| author | haftmann | 
| Tue, 08 Jun 2010 16:37:22 +0200 | |
| changeset 37388 | 793618618f78 | 
| parent 36977 | 71c8973a604b | 
| child 37884 | 314a88278715 | 
| permissions | -rw-r--r-- | 
| 
35050
 
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1  | 
(* Title: HOL/Groups.thy  | 
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2  | 
Author: Gertrud Bauer, Steven Obua, Lawrence C Paulson, Markus Wenzel, Jeremy Avigad  | 
| 14738 | 3  | 
*)  | 
4  | 
||
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35050
 
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5  | 
header {* Groups, also combined with orderings *}
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35050
 
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7  | 
theory Groups  | 
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8  | 
imports Orderings  | 
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uses ("~~/src/Provers/Arith/abel_cancel.ML")
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begin  | 
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subsection {* Fact collections *}
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13  | 
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14  | 
ML {*
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structure Ac_Simps = Named_Thms(  | 
16  | 
val name = "ac_simps"  | 
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val description = "associativity and commutativity simplification rules"  | 
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18  | 
)  | 
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*}  | 
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21  | 
setup Ac_Simps.setup  | 
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23  | 
text{* The rewrites accumulated in @{text algebra_simps} deal with the
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24  | 
classical algebraic structures of groups, rings and family. They simplify  | 
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25  | 
terms by multiplying everything out (in case of a ring) and bringing sums and  | 
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26  | 
products into a canonical form (by ordered rewriting). As a result it decides  | 
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27  | 
group and ring equalities but also helps with inequalities.  | 
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28  | 
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29  | 
Of course it also works for fields, but it knows nothing about multiplicative  | 
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30  | 
inverses or division. This is catered for by @{text field_simps}. *}
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31  | 
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ML {*
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33  | 
structure Algebra_Simps = Named_Thms(  | 
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val name = "algebra_simps"  | 
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val description = "algebra simplification rules"  | 
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36  | 
)  | 
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37  | 
*}  | 
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38  | 
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39  | 
setup Algebra_Simps.setup  | 
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40  | 
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41  | 
text{* Lemmas @{text field_simps} multiply with denominators in (in)equations
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42  | 
if they can be proved to be non-zero (for equations) or positive/negative  | 
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43  | 
(for inequations). Can be too aggressive and is therefore separate from the  | 
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44  | 
more benign @{text algebra_simps}. *}
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45  | 
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46  | 
ML {*
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47  | 
structure Field_Simps = Named_Thms(  | 
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val name = "field_simps"  | 
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49  | 
val description = "algebra simplification rules for fields"  | 
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50  | 
)  | 
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51  | 
*}  | 
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52  | 
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53  | 
setup Field_Simps.setup  | 
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54  | 
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55  | 
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56  | 
subsection {* Abstract structures *}
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57  | 
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58  | 
text {*
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59  | 
These locales provide basic structures for interpretation into  | 
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60  | 
bigger structures; extensions require careful thinking, otherwise  | 
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61  | 
undesired effects may occur due to interpretation.  | 
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62  | 
*}  | 
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63  | 
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64  | 
locale semigroup =  | 
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65  | 
fixes f :: "'a \<Rightarrow> 'a \<Rightarrow> 'a" (infixl "*" 70)  | 
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66  | 
assumes assoc [ac_simps]: "a * b * c = a * (b * c)"  | 
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67  | 
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68  | 
locale abel_semigroup = semigroup +  | 
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69  | 
assumes commute [ac_simps]: "a * b = b * a"  | 
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70  | 
begin  | 
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71  | 
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72  | 
lemma left_commute [ac_simps]:  | 
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73  | 
"b * (a * c) = a * (b * c)"  | 
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74  | 
proof -  | 
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75  | 
have "(b * a) * c = (a * b) * c"  | 
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76  | 
by (simp only: commute)  | 
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77  | 
then show ?thesis  | 
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78  | 
by (simp only: assoc)  | 
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79  | 
qed  | 
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80  | 
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81  | 
end  | 
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82  | 
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locale monoid = semigroup +  | 
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84  | 
  fixes z :: 'a ("1")
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85  | 
assumes left_neutral [simp]: "1 * a = a"  | 
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86  | 
assumes right_neutral [simp]: "a * 1 = a"  | 
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locale comm_monoid = abel_semigroup +  | 
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  fixes z :: 'a ("1")
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90  | 
assumes comm_neutral: "a * 1 = a"  | 
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sublocale comm_monoid < monoid proof  | 
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qed (simp_all add: commute comm_neutral)  | 
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96  | 
subsection {* Generic operations *}
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97  | 
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98  | 
class zero =  | 
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99  | 
  fixes zero :: 'a  ("0")
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100  | 
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101  | 
class one =  | 
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102  | 
  fixes one  :: 'a  ("1")
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103  | 
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104  | 
hide_const (open) zero one  | 
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105  | 
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106  | 
syntax  | 
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107  | 
  "_index1"  :: index    ("\<^sub>1")
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108  | 
translations  | 
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109  | 
(index) "\<^sub>1" => (index) "\<^bsub>\<struct>\<^esub>"  | 
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110  | 
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111  | 
lemma Let_0 [simp]: "Let 0 f = f 0"  | 
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112  | 
unfolding Let_def ..  | 
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113  | 
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114  | 
lemma Let_1 [simp]: "Let 1 f = f 1"  | 
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115  | 
unfolding Let_def ..  | 
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116  | 
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117  | 
setup {*
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118  | 
Reorient_Proc.add  | 
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119  | 
    (fn Const(@{const_name Groups.zero}, _) => true
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120  | 
      | Const(@{const_name Groups.one}, _) => true
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121  | 
| _ => false)  | 
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122  | 
*}  | 
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123  | 
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124  | 
simproc_setup reorient_zero ("0 = x") = Reorient_Proc.proc
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125  | 
simproc_setup reorient_one ("1 = x") = Reorient_Proc.proc
 | 
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126  | 
|
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127  | 
typed_print_translation {*
 | 
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128  | 
let  | 
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129  | 
fun tr' c = (c, fn show_sorts => fn T => fn ts =>  | 
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130  | 
if (not o null) ts orelse T = dummyT  | 
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131  | 
orelse not (! show_types) andalso can Term.dest_Type T  | 
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132  | 
then raise Match  | 
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133  | 
else Syntax.const Syntax.constrainC $ Syntax.const c $ Syntax.term_of_typ show_sorts T);  | 
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134  | 
in map tr' [@{const_syntax Groups.one}, @{const_syntax Groups.zero}] end;
 | 
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135  | 
*} -- {* show types that are presumably too general *}
 | 
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136  | 
|
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137  | 
class plus =  | 
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138  | 
fixes plus :: "'a \<Rightarrow> 'a \<Rightarrow> 'a" (infixl "+" 65)  | 
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139  | 
|
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140  | 
class minus =  | 
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141  | 
fixes minus :: "'a \<Rightarrow> 'a \<Rightarrow> 'a" (infixl "-" 65)  | 
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142  | 
|
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143  | 
class uminus =  | 
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144  | 
  fixes uminus :: "'a \<Rightarrow> 'a"  ("- _" [81] 80)
 | 
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145  | 
|
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146  | 
class times =  | 
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147  | 
fixes times :: "'a \<Rightarrow> 'a \<Rightarrow> 'a" (infixl "*" 70)  | 
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148  | 
|
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149  | 
use "~~/src/Provers/Arith/abel_cancel.ML"  | 
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150  | 
|
| 
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151  | 
|
| 23085 | 152  | 
subsection {* Semigroups and Monoids *}
 | 
| 14738 | 153  | 
|
| 22390 | 154  | 
class semigroup_add = plus +  | 
| 
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155  | 
assumes add_assoc [algebra_simps, field_simps]: "(a + b) + c = a + (b + c)"  | 
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156  | 
|
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157  | 
sublocale semigroup_add < add!: semigroup plus proof  | 
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158  | 
qed (fact add_assoc)  | 
| 22390 | 159  | 
|
160  | 
class ab_semigroup_add = semigroup_add +  | 
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161  | 
assumes add_commute [algebra_simps, field_simps]: "a + b = b + a"  | 
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162  | 
|
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163  | 
sublocale ab_semigroup_add < add!: abel_semigroup plus proof  | 
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164  | 
qed (fact add_commute)  | 
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165  | 
|
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166  | 
context ab_semigroup_add  | 
| 25062 | 167  | 
begin  | 
| 14738 | 168  | 
|
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169  | 
lemmas add_left_commute [algebra_simps, field_simps] = add.left_commute  | 
| 25062 | 170  | 
|
171  | 
theorems add_ac = add_assoc add_commute add_left_commute  | 
|
172  | 
||
173  | 
end  | 
|
| 14738 | 174  | 
|
175  | 
theorems add_ac = add_assoc add_commute add_left_commute  | 
|
176  | 
||
| 22390 | 177  | 
class semigroup_mult = times +  | 
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178  | 
assumes mult_assoc [algebra_simps, field_simps]: "(a * b) * c = a * (b * c)"  | 
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179  | 
|
| 
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180  | 
sublocale semigroup_mult < mult!: semigroup times proof  | 
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181  | 
qed (fact mult_assoc)  | 
| 14738 | 182  | 
|
| 22390 | 183  | 
class ab_semigroup_mult = semigroup_mult +  | 
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184  | 
assumes mult_commute [algebra_simps, field_simps]: "a * b = b * a"  | 
| 
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185  | 
|
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186  | 
sublocale ab_semigroup_mult < mult!: abel_semigroup times proof  | 
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187  | 
qed (fact mult_commute)  | 
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188  | 
|
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189  | 
context ab_semigroup_mult  | 
| 23181 | 190  | 
begin  | 
| 14738 | 191  | 
|
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192  | 
lemmas mult_left_commute [algebra_simps, field_simps] = mult.left_commute  | 
| 25062 | 193  | 
|
194  | 
theorems mult_ac = mult_assoc mult_commute mult_left_commute  | 
|
| 23181 | 195  | 
|
196  | 
end  | 
|
| 14738 | 197  | 
|
198  | 
theorems mult_ac = mult_assoc mult_commute mult_left_commute  | 
|
199  | 
||
| 23085 | 200  | 
class monoid_add = zero + semigroup_add +  | 
| 35720 | 201  | 
assumes add_0_left: "0 + a = a"  | 
202  | 
and add_0_right: "a + 0 = a"  | 
|
203  | 
||
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204  | 
sublocale monoid_add < add!: monoid plus 0 proof  | 
| 35720 | 205  | 
qed (fact add_0_left add_0_right)+  | 
| 23085 | 206  | 
|
| 26071 | 207  | 
lemma zero_reorient: "0 = x \<longleftrightarrow> x = 0"  | 
| 29667 | 208  | 
by (rule eq_commute)  | 
| 26071 | 209  | 
|
| 22390 | 210  | 
class comm_monoid_add = zero + ab_semigroup_add +  | 
| 25062 | 211  | 
assumes add_0: "0 + a = a"  | 
| 23085 | 212  | 
|
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213  | 
sublocale comm_monoid_add < add!: comm_monoid plus 0 proof  | 
| 35720 | 214  | 
qed (insert add_0, simp add: ac_simps)  | 
| 25062 | 215  | 
|
| 35720 | 216  | 
subclass (in comm_monoid_add) monoid_add proof  | 
| 
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217  | 
qed (fact add.left_neutral add.right_neutral)+  | 
| 14738 | 218  | 
|
| 22390 | 219  | 
class monoid_mult = one + semigroup_mult +  | 
| 35720 | 220  | 
assumes mult_1_left: "1 * a = a"  | 
221  | 
and mult_1_right: "a * 1 = a"  | 
|
222  | 
||
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223  | 
sublocale monoid_mult < mult!: monoid times 1 proof  | 
| 35720 | 224  | 
qed (fact mult_1_left mult_1_right)+  | 
| 14738 | 225  | 
|
| 26071 | 226  | 
lemma one_reorient: "1 = x \<longleftrightarrow> x = 1"  | 
| 29667 | 227  | 
by (rule eq_commute)  | 
| 26071 | 228  | 
|
| 22390 | 229  | 
class comm_monoid_mult = one + ab_semigroup_mult +  | 
| 25062 | 230  | 
assumes mult_1: "1 * a = a"  | 
| 14738 | 231  | 
|
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232  | 
sublocale comm_monoid_mult < mult!: comm_monoid times 1 proof  | 
| 35720 | 233  | 
qed (insert mult_1, simp add: ac_simps)  | 
| 25062 | 234  | 
|
| 35720 | 235  | 
subclass (in comm_monoid_mult) monoid_mult proof  | 
| 
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236  | 
qed (fact mult.left_neutral mult.right_neutral)+  | 
| 14738 | 237  | 
|
| 22390 | 238  | 
class cancel_semigroup_add = semigroup_add +  | 
| 25062 | 239  | 
assumes add_left_imp_eq: "a + b = a + c \<Longrightarrow> b = c"  | 
240  | 
assumes add_right_imp_eq: "b + a = c + a \<Longrightarrow> b = c"  | 
|
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241  | 
begin  | 
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242  | 
|
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243  | 
lemma add_left_cancel [simp]:  | 
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244  | 
"a + b = a + c \<longleftrightarrow> b = c"  | 
| 29667 | 245  | 
by (blast dest: add_left_imp_eq)  | 
| 
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246  | 
|
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247  | 
lemma add_right_cancel [simp]:  | 
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248  | 
"b + a = c + a \<longleftrightarrow> b = c"  | 
| 29667 | 249  | 
by (blast dest: add_right_imp_eq)  | 
| 
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250  | 
|
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251  | 
end  | 
| 14738 | 252  | 
|
| 22390 | 253  | 
class cancel_ab_semigroup_add = ab_semigroup_add +  | 
| 25062 | 254  | 
assumes add_imp_eq: "a + b = a + c \<Longrightarrow> b = c"  | 
| 25267 | 255  | 
begin  | 
| 14738 | 256  | 
|
| 25267 | 257  | 
subclass cancel_semigroup_add  | 
| 28823 | 258  | 
proof  | 
| 22390 | 259  | 
fix a b c :: 'a  | 
260  | 
assume "a + b = a + c"  | 
|
261  | 
then show "b = c" by (rule add_imp_eq)  | 
|
262  | 
next  | 
|
| 14738 | 263  | 
fix a b c :: 'a  | 
264  | 
assume "b + a = c + a"  | 
|
| 22390 | 265  | 
then have "a + b = a + c" by (simp only: add_commute)  | 
266  | 
then show "b = c" by (rule add_imp_eq)  | 
|
| 14738 | 267  | 
qed  | 
268  | 
||
| 25267 | 269  | 
end  | 
270  | 
||
| 29904 | 271  | 
class cancel_comm_monoid_add = cancel_ab_semigroup_add + comm_monoid_add  | 
272  | 
||
273  | 
||
| 23085 | 274  | 
subsection {* Groups *}
 | 
275  | 
||
| 25762 | 276  | 
class group_add = minus + uminus + monoid_add +  | 
| 25062 | 277  | 
assumes left_minus [simp]: "- a + a = 0"  | 
278  | 
assumes diff_minus: "a - b = a + (- b)"  | 
|
279  | 
begin  | 
|
| 23085 | 280  | 
|
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281  | 
lemma minus_unique:  | 
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282  | 
assumes "a + b = 0" shows "- a = b"  | 
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283  | 
proof -  | 
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284  | 
have "- a = - a + (a + b)" using assms by simp  | 
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285  | 
also have "\<dots> = b" by (simp add: add_assoc [symmetric])  | 
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286  | 
finally show ?thesis .  | 
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287  | 
qed  | 
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288  | 
|
| 
 
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289  | 
lemmas equals_zero_I = minus_unique (* legacy name *)  | 
| 14738 | 290  | 
|
| 25062 | 291  | 
lemma minus_zero [simp]: "- 0 = 0"  | 
| 14738 | 292  | 
proof -  | 
| 
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293  | 
have "0 + 0 = 0" by (rule add_0_right)  | 
| 
 
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294  | 
thus "- 0 = 0" by (rule minus_unique)  | 
| 14738 | 295  | 
qed  | 
296  | 
||
| 25062 | 297  | 
lemma minus_minus [simp]: "- (- a) = a"  | 
| 23085 | 298  | 
proof -  | 
| 
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299  | 
have "- a + a = 0" by (rule left_minus)  | 
| 
 
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 | 
300  | 
thus "- (- a) = a" by (rule minus_unique)  | 
| 23085 | 301  | 
qed  | 
| 14738 | 302  | 
|
| 25062 | 303  | 
lemma right_minus [simp]: "a + - a = 0"  | 
| 14738 | 304  | 
proof -  | 
| 25062 | 305  | 
have "a + - a = - (- a) + - a" by simp  | 
306  | 
also have "\<dots> = 0" by (rule left_minus)  | 
|
| 14738 | 307  | 
finally show ?thesis .  | 
308  | 
qed  | 
|
309  | 
||
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310  | 
lemma minus_add_cancel: "- a + (a + b) = b"  | 
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311  | 
by (simp add: add_assoc [symmetric])  | 
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312  | 
|
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313  | 
lemma add_minus_cancel: "a + (- a + b) = b"  | 
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314  | 
by (simp add: add_assoc [symmetric])  | 
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315  | 
|
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316  | 
lemma minus_add: "- (a + b) = - b + - a"  | 
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317  | 
proof -  | 
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318  | 
have "(a + b) + (- b + - a) = 0"  | 
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319  | 
by (simp add: add_assoc add_minus_cancel)  | 
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320  | 
thus "- (a + b) = - b + - a"  | 
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321  | 
by (rule minus_unique)  | 
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322  | 
qed  | 
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323  | 
|
| 25062 | 324  | 
lemma right_minus_eq: "a - b = 0 \<longleftrightarrow> a = b"  | 
| 14738 | 325  | 
proof  | 
| 23085 | 326  | 
assume "a - b = 0"  | 
327  | 
have "a = (a - b) + b" by (simp add:diff_minus add_assoc)  | 
|
328  | 
also have "\<dots> = b" using `a - b = 0` by simp  | 
|
329  | 
finally show "a = b" .  | 
|
| 14738 | 330  | 
next  | 
| 23085 | 331  | 
assume "a = b" thus "a - b = 0" by (simp add: diff_minus)  | 
| 14738 | 332  | 
qed  | 
333  | 
||
| 25062 | 334  | 
lemma diff_self [simp]: "a - a = 0"  | 
| 29667 | 335  | 
by (simp add: diff_minus)  | 
| 14738 | 336  | 
|
| 25062 | 337  | 
lemma diff_0 [simp]: "0 - a = - a"  | 
| 29667 | 338  | 
by (simp add: diff_minus)  | 
| 14738 | 339  | 
|
| 25062 | 340  | 
lemma diff_0_right [simp]: "a - 0 = a"  | 
| 29667 | 341  | 
by (simp add: diff_minus)  | 
| 14738 | 342  | 
|
| 25062 | 343  | 
lemma diff_minus_eq_add [simp]: "a - - b = a + b"  | 
| 29667 | 344  | 
by (simp add: diff_minus)  | 
| 14738 | 345  | 
|
| 25062 | 346  | 
lemma neg_equal_iff_equal [simp]:  | 
347  | 
"- a = - b \<longleftrightarrow> a = b"  | 
|
| 14738 | 348  | 
proof  | 
349  | 
assume "- a = - b"  | 
|
| 29667 | 350  | 
hence "- (- a) = - (- b)" by simp  | 
| 25062 | 351  | 
thus "a = b" by simp  | 
| 14738 | 352  | 
next  | 
| 25062 | 353  | 
assume "a = b"  | 
354  | 
thus "- a = - b" by simp  | 
|
| 14738 | 355  | 
qed  | 
356  | 
||
| 25062 | 357  | 
lemma neg_equal_0_iff_equal [simp]:  | 
358  | 
"- a = 0 \<longleftrightarrow> a = 0"  | 
|
| 29667 | 359  | 
by (subst neg_equal_iff_equal [symmetric], simp)  | 
| 14738 | 360  | 
|
| 25062 | 361  | 
lemma neg_0_equal_iff_equal [simp]:  | 
362  | 
"0 = - a \<longleftrightarrow> 0 = a"  | 
|
| 29667 | 363  | 
by (subst neg_equal_iff_equal [symmetric], simp)  | 
| 14738 | 364  | 
|
365  | 
text{*The next two equations can make the simplifier loop!*}
 | 
|
366  | 
||
| 25062 | 367  | 
lemma equation_minus_iff:  | 
368  | 
"a = - b \<longleftrightarrow> b = - a"  | 
|
| 14738 | 369  | 
proof -  | 
| 25062 | 370  | 
have "- (- a) = - b \<longleftrightarrow> - a = b" by (rule neg_equal_iff_equal)  | 
371  | 
thus ?thesis by (simp add: eq_commute)  | 
|
372  | 
qed  | 
|
373  | 
||
374  | 
lemma minus_equation_iff:  | 
|
375  | 
"- a = b \<longleftrightarrow> - b = a"  | 
|
376  | 
proof -  | 
|
377  | 
have "- a = - (- b) \<longleftrightarrow> a = -b" by (rule neg_equal_iff_equal)  | 
|
| 14738 | 378  | 
thus ?thesis by (simp add: eq_commute)  | 
379  | 
qed  | 
|
380  | 
||
| 
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381  | 
lemma diff_add_cancel: "a - b + b = a"  | 
| 29667 | 382  | 
by (simp add: diff_minus add_assoc)  | 
| 
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383  | 
|
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384  | 
lemma add_diff_cancel: "a + b - b = a"  | 
| 29667 | 385  | 
by (simp add: diff_minus add_assoc)  | 
386  | 
||
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387  | 
declare diff_minus[symmetric, algebra_simps, field_simps]  | 
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388  | 
|
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389  | 
lemma eq_neg_iff_add_eq_0: "a = - b \<longleftrightarrow> a + b = 0"  | 
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390  | 
proof  | 
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391  | 
assume "a = - b" then show "a + b = 0" by simp  | 
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392  | 
next  | 
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393  | 
assume "a + b = 0"  | 
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394  | 
moreover have "a + (b + - b) = (a + b) + - b"  | 
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395  | 
by (simp only: add_assoc)  | 
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396  | 
ultimately show "a = - b" by simp  | 
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397  | 
qed  | 
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398  | 
|
| 25062 | 399  | 
end  | 
400  | 
||
| 25762 | 401  | 
class ab_group_add = minus + uminus + comm_monoid_add +  | 
| 25062 | 402  | 
assumes ab_left_minus: "- a + a = 0"  | 
403  | 
assumes ab_diff_minus: "a - b = a + (- b)"  | 
|
| 25267 | 404  | 
begin  | 
| 25062 | 405  | 
|
| 25267 | 406  | 
subclass group_add  | 
| 28823 | 407  | 
proof qed (simp_all add: ab_left_minus ab_diff_minus)  | 
| 25062 | 408  | 
|
| 29904 | 409  | 
subclass cancel_comm_monoid_add  | 
| 28823 | 410  | 
proof  | 
| 25062 | 411  | 
fix a b c :: 'a  | 
412  | 
assume "a + b = a + c"  | 
|
413  | 
then have "- a + a + b = - a + a + c"  | 
|
414  | 
unfolding add_assoc by simp  | 
|
415  | 
then show "b = c" by simp  | 
|
416  | 
qed  | 
|
417  | 
||
| 
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418  | 
lemma uminus_add_conv_diff[algebra_simps, field_simps]:  | 
| 25062 | 419  | 
"- a + b = b - a"  | 
| 29667 | 420  | 
by (simp add:diff_minus add_commute)  | 
| 25062 | 421  | 
|
422  | 
lemma minus_add_distrib [simp]:  | 
|
423  | 
"- (a + b) = - a + - b"  | 
|
| 
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424  | 
by (rule minus_unique) (simp add: add_ac)  | 
| 25062 | 425  | 
|
426  | 
lemma minus_diff_eq [simp]:  | 
|
427  | 
"- (a - b) = b - a"  | 
|
| 29667 | 428  | 
by (simp add: diff_minus add_commute)  | 
| 25077 | 429  | 
|
| 
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430  | 
lemma add_diff_eq[algebra_simps, field_simps]: "a + (b - c) = (a + b) - c"  | 
| 29667 | 431  | 
by (simp add: diff_minus add_ac)  | 
| 25077 | 432  | 
|
| 
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433  | 
lemma diff_add_eq[algebra_simps, field_simps]: "(a - b) + c = (a + c) - b"  | 
| 29667 | 434  | 
by (simp add: diff_minus add_ac)  | 
| 25077 | 435  | 
|
| 
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436  | 
lemma diff_eq_eq[algebra_simps, field_simps]: "a - b = c \<longleftrightarrow> a = c + b"  | 
| 29667 | 437  | 
by (auto simp add: diff_minus add_assoc)  | 
| 25077 | 438  | 
|
| 
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 | 
439  | 
lemma eq_diff_eq[algebra_simps, field_simps]: "a = c - b \<longleftrightarrow> a + b = c"  | 
| 29667 | 440  | 
by (auto simp add: diff_minus add_assoc)  | 
| 25077 | 441  | 
|
| 
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442  | 
lemma diff_diff_eq[algebra_simps, field_simps]: "(a - b) - c = a - (b + c)"  | 
| 29667 | 443  | 
by (simp add: diff_minus add_ac)  | 
| 25077 | 444  | 
|
| 
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 | 
445  | 
lemma diff_diff_eq2[algebra_simps, field_simps]: "a - (b - c) = (a + c) - b"  | 
| 29667 | 446  | 
by (simp add: diff_minus add_ac)  | 
| 25077 | 447  | 
|
448  | 
lemma eq_iff_diff_eq_0: "a = b \<longleftrightarrow> a - b = 0"  | 
|
| 29667 | 449  | 
by (simp add: algebra_simps)  | 
| 25077 | 450  | 
|
| 35216 | 451  | 
(* FIXME: duplicates right_minus_eq from class group_add *)  | 
452  | 
(* but only this one is declared as a simp rule. *)  | 
|
| 
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 | 
453  | 
lemma diff_eq_0_iff_eq [simp, no_atp]: "a - b = 0 \<longleftrightarrow> a = b"  | 
| 30629 | 454  | 
by (simp add: algebra_simps)  | 
455  | 
||
| 25062 | 456  | 
end  | 
| 14738 | 457  | 
|
458  | 
subsection {* (Partially) Ordered Groups *} 
 | 
|
459  | 
||
| 
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460  | 
text {*
 | 
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461  | 
The theory of partially ordered groups is taken from the books:  | 
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462  | 
  \begin{itemize}
 | 
| 
 
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463  | 
  \item \emph{Lattice Theory} by Garret Birkhoff, American Mathematical Society 1979 
 | 
| 
 
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464  | 
  \item \emph{Partially Ordered Algebraic Systems}, Pergamon Press 1963
 | 
| 
 
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465  | 
  \end{itemize}
 | 
| 
 
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 | 
466  | 
Most of the used notions can also be looked up in  | 
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 | 
467  | 
  \begin{itemize}
 | 
| 
 
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468  | 
  \item \url{http://www.mathworld.com} by Eric Weisstein et. al.
 | 
| 
 
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469  | 
  \item \emph{Algebra I} by van der Waerden, Springer.
 | 
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470  | 
  \end{itemize}
 | 
| 
 
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471  | 
*}  | 
| 
 
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 | 
472  | 
|
| 
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473  | 
class ordered_ab_semigroup_add = order + ab_semigroup_add +  | 
| 25062 | 474  | 
assumes add_left_mono: "a \<le> b \<Longrightarrow> c + a \<le> c + b"  | 
475  | 
begin  | 
|
| 
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 | 
476  | 
|
| 25062 | 477  | 
lemma add_right_mono:  | 
478  | 
"a \<le> b \<Longrightarrow> a + c \<le> b + c"  | 
|
| 29667 | 479  | 
by (simp add: add_commute [of _ c] add_left_mono)  | 
| 14738 | 480  | 
|
481  | 
text {* non-strict, in both arguments *}
 | 
|
482  | 
lemma add_mono:  | 
|
| 25062 | 483  | 
"a \<le> b \<Longrightarrow> c \<le> d \<Longrightarrow> a + c \<le> b + d"  | 
| 14738 | 484  | 
apply (erule add_right_mono [THEN order_trans])  | 
485  | 
apply (simp add: add_commute add_left_mono)  | 
|
486  | 
done  | 
|
487  | 
||
| 25062 | 488  | 
end  | 
489  | 
||
| 
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490  | 
class ordered_cancel_ab_semigroup_add =  | 
| 
 
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 | 
491  | 
ordered_ab_semigroup_add + cancel_ab_semigroup_add  | 
| 25062 | 492  | 
begin  | 
493  | 
||
| 14738 | 494  | 
lemma add_strict_left_mono:  | 
| 25062 | 495  | 
"a < b \<Longrightarrow> c + a < c + b"  | 
| 29667 | 496  | 
by (auto simp add: less_le add_left_mono)  | 
| 14738 | 497  | 
|
498  | 
lemma add_strict_right_mono:  | 
|
| 25062 | 499  | 
"a < b \<Longrightarrow> a + c < b + c"  | 
| 29667 | 500  | 
by (simp add: add_commute [of _ c] add_strict_left_mono)  | 
| 14738 | 501  | 
|
502  | 
text{*Strict monotonicity in both arguments*}
 | 
|
| 25062 | 503  | 
lemma add_strict_mono:  | 
504  | 
"a < b \<Longrightarrow> c < d \<Longrightarrow> a + c < b + d"  | 
|
505  | 
apply (erule add_strict_right_mono [THEN less_trans])  | 
|
| 14738 | 506  | 
apply (erule add_strict_left_mono)  | 
507  | 
done  | 
|
508  | 
||
509  | 
lemma add_less_le_mono:  | 
|
| 25062 | 510  | 
"a < b \<Longrightarrow> c \<le> d \<Longrightarrow> a + c < b + d"  | 
511  | 
apply (erule add_strict_right_mono [THEN less_le_trans])  | 
|
512  | 
apply (erule add_left_mono)  | 
|
| 14738 | 513  | 
done  | 
514  | 
||
515  | 
lemma add_le_less_mono:  | 
|
| 25062 | 516  | 
"a \<le> b \<Longrightarrow> c < d \<Longrightarrow> a + c < b + d"  | 
517  | 
apply (erule add_right_mono [THEN le_less_trans])  | 
|
| 14738 | 518  | 
apply (erule add_strict_left_mono)  | 
519  | 
done  | 
|
520  | 
||
| 25062 | 521  | 
end  | 
522  | 
||
| 
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523  | 
class ordered_ab_semigroup_add_imp_le =  | 
| 
 
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524  | 
ordered_cancel_ab_semigroup_add +  | 
| 25062 | 525  | 
assumes add_le_imp_le_left: "c + a \<le> c + b \<Longrightarrow> a \<le> b"  | 
526  | 
begin  | 
|
527  | 
||
| 14738 | 528  | 
lemma add_less_imp_less_left:  | 
| 29667 | 529  | 
assumes less: "c + a < c + b" shows "a < b"  | 
| 14738 | 530  | 
proof -  | 
531  | 
from less have le: "c + a <= c + b" by (simp add: order_le_less)  | 
|
532  | 
have "a <= b"  | 
|
533  | 
apply (insert le)  | 
|
534  | 
apply (drule add_le_imp_le_left)  | 
|
535  | 
by (insert le, drule add_le_imp_le_left, assumption)  | 
|
536  | 
moreover have "a \<noteq> b"  | 
|
537  | 
proof (rule ccontr)  | 
|
538  | 
assume "~(a \<noteq> b)"  | 
|
539  | 
then have "a = b" by simp  | 
|
540  | 
then have "c + a = c + b" by simp  | 
|
541  | 
with less show "False"by simp  | 
|
542  | 
qed  | 
|
543  | 
ultimately show "a < b" by (simp add: order_le_less)  | 
|
544  | 
qed  | 
|
545  | 
||
546  | 
lemma add_less_imp_less_right:  | 
|
| 25062 | 547  | 
"a + c < b + c \<Longrightarrow> a < b"  | 
| 14738 | 548  | 
apply (rule add_less_imp_less_left [of c])  | 
549  | 
apply (simp add: add_commute)  | 
|
550  | 
done  | 
|
551  | 
||
552  | 
lemma add_less_cancel_left [simp]:  | 
|
| 25062 | 553  | 
"c + a < c + b \<longleftrightarrow> a < b"  | 
| 29667 | 554  | 
by (blast intro: add_less_imp_less_left add_strict_left_mono)  | 
| 14738 | 555  | 
|
556  | 
lemma add_less_cancel_right [simp]:  | 
|
| 25062 | 557  | 
"a + c < b + c \<longleftrightarrow> a < b"  | 
| 29667 | 558  | 
by (blast intro: add_less_imp_less_right add_strict_right_mono)  | 
| 14738 | 559  | 
|
560  | 
lemma add_le_cancel_left [simp]:  | 
|
| 25062 | 561  | 
"c + a \<le> c + b \<longleftrightarrow> a \<le> b"  | 
| 29667 | 562  | 
by (auto, drule add_le_imp_le_left, simp_all add: add_left_mono)  | 
| 14738 | 563  | 
|
564  | 
lemma add_le_cancel_right [simp]:  | 
|
| 25062 | 565  | 
"a + c \<le> b + c \<longleftrightarrow> a \<le> b"  | 
| 29667 | 566  | 
by (simp add: add_commute [of a c] add_commute [of b c])  | 
| 14738 | 567  | 
|
568  | 
lemma add_le_imp_le_right:  | 
|
| 25062 | 569  | 
"a + c \<le> b + c \<Longrightarrow> a \<le> b"  | 
| 29667 | 570  | 
by simp  | 
| 25062 | 571  | 
|
| 25077 | 572  | 
lemma max_add_distrib_left:  | 
573  | 
"max x y + z = max (x + z) (y + z)"  | 
|
574  | 
unfolding max_def by auto  | 
|
575  | 
||
576  | 
lemma min_add_distrib_left:  | 
|
577  | 
"min x y + z = min (x + z) (y + z)"  | 
|
578  | 
unfolding min_def by auto  | 
|
579  | 
||
| 25062 | 580  | 
end  | 
581  | 
||
| 
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 | 
582  | 
subsection {* Support for reasoning about signs *}
 | 
| 
 
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 | 
583  | 
|
| 
35028
 
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 | 
584  | 
class ordered_comm_monoid_add =  | 
| 
 
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parents: 
34973 
diff
changeset
 | 
585  | 
ordered_cancel_ab_semigroup_add + comm_monoid_add  | 
| 
25303
 
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586  | 
begin  | 
| 
 
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 | 
587  | 
|
| 
 
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 | 
588  | 
lemma add_pos_nonneg:  | 
| 29667 | 589  | 
assumes "0 < a" and "0 \<le> b" shows "0 < a + b"  | 
| 
25303
 
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590  | 
proof -  | 
| 
 
0699e20feabd
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 | 
591  | 
have "0 + 0 < a + b"  | 
| 
 
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changeset
 | 
592  | 
using assms by (rule add_less_le_mono)  | 
| 
 
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 | 
593  | 
then show ?thesis by simp  | 
| 
 
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 | 
594  | 
qed  | 
| 
 
0699e20feabd
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 | 
595  | 
|
| 
 
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 | 
596  | 
lemma add_pos_pos:  | 
| 29667 | 597  | 
assumes "0 < a" and "0 < b" shows "0 < a + b"  | 
598  | 
by (rule add_pos_nonneg) (insert assms, auto)  | 
|
| 
25303
 
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599  | 
|
| 
 
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 | 
600  | 
lemma add_nonneg_pos:  | 
| 29667 | 601  | 
assumes "0 \<le> a" and "0 < b" shows "0 < a + b"  | 
| 
25303
 
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602  | 
proof -  | 
| 
 
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603  | 
have "0 + 0 < a + b"  | 
| 
 
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 | 
604  | 
using assms by (rule add_le_less_mono)  | 
| 
 
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605  | 
then show ?thesis by simp  | 
| 
 
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 | 
606  | 
qed  | 
| 
 
0699e20feabd
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 | 
607  | 
|
| 
36977
 
71c8973a604b
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36348 
diff
changeset
 | 
608  | 
lemma add_nonneg_nonneg [simp]:  | 
| 29667 | 609  | 
assumes "0 \<le> a" and "0 \<le> b" shows "0 \<le> a + b"  | 
| 
25303
 
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610  | 
proof -  | 
| 
 
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 | 
611  | 
have "0 + 0 \<le> a + b"  | 
| 
 
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 | 
612  | 
using assms by (rule add_mono)  | 
| 
 
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 | 
613  | 
then show ?thesis by simp  | 
| 
 
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614  | 
qed  | 
| 
 
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changeset
 | 
615  | 
|
| 30691 | 616  | 
lemma add_neg_nonpos:  | 
| 29667 | 617  | 
assumes "a < 0" and "b \<le> 0" shows "a + b < 0"  | 
| 
25303
 
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618  | 
proof -  | 
| 
 
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 | 
619  | 
have "a + b < 0 + 0"  | 
| 
 
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changeset
 | 
620  | 
using assms by (rule add_less_le_mono)  | 
| 
 
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 | 
621  | 
then show ?thesis by simp  | 
| 
 
0699e20feabd
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changeset
 | 
622  | 
qed  | 
| 
 
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parents: 
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 | 
623  | 
|
| 
 
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 | 
624  | 
lemma add_neg_neg:  | 
| 29667 | 625  | 
assumes "a < 0" and "b < 0" shows "a + b < 0"  | 
626  | 
by (rule add_neg_nonpos) (insert assms, auto)  | 
|
| 
25303
 
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627  | 
|
| 
 
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diff
changeset
 | 
628  | 
lemma add_nonpos_neg:  | 
| 29667 | 629  | 
assumes "a \<le> 0" and "b < 0" shows "a + b < 0"  | 
| 
25303
 
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630  | 
proof -  | 
| 
 
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 | 
631  | 
have "a + b < 0 + 0"  | 
| 
 
0699e20feabd
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parents: 
25267 
diff
changeset
 | 
632  | 
using assms by (rule add_le_less_mono)  | 
| 
 
0699e20feabd
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25267 
diff
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 | 
633  | 
then show ?thesis by simp  | 
| 
 
0699e20feabd
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diff
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 | 
634  | 
qed  | 
| 
 
0699e20feabd
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changeset
 | 
635  | 
|
| 
 
0699e20feabd
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diff
changeset
 | 
636  | 
lemma add_nonpos_nonpos:  | 
| 29667 | 637  | 
assumes "a \<le> 0" and "b \<le> 0" shows "a + b \<le> 0"  | 
| 
25303
 
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 | 
638  | 
proof -  | 
| 
 
0699e20feabd
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 | 
639  | 
have "a + b \<le> 0 + 0"  | 
| 
 
0699e20feabd
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parents: 
25267 
diff
changeset
 | 
640  | 
using assms by (rule add_mono)  | 
| 
 
0699e20feabd
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changeset
 | 
641  | 
then show ?thesis by simp  | 
| 
 
0699e20feabd
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25267 
diff
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 | 
642  | 
qed  | 
| 
 
0699e20feabd
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changeset
 | 
643  | 
|
| 30691 | 644  | 
lemmas add_sign_intros =  | 
645  | 
add_pos_nonneg add_pos_pos add_nonneg_pos add_nonneg_nonneg  | 
|
646  | 
add_neg_nonpos add_neg_neg add_nonpos_neg add_nonpos_nonpos  | 
|
647  | 
||
| 29886 | 648  | 
lemma add_nonneg_eq_0_iff:  | 
649  | 
assumes x: "0 \<le> x" and y: "0 \<le> y"  | 
|
650  | 
shows "x + y = 0 \<longleftrightarrow> x = 0 \<and> y = 0"  | 
|
651  | 
proof (intro iffI conjI)  | 
|
652  | 
have "x = x + 0" by simp  | 
|
653  | 
also have "x + 0 \<le> x + y" using y by (rule add_left_mono)  | 
|
654  | 
also assume "x + y = 0"  | 
|
655  | 
also have "0 \<le> x" using x .  | 
|
656  | 
finally show "x = 0" .  | 
|
657  | 
next  | 
|
658  | 
have "y = 0 + y" by simp  | 
|
659  | 
also have "0 + y \<le> x + y" using x by (rule add_right_mono)  | 
|
660  | 
also assume "x + y = 0"  | 
|
661  | 
also have "0 \<le> y" using y .  | 
|
662  | 
finally show "y = 0" .  | 
|
663  | 
next  | 
|
664  | 
assume "x = 0 \<and> y = 0"  | 
|
665  | 
then show "x + y = 0" by simp  | 
|
666  | 
qed  | 
|
667  | 
||
| 
25303
 
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668  | 
end  | 
| 
 
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 | 
669  | 
|
| 
35028
 
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 | 
670  | 
class ordered_ab_group_add =  | 
| 
 
108662d50512
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changeset
 | 
671  | 
ab_group_add + ordered_ab_semigroup_add  | 
| 25062 | 672  | 
begin  | 
673  | 
||
| 
35028
 
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 | 
674  | 
subclass ordered_cancel_ab_semigroup_add ..  | 
| 25062 | 675  | 
|
| 
35028
 
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 | 
676  | 
subclass ordered_ab_semigroup_add_imp_le  | 
| 28823 | 677  | 
proof  | 
| 25062 | 678  | 
fix a b c :: 'a  | 
679  | 
assume "c + a \<le> c + b"  | 
|
680  | 
hence "(-c) + (c + a) \<le> (-c) + (c + b)" by (rule add_left_mono)  | 
|
681  | 
hence "((-c) + c) + a \<le> ((-c) + c) + b" by (simp only: add_assoc)  | 
|
682  | 
thus "a \<le> b" by simp  | 
|
683  | 
qed  | 
|
684  | 
||
| 
35028
 
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diff
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 | 
685  | 
subclass ordered_comm_monoid_add ..  | 
| 
25303
 
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changeset
 | 
686  | 
|
| 25077 | 687  | 
lemma max_diff_distrib_left:  | 
688  | 
shows "max x y - z = max (x - z) (y - z)"  | 
|
| 29667 | 689  | 
by (simp add: diff_minus, rule max_add_distrib_left)  | 
| 25077 | 690  | 
|
691  | 
lemma min_diff_distrib_left:  | 
|
692  | 
shows "min x y - z = min (x - z) (y - z)"  | 
|
| 29667 | 693  | 
by (simp add: diff_minus, rule min_add_distrib_left)  | 
| 25077 | 694  | 
|
695  | 
lemma le_imp_neg_le:  | 
|
| 29667 | 696  | 
assumes "a \<le> b" shows "-b \<le> -a"  | 
| 25077 | 697  | 
proof -  | 
| 29667 | 698  | 
have "-a+a \<le> -a+b" using `a \<le> b` by (rule add_left_mono)  | 
699  | 
hence "0 \<le> -a+b" by simp  | 
|
700  | 
hence "0 + (-b) \<le> (-a + b) + (-b)" by (rule add_right_mono)  | 
|
701  | 
thus ?thesis by (simp add: add_assoc)  | 
|
| 25077 | 702  | 
qed  | 
703  | 
||
704  | 
lemma neg_le_iff_le [simp]: "- b \<le> - a \<longleftrightarrow> a \<le> b"  | 
|
705  | 
proof  | 
|
706  | 
assume "- b \<le> - a"  | 
|
| 29667 | 707  | 
hence "- (- a) \<le> - (- b)" by (rule le_imp_neg_le)  | 
| 25077 | 708  | 
thus "a\<le>b" by simp  | 
709  | 
next  | 
|
710  | 
assume "a\<le>b"  | 
|
711  | 
thus "-b \<le> -a" by (rule le_imp_neg_le)  | 
|
712  | 
qed  | 
|
713  | 
||
714  | 
lemma neg_le_0_iff_le [simp]: "- a \<le> 0 \<longleftrightarrow> 0 \<le> a"  | 
|
| 29667 | 715  | 
by (subst neg_le_iff_le [symmetric], simp)  | 
| 25077 | 716  | 
|
717  | 
lemma neg_0_le_iff_le [simp]: "0 \<le> - a \<longleftrightarrow> a \<le> 0"  | 
|
| 29667 | 718  | 
by (subst neg_le_iff_le [symmetric], simp)  | 
| 25077 | 719  | 
|
720  | 
lemma neg_less_iff_less [simp]: "- b < - a \<longleftrightarrow> a < b"  | 
|
| 29667 | 721  | 
by (force simp add: less_le)  | 
| 25077 | 722  | 
|
723  | 
lemma neg_less_0_iff_less [simp]: "- a < 0 \<longleftrightarrow> 0 < a"  | 
|
| 29667 | 724  | 
by (subst neg_less_iff_less [symmetric], simp)  | 
| 25077 | 725  | 
|
726  | 
lemma neg_0_less_iff_less [simp]: "0 < - a \<longleftrightarrow> a < 0"  | 
|
| 29667 | 727  | 
by (subst neg_less_iff_less [symmetric], simp)  | 
| 25077 | 728  | 
|
729  | 
text{*The next several equations can make the simplifier loop!*}
 | 
|
730  | 
||
731  | 
lemma less_minus_iff: "a < - b \<longleftrightarrow> b < - a"  | 
|
732  | 
proof -  | 
|
733  | 
have "(- (-a) < - b) = (b < - a)" by (rule neg_less_iff_less)  | 
|
734  | 
thus ?thesis by simp  | 
|
735  | 
qed  | 
|
736  | 
||
737  | 
lemma minus_less_iff: "- a < b \<longleftrightarrow> - b < a"  | 
|
738  | 
proof -  | 
|
739  | 
have "(- a < - (-b)) = (- b < a)" by (rule neg_less_iff_less)  | 
|
740  | 
thus ?thesis by simp  | 
|
741  | 
qed  | 
|
742  | 
||
743  | 
lemma le_minus_iff: "a \<le> - b \<longleftrightarrow> b \<le> - a"  | 
|
744  | 
proof -  | 
|
745  | 
have mm: "!! a (b::'a). (-(-a)) < -b \<Longrightarrow> -(-b) < -a" by (simp only: minus_less_iff)  | 
|
746  | 
have "(- (- a) <= -b) = (b <= - a)"  | 
|
747  | 
apply (auto simp only: le_less)  | 
|
748  | 
apply (drule mm)  | 
|
749  | 
apply (simp_all)  | 
|
750  | 
apply (drule mm[simplified], assumption)  | 
|
751  | 
done  | 
|
752  | 
then show ?thesis by simp  | 
|
753  | 
qed  | 
|
754  | 
||
755  | 
lemma minus_le_iff: "- a \<le> b \<longleftrightarrow> - b \<le> a"  | 
|
| 29667 | 756  | 
by (auto simp add: le_less minus_less_iff)  | 
| 25077 | 757  | 
|
758  | 
lemma less_iff_diff_less_0: "a < b \<longleftrightarrow> a - b < 0"  | 
|
759  | 
proof -  | 
|
760  | 
have "(a < b) = (a + (- b) < b + (-b))"  | 
|
761  | 
by (simp only: add_less_cancel_right)  | 
|
762  | 
also have "... = (a - b < 0)" by (simp add: diff_minus)  | 
|
763  | 
finally show ?thesis .  | 
|
764  | 
qed  | 
|
765  | 
||
| 
36348
 
89c54f51f55a
dropped group_simps, ring_simps, field_eq_simps; classes division_ring_inverse_zero, field_inverse_zero, linordered_field_inverse_zero
 
haftmann 
parents: 
36343 
diff
changeset
 | 
766  | 
lemma diff_less_eq[algebra_simps, field_simps]: "a - b < c \<longleftrightarrow> a < c + b"  | 
| 25077 | 767  | 
apply (subst less_iff_diff_less_0 [of a])  | 
768  | 
apply (rule less_iff_diff_less_0 [of _ c, THEN ssubst])  | 
|
769  | 
apply (simp add: diff_minus add_ac)  | 
|
770  | 
done  | 
|
771  | 
||
| 
36348
 
89c54f51f55a
dropped group_simps, ring_simps, field_eq_simps; classes division_ring_inverse_zero, field_inverse_zero, linordered_field_inverse_zero
 
haftmann 
parents: 
36343 
diff
changeset
 | 
772  | 
lemma less_diff_eq[algebra_simps, field_simps]: "a < c - b \<longleftrightarrow> a + b < c"  | 
| 36302 | 773  | 
apply (subst less_iff_diff_less_0 [of "a + b"])  | 
| 25077 | 774  | 
apply (subst less_iff_diff_less_0 [of a])  | 
775  | 
apply (simp add: diff_minus add_ac)  | 
|
776  | 
done  | 
|
777  | 
||
| 
36348
 
89c54f51f55a
dropped group_simps, ring_simps, field_eq_simps; classes division_ring_inverse_zero, field_inverse_zero, linordered_field_inverse_zero
 
haftmann 
parents: 
36343 
diff
changeset
 | 
778  | 
lemma diff_le_eq[algebra_simps, field_simps]: "a - b \<le> c \<longleftrightarrow> a \<le> c + b"  | 
| 29667 | 779  | 
by (auto simp add: le_less diff_less_eq diff_add_cancel add_diff_cancel)  | 
| 25077 | 780  | 
|
| 
36348
 
89c54f51f55a
dropped group_simps, ring_simps, field_eq_simps; classes division_ring_inverse_zero, field_inverse_zero, linordered_field_inverse_zero
 
haftmann 
parents: 
36343 
diff
changeset
 | 
781  | 
lemma le_diff_eq[algebra_simps, field_simps]: "a \<le> c - b \<longleftrightarrow> a + b \<le> c"  | 
| 29667 | 782  | 
by (auto simp add: le_less less_diff_eq diff_add_cancel add_diff_cancel)  | 
| 25077 | 783  | 
|
784  | 
lemma le_iff_diff_le_0: "a \<le> b \<longleftrightarrow> a - b \<le> 0"  | 
|
| 29667 | 785  | 
by (simp add: algebra_simps)  | 
| 25077 | 786  | 
|
787  | 
end  | 
|
788  | 
||
| 
35028
 
108662d50512
more consistent naming of type classes involving orderings (and lattices) -- c.f. NEWS
 
haftmann 
parents: 
34973 
diff
changeset
 | 
789  | 
class linordered_ab_semigroup_add =  | 
| 
 
108662d50512
more consistent naming of type classes involving orderings (and lattices) -- c.f. NEWS
 
haftmann 
parents: 
34973 
diff
changeset
 | 
790  | 
linorder + ordered_ab_semigroup_add  | 
| 25062 | 791  | 
|
| 
35028
 
108662d50512
more consistent naming of type classes involving orderings (and lattices) -- c.f. NEWS
 
haftmann 
parents: 
34973 
diff
changeset
 | 
792  | 
class linordered_cancel_ab_semigroup_add =  | 
| 
 
108662d50512
more consistent naming of type classes involving orderings (and lattices) -- c.f. NEWS
 
haftmann 
parents: 
34973 
diff
changeset
 | 
793  | 
linorder + ordered_cancel_ab_semigroup_add  | 
| 25267 | 794  | 
begin  | 
| 25062 | 795  | 
|
| 
35028
 
108662d50512
more consistent naming of type classes involving orderings (and lattices) -- c.f. NEWS
 
haftmann 
parents: 
34973 
diff
changeset
 | 
796  | 
subclass linordered_ab_semigroup_add ..  | 
| 25062 | 797  | 
|
| 
35028
 
108662d50512
more consistent naming of type classes involving orderings (and lattices) -- c.f. NEWS
 
haftmann 
parents: 
34973 
diff
changeset
 | 
798  | 
subclass ordered_ab_semigroup_add_imp_le  | 
| 28823 | 799  | 
proof  | 
| 25062 | 800  | 
fix a b c :: 'a  | 
801  | 
assume le: "c + a <= c + b"  | 
|
802  | 
show "a <= b"  | 
|
803  | 
proof (rule ccontr)  | 
|
804  | 
assume w: "~ a \<le> b"  | 
|
805  | 
hence "b <= a" by (simp add: linorder_not_le)  | 
|
806  | 
hence le2: "c + b <= c + a" by (rule add_left_mono)  | 
|
807  | 
have "a = b"  | 
|
808  | 
apply (insert le)  | 
|
809  | 
apply (insert le2)  | 
|
810  | 
apply (drule antisym, simp_all)  | 
|
811  | 
done  | 
|
812  | 
with w show False  | 
|
813  | 
by (simp add: linorder_not_le [symmetric])  | 
|
814  | 
qed  | 
|
815  | 
qed  | 
|
816  | 
||
| 25267 | 817  | 
end  | 
818  | 
||
| 
35028
 
108662d50512
more consistent naming of type classes involving orderings (and lattices) -- c.f. NEWS
 
haftmann 
parents: 
34973 
diff
changeset
 | 
819  | 
class linordered_ab_group_add = linorder + ordered_ab_group_add  | 
| 25267 | 820  | 
begin  | 
| 25230 | 821  | 
|
| 
35028
 
108662d50512
more consistent naming of type classes involving orderings (and lattices) -- c.f. NEWS
 
haftmann 
parents: 
34973 
diff
changeset
 | 
822  | 
subclass linordered_cancel_ab_semigroup_add ..  | 
| 25230 | 823  | 
|
| 
35036
 
b8c8d01cc20d
separate library theory for type classes combining lattices with various algebraic structures; more simp rules
 
haftmann 
parents: 
35028 
diff
changeset
 | 
824  | 
lemma neg_less_eq_nonneg [simp]:  | 
| 
25303
 
0699e20feabd
renamed lordered_*_* to lordered_*_add_*; further localization
 
haftmann 
parents: 
25267 
diff
changeset
 | 
825  | 
"- a \<le> a \<longleftrightarrow> 0 \<le> a"  | 
| 
 
0699e20feabd
renamed lordered_*_* to lordered_*_add_*; further localization
 
haftmann 
parents: 
25267 
diff
changeset
 | 
826  | 
proof  | 
| 
 
0699e20feabd
renamed lordered_*_* to lordered_*_add_*; further localization
 
haftmann 
parents: 
25267 
diff
changeset
 | 
827  | 
assume A: "- a \<le> a" show "0 \<le> a"  | 
| 
 
0699e20feabd
renamed lordered_*_* to lordered_*_add_*; further localization
 
haftmann 
parents: 
25267 
diff
changeset
 | 
828  | 
proof (rule classical)  | 
| 
 
0699e20feabd
renamed lordered_*_* to lordered_*_add_*; further localization
 
haftmann 
parents: 
25267 
diff
changeset
 | 
829  | 
assume "\<not> 0 \<le> a"  | 
| 
 
0699e20feabd
renamed lordered_*_* to lordered_*_add_*; further localization
 
haftmann 
parents: 
25267 
diff
changeset
 | 
830  | 
then have "a < 0" by auto  | 
| 
 
0699e20feabd
renamed lordered_*_* to lordered_*_add_*; further localization
 
haftmann 
parents: 
25267 
diff
changeset
 | 
831  | 
with A have "- a < 0" by (rule le_less_trans)  | 
| 
 
0699e20feabd
renamed lordered_*_* to lordered_*_add_*; further localization
 
haftmann 
parents: 
25267 
diff
changeset
 | 
832  | 
then show ?thesis by auto  | 
| 
 
0699e20feabd
renamed lordered_*_* to lordered_*_add_*; further localization
 
haftmann 
parents: 
25267 
diff
changeset
 | 
833  | 
qed  | 
| 
 
0699e20feabd
renamed lordered_*_* to lordered_*_add_*; further localization
 
haftmann 
parents: 
25267 
diff
changeset
 | 
834  | 
next  | 
| 
 
0699e20feabd
renamed lordered_*_* to lordered_*_add_*; further localization
 
haftmann 
parents: 
25267 
diff
changeset
 | 
835  | 
assume A: "0 \<le> a" show "- a \<le> a"  | 
| 
 
0699e20feabd
renamed lordered_*_* to lordered_*_add_*; further localization
 
haftmann 
parents: 
25267 
diff
changeset
 | 
836  | 
proof (rule order_trans)  | 
| 
 
0699e20feabd
renamed lordered_*_* to lordered_*_add_*; further localization
 
haftmann 
parents: 
25267 
diff
changeset
 | 
837  | 
show "- a \<le> 0" using A by (simp add: minus_le_iff)  | 
| 
 
0699e20feabd
renamed lordered_*_* to lordered_*_add_*; further localization
 
haftmann 
parents: 
25267 
diff
changeset
 | 
838  | 
next  | 
| 
 
0699e20feabd
renamed lordered_*_* to lordered_*_add_*; further localization
 
haftmann 
parents: 
25267 
diff
changeset
 | 
839  | 
show "0 \<le> a" using A .  | 
| 
 
0699e20feabd
renamed lordered_*_* to lordered_*_add_*; further localization
 
haftmann 
parents: 
25267 
diff
changeset
 | 
840  | 
qed  | 
| 
 
0699e20feabd
renamed lordered_*_* to lordered_*_add_*; further localization
 
haftmann 
parents: 
25267 
diff
changeset
 | 
841  | 
qed  | 
| 
35036
 
b8c8d01cc20d
separate library theory for type classes combining lattices with various algebraic structures; more simp rules
 
haftmann 
parents: 
35028 
diff
changeset
 | 
842  | 
|
| 
 
b8c8d01cc20d
separate library theory for type classes combining lattices with various algebraic structures; more simp rules
 
haftmann 
parents: 
35028 
diff
changeset
 | 
843  | 
lemma neg_less_nonneg [simp]:  | 
| 
 
b8c8d01cc20d
separate library theory for type classes combining lattices with various algebraic structures; more simp rules
 
haftmann 
parents: 
35028 
diff
changeset
 | 
844  | 
"- a < a \<longleftrightarrow> 0 < a"  | 
| 
 
b8c8d01cc20d
separate library theory for type classes combining lattices with various algebraic structures; more simp rules
 
haftmann 
parents: 
35028 
diff
changeset
 | 
845  | 
proof  | 
| 
 
b8c8d01cc20d
separate library theory for type classes combining lattices with various algebraic structures; more simp rules
 
haftmann 
parents: 
35028 
diff
changeset
 | 
846  | 
assume A: "- a < a" show "0 < a"  | 
| 
 
b8c8d01cc20d
separate library theory for type classes combining lattices with various algebraic structures; more simp rules
 
haftmann 
parents: 
35028 
diff
changeset
 | 
847  | 
proof (rule classical)  | 
| 
 
b8c8d01cc20d
separate library theory for type classes combining lattices with various algebraic structures; more simp rules
 
haftmann 
parents: 
35028 
diff
changeset
 | 
848  | 
assume "\<not> 0 < a"  | 
| 
 
b8c8d01cc20d
separate library theory for type classes combining lattices with various algebraic structures; more simp rules
 
haftmann 
parents: 
35028 
diff
changeset
 | 
849  | 
then have "a \<le> 0" by auto  | 
| 
 
b8c8d01cc20d
separate library theory for type classes combining lattices with various algebraic structures; more simp rules
 
haftmann 
parents: 
35028 
diff
changeset
 | 
850  | 
with A have "- a < 0" by (rule less_le_trans)  | 
| 
 
b8c8d01cc20d
separate library theory for type classes combining lattices with various algebraic structures; more simp rules
 
haftmann 
parents: 
35028 
diff
changeset
 | 
851  | 
then show ?thesis by auto  | 
| 
 
b8c8d01cc20d
separate library theory for type classes combining lattices with various algebraic structures; more simp rules
 
haftmann 
parents: 
35028 
diff
changeset
 | 
852  | 
qed  | 
| 
 
b8c8d01cc20d
separate library theory for type classes combining lattices with various algebraic structures; more simp rules
 
haftmann 
parents: 
35028 
diff
changeset
 | 
853  | 
next  | 
| 
 
b8c8d01cc20d
separate library theory for type classes combining lattices with various algebraic structures; more simp rules
 
haftmann 
parents: 
35028 
diff
changeset
 | 
854  | 
assume A: "0 < a" show "- a < a"  | 
| 
 
b8c8d01cc20d
separate library theory for type classes combining lattices with various algebraic structures; more simp rules
 
haftmann 
parents: 
35028 
diff
changeset
 | 
855  | 
proof (rule less_trans)  | 
| 
 
b8c8d01cc20d
separate library theory for type classes combining lattices with various algebraic structures; more simp rules
 
haftmann 
parents: 
35028 
diff
changeset
 | 
856  | 
show "- a < 0" using A by (simp add: minus_le_iff)  | 
| 
 
b8c8d01cc20d
separate library theory for type classes combining lattices with various algebraic structures; more simp rules
 
haftmann 
parents: 
35028 
diff
changeset
 | 
857  | 
next  | 
| 
 
b8c8d01cc20d
separate library theory for type classes combining lattices with various algebraic structures; more simp rules
 
haftmann 
parents: 
35028 
diff
changeset
 | 
858  | 
show "0 < a" using A .  | 
| 
 
b8c8d01cc20d
separate library theory for type classes combining lattices with various algebraic structures; more simp rules
 
haftmann 
parents: 
35028 
diff
changeset
 | 
859  | 
qed  | 
| 
 
b8c8d01cc20d
separate library theory for type classes combining lattices with various algebraic structures; more simp rules
 
haftmann 
parents: 
35028 
diff
changeset
 | 
860  | 
qed  | 
| 
 
b8c8d01cc20d
separate library theory for type classes combining lattices with various algebraic structures; more simp rules
 
haftmann 
parents: 
35028 
diff
changeset
 | 
861  | 
|
| 
 
b8c8d01cc20d
separate library theory for type classes combining lattices with various algebraic structures; more simp rules
 
haftmann 
parents: 
35028 
diff
changeset
 | 
862  | 
lemma less_eq_neg_nonpos [simp]:  | 
| 
25303
 
0699e20feabd
renamed lordered_*_* to lordered_*_add_*; further localization
 
haftmann 
parents: 
25267 
diff
changeset
 | 
863  | 
"a \<le> - a \<longleftrightarrow> a \<le> 0"  | 
| 
 
0699e20feabd
renamed lordered_*_* to lordered_*_add_*; further localization
 
haftmann 
parents: 
25267 
diff
changeset
 | 
864  | 
proof  | 
| 
 
0699e20feabd
renamed lordered_*_* to lordered_*_add_*; further localization
 
haftmann 
parents: 
25267 
diff
changeset
 | 
865  | 
assume A: "a \<le> - a" show "a \<le> 0"  | 
| 
 
0699e20feabd
renamed lordered_*_* to lordered_*_add_*; further localization
 
haftmann 
parents: 
25267 
diff
changeset
 | 
866  | 
proof (rule classical)  | 
| 
 
0699e20feabd
renamed lordered_*_* to lordered_*_add_*; further localization
 
haftmann 
parents: 
25267 
diff
changeset
 | 
867  | 
assume "\<not> a \<le> 0"  | 
| 
 
0699e20feabd
renamed lordered_*_* to lordered_*_add_*; further localization
 
haftmann 
parents: 
25267 
diff
changeset
 | 
868  | 
then have "0 < a" by auto  | 
| 
 
0699e20feabd
renamed lordered_*_* to lordered_*_add_*; further localization
 
haftmann 
parents: 
25267 
diff
changeset
 | 
869  | 
then have "0 < - a" using A by (rule less_le_trans)  | 
| 
 
0699e20feabd
renamed lordered_*_* to lordered_*_add_*; further localization
 
haftmann 
parents: 
25267 
diff
changeset
 | 
870  | 
then show ?thesis by auto  | 
| 
 
0699e20feabd
renamed lordered_*_* to lordered_*_add_*; further localization
 
haftmann 
parents: 
25267 
diff
changeset
 | 
871  | 
qed  | 
| 
 
0699e20feabd
renamed lordered_*_* to lordered_*_add_*; further localization
 
haftmann 
parents: 
25267 
diff
changeset
 | 
872  | 
next  | 
| 
 
0699e20feabd
renamed lordered_*_* to lordered_*_add_*; further localization
 
haftmann 
parents: 
25267 
diff
changeset
 | 
873  | 
assume A: "a \<le> 0" show "a \<le> - a"  | 
| 
 
0699e20feabd
renamed lordered_*_* to lordered_*_add_*; further localization
 
haftmann 
parents: 
25267 
diff
changeset
 | 
874  | 
proof (rule order_trans)  | 
| 
 
0699e20feabd
renamed lordered_*_* to lordered_*_add_*; further localization
 
haftmann 
parents: 
25267 
diff
changeset
 | 
875  | 
show "0 \<le> - a" using A by (simp add: minus_le_iff)  | 
| 
 
0699e20feabd
renamed lordered_*_* to lordered_*_add_*; further localization
 
haftmann 
parents: 
25267 
diff
changeset
 | 
876  | 
next  | 
| 
 
0699e20feabd
renamed lordered_*_* to lordered_*_add_*; further localization
 
haftmann 
parents: 
25267 
diff
changeset
 | 
877  | 
show "a \<le> 0" using A .  | 
| 
 
0699e20feabd
renamed lordered_*_* to lordered_*_add_*; further localization
 
haftmann 
parents: 
25267 
diff
changeset
 | 
878  | 
qed  | 
| 
 
0699e20feabd
renamed lordered_*_* to lordered_*_add_*; further localization
 
haftmann 
parents: 
25267 
diff
changeset
 | 
879  | 
qed  | 
| 
 
0699e20feabd
renamed lordered_*_* to lordered_*_add_*; further localization
 
haftmann 
parents: 
25267 
diff
changeset
 | 
880  | 
|
| 
35036
 
b8c8d01cc20d
separate library theory for type classes combining lattices with various algebraic structures; more simp rules
 
haftmann 
parents: 
35028 
diff
changeset
 | 
881  | 
lemma equal_neg_zero [simp]:  | 
| 
25303
 
0699e20feabd
renamed lordered_*_* to lordered_*_add_*; further localization
 
haftmann 
parents: 
25267 
diff
changeset
 | 
882  | 
"a = - a \<longleftrightarrow> a = 0"  | 
| 
 
0699e20feabd
renamed lordered_*_* to lordered_*_add_*; further localization
 
haftmann 
parents: 
25267 
diff
changeset
 | 
883  | 
proof  | 
| 
 
0699e20feabd
renamed lordered_*_* to lordered_*_add_*; further localization
 
haftmann 
parents: 
25267 
diff
changeset
 | 
884  | 
assume "a = 0" then show "a = - a" by simp  | 
| 
 
0699e20feabd
renamed lordered_*_* to lordered_*_add_*; further localization
 
haftmann 
parents: 
25267 
diff
changeset
 | 
885  | 
next  | 
| 
 
0699e20feabd
renamed lordered_*_* to lordered_*_add_*; further localization
 
haftmann 
parents: 
25267 
diff
changeset
 | 
886  | 
assume A: "a = - a" show "a = 0"  | 
| 
 
0699e20feabd
renamed lordered_*_* to lordered_*_add_*; further localization
 
haftmann 
parents: 
25267 
diff
changeset
 | 
887  | 
proof (cases "0 \<le> a")  | 
| 
 
0699e20feabd
renamed lordered_*_* to lordered_*_add_*; further localization
 
haftmann 
parents: 
25267 
diff
changeset
 | 
888  | 
case True with A have "0 \<le> - a" by auto  | 
| 
 
0699e20feabd
renamed lordered_*_* to lordered_*_add_*; further localization
 
haftmann 
parents: 
25267 
diff
changeset
 | 
889  | 
with le_minus_iff have "a \<le> 0" by simp  | 
| 
 
0699e20feabd
renamed lordered_*_* to lordered_*_add_*; further localization
 
haftmann 
parents: 
25267 
diff
changeset
 | 
890  | 
with True show ?thesis by (auto intro: order_trans)  | 
| 
 
0699e20feabd
renamed lordered_*_* to lordered_*_add_*; further localization
 
haftmann 
parents: 
25267 
diff
changeset
 | 
891  | 
next  | 
| 
 
0699e20feabd
renamed lordered_*_* to lordered_*_add_*; further localization
 
haftmann 
parents: 
25267 
diff
changeset
 | 
892  | 
case False then have B: "a \<le> 0" by auto  | 
| 
 
0699e20feabd
renamed lordered_*_* to lordered_*_add_*; further localization
 
haftmann 
parents: 
25267 
diff
changeset
 | 
893  | 
with A have "- a \<le> 0" by auto  | 
| 
 
0699e20feabd
renamed lordered_*_* to lordered_*_add_*; further localization
 
haftmann 
parents: 
25267 
diff
changeset
 | 
894  | 
with B show ?thesis by (auto intro: order_trans)  | 
| 
 
0699e20feabd
renamed lordered_*_* to lordered_*_add_*; further localization
 
haftmann 
parents: 
25267 
diff
changeset
 | 
895  | 
qed  | 
| 
 
0699e20feabd
renamed lordered_*_* to lordered_*_add_*; further localization
 
haftmann 
parents: 
25267 
diff
changeset
 | 
896  | 
qed  | 
| 
 
0699e20feabd
renamed lordered_*_* to lordered_*_add_*; further localization
 
haftmann 
parents: 
25267 
diff
changeset
 | 
897  | 
|
| 
35036
 
b8c8d01cc20d
separate library theory for type classes combining lattices with various algebraic structures; more simp rules
 
haftmann 
parents: 
35028 
diff
changeset
 | 
898  | 
lemma neg_equal_zero [simp]:  | 
| 
25303
 
0699e20feabd
renamed lordered_*_* to lordered_*_add_*; further localization
 
haftmann 
parents: 
25267 
diff
changeset
 | 
899  | 
"- a = a \<longleftrightarrow> a = 0"  | 
| 
35036
 
b8c8d01cc20d
separate library theory for type classes combining lattices with various algebraic structures; more simp rules
 
haftmann 
parents: 
35028 
diff
changeset
 | 
900  | 
by (auto dest: sym)  | 
| 
 
b8c8d01cc20d
separate library theory for type classes combining lattices with various algebraic structures; more simp rules
 
haftmann 
parents: 
35028 
diff
changeset
 | 
901  | 
|
| 
 
b8c8d01cc20d
separate library theory for type classes combining lattices with various algebraic structures; more simp rules
 
haftmann 
parents: 
35028 
diff
changeset
 | 
902  | 
lemma double_zero [simp]:  | 
| 
 
b8c8d01cc20d
separate library theory for type classes combining lattices with various algebraic structures; more simp rules
 
haftmann 
parents: 
35028 
diff
changeset
 | 
903  | 
"a + a = 0 \<longleftrightarrow> a = 0"  | 
| 
 
b8c8d01cc20d
separate library theory for type classes combining lattices with various algebraic structures; more simp rules
 
haftmann 
parents: 
35028 
diff
changeset
 | 
904  | 
proof  | 
| 
 
b8c8d01cc20d
separate library theory for type classes combining lattices with various algebraic structures; more simp rules
 
haftmann 
parents: 
35028 
diff
changeset
 | 
905  | 
assume assm: "a + a = 0"  | 
| 
 
b8c8d01cc20d
separate library theory for type classes combining lattices with various algebraic structures; more simp rules
 
haftmann 
parents: 
35028 
diff
changeset
 | 
906  | 
then have a: "- a = a" by (rule minus_unique)  | 
| 35216 | 907  | 
then show "a = 0" by (simp only: neg_equal_zero)  | 
| 
35036
 
b8c8d01cc20d
separate library theory for type classes combining lattices with various algebraic structures; more simp rules
 
haftmann 
parents: 
35028 
diff
changeset
 | 
908  | 
qed simp  | 
| 
 
b8c8d01cc20d
separate library theory for type classes combining lattices with various algebraic structures; more simp rules
 
haftmann 
parents: 
35028 
diff
changeset
 | 
909  | 
|
| 
 
b8c8d01cc20d
separate library theory for type classes combining lattices with various algebraic structures; more simp rules
 
haftmann 
parents: 
35028 
diff
changeset
 | 
910  | 
lemma double_zero_sym [simp]:  | 
| 
 
b8c8d01cc20d
separate library theory for type classes combining lattices with various algebraic structures; more simp rules
 
haftmann 
parents: 
35028 
diff
changeset
 | 
911  | 
"0 = a + a \<longleftrightarrow> a = 0"  | 
| 
 
b8c8d01cc20d
separate library theory for type classes combining lattices with various algebraic structures; more simp rules
 
haftmann 
parents: 
35028 
diff
changeset
 | 
912  | 
by (rule, drule sym) simp_all  | 
| 
 
b8c8d01cc20d
separate library theory for type classes combining lattices with various algebraic structures; more simp rules
 
haftmann 
parents: 
35028 
diff
changeset
 | 
913  | 
|
| 
 
b8c8d01cc20d
separate library theory for type classes combining lattices with various algebraic structures; more simp rules
 
haftmann 
parents: 
35028 
diff
changeset
 | 
914  | 
lemma zero_less_double_add_iff_zero_less_single_add [simp]:  | 
| 
 
b8c8d01cc20d
separate library theory for type classes combining lattices with various algebraic structures; more simp rules
 
haftmann 
parents: 
35028 
diff
changeset
 | 
915  | 
"0 < a + a \<longleftrightarrow> 0 < a"  | 
| 
 
b8c8d01cc20d
separate library theory for type classes combining lattices with various algebraic structures; more simp rules
 
haftmann 
parents: 
35028 
diff
changeset
 | 
916  | 
proof  | 
| 
 
b8c8d01cc20d
separate library theory for type classes combining lattices with various algebraic structures; more simp rules
 
haftmann 
parents: 
35028 
diff
changeset
 | 
917  | 
assume "0 < a + a"  | 
| 
 
b8c8d01cc20d
separate library theory for type classes combining lattices with various algebraic structures; more simp rules
 
haftmann 
parents: 
35028 
diff
changeset
 | 
918  | 
then have "0 - a < a" by (simp only: diff_less_eq)  | 
| 
 
b8c8d01cc20d
separate library theory for type classes combining lattices with various algebraic structures; more simp rules
 
haftmann 
parents: 
35028 
diff
changeset
 | 
919  | 
then have "- a < a" by simp  | 
| 35216 | 920  | 
then show "0 < a" by (simp only: neg_less_nonneg)  | 
| 
35036
 
b8c8d01cc20d
separate library theory for type classes combining lattices with various algebraic structures; more simp rules
 
haftmann 
parents: 
35028 
diff
changeset
 | 
921  | 
next  | 
| 
 
b8c8d01cc20d
separate library theory for type classes combining lattices with various algebraic structures; more simp rules
 
haftmann 
parents: 
35028 
diff
changeset
 | 
922  | 
assume "0 < a"  | 
| 
 
b8c8d01cc20d
separate library theory for type classes combining lattices with various algebraic structures; more simp rules
 
haftmann 
parents: 
35028 
diff
changeset
 | 
923  | 
with this have "0 + 0 < a + a"  | 
| 
 
b8c8d01cc20d
separate library theory for type classes combining lattices with various algebraic structures; more simp rules
 
haftmann 
parents: 
35028 
diff
changeset
 | 
924  | 
by (rule add_strict_mono)  | 
| 
 
b8c8d01cc20d
separate library theory for type classes combining lattices with various algebraic structures; more simp rules
 
haftmann 
parents: 
35028 
diff
changeset
 | 
925  | 
then show "0 < a + a" by simp  | 
| 
 
b8c8d01cc20d
separate library theory for type classes combining lattices with various algebraic structures; more simp rules
 
haftmann 
parents: 
35028 
diff
changeset
 | 
926  | 
qed  | 
| 
 
b8c8d01cc20d
separate library theory for type classes combining lattices with various algebraic structures; more simp rules
 
haftmann 
parents: 
35028 
diff
changeset
 | 
927  | 
|
| 
 
b8c8d01cc20d
separate library theory for type classes combining lattices with various algebraic structures; more simp rules
 
haftmann 
parents: 
35028 
diff
changeset
 | 
928  | 
lemma zero_le_double_add_iff_zero_le_single_add [simp]:  | 
| 
 
b8c8d01cc20d
separate library theory for type classes combining lattices with various algebraic structures; more simp rules
 
haftmann 
parents: 
35028 
diff
changeset
 | 
929  | 
"0 \<le> a + a \<longleftrightarrow> 0 \<le> a"  | 
| 
 
b8c8d01cc20d
separate library theory for type classes combining lattices with various algebraic structures; more simp rules
 
haftmann 
parents: 
35028 
diff
changeset
 | 
930  | 
by (auto simp add: le_less)  | 
| 
 
b8c8d01cc20d
separate library theory for type classes combining lattices with various algebraic structures; more simp rules
 
haftmann 
parents: 
35028 
diff
changeset
 | 
931  | 
|
| 
 
b8c8d01cc20d
separate library theory for type classes combining lattices with various algebraic structures; more simp rules
 
haftmann 
parents: 
35028 
diff
changeset
 | 
932  | 
lemma double_add_less_zero_iff_single_add_less_zero [simp]:  | 
| 
 
b8c8d01cc20d
separate library theory for type classes combining lattices with various algebraic structures; more simp rules
 
haftmann 
parents: 
35028 
diff
changeset
 | 
933  | 
"a + a < 0 \<longleftrightarrow> a < 0"  | 
| 
 
b8c8d01cc20d
separate library theory for type classes combining lattices with various algebraic structures; more simp rules
 
haftmann 
parents: 
35028 
diff
changeset
 | 
934  | 
proof -  | 
| 
 
b8c8d01cc20d
separate library theory for type classes combining lattices with various algebraic structures; more simp rules
 
haftmann 
parents: 
35028 
diff
changeset
 | 
935  | 
have "\<not> a + a < 0 \<longleftrightarrow> \<not> a < 0"  | 
| 
 
b8c8d01cc20d
separate library theory for type classes combining lattices with various algebraic structures; more simp rules
 
haftmann 
parents: 
35028 
diff
changeset
 | 
936  | 
by (simp add: not_less)  | 
| 
 
b8c8d01cc20d
separate library theory for type classes combining lattices with various algebraic structures; more simp rules
 
haftmann 
parents: 
35028 
diff
changeset
 | 
937  | 
then show ?thesis by simp  | 
| 
 
b8c8d01cc20d
separate library theory for type classes combining lattices with various algebraic structures; more simp rules
 
haftmann 
parents: 
35028 
diff
changeset
 | 
938  | 
qed  | 
| 
 
b8c8d01cc20d
separate library theory for type classes combining lattices with various algebraic structures; more simp rules
 
haftmann 
parents: 
35028 
diff
changeset
 | 
939  | 
|
| 
 
b8c8d01cc20d
separate library theory for type classes combining lattices with various algebraic structures; more simp rules
 
haftmann 
parents: 
35028 
diff
changeset
 | 
940  | 
lemma double_add_le_zero_iff_single_add_le_zero [simp]:  | 
| 
 
b8c8d01cc20d
separate library theory for type classes combining lattices with various algebraic structures; more simp rules
 
haftmann 
parents: 
35028 
diff
changeset
 | 
941  | 
"a + a \<le> 0 \<longleftrightarrow> a \<le> 0"  | 
| 
 
b8c8d01cc20d
separate library theory for type classes combining lattices with various algebraic structures; more simp rules
 
haftmann 
parents: 
35028 
diff
changeset
 | 
942  | 
proof -  | 
| 
 
b8c8d01cc20d
separate library theory for type classes combining lattices with various algebraic structures; more simp rules
 
haftmann 
parents: 
35028 
diff
changeset
 | 
943  | 
have "\<not> a + a \<le> 0 \<longleftrightarrow> \<not> a \<le> 0"  | 
| 
 
b8c8d01cc20d
separate library theory for type classes combining lattices with various algebraic structures; more simp rules
 
haftmann 
parents: 
35028 
diff
changeset
 | 
944  | 
by (simp add: not_le)  | 
| 
 
b8c8d01cc20d
separate library theory for type classes combining lattices with various algebraic structures; more simp rules
 
haftmann 
parents: 
35028 
diff
changeset
 | 
945  | 
then show ?thesis by simp  | 
| 
 
b8c8d01cc20d
separate library theory for type classes combining lattices with various algebraic structures; more simp rules
 
haftmann 
parents: 
35028 
diff
changeset
 | 
946  | 
qed  | 
| 
 
b8c8d01cc20d
separate library theory for type classes combining lattices with various algebraic structures; more simp rules
 
haftmann 
parents: 
35028 
diff
changeset
 | 
947  | 
|
| 
 
b8c8d01cc20d
separate library theory for type classes combining lattices with various algebraic structures; more simp rules
 
haftmann 
parents: 
35028 
diff
changeset
 | 
948  | 
lemma le_minus_self_iff:  | 
| 
 
b8c8d01cc20d
separate library theory for type classes combining lattices with various algebraic structures; more simp rules
 
haftmann 
parents: 
35028 
diff
changeset
 | 
949  | 
"a \<le> - a \<longleftrightarrow> a \<le> 0"  | 
| 
 
b8c8d01cc20d
separate library theory for type classes combining lattices with various algebraic structures; more simp rules
 
haftmann 
parents: 
35028 
diff
changeset
 | 
950  | 
proof -  | 
| 
 
b8c8d01cc20d
separate library theory for type classes combining lattices with various algebraic structures; more simp rules
 
haftmann 
parents: 
35028 
diff
changeset
 | 
951  | 
from add_le_cancel_left [of "- a" "a + a" 0]  | 
| 
 
b8c8d01cc20d
separate library theory for type classes combining lattices with various algebraic structures; more simp rules
 
haftmann 
parents: 
35028 
diff
changeset
 | 
952  | 
have "a \<le> - a \<longleftrightarrow> a + a \<le> 0"  | 
| 
 
b8c8d01cc20d
separate library theory for type classes combining lattices with various algebraic structures; more simp rules
 
haftmann 
parents: 
35028 
diff
changeset
 | 
953  | 
by (simp add: add_assoc [symmetric])  | 
| 
 
b8c8d01cc20d
separate library theory for type classes combining lattices with various algebraic structures; more simp rules
 
haftmann 
parents: 
35028 
diff
changeset
 | 
954  | 
thus ?thesis by simp  | 
| 
 
b8c8d01cc20d
separate library theory for type classes combining lattices with various algebraic structures; more simp rules
 
haftmann 
parents: 
35028 
diff
changeset
 | 
955  | 
qed  | 
| 
 
b8c8d01cc20d
separate library theory for type classes combining lattices with various algebraic structures; more simp rules
 
haftmann 
parents: 
35028 
diff
changeset
 | 
956  | 
|
| 
 
b8c8d01cc20d
separate library theory for type classes combining lattices with various algebraic structures; more simp rules
 
haftmann 
parents: 
35028 
diff
changeset
 | 
957  | 
lemma minus_le_self_iff:  | 
| 
 
b8c8d01cc20d
separate library theory for type classes combining lattices with various algebraic structures; more simp rules
 
haftmann 
parents: 
35028 
diff
changeset
 | 
958  | 
"- a \<le> a \<longleftrightarrow> 0 \<le> a"  | 
| 
 
b8c8d01cc20d
separate library theory for type classes combining lattices with various algebraic structures; more simp rules
 
haftmann 
parents: 
35028 
diff
changeset
 | 
959  | 
proof -  | 
| 
 
b8c8d01cc20d
separate library theory for type classes combining lattices with various algebraic structures; more simp rules
 
haftmann 
parents: 
35028 
diff
changeset
 | 
960  | 
from add_le_cancel_left [of "- a" 0 "a + a"]  | 
| 
 
b8c8d01cc20d
separate library theory for type classes combining lattices with various algebraic structures; more simp rules
 
haftmann 
parents: 
35028 
diff
changeset
 | 
961  | 
have "- a \<le> a \<longleftrightarrow> 0 \<le> a + a"  | 
| 
 
b8c8d01cc20d
separate library theory for type classes combining lattices with various algebraic structures; more simp rules
 
haftmann 
parents: 
35028 
diff
changeset
 | 
962  | 
by (simp add: add_assoc [symmetric])  | 
| 
 
b8c8d01cc20d
separate library theory for type classes combining lattices with various algebraic structures; more simp rules
 
haftmann 
parents: 
35028 
diff
changeset
 | 
963  | 
thus ?thesis by simp  | 
| 
 
b8c8d01cc20d
separate library theory for type classes combining lattices with various algebraic structures; more simp rules
 
haftmann 
parents: 
35028 
diff
changeset
 | 
964  | 
qed  | 
| 
 
b8c8d01cc20d
separate library theory for type classes combining lattices with various algebraic structures; more simp rules
 
haftmann 
parents: 
35028 
diff
changeset
 | 
965  | 
|
| 
 
b8c8d01cc20d
separate library theory for type classes combining lattices with various algebraic structures; more simp rules
 
haftmann 
parents: 
35028 
diff
changeset
 | 
966  | 
lemma minus_max_eq_min:  | 
| 
 
b8c8d01cc20d
separate library theory for type classes combining lattices with various algebraic structures; more simp rules
 
haftmann 
parents: 
35028 
diff
changeset
 | 
967  | 
"- max x y = min (-x) (-y)"  | 
| 
 
b8c8d01cc20d
separate library theory for type classes combining lattices with various algebraic structures; more simp rules
 
haftmann 
parents: 
35028 
diff
changeset
 | 
968  | 
by (auto simp add: max_def min_def)  | 
| 
 
b8c8d01cc20d
separate library theory for type classes combining lattices with various algebraic structures; more simp rules
 
haftmann 
parents: 
35028 
diff
changeset
 | 
969  | 
|
| 
 
b8c8d01cc20d
separate library theory for type classes combining lattices with various algebraic structures; more simp rules
 
haftmann 
parents: 
35028 
diff
changeset
 | 
970  | 
lemma minus_min_eq_max:  | 
| 
 
b8c8d01cc20d
separate library theory for type classes combining lattices with various algebraic structures; more simp rules
 
haftmann 
parents: 
35028 
diff
changeset
 | 
971  | 
"- min x y = max (-x) (-y)"  | 
| 
 
b8c8d01cc20d
separate library theory for type classes combining lattices with various algebraic structures; more simp rules
 
haftmann 
parents: 
35028 
diff
changeset
 | 
972  | 
by (auto simp add: max_def min_def)  | 
| 
25303
 
0699e20feabd
renamed lordered_*_* to lordered_*_add_*; further localization
 
haftmann 
parents: 
25267 
diff
changeset
 | 
973  | 
|
| 25267 | 974  | 
end  | 
975  | 
||
| 36302 | 976  | 
context ordered_comm_monoid_add  | 
977  | 
begin  | 
|
| 14738 | 978  | 
|
| 
15234
 
ec91a90c604e
simplification tweaks for better arithmetic reasoning
 
paulson 
parents: 
15229 
diff
changeset
 | 
979  | 
lemma add_increasing:  | 
| 36302 | 980  | 
"0 \<le> a \<Longrightarrow> b \<le> c \<Longrightarrow> b \<le> a + c"  | 
981  | 
by (insert add_mono [of 0 a b c], simp)  | 
|
| 14738 | 982  | 
|
| 15539 | 983  | 
lemma add_increasing2:  | 
| 36302 | 984  | 
"0 \<le> c \<Longrightarrow> b \<le> a \<Longrightarrow> b \<le> a + c"  | 
985  | 
by (simp add: add_increasing add_commute [of a])  | 
|
| 15539 | 986  | 
|
| 
15234
 
ec91a90c604e
simplification tweaks for better arithmetic reasoning
 
paulson 
parents: 
15229 
diff
changeset
 | 
987  | 
lemma add_strict_increasing:  | 
| 36302 | 988  | 
"0 < a \<Longrightarrow> b \<le> c \<Longrightarrow> b < a + c"  | 
989  | 
by (insert add_less_le_mono [of 0 a b c], simp)  | 
|
| 
15234
 
ec91a90c604e
simplification tweaks for better arithmetic reasoning
 
paulson 
parents: 
15229 
diff
changeset
 | 
990  | 
|
| 
 
ec91a90c604e
simplification tweaks for better arithmetic reasoning
 
paulson 
parents: 
15229 
diff
changeset
 | 
991  | 
lemma add_strict_increasing2:  | 
| 36302 | 992  | 
"0 \<le> a \<Longrightarrow> b < c \<Longrightarrow> b < a + c"  | 
993  | 
by (insert add_le_less_mono [of 0 a b c], simp)  | 
|
994  | 
||
995  | 
end  | 
|
| 
15234
 
ec91a90c604e
simplification tweaks for better arithmetic reasoning
 
paulson 
parents: 
15229 
diff
changeset
 | 
996  | 
|
| 
35092
 
cfe605c54e50
moved less_eq, less to Orderings.thy; moved abs, sgn to Groups.thy
 
haftmann 
parents: 
35050 
diff
changeset
 | 
997  | 
class abs =  | 
| 
 
cfe605c54e50
moved less_eq, less to Orderings.thy; moved abs, sgn to Groups.thy
 
haftmann 
parents: 
35050 
diff
changeset
 | 
998  | 
fixes abs :: "'a \<Rightarrow> 'a"  | 
| 
 
cfe605c54e50
moved less_eq, less to Orderings.thy; moved abs, sgn to Groups.thy
 
haftmann 
parents: 
35050 
diff
changeset
 | 
999  | 
begin  | 
| 
 
cfe605c54e50
moved less_eq, less to Orderings.thy; moved abs, sgn to Groups.thy
 
haftmann 
parents: 
35050 
diff
changeset
 | 
1000  | 
|
| 
 
cfe605c54e50
moved less_eq, less to Orderings.thy; moved abs, sgn to Groups.thy
 
haftmann 
parents: 
35050 
diff
changeset
 | 
1001  | 
notation (xsymbols)  | 
| 
 
cfe605c54e50
moved less_eq, less to Orderings.thy; moved abs, sgn to Groups.thy
 
haftmann 
parents: 
35050 
diff
changeset
 | 
1002  | 
  abs  ("\<bar>_\<bar>")
 | 
| 
 
cfe605c54e50
moved less_eq, less to Orderings.thy; moved abs, sgn to Groups.thy
 
haftmann 
parents: 
35050 
diff
changeset
 | 
1003  | 
|
| 
 
cfe605c54e50
moved less_eq, less to Orderings.thy; moved abs, sgn to Groups.thy
 
haftmann 
parents: 
35050 
diff
changeset
 | 
1004  | 
notation (HTML output)  | 
| 
 
cfe605c54e50
moved less_eq, less to Orderings.thy; moved abs, sgn to Groups.thy
 
haftmann 
parents: 
35050 
diff
changeset
 | 
1005  | 
  abs  ("\<bar>_\<bar>")
 | 
| 
 
cfe605c54e50
moved less_eq, less to Orderings.thy; moved abs, sgn to Groups.thy
 
haftmann 
parents: 
35050 
diff
changeset
 | 
1006  | 
|
| 
 
cfe605c54e50
moved less_eq, less to Orderings.thy; moved abs, sgn to Groups.thy
 
haftmann 
parents: 
35050 
diff
changeset
 | 
1007  | 
end  | 
| 
 
cfe605c54e50
moved less_eq, less to Orderings.thy; moved abs, sgn to Groups.thy
 
haftmann 
parents: 
35050 
diff
changeset
 | 
1008  | 
|
| 
 
cfe605c54e50
moved less_eq, less to Orderings.thy; moved abs, sgn to Groups.thy
 
haftmann 
parents: 
35050 
diff
changeset
 | 
1009  | 
class sgn =  | 
| 
 
cfe605c54e50
moved less_eq, less to Orderings.thy; moved abs, sgn to Groups.thy
 
haftmann 
parents: 
35050 
diff
changeset
 | 
1010  | 
fixes sgn :: "'a \<Rightarrow> 'a"  | 
| 
 
cfe605c54e50
moved less_eq, less to Orderings.thy; moved abs, sgn to Groups.thy
 
haftmann 
parents: 
35050 
diff
changeset
 | 
1011  | 
|
| 
 
cfe605c54e50
moved less_eq, less to Orderings.thy; moved abs, sgn to Groups.thy
 
haftmann 
parents: 
35050 
diff
changeset
 | 
1012  | 
class abs_if = minus + uminus + ord + zero + abs +  | 
| 
 
cfe605c54e50
moved less_eq, less to Orderings.thy; moved abs, sgn to Groups.thy
 
haftmann 
parents: 
35050 
diff
changeset
 | 
1013  | 
assumes abs_if: "\<bar>a\<bar> = (if a < 0 then - a else a)"  | 
| 
 
cfe605c54e50
moved less_eq, less to Orderings.thy; moved abs, sgn to Groups.thy
 
haftmann 
parents: 
35050 
diff
changeset
 | 
1014  | 
|
| 
 
cfe605c54e50
moved less_eq, less to Orderings.thy; moved abs, sgn to Groups.thy
 
haftmann 
parents: 
35050 
diff
changeset
 | 
1015  | 
class sgn_if = minus + uminus + zero + one + ord + sgn +  | 
| 
 
cfe605c54e50
moved less_eq, less to Orderings.thy; moved abs, sgn to Groups.thy
 
haftmann 
parents: 
35050 
diff
changeset
 | 
1016  | 
assumes sgn_if: "sgn x = (if x = 0 then 0 else if 0 < x then 1 else - 1)"  | 
| 
 
cfe605c54e50
moved less_eq, less to Orderings.thy; moved abs, sgn to Groups.thy
 
haftmann 
parents: 
35050 
diff
changeset
 | 
1017  | 
begin  | 
| 
 
cfe605c54e50
moved less_eq, less to Orderings.thy; moved abs, sgn to Groups.thy
 
haftmann 
parents: 
35050 
diff
changeset
 | 
1018  | 
|
| 
 
cfe605c54e50
moved less_eq, less to Orderings.thy; moved abs, sgn to Groups.thy
 
haftmann 
parents: 
35050 
diff
changeset
 | 
1019  | 
lemma sgn0 [simp]: "sgn 0 = 0"  | 
| 
 
cfe605c54e50
moved less_eq, less to Orderings.thy; moved abs, sgn to Groups.thy
 
haftmann 
parents: 
35050 
diff
changeset
 | 
1020  | 
by (simp add:sgn_if)  | 
| 
 
cfe605c54e50
moved less_eq, less to Orderings.thy; moved abs, sgn to Groups.thy
 
haftmann 
parents: 
35050 
diff
changeset
 | 
1021  | 
|
| 
 
cfe605c54e50
moved less_eq, less to Orderings.thy; moved abs, sgn to Groups.thy
 
haftmann 
parents: 
35050 
diff
changeset
 | 
1022  | 
end  | 
| 14738 | 1023  | 
|
| 
35028
 
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 | 
1024  | 
class ordered_ab_group_add_abs = ordered_ab_group_add + abs +  | 
| 
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 | 
1025  | 
assumes abs_ge_zero [simp]: "\<bar>a\<bar> \<ge> 0"  | 
| 
 
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 | 
1026  | 
and abs_ge_self: "a \<le> \<bar>a\<bar>"  | 
| 
 
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changeset
 | 
1027  | 
and abs_leI: "a \<le> b \<Longrightarrow> - a \<le> b \<Longrightarrow> \<bar>a\<bar> \<le> b"  | 
| 
 
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 | 
1028  | 
and abs_minus_cancel [simp]: "\<bar>-a\<bar> = \<bar>a\<bar>"  | 
| 
 
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 | 
1029  | 
and abs_triangle_ineq: "\<bar>a + b\<bar> \<le> \<bar>a\<bar> + \<bar>b\<bar>"  | 
| 
 
0699e20feabd
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 | 
1030  | 
begin  | 
| 
 
0699e20feabd
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changeset
 | 
1031  | 
|
| 25307 | 1032  | 
lemma abs_minus_le_zero: "- \<bar>a\<bar> \<le> 0"  | 
1033  | 
unfolding neg_le_0_iff_le by simp  | 
|
1034  | 
||
1035  | 
lemma abs_of_nonneg [simp]:  | 
|
| 29667 | 1036  | 
assumes nonneg: "0 \<le> a" shows "\<bar>a\<bar> = a"  | 
| 25307 | 1037  | 
proof (rule antisym)  | 
1038  | 
from nonneg le_imp_neg_le have "- a \<le> 0" by simp  | 
|
1039  | 
from this nonneg have "- a \<le> a" by (rule order_trans)  | 
|
1040  | 
then show "\<bar>a\<bar> \<le> a" by (auto intro: abs_leI)  | 
|
1041  | 
qed (rule abs_ge_self)  | 
|
1042  | 
||
1043  | 
lemma abs_idempotent [simp]: "\<bar>\<bar>a\<bar>\<bar> = \<bar>a\<bar>"  | 
|
| 29667 | 1044  | 
by (rule antisym)  | 
| 36302 | 1045  | 
(auto intro!: abs_ge_self abs_leI order_trans [of "- \<bar>a\<bar>" 0 "\<bar>a\<bar>"])  | 
| 25307 | 1046  | 
|
1047  | 
lemma abs_eq_0 [simp]: "\<bar>a\<bar> = 0 \<longleftrightarrow> a = 0"  | 
|
1048  | 
proof -  | 
|
1049  | 
have "\<bar>a\<bar> = 0 \<Longrightarrow> a = 0"  | 
|
1050  | 
proof (rule antisym)  | 
|
1051  | 
assume zero: "\<bar>a\<bar> = 0"  | 
|
1052  | 
with abs_ge_self show "a \<le> 0" by auto  | 
|
1053  | 
from zero have "\<bar>-a\<bar> = 0" by simp  | 
|
| 36302 | 1054  | 
with abs_ge_self [of "- a"] have "- a \<le> 0" by auto  | 
| 25307 | 1055  | 
with neg_le_0_iff_le show "0 \<le> a" by auto  | 
1056  | 
qed  | 
|
1057  | 
then show ?thesis by auto  | 
|
1058  | 
qed  | 
|
1059  | 
||
| 
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 | 
1060  | 
lemma abs_zero [simp]: "\<bar>0\<bar> = 0"  | 
| 29667 | 1061  | 
by simp  | 
| 
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c1b87ef4a1c3
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changeset
 | 
1062  | 
|
| 
35828
 
46cfc4b8112e
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diff
changeset
 | 
1063  | 
lemma abs_0_eq [simp, no_atp]: "0 = \<bar>a\<bar> \<longleftrightarrow> a = 0"  | 
| 
25303
 
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 | 
1064  | 
proof -  | 
| 
 
0699e20feabd
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diff
changeset
 | 
1065  | 
have "0 = \<bar>a\<bar> \<longleftrightarrow> \<bar>a\<bar> = 0" by (simp only: eq_ac)  | 
| 
 
0699e20feabd
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 | 
1066  | 
thus ?thesis by simp  | 
| 
 
0699e20feabd
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1067  | 
qed  | 
| 
 
0699e20feabd
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1068  | 
|
| 
 
0699e20feabd
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changeset
 | 
1069  | 
lemma abs_le_zero_iff [simp]: "\<bar>a\<bar> \<le> 0 \<longleftrightarrow> a = 0"  | 
| 
 
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 | 
1070  | 
proof  | 
| 
 
0699e20feabd
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 | 
1071  | 
assume "\<bar>a\<bar> \<le> 0"  | 
| 
 
0699e20feabd
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1072  | 
then have "\<bar>a\<bar> = 0" by (rule antisym) simp  | 
| 
 
0699e20feabd
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 | 
1073  | 
thus "a = 0" by simp  | 
| 
 
0699e20feabd
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1074  | 
next  | 
| 
 
0699e20feabd
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1075  | 
assume "a = 0"  | 
| 
 
0699e20feabd
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 | 
1076  | 
thus "\<bar>a\<bar> \<le> 0" by simp  | 
| 
 
0699e20feabd
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1077  | 
qed  | 
| 
 
0699e20feabd
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1078  | 
|
| 
 
0699e20feabd
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 | 
1079  | 
lemma zero_less_abs_iff [simp]: "0 < \<bar>a\<bar> \<longleftrightarrow> a \<noteq> 0"  | 
| 29667 | 1080  | 
by (simp add: less_le)  | 
| 
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1081  | 
|
| 
 
0699e20feabd
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 | 
1082  | 
lemma abs_not_less_zero [simp]: "\<not> \<bar>a\<bar> < 0"  | 
| 
 
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1083  | 
proof -  | 
| 
 
0699e20feabd
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1084  | 
have a: "\<And>x y. x \<le> y \<Longrightarrow> \<not> y < x" by auto  | 
| 
 
0699e20feabd
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 | 
1085  | 
show ?thesis by (simp add: a)  | 
| 
 
0699e20feabd
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1086  | 
qed  | 
| 
16775
 
c1b87ef4a1c3
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parents: 
16417 
diff
changeset
 | 
1087  | 
|
| 
25303
 
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1088  | 
lemma abs_ge_minus_self: "- a \<le> \<bar>a\<bar>"  | 
| 
 
0699e20feabd
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 | 
1089  | 
proof -  | 
| 
 
0699e20feabd
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changeset
 | 
1090  | 
have "- a \<le> \<bar>-a\<bar>" by (rule abs_ge_self)  | 
| 
 
0699e20feabd
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 | 
1091  | 
then show ?thesis by simp  | 
| 
 
0699e20feabd
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1092  | 
qed  | 
| 
 
0699e20feabd
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1093  | 
|
| 
 
0699e20feabd
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 | 
1094  | 
lemma abs_minus_commute:  | 
| 
 
0699e20feabd
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changeset
 | 
1095  | 
"\<bar>a - b\<bar> = \<bar>b - a\<bar>"  | 
| 
 
0699e20feabd
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 | 
1096  | 
proof -  | 
| 
 
0699e20feabd
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changeset
 | 
1097  | 
have "\<bar>a - b\<bar> = \<bar>- (a - b)\<bar>" by (simp only: abs_minus_cancel)  | 
| 
 
0699e20feabd
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 | 
1098  | 
also have "... = \<bar>b - a\<bar>" by simp  | 
| 
 
0699e20feabd
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 | 
1099  | 
finally show ?thesis .  | 
| 
 
0699e20feabd
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 | 
1100  | 
qed  | 
| 
 
0699e20feabd
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1101  | 
|
| 
 
0699e20feabd
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 | 
1102  | 
lemma abs_of_pos: "0 < a \<Longrightarrow> \<bar>a\<bar> = a"  | 
| 29667 | 1103  | 
by (rule abs_of_nonneg, rule less_imp_le)  | 
| 
16775
 
c1b87ef4a1c3
added lemmas to OrderedGroup.thy (reasoning about signs, absolute value, triangle inequalities)
 
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parents: 
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diff
changeset
 | 
1104  | 
|
| 
25303
 
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 | 
1105  | 
lemma abs_of_nonpos [simp]:  | 
| 29667 | 1106  | 
assumes "a \<le> 0" shows "\<bar>a\<bar> = - a"  | 
| 
25303
 
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1107  | 
proof -  | 
| 
 
0699e20feabd
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diff
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 | 
1108  | 
let ?b = "- a"  | 
| 
 
0699e20feabd
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changeset
 | 
1109  | 
have "- ?b \<le> 0 \<Longrightarrow> \<bar>- ?b\<bar> = - (- ?b)"  | 
| 
 
0699e20feabd
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changeset
 | 
1110  | 
unfolding abs_minus_cancel [of "?b"]  | 
| 
 
0699e20feabd
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changeset
 | 
1111  | 
unfolding neg_le_0_iff_le [of "?b"]  | 
| 
 
0699e20feabd
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changeset
 | 
1112  | 
unfolding minus_minus by (erule abs_of_nonneg)  | 
| 
 
0699e20feabd
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 | 
1113  | 
then show ?thesis using assms by auto  | 
| 
 
0699e20feabd
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 | 
1114  | 
qed  | 
| 
 
0699e20feabd
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changeset
 | 
1115  | 
|
| 
 
0699e20feabd
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changeset
 | 
1116  | 
lemma abs_of_neg: "a < 0 \<Longrightarrow> \<bar>a\<bar> = - a"  | 
| 29667 | 1117  | 
by (rule abs_of_nonpos, rule less_imp_le)  | 
| 
25303
 
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 | 
1118  | 
|
| 
 
0699e20feabd
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 | 
1119  | 
lemma abs_le_D1: "\<bar>a\<bar> \<le> b \<Longrightarrow> a \<le> b"  | 
| 29667 | 1120  | 
by (insert abs_ge_self, blast intro: order_trans)  | 
| 
25303
 
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 | 
1121  | 
|
| 
 
0699e20feabd
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 | 
1122  | 
lemma abs_le_D2: "\<bar>a\<bar> \<le> b \<Longrightarrow> - a \<le> b"  | 
| 36302 | 1123  | 
by (insert abs_le_D1 [of "- a"], simp)  | 
| 
25303
 
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 | 
1124  | 
|
| 
 
0699e20feabd
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 | 
1125  | 
lemma abs_le_iff: "\<bar>a\<bar> \<le> b \<longleftrightarrow> a \<le> b \<and> - a \<le> b"  | 
| 29667 | 1126  | 
by (blast intro: abs_leI dest: abs_le_D1 abs_le_D2)  | 
| 
25303
 
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 | 
1127  | 
|
| 
 
0699e20feabd
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changeset
 | 
1128  | 
lemma abs_triangle_ineq2: "\<bar>a\<bar> - \<bar>b\<bar> \<le> \<bar>a - b\<bar>"  | 
| 36302 | 1129  | 
proof -  | 
1130  | 
have "\<bar>a\<bar> = \<bar>b + (a - b)\<bar>"  | 
|
1131  | 
by (simp add: algebra_simps add_diff_cancel)  | 
|
1132  | 
then have "\<bar>a\<bar> \<le> \<bar>b\<bar> + \<bar>a - b\<bar>"  | 
|
1133  | 
by (simp add: abs_triangle_ineq)  | 
|
1134  | 
then show ?thesis  | 
|
1135  | 
by (simp add: algebra_simps)  | 
|
1136  | 
qed  | 
|
1137  | 
||
1138  | 
lemma abs_triangle_ineq2_sym: "\<bar>a\<bar> - \<bar>b\<bar> \<le> \<bar>b - a\<bar>"  | 
|
1139  | 
by (simp only: abs_minus_commute [of b] abs_triangle_ineq2)  | 
|
| 
16775
 
c1b87ef4a1c3
added lemmas to OrderedGroup.thy (reasoning about signs, absolute value, triangle inequalities)
 
avigad 
parents: 
16417 
diff
changeset
 | 
1140  | 
|
| 
25303
 
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 | 
1141  | 
lemma abs_triangle_ineq3: "\<bar>\<bar>a\<bar> - \<bar>b\<bar>\<bar> \<le> \<bar>a - b\<bar>"  | 
| 36302 | 1142  | 
by (simp add: abs_le_iff abs_triangle_ineq2 abs_triangle_ineq2_sym)  | 
| 
16775
 
c1b87ef4a1c3
added lemmas to OrderedGroup.thy (reasoning about signs, absolute value, triangle inequalities)
 
avigad 
parents: 
16417 
diff
changeset
 | 
1143  | 
|
| 
25303
 
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changeset
 | 
1144  | 
lemma abs_triangle_ineq4: "\<bar>a - b\<bar> \<le> \<bar>a\<bar> + \<bar>b\<bar>"  | 
| 
 
0699e20feabd
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 | 
1145  | 
proof -  | 
| 36302 | 1146  | 
have "\<bar>a - b\<bar> = \<bar>a + - b\<bar>" by (subst diff_minus, rule refl)  | 
1147  | 
also have "... \<le> \<bar>a\<bar> + \<bar>- b\<bar>" by (rule abs_triangle_ineq)  | 
|
| 29667 | 1148  | 
finally show ?thesis by simp  | 
| 
25303
 
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changeset
 | 
1149  | 
qed  | 
| 
16775
 
c1b87ef4a1c3
added lemmas to OrderedGroup.thy (reasoning about signs, absolute value, triangle inequalities)
 
avigad 
parents: 
16417 
diff
changeset
 | 
1150  | 
|
| 
25303
 
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changeset
 | 
1151  | 
lemma abs_diff_triangle_ineq: "\<bar>a + b - (c + d)\<bar> \<le> \<bar>a - c\<bar> + \<bar>b - d\<bar>"  | 
| 
 
0699e20feabd
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 | 
1152  | 
proof -  | 
| 
 
0699e20feabd
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changeset
 | 
1153  | 
have "\<bar>a + b - (c+d)\<bar> = \<bar>(a-c) + (b-d)\<bar>" by (simp add: diff_minus add_ac)  | 
| 
 
0699e20feabd
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changeset
 | 
1154  | 
also have "... \<le> \<bar>a-c\<bar> + \<bar>b-d\<bar>" by (rule abs_triangle_ineq)  | 
| 
 
0699e20feabd
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changeset
 | 
1155  | 
finally show ?thesis .  | 
| 
 
0699e20feabd
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parents: 
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diff
changeset
 | 
1156  | 
qed  | 
| 
16775
 
c1b87ef4a1c3
added lemmas to OrderedGroup.thy (reasoning about signs, absolute value, triangle inequalities)
 
avigad 
parents: 
16417 
diff
changeset
 | 
1157  | 
|
| 
25303
 
0699e20feabd
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changeset
 | 
1158  | 
lemma abs_add_abs [simp]:  | 
| 
 
0699e20feabd
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 | 
1159  | 
"\<bar>\<bar>a\<bar> + \<bar>b\<bar>\<bar> = \<bar>a\<bar> + \<bar>b\<bar>" (is "?L = ?R")  | 
| 
 
0699e20feabd
renamed lordered_*_* to lordered_*_add_*; further localization
 
haftmann 
parents: 
25267 
diff
changeset
 | 
1160  | 
proof (rule antisym)  | 
| 
 
0699e20feabd
renamed lordered_*_* to lordered_*_add_*; further localization
 
haftmann 
parents: 
25267 
diff
changeset
 | 
1161  | 
show "?L \<ge> ?R" by(rule abs_ge_self)  | 
| 
 
0699e20feabd
renamed lordered_*_* to lordered_*_add_*; further localization
 
haftmann 
parents: 
25267 
diff
changeset
 | 
1162  | 
next  | 
| 
 
0699e20feabd
renamed lordered_*_* to lordered_*_add_*; further localization
 
haftmann 
parents: 
25267 
diff
changeset
 | 
1163  | 
have "?L \<le> \<bar>\<bar>a\<bar>\<bar> + \<bar>\<bar>b\<bar>\<bar>" by(rule abs_triangle_ineq)  | 
| 
 
0699e20feabd
renamed lordered_*_* to lordered_*_add_*; further localization
 
haftmann 
parents: 
25267 
diff
changeset
 | 
1164  | 
also have "\<dots> = ?R" by simp  | 
| 
 
0699e20feabd
renamed lordered_*_* to lordered_*_add_*; further localization
 
haftmann 
parents: 
25267 
diff
changeset
 | 
1165  | 
finally show "?L \<le> ?R" .  | 
| 
 
0699e20feabd
renamed lordered_*_* to lordered_*_add_*; further localization
 
haftmann 
parents: 
25267 
diff
changeset
 | 
1166  | 
qed  | 
| 
 
0699e20feabd
renamed lordered_*_* to lordered_*_add_*; further localization
 
haftmann 
parents: 
25267 
diff
changeset
 | 
1167  | 
|
| 
 
0699e20feabd
renamed lordered_*_* to lordered_*_add_*; further localization
 
haftmann 
parents: 
25267 
diff
changeset
 | 
1168  | 
end  | 
| 14738 | 1169  | 
|
| 
14754
 
a080eeeaec14
Modification / Installation of Provers/Arith/abel_cancel.ML for OrderedGroup.thy
 
obua 
parents: 
14738 
diff
changeset
 | 
1170  | 
text {* Needed for abelian cancellation simprocs: *}
 | 
| 
 
a080eeeaec14
Modification / Installation of Provers/Arith/abel_cancel.ML for OrderedGroup.thy
 
obua 
parents: 
14738 
diff
changeset
 | 
1171  | 
|
| 
 
a080eeeaec14
Modification / Installation of Provers/Arith/abel_cancel.ML for OrderedGroup.thy
 
obua 
parents: 
14738 
diff
changeset
 | 
1172  | 
lemma add_cancel_21: "((x::'a::ab_group_add) + (y + z) = y + u) = (x + z = u)"  | 
| 
 
a080eeeaec14
Modification / Installation of Provers/Arith/abel_cancel.ML for OrderedGroup.thy
 
obua 
parents: 
14738 
diff
changeset
 | 
1173  | 
apply (subst add_left_commute)  | 
| 
 
a080eeeaec14
Modification / Installation of Provers/Arith/abel_cancel.ML for OrderedGroup.thy
 
obua 
parents: 
14738 
diff
changeset
 | 
1174  | 
apply (subst add_left_cancel)  | 
| 
 
a080eeeaec14
Modification / Installation of Provers/Arith/abel_cancel.ML for OrderedGroup.thy
 
obua 
parents: 
14738 
diff
changeset
 | 
1175  | 
apply simp  | 
| 
 
a080eeeaec14
Modification / Installation of Provers/Arith/abel_cancel.ML for OrderedGroup.thy
 
obua 
parents: 
14738 
diff
changeset
 | 
1176  | 
done  | 
| 
 
a080eeeaec14
Modification / Installation of Provers/Arith/abel_cancel.ML for OrderedGroup.thy
 
obua 
parents: 
14738 
diff
changeset
 | 
1177  | 
|
| 
 
a080eeeaec14
Modification / Installation of Provers/Arith/abel_cancel.ML for OrderedGroup.thy
 
obua 
parents: 
14738 
diff
changeset
 | 
1178  | 
lemma add_cancel_end: "(x + (y + z) = y) = (x = - (z::'a::ab_group_add))"  | 
| 
 
a080eeeaec14
Modification / Installation of Provers/Arith/abel_cancel.ML for OrderedGroup.thy
 
obua 
parents: 
14738 
diff
changeset
 | 
1179  | 
apply (subst add_cancel_21[of _ _ _ 0, simplified])  | 
| 
 
a080eeeaec14
Modification / Installation of Provers/Arith/abel_cancel.ML for OrderedGroup.thy
 
obua 
parents: 
14738 
diff
changeset
 | 
1180  | 
apply (simp add: add_right_cancel[symmetric, of "x" "-z" "z", simplified])  | 
| 
 
a080eeeaec14
Modification / Installation of Provers/Arith/abel_cancel.ML for OrderedGroup.thy
 
obua 
parents: 
14738 
diff
changeset
 | 
1181  | 
done  | 
| 
 
a080eeeaec14
Modification / Installation of Provers/Arith/abel_cancel.ML for OrderedGroup.thy
 
obua 
parents: 
14738 
diff
changeset
 | 
1182  | 
|
| 
35028
 
108662d50512
more consistent naming of type classes involving orderings (and lattices) -- c.f. NEWS
 
haftmann 
parents: 
34973 
diff
changeset
 | 
1183  | 
lemma less_eqI: "(x::'a::ordered_ab_group_add) - y = x' - y' \<Longrightarrow> (x < y) = (x' < y')"  | 
| 
14754
 
a080eeeaec14
Modification / Installation of Provers/Arith/abel_cancel.ML for OrderedGroup.thy
 
obua 
parents: 
14738 
diff
changeset
 | 
1184  | 
by (simp add: less_iff_diff_less_0[of x y] less_iff_diff_less_0[of x' y'])  | 
| 
 
a080eeeaec14
Modification / Installation of Provers/Arith/abel_cancel.ML for OrderedGroup.thy
 
obua 
parents: 
14738 
diff
changeset
 | 
1185  | 
|
| 
35028
 
108662d50512
more consistent naming of type classes involving orderings (and lattices) -- c.f. NEWS
 
haftmann 
parents: 
34973 
diff
changeset
 | 
1186  | 
lemma le_eqI: "(x::'a::ordered_ab_group_add) - y = x' - y' \<Longrightarrow> (y <= x) = (y' <= x')"  | 
| 
14754
 
a080eeeaec14
Modification / Installation of Provers/Arith/abel_cancel.ML for OrderedGroup.thy
 
obua 
parents: 
14738 
diff
changeset
 | 
1187  | 
apply (simp add: le_iff_diff_le_0[of y x] le_iff_diff_le_0[of y' x'])  | 
| 
 
a080eeeaec14
Modification / Installation of Provers/Arith/abel_cancel.ML for OrderedGroup.thy
 
obua 
parents: 
14738 
diff
changeset
 | 
1188  | 
apply (simp add: neg_le_iff_le[symmetric, of "y-x" 0] neg_le_iff_le[symmetric, of "y'-x'" 0])  | 
| 
 
a080eeeaec14
Modification / Installation of Provers/Arith/abel_cancel.ML for OrderedGroup.thy
 
obua 
parents: 
14738 
diff
changeset
 | 
1189  | 
done  | 
| 
 
a080eeeaec14
Modification / Installation of Provers/Arith/abel_cancel.ML for OrderedGroup.thy
 
obua 
parents: 
14738 
diff
changeset
 | 
1190  | 
|
| 
 
a080eeeaec14
Modification / Installation of Provers/Arith/abel_cancel.ML for OrderedGroup.thy
 
obua 
parents: 
14738 
diff
changeset
 | 
1191  | 
lemma eq_eqI: "(x::'a::ab_group_add) - y = x' - y' \<Longrightarrow> (x = y) = (x' = y')"  | 
| 30629 | 1192  | 
by (simp only: eq_iff_diff_eq_0[of x y] eq_iff_diff_eq_0[of x' y'])  | 
| 
14754
 
a080eeeaec14
Modification / Installation of Provers/Arith/abel_cancel.ML for OrderedGroup.thy
 
obua 
parents: 
14738 
diff
changeset
 | 
1193  | 
|
| 
 
a080eeeaec14
Modification / Installation of Provers/Arith/abel_cancel.ML for OrderedGroup.thy
 
obua 
parents: 
14738 
diff
changeset
 | 
1194  | 
lemma diff_def: "(x::'a::ab_group_add) - y == x + (-y)"  | 
| 
 
a080eeeaec14
Modification / Installation of Provers/Arith/abel_cancel.ML for OrderedGroup.thy
 
obua 
parents: 
14738 
diff
changeset
 | 
1195  | 
by (simp add: diff_minus)  | 
| 
 
a080eeeaec14
Modification / Installation of Provers/Arith/abel_cancel.ML for OrderedGroup.thy
 
obua 
parents: 
14738 
diff
changeset
 | 
1196  | 
|
| 25090 | 1197  | 
lemma le_add_right_mono:  | 
| 15178 | 1198  | 
assumes  | 
| 
35028
 
108662d50512
more consistent naming of type classes involving orderings (and lattices) -- c.f. NEWS
 
haftmann 
parents: 
34973 
diff
changeset
 | 
1199  | 
"a <= b + (c::'a::ordered_ab_group_add)"  | 
| 15178 | 1200  | 
"c <= d"  | 
1201  | 
shows "a <= b + d"  | 
|
1202  | 
apply (rule_tac order_trans[where y = "b+c"])  | 
|
1203  | 
apply (simp_all add: prems)  | 
|
1204  | 
done  | 
|
1205  | 
||
1206  | 
||
| 25090 | 1207  | 
subsection {* Tools setup *}
 | 
1208  | 
||
| 
35828
 
46cfc4b8112e
now use "Named_Thms" for "noatp", and renamed "noatp" to "no_atp"
 
blanchet 
parents: 
35723 
diff
changeset
 | 
1209  | 
lemma add_mono_thms_linordered_semiring [no_atp]:  | 
| 
35028
 
108662d50512
more consistent naming of type classes involving orderings (and lattices) -- c.f. NEWS
 
haftmann 
parents: 
34973 
diff
changeset
 | 
1210  | 
fixes i j k :: "'a\<Colon>ordered_ab_semigroup_add"  | 
| 25077 | 1211  | 
shows "i \<le> j \<and> k \<le> l \<Longrightarrow> i + k \<le> j + l"  | 
1212  | 
and "i = j \<and> k \<le> l \<Longrightarrow> i + k \<le> j + l"  | 
|
1213  | 
and "i \<le> j \<and> k = l \<Longrightarrow> i + k \<le> j + l"  | 
|
1214  | 
and "i = j \<and> k = l \<Longrightarrow> i + k = j + l"  | 
|
1215  | 
by (rule add_mono, clarify+)+  | 
|
1216  | 
||
| 
35828
 
46cfc4b8112e
now use "Named_Thms" for "noatp", and renamed "noatp" to "no_atp"
 
blanchet 
parents: 
35723 
diff
changeset
 | 
1217  | 
lemma add_mono_thms_linordered_field [no_atp]:  | 
| 
35028
 
108662d50512
more consistent naming of type classes involving orderings (and lattices) -- c.f. NEWS
 
haftmann 
parents: 
34973 
diff
changeset
 | 
1218  | 
fixes i j k :: "'a\<Colon>ordered_cancel_ab_semigroup_add"  | 
| 25077 | 1219  | 
shows "i < j \<and> k = l \<Longrightarrow> i + k < j + l"  | 
1220  | 
and "i = j \<and> k < l \<Longrightarrow> i + k < j + l"  | 
|
1221  | 
and "i < j \<and> k \<le> l \<Longrightarrow> i + k < j + l"  | 
|
1222  | 
and "i \<le> j \<and> k < l \<Longrightarrow> i + k < j + l"  | 
|
1223  | 
and "i < j \<and> k < l \<Longrightarrow> i + k < j + l"  | 
|
1224  | 
by (auto intro: add_strict_right_mono add_strict_left_mono  | 
|
1225  | 
add_less_le_mono add_le_less_mono add_strict_mono)  | 
|
1226  | 
||
| 17085 | 1227  | 
text{*Simplification of @{term "x-y < 0"}, etc.*}
 | 
| 
35828
 
46cfc4b8112e
now use "Named_Thms" for "noatp", and renamed "noatp" to "no_atp"
 
blanchet 
parents: 
35723 
diff
changeset
 | 
1228  | 
lemmas diff_less_0_iff_less [simp, no_atp] = less_iff_diff_less_0 [symmetric]  | 
| 
 
46cfc4b8112e
now use "Named_Thms" for "noatp", and renamed "noatp" to "no_atp"
 
blanchet 
parents: 
35723 
diff
changeset
 | 
1229  | 
lemmas diff_le_0_iff_le [simp, no_atp] = le_iff_diff_le_0 [symmetric]  | 
| 17085 | 1230  | 
|
| 22482 | 1231  | 
ML {*
 | 
| 27250 | 1232  | 
structure ab_group_add_cancel = Abel_Cancel  | 
1233  | 
(  | 
|
| 22482 | 1234  | 
|
1235  | 
(* term order for abelian groups *)  | 
|
1236  | 
||
1237  | 
fun agrp_ord (Const (a, _)) = find_index (fn a' => a = a')  | 
|
| 
35267
 
8dfd816713c6
moved remaning class operations from Algebras.thy to Groups.thy
 
haftmann 
parents: 
35216 
diff
changeset
 | 
1238  | 
      [@{const_name Groups.zero}, @{const_name Groups.plus},
 | 
| 
 
8dfd816713c6
moved remaning class operations from Algebras.thy to Groups.thy
 
haftmann 
parents: 
35216 
diff
changeset
 | 
1239  | 
        @{const_name Groups.uminus}, @{const_name Groups.minus}]
 | 
| 22482 | 1240  | 
| agrp_ord _ = ~1;  | 
1241  | 
||
| 35408 | 1242  | 
fun termless_agrp (a, b) = (Term_Ord.term_lpo agrp_ord (a, b) = LESS);  | 
| 22482 | 1243  | 
|
1244  | 
local  | 
|
1245  | 
  val ac1 = mk_meta_eq @{thm add_assoc};
 | 
|
1246  | 
  val ac2 = mk_meta_eq @{thm add_commute};
 | 
|
1247  | 
  val ac3 = mk_meta_eq @{thm add_left_commute};
 | 
|
| 
35267
 
8dfd816713c6
moved remaning class operations from Algebras.thy to Groups.thy
 
haftmann 
parents: 
35216 
diff
changeset
 | 
1248  | 
  fun solve_add_ac thy _ (_ $ (Const (@{const_name Groups.plus},_) $ _ $ _) $ _) =
 | 
| 22482 | 1249  | 
SOME ac1  | 
| 
35267
 
8dfd816713c6
moved remaning class operations from Algebras.thy to Groups.thy
 
haftmann 
parents: 
35216 
diff
changeset
 | 
1250  | 
    | solve_add_ac thy _ (_ $ x $ (Const (@{const_name Groups.plus},_) $ y $ z)) =
 | 
| 22482 | 1251  | 
if termless_agrp (y, x) then SOME ac3 else NONE  | 
1252  | 
| solve_add_ac thy _ (_ $ x $ y) =  | 
|
1253  | 
if termless_agrp (y, x) then SOME ac2 else NONE  | 
|
1254  | 
| solve_add_ac thy _ _ = NONE  | 
|
1255  | 
in  | 
|
| 32010 | 1256  | 
  val add_ac_proc = Simplifier.simproc @{theory}
 | 
| 22482 | 1257  | 
"add_ac_proc" ["x + y::'a::ab_semigroup_add"] solve_add_ac;  | 
1258  | 
end;  | 
|
1259  | 
||
| 27250 | 1260  | 
val eq_reflection = @{thm eq_reflection};
 | 
1261  | 
||
1262  | 
val T = @{typ "'a::ab_group_add"};
 | 
|
1263  | 
||
| 22482 | 1264  | 
val cancel_ss = HOL_basic_ss settermless termless_agrp  | 
1265  | 
addsimprocs [add_ac_proc] addsimps  | 
|
| 23085 | 1266  | 
  [@{thm add_0_left}, @{thm add_0_right}, @{thm diff_def},
 | 
| 22482 | 1267  | 
   @{thm minus_add_distrib}, @{thm minus_minus}, @{thm minus_zero},
 | 
1268  | 
   @{thm right_minus}, @{thm left_minus}, @{thm add_minus_cancel},
 | 
|
1269  | 
   @{thm minus_add_cancel}];
 | 
|
| 27250 | 1270  | 
|
1271  | 
val sum_pats = [@{cterm "x + y::'a::ab_group_add"}, @{cterm "x - y::'a::ab_group_add"}];
 | 
|
| 22482 | 1272  | 
|
| 22548 | 1273  | 
val eqI_rules = [@{thm less_eqI}, @{thm le_eqI}, @{thm eq_eqI}];
 | 
| 22482 | 1274  | 
|
1275  | 
val dest_eqI =  | 
|
| 35364 | 1276  | 
  fst o HOLogic.dest_bin @{const_name "op ="} HOLogic.boolT o HOLogic.dest_Trueprop o concl_of;
 | 
| 22482 | 1277  | 
|
| 27250 | 1278  | 
);  | 
| 22482 | 1279  | 
*}  | 
1280  | 
||
| 26480 | 1281  | 
ML {*
 | 
| 22482 | 1282  | 
Addsimprocs [ab_group_add_cancel.sum_conv, ab_group_add_cancel.rel_conv];  | 
1283  | 
*}  | 
|
| 17085 | 1284  | 
|
| 33364 | 1285  | 
code_modulename SML  | 
| 
35050
 
9f841f20dca6
renamed OrderedGroup to Groups; split theory Ring_and_Field into Rings Fields
 
haftmann 
parents: 
35036 
diff
changeset
 | 
1286  | 
Groups Arith  | 
| 33364 | 1287  | 
|
1288  | 
code_modulename OCaml  | 
|
| 
35050
 
9f841f20dca6
renamed OrderedGroup to Groups; split theory Ring_and_Field into Rings Fields
 
haftmann 
parents: 
35036 
diff
changeset
 | 
1289  | 
Groups Arith  | 
| 33364 | 1290  | 
|
1291  | 
code_modulename Haskell  | 
|
| 
35050
 
9f841f20dca6
renamed OrderedGroup to Groups; split theory Ring_and_Field into Rings Fields
 
haftmann 
parents: 
35036 
diff
changeset
 | 
1292  | 
Groups Arith  | 
| 33364 | 1293  | 
|
| 14738 | 1294  | 
end  |