div_eqI)
a24cde9588bb generalized some rules
haftmann
parents: 66813
diff changeset
   737
    have "(a div c + b div c + q) * c + r + (a mod c + b mod c) =
a24cde9588bb generalized some rules
haftmann
parents: 66813
diff changeset
   738
        (a div c * c + a mod c) + (b div c * c + b mod c) + q * c + r"
a24cde9588bb generalized some rules
haftmann
parents: 66813
diff changeset
   739
      by (simp add: algebra_simps)
a24cde9588bb generalized some rules
haftmann
parents: 66813
diff changeset
   740
    also have "\<dots> = a + b + (a mod c + b mod c)"
a24cde9588bb generalized some rules
haftmann
parents: 66813
diff changeset
   741
      by (simp add: div_mult_mod_eq remainder) (simp add: ac_simps)
a24cde9588bb generalized some rules
haftmann
parents: 66813
diff changeset
   742
    finally show "(a div c + b div c + (a mod c + b mod c) div c) * c + r = a + b"
a24cde9588bb generalized some rules
haftmann
parents: 66813
diff changeset
   743
      using remainder by simp
a24cde9588bb generalized some rules
haftmann
parents: 66813
diff changeset
   744
  qed
a24cde9588bb generalized some rules
haftmann
parents: 66813
diff changeset
   745
next
a24cde9588bb generalized some rules
haftmann
parents: 66813
diff changeset
   746
  case by0
a24cde9588bb generalized some rules
haftmann
parents: 66813
diff changeset
   747
  then show ?thesis
a24cde9588bb generalized some rules
haftmann
parents: 66813
diff changeset
   748
    by simp
a24cde9588bb generalized some rules
haftmann
parents: 66813
diff changeset
   749
qed
a24cde9588bb generalized some rules
haftmann
parents: 66813
diff changeset
   750
66886
960509bfd47e added lemmas and tuned proofs
haftmann
parents: 66840
diff changeset
   751
lemma div_eq_0_iff:
960509bfd47e added lemmas and tuned proofs
haftmann
parents: 66840
diff changeset
   752
  "a div b = 0 \<longleftrightarrow> euclidean_size a < euclidean_size b \<or> b = 0" (is "_ \<longleftrightarrow> ?P")
960509bfd47e added lemmas and tuned proofs
haftmann
parents: 66840
diff changeset
   753
  if "division_segment a = division_segment b"
960509bfd47e added lemmas and tuned proofs
haftmann
parents: 66840
diff changeset
   754
proof
960509bfd47e added lemmas and tuned proofs
haftmann
parents: 66840
diff changeset
   755
  assume ?P
960509bfd47e added lemmas and tuned proofs
haftmann
parents: 66840
diff changeset
   756
  with that show "a div b = 0"
960509bfd47e added lemmas and tuned proofs
haftmann
parents: 66840
diff changeset
   757
    by (cases "b = 0") (auto intro: div_eqI)
960509bfd47e added lemmas and tuned proofs
haftmann
parents: 66840
diff changeset
   758
next
960509bfd47e added lemmas and tuned proofs
haftmann
parents: 66840
diff changeset
   759
  assume "a div b = 0"
960509bfd47e added lemmas and tuned proofs
haftmann
parents: 66840
diff changeset
   760
  then have "a mod b = a"
960509bfd47e added lemmas and tuned proofs
haftmann
parents: 66840
diff changeset
   761
    using div_mult_mod_eq [of a b] by simp
960509bfd47e added lemmas and tuned proofs
haftmann
parents: 66840
diff changeset
   762
  with mod_size_less [of b a] show ?P
960509bfd47e added lemmas and tuned proofs
haftmann
parents: 66840
diff changeset
   763
    by auto
960509bfd47e added lemmas and tuned proofs
haftmann
parents: 66840
diff changeset
   764
qed
960509bfd47e added lemmas and tuned proofs
haftmann
parents: 66840
diff changeset
   765
64785
ae0bbc8e45ad moved euclidean ring to HOL
haftmann
parents:
diff changeset
   766
end
ae0bbc8e45ad moved euclidean ring to HOL
haftmann
parents:
diff changeset
   767
ae0bbc8e45ad moved euclidean ring to HOL
haftmann
parents:
diff changeset
   768
class unique_euclidean_ring = euclidean_ring + unique_euclidean_semiring
66806
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   769
begin
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   770
  
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   771
subclass euclidean_ring_cancel ..
64785
ae0bbc8e45ad moved euclidean ring to HOL
haftmann
parents:
diff changeset
   772
ae0bbc8e45ad moved euclidean ring to HOL
haftmann
parents:
diff changeset
   773
end
66806
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   774
66808
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
   775
69593
3dda49e08b9d isabelle update -u control_cartouches;
wenzelm
parents: 68536
diff changeset
   776
subsection \<open>Euclidean division on \<^typ>\<open>nat\<close>\<close>
66808
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
   777
66816
212a3334e7da more fundamental definition of div and mod on int
haftmann
parents: 66814
diff changeset
   778
instantiation nat :: normalization_semidom
66808
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
   779
begin
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
   780
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
   781
definition normalize_nat :: "nat \<Rightarrow> nat"
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
   782
  where [simp]: "normalize = (id :: nat \<Rightarrow> nat)"
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
   783
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
   784
definition unit_factor_nat :: "nat \<Rightarrow> nat"
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
   785
  where "unit_factor n = (if n = 0 then 0 else 1 :: nat)"
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
   786
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
   787
lemma unit_factor_simps [simp]:
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
   788
  "unit_factor 0 = (0::nat)"
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
   789
  "unit_factor (Suc n) = 1"
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
   790
  by (simp_all add: unit_factor_nat_def)
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
   791
66816
212a3334e7da more fundamental definition of div and mod on int
haftmann
parents: 66814
diff changeset
   792
definition divide_nat :: "nat \<Rightarrow> nat \<Rightarrow> nat"
212a3334e7da more fundamental definition of div and mod on int
haftmann
parents: 66814
diff changeset
   793
  where "m div n = (if n = 0 then 0 else Max {k::nat. k * n \<le> m})"
212a3334e7da more fundamental definition of div and mod on int
haftmann
parents: 66814
diff changeset
   794
212a3334e7da more fundamental definition of div and mod on int
haftmann
parents: 66814
diff changeset
   795
instance
212a3334e7da more fundamental definition of div and mod on int
haftmann
parents: 66814
diff changeset
   796
  by standard (auto simp add: divide_nat_def ac_simps unit_factor_nat_def intro: Max_eqI)
212a3334e7da more fundamental definition of div and mod on int
haftmann
parents: 66814
diff changeset
   797
212a3334e7da more fundamental definition of div and mod on int
haftmann
parents: 66814
diff changeset
   798
end
212a3334e7da more fundamental definition of div and mod on int
haftmann
parents: 66814
diff changeset
   799
67051
e7e54a0b9197 dedicated definition for coprimality
haftmann
parents: 66886
diff changeset
   800
lemma coprime_Suc_0_left [simp]:
e7e54a0b9197 dedicated definition for coprimality
haftmann
parents: 66886
diff changeset
   801
  "coprime (Suc 0) n"
e7e54a0b9197 dedicated definition for coprimality
haftmann
parents: 66886
diff changeset
   802
  using coprime_1_left [of n] by simp
e7e54a0b9197 dedicated definition for coprimality
haftmann
parents: 66886
diff changeset
   803
e7e54a0b9197 dedicated definition for coprimality
haftmann
parents: 66886
diff changeset
   804
lemma coprime_Suc_0_right [simp]:
e7e54a0b9197 dedicated definition for coprimality
haftmann
parents: 66886
diff changeset
   805
  "coprime n (Suc 0)"
e7e54a0b9197 dedicated definition for coprimality
haftmann
parents: 66886
diff changeset
   806
  using coprime_1_right [of n] by simp
e7e54a0b9197 dedicated definition for coprimality
haftmann
parents: 66886
diff changeset
   807
e7e54a0b9197 dedicated definition for coprimality
haftmann
parents: 66886
diff changeset
   808
lemma coprime_common_divisor_nat: "coprime a b \<Longrightarrow> x dvd a \<Longrightarrow> x dvd b \<Longrightarrow> x = 1"
e7e54a0b9197 dedicated definition for coprimality
haftmann
parents: 66886
diff changeset
   809
  for a b :: nat
e7e54a0b9197 dedicated definition for coprimality
haftmann
parents: 66886
diff changeset
   810
  by (drule coprime_common_divisor [of _ _ x]) simp_all
e7e54a0b9197 dedicated definition for coprimality
haftmann
parents: 66886
diff changeset
   811
66816
212a3334e7da more fundamental definition of div and mod on int
haftmann
parents: 66814
diff changeset
   812
instantiation nat :: unique_euclidean_semiring
212a3334e7da more fundamental definition of div and mod on int
haftmann
parents: 66814
diff changeset
   813
begin
212a3334e7da more fundamental definition of div and mod on int
haftmann
parents: 66814
diff changeset
   814
66808
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
   815
definition euclidean_size_nat :: "nat \<Rightarrow> nat"
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
   816
  where [simp]: "euclidean_size_nat = id"
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
   817
66838
17989f6bc7b2 clarified uniqueness criterion for euclidean rings
haftmann
parents: 66837
diff changeset
   818
definition division_segment_nat :: "nat \<Rightarrow> nat"
17989f6bc7b2 clarified uniqueness criterion for euclidean rings
haftmann
parents: 66837
diff changeset
   819
  where [simp]: "division_segment_nat n = 1"
66808
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
   820
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
   821
definition modulo_nat :: "nat \<Rightarrow> nat \<Rightarrow> nat"
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
   822
  where "m mod n = m - (m div n * (n::nat))"
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
   823
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
   824
instance proof
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
   825
  fix m n :: nat
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
   826
  have ex: "\<exists>k. k * n \<le> l" for l :: nat
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
   827
    by (rule exI [of _ 0]) simp
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
   828
  have fin: "finite {k. k * n \<le> l}" if "n > 0" for l
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
   829
  proof -
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
   830
    from that have "{k. k * n \<le> l} \<subseteq> {k. k \<le> l}"
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
   831
      by (cases n) auto
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
   832
    then show ?thesis
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
   833
      by (rule finite_subset) simp
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
   834
  qed
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
   835
  have mult_div_unfold: "n * (m div n) = Max {l. l \<le> m \<and> n dvd l}"
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
   836
  proof (cases "n = 0")
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
   837
    case True
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
   838
    moreover have "{l. l = 0 \<and> l \<le> m} = {0::nat}"
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
   839
      by auto
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
   840
    ultimately show ?thesis
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
   841
      by simp
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
   842
  next
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
   843
    case False
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
   844
    with ex [of m] fin have "n * Max {k. k * n \<le> m} = Max (times n ` {k. k * n \<le> m})"
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
   845
      by (auto simp add: nat_mult_max_right intro: hom_Max_commute)
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
   846
    also have "times n ` {k. k * n \<le> m} = {l. l \<le> m \<and> n dvd l}"
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
   847
      by (auto simp add: ac_simps elim!: dvdE)
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
   848
    finally show ?thesis
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
   849
      using False by (simp add: divide_nat_def ac_simps)
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
   850
  qed
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
   851
  have less_eq: "m div n * n \<le> m"
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
   852
    by (auto simp add: mult_div_unfold ac_simps intro: Max.boundedI)
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
   853
  then show "m div n * n + m mod n = m"
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
   854
    by (simp add: modulo_nat_def)
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
   855
  assume "n \<noteq> 0" 
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
   856
  show "euclidean_size (m mod n) < euclidean_size n"
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
   857
  proof -
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
   858
    have "m < Suc (m div n) * n"
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
   859
    proof (rule ccontr)
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
   860
      assume "\<not> m < Suc (m div n) * n"
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
   861
      then have "Suc (m div n) * n \<le> m"
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
   862
        by (simp add: not_less)
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
   863
      moreover from \<open>n \<noteq> 0\<close> have "Max {k. k * n \<le> m} < Suc (m div n)"
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
   864
        by (simp add: divide_nat_def)
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
   865
      with \<open>n \<noteq> 0\<close> ex fin have "\<And>k. k * n \<le> m \<Longrightarrow> k < Suc (m div n)"
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
   866
        by auto
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
   867
      ultimately have "Suc (m div n) < Suc (m div n)"
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
   868
        by blast
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
   869
      then show False
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
   870
        by simp
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
   871
    qed
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
   872
    with \<open>n \<noteq> 0\<close> show ?thesis
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
   873
      by (simp add: modulo_nat_def)
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
   874
  qed
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
   875
  show "euclidean_size m \<le> euclidean_size (m * n)"
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
   876
    using \<open>n \<noteq> 0\<close> by (cases n) simp_all
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
   877
  fix q r :: nat
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
   878
  show "(q * n + r) div n = q" if "euclidean_size r < euclidean_size n"
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
   879
  proof -
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
   880
    from that have "r < n"
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
   881
      by simp
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
   882
    have "k \<le> q" if "k * n \<le> q * n + r" for k
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
   883
    proof (rule ccontr)
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
   884
      assume "\<not> k \<le> q"
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
   885
      then have "q < k"
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
   886
        by simp
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
   887
      then obtain l where "k = Suc (q + l)"
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
   888
        by (auto simp add: less_iff_Suc_add)
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
   889
      with \<open>r < n\<close> that show False
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
   890
        by (simp add: algebra_simps)
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
   891
    qed
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
   892
    with \<open>n \<noteq> 0\<close> ex fin show ?thesis
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
   893
      by (auto simp add: divide_nat_def Max_eq_iff)
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
   894
  qed
66816
212a3334e7da more fundamental definition of div and mod on int
haftmann
parents: 66814
diff changeset
   895
qed simp_all
66808
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
   896
66806
a4e82b58d833 abolished (semi)ring_div in favour of euclidean_(semi)ring_cancel
haftmann
parents: 66798
diff changeset
   897
end
66808
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
   898
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
   899
text \<open>Tool support\<close>
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
   900
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
   901
ML \<open>
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
   902
structure Cancel_Div_Mod_Nat = Cancel_Div_Mod
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
   903
(
69593
3dda49e08b9d isabelle update -u control_cartouches;
wenzelm
parents: 68536
diff changeset
   904
  val div_name = \<^const_name>\<open>divide\<close>;
3dda49e08b9d isabelle update -u control_cartouches;
wenzelm
parents: 68536
diff changeset
   905
  val mod_name = \<^const_name>\<open>modulo\<close>;
66808
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
   906
  val mk_binop = HOLogic.mk_binop;
69593
3dda49e08b9d isabelle update -u control_cartouches;
wenzelm
parents: 68536
diff changeset
   907
  val dest_plus = HOLogic.dest_bin \<^const_name>\<open>Groups.plus\<close> HOLogic.natT;
66813
351142796345 avoid variant of mk_sum
haftmann
parents: 66810
diff changeset
   908
  val mk_sum = Arith_Data.mk_sum;
66808
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
   909
  fun dest_sum tm =
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
   910
    if HOLogic.is_zero tm then []
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
   911
    else
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
   912
      (case try HOLogic.dest_Suc tm of
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
   913
        SOME t => HOLogic.Suc_zero :: dest_sum t
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
   914
      | NONE =>
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
   915
          (case try dest_plus tm of
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
   916
            SOME (t, u) => dest_sum t @ dest_sum u
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
   917
          | NONE => [tm]));
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
   918
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
   919
  val div_mod_eqs = map mk_meta_eq @{thms cancel_div_mod_rules};
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
   920
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
   921
  val prove_eq_sums = Arith_Data.prove_conv2 all_tac
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
   922
    (Arith_Data.simp_all_tac @{thms add_0_left add_0_right ac_simps})
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
   923
)
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
   924
\<close>
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
   925
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
   926
simproc_setup cancel_div_mod_nat ("(m::nat) + n") =
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
   927
  \<open>K Cancel_Div_Mod_Nat.proc\<close>
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
   928
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
   929
lemma div_nat_eqI:
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
   930
  "m div n = q" if "n * q \<le> m" and "m < n * Suc q" for m n q :: nat
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
   931
  by (rule div_eqI [of _ "m - n * q"]) (use that in \<open>simp_all add: algebra_simps\<close>)
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
   932
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
   933
lemma mod_nat_eqI:
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
   934
  "m mod n = r" if "r < n" and "r \<le> m" and "n dvd m - r" for m n r :: nat
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
   935
  by (rule mod_eqI [of _ _ "(m - r) div n"]) (use that in \<open>simp_all add: algebra_simps\<close>)
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
   936
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
   937
lemma div_mult_self_is_m [simp]:
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
   938
  "m * n div n = m" if "n > 0" for m n :: nat
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
   939
  using that by simp
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
   940
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
   941
lemma div_mult_self1_is_m [simp]:
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
   942
  "n * m div n = m" if "n > 0" for m n :: nat
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
   943
  using that by simp
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
   944
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
   945
lemma mod_less_divisor [simp]:
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
   946
  "m mod n < n" if "n > 0" for m n :: nat
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
   947
  using mod_size_less [of n m] that by simp
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
   948
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
   949
lemma mod_le_divisor [simp]:
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
   950
  "m mod n \<le> n" if "n > 0" for m n :: nat
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
   951
  using that by (auto simp add: le_less)
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
   952
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
   953
lemma div_times_less_eq_dividend [simp]:
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
   954
  "m div n * n \<le> m" for m n :: nat
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
   955
  by (simp add: minus_mod_eq_div_mult [symmetric])
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
   956
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
   957
lemma times_div_less_eq_dividend [simp]:
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
   958
  "n * (m div n) \<le> m" for m n :: nat
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
   959
  using div_times_less_eq_dividend [of m n]
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
   960
  by (simp add: ac_simps)
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
   961
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
   962
lemma dividend_less_div_times:
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
   963
  "m < n + (m div n) * n" if "0 < n" for m n :: nat
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
   964
proof -
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
   965
  from that have "m mod n < n"
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
   966
    by simp
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
   967
  then show ?thesis
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
   968
    by (simp add: minus_mod_eq_div_mult [symmetric])
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
   969
qed
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
   970
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
   971
lemma dividend_less_times_div:
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
   972
  "m < n + n * (m div n)" if "0 < n" for m n :: nat
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
   973
  using dividend_less_div_times [of n m] that
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
   974
  by (simp add: ac_simps)
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
   975
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
   976
lemma mod_Suc_le_divisor [simp]:
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
   977
  "m mod Suc n \<le> n"
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
   978
  using mod_less_divisor [of "Suc n" m] by arith
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
   979
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
   980
lemma mod_less_eq_dividend [simp]:
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
   981
  "m mod n \<le> m" for m n :: nat
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
   982
proof (rule add_leD2)
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
   983
  from div_mult_mod_eq have "m div n * n + m mod n = m" .
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
   984
  then show "m div n * n + m mod n \<le> m" by auto
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
   985
qed
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
   986
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
   987
lemma
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
   988
  div_less [simp]: "m div n = 0"
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
   989
  and mod_less [simp]: "m mod n = m"
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
   990
  if "m < n" for m n :: nat
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
   991
  using that by (auto intro: div_eqI mod_eqI) 
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
   992
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
   993
lemma le_div_geq:
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
   994
  "m div n = Suc ((m - n) div n)" if "0 < n" and "n \<le> m" for m n :: nat
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
   995
proof -
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
   996
  from \<open>n \<le> m\<close> obtain q where "m = n + q"
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
   997
    by (auto simp add: le_iff_add)
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
   998
  with \<open>0 < n\<close> show ?thesis
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
   999
    by (simp add: div_add_self1)
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1000
qed
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1001
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1002
lemma le_mod_geq:
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1003
  "m mod n = (m - n) mod n" if "n \<le> m" for m n :: nat
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1004
proof -
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1005
  from \<open>n \<le> m\<close> obtain q where "m = n + q"
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1006
    by (auto simp add: le_iff_add)
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1007
  then show ?thesis
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1008
    by simp
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1009
qed
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1010
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1011
lemma div_if:
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1012
  "m div n = (if m < n \<or> n = 0 then 0 else Suc ((m - n) div n))"
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1013
  by (simp add: le_div_geq)
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1014
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1015
lemma mod_if:
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1016
  "m mod n = (if m < n then m else (m - n) mod n)" for m n :: nat
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1017
  by (simp add: le_mod_geq)
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1018
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1019
lemma div_eq_0_iff:
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1020
  "m div n = 0 \<longleftrightarrow> m < n \<or> n = 0" for m n :: nat
66886
960509bfd47e added lemmas and tuned proofs
haftmann
parents: 66840
diff changeset
  1021
  by (simp add: div_eq_0_iff)
66808
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1022
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1023
lemma div_greater_zero_iff:
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1024
  "m div n > 0 \<longleftrightarrow> n \<le> m \<and> n > 0" for m n :: nat
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1025
  using div_eq_0_iff [of m n] by auto
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1026
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1027
lemma mod_greater_zero_iff_not_dvd:
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1028
  "m mod n > 0 \<longleftrightarrow> \<not> n dvd m" for m n :: nat
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1029
  by (simp add: dvd_eq_mod_eq_0)
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1030
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1031
lemma div_by_Suc_0 [simp]:
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1032
  "m div Suc 0 = m"
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1033
  using div_by_1 [of m] by simp
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1034
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1035
lemma mod_by_Suc_0 [simp]:
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1036
  "m mod Suc 0 = 0"
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1037
  using mod_by_1 [of m] by simp
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1038
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1039
lemma div2_Suc_Suc [simp]:
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1040
  "Suc (Suc m) div 2 = Suc (m div 2)"
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1041
  by (simp add: numeral_2_eq_2 le_div_geq)
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1042
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1043
lemma Suc_n_div_2_gt_zero [simp]:
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1044
  "0 < Suc n div 2" if "n > 0" for n :: nat
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1045
  using that by (cases n) simp_all
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1046
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1047
lemma div_2_gt_zero [simp]:
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1048
  "0 < n div 2" if "Suc 0 < n" for n :: nat
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1049
  using that Suc_n_div_2_gt_zero [of "n - 1"] by simp
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1050
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1051
lemma mod2_Suc_Suc [simp]:
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1052
  "Suc (Suc m) mod 2 = m mod 2"
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1053
  by (simp add: numeral_2_eq_2 le_mod_geq)
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1054
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1055
lemma add_self_div_2 [simp]:
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1056
  "(m + m) div 2 = m" for m :: nat
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1057
  by (simp add: mult_2 [symmetric])
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1058
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1059
lemma add_self_mod_2 [simp]:
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1060
  "(m + m) mod 2 = 0" for m :: nat
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1061
  by (simp add: mult_2 [symmetric])
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1062
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1063
lemma mod2_gr_0 [simp]:
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1064
  "0 < m mod 2 \<longleftrightarrow> m mod 2 = 1" for m :: nat
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1065
proof -
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1066
  have "m mod 2 < 2"
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1067
    by (rule mod_less_divisor) simp
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1068
  then have "m mod 2 = 0 \<or> m mod 2 = 1"
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1069
    by arith
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1070
  then show ?thesis
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1071
    by auto     
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1072
qed
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1073
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1074
lemma mod_Suc_eq [mod_simps]:
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1075
  "Suc (m mod n) mod n = Suc m mod n"
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1076
proof -
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1077
  have "(m mod n + 1) mod n = (m + 1) mod n"
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1078
    by (simp only: mod_simps)
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1079
  then show ?thesis
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1080
    by simp
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1081
qed
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1082
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1083
lemma mod_Suc_Suc_eq [mod_simps]:
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1084
  "Suc (Suc (m mod n)) mod n = Suc (Suc m) mod n"
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1085
proof -
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1086
  have "(m mod n + 2) mod n = (m + 2) mod n"
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1087
    by (simp only: mod_simps)
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1088
  then show ?thesis
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1089
    by simp
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1090
qed
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1091
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1092
lemma
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1093
  Suc_mod_mult_self1 [simp]: "Suc (m + k * n) mod n = Suc m mod n"
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1094
  and Suc_mod_mult_self2 [simp]: "Suc (m + n * k) mod n = Suc m mod n"
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1095
  and Suc_mod_mult_self3 [simp]: "Suc (k * n + m) mod n = Suc m mod n"
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1096
  and Suc_mod_mult_self4 [simp]: "Suc (n * k + m) mod n = Suc m mod n"
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1097
  by (subst mod_Suc_eq [symmetric], simp add: mod_simps)+
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1098
67083
6b2c0681ef28 new simp rule
haftmann
parents: 67051
diff changeset
  1099
lemma Suc_0_mod_eq [simp]:
6b2c0681ef28 new simp rule
haftmann
parents: 67051
diff changeset
  1100
  "Suc 0 mod n = of_bool (n \<noteq> Suc 0)"
6b2c0681ef28 new simp rule
haftmann
parents: 67051
diff changeset
  1101
  by (cases n) simp_all
6b2c0681ef28 new simp rule
haftmann
parents: 67051
diff changeset
  1102
66808
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1103
context
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1104
  fixes m n q :: nat
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1105
begin
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1106
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1107
private lemma eucl_rel_mult2:
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1108
  "m mod n + n * (m div n mod q) < n * q"
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1109
  if "n > 0" and "q > 0"
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1110
proof -
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1111
  from \<open>n > 0\<close> have "m mod n < n"
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1112
    by (rule mod_less_divisor)
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1113
  from \<open>q > 0\<close> have "m div n mod q < q"
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1114
    by (rule mod_less_divisor)
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1115
  then obtain s where "q = Suc (m div n mod q + s)"
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1116
    by (blast dest: less_imp_Suc_add)
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1117
  moreover have "m mod n + n * (m div n mod q) < n * Suc (m div n mod q + s)"
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1118
    using \<open>m mod n < n\<close> by (simp add: add_mult_distrib2)
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1119
  ultimately show ?thesis
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1120
    by simp
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1121
qed
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1122
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1123
lemma div_mult2_eq:
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1124
  "m div (n * q) = (m div n) div q"
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1125
proof (cases "n = 0 \<or> q = 0")
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1126
  case True
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1127
  then show ?thesis
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1128
    by auto
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1129
next
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1130
  case False
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1131
  with eucl_rel_mult2 show ?thesis
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1132
    by (auto intro: div_eqI [of _ "n * (m div n mod q) + m mod n"]
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1133
      simp add: algebra_simps add_mult_distrib2 [symmetric])
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1134
qed
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1135
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1136
lemma mod_mult2_eq:
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1137
  "m mod (n * q) = n * (m div n mod q) + m mod n"
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1138
proof (cases "n = 0 \<or> q = 0")
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1139
  case True
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1140
  then show ?thesis
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1141
    by auto
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1142
next
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1143
  case False
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1144
  with eucl_rel_mult2 show ?thesis
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1145
    by (auto intro: mod_eqI [of _ _ "(m div n) div q"]
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1146
      simp add: algebra_simps add_mult_distrib2 [symmetric])
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1147
qed
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1148
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1149
end
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1150
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1151
lemma div_le_mono:
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1152
  "m div k \<le> n div k" if "m \<le> n" for m n k :: nat
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1153
proof -
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1154
  from that obtain q where "n = m + q"
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1155
    by (auto simp add: le_iff_add)
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1156
  then show ?thesis
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1157
    by (simp add: div_add1_eq [of m q k])
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1158
qed
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1159
69593
3dda49e08b9d isabelle update -u control_cartouches;
wenzelm
parents: 68536
diff changeset
  1160
text \<open>Antimonotonicity of \<^const>\<open>divide\<close> in second argument\<close>
66808
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1161
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1162
lemma div_le_mono2:
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1163
  "k div n \<le> k div m" if "0 < m" and "m \<le> n" for m n k :: nat
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1164
using that proof (induct k arbitrary: m rule: less_induct)
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1165
  case (less k)
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1166
  show ?case
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1167
  proof (cases "n \<le> k")
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1168
    case False
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1169
    then show ?thesis
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1170
      by simp
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1171
  next
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1172
    case True
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1173
    have "(k - n) div n \<le> (k - m) div n"
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1174
      using less.prems
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1175
      by (blast intro: div_le_mono diff_le_mono2)
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1176
    also have "\<dots> \<le> (k - m) div m"
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1177
      using \<open>n \<le> k\<close> less.prems less.hyps [of "k - m" m]
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1178
      by simp
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1179
    finally show ?thesis
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1180
      using \<open>n \<le> k\<close> less.prems
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1181
      by (simp add: le_div_geq)
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1182
  qed
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1183
qed
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1184
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1185
lemma div_le_dividend [simp]:
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1186
  "m div n \<le> m" for m n :: nat
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1187
  using div_le_mono2 [of 1 n m] by (cases "n = 0") simp_all
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1188
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1189
lemma div_less_dividend [simp]:
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1190
  "m div n < m" if "1 < n" and "0 < m" for m n :: nat
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1191
using that proof (induct m rule: less_induct)
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1192
  case (less m)
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1193
  show ?case
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1194
  proof (cases "n < m")
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1195
    case False
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1196
    with less show ?thesis
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1197
      by (cases "n = m") simp_all
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1198
  next
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1199
    case True
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1200
    then show ?thesis
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1201
      using less.hyps [of "m - n"] less.prems
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1202
      by (simp add: le_div_geq)
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1203
  qed
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1204
qed
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1205
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1206
lemma div_eq_dividend_iff:
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1207
  "m div n = m \<longleftrightarrow> n = 1" if "m > 0" for m n :: nat
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1208
proof
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1209
  assume "n = 1"
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1210
  then show "m div n = m"
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1211
    by simp
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1212
next
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1213
  assume P: "m div n = m"
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1214
  show "n = 1"
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1215
  proof (rule ccontr)
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1216
    have "n \<noteq> 0"
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1217
      by (rule ccontr) (use that P in auto)
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1218
    moreover assume "n \<noteq> 1"
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1219
    ultimately have "n > 1"
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1220
      by simp
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1221
    with that have "m div n < m"
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1222
      by simp
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1223
    with P show False
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1224
      by simp
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1225
  qed
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1226
qed
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1227
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1228
lemma less_mult_imp_div_less:
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1229
  "m div n < i" if "m < i * n" for m n i :: nat
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1230
proof -
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1231
  from that have "i * n > 0"
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1232
    by (cases "i * n = 0") simp_all
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1233
  then have "i > 0" and "n > 0"
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1234
    by simp_all
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1235
  have "m div n * n \<le> m"
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1236
    by simp
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1237
  then have "m div n * n < i * n"
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1238
    using that by (rule le_less_trans)
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1239
  with \<open>n > 0\<close> show ?thesis
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1240
    by simp
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1241
qed
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1242
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1243
text \<open>A fact for the mutilated chess board\<close>
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1244
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1245
lemma mod_Suc:
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1246
  "Suc m mod n = (if Suc (m mod n) = n then 0 else Suc (m mod n))" (is "_ = ?rhs")
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1247
proof (cases "n = 0")
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1248
  case True
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1249
  then show ?thesis
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1250
    by simp
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1251
next
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1252
  case False
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1253
  have "Suc m mod n = Suc (m mod n) mod n"
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1254
    by (simp add: mod_simps)
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1255
  also have "\<dots> = ?rhs"
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1256
    using False by (auto intro!: mod_nat_eqI intro: neq_le_trans simp add: Suc_le_eq)
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1257
  finally show ?thesis .
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1258
qed
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1259
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1260
lemma Suc_times_mod_eq:
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1261
  "Suc (m * n) mod m = 1" if "Suc 0 < m"
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1262
  using that by (simp add: mod_Suc)
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1263
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1264
lemma Suc_times_numeral_mod_eq [simp]:
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1265
  "Suc (numeral k * n) mod numeral k = 1" if "numeral k \<noteq> (1::nat)"
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1266
  by (rule Suc_times_mod_eq) (use that in simp)
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1267
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1268
lemma Suc_div_le_mono [simp]:
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1269
  "m div n \<le> Suc m div n"
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1270
  by (simp add: div_le_mono)
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1271
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1272
text \<open>These lemmas collapse some needless occurrences of Suc:
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1273
  at least three Sucs, since two and fewer are rewritten back to Suc again!
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1274
  We already have some rules to simplify operands smaller than 3.\<close>
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1275
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1276
lemma div_Suc_eq_div_add3 [simp]:
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1277
  "m div Suc (Suc (Suc n)) = m div (3 + n)"
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1278
  by (simp add: Suc3_eq_add_3)
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1279
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1280
lemma mod_Suc_eq_mod_add3 [simp]:
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1281
  "m mod Suc (Suc (Suc n)) = m mod (3 + n)"
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1282
  by (simp add: Suc3_eq_add_3)
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1283
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1284
lemma Suc_div_eq_add3_div:
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1285
  "Suc (Suc (Suc m)) div n = (3 + m) div n"
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1286
  by (simp add: Suc3_eq_add_3)
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1287
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1288
lemma Suc_mod_eq_add3_mod:
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1289
  "Suc (Suc (Suc m)) mod n = (3 + m) mod n"
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1290
  by (simp add: Suc3_eq_add_3)
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1291
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1292
lemmas Suc_div_eq_add3_div_numeral [simp] =
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1293
  Suc_div_eq_add3_div [of _ "numeral v"] for v
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1294
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1295
lemmas Suc_mod_eq_add3_mod_numeral [simp] =
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1296
  Suc_mod_eq_add3_mod [of _ "numeral v"] for v
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1297
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1298
lemma (in field_char_0) of_nat_div:
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1299
  "of_nat (m div n) = ((of_nat m - of_nat (m mod n)) / of_nat n)"
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1300
proof -
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1301
  have "of_nat (m div n) = ((of_nat (m div n * n + m mod n) - of_nat (m mod n)) / of_nat n :: 'a)"
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1302
    unfolding of_nat_add by (cases "n = 0") simp_all
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1303
  then show ?thesis
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1304
    by simp
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1305
qed
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1306
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1307
text \<open>An ``induction'' law for modulus arithmetic.\<close>
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1308
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1309
lemma mod_induct [consumes 3, case_names step]:
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1310
  "P m" if "P n" and "n < p" and "m < p"
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1311
    and step: "\<And>n. n < p \<Longrightarrow> P n \<Longrightarrow> P (Suc n mod p)"
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1312
using \<open>m < p\<close> proof (induct m)
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1313
  case 0
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1314
  show ?case
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1315
  proof (rule ccontr)
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1316
    assume "\<not> P 0"
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1317
    from \<open>n < p\<close> have "0 < p"
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1318
      by simp
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1319
    from \<open>n < p\<close> obtain m where "0 < m" and "p = n + m"
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1320
      by (blast dest: less_imp_add_positive)
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1321
    with \<open>P n\<close> have "P (p - m)"
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1322
      by simp
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1323
    moreover have "\<not> P (p - m)"
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1324
    using \<open>0 < m\<close> proof (induct m)
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1325
      case 0
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1326
      then show ?case
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1327
        by simp
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1328
    next
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1329
      case (Suc m)
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1330
      show ?case
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1331
      proof
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1332
        assume P: "P (p - Suc m)"
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1333
        with \<open>\<not> P 0\<close> have "Suc m < p"
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1334
          by (auto intro: ccontr) 
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1335
        then have "Suc (p - Suc m) = p - m"
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1336
          by arith
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1337
        moreover from \<open>0 < p\<close> have "p - Suc m < p"
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1338
          by arith
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1339
        with P step have "P ((Suc (p - Suc m)) mod p)"
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1340
          by blast
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1341
        ultimately show False
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1342
          using \<open>\<not> P 0\<close> Suc.hyps by (cases "m = 0") simp_all
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1343
      qed
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1344
    qed
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1345
    ultimately show False
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1346
      by blast
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1347
  qed
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1348
next
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1349
  case (Suc m)
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1350
  then have "m < p" and mod: "Suc m mod p = Suc m"
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1351
    by simp_all
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1352
  from \<open>m < p\<close> have "P m"
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1353
    by (rule Suc.hyps)
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1354
  with \<open>m < p\<close> have "P (Suc m mod p)"
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1355
    by (rule step)
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1356
  with mod show ?case
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1357
    by simp
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1358
qed
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1359
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1360
lemma split_div:
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1361
  "P (m div n) \<longleftrightarrow> (n = 0 \<longrightarrow> P 0) \<and> (n \<noteq> 0 \<longrightarrow>
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1362
     (\<forall>i j. j < n \<longrightarrow> m = n * i + j \<longrightarrow> P i))"
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1363
     (is "?P = ?Q") for m n :: nat
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1364
proof (cases "n = 0")
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1365
  case True
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1366
  then show ?thesis
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1367
    by simp
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1368
next
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1369
  case False
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1370
  show ?thesis
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1371
  proof
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1372
    assume ?P
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1373
    with False show ?Q
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1374
      by auto
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1375
  next
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1376
    assume ?Q
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1377
    with False have *: "\<And>i j. j < n \<Longrightarrow> m = n * i + j \<Longrightarrow> P i"
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1378
      by simp
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1379
    with False show ?P
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1380
      by (auto intro: * [of "m mod n"])
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1381
  qed
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1382
qed
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1383
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1384
lemma split_div':
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1385
  "P (m div n) \<longleftrightarrow> n = 0 \<and> P 0 \<or> (\<exists>q. (n * q \<le> m \<and> m < n * Suc q) \<and> P q)"
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1386
proof (cases "n = 0")
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1387
  case True
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1388
  then show ?thesis
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1389
    by simp
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1390
next
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1391
  case False
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1392
  then have "n * q \<le> m \<and> m < n * Suc q \<longleftrightarrow> m div n = q" for q
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1393
    by (auto intro: div_nat_eqI dividend_less_times_div)
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1394
  then show ?thesis
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1395
    by auto
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1396
qed
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1397
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1398
lemma split_mod:
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1399
  "P (m mod n) \<longleftrightarrow> (n = 0 \<longrightarrow> P m) \<and> (n \<noteq> 0 \<longrightarrow>
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1400
     (\<forall>i j. j < n \<longrightarrow> m = n * i + j \<longrightarrow> P j))"
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1401
     (is "?P \<longleftrightarrow> ?Q") for m n :: nat
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1402
proof (cases "n = 0")
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1403
  case True
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1404
  then show ?thesis
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1405
    by simp
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1406
next
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1407
  case False
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1408
  show ?thesis
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1409
  proof
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1410
    assume ?P
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1411
    with False show ?Q
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1412
      by auto
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1413
  next
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1414
    assume ?Q
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1415
    with False have *: "\<And>i j. j < n \<Longrightarrow> m = n * i + j \<Longrightarrow> P j"
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1416
      by simp
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1417
    with False show ?P
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1418
      by (auto intro: * [of _ "m div n"])
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1419
  qed
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1420
qed
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1421
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1422
69593
3dda49e08b9d isabelle update -u control_cartouches;
wenzelm
parents: 68536
diff changeset
  1423
subsection \<open>Euclidean division on \<^typ>\<open>int\<close>\<close>
66816
212a3334e7da more fundamental definition of div and mod on int
haftmann
parents: 66814
diff changeset
  1424
212a3334e7da more fundamental definition of div and mod on int
haftmann
parents: 66814
diff changeset
  1425
instantiation int :: normalization_semidom
212a3334e7da more fundamental definition of div and mod on int
haftmann
parents: 66814
diff changeset
  1426
begin
212a3334e7da more fundamental definition of div and mod on int
haftmann
parents: 66814
diff changeset
  1427
212a3334e7da more fundamental definition of div and mod on int
haftmann
parents: 66814
diff changeset
  1428
definition normalize_int :: "int \<Rightarrow> int"
212a3334e7da more fundamental definition of div and mod on int
haftmann
parents: 66814
diff changeset
  1429
  where [simp]: "normalize = (abs :: int \<Rightarrow> int)"
212a3334e7da more fundamental definition of div and mod on int
haftmann
parents: 66814
diff changeset
  1430
212a3334e7da more fundamental definition of div and mod on int
haftmann
parents: 66814
diff changeset
  1431
definition unit_factor_int :: "int \<Rightarrow> int"
212a3334e7da more fundamental definition of div and mod on int
haftmann
parents: 66814
diff changeset
  1432
  where [simp]: "unit_factor = (sgn :: int \<Rightarrow> int)"
212a3334e7da more fundamental definition of div and mod on int
haftmann
parents: 66814
diff changeset
  1433
212a3334e7da more fundamental definition of div and mod on int
haftmann
parents: 66814
diff changeset
  1434
definition divide_int :: "int \<Rightarrow> int \<Rightarrow> int"
212a3334e7da more fundamental definition of div and mod on int
haftmann
parents: 66814
diff changeset
  1435
  where "k div l = (if l = 0 then 0
212a3334e7da more fundamental definition of div and mod on int
haftmann
parents: 66814
diff changeset
  1436
    else if sgn k = sgn l
212a3334e7da more fundamental definition of div and mod on int
haftmann
parents: 66814
diff changeset
  1437
      then int (nat \<bar>k\<bar> div nat \<bar>l\<bar>)
212a3334e7da more fundamental definition of div and mod on int
haftmann
parents: 66814
diff changeset
  1438
      else - int (nat \<bar>k\<bar> div nat \<bar>l\<bar> + of_bool (\<not> l dvd k)))"
212a3334e7da more fundamental definition of div and mod on int
haftmann
parents: 66814
diff changeset
  1439
212a3334e7da more fundamental definition of div and mod on int
haftmann
parents: 66814
diff changeset
  1440
lemma divide_int_unfold:
212a3334e7da more fundamental definition of div and mod on int
haftmann
parents: 66814
diff changeset
  1441
  "(sgn k * int m) div (sgn l * int n) =
212a3334e7da more fundamental definition of div and mod on int
haftmann
parents: 66814
diff changeset
  1442
   (if sgn l = 0 \<or> sgn k = 0 \<or> n = 0 then 0
212a3334e7da more fundamental definition of div and mod on int
haftmann
parents: 66814
diff changeset
  1443
    else if sgn k = sgn l
212a3334e7da more fundamental definition of div and mod on int
haftmann
parents: 66814
diff changeset
  1444
      then int (m div n)
212a3334e7da more fundamental definition of div and mod on int
haftmann
parents: 66814
diff changeset
  1445
      else - int (m div n + of_bool (\<not> n dvd m)))"
212a3334e7da more fundamental definition of div and mod on int
haftmann
parents: 66814
diff changeset
  1446
  by (auto simp add: divide_int_def sgn_0_0 sgn_1_pos sgn_mult abs_mult
67118
ccab07d1196c more simplification rules
haftmann
parents: 67087
diff changeset
  1447
    nat_mult_distrib)
66816
212a3334e7da more fundamental definition of div and mod on int
haftmann
parents: 66814
diff changeset
  1448
212a3334e7da more fundamental definition of div and mod on int
haftmann
parents: 66814
diff changeset
  1449
instance proof
212a3334e7da more fundamental definition of div and mod on int
haftmann
parents: 66814
diff changeset
  1450
  fix k :: int show "k div 0 = 0"
212a3334e7da more fundamental definition of div and mod on int
haftmann
parents: 66814
diff changeset
  1451
  by (simp add: divide_int_def)
212a3334e7da more fundamental definition of div and mod on int
haftmann
parents: 66814
diff changeset
  1452
next
212a3334e7da more fundamental definition of div and mod on int
haftmann
parents: 66814
diff changeset
  1453
  fix k l :: int
212a3334e7da more fundamental definition of div and mod on int
haftmann
parents: 66814
diff changeset
  1454
  assume "l \<noteq> 0"
212a3334e7da more fundamental definition of div and mod on int
haftmann
parents: 66814
diff changeset
  1455
  obtain n m and s t where k: "k = sgn s * int n" and l: "l = sgn t * int m" 
212a3334e7da more fundamental definition of div and mod on int
haftmann
parents: 66814
diff changeset
  1456
    by (blast intro: int_sgnE elim: that)
212a3334e7da more fundamental definition of div and mod on int
haftmann
parents: 66814
diff changeset
  1457
  then have "k * l = sgn (s * t) * int (n * m)"
212a3334e7da more fundamental definition of div and mod on int
haftmann
parents: 66814
diff changeset
  1458
    by (simp add: ac_simps sgn_mult)
212a3334e7da more fundamental definition of div and mod on int
haftmann
parents: 66814
diff changeset
  1459
  with k l \<open>l \<noteq> 0\<close> show "k * l div l = k"
212a3334e7da more fundamental definition of div and mod on int
haftmann
parents: 66814
diff changeset
  1460
    by (simp only: divide_int_unfold)
212a3334e7da more fundamental definition of div and mod on int
haftmann
parents: 66814
diff changeset
  1461
      (auto simp add: algebra_simps sgn_mult sgn_1_pos sgn_0_0)
212a3334e7da more fundamental definition of div and mod on int
haftmann
parents: 66814
diff changeset
  1462
qed (auto simp add: sgn_mult mult_sgn_abs abs_eq_iff')
212a3334e7da more fundamental definition of div and mod on int
haftmann
parents: 66814
diff changeset
  1463
212a3334e7da more fundamental definition of div and mod on int
haftmann
parents: 66814
diff changeset
  1464
end
212a3334e7da more fundamental definition of div and mod on int
haftmann
parents: 66814
diff changeset
  1465
67051
e7e54a0b9197 dedicated definition for coprimality
haftmann
parents: 66886
diff changeset
  1466
lemma coprime_int_iff [simp]:
e7e54a0b9197 dedicated definition for coprimality
haftmann
parents: 66886
diff changeset
  1467
  "coprime (int m) (int n) \<longleftrightarrow> coprime m n" (is "?P \<longleftrightarrow> ?Q")
e7e54a0b9197 dedicated definition for coprimality
haftmann
parents: 66886
diff changeset
  1468
proof
e7e54a0b9197 dedicated definition for coprimality
haftmann
parents: 66886
diff changeset
  1469
  assume ?P
e7e54a0b9197 dedicated definition for coprimality
haftmann
parents: 66886
diff changeset
  1470
  show ?Q
e7e54a0b9197 dedicated definition for coprimality
haftmann
parents: 66886
diff changeset
  1471
  proof (rule coprimeI)
e7e54a0b9197 dedicated definition for coprimality
haftmann
parents: 66886
diff changeset
  1472
    fix q
e7e54a0b9197 dedicated definition for coprimality
haftmann
parents: 66886
diff changeset
  1473
    assume "q dvd m" "q dvd n"
e7e54a0b9197 dedicated definition for coprimality
haftmann
parents: 66886
diff changeset
  1474
    then have "int q dvd int m" "int q dvd int n"
67118
ccab07d1196c more simplification rules
haftmann
parents: 67087
diff changeset
  1475
      by simp_all
67051
e7e54a0b9197 dedicated definition for coprimality
haftmann
parents: 66886
diff changeset
  1476
    with \<open>?P\<close> have "is_unit (int q)"
e7e54a0b9197 dedicated definition for coprimality
haftmann
parents: 66886
diff changeset
  1477
      by (rule coprime_common_divisor)
e7e54a0b9197 dedicated definition for coprimality
haftmann
parents: 66886
diff changeset
  1478
    then show "is_unit q"
e7e54a0b9197 dedicated definition for coprimality
haftmann
parents: 66886
diff changeset
  1479
      by simp
e7e54a0b9197 dedicated definition for coprimality
haftmann
parents: 66886
diff changeset
  1480
  qed
e7e54a0b9197 dedicated definition for coprimality
haftmann
parents: 66886
diff changeset
  1481
next
e7e54a0b9197 dedicated definition for coprimality
haftmann
parents: 66886
diff changeset
  1482
  assume ?Q
e7e54a0b9197 dedicated definition for coprimality
haftmann
parents: 66886
diff changeset
  1483
  show ?P
e7e54a0b9197 dedicated definition for coprimality
haftmann
parents: 66886
diff changeset
  1484
  proof (rule coprimeI)
e7e54a0b9197 dedicated definition for coprimality
haftmann
parents: 66886
diff changeset
  1485
    fix k
e7e54a0b9197 dedicated definition for coprimality
haftmann
parents: 66886
diff changeset
  1486
    assume "k dvd int m" "k dvd int n"
e7e54a0b9197 dedicated definition for coprimality
haftmann
parents: 66886
diff changeset
  1487
    then have "nat \<bar>k\<bar> dvd m" "nat \<bar>k\<bar> dvd n"
67118
ccab07d1196c more simplification rules
haftmann
parents: 67087
diff changeset
  1488
      by simp_all
67051
e7e54a0b9197 dedicated definition for coprimality
haftmann
parents: 66886
diff changeset
  1489
    with \<open>?Q\<close> have "is_unit (nat \<bar>k\<bar>)"
e7e54a0b9197 dedicated definition for coprimality
haftmann
parents: 66886
diff changeset
  1490
      by (rule coprime_common_divisor)
e7e54a0b9197 dedicated definition for coprimality
haftmann
parents: 66886
diff changeset
  1491
    then show "is_unit k"
e7e54a0b9197 dedicated definition for coprimality
haftmann
parents: 66886
diff changeset
  1492
      by simp
e7e54a0b9197 dedicated definition for coprimality
haftmann
parents: 66886
diff changeset
  1493
  qed
e7e54a0b9197 dedicated definition for coprimality
haftmann
parents: 66886
diff changeset
  1494
qed
e7e54a0b9197 dedicated definition for coprimality
haftmann
parents: 66886
diff changeset
  1495
e7e54a0b9197 dedicated definition for coprimality
haftmann
parents: 66886
diff changeset
  1496
lemma coprime_abs_left_iff [simp]:
e7e54a0b9197 dedicated definition for coprimality
haftmann
parents: 66886
diff changeset
  1497
  "coprime \<bar>k\<bar> l \<longleftrightarrow> coprime k l" for k l :: int
e7e54a0b9197 dedicated definition for coprimality
haftmann
parents: 66886
diff changeset
  1498
  using coprime_normalize_left_iff [of k l] by simp
e7e54a0b9197 dedicated definition for coprimality
haftmann
parents: 66886
diff changeset
  1499
e7e54a0b9197 dedicated definition for coprimality
haftmann
parents: 66886
diff changeset
  1500
lemma coprime_abs_right_iff [simp]:
e7e54a0b9197 dedicated definition for coprimality
haftmann
parents: 66886
diff changeset
  1501
  "coprime k \<bar>l\<bar> \<longleftrightarrow> coprime k l" for k l :: int
e7e54a0b9197 dedicated definition for coprimality
haftmann
parents: 66886
diff changeset
  1502
  using coprime_abs_left_iff [of l k] by (simp add: ac_simps)
e7e54a0b9197 dedicated definition for coprimality
haftmann
parents: 66886
diff changeset
  1503
e7e54a0b9197 dedicated definition for coprimality
haftmann
parents: 66886
diff changeset
  1504
lemma coprime_nat_abs_left_iff [simp]:
e7e54a0b9197 dedicated definition for coprimality
haftmann
parents: 66886
diff changeset
  1505
  "coprime (nat \<bar>k\<bar>) n \<longleftrightarrow> coprime k (int n)"
e7e54a0b9197 dedicated definition for coprimality
haftmann
parents: 66886
diff changeset
  1506
proof -
e7e54a0b9197 dedicated definition for coprimality
haftmann
parents: 66886
diff changeset
  1507
  define m where "m = nat \<bar>k\<bar>"
e7e54a0b9197 dedicated definition for coprimality
haftmann
parents: 66886
diff changeset
  1508
  then have "\<bar>k\<bar> = int m"
e7e54a0b9197 dedicated definition for coprimality
haftmann
parents: 66886
diff changeset
  1509
    by simp
e7e54a0b9197 dedicated definition for coprimality
haftmann
parents: 66886
diff changeset
  1510
  moreover have "coprime k (int n) \<longleftrightarrow> coprime \<bar>k\<bar> (int n)"
e7e54a0b9197 dedicated definition for coprimality
haftmann
parents: 66886
diff changeset
  1511
    by simp
e7e54a0b9197 dedicated definition for coprimality
haftmann
parents: 66886
diff changeset
  1512
  ultimately show ?thesis
e7e54a0b9197 dedicated definition for coprimality
haftmann
parents: 66886
diff changeset
  1513
    by simp
e7e54a0b9197 dedicated definition for coprimality
haftmann
parents: 66886
diff changeset
  1514
qed
e7e54a0b9197 dedicated definition for coprimality
haftmann
parents: 66886
diff changeset
  1515
e7e54a0b9197 dedicated definition for coprimality
haftmann
parents: 66886
diff changeset
  1516
lemma coprime_nat_abs_right_iff [simp]:
e7e54a0b9197 dedicated definition for coprimality
haftmann
parents: 66886
diff changeset
  1517
  "coprime n (nat \<bar>k\<bar>) \<longleftrightarrow> coprime (int n) k"
e7e54a0b9197 dedicated definition for coprimality
haftmann
parents: 66886
diff changeset
  1518
  using coprime_nat_abs_left_iff [of k n] by (simp add: ac_simps)
e7e54a0b9197 dedicated definition for coprimality
haftmann
parents: 66886
diff changeset
  1519
e7e54a0b9197 dedicated definition for coprimality
haftmann
parents: 66886
diff changeset
  1520
lemma coprime_common_divisor_int: "coprime a b \<Longrightarrow> x dvd a \<Longrightarrow> x dvd b \<Longrightarrow> \<bar>x\<bar> = 1"
e7e54a0b9197 dedicated definition for coprimality
haftmann
parents: 66886
diff changeset
  1521
  for a b :: int
e7e54a0b9197 dedicated definition for coprimality
haftmann
parents: 66886
diff changeset
  1522
  by (drule coprime_common_divisor [of _ _ x]) simp_all
e7e54a0b9197 dedicated definition for coprimality
haftmann
parents: 66886
diff changeset
  1523
66838
17989f6bc7b2 clarified uniqueness criterion for euclidean rings
haftmann
parents: 66837
diff changeset
  1524
instantiation int :: idom_modulo
66816
212a3334e7da more fundamental definition of div and mod on int
haftmann
parents: 66814
diff changeset
  1525
begin
212a3334e7da more fundamental definition of div and mod on int
haftmann
parents: 66814
diff changeset
  1526
212a3334e7da more fundamental definition of div and mod on int
haftmann
parents: 66814
diff changeset
  1527
definition modulo_int :: "int \<Rightarrow> int \<Rightarrow> int"
212a3334e7da more fundamental definition of div and mod on int
haftmann
parents: 66814
diff changeset
  1528
  where "k mod l = (if l = 0 then k
212a3334e7da more fundamental definition of div and mod on int
haftmann
parents: 66814
diff changeset
  1529
    else if sgn k = sgn l
212a3334e7da more fundamental definition of div and mod on int
haftmann
parents: 66814
diff changeset
  1530
      then sgn l * int (nat \<bar>k\<bar> mod nat \<bar>l\<bar>)
212a3334e7da more fundamental definition of div and mod on int
haftmann
parents: 66814
diff changeset
  1531
      else sgn l * (\<bar>l\<bar> * of_bool (\<not> l dvd k) - int (nat \<bar>k\<bar> mod nat \<bar>l\<bar>)))"
212a3334e7da more fundamental definition of div and mod on int
haftmann
parents: 66814
diff changeset
  1532
212a3334e7da more fundamental definition of div and mod on int
haftmann
parents: 66814
diff changeset
  1533
lemma modulo_int_unfold:
212a3334e7da more fundamental definition of div and mod on int
haftmann
parents: 66814
diff changeset
  1534
  "(sgn k * int m) mod (sgn l * int n) =
212a3334e7da more fundamental definition of div and mod on int
haftmann
parents: 66814
diff changeset
  1535
   (if sgn l = 0 \<or> sgn k = 0 \<or> n = 0 then sgn k * int m
212a3334e7da more fundamental definition of div and mod on int
haftmann
parents: 66814
diff changeset
  1536
    else if sgn k = sgn l
212a3334e7da more fundamental definition of div and mod on int
haftmann
parents: 66814
diff changeset
  1537
      then sgn l * int (m mod n)
212a3334e7da more fundamental definition of div and mod on int
haftmann
parents: 66814
diff changeset
  1538
      else sgn l * (int (n * of_bool (\<not> n dvd m)) - int (m mod n)))"
212a3334e7da more fundamental definition of div and mod on int
haftmann
parents: 66814
diff changeset
  1539
  by (auto simp add: modulo_int_def sgn_0_0 sgn_1_pos sgn_mult abs_mult
67118
ccab07d1196c more simplification rules
haftmann
parents: 67087
diff changeset
  1540
    nat_mult_distrib)
66816
212a3334e7da more fundamental definition of div and mod on int
haftmann
parents: 66814
diff changeset
  1541
66838
17989f6bc7b2 clarified uniqueness criterion for euclidean rings
haftmann
parents: 66837
diff changeset
  1542
instance proof
17989f6bc7b2 clarified uniqueness criterion for euclidean rings
haftmann
parents: 66837
diff changeset
  1543
  fix k l :: int
17989f6bc7b2 clarified uniqueness criterion for euclidean rings
haftmann
parents: 66837
diff changeset
  1544
  obtain n m and s t where "k = sgn s * int n" and "l = sgn t * int m" 
17989f6bc7b2 clarified uniqueness criterion for euclidean rings
haftmann
parents: 66837
diff changeset
  1545
    by (blast intro: int_sgnE elim: that)
17989f6bc7b2 clarified uniqueness criterion for euclidean rings
haftmann
parents: 66837
diff changeset
  1546
  then show "k div l * l + k mod l = k"
17989f6bc7b2 clarified uniqueness criterion for euclidean rings
haftmann
parents: 66837
diff changeset
  1547
    by (auto simp add: divide_int_unfold modulo_int_unfold algebra_simps dest!: sgn_not_eq_imp)
17989f6bc7b2 clarified uniqueness criterion for euclidean rings
haftmann
parents: 66837
diff changeset
  1548
       (simp_all add: of_nat_mult [symmetric] of_nat_add [symmetric]
17989f6bc7b2 clarified uniqueness criterion for euclidean rings
haftmann
parents: 66837
diff changeset
  1549
         distrib_left [symmetric] minus_mult_right
17989f6bc7b2 clarified uniqueness criterion for euclidean rings
haftmann
parents: 66837
diff changeset
  1550
         del: of_nat_mult minus_mult_right [symmetric])
17989f6bc7b2 clarified uniqueness criterion for euclidean rings
haftmann
parents: 66837
diff changeset
  1551
qed
17989f6bc7b2 clarified uniqueness criterion for euclidean rings
haftmann
parents: 66837
diff changeset
  1552
17989f6bc7b2 clarified uniqueness criterion for euclidean rings
haftmann
parents: 66837
diff changeset
  1553
end
17989f6bc7b2 clarified uniqueness criterion for euclidean rings
haftmann
parents: 66837
diff changeset
  1554
17989f6bc7b2 clarified uniqueness criterion for euclidean rings
haftmann
parents: 66837
diff changeset
  1555
instantiation int :: unique_euclidean_ring
17989f6bc7b2 clarified uniqueness criterion for euclidean rings
haftmann
parents: 66837
diff changeset
  1556
begin
17989f6bc7b2 clarified uniqueness criterion for euclidean rings
haftmann
parents: 66837
diff changeset
  1557
17989f6bc7b2 clarified uniqueness criterion for euclidean rings
haftmann
parents: 66837
diff changeset
  1558
definition euclidean_size_int :: "int \<Rightarrow> nat"
17989f6bc7b2 clarified uniqueness criterion for euclidean rings
haftmann
parents: 66837
diff changeset
  1559
  where [simp]: "euclidean_size_int = (nat \<circ> abs :: int \<Rightarrow> nat)"
17989f6bc7b2 clarified uniqueness criterion for euclidean rings
haftmann
parents: 66837
diff changeset
  1560
17989f6bc7b2 clarified uniqueness criterion for euclidean rings
haftmann
parents: 66837
diff changeset
  1561
definition division_segment_int :: "int \<Rightarrow> int"
17989f6bc7b2 clarified uniqueness criterion for euclidean rings
haftmann
parents: 66837
diff changeset
  1562
  where "division_segment_int k = (if k \<ge> 0 then 1 else - 1)"
17989f6bc7b2 clarified uniqueness criterion for euclidean rings
haftmann
parents: 66837
diff changeset
  1563
17989f6bc7b2 clarified uniqueness criterion for euclidean rings
haftmann
parents: 66837
diff changeset
  1564
lemma division_segment_eq_sgn:
17989f6bc7b2 clarified uniqueness criterion for euclidean rings
haftmann
parents: 66837
diff changeset
  1565
  "division_segment k = sgn k" if "k \<noteq> 0" for k :: int
17989f6bc7b2 clarified uniqueness criterion for euclidean rings
haftmann
parents: 66837
diff changeset
  1566
  using that by (simp add: division_segment_int_def)
17989f6bc7b2 clarified uniqueness criterion for euclidean rings
haftmann
parents: 66837
diff changeset
  1567
17989f6bc7b2 clarified uniqueness criterion for euclidean rings
haftmann
parents: 66837
diff changeset
  1568
lemma abs_division_segment [simp]:
17989f6bc7b2 clarified uniqueness criterion for euclidean rings
haftmann
parents: 66837
diff changeset
  1569
  "\<bar>division_segment k\<bar> = 1" for k :: int
17989f6bc7b2 clarified uniqueness criterion for euclidean rings
haftmann
parents: 66837
diff changeset
  1570
  by (simp add: division_segment_int_def)
17989f6bc7b2 clarified uniqueness criterion for euclidean rings
haftmann
parents: 66837
diff changeset
  1571
66816
212a3334e7da more fundamental definition of div and mod on int
haftmann
parents: 66814
diff changeset
  1572
lemma abs_mod_less:
212a3334e7da more fundamental definition of div and mod on int
haftmann
parents: 66814
diff changeset
  1573
  "\<bar>k mod l\<bar> < \<bar>l\<bar>" if "l \<noteq> 0" for k l :: int
212a3334e7da more fundamental definition of div and mod on int
haftmann
parents: 66814
diff changeset
  1574
proof -
212a3334e7da more fundamental definition of div and mod on int
haftmann
parents: 66814
diff changeset
  1575
  obtain n m and s t where "k = sgn s * int n" and "l = sgn t * int m" 
212a3334e7da more fundamental definition of div and mod on int
haftmann
parents: 66814
diff changeset
  1576
    by (blast intro: int_sgnE elim: that)
212a3334e7da more fundamental definition of div and mod on int
haftmann
parents: 66814
diff changeset
  1577
  with that show ?thesis
212a3334e7da more fundamental definition of div and mod on int
haftmann
parents: 66814
diff changeset
  1578
    by (simp add: modulo_int_unfold sgn_0_0 sgn_1_pos sgn_1_neg
212a3334e7da more fundamental definition of div and mod on int
haftmann
parents: 66814
diff changeset
  1579
      abs_mult mod_greater_zero_iff_not_dvd)
212a3334e7da more fundamental definition of div and mod on int
haftmann
parents: 66814
diff changeset
  1580
qed
212a3334e7da more fundamental definition of div and mod on int
haftmann
parents: 66814
diff changeset
  1581
212a3334e7da more fundamental definition of div and mod on int
haftmann
parents: 66814
diff changeset
  1582
lemma sgn_mod:
212a3334e7da more fundamental definition of div and mod on int
haftmann
parents: 66814
diff changeset
  1583
  "sgn (k mod l) = sgn l" if "l \<noteq> 0" "\<not> l dvd k" for k l :: int
212a3334e7da more fundamental definition of div and mod on int
haftmann
parents: 66814
diff changeset
  1584
proof -
212a3334e7da more fundamental definition of div and mod on int
haftmann
parents: 66814
diff changeset
  1585
  obtain n m and s t where "k = sgn s * int n" and "l = sgn t * int m" 
212a3334e7da more fundamental definition of div and mod on int
haftmann
parents: 66814
diff changeset
  1586
    by (blast intro: int_sgnE elim: that)
212a3334e7da more fundamental definition of div and mod on int
haftmann
parents: 66814
diff changeset
  1587
  with that show ?thesis
212a3334e7da more fundamental definition of div and mod on int
haftmann
parents: 66814
diff changeset
  1588
    by (simp add: modulo_int_unfold sgn_0_0 sgn_1_pos sgn_1_neg
67118
ccab07d1196c more simplification rules
haftmann
parents: 67087
diff changeset
  1589
      sgn_mult mod_eq_0_iff_dvd)
66816
212a3334e7da more fundamental definition of div and mod on int
haftmann
parents: 66814
diff changeset
  1590
qed
212a3334e7da more fundamental definition of div and mod on int
haftmann
parents: 66814
diff changeset
  1591
212a3334e7da more fundamental definition of div and mod on int
haftmann
parents: 66814
diff changeset
  1592
instance proof
212a3334e7da more fundamental definition of div and mod on int
haftmann
parents: 66814
diff changeset
  1593
  fix k l :: int
66838
17989f6bc7b2 clarified uniqueness criterion for euclidean rings
haftmann
parents: 66837
diff changeset
  1594
  show "division_segment (k mod l) = division_segment l" if
17989f6bc7b2 clarified uniqueness criterion for euclidean rings
haftmann
parents: 66837
diff changeset
  1595
    "l \<noteq> 0" and "\<not> l dvd k"
17989f6bc7b2 clarified uniqueness criterion for euclidean rings
haftmann
parents: 66837
diff changeset
  1596
    using that by (simp add: division_segment_eq_sgn dvd_eq_mod_eq_0 sgn_mod)
66816
212a3334e7da more fundamental definition of div and mod on int
haftmann
parents: 66814
diff changeset
  1597
next
212a3334e7da more fundamental definition of div and mod on int
haftmann
parents: 66814
diff changeset
  1598
  fix l q r :: int
212a3334e7da more fundamental definition of div and mod on int
haftmann
parents: 66814
diff changeset
  1599
  obtain n m and s t
212a3334e7da more fundamental definition of div and mod on int
haftmann
parents: 66814
diff changeset
  1600
     where l: "l = sgn s * int n" and q: "q = sgn t * int m"
212a3334e7da more fundamental definition of div and mod on int
haftmann
parents: 66814
diff changeset
  1601
    by (blast intro: int_sgnE elim: that)
212a3334e7da more fundamental definition of div and mod on int
haftmann
parents: 66814
diff changeset
  1602
  assume \<open>l \<noteq> 0\<close>
212a3334e7da more fundamental definition of div and mod on int
haftmann
parents: 66814
diff changeset
  1603
  with l have "s \<noteq> 0" and "n > 0"
212a3334e7da more fundamental definition of div and mod on int
haftmann
parents: 66814
diff changeset
  1604
    by (simp_all add: sgn_0_0)
66838
17989f6bc7b2 clarified uniqueness criterion for euclidean rings
haftmann
parents: 66837
diff changeset
  1605
  assume "division_segment r = division_segment l"
66816
212a3334e7da more fundamental definition of div and mod on int
haftmann
parents: 66814
diff changeset
  1606
  moreover have "r = sgn r * \<bar>r\<bar>"
212a3334e7da more fundamental definition of div and mod on int
haftmann
parents: 66814
diff changeset
  1607
    by (simp add: sgn_mult_abs)
212a3334e7da more fundamental definition of div and mod on int
haftmann
parents: 66814
diff changeset
  1608
  moreover define u where "u = nat \<bar>r\<bar>"
212a3334e7da more fundamental definition of div and mod on int
haftmann
parents: 66814
diff changeset
  1609
  ultimately have "r = sgn l * int u"
66838
17989f6bc7b2 clarified uniqueness criterion for euclidean rings
haftmann
parents: 66837
diff changeset
  1610
    using division_segment_eq_sgn \<open>l \<noteq> 0\<close> by (cases "r = 0") simp_all
66816
212a3334e7da more fundamental definition of div and mod on int
haftmann
parents: 66814
diff changeset
  1611
  with l \<open>n > 0\<close> have r: "r = sgn s * int u"
212a3334e7da more fundamental definition of div and mod on int
haftmann
parents: 66814
diff changeset
  1612
    by (simp add: sgn_mult)
212a3334e7da more fundamental definition of div and mod on int
haftmann
parents: 66814
diff changeset
  1613
  assume "euclidean_size r < euclidean_size l"
212a3334e7da more fundamental definition of div and mod on int
haftmann
parents: 66814
diff changeset
  1614
  with l r \<open>s \<noteq> 0\<close> have "u < n"
212a3334e7da more fundamental definition of div and mod on int
haftmann
parents: 66814
diff changeset
  1615
    by (simp add: abs_mult)
212a3334e7da more fundamental definition of div and mod on int
haftmann
parents: 66814
diff changeset
  1616
  show "(q * l + r) div l = q"
212a3334e7da more fundamental definition of div and mod on int
haftmann
parents: 66814
diff changeset
  1617
  proof (cases "q = 0 \<or> r = 0")
212a3334e7da more fundamental definition of div and mod on int
haftmann
parents: 66814
diff changeset
  1618
    case True
212a3334e7da more fundamental definition of div and mod on int
haftmann
parents: 66814
diff changeset
  1619
    then show ?thesis
212a3334e7da more fundamental definition of div and mod on int
haftmann
parents: 66814
diff changeset
  1620
    proof
212a3334e7da more fundamental definition of div and mod on int
haftmann
parents: 66814
diff changeset
  1621
      assume "q = 0"
212a3334e7da more fundamental definition of div and mod on int
haftmann
parents: 66814
diff changeset
  1622
      then show ?thesis
212a3334e7da more fundamental definition of div and mod on int
haftmann
parents: 66814
diff changeset
  1623
        using l r \<open>u < n\<close> by (simp add: divide_int_unfold)
212a3334e7da more fundamental definition of div and mod on int
haftmann
parents: 66814
diff changeset
  1624
    next
212a3334e7da more fundamental definition of div and mod on int
haftmann
parents: 66814
diff changeset
  1625
      assume "r = 0"
212a3334e7da more fundamental definition of div and mod on int
haftmann
parents: 66814
diff changeset
  1626
      from \<open>r = 0\<close> have *: "q * l + r = sgn (t * s) * int (n * m)"
212a3334e7da more fundamental definition of div and mod on int
haftmann
parents: 66814
diff changeset
  1627
        using q l by (simp add: ac_simps sgn_mult)
212a3334e7da more fundamental definition of div and mod on int
haftmann
parents: 66814
diff changeset
  1628
      from \<open>s \<noteq> 0\<close> \<open>n > 0\<close> show ?thesis
212a3334e7da more fundamental definition of div and mod on int
haftmann
parents: 66814
diff changeset
  1629
        by (simp only: *, simp only: q l divide_int_unfold)
212a3334e7da more fundamental definition of div and mod on int
haftmann
parents: 66814
diff changeset
  1630
          (auto simp add: sgn_mult sgn_0_0 sgn_1_pos)
212a3334e7da more fundamental definition of div and mod on int
haftmann
parents: 66814
diff changeset
  1631
    qed
212a3334e7da more fundamental definition of div and mod on int
haftmann
parents: 66814
diff changeset
  1632
  next
212a3334e7da more fundamental definition of div and mod on int
haftmann
parents: 66814
diff changeset
  1633
    case False
212a3334e7da more fundamental definition of div and mod on int
haftmann
parents: 66814
diff changeset
  1634
    with q r have "t \<noteq> 0" and "m > 0" and "s \<noteq> 0" and "u > 0"
212a3334e7da more fundamental definition of div and mod on int
haftmann
parents: 66814
diff changeset
  1635
      by (simp_all add: sgn_0_0)
212a3334e7da more fundamental definition of div and mod on int
haftmann
parents: 66814
diff changeset
  1636
    moreover from \<open>0 < m\<close> \<open>u < n\<close> have "u \<le> m * n"
212a3334e7da more fundamental definition of div and mod on int
haftmann
parents: 66814
diff changeset
  1637
      using mult_le_less_imp_less [of 1 m u n] by simp
212a3334e7da more fundamental definition of div and mod on int
haftmann
parents: 66814
diff changeset
  1638
    ultimately have *: "q * l + r = sgn (s * t)
212a3334e7da more fundamental definition of div and mod on int
haftmann
parents: 66814
diff changeset
  1639
      * int (if t < 0 then m * n - u else m * n + u)"
212a3334e7da more fundamental definition of div and mod on int
haftmann
parents: 66814
diff changeset
  1640
      using l q r
212a3334e7da more fundamental definition of div and mod on int
haftmann
parents: 66814
diff changeset
  1641
      by (simp add: sgn_mult algebra_simps of_nat_diff)
212a3334e7da more fundamental definition of div and mod on int
haftmann
parents: 66814
diff changeset
  1642
    have "(m * n - u) div n = m - 1" if "u > 0"
212a3334e7da more fundamental definition of div and mod on int
haftmann
parents: 66814
diff changeset
  1643
      using \<open>0 < m\<close> \<open>u < n\<close> that
212a3334e7da more fundamental definition of div and mod on int
haftmann
parents: 66814
diff changeset
  1644
      by (auto intro: div_nat_eqI simp add: algebra_simps)
212a3334e7da more fundamental definition of div and mod on int
haftmann
parents: 66814
diff changeset
  1645
    moreover have "n dvd m * n - u \<longleftrightarrow> n dvd u"
212a3334e7da more fundamental definition of div and mod on int
haftmann
parents: 66814
diff changeset
  1646
      using \<open>u \<le> m * n\<close> dvd_diffD1 [of n "m * n" u]
212a3334e7da more fundamental definition of div and mod on int
haftmann
parents: 66814
diff changeset
  1647
      by auto
212a3334e7da more fundamental definition of div and mod on int
haftmann
parents: 66814
diff changeset
  1648
    ultimately show ?thesis
212a3334e7da more fundamental definition of div and mod on int
haftmann
parents: 66814
diff changeset
  1649
      using \<open>s \<noteq> 0\<close> \<open>m > 0\<close> \<open>u > 0\<close> \<open>u < n\<close> \<open>u \<le> m * n\<close>
212a3334e7da more fundamental definition of div and mod on int
haftmann
parents: 66814
diff changeset
  1650
      by (simp only: *, simp only: l q divide_int_unfold)
212a3334e7da more fundamental definition of div and mod on int
haftmann
parents: 66814
diff changeset
  1651
        (auto simp add: sgn_mult sgn_0_0 sgn_1_pos algebra_simps dest: dvd_imp_le)
212a3334e7da more fundamental definition of div and mod on int
haftmann
parents: 66814
diff changeset
  1652
  qed
68536
e14848001c4c avoid pending shyps in global theory facts;
wenzelm
parents: 67118
diff changeset
  1653
qed (use mult_le_mono2 [of 1] in \<open>auto simp add: division_segment_int_def not_le zero_less_mult_iff mult_less_0_iff abs_mult sgn_mult abs_mod_less sgn_mod nat_mult_distrib\<close>)
66816
212a3334e7da more fundamental definition of div and mod on int
haftmann
parents: 66814
diff changeset
  1654
212a3334e7da more fundamental definition of div and mod on int
haftmann
parents: 66814
diff changeset
  1655
end
212a3334e7da more fundamental definition of div and mod on int
haftmann
parents: 66814
diff changeset
  1656
212a3334e7da more fundamental definition of div and mod on int
haftmann
parents: 66814
diff changeset
  1657
lemma pos_mod_bound [simp]:
212a3334e7da more fundamental definition of div and mod on int
haftmann
parents: 66814
diff changeset
  1658
  "k mod l < l" if "l > 0" for k l :: int
212a3334e7da more fundamental definition of div and mod on int
haftmann
parents: 66814
diff changeset
  1659
proof -
212a3334e7da more fundamental definition of div and mod on int
haftmann
parents: 66814
diff changeset
  1660
  obtain m and s where "k = sgn s * int m"
69695
753ae9e9773d algebraized more material from theory Divides
haftmann
parents: 69593
diff changeset
  1661
    by (rule int_sgnE)
66816
212a3334e7da more fundamental definition of div and mod on int
haftmann
parents: 66814
diff changeset
  1662
  moreover from that obtain n where "l = sgn 1 * int n"
69695
753ae9e9773d algebraized more material from theory Divides
haftmann
parents: 69593
diff changeset
  1663
    by (cases l) simp_all
753ae9e9773d algebraized more material from theory Divides
haftmann
parents: 69593
diff changeset
  1664
  moreover from this that have "n > 0"
753ae9e9773d algebraized more material from theory Divides
haftmann
parents: 69593
diff changeset
  1665
    by simp
66816
212a3334e7da more fundamental definition of div and mod on int
haftmann
parents: 66814
diff changeset
  1666
  ultimately show ?thesis
69695
753ae9e9773d algebraized more material from theory Divides
haftmann
parents: 69593
diff changeset
  1667
    by (simp only: modulo_int_unfold)
753ae9e9773d algebraized more material from theory Divides
haftmann
parents: 69593
diff changeset
  1668
      (simp add: mod_greater_zero_iff_not_dvd)
753ae9e9773d algebraized more material from theory Divides
haftmann
parents: 69593
diff changeset
  1669
qed
753ae9e9773d algebraized more material from theory Divides
haftmann
parents: 69593
diff changeset
  1670
753ae9e9773d algebraized more material from theory Divides
haftmann
parents: 69593
diff changeset
  1671
lemma neg_mod_bound [simp]:
753ae9e9773d algebraized more material from theory Divides
haftmann
parents: 69593
diff changeset
  1672
  "l < k mod l" if "l < 0" for k l :: int
753ae9e9773d algebraized more material from theory Divides
haftmann
parents: 69593
diff changeset
  1673
proof -
753ae9e9773d algebraized more material from theory Divides
haftmann
parents: 69593
diff changeset
  1674
  obtain m and s where "k = sgn s * int m"
753ae9e9773d algebraized more material from theory Divides
haftmann
parents: 69593
diff changeset
  1675
    by (rule int_sgnE)
753ae9e9773d algebraized more material from theory Divides
haftmann
parents: 69593
diff changeset
  1676
  moreover from that obtain q where "l = sgn (- 1) * int (Suc q)"
753ae9e9773d algebraized more material from theory Divides
haftmann
parents: 69593
diff changeset
  1677
    by (cases l) simp_all
753ae9e9773d algebraized more material from theory Divides
haftmann
parents: 69593
diff changeset
  1678
  moreover define n where "n = Suc q"
753ae9e9773d algebraized more material from theory Divides
haftmann
parents: 69593
diff changeset
  1679
  then have "Suc q = n"
753ae9e9773d algebraized more material from theory Divides
haftmann
parents: 69593
diff changeset
  1680
    by simp
753ae9e9773d algebraized more material from theory Divides
haftmann
parents: 69593
diff changeset
  1681
  ultimately show ?thesis
753ae9e9773d algebraized more material from theory Divides
haftmann
parents: 69593
diff changeset
  1682
    by (simp only: modulo_int_unfold)
66816
212a3334e7da more fundamental definition of div and mod on int
haftmann
parents: 66814
diff changeset
  1683
      (simp add: mod_greater_zero_iff_not_dvd)
212a3334e7da more fundamental definition of div and mod on int
haftmann
parents: 66814
diff changeset
  1684
qed
212a3334e7da more fundamental definition of div and mod on int
haftmann
parents: 66814
diff changeset
  1685
212a3334e7da more fundamental definition of div and mod on int
haftmann
parents: 66814
diff changeset
  1686
lemma pos_mod_sign [simp]:
212a3334e7da more fundamental definition of div and mod on int
haftmann
parents: 66814
diff changeset
  1687
  "0 \<le> k mod l" if "l > 0" for k l :: int
212a3334e7da more fundamental definition of div and mod on int
haftmann
parents: 66814
diff changeset
  1688
proof -
212a3334e7da more fundamental definition of div and mod on int
haftmann
parents: 66814
diff changeset
  1689
  obtain m and s where "k = sgn s * int m"
69695
753ae9e9773d algebraized more material from theory Divides
haftmann
parents: 69593
diff changeset
  1690
    by (rule int_sgnE)
66816
212a3334e7da more fundamental definition of div and mod on int
haftmann
parents: 66814
diff changeset
  1691
  moreover from that obtain n where "l = sgn 1 * int n"
212a3334e7da more fundamental definition of div and mod on int
haftmann
parents: 66814
diff changeset
  1692
    by (cases l) auto
69695
753ae9e9773d algebraized more material from theory Divides
haftmann
parents: 69593
diff changeset
  1693
  moreover from this that have "n > 0"
753ae9e9773d algebraized more material from theory Divides
haftmann
parents: 69593
diff changeset
  1694
    by simp
66816
212a3334e7da more fundamental definition of div and mod on int
haftmann
parents: 66814
diff changeset
  1695
  ultimately show ?thesis
69695
753ae9e9773d algebraized more material from theory Divides
haftmann
parents: 69593
diff changeset
  1696
    by (simp only: modulo_int_unfold) simp
753ae9e9773d algebraized more material from theory Divides
haftmann
parents: 69593
diff changeset
  1697
qed
753ae9e9773d algebraized more material from theory Divides
haftmann
parents: 69593
diff changeset
  1698
753ae9e9773d algebraized more material from theory Divides
haftmann
parents: 69593
diff changeset
  1699
lemma neg_mod_sign [simp]:
753ae9e9773d algebraized more material from theory Divides
haftmann
parents: 69593
diff changeset
  1700
  "k mod l \<le> 0" if "l < 0" for k l :: int
753ae9e9773d algebraized more material from theory Divides
haftmann
parents: 69593
diff changeset
  1701
proof -
753ae9e9773d algebraized more material from theory Divides
haftmann
parents: 69593
diff changeset
  1702
  obtain m and s where "k = sgn s * int m"
753ae9e9773d algebraized more material from theory Divides
haftmann
parents: 69593
diff changeset
  1703
    by (rule int_sgnE)
753ae9e9773d algebraized more material from theory Divides
haftmann
parents: 69593
diff changeset
  1704
  moreover from that obtain q where "l = sgn (- 1) * int (Suc q)"
753ae9e9773d algebraized more material from theory Divides
haftmann
parents: 69593
diff changeset
  1705
    by (cases l) simp_all
753ae9e9773d algebraized more material from theory Divides
haftmann
parents: 69593
diff changeset
  1706
  moreover define n where "n = Suc q"
753ae9e9773d algebraized more material from theory Divides
haftmann
parents: 69593
diff changeset
  1707
  then have "Suc q = n"
753ae9e9773d algebraized more material from theory Divides
haftmann
parents: 69593
diff changeset
  1708
    by simp
753ae9e9773d algebraized more material from theory Divides
haftmann
parents: 69593
diff changeset
  1709
  ultimately show ?thesis
753ae9e9773d algebraized more material from theory Divides
haftmann
parents: 69593
diff changeset
  1710
    by (simp only: modulo_int_unfold) simp
66816
212a3334e7da more fundamental definition of div and mod on int
haftmann
parents: 66814
diff changeset
  1711
qed
212a3334e7da more fundamental definition of div and mod on int
haftmann
parents: 66814
diff changeset
  1712
212a3334e7da more fundamental definition of div and mod on int
haftmann
parents: 66814
diff changeset
  1713
66808
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1714
subsection \<open>Code generation\<close>
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1715
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1716
code_identifier
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1717
  code_module Euclidean_Division \<rightharpoonup> (SML) Arith and (OCaml) Arith and (Haskell) Arith
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1718
1907167b6038 elementary definition of division on natural numbers
haftmann
parents: 66807
diff changeset
  1719
end