src/HOL/Real_Vector_Spaces.thy
author paulson <lp15@cam.ac.uk>
Wed, 22 Feb 2023 15:24:16 +0000
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parent 77221 0cdb384bf56a
child 78656 4da1e18a9633
permissions -rw-r--r--
One new (necessary) theorem
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(*  Title:      HOL/Real_Vector_Spaces.thy
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    Author:     Brian Huffman
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    Author:     Johannes Hölzl
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*)
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section \<open>Vector Spaces and Algebras over the Reals\<close>
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theory Real_Vector_Spaces              
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imports Real Topological_Spaces Vector_Spaces
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begin                                   
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subsection \<open>Real vector spaces\<close>
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class scaleR =
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  fixes scaleR :: "real \<Rightarrow> 'a \<Rightarrow> 'a" (infixr "*\<^sub>R" 75)
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begin
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abbreviation divideR :: "'a \<Rightarrow> real \<Rightarrow> 'a"  (infixl "'/\<^sub>R" 70)
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  where "x /\<^sub>R r \<equiv> inverse r *\<^sub>R x"
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end
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class real_vector = scaleR + ab_group_add +
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  assumes scaleR_add_right: "a *\<^sub>R (x + y) = a *\<^sub>R x + a *\<^sub>R y"
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  and scaleR_add_left: "(a + b) *\<^sub>R x = a *\<^sub>R x + b *\<^sub>R x"
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  and scaleR_scaleR: "a *\<^sub>R b *\<^sub>R x = (a * b) *\<^sub>R x"
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  and scaleR_one: "1 *\<^sub>R x = x"
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class real_algebra = real_vector + ring +
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  assumes mult_scaleR_left [simp]: "a *\<^sub>R x * y = a *\<^sub>R (x * y)"
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    and mult_scaleR_right [simp]: "x * a *\<^sub>R y = a *\<^sub>R (x * y)"
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class real_algebra_1 = real_algebra + ring_1
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class real_div_algebra = real_algebra_1 + division_ring
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class real_field = real_div_algebra + field
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instantiation real :: real_field
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begin
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definition real_scaleR_def [simp]: "scaleR a x = a * x"
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instance
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  by standard (simp_all add: algebra_simps)
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end
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locale linear = Vector_Spaces.linear "scaleR::_\<Rightarrow>_\<Rightarrow>'a::real_vector" "scaleR::_\<Rightarrow>_\<Rightarrow>'b::real_vector"
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begin
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lemmas scaleR = scale
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end
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global_interpretation real_vector?: vector_space "scaleR :: real \<Rightarrow> 'a \<Rightarrow> 'a :: real_vector"
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  rewrites "Vector_Spaces.linear (*\<^sub>R) (*\<^sub>R) = linear"
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    and "Vector_Spaces.linear (*) (*\<^sub>R) = linear"
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  defines dependent_raw_def: dependent = real_vector.dependent
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    and representation_raw_def: representation = real_vector.representation
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    and subspace_raw_def: subspace = real_vector.subspace
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    and span_raw_def: span = real_vector.span
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    and extend_basis_raw_def: extend_basis = real_vector.extend_basis
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    and dim_raw_def: dim = real_vector.dim
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proof unfold_locales
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  show "Vector_Spaces.linear (*\<^sub>R) (*\<^sub>R) = linear" "Vector_Spaces.linear (*) (*\<^sub>R) = linear"
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    by (force simp: linear_def real_scaleR_def[abs_def])+
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qed (use scaleR_add_right scaleR_add_left scaleR_scaleR scaleR_one in auto)
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hide_const (open)\<comment> \<open>locale constants\<close>
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  real_vector.dependent
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  real_vector.independent
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  real_vector.representation
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  real_vector.subspace
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  real_vector.span
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  real_vector.extend_basis
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  real_vector.dim
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abbreviation "independent x \<equiv> \<not> dependent x"
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global_interpretation real_vector?: vector_space_pair "scaleR::_\<Rightarrow>_\<Rightarrow>'a::real_vector" "scaleR::_\<Rightarrow>_\<Rightarrow>'b::real_vector"
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  rewrites  "Vector_Spaces.linear (*\<^sub>R) (*\<^sub>R) = linear"
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    and "Vector_Spaces.linear (*) (*\<^sub>R) = linear"
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  defines construct_raw_def: construct = real_vector.construct
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proof unfold_locales
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  show "Vector_Spaces.linear (*) (*\<^sub>R) = linear"
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  unfolding linear_def real_scaleR_def by auto
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qed (auto simp: linear_def)
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hide_const (open)\<comment> \<open>locale constants\<close>
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  real_vector.construct
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lemma linear_compose: "linear f \<Longrightarrow> linear g \<Longrightarrow> linear (g \<circ> f)"
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  unfolding linear_def by (rule Vector_Spaces.linear_compose)
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text \<open>Recover original theorem names\<close>
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lemmas scaleR_left_commute = real_vector.scale_left_commute
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lemmas scaleR_zero_left = real_vector.scale_zero_left
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lemmas scaleR_minus_left = real_vector.scale_minus_left
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lemmas scaleR_diff_left = real_vector.scale_left_diff_distrib
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lemmas scaleR_sum_left = real_vector.scale_sum_left
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lemmas scaleR_zero_right = real_vector.scale_zero_right
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lemmas scaleR_minus_right = real_vector.scale_minus_right
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lemmas scaleR_diff_right = real_vector.scale_right_diff_distrib
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lemmas scaleR_sum_right = real_vector.scale_sum_right
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lemmas scaleR_eq_0_iff = real_vector.scale_eq_0_iff
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lemmas scaleR_left_imp_eq = real_vector.scale_left_imp_eq
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lemmas scaleR_right_imp_eq = real_vector.scale_right_imp_eq
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lemmas scaleR_cancel_left = real_vector.scale_cancel_left
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lemmas scaleR_cancel_right = real_vector.scale_cancel_right
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lemma [field_simps]:
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  "c \<noteq> 0 \<Longrightarrow> a = b /\<^sub>R c \<longleftrightarrow> c *\<^sub>R a = b"
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  "c \<noteq> 0 \<Longrightarrow> b /\<^sub>R c = a \<longleftrightarrow> b = c *\<^sub>R a"
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  "c \<noteq> 0 \<Longrightarrow> a + b /\<^sub>R c = (c *\<^sub>R a + b) /\<^sub>R c"
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  "c \<noteq> 0 \<Longrightarrow> a /\<^sub>R c + b = (a + c *\<^sub>R b) /\<^sub>R c"
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  "c \<noteq> 0 \<Longrightarrow> a - b /\<^sub>R c = (c *\<^sub>R a - b) /\<^sub>R c"
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  "c \<noteq> 0 \<Longrightarrow> a /\<^sub>R c - b = (a - c *\<^sub>R b) /\<^sub>R c"
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  "c \<noteq> 0 \<Longrightarrow> - (a /\<^sub>R c) + b = (- a + c *\<^sub>R b) /\<^sub>R c"
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  "c \<noteq> 0 \<Longrightarrow> - (a /\<^sub>R c) - b = (- a - c *\<^sub>R b) /\<^sub>R c"
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  for a b :: "'a :: real_vector"
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  by (auto simp add: scaleR_add_right scaleR_add_left scaleR_diff_right scaleR_diff_left)
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   126
text \<open>Legacy names\<close>
44282
f0de18b62d63 remove bounded_(bi)linear locale interpretations, to avoid duplicating so many lemmas
huffman
parents: 44127
diff changeset
   127
f0de18b62d63 remove bounded_(bi)linear locale interpretations, to avoid duplicating so many lemmas
huffman
parents: 44127
diff changeset
   128
lemmas scaleR_left_distrib = scaleR_add_left
f0de18b62d63 remove bounded_(bi)linear locale interpretations, to avoid duplicating so many lemmas
huffman
parents: 44127
diff changeset
   129
lemmas scaleR_right_distrib = scaleR_add_right
f0de18b62d63 remove bounded_(bi)linear locale interpretations, to avoid duplicating so many lemmas
huffman
parents: 44127
diff changeset
   130
lemmas scaleR_left_diff_distrib = scaleR_diff_left
f0de18b62d63 remove bounded_(bi)linear locale interpretations, to avoid duplicating so many lemmas
huffman
parents: 44127
diff changeset
   131
lemmas scaleR_right_diff_distrib = scaleR_diff_right
f0de18b62d63 remove bounded_(bi)linear locale interpretations, to avoid duplicating so many lemmas
huffman
parents: 44127
diff changeset
   132
68072
493b818e8e10 added Johannes' generalizations Modules.thy and Vector_Spaces.thy; adapted HOL and HOL-Analysis accordingly
immler
parents: 67727
diff changeset
   133
lemmas linear_injective_0 = linear_inj_iff_eq_0
493b818e8e10 added Johannes' generalizations Modules.thy and Vector_Spaces.thy; adapted HOL and HOL-Analysis accordingly
immler
parents: 67727
diff changeset
   134
  and linear_injective_on_subspace_0 = linear_inj_on_iff_eq_0
493b818e8e10 added Johannes' generalizations Modules.thy and Vector_Spaces.thy; adapted HOL and HOL-Analysis accordingly
immler
parents: 67727
diff changeset
   135
  and linear_cmul = linear_scale
493b818e8e10 added Johannes' generalizations Modules.thy and Vector_Spaces.thy; adapted HOL and HOL-Analysis accordingly
immler
parents: 67727
diff changeset
   136
  and linear_scaleR = linear_scale_self
493b818e8e10 added Johannes' generalizations Modules.thy and Vector_Spaces.thy; adapted HOL and HOL-Analysis accordingly
immler
parents: 67727
diff changeset
   137
  and subspace_mul = subspace_scale
493b818e8e10 added Johannes' generalizations Modules.thy and Vector_Spaces.thy; adapted HOL and HOL-Analysis accordingly
immler
parents: 67727
diff changeset
   138
  and span_linear_image = linear_span_image
493b818e8e10 added Johannes' generalizations Modules.thy and Vector_Spaces.thy; adapted HOL and HOL-Analysis accordingly
immler
parents: 67727
diff changeset
   139
  and span_0 = span_zero
493b818e8e10 added Johannes' generalizations Modules.thy and Vector_Spaces.thy; adapted HOL and HOL-Analysis accordingly
immler
parents: 67727
diff changeset
   140
  and span_mul = span_scale
493b818e8e10 added Johannes' generalizations Modules.thy and Vector_Spaces.thy; adapted HOL and HOL-Analysis accordingly
immler
parents: 67727
diff changeset
   141
  and injective_scaleR = injective_scale
493b818e8e10 added Johannes' generalizations Modules.thy and Vector_Spaces.thy; adapted HOL and HOL-Analysis accordingly
immler
parents: 67727
diff changeset
   142
63545
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
   143
lemma scaleR_minus1_left [simp]: "scaleR (-1) x = - x"
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
   144
  for x :: "'a::real_vector"
31285
0a3f9ee4117c generalize dist function to class real_normed_vector
huffman
parents: 31017
diff changeset
   145
  using scaleR_minus_left [of 1 x] by simp
62101
26c0a70f78a3 add uniform spaces
hoelzl
parents: 62087
diff changeset
   146
64788
19f3d4af7a7d New material about path connectedness, etc.
paulson <lp15@cam.ac.uk>
parents: 64272
diff changeset
   147
lemma scaleR_2:
19f3d4af7a7d New material about path connectedness, etc.
paulson <lp15@cam.ac.uk>
parents: 64272
diff changeset
   148
  fixes x :: "'a::real_vector"
19f3d4af7a7d New material about path connectedness, etc.
paulson <lp15@cam.ac.uk>
parents: 64272
diff changeset
   149
  shows "scaleR 2 x = x + x"
19f3d4af7a7d New material about path connectedness, etc.
paulson <lp15@cam.ac.uk>
parents: 64272
diff changeset
   150
  unfolding one_add_one [symmetric] scaleR_left_distrib by simp
19f3d4af7a7d New material about path connectedness, etc.
paulson <lp15@cam.ac.uk>
parents: 64272
diff changeset
   151
19f3d4af7a7d New material about path connectedness, etc.
paulson <lp15@cam.ac.uk>
parents: 64272
diff changeset
   152
lemma scaleR_half_double [simp]:
19f3d4af7a7d New material about path connectedness, etc.
paulson <lp15@cam.ac.uk>
parents: 64272
diff changeset
   153
  fixes a :: "'a::real_vector"
19f3d4af7a7d New material about path connectedness, etc.
paulson <lp15@cam.ac.uk>
parents: 64272
diff changeset
   154
  shows "(1 / 2) *\<^sub>R (a + a) = a"
19f3d4af7a7d New material about path connectedness, etc.
paulson <lp15@cam.ac.uk>
parents: 64272
diff changeset
   155
proof -
19f3d4af7a7d New material about path connectedness, etc.
paulson <lp15@cam.ac.uk>
parents: 64272
diff changeset
   156
  have "\<And>r. r *\<^sub>R (a + a) = (r * 2) *\<^sub>R a"
19f3d4af7a7d New material about path connectedness, etc.
paulson <lp15@cam.ac.uk>
parents: 64272
diff changeset
   157
    by (metis scaleR_2 scaleR_scaleR)
19f3d4af7a7d New material about path connectedness, etc.
paulson <lp15@cam.ac.uk>
parents: 64272
diff changeset
   158
  then show ?thesis
19f3d4af7a7d New material about path connectedness, etc.
paulson <lp15@cam.ac.uk>
parents: 64272
diff changeset
   159
    by simp
19f3d4af7a7d New material about path connectedness, etc.
paulson <lp15@cam.ac.uk>
parents: 64272
diff changeset
   160
qed
19f3d4af7a7d New material about path connectedness, etc.
paulson <lp15@cam.ac.uk>
parents: 64272
diff changeset
   161
77138
c8597292cd41 Moved in a large number of highly useful library lemmas, mostly due to Manuel Eberl
paulson <lp15@cam.ac.uk>
parents: 76055
diff changeset
   162
lemma shift_zero_ident [simp]:
c8597292cd41 Moved in a large number of highly useful library lemmas, mostly due to Manuel Eberl
paulson <lp15@cam.ac.uk>
parents: 76055
diff changeset
   163
  fixes f :: "'a \<Rightarrow> 'b::real_vector"
c8597292cd41 Moved in a large number of highly useful library lemmas, mostly due to Manuel Eberl
paulson <lp15@cam.ac.uk>
parents: 76055
diff changeset
   164
  shows "(+)0 \<circ> f = f"
c8597292cd41 Moved in a large number of highly useful library lemmas, mostly due to Manuel Eberl
paulson <lp15@cam.ac.uk>
parents: 76055
diff changeset
   165
  by force
c8597292cd41 Moved in a large number of highly useful library lemmas, mostly due to Manuel Eberl
paulson <lp15@cam.ac.uk>
parents: 76055
diff changeset
   166
  
70019
095dce9892e8 A few results in Algebra, and bits for Analysis
paulson <lp15@cam.ac.uk>
parents: 69700
diff changeset
   167
lemma linear_scale_real:
095dce9892e8 A few results in Algebra, and bits for Analysis
paulson <lp15@cam.ac.uk>
parents: 69700
diff changeset
   168
  fixes r::real shows "linear f \<Longrightarrow> f (r * b) = r * f b"
095dce9892e8 A few results in Algebra, and bits for Analysis
paulson <lp15@cam.ac.uk>
parents: 69700
diff changeset
   169
  using linear_scale by fastforce
095dce9892e8 A few results in Algebra, and bits for Analysis
paulson <lp15@cam.ac.uk>
parents: 69700
diff changeset
   170
63545
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
   171
interpretation scaleR_left: additive "(\<lambda>a. scaleR a x :: 'a::real_vector)"
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
   172
  by standard (rule scaleR_left_distrib)
20504
6342e872e71d formalization of vector spaces and algebras over the real numbers
huffman
parents:
diff changeset
   173
63545
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
   174
interpretation scaleR_right: additive "(\<lambda>x. scaleR a x :: 'a::real_vector)"
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
   175
  by standard (rule scaleR_right_distrib)
20504
6342e872e71d formalization of vector spaces and algebras over the real numbers
huffman
parents:
diff changeset
   176
20584
60b1d52a455d added classes real_div_algebra and real_field; added lemmas
huffman
parents: 20560
diff changeset
   177
lemma nonzero_inverse_scaleR_distrib:
63545
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
   178
  "a \<noteq> 0 \<Longrightarrow> x \<noteq> 0 \<Longrightarrow> inverse (scaleR a x) = scaleR (inverse a) (inverse x)"
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
   179
  for x :: "'a::real_div_algebra"
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
   180
  by (rule inverse_unique) simp
20584
60b1d52a455d added classes real_div_algebra and real_field; added lemmas
huffman
parents: 20560
diff changeset
   181
63545
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
   182
lemma inverse_scaleR_distrib: "inverse (scaleR a x) = scaleR (inverse a) (inverse x)"
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
   183
  for x :: "'a::{real_div_algebra,division_ring}"
68594
5b05ede597b8 de-applying
paulson <lp15@cam.ac.uk>
parents: 68532
diff changeset
   184
  by (metis inverse_zero nonzero_inverse_scaleR_distrib scale_eq_0_iff)
61531
ab2e862263e7 Rounding function, uniform limits, cotangent, binomial identities
eberlm
parents: 61524
diff changeset
   185
68397
cace81744c61 isabelle update_comments;
wenzelm
parents: 68072
diff changeset
   186
lemmas sum_constant_scaleR = real_vector.sum_constant_scale\<comment> \<open>legacy name\<close>
63545
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
   187
63927
0efb482beb84 vector_add_divide_simps now a "named theorems" bundle
paulson <lp15@cam.ac.uk>
parents: 63915
diff changeset
   188
named_theorems vector_add_divide_simps "to simplify sums of scaled vectors"
0efb482beb84 vector_add_divide_simps now a "named theorems" bundle
paulson <lp15@cam.ac.uk>
parents: 63915
diff changeset
   189
0efb482beb84 vector_add_divide_simps now a "named theorems" bundle
paulson <lp15@cam.ac.uk>
parents: 63915
diff changeset
   190
lemma [vector_add_divide_simps]:
63545
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
   191
  "v + (b / z) *\<^sub>R w = (if z = 0 then v else (z *\<^sub>R v + b *\<^sub>R w) /\<^sub>R z)"
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
   192
  "a *\<^sub>R v + (b / z) *\<^sub>R w = (if z = 0 then a *\<^sub>R v else ((a * z) *\<^sub>R v + b *\<^sub>R w) /\<^sub>R z)"
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
   193
  "(a / z) *\<^sub>R v + w = (if z = 0 then w else (a *\<^sub>R v + z *\<^sub>R w) /\<^sub>R z)"
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
   194
  "(a / z) *\<^sub>R v + b *\<^sub>R w = (if z = 0 then b *\<^sub>R w else (a *\<^sub>R v + (b * z) *\<^sub>R w) /\<^sub>R z)"
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
   195
  "v - (b / z) *\<^sub>R w = (if z = 0 then v else (z *\<^sub>R v - b *\<^sub>R w) /\<^sub>R z)"
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
   196
  "a *\<^sub>R v - (b / z) *\<^sub>R w = (if z = 0 then a *\<^sub>R v else ((a * z) *\<^sub>R v - b *\<^sub>R w) /\<^sub>R z)"
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
   197
  "(a / z) *\<^sub>R v - w = (if z = 0 then -w else (a *\<^sub>R v - z *\<^sub>R w) /\<^sub>R z)"
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
   198
  "(a / z) *\<^sub>R v - b *\<^sub>R w = (if z = 0 then -b *\<^sub>R w else (a *\<^sub>R v - (b * z) *\<^sub>R w) /\<^sub>R z)"
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
   199
  for v :: "'a :: real_vector"
68072
493b818e8e10 added Johannes' generalizations Modules.thy and Vector_Spaces.thy; adapted HOL and HOL-Analysis accordingly
immler
parents: 67727
diff changeset
   200
  by (simp_all add: divide_inverse_commute scaleR_add_right scaleR_diff_right)
63114
27afe7af7379 Lots of new material for multivariate analysis
paulson <lp15@cam.ac.uk>
parents: 63040
diff changeset
   201
63927
0efb482beb84 vector_add_divide_simps now a "named theorems" bundle
paulson <lp15@cam.ac.uk>
parents: 63915
diff changeset
   202
0efb482beb84 vector_add_divide_simps now a "named theorems" bundle
paulson <lp15@cam.ac.uk>
parents: 63915
diff changeset
   203
lemma eq_vector_fraction_iff [vector_add_divide_simps]:
0efb482beb84 vector_add_divide_simps now a "named theorems" bundle
paulson <lp15@cam.ac.uk>
parents: 63915
diff changeset
   204
  fixes x :: "'a :: real_vector"
0efb482beb84 vector_add_divide_simps now a "named theorems" bundle
paulson <lp15@cam.ac.uk>
parents: 63915
diff changeset
   205
  shows "(x = (u / v) *\<^sub>R a) \<longleftrightarrow> (if v=0 then x = 0 else v *\<^sub>R x = u *\<^sub>R a)"
0efb482beb84 vector_add_divide_simps now a "named theorems" bundle
paulson <lp15@cam.ac.uk>
parents: 63915
diff changeset
   206
by auto (metis (no_types) divide_eq_1_iff divide_inverse_commute scaleR_one scaleR_scaleR)
0efb482beb84 vector_add_divide_simps now a "named theorems" bundle
paulson <lp15@cam.ac.uk>
parents: 63915
diff changeset
   207
0efb482beb84 vector_add_divide_simps now a "named theorems" bundle
paulson <lp15@cam.ac.uk>
parents: 63915
diff changeset
   208
lemma vector_fraction_eq_iff [vector_add_divide_simps]:
0efb482beb84 vector_add_divide_simps now a "named theorems" bundle
paulson <lp15@cam.ac.uk>
parents: 63915
diff changeset
   209
  fixes x :: "'a :: real_vector"
0efb482beb84 vector_add_divide_simps now a "named theorems" bundle
paulson <lp15@cam.ac.uk>
parents: 63915
diff changeset
   210
  shows "((u / v) *\<^sub>R a = x) \<longleftrightarrow> (if v=0 then x = 0 else u *\<^sub>R a = v *\<^sub>R x)"
0efb482beb84 vector_add_divide_simps now a "named theorems" bundle
paulson <lp15@cam.ac.uk>
parents: 63915
diff changeset
   211
by (metis eq_vector_fraction_iff)
0efb482beb84 vector_add_divide_simps now a "named theorems" bundle
paulson <lp15@cam.ac.uk>
parents: 63915
diff changeset
   212
60800
7d04351c795a New material for Cauchy's integral theorem
paulson <lp15@cam.ac.uk>
parents: 60762
diff changeset
   213
lemma real_vector_affinity_eq:
7d04351c795a New material for Cauchy's integral theorem
paulson <lp15@cam.ac.uk>
parents: 60762
diff changeset
   214
  fixes x :: "'a :: real_vector"
7d04351c795a New material for Cauchy's integral theorem
paulson <lp15@cam.ac.uk>
parents: 60762
diff changeset
   215
  assumes m0: "m \<noteq> 0"
7d04351c795a New material for Cauchy's integral theorem
paulson <lp15@cam.ac.uk>
parents: 60762
diff changeset
   216
  shows "m *\<^sub>R x + c = y \<longleftrightarrow> x = inverse m *\<^sub>R y - (inverse m *\<^sub>R c)"
63545
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
   217
    (is "?lhs \<longleftrightarrow> ?rhs")
60800
7d04351c795a New material for Cauchy's integral theorem
paulson <lp15@cam.ac.uk>
parents: 60762
diff changeset
   218
proof
63545
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
   219
  assume ?lhs
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
   220
  then have "m *\<^sub>R x = y - c" by (simp add: field_simps)
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
   221
  then have "inverse m *\<^sub>R (m *\<^sub>R x) = inverse m *\<^sub>R (y - c)" by simp
60800
7d04351c795a New material for Cauchy's integral theorem
paulson <lp15@cam.ac.uk>
parents: 60762
diff changeset
   222
  then show "x = inverse m *\<^sub>R y - (inverse m *\<^sub>R c)"
7d04351c795a New material for Cauchy's integral theorem
paulson <lp15@cam.ac.uk>
parents: 60762
diff changeset
   223
    using m0
68072
493b818e8e10 added Johannes' generalizations Modules.thy and Vector_Spaces.thy; adapted HOL and HOL-Analysis accordingly
immler
parents: 67727
diff changeset
   224
  by (simp add: scaleR_diff_right)
60800
7d04351c795a New material for Cauchy's integral theorem
paulson <lp15@cam.ac.uk>
parents: 60762
diff changeset
   225
next
63545
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
   226
  assume ?rhs
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
   227
  with m0 show "m *\<^sub>R x + c = y"
68072
493b818e8e10 added Johannes' generalizations Modules.thy and Vector_Spaces.thy; adapted HOL and HOL-Analysis accordingly
immler
parents: 67727
diff changeset
   228
    by (simp add: scaleR_diff_right)
60800
7d04351c795a New material for Cauchy's integral theorem
paulson <lp15@cam.ac.uk>
parents: 60762
diff changeset
   229
qed
7d04351c795a New material for Cauchy's integral theorem
paulson <lp15@cam.ac.uk>
parents: 60762
diff changeset
   230
63545
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
   231
lemma real_vector_eq_affinity: "m \<noteq> 0 \<Longrightarrow> y = m *\<^sub>R x + c \<longleftrightarrow> inverse m *\<^sub>R y - (inverse m *\<^sub>R c) = x"
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
   232
  for x :: "'a::real_vector"
60800
7d04351c795a New material for Cauchy's integral theorem
paulson <lp15@cam.ac.uk>
parents: 60762
diff changeset
   233
  using real_vector_affinity_eq[where m=m and x=x and y=y and c=c]
7d04351c795a New material for Cauchy's integral theorem
paulson <lp15@cam.ac.uk>
parents: 60762
diff changeset
   234
  by metis
7d04351c795a New material for Cauchy's integral theorem
paulson <lp15@cam.ac.uk>
parents: 60762
diff changeset
   235
63545
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
   236
lemma scaleR_eq_iff [simp]: "b + u *\<^sub>R a = a + u *\<^sub>R b \<longleftrightarrow> a = b \<or> u = 1"
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
   237
  for a :: "'a::real_vector"
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
   238
proof (cases "u = 1")
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
   239
  case True
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
   240
  then show ?thesis by auto
62948
7700f467892b lots of new theorems for multivariate analysis
paulson <lp15@cam.ac.uk>
parents: 62623
diff changeset
   241
next
7700f467892b lots of new theorems for multivariate analysis
paulson <lp15@cam.ac.uk>
parents: 62623
diff changeset
   242
  case False
63545
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
   243
  have "a = b" if "b + u *\<^sub>R a = a + u *\<^sub>R b"
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
   244
  proof -
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
   245
    from that have "(u - 1) *\<^sub>R a = (u - 1) *\<^sub>R b"
62948
7700f467892b lots of new theorems for multivariate analysis
paulson <lp15@cam.ac.uk>
parents: 62623
diff changeset
   246
      by (simp add: algebra_simps)
63545
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
   247
    with False show ?thesis
62948
7700f467892b lots of new theorems for multivariate analysis
paulson <lp15@cam.ac.uk>
parents: 62623
diff changeset
   248
      by auto
63545
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
   249
  qed
62948
7700f467892b lots of new theorems for multivariate analysis
paulson <lp15@cam.ac.uk>
parents: 62623
diff changeset
   250
  then show ?thesis by auto
7700f467892b lots of new theorems for multivariate analysis
paulson <lp15@cam.ac.uk>
parents: 62623
diff changeset
   251
qed
7700f467892b lots of new theorems for multivariate analysis
paulson <lp15@cam.ac.uk>
parents: 62623
diff changeset
   252
63545
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
   253
lemma scaleR_collapse [simp]: "(1 - u) *\<^sub>R a + u *\<^sub>R a = a"
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
   254
  for a :: "'a::real_vector"
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
   255
  by (simp add: algebra_simps)
62948
7700f467892b lots of new theorems for multivariate analysis
paulson <lp15@cam.ac.uk>
parents: 62623
diff changeset
   256
20554
c433e78d4203 define new constant of_real for class real_algebra_1;
huffman
parents: 20551
diff changeset
   257
63545
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
   258
subsection \<open>Embedding of the Reals into any \<open>real_algebra_1\<close>: \<open>of_real\<close>\<close>
20554
c433e78d4203 define new constant of_real for class real_algebra_1;
huffman
parents: 20551
diff changeset
   259
63545
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
   260
definition of_real :: "real \<Rightarrow> 'a::real_algebra_1"
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
   261
  where "of_real r = scaleR r 1"
20554
c433e78d4203 define new constant of_real for class real_algebra_1;
huffman
parents: 20551
diff changeset
   262
21809
4b93e949ac33 remove uses of scaleR infix syntax; add lemma Reals_number_of
huffman
parents: 21404
diff changeset
   263
lemma scaleR_conv_of_real: "scaleR r x = of_real r * x"
63545
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
   264
  by (simp add: of_real_def)
20763
052b348a98a9 rearranged axioms and simp rules for scaleR
huffman
parents: 20722
diff changeset
   265
20554
c433e78d4203 define new constant of_real for class real_algebra_1;
huffman
parents: 20551
diff changeset
   266
lemma of_real_0 [simp]: "of_real 0 = 0"
63545
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
   267
  by (simp add: of_real_def)
20554
c433e78d4203 define new constant of_real for class real_algebra_1;
huffman
parents: 20551
diff changeset
   268
c433e78d4203 define new constant of_real for class real_algebra_1;
huffman
parents: 20551
diff changeset
   269
lemma of_real_1 [simp]: "of_real 1 = 1"
63545
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
   270
  by (simp add: of_real_def)
20554
c433e78d4203 define new constant of_real for class real_algebra_1;
huffman
parents: 20551
diff changeset
   271
c433e78d4203 define new constant of_real for class real_algebra_1;
huffman
parents: 20551
diff changeset
   272
lemma of_real_add [simp]: "of_real (x + y) = of_real x + of_real y"
63545
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
   273
  by (simp add: of_real_def scaleR_left_distrib)
20554
c433e78d4203 define new constant of_real for class real_algebra_1;
huffman
parents: 20551
diff changeset
   274
c433e78d4203 define new constant of_real for class real_algebra_1;
huffman
parents: 20551
diff changeset
   275
lemma of_real_minus [simp]: "of_real (- x) = - of_real x"
63545
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
   276
  by (simp add: of_real_def)
20554
c433e78d4203 define new constant of_real for class real_algebra_1;
huffman
parents: 20551
diff changeset
   277
c433e78d4203 define new constant of_real for class real_algebra_1;
huffman
parents: 20551
diff changeset
   278
lemma of_real_diff [simp]: "of_real (x - y) = of_real x - of_real y"
63545
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
   279
  by (simp add: of_real_def scaleR_left_diff_distrib)
20554
c433e78d4203 define new constant of_real for class real_algebra_1;
huffman
parents: 20551
diff changeset
   280
c433e78d4203 define new constant of_real for class real_algebra_1;
huffman
parents: 20551
diff changeset
   281
lemma of_real_mult [simp]: "of_real (x * y) = of_real x * of_real y"
71544
66bc4b668d6e tidied up a few little proofs
paulson <lp15@cam.ac.uk>
parents: 70817
diff changeset
   282
  by (simp add: of_real_def)
20554
c433e78d4203 define new constant of_real for class real_algebra_1;
huffman
parents: 20551
diff changeset
   283
64267
b9a1486e79be setsum -> sum
nipkow
parents: 64240
diff changeset
   284
lemma of_real_sum[simp]: "of_real (sum f s) = (\<Sum>x\<in>s. of_real (f x))"
56889
48a745e1bde7 avoid the Complex constructor, use the more natural Re/Im view; moved csqrt to Complex.
hoelzl
parents: 56479
diff changeset
   285
  by (induct s rule: infinite_finite_induct) auto
48a745e1bde7 avoid the Complex constructor, use the more natural Re/Im view; moved csqrt to Complex.
hoelzl
parents: 56479
diff changeset
   286
64272
f76b6dda2e56 setprod -> prod
nipkow
parents: 64267
diff changeset
   287
lemma of_real_prod[simp]: "of_real (prod f s) = (\<Prod>x\<in>s. of_real (f x))"
56889
48a745e1bde7 avoid the Complex constructor, use the more natural Re/Im view; moved csqrt to Complex.
hoelzl
parents: 56479
diff changeset
   288
  by (induct s rule: infinite_finite_induct) auto
48a745e1bde7 avoid the Complex constructor, use the more natural Re/Im view; moved csqrt to Complex.
hoelzl
parents: 56479
diff changeset
   289
20584
60b1d52a455d added classes real_div_algebra and real_field; added lemmas
huffman
parents: 20560
diff changeset
   290
lemma nonzero_of_real_inverse:
63545
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
   291
  "x \<noteq> 0 \<Longrightarrow> of_real (inverse x) = inverse (of_real x :: 'a::real_div_algebra)"
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
   292
  by (simp add: of_real_def nonzero_inverse_scaleR_distrib)
20584
60b1d52a455d added classes real_div_algebra and real_field; added lemmas
huffman
parents: 20560
diff changeset
   293
60b1d52a455d added classes real_div_algebra and real_field; added lemmas
huffman
parents: 20560
diff changeset
   294
lemma of_real_inverse [simp]:
63545
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
   295
  "of_real (inverse x) = inverse (of_real x :: 'a::{real_div_algebra,division_ring})"
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
   296
  by (simp add: of_real_def inverse_scaleR_distrib)
20584
60b1d52a455d added classes real_div_algebra and real_field; added lemmas
huffman
parents: 20560
diff changeset
   297
60b1d52a455d added classes real_div_algebra and real_field; added lemmas
huffman
parents: 20560
diff changeset
   298
lemma nonzero_of_real_divide:
63545
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
   299
  "y \<noteq> 0 \<Longrightarrow> of_real (x / y) = (of_real x / of_real y :: 'a::real_field)"
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
   300
  by (simp add: divide_inverse nonzero_of_real_inverse)
20722
741737aa70b2 add lemmas about of_real and power
huffman
parents: 20718
diff changeset
   301
741737aa70b2 add lemmas about of_real and power
huffman
parents: 20718
diff changeset
   302
lemma of_real_divide [simp]:
62131
1baed43f453e nonneg_Reals, nonpos_Reals, Cauchy integral formula, etc.
paulson
parents: 62102
diff changeset
   303
  "of_real (x / y) = (of_real x / of_real y :: 'a::real_div_algebra)"
63545
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
   304
  by (simp add: divide_inverse)
20584
60b1d52a455d added classes real_div_algebra and real_field; added lemmas
huffman
parents: 20560
diff changeset
   305
20722
741737aa70b2 add lemmas about of_real and power
huffman
parents: 20718
diff changeset
   306
lemma of_real_power [simp]:
31017
2c227493ea56 stripped class recpower further
haftmann
parents: 30729
diff changeset
   307
  "of_real (x ^ n) = (of_real x :: 'a::{real_algebra_1}) ^ n"
63545
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
   308
  by (induct n) simp_all
20722
741737aa70b2 add lemmas about of_real and power
huffman
parents: 20718
diff changeset
   309
71837
dca11678c495 new constant power_int in HOL
Manuel Eberl <eberlm@in.tum.de>
parents: 71827
diff changeset
   310
lemma of_real_power_int [simp]:
dca11678c495 new constant power_int in HOL
Manuel Eberl <eberlm@in.tum.de>
parents: 71827
diff changeset
   311
  "of_real (power_int x n) = power_int (of_real x :: 'a :: {real_div_algebra,division_ring}) n"
dca11678c495 new constant power_int in HOL
Manuel Eberl <eberlm@in.tum.de>
parents: 71827
diff changeset
   312
  by (auto simp: power_int_def)
dca11678c495 new constant power_int in HOL
Manuel Eberl <eberlm@in.tum.de>
parents: 71827
diff changeset
   313
63545
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
   314
lemma of_real_eq_iff [simp]: "of_real x = of_real y \<longleftrightarrow> x = y"
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
   315
  by (simp add: of_real_def)
20554
c433e78d4203 define new constant of_real for class real_algebra_1;
huffman
parents: 20551
diff changeset
   316
63545
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
   317
lemma inj_of_real: "inj of_real"
38621
d6cb7e625d75 more concise characterization of of_nat operation and class semiring_char_0
haftmann
parents: 37887
diff changeset
   318
  by (auto intro: injI)
d6cb7e625d75 more concise characterization of of_nat operation and class semiring_char_0
haftmann
parents: 37887
diff changeset
   319
20584
60b1d52a455d added classes real_div_algebra and real_field; added lemmas
huffman
parents: 20560
diff changeset
   320
lemmas of_real_eq_0_iff [simp] = of_real_eq_iff [of _ 0, simplified]
65578
e4997c181cce New material from PNT proof, as well as more default [simp] declarations. Also removed duplicate theorems about geometric series
paulson <lp15@cam.ac.uk>
parents: 65036
diff changeset
   321
lemmas of_real_eq_1_iff [simp] = of_real_eq_iff [of _ 1, simplified]
20554
c433e78d4203 define new constant of_real for class real_algebra_1;
huffman
parents: 20551
diff changeset
   322
67135
1a94352812f4 Moved material from AFP to Analysis/Number_Theory
Manuel Eberl <eberlm@in.tum.de>
parents: 66793
diff changeset
   323
lemma minus_of_real_eq_of_real_iff [simp]: "-of_real x = of_real y \<longleftrightarrow> -x = y"
1a94352812f4 Moved material from AFP to Analysis/Number_Theory
Manuel Eberl <eberlm@in.tum.de>
parents: 66793
diff changeset
   324
  using of_real_eq_iff[of "-x" y] by (simp only: of_real_minus)
1a94352812f4 Moved material from AFP to Analysis/Number_Theory
Manuel Eberl <eberlm@in.tum.de>
parents: 66793
diff changeset
   325
1a94352812f4 Moved material from AFP to Analysis/Number_Theory
Manuel Eberl <eberlm@in.tum.de>
parents: 66793
diff changeset
   326
lemma of_real_eq_minus_of_real_iff [simp]: "of_real x = -of_real y \<longleftrightarrow> x = -y"
1a94352812f4 Moved material from AFP to Analysis/Number_Theory
Manuel Eberl <eberlm@in.tum.de>
parents: 66793
diff changeset
   327
  using of_real_eq_iff[of x "-y"] by (simp only: of_real_minus)
1a94352812f4 Moved material from AFP to Analysis/Number_Theory
Manuel Eberl <eberlm@in.tum.de>
parents: 66793
diff changeset
   328
20554
c433e78d4203 define new constant of_real for class real_algebra_1;
huffman
parents: 20551
diff changeset
   329
lemma of_real_eq_id [simp]: "of_real = (id :: real \<Rightarrow> real)"
63545
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
   330
  by (rule ext) (simp add: of_real_def)
20554
c433e78d4203 define new constant of_real for class real_algebra_1;
huffman
parents: 20551
diff changeset
   331
63545
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
   332
text \<open>Collapse nested embeddings.\<close>
20554
c433e78d4203 define new constant of_real for class real_algebra_1;
huffman
parents: 20551
diff changeset
   333
lemma of_real_of_nat_eq [simp]: "of_real (of_nat n) = of_nat n"
63545
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
   334
  by (induct n) auto
20554
c433e78d4203 define new constant of_real for class real_algebra_1;
huffman
parents: 20551
diff changeset
   335
c433e78d4203 define new constant of_real for class real_algebra_1;
huffman
parents: 20551
diff changeset
   336
lemma of_real_of_int_eq [simp]: "of_real (of_int z) = of_int z"
63545
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
   337
  by (cases z rule: int_diff_cases) simp
20554
c433e78d4203 define new constant of_real for class real_algebra_1;
huffman
parents: 20551
diff changeset
   338
60155
91477b3a2d6b Tidying. Improved simplification for numerals, esp in exponents.
paulson <lp15@cam.ac.uk>
parents: 60026
diff changeset
   339
lemma of_real_numeral [simp]: "of_real (numeral w) = numeral w"
63545
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
   340
  using of_real_of_int_eq [of "numeral w"] by simp
47108
2a1953f0d20d merged fork with new numeral representation (see NEWS)
huffman
parents: 46868
diff changeset
   341
60155
91477b3a2d6b Tidying. Improved simplification for numerals, esp in exponents.
paulson <lp15@cam.ac.uk>
parents: 60026
diff changeset
   342
lemma of_real_neg_numeral [simp]: "of_real (- numeral w) = - numeral w"
63545
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
   343
  using of_real_of_int_eq [of "- numeral w"] by simp
20554
c433e78d4203 define new constant of_real for class real_algebra_1;
huffman
parents: 20551
diff changeset
   344
71837
dca11678c495 new constant power_int in HOL
Manuel Eberl <eberlm@in.tum.de>
parents: 71827
diff changeset
   345
lemma numeral_power_int_eq_of_real_cancel_iff [simp]:
dca11678c495 new constant power_int in HOL
Manuel Eberl <eberlm@in.tum.de>
parents: 71827
diff changeset
   346
  "power_int (numeral x) n = (of_real y :: 'a :: {real_div_algebra, division_ring}) \<longleftrightarrow>
dca11678c495 new constant power_int in HOL
Manuel Eberl <eberlm@in.tum.de>
parents: 71827
diff changeset
   347
     power_int (numeral x) n = y"
dca11678c495 new constant power_int in HOL
Manuel Eberl <eberlm@in.tum.de>
parents: 71827
diff changeset
   348
proof -
dca11678c495 new constant power_int in HOL
Manuel Eberl <eberlm@in.tum.de>
parents: 71827
diff changeset
   349
  have "power_int (numeral x) n = (of_real (power_int (numeral x) n) :: 'a)"
dca11678c495 new constant power_int in HOL
Manuel Eberl <eberlm@in.tum.de>
parents: 71827
diff changeset
   350
    by simp
dca11678c495 new constant power_int in HOL
Manuel Eberl <eberlm@in.tum.de>
parents: 71827
diff changeset
   351
  also have "\<dots> = of_real y \<longleftrightarrow> power_int (numeral x) n = y"
dca11678c495 new constant power_int in HOL
Manuel Eberl <eberlm@in.tum.de>
parents: 71827
diff changeset
   352
    by (subst of_real_eq_iff) auto
dca11678c495 new constant power_int in HOL
Manuel Eberl <eberlm@in.tum.de>
parents: 71827
diff changeset
   353
  finally show ?thesis .
dca11678c495 new constant power_int in HOL
Manuel Eberl <eberlm@in.tum.de>
parents: 71827
diff changeset
   354
qed
dca11678c495 new constant power_int in HOL
Manuel Eberl <eberlm@in.tum.de>
parents: 71827
diff changeset
   355
dca11678c495 new constant power_int in HOL
Manuel Eberl <eberlm@in.tum.de>
parents: 71827
diff changeset
   356
lemma of_real_eq_numeral_power_int_cancel_iff [simp]:
dca11678c495 new constant power_int in HOL
Manuel Eberl <eberlm@in.tum.de>
parents: 71827
diff changeset
   357
  "(of_real y :: 'a :: {real_div_algebra, division_ring}) = power_int (numeral x) n \<longleftrightarrow>
dca11678c495 new constant power_int in HOL
Manuel Eberl <eberlm@in.tum.de>
parents: 71827
diff changeset
   358
     y = power_int (numeral x) n"
dca11678c495 new constant power_int in HOL
Manuel Eberl <eberlm@in.tum.de>
parents: 71827
diff changeset
   359
  by (subst (1 2) eq_commute) simp
dca11678c495 new constant power_int in HOL
Manuel Eberl <eberlm@in.tum.de>
parents: 71827
diff changeset
   360
dca11678c495 new constant power_int in HOL
Manuel Eberl <eberlm@in.tum.de>
parents: 71827
diff changeset
   361
lemma of_real_eq_of_real_power_int_cancel_iff [simp]:
dca11678c495 new constant power_int in HOL
Manuel Eberl <eberlm@in.tum.de>
parents: 71827
diff changeset
   362
  "power_int (of_real b :: 'a :: {real_div_algebra, division_ring}) w = of_real x \<longleftrightarrow>
dca11678c495 new constant power_int in HOL
Manuel Eberl <eberlm@in.tum.de>
parents: 71827
diff changeset
   363
     power_int b w = x"
dca11678c495 new constant power_int in HOL
Manuel Eberl <eberlm@in.tum.de>
parents: 71827
diff changeset
   364
  by (metis of_real_power_int of_real_eq_iff)
dca11678c495 new constant power_int in HOL
Manuel Eberl <eberlm@in.tum.de>
parents: 71827
diff changeset
   365
73109
783406dd051e some algebra material for HOL: characteristic of a ring, algebraic integers
Manuel Eberl <eberlm@in.tum.de>
parents: 71837
diff changeset
   366
lemma of_real_in_Ints_iff [simp]: "of_real x \<in> \<int> \<longleftrightarrow> x \<in> \<int>"
783406dd051e some algebra material for HOL: characteristic of a ring, algebraic integers
Manuel Eberl <eberlm@in.tum.de>
parents: 71837
diff changeset
   367
proof safe
783406dd051e some algebra material for HOL: characteristic of a ring, algebraic integers
Manuel Eberl <eberlm@in.tum.de>
parents: 71837
diff changeset
   368
  fix x assume "(of_real x :: 'a) \<in> \<int>"
783406dd051e some algebra material for HOL: characteristic of a ring, algebraic integers
Manuel Eberl <eberlm@in.tum.de>
parents: 71837
diff changeset
   369
  then obtain n where "(of_real x :: 'a) = of_int n"
783406dd051e some algebra material for HOL: characteristic of a ring, algebraic integers
Manuel Eberl <eberlm@in.tum.de>
parents: 71837
diff changeset
   370
    by (auto simp: Ints_def)
783406dd051e some algebra material for HOL: characteristic of a ring, algebraic integers
Manuel Eberl <eberlm@in.tum.de>
parents: 71837
diff changeset
   371
  also have "of_int n = of_real (real_of_int n)"
783406dd051e some algebra material for HOL: characteristic of a ring, algebraic integers
Manuel Eberl <eberlm@in.tum.de>
parents: 71837
diff changeset
   372
    by simp
783406dd051e some algebra material for HOL: characteristic of a ring, algebraic integers
Manuel Eberl <eberlm@in.tum.de>
parents: 71837
diff changeset
   373
  finally have "x = real_of_int n"
783406dd051e some algebra material for HOL: characteristic of a ring, algebraic integers
Manuel Eberl <eberlm@in.tum.de>
parents: 71837
diff changeset
   374
    by (subst (asm) of_real_eq_iff)
783406dd051e some algebra material for HOL: characteristic of a ring, algebraic integers
Manuel Eberl <eberlm@in.tum.de>
parents: 71837
diff changeset
   375
  thus "x \<in> \<int>"
783406dd051e some algebra material for HOL: characteristic of a ring, algebraic integers
Manuel Eberl <eberlm@in.tum.de>
parents: 71837
diff changeset
   376
    by auto
783406dd051e some algebra material for HOL: characteristic of a ring, algebraic integers
Manuel Eberl <eberlm@in.tum.de>
parents: 71837
diff changeset
   377
qed (auto simp: Ints_def)
783406dd051e some algebra material for HOL: characteristic of a ring, algebraic integers
Manuel Eberl <eberlm@in.tum.de>
parents: 71837
diff changeset
   378
783406dd051e some algebra material for HOL: characteristic of a ring, algebraic integers
Manuel Eberl <eberlm@in.tum.de>
parents: 71837
diff changeset
   379
lemma Ints_of_real [intro]: "x \<in> \<int> \<Longrightarrow> of_real x \<in> \<int>"
783406dd051e some algebra material for HOL: characteristic of a ring, algebraic integers
Manuel Eberl <eberlm@in.tum.de>
parents: 71837
diff changeset
   380
  by simp
783406dd051e some algebra material for HOL: characteristic of a ring, algebraic integers
Manuel Eberl <eberlm@in.tum.de>
parents: 71837
diff changeset
   381
783406dd051e some algebra material for HOL: characteristic of a ring, algebraic integers
Manuel Eberl <eberlm@in.tum.de>
parents: 71837
diff changeset
   382
63545
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
   383
text \<open>Every real algebra has characteristic zero.\<close>
22912
c477862c566d instance real_algebra_1 < ring_char_0
huffman
parents: 22898
diff changeset
   384
instance real_algebra_1 < ring_char_0
c477862c566d instance real_algebra_1 < ring_char_0
huffman
parents: 22898
diff changeset
   385
proof
63545
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
   386
  from inj_of_real inj_of_nat have "inj (of_real \<circ> of_nat)"
69700
7a92cbec7030 new material about summations and powers, along with some tweaks
paulson <lp15@cam.ac.uk>
parents: 69593
diff changeset
   387
    by (rule inj_compose)
63545
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
   388
  then show "inj (of_nat :: nat \<Rightarrow> 'a)"
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
   389
    by (simp add: comp_def)
22912
c477862c566d instance real_algebra_1 < ring_char_0
huffman
parents: 22898
diff changeset
   390
qed
c477862c566d instance real_algebra_1 < ring_char_0
huffman
parents: 22898
diff changeset
   391
63967
2aa42596edc3 new material on paths, etc. Also rationalisation
paulson <lp15@cam.ac.uk>
parents: 63927
diff changeset
   392
lemma fraction_scaleR_times [simp]:
2aa42596edc3 new material on paths, etc. Also rationalisation
paulson <lp15@cam.ac.uk>
parents: 63927
diff changeset
   393
  fixes a :: "'a::real_algebra_1"
2aa42596edc3 new material on paths, etc. Also rationalisation
paulson <lp15@cam.ac.uk>
parents: 63927
diff changeset
   394
  shows "(numeral u / numeral v) *\<^sub>R (numeral w * a) = (numeral u * numeral w / numeral v) *\<^sub>R a"
2aa42596edc3 new material on paths, etc. Also rationalisation
paulson <lp15@cam.ac.uk>
parents: 63927
diff changeset
   395
by (metis (no_types, lifting) of_real_numeral scaleR_conv_of_real scaleR_scaleR times_divide_eq_left)
2aa42596edc3 new material on paths, etc. Also rationalisation
paulson <lp15@cam.ac.uk>
parents: 63927
diff changeset
   396
2aa42596edc3 new material on paths, etc. Also rationalisation
paulson <lp15@cam.ac.uk>
parents: 63927
diff changeset
   397
lemma inverse_scaleR_times [simp]:
2aa42596edc3 new material on paths, etc. Also rationalisation
paulson <lp15@cam.ac.uk>
parents: 63927
diff changeset
   398
  fixes a :: "'a::real_algebra_1"
2aa42596edc3 new material on paths, etc. Also rationalisation
paulson <lp15@cam.ac.uk>
parents: 63927
diff changeset
   399
  shows "(1 / numeral v) *\<^sub>R (numeral w * a) = (numeral w / numeral v) *\<^sub>R a"
2aa42596edc3 new material on paths, etc. Also rationalisation
paulson <lp15@cam.ac.uk>
parents: 63927
diff changeset
   400
by (metis divide_inverse_commute inverse_eq_divide of_real_numeral scaleR_conv_of_real scaleR_scaleR)
2aa42596edc3 new material on paths, etc. Also rationalisation
paulson <lp15@cam.ac.uk>
parents: 63927
diff changeset
   401
2aa42596edc3 new material on paths, etc. Also rationalisation
paulson <lp15@cam.ac.uk>
parents: 63927
diff changeset
   402
lemma scaleR_times [simp]:
2aa42596edc3 new material on paths, etc. Also rationalisation
paulson <lp15@cam.ac.uk>
parents: 63927
diff changeset
   403
  fixes a :: "'a::real_algebra_1"
2aa42596edc3 new material on paths, etc. Also rationalisation
paulson <lp15@cam.ac.uk>
parents: 63927
diff changeset
   404
  shows "(numeral u) *\<^sub>R (numeral w * a) = (numeral u * numeral w) *\<^sub>R a"
2aa42596edc3 new material on paths, etc. Also rationalisation
paulson <lp15@cam.ac.uk>
parents: 63927
diff changeset
   405
by (simp add: scaleR_conv_of_real)
2aa42596edc3 new material on paths, etc. Also rationalisation
paulson <lp15@cam.ac.uk>
parents: 63927
diff changeset
   406
27553
d315a513a150 instance real_field < field_char_0;
huffman
parents: 27552
diff changeset
   407
instance real_field < field_char_0 ..
d315a513a150 instance real_field < field_char_0;
huffman
parents: 27552
diff changeset
   408
20554
c433e78d4203 define new constant of_real for class real_algebra_1;
huffman
parents: 20551
diff changeset
   409
60758
d8d85a8172b5 isabelle update_cartouches;
wenzelm
parents: 60307
diff changeset
   410
subsection \<open>The Set of Real Numbers\<close>
20554
c433e78d4203 define new constant of_real for class real_algebra_1;
huffman
parents: 20551
diff changeset
   411
61070
b72a990adfe2 prefer symbols;
wenzelm
parents: 60800
diff changeset
   412
definition Reals :: "'a::real_algebra_1 set"  ("\<real>")
b72a990adfe2 prefer symbols;
wenzelm
parents: 60800
diff changeset
   413
  where "\<real> = range of_real"
20554
c433e78d4203 define new constant of_real for class real_algebra_1;
huffman
parents: 20551
diff changeset
   414
61070
b72a990adfe2 prefer symbols;
wenzelm
parents: 60800
diff changeset
   415
lemma Reals_of_real [simp]: "of_real r \<in> \<real>"
63545
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
   416
  by (simp add: Reals_def)
20554
c433e78d4203 define new constant of_real for class real_algebra_1;
huffman
parents: 20551
diff changeset
   417
61070
b72a990adfe2 prefer symbols;
wenzelm
parents: 60800
diff changeset
   418
lemma Reals_of_int [simp]: "of_int z \<in> \<real>"
63545
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
   419
  by (subst of_real_of_int_eq [symmetric], rule Reals_of_real)
20718
4c4869e4ddb7 add lemmas of_int_in_Reals, of_nat_in_Reals
huffman
parents: 20694
diff changeset
   420
61070
b72a990adfe2 prefer symbols;
wenzelm
parents: 60800
diff changeset
   421
lemma Reals_of_nat [simp]: "of_nat n \<in> \<real>"
63545
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
   422
  by (subst of_real_of_nat_eq [symmetric], rule Reals_of_real)
21809
4b93e949ac33 remove uses of scaleR infix syntax; add lemma Reals_number_of
huffman
parents: 21404
diff changeset
   423
61070
b72a990adfe2 prefer symbols;
wenzelm
parents: 60800
diff changeset
   424
lemma Reals_numeral [simp]: "numeral w \<in> \<real>"
63545
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
   425
  by (subst of_real_numeral [symmetric], rule Reals_of_real)
47108
2a1953f0d20d merged fork with new numeral representation (see NEWS)
huffman
parents: 46868
diff changeset
   426
68594
5b05ede597b8 de-applying
paulson <lp15@cam.ac.uk>
parents: 68532
diff changeset
   427
lemma Reals_0 [simp]: "0 \<in> \<real>" and Reals_1 [simp]: "1 \<in> \<real>"
5b05ede597b8 de-applying
paulson <lp15@cam.ac.uk>
parents: 68532
diff changeset
   428
  by (simp_all add: Reals_def)
20554
c433e78d4203 define new constant of_real for class real_algebra_1;
huffman
parents: 20551
diff changeset
   429
63545
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
   430
lemma Reals_add [simp]: "a \<in> \<real> \<Longrightarrow> b \<in> \<real> \<Longrightarrow> a + b \<in> \<real>"
73932
fd21b4a93043 added opaque_combs and renamed hide_lams to opaque_lifting
desharna
parents: 73411
diff changeset
   431
  by (metis (no_types, opaque_lifting) Reals_def Reals_of_real imageE of_real_add)
20554
c433e78d4203 define new constant of_real for class real_algebra_1;
huffman
parents: 20551
diff changeset
   432
61070
b72a990adfe2 prefer symbols;
wenzelm
parents: 60800
diff changeset
   433
lemma Reals_minus [simp]: "a \<in> \<real> \<Longrightarrow> - a \<in> \<real>"
68594
5b05ede597b8 de-applying
paulson <lp15@cam.ac.uk>
parents: 68532
diff changeset
   434
  by (auto simp: Reals_def)
20584
60b1d52a455d added classes real_div_algebra and real_field; added lemmas
huffman
parents: 20560
diff changeset
   435
68499
d4312962161a Rationalisation of complex transcendentals, esp the Arg function
paulson <lp15@cam.ac.uk>
parents: 68465
diff changeset
   436
lemma Reals_minus_iff [simp]: "- a \<in> \<real> \<longleftrightarrow> a \<in> \<real>"
71720
1d8a1f727879 removed more applys
paulson <lp15@cam.ac.uk>
parents: 71544
diff changeset
   437
  using Reals_minus by fastforce
68499
d4312962161a Rationalisation of complex transcendentals, esp the Arg function
paulson <lp15@cam.ac.uk>
parents: 68465
diff changeset
   438
63545
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
   439
lemma Reals_diff [simp]: "a \<in> \<real> \<Longrightarrow> b \<in> \<real> \<Longrightarrow> a - b \<in> \<real>"
68594
5b05ede597b8 de-applying
paulson <lp15@cam.ac.uk>
parents: 68532
diff changeset
   440
  by (metis Reals_add Reals_minus_iff add_uminus_conv_diff)
20584
60b1d52a455d added classes real_div_algebra and real_field; added lemmas
huffman
parents: 20560
diff changeset
   441
63545
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
   442
lemma Reals_mult [simp]: "a \<in> \<real> \<Longrightarrow> b \<in> \<real> \<Longrightarrow> a * b \<in> \<real>"
68594
5b05ede597b8 de-applying
paulson <lp15@cam.ac.uk>
parents: 68532
diff changeset
   443
  by (metis (no_types, lifting) Reals_def Reals_of_real imageE of_real_mult)
20554
c433e78d4203 define new constant of_real for class real_algebra_1;
huffman
parents: 20551
diff changeset
   444
63545
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
   445
lemma nonzero_Reals_inverse: "a \<in> \<real> \<Longrightarrow> a \<noteq> 0 \<Longrightarrow> inverse a \<in> \<real>"
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
   446
  for a :: "'a::real_div_algebra"
68594
5b05ede597b8 de-applying
paulson <lp15@cam.ac.uk>
parents: 68532
diff changeset
   447
  by (metis Reals_def Reals_of_real imageE of_real_inverse)
20584
60b1d52a455d added classes real_div_algebra and real_field; added lemmas
huffman
parents: 20560
diff changeset
   448
63545
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
   449
lemma Reals_inverse: "a \<in> \<real> \<Longrightarrow> inverse a \<in> \<real>"
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
   450
  for a :: "'a::{real_div_algebra,division_ring}"
68594
5b05ede597b8 de-applying
paulson <lp15@cam.ac.uk>
parents: 68532
diff changeset
   451
  using nonzero_Reals_inverse by fastforce
20584
60b1d52a455d added classes real_div_algebra and real_field; added lemmas
huffman
parents: 20560
diff changeset
   452
63545
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
   453
lemma Reals_inverse_iff [simp]: "inverse x \<in> \<real> \<longleftrightarrow> x \<in> \<real>"
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
   454
  for x :: "'a::{real_div_algebra,division_ring}"
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
   455
  by (metis Reals_inverse inverse_inverse_eq)
55719
cdddd073bff8 Lemmas about Reals, norm, etc., and cleaner variants of existing ones
paulson <lp15@cam.ac.uk>
parents: 54890
diff changeset
   456
63545
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
   457
lemma nonzero_Reals_divide: "a \<in> \<real> \<Longrightarrow> b \<in> \<real> \<Longrightarrow> b \<noteq> 0 \<Longrightarrow> a / b \<in> \<real>"
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
   458
  for a b :: "'a::real_field"
68594
5b05ede597b8 de-applying
paulson <lp15@cam.ac.uk>
parents: 68532
diff changeset
   459
  by (simp add: divide_inverse)
20584
60b1d52a455d added classes real_div_algebra and real_field; added lemmas
huffman
parents: 20560
diff changeset
   460
63545
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
   461
lemma Reals_divide [simp]: "a \<in> \<real> \<Longrightarrow> b \<in> \<real> \<Longrightarrow> a / b \<in> \<real>"
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
   462
  for a b :: "'a::{real_field,field}"
68594
5b05ede597b8 de-applying
paulson <lp15@cam.ac.uk>
parents: 68532
diff changeset
   463
  using nonzero_Reals_divide by fastforce
20584
60b1d52a455d added classes real_div_algebra and real_field; added lemmas
huffman
parents: 20560
diff changeset
   464
63545
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
   465
lemma Reals_power [simp]: "a \<in> \<real> \<Longrightarrow> a ^ n \<in> \<real>"
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
   466
  for a :: "'a::real_algebra_1"
68594
5b05ede597b8 de-applying
paulson <lp15@cam.ac.uk>
parents: 68532
diff changeset
   467
  by (metis Reals_def Reals_of_real imageE of_real_power)
20722
741737aa70b2 add lemmas about of_real and power
huffman
parents: 20718
diff changeset
   468
20554
c433e78d4203 define new constant of_real for class real_algebra_1;
huffman
parents: 20551
diff changeset
   469
lemma Reals_cases [cases set: Reals]:
c433e78d4203 define new constant of_real for class real_algebra_1;
huffman
parents: 20551
diff changeset
   470
  assumes "q \<in> \<real>"
c433e78d4203 define new constant of_real for class real_algebra_1;
huffman
parents: 20551
diff changeset
   471
  obtains (of_real) r where "q = of_real r"
c433e78d4203 define new constant of_real for class real_algebra_1;
huffman
parents: 20551
diff changeset
   472
  unfolding Reals_def
c433e78d4203 define new constant of_real for class real_algebra_1;
huffman
parents: 20551
diff changeset
   473
proof -
60758
d8d85a8172b5 isabelle update_cartouches;
wenzelm
parents: 60307
diff changeset
   474
  from \<open>q \<in> \<real>\<close> have "q \<in> range of_real" unfolding Reals_def .
20554
c433e78d4203 define new constant of_real for class real_algebra_1;
huffman
parents: 20551
diff changeset
   475
  then obtain r where "q = of_real r" ..
c433e78d4203 define new constant of_real for class real_algebra_1;
huffman
parents: 20551
diff changeset
   476
  then show thesis ..
c433e78d4203 define new constant of_real for class real_algebra_1;
huffman
parents: 20551
diff changeset
   477
qed
c433e78d4203 define new constant of_real for class real_algebra_1;
huffman
parents: 20551
diff changeset
   478
64267
b9a1486e79be setsum -> sum
nipkow
parents: 64240
diff changeset
   479
lemma sum_in_Reals [intro,simp]: "(\<And>i. i \<in> s \<Longrightarrow> f i \<in> \<real>) \<Longrightarrow> sum f s \<in> \<real>"
63915
bab633745c7f tuned proofs;
wenzelm
parents: 63680
diff changeset
   480
proof (induct s rule: infinite_finite_induct)
bab633745c7f tuned proofs;
wenzelm
parents: 63680
diff changeset
   481
  case infinite
64267
b9a1486e79be setsum -> sum
nipkow
parents: 64240
diff changeset
   482
  then show ?case by (metis Reals_0 sum.infinite)
63915
bab633745c7f tuned proofs;
wenzelm
parents: 63680
diff changeset
   483
qed simp_all
55719
cdddd073bff8 Lemmas about Reals, norm, etc., and cleaner variants of existing ones
paulson <lp15@cam.ac.uk>
parents: 54890
diff changeset
   484
64272
f76b6dda2e56 setprod -> prod
nipkow
parents: 64267
diff changeset
   485
lemma prod_in_Reals [intro,simp]: "(\<And>i. i \<in> s \<Longrightarrow> f i \<in> \<real>) \<Longrightarrow> prod f s \<in> \<real>"
63915
bab633745c7f tuned proofs;
wenzelm
parents: 63680
diff changeset
   486
proof (induct s rule: infinite_finite_induct)
bab633745c7f tuned proofs;
wenzelm
parents: 63680
diff changeset
   487
  case infinite
64272
f76b6dda2e56 setprod -> prod
nipkow
parents: 64267
diff changeset
   488
  then show ?case by (metis Reals_1 prod.infinite)
63915
bab633745c7f tuned proofs;
wenzelm
parents: 63680
diff changeset
   489
qed simp_all
55719
cdddd073bff8 Lemmas about Reals, norm, etc., and cleaner variants of existing ones
paulson <lp15@cam.ac.uk>
parents: 54890
diff changeset
   490
20554
c433e78d4203 define new constant of_real for class real_algebra_1;
huffman
parents: 20551
diff changeset
   491
lemma Reals_induct [case_names of_real, induct set: Reals]:
c433e78d4203 define new constant of_real for class real_algebra_1;
huffman
parents: 20551
diff changeset
   492
  "q \<in> \<real> \<Longrightarrow> (\<And>r. P (of_real r)) \<Longrightarrow> P q"
c433e78d4203 define new constant of_real for class real_algebra_1;
huffman
parents: 20551
diff changeset
   493
  by (rule Reals_cases) auto
c433e78d4203 define new constant of_real for class real_algebra_1;
huffman
parents: 20551
diff changeset
   494
63545
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
   495
60758
d8d85a8172b5 isabelle update_cartouches;
wenzelm
parents: 60307
diff changeset
   496
subsection \<open>Ordered real vector spaces\<close>
54778
13f08c876899 introduced ordered real vector spaces
immler
parents: 54703
diff changeset
   497
13f08c876899 introduced ordered real vector spaces
immler
parents: 54703
diff changeset
   498
class ordered_real_vector = real_vector + ordered_ab_group_add +
13f08c876899 introduced ordered real vector spaces
immler
parents: 54703
diff changeset
   499
  assumes scaleR_left_mono: "x \<le> y \<Longrightarrow> 0 \<le> a \<Longrightarrow> a *\<^sub>R x \<le> a *\<^sub>R y"
63545
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
   500
    and scaleR_right_mono: "a \<le> b \<Longrightarrow> 0 \<le> x \<Longrightarrow> a *\<^sub>R x \<le> b *\<^sub>R x"
54778
13f08c876899 introduced ordered real vector spaces
immler
parents: 54703
diff changeset
   501
begin
13f08c876899 introduced ordered real vector spaces
immler
parents: 54703
diff changeset
   502
70802
160eaf566bcb formally augmented corresponding rules for field_simps
haftmann
parents: 70723
diff changeset
   503
lemma scaleR_mono:
160eaf566bcb formally augmented corresponding rules for field_simps
haftmann
parents: 70723
diff changeset
   504
  "a \<le> b \<Longrightarrow> x \<le> y \<Longrightarrow> 0 \<le> b \<Longrightarrow> 0 \<le> x \<Longrightarrow> a *\<^sub>R x \<le> b *\<^sub>R y"
160eaf566bcb formally augmented corresponding rules for field_simps
haftmann
parents: 70723
diff changeset
   505
  by (meson order_trans scaleR_left_mono scaleR_right_mono)
160eaf566bcb formally augmented corresponding rules for field_simps
haftmann
parents: 70723
diff changeset
   506
  
160eaf566bcb formally augmented corresponding rules for field_simps
haftmann
parents: 70723
diff changeset
   507
lemma scaleR_mono':
160eaf566bcb formally augmented corresponding rules for field_simps
haftmann
parents: 70723
diff changeset
   508
  "a \<le> b \<Longrightarrow> c \<le> d \<Longrightarrow> 0 \<le> a \<Longrightarrow> 0 \<le> c \<Longrightarrow> a *\<^sub>R c \<le> b *\<^sub>R d"
54778
13f08c876899 introduced ordered real vector spaces
immler
parents: 54703
diff changeset
   509
  by (rule scaleR_mono) (auto intro: order.trans)
13f08c876899 introduced ordered real vector spaces
immler
parents: 54703
diff changeset
   510
70802
160eaf566bcb formally augmented corresponding rules for field_simps
haftmann
parents: 70723
diff changeset
   511
lemma pos_le_divideR_eq [field_simps]:
70630
2402aa499ffe more rules for ordered real vector spaces
haftmann
parents: 70616
diff changeset
   512
  "a \<le> b /\<^sub>R c \<longleftrightarrow> c *\<^sub>R a \<le> b" (is "?P \<longleftrightarrow> ?Q") if "0 < c"
2402aa499ffe more rules for ordered real vector spaces
haftmann
parents: 70616
diff changeset
   513
proof
2402aa499ffe more rules for ordered real vector spaces
haftmann
parents: 70616
diff changeset
   514
  assume ?P
2402aa499ffe more rules for ordered real vector spaces
haftmann
parents: 70616
diff changeset
   515
  with scaleR_left_mono that have "c *\<^sub>R a \<le> c *\<^sub>R (b /\<^sub>R c)"
54785
4876fb408c0d lemmas about divideR and scaleR
immler
parents: 54778
diff changeset
   516
    by simp
70630
2402aa499ffe more rules for ordered real vector spaces
haftmann
parents: 70616
diff changeset
   517
  with that show ?Q
2402aa499ffe more rules for ordered real vector spaces
haftmann
parents: 70616
diff changeset
   518
    by (simp add: scaleR_one scaleR_scaleR inverse_eq_divide)
2402aa499ffe more rules for ordered real vector spaces
haftmann
parents: 70616
diff changeset
   519
next
2402aa499ffe more rules for ordered real vector spaces
haftmann
parents: 70616
diff changeset
   520
  assume ?Q
2402aa499ffe more rules for ordered real vector spaces
haftmann
parents: 70616
diff changeset
   521
  with scaleR_left_mono that have "c *\<^sub>R a /\<^sub>R c \<le> b /\<^sub>R c"
2402aa499ffe more rules for ordered real vector spaces
haftmann
parents: 70616
diff changeset
   522
    by simp
2402aa499ffe more rules for ordered real vector spaces
haftmann
parents: 70616
diff changeset
   523
  with that show ?P
54785
4876fb408c0d lemmas about divideR and scaleR
immler
parents: 54778
diff changeset
   524
    by (simp add: scaleR_one scaleR_scaleR inverse_eq_divide)
4876fb408c0d lemmas about divideR and scaleR
immler
parents: 54778
diff changeset
   525
qed
4876fb408c0d lemmas about divideR and scaleR
immler
parents: 54778
diff changeset
   526
70802
160eaf566bcb formally augmented corresponding rules for field_simps
haftmann
parents: 70723
diff changeset
   527
lemma pos_less_divideR_eq [field_simps]:
70630
2402aa499ffe more rules for ordered real vector spaces
haftmann
parents: 70616
diff changeset
   528
  "a < b /\<^sub>R c \<longleftrightarrow> c *\<^sub>R a < b" if "c > 0"
2402aa499ffe more rules for ordered real vector spaces
haftmann
parents: 70616
diff changeset
   529
  using that pos_le_divideR_eq [of c a b]
2402aa499ffe more rules for ordered real vector spaces
haftmann
parents: 70616
diff changeset
   530
  by (auto simp add: le_less scaleR_scaleR scaleR_one)
2402aa499ffe more rules for ordered real vector spaces
haftmann
parents: 70616
diff changeset
   531
70802
160eaf566bcb formally augmented corresponding rules for field_simps
haftmann
parents: 70723
diff changeset
   532
lemma pos_divideR_le_eq [field_simps]:
70630
2402aa499ffe more rules for ordered real vector spaces
haftmann
parents: 70616
diff changeset
   533
  "b /\<^sub>R c \<le> a \<longleftrightarrow> b \<le> c *\<^sub>R a" if "c > 0"
2402aa499ffe more rules for ordered real vector spaces
haftmann
parents: 70616
diff changeset
   534
  using that pos_le_divideR_eq [of "inverse c" b a] by simp
2402aa499ffe more rules for ordered real vector spaces
haftmann
parents: 70616
diff changeset
   535
70802
160eaf566bcb formally augmented corresponding rules for field_simps
haftmann
parents: 70723
diff changeset
   536
lemma pos_divideR_less_eq [field_simps]:
70630
2402aa499ffe more rules for ordered real vector spaces
haftmann
parents: 70616
diff changeset
   537
  "b /\<^sub>R c < a \<longleftrightarrow> b < c *\<^sub>R a" if "c > 0"
2402aa499ffe more rules for ordered real vector spaces
haftmann
parents: 70616
diff changeset
   538
  using that pos_less_divideR_eq [of "inverse c" b a] by simp
2402aa499ffe more rules for ordered real vector spaces
haftmann
parents: 70616
diff changeset
   539
70802
160eaf566bcb formally augmented corresponding rules for field_simps
haftmann
parents: 70723
diff changeset
   540
lemma pos_le_minus_divideR_eq [field_simps]:
70630
2402aa499ffe more rules for ordered real vector spaces
haftmann
parents: 70616
diff changeset
   541
  "a \<le> - (b /\<^sub>R c) \<longleftrightarrow> c *\<^sub>R a \<le> - b" if "c > 0"
2402aa499ffe more rules for ordered real vector spaces
haftmann
parents: 70616
diff changeset
   542
  using that by (metis add_minus_cancel diff_0 left_minus minus_minus neg_le_iff_le
2402aa499ffe more rules for ordered real vector spaces
haftmann
parents: 70616
diff changeset
   543
    scaleR_add_right uminus_add_conv_diff pos_le_divideR_eq)
2402aa499ffe more rules for ordered real vector spaces
haftmann
parents: 70616
diff changeset
   544
  
70802
160eaf566bcb formally augmented corresponding rules for field_simps
haftmann
parents: 70723
diff changeset
   545
lemma pos_less_minus_divideR_eq [field_simps]:
70630
2402aa499ffe more rules for ordered real vector spaces
haftmann
parents: 70616
diff changeset
   546
  "a < - (b /\<^sub>R c) \<longleftrightarrow> c *\<^sub>R a < - b" if "c > 0"
2402aa499ffe more rules for ordered real vector spaces
haftmann
parents: 70616
diff changeset
   547
  using that by (metis le_less less_le_not_le pos_divideR_le_eq
2402aa499ffe more rules for ordered real vector spaces
haftmann
parents: 70616
diff changeset
   548
    pos_divideR_less_eq pos_le_minus_divideR_eq)
2402aa499ffe more rules for ordered real vector spaces
haftmann
parents: 70616
diff changeset
   549
70802
160eaf566bcb formally augmented corresponding rules for field_simps
haftmann
parents: 70723
diff changeset
   550
lemma pos_minus_divideR_le_eq [field_simps]:
70630
2402aa499ffe more rules for ordered real vector spaces
haftmann
parents: 70616
diff changeset
   551
  "- (b /\<^sub>R c) \<le> a \<longleftrightarrow> - b \<le> c *\<^sub>R a" if "c > 0"
2402aa499ffe more rules for ordered real vector spaces
haftmann
parents: 70616
diff changeset
   552
  using that by (metis pos_divideR_le_eq pos_le_minus_divideR_eq that
2402aa499ffe more rules for ordered real vector spaces
haftmann
parents: 70616
diff changeset
   553
    inverse_positive_iff_positive le_imp_neg_le minus_minus)
2402aa499ffe more rules for ordered real vector spaces
haftmann
parents: 70616
diff changeset
   554
70802
160eaf566bcb formally augmented corresponding rules for field_simps
haftmann
parents: 70723
diff changeset
   555
lemma pos_minus_divideR_less_eq [field_simps]:
70630
2402aa499ffe more rules for ordered real vector spaces
haftmann
parents: 70616
diff changeset
   556
  "- (b /\<^sub>R c) < a \<longleftrightarrow> - b < c *\<^sub>R a" if "c > 0"
2402aa499ffe more rules for ordered real vector spaces
haftmann
parents: 70616
diff changeset
   557
  using that by (simp add: less_le_not_le pos_le_minus_divideR_eq pos_minus_divideR_le_eq) 
54785
4876fb408c0d lemmas about divideR and scaleR
immler
parents: 54778
diff changeset
   558
63545
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
   559
lemma scaleR_image_atLeastAtMost: "c > 0 \<Longrightarrow> scaleR c ` {x..y} = {c *\<^sub>R x..c *\<^sub>R y}"
71720
1d8a1f727879 removed more applys
paulson <lp15@cam.ac.uk>
parents: 71544
diff changeset
   560
  apply (auto intro!: scaleR_left_mono simp: image_iff Bex_def)
73411
1f1366966296 avoid name clash
haftmann
parents: 73109
diff changeset
   561
  using pos_divideR_le_eq [of c] pos_le_divideR_eq [of c]
1f1366966296 avoid name clash
haftmann
parents: 73109
diff changeset
   562
  apply (meson local.order_eq_iff) 
1f1366966296 avoid name clash
haftmann
parents: 73109
diff changeset
   563
  done
54785
4876fb408c0d lemmas about divideR and scaleR
immler
parents: 54778
diff changeset
   564
54778
13f08c876899 introduced ordered real vector spaces
immler
parents: 54703
diff changeset
   565
end
13f08c876899 introduced ordered real vector spaces
immler
parents: 54703
diff changeset
   566
70802
160eaf566bcb formally augmented corresponding rules for field_simps
haftmann
parents: 70723
diff changeset
   567
lemma neg_le_divideR_eq [field_simps]:
70630
2402aa499ffe more rules for ordered real vector spaces
haftmann
parents: 70616
diff changeset
   568
  "a \<le> b /\<^sub>R c \<longleftrightarrow> b \<le> c *\<^sub>R a" (is "?P \<longleftrightarrow> ?Q") if "c < 0"
2402aa499ffe more rules for ordered real vector spaces
haftmann
parents: 70616
diff changeset
   569
    for a b :: "'a :: ordered_real_vector"
2402aa499ffe more rules for ordered real vector spaces
haftmann
parents: 70616
diff changeset
   570
  using that pos_le_divideR_eq [of "- c" a "- b"] by simp
2402aa499ffe more rules for ordered real vector spaces
haftmann
parents: 70616
diff changeset
   571
70802
160eaf566bcb formally augmented corresponding rules for field_simps
haftmann
parents: 70723
diff changeset
   572
lemma neg_less_divideR_eq [field_simps]:
70630
2402aa499ffe more rules for ordered real vector spaces
haftmann
parents: 70616
diff changeset
   573
  "a < b /\<^sub>R c \<longleftrightarrow> b < c *\<^sub>R a" if "c < 0"
2402aa499ffe more rules for ordered real vector spaces
haftmann
parents: 70616
diff changeset
   574
    for a b :: "'a :: ordered_real_vector"
2402aa499ffe more rules for ordered real vector spaces
haftmann
parents: 70616
diff changeset
   575
  using that neg_le_divideR_eq [of c a b] by (auto simp add: le_less)
2402aa499ffe more rules for ordered real vector spaces
haftmann
parents: 70616
diff changeset
   576
70802
160eaf566bcb formally augmented corresponding rules for field_simps
haftmann
parents: 70723
diff changeset
   577
lemma neg_divideR_le_eq [field_simps]:
70630
2402aa499ffe more rules for ordered real vector spaces
haftmann
parents: 70616
diff changeset
   578
  "b /\<^sub>R c \<le> a \<longleftrightarrow> c *\<^sub>R a \<le> b" if "c < 0"
2402aa499ffe more rules for ordered real vector spaces
haftmann
parents: 70616
diff changeset
   579
    for a b :: "'a :: ordered_real_vector"
2402aa499ffe more rules for ordered real vector spaces
haftmann
parents: 70616
diff changeset
   580
  using that pos_divideR_le_eq [of "- c" "- b" a] by simp
2402aa499ffe more rules for ordered real vector spaces
haftmann
parents: 70616
diff changeset
   581
70802
160eaf566bcb formally augmented corresponding rules for field_simps
haftmann
parents: 70723
diff changeset
   582
lemma neg_divideR_less_eq [field_simps]:
70630
2402aa499ffe more rules for ordered real vector spaces
haftmann
parents: 70616
diff changeset
   583
  "b /\<^sub>R c < a \<longleftrightarrow> c *\<^sub>R a < b" if "c < 0"
2402aa499ffe more rules for ordered real vector spaces
haftmann
parents: 70616
diff changeset
   584
    for a b :: "'a :: ordered_real_vector"
2402aa499ffe more rules for ordered real vector spaces
haftmann
parents: 70616
diff changeset
   585
  using that neg_divideR_le_eq [of c b a] by (auto simp add: le_less)
2402aa499ffe more rules for ordered real vector spaces
haftmann
parents: 70616
diff changeset
   586
70802
160eaf566bcb formally augmented corresponding rules for field_simps
haftmann
parents: 70723
diff changeset
   587
lemma neg_le_minus_divideR_eq [field_simps]:
70630
2402aa499ffe more rules for ordered real vector spaces
haftmann
parents: 70616
diff changeset
   588
  "a \<le> - (b /\<^sub>R c) \<longleftrightarrow> - b \<le> c *\<^sub>R a" if "c < 0"
2402aa499ffe more rules for ordered real vector spaces
haftmann
parents: 70616
diff changeset
   589
    for a b :: "'a :: ordered_real_vector"
2402aa499ffe more rules for ordered real vector spaces
haftmann
parents: 70616
diff changeset
   590
  using that pos_le_minus_divideR_eq [of "- c" a "- b"] by (simp add: minus_le_iff)
2402aa499ffe more rules for ordered real vector spaces
haftmann
parents: 70616
diff changeset
   591
  
70802
160eaf566bcb formally augmented corresponding rules for field_simps
haftmann
parents: 70723
diff changeset
   592
lemma neg_less_minus_divideR_eq [field_simps]:
70630
2402aa499ffe more rules for ordered real vector spaces
haftmann
parents: 70616
diff changeset
   593
  "a < - (b /\<^sub>R c) \<longleftrightarrow> - b < c *\<^sub>R a" if "c < 0"
2402aa499ffe more rules for ordered real vector spaces
haftmann
parents: 70616
diff changeset
   594
   for a b :: "'a :: ordered_real_vector"
2402aa499ffe more rules for ordered real vector spaces
haftmann
parents: 70616
diff changeset
   595
proof -
2402aa499ffe more rules for ordered real vector spaces
haftmann
parents: 70616
diff changeset
   596
  have *: "- b = c *\<^sub>R a \<longleftrightarrow> b = - (c *\<^sub>R a)"
2402aa499ffe more rules for ordered real vector spaces
haftmann
parents: 70616
diff changeset
   597
    by (metis add.inverse_inverse)
2402aa499ffe more rules for ordered real vector spaces
haftmann
parents: 70616
diff changeset
   598
  from that neg_le_minus_divideR_eq [of c a b]
2402aa499ffe more rules for ordered real vector spaces
haftmann
parents: 70616
diff changeset
   599
  show ?thesis by (auto simp add: le_less *)
2402aa499ffe more rules for ordered real vector spaces
haftmann
parents: 70616
diff changeset
   600
qed
2402aa499ffe more rules for ordered real vector spaces
haftmann
parents: 70616
diff changeset
   601
70802
160eaf566bcb formally augmented corresponding rules for field_simps
haftmann
parents: 70723
diff changeset
   602
lemma neg_minus_divideR_le_eq [field_simps]:
70630
2402aa499ffe more rules for ordered real vector spaces
haftmann
parents: 70616
diff changeset
   603
  "- (b /\<^sub>R c) \<le> a \<longleftrightarrow> c *\<^sub>R a \<le> - b" if "c < 0"
2402aa499ffe more rules for ordered real vector spaces
haftmann
parents: 70616
diff changeset
   604
    for a b :: "'a :: ordered_real_vector"
2402aa499ffe more rules for ordered real vector spaces
haftmann
parents: 70616
diff changeset
   605
  using that pos_minus_divideR_le_eq [of "- c" "- b" a] by (simp add: le_minus_iff) 
2402aa499ffe more rules for ordered real vector spaces
haftmann
parents: 70616
diff changeset
   606
70802
160eaf566bcb formally augmented corresponding rules for field_simps
haftmann
parents: 70723
diff changeset
   607
lemma neg_minus_divideR_less_eq [field_simps]:
70630
2402aa499ffe more rules for ordered real vector spaces
haftmann
parents: 70616
diff changeset
   608
  "- (b /\<^sub>R c) < a \<longleftrightarrow> c *\<^sub>R a < - b" if "c < 0"
2402aa499ffe more rules for ordered real vector spaces
haftmann
parents: 70616
diff changeset
   609
    for a b :: "'a :: ordered_real_vector"
2402aa499ffe more rules for ordered real vector spaces
haftmann
parents: 70616
diff changeset
   610
  using that by (simp add: less_le_not_le neg_le_minus_divideR_eq neg_minus_divideR_le_eq)
60303
00c06f1315d0 New material about paths, and some lemmas
paulson
parents: 60155
diff changeset
   611
70817
dd675800469d dedicated fact collections for algebraic simplification rules potentially splitting goals
haftmann
parents: 70802
diff changeset
   612
lemma [field_split_simps]:
dd675800469d dedicated fact collections for algebraic simplification rules potentially splitting goals
haftmann
parents: 70802
diff changeset
   613
  "a = b /\<^sub>R c \<longleftrightarrow> (if c = 0 then a = 0 else c *\<^sub>R a = b)"
dd675800469d dedicated fact collections for algebraic simplification rules potentially splitting goals
haftmann
parents: 70802
diff changeset
   614
  "b /\<^sub>R c = a \<longleftrightarrow> (if c = 0 then a = 0 else b = c *\<^sub>R a)"
dd675800469d dedicated fact collections for algebraic simplification rules potentially splitting goals
haftmann
parents: 70802
diff changeset
   615
  "a + b /\<^sub>R c = (if c = 0 then a else (c *\<^sub>R a + b) /\<^sub>R c)"
dd675800469d dedicated fact collections for algebraic simplification rules potentially splitting goals
haftmann
parents: 70802
diff changeset
   616
  "a /\<^sub>R c + b = (if c = 0 then b else (a + c *\<^sub>R b) /\<^sub>R c)"
dd675800469d dedicated fact collections for algebraic simplification rules potentially splitting goals
haftmann
parents: 70802
diff changeset
   617
  "a - b /\<^sub>R c = (if c = 0 then a else (c *\<^sub>R a - b) /\<^sub>R c)"
dd675800469d dedicated fact collections for algebraic simplification rules potentially splitting goals
haftmann
parents: 70802
diff changeset
   618
  "a /\<^sub>R c - b = (if c = 0 then - b else (a - c *\<^sub>R b) /\<^sub>R c)"
dd675800469d dedicated fact collections for algebraic simplification rules potentially splitting goals
haftmann
parents: 70802
diff changeset
   619
  "- (a /\<^sub>R c) + b = (if c = 0 then b else (- a + c *\<^sub>R b) /\<^sub>R c)"
dd675800469d dedicated fact collections for algebraic simplification rules potentially splitting goals
haftmann
parents: 70802
diff changeset
   620
  "- (a /\<^sub>R c) - b = (if c = 0 then - b else (- a - c *\<^sub>R b) /\<^sub>R c)"
dd675800469d dedicated fact collections for algebraic simplification rules potentially splitting goals
haftmann
parents: 70802
diff changeset
   621
    for a b :: "'a :: real_vector"
dd675800469d dedicated fact collections for algebraic simplification rules potentially splitting goals
haftmann
parents: 70802
diff changeset
   622
  by (auto simp add: field_simps)
dd675800469d dedicated fact collections for algebraic simplification rules potentially splitting goals
haftmann
parents: 70802
diff changeset
   623
dd675800469d dedicated fact collections for algebraic simplification rules potentially splitting goals
haftmann
parents: 70802
diff changeset
   624
lemma [field_split_simps]:
dd675800469d dedicated fact collections for algebraic simplification rules potentially splitting goals
haftmann
parents: 70802
diff changeset
   625
  "0 < c \<Longrightarrow> a \<le> b /\<^sub>R c \<longleftrightarrow> (if c > 0 then c *\<^sub>R a \<le> b else if c < 0 then b \<le> c *\<^sub>R a else a \<le> 0)"
dd675800469d dedicated fact collections for algebraic simplification rules potentially splitting goals
haftmann
parents: 70802
diff changeset
   626
  "0 < c \<Longrightarrow> a < b /\<^sub>R c \<longleftrightarrow> (if c > 0 then c *\<^sub>R a < b else if c < 0 then b < c *\<^sub>R a else a < 0)"
dd675800469d dedicated fact collections for algebraic simplification rules potentially splitting goals
haftmann
parents: 70802
diff changeset
   627
  "0 < c \<Longrightarrow> b /\<^sub>R c \<le> a \<longleftrightarrow> (if c > 0 then b \<le> c *\<^sub>R a else if c < 0 then c *\<^sub>R a \<le> b else a \<ge> 0)"
dd675800469d dedicated fact collections for algebraic simplification rules potentially splitting goals
haftmann
parents: 70802
diff changeset
   628
  "0 < c \<Longrightarrow> b /\<^sub>R c < a \<longleftrightarrow> (if c > 0 then b < c *\<^sub>R a else if c < 0 then c *\<^sub>R a < b else a > 0)"
dd675800469d dedicated fact collections for algebraic simplification rules potentially splitting goals
haftmann
parents: 70802
diff changeset
   629
  "0 < c \<Longrightarrow> a \<le> - (b /\<^sub>R c) \<longleftrightarrow> (if c > 0 then c *\<^sub>R a \<le> - b else if c < 0 then - b \<le> c *\<^sub>R a else a \<le> 0)"
dd675800469d dedicated fact collections for algebraic simplification rules potentially splitting goals
haftmann
parents: 70802
diff changeset
   630
  "0 < c \<Longrightarrow> a < - (b /\<^sub>R c) \<longleftrightarrow> (if c > 0 then c *\<^sub>R a < - b else if c < 0 then - b < c *\<^sub>R a else a < 0)"
dd675800469d dedicated fact collections for algebraic simplification rules potentially splitting goals
haftmann
parents: 70802
diff changeset
   631
  "0 < c \<Longrightarrow> - (b /\<^sub>R c) \<le> a \<longleftrightarrow> (if c > 0 then - b \<le> c *\<^sub>R a else if c < 0 then c *\<^sub>R a \<le> - b else a \<ge> 0)"
dd675800469d dedicated fact collections for algebraic simplification rules potentially splitting goals
haftmann
parents: 70802
diff changeset
   632
  "0 < c \<Longrightarrow> - (b /\<^sub>R c) < a \<longleftrightarrow> (if c > 0 then - b < c *\<^sub>R a else if c < 0 then c *\<^sub>R a < - b else a > 0)"
dd675800469d dedicated fact collections for algebraic simplification rules potentially splitting goals
haftmann
parents: 70802
diff changeset
   633
  for a b :: "'a :: ordered_real_vector"
dd675800469d dedicated fact collections for algebraic simplification rules potentially splitting goals
haftmann
parents: 70802
diff changeset
   634
  by (clarsimp intro!: field_simps)+
dd675800469d dedicated fact collections for algebraic simplification rules potentially splitting goals
haftmann
parents: 70802
diff changeset
   635
63545
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
   636
lemma scaleR_nonneg_nonneg: "0 \<le> a \<Longrightarrow> 0 \<le> x \<Longrightarrow> 0 \<le> a *\<^sub>R x"
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
   637
  for x :: "'a::ordered_real_vector"
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
   638
  using scaleR_left_mono [of 0 x a] by simp
54778
13f08c876899 introduced ordered real vector spaces
immler
parents: 54703
diff changeset
   639
63545
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
   640
lemma scaleR_nonneg_nonpos: "0 \<le> a \<Longrightarrow> x \<le> 0 \<Longrightarrow> a *\<^sub>R x \<le> 0"
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
   641
  for x :: "'a::ordered_real_vector"
54778
13f08c876899 introduced ordered real vector spaces
immler
parents: 54703
diff changeset
   642
  using scaleR_left_mono [of x 0 a] by simp
13f08c876899 introduced ordered real vector spaces
immler
parents: 54703
diff changeset
   643
63545
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
   644
lemma scaleR_nonpos_nonneg: "a \<le> 0 \<Longrightarrow> 0 \<le> x \<Longrightarrow> a *\<^sub>R x \<le> 0"
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
   645
  for x :: "'a::ordered_real_vector"
54778
13f08c876899 introduced ordered real vector spaces
immler
parents: 54703
diff changeset
   646
  using scaleR_right_mono [of a 0 x] by simp
13f08c876899 introduced ordered real vector spaces
immler
parents: 54703
diff changeset
   647
63545
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
   648
lemma split_scaleR_neg_le: "(0 \<le> a \<and> x \<le> 0) \<or> (a \<le> 0 \<and> 0 \<le> x) \<Longrightarrow> a *\<^sub>R x \<le> 0"
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
   649
  for x :: "'a::ordered_real_vector"
68594
5b05ede597b8 de-applying
paulson <lp15@cam.ac.uk>
parents: 68532
diff changeset
   650
  by (auto simp: scaleR_nonneg_nonpos scaleR_nonpos_nonneg)
54778
13f08c876899 introduced ordered real vector spaces
immler
parents: 54703
diff changeset
   651
63545
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
   652
lemma le_add_iff1: "a *\<^sub>R e + c \<le> b *\<^sub>R e + d \<longleftrightarrow> (a - b) *\<^sub>R e + c \<le> d"
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
   653
  for c d e :: "'a::ordered_real_vector"
54778
13f08c876899 introduced ordered real vector spaces
immler
parents: 54703
diff changeset
   654
  by (simp add: algebra_simps)
13f08c876899 introduced ordered real vector spaces
immler
parents: 54703
diff changeset
   655
63545
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
   656
lemma le_add_iff2: "a *\<^sub>R e + c \<le> b *\<^sub>R e + d \<longleftrightarrow> c \<le> (b - a) *\<^sub>R e + d"
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
   657
  for c d e :: "'a::ordered_real_vector"
54778
13f08c876899 introduced ordered real vector spaces
immler
parents: 54703
diff changeset
   658
  by (simp add: algebra_simps)
13f08c876899 introduced ordered real vector spaces
immler
parents: 54703
diff changeset
   659
63545
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
   660
lemma scaleR_left_mono_neg: "b \<le> a \<Longrightarrow> c \<le> 0 \<Longrightarrow> c *\<^sub>R a \<le> c *\<^sub>R b"
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
   661
  for a b :: "'a::ordered_real_vector"
68669
7ddf297cfcde de-applying and removing junk
paulson <lp15@cam.ac.uk>
parents: 68615
diff changeset
   662
  by (drule scaleR_left_mono [of _ _ "- c"], simp_all)
54778
13f08c876899 introduced ordered real vector spaces
immler
parents: 54703
diff changeset
   663
63545
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
   664
lemma scaleR_right_mono_neg: "b \<le> a \<Longrightarrow> c \<le> 0 \<Longrightarrow> a *\<^sub>R c \<le> b *\<^sub>R c"
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
   665
  for c :: "'a::ordered_real_vector"
68669
7ddf297cfcde de-applying and removing junk
paulson <lp15@cam.ac.uk>
parents: 68615
diff changeset
   666
  by (drule scaleR_right_mono [of _ _ "- c"], simp_all)
54778
13f08c876899 introduced ordered real vector spaces
immler
parents: 54703
diff changeset
   667
63545
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
   668
lemma scaleR_nonpos_nonpos: "a \<le> 0 \<Longrightarrow> b \<le> 0 \<Longrightarrow> 0 \<le> a *\<^sub>R b"
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
   669
  for b :: "'a::ordered_real_vector"
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
   670
  using scaleR_right_mono_neg [of a 0 b] by simp
54778
13f08c876899 introduced ordered real vector spaces
immler
parents: 54703
diff changeset
   671
63545
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
   672
lemma split_scaleR_pos_le: "(0 \<le> a \<and> 0 \<le> b) \<or> (a \<le> 0 \<and> b \<le> 0) \<Longrightarrow> 0 \<le> a *\<^sub>R b"
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
   673
  for b :: "'a::ordered_real_vector"
68594
5b05ede597b8 de-applying
paulson <lp15@cam.ac.uk>
parents: 68532
diff changeset
   674
  by (auto simp: scaleR_nonneg_nonneg scaleR_nonpos_nonpos)
54778
13f08c876899 introduced ordered real vector spaces
immler
parents: 54703
diff changeset
   675
13f08c876899 introduced ordered real vector spaces
immler
parents: 54703
diff changeset
   676
lemma zero_le_scaleR_iff:
63545
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
   677
  fixes b :: "'a::ordered_real_vector"
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
   678
  shows "0 \<le> a *\<^sub>R b \<longleftrightarrow> 0 < a \<and> 0 \<le> b \<or> a < 0 \<and> b \<le> 0 \<or> a = 0"
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
   679
    (is "?lhs = ?rhs")
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
   680
proof (cases "a = 0")
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
   681
  case True
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
   682
  then show ?thesis by simp
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
   683
next
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
   684
  case False
54778
13f08c876899 introduced ordered real vector spaces
immler
parents: 54703
diff changeset
   685
  show ?thesis
13f08c876899 introduced ordered real vector spaces
immler
parents: 54703
diff changeset
   686
  proof
63545
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
   687
    assume ?lhs
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
   688
    from \<open>a \<noteq> 0\<close> consider "a > 0" | "a < 0" by arith
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
   689
    then show ?rhs
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
   690
    proof cases
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
   691
      case 1
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
   692
      with \<open>?lhs\<close> have "inverse a *\<^sub>R 0 \<le> inverse a *\<^sub>R (a *\<^sub>R b)"
54778
13f08c876899 introduced ordered real vector spaces
immler
parents: 54703
diff changeset
   693
        by (intro scaleR_mono) auto
63545
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
   694
      with 1 show ?thesis
54778
13f08c876899 introduced ordered real vector spaces
immler
parents: 54703
diff changeset
   695
        by simp
63545
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
   696
    next
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
   697
      case 2
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
   698
      with \<open>?lhs\<close> have "- inverse a *\<^sub>R 0 \<le> - inverse a *\<^sub>R (a *\<^sub>R b)"
54778
13f08c876899 introduced ordered real vector spaces
immler
parents: 54703
diff changeset
   699
        by (intro scaleR_mono) auto
63545
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
   700
      with 2 show ?thesis
54778
13f08c876899 introduced ordered real vector spaces
immler
parents: 54703
diff changeset
   701
        by simp
63545
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
   702
    qed
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
   703
  next
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
   704
    assume ?rhs
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
   705
    then show ?lhs
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
   706
      by (auto simp: not_le \<open>a \<noteq> 0\<close> intro!: split_scaleR_pos_le)
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
   707
  qed
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
   708
qed
54778
13f08c876899 introduced ordered real vector spaces
immler
parents: 54703
diff changeset
   709
63545
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
   710
lemma scaleR_le_0_iff: "a *\<^sub>R b \<le> 0 \<longleftrightarrow> 0 < a \<and> b \<le> 0 \<or> a < 0 \<and> 0 \<le> b \<or> a = 0"
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
   711
  for b::"'a::ordered_real_vector"
54778
13f08c876899 introduced ordered real vector spaces
immler
parents: 54703
diff changeset
   712
  by (insert zero_le_scaleR_iff [of "-a" b]) force
13f08c876899 introduced ordered real vector spaces
immler
parents: 54703
diff changeset
   713
63545
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
   714
lemma scaleR_le_cancel_left: "c *\<^sub>R a \<le> c *\<^sub>R b \<longleftrightarrow> (0 < c \<longrightarrow> a \<le> b) \<and> (c < 0 \<longrightarrow> b \<le> a)"
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
   715
  for b :: "'a::ordered_real_vector"
68594
5b05ede597b8 de-applying
paulson <lp15@cam.ac.uk>
parents: 68532
diff changeset
   716
  by (auto simp: neq_iff scaleR_left_mono scaleR_left_mono_neg
63545
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
   717
      dest: scaleR_left_mono[where a="inverse c"] scaleR_left_mono_neg[where c="inverse c"])
54778
13f08c876899 introduced ordered real vector spaces
immler
parents: 54703
diff changeset
   718
63545
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
   719
lemma scaleR_le_cancel_left_pos: "0 < c \<Longrightarrow> c *\<^sub>R a \<le> c *\<^sub>R b \<longleftrightarrow> a \<le> b"
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
   720
  for b :: "'a::ordered_real_vector"
54778
13f08c876899 introduced ordered real vector spaces
immler
parents: 54703
diff changeset
   721
  by (auto simp: scaleR_le_cancel_left)
13f08c876899 introduced ordered real vector spaces
immler
parents: 54703
diff changeset
   722
63545
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
   723
lemma scaleR_le_cancel_left_neg: "c < 0 \<Longrightarrow> c *\<^sub>R a \<le> c *\<^sub>R b \<longleftrightarrow> b \<le> a"
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
   724
  for b :: "'a::ordered_real_vector"
54778
13f08c876899 introduced ordered real vector spaces
immler
parents: 54703
diff changeset
   725
  by (auto simp: scaleR_le_cancel_left)
13f08c876899 introduced ordered real vector spaces
immler
parents: 54703
diff changeset
   726
63545
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
   727
lemma scaleR_left_le_one_le: "0 \<le> x \<Longrightarrow> a \<le> 1 \<Longrightarrow> a *\<^sub>R x \<le> x"
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
   728
  for x :: "'a::ordered_real_vector" and a :: real
54778
13f08c876899 introduced ordered real vector spaces
immler
parents: 54703
diff changeset
   729
  using scaleR_right_mono[of a 1 x] by simp
13f08c876899 introduced ordered real vector spaces
immler
parents: 54703
diff changeset
   730
20504
6342e872e71d formalization of vector spaces and algebras over the real numbers
huffman
parents:
diff changeset
   731
60758
d8d85a8172b5 isabelle update_cartouches;
wenzelm
parents: 60307
diff changeset
   732
subsection \<open>Real normed vector spaces\<close>
20504
6342e872e71d formalization of vector spaces and algebras over the real numbers
huffman
parents:
diff changeset
   733
51531
f415febf4234 remove Metric_Spaces and move its content into Limits and Real_Vector_Spaces
hoelzl
parents: 51524
diff changeset
   734
class dist =
f415febf4234 remove Metric_Spaces and move its content into Limits and Real_Vector_Spaces
hoelzl
parents: 51524
diff changeset
   735
  fixes dist :: "'a \<Rightarrow> 'a \<Rightarrow> real"
f415febf4234 remove Metric_Spaces and move its content into Limits and Real_Vector_Spaces
hoelzl
parents: 51524
diff changeset
   736
29608
564ea783ace8 no base sort in class import
haftmann
parents: 29252
diff changeset
   737
class norm =
22636
c40465deaf20 new class syntax for scaleR and norm classes
huffman
parents: 22625
diff changeset
   738
  fixes norm :: "'a \<Rightarrow> real"
20504
6342e872e71d formalization of vector spaces and algebras over the real numbers
huffman
parents:
diff changeset
   739
24520
40b220403257 fix sgn_div_norm class
huffman
parents: 24513
diff changeset
   740
class sgn_div_norm = scaleR + norm + sgn +
25062
af5ef0d4d655 global class syntax
haftmann
parents: 24901
diff changeset
   741
  assumes sgn_div_norm: "sgn x = x /\<^sub>R norm x"
24506
020db6ec334a final(?) iteration of sgn saga.
nipkow
parents: 23282
diff changeset
   742
31289
847f00f435d4 move dist operation to new metric_space class
huffman
parents: 31285
diff changeset
   743
class dist_norm = dist + norm + minus +
847f00f435d4 move dist operation to new metric_space class
huffman
parents: 31285
diff changeset
   744
  assumes dist_norm: "dist x y = norm (x - y)"
847f00f435d4 move dist operation to new metric_space class
huffman
parents: 31285
diff changeset
   745
62101
26c0a70f78a3 add uniform spaces
hoelzl
parents: 62087
diff changeset
   746
class uniformity_dist = dist + uniformity +
69260
0a9688695a1b removed relics of ASCII syntax for indexed big operators
haftmann
parents: 69064
diff changeset
   747
  assumes uniformity_dist: "uniformity = (INF e\<in>{0 <..}. principal {(x, y). dist x y < e})"
62101
26c0a70f78a3 add uniform spaces
hoelzl
parents: 62087
diff changeset
   748
begin
51531
f415febf4234 remove Metric_Spaces and move its content into Limits and Real_Vector_Spaces
hoelzl
parents: 51524
diff changeset
   749
62101
26c0a70f78a3 add uniform spaces
hoelzl
parents: 62087
diff changeset
   750
lemma eventually_uniformity_metric:
26c0a70f78a3 add uniform spaces
hoelzl
parents: 62087
diff changeset
   751
  "eventually P uniformity \<longleftrightarrow> (\<exists>e>0. \<forall>x y. dist x y < e \<longrightarrow> P (x, y))"
26c0a70f78a3 add uniform spaces
hoelzl
parents: 62087
diff changeset
   752
  unfolding uniformity_dist
26c0a70f78a3 add uniform spaces
hoelzl
parents: 62087
diff changeset
   753
  by (subst eventually_INF_base)
26c0a70f78a3 add uniform spaces
hoelzl
parents: 62087
diff changeset
   754
     (auto simp: eventually_principal subset_eq intro: bexI[of _ "min _ _"])
26c0a70f78a3 add uniform spaces
hoelzl
parents: 62087
diff changeset
   755
26c0a70f78a3 add uniform spaces
hoelzl
parents: 62087
diff changeset
   756
end
26c0a70f78a3 add uniform spaces
hoelzl
parents: 62087
diff changeset
   757
26c0a70f78a3 add uniform spaces
hoelzl
parents: 62087
diff changeset
   758
class real_normed_vector = real_vector + sgn_div_norm + dist_norm + uniformity_dist + open_uniformity +
51002
496013a6eb38 remove unnecessary assumption from real_normed_vector
hoelzl
parents: 50999
diff changeset
   759
  assumes norm_eq_zero [simp]: "norm x = 0 \<longleftrightarrow> x = 0"
63545
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
   760
    and norm_triangle_ineq: "norm (x + y) \<le> norm x + norm y"
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
   761
    and norm_scaleR [simp]: "norm (scaleR a x) = \<bar>a\<bar> * norm x"
51002
496013a6eb38 remove unnecessary assumption from real_normed_vector
hoelzl
parents: 50999
diff changeset
   762
begin
496013a6eb38 remove unnecessary assumption from real_normed_vector
hoelzl
parents: 50999
diff changeset
   763
496013a6eb38 remove unnecessary assumption from real_normed_vector
hoelzl
parents: 50999
diff changeset
   764
lemma norm_ge_zero [simp]: "0 \<le> norm x"
496013a6eb38 remove unnecessary assumption from real_normed_vector
hoelzl
parents: 50999
diff changeset
   765
proof -
60026
41d81b4a0a21 Restored LIMSEQ_def as legacy binding. [The other changes are whitespace only.]
paulson <lp15@cam.ac.uk>
parents: 60017
diff changeset
   766
  have "0 = norm (x + -1 *\<^sub>R x)"
51002
496013a6eb38 remove unnecessary assumption from real_normed_vector
hoelzl
parents: 50999
diff changeset
   767
    using scaleR_add_left[of 1 "-1" x] norm_scaleR[of 0 x] by (simp add: scaleR_one)
496013a6eb38 remove unnecessary assumption from real_normed_vector
hoelzl
parents: 50999
diff changeset
   768
  also have "\<dots> \<le> norm x + norm (-1 *\<^sub>R x)" by (rule norm_triangle_ineq)
496013a6eb38 remove unnecessary assumption from real_normed_vector
hoelzl
parents: 50999
diff changeset
   769
  finally show ?thesis by simp
496013a6eb38 remove unnecessary assumption from real_normed_vector
hoelzl
parents: 50999
diff changeset
   770
qed
496013a6eb38 remove unnecessary assumption from real_normed_vector
hoelzl
parents: 50999
diff changeset
   771
74007
df976eefcba0 A few new lemmas and simplifications
paulson <lp15@cam.ac.uk>
parents: 73932
diff changeset
   772
lemma bdd_below_norm_image: "bdd_below (norm ` A)"
df976eefcba0 A few new lemmas and simplifications
paulson <lp15@cam.ac.uk>
parents: 73932
diff changeset
   773
  by (meson bdd_belowI2 norm_ge_zero)
df976eefcba0 A few new lemmas and simplifications
paulson <lp15@cam.ac.uk>
parents: 73932
diff changeset
   774
51002
496013a6eb38 remove unnecessary assumption from real_normed_vector
hoelzl
parents: 50999
diff changeset
   775
end
20504
6342e872e71d formalization of vector spaces and algebras over the real numbers
huffman
parents:
diff changeset
   776
24588
ed9a1254d674 introduced classes
haftmann
parents: 24520
diff changeset
   777
class real_normed_algebra = real_algebra + real_normed_vector +
25062
af5ef0d4d655 global class syntax
haftmann
parents: 24901
diff changeset
   778
  assumes norm_mult_ineq: "norm (x * y) \<le> norm x * norm y"
20504
6342e872e71d formalization of vector spaces and algebras over the real numbers
huffman
parents:
diff changeset
   779
24588
ed9a1254d674 introduced classes
haftmann
parents: 24520
diff changeset
   780
class real_normed_algebra_1 = real_algebra_1 + real_normed_algebra +
25062
af5ef0d4d655 global class syntax
haftmann
parents: 24901
diff changeset
   781
  assumes norm_one [simp]: "norm 1 = 1"
62101
26c0a70f78a3 add uniform spaces
hoelzl
parents: 62087
diff changeset
   782
63545
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
   783
lemma (in real_normed_algebra_1) scaleR_power [simp]: "(scaleR x y) ^ n = scaleR (x^n) (y^n)"
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
   784
  by (induct n) (simp_all add: scaleR_one scaleR_scaleR mult_ac)
22852
2490d4b4671a clean up RealVector classes
huffman
parents: 22636
diff changeset
   785
24588
ed9a1254d674 introduced classes
haftmann
parents: 24520
diff changeset
   786
class real_normed_div_algebra = real_div_algebra + real_normed_vector +
25062
af5ef0d4d655 global class syntax
haftmann
parents: 24901
diff changeset
   787
  assumes norm_mult: "norm (x * y) = norm x * norm y"
20504
6342e872e71d formalization of vector spaces and algebras over the real numbers
huffman
parents:
diff changeset
   788
24588
ed9a1254d674 introduced classes
haftmann
parents: 24520
diff changeset
   789
class real_normed_field = real_field + real_normed_div_algebra
20584
60b1d52a455d added classes real_div_algebra and real_field; added lemmas
huffman
parents: 20560
diff changeset
   790
22852
2490d4b4671a clean up RealVector classes
huffman
parents: 22636
diff changeset
   791
instance real_normed_div_algebra < real_normed_algebra_1
20554
c433e78d4203 define new constant of_real for class real_algebra_1;
huffman
parents: 20551
diff changeset
   792
proof
63545
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
   793
  show "norm (x * y) \<le> norm x * norm y" for x y :: 'a
20554
c433e78d4203 define new constant of_real for class real_algebra_1;
huffman
parents: 20551
diff changeset
   794
    by (simp add: norm_mult)
22852
2490d4b4671a clean up RealVector classes
huffman
parents: 22636
diff changeset
   795
next
2490d4b4671a clean up RealVector classes
huffman
parents: 22636
diff changeset
   796
  have "norm (1 * 1::'a) = norm (1::'a) * norm (1::'a)"
2490d4b4671a clean up RealVector classes
huffman
parents: 22636
diff changeset
   797
    by (rule norm_mult)
63545
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
   798
  then show "norm (1::'a) = 1" by simp
20554
c433e78d4203 define new constant of_real for class real_algebra_1;
huffman
parents: 20551
diff changeset
   799
qed
c433e78d4203 define new constant of_real for class real_algebra_1;
huffman
parents: 20551
diff changeset
   800
69512
2b54f25e66c4 prove lemmas in context real_normed_vector
immler
parents: 69260
diff changeset
   801
context real_normed_vector begin
2b54f25e66c4 prove lemmas in context real_normed_vector
immler
parents: 69260
diff changeset
   802
2b54f25e66c4 prove lemmas in context real_normed_vector
immler
parents: 69260
diff changeset
   803
lemma norm_zero [simp]: "norm (0::'a) = 0"
63545
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
   804
  by simp
20504
6342e872e71d formalization of vector spaces and algebras over the real numbers
huffman
parents:
diff changeset
   805
63545
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
   806
lemma zero_less_norm_iff [simp]: "norm x > 0 \<longleftrightarrow> x \<noteq> 0"
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
   807
  by (simp add: order_less_le)
20504
6342e872e71d formalization of vector spaces and algebras over the real numbers
huffman
parents:
diff changeset
   808
63545
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
   809
lemma norm_not_less_zero [simp]: "\<not> norm x < 0"
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
   810
  by (simp add: linorder_not_less)
20828
68ed2e514ca0 add lemmas norm_not_less_zero, norm_le_zero_iff
huffman
parents: 20772
diff changeset
   811
63545
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
   812
lemma norm_le_zero_iff [simp]: "norm x \<le> 0 \<longleftrightarrow> x = 0"
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
   813
  by (simp add: order_le_less)
20828
68ed2e514ca0 add lemmas norm_not_less_zero, norm_le_zero_iff
huffman
parents: 20772
diff changeset
   814
63545
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
   815
lemma norm_minus_cancel [simp]: "norm (- x) = norm x"
20504
6342e872e71d formalization of vector spaces and algebras over the real numbers
huffman
parents:
diff changeset
   816
proof -
69512
2b54f25e66c4 prove lemmas in context real_normed_vector
immler
parents: 69260
diff changeset
   817
  have "- 1 *\<^sub>R x = - (1 *\<^sub>R x)"
2b54f25e66c4 prove lemmas in context real_normed_vector
immler
parents: 69260
diff changeset
   818
    unfolding add_eq_0_iff2[symmetric] scaleR_add_left[symmetric]
2b54f25e66c4 prove lemmas in context real_normed_vector
immler
parents: 69260
diff changeset
   819
    using norm_eq_zero
2b54f25e66c4 prove lemmas in context real_normed_vector
immler
parents: 69260
diff changeset
   820
    by fastforce
2b54f25e66c4 prove lemmas in context real_normed_vector
immler
parents: 69260
diff changeset
   821
  then have "norm (- x) = norm (scaleR (- 1) x)"
2b54f25e66c4 prove lemmas in context real_normed_vector
immler
parents: 69260
diff changeset
   822
    by (simp only: scaleR_one)
20533
49442b3024bb remove conflicting norm syntax
huffman
parents: 20504
diff changeset
   823
  also have "\<dots> = \<bar>- 1\<bar> * norm x"
20504
6342e872e71d formalization of vector spaces and algebras over the real numbers
huffman
parents:
diff changeset
   824
    by (rule norm_scaleR)
6342e872e71d formalization of vector spaces and algebras over the real numbers
huffman
parents:
diff changeset
   825
  finally show ?thesis by simp
6342e872e71d formalization of vector spaces and algebras over the real numbers
huffman
parents:
diff changeset
   826
qed
6342e872e71d formalization of vector spaces and algebras over the real numbers
huffman
parents:
diff changeset
   827
63545
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
   828
lemma norm_minus_commute: "norm (a - b) = norm (b - a)"
20504
6342e872e71d formalization of vector spaces and algebras over the real numbers
huffman
parents:
diff changeset
   829
proof -
22898
38ae2815989f add lemma norm_diff_ineq; shorten other proofs
huffman
parents: 22880
diff changeset
   830
  have "norm (- (b - a)) = norm (b - a)"
38ae2815989f add lemma norm_diff_ineq; shorten other proofs
huffman
parents: 22880
diff changeset
   831
    by (rule norm_minus_cancel)
63545
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
   832
  then show ?thesis by simp
20504
6342e872e71d formalization of vector spaces and algebras over the real numbers
huffman
parents:
diff changeset
   833
qed
63545
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
   834
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
   835
lemma dist_add_cancel [simp]: "dist (a + b) (a + c) = dist b c"
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
   836
  by (simp add: dist_norm)
63114
27afe7af7379 Lots of new material for multivariate analysis
paulson <lp15@cam.ac.uk>
parents: 63040
diff changeset
   837
63545
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
   838
lemma dist_add_cancel2 [simp]: "dist (b + a) (c + a) = dist b c"
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
   839
  by (simp add: dist_norm)
63114
27afe7af7379 Lots of new material for multivariate analysis
paulson <lp15@cam.ac.uk>
parents: 63040
diff changeset
   840
69512
2b54f25e66c4 prove lemmas in context real_normed_vector
immler
parents: 69260
diff changeset
   841
lemma norm_uminus_minus: "norm (- x - y) = norm (x + y)"
61524
f2e51e704a96 added many small lemmas about setsum/setprod/powr/...
eberlm
parents: 61169
diff changeset
   842
  by (subst (2) norm_minus_cancel[symmetric], subst minus_add_distrib) simp
f2e51e704a96 added many small lemmas about setsum/setprod/powr/...
eberlm
parents: 61169
diff changeset
   843
63545
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
   844
lemma norm_triangle_ineq2: "norm a - norm b \<le> norm (a - b)"
20504
6342e872e71d formalization of vector spaces and algebras over the real numbers
huffman
parents:
diff changeset
   845
proof -
20533
49442b3024bb remove conflicting norm syntax
huffman
parents: 20504
diff changeset
   846
  have "norm (a - b + b) \<le> norm (a - b) + norm b"
20504
6342e872e71d formalization of vector spaces and algebras over the real numbers
huffman
parents:
diff changeset
   847
    by (rule norm_triangle_ineq)
63545
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
   848
  then show ?thesis by simp
20504
6342e872e71d formalization of vector spaces and algebras over the real numbers
huffman
parents:
diff changeset
   849
qed
6342e872e71d formalization of vector spaces and algebras over the real numbers
huffman
parents:
diff changeset
   850
63545
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
   851
lemma norm_triangle_ineq3: "\<bar>norm a - norm b\<bar> \<le> norm (a - b)"
68594
5b05ede597b8 de-applying
paulson <lp15@cam.ac.uk>
parents: 68532
diff changeset
   852
proof -
5b05ede597b8 de-applying
paulson <lp15@cam.ac.uk>
parents: 68532
diff changeset
   853
  have "norm a - norm b \<le> norm (a - b)"
5b05ede597b8 de-applying
paulson <lp15@cam.ac.uk>
parents: 68532
diff changeset
   854
    by (simp add: norm_triangle_ineq2)
5b05ede597b8 de-applying
paulson <lp15@cam.ac.uk>
parents: 68532
diff changeset
   855
  moreover have "norm b - norm a \<le> norm (a - b)"
5b05ede597b8 de-applying
paulson <lp15@cam.ac.uk>
parents: 68532
diff changeset
   856
    by (metis norm_minus_commute norm_triangle_ineq2)
5b05ede597b8 de-applying
paulson <lp15@cam.ac.uk>
parents: 68532
diff changeset
   857
  ultimately show ?thesis
5b05ede597b8 de-applying
paulson <lp15@cam.ac.uk>
parents: 68532
diff changeset
   858
    by (simp add: abs_le_iff)
5b05ede597b8 de-applying
paulson <lp15@cam.ac.uk>
parents: 68532
diff changeset
   859
qed
20584
60b1d52a455d added classes real_div_algebra and real_field; added lemmas
huffman
parents: 20560
diff changeset
   860
63545
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
   861
lemma norm_triangle_ineq4: "norm (a - b) \<le> norm a + norm b"
20504
6342e872e71d formalization of vector spaces and algebras over the real numbers
huffman
parents:
diff changeset
   862
proof -
22898
38ae2815989f add lemma norm_diff_ineq; shorten other proofs
huffman
parents: 22880
diff changeset
   863
  have "norm (a + - b) \<le> norm a + norm (- b)"
20504
6342e872e71d formalization of vector spaces and algebras over the real numbers
huffman
parents:
diff changeset
   864
    by (rule norm_triangle_ineq)
54230
b1d955791529 more simplification rules on unary and binary minus
haftmann
parents: 53600
diff changeset
   865
  then show ?thesis by simp
22898
38ae2815989f add lemma norm_diff_ineq; shorten other proofs
huffman
parents: 22880
diff changeset
   866
qed
38ae2815989f add lemma norm_diff_ineq; shorten other proofs
huffman
parents: 22880
diff changeset
   867
69512
2b54f25e66c4 prove lemmas in context real_normed_vector
immler
parents: 69260
diff changeset
   868
lemma norm_triangle_le_diff: "norm x + norm y \<le> e \<Longrightarrow> norm (x - y) \<le> e"
66422
2891f33ed4c8 patching the previous commit
paulson <lp15@cam.ac.uk>
parents: 66420
diff changeset
   869
    by (meson norm_triangle_ineq4 order_trans)
66420
bc0dab0e7b40 further Hensock tidy-up
paulson <lp15@cam.ac.uk>
parents: 66089
diff changeset
   870
63545
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
   871
lemma norm_diff_ineq: "norm a - norm b \<le> norm (a + b)"
22898
38ae2815989f add lemma norm_diff_ineq; shorten other proofs
huffman
parents: 22880
diff changeset
   872
proof -
38ae2815989f add lemma norm_diff_ineq; shorten other proofs
huffman
parents: 22880
diff changeset
   873
  have "norm a - norm (- b) \<le> norm (a - - b)"
38ae2815989f add lemma norm_diff_ineq; shorten other proofs
huffman
parents: 22880
diff changeset
   874
    by (rule norm_triangle_ineq2)
63545
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
   875
  then show ?thesis by simp
20504
6342e872e71d formalization of vector spaces and algebras over the real numbers
huffman
parents:
diff changeset
   876
qed
6342e872e71d formalization of vector spaces and algebras over the real numbers
huffman
parents:
diff changeset
   877
69513
42e08052dae8 moved lemmas up
immler
parents: 69512
diff changeset
   878
lemma norm_triangle_sub: "norm x \<le> norm y + norm (x - y)"
42e08052dae8 moved lemmas up
immler
parents: 69512
diff changeset
   879
  using norm_triangle_ineq[of "y" "x - y"] by (simp add: field_simps)
42e08052dae8 moved lemmas up
immler
parents: 69512
diff changeset
   880
42e08052dae8 moved lemmas up
immler
parents: 69512
diff changeset
   881
lemma norm_triangle_le: "norm x + norm y \<le> e \<Longrightarrow> norm (x + y) \<le> e"
42e08052dae8 moved lemmas up
immler
parents: 69512
diff changeset
   882
  by (rule norm_triangle_ineq [THEN order_trans])
42e08052dae8 moved lemmas up
immler
parents: 69512
diff changeset
   883
42e08052dae8 moved lemmas up
immler
parents: 69512
diff changeset
   884
lemma norm_triangle_lt: "norm x + norm y < e \<Longrightarrow> norm (x + y) < e"
42e08052dae8 moved lemmas up
immler
parents: 69512
diff changeset
   885
  by (rule norm_triangle_ineq [THEN le_less_trans])
42e08052dae8 moved lemmas up
immler
parents: 69512
diff changeset
   886
63545
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
   887
lemma norm_add_leD: "norm (a + b) \<le> c \<Longrightarrow> norm b \<le> norm a + c"
69512
2b54f25e66c4 prove lemmas in context real_normed_vector
immler
parents: 69260
diff changeset
   888
  by (metis ab_semigroup_add_class.add.commute add_commute diff_le_eq norm_diff_ineq order_trans)
61762
d50b993b4fb9 Removal of redundant lemmas (diff_less_iff, diff_le_iff) and of the abbreviation Exp. Addition of some new material.
paulson <lp15@cam.ac.uk>
parents: 61649
diff changeset
   889
63545
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
   890
lemma norm_diff_triangle_ineq: "norm ((a + b) - (c + d)) \<le> norm (a - c) + norm (b - d)"
20551
ba543692bfa1 add theorem norm_diff_triangle_ineq
huffman
parents: 20533
diff changeset
   891
proof -
ba543692bfa1 add theorem norm_diff_triangle_ineq
huffman
parents: 20533
diff changeset
   892
  have "norm ((a + b) - (c + d)) = norm ((a - c) + (b - d))"
54230
b1d955791529 more simplification rules on unary and binary minus
haftmann
parents: 53600
diff changeset
   893
    by (simp add: algebra_simps)
20551
ba543692bfa1 add theorem norm_diff_triangle_ineq
huffman
parents: 20533
diff changeset
   894
  also have "\<dots> \<le> norm (a - c) + norm (b - d)"
ba543692bfa1 add theorem norm_diff_triangle_ineq
huffman
parents: 20533
diff changeset
   895
    by (rule norm_triangle_ineq)
ba543692bfa1 add theorem norm_diff_triangle_ineq
huffman
parents: 20533
diff changeset
   896
  finally show ?thesis .
ba543692bfa1 add theorem norm_diff_triangle_ineq
huffman
parents: 20533
diff changeset
   897
qed
ba543692bfa1 add theorem norm_diff_triangle_ineq
huffman
parents: 20533
diff changeset
   898
69512
2b54f25e66c4 prove lemmas in context real_normed_vector
immler
parents: 69260
diff changeset
   899
lemma norm_diff_triangle_le: "norm (x - z) \<le> e1 + e2"
2b54f25e66c4 prove lemmas in context real_normed_vector
immler
parents: 69260
diff changeset
   900
  if "norm (x - y) \<le> e1"  "norm (y - z) \<le> e2"
2b54f25e66c4 prove lemmas in context real_normed_vector
immler
parents: 69260
diff changeset
   901
proof -
2b54f25e66c4 prove lemmas in context real_normed_vector
immler
parents: 69260
diff changeset
   902
  have "norm (x - (y + z - y)) \<le> norm (x - y) + norm (y - z)"
2b54f25e66c4 prove lemmas in context real_normed_vector
immler
parents: 69260
diff changeset
   903
    using norm_diff_triangle_ineq that diff_diff_eq2 by presburger
2b54f25e66c4 prove lemmas in context real_normed_vector
immler
parents: 69260
diff changeset
   904
  with that show ?thesis by simp
2b54f25e66c4 prove lemmas in context real_normed_vector
immler
parents: 69260
diff changeset
   905
qed
60800
7d04351c795a New material for Cauchy's integral theorem
paulson <lp15@cam.ac.uk>
parents: 60762
diff changeset
   906
69512
2b54f25e66c4 prove lemmas in context real_normed_vector
immler
parents: 69260
diff changeset
   907
lemma norm_diff_triangle_less: "norm (x - z) < e1 + e2"
2b54f25e66c4 prove lemmas in context real_normed_vector
immler
parents: 69260
diff changeset
   908
  if "norm (x - y) < e1"  "norm (y - z) < e2"
2b54f25e66c4 prove lemmas in context real_normed_vector
immler
parents: 69260
diff changeset
   909
proof -
2b54f25e66c4 prove lemmas in context real_normed_vector
immler
parents: 69260
diff changeset
   910
  have "norm (x - z) \<le> norm (x - y) + norm (y - z)"
2b54f25e66c4 prove lemmas in context real_normed_vector
immler
parents: 69260
diff changeset
   911
    by (metis norm_diff_triangle_ineq add_diff_cancel_left' diff_diff_eq2)
2b54f25e66c4 prove lemmas in context real_normed_vector
immler
parents: 69260
diff changeset
   912
  with that show ?thesis by auto
2b54f25e66c4 prove lemmas in context real_normed_vector
immler
parents: 69260
diff changeset
   913
qed
60800
7d04351c795a New material for Cauchy's integral theorem
paulson <lp15@cam.ac.uk>
parents: 60762
diff changeset
   914
60026
41d81b4a0a21 Restored LIMSEQ_def as legacy binding. [The other changes are whitespace only.]
paulson <lp15@cam.ac.uk>
parents: 60017
diff changeset
   915
lemma norm_triangle_mono:
69512
2b54f25e66c4 prove lemmas in context real_normed_vector
immler
parents: 69260
diff changeset
   916
  "norm a \<le> r \<Longrightarrow> norm b \<le> s \<Longrightarrow> norm (a + b) \<le> r + s"
2b54f25e66c4 prove lemmas in context real_normed_vector
immler
parents: 69260
diff changeset
   917
  by (metis (mono_tags) add_mono_thms_linordered_semiring(1) norm_triangle_ineq order.trans)
55719
cdddd073bff8 Lemmas about Reals, norm, etc., and cleaner variants of existing ones
paulson <lp15@cam.ac.uk>
parents: 54890
diff changeset
   918
69512
2b54f25e66c4 prove lemmas in context real_normed_vector
immler
parents: 69260
diff changeset
   919
lemma norm_sum: "norm (sum f A) \<le> (\<Sum>i\<in>A. norm (f i))"
2b54f25e66c4 prove lemmas in context real_normed_vector
immler
parents: 69260
diff changeset
   920
  for f::"'b \<Rightarrow> 'a"
56194
9ffbb4004c81 fix HOL-NSA; move lemmas
hoelzl
parents: 55719
diff changeset
   921
  by (induct A rule: infinite_finite_induct) (auto intro: norm_triangle_mono)
9ffbb4004c81 fix HOL-NSA; move lemmas
hoelzl
parents: 55719
diff changeset
   922
69512
2b54f25e66c4 prove lemmas in context real_normed_vector
immler
parents: 69260
diff changeset
   923
lemma sum_norm_le: "norm (sum f S) \<le> sum g S"
2b54f25e66c4 prove lemmas in context real_normed_vector
immler
parents: 69260
diff changeset
   924
  if "\<And>x. x \<in> S \<Longrightarrow> norm (f x) \<le> g x"
2b54f25e66c4 prove lemmas in context real_normed_vector
immler
parents: 69260
diff changeset
   925
  for f::"'b \<Rightarrow> 'a"
2b54f25e66c4 prove lemmas in context real_normed_vector
immler
parents: 69260
diff changeset
   926
  by (rule order_trans [OF norm_sum sum_mono]) (simp add: that)
56369
2704ca85be98 moved generic theorems from Complex_Analysis_Basic; fixed some theorem names
hoelzl
parents: 56194
diff changeset
   927
63545
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
   928
lemma abs_norm_cancel [simp]: "\<bar>norm a\<bar> = norm a"
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
   929
  by (rule abs_of_nonneg [OF norm_ge_zero])
22857
cb84e886cc90 add lemma abs_norm_cancel
huffman
parents: 22852
diff changeset
   930
69513
42e08052dae8 moved lemmas up
immler
parents: 69512
diff changeset
   931
lemma sum_norm_bound:
42e08052dae8 moved lemmas up
immler
parents: 69512
diff changeset
   932
  "norm (sum f S) \<le> of_nat (card S)*K"
42e08052dae8 moved lemmas up
immler
parents: 69512
diff changeset
   933
  if "\<And>x. x \<in> S \<Longrightarrow> norm (f x) \<le> K"
42e08052dae8 moved lemmas up
immler
parents: 69512
diff changeset
   934
  for f :: "'b \<Rightarrow> 'a"
42e08052dae8 moved lemmas up
immler
parents: 69512
diff changeset
   935
  using sum_norm_le[OF that] sum_constant[symmetric]
42e08052dae8 moved lemmas up
immler
parents: 69512
diff changeset
   936
  by simp
42e08052dae8 moved lemmas up
immler
parents: 69512
diff changeset
   937
63545
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
   938
lemma norm_add_less: "norm x < r \<Longrightarrow> norm y < s \<Longrightarrow> norm (x + y) < r + s"
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
   939
  by (rule order_le_less_trans [OF norm_triangle_ineq add_strict_mono])
22880
424d6fb67513 add lemmas norm_add_less, norm_mult_less
huffman
parents: 22876
diff changeset
   940
69512
2b54f25e66c4 prove lemmas in context real_normed_vector
immler
parents: 69260
diff changeset
   941
end
2b54f25e66c4 prove lemmas in context real_normed_vector
immler
parents: 69260
diff changeset
   942
2b54f25e66c4 prove lemmas in context real_normed_vector
immler
parents: 69260
diff changeset
   943
lemma dist_scaleR [simp]: "dist (x *\<^sub>R a) (y *\<^sub>R a) = \<bar>x - y\<bar> * norm a"
2b54f25e66c4 prove lemmas in context real_normed_vector
immler
parents: 69260
diff changeset
   944
  for a :: "'a::real_normed_vector"
2b54f25e66c4 prove lemmas in context real_normed_vector
immler
parents: 69260
diff changeset
   945
  by (metis dist_norm norm_scaleR scaleR_left.diff)
2b54f25e66c4 prove lemmas in context real_normed_vector
immler
parents: 69260
diff changeset
   946
63545
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
   947
lemma norm_mult_less: "norm x < r \<Longrightarrow> norm y < s \<Longrightarrow> norm (x * y) < r * s"
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
   948
  for x y :: "'a::real_normed_algebra"
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
   949
  by (rule order_le_less_trans [OF norm_mult_ineq]) (simp add: mult_strict_mono')
22880
424d6fb67513 add lemmas norm_add_less, norm_mult_less
huffman
parents: 22876
diff changeset
   950
63545
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
   951
lemma norm_of_real [simp]: "norm (of_real r :: 'a::real_normed_algebra_1) = \<bar>r\<bar>"
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
   952
  by (simp add: of_real_def)
20560
49996715bc6e norm_one is now proved from other class axioms
huffman
parents: 20554
diff changeset
   953
63545
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
   954
lemma norm_numeral [simp]: "norm (numeral w::'a::real_normed_algebra_1) = numeral w"
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
   955
  by (subst of_real_numeral [symmetric], subst norm_of_real, simp)
47108
2a1953f0d20d merged fork with new numeral representation (see NEWS)
huffman
parents: 46868
diff changeset
   956
63545
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
   957
lemma norm_neg_numeral [simp]: "norm (- numeral w::'a::real_normed_algebra_1) = numeral w"
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
   958
  by (subst of_real_neg_numeral [symmetric], subst norm_of_real, simp)
22876
2b4c831ceca7 add lemmas norm_number_of, norm_of_int, norm_of_nat
huffman
parents: 22857
diff changeset
   959
63545
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
   960
lemma norm_of_real_add1 [simp]: "norm (of_real x + 1 :: 'a :: real_normed_div_algebra) = \<bar>x + 1\<bar>"
62379
340738057c8c An assortment of useful lemmas about sums, norm, etc. Also: norm_conv_dist [symmetric] is now a simprule!
paulson <lp15@cam.ac.uk>
parents: 62368
diff changeset
   961
  by (metis norm_of_real of_real_1 of_real_add)
340738057c8c An assortment of useful lemmas about sums, norm, etc. Also: norm_conv_dist [symmetric] is now a simprule!
paulson <lp15@cam.ac.uk>
parents: 62368
diff changeset
   962
340738057c8c An assortment of useful lemmas about sums, norm, etc. Also: norm_conv_dist [symmetric] is now a simprule!
paulson <lp15@cam.ac.uk>
parents: 62368
diff changeset
   963
lemma norm_of_real_addn [simp]:
63545
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
   964
  "norm (of_real x + numeral b :: 'a :: real_normed_div_algebra) = \<bar>x + numeral b\<bar>"
62379
340738057c8c An assortment of useful lemmas about sums, norm, etc. Also: norm_conv_dist [symmetric] is now a simprule!
paulson <lp15@cam.ac.uk>
parents: 62368
diff changeset
   965
  by (metis norm_of_real of_real_add of_real_numeral)
340738057c8c An assortment of useful lemmas about sums, norm, etc. Also: norm_conv_dist [symmetric] is now a simprule!
paulson <lp15@cam.ac.uk>
parents: 62368
diff changeset
   966
63545
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
   967
lemma norm_of_int [simp]: "norm (of_int z::'a::real_normed_algebra_1) = \<bar>of_int z\<bar>"
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
   968
  by (subst of_real_of_int_eq [symmetric], rule norm_of_real)
22876
2b4c831ceca7 add lemmas norm_number_of, norm_of_int, norm_of_nat
huffman
parents: 22857
diff changeset
   969
63545
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
   970
lemma norm_of_nat [simp]: "norm (of_nat n::'a::real_normed_algebra_1) = of_nat n"
68594
5b05ede597b8 de-applying
paulson <lp15@cam.ac.uk>
parents: 68532
diff changeset
   971
  by (metis abs_of_nat norm_of_real of_real_of_nat_eq)
22876
2b4c831ceca7 add lemmas norm_number_of, norm_of_int, norm_of_nat
huffman
parents: 22857
diff changeset
   972
63545
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
   973
lemma nonzero_norm_inverse: "a \<noteq> 0 \<Longrightarrow> norm (inverse a) = inverse (norm a)"
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
   974
  for a :: "'a::real_normed_div_algebra"
68594
5b05ede597b8 de-applying
paulson <lp15@cam.ac.uk>
parents: 68532
diff changeset
   975
  by (metis inverse_unique norm_mult norm_one right_inverse)
20504
6342e872e71d formalization of vector spaces and algebras over the real numbers
huffman
parents:
diff changeset
   976
63545
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
   977
lemma norm_inverse: "norm (inverse a) = inverse (norm a)"
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
   978
  for a :: "'a::{real_normed_div_algebra,division_ring}"
68594
5b05ede597b8 de-applying
paulson <lp15@cam.ac.uk>
parents: 68532
diff changeset
   979
  by (metis inverse_zero nonzero_norm_inverse norm_zero)
20504
6342e872e71d formalization of vector spaces and algebras over the real numbers
huffman
parents:
diff changeset
   980
63545
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
   981
lemma nonzero_norm_divide: "b \<noteq> 0 \<Longrightarrow> norm (a / b) = norm a / norm b"
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
   982
  for a b :: "'a::real_normed_field"
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
   983
  by (simp add: divide_inverse norm_mult nonzero_norm_inverse)
20584
60b1d52a455d added classes real_div_algebra and real_field; added lemmas
huffman
parents: 20560
diff changeset
   984
63545
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
   985
lemma norm_divide: "norm (a / b) = norm a / norm b"
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
   986
  for a b :: "'a::{real_normed_field,field}"
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
   987
  by (simp add: divide_inverse norm_mult norm_inverse)
20584
60b1d52a455d added classes real_div_algebra and real_field; added lemmas
huffman
parents: 20560
diff changeset
   988
77221
0cdb384bf56a More new theorems from the number theory development
paulson <lp15@cam.ac.uk>
parents: 77138
diff changeset
   989
lemma dist_divide_right: "dist (a/c) (b/c) = dist a b / norm c" for c :: "'a :: real_normed_field"
0cdb384bf56a More new theorems from the number theory development
paulson <lp15@cam.ac.uk>
parents: 77138
diff changeset
   990
  by (metis diff_divide_distrib dist_norm norm_divide)
0cdb384bf56a More new theorems from the number theory development
paulson <lp15@cam.ac.uk>
parents: 77138
diff changeset
   991
68615
3ed4ff0b7ac4 de-applying
paulson <lp15@cam.ac.uk>
parents: 68594
diff changeset
   992
lemma norm_inverse_le_norm:
3ed4ff0b7ac4 de-applying
paulson <lp15@cam.ac.uk>
parents: 68594
diff changeset
   993
  fixes x :: "'a::real_normed_div_algebra"
3ed4ff0b7ac4 de-applying
paulson <lp15@cam.ac.uk>
parents: 68594
diff changeset
   994
  shows "r \<le> norm x \<Longrightarrow> 0 < r \<Longrightarrow> norm (inverse x) \<le> inverse r"
3ed4ff0b7ac4 de-applying
paulson <lp15@cam.ac.uk>
parents: 68594
diff changeset
   995
  by (simp add: le_imp_inverse_le norm_inverse)
3ed4ff0b7ac4 de-applying
paulson <lp15@cam.ac.uk>
parents: 68594
diff changeset
   996
63545
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
   997
lemma norm_power_ineq: "norm (x ^ n) \<le> norm x ^ n"
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
   998
  for x :: "'a::real_normed_algebra_1"
22852
2490d4b4671a clean up RealVector classes
huffman
parents: 22636
diff changeset
   999
proof (induct n)
63545
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  1000
  case 0
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  1001
  show "norm (x ^ 0) \<le> norm x ^ 0" by simp
22852
2490d4b4671a clean up RealVector classes
huffman
parents: 22636
diff changeset
  1002
next
2490d4b4671a clean up RealVector classes
huffman
parents: 22636
diff changeset
  1003
  case (Suc n)
2490d4b4671a clean up RealVector classes
huffman
parents: 22636
diff changeset
  1004
  have "norm (x * x ^ n) \<le> norm x * norm (x ^ n)"
2490d4b4671a clean up RealVector classes
huffman
parents: 22636
diff changeset
  1005
    by (rule norm_mult_ineq)
2490d4b4671a clean up RealVector classes
huffman
parents: 22636
diff changeset
  1006
  also from Suc have "\<dots> \<le> norm x * norm x ^ n"
2490d4b4671a clean up RealVector classes
huffman
parents: 22636
diff changeset
  1007
    using norm_ge_zero by (rule mult_left_mono)
2490d4b4671a clean up RealVector classes
huffman
parents: 22636
diff changeset
  1008
  finally show "norm (x ^ Suc n) \<le> norm x ^ Suc n"
30273
ecd6f0ca62ea declare power_Suc [simp]; remove redundant type-specific versions of power_Suc
huffman
parents: 30242
diff changeset
  1009
    by simp
22852
2490d4b4671a clean up RealVector classes
huffman
parents: 22636
diff changeset
  1010
qed
2490d4b4671a clean up RealVector classes
huffman
parents: 22636
diff changeset
  1011
63545
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  1012
lemma norm_power: "norm (x ^ n) = norm x ^ n"
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  1013
  for x :: "'a::real_normed_div_algebra"
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  1014
  by (induct n) (simp_all add: norm_mult)
20684
74e8b46abb97 add lemma norm_power
huffman
parents: 20584
diff changeset
  1015
71837
dca11678c495 new constant power_int in HOL
Manuel Eberl <eberlm@in.tum.de>
parents: 71827
diff changeset
  1016
lemma norm_power_int: "norm (power_int x n) = power_int (norm x) n"
dca11678c495 new constant power_int in HOL
Manuel Eberl <eberlm@in.tum.de>
parents: 71827
diff changeset
  1017
  for x :: "'a::real_normed_div_algebra"
dca11678c495 new constant power_int in HOL
Manuel Eberl <eberlm@in.tum.de>
parents: 71827
diff changeset
  1018
  by (cases n rule: int_cases4) (auto simp: norm_power power_int_minus norm_inverse)
dca11678c495 new constant power_int in HOL
Manuel Eberl <eberlm@in.tum.de>
parents: 71827
diff changeset
  1019
62948
7700f467892b lots of new theorems for multivariate analysis
paulson <lp15@cam.ac.uk>
parents: 62623
diff changeset
  1020
lemma power_eq_imp_eq_norm:
7700f467892b lots of new theorems for multivariate analysis
paulson <lp15@cam.ac.uk>
parents: 62623
diff changeset
  1021
  fixes w :: "'a::real_normed_div_algebra"
7700f467892b lots of new theorems for multivariate analysis
paulson <lp15@cam.ac.uk>
parents: 62623
diff changeset
  1022
  assumes eq: "w ^ n = z ^ n" and "n > 0"
7700f467892b lots of new theorems for multivariate analysis
paulson <lp15@cam.ac.uk>
parents: 62623
diff changeset
  1023
    shows "norm w = norm z"
7700f467892b lots of new theorems for multivariate analysis
paulson <lp15@cam.ac.uk>
parents: 62623
diff changeset
  1024
proof -
7700f467892b lots of new theorems for multivariate analysis
paulson <lp15@cam.ac.uk>
parents: 62623
diff changeset
  1025
  have "norm w ^ n = norm z ^ n"
7700f467892b lots of new theorems for multivariate analysis
paulson <lp15@cam.ac.uk>
parents: 62623
diff changeset
  1026
    by (metis (no_types) eq norm_power)
7700f467892b lots of new theorems for multivariate analysis
paulson <lp15@cam.ac.uk>
parents: 62623
diff changeset
  1027
  then show ?thesis
7700f467892b lots of new theorems for multivariate analysis
paulson <lp15@cam.ac.uk>
parents: 62623
diff changeset
  1028
    using assms by (force intro: power_eq_imp_eq_base)
7700f467892b lots of new theorems for multivariate analysis
paulson <lp15@cam.ac.uk>
parents: 62623
diff changeset
  1029
qed
7700f467892b lots of new theorems for multivariate analysis
paulson <lp15@cam.ac.uk>
parents: 62623
diff changeset
  1030
68465
e699ca8e22b7 New material in support of quaternions
paulson <lp15@cam.ac.uk>
parents: 68397
diff changeset
  1031
lemma power_eq_1_iff:
e699ca8e22b7 New material in support of quaternions
paulson <lp15@cam.ac.uk>
parents: 68397
diff changeset
  1032
  fixes w :: "'a::real_normed_div_algebra"
e699ca8e22b7 New material in support of quaternions
paulson <lp15@cam.ac.uk>
parents: 68397
diff changeset
  1033
  shows "w ^ n = 1 \<Longrightarrow> norm w = 1 \<or> n = 0"
e699ca8e22b7 New material in support of quaternions
paulson <lp15@cam.ac.uk>
parents: 68397
diff changeset
  1034
  by (metis norm_one power_0_left power_eq_0_iff power_eq_imp_eq_norm power_one)
e699ca8e22b7 New material in support of quaternions
paulson <lp15@cam.ac.uk>
parents: 68397
diff changeset
  1035
63545
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  1036
lemma norm_mult_numeral1 [simp]: "norm (numeral w * a) = numeral w * norm a"
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  1037
  for a b :: "'a::{real_normed_field,field}"
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  1038
  by (simp add: norm_mult)
60762
bf0c76ccee8d new material for multivariate analysis, etc.
paulson
parents: 60758
diff changeset
  1039
63545
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  1040
lemma norm_mult_numeral2 [simp]: "norm (a * numeral w) = norm a * numeral w"
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  1041
  for a b :: "'a::{real_normed_field,field}"
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  1042
  by (simp add: norm_mult)
60762
bf0c76ccee8d new material for multivariate analysis, etc.
paulson
parents: 60758
diff changeset
  1043
63545
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  1044
lemma norm_divide_numeral [simp]: "norm (a / numeral w) = norm a / numeral w"
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  1045
  for a b :: "'a::{real_normed_field,field}"
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  1046
  by (simp add: norm_divide)
60762
bf0c76ccee8d new material for multivariate analysis, etc.
paulson
parents: 60758
diff changeset
  1047
bf0c76ccee8d new material for multivariate analysis, etc.
paulson
parents: 60758
diff changeset
  1048
lemma norm_of_real_diff [simp]:
63545
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  1049
  "norm (of_real b - of_real a :: 'a::real_normed_algebra_1) \<le> \<bar>b - a\<bar>"
60762
bf0c76ccee8d new material for multivariate analysis, etc.
paulson
parents: 60758
diff changeset
  1050
  by (metis norm_of_real of_real_diff order_refl)
bf0c76ccee8d new material for multivariate analysis, etc.
paulson
parents: 60758
diff changeset
  1051
63545
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  1052
text \<open>Despite a superficial resemblance, \<open>norm_eq_1\<close> is not relevant.\<close>
59613
7103019278f0 The function frac. Various lemmas about limits, series, the exp function, etc.
paulson <lp15@cam.ac.uk>
parents: 59587
diff changeset
  1053
lemma square_norm_one:
7103019278f0 The function frac. Various lemmas about limits, series, the exp function, etc.
paulson <lp15@cam.ac.uk>
parents: 59587
diff changeset
  1054
  fixes x :: "'a::real_normed_div_algebra"
63545
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  1055
  assumes "x\<^sup>2 = 1"
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  1056
  shows "norm x = 1"
59613
7103019278f0 The function frac. Various lemmas about limits, series, the exp function, etc.
paulson <lp15@cam.ac.uk>
parents: 59587
diff changeset
  1057
  by (metis assms norm_minus_cancel norm_one power2_eq_1_iff)
7103019278f0 The function frac. Various lemmas about limits, series, the exp function, etc.
paulson <lp15@cam.ac.uk>
parents: 59587
diff changeset
  1058
63545
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  1059
lemma norm_less_p1: "norm x < norm (of_real (norm x) + 1 :: 'a)"
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  1060
  for x :: "'a::real_normed_algebra_1"
59658
0cc388370041 sin, cos generalised from type real to any "'a::{real_normed_field,banach}", including complex
paulson <lp15@cam.ac.uk>
parents: 59613
diff changeset
  1061
proof -
0cc388370041 sin, cos generalised from type real to any "'a::{real_normed_field,banach}", including complex
paulson <lp15@cam.ac.uk>
parents: 59613
diff changeset
  1062
  have "norm x < norm (of_real (norm x + 1) :: 'a)"
0cc388370041 sin, cos generalised from type real to any "'a::{real_normed_field,banach}", including complex
paulson <lp15@cam.ac.uk>
parents: 59613
diff changeset
  1063
    by (simp add: of_real_def)
0cc388370041 sin, cos generalised from type real to any "'a::{real_normed_field,banach}", including complex
paulson <lp15@cam.ac.uk>
parents: 59613
diff changeset
  1064
  then show ?thesis
0cc388370041 sin, cos generalised from type real to any "'a::{real_normed_field,banach}", including complex
paulson <lp15@cam.ac.uk>
parents: 59613
diff changeset
  1065
    by simp
0cc388370041 sin, cos generalised from type real to any "'a::{real_normed_field,banach}", including complex
paulson <lp15@cam.ac.uk>
parents: 59613
diff changeset
  1066
qed
0cc388370041 sin, cos generalised from type real to any "'a::{real_normed_field,banach}", including complex
paulson <lp15@cam.ac.uk>
parents: 59613
diff changeset
  1067
64272
f76b6dda2e56 setprod -> prod
nipkow
parents: 64267
diff changeset
  1068
lemma prod_norm: "prod (\<lambda>x. norm (f x)) A = norm (prod f A)"
63545
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  1069
  for f :: "'a \<Rightarrow> 'b::{comm_semiring_1,real_normed_div_algebra}"
57275
0ddb5b755cdc moved lemmas from the proof of the Central Limit Theorem by Jeremy Avigad and Luke Serafin
hoelzl
parents: 56889
diff changeset
  1070
  by (induct A rule: infinite_finite_induct) (auto simp: norm_mult)
0ddb5b755cdc moved lemmas from the proof of the Central Limit Theorem by Jeremy Avigad and Luke Serafin
hoelzl
parents: 56889
diff changeset
  1071
64272
f76b6dda2e56 setprod -> prod
nipkow
parents: 64267
diff changeset
  1072
lemma norm_prod_le:
f76b6dda2e56 setprod -> prod
nipkow
parents: 64267
diff changeset
  1073
  "norm (prod f A) \<le> (\<Prod>a\<in>A. norm (f a :: 'a :: {real_normed_algebra_1,comm_monoid_mult}))"
63545
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  1074
proof (induct A rule: infinite_finite_induct)
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  1075
  case empty
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  1076
  then show ?case by simp
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  1077
next
57275
0ddb5b755cdc moved lemmas from the proof of the Central Limit Theorem by Jeremy Avigad and Luke Serafin
hoelzl
parents: 56889
diff changeset
  1078
  case (insert a A)
64272
f76b6dda2e56 setprod -> prod
nipkow
parents: 64267
diff changeset
  1079
  then have "norm (prod f (insert a A)) \<le> norm (f a) * norm (prod f A)"
57275
0ddb5b755cdc moved lemmas from the proof of the Central Limit Theorem by Jeremy Avigad and Luke Serafin
hoelzl
parents: 56889
diff changeset
  1080
    by (simp add: norm_mult_ineq)
64272
f76b6dda2e56 setprod -> prod
nipkow
parents: 64267
diff changeset
  1081
  also have "norm (prod f A) \<le> (\<Prod>a\<in>A. norm (f a))"
57275
0ddb5b755cdc moved lemmas from the proof of the Central Limit Theorem by Jeremy Avigad and Luke Serafin
hoelzl
parents: 56889
diff changeset
  1082
    by (rule insert)
0ddb5b755cdc moved lemmas from the proof of the Central Limit Theorem by Jeremy Avigad and Luke Serafin
hoelzl
parents: 56889
diff changeset
  1083
  finally show ?case
0ddb5b755cdc moved lemmas from the proof of the Central Limit Theorem by Jeremy Avigad and Luke Serafin
hoelzl
parents: 56889
diff changeset
  1084
    by (simp add: insert mult_left_mono)
63545
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  1085
next
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  1086
  case infinite
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  1087
  then show ?case by simp
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  1088
qed
57275
0ddb5b755cdc moved lemmas from the proof of the Central Limit Theorem by Jeremy Avigad and Luke Serafin
hoelzl
parents: 56889
diff changeset
  1089
64272
f76b6dda2e56 setprod -> prod
nipkow
parents: 64267
diff changeset
  1090
lemma norm_prod_diff:
57275
0ddb5b755cdc moved lemmas from the proof of the Central Limit Theorem by Jeremy Avigad and Luke Serafin
hoelzl
parents: 56889
diff changeset
  1091
  fixes z w :: "'i \<Rightarrow> 'a::{real_normed_algebra_1, comm_monoid_mult}"
0ddb5b755cdc moved lemmas from the proof of the Central Limit Theorem by Jeremy Avigad and Luke Serafin
hoelzl
parents: 56889
diff changeset
  1092
  shows "(\<And>i. i \<in> I \<Longrightarrow> norm (z i) \<le> 1) \<Longrightarrow> (\<And>i. i \<in> I \<Longrightarrow> norm (w i) \<le> 1) \<Longrightarrow>
60026
41d81b4a0a21 Restored LIMSEQ_def as legacy binding. [The other changes are whitespace only.]
paulson <lp15@cam.ac.uk>
parents: 60017
diff changeset
  1093
    norm ((\<Prod>i\<in>I. z i) - (\<Prod>i\<in>I. w i)) \<le> (\<Sum>i\<in>I. norm (z i - w i))"
57275
0ddb5b755cdc moved lemmas from the proof of the Central Limit Theorem by Jeremy Avigad and Luke Serafin
hoelzl
parents: 56889
diff changeset
  1094
proof (induction I rule: infinite_finite_induct)
63545
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  1095
  case empty
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  1096
  then show ?case by simp
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  1097
next
57275
0ddb5b755cdc moved lemmas from the proof of the Central Limit Theorem by Jeremy Avigad and Luke Serafin
hoelzl
parents: 56889
diff changeset
  1098
  case (insert i I)
0ddb5b755cdc moved lemmas from the proof of the Central Limit Theorem by Jeremy Avigad and Luke Serafin
hoelzl
parents: 56889
diff changeset
  1099
  note insert.hyps[simp]
0ddb5b755cdc moved lemmas from the proof of the Central Limit Theorem by Jeremy Avigad and Luke Serafin
hoelzl
parents: 56889
diff changeset
  1100
0ddb5b755cdc moved lemmas from the proof of the Central Limit Theorem by Jeremy Avigad and Luke Serafin
hoelzl
parents: 56889
diff changeset
  1101
  have "norm ((\<Prod>i\<in>insert i I. z i) - (\<Prod>i\<in>insert i I. w i)) =
0ddb5b755cdc moved lemmas from the proof of the Central Limit Theorem by Jeremy Avigad and Luke Serafin
hoelzl
parents: 56889
diff changeset
  1102
    norm ((\<Prod>i\<in>I. z i) * (z i - w i) + ((\<Prod>i\<in>I. z i) - (\<Prod>i\<in>I. w i)) * w i)"
0ddb5b755cdc moved lemmas from the proof of the Central Limit Theorem by Jeremy Avigad and Luke Serafin
hoelzl
parents: 56889
diff changeset
  1103
    (is "_ = norm (?t1 + ?t2)")
68594
5b05ede597b8 de-applying
paulson <lp15@cam.ac.uk>
parents: 68532
diff changeset
  1104
    by (auto simp: field_simps)
63545
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  1105
  also have "\<dots> \<le> norm ?t1 + norm ?t2"
57275
0ddb5b755cdc moved lemmas from the proof of the Central Limit Theorem by Jeremy Avigad and Luke Serafin
hoelzl
parents: 56889
diff changeset
  1106
    by (rule norm_triangle_ineq)
0ddb5b755cdc moved lemmas from the proof of the Central Limit Theorem by Jeremy Avigad and Luke Serafin
hoelzl
parents: 56889
diff changeset
  1107
  also have "norm ?t1 \<le> norm (\<Prod>i\<in>I. z i) * norm (z i - w i)"
0ddb5b755cdc moved lemmas from the proof of the Central Limit Theorem by Jeremy Avigad and Luke Serafin
hoelzl
parents: 56889
diff changeset
  1108
    by (rule norm_mult_ineq)
0ddb5b755cdc moved lemmas from the proof of the Central Limit Theorem by Jeremy Avigad and Luke Serafin
hoelzl
parents: 56889
diff changeset
  1109
  also have "\<dots> \<le> (\<Prod>i\<in>I. norm (z i)) * norm(z i - w i)"
64272
f76b6dda2e56 setprod -> prod
nipkow
parents: 64267
diff changeset
  1110
    by (rule mult_right_mono) (auto intro: norm_prod_le)
57275
0ddb5b755cdc moved lemmas from the proof of the Central Limit Theorem by Jeremy Avigad and Luke Serafin
hoelzl
parents: 56889
diff changeset
  1111
  also have "(\<Prod>i\<in>I. norm (z i)) \<le> (\<Prod>i\<in>I. 1)"
64272
f76b6dda2e56 setprod -> prod
nipkow
parents: 64267
diff changeset
  1112
    by (intro prod_mono) (auto intro!: insert)
57275
0ddb5b755cdc moved lemmas from the proof of the Central Limit Theorem by Jeremy Avigad and Luke Serafin
hoelzl
parents: 56889
diff changeset
  1113
  also have "norm ?t2 \<le> norm ((\<Prod>i\<in>I. z i) - (\<Prod>i\<in>I. w i)) * norm (w i)"
0ddb5b755cdc moved lemmas from the proof of the Central Limit Theorem by Jeremy Avigad and Luke Serafin
hoelzl
parents: 56889
diff changeset
  1114
    by (rule norm_mult_ineq)
0ddb5b755cdc moved lemmas from the proof of the Central Limit Theorem by Jeremy Avigad and Luke Serafin
hoelzl
parents: 56889
diff changeset
  1115
  also have "norm (w i) \<le> 1"
0ddb5b755cdc moved lemmas from the proof of the Central Limit Theorem by Jeremy Avigad and Luke Serafin
hoelzl
parents: 56889
diff changeset
  1116
    by (auto intro: insert)
0ddb5b755cdc moved lemmas from the proof of the Central Limit Theorem by Jeremy Avigad and Luke Serafin
hoelzl
parents: 56889
diff changeset
  1117
  also have "norm ((\<Prod>i\<in>I. z i) - (\<Prod>i\<in>I. w i)) \<le> (\<Sum>i\<in>I. norm (z i - w i))"
0ddb5b755cdc moved lemmas from the proof of the Central Limit Theorem by Jeremy Avigad and Luke Serafin
hoelzl
parents: 56889
diff changeset
  1118
    using insert by auto
0ddb5b755cdc moved lemmas from the proof of the Central Limit Theorem by Jeremy Avigad and Luke Serafin
hoelzl
parents: 56889
diff changeset
  1119
  finally show ?case
68594
5b05ede597b8 de-applying
paulson <lp15@cam.ac.uk>
parents: 68532
diff changeset
  1120
    by (auto simp: ac_simps mult_right_mono mult_left_mono)
63545
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  1121
next
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  1122
  case infinite
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  1123
  then show ?case by simp
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  1124
qed
57275
0ddb5b755cdc moved lemmas from the proof of the Central Limit Theorem by Jeremy Avigad and Luke Serafin
hoelzl
parents: 56889
diff changeset
  1125
60026
41d81b4a0a21 Restored LIMSEQ_def as legacy binding. [The other changes are whitespace only.]
paulson <lp15@cam.ac.uk>
parents: 60017
diff changeset
  1126
lemma norm_power_diff:
57275
0ddb5b755cdc moved lemmas from the proof of the Central Limit Theorem by Jeremy Avigad and Luke Serafin
hoelzl
parents: 56889
diff changeset
  1127
  fixes z w :: "'a::{real_normed_algebra_1, comm_monoid_mult}"
0ddb5b755cdc moved lemmas from the proof of the Central Limit Theorem by Jeremy Avigad and Luke Serafin
hoelzl
parents: 56889
diff changeset
  1128
  assumes "norm z \<le> 1" "norm w \<le> 1"
0ddb5b755cdc moved lemmas from the proof of the Central Limit Theorem by Jeremy Avigad and Luke Serafin
hoelzl
parents: 56889
diff changeset
  1129
  shows "norm (z^m - w^m) \<le> m * norm (z - w)"
0ddb5b755cdc moved lemmas from the proof of the Central Limit Theorem by Jeremy Avigad and Luke Serafin
hoelzl
parents: 56889
diff changeset
  1130
proof -
0ddb5b755cdc moved lemmas from the proof of the Central Limit Theorem by Jeremy Avigad and Luke Serafin
hoelzl
parents: 56889
diff changeset
  1131
  have "norm (z^m - w^m) = norm ((\<Prod> i < m. z) - (\<Prod> i < m. w))"
70817
dd675800469d dedicated fact collections for algebraic simplification rules potentially splitting goals
haftmann
parents: 70802
diff changeset
  1132
    by simp
57275
0ddb5b755cdc moved lemmas from the proof of the Central Limit Theorem by Jeremy Avigad and Luke Serafin
hoelzl
parents: 56889
diff changeset
  1133
  also have "\<dots> \<le> (\<Sum>i<m. norm (z - w))"
68594
5b05ede597b8 de-applying
paulson <lp15@cam.ac.uk>
parents: 68532
diff changeset
  1134
    by (intro norm_prod_diff) (auto simp: assms)
57275
0ddb5b755cdc moved lemmas from the proof of the Central Limit Theorem by Jeremy Avigad and Luke Serafin
hoelzl
parents: 56889
diff changeset
  1135
  also have "\<dots> = m * norm (z - w)"
61609
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 61531
diff changeset
  1136
    by simp
57275
0ddb5b755cdc moved lemmas from the proof of the Central Limit Theorem by Jeremy Avigad and Luke Serafin
hoelzl
parents: 56889
diff changeset
  1137
  finally show ?thesis .
55719
cdddd073bff8 Lemmas about Reals, norm, etc., and cleaner variants of existing ones
paulson <lp15@cam.ac.uk>
parents: 54890
diff changeset
  1138
qed
cdddd073bff8 Lemmas about Reals, norm, etc., and cleaner variants of existing ones
paulson <lp15@cam.ac.uk>
parents: 54890
diff changeset
  1139
60758
d8d85a8172b5 isabelle update_cartouches;
wenzelm
parents: 60307
diff changeset
  1140
subsection \<open>Metric spaces\<close>
51531
f415febf4234 remove Metric_Spaces and move its content into Limits and Real_Vector_Spaces
hoelzl
parents: 51524
diff changeset
  1141
62101
26c0a70f78a3 add uniform spaces
hoelzl
parents: 62087
diff changeset
  1142
class metric_space = uniformity_dist + open_uniformity +
51531
f415febf4234 remove Metric_Spaces and move its content into Limits and Real_Vector_Spaces
hoelzl
parents: 51524
diff changeset
  1143
  assumes dist_eq_0_iff [simp]: "dist x y = 0 \<longleftrightarrow> x = y"
63545
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  1144
    and dist_triangle2: "dist x y \<le> dist x z + dist y z"
51531
f415febf4234 remove Metric_Spaces and move its content into Limits and Real_Vector_Spaces
hoelzl
parents: 51524
diff changeset
  1145
begin
f415febf4234 remove Metric_Spaces and move its content into Limits and Real_Vector_Spaces
hoelzl
parents: 51524
diff changeset
  1146
f415febf4234 remove Metric_Spaces and move its content into Limits and Real_Vector_Spaces
hoelzl
parents: 51524
diff changeset
  1147
lemma dist_self [simp]: "dist x x = 0"
63545
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  1148
  by simp
51531
f415febf4234 remove Metric_Spaces and move its content into Limits and Real_Vector_Spaces
hoelzl
parents: 51524
diff changeset
  1149
f415febf4234 remove Metric_Spaces and move its content into Limits and Real_Vector_Spaces
hoelzl
parents: 51524
diff changeset
  1150
lemma zero_le_dist [simp]: "0 \<le> dist x y"
63545
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  1151
  using dist_triangle2 [of x x y] by simp
51531
f415febf4234 remove Metric_Spaces and move its content into Limits and Real_Vector_Spaces
hoelzl
parents: 51524
diff changeset
  1152
f415febf4234 remove Metric_Spaces and move its content into Limits and Real_Vector_Spaces
hoelzl
parents: 51524
diff changeset
  1153
lemma zero_less_dist_iff: "0 < dist x y \<longleftrightarrow> x \<noteq> y"
63545
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  1154
  by (simp add: less_le)
51531
f415febf4234 remove Metric_Spaces and move its content into Limits and Real_Vector_Spaces
hoelzl
parents: 51524
diff changeset
  1155
f415febf4234 remove Metric_Spaces and move its content into Limits and Real_Vector_Spaces
hoelzl
parents: 51524
diff changeset
  1156
lemma dist_not_less_zero [simp]: "\<not> dist x y < 0"
63545
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  1157
  by (simp add: not_less)
51531
f415febf4234 remove Metric_Spaces and move its content into Limits and Real_Vector_Spaces
hoelzl
parents: 51524
diff changeset
  1158
f415febf4234 remove Metric_Spaces and move its content into Limits and Real_Vector_Spaces
hoelzl
parents: 51524
diff changeset
  1159
lemma dist_le_zero_iff [simp]: "dist x y \<le> 0 \<longleftrightarrow> x = y"
63545
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  1160
  by (simp add: le_less)
51531
f415febf4234 remove Metric_Spaces and move its content into Limits and Real_Vector_Spaces
hoelzl
parents: 51524
diff changeset
  1161
f415febf4234 remove Metric_Spaces and move its content into Limits and Real_Vector_Spaces
hoelzl
parents: 51524
diff changeset
  1162
lemma dist_commute: "dist x y = dist y x"
f415febf4234 remove Metric_Spaces and move its content into Limits and Real_Vector_Spaces
hoelzl
parents: 51524
diff changeset
  1163
proof (rule order_antisym)
f415febf4234 remove Metric_Spaces and move its content into Limits and Real_Vector_Spaces
hoelzl
parents: 51524
diff changeset
  1164
  show "dist x y \<le> dist y x"
f415febf4234 remove Metric_Spaces and move its content into Limits and Real_Vector_Spaces
hoelzl
parents: 51524
diff changeset
  1165
    using dist_triangle2 [of x y x] by simp
f415febf4234 remove Metric_Spaces and move its content into Limits and Real_Vector_Spaces
hoelzl
parents: 51524
diff changeset
  1166
  show "dist y x \<le> dist x y"
f415febf4234 remove Metric_Spaces and move its content into Limits and Real_Vector_Spaces
hoelzl
parents: 51524
diff changeset
  1167
    using dist_triangle2 [of y x y] by simp
f415febf4234 remove Metric_Spaces and move its content into Limits and Real_Vector_Spaces
hoelzl
parents: 51524
diff changeset
  1168
qed
f415febf4234 remove Metric_Spaces and move its content into Limits and Real_Vector_Spaces
hoelzl
parents: 51524
diff changeset
  1169
62533
bc25f3916a99 new material to Blochj's theorem, as well as supporting lemmas
paulson <lp15@cam.ac.uk>
parents: 62397
diff changeset
  1170
lemma dist_commute_lessI: "dist y x < e \<Longrightarrow> dist x y < e"
bc25f3916a99 new material to Blochj's theorem, as well as supporting lemmas
paulson <lp15@cam.ac.uk>
parents: 62397
diff changeset
  1171
  by (simp add: dist_commute)
bc25f3916a99 new material to Blochj's theorem, as well as supporting lemmas
paulson <lp15@cam.ac.uk>
parents: 62397
diff changeset
  1172
51531
f415febf4234 remove Metric_Spaces and move its content into Limits and Real_Vector_Spaces
hoelzl
parents: 51524
diff changeset
  1173
lemma dist_triangle: "dist x z \<le> dist x y + dist y z"
62533
bc25f3916a99 new material to Blochj's theorem, as well as supporting lemmas
paulson <lp15@cam.ac.uk>
parents: 62397
diff changeset
  1174
  using dist_triangle2 [of x z y] by (simp add: dist_commute)
51531
f415febf4234 remove Metric_Spaces and move its content into Limits and Real_Vector_Spaces
hoelzl
parents: 51524
diff changeset
  1175
f415febf4234 remove Metric_Spaces and move its content into Limits and Real_Vector_Spaces
hoelzl
parents: 51524
diff changeset
  1176
lemma dist_triangle3: "dist x y \<le> dist a x + dist a y"
62533
bc25f3916a99 new material to Blochj's theorem, as well as supporting lemmas
paulson <lp15@cam.ac.uk>
parents: 62397
diff changeset
  1177
  using dist_triangle2 [of x y a] by (simp add: dist_commute)
51531
f415febf4234 remove Metric_Spaces and move its content into Limits and Real_Vector_Spaces
hoelzl
parents: 51524
diff changeset
  1178
68721
53ad5c01be3f Small lemmas about analysis
eberlm <eberlm@in.tum.de>
parents: 68669
diff changeset
  1179
lemma abs_dist_diff_le: "\<bar>dist a b - dist b c\<bar> \<le> dist a c"
53ad5c01be3f Small lemmas about analysis
eberlm <eberlm@in.tum.de>
parents: 68669
diff changeset
  1180
  using dist_triangle3[of b c a] dist_triangle2[of a b c] by simp
53ad5c01be3f Small lemmas about analysis
eberlm <eberlm@in.tum.de>
parents: 68669
diff changeset
  1181
63545
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  1182
lemma dist_pos_lt: "x \<noteq> y \<Longrightarrow> 0 < dist x y"
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  1183
  by (simp add: zero_less_dist_iff)
51531
f415febf4234 remove Metric_Spaces and move its content into Limits and Real_Vector_Spaces
hoelzl
parents: 51524
diff changeset
  1184
63545
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  1185
lemma dist_nz: "x \<noteq> y \<longleftrightarrow> 0 < dist x y"
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  1186
  by (simp add: zero_less_dist_iff)
51531
f415febf4234 remove Metric_Spaces and move its content into Limits and Real_Vector_Spaces
hoelzl
parents: 51524
diff changeset
  1187
62087
44841d07ef1d revisions to limits and derivatives, plus new lemmas
paulson
parents: 62049
diff changeset
  1188
declare dist_nz [symmetric, simp]
44841d07ef1d revisions to limits and derivatives, plus new lemmas
paulson
parents: 62049
diff changeset
  1189
63545
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  1190
lemma dist_triangle_le: "dist x z + dist y z \<le> e \<Longrightarrow> dist x y \<le> e"
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  1191
  by (rule order_trans [OF dist_triangle2])
51531
f415febf4234 remove Metric_Spaces and move its content into Limits and Real_Vector_Spaces
hoelzl
parents: 51524
diff changeset
  1192
63545
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  1193
lemma dist_triangle_lt: "dist x z + dist y z < e \<Longrightarrow> dist x y < e"
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  1194
  by (rule le_less_trans [OF dist_triangle2])
51531
f415febf4234 remove Metric_Spaces and move its content into Limits and Real_Vector_Spaces
hoelzl
parents: 51524
diff changeset
  1195
63545
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  1196
lemma dist_triangle_less_add: "dist x1 y < e1 \<Longrightarrow> dist x2 y < e2 \<Longrightarrow> dist x1 x2 < e1 + e2"
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  1197
  by (rule dist_triangle_lt [where z=y]) simp
62948
7700f467892b lots of new theorems for multivariate analysis
paulson <lp15@cam.ac.uk>
parents: 62623
diff changeset
  1198
63545
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  1199
lemma dist_triangle_half_l: "dist x1 y < e / 2 \<Longrightarrow> dist x2 y < e / 2 \<Longrightarrow> dist x1 x2 < e"
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  1200
  by (rule dist_triangle_lt [where z=y]) simp
51531
f415febf4234 remove Metric_Spaces and move its content into Limits and Real_Vector_Spaces
hoelzl
parents: 51524
diff changeset
  1201
63545
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  1202
lemma dist_triangle_half_r: "dist y x1 < e / 2 \<Longrightarrow> dist y x2 < e / 2 \<Longrightarrow> dist x1 x2 < e"
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  1203
  by (rule dist_triangle_half_l) (simp_all add: dist_commute)
51531
f415febf4234 remove Metric_Spaces and move its content into Limits and Real_Vector_Spaces
hoelzl
parents: 51524
diff changeset
  1204
65036
ab7e11730ad8 Some new lemmas. Existing lemmas modified to use uniform_limit rather than its expansion
paulson <lp15@cam.ac.uk>
parents: 64788
diff changeset
  1205
lemma dist_triangle_third:
ab7e11730ad8 Some new lemmas. Existing lemmas modified to use uniform_limit rather than its expansion
paulson <lp15@cam.ac.uk>
parents: 64788
diff changeset
  1206
  assumes "dist x1 x2 < e/3" "dist x2 x3 < e/3" "dist x3 x4 < e/3"
ab7e11730ad8 Some new lemmas. Existing lemmas modified to use uniform_limit rather than its expansion
paulson <lp15@cam.ac.uk>
parents: 64788
diff changeset
  1207
  shows "dist x1 x4 < e"
ab7e11730ad8 Some new lemmas. Existing lemmas modified to use uniform_limit rather than its expansion
paulson <lp15@cam.ac.uk>
parents: 64788
diff changeset
  1208
proof -
ab7e11730ad8 Some new lemmas. Existing lemmas modified to use uniform_limit rather than its expansion
paulson <lp15@cam.ac.uk>
parents: 64788
diff changeset
  1209
  have "dist x1 x3 < e/3 + e/3"
ab7e11730ad8 Some new lemmas. Existing lemmas modified to use uniform_limit rather than its expansion
paulson <lp15@cam.ac.uk>
parents: 64788
diff changeset
  1210
    by (metis assms(1) assms(2) dist_commute dist_triangle_less_add)
ab7e11730ad8 Some new lemmas. Existing lemmas modified to use uniform_limit rather than its expansion
paulson <lp15@cam.ac.uk>
parents: 64788
diff changeset
  1211
  then have "dist x1 x4 < (e/3 + e/3) + e/3"
ab7e11730ad8 Some new lemmas. Existing lemmas modified to use uniform_limit rather than its expansion
paulson <lp15@cam.ac.uk>
parents: 64788
diff changeset
  1212
    by (metis assms(3) dist_commute dist_triangle_less_add)
ab7e11730ad8 Some new lemmas. Existing lemmas modified to use uniform_limit rather than its expansion
paulson <lp15@cam.ac.uk>
parents: 64788
diff changeset
  1213
  then show ?thesis
ab7e11730ad8 Some new lemmas. Existing lemmas modified to use uniform_limit rather than its expansion
paulson <lp15@cam.ac.uk>
parents: 64788
diff changeset
  1214
    by simp
ab7e11730ad8 Some new lemmas. Existing lemmas modified to use uniform_limit rather than its expansion
paulson <lp15@cam.ac.uk>
parents: 64788
diff changeset
  1215
qed
68532
f8b98d31ad45 Incorporating new/strengthened proofs from Library and AFP entries
paulson <lp15@cam.ac.uk>
parents: 68499
diff changeset
  1216
  
62101
26c0a70f78a3 add uniform spaces
hoelzl
parents: 62087
diff changeset
  1217
subclass uniform_space
51531
f415febf4234 remove Metric_Spaces and move its content into Limits and Real_Vector_Spaces
hoelzl
parents: 51524
diff changeset
  1218
proof
63545
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  1219
  fix E x
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  1220
  assume "eventually E uniformity"
62101
26c0a70f78a3 add uniform spaces
hoelzl
parents: 62087
diff changeset
  1221
  then obtain e where E: "0 < e" "\<And>x y. dist x y < e \<Longrightarrow> E (x, y)"
63545
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  1222
    by (auto simp: eventually_uniformity_metric)
62101
26c0a70f78a3 add uniform spaces
hoelzl
parents: 62087
diff changeset
  1223
  then show "E (x, x)" "\<forall>\<^sub>F (x, y) in uniformity. E (y, x)"
63545
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  1224
    by (auto simp: eventually_uniformity_metric dist_commute)
62101
26c0a70f78a3 add uniform spaces
hoelzl
parents: 62087
diff changeset
  1225
  show "\<exists>D. eventually D uniformity \<and> (\<forall>x y z. D (x, y) \<longrightarrow> D (y, z) \<longrightarrow> E (x, z))"
63545
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  1226
    using E dist_triangle_half_l[where e=e]
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  1227
    unfolding eventually_uniformity_metric
62101
26c0a70f78a3 add uniform spaces
hoelzl
parents: 62087
diff changeset
  1228
    by (intro exI[of _ "\<lambda>(x, y). dist x y < e / 2"] exI[of _ "e/2"] conjI)
63545
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  1229
      (auto simp: dist_commute)
51531
f415febf4234 remove Metric_Spaces and move its content into Limits and Real_Vector_Spaces
hoelzl
parents: 51524
diff changeset
  1230
qed
f415febf4234 remove Metric_Spaces and move its content into Limits and Real_Vector_Spaces
hoelzl
parents: 51524
diff changeset
  1231
62101
26c0a70f78a3 add uniform spaces
hoelzl
parents: 62087
diff changeset
  1232
lemma open_dist: "open S \<longleftrightarrow> (\<forall>x\<in>S. \<exists>e>0. \<forall>y. dist y x < e \<longrightarrow> y \<in> S)"
63545
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  1233
  by (simp add: dist_commute open_uniformity eventually_uniformity_metric)
62101
26c0a70f78a3 add uniform spaces
hoelzl
parents: 62087
diff changeset
  1234
51531
f415febf4234 remove Metric_Spaces and move its content into Limits and Real_Vector_Spaces
hoelzl
parents: 51524
diff changeset
  1235
lemma open_ball: "open {y. dist x y < d}"
63545
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  1236
  unfolding open_dist
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  1237
proof (intro ballI)
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  1238
  fix y
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  1239
  assume *: "y \<in> {y. dist x y < d}"
51531
f415febf4234 remove Metric_Spaces and move its content into Limits and Real_Vector_Spaces
hoelzl
parents: 51524
diff changeset
  1240
  then show "\<exists>e>0. \<forall>z. dist z y < e \<longrightarrow> z \<in> {y. dist x y < d}"
f415febf4234 remove Metric_Spaces and move its content into Limits and Real_Vector_Spaces
hoelzl
parents: 51524
diff changeset
  1241
    by (auto intro!: exI[of _ "d - dist x y"] simp: field_simps dist_triangle_lt)
f415febf4234 remove Metric_Spaces and move its content into Limits and Real_Vector_Spaces
hoelzl
parents: 51524
diff changeset
  1242
qed
f415febf4234 remove Metric_Spaces and move its content into Limits and Real_Vector_Spaces
hoelzl
parents: 51524
diff changeset
  1243
f415febf4234 remove Metric_Spaces and move its content into Limits and Real_Vector_Spaces
hoelzl
parents: 51524
diff changeset
  1244
subclass first_countable_topology
f415febf4234 remove Metric_Spaces and move its content into Limits and Real_Vector_Spaces
hoelzl
parents: 51524
diff changeset
  1245
proof
60026
41d81b4a0a21 Restored LIMSEQ_def as legacy binding. [The other changes are whitespace only.]
paulson <lp15@cam.ac.uk>
parents: 60017
diff changeset
  1246
  fix x
51531
f415febf4234 remove Metric_Spaces and move its content into Limits and Real_Vector_Spaces
hoelzl
parents: 51524
diff changeset
  1247
  show "\<exists>A::nat \<Rightarrow> 'a set. (\<forall>i. x \<in> A i \<and> open (A i)) \<and> (\<forall>S. open S \<and> x \<in> S \<longrightarrow> (\<exists>i. A i \<subseteq> S))"
f415febf4234 remove Metric_Spaces and move its content into Limits and Real_Vector_Spaces
hoelzl
parents: 51524
diff changeset
  1248
  proof (safe intro!: exI[of _ "\<lambda>n. {y. dist x y < inverse (Suc n)}"])
63545
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  1249
    fix S
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  1250
    assume "open S" "x \<in> S"
53374
a14d2a854c02 tuned proofs -- clarified flow of facts wrt. calculation;
wenzelm
parents: 52381
diff changeset
  1251
    then obtain e where e: "0 < e" and "{y. dist x y < e} \<subseteq> S"
51531
f415febf4234 remove Metric_Spaces and move its content into Limits and Real_Vector_Spaces
hoelzl
parents: 51524
diff changeset
  1252
      by (auto simp: open_dist subset_eq dist_commute)
f415febf4234 remove Metric_Spaces and move its content into Limits and Real_Vector_Spaces
hoelzl
parents: 51524
diff changeset
  1253
    moreover
53374
a14d2a854c02 tuned proofs -- clarified flow of facts wrt. calculation;
wenzelm
parents: 52381
diff changeset
  1254
    from e obtain i where "inverse (Suc i) < e"
51531
f415febf4234 remove Metric_Spaces and move its content into Limits and Real_Vector_Spaces
hoelzl
parents: 51524
diff changeset
  1255
      by (auto dest!: reals_Archimedean)
f415febf4234 remove Metric_Spaces and move its content into Limits and Real_Vector_Spaces
hoelzl
parents: 51524
diff changeset
  1256
    then have "{y. dist x y < inverse (Suc i)} \<subseteq> {y. dist x y < e}"
f415febf4234 remove Metric_Spaces and move its content into Limits and Real_Vector_Spaces
hoelzl
parents: 51524
diff changeset
  1257
      by auto
f415febf4234 remove Metric_Spaces and move its content into Limits and Real_Vector_Spaces
hoelzl
parents: 51524
diff changeset
  1258
    ultimately show "\<exists>i. {y. dist x y < inverse (Suc i)} \<subseteq> S"
f415febf4234 remove Metric_Spaces and move its content into Limits and Real_Vector_Spaces
hoelzl
parents: 51524
diff changeset
  1259
      by blast
f415febf4234 remove Metric_Spaces and move its content into Limits and Real_Vector_Spaces
hoelzl
parents: 51524
diff changeset
  1260
  qed (auto intro: open_ball)
f415febf4234 remove Metric_Spaces and move its content into Limits and Real_Vector_Spaces
hoelzl
parents: 51524
diff changeset
  1261
qed
f415febf4234 remove Metric_Spaces and move its content into Limits and Real_Vector_Spaces
hoelzl
parents: 51524
diff changeset
  1262
f415febf4234 remove Metric_Spaces and move its content into Limits and Real_Vector_Spaces
hoelzl
parents: 51524
diff changeset
  1263
end
f415febf4234 remove Metric_Spaces and move its content into Limits and Real_Vector_Spaces
hoelzl
parents: 51524
diff changeset
  1264
f415febf4234 remove Metric_Spaces and move its content into Limits and Real_Vector_Spaces
hoelzl
parents: 51524
diff changeset
  1265
instance metric_space \<subseteq> t2_space
f415febf4234 remove Metric_Spaces and move its content into Limits and Real_Vector_Spaces
hoelzl
parents: 51524
diff changeset
  1266
proof
f415febf4234 remove Metric_Spaces and move its content into Limits and Real_Vector_Spaces
hoelzl
parents: 51524
diff changeset
  1267
  fix x y :: "'a::metric_space"
f415febf4234 remove Metric_Spaces and move its content into Limits and Real_Vector_Spaces
hoelzl
parents: 51524
diff changeset
  1268
  assume xy: "x \<noteq> y"
f415febf4234 remove Metric_Spaces and move its content into Limits and Real_Vector_Spaces
hoelzl
parents: 51524
diff changeset
  1269
  let ?U = "{y'. dist x y' < dist x y / 2}"
f415febf4234 remove Metric_Spaces and move its content into Limits and Real_Vector_Spaces
hoelzl
parents: 51524
diff changeset
  1270
  let ?V = "{x'. dist y x' < dist x y / 2}"
63545
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  1271
  have *: "d x z \<le> d x y + d y z \<Longrightarrow> d y z = d z y \<Longrightarrow> \<not> (d x y * 2 < d x z \<and> d z y * 2 < d x z)"
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  1272
    for d :: "'a \<Rightarrow> 'a \<Rightarrow> real" and x y z :: 'a
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  1273
    by arith
51531
f415febf4234 remove Metric_Spaces and move its content into Limits and Real_Vector_Spaces
hoelzl
parents: 51524
diff changeset
  1274
  have "open ?U \<and> open ?V \<and> x \<in> ?U \<and> y \<in> ?V \<and> ?U \<inter> ?V = {}"
63545
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  1275
    using dist_pos_lt[OF xy] *[of dist, OF dist_triangle dist_commute]
51531
f415febf4234 remove Metric_Spaces and move its content into Limits and Real_Vector_Spaces
hoelzl
parents: 51524
diff changeset
  1276
    using open_ball[of _ "dist x y / 2"] by auto
f415febf4234 remove Metric_Spaces and move its content into Limits and Real_Vector_Spaces
hoelzl
parents: 51524
diff changeset
  1277
  then show "\<exists>U V. open U \<and> open V \<and> x \<in> U \<and> y \<in> V \<and> U \<inter> V = {}"
f415febf4234 remove Metric_Spaces and move its content into Limits and Real_Vector_Spaces
hoelzl
parents: 51524
diff changeset
  1278
    by blast
f415febf4234 remove Metric_Spaces and move its content into Limits and Real_Vector_Spaces
hoelzl
parents: 51524
diff changeset
  1279
qed
f415febf4234 remove Metric_Spaces and move its content into Limits and Real_Vector_Spaces
hoelzl
parents: 51524
diff changeset
  1280
60758
d8d85a8172b5 isabelle update_cartouches;
wenzelm
parents: 60307
diff changeset
  1281
text \<open>Every normed vector space is a metric space.\<close>
31289
847f00f435d4 move dist operation to new metric_space class
huffman
parents: 31285
diff changeset
  1282
instance real_normed_vector < metric_space
847f00f435d4 move dist operation to new metric_space class
huffman
parents: 31285
diff changeset
  1283
proof
63545
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  1284
  fix x y z :: 'a
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  1285
  show "dist x y = 0 \<longleftrightarrow> x = y"
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  1286
    by (simp add: dist_norm)
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  1287
  show "dist x y \<le> dist x z + dist y z"
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  1288
    using norm_triangle_ineq4 [of "x - z" "y - z"] by (simp add: dist_norm)
31289
847f00f435d4 move dist operation to new metric_space class
huffman
parents: 31285
diff changeset
  1289
qed
31285
0a3f9ee4117c generalize dist function to class real_normed_vector
huffman
parents: 31017
diff changeset
  1290
63545
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  1291
60758
d8d85a8172b5 isabelle update_cartouches;
wenzelm
parents: 60307
diff changeset
  1292
subsection \<open>Class instances for real numbers\<close>
31564
d2abf6f6f619 subsection for real instances; new lemmas for open sets of reals
huffman
parents: 31494
diff changeset
  1293
d2abf6f6f619 subsection for real instances; new lemmas for open sets of reals
huffman
parents: 31494
diff changeset
  1294
instantiation real :: real_normed_field
d2abf6f6f619 subsection for real instances; new lemmas for open sets of reals
huffman
parents: 31494
diff changeset
  1295
begin
d2abf6f6f619 subsection for real instances; new lemmas for open sets of reals
huffman
parents: 31494
diff changeset
  1296
63545
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  1297
definition dist_real_def: "dist x y = \<bar>x - y\<bar>"
51531
f415febf4234 remove Metric_Spaces and move its content into Limits and Real_Vector_Spaces
hoelzl
parents: 51524
diff changeset
  1298
62101
26c0a70f78a3 add uniform spaces
hoelzl
parents: 62087
diff changeset
  1299
definition uniformity_real_def [code del]:
69260
0a9688695a1b removed relics of ASCII syntax for indexed big operators
haftmann
parents: 69064
diff changeset
  1300
  "(uniformity :: (real \<times> real) filter) = (INF e\<in>{0 <..}. principal {(x, y). dist x y < e})"
62101
26c0a70f78a3 add uniform spaces
hoelzl
parents: 62087
diff changeset
  1301
52381
63eec9cea2c7 pragmatic executability for instance real :: open
haftmann
parents: 51775
diff changeset
  1302
definition open_real_def [code del]:
62101
26c0a70f78a3 add uniform spaces
hoelzl
parents: 62087
diff changeset
  1303
  "open (U :: real set) \<longleftrightarrow> (\<forall>x\<in>U. eventually (\<lambda>(x', y). x' = x \<longrightarrow> y \<in> U) uniformity)"
51531
f415febf4234 remove Metric_Spaces and move its content into Limits and Real_Vector_Spaces
hoelzl
parents: 51524
diff changeset
  1304
63545
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  1305
definition real_norm_def [simp]: "norm r = \<bar>r\<bar>"
31564
d2abf6f6f619 subsection for real instances; new lemmas for open sets of reals
huffman
parents: 31494
diff changeset
  1306
d2abf6f6f619 subsection for real instances; new lemmas for open sets of reals
huffman
parents: 31494
diff changeset
  1307
instance
68594
5b05ede597b8 de-applying
paulson <lp15@cam.ac.uk>
parents: 68532
diff changeset
  1308
  by intro_classes (auto simp: abs_mult open_real_def dist_real_def sgn_real_def uniformity_real_def)
31564
d2abf6f6f619 subsection for real instances; new lemmas for open sets of reals
huffman
parents: 31494
diff changeset
  1309
d2abf6f6f619 subsection for real instances; new lemmas for open sets of reals
huffman
parents: 31494
diff changeset
  1310
end
d2abf6f6f619 subsection for real instances; new lemmas for open sets of reals
huffman
parents: 31494
diff changeset
  1311
62102
877463945ce9 fix code generation for uniformity: uniformity is a non-computable pure data.
hoelzl
parents: 62101
diff changeset
  1312
declare uniformity_Abort[where 'a=real, code]
877463945ce9 fix code generation for uniformity: uniformity is a non-computable pure data.
hoelzl
parents: 62101
diff changeset
  1313
63545
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  1314
lemma dist_of_real [simp]: "dist (of_real x :: 'a) (of_real y) = dist x y"
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  1315
  for a :: "'a::real_normed_div_algebra"
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  1316
  by (metis dist_norm norm_of_real of_real_diff real_norm_def)
60800
7d04351c795a New material for Cauchy's integral theorem
paulson <lp15@cam.ac.uk>
parents: 60762
diff changeset
  1317
54890
cb892d835803 fundamental treatment of undefined vs. universally partial replaces code_abort
haftmann
parents: 54863
diff changeset
  1318
declare [[code abort: "open :: real set \<Rightarrow> bool"]]
52381
63eec9cea2c7 pragmatic executability for instance real :: open
haftmann
parents: 51775
diff changeset
  1319
51531
f415febf4234 remove Metric_Spaces and move its content into Limits and Real_Vector_Spaces
hoelzl
parents: 51524
diff changeset
  1320
instance real :: linorder_topology
f415febf4234 remove Metric_Spaces and move its content into Limits and Real_Vector_Spaces
hoelzl
parents: 51524
diff changeset
  1321
proof
f415febf4234 remove Metric_Spaces and move its content into Limits and Real_Vector_Spaces
hoelzl
parents: 51524
diff changeset
  1322
  show "(open :: real set \<Rightarrow> bool) = generate_topology (range lessThan \<union> range greaterThan)"
f415febf4234 remove Metric_Spaces and move its content into Limits and Real_Vector_Spaces
hoelzl
parents: 51524
diff changeset
  1323
  proof (rule ext, safe)
63545
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  1324
    fix S :: "real set"
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  1325
    assume "open S"
53381
355a4cac5440 tuned proofs -- less guessing;
wenzelm
parents: 53374
diff changeset
  1326
    then obtain f where "\<forall>x\<in>S. 0 < f x \<and> (\<forall>y. dist y x < f x \<longrightarrow> y \<in> S)"
62101
26c0a70f78a3 add uniform spaces
hoelzl
parents: 62087
diff changeset
  1327
      unfolding open_dist bchoice_iff ..
71720
1d8a1f727879 removed more applys
paulson <lp15@cam.ac.uk>
parents: 71544
diff changeset
  1328
    then have *: "(\<Union>x\<in>S. {x - f x <..} \<inter> {..< x + f x}) = S" (is "?S = S")
51531
f415febf4234 remove Metric_Spaces and move its content into Limits and Real_Vector_Spaces
hoelzl
parents: 51524
diff changeset
  1329
      by (fastforce simp: dist_real_def)
71720
1d8a1f727879 removed more applys
paulson <lp15@cam.ac.uk>
parents: 71544
diff changeset
  1330
    moreover have "generate_topology (range lessThan \<union> range greaterThan) ?S"
1d8a1f727879 removed more applys
paulson <lp15@cam.ac.uk>
parents: 71544
diff changeset
  1331
      by (force intro: generate_topology.Basis generate_topology_Union generate_topology.Int)
1d8a1f727879 removed more applys
paulson <lp15@cam.ac.uk>
parents: 71544
diff changeset
  1332
    ultimately show "generate_topology (range lessThan \<union> range greaterThan) S"
1d8a1f727879 removed more applys
paulson <lp15@cam.ac.uk>
parents: 71544
diff changeset
  1333
      by simp
51531
f415febf4234 remove Metric_Spaces and move its content into Limits and Real_Vector_Spaces
hoelzl
parents: 51524
diff changeset
  1334
  next
63545
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  1335
    fix S :: "real set"
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  1336
    assume "generate_topology (range lessThan \<union> range greaterThan) S"
51531
f415febf4234 remove Metric_Spaces and move its content into Limits and Real_Vector_Spaces
hoelzl
parents: 51524
diff changeset
  1337
    moreover have "\<And>a::real. open {..<a}"
62101
26c0a70f78a3 add uniform spaces
hoelzl
parents: 62087
diff changeset
  1338
      unfolding open_dist dist_real_def
51531
f415febf4234 remove Metric_Spaces and move its content into Limits and Real_Vector_Spaces
hoelzl
parents: 51524
diff changeset
  1339
    proof clarify
63545
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  1340
      fix x a :: real
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  1341
      assume "x < a"
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  1342
      then have "0 < a - x \<and> (\<forall>y. \<bar>y - x\<bar> < a - x \<longrightarrow> y \<in> {..<a})" by auto
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  1343
      then show "\<exists>e>0. \<forall>y. \<bar>y - x\<bar> < e \<longrightarrow> y \<in> {..<a}" ..
51531
f415febf4234 remove Metric_Spaces and move its content into Limits and Real_Vector_Spaces
hoelzl
parents: 51524
diff changeset
  1344
    qed
f415febf4234 remove Metric_Spaces and move its content into Limits and Real_Vector_Spaces
hoelzl
parents: 51524
diff changeset
  1345
    moreover have "\<And>a::real. open {a <..}"
62101
26c0a70f78a3 add uniform spaces
hoelzl
parents: 62087
diff changeset
  1346
      unfolding open_dist dist_real_def
51531
f415febf4234 remove Metric_Spaces and move its content into Limits and Real_Vector_Spaces
hoelzl
parents: 51524
diff changeset
  1347
    proof clarify
63545
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  1348
      fix x a :: real
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  1349
      assume "a < x"
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  1350
      then have "0 < x - a \<and> (\<forall>y. \<bar>y - x\<bar> < x - a \<longrightarrow> y \<in> {a<..})" by auto
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  1351
      then show "\<exists>e>0. \<forall>y. \<bar>y - x\<bar> < e \<longrightarrow> y \<in> {a<..}" ..
51531
f415febf4234 remove Metric_Spaces and move its content into Limits and Real_Vector_Spaces
hoelzl
parents: 51524
diff changeset
  1352
    qed
f415febf4234 remove Metric_Spaces and move its content into Limits and Real_Vector_Spaces
hoelzl
parents: 51524
diff changeset
  1353
    ultimately show "open S"
f415febf4234 remove Metric_Spaces and move its content into Limits and Real_Vector_Spaces
hoelzl
parents: 51524
diff changeset
  1354
      by induct auto
f415febf4234 remove Metric_Spaces and move its content into Limits and Real_Vector_Spaces
hoelzl
parents: 51524
diff changeset
  1355
  qed
f415febf4234 remove Metric_Spaces and move its content into Limits and Real_Vector_Spaces
hoelzl
parents: 51524
diff changeset
  1356
qed
f415febf4234 remove Metric_Spaces and move its content into Limits and Real_Vector_Spaces
hoelzl
parents: 51524
diff changeset
  1357
51775
408d937c9486 revert #916271d52466; add non-topological linear_continuum type class; show linear_continuum_topology is a perfect_space
hoelzl
parents: 51774
diff changeset
  1358
instance real :: linear_continuum_topology ..
51518
6a56b7088a6a separate SupInf into Conditional_Complete_Lattice, move instantiation of real to RealDef
hoelzl
parents: 51481
diff changeset
  1359
51531
f415febf4234 remove Metric_Spaces and move its content into Limits and Real_Vector_Spaces
hoelzl
parents: 51524
diff changeset
  1360
lemmas open_real_greaterThan = open_greaterThan[where 'a=real]
f415febf4234 remove Metric_Spaces and move its content into Limits and Real_Vector_Spaces
hoelzl
parents: 51524
diff changeset
  1361
lemmas open_real_lessThan = open_lessThan[where 'a=real]
f415febf4234 remove Metric_Spaces and move its content into Limits and Real_Vector_Spaces
hoelzl
parents: 51524
diff changeset
  1362
lemmas open_real_greaterThanLessThan = open_greaterThanLessThan[where 'a=real]
f415febf4234 remove Metric_Spaces and move its content into Limits and Real_Vector_Spaces
hoelzl
parents: 51524
diff changeset
  1363
lemmas closed_real_atMost = closed_atMost[where 'a=real]
f415febf4234 remove Metric_Spaces and move its content into Limits and Real_Vector_Spaces
hoelzl
parents: 51524
diff changeset
  1364
lemmas closed_real_atLeast = closed_atLeast[where 'a=real]
f415febf4234 remove Metric_Spaces and move its content into Limits and Real_Vector_Spaces
hoelzl
parents: 51524
diff changeset
  1365
lemmas closed_real_atLeastAtMost = closed_atLeastAtMost[where 'a=real]
f415febf4234 remove Metric_Spaces and move its content into Limits and Real_Vector_Spaces
hoelzl
parents: 51524
diff changeset
  1366
70616
6bc397bc8e8a explicit instance real::ordered_real_vector before subclass in ordered_euclidean_space
immler
parents: 70019
diff changeset
  1367
instance real :: ordered_real_vector
6bc397bc8e8a explicit instance real::ordered_real_vector before subclass in ordered_euclidean_space
immler
parents: 70019
diff changeset
  1368
  by standard (auto intro: mult_left_mono mult_right_mono)
6bc397bc8e8a explicit instance real::ordered_real_vector before subclass in ordered_euclidean_space
immler
parents: 70019
diff changeset
  1369
63545
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  1370
60758
d8d85a8172b5 isabelle update_cartouches;
wenzelm
parents: 60307
diff changeset
  1371
subsection \<open>Extra type constraints\<close>
31446
2d91b2416de8 add extra type constraints for dist, norm
huffman
parents: 31419
diff changeset
  1372
69593
3dda49e08b9d isabelle update -u control_cartouches;
wenzelm
parents: 69513
diff changeset
  1373
text \<open>Only allow \<^term>\<open>open\<close> in class \<open>topological_space\<close>.\<close>
60758
d8d85a8172b5 isabelle update_cartouches;
wenzelm
parents: 60307
diff changeset
  1374
setup \<open>Sign.add_const_constraint
69593
3dda49e08b9d isabelle update -u control_cartouches;
wenzelm
parents: 69513
diff changeset
  1375
  (\<^const_name>\<open>open\<close>, SOME \<^typ>\<open>'a::topological_space set \<Rightarrow> bool\<close>)\<close>
31492
5400beeddb55 replace 'topo' with 'open'; add extra type constraint for 'open'
huffman
parents: 31490
diff changeset
  1376
69593
3dda49e08b9d isabelle update -u control_cartouches;
wenzelm
parents: 69513
diff changeset
  1377
text \<open>Only allow \<^term>\<open>uniformity\<close> in class \<open>uniform_space\<close>.\<close>
62101
26c0a70f78a3 add uniform spaces
hoelzl
parents: 62087
diff changeset
  1378
setup \<open>Sign.add_const_constraint
69593
3dda49e08b9d isabelle update -u control_cartouches;
wenzelm
parents: 69513
diff changeset
  1379
  (\<^const_name>\<open>uniformity\<close>, SOME \<^typ>\<open>('a::uniformity \<times> 'a) filter\<close>)\<close>
62101
26c0a70f78a3 add uniform spaces
hoelzl
parents: 62087
diff changeset
  1380
69593
3dda49e08b9d isabelle update -u control_cartouches;
wenzelm
parents: 69513
diff changeset
  1381
text \<open>Only allow \<^term>\<open>dist\<close> in class \<open>metric_space\<close>.\<close>
60758
d8d85a8172b5 isabelle update_cartouches;
wenzelm
parents: 60307
diff changeset
  1382
setup \<open>Sign.add_const_constraint
69593
3dda49e08b9d isabelle update -u control_cartouches;
wenzelm
parents: 69513
diff changeset
  1383
  (\<^const_name>\<open>dist\<close>, SOME \<^typ>\<open>'a::metric_space \<Rightarrow> 'a \<Rightarrow> real\<close>)\<close>
31446
2d91b2416de8 add extra type constraints for dist, norm
huffman
parents: 31419
diff changeset
  1384
69593
3dda49e08b9d isabelle update -u control_cartouches;
wenzelm
parents: 69513
diff changeset
  1385
text \<open>Only allow \<^term>\<open>norm\<close> in class \<open>real_normed_vector\<close>.\<close>
60758
d8d85a8172b5 isabelle update_cartouches;
wenzelm
parents: 60307
diff changeset
  1386
setup \<open>Sign.add_const_constraint
69593
3dda49e08b9d isabelle update -u control_cartouches;
wenzelm
parents: 69513
diff changeset
  1387
  (\<^const_name>\<open>norm\<close>, SOME \<^typ>\<open>'a::real_normed_vector \<Rightarrow> real\<close>)\<close>
31446
2d91b2416de8 add extra type constraints for dist, norm
huffman
parents: 31419
diff changeset
  1388
63545
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  1389
60758
d8d85a8172b5 isabelle update_cartouches;
wenzelm
parents: 60307
diff changeset
  1390
subsection \<open>Sign function\<close>
22972
3e96b98d37c6 generalized sgn function to work on any real normed vector space
huffman
parents: 22942
diff changeset
  1391
63545
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  1392
lemma norm_sgn: "norm (sgn x) = (if x = 0 then 0 else 1)"
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  1393
  for x :: "'a::real_normed_vector"
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  1394
  by (simp add: sgn_div_norm)
22972
3e96b98d37c6 generalized sgn function to work on any real normed vector space
huffman
parents: 22942
diff changeset
  1395
63545
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  1396
lemma sgn_zero [simp]: "sgn (0::'a::real_normed_vector) = 0"
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  1397
  by (simp add: sgn_div_norm)
22972
3e96b98d37c6 generalized sgn function to work on any real normed vector space
huffman
parents: 22942
diff changeset
  1398
63545
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  1399
lemma sgn_zero_iff: "sgn x = 0 \<longleftrightarrow> x = 0"
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  1400
  for x :: "'a::real_normed_vector"
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  1401
  by (simp add: sgn_div_norm)
22972
3e96b98d37c6 generalized sgn function to work on any real normed vector space
huffman
parents: 22942
diff changeset
  1402
63545
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  1403
lemma sgn_minus: "sgn (- x) = - sgn x"
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  1404
  for x :: "'a::real_normed_vector"
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  1405
  by (simp add: sgn_div_norm)
22972
3e96b98d37c6 generalized sgn function to work on any real normed vector space
huffman
parents: 22942
diff changeset
  1406
63545
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  1407
lemma sgn_scaleR: "sgn (scaleR r x) = scaleR (sgn r) (sgn x)"
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  1408
  for x :: "'a::real_normed_vector"
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  1409
  by (simp add: sgn_div_norm ac_simps)
22973
64d300e16370 add lemma sgn_mult; declare real_scaleR_def and scaleR_eq_0_iff as simp rules
huffman
parents: 22972
diff changeset
  1410
22972
3e96b98d37c6 generalized sgn function to work on any real normed vector space
huffman
parents: 22942
diff changeset
  1411
lemma sgn_one [simp]: "sgn (1::'a::real_normed_algebra_1) = 1"
63545
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  1412
  by (simp add: sgn_div_norm)
22972
3e96b98d37c6 generalized sgn function to work on any real normed vector space
huffman
parents: 22942
diff changeset
  1413
63545
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  1414
lemma sgn_of_real: "sgn (of_real r :: 'a::real_normed_algebra_1) = of_real (sgn r)"
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  1415
  unfolding of_real_def by (simp only: sgn_scaleR sgn_one)
22972
3e96b98d37c6 generalized sgn function to work on any real normed vector space
huffman
parents: 22942
diff changeset
  1416
63545
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  1417
lemma sgn_mult: "sgn (x * y) = sgn x * sgn y"
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  1418
  for x y :: "'a::real_normed_div_algebra"
71544
66bc4b668d6e tidied up a few little proofs
paulson <lp15@cam.ac.uk>
parents: 70817
diff changeset
  1419
  by (simp add: sgn_div_norm norm_mult)
22973
64d300e16370 add lemma sgn_mult; declare real_scaleR_def and scaleR_eq_0_iff as simp rules
huffman
parents: 22972
diff changeset
  1420
64240
eabf80376aab more standardized names
haftmann
parents: 63967
diff changeset
  1421
hide_fact (open) sgn_mult
eabf80376aab more standardized names
haftmann
parents: 63967
diff changeset
  1422
63545
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  1423
lemma real_sgn_eq: "sgn x = x / \<bar>x\<bar>"
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  1424
  for x :: real
61649
268d88ec9087 Tweaks for "real": Removal of [iff] status for some lemmas, adding [simp] for others. Plus fixes.
paulson <lp15@cam.ac.uk>
parents: 61609
diff changeset
  1425
  by (simp add: sgn_div_norm divide_inverse)
22972
3e96b98d37c6 generalized sgn function to work on any real normed vector space
huffman
parents: 22942
diff changeset
  1426
63545
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  1427
lemma zero_le_sgn_iff [simp]: "0 \<le> sgn x \<longleftrightarrow> 0 \<le> x"
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  1428
  for x :: real
56889
48a745e1bde7 avoid the Complex constructor, use the more natural Re/Im view; moved csqrt to Complex.
hoelzl
parents: 56479
diff changeset
  1429
  by (cases "0::real" x rule: linorder_cases) simp_all
60026
41d81b4a0a21 Restored LIMSEQ_def as legacy binding. [The other changes are whitespace only.]
paulson <lp15@cam.ac.uk>
parents: 60017
diff changeset
  1430
63545
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  1431
lemma sgn_le_0_iff [simp]: "sgn x \<le> 0 \<longleftrightarrow> x \<le> 0"
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  1432
  for x :: real
56889
48a745e1bde7 avoid the Complex constructor, use the more natural Re/Im view; moved csqrt to Complex.
hoelzl
parents: 56479
diff changeset
  1433
  by (cases "0::real" x rule: linorder_cases) simp_all
60026
41d81b4a0a21 Restored LIMSEQ_def as legacy binding. [The other changes are whitespace only.]
paulson <lp15@cam.ac.uk>
parents: 60017
diff changeset
  1434
51474
1e9e68247ad1 generalize Bfun and Bseq to metric spaces; Bseq is an abbreviation for Bfun
hoelzl
parents: 51472
diff changeset
  1435
lemma norm_conv_dist: "norm x = dist x 0"
1e9e68247ad1 generalize Bfun and Bseq to metric spaces; Bseq is an abbreviation for Bfun
hoelzl
parents: 51472
diff changeset
  1436
  unfolding dist_norm by simp
22972
3e96b98d37c6 generalized sgn function to work on any real normed vector space
huffman
parents: 22942
diff changeset
  1437
62379
340738057c8c An assortment of useful lemmas about sums, norm, etc. Also: norm_conv_dist [symmetric] is now a simprule!
paulson <lp15@cam.ac.uk>
parents: 62368
diff changeset
  1438
declare norm_conv_dist [symmetric, simp]
340738057c8c An assortment of useful lemmas about sums, norm, etc. Also: norm_conv_dist [symmetric] is now a simprule!
paulson <lp15@cam.ac.uk>
parents: 62368
diff changeset
  1439
63545
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  1440
lemma dist_0_norm [simp]: "dist 0 x = norm x"
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  1441
  for x :: "'a::real_normed_vector"
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  1442
  by (simp add: dist_norm)
62397
5ae24f33d343 Substantial new material for multivariate analysis. Also removal of some duplicates.
paulson <lp15@cam.ac.uk>
parents: 62379
diff changeset
  1443
60307
75e1aa7a450e Convex hulls: theorems about interior, etc. And a few simple lemmas.
paulson <lp15@cam.ac.uk>
parents: 60303
diff changeset
  1444
lemma dist_diff [simp]: "dist a (a - b) = norm b"  "dist (a - b) a = norm b"
75e1aa7a450e Convex hulls: theorems about interior, etc. And a few simple lemmas.
paulson <lp15@cam.ac.uk>
parents: 60303
diff changeset
  1445
  by (simp_all add: dist_norm)
61609
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 61531
diff changeset
  1446
61524
f2e51e704a96 added many small lemmas about setsum/setprod/powr/...
eberlm
parents: 61169
diff changeset
  1447
lemma dist_of_int: "dist (of_int m) (of_int n :: 'a :: real_normed_algebra_1) = of_int \<bar>m - n\<bar>"
f2e51e704a96 added many small lemmas about setsum/setprod/powr/...
eberlm
parents: 61169
diff changeset
  1448
proof -
f2e51e704a96 added many small lemmas about setsum/setprod/powr/...
eberlm
parents: 61169
diff changeset
  1449
  have "dist (of_int m) (of_int n :: 'a) = dist (of_int m :: 'a) (of_int m - (of_int (m - n)))"
f2e51e704a96 added many small lemmas about setsum/setprod/powr/...
eberlm
parents: 61169
diff changeset
  1450
    by simp
f2e51e704a96 added many small lemmas about setsum/setprod/powr/...
eberlm
parents: 61169
diff changeset
  1451
  also have "\<dots> = of_int \<bar>m - n\<bar>" by (subst dist_diff, subst norm_of_int) simp
f2e51e704a96 added many small lemmas about setsum/setprod/powr/...
eberlm
parents: 61169
diff changeset
  1452
  finally show ?thesis .
f2e51e704a96 added many small lemmas about setsum/setprod/powr/...
eberlm
parents: 61169
diff changeset
  1453
qed
f2e51e704a96 added many small lemmas about setsum/setprod/powr/...
eberlm
parents: 61169
diff changeset
  1454
61609
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 61531
diff changeset
  1455
lemma dist_of_nat:
61524
f2e51e704a96 added many small lemmas about setsum/setprod/powr/...
eberlm
parents: 61169
diff changeset
  1456
  "dist (of_nat m) (of_nat n :: 'a :: real_normed_algebra_1) = of_int \<bar>int m - int n\<bar>"
f2e51e704a96 added many small lemmas about setsum/setprod/powr/...
eberlm
parents: 61169
diff changeset
  1457
  by (subst (1 2) of_int_of_nat_eq [symmetric]) (rule dist_of_int)
61609
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 61531
diff changeset
  1458
63545
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  1459
60758
d8d85a8172b5 isabelle update_cartouches;
wenzelm
parents: 60307
diff changeset
  1460
subsection \<open>Bounded Linear and Bilinear Operators\<close>
22442
15d9ed9b5051 move bounded (bi)linear operator locales from Lim.thy to RealVector.thy
huffman
parents: 21809
diff changeset
  1461
68072
493b818e8e10 added Johannes' generalizations Modules.thy and Vector_Spaces.thy; adapted HOL and HOL-Analysis accordingly
immler
parents: 67727
diff changeset
  1462
lemma linearI: "linear f"
493b818e8e10 added Johannes' generalizations Modules.thy and Vector_Spaces.thy; adapted HOL and HOL-Analysis accordingly
immler
parents: 67727
diff changeset
  1463
  if "\<And>b1 b2. f (b1 + b2) = f b1 + f b2"
493b818e8e10 added Johannes' generalizations Modules.thy and Vector_Spaces.thy; adapted HOL and HOL-Analysis accordingly
immler
parents: 67727
diff changeset
  1464
    "\<And>r b. f (r *\<^sub>R b) = r *\<^sub>R f b"
493b818e8e10 added Johannes' generalizations Modules.thy and Vector_Spaces.thy; adapted HOL and HOL-Analysis accordingly
immler
parents: 67727
diff changeset
  1465
  using that
493b818e8e10 added Johannes' generalizations Modules.thy and Vector_Spaces.thy; adapted HOL and HOL-Analysis accordingly
immler
parents: 67727
diff changeset
  1466
  by unfold_locales (auto simp: algebra_simps)
53600
8fda7ad57466 make 'linear' into a sublocale of 'bounded_linear';
huffman
parents: 53381
diff changeset
  1467
68072
493b818e8e10 added Johannes' generalizations Modules.thy and Vector_Spaces.thy; adapted HOL and HOL-Analysis accordingly
immler
parents: 67727
diff changeset
  1468
lemma linear_iff:
493b818e8e10 added Johannes' generalizations Modules.thy and Vector_Spaces.thy; adapted HOL and HOL-Analysis accordingly
immler
parents: 67727
diff changeset
  1469
  "linear f \<longleftrightarrow> (\<forall>x y. f (x + y) = f x + f y) \<and> (\<forall>c x. f (c *\<^sub>R x) = c *\<^sub>R f x)"
493b818e8e10 added Johannes' generalizations Modules.thy and Vector_Spaces.thy; adapted HOL and HOL-Analysis accordingly
immler
parents: 67727
diff changeset
  1470
  (is "linear f \<longleftrightarrow> ?rhs")
493b818e8e10 added Johannes' generalizations Modules.thy and Vector_Spaces.thy; adapted HOL and HOL-Analysis accordingly
immler
parents: 67727
diff changeset
  1471
proof
493b818e8e10 added Johannes' generalizations Modules.thy and Vector_Spaces.thy; adapted HOL and HOL-Analysis accordingly
immler
parents: 67727
diff changeset
  1472
  assume "linear f"
493b818e8e10 added Johannes' generalizations Modules.thy and Vector_Spaces.thy; adapted HOL and HOL-Analysis accordingly
immler
parents: 67727
diff changeset
  1473
  then interpret f: linear f .
493b818e8e10 added Johannes' generalizations Modules.thy and Vector_Spaces.thy; adapted HOL and HOL-Analysis accordingly
immler
parents: 67727
diff changeset
  1474
  show "?rhs" by (simp add: f.add f.scale)
493b818e8e10 added Johannes' generalizations Modules.thy and Vector_Spaces.thy; adapted HOL and HOL-Analysis accordingly
immler
parents: 67727
diff changeset
  1475
next
493b818e8e10 added Johannes' generalizations Modules.thy and Vector_Spaces.thy; adapted HOL and HOL-Analysis accordingly
immler
parents: 67727
diff changeset
  1476
  assume "?rhs"
493b818e8e10 added Johannes' generalizations Modules.thy and Vector_Spaces.thy; adapted HOL and HOL-Analysis accordingly
immler
parents: 67727
diff changeset
  1477
  then show "linear f" by (intro linearI) auto
493b818e8e10 added Johannes' generalizations Modules.thy and Vector_Spaces.thy; adapted HOL and HOL-Analysis accordingly
immler
parents: 67727
diff changeset
  1478
qed
493b818e8e10 added Johannes' generalizations Modules.thy and Vector_Spaces.thy; adapted HOL and HOL-Analysis accordingly
immler
parents: 67727
diff changeset
  1479
493b818e8e10 added Johannes' generalizations Modules.thy and Vector_Spaces.thy; adapted HOL and HOL-Analysis accordingly
immler
parents: 67727
diff changeset
  1480
lemmas linear_scaleR_left = linear_scale_left
493b818e8e10 added Johannes' generalizations Modules.thy and Vector_Spaces.thy; adapted HOL and HOL-Analysis accordingly
immler
parents: 67727
diff changeset
  1481
lemmas linear_imp_scaleR = linear_imp_scale
60800
7d04351c795a New material for Cauchy's integral theorem
paulson <lp15@cam.ac.uk>
parents: 60762
diff changeset
  1482
62533
bc25f3916a99 new material to Blochj's theorem, as well as supporting lemmas
paulson <lp15@cam.ac.uk>
parents: 62397
diff changeset
  1483
corollary real_linearD:
bc25f3916a99 new material to Blochj's theorem, as well as supporting lemmas
paulson <lp15@cam.ac.uk>
parents: 62397
diff changeset
  1484
  fixes f :: "real \<Rightarrow> real"
69064
5840724b1d71 Prefix form of infix with * on either side no longer needs special treatment
nipkow
parents: 68721
diff changeset
  1485
  assumes "linear f" obtains c where "f = (*) c"
63545
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  1486
  by (rule linear_imp_scaleR [OF assms]) (force simp: scaleR_conv_of_real)
62533
bc25f3916a99 new material to Blochj's theorem, as well as supporting lemmas
paulson <lp15@cam.ac.uk>
parents: 62397
diff changeset
  1487
65583
8d53b3bebab4 Further new material. The simprule status of some exp and ln identities was reverted.
paulson <lp15@cam.ac.uk>
parents: 65578
diff changeset
  1488
lemma linear_times_of_real: "linear (\<lambda>x. a * of_real x)"
68072
493b818e8e10 added Johannes' generalizations Modules.thy and Vector_Spaces.thy; adapted HOL and HOL-Analysis accordingly
immler
parents: 67727
diff changeset
  1489
  by (auto intro!: linearI simp: distrib_left)
493b818e8e10 added Johannes' generalizations Modules.thy and Vector_Spaces.thy; adapted HOL and HOL-Analysis accordingly
immler
parents: 67727
diff changeset
  1490
    (metis mult_scaleR_right scaleR_conv_of_real)
53600
8fda7ad57466 make 'linear' into a sublocale of 'bounded_linear';
huffman
parents: 53381
diff changeset
  1491
8fda7ad57466 make 'linear' into a sublocale of 'bounded_linear';
huffman
parents: 53381
diff changeset
  1492
locale bounded_linear = linear f for f :: "'a::real_normed_vector \<Rightarrow> 'b::real_normed_vector" +
22442
15d9ed9b5051 move bounded (bi)linear operator locales from Lim.thy to RealVector.thy
huffman
parents: 21809
diff changeset
  1493
  assumes bounded: "\<exists>K. \<forall>x. norm (f x) \<le> norm x * K"
27443
22b6281d6719 use begin and end for proofs in locales
huffman
parents: 27435
diff changeset
  1494
begin
22442
15d9ed9b5051 move bounded (bi)linear operator locales from Lim.thy to RealVector.thy
huffman
parents: 21809
diff changeset
  1495
63545
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  1496
lemma pos_bounded: "\<exists>K>0. \<forall>x. norm (f x) \<le> norm x * K"
22442
15d9ed9b5051 move bounded (bi)linear operator locales from Lim.thy to RealVector.thy
huffman
parents: 21809
diff changeset
  1497
proof -
15d9ed9b5051 move bounded (bi)linear operator locales from Lim.thy to RealVector.thy
huffman
parents: 21809
diff changeset
  1498
  obtain K where K: "\<And>x. norm (f x) \<le> norm x * K"
61649
268d88ec9087 Tweaks for "real": Removal of [iff] status for some lemmas, adding [simp] for others. Plus fixes.
paulson <lp15@cam.ac.uk>
parents: 61609
diff changeset
  1499
    using bounded by blast
22442
15d9ed9b5051 move bounded (bi)linear operator locales from Lim.thy to RealVector.thy
huffman
parents: 21809
diff changeset
  1500
  show ?thesis
15d9ed9b5051 move bounded (bi)linear operator locales from Lim.thy to RealVector.thy
huffman
parents: 21809
diff changeset
  1501
  proof (intro exI impI conjI allI)
15d9ed9b5051 move bounded (bi)linear operator locales from Lim.thy to RealVector.thy
huffman
parents: 21809
diff changeset
  1502
    show "0 < max 1 K"
54863
82acc20ded73 prefer more canonical names for lemmas on min/max
haftmann
parents: 54785
diff changeset
  1503
      by (rule order_less_le_trans [OF zero_less_one max.cobounded1])
22442
15d9ed9b5051 move bounded (bi)linear operator locales from Lim.thy to RealVector.thy
huffman
parents: 21809
diff changeset
  1504
  next
15d9ed9b5051 move bounded (bi)linear operator locales from Lim.thy to RealVector.thy
huffman
parents: 21809
diff changeset
  1505
    fix x
15d9ed9b5051 move bounded (bi)linear operator locales from Lim.thy to RealVector.thy
huffman
parents: 21809
diff changeset
  1506
    have "norm (f x) \<le> norm x * K" using K .
15d9ed9b5051 move bounded (bi)linear operator locales from Lim.thy to RealVector.thy
huffman
parents: 21809
diff changeset
  1507
    also have "\<dots> \<le> norm x * max 1 K"
54863
82acc20ded73 prefer more canonical names for lemmas on min/max
haftmann
parents: 54785
diff changeset
  1508
      by (rule mult_left_mono [OF max.cobounded2 norm_ge_zero])
22442
15d9ed9b5051 move bounded (bi)linear operator locales from Lim.thy to RealVector.thy
huffman
parents: 21809
diff changeset
  1509
    finally show "norm (f x) \<le> norm x * max 1 K" .
15d9ed9b5051 move bounded (bi)linear operator locales from Lim.thy to RealVector.thy
huffman
parents: 21809
diff changeset
  1510
  qed
15d9ed9b5051 move bounded (bi)linear operator locales from Lim.thy to RealVector.thy
huffman
parents: 21809
diff changeset
  1511
qed
15d9ed9b5051 move bounded (bi)linear operator locales from Lim.thy to RealVector.thy
huffman
parents: 21809
diff changeset
  1512
63545
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  1513
lemma nonneg_bounded: "\<exists>K\<ge>0. \<forall>x. norm (f x) \<le> norm x * K"
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  1514
  using pos_bounded by (auto intro: order_less_imp_le)
22442
15d9ed9b5051 move bounded (bi)linear operator locales from Lim.thy to RealVector.thy
huffman
parents: 21809
diff changeset
  1515
63545
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  1516
lemma linear: "linear f"
63469
b6900858dcb9 lots of new theorems about differentiable_on, retracts, ANRs, etc.
paulson <lp15@cam.ac.uk>
parents: 63128
diff changeset
  1517
  by (fact local.linear_axioms)
56369
2704ca85be98 moved generic theorems from Complex_Analysis_Basic; fixed some theorem names
hoelzl
parents: 56194
diff changeset
  1518
27443
22b6281d6719 use begin and end for proofs in locales
huffman
parents: 27435
diff changeset
  1519
end
22b6281d6719 use begin and end for proofs in locales
huffman
parents: 27435
diff changeset
  1520
44127
7b57b9295d98 lemma bounded_linear_intro
huffman
parents: 41969
diff changeset
  1521
lemma bounded_linear_intro:
7b57b9295d98 lemma bounded_linear_intro
huffman
parents: 41969
diff changeset
  1522
  assumes "\<And>x y. f (x + y) = f x + f y"
63545
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  1523
    and "\<And>r x. f (scaleR r x) = scaleR r (f x)"
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  1524
    and "\<And>x. norm (f x) \<le> norm x * K"
44127
7b57b9295d98 lemma bounded_linear_intro
huffman
parents: 41969
diff changeset
  1525
  shows "bounded_linear f"
61649
268d88ec9087 Tweaks for "real": Removal of [iff] status for some lemmas, adding [simp] for others. Plus fixes.
paulson <lp15@cam.ac.uk>
parents: 61609
diff changeset
  1526
  by standard (blast intro: assms)+
44127
7b57b9295d98 lemma bounded_linear_intro
huffman
parents: 41969
diff changeset
  1527
22442
15d9ed9b5051 move bounded (bi)linear operator locales from Lim.thy to RealVector.thy
huffman
parents: 21809
diff changeset
  1528
locale bounded_bilinear =
63545
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  1529
  fixes prod :: "'a::real_normed_vector \<Rightarrow> 'b::real_normed_vector \<Rightarrow> 'c::real_normed_vector"
22442
15d9ed9b5051 move bounded (bi)linear operator locales from Lim.thy to RealVector.thy
huffman
parents: 21809
diff changeset
  1530
    (infixl "**" 70)
15d9ed9b5051 move bounded (bi)linear operator locales from Lim.thy to RealVector.thy
huffman
parents: 21809
diff changeset
  1531
  assumes add_left: "prod (a + a') b = prod a b + prod a' b"
63545
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  1532
    and add_right: "prod a (b + b') = prod a b + prod a b'"
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  1533
    and scaleR_left: "prod (scaleR r a) b = scaleR r (prod a b)"
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  1534
    and scaleR_right: "prod a (scaleR r b) = scaleR r (prod a b)"
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  1535
    and bounded: "\<exists>K. \<forall>a b. norm (prod a b) \<le> norm a * norm b * K"
27443
22b6281d6719 use begin and end for proofs in locales
huffman
parents: 27435
diff changeset
  1536
begin
22442
15d9ed9b5051 move bounded (bi)linear operator locales from Lim.thy to RealVector.thy
huffman
parents: 21809
diff changeset
  1537
63545
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  1538
lemma pos_bounded: "\<exists>K>0. \<forall>a b. norm (a ** b) \<le> norm a * norm b * K"
66793
deabce3ccf1f new material about connectedness, etc.
paulson <lp15@cam.ac.uk>
parents: 66422
diff changeset
  1539
proof -
deabce3ccf1f new material about connectedness, etc.
paulson <lp15@cam.ac.uk>
parents: 66422
diff changeset
  1540
  obtain K where "\<And>a b. norm (a ** b) \<le> norm a * norm b * K"
deabce3ccf1f new material about connectedness, etc.
paulson <lp15@cam.ac.uk>
parents: 66422
diff changeset
  1541
    using bounded by blast
deabce3ccf1f new material about connectedness, etc.
paulson <lp15@cam.ac.uk>
parents: 66422
diff changeset
  1542
  then have "norm (a ** b) \<le> norm a * norm b * (max 1 K)" for a b
deabce3ccf1f new material about connectedness, etc.
paulson <lp15@cam.ac.uk>
parents: 66422
diff changeset
  1543
    by (rule order.trans) (simp add: mult_left_mono)
deabce3ccf1f new material about connectedness, etc.
paulson <lp15@cam.ac.uk>
parents: 66422
diff changeset
  1544
  then show ?thesis
deabce3ccf1f new material about connectedness, etc.
paulson <lp15@cam.ac.uk>
parents: 66422
diff changeset
  1545
    by force
deabce3ccf1f new material about connectedness, etc.
paulson <lp15@cam.ac.uk>
parents: 66422
diff changeset
  1546
qed
22442
15d9ed9b5051 move bounded (bi)linear operator locales from Lim.thy to RealVector.thy
huffman
parents: 21809
diff changeset
  1547
63545
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  1548
lemma nonneg_bounded: "\<exists>K\<ge>0. \<forall>a b. norm (a ** b) \<le> norm a * norm b * K"
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  1549
  using pos_bounded by (auto intro: order_less_imp_le)
22442
15d9ed9b5051 move bounded (bi)linear operator locales from Lim.thy to RealVector.thy
huffman
parents: 21809
diff changeset
  1550
27443
22b6281d6719 use begin and end for proofs in locales
huffman
parents: 27435
diff changeset
  1551
lemma additive_right: "additive (\<lambda>b. prod a b)"
63545
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  1552
  by (rule additive.intro, rule add_right)
22442
15d9ed9b5051 move bounded (bi)linear operator locales from Lim.thy to RealVector.thy
huffman
parents: 21809
diff changeset
  1553
27443
22b6281d6719 use begin and end for proofs in locales
huffman
parents: 27435
diff changeset
  1554
lemma additive_left: "additive (\<lambda>a. prod a b)"
63545
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  1555
  by (rule additive.intro, rule add_left)
22442
15d9ed9b5051 move bounded (bi)linear operator locales from Lim.thy to RealVector.thy
huffman
parents: 21809
diff changeset
  1556
27443
22b6281d6719 use begin and end for proofs in locales
huffman
parents: 27435
diff changeset
  1557
lemma zero_left: "prod 0 b = 0"
63545
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  1558
  by (rule additive.zero [OF additive_left])
22442
15d9ed9b5051 move bounded (bi)linear operator locales from Lim.thy to RealVector.thy
huffman
parents: 21809
diff changeset
  1559
27443
22b6281d6719 use begin and end for proofs in locales
huffman
parents: 27435
diff changeset
  1560
lemma zero_right: "prod a 0 = 0"
63545
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  1561
  by (rule additive.zero [OF additive_right])
22442
15d9ed9b5051 move bounded (bi)linear operator locales from Lim.thy to RealVector.thy
huffman
parents: 21809
diff changeset
  1562
27443
22b6281d6719 use begin and end for proofs in locales
huffman
parents: 27435
diff changeset
  1563
lemma minus_left: "prod (- a) b = - prod a b"
63545
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  1564
  by (rule additive.minus [OF additive_left])
22442
15d9ed9b5051 move bounded (bi)linear operator locales from Lim.thy to RealVector.thy
huffman
parents: 21809
diff changeset
  1565
27443
22b6281d6719 use begin and end for proofs in locales
huffman
parents: 27435
diff changeset
  1566
lemma minus_right: "prod a (- b) = - prod a b"
63545
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  1567
  by (rule additive.minus [OF additive_right])
22442
15d9ed9b5051 move bounded (bi)linear operator locales from Lim.thy to RealVector.thy
huffman
parents: 21809
diff changeset
  1568
63545
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  1569
lemma diff_left: "prod (a - a') b = prod a b - prod a' b"
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  1570
  by (rule additive.diff [OF additive_left])
22442
15d9ed9b5051 move bounded (bi)linear operator locales from Lim.thy to RealVector.thy
huffman
parents: 21809
diff changeset
  1571
63545
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  1572
lemma diff_right: "prod a (b - b') = prod a b - prod a b'"
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  1573
  by (rule additive.diff [OF additive_right])
22442
15d9ed9b5051 move bounded (bi)linear operator locales from Lim.thy to RealVector.thy
huffman
parents: 21809
diff changeset
  1574
64267
b9a1486e79be setsum -> sum
nipkow
parents: 64240
diff changeset
  1575
lemma sum_left: "prod (sum g S) x = sum ((\<lambda>i. prod (g i) x)) S"
b9a1486e79be setsum -> sum
nipkow
parents: 64240
diff changeset
  1576
  by (rule additive.sum [OF additive_left])
61915
e9812a95d108 theory for type of bounded linear functions; differentiation under the integral sign
immler
parents: 61799
diff changeset
  1577
64267
b9a1486e79be setsum -> sum
nipkow
parents: 64240
diff changeset
  1578
lemma sum_right: "prod x (sum g S) = sum ((\<lambda>i. (prod x (g i)))) S"
b9a1486e79be setsum -> sum
nipkow
parents: 64240
diff changeset
  1579
  by (rule additive.sum [OF additive_right])
61915
e9812a95d108 theory for type of bounded linear functions; differentiation under the integral sign
immler
parents: 61799
diff changeset
  1580
e9812a95d108 theory for type of bounded linear functions; differentiation under the integral sign
immler
parents: 61799
diff changeset
  1581
63545
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  1582
lemma bounded_linear_left: "bounded_linear (\<lambda>a. a ** b)"
68594
5b05ede597b8 de-applying
paulson <lp15@cam.ac.uk>
parents: 68532
diff changeset
  1583
proof -
5b05ede597b8 de-applying
paulson <lp15@cam.ac.uk>
parents: 68532
diff changeset
  1584
  obtain K where "\<And>a b. norm (a ** b) \<le> norm a * norm b * K"
5b05ede597b8 de-applying
paulson <lp15@cam.ac.uk>
parents: 68532
diff changeset
  1585
    using pos_bounded by blast
5b05ede597b8 de-applying
paulson <lp15@cam.ac.uk>
parents: 68532
diff changeset
  1586
  then show ?thesis
5b05ede597b8 de-applying
paulson <lp15@cam.ac.uk>
parents: 68532
diff changeset
  1587
    by (rule_tac K="norm b * K" in bounded_linear_intro) (auto simp: algebra_simps scaleR_left add_left)
5b05ede597b8 de-applying
paulson <lp15@cam.ac.uk>
parents: 68532
diff changeset
  1588
qed
22442
15d9ed9b5051 move bounded (bi)linear operator locales from Lim.thy to RealVector.thy
huffman
parents: 21809
diff changeset
  1589
63545
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  1590
lemma bounded_linear_right: "bounded_linear (\<lambda>b. a ** b)"
68594
5b05ede597b8 de-applying
paulson <lp15@cam.ac.uk>
parents: 68532
diff changeset
  1591
proof -
5b05ede597b8 de-applying
paulson <lp15@cam.ac.uk>
parents: 68532
diff changeset
  1592
  obtain K where "\<And>a b. norm (a ** b) \<le> norm a * norm b * K"
5b05ede597b8 de-applying
paulson <lp15@cam.ac.uk>
parents: 68532
diff changeset
  1593
    using pos_bounded by blast
5b05ede597b8 de-applying
paulson <lp15@cam.ac.uk>
parents: 68532
diff changeset
  1594
  then show ?thesis
5b05ede597b8 de-applying
paulson <lp15@cam.ac.uk>
parents: 68532
diff changeset
  1595
    by (rule_tac K="norm a * K" in bounded_linear_intro) (auto simp: algebra_simps scaleR_right add_right)
5b05ede597b8 de-applying
paulson <lp15@cam.ac.uk>
parents: 68532
diff changeset
  1596
qed
22442
15d9ed9b5051 move bounded (bi)linear operator locales from Lim.thy to RealVector.thy
huffman
parents: 21809
diff changeset
  1597
63545
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  1598
lemma prod_diff_prod: "(x ** y - a ** b) = (x - a) ** (y - b) + (x - a) ** b + a ** (y - b)"
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  1599
  by (simp add: diff_left diff_right)
22442
15d9ed9b5051 move bounded (bi)linear operator locales from Lim.thy to RealVector.thy
huffman
parents: 21809
diff changeset
  1600
61916
7950ae6d3266 transfer rule for bounded_linear of blinfun
immler
parents: 61915
diff changeset
  1601
lemma flip: "bounded_bilinear (\<lambda>x y. y ** x)"
71720
1d8a1f727879 removed more applys
paulson <lp15@cam.ac.uk>
parents: 71544
diff changeset
  1602
proof
1d8a1f727879 removed more applys
paulson <lp15@cam.ac.uk>
parents: 71544
diff changeset
  1603
  show "\<exists>K. \<forall>a b. norm (b ** a) \<le> norm a * norm b * K"
1d8a1f727879 removed more applys
paulson <lp15@cam.ac.uk>
parents: 71544
diff changeset
  1604
    by (metis bounded mult.commute)
1d8a1f727879 removed more applys
paulson <lp15@cam.ac.uk>
parents: 71544
diff changeset
  1605
qed (simp_all add: add_right add_left scaleR_right scaleR_left)
61916
7950ae6d3266 transfer rule for bounded_linear of blinfun
immler
parents: 61915
diff changeset
  1606
7950ae6d3266 transfer rule for bounded_linear of blinfun
immler
parents: 61915
diff changeset
  1607
lemma comp1:
7950ae6d3266 transfer rule for bounded_linear of blinfun
immler
parents: 61915
diff changeset
  1608
  assumes "bounded_linear g"
69064
5840724b1d71 Prefix form of infix with * on either side no longer needs special treatment
nipkow
parents: 68721
diff changeset
  1609
  shows "bounded_bilinear (\<lambda>x. (**) (g x))"
61916
7950ae6d3266 transfer rule for bounded_linear of blinfun
immler
parents: 61915
diff changeset
  1610
proof unfold_locales
7950ae6d3266 transfer rule for bounded_linear of blinfun
immler
parents: 61915
diff changeset
  1611
  interpret g: bounded_linear g by fact
7950ae6d3266 transfer rule for bounded_linear of blinfun
immler
parents: 61915
diff changeset
  1612
  show "\<And>a a' b. g (a + a') ** b = g a ** b + g a' ** b"
7950ae6d3266 transfer rule for bounded_linear of blinfun
immler
parents: 61915
diff changeset
  1613
    "\<And>a b b'. g a ** (b + b') = g a ** b + g a ** b'"
7950ae6d3266 transfer rule for bounded_linear of blinfun
immler
parents: 61915
diff changeset
  1614
    "\<And>r a b. g (r *\<^sub>R a) ** b = r *\<^sub>R (g a ** b)"
7950ae6d3266 transfer rule for bounded_linear of blinfun
immler
parents: 61915
diff changeset
  1615
    "\<And>a r b. g a ** (r *\<^sub>R b) = r *\<^sub>R (g a ** b)"
7950ae6d3266 transfer rule for bounded_linear of blinfun
immler
parents: 61915
diff changeset
  1616
    by (auto simp: g.add add_left add_right g.scaleR scaleR_left scaleR_right)
63545
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  1617
  from g.nonneg_bounded nonneg_bounded obtain K L
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  1618
    where nn: "0 \<le> K" "0 \<le> L"
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  1619
      and K: "\<And>x. norm (g x) \<le> norm x * K"
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  1620
      and L: "\<And>a b. norm (a ** b) \<le> norm a * norm b * L"
61916
7950ae6d3266 transfer rule for bounded_linear of blinfun
immler
parents: 61915
diff changeset
  1621
    by auto
7950ae6d3266 transfer rule for bounded_linear of blinfun
immler
parents: 61915
diff changeset
  1622
  have "norm (g a ** b) \<le> norm a * K * norm b * L" for a b
7950ae6d3266 transfer rule for bounded_linear of blinfun
immler
parents: 61915
diff changeset
  1623
    by (auto intro!:  order_trans[OF K] order_trans[OF L] mult_mono simp: nn)
7950ae6d3266 transfer rule for bounded_linear of blinfun
immler
parents: 61915
diff changeset
  1624
  then show "\<exists>K. \<forall>a b. norm (g a ** b) \<le> norm a * norm b * K"
7950ae6d3266 transfer rule for bounded_linear of blinfun
immler
parents: 61915
diff changeset
  1625
    by (auto intro!: exI[where x="K * L"] simp: ac_simps)
7950ae6d3266 transfer rule for bounded_linear of blinfun
immler
parents: 61915
diff changeset
  1626
qed
7950ae6d3266 transfer rule for bounded_linear of blinfun
immler
parents: 61915
diff changeset
  1627
63545
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  1628
lemma comp: "bounded_linear f \<Longrightarrow> bounded_linear g \<Longrightarrow> bounded_bilinear (\<lambda>x y. f x ** g y)"
61916
7950ae6d3266 transfer rule for bounded_linear of blinfun
immler
parents: 61915
diff changeset
  1629
  by (rule bounded_bilinear.flip[OF bounded_bilinear.comp1[OF bounded_bilinear.flip[OF comp1]]])
7950ae6d3266 transfer rule for bounded_linear of blinfun
immler
parents: 61915
diff changeset
  1630
27443
22b6281d6719 use begin and end for proofs in locales
huffman
parents: 27435
diff changeset
  1631
end
22b6281d6719 use begin and end for proofs in locales
huffman
parents: 27435
diff changeset
  1632
51642
400ec5ae7f8f move FrechetDeriv from the Library to HOL/Deriv; base DERIV on FDERIV and both derivatives allow a restricted support set; FDERIV is now an abbreviation of has_derivative
hoelzl
parents: 51641
diff changeset
  1633
lemma bounded_linear_ident[simp]: "bounded_linear (\<lambda>x. x)"
61169
4de9ff3ea29a tuned proofs -- less legacy;
wenzelm
parents: 61070
diff changeset
  1634
  by standard (auto intro!: exI[of _ 1])
51642
400ec5ae7f8f move FrechetDeriv from the Library to HOL/Deriv; base DERIV on FDERIV and both derivatives allow a restricted support set; FDERIV is now an abbreviation of has_derivative
hoelzl
parents: 51641
diff changeset
  1635
400ec5ae7f8f move FrechetDeriv from the Library to HOL/Deriv; base DERIV on FDERIV and both derivatives allow a restricted support set; FDERIV is now an abbreviation of has_derivative
hoelzl
parents: 51641
diff changeset
  1636
lemma bounded_linear_zero[simp]: "bounded_linear (\<lambda>x. 0)"
61169
4de9ff3ea29a tuned proofs -- less legacy;
wenzelm
parents: 61070
diff changeset
  1637
  by standard (auto intro!: exI[of _ 1])
51642
400ec5ae7f8f move FrechetDeriv from the Library to HOL/Deriv; base DERIV on FDERIV and both derivatives allow a restricted support set; FDERIV is now an abbreviation of has_derivative
hoelzl
parents: 51641
diff changeset
  1638
400ec5ae7f8f move FrechetDeriv from the Library to HOL/Deriv; base DERIV on FDERIV and both derivatives allow a restricted support set; FDERIV is now an abbreviation of has_derivative
hoelzl
parents: 51641
diff changeset
  1639
lemma bounded_linear_add:
400ec5ae7f8f move FrechetDeriv from the Library to HOL/Deriv; base DERIV on FDERIV and both derivatives allow a restricted support set; FDERIV is now an abbreviation of has_derivative
hoelzl
parents: 51641
diff changeset
  1640
  assumes "bounded_linear f"
63545
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  1641
    and "bounded_linear g"
51642
400ec5ae7f8f move FrechetDeriv from the Library to HOL/Deriv; base DERIV on FDERIV and both derivatives allow a restricted support set; FDERIV is now an abbreviation of has_derivative
hoelzl
parents: 51641
diff changeset
  1642
  shows "bounded_linear (\<lambda>x. f x + g x)"
400ec5ae7f8f move FrechetDeriv from the Library to HOL/Deriv; base DERIV on FDERIV and both derivatives allow a restricted support set; FDERIV is now an abbreviation of has_derivative
hoelzl
parents: 51641
diff changeset
  1643
proof -
400ec5ae7f8f move FrechetDeriv from the Library to HOL/Deriv; base DERIV on FDERIV and both derivatives allow a restricted support set; FDERIV is now an abbreviation of has_derivative
hoelzl
parents: 51641
diff changeset
  1644
  interpret f: bounded_linear f by fact
400ec5ae7f8f move FrechetDeriv from the Library to HOL/Deriv; base DERIV on FDERIV and both derivatives allow a restricted support set; FDERIV is now an abbreviation of has_derivative
hoelzl
parents: 51641
diff changeset
  1645
  interpret g: bounded_linear g by fact
400ec5ae7f8f move FrechetDeriv from the Library to HOL/Deriv; base DERIV on FDERIV and both derivatives allow a restricted support set; FDERIV is now an abbreviation of has_derivative
hoelzl
parents: 51641
diff changeset
  1646
  show ?thesis
400ec5ae7f8f move FrechetDeriv from the Library to HOL/Deriv; base DERIV on FDERIV and both derivatives allow a restricted support set; FDERIV is now an abbreviation of has_derivative
hoelzl
parents: 51641
diff changeset
  1647
  proof
63545
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  1648
    from f.bounded obtain Kf where Kf: "norm (f x) \<le> norm x * Kf" for x
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  1649
      by blast
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  1650
    from g.bounded obtain Kg where Kg: "norm (g x) \<le> norm x * Kg" for x
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  1651
      by blast
51642
400ec5ae7f8f move FrechetDeriv from the Library to HOL/Deriv; base DERIV on FDERIV and both derivatives allow a restricted support set; FDERIV is now an abbreviation of has_derivative
hoelzl
parents: 51641
diff changeset
  1652
    show "\<exists>K. \<forall>x. norm (f x + g x) \<le> norm x * K"
400ec5ae7f8f move FrechetDeriv from the Library to HOL/Deriv; base DERIV on FDERIV and both derivatives allow a restricted support set; FDERIV is now an abbreviation of has_derivative
hoelzl
parents: 51641
diff changeset
  1653
      using add_mono[OF Kf Kg]
400ec5ae7f8f move FrechetDeriv from the Library to HOL/Deriv; base DERIV on FDERIV and both derivatives allow a restricted support set; FDERIV is now an abbreviation of has_derivative
hoelzl
parents: 51641
diff changeset
  1654
      by (intro exI[of _ "Kf + Kg"]) (auto simp: field_simps intro: norm_triangle_ineq order_trans)
400ec5ae7f8f move FrechetDeriv from the Library to HOL/Deriv; base DERIV on FDERIV and both derivatives allow a restricted support set; FDERIV is now an abbreviation of has_derivative
hoelzl
parents: 51641
diff changeset
  1655
  qed (simp_all add: f.add g.add f.scaleR g.scaleR scaleR_right_distrib)
400ec5ae7f8f move FrechetDeriv from the Library to HOL/Deriv; base DERIV on FDERIV and both derivatives allow a restricted support set; FDERIV is now an abbreviation of has_derivative
hoelzl
parents: 51641
diff changeset
  1656
qed
400ec5ae7f8f move FrechetDeriv from the Library to HOL/Deriv; base DERIV on FDERIV and both derivatives allow a restricted support set; FDERIV is now an abbreviation of has_derivative
hoelzl
parents: 51641
diff changeset
  1657
400ec5ae7f8f move FrechetDeriv from the Library to HOL/Deriv; base DERIV on FDERIV and both derivatives allow a restricted support set; FDERIV is now an abbreviation of has_derivative
hoelzl
parents: 51641
diff changeset
  1658
lemma bounded_linear_minus:
400ec5ae7f8f move FrechetDeriv from the Library to HOL/Deriv; base DERIV on FDERIV and both derivatives allow a restricted support set; FDERIV is now an abbreviation of has_derivative
hoelzl
parents: 51641
diff changeset
  1659
  assumes "bounded_linear f"
400ec5ae7f8f move FrechetDeriv from the Library to HOL/Deriv; base DERIV on FDERIV and both derivatives allow a restricted support set; FDERIV is now an abbreviation of has_derivative
hoelzl
parents: 51641
diff changeset
  1660
  shows "bounded_linear (\<lambda>x. - f x)"
400ec5ae7f8f move FrechetDeriv from the Library to HOL/Deriv; base DERIV on FDERIV and both derivatives allow a restricted support set; FDERIV is now an abbreviation of has_derivative
hoelzl
parents: 51641
diff changeset
  1661
proof -
400ec5ae7f8f move FrechetDeriv from the Library to HOL/Deriv; base DERIV on FDERIV and both derivatives allow a restricted support set; FDERIV is now an abbreviation of has_derivative
hoelzl
parents: 51641
diff changeset
  1662
  interpret f: bounded_linear f by fact
63545
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  1663
  show ?thesis
68669
7ddf297cfcde de-applying and removing junk
paulson <lp15@cam.ac.uk>
parents: 68615
diff changeset
  1664
    by unfold_locales (simp_all add: f.add f.scaleR f.bounded)
51642
400ec5ae7f8f move FrechetDeriv from the Library to HOL/Deriv; base DERIV on FDERIV and both derivatives allow a restricted support set; FDERIV is now an abbreviation of has_derivative
hoelzl
parents: 51641
diff changeset
  1665
qed
400ec5ae7f8f move FrechetDeriv from the Library to HOL/Deriv; base DERIV on FDERIV and both derivatives allow a restricted support set; FDERIV is now an abbreviation of has_derivative
hoelzl
parents: 51641
diff changeset
  1666
61915
e9812a95d108 theory for type of bounded linear functions; differentiation under the integral sign
immler
parents: 61799
diff changeset
  1667
lemma bounded_linear_sub: "bounded_linear f \<Longrightarrow> bounded_linear g \<Longrightarrow> bounded_linear (\<lambda>x. f x - g x)"
e9812a95d108 theory for type of bounded linear functions; differentiation under the integral sign
immler
parents: 61799
diff changeset
  1668
  using bounded_linear_add[of f "\<lambda>x. - g x"] bounded_linear_minus[of g]
68594
5b05ede597b8 de-applying
paulson <lp15@cam.ac.uk>
parents: 68532
diff changeset
  1669
  by (auto simp: algebra_simps)
61915
e9812a95d108 theory for type of bounded linear functions; differentiation under the integral sign
immler
parents: 61799
diff changeset
  1670
64267
b9a1486e79be setsum -> sum
nipkow
parents: 64240
diff changeset
  1671
lemma bounded_linear_sum:
61915
e9812a95d108 theory for type of bounded linear functions; differentiation under the integral sign
immler
parents: 61799
diff changeset
  1672
  fixes f :: "'i \<Rightarrow> 'a::real_normed_vector \<Rightarrow> 'b::real_normed_vector"
63915
bab633745c7f tuned proofs;
wenzelm
parents: 63680
diff changeset
  1673
  shows "(\<And>i. i \<in> I \<Longrightarrow> bounded_linear (f i)) \<Longrightarrow> bounded_linear (\<lambda>x. \<Sum>i\<in>I. f i x)"
bab633745c7f tuned proofs;
wenzelm
parents: 63680
diff changeset
  1674
  by (induct I rule: infinite_finite_induct) (auto intro!: bounded_linear_add)
61915
e9812a95d108 theory for type of bounded linear functions; differentiation under the integral sign
immler
parents: 61799
diff changeset
  1675
51642
400ec5ae7f8f move FrechetDeriv from the Library to HOL/Deriv; base DERIV on FDERIV and both derivatives allow a restricted support set; FDERIV is now an abbreviation of has_derivative
hoelzl
parents: 51641
diff changeset
  1676
lemma bounded_linear_compose:
400ec5ae7f8f move FrechetDeriv from the Library to HOL/Deriv; base DERIV on FDERIV and both derivatives allow a restricted support set; FDERIV is now an abbreviation of has_derivative
hoelzl
parents: 51641
diff changeset
  1677
  assumes "bounded_linear f"
63545
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  1678
    and "bounded_linear g"
51642
400ec5ae7f8f move FrechetDeriv from the Library to HOL/Deriv; base DERIV on FDERIV and both derivatives allow a restricted support set; FDERIV is now an abbreviation of has_derivative
hoelzl
parents: 51641
diff changeset
  1679
  shows "bounded_linear (\<lambda>x. f (g x))"
400ec5ae7f8f move FrechetDeriv from the Library to HOL/Deriv; base DERIV on FDERIV and both derivatives allow a restricted support set; FDERIV is now an abbreviation of has_derivative
hoelzl
parents: 51641
diff changeset
  1680
proof -
400ec5ae7f8f move FrechetDeriv from the Library to HOL/Deriv; base DERIV on FDERIV and both derivatives allow a restricted support set; FDERIV is now an abbreviation of has_derivative
hoelzl
parents: 51641
diff changeset
  1681
  interpret f: bounded_linear f by fact
400ec5ae7f8f move FrechetDeriv from the Library to HOL/Deriv; base DERIV on FDERIV and both derivatives allow a restricted support set; FDERIV is now an abbreviation of has_derivative
hoelzl
parents: 51641
diff changeset
  1682
  interpret g: bounded_linear g by fact
63545
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  1683
  show ?thesis
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  1684
  proof unfold_locales
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  1685
    show "f (g (x + y)) = f (g x) + f (g y)" for x y
51642
400ec5ae7f8f move FrechetDeriv from the Library to HOL/Deriv; base DERIV on FDERIV and both derivatives allow a restricted support set; FDERIV is now an abbreviation of has_derivative
hoelzl
parents: 51641
diff changeset
  1686
      by (simp only: f.add g.add)
63545
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  1687
    show "f (g (scaleR r x)) = scaleR r (f (g x))" for r x
51642
400ec5ae7f8f move FrechetDeriv from the Library to HOL/Deriv; base DERIV on FDERIV and both derivatives allow a restricted support set; FDERIV is now an abbreviation of has_derivative
hoelzl
parents: 51641
diff changeset
  1688
      by (simp only: f.scaleR g.scaleR)
63545
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  1689
    from f.pos_bounded obtain Kf where f: "\<And>x. norm (f x) \<le> norm x * Kf" and Kf: "0 < Kf"
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  1690
      by blast
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  1691
    from g.pos_bounded obtain Kg where g: "\<And>x. norm (g x) \<le> norm x * Kg"
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  1692
      by blast
51642
400ec5ae7f8f move FrechetDeriv from the Library to HOL/Deriv; base DERIV on FDERIV and both derivatives allow a restricted support set; FDERIV is now an abbreviation of has_derivative
hoelzl
parents: 51641
diff changeset
  1693
    show "\<exists>K. \<forall>x. norm (f (g x)) \<le> norm x * K"
400ec5ae7f8f move FrechetDeriv from the Library to HOL/Deriv; base DERIV on FDERIV and both derivatives allow a restricted support set; FDERIV is now an abbreviation of has_derivative
hoelzl
parents: 51641
diff changeset
  1694
    proof (intro exI allI)
400ec5ae7f8f move FrechetDeriv from the Library to HOL/Deriv; base DERIV on FDERIV and both derivatives allow a restricted support set; FDERIV is now an abbreviation of has_derivative
hoelzl
parents: 51641
diff changeset
  1695
      fix x
400ec5ae7f8f move FrechetDeriv from the Library to HOL/Deriv; base DERIV on FDERIV and both derivatives allow a restricted support set; FDERIV is now an abbreviation of has_derivative
hoelzl
parents: 51641
diff changeset
  1696
      have "norm (f (g x)) \<le> norm (g x) * Kf"
400ec5ae7f8f move FrechetDeriv from the Library to HOL/Deriv; base DERIV on FDERIV and both derivatives allow a restricted support set; FDERIV is now an abbreviation of has_derivative
hoelzl
parents: 51641
diff changeset
  1697
        using f .
400ec5ae7f8f move FrechetDeriv from the Library to HOL/Deriv; base DERIV on FDERIV and both derivatives allow a restricted support set; FDERIV is now an abbreviation of has_derivative
hoelzl
parents: 51641
diff changeset
  1698
      also have "\<dots> \<le> (norm x * Kg) * Kf"
400ec5ae7f8f move FrechetDeriv from the Library to HOL/Deriv; base DERIV on FDERIV and both derivatives allow a restricted support set; FDERIV is now an abbreviation of has_derivative
hoelzl
parents: 51641
diff changeset
  1699
        using g Kf [THEN order_less_imp_le] by (rule mult_right_mono)
400ec5ae7f8f move FrechetDeriv from the Library to HOL/Deriv; base DERIV on FDERIV and both derivatives allow a restricted support set; FDERIV is now an abbreviation of has_derivative
hoelzl
parents: 51641
diff changeset
  1700
      also have "(norm x * Kg) * Kf = norm x * (Kg * Kf)"
57512
cc97b347b301 reduced name variants for assoc and commute on plus and mult
haftmann
parents: 57448
diff changeset
  1701
        by (rule mult.assoc)
51642
400ec5ae7f8f move FrechetDeriv from the Library to HOL/Deriv; base DERIV on FDERIV and both derivatives allow a restricted support set; FDERIV is now an abbreviation of has_derivative
hoelzl
parents: 51641
diff changeset
  1702
      finally show "norm (f (g x)) \<le> norm x * (Kg * Kf)" .
400ec5ae7f8f move FrechetDeriv from the Library to HOL/Deriv; base DERIV on FDERIV and both derivatives allow a restricted support set; FDERIV is now an abbreviation of has_derivative
hoelzl
parents: 51641
diff changeset
  1703
    qed
400ec5ae7f8f move FrechetDeriv from the Library to HOL/Deriv; base DERIV on FDERIV and both derivatives allow a restricted support set; FDERIV is now an abbreviation of has_derivative
hoelzl
parents: 51641
diff changeset
  1704
  qed
400ec5ae7f8f move FrechetDeriv from the Library to HOL/Deriv; base DERIV on FDERIV and both derivatives allow a restricted support set; FDERIV is now an abbreviation of has_derivative
hoelzl
parents: 51641
diff changeset
  1705
qed
400ec5ae7f8f move FrechetDeriv from the Library to HOL/Deriv; base DERIV on FDERIV and both derivatives allow a restricted support set; FDERIV is now an abbreviation of has_derivative
hoelzl
parents: 51641
diff changeset
  1706
69064
5840724b1d71 Prefix form of infix with * on either side no longer needs special treatment
nipkow
parents: 68721
diff changeset
  1707
lemma bounded_bilinear_mult: "bounded_bilinear ((*) :: 'a \<Rightarrow> 'a \<Rightarrow> 'a::real_normed_algebra)"
71720
1d8a1f727879 removed more applys
paulson <lp15@cam.ac.uk>
parents: 71544
diff changeset
  1708
proof (rule bounded_bilinear.intro)
1d8a1f727879 removed more applys
paulson <lp15@cam.ac.uk>
parents: 71544
diff changeset
  1709
  show "\<exists>K. \<forall>a b::'a. norm (a * b) \<le> norm a * norm b * K"
1d8a1f727879 removed more applys
paulson <lp15@cam.ac.uk>
parents: 71544
diff changeset
  1710
    by (rule_tac x=1 in exI) (simp add: norm_mult_ineq)
1d8a1f727879 removed more applys
paulson <lp15@cam.ac.uk>
parents: 71544
diff changeset
  1711
qed (auto simp: algebra_simps)
22442
15d9ed9b5051 move bounded (bi)linear operator locales from Lim.thy to RealVector.thy
huffman
parents: 21809
diff changeset
  1712
63545
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  1713
lemma bounded_linear_mult_left: "bounded_linear (\<lambda>x::'a::real_normed_algebra. x * y)"
44282
f0de18b62d63 remove bounded_(bi)linear locale interpretations, to avoid duplicating so many lemmas
huffman
parents: 44127
diff changeset
  1714
  using bounded_bilinear_mult
f0de18b62d63 remove bounded_(bi)linear locale interpretations, to avoid duplicating so many lemmas
huffman
parents: 44127
diff changeset
  1715
  by (rule bounded_bilinear.bounded_linear_left)
22442
15d9ed9b5051 move bounded (bi)linear operator locales from Lim.thy to RealVector.thy
huffman
parents: 21809
diff changeset
  1716
63545
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  1717
lemma bounded_linear_mult_right: "bounded_linear (\<lambda>y::'a::real_normed_algebra. x * y)"
44282
f0de18b62d63 remove bounded_(bi)linear locale interpretations, to avoid duplicating so many lemmas
huffman
parents: 44127
diff changeset
  1718
  using bounded_bilinear_mult
f0de18b62d63 remove bounded_(bi)linear locale interpretations, to avoid duplicating so many lemmas
huffman
parents: 44127
diff changeset
  1719
  by (rule bounded_bilinear.bounded_linear_right)
23127
56ee8105c002 simplify names of locale interpretations
huffman
parents: 23120
diff changeset
  1720
51642
400ec5ae7f8f move FrechetDeriv from the Library to HOL/Deriv; base DERIV on FDERIV and both derivatives allow a restricted support set; FDERIV is now an abbreviation of has_derivative
hoelzl
parents: 51641
diff changeset
  1721
lemmas bounded_linear_mult_const =
400ec5ae7f8f move FrechetDeriv from the Library to HOL/Deriv; base DERIV on FDERIV and both derivatives allow a restricted support set; FDERIV is now an abbreviation of has_derivative
hoelzl
parents: 51641
diff changeset
  1722
  bounded_linear_mult_left [THEN bounded_linear_compose]
400ec5ae7f8f move FrechetDeriv from the Library to HOL/Deriv; base DERIV on FDERIV and both derivatives allow a restricted support set; FDERIV is now an abbreviation of has_derivative
hoelzl
parents: 51641
diff changeset
  1723
400ec5ae7f8f move FrechetDeriv from the Library to HOL/Deriv; base DERIV on FDERIV and both derivatives allow a restricted support set; FDERIV is now an abbreviation of has_derivative
hoelzl
parents: 51641
diff changeset
  1724
lemmas bounded_linear_const_mult =
400ec5ae7f8f move FrechetDeriv from the Library to HOL/Deriv; base DERIV on FDERIV and both derivatives allow a restricted support set; FDERIV is now an abbreviation of has_derivative
hoelzl
parents: 51641
diff changeset
  1725
  bounded_linear_mult_right [THEN bounded_linear_compose]
400ec5ae7f8f move FrechetDeriv from the Library to HOL/Deriv; base DERIV on FDERIV and both derivatives allow a restricted support set; FDERIV is now an abbreviation of has_derivative
hoelzl
parents: 51641
diff changeset
  1726
63545
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  1727
lemma bounded_linear_divide: "bounded_linear (\<lambda>x. x / y)"
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  1728
  for y :: "'a::real_normed_field"
44282
f0de18b62d63 remove bounded_(bi)linear locale interpretations, to avoid duplicating so many lemmas
huffman
parents: 44127
diff changeset
  1729
  unfolding divide_inverse by (rule bounded_linear_mult_left)
23120
a34f204e9c88 interpretation bounded_linear_divide
huffman
parents: 23113
diff changeset
  1730
44282
f0de18b62d63 remove bounded_(bi)linear locale interpretations, to avoid duplicating so many lemmas
huffman
parents: 44127
diff changeset
  1731
lemma bounded_bilinear_scaleR: "bounded_bilinear scaleR"
71720
1d8a1f727879 removed more applys
paulson <lp15@cam.ac.uk>
parents: 71544
diff changeset
  1732
proof (rule bounded_bilinear.intro)
1d8a1f727879 removed more applys
paulson <lp15@cam.ac.uk>
parents: 71544
diff changeset
  1733
  show "\<exists>K. \<forall>a b. norm (a *\<^sub>R b) \<le> norm a * norm b * K"
1d8a1f727879 removed more applys
paulson <lp15@cam.ac.uk>
parents: 71544
diff changeset
  1734
    using less_eq_real_def by auto
1d8a1f727879 removed more applys
paulson <lp15@cam.ac.uk>
parents: 71544
diff changeset
  1735
qed (auto simp: algebra_simps)
22442
15d9ed9b5051 move bounded (bi)linear operator locales from Lim.thy to RealVector.thy
huffman
parents: 21809
diff changeset
  1736
44282
f0de18b62d63 remove bounded_(bi)linear locale interpretations, to avoid duplicating so many lemmas
huffman
parents: 44127
diff changeset
  1737
lemma bounded_linear_scaleR_left: "bounded_linear (\<lambda>r. scaleR r x)"
f0de18b62d63 remove bounded_(bi)linear locale interpretations, to avoid duplicating so many lemmas
huffman
parents: 44127
diff changeset
  1738
  using bounded_bilinear_scaleR
f0de18b62d63 remove bounded_(bi)linear locale interpretations, to avoid duplicating so many lemmas
huffman
parents: 44127
diff changeset
  1739
  by (rule bounded_bilinear.bounded_linear_left)
23127
56ee8105c002 simplify names of locale interpretations
huffman
parents: 23120
diff changeset
  1740
44282
f0de18b62d63 remove bounded_(bi)linear locale interpretations, to avoid duplicating so many lemmas
huffman
parents: 44127
diff changeset
  1741
lemma bounded_linear_scaleR_right: "bounded_linear (\<lambda>x. scaleR r x)"
f0de18b62d63 remove bounded_(bi)linear locale interpretations, to avoid duplicating so many lemmas
huffman
parents: 44127
diff changeset
  1742
  using bounded_bilinear_scaleR
f0de18b62d63 remove bounded_(bi)linear locale interpretations, to avoid duplicating so many lemmas
huffman
parents: 44127
diff changeset
  1743
  by (rule bounded_bilinear.bounded_linear_right)
23127
56ee8105c002 simplify names of locale interpretations
huffman
parents: 23120
diff changeset
  1744
61915
e9812a95d108 theory for type of bounded linear functions; differentiation under the integral sign
immler
parents: 61799
diff changeset
  1745
lemmas bounded_linear_scaleR_const =
e9812a95d108 theory for type of bounded linear functions; differentiation under the integral sign
immler
parents: 61799
diff changeset
  1746
  bounded_linear_scaleR_left[THEN bounded_linear_compose]
e9812a95d108 theory for type of bounded linear functions; differentiation under the integral sign
immler
parents: 61799
diff changeset
  1747
e9812a95d108 theory for type of bounded linear functions; differentiation under the integral sign
immler
parents: 61799
diff changeset
  1748
lemmas bounded_linear_const_scaleR =
e9812a95d108 theory for type of bounded linear functions; differentiation under the integral sign
immler
parents: 61799
diff changeset
  1749
  bounded_linear_scaleR_right[THEN bounded_linear_compose]
e9812a95d108 theory for type of bounded linear functions; differentiation under the integral sign
immler
parents: 61799
diff changeset
  1750
44282
f0de18b62d63 remove bounded_(bi)linear locale interpretations, to avoid duplicating so many lemmas
huffman
parents: 44127
diff changeset
  1751
lemma bounded_linear_of_real: "bounded_linear (\<lambda>r. of_real r)"
f0de18b62d63 remove bounded_(bi)linear locale interpretations, to avoid duplicating so many lemmas
huffman
parents: 44127
diff changeset
  1752
  unfolding of_real_def by (rule bounded_linear_scaleR_left)
22625
a2967023d674 interpretation bounded_linear_of_real
huffman
parents: 22442
diff changeset
  1753
63545
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  1754
lemma real_bounded_linear: "bounded_linear f \<longleftrightarrow> (\<exists>c::real. f = (\<lambda>x. x * c))"
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  1755
  for f :: "real \<Rightarrow> real"
51642
400ec5ae7f8f move FrechetDeriv from the Library to HOL/Deriv; base DERIV on FDERIV and both derivatives allow a restricted support set; FDERIV is now an abbreviation of has_derivative
hoelzl
parents: 51641
diff changeset
  1756
proof -
63545
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  1757
  {
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  1758
    fix x
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  1759
    assume "bounded_linear f"
51642
400ec5ae7f8f move FrechetDeriv from the Library to HOL/Deriv; base DERIV on FDERIV and both derivatives allow a restricted support set; FDERIV is now an abbreviation of has_derivative
hoelzl
parents: 51641
diff changeset
  1760
    then interpret bounded_linear f .
400ec5ae7f8f move FrechetDeriv from the Library to HOL/Deriv; base DERIV on FDERIV and both derivatives allow a restricted support set; FDERIV is now an abbreviation of has_derivative
hoelzl
parents: 51641
diff changeset
  1761
    from scaleR[of x 1] have "f x = x * f 1"
63545
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  1762
      by simp
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  1763
  }
51642
400ec5ae7f8f move FrechetDeriv from the Library to HOL/Deriv; base DERIV on FDERIV and both derivatives allow a restricted support set; FDERIV is now an abbreviation of has_derivative
hoelzl
parents: 51641
diff changeset
  1764
  then show ?thesis
400ec5ae7f8f move FrechetDeriv from the Library to HOL/Deriv; base DERIV on FDERIV and both derivatives allow a restricted support set; FDERIV is now an abbreviation of has_derivative
hoelzl
parents: 51641
diff changeset
  1765
    by (auto intro: exI[of _ "f 1"] bounded_linear_mult_left)
400ec5ae7f8f move FrechetDeriv from the Library to HOL/Deriv; base DERIV on FDERIV and both derivatives allow a restricted support set; FDERIV is now an abbreviation of has_derivative
hoelzl
parents: 51641
diff changeset
  1766
qed
400ec5ae7f8f move FrechetDeriv from the Library to HOL/Deriv; base DERIV on FDERIV and both derivatives allow a restricted support set; FDERIV is now an abbreviation of has_derivative
hoelzl
parents: 51641
diff changeset
  1767
44571
bd91b77c4cd6 move class perfect_space into RealVector.thy;
huffman
parents: 44282
diff changeset
  1768
instance real_normed_algebra_1 \<subseteq> perfect_space
bd91b77c4cd6 move class perfect_space into RealVector.thy;
huffman
parents: 44282
diff changeset
  1769
proof
71720
1d8a1f727879 removed more applys
paulson <lp15@cam.ac.uk>
parents: 71544
diff changeset
  1770
  fix x::'a
1d8a1f727879 removed more applys
paulson <lp15@cam.ac.uk>
parents: 71544
diff changeset
  1771
  have "\<And>e. 0 < e \<Longrightarrow> \<exists>y. norm (y - x) < e \<and> y \<noteq> x"
1d8a1f727879 removed more applys
paulson <lp15@cam.ac.uk>
parents: 71544
diff changeset
  1772
    by (rule_tac x = "x + of_real (e/2)" in exI) auto
1d8a1f727879 removed more applys
paulson <lp15@cam.ac.uk>
parents: 71544
diff changeset
  1773
  then show "\<not> open {x}" 
1d8a1f727879 removed more applys
paulson <lp15@cam.ac.uk>
parents: 71544
diff changeset
  1774
    by (clarsimp simp: open_dist dist_norm)
44571
bd91b77c4cd6 move class perfect_space into RealVector.thy;
huffman
parents: 44282
diff changeset
  1775
qed
bd91b77c4cd6 move class perfect_space into RealVector.thy;
huffman
parents: 44282
diff changeset
  1776
63545
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  1777
60758
d8d85a8172b5 isabelle update_cartouches;
wenzelm
parents: 60307
diff changeset
  1778
subsection \<open>Filters and Limits on Metric Space\<close>
51531
f415febf4234 remove Metric_Spaces and move its content into Limits and Real_Vector_Spaces
hoelzl
parents: 51524
diff changeset
  1779
69260
0a9688695a1b removed relics of ASCII syntax for indexed big operators
haftmann
parents: 69064
diff changeset
  1780
lemma (in metric_space) nhds_metric: "nhds x = (INF e\<in>{0 <..}. principal {y. dist y x < e})"
57448
159e45728ceb more equalities of topological filters; strengthen dependent_nat_choice; tuned a couple of proofs
hoelzl
parents: 57418
diff changeset
  1781
  unfolding nhds_def
159e45728ceb more equalities of topological filters; strengthen dependent_nat_choice; tuned a couple of proofs
hoelzl
parents: 57418
diff changeset
  1782
proof (safe intro!: INF_eq)
63545
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  1783
  fix S
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  1784
  assume "open S" "x \<in> S"
57448
159e45728ceb more equalities of topological filters; strengthen dependent_nat_choice; tuned a couple of proofs
hoelzl
parents: 57418
diff changeset
  1785
  then obtain e where "{y. dist y x < e} \<subseteq> S" "0 < e"
159e45728ceb more equalities of topological filters; strengthen dependent_nat_choice; tuned a couple of proofs
hoelzl
parents: 57418
diff changeset
  1786
    by (auto simp: open_dist subset_eq)
159e45728ceb more equalities of topological filters; strengthen dependent_nat_choice; tuned a couple of proofs
hoelzl
parents: 57418
diff changeset
  1787
  then show "\<exists>e\<in>{0<..}. principal {y. dist y x < e} \<le> principal S"
159e45728ceb more equalities of topological filters; strengthen dependent_nat_choice; tuned a couple of proofs
hoelzl
parents: 57418
diff changeset
  1788
    by auto
159e45728ceb more equalities of topological filters; strengthen dependent_nat_choice; tuned a couple of proofs
hoelzl
parents: 57418
diff changeset
  1789
qed (auto intro!: exI[of _ "{y. dist x y < e}" for e] open_ball simp: dist_commute)
159e45728ceb more equalities of topological filters; strengthen dependent_nat_choice; tuned a couple of proofs
hoelzl
parents: 57418
diff changeset
  1790
74475
409ca22dee4c new notion of infinite sums in HOL-Analysis, ordering on complex numbers
eberlm <eberlm@in.tum.de>
parents: 74007
diff changeset
  1791
(* Contributed by Dominique Unruh *)
409ca22dee4c new notion of infinite sums in HOL-Analysis, ordering on complex numbers
eberlm <eberlm@in.tum.de>
parents: 74007
diff changeset
  1792
lemma tendsto_iff_uniformity:
409ca22dee4c new notion of infinite sums in HOL-Analysis, ordering on complex numbers
eberlm <eberlm@in.tum.de>
parents: 74007
diff changeset
  1793
    \<comment> \<open>More general analogus of \<open>tendsto_iff\<close> below. Applies to all uniform spaces, not just metric ones.\<close>
409ca22dee4c new notion of infinite sums in HOL-Analysis, ordering on complex numbers
eberlm <eberlm@in.tum.de>
parents: 74007
diff changeset
  1794
  fixes l :: \<open>'b :: uniform_space\<close>
409ca22dee4c new notion of infinite sums in HOL-Analysis, ordering on complex numbers
eberlm <eberlm@in.tum.de>
parents: 74007
diff changeset
  1795
  shows \<open>(f \<longlongrightarrow> l) F \<longleftrightarrow> (\<forall>E. eventually E uniformity \<longrightarrow> (\<forall>\<^sub>F x in F. E (f x, l)))\<close>
409ca22dee4c new notion of infinite sums in HOL-Analysis, ordering on complex numbers
eberlm <eberlm@in.tum.de>
parents: 74007
diff changeset
  1796
proof (intro iffI allI impI)
409ca22dee4c new notion of infinite sums in HOL-Analysis, ordering on complex numbers
eberlm <eberlm@in.tum.de>
parents: 74007
diff changeset
  1797
  fix E :: \<open>('b \<times> 'b) \<Rightarrow> bool\<close>
409ca22dee4c new notion of infinite sums in HOL-Analysis, ordering on complex numbers
eberlm <eberlm@in.tum.de>
parents: 74007
diff changeset
  1798
  assume \<open>(f \<longlongrightarrow> l) F\<close> and \<open>eventually E uniformity\<close>
409ca22dee4c new notion of infinite sums in HOL-Analysis, ordering on complex numbers
eberlm <eberlm@in.tum.de>
parents: 74007
diff changeset
  1799
  from \<open>eventually E uniformity\<close>
409ca22dee4c new notion of infinite sums in HOL-Analysis, ordering on complex numbers
eberlm <eberlm@in.tum.de>
parents: 74007
diff changeset
  1800
  have \<open>eventually (\<lambda>(x, y). E (y, x)) uniformity\<close>
409ca22dee4c new notion of infinite sums in HOL-Analysis, ordering on complex numbers
eberlm <eberlm@in.tum.de>
parents: 74007
diff changeset
  1801
    by (simp add: uniformity_sym)
409ca22dee4c new notion of infinite sums in HOL-Analysis, ordering on complex numbers
eberlm <eberlm@in.tum.de>
parents: 74007
diff changeset
  1802
  then have \<open>\<forall>\<^sub>F (y, x) in uniformity. y = l \<longrightarrow> E (x, y)\<close>
409ca22dee4c new notion of infinite sums in HOL-Analysis, ordering on complex numbers
eberlm <eberlm@in.tum.de>
parents: 74007
diff changeset
  1803
    using eventually_mono by fastforce
409ca22dee4c new notion of infinite sums in HOL-Analysis, ordering on complex numbers
eberlm <eberlm@in.tum.de>
parents: 74007
diff changeset
  1804
  with \<open>(f \<longlongrightarrow> l) F\<close> have \<open>eventually (\<lambda>x. E (x ,l)) (filtermap f F)\<close>
409ca22dee4c new notion of infinite sums in HOL-Analysis, ordering on complex numbers
eberlm <eberlm@in.tum.de>
parents: 74007
diff changeset
  1805
    by (simp add: filterlim_def le_filter_def eventually_nhds_uniformity)
409ca22dee4c new notion of infinite sums in HOL-Analysis, ordering on complex numbers
eberlm <eberlm@in.tum.de>
parents: 74007
diff changeset
  1806
  then show \<open>\<forall>\<^sub>F x in F. E (f x, l)\<close>
409ca22dee4c new notion of infinite sums in HOL-Analysis, ordering on complex numbers
eberlm <eberlm@in.tum.de>
parents: 74007
diff changeset
  1807
    by (simp add: eventually_filtermap)
409ca22dee4c new notion of infinite sums in HOL-Analysis, ordering on complex numbers
eberlm <eberlm@in.tum.de>
parents: 74007
diff changeset
  1808
next
409ca22dee4c new notion of infinite sums in HOL-Analysis, ordering on complex numbers
eberlm <eberlm@in.tum.de>
parents: 74007
diff changeset
  1809
  assume assm: \<open>\<forall>E. eventually E uniformity \<longrightarrow> (\<forall>\<^sub>F x in F. E (f x, l))\<close>
409ca22dee4c new notion of infinite sums in HOL-Analysis, ordering on complex numbers
eberlm <eberlm@in.tum.de>
parents: 74007
diff changeset
  1810
  have \<open>eventually P (filtermap f F)\<close> if \<open>\<forall>\<^sub>F (x, y) in uniformity. x = l \<longrightarrow> P y\<close> for P
409ca22dee4c new notion of infinite sums in HOL-Analysis, ordering on complex numbers
eberlm <eberlm@in.tum.de>
parents: 74007
diff changeset
  1811
  proof -
409ca22dee4c new notion of infinite sums in HOL-Analysis, ordering on complex numbers
eberlm <eberlm@in.tum.de>
parents: 74007
diff changeset
  1812
    from that have \<open>\<forall>\<^sub>F (y, x) in uniformity. x = l \<longrightarrow> P y\<close> 
409ca22dee4c new notion of infinite sums in HOL-Analysis, ordering on complex numbers
eberlm <eberlm@in.tum.de>
parents: 74007
diff changeset
  1813
      using uniformity_sym[where E=\<open>\<lambda>(x,y). x=l \<longrightarrow> P y\<close>] by auto
409ca22dee4c new notion of infinite sums in HOL-Analysis, ordering on complex numbers
eberlm <eberlm@in.tum.de>
parents: 74007
diff changeset
  1814
    with assm have \<open>\<forall>\<^sub>F x in F. P (f x)\<close>
409ca22dee4c new notion of infinite sums in HOL-Analysis, ordering on complex numbers
eberlm <eberlm@in.tum.de>
parents: 74007
diff changeset
  1815
      by auto
409ca22dee4c new notion of infinite sums in HOL-Analysis, ordering on complex numbers
eberlm <eberlm@in.tum.de>
parents: 74007
diff changeset
  1816
    then show ?thesis
409ca22dee4c new notion of infinite sums in HOL-Analysis, ordering on complex numbers
eberlm <eberlm@in.tum.de>
parents: 74007
diff changeset
  1817
      by (auto simp: eventually_filtermap)
409ca22dee4c new notion of infinite sums in HOL-Analysis, ordering on complex numbers
eberlm <eberlm@in.tum.de>
parents: 74007
diff changeset
  1818
  qed
409ca22dee4c new notion of infinite sums in HOL-Analysis, ordering on complex numbers
eberlm <eberlm@in.tum.de>
parents: 74007
diff changeset
  1819
  then show \<open>(f \<longlongrightarrow> l) F\<close>
409ca22dee4c new notion of infinite sums in HOL-Analysis, ordering on complex numbers
eberlm <eberlm@in.tum.de>
parents: 74007
diff changeset
  1820
    by (simp add: filterlim_def le_filter_def eventually_nhds_uniformity)
409ca22dee4c new notion of infinite sums in HOL-Analysis, ordering on complex numbers
eberlm <eberlm@in.tum.de>
parents: 74007
diff changeset
  1821
qed
409ca22dee4c new notion of infinite sums in HOL-Analysis, ordering on complex numbers
eberlm <eberlm@in.tum.de>
parents: 74007
diff changeset
  1822
63545
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  1823
lemma (in metric_space) tendsto_iff: "(f \<longlongrightarrow> l) F \<longleftrightarrow> (\<forall>e>0. eventually (\<lambda>x. dist (f x) l < e) F)"
57448
159e45728ceb more equalities of topological filters; strengthen dependent_nat_choice; tuned a couple of proofs
hoelzl
parents: 57418
diff changeset
  1824
  unfolding nhds_metric filterlim_INF filterlim_principal by auto
159e45728ceb more equalities of topological filters; strengthen dependent_nat_choice; tuned a couple of proofs
hoelzl
parents: 57418
diff changeset
  1825
67727
ce3e87a51488 moved Lipschitz continuity from AFP/Ordinary_Differential_Equations and AFP/Gromov_Hyperbolicity; moved lemmas from AFP/Gromov_Hyperbolicity/Library_Complements
immler
parents: 67706
diff changeset
  1826
lemma tendsto_dist_iff:
ce3e87a51488 moved Lipschitz continuity from AFP/Ordinary_Differential_Equations and AFP/Gromov_Hyperbolicity; moved lemmas from AFP/Gromov_Hyperbolicity/Library_Complements
immler
parents: 67706
diff changeset
  1827
  "((f \<longlongrightarrow> l) F) \<longleftrightarrow> (((\<lambda>x. dist (f x) l) \<longlongrightarrow> 0) F)"
ce3e87a51488 moved Lipschitz continuity from AFP/Ordinary_Differential_Equations and AFP/Gromov_Hyperbolicity; moved lemmas from AFP/Gromov_Hyperbolicity/Library_Complements
immler
parents: 67706
diff changeset
  1828
  unfolding tendsto_iff by simp
ce3e87a51488 moved Lipschitz continuity from AFP/Ordinary_Differential_Equations and AFP/Gromov_Hyperbolicity; moved lemmas from AFP/Gromov_Hyperbolicity/Library_Complements
immler
parents: 67706
diff changeset
  1829
63545
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  1830
lemma (in metric_space) tendstoI [intro?]:
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  1831
  "(\<And>e. 0 < e \<Longrightarrow> eventually (\<lambda>x. dist (f x) l < e) F) \<Longrightarrow> (f \<longlongrightarrow> l) F"
57448
159e45728ceb more equalities of topological filters; strengthen dependent_nat_choice; tuned a couple of proofs
hoelzl
parents: 57418
diff changeset
  1832
  by (auto simp: tendsto_iff)
159e45728ceb more equalities of topological filters; strengthen dependent_nat_choice; tuned a couple of proofs
hoelzl
parents: 57418
diff changeset
  1833
61973
0c7e865fa7cb more symbols;
wenzelm
parents: 61969
diff changeset
  1834
lemma (in metric_space) tendstoD: "(f \<longlongrightarrow> l) F \<Longrightarrow> 0 < e \<Longrightarrow> eventually (\<lambda>x. dist (f x) l < e) F"
57448
159e45728ceb more equalities of topological filters; strengthen dependent_nat_choice; tuned a couple of proofs
hoelzl
parents: 57418
diff changeset
  1835
  by (auto simp: tendsto_iff)
159e45728ceb more equalities of topological filters; strengthen dependent_nat_choice; tuned a couple of proofs
hoelzl
parents: 57418
diff changeset
  1836
159e45728ceb more equalities of topological filters; strengthen dependent_nat_choice; tuned a couple of proofs
hoelzl
parents: 57418
diff changeset
  1837
lemma (in metric_space) eventually_nhds_metric:
159e45728ceb more equalities of topological filters; strengthen dependent_nat_choice; tuned a couple of proofs
hoelzl
parents: 57418
diff changeset
  1838
  "eventually P (nhds a) \<longleftrightarrow> (\<exists>d>0. \<forall>x. dist x a < d \<longrightarrow> P x)"
159e45728ceb more equalities of topological filters; strengthen dependent_nat_choice; tuned a couple of proofs
hoelzl
parents: 57418
diff changeset
  1839
  unfolding nhds_metric
159e45728ceb more equalities of topological filters; strengthen dependent_nat_choice; tuned a couple of proofs
hoelzl
parents: 57418
diff changeset
  1840
  by (subst eventually_INF_base)
159e45728ceb more equalities of topological filters; strengthen dependent_nat_choice; tuned a couple of proofs
hoelzl
parents: 57418
diff changeset
  1841
     (auto simp: eventually_principal Bex_def subset_eq intro: exI[of _ "min a b" for a b])
51531
f415febf4234 remove Metric_Spaces and move its content into Limits and Real_Vector_Spaces
hoelzl
parents: 51524
diff changeset
  1842
63545
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  1843
lemma eventually_at: "eventually P (at a within S) \<longleftrightarrow> (\<exists>d>0. \<forall>x\<in>S. x \<noteq> a \<and> dist x a < d \<longrightarrow> P x)"
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  1844
  for a :: "'a :: metric_space"
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  1845
  by (auto simp: eventually_at_filter eventually_nhds_metric)
51531
f415febf4234 remove Metric_Spaces and move its content into Limits and Real_Vector_Spaces
hoelzl
parents: 51524
diff changeset
  1846
67706
4ddc49205f5d Unified the order of zeros and poles; improved reasoning around non-essential singularites
Wenda Li <wl302@cam.ac.uk>
parents: 67673
diff changeset
  1847
lemma frequently_at: "frequently P (at a within S) \<longleftrightarrow> (\<forall>d>0. \<exists>x\<in>S. x \<noteq> a \<and> dist x a < d \<and> P x)"
4ddc49205f5d Unified the order of zeros and poles; improved reasoning around non-essential singularites
Wenda Li <wl302@cam.ac.uk>
parents: 67673
diff changeset
  1848
  for a :: "'a :: metric_space"
4ddc49205f5d Unified the order of zeros and poles; improved reasoning around non-essential singularites
Wenda Li <wl302@cam.ac.uk>
parents: 67673
diff changeset
  1849
  unfolding frequently_def eventually_at by auto
4ddc49205f5d Unified the order of zeros and poles; improved reasoning around non-essential singularites
Wenda Li <wl302@cam.ac.uk>
parents: 67673
diff changeset
  1850
63545
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  1851
lemma eventually_at_le: "eventually P (at a within S) \<longleftrightarrow> (\<exists>d>0. \<forall>x\<in>S. x \<noteq> a \<and> dist x a \<le> d \<longrightarrow> P x)"
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  1852
  for a :: "'a::metric_space"
68594
5b05ede597b8 de-applying
paulson <lp15@cam.ac.uk>
parents: 68532
diff changeset
  1853
  unfolding eventually_at_filter eventually_nhds_metric
5b05ede597b8 de-applying
paulson <lp15@cam.ac.uk>
parents: 68532
diff changeset
  1854
  apply safe
5b05ede597b8 de-applying
paulson <lp15@cam.ac.uk>
parents: 68532
diff changeset
  1855
  apply (rule_tac x="d / 2" in exI, auto)
51641
cd05e9fcc63d remove the within-filter, replace "at" by "at _ within UNIV" (This allows to remove a couple of redundant lemmas)
hoelzl
parents: 51531
diff changeset
  1856
  done
51531
f415febf4234 remove Metric_Spaces and move its content into Limits and Real_Vector_Spaces
hoelzl
parents: 51524
diff changeset
  1857
61531
ab2e862263e7 Rounding function, uniform limits, cotangent, binomial identities
eberlm
parents: 61524
diff changeset
  1858
lemma eventually_at_left_real: "a > (b :: real) \<Longrightarrow> eventually (\<lambda>x. x \<in> {b<..<a}) (at_left a)"
ab2e862263e7 Rounding function, uniform limits, cotangent, binomial identities
eberlm
parents: 61524
diff changeset
  1859
  by (subst eventually_at, rule exI[of _ "a - b"]) (force simp: dist_real_def)
ab2e862263e7 Rounding function, uniform limits, cotangent, binomial identities
eberlm
parents: 61524
diff changeset
  1860
ab2e862263e7 Rounding function, uniform limits, cotangent, binomial identities
eberlm
parents: 61524
diff changeset
  1861
lemma eventually_at_right_real: "a < (b :: real) \<Longrightarrow> eventually (\<lambda>x. x \<in> {a<..<b}) (at_right a)"
ab2e862263e7 Rounding function, uniform limits, cotangent, binomial identities
eberlm
parents: 61524
diff changeset
  1862
  by (subst eventually_at, rule exI[of _ "b - a"]) (force simp: dist_real_def)
ab2e862263e7 Rounding function, uniform limits, cotangent, binomial identities
eberlm
parents: 61524
diff changeset
  1863
51531
f415febf4234 remove Metric_Spaces and move its content into Limits and Real_Vector_Spaces
hoelzl
parents: 51524
diff changeset
  1864
lemma metric_tendsto_imp_tendsto:
63545
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  1865
  fixes a :: "'a :: metric_space"
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  1866
    and b :: "'b :: metric_space"
61973
0c7e865fa7cb more symbols;
wenzelm
parents: 61969
diff changeset
  1867
  assumes f: "(f \<longlongrightarrow> a) F"
63545
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  1868
    and le: "eventually (\<lambda>x. dist (g x) b \<le> dist (f x) a) F"
61973
0c7e865fa7cb more symbols;
wenzelm
parents: 61969
diff changeset
  1869
  shows "(g \<longlongrightarrow> b) F"
51531
f415febf4234 remove Metric_Spaces and move its content into Limits and Real_Vector_Spaces
hoelzl
parents: 51524
diff changeset
  1870
proof (rule tendstoI)
63545
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  1871
  fix e :: real
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  1872
  assume "0 < e"
51531
f415febf4234 remove Metric_Spaces and move its content into Limits and Real_Vector_Spaces
hoelzl
parents: 51524
diff changeset
  1873
  with f have "eventually (\<lambda>x. dist (f x) a < e) F" by (rule tendstoD)
f415febf4234 remove Metric_Spaces and move its content into Limits and Real_Vector_Spaces
hoelzl
parents: 51524
diff changeset
  1874
  with le show "eventually (\<lambda>x. dist (g x) b < e) F"
f415febf4234 remove Metric_Spaces and move its content into Limits and Real_Vector_Spaces
hoelzl
parents: 51524
diff changeset
  1875
    using le_less_trans by (rule eventually_elim2)
f415febf4234 remove Metric_Spaces and move its content into Limits and Real_Vector_Spaces
hoelzl
parents: 51524
diff changeset
  1876
qed
f415febf4234 remove Metric_Spaces and move its content into Limits and Real_Vector_Spaces
hoelzl
parents: 51524
diff changeset
  1877
f415febf4234 remove Metric_Spaces and move its content into Limits and Real_Vector_Spaces
hoelzl
parents: 51524
diff changeset
  1878
lemma filterlim_real_sequentially: "LIM x sequentially. real x :> at_top"
71720
1d8a1f727879 removed more applys
paulson <lp15@cam.ac.uk>
parents: 71544
diff changeset
  1879
proof (clarsimp simp: filterlim_at_top)
1d8a1f727879 removed more applys
paulson <lp15@cam.ac.uk>
parents: 71544
diff changeset
  1880
  fix Z
1d8a1f727879 removed more applys
paulson <lp15@cam.ac.uk>
parents: 71544
diff changeset
  1881
  show "\<forall>\<^sub>F x in sequentially. Z \<le> real x"
1d8a1f727879 removed more applys
paulson <lp15@cam.ac.uk>
parents: 71544
diff changeset
  1882
    by (meson eventually_sequentiallyI nat_ceiling_le_eq)
1d8a1f727879 removed more applys
paulson <lp15@cam.ac.uk>
parents: 71544
diff changeset
  1883
qed
61942
f02b26f7d39d prefer symbols for "floor", "ceiling";
wenzelm
parents: 61916
diff changeset
  1884
63556
36e9732988ce numerical bounds on pi
immler
parents: 63545
diff changeset
  1885
lemma filterlim_nat_sequentially: "filterlim nat sequentially at_top"
68594
5b05ede597b8 de-applying
paulson <lp15@cam.ac.uk>
parents: 68532
diff changeset
  1886
proof -
5b05ede597b8 de-applying
paulson <lp15@cam.ac.uk>
parents: 68532
diff changeset
  1887
  have "\<forall>\<^sub>F x in at_top. Z \<le> nat x" for Z
5b05ede597b8 de-applying
paulson <lp15@cam.ac.uk>
parents: 68532
diff changeset
  1888
    by (auto intro!: eventually_at_top_linorderI[where c="int Z"])
5b05ede597b8 de-applying
paulson <lp15@cam.ac.uk>
parents: 68532
diff changeset
  1889
  then show ?thesis
5b05ede597b8 de-applying
paulson <lp15@cam.ac.uk>
parents: 68532
diff changeset
  1890
    unfolding filterlim_at_top ..
5b05ede597b8 de-applying
paulson <lp15@cam.ac.uk>
parents: 68532
diff changeset
  1891
qed
63556
36e9732988ce numerical bounds on pi
immler
parents: 63545
diff changeset
  1892
36e9732988ce numerical bounds on pi
immler
parents: 63545
diff changeset
  1893
lemma filterlim_floor_sequentially: "filterlim floor at_top at_top"
68594
5b05ede597b8 de-applying
paulson <lp15@cam.ac.uk>
parents: 68532
diff changeset
  1894
proof -
5b05ede597b8 de-applying
paulson <lp15@cam.ac.uk>
parents: 68532
diff changeset
  1895
  have "\<forall>\<^sub>F x in at_top. Z \<le> \<lfloor>x\<rfloor>" for Z
5b05ede597b8 de-applying
paulson <lp15@cam.ac.uk>
parents: 68532
diff changeset
  1896
    by (auto simp: le_floor_iff intro!: eventually_at_top_linorderI[where c="of_int Z"])
5b05ede597b8 de-applying
paulson <lp15@cam.ac.uk>
parents: 68532
diff changeset
  1897
  then show ?thesis
5b05ede597b8 de-applying
paulson <lp15@cam.ac.uk>
parents: 68532
diff changeset
  1898
    unfolding filterlim_at_top ..
5b05ede597b8 de-applying
paulson <lp15@cam.ac.uk>
parents: 68532
diff changeset
  1899
qed
63556
36e9732988ce numerical bounds on pi
immler
parents: 63545
diff changeset
  1900
36e9732988ce numerical bounds on pi
immler
parents: 63545
diff changeset
  1901
lemma filterlim_sequentially_iff_filterlim_real:
71720
1d8a1f727879 removed more applys
paulson <lp15@cam.ac.uk>
parents: 71544
diff changeset
  1902
  "filterlim f sequentially F \<longleftrightarrow> filterlim (\<lambda>x. real (f x)) at_top F" (is "?lhs = ?rhs")
1d8a1f727879 removed more applys
paulson <lp15@cam.ac.uk>
parents: 71544
diff changeset
  1903
proof
1d8a1f727879 removed more applys
paulson <lp15@cam.ac.uk>
parents: 71544
diff changeset
  1904
  assume ?lhs then show ?rhs
1d8a1f727879 removed more applys
paulson <lp15@cam.ac.uk>
parents: 71544
diff changeset
  1905
    using filterlim_compose filterlim_real_sequentially by blast
1d8a1f727879 removed more applys
paulson <lp15@cam.ac.uk>
parents: 71544
diff changeset
  1906
next
1d8a1f727879 removed more applys
paulson <lp15@cam.ac.uk>
parents: 71544
diff changeset
  1907
  assume R: ?rhs
1d8a1f727879 removed more applys
paulson <lp15@cam.ac.uk>
parents: 71544
diff changeset
  1908
  show ?lhs
63556
36e9732988ce numerical bounds on pi
immler
parents: 63545
diff changeset
  1909
  proof -
36e9732988ce numerical bounds on pi
immler
parents: 63545
diff changeset
  1910
    have "filterlim (\<lambda>x. nat (floor (real (f x)))) sequentially F"
36e9732988ce numerical bounds on pi
immler
parents: 63545
diff changeset
  1911
      by (intro filterlim_compose[OF filterlim_nat_sequentially]
71720
1d8a1f727879 removed more applys
paulson <lp15@cam.ac.uk>
parents: 71544
diff changeset
  1912
          filterlim_compose[OF filterlim_floor_sequentially] R)
63556
36e9732988ce numerical bounds on pi
immler
parents: 63545
diff changeset
  1913
    then show ?thesis by simp
36e9732988ce numerical bounds on pi
immler
parents: 63545
diff changeset
  1914
  qed
71720
1d8a1f727879 removed more applys
paulson <lp15@cam.ac.uk>
parents: 71544
diff changeset
  1915
qed
63556
36e9732988ce numerical bounds on pi
immler
parents: 63545
diff changeset
  1916
51531
f415febf4234 remove Metric_Spaces and move its content into Limits and Real_Vector_Spaces
hoelzl
parents: 51524
diff changeset
  1917
60758
d8d85a8172b5 isabelle update_cartouches;
wenzelm
parents: 60307
diff changeset
  1918
subsubsection \<open>Limits of Sequences\<close>
51531
f415febf4234 remove Metric_Spaces and move its content into Limits and Real_Vector_Spaces
hoelzl
parents: 51524
diff changeset
  1919
63545
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  1920
lemma lim_sequentially: "X \<longlonglongrightarrow> L \<longleftrightarrow> (\<forall>r>0. \<exists>no. \<forall>n\<ge>no. dist (X n) L < r)"
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  1921
  for L :: "'a::metric_space"
51531
f415febf4234 remove Metric_Spaces and move its content into Limits and Real_Vector_Spaces
hoelzl
parents: 51524
diff changeset
  1922
  unfolding tendsto_iff eventually_sequentially ..
f415febf4234 remove Metric_Spaces and move its content into Limits and Real_Vector_Spaces
hoelzl
parents: 51524
diff changeset
  1923
60026
41d81b4a0a21 Restored LIMSEQ_def as legacy binding. [The other changes are whitespace only.]
paulson <lp15@cam.ac.uk>
parents: 60017
diff changeset
  1924
lemmas LIMSEQ_def = lim_sequentially  (*legacy binding*)
41d81b4a0a21 Restored LIMSEQ_def as legacy binding. [The other changes are whitespace only.]
paulson <lp15@cam.ac.uk>
parents: 60017
diff changeset
  1925
63545
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  1926
lemma LIMSEQ_iff_nz: "X \<longlonglongrightarrow> L \<longleftrightarrow> (\<forall>r>0. \<exists>no>0. \<forall>n\<ge>no. dist (X n) L < r)"
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  1927
  for L :: "'a::metric_space"
60017
b785d6d06430 Overloading of ln and powr, but "approximation" no longer works for powr. Code generation also fails due to type ambiguity in scala.
paulson <lp15@cam.ac.uk>
parents: 59867
diff changeset
  1928
  unfolding lim_sequentially by (metis Suc_leD zero_less_Suc)
51531
f415febf4234 remove Metric_Spaces and move its content into Limits and Real_Vector_Spaces
hoelzl
parents: 51524
diff changeset
  1929
63545
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  1930
lemma metric_LIMSEQ_I: "(\<And>r. 0 < r \<Longrightarrow> \<exists>no. \<forall>n\<ge>no. dist (X n) L < r) \<Longrightarrow> X \<longlonglongrightarrow> L"
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  1931
  for L :: "'a::metric_space"
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  1932
  by (simp add: lim_sequentially)
51531
f415febf4234 remove Metric_Spaces and move its content into Limits and Real_Vector_Spaces
hoelzl
parents: 51524
diff changeset
  1933
63545
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  1934
lemma metric_LIMSEQ_D: "X \<longlonglongrightarrow> L \<Longrightarrow> 0 < r \<Longrightarrow> \<exists>no. \<forall>n\<ge>no. dist (X n) L < r"
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  1935
  for L :: "'a::metric_space"
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  1936
  by (simp add: lim_sequentially)
51531
f415febf4234 remove Metric_Spaces and move its content into Limits and Real_Vector_Spaces
hoelzl
parents: 51524
diff changeset
  1937
67673
c8caefb20564 lots of new material, ultimately related to measure theory
paulson <lp15@cam.ac.uk>
parents: 67399
diff changeset
  1938
lemma LIMSEQ_norm_0:
c8caefb20564 lots of new material, ultimately related to measure theory
paulson <lp15@cam.ac.uk>
parents: 67399
diff changeset
  1939
  assumes  "\<And>n::nat. norm (f n) < 1 / real (Suc n)"
c8caefb20564 lots of new material, ultimately related to measure theory
paulson <lp15@cam.ac.uk>
parents: 67399
diff changeset
  1940
  shows "f \<longlonglongrightarrow> 0"
c8caefb20564 lots of new material, ultimately related to measure theory
paulson <lp15@cam.ac.uk>
parents: 67399
diff changeset
  1941
proof (rule metric_LIMSEQ_I)
c8caefb20564 lots of new material, ultimately related to measure theory
paulson <lp15@cam.ac.uk>
parents: 67399
diff changeset
  1942
  fix \<epsilon> :: "real"
c8caefb20564 lots of new material, ultimately related to measure theory
paulson <lp15@cam.ac.uk>
parents: 67399
diff changeset
  1943
  assume "\<epsilon> > 0"
c8caefb20564 lots of new material, ultimately related to measure theory
paulson <lp15@cam.ac.uk>
parents: 67399
diff changeset
  1944
  then obtain N::nat where "\<epsilon> > inverse N" "N > 0"
c8caefb20564 lots of new material, ultimately related to measure theory
paulson <lp15@cam.ac.uk>
parents: 67399
diff changeset
  1945
    by (metis neq0_conv real_arch_inverse)
c8caefb20564 lots of new material, ultimately related to measure theory
paulson <lp15@cam.ac.uk>
parents: 67399
diff changeset
  1946
  then have "norm (f n) < \<epsilon>" if "n \<ge> N" for n
c8caefb20564 lots of new material, ultimately related to measure theory
paulson <lp15@cam.ac.uk>
parents: 67399
diff changeset
  1947
  proof -
c8caefb20564 lots of new material, ultimately related to measure theory
paulson <lp15@cam.ac.uk>
parents: 67399
diff changeset
  1948
    have "1 / (Suc n) \<le> 1 / N"
c8caefb20564 lots of new material, ultimately related to measure theory
paulson <lp15@cam.ac.uk>
parents: 67399
diff changeset
  1949
      using \<open>0 < N\<close> inverse_of_nat_le le_SucI that by blast
c8caefb20564 lots of new material, ultimately related to measure theory
paulson <lp15@cam.ac.uk>
parents: 67399
diff changeset
  1950
    also have "\<dots> < \<epsilon>"
c8caefb20564 lots of new material, ultimately related to measure theory
paulson <lp15@cam.ac.uk>
parents: 67399
diff changeset
  1951
      by (metis (no_types) \<open>inverse (real N) < \<epsilon>\<close> inverse_eq_divide)
c8caefb20564 lots of new material, ultimately related to measure theory
paulson <lp15@cam.ac.uk>
parents: 67399
diff changeset
  1952
    finally show ?thesis
c8caefb20564 lots of new material, ultimately related to measure theory
paulson <lp15@cam.ac.uk>
parents: 67399
diff changeset
  1953
      by (meson assms less_eq_real_def not_le order_trans)
c8caefb20564 lots of new material, ultimately related to measure theory
paulson <lp15@cam.ac.uk>
parents: 67399
diff changeset
  1954
  qed
c8caefb20564 lots of new material, ultimately related to measure theory
paulson <lp15@cam.ac.uk>
parents: 67399
diff changeset
  1955
  then show "\<exists>no. \<forall>n\<ge>no. dist (f n) 0 < \<epsilon>"
c8caefb20564 lots of new material, ultimately related to measure theory
paulson <lp15@cam.ac.uk>
parents: 67399
diff changeset
  1956
    by auto
c8caefb20564 lots of new material, ultimately related to measure theory
paulson <lp15@cam.ac.uk>
parents: 67399
diff changeset
  1957
qed
c8caefb20564 lots of new material, ultimately related to measure theory
paulson <lp15@cam.ac.uk>
parents: 67399
diff changeset
  1958
51531
f415febf4234 remove Metric_Spaces and move its content into Limits and Real_Vector_Spaces
hoelzl
parents: 51524
diff changeset
  1959
60758
d8d85a8172b5 isabelle update_cartouches;
wenzelm
parents: 60307
diff changeset
  1960
subsubsection \<open>Limits of Functions\<close>
51531
f415febf4234 remove Metric_Spaces and move its content into Limits and Real_Vector_Spaces
hoelzl
parents: 51524
diff changeset
  1961
63545
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  1962
lemma LIM_def: "f \<midarrow>a\<rightarrow> L \<longleftrightarrow> (\<forall>r > 0. \<exists>s > 0. \<forall>x. x \<noteq> a \<and> dist x a < s \<longrightarrow> dist (f x) L < r)"
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  1963
  for a :: "'a::metric_space" and L :: "'b::metric_space"
51641
cd05e9fcc63d remove the within-filter, replace "at" by "at _ within UNIV" (This allows to remove a couple of redundant lemmas)
hoelzl
parents: 51531
diff changeset
  1964
  unfolding tendsto_iff eventually_at by simp
51531
f415febf4234 remove Metric_Spaces and move its content into Limits and Real_Vector_Spaces
hoelzl
parents: 51524
diff changeset
  1965
f415febf4234 remove Metric_Spaces and move its content into Limits and Real_Vector_Spaces
hoelzl
parents: 51524
diff changeset
  1966
lemma metric_LIM_I:
63545
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  1967
  "(\<And>r. 0 < r \<Longrightarrow> \<exists>s>0. \<forall>x. x \<noteq> a \<and> dist x a < s \<longrightarrow> dist (f x) L < r) \<Longrightarrow> f \<midarrow>a\<rightarrow> L"
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  1968
  for a :: "'a::metric_space" and L :: "'b::metric_space"
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  1969
  by (simp add: LIM_def)
51531
f415febf4234 remove Metric_Spaces and move its content into Limits and Real_Vector_Spaces
hoelzl
parents: 51524
diff changeset
  1970
63545
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  1971
lemma metric_LIM_D: "f \<midarrow>a\<rightarrow> L \<Longrightarrow> 0 < r \<Longrightarrow> \<exists>s>0. \<forall>x. x \<noteq> a \<and> dist x a < s \<longrightarrow> dist (f x) L < r"
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  1972
  for a :: "'a::metric_space" and L :: "'b::metric_space"
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  1973
  by (simp add: LIM_def)
51531
f415febf4234 remove Metric_Spaces and move its content into Limits and Real_Vector_Spaces
hoelzl
parents: 51524
diff changeset
  1974
f415febf4234 remove Metric_Spaces and move its content into Limits and Real_Vector_Spaces
hoelzl
parents: 51524
diff changeset
  1975
lemma metric_LIM_imp_LIM:
63545
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  1976
  fixes l :: "'a::metric_space"
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  1977
    and m :: "'b::metric_space"
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  1978
  assumes f: "f \<midarrow>a\<rightarrow> l"
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  1979
    and le: "\<And>x. x \<noteq> a \<Longrightarrow> dist (g x) m \<le> dist (f x) l"
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  1980
  shows "g \<midarrow>a\<rightarrow> m"
68594
5b05ede597b8 de-applying
paulson <lp15@cam.ac.uk>
parents: 68532
diff changeset
  1981
  by (rule metric_tendsto_imp_tendsto [OF f]) (auto simp: eventually_at_topological le)
51531
f415febf4234 remove Metric_Spaces and move its content into Limits and Real_Vector_Spaces
hoelzl
parents: 51524
diff changeset
  1982
f415febf4234 remove Metric_Spaces and move its content into Limits and Real_Vector_Spaces
hoelzl
parents: 51524
diff changeset
  1983
lemma metric_LIM_equal2:
63545
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  1984
  fixes a :: "'a::metric_space"
68594
5b05ede597b8 de-applying
paulson <lp15@cam.ac.uk>
parents: 68532
diff changeset
  1985
  assumes "g \<midarrow>a\<rightarrow> l" "0 < R"
63545
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  1986
    and "\<And>x. x \<noteq> a \<Longrightarrow> dist x a < R \<Longrightarrow> f x = g x"
68594
5b05ede597b8 de-applying
paulson <lp15@cam.ac.uk>
parents: 68532
diff changeset
  1987
  shows "f \<midarrow>a\<rightarrow> l"
5b05ede597b8 de-applying
paulson <lp15@cam.ac.uk>
parents: 68532
diff changeset
  1988
proof -
5b05ede597b8 de-applying
paulson <lp15@cam.ac.uk>
parents: 68532
diff changeset
  1989
  have "\<And>S. \<lbrakk>open S; l \<in> S; \<forall>\<^sub>F x in at a. g x \<in> S\<rbrakk> \<Longrightarrow> \<forall>\<^sub>F x in at a. f x \<in> S"
71720
1d8a1f727879 removed more applys
paulson <lp15@cam.ac.uk>
parents: 71544
diff changeset
  1990
    apply (simp add: eventually_at)
1d8a1f727879 removed more applys
paulson <lp15@cam.ac.uk>
parents: 71544
diff changeset
  1991
    by (metis assms(2) assms(3) dual_order.strict_trans linorder_neqE_linordered_idom)
68594
5b05ede597b8 de-applying
paulson <lp15@cam.ac.uk>
parents: 68532
diff changeset
  1992
  then show ?thesis
5b05ede597b8 de-applying
paulson <lp15@cam.ac.uk>
parents: 68532
diff changeset
  1993
    using assms by (simp add: tendsto_def)
5b05ede597b8 de-applying
paulson <lp15@cam.ac.uk>
parents: 68532
diff changeset
  1994
qed
51531
f415febf4234 remove Metric_Spaces and move its content into Limits and Real_Vector_Spaces
hoelzl
parents: 51524
diff changeset
  1995
f415febf4234 remove Metric_Spaces and move its content into Limits and Real_Vector_Spaces
hoelzl
parents: 51524
diff changeset
  1996
lemma metric_LIM_compose2:
63545
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  1997
  fixes a :: "'a::metric_space"
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  1998
  assumes f: "f \<midarrow>a\<rightarrow> b"
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  1999
    and g: "g \<midarrow>b\<rightarrow> c"
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  2000
    and inj: "\<exists>d>0. \<forall>x. x \<noteq> a \<and> dist x a < d \<longrightarrow> f x \<noteq> b"
61976
3a27957ac658 more symbols;
wenzelm
parents: 61973
diff changeset
  2001
  shows "(\<lambda>x. g (f x)) \<midarrow>a\<rightarrow> c"
63545
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  2002
  using inj by (intro tendsto_compose_eventually[OF g f]) (auto simp: eventually_at)
51531
f415febf4234 remove Metric_Spaces and move its content into Limits and Real_Vector_Spaces
hoelzl
parents: 51524
diff changeset
  2003
f415febf4234 remove Metric_Spaces and move its content into Limits and Real_Vector_Spaces
hoelzl
parents: 51524
diff changeset
  2004
lemma metric_isCont_LIM_compose2:
f415febf4234 remove Metric_Spaces and move its content into Limits and Real_Vector_Spaces
hoelzl
parents: 51524
diff changeset
  2005
  fixes f :: "'a :: metric_space \<Rightarrow> _"
f415febf4234 remove Metric_Spaces and move its content into Limits and Real_Vector_Spaces
hoelzl
parents: 51524
diff changeset
  2006
  assumes f [unfolded isCont_def]: "isCont f a"
63545
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  2007
    and g: "g \<midarrow>f a\<rightarrow> l"
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  2008
    and inj: "\<exists>d>0. \<forall>x. x \<noteq> a \<and> dist x a < d \<longrightarrow> f x \<noteq> f a"
61976
3a27957ac658 more symbols;
wenzelm
parents: 61973
diff changeset
  2009
  shows "(\<lambda>x. g (f x)) \<midarrow>a\<rightarrow> l"
63545
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  2010
  by (rule metric_LIM_compose2 [OF f g inj])
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  2011
51531
f415febf4234 remove Metric_Spaces and move its content into Limits and Real_Vector_Spaces
hoelzl
parents: 51524
diff changeset
  2012
60758
d8d85a8172b5 isabelle update_cartouches;
wenzelm
parents: 60307
diff changeset
  2013
subsection \<open>Complete metric spaces\<close>
51531
f415febf4234 remove Metric_Spaces and move its content into Limits and Real_Vector_Spaces
hoelzl
parents: 51524
diff changeset
  2014
60758
d8d85a8172b5 isabelle update_cartouches;
wenzelm
parents: 60307
diff changeset
  2015
subsection \<open>Cauchy sequences\<close>
51531
f415febf4234 remove Metric_Spaces and move its content into Limits and Real_Vector_Spaces
hoelzl
parents: 51524
diff changeset
  2016
62101
26c0a70f78a3 add uniform spaces
hoelzl
parents: 62087
diff changeset
  2017
lemma (in metric_space) Cauchy_def: "Cauchy X = (\<forall>e>0. \<exists>M. \<forall>m\<ge>M. \<forall>n\<ge>M. dist (X m) (X n) < e)"
26c0a70f78a3 add uniform spaces
hoelzl
parents: 62087
diff changeset
  2018
proof -
63545
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  2019
  have *: "eventually P (INF M. principal {(X m, X n) | n m. m \<ge> M \<and> n \<ge> M}) \<longleftrightarrow>
62101
26c0a70f78a3 add uniform spaces
hoelzl
parents: 62087
diff changeset
  2020
    (\<exists>M. \<forall>m\<ge>M. \<forall>n\<ge>M. P (X m, X n))" for P
63545
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  2021
    apply (subst eventually_INF_base)
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  2022
    subgoal by simp
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  2023
    subgoal for a b
62101
26c0a70f78a3 add uniform spaces
hoelzl
parents: 62087
diff changeset
  2024
      by (intro bexI[of _ "max a b"]) (auto simp: eventually_principal subset_eq)
63545
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  2025
    subgoal by (auto simp: eventually_principal, blast)
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  2026
    done
62101
26c0a70f78a3 add uniform spaces
hoelzl
parents: 62087
diff changeset
  2027
  have "Cauchy X \<longleftrightarrow> (INF M. principal {(X m, X n) | n m. m \<ge> M \<and> n \<ge> M}) \<le> uniformity"
26c0a70f78a3 add uniform spaces
hoelzl
parents: 62087
diff changeset
  2028
    unfolding Cauchy_uniform_iff le_filter_def * ..
26c0a70f78a3 add uniform spaces
hoelzl
parents: 62087
diff changeset
  2029
  also have "\<dots> = (\<forall>e>0. \<exists>M. \<forall>m\<ge>M. \<forall>n\<ge>M. dist (X m) (X n) < e)"
26c0a70f78a3 add uniform spaces
hoelzl
parents: 62087
diff changeset
  2030
    unfolding uniformity_dist le_INF_iff by (auto simp: * le_principal)
26c0a70f78a3 add uniform spaces
hoelzl
parents: 62087
diff changeset
  2031
  finally show ?thesis .
26c0a70f78a3 add uniform spaces
hoelzl
parents: 62087
diff changeset
  2032
qed
51531
f415febf4234 remove Metric_Spaces and move its content into Limits and Real_Vector_Spaces
hoelzl
parents: 51524
diff changeset
  2033
63545
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  2034
lemma (in metric_space) Cauchy_altdef: "Cauchy f \<longleftrightarrow> (\<forall>e>0. \<exists>M. \<forall>m\<ge>M. \<forall>n>m. dist (f m) (f n) < e)"
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  2035
  (is "?lhs \<longleftrightarrow> ?rhs")
61531
ab2e862263e7 Rounding function, uniform limits, cotangent, binomial identities
eberlm
parents: 61524
diff changeset
  2036
proof
63545
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  2037
  assume ?rhs
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  2038
  show ?lhs
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  2039
    unfolding Cauchy_def
61531
ab2e862263e7 Rounding function, uniform limits, cotangent, binomial identities
eberlm
parents: 61524
diff changeset
  2040
  proof (intro allI impI)
ab2e862263e7 Rounding function, uniform limits, cotangent, binomial identities
eberlm
parents: 61524
diff changeset
  2041
    fix e :: real assume e: "e > 0"
63545
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  2042
    with \<open>?rhs\<close> obtain M where M: "m \<ge> M \<Longrightarrow> n > m \<Longrightarrow> dist (f m) (f n) < e" for m n
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  2043
      by blast
61531
ab2e862263e7 Rounding function, uniform limits, cotangent, binomial identities
eberlm
parents: 61524
diff changeset
  2044
    have "dist (f m) (f n) < e" if "m \<ge> M" "n \<ge> M" for m n
ab2e862263e7 Rounding function, uniform limits, cotangent, binomial identities
eberlm
parents: 61524
diff changeset
  2045
      using M[of m n] M[of n m] e that by (cases m n rule: linorder_cases) (auto simp: dist_commute)
63545
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  2046
    then show "\<exists>M. \<forall>m\<ge>M. \<forall>n\<ge>M. dist (f m) (f n) < e"
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  2047
      by blast
61531
ab2e862263e7 Rounding function, uniform limits, cotangent, binomial identities
eberlm
parents: 61524
diff changeset
  2048
  qed
ab2e862263e7 Rounding function, uniform limits, cotangent, binomial identities
eberlm
parents: 61524
diff changeset
  2049
next
63545
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  2050
  assume ?lhs
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  2051
  show ?rhs
61531
ab2e862263e7 Rounding function, uniform limits, cotangent, binomial identities
eberlm
parents: 61524
diff changeset
  2052
  proof (intro allI impI)
63545
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  2053
    fix e :: real
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  2054
    assume e: "e > 0"
61799
4cf66f21b764 isabelle update_cartouches -c -t;
wenzelm
parents: 61762
diff changeset
  2055
    with \<open>Cauchy f\<close> obtain M where "\<And>m n. m \<ge> M \<Longrightarrow> n \<ge> M \<Longrightarrow> dist (f m) (f n) < e"
61649
268d88ec9087 Tweaks for "real": Removal of [iff] status for some lemmas, adding [simp] for others. Plus fixes.
paulson <lp15@cam.ac.uk>
parents: 61609
diff changeset
  2056
      unfolding Cauchy_def by blast
63545
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  2057
    then show "\<exists>M. \<forall>m\<ge>M. \<forall>n>m. dist (f m) (f n) < e"
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  2058
      by (intro exI[of _ M]) force
61531
ab2e862263e7 Rounding function, uniform limits, cotangent, binomial identities
eberlm
parents: 61524
diff changeset
  2059
  qed
ab2e862263e7 Rounding function, uniform limits, cotangent, binomial identities
eberlm
parents: 61524
diff changeset
  2060
qed
51531
f415febf4234 remove Metric_Spaces and move its content into Limits and Real_Vector_Spaces
hoelzl
parents: 51524
diff changeset
  2061
66089
def95e0bc529 Some new material. SIMPRULE STATUS for sum/prod.delta rules!
paulson <lp15@cam.ac.uk>
parents: 65680
diff changeset
  2062
lemma (in metric_space) Cauchy_altdef2: "Cauchy s \<longleftrightarrow> (\<forall>e>0. \<exists>N::nat. \<forall>n\<ge>N. dist(s n)(s N) < e)" (is "?lhs = ?rhs")
def95e0bc529 Some new material. SIMPRULE STATUS for sum/prod.delta rules!
paulson <lp15@cam.ac.uk>
parents: 65680
diff changeset
  2063
proof 
def95e0bc529 Some new material. SIMPRULE STATUS for sum/prod.delta rules!
paulson <lp15@cam.ac.uk>
parents: 65680
diff changeset
  2064
  assume "Cauchy s"
68594
5b05ede597b8 de-applying
paulson <lp15@cam.ac.uk>
parents: 68532
diff changeset
  2065
  then show ?rhs by (force simp: Cauchy_def)
66089
def95e0bc529 Some new material. SIMPRULE STATUS for sum/prod.delta rules!
paulson <lp15@cam.ac.uk>
parents: 65680
diff changeset
  2066
next
def95e0bc529 Some new material. SIMPRULE STATUS for sum/prod.delta rules!
paulson <lp15@cam.ac.uk>
parents: 65680
diff changeset
  2067
    assume ?rhs
def95e0bc529 Some new material. SIMPRULE STATUS for sum/prod.delta rules!
paulson <lp15@cam.ac.uk>
parents: 65680
diff changeset
  2068
    {
def95e0bc529 Some new material. SIMPRULE STATUS for sum/prod.delta rules!
paulson <lp15@cam.ac.uk>
parents: 65680
diff changeset
  2069
      fix e::real
def95e0bc529 Some new material. SIMPRULE STATUS for sum/prod.delta rules!
paulson <lp15@cam.ac.uk>
parents: 65680
diff changeset
  2070
      assume "e>0"
def95e0bc529 Some new material. SIMPRULE STATUS for sum/prod.delta rules!
paulson <lp15@cam.ac.uk>
parents: 65680
diff changeset
  2071
      with \<open>?rhs\<close> obtain N where N: "\<forall>n\<ge>N. dist (s n) (s N) < e/2"
def95e0bc529 Some new material. SIMPRULE STATUS for sum/prod.delta rules!
paulson <lp15@cam.ac.uk>
parents: 65680
diff changeset
  2072
        by (erule_tac x="e/2" in allE) auto
def95e0bc529 Some new material. SIMPRULE STATUS for sum/prod.delta rules!
paulson <lp15@cam.ac.uk>
parents: 65680
diff changeset
  2073
      {
def95e0bc529 Some new material. SIMPRULE STATUS for sum/prod.delta rules!
paulson <lp15@cam.ac.uk>
parents: 65680
diff changeset
  2074
        fix n m
def95e0bc529 Some new material. SIMPRULE STATUS for sum/prod.delta rules!
paulson <lp15@cam.ac.uk>
parents: 65680
diff changeset
  2075
        assume nm: "N \<le> m \<and> N \<le> n"
def95e0bc529 Some new material. SIMPRULE STATUS for sum/prod.delta rules!
paulson <lp15@cam.ac.uk>
parents: 65680
diff changeset
  2076
        then have "dist (s m) (s n) < e" using N
def95e0bc529 Some new material. SIMPRULE STATUS for sum/prod.delta rules!
paulson <lp15@cam.ac.uk>
parents: 65680
diff changeset
  2077
          using dist_triangle_half_l[of "s m" "s N" "e" "s n"]
def95e0bc529 Some new material. SIMPRULE STATUS for sum/prod.delta rules!
paulson <lp15@cam.ac.uk>
parents: 65680
diff changeset
  2078
          by blast
def95e0bc529 Some new material. SIMPRULE STATUS for sum/prod.delta rules!
paulson <lp15@cam.ac.uk>
parents: 65680
diff changeset
  2079
      }
def95e0bc529 Some new material. SIMPRULE STATUS for sum/prod.delta rules!
paulson <lp15@cam.ac.uk>
parents: 65680
diff changeset
  2080
      then have "\<exists>N. \<forall>m n. N \<le> m \<and> N \<le> n \<longrightarrow> dist (s m) (s n) < e"
def95e0bc529 Some new material. SIMPRULE STATUS for sum/prod.delta rules!
paulson <lp15@cam.ac.uk>
parents: 65680
diff changeset
  2081
        by blast
def95e0bc529 Some new material. SIMPRULE STATUS for sum/prod.delta rules!
paulson <lp15@cam.ac.uk>
parents: 65680
diff changeset
  2082
    }
def95e0bc529 Some new material. SIMPRULE STATUS for sum/prod.delta rules!
paulson <lp15@cam.ac.uk>
parents: 65680
diff changeset
  2083
    then have ?lhs
def95e0bc529 Some new material. SIMPRULE STATUS for sum/prod.delta rules!
paulson <lp15@cam.ac.uk>
parents: 65680
diff changeset
  2084
      unfolding Cauchy_def by blast
def95e0bc529 Some new material. SIMPRULE STATUS for sum/prod.delta rules!
paulson <lp15@cam.ac.uk>
parents: 65680
diff changeset
  2085
  then show ?lhs
def95e0bc529 Some new material. SIMPRULE STATUS for sum/prod.delta rules!
paulson <lp15@cam.ac.uk>
parents: 65680
diff changeset
  2086
    by blast
def95e0bc529 Some new material. SIMPRULE STATUS for sum/prod.delta rules!
paulson <lp15@cam.ac.uk>
parents: 65680
diff changeset
  2087
qed
def95e0bc529 Some new material. SIMPRULE STATUS for sum/prod.delta rules!
paulson <lp15@cam.ac.uk>
parents: 65680
diff changeset
  2088
62101
26c0a70f78a3 add uniform spaces
hoelzl
parents: 62087
diff changeset
  2089
lemma (in metric_space) metric_CauchyI:
51531
f415febf4234 remove Metric_Spaces and move its content into Limits and Real_Vector_Spaces
hoelzl
parents: 51524
diff changeset
  2090
  "(\<And>e. 0 < e \<Longrightarrow> \<exists>M. \<forall>m\<ge>M. \<forall>n\<ge>M. dist (X m) (X n) < e) \<Longrightarrow> Cauchy X"
f415febf4234 remove Metric_Spaces and move its content into Limits and Real_Vector_Spaces
hoelzl
parents: 51524
diff changeset
  2091
  by (simp add: Cauchy_def)
f415febf4234 remove Metric_Spaces and move its content into Limits and Real_Vector_Spaces
hoelzl
parents: 51524
diff changeset
  2092
63545
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  2093
lemma (in metric_space) CauchyI':
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  2094
  "(\<And>e. 0 < e \<Longrightarrow> \<exists>M. \<forall>m\<ge>M. \<forall>n>m. dist (X m) (X n) < e) \<Longrightarrow> Cauchy X"
61531
ab2e862263e7 Rounding function, uniform limits, cotangent, binomial identities
eberlm
parents: 61524
diff changeset
  2095
  unfolding Cauchy_altdef by blast
ab2e862263e7 Rounding function, uniform limits, cotangent, binomial identities
eberlm
parents: 61524
diff changeset
  2096
62101
26c0a70f78a3 add uniform spaces
hoelzl
parents: 62087
diff changeset
  2097
lemma (in metric_space) metric_CauchyD:
51531
f415febf4234 remove Metric_Spaces and move its content into Limits and Real_Vector_Spaces
hoelzl
parents: 51524
diff changeset
  2098
  "Cauchy X \<Longrightarrow> 0 < e \<Longrightarrow> \<exists>M. \<forall>m\<ge>M. \<forall>n\<ge>M. dist (X m) (X n) < e"
f415febf4234 remove Metric_Spaces and move its content into Limits and Real_Vector_Spaces
hoelzl
parents: 51524
diff changeset
  2099
  by (simp add: Cauchy_def)
f415febf4234 remove Metric_Spaces and move its content into Limits and Real_Vector_Spaces
hoelzl
parents: 51524
diff changeset
  2100
62101
26c0a70f78a3 add uniform spaces
hoelzl
parents: 62087
diff changeset
  2101
lemma (in metric_space) metric_Cauchy_iff2:
51531
f415febf4234 remove Metric_Spaces and move its content into Limits and Real_Vector_Spaces
hoelzl
parents: 51524
diff changeset
  2102
  "Cauchy X = (\<forall>j. (\<exists>M. \<forall>m \<ge> M. \<forall>n \<ge> M. dist (X m) (X n) < inverse(real (Suc j))))"
68594
5b05ede597b8 de-applying
paulson <lp15@cam.ac.uk>
parents: 68532
diff changeset
  2103
  apply (auto simp add: Cauchy_def)
5b05ede597b8 de-applying
paulson <lp15@cam.ac.uk>
parents: 68532
diff changeset
  2104
  by (metis less_trans of_nat_Suc reals_Archimedean)
51531
f415febf4234 remove Metric_Spaces and move its content into Limits and Real_Vector_Spaces
hoelzl
parents: 51524
diff changeset
  2105
63545
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  2106
lemma Cauchy_iff2: "Cauchy X \<longleftrightarrow> (\<forall>j. (\<exists>M. \<forall>m \<ge> M. \<forall>n \<ge> M. \<bar>X m - X n\<bar> < inverse (real (Suc j))))"
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  2107
  by (simp only: metric_Cauchy_iff2 dist_real_def)
51531
f415febf4234 remove Metric_Spaces and move its content into Limits and Real_Vector_Spaces
hoelzl
parents: 51524
diff changeset
  2108
70723
4e39d87c9737 imported new material mostly due to Sébastien Gouëzel
paulson <lp15@cam.ac.uk>
parents: 70630
diff changeset
  2109
lemma lim_1_over_n [tendsto_intros]: "((\<lambda>n. 1 / of_nat n) \<longlongrightarrow> (0::'a::real_normed_field)) sequentially"
62101
26c0a70f78a3 add uniform spaces
hoelzl
parents: 62087
diff changeset
  2110
proof (subst lim_sequentially, intro allI impI exI)
70723
4e39d87c9737 imported new material mostly due to Sébastien Gouëzel
paulson <lp15@cam.ac.uk>
parents: 70630
diff changeset
  2111
  fix e::real and n
4e39d87c9737 imported new material mostly due to Sébastien Gouëzel
paulson <lp15@cam.ac.uk>
parents: 70630
diff changeset
  2112
  assume e: "e > 0" 
62101
26c0a70f78a3 add uniform spaces
hoelzl
parents: 62087
diff changeset
  2113
  have "inverse e < of_nat (nat \<lceil>inverse e + 1\<rceil>)" by linarith
70723
4e39d87c9737 imported new material mostly due to Sébastien Gouëzel
paulson <lp15@cam.ac.uk>
parents: 70630
diff changeset
  2114
  also assume "n \<ge> nat \<lceil>inverse e + 1\<rceil>"
63545
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  2115
  finally show "dist (1 / of_nat n :: 'a) 0 < e"
70817
dd675800469d dedicated fact collections for algebraic simplification rules potentially splitting goals
haftmann
parents: 70802
diff changeset
  2116
    using e by (simp add: field_split_simps norm_divide)
51531
f415febf4234 remove Metric_Spaces and move its content into Limits and Real_Vector_Spaces
hoelzl
parents: 51524
diff changeset
  2117
qed
f415febf4234 remove Metric_Spaces and move its content into Limits and Real_Vector_Spaces
hoelzl
parents: 51524
diff changeset
  2118
62101
26c0a70f78a3 add uniform spaces
hoelzl
parents: 62087
diff changeset
  2119
lemma (in metric_space) complete_def:
26c0a70f78a3 add uniform spaces
hoelzl
parents: 62087
diff changeset
  2120
  shows "complete S = (\<forall>f. (\<forall>n. f n \<in> S) \<and> Cauchy f \<longrightarrow> (\<exists>l\<in>S. f \<longlonglongrightarrow> l))"
26c0a70f78a3 add uniform spaces
hoelzl
parents: 62087
diff changeset
  2121
  unfolding complete_uniform
26c0a70f78a3 add uniform spaces
hoelzl
parents: 62087
diff changeset
  2122
proof safe
63545
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  2123
  fix f :: "nat \<Rightarrow> 'a"
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  2124
  assume f: "\<forall>n. f n \<in> S" "Cauchy f"
62101
26c0a70f78a3 add uniform spaces
hoelzl
parents: 62087
diff changeset
  2125
    and *: "\<forall>F\<le>principal S. F \<noteq> bot \<longrightarrow> cauchy_filter F \<longrightarrow> (\<exists>x\<in>S. F \<le> nhds x)"
26c0a70f78a3 add uniform spaces
hoelzl
parents: 62087
diff changeset
  2126
  then show "\<exists>l\<in>S. f \<longlonglongrightarrow> l"
26c0a70f78a3 add uniform spaces
hoelzl
parents: 62087
diff changeset
  2127
    unfolding filterlim_def using f
26c0a70f78a3 add uniform spaces
hoelzl
parents: 62087
diff changeset
  2128
    by (intro *[rule_format])
26c0a70f78a3 add uniform spaces
hoelzl
parents: 62087
diff changeset
  2129
       (auto simp: filtermap_sequentually_ne_bot le_principal eventually_filtermap Cauchy_uniform)
26c0a70f78a3 add uniform spaces
hoelzl
parents: 62087
diff changeset
  2130
next
63545
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  2131
  fix F :: "'a filter"
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  2132
  assume "F \<le> principal S" "F \<noteq> bot" "cauchy_filter F"
62101
26c0a70f78a3 add uniform spaces
hoelzl
parents: 62087
diff changeset
  2133
  assume seq: "\<forall>f. (\<forall>n. f n \<in> S) \<and> Cauchy f \<longrightarrow> (\<exists>l\<in>S. f \<longlonglongrightarrow> l)"
26c0a70f78a3 add uniform spaces
hoelzl
parents: 62087
diff changeset
  2134
63545
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  2135
  from \<open>F \<le> principal S\<close> \<open>cauchy_filter F\<close>
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  2136
  have FF_le: "F \<times>\<^sub>F F \<le> uniformity_on S"
62101
26c0a70f78a3 add uniform spaces
hoelzl
parents: 62087
diff changeset
  2137
    by (simp add: cauchy_filter_def principal_prod_principal[symmetric] prod_filter_mono)
26c0a70f78a3 add uniform spaces
hoelzl
parents: 62087
diff changeset
  2138
26c0a70f78a3 add uniform spaces
hoelzl
parents: 62087
diff changeset
  2139
  let ?P = "\<lambda>P e. eventually P F \<and> (\<forall>x. P x \<longrightarrow> x \<in> S) \<and> (\<forall>x y. P x \<longrightarrow> P y \<longrightarrow> dist x y < e)"
63545
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  2140
  have P: "\<exists>P. ?P P \<epsilon>" if "0 < \<epsilon>" for \<epsilon> :: real
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  2141
  proof -
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  2142
    from that have "eventually (\<lambda>(x, y). x \<in> S \<and> y \<in> S \<and> dist x y < \<epsilon>) (uniformity_on S)"
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  2143
      by (auto simp: eventually_inf_principal eventually_uniformity_metric)
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  2144
    from filter_leD[OF FF_le this] show ?thesis
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  2145
      by (auto simp: eventually_prod_same)
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  2146
  qed
62101
26c0a70f78a3 add uniform spaces
hoelzl
parents: 62087
diff changeset
  2147
26c0a70f78a3 add uniform spaces
hoelzl
parents: 62087
diff changeset
  2148
  have "\<exists>P. \<forall>n. ?P (P n) (1 / Suc n) \<and> P (Suc n) \<le> P n"
26c0a70f78a3 add uniform spaces
hoelzl
parents: 62087
diff changeset
  2149
  proof (rule dependent_nat_choice)
26c0a70f78a3 add uniform spaces
hoelzl
parents: 62087
diff changeset
  2150
    show "\<exists>P. ?P P (1 / Suc 0)"
26c0a70f78a3 add uniform spaces
hoelzl
parents: 62087
diff changeset
  2151
      using P[of 1] by auto
26c0a70f78a3 add uniform spaces
hoelzl
parents: 62087
diff changeset
  2152
  next
26c0a70f78a3 add uniform spaces
hoelzl
parents: 62087
diff changeset
  2153
    fix P n assume "?P P (1/Suc n)"
26c0a70f78a3 add uniform spaces
hoelzl
parents: 62087
diff changeset
  2154
    moreover obtain Q where "?P Q (1 / Suc (Suc n))"
26c0a70f78a3 add uniform spaces
hoelzl
parents: 62087
diff changeset
  2155
      using P[of "1/Suc (Suc n)"] by auto
26c0a70f78a3 add uniform spaces
hoelzl
parents: 62087
diff changeset
  2156
    ultimately show "\<exists>Q. ?P Q (1 / Suc (Suc n)) \<and> Q \<le> P"
26c0a70f78a3 add uniform spaces
hoelzl
parents: 62087
diff changeset
  2157
      by (intro exI[of _ "\<lambda>x. P x \<and> Q x"]) (auto simp: eventually_conj_iff)
26c0a70f78a3 add uniform spaces
hoelzl
parents: 62087
diff changeset
  2158
  qed
63545
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  2159
  then obtain P where P: "eventually (P n) F" "P n x \<Longrightarrow> x \<in> S"
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  2160
    "P n x \<Longrightarrow> P n y \<Longrightarrow> dist x y < 1 / Suc n" "P (Suc n) \<le> P n"
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  2161
    for n x y
62101
26c0a70f78a3 add uniform spaces
hoelzl
parents: 62087
diff changeset
  2162
    by metis
26c0a70f78a3 add uniform spaces
hoelzl
parents: 62087
diff changeset
  2163
  have "antimono P"
76055
8d56461f85ec moved antimono to Fun and redefined it as an abbreviation
desharna
parents: 74475
diff changeset
  2164
    using P(4) by (rule decseq_SucI)
62101
26c0a70f78a3 add uniform spaces
hoelzl
parents: 62087
diff changeset
  2165
63545
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  2166
  obtain X where X: "P n (X n)" for n
62101
26c0a70f78a3 add uniform spaces
hoelzl
parents: 62087
diff changeset
  2167
    using P(1)[THEN eventually_happens'[OF \<open>F \<noteq> bot\<close>]] by metis
26c0a70f78a3 add uniform spaces
hoelzl
parents: 62087
diff changeset
  2168
  have "Cauchy X"
26c0a70f78a3 add uniform spaces
hoelzl
parents: 62087
diff changeset
  2169
    unfolding metric_Cauchy_iff2 inverse_eq_divide
26c0a70f78a3 add uniform spaces
hoelzl
parents: 62087
diff changeset
  2170
  proof (intro exI allI impI)
63545
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  2171
    fix j m n :: nat
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  2172
    assume "j \<le> m" "j \<le> n"
62101
26c0a70f78a3 add uniform spaces
hoelzl
parents: 62087
diff changeset
  2173
    with \<open>antimono P\<close> X have "P j (X m)" "P j (X n)"
26c0a70f78a3 add uniform spaces
hoelzl
parents: 62087
diff changeset
  2174
      by (auto simp: antimono_def)
26c0a70f78a3 add uniform spaces
hoelzl
parents: 62087
diff changeset
  2175
    then show "dist (X m) (X n) < 1 / Suc j"
26c0a70f78a3 add uniform spaces
hoelzl
parents: 62087
diff changeset
  2176
      by (rule P)
26c0a70f78a3 add uniform spaces
hoelzl
parents: 62087
diff changeset
  2177
  qed
26c0a70f78a3 add uniform spaces
hoelzl
parents: 62087
diff changeset
  2178
  moreover have "\<forall>n. X n \<in> S"
26c0a70f78a3 add uniform spaces
hoelzl
parents: 62087
diff changeset
  2179
    using P(2) X by auto
26c0a70f78a3 add uniform spaces
hoelzl
parents: 62087
diff changeset
  2180
  ultimately obtain x where "X \<longlonglongrightarrow> x" "x \<in> S"
26c0a70f78a3 add uniform spaces
hoelzl
parents: 62087
diff changeset
  2181
    using seq by blast
26c0a70f78a3 add uniform spaces
hoelzl
parents: 62087
diff changeset
  2182
26c0a70f78a3 add uniform spaces
hoelzl
parents: 62087
diff changeset
  2183
  show "\<exists>x\<in>S. F \<le> nhds x"
26c0a70f78a3 add uniform spaces
hoelzl
parents: 62087
diff changeset
  2184
  proof (rule bexI)
63545
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  2185
    have "eventually (\<lambda>y. dist y x < e) F" if "0 < e" for e :: real
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  2186
    proof -
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  2187
      from that have "(\<lambda>n. 1 / Suc n :: real) \<longlonglongrightarrow> 0 \<and> 0 < e / 2"
71827
5e315defb038 the Uniq quantifier
paulson <lp15@cam.ac.uk>
parents: 71720
diff changeset
  2188
        by (subst filterlim_sequentially_Suc) (auto intro!: lim_1_over_n)
62101
26c0a70f78a3 add uniform spaces
hoelzl
parents: 62087
diff changeset
  2189
      then have "\<forall>\<^sub>F n in sequentially. dist (X n) x < e / 2 \<and> 1 / Suc n < e / 2"
63545
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  2190
        using \<open>X \<longlonglongrightarrow> x\<close>
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  2191
        unfolding tendsto_iff order_tendsto_iff[where 'a=real] eventually_conj_iff
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  2192
        by blast
62101
26c0a70f78a3 add uniform spaces
hoelzl
parents: 62087
diff changeset
  2193
      then obtain n where "dist x (X n) < e / 2" "1 / Suc n < e / 2"
26c0a70f78a3 add uniform spaces
hoelzl
parents: 62087
diff changeset
  2194
        by (auto simp: eventually_sequentially dist_commute)
63545
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  2195
      show ?thesis
62101
26c0a70f78a3 add uniform spaces
hoelzl
parents: 62087
diff changeset
  2196
        using \<open>eventually (P n) F\<close>
26c0a70f78a3 add uniform spaces
hoelzl
parents: 62087
diff changeset
  2197
      proof eventually_elim
63545
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  2198
        case (elim y)
62101
26c0a70f78a3 add uniform spaces
hoelzl
parents: 62087
diff changeset
  2199
        then have "dist y (X n) < 1 / Suc n"
26c0a70f78a3 add uniform spaces
hoelzl
parents: 62087
diff changeset
  2200
          by (intro X P)
26c0a70f78a3 add uniform spaces
hoelzl
parents: 62087
diff changeset
  2201
        also have "\<dots> < e / 2" by fact
26c0a70f78a3 add uniform spaces
hoelzl
parents: 62087
diff changeset
  2202
        finally show "dist y x < e"
26c0a70f78a3 add uniform spaces
hoelzl
parents: 62087
diff changeset
  2203
          by (rule dist_triangle_half_l) fact
63545
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  2204
      qed
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  2205
    qed
62101
26c0a70f78a3 add uniform spaces
hoelzl
parents: 62087
diff changeset
  2206
    then show "F \<le> nhds x"
26c0a70f78a3 add uniform spaces
hoelzl
parents: 62087
diff changeset
  2207
      unfolding nhds_metric le_INF_iff le_principal by auto
26c0a70f78a3 add uniform spaces
hoelzl
parents: 62087
diff changeset
  2208
  qed fact
26c0a70f78a3 add uniform spaces
hoelzl
parents: 62087
diff changeset
  2209
qed
26c0a70f78a3 add uniform spaces
hoelzl
parents: 62087
diff changeset
  2210
68594
5b05ede597b8 de-applying
paulson <lp15@cam.ac.uk>
parents: 68532
diff changeset
  2211
text\<open>apparently unused\<close>
62101
26c0a70f78a3 add uniform spaces
hoelzl
parents: 62087
diff changeset
  2212
lemma (in metric_space) totally_bounded_metric:
26c0a70f78a3 add uniform spaces
hoelzl
parents: 62087
diff changeset
  2213
  "totally_bounded S \<longleftrightarrow> (\<forall>e>0. \<exists>k. finite k \<and> S \<subseteq> (\<Union>x\<in>k. {y. dist x y < e}))"
68594
5b05ede597b8 de-applying
paulson <lp15@cam.ac.uk>
parents: 68532
diff changeset
  2214
  unfolding totally_bounded_def eventually_uniformity_metric imp_ex
62101
26c0a70f78a3 add uniform spaces
hoelzl
parents: 62087
diff changeset
  2215
  apply (subst all_comm)
68594
5b05ede597b8 de-applying
paulson <lp15@cam.ac.uk>
parents: 68532
diff changeset
  2216
  apply (intro arg_cong[where f=All] ext, safe)
62101
26c0a70f78a3 add uniform spaces
hoelzl
parents: 62087
diff changeset
  2217
  subgoal for e
26c0a70f78a3 add uniform spaces
hoelzl
parents: 62087
diff changeset
  2218
    apply (erule allE[of _ "\<lambda>(x, y). dist x y < e"])
26c0a70f78a3 add uniform spaces
hoelzl
parents: 62087
diff changeset
  2219
    apply auto
26c0a70f78a3 add uniform spaces
hoelzl
parents: 62087
diff changeset
  2220
    done
26c0a70f78a3 add uniform spaces
hoelzl
parents: 62087
diff changeset
  2221
  subgoal for e P k
26c0a70f78a3 add uniform spaces
hoelzl
parents: 62087
diff changeset
  2222
    apply (intro exI[of _ k])
26c0a70f78a3 add uniform spaces
hoelzl
parents: 62087
diff changeset
  2223
    apply (force simp: subset_eq)
26c0a70f78a3 add uniform spaces
hoelzl
parents: 62087
diff changeset
  2224
    done
26c0a70f78a3 add uniform spaces
hoelzl
parents: 62087
diff changeset
  2225
  done
51531
f415febf4234 remove Metric_Spaces and move its content into Limits and Real_Vector_Spaces
hoelzl
parents: 51524
diff changeset
  2226
63545
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  2227
74475
409ca22dee4c new notion of infinite sums in HOL-Analysis, ordering on complex numbers
eberlm <eberlm@in.tum.de>
parents: 74007
diff changeset
  2228
setup \<open>Sign.add_const_constraint (\<^const_name>\<open>dist\<close>, SOME \<^typ>\<open>'a::dist \<Rightarrow> 'a \<Rightarrow> real\<close>)\<close>
409ca22dee4c new notion of infinite sums in HOL-Analysis, ordering on complex numbers
eberlm <eberlm@in.tum.de>
parents: 74007
diff changeset
  2229
409ca22dee4c new notion of infinite sums in HOL-Analysis, ordering on complex numbers
eberlm <eberlm@in.tum.de>
parents: 74007
diff changeset
  2230
(* Contributed by Dominique Unruh *)
409ca22dee4c new notion of infinite sums in HOL-Analysis, ordering on complex numbers
eberlm <eberlm@in.tum.de>
parents: 74007
diff changeset
  2231
lemma cauchy_filter_metric:
409ca22dee4c new notion of infinite sums in HOL-Analysis, ordering on complex numbers
eberlm <eberlm@in.tum.de>
parents: 74007
diff changeset
  2232
  fixes F :: "'a::{uniformity_dist,uniform_space} filter"
409ca22dee4c new notion of infinite sums in HOL-Analysis, ordering on complex numbers
eberlm <eberlm@in.tum.de>
parents: 74007
diff changeset
  2233
  shows "cauchy_filter F \<longleftrightarrow> (\<forall>e. e>0 \<longrightarrow> (\<exists>P. eventually P F \<and> (\<forall>x y. P x \<and> P y \<longrightarrow> dist x y < e)))"
409ca22dee4c new notion of infinite sums in HOL-Analysis, ordering on complex numbers
eberlm <eberlm@in.tum.de>
parents: 74007
diff changeset
  2234
proof (unfold cauchy_filter_def le_filter_def, auto)
409ca22dee4c new notion of infinite sums in HOL-Analysis, ordering on complex numbers
eberlm <eberlm@in.tum.de>
parents: 74007
diff changeset
  2235
  assume assm: \<open>\<forall>e>0. \<exists>P. eventually P F \<and> (\<forall>x y. P x \<and> P y \<longrightarrow> dist x y < e)\<close>
409ca22dee4c new notion of infinite sums in HOL-Analysis, ordering on complex numbers
eberlm <eberlm@in.tum.de>
parents: 74007
diff changeset
  2236
  then show \<open>eventually P uniformity \<Longrightarrow> eventually P (F \<times>\<^sub>F F)\<close> for P
409ca22dee4c new notion of infinite sums in HOL-Analysis, ordering on complex numbers
eberlm <eberlm@in.tum.de>
parents: 74007
diff changeset
  2237
    apply (auto simp: eventually_uniformity_metric)
409ca22dee4c new notion of infinite sums in HOL-Analysis, ordering on complex numbers
eberlm <eberlm@in.tum.de>
parents: 74007
diff changeset
  2238
    using eventually_prod_same by blast
409ca22dee4c new notion of infinite sums in HOL-Analysis, ordering on complex numbers
eberlm <eberlm@in.tum.de>
parents: 74007
diff changeset
  2239
next
409ca22dee4c new notion of infinite sums in HOL-Analysis, ordering on complex numbers
eberlm <eberlm@in.tum.de>
parents: 74007
diff changeset
  2240
  fix e :: real
409ca22dee4c new notion of infinite sums in HOL-Analysis, ordering on complex numbers
eberlm <eberlm@in.tum.de>
parents: 74007
diff changeset
  2241
  assume \<open>e > 0\<close>
409ca22dee4c new notion of infinite sums in HOL-Analysis, ordering on complex numbers
eberlm <eberlm@in.tum.de>
parents: 74007
diff changeset
  2242
  assume asm: \<open>\<forall>P. eventually P uniformity \<longrightarrow> eventually P (F \<times>\<^sub>F F)\<close>
409ca22dee4c new notion of infinite sums in HOL-Analysis, ordering on complex numbers
eberlm <eberlm@in.tum.de>
parents: 74007
diff changeset
  2243
409ca22dee4c new notion of infinite sums in HOL-Analysis, ordering on complex numbers
eberlm <eberlm@in.tum.de>
parents: 74007
diff changeset
  2244
  define P where \<open>P \<equiv> \<lambda>(x,y :: 'a). dist x y < e\<close>
409ca22dee4c new notion of infinite sums in HOL-Analysis, ordering on complex numbers
eberlm <eberlm@in.tum.de>
parents: 74007
diff changeset
  2245
  with asm \<open>e > 0\<close> have \<open>eventually P (F \<times>\<^sub>F F)\<close>
409ca22dee4c new notion of infinite sums in HOL-Analysis, ordering on complex numbers
eberlm <eberlm@in.tum.de>
parents: 74007
diff changeset
  2246
    by (metis case_prod_conv eventually_uniformity_metric)
409ca22dee4c new notion of infinite sums in HOL-Analysis, ordering on complex numbers
eberlm <eberlm@in.tum.de>
parents: 74007
diff changeset
  2247
  then
409ca22dee4c new notion of infinite sums in HOL-Analysis, ordering on complex numbers
eberlm <eberlm@in.tum.de>
parents: 74007
diff changeset
  2248
  show \<open>\<exists>P. eventually P F \<and> (\<forall>x y. P x \<and> P y \<longrightarrow> dist x y < e)\<close>
409ca22dee4c new notion of infinite sums in HOL-Analysis, ordering on complex numbers
eberlm <eberlm@in.tum.de>
parents: 74007
diff changeset
  2249
    by (auto simp add: eventually_prod_same P_def)
409ca22dee4c new notion of infinite sums in HOL-Analysis, ordering on complex numbers
eberlm <eberlm@in.tum.de>
parents: 74007
diff changeset
  2250
qed
409ca22dee4c new notion of infinite sums in HOL-Analysis, ordering on complex numbers
eberlm <eberlm@in.tum.de>
parents: 74007
diff changeset
  2251
409ca22dee4c new notion of infinite sums in HOL-Analysis, ordering on complex numbers
eberlm <eberlm@in.tum.de>
parents: 74007
diff changeset
  2252
(* Contributed by Dominique Unruh *)
409ca22dee4c new notion of infinite sums in HOL-Analysis, ordering on complex numbers
eberlm <eberlm@in.tum.de>
parents: 74007
diff changeset
  2253
lemma cauchy_filter_metric_filtermap:
409ca22dee4c new notion of infinite sums in HOL-Analysis, ordering on complex numbers
eberlm <eberlm@in.tum.de>
parents: 74007
diff changeset
  2254
  fixes f :: "'a \<Rightarrow> 'b::{uniformity_dist,uniform_space}"
409ca22dee4c new notion of infinite sums in HOL-Analysis, ordering on complex numbers
eberlm <eberlm@in.tum.de>
parents: 74007
diff changeset
  2255
  shows "cauchy_filter (filtermap f F) \<longleftrightarrow> (\<forall>e. e>0 \<longrightarrow> (\<exists>P. eventually P F \<and> (\<forall>x y. P x \<and> P y \<longrightarrow> dist (f x) (f y) < e)))"
409ca22dee4c new notion of infinite sums in HOL-Analysis, ordering on complex numbers
eberlm <eberlm@in.tum.de>
parents: 74007
diff changeset
  2256
proof (subst cauchy_filter_metric, intro iffI allI impI)
409ca22dee4c new notion of infinite sums in HOL-Analysis, ordering on complex numbers
eberlm <eberlm@in.tum.de>
parents: 74007
diff changeset
  2257
  assume \<open>\<forall>e>0. \<exists>P. eventually P (filtermap f F) \<and> (\<forall>x y. P x \<and> P y \<longrightarrow> dist x y < e)\<close>
409ca22dee4c new notion of infinite sums in HOL-Analysis, ordering on complex numbers
eberlm <eberlm@in.tum.de>
parents: 74007
diff changeset
  2258
  then show \<open>e>0 \<Longrightarrow> \<exists>P. eventually P F \<and> (\<forall>x y. P x \<and> P y \<longrightarrow> dist (f x) (f y) < e)\<close> for e
409ca22dee4c new notion of infinite sums in HOL-Analysis, ordering on complex numbers
eberlm <eberlm@in.tum.de>
parents: 74007
diff changeset
  2259
    unfolding eventually_filtermap by blast
409ca22dee4c new notion of infinite sums in HOL-Analysis, ordering on complex numbers
eberlm <eberlm@in.tum.de>
parents: 74007
diff changeset
  2260
next
409ca22dee4c new notion of infinite sums in HOL-Analysis, ordering on complex numbers
eberlm <eberlm@in.tum.de>
parents: 74007
diff changeset
  2261
  assume asm: \<open>\<forall>e>0. \<exists>P. eventually P F \<and> (\<forall>x y. P x \<and> P y \<longrightarrow> dist (f x) (f y) < e)\<close>
409ca22dee4c new notion of infinite sums in HOL-Analysis, ordering on complex numbers
eberlm <eberlm@in.tum.de>
parents: 74007
diff changeset
  2262
  fix e::real assume \<open>e > 0\<close>
409ca22dee4c new notion of infinite sums in HOL-Analysis, ordering on complex numbers
eberlm <eberlm@in.tum.de>
parents: 74007
diff changeset
  2263
  then obtain P where \<open>eventually P F\<close> and PPe: \<open>P x \<and> P y \<longrightarrow> dist (f x) (f y) < e\<close> for x y
409ca22dee4c new notion of infinite sums in HOL-Analysis, ordering on complex numbers
eberlm <eberlm@in.tum.de>
parents: 74007
diff changeset
  2264
    using asm by blast
409ca22dee4c new notion of infinite sums in HOL-Analysis, ordering on complex numbers
eberlm <eberlm@in.tum.de>
parents: 74007
diff changeset
  2265
409ca22dee4c new notion of infinite sums in HOL-Analysis, ordering on complex numbers
eberlm <eberlm@in.tum.de>
parents: 74007
diff changeset
  2266
  show \<open>\<exists>P. eventually P (filtermap f F) \<and> (\<forall>x y. P x \<and> P y \<longrightarrow> dist x y < e)\<close>
409ca22dee4c new notion of infinite sums in HOL-Analysis, ordering on complex numbers
eberlm <eberlm@in.tum.de>
parents: 74007
diff changeset
  2267
    apply (rule exI[of _ \<open>\<lambda>x. \<exists>y. P y \<and> x = f y\<close>])
409ca22dee4c new notion of infinite sums in HOL-Analysis, ordering on complex numbers
eberlm <eberlm@in.tum.de>
parents: 74007
diff changeset
  2268
    using PPe \<open>eventually P F\<close> apply (auto simp: eventually_filtermap)
409ca22dee4c new notion of infinite sums in HOL-Analysis, ordering on complex numbers
eberlm <eberlm@in.tum.de>
parents: 74007
diff changeset
  2269
    by (smt (verit, ccfv_SIG) eventually_elim2)
409ca22dee4c new notion of infinite sums in HOL-Analysis, ordering on complex numbers
eberlm <eberlm@in.tum.de>
parents: 74007
diff changeset
  2270
qed
409ca22dee4c new notion of infinite sums in HOL-Analysis, ordering on complex numbers
eberlm <eberlm@in.tum.de>
parents: 74007
diff changeset
  2271
409ca22dee4c new notion of infinite sums in HOL-Analysis, ordering on complex numbers
eberlm <eberlm@in.tum.de>
parents: 74007
diff changeset
  2272
setup \<open>Sign.add_const_constraint (\<^const_name>\<open>dist\<close>, SOME \<^typ>\<open>'a::metric_space \<Rightarrow> 'a \<Rightarrow> real\<close>)\<close>
409ca22dee4c new notion of infinite sums in HOL-Analysis, ordering on complex numbers
eberlm <eberlm@in.tum.de>
parents: 74007
diff changeset
  2273
60758
d8d85a8172b5 isabelle update_cartouches;
wenzelm
parents: 60307
diff changeset
  2274
subsubsection \<open>Cauchy Sequences are Convergent\<close>
51531
f415febf4234 remove Metric_Spaces and move its content into Limits and Real_Vector_Spaces
hoelzl
parents: 51524
diff changeset
  2275
62101
26c0a70f78a3 add uniform spaces
hoelzl
parents: 62087
diff changeset
  2276
(* TODO: update to uniform_space *)
51531
f415febf4234 remove Metric_Spaces and move its content into Limits and Real_Vector_Spaces
hoelzl
parents: 51524
diff changeset
  2277
class complete_space = metric_space +
f415febf4234 remove Metric_Spaces and move its content into Limits and Real_Vector_Spaces
hoelzl
parents: 51524
diff changeset
  2278
  assumes Cauchy_convergent: "Cauchy X \<Longrightarrow> convergent X"
f415febf4234 remove Metric_Spaces and move its content into Limits and Real_Vector_Spaces
hoelzl
parents: 51524
diff changeset
  2279
63545
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  2280
lemma Cauchy_convergent_iff: "Cauchy X \<longleftrightarrow> convergent X"
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  2281
  for X :: "nat \<Rightarrow> 'a::complete_space"
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  2282
  by (blast intro: Cauchy_convergent convergent_Cauchy)
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  2283
67727
ce3e87a51488 moved Lipschitz continuity from AFP/Ordinary_Differential_Equations and AFP/Gromov_Hyperbolicity; moved lemmas from AFP/Gromov_Hyperbolicity/Library_Complements
immler
parents: 67706
diff changeset
  2284
text \<open>To prove that a Cauchy sequence converges, it suffices to show that a subsequence converges.\<close>
ce3e87a51488 moved Lipschitz continuity from AFP/Ordinary_Differential_Equations and AFP/Gromov_Hyperbolicity; moved lemmas from AFP/Gromov_Hyperbolicity/Library_Complements
immler
parents: 67706
diff changeset
  2285
ce3e87a51488 moved Lipschitz continuity from AFP/Ordinary_Differential_Equations and AFP/Gromov_Hyperbolicity; moved lemmas from AFP/Gromov_Hyperbolicity/Library_Complements
immler
parents: 67706
diff changeset
  2286
lemma Cauchy_converges_subseq:
ce3e87a51488 moved Lipschitz continuity from AFP/Ordinary_Differential_Equations and AFP/Gromov_Hyperbolicity; moved lemmas from AFP/Gromov_Hyperbolicity/Library_Complements
immler
parents: 67706
diff changeset
  2287
  fixes u::"nat \<Rightarrow> 'a::metric_space"
ce3e87a51488 moved Lipschitz continuity from AFP/Ordinary_Differential_Equations and AFP/Gromov_Hyperbolicity; moved lemmas from AFP/Gromov_Hyperbolicity/Library_Complements
immler
parents: 67706
diff changeset
  2288
  assumes "Cauchy u"
ce3e87a51488 moved Lipschitz continuity from AFP/Ordinary_Differential_Equations and AFP/Gromov_Hyperbolicity; moved lemmas from AFP/Gromov_Hyperbolicity/Library_Complements
immler
parents: 67706
diff changeset
  2289
    "strict_mono r"
68594
5b05ede597b8 de-applying
paulson <lp15@cam.ac.uk>
parents: 68532
diff changeset
  2290
    "(u \<circ> r) \<longlonglongrightarrow> l"
67727
ce3e87a51488 moved Lipschitz continuity from AFP/Ordinary_Differential_Equations and AFP/Gromov_Hyperbolicity; moved lemmas from AFP/Gromov_Hyperbolicity/Library_Complements
immler
parents: 67706
diff changeset
  2291
  shows "u \<longlonglongrightarrow> l"
ce3e87a51488 moved Lipschitz continuity from AFP/Ordinary_Differential_Equations and AFP/Gromov_Hyperbolicity; moved lemmas from AFP/Gromov_Hyperbolicity/Library_Complements
immler
parents: 67706
diff changeset
  2292
proof -
ce3e87a51488 moved Lipschitz continuity from AFP/Ordinary_Differential_Equations and AFP/Gromov_Hyperbolicity; moved lemmas from AFP/Gromov_Hyperbolicity/Library_Complements
immler
parents: 67706
diff changeset
  2293
  have *: "eventually (\<lambda>n. dist (u n) l < e) sequentially" if "e > 0" for e
ce3e87a51488 moved Lipschitz continuity from AFP/Ordinary_Differential_Equations and AFP/Gromov_Hyperbolicity; moved lemmas from AFP/Gromov_Hyperbolicity/Library_Complements
immler
parents: 67706
diff changeset
  2294
  proof -
ce3e87a51488 moved Lipschitz continuity from AFP/Ordinary_Differential_Equations and AFP/Gromov_Hyperbolicity; moved lemmas from AFP/Gromov_Hyperbolicity/Library_Complements
immler
parents: 67706
diff changeset
  2295
    have "e/2 > 0" using that by auto
ce3e87a51488 moved Lipschitz continuity from AFP/Ordinary_Differential_Equations and AFP/Gromov_Hyperbolicity; moved lemmas from AFP/Gromov_Hyperbolicity/Library_Complements
immler
parents: 67706
diff changeset
  2296
    then obtain N1 where N1: "\<And>m n. m \<ge> N1 \<Longrightarrow> n \<ge> N1 \<Longrightarrow> dist (u m) (u n) < e/2"
ce3e87a51488 moved Lipschitz continuity from AFP/Ordinary_Differential_Equations and AFP/Gromov_Hyperbolicity; moved lemmas from AFP/Gromov_Hyperbolicity/Library_Complements
immler
parents: 67706
diff changeset
  2297
      using \<open>Cauchy u\<close> unfolding Cauchy_def by blast
68594
5b05ede597b8 de-applying
paulson <lp15@cam.ac.uk>
parents: 68532
diff changeset
  2298
    obtain N2 where N2: "\<And>n. n \<ge> N2 \<Longrightarrow> dist ((u \<circ> r) n) l < e / 2"
5b05ede597b8 de-applying
paulson <lp15@cam.ac.uk>
parents: 68532
diff changeset
  2299
      using order_tendstoD(2)[OF iffD1[OF tendsto_dist_iff \<open>(u \<circ> r) \<longlonglongrightarrow> l\<close>] \<open>e/2 > 0\<close>]
67727
ce3e87a51488 moved Lipschitz continuity from AFP/Ordinary_Differential_Equations and AFP/Gromov_Hyperbolicity; moved lemmas from AFP/Gromov_Hyperbolicity/Library_Complements
immler
parents: 67706
diff changeset
  2300
      unfolding eventually_sequentially by auto
ce3e87a51488 moved Lipschitz continuity from AFP/Ordinary_Differential_Equations and AFP/Gromov_Hyperbolicity; moved lemmas from AFP/Gromov_Hyperbolicity/Library_Complements
immler
parents: 67706
diff changeset
  2301
    have "dist (u n) l < e" if "n \<ge> max N1 N2" for n
ce3e87a51488 moved Lipschitz continuity from AFP/Ordinary_Differential_Equations and AFP/Gromov_Hyperbolicity; moved lemmas from AFP/Gromov_Hyperbolicity/Library_Complements
immler
parents: 67706
diff changeset
  2302
    proof -
68594
5b05ede597b8 de-applying
paulson <lp15@cam.ac.uk>
parents: 68532
diff changeset
  2303
      have "dist (u n) l \<le> dist (u n) ((u \<circ> r) n) + dist ((u \<circ> r) n) l"
67727
ce3e87a51488 moved Lipschitz continuity from AFP/Ordinary_Differential_Equations and AFP/Gromov_Hyperbolicity; moved lemmas from AFP/Gromov_Hyperbolicity/Library_Complements
immler
parents: 67706
diff changeset
  2304
        by (rule dist_triangle)
68594
5b05ede597b8 de-applying
paulson <lp15@cam.ac.uk>
parents: 68532
diff changeset
  2305
      also have "\<dots> < e/2 + e/2"
71720
1d8a1f727879 removed more applys
paulson <lp15@cam.ac.uk>
parents: 71544
diff changeset
  2306
      proof (intro add_strict_mono)
1d8a1f727879 removed more applys
paulson <lp15@cam.ac.uk>
parents: 71544
diff changeset
  2307
        show "dist (u n) ((u \<circ> r) n) < e / 2"
1d8a1f727879 removed more applys
paulson <lp15@cam.ac.uk>
parents: 71544
diff changeset
  2308
          using N1[of n "r n"] N2[of n] that unfolding comp_def
1d8a1f727879 removed more applys
paulson <lp15@cam.ac.uk>
parents: 71544
diff changeset
  2309
          by (meson assms(2) le_trans max.bounded_iff strict_mono_imp_increasing)
1d8a1f727879 removed more applys
paulson <lp15@cam.ac.uk>
parents: 71544
diff changeset
  2310
        show "dist ((u \<circ> r) n) l < e / 2"
1d8a1f727879 removed more applys
paulson <lp15@cam.ac.uk>
parents: 71544
diff changeset
  2311
          using N2 that by auto
1d8a1f727879 removed more applys
paulson <lp15@cam.ac.uk>
parents: 71544
diff changeset
  2312
      qed
67727
ce3e87a51488 moved Lipschitz continuity from AFP/Ordinary_Differential_Equations and AFP/Gromov_Hyperbolicity; moved lemmas from AFP/Gromov_Hyperbolicity/Library_Complements
immler
parents: 67706
diff changeset
  2313
      finally show ?thesis by simp
ce3e87a51488 moved Lipschitz continuity from AFP/Ordinary_Differential_Equations and AFP/Gromov_Hyperbolicity; moved lemmas from AFP/Gromov_Hyperbolicity/Library_Complements
immler
parents: 67706
diff changeset
  2314
    qed 
ce3e87a51488 moved Lipschitz continuity from AFP/Ordinary_Differential_Equations and AFP/Gromov_Hyperbolicity; moved lemmas from AFP/Gromov_Hyperbolicity/Library_Complements
immler
parents: 67706
diff changeset
  2315
    then show ?thesis unfolding eventually_sequentially by blast
ce3e87a51488 moved Lipschitz continuity from AFP/Ordinary_Differential_Equations and AFP/Gromov_Hyperbolicity; moved lemmas from AFP/Gromov_Hyperbolicity/Library_Complements
immler
parents: 67706
diff changeset
  2316
  qed
ce3e87a51488 moved Lipschitz continuity from AFP/Ordinary_Differential_Equations and AFP/Gromov_Hyperbolicity; moved lemmas from AFP/Gromov_Hyperbolicity/Library_Complements
immler
parents: 67706
diff changeset
  2317
  have "(\<lambda>n. dist (u n) l) \<longlonglongrightarrow> 0"
71720
1d8a1f727879 removed more applys
paulson <lp15@cam.ac.uk>
parents: 71544
diff changeset
  2318
    by (simp add: less_le_trans * order_tendstoI)
67727
ce3e87a51488 moved Lipschitz continuity from AFP/Ordinary_Differential_Equations and AFP/Gromov_Hyperbolicity; moved lemmas from AFP/Gromov_Hyperbolicity/Library_Complements
immler
parents: 67706
diff changeset
  2319
  then show ?thesis using tendsto_dist_iff by auto
ce3e87a51488 moved Lipschitz continuity from AFP/Ordinary_Differential_Equations and AFP/Gromov_Hyperbolicity; moved lemmas from AFP/Gromov_Hyperbolicity/Library_Complements
immler
parents: 67706
diff changeset
  2320
qed
51531
f415febf4234 remove Metric_Spaces and move its content into Limits and Real_Vector_Spaces
hoelzl
parents: 51524
diff changeset
  2321
60758
d8d85a8172b5 isabelle update_cartouches;
wenzelm
parents: 60307
diff changeset
  2322
subsection \<open>The set of real numbers is a complete metric space\<close>
51531
f415febf4234 remove Metric_Spaces and move its content into Limits and Real_Vector_Spaces
hoelzl
parents: 51524
diff changeset
  2323
60758
d8d85a8172b5 isabelle update_cartouches;
wenzelm
parents: 60307
diff changeset
  2324
text \<open>
63545
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  2325
  Proof that Cauchy sequences converge based on the one from
63680
6e1e8b5abbfa more symbols;
wenzelm
parents: 63556
diff changeset
  2326
  \<^url>\<open>http://pirate.shu.edu/~wachsmut/ira/numseq/proofs/cauconv.html\<close>
60758
d8d85a8172b5 isabelle update_cartouches;
wenzelm
parents: 60307
diff changeset
  2327
\<close>
51531
f415febf4234 remove Metric_Spaces and move its content into Limits and Real_Vector_Spaces
hoelzl
parents: 51524
diff changeset
  2328
60758
d8d85a8172b5 isabelle update_cartouches;
wenzelm
parents: 60307
diff changeset
  2329
text \<open>
69593
3dda49e08b9d isabelle update -u control_cartouches;
wenzelm
parents: 69513
diff changeset
  2330
  If sequence \<^term>\<open>X\<close> is Cauchy, then its limit is the lub of
3dda49e08b9d isabelle update -u control_cartouches;
wenzelm
parents: 69513
diff changeset
  2331
  \<^term>\<open>{r::real. \<exists>N. \<forall>n\<ge>N. r < X n}\<close>
60758
d8d85a8172b5 isabelle update_cartouches;
wenzelm
parents: 60307
diff changeset
  2332
\<close>
51531
f415febf4234 remove Metric_Spaces and move its content into Limits and Real_Vector_Spaces
hoelzl
parents: 51524
diff changeset
  2333
lemma increasing_LIMSEQ:
f415febf4234 remove Metric_Spaces and move its content into Limits and Real_Vector_Spaces
hoelzl
parents: 51524
diff changeset
  2334
  fixes f :: "nat \<Rightarrow> real"
f415febf4234 remove Metric_Spaces and move its content into Limits and Real_Vector_Spaces
hoelzl
parents: 51524
diff changeset
  2335
  assumes inc: "\<And>n. f n \<le> f (Suc n)"
63545
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  2336
    and bdd: "\<And>n. f n \<le> l"
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  2337
    and en: "\<And>e. 0 < e \<Longrightarrow> \<exists>n. l \<le> f n + e"
61969
e01015e49041 more symbols;
wenzelm
parents: 61942
diff changeset
  2338
  shows "f \<longlonglongrightarrow> l"
51531
f415febf4234 remove Metric_Spaces and move its content into Limits and Real_Vector_Spaces
hoelzl
parents: 51524
diff changeset
  2339
proof (rule increasing_tendsto)
63545
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  2340
  fix x
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  2341
  assume "x < l"
51531
f415febf4234 remove Metric_Spaces and move its content into Limits and Real_Vector_Spaces
hoelzl
parents: 51524
diff changeset
  2342
  with dense[of 0 "l - x"] obtain e where "0 < e" "e < l - x"
f415febf4234 remove Metric_Spaces and move its content into Limits and Real_Vector_Spaces
hoelzl
parents: 51524
diff changeset
  2343
    by auto
60758
d8d85a8172b5 isabelle update_cartouches;
wenzelm
parents: 60307
diff changeset
  2344
  from en[OF \<open>0 < e\<close>] obtain n where "l - e \<le> f n"
51531
f415febf4234 remove Metric_Spaces and move its content into Limits and Real_Vector_Spaces
hoelzl
parents: 51524
diff changeset
  2345
    by (auto simp: field_simps)
63545
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  2346
  with \<open>e < l - x\<close> \<open>0 < e\<close> have "x < f n"
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  2347
    by simp
51531
f415febf4234 remove Metric_Spaces and move its content into Limits and Real_Vector_Spaces
hoelzl
parents: 51524
diff changeset
  2348
  with incseq_SucI[of f, OF inc] show "eventually (\<lambda>n. x < f n) sequentially"
f415febf4234 remove Metric_Spaces and move its content into Limits and Real_Vector_Spaces
hoelzl
parents: 51524
diff changeset
  2349
    by (auto simp: eventually_sequentially incseq_def intro: less_le_trans)
63545
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  2350
qed (use bdd in auto)
51531
f415febf4234 remove Metric_Spaces and move its content into Limits and Real_Vector_Spaces
hoelzl
parents: 51524
diff changeset
  2351
f415febf4234 remove Metric_Spaces and move its content into Limits and Real_Vector_Spaces
hoelzl
parents: 51524
diff changeset
  2352
lemma real_Cauchy_convergent:
f415febf4234 remove Metric_Spaces and move its content into Limits and Real_Vector_Spaces
hoelzl
parents: 51524
diff changeset
  2353
  fixes X :: "nat \<Rightarrow> real"
f415febf4234 remove Metric_Spaces and move its content into Limits and Real_Vector_Spaces
hoelzl
parents: 51524
diff changeset
  2354
  assumes X: "Cauchy X"
f415febf4234 remove Metric_Spaces and move its content into Limits and Real_Vector_Spaces
hoelzl
parents: 51524
diff changeset
  2355
  shows "convergent X"
f415febf4234 remove Metric_Spaces and move its content into Limits and Real_Vector_Spaces
hoelzl
parents: 51524
diff changeset
  2356
proof -
63040
eb4ddd18d635 eliminated old 'def';
wenzelm
parents: 62948
diff changeset
  2357
  define S :: "real set" where "S = {x. \<exists>N. \<forall>n\<ge>N. x < X n}"
63545
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  2358
  then have mem_S: "\<And>N x. \<forall>n\<ge>N. x < X n \<Longrightarrow> x \<in> S"
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  2359
    by auto
51531
f415febf4234 remove Metric_Spaces and move its content into Limits and Real_Vector_Spaces
hoelzl
parents: 51524
diff changeset
  2360
63545
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  2361
  have bound_isUb: "y \<le> x" if N: "\<forall>n\<ge>N. X n < x" and "y \<in> S" for N and x y :: real
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  2362
  proof -
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  2363
    from that have "\<exists>M. \<forall>n\<ge>M. y < X n"
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  2364
      by (simp add: S_def)
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  2365
    then obtain M where "\<forall>n\<ge>M. y < X n" ..
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  2366
    then have "y < X (max M N)" by simp
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  2367
    also have "\<dots> < x" using N by simp
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  2368
    finally show ?thesis by (rule order_less_imp_le)
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  2369
  qed
51531
f415febf4234 remove Metric_Spaces and move its content into Limits and Real_Vector_Spaces
hoelzl
parents: 51524
diff changeset
  2370
f415febf4234 remove Metric_Spaces and move its content into Limits and Real_Vector_Spaces
hoelzl
parents: 51524
diff changeset
  2371
  obtain N where "\<forall>m\<ge>N. \<forall>n\<ge>N. dist (X m) (X n) < 1"
f415febf4234 remove Metric_Spaces and move its content into Limits and Real_Vector_Spaces
hoelzl
parents: 51524
diff changeset
  2372
    using X[THEN metric_CauchyD, OF zero_less_one] by auto
63545
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  2373
  then have N: "\<forall>n\<ge>N. dist (X n) (X N) < 1" by simp
54263
c4159fe6fa46 move Lubs from HOL to HOL-Library (replaced by conditionally complete lattices)
hoelzl
parents: 54230
diff changeset
  2374
  have [simp]: "S \<noteq> {}"
c4159fe6fa46 move Lubs from HOL to HOL-Library (replaced by conditionally complete lattices)
hoelzl
parents: 54230
diff changeset
  2375
  proof (intro exI ex_in_conv[THEN iffD1])
51531
f415febf4234 remove Metric_Spaces and move its content into Limits and Real_Vector_Spaces
hoelzl
parents: 51524
diff changeset
  2376
    from N have "\<forall>n\<ge>N. X N - 1 < X n"
f415febf4234 remove Metric_Spaces and move its content into Limits and Real_Vector_Spaces
hoelzl
parents: 51524
diff changeset
  2377
      by (simp add: abs_diff_less_iff dist_real_def)
63545
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  2378
    then show "X N - 1 \<in> S" by (rule mem_S)
51531
f415febf4234 remove Metric_Spaces and move its content into Limits and Real_Vector_Spaces
hoelzl
parents: 51524
diff changeset
  2379
  qed
54263
c4159fe6fa46 move Lubs from HOL to HOL-Library (replaced by conditionally complete lattices)
hoelzl
parents: 54230
diff changeset
  2380
  have [simp]: "bdd_above S"
51531
f415febf4234 remove Metric_Spaces and move its content into Limits and Real_Vector_Spaces
hoelzl
parents: 51524
diff changeset
  2381
  proof
f415febf4234 remove Metric_Spaces and move its content into Limits and Real_Vector_Spaces
hoelzl
parents: 51524
diff changeset
  2382
    from N have "\<forall>n\<ge>N. X n < X N + 1"
f415febf4234 remove Metric_Spaces and move its content into Limits and Real_Vector_Spaces
hoelzl
parents: 51524
diff changeset
  2383
      by (simp add: abs_diff_less_iff dist_real_def)
63545
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  2384
    then show "\<And>s. s \<in> S \<Longrightarrow>  s \<le> X N + 1"
51531
f415febf4234 remove Metric_Spaces and move its content into Limits and Real_Vector_Spaces
hoelzl
parents: 51524
diff changeset
  2385
      by (rule bound_isUb)
f415febf4234 remove Metric_Spaces and move its content into Limits and Real_Vector_Spaces
hoelzl
parents: 51524
diff changeset
  2386
  qed
61969
e01015e49041 more symbols;
wenzelm
parents: 61942
diff changeset
  2387
  have "X \<longlonglongrightarrow> Sup S"
51531
f415febf4234 remove Metric_Spaces and move its content into Limits and Real_Vector_Spaces
hoelzl
parents: 51524
diff changeset
  2388
  proof (rule metric_LIMSEQ_I)
63545
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  2389
    fix r :: real
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  2390
    assume "0 < r"
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  2391
    then have r: "0 < r/2" by simp
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  2392
    obtain N where "\<forall>n\<ge>N. \<forall>m\<ge>N. dist (X n) (X m) < r/2"
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  2393
      using metric_CauchyD [OF X r] by auto
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  2394
    then have "\<forall>n\<ge>N. dist (X n) (X N) < r/2" by simp
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  2395
    then have N: "\<forall>n\<ge>N. X N - r/2 < X n \<and> X n < X N + r/2"
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  2396
      by (simp only: dist_real_def abs_diff_less_iff)
51531
f415febf4234 remove Metric_Spaces and move its content into Limits and Real_Vector_Spaces
hoelzl
parents: 51524
diff changeset
  2397
63545
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  2398
    from N have "\<forall>n\<ge>N. X N - r/2 < X n" by blast
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  2399
    then have "X N - r/2 \<in> S" by (rule mem_S)
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  2400
    then have 1: "X N - r/2 \<le> Sup S" by (simp add: cSup_upper)
51531
f415febf4234 remove Metric_Spaces and move its content into Limits and Real_Vector_Spaces
hoelzl
parents: 51524
diff changeset
  2401
63545
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  2402
    from N have "\<forall>n\<ge>N. X n < X N + r/2" by blast
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  2403
    from bound_isUb[OF this]
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  2404
    have 2: "Sup S \<le> X N + r/2"
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  2405
      by (intro cSup_least) simp_all
51531
f415febf4234 remove Metric_Spaces and move its content into Limits and Real_Vector_Spaces
hoelzl
parents: 51524
diff changeset
  2406
63545
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  2407
    show "\<exists>N. \<forall>n\<ge>N. dist (X n) (Sup S) < r"
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  2408
    proof (intro exI allI impI)
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  2409
      fix n
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  2410
      assume n: "N \<le> n"
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  2411
      from N n have "X n < X N + r/2" and "X N - r/2 < X n"
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  2412
        by simp_all
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  2413
      then show "dist (X n) (Sup S) < r" using 1 2
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  2414
        by (simp add: abs_diff_less_iff dist_real_def)
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  2415
    qed
51531
f415febf4234 remove Metric_Spaces and move its content into Limits and Real_Vector_Spaces
hoelzl
parents: 51524
diff changeset
  2416
  qed
63545
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  2417
  then show ?thesis by (auto simp: convergent_def)
51531
f415febf4234 remove Metric_Spaces and move its content into Limits and Real_Vector_Spaces
hoelzl
parents: 51524
diff changeset
  2418
qed
f415febf4234 remove Metric_Spaces and move its content into Limits and Real_Vector_Spaces
hoelzl
parents: 51524
diff changeset
  2419
f415febf4234 remove Metric_Spaces and move its content into Limits and Real_Vector_Spaces
hoelzl
parents: 51524
diff changeset
  2420
instance real :: complete_space
f415febf4234 remove Metric_Spaces and move its content into Limits and Real_Vector_Spaces
hoelzl
parents: 51524
diff changeset
  2421
  by intro_classes (rule real_Cauchy_convergent)
f415febf4234 remove Metric_Spaces and move its content into Limits and Real_Vector_Spaces
hoelzl
parents: 51524
diff changeset
  2422
f415febf4234 remove Metric_Spaces and move its content into Limits and Real_Vector_Spaces
hoelzl
parents: 51524
diff changeset
  2423
class banach = real_normed_vector + complete_space
f415febf4234 remove Metric_Spaces and move its content into Limits and Real_Vector_Spaces
hoelzl
parents: 51524
diff changeset
  2424
61169
4de9ff3ea29a tuned proofs -- less legacy;
wenzelm
parents: 61070
diff changeset
  2425
instance real :: banach ..
51531
f415febf4234 remove Metric_Spaces and move its content into Limits and Real_Vector_Spaces
hoelzl
parents: 51524
diff changeset
  2426
f415febf4234 remove Metric_Spaces and move its content into Limits and Real_Vector_Spaces
hoelzl
parents: 51524
diff changeset
  2427
lemma tendsto_at_topI_sequentially:
57275
0ddb5b755cdc moved lemmas from the proof of the Central Limit Theorem by Jeremy Avigad and Luke Serafin
hoelzl
parents: 56889
diff changeset
  2428
  fixes f :: "real \<Rightarrow> 'b::first_countable_topology"
61969
e01015e49041 more symbols;
wenzelm
parents: 61942
diff changeset
  2429
  assumes *: "\<And>X. filterlim X at_top sequentially \<Longrightarrow> (\<lambda>n. f (X n)) \<longlonglongrightarrow> y"
61973
0c7e865fa7cb more symbols;
wenzelm
parents: 61969
diff changeset
  2430
  shows "(f \<longlongrightarrow> y) at_top"
57448
159e45728ceb more equalities of topological filters; strengthen dependent_nat_choice; tuned a couple of proofs
hoelzl
parents: 57418
diff changeset
  2431
proof -
63545
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  2432
  obtain A where A: "decseq A" "open (A n)" "y \<in> A n" "nhds y = (INF n. principal (A n))" for n
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  2433
    by (rule nhds_countable[of y]) (rule that)
57275
0ddb5b755cdc moved lemmas from the proof of the Central Limit Theorem by Jeremy Avigad and Luke Serafin
hoelzl
parents: 56889
diff changeset
  2434
57448
159e45728ceb more equalities of topological filters; strengthen dependent_nat_choice; tuned a couple of proofs
hoelzl
parents: 57418
diff changeset
  2435
  have "\<forall>m. \<exists>k. \<forall>x\<ge>k. f x \<in> A m"
159e45728ceb more equalities of topological filters; strengthen dependent_nat_choice; tuned a couple of proofs
hoelzl
parents: 57418
diff changeset
  2436
  proof (rule ccontr)
159e45728ceb more equalities of topological filters; strengthen dependent_nat_choice; tuned a couple of proofs
hoelzl
parents: 57418
diff changeset
  2437
    assume "\<not> (\<forall>m. \<exists>k. \<forall>x\<ge>k. f x \<in> A m)"
159e45728ceb more equalities of topological filters; strengthen dependent_nat_choice; tuned a couple of proofs
hoelzl
parents: 57418
diff changeset
  2438
    then obtain m where "\<And>k. \<exists>x\<ge>k. f x \<notin> A m"
159e45728ceb more equalities of topological filters; strengthen dependent_nat_choice; tuned a couple of proofs
hoelzl
parents: 57418
diff changeset
  2439
      by auto
159e45728ceb more equalities of topological filters; strengthen dependent_nat_choice; tuned a couple of proofs
hoelzl
parents: 57418
diff changeset
  2440
    then have "\<exists>X. \<forall>n. (f (X n) \<notin> A m) \<and> max n (X n) + 1 \<le> X (Suc n)"
159e45728ceb more equalities of topological filters; strengthen dependent_nat_choice; tuned a couple of proofs
hoelzl
parents: 57418
diff changeset
  2441
      by (intro dependent_nat_choice) (auto simp del: max.bounded_iff)
159e45728ceb more equalities of topological filters; strengthen dependent_nat_choice; tuned a couple of proofs
hoelzl
parents: 57418
diff changeset
  2442
    then obtain X where X: "\<And>n. f (X n) \<notin> A m" "\<And>n. max n (X n) + 1 \<le> X (Suc n)"
159e45728ceb more equalities of topological filters; strengthen dependent_nat_choice; tuned a couple of proofs
hoelzl
parents: 57418
diff changeset
  2443
      by auto
63545
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  2444
    have "1 \<le> n \<Longrightarrow> real n \<le> X n" for n
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  2445
      using X[of "n - 1"] by auto
57448
159e45728ceb more equalities of topological filters; strengthen dependent_nat_choice; tuned a couple of proofs
hoelzl
parents: 57418
diff changeset
  2446
    then have "filterlim X at_top sequentially"
159e45728ceb more equalities of topological filters; strengthen dependent_nat_choice; tuned a couple of proofs
hoelzl
parents: 57418
diff changeset
  2447
      by (force intro!: filterlim_at_top_mono[OF filterlim_real_sequentially]
63545
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  2448
          simp: eventually_sequentially)
57448
159e45728ceb more equalities of topological filters; strengthen dependent_nat_choice; tuned a couple of proofs
hoelzl
parents: 57418
diff changeset
  2449
    from topological_tendstoD[OF *[OF this] A(2, 3), of m] X(1) show False
159e45728ceb more equalities of topological filters; strengthen dependent_nat_choice; tuned a couple of proofs
hoelzl
parents: 57418
diff changeset
  2450
      by auto
57275
0ddb5b755cdc moved lemmas from the proof of the Central Limit Theorem by Jeremy Avigad and Luke Serafin
hoelzl
parents: 56889
diff changeset
  2451
  qed
63545
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  2452
  then obtain k where "k m \<le> x \<Longrightarrow> f x \<in> A m" for m x
57448
159e45728ceb more equalities of topological filters; strengthen dependent_nat_choice; tuned a couple of proofs
hoelzl
parents: 57418
diff changeset
  2453
    by metis
159e45728ceb more equalities of topological filters; strengthen dependent_nat_choice; tuned a couple of proofs
hoelzl
parents: 57418
diff changeset
  2454
  then show ?thesis
63545
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  2455
    unfolding at_top_def A by (intro filterlim_base[where i=k]) auto
57275
0ddb5b755cdc moved lemmas from the proof of the Central Limit Theorem by Jeremy Avigad and Luke Serafin
hoelzl
parents: 56889
diff changeset
  2456
qed
0ddb5b755cdc moved lemmas from the proof of the Central Limit Theorem by Jeremy Avigad and Luke Serafin
hoelzl
parents: 56889
diff changeset
  2457
0ddb5b755cdc moved lemmas from the proof of the Central Limit Theorem by Jeremy Avigad and Luke Serafin
hoelzl
parents: 56889
diff changeset
  2458
lemma tendsto_at_topI_sequentially_real:
51531
f415febf4234 remove Metric_Spaces and move its content into Limits and Real_Vector_Spaces
hoelzl
parents: 51524
diff changeset
  2459
  fixes f :: "real \<Rightarrow> real"
f415febf4234 remove Metric_Spaces and move its content into Limits and Real_Vector_Spaces
hoelzl
parents: 51524
diff changeset
  2460
  assumes mono: "mono f"
63545
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  2461
    and limseq: "(\<lambda>n. f (real n)) \<longlonglongrightarrow> y"
61973
0c7e865fa7cb more symbols;
wenzelm
parents: 61969
diff changeset
  2462
  shows "(f \<longlongrightarrow> y) at_top"
51531
f415febf4234 remove Metric_Spaces and move its content into Limits and Real_Vector_Spaces
hoelzl
parents: 51524
diff changeset
  2463
proof (rule tendstoI)
63545
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  2464
  fix e :: real
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  2465
  assume "0 < e"
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  2466
  with limseq obtain N :: nat where N: "N \<le> n \<Longrightarrow> \<bar>f (real n) - y\<bar> < e" for n
60017
b785d6d06430 Overloading of ln and powr, but "approximation" no longer works for powr. Code generation also fails due to type ambiguity in scala.
paulson <lp15@cam.ac.uk>
parents: 59867
diff changeset
  2467
    by (auto simp: lim_sequentially dist_real_def)
63545
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  2468
  have le: "f x \<le> y" for x :: real
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  2469
  proof -
53381
355a4cac5440 tuned proofs -- less guessing;
wenzelm
parents: 53374
diff changeset
  2470
    obtain n where "x \<le> real_of_nat n"
62623
dbc62f86a1a9 rationalisation of theorem names esp about "real Archimedian" etc.
paulson <lp15@cam.ac.uk>
parents: 62533
diff changeset
  2471
      using real_arch_simple[of x] ..
51531
f415febf4234 remove Metric_Spaces and move its content into Limits and Real_Vector_Spaces
hoelzl
parents: 51524
diff changeset
  2472
    note monoD[OF mono this]
f415febf4234 remove Metric_Spaces and move its content into Limits and Real_Vector_Spaces
hoelzl
parents: 51524
diff changeset
  2473
    also have "f (real_of_nat n) \<le> y"
61649
268d88ec9087 Tweaks for "real": Removal of [iff] status for some lemmas, adding [simp] for others. Plus fixes.
paulson <lp15@cam.ac.uk>
parents: 61609
diff changeset
  2474
      by (rule LIMSEQ_le_const[OF limseq]) (auto intro!: exI[of _ n] monoD[OF mono])
63545
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  2475
    finally show ?thesis .
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  2476
  qed
51531
f415febf4234 remove Metric_Spaces and move its content into Limits and Real_Vector_Spaces
hoelzl
parents: 51524
diff changeset
  2477
  have "eventually (\<lambda>x. real N \<le> x) at_top"
f415febf4234 remove Metric_Spaces and move its content into Limits and Real_Vector_Spaces
hoelzl
parents: 51524
diff changeset
  2478
    by (rule eventually_ge_at_top)
f415febf4234 remove Metric_Spaces and move its content into Limits and Real_Vector_Spaces
hoelzl
parents: 51524
diff changeset
  2479
  then show "eventually (\<lambda>x. dist (f x) y < e) at_top"
f415febf4234 remove Metric_Spaces and move its content into Limits and Real_Vector_Spaces
hoelzl
parents: 51524
diff changeset
  2480
  proof eventually_elim
63545
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  2481
    case (elim x)
51531
f415febf4234 remove Metric_Spaces and move its content into Limits and Real_Vector_Spaces
hoelzl
parents: 51524
diff changeset
  2482
    with N[of N] le have "y - f (real N) < e" by auto
63545
c2f69dac0353 misc tuning and modernization;
wenzelm
parents: 63469
diff changeset
  2483
    moreover note monoD[OF mono elim]
51531
f415febf4234 remove Metric_Spaces and move its content into Limits and Real_Vector_Spaces
hoelzl
parents: 51524
diff changeset
  2484
    ultimately show "dist (f x) y < e"
f415febf4234 remove Metric_Spaces and move its content into Limits and Real_Vector_Spaces
hoelzl
parents: 51524
diff changeset
  2485
      using le[of x] by (auto simp: dist_real_def field_simps)
f415febf4234 remove Metric_Spaces and move its content into Limits and Real_Vector_Spaces
hoelzl
parents: 51524
diff changeset
  2486
  qed
f415febf4234 remove Metric_Spaces and move its content into Limits and Real_Vector_Spaces
hoelzl
parents: 51524
diff changeset
  2487
qed
f415febf4234 remove Metric_Spaces and move its content into Limits and Real_Vector_Spaces
hoelzl
parents: 51524
diff changeset
  2488
20504
6342e872e71d formalization of vector spaces and algebras over the real numbers
huffman
parents:
diff changeset
  2489
end