| author | wenzelm | 
| Mon, 17 Apr 2017 19:44:13 +0200 | |
| changeset 65495 | 60d4fbed2b1f | 
| parent 64290 | fb5c74a58796 | 
| child 69216 | 1a52baa70aed | 
| permissions | -rw-r--r-- | 
| 63588 | 1  | 
(* Title: HOL/Groups.thy  | 
2  | 
Author: Gertrud Bauer  | 
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3  | 
Author: Steven Obua  | 
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4  | 
Author: Lawrence C Paulson  | 
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5  | 
Author: Markus Wenzel  | 
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6  | 
Author: Jeremy Avigad  | 
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*)  | 
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||
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section \<open>Groups, also combined with orderings\<close>  | 
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11  | 
theory Groups  | 
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imports Orderings  | 
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begin  | 
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subsection \<open>Dynamic facts\<close>  | 
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16  | 
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named_theorems ac_simps "associativity and commutativity simplification rules"  | 
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and algebra_simps "algebra simplification rules"  | 
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and field_simps "algebra simplification rules for fields"  | 
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text \<open>  | 
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The rewrites accumulated in \<open>algebra_simps\<close> deal with the classical  | 
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algebraic structures of groups, rings and family. They simplify terms by  | 
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multiplying everything out (in case of a ring) and bringing sums and  | 
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products into a canonical form (by ordered rewriting). As a result it  | 
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decides group and ring equalities but also helps with inequalities.  | 
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Of course it also works for fields, but it knows nothing about  | 
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multiplicative inverses or division. This is catered for by \<open>field_simps\<close>.  | 
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Facts in \<open>field_simps\<close> multiply with denominators in (in)equations if they  | 
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can be proved to be non-zero (for equations) or positive/negative (for  | 
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inequalities). Can be too aggressive and is therefore separate from the more  | 
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benign \<open>algebra_simps\<close>.  | 
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\<close>  | 
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36  | 
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37  | 
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subsection \<open>Abstract structures\<close>  | 
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text \<open>  | 
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These locales provide basic structures for interpretation into bigger  | 
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structures; extensions require careful thinking, otherwise undesired effects  | 
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may occur due to interpretation.  | 
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\<close>  | 
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45  | 
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46  | 
locale semigroup =  | 
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fixes f :: "'a \<Rightarrow> 'a \<Rightarrow> 'a" (infixl "\<^bold>*" 70)  | 
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assumes assoc [ac_simps]: "a \<^bold>* b \<^bold>* c = a \<^bold>* (b \<^bold>* c)"  | 
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49  | 
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locale abel_semigroup = semigroup +  | 
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assumes commute [ac_simps]: "a \<^bold>* b = b \<^bold>* a"  | 
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begin  | 
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lemma left_commute [ac_simps]: "b \<^bold>* (a \<^bold>* c) = a \<^bold>* (b \<^bold>* c)"  | 
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proof -  | 
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have "(b \<^bold>* a) \<^bold>* c = (a \<^bold>* b) \<^bold>* c"  | 
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by (simp only: commute)  | 
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then show ?thesis  | 
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by (simp only: assoc)  | 
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qed  | 
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end  | 
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locale monoid = semigroup +  | 
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  fixes z :: 'a ("\<^bold>1")
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assumes left_neutral [simp]: "\<^bold>1 \<^bold>* a = a"  | 
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assumes right_neutral [simp]: "a \<^bold>* \<^bold>1 = a"  | 
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locale comm_monoid = abel_semigroup +  | 
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  fixes z :: 'a ("\<^bold>1")
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71  | 
assumes comm_neutral: "a \<^bold>* \<^bold>1 = a"  | 
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begin  | 
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sublocale monoid  | 
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by standard (simp_all add: commute comm_neutral)  | 
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end  | 
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locale group = semigroup +  | 
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  fixes z :: 'a ("\<^bold>1")
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fixes inverse :: "'a \<Rightarrow> 'a"  | 
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assumes group_left_neutral: "\<^bold>1 \<^bold>* a = a"  | 
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assumes left_inverse [simp]: "inverse a \<^bold>* a = \<^bold>1"  | 
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begin  | 
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lemma left_cancel: "a \<^bold>* b = a \<^bold>* c \<longleftrightarrow> b = c"  | 
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proof  | 
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assume "a \<^bold>* b = a \<^bold>* c"  | 
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then have "inverse a \<^bold>* (a \<^bold>* b) = inverse a \<^bold>* (a \<^bold>* c)" by simp  | 
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then have "(inverse a \<^bold>* a) \<^bold>* b = (inverse a \<^bold>* a) \<^bold>* c"  | 
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by (simp only: assoc)  | 
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then show "b = c" by (simp add: group_left_neutral)  | 
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qed simp  | 
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sublocale monoid  | 
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proof  | 
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fix a  | 
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have "inverse a \<^bold>* a = \<^bold>1" by simp  | 
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then have "inverse a \<^bold>* (a \<^bold>* \<^bold>1) = inverse a \<^bold>* a"  | 
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by (simp add: group_left_neutral assoc [symmetric])  | 
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with left_cancel show "a \<^bold>* \<^bold>1 = a"  | 
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by (simp only: left_cancel)  | 
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qed (fact group_left_neutral)  | 
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lemma inverse_unique:  | 
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assumes "a \<^bold>* b = \<^bold>1"  | 
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shows "inverse a = b"  | 
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proof -  | 
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from assms have "inverse a \<^bold>* (a \<^bold>* b) = inverse a"  | 
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by simp  | 
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then show ?thesis  | 
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by (simp add: assoc [symmetric])  | 
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qed  | 
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lemma inverse_neutral [simp]: "inverse \<^bold>1 = \<^bold>1"  | 
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by (rule inverse_unique) simp  | 
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lemma inverse_inverse [simp]: "inverse (inverse a) = a"  | 
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by (rule inverse_unique) simp  | 
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lemma right_inverse [simp]: "a \<^bold>* inverse a = \<^bold>1"  | 
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proof -  | 
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have "a \<^bold>* inverse a = inverse (inverse a) \<^bold>* inverse a"  | 
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by simp  | 
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also have "\<dots> = \<^bold>1"  | 
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by (rule left_inverse)  | 
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then show ?thesis by simp  | 
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qed  | 
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lemma inverse_distrib_swap: "inverse (a \<^bold>* b) = inverse b \<^bold>* inverse a"  | 
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proof (rule inverse_unique)  | 
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have "a \<^bold>* b \<^bold>* (inverse b \<^bold>* inverse a) =  | 
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a \<^bold>* (b \<^bold>* inverse b) \<^bold>* inverse a"  | 
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by (simp only: assoc)  | 
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also have "\<dots> = \<^bold>1"  | 
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by simp  | 
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finally show "a \<^bold>* b \<^bold>* (inverse b \<^bold>* inverse a) = \<^bold>1" .  | 
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qed  | 
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lemma right_cancel: "b \<^bold>* a = c \<^bold>* a \<longleftrightarrow> b = c"  | 
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proof  | 
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assume "b \<^bold>* a = c \<^bold>* a"  | 
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then have "b \<^bold>* a \<^bold>* inverse a= c \<^bold>* a \<^bold>* inverse a"  | 
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by simp  | 
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then show "b = c"  | 
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by (simp add: assoc)  | 
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qed simp  | 
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end  | 
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subsection \<open>Generic operations\<close>  | 
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153  | 
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class zero =  | 
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155  | 
  fixes zero :: 'a  ("0")
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156  | 
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157  | 
class one =  | 
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158  | 
  fixes one  :: 'a  ("1")
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159  | 
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160  | 
hide_const (open) zero one  | 
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161  | 
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162  | 
lemma Let_0 [simp]: "Let 0 f = f 0"  | 
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163  | 
unfolding Let_def ..  | 
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164  | 
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165  | 
lemma Let_1 [simp]: "Let 1 f = f 1"  | 
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166  | 
unfolding Let_def ..  | 
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167  | 
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setup \<open>  | 
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169  | 
Reorient_Proc.add  | 
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170  | 
    (fn Const(@{const_name Groups.zero}, _) => true
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171  | 
      | Const(@{const_name Groups.one}, _) => true
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172  | 
| _ => false)  | 
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\<close>  | 
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174  | 
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175  | 
simproc_setup reorient_zero ("0 = x") = Reorient_Proc.proc
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176  | 
simproc_setup reorient_one ("1 = x") = Reorient_Proc.proc
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177  | 
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typed_print_translation \<open>  | 
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179  | 
let  | 
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180  | 
fun tr' c = (c, fn ctxt => fn T => fn ts =>  | 
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181  | 
if null ts andalso Printer.type_emphasis ctxt T then  | 
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        Syntax.const @{syntax_const "_constrain"} $ Syntax.const c $
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183  | 
Syntax_Phases.term_of_typ ctxt T  | 
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184  | 
else raise Match);  | 
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185  | 
  in map tr' [@{const_syntax Groups.one}, @{const_syntax Groups.zero}] end;
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\<close> \<comment> \<open>show types that are presumably too general\<close>  | 
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187  | 
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188  | 
class plus =  | 
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189  | 
fixes plus :: "'a \<Rightarrow> 'a \<Rightarrow> 'a" (infixl "+" 65)  | 
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190  | 
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191  | 
class minus =  | 
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192  | 
fixes minus :: "'a \<Rightarrow> 'a \<Rightarrow> 'a" (infixl "-" 65)  | 
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193  | 
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194  | 
class uminus =  | 
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195  | 
  fixes uminus :: "'a \<Rightarrow> 'a"  ("- _" [81] 80)
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196  | 
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197  | 
class times =  | 
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198  | 
fixes times :: "'a \<Rightarrow> 'a \<Rightarrow> 'a" (infixl "*" 70)  | 
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199  | 
|
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200  | 
|
| 60758 | 201  | 
subsection \<open>Semigroups and Monoids\<close>  | 
| 14738 | 202  | 
|
| 22390 | 203  | 
class semigroup_add = plus +  | 
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204  | 
assumes add_assoc [algebra_simps, field_simps]: "(a + b) + c = a + (b + c)"  | 
| 54868 | 205  | 
begin  | 
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206  | 
|
| 61605 | 207  | 
sublocale add: semigroup plus  | 
| 61169 | 208  | 
by standard (fact add_assoc)  | 
| 22390 | 209  | 
|
| 54868 | 210  | 
end  | 
211  | 
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212  | 
hide_fact add_assoc  | 
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213  | 
|
| 22390 | 214  | 
class ab_semigroup_add = semigroup_add +  | 
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215  | 
assumes add_commute [algebra_simps, field_simps]: "a + b = b + a"  | 
| 54868 | 216  | 
begin  | 
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217  | 
|
| 61605 | 218  | 
sublocale add: abel_semigroup plus  | 
| 61169 | 219  | 
by standard (fact add_commute)  | 
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220  | 
|
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221  | 
declare add.left_commute [algebra_simps, field_simps]  | 
| 25062 | 222  | 
|
| 61337 | 223  | 
lemmas add_ac = add.assoc add.commute add.left_commute  | 
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224  | 
|
| 25062 | 225  | 
end  | 
| 14738 | 226  | 
|
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227  | 
hide_fact add_commute  | 
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228  | 
|
| 61337 | 229  | 
lemmas add_ac = add.assoc add.commute add.left_commute  | 
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230  | 
|
| 22390 | 231  | 
class semigroup_mult = times +  | 
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232  | 
assumes mult_assoc [algebra_simps, field_simps]: "(a * b) * c = a * (b * c)"  | 
| 54868 | 233  | 
begin  | 
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234  | 
|
| 61605 | 235  | 
sublocale mult: semigroup times  | 
| 61169 | 236  | 
by standard (fact mult_assoc)  | 
| 14738 | 237  | 
|
| 54868 | 238  | 
end  | 
239  | 
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240  | 
hide_fact mult_assoc  | 
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241  | 
|
| 22390 | 242  | 
class ab_semigroup_mult = semigroup_mult +  | 
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243  | 
assumes mult_commute [algebra_simps, field_simps]: "a * b = b * a"  | 
| 54868 | 244  | 
begin  | 
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245  | 
|
| 61605 | 246  | 
sublocale mult: abel_semigroup times  | 
| 61169 | 247  | 
by standard (fact mult_commute)  | 
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248  | 
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249  | 
declare mult.left_commute [algebra_simps, field_simps]  | 
| 25062 | 250  | 
|
| 61337 | 251  | 
lemmas mult_ac = mult.assoc mult.commute mult.left_commute  | 
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252  | 
|
| 23181 | 253  | 
end  | 
| 14738 | 254  | 
|
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255  | 
hide_fact mult_commute  | 
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256  | 
|
| 61337 | 257  | 
lemmas mult_ac = mult.assoc mult.commute mult.left_commute  | 
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258  | 
|
| 23085 | 259  | 
class monoid_add = zero + semigroup_add +  | 
| 35720 | 260  | 
assumes add_0_left: "0 + a = a"  | 
261  | 
and add_0_right: "a + 0 = a"  | 
|
| 54868 | 262  | 
begin  | 
| 35720 | 263  | 
|
| 61605 | 264  | 
sublocale add: monoid plus 0  | 
| 61169 | 265  | 
by standard (fact add_0_left add_0_right)+  | 
| 23085 | 266  | 
|
| 54868 | 267  | 
end  | 
268  | 
||
| 26071 | 269  | 
lemma zero_reorient: "0 = x \<longleftrightarrow> x = 0"  | 
| 54868 | 270  | 
by (fact eq_commute)  | 
| 26071 | 271  | 
|
| 22390 | 272  | 
class comm_monoid_add = zero + ab_semigroup_add +  | 
| 25062 | 273  | 
assumes add_0: "0 + a = a"  | 
| 54868 | 274  | 
begin  | 
| 23085 | 275  | 
|
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276  | 
subclass monoid_add  | 
| 61169 | 277  | 
by standard (simp_all add: add_0 add.commute [of _ 0])  | 
| 25062 | 278  | 
|
| 61605 | 279  | 
sublocale add: comm_monoid plus 0  | 
| 61169 | 280  | 
by standard (simp add: ac_simps)  | 
| 14738 | 281  | 
|
| 54868 | 282  | 
end  | 
283  | 
||
| 22390 | 284  | 
class monoid_mult = one + semigroup_mult +  | 
| 35720 | 285  | 
assumes mult_1_left: "1 * a = a"  | 
286  | 
and mult_1_right: "a * 1 = a"  | 
|
| 54868 | 287  | 
begin  | 
| 35720 | 288  | 
|
| 61605 | 289  | 
sublocale mult: monoid times 1  | 
| 61169 | 290  | 
by standard (fact mult_1_left mult_1_right)+  | 
| 14738 | 291  | 
|
| 54868 | 292  | 
end  | 
293  | 
||
| 26071 | 294  | 
lemma one_reorient: "1 = x \<longleftrightarrow> x = 1"  | 
| 54868 | 295  | 
by (fact eq_commute)  | 
| 26071 | 296  | 
|
| 22390 | 297  | 
class comm_monoid_mult = one + ab_semigroup_mult +  | 
| 25062 | 298  | 
assumes mult_1: "1 * a = a"  | 
| 54868 | 299  | 
begin  | 
| 14738 | 300  | 
|
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301  | 
subclass monoid_mult  | 
| 61169 | 302  | 
by standard (simp_all add: mult_1 mult.commute [of _ 1])  | 
| 25062 | 303  | 
|
| 61605 | 304  | 
sublocale mult: comm_monoid times 1  | 
| 61169 | 305  | 
by standard (simp add: ac_simps)  | 
| 14738 | 306  | 
|
| 54868 | 307  | 
end  | 
308  | 
||
| 22390 | 309  | 
class cancel_semigroup_add = semigroup_add +  | 
| 25062 | 310  | 
assumes add_left_imp_eq: "a + b = a + c \<Longrightarrow> b = c"  | 
311  | 
assumes add_right_imp_eq: "b + a = c + a \<Longrightarrow> b = c"  | 
|
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312  | 
begin  | 
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313  | 
|
| 63325 | 314  | 
lemma add_left_cancel [simp]: "a + b = a + c \<longleftrightarrow> b = c"  | 
315  | 
by (blast dest: add_left_imp_eq)  | 
|
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316  | 
|
| 63325 | 317  | 
lemma add_right_cancel [simp]: "b + a = c + a \<longleftrightarrow> b = c"  | 
318  | 
by (blast dest: add_right_imp_eq)  | 
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319  | 
|
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320  | 
end  | 
| 14738 | 321  | 
|
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322  | 
class cancel_ab_semigroup_add = ab_semigroup_add + minus +  | 
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323  | 
assumes add_diff_cancel_left' [simp]: "(a + b) - a = b"  | 
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324  | 
assumes diff_diff_add [algebra_simps, field_simps]: "a - b - c = a - (b + c)"  | 
| 25267 | 325  | 
begin  | 
| 14738 | 326  | 
|
| 63325 | 327  | 
lemma add_diff_cancel_right' [simp]: "(a + b) - b = a"  | 
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328  | 
using add_diff_cancel_left' [of b a] by (simp add: ac_simps)  | 
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329  | 
|
| 25267 | 330  | 
subclass cancel_semigroup_add  | 
| 28823 | 331  | 
proof  | 
| 22390 | 332  | 
fix a b c :: 'a  | 
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333  | 
assume "a + b = a + c"  | 
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334  | 
then have "a + b - a = a + c - a"  | 
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335  | 
by simp  | 
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336  | 
then show "b = c"  | 
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337  | 
by simp  | 
| 22390 | 338  | 
next  | 
| 14738 | 339  | 
fix a b c :: 'a  | 
340  | 
assume "b + a = c + a"  | 
|
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341  | 
then have "b + a - a = c + a - a"  | 
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342  | 
by simp  | 
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343  | 
then show "b = c"  | 
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344  | 
by simp  | 
| 14738 | 345  | 
qed  | 
346  | 
||
| 63325 | 347  | 
lemma add_diff_cancel_left [simp]: "(c + a) - (c + b) = a - b"  | 
| 
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348  | 
unfolding diff_diff_add [symmetric] by simp  | 
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349  | 
|
| 63325 | 350  | 
lemma add_diff_cancel_right [simp]: "(a + c) - (b + c) = a - b"  | 
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351  | 
using add_diff_cancel_left [symmetric] by (simp add: ac_simps)  | 
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352  | 
|
| 63325 | 353  | 
lemma diff_right_commute: "a - c - b = a - b - c"  | 
| 
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354  | 
by (simp add: diff_diff_add add.commute)  | 
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355  | 
|
| 25267 | 356  | 
end  | 
357  | 
||
| 29904 | 358  | 
class cancel_comm_monoid_add = cancel_ab_semigroup_add + comm_monoid_add  | 
| 59322 | 359  | 
begin  | 
360  | 
||
| 63325 | 361  | 
lemma diff_zero [simp]: "a - 0 = a"  | 
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362  | 
using add_diff_cancel_right' [of a 0] by simp  | 
| 59322 | 363  | 
|
| 63325 | 364  | 
lemma diff_cancel [simp]: "a - a = 0"  | 
| 59322 | 365  | 
proof -  | 
| 63325 | 366  | 
have "(a + 0) - (a + 0) = 0"  | 
367  | 
by (simp only: add_diff_cancel_left diff_zero)  | 
|
| 59322 | 368  | 
then show ?thesis by simp  | 
369  | 
qed  | 
|
370  | 
||
371  | 
lemma add_implies_diff:  | 
|
372  | 
assumes "c + b = a"  | 
|
373  | 
shows "c = a - b"  | 
|
374  | 
proof -  | 
|
| 63325 | 375  | 
from assms have "(b + c) - (b + 0) = a - b"  | 
376  | 
by (simp add: add.commute)  | 
|
| 59322 | 377  | 
then show "c = a - b" by simp  | 
378  | 
qed  | 
|
379  | 
||
| 63325 | 380  | 
lemma add_cancel_right_right [simp]: "a = a + b \<longleftrightarrow> b = 0"  | 
381  | 
(is "?P \<longleftrightarrow> ?Q")  | 
|
| 62608 | 382  | 
proof  | 
| 63325 | 383  | 
assume ?Q  | 
384  | 
then show ?P by simp  | 
|
| 62608 | 385  | 
next  | 
| 63325 | 386  | 
assume ?P  | 
387  | 
then have "a - a = a + b - a" by simp  | 
|
| 62608 | 388  | 
then show ?Q by simp  | 
389  | 
qed  | 
|
390  | 
||
| 63325 | 391  | 
lemma add_cancel_right_left [simp]: "a = b + a \<longleftrightarrow> b = 0"  | 
| 62608 | 392  | 
using add_cancel_right_right [of a b] by (simp add: ac_simps)  | 
393  | 
||
| 63325 | 394  | 
lemma add_cancel_left_right [simp]: "a + b = a \<longleftrightarrow> b = 0"  | 
| 62608 | 395  | 
by (auto dest: sym)  | 
396  | 
||
| 63325 | 397  | 
lemma add_cancel_left_left [simp]: "b + a = a \<longleftrightarrow> b = 0"  | 
| 62608 | 398  | 
by (auto dest: sym)  | 
399  | 
||
| 
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400  | 
end  | 
| 
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401  | 
|
| 
 
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402  | 
class comm_monoid_diff = cancel_comm_monoid_add +  | 
| 
 
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403  | 
assumes zero_diff [simp]: "0 - a = 0"  | 
| 
 
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404  | 
begin  | 
| 
 
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 | 
405  | 
|
| 63325 | 406  | 
lemma diff_add_zero [simp]: "a - (a + b) = 0"  | 
| 
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 | 
407  | 
proof -  | 
| 63325 | 408  | 
have "a - (a + b) = (a + 0) - (a + b)"  | 
409  | 
by simp  | 
|
410  | 
also have "\<dots> = 0"  | 
|
411  | 
by (simp only: add_diff_cancel_left zero_diff)  | 
|
| 
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412  | 
finally show ?thesis .  | 
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413  | 
qed  | 
| 
 
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 | 
414  | 
|
| 59322 | 415  | 
end  | 
416  | 
||
| 29904 | 417  | 
|
| 60758 | 418  | 
subsection \<open>Groups\<close>  | 
| 23085 | 419  | 
|
| 25762 | 420  | 
class group_add = minus + uminus + monoid_add +  | 
| 63364 | 421  | 
assumes left_minus: "- a + a = 0"  | 
| 
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422  | 
assumes add_uminus_conv_diff [simp]: "a + (- b) = a - b"  | 
| 25062 | 423  | 
begin  | 
| 23085 | 424  | 
|
| 63325 | 425  | 
lemma diff_conv_add_uminus: "a - b = a + (- b)"  | 
| 
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426  | 
by simp  | 
| 
 
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 | 
427  | 
|
| 63364 | 428  | 
sublocale add: group plus 0 uminus  | 
429  | 
by standard (simp_all add: left_minus)  | 
|
430  | 
||
| 63588 | 431  | 
lemma minus_unique: "a + b = 0 \<Longrightarrow> - a = b"  | 
432  | 
by (fact add.inverse_unique)  | 
|
| 
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 | 
433  | 
|
| 63364 | 434  | 
lemma minus_zero: "- 0 = 0"  | 
435  | 
by (fact add.inverse_neutral)  | 
|
| 14738 | 436  | 
|
| 63364 | 437  | 
lemma minus_minus: "- (- a) = a"  | 
438  | 
by (fact add.inverse_inverse)  | 
|
| 14738 | 439  | 
|
| 
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440  | 
lemma right_minus: "a + - a = 0"  | 
| 63364 | 441  | 
by (fact add.right_inverse)  | 
| 14738 | 442  | 
|
| 63325 | 443  | 
lemma diff_self [simp]: "a - a = 0"  | 
| 
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444  | 
using right_minus [of a] by simp  | 
| 
 
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445  | 
|
| 
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446  | 
subclass cancel_semigroup_add  | 
| 63364 | 447  | 
by standard (simp_all add: add.left_cancel add.right_cancel)  | 
| 
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448  | 
|
| 63325 | 449  | 
lemma minus_add_cancel [simp]: "- a + (a + b) = b"  | 
| 
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450  | 
by (simp add: add.assoc [symmetric])  | 
| 
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451  | 
|
| 63325 | 452  | 
lemma add_minus_cancel [simp]: "a + (- a + b) = b"  | 
| 
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453  | 
by (simp add: add.assoc [symmetric])  | 
| 
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454  | 
|
| 63325 | 455  | 
lemma diff_add_cancel [simp]: "a - b + b = a"  | 
| 
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456  | 
by (simp only: diff_conv_add_uminus add.assoc) simp  | 
| 
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457  | 
|
| 63325 | 458  | 
lemma add_diff_cancel [simp]: "a + b - b = a"  | 
| 
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459  | 
by (simp only: diff_conv_add_uminus add.assoc) simp  | 
| 
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460  | 
|
| 63325 | 461  | 
lemma minus_add: "- (a + b) = - b + - a"  | 
| 63364 | 462  | 
by (fact add.inverse_distrib_swap)  | 
| 
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463  | 
|
| 63325 | 464  | 
lemma right_minus_eq [simp]: "a - b = 0 \<longleftrightarrow> a = b"  | 
| 14738 | 465  | 
proof  | 
| 23085 | 466  | 
assume "a - b = 0"  | 
| 
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467  | 
have "a = (a - b) + b" by (simp add: add.assoc)  | 
| 60758 | 468  | 
also have "\<dots> = b" using \<open>a - b = 0\<close> by simp  | 
| 23085 | 469  | 
finally show "a = b" .  | 
| 14738 | 470  | 
next  | 
| 63325 | 471  | 
assume "a = b"  | 
472  | 
then show "a - b = 0" by simp  | 
|
| 14738 | 473  | 
qed  | 
474  | 
||
| 63325 | 475  | 
lemma eq_iff_diff_eq_0: "a = b \<longleftrightarrow> a - b = 0"  | 
| 
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476  | 
by (fact right_minus_eq [symmetric])  | 
| 14738 | 477  | 
|
| 63325 | 478  | 
lemma diff_0 [simp]: "0 - a = - a"  | 
| 
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479  | 
by (simp only: diff_conv_add_uminus add_0_left)  | 
| 14738 | 480  | 
|
| 63325 | 481  | 
lemma diff_0_right [simp]: "a - 0 = a"  | 
| 
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482  | 
by (simp only: diff_conv_add_uminus minus_zero add_0_right)  | 
| 14738 | 483  | 
|
| 63325 | 484  | 
lemma diff_minus_eq_add [simp]: "a - - b = a + b"  | 
| 
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485  | 
by (simp only: diff_conv_add_uminus minus_minus)  | 
| 14738 | 486  | 
|
| 63325 | 487  | 
lemma neg_equal_iff_equal [simp]: "- a = - b \<longleftrightarrow> a = b"  | 
| 
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 | 
488  | 
proof  | 
| 14738 | 489  | 
assume "- a = - b"  | 
| 63325 | 490  | 
then have "- (- a) = - (- b)" by simp  | 
491  | 
then show "a = b" by simp  | 
|
| 14738 | 492  | 
next  | 
| 25062 | 493  | 
assume "a = b"  | 
| 63325 | 494  | 
then show "- a = - b" by simp  | 
| 14738 | 495  | 
qed  | 
496  | 
||
| 63325 | 497  | 
lemma neg_equal_0_iff_equal [simp]: "- a = 0 \<longleftrightarrow> a = 0"  | 
| 
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 | 
498  | 
by (subst neg_equal_iff_equal [symmetric]) simp  | 
| 14738 | 499  | 
|
| 63325 | 500  | 
lemma neg_0_equal_iff_equal [simp]: "0 = - a \<longleftrightarrow> 0 = a"  | 
| 
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501  | 
by (subst neg_equal_iff_equal [symmetric]) simp  | 
| 14738 | 502  | 
|
| 63325 | 503  | 
text \<open>The next two equations can make the simplifier loop!\<close>  | 
| 14738 | 504  | 
|
| 63325 | 505  | 
lemma equation_minus_iff: "a = - b \<longleftrightarrow> b = - a"  | 
| 14738 | 506  | 
proof -  | 
| 63325 | 507  | 
have "- (- a) = - b \<longleftrightarrow> - a = b"  | 
508  | 
by (rule neg_equal_iff_equal)  | 
|
509  | 
then show ?thesis  | 
|
510  | 
by (simp add: eq_commute)  | 
|
| 25062 | 511  | 
qed  | 
512  | 
||
| 63325 | 513  | 
lemma minus_equation_iff: "- a = b \<longleftrightarrow> - b = a"  | 
| 25062 | 514  | 
proof -  | 
| 63325 | 515  | 
have "- a = - (- b) \<longleftrightarrow> a = -b"  | 
516  | 
by (rule neg_equal_iff_equal)  | 
|
517  | 
then show ?thesis  | 
|
518  | 
by (simp add: eq_commute)  | 
|
| 14738 | 519  | 
qed  | 
520  | 
||
| 63325 | 521  | 
lemma eq_neg_iff_add_eq_0: "a = - b \<longleftrightarrow> a + b = 0"  | 
| 
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522  | 
proof  | 
| 63325 | 523  | 
assume "a = - b"  | 
524  | 
then show "a + b = 0" by simp  | 
|
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525  | 
next  | 
| 
 
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 | 
526  | 
assume "a + b = 0"  | 
| 
 
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527  | 
moreover have "a + (b + - b) = (a + b) + - b"  | 
| 
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528  | 
by (simp only: add.assoc)  | 
| 63325 | 529  | 
ultimately show "a = - b"  | 
530  | 
by simp  | 
|
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531  | 
qed  | 
| 
 
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 | 
532  | 
|
| 63325 | 533  | 
lemma add_eq_0_iff2: "a + b = 0 \<longleftrightarrow> a = - b"  | 
| 
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534  | 
by (fact eq_neg_iff_add_eq_0 [symmetric])  | 
| 
 
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535  | 
|
| 63325 | 536  | 
lemma neg_eq_iff_add_eq_0: "- a = b \<longleftrightarrow> a + b = 0"  | 
| 
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537  | 
by (auto simp add: add_eq_0_iff2)  | 
| 44348 | 538  | 
|
| 63325 | 539  | 
lemma add_eq_0_iff: "a + b = 0 \<longleftrightarrow> b = - a"  | 
| 
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540  | 
by (auto simp add: neg_eq_iff_add_eq_0 [symmetric])  | 
| 
45548
 
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541  | 
|
| 63325 | 542  | 
lemma minus_diff_eq [simp]: "- (a - b) = b - a"  | 
| 
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543  | 
by (simp only: neg_eq_iff_add_eq_0 diff_conv_add_uminus add.assoc minus_add_cancel) simp  | 
| 
45548
 
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544  | 
|
| 63325 | 545  | 
lemma add_diff_eq [algebra_simps, field_simps]: "a + (b - c) = (a + b) - c"  | 
| 
57512
 
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546  | 
by (simp only: diff_conv_add_uminus add.assoc)  | 
| 
45548
 
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 | 
547  | 
|
| 63325 | 548  | 
lemma diff_add_eq_diff_diff_swap: "a - (b + c) = a - c - b"  | 
| 
57512
 
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549  | 
by (simp only: diff_conv_add_uminus add.assoc minus_add)  | 
| 
45548
 
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 | 
550  | 
|
| 63325 | 551  | 
lemma diff_eq_eq [algebra_simps, field_simps]: "a - b = c \<longleftrightarrow> a = c + b"  | 
| 
54230
 
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552  | 
by auto  | 
| 
45548
 
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changeset
 | 
553  | 
|
| 63325 | 554  | 
lemma eq_diff_eq [algebra_simps, field_simps]: "a = c - b \<longleftrightarrow> a + b = c"  | 
| 
54230
 
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555  | 
by auto  | 
| 
 
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 | 
556  | 
|
| 63325 | 557  | 
lemma diff_diff_eq2 [algebra_simps, field_simps]: "a - (b - c) = (a + c) - b"  | 
| 
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558  | 
by (simp only: diff_conv_add_uminus add.assoc) simp  | 
| 
45548
 
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 | 
559  | 
|
| 63325 | 560  | 
lemma diff_eq_diff_eq: "a - b = c - d \<Longrightarrow> a = b \<longleftrightarrow> c = d"  | 
| 
54230
 
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561  | 
by (simp only: eq_iff_diff_eq_0 [of a b] eq_iff_diff_eq_0 [of c d])  | 
| 
45548
 
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 | 
562  | 
|
| 25062 | 563  | 
end  | 
564  | 
||
| 25762 | 565  | 
class ab_group_add = minus + uminus + comm_monoid_add +  | 
| 25062 | 566  | 
assumes ab_left_minus: "- a + a = 0"  | 
| 59557 | 567  | 
assumes ab_diff_conv_add_uminus: "a - b = a + (- b)"  | 
| 25267 | 568  | 
begin  | 
| 25062 | 569  | 
|
| 25267 | 570  | 
subclass group_add  | 
| 63325 | 571  | 
by standard (simp_all add: ab_left_minus ab_diff_conv_add_uminus)  | 
| 25062 | 572  | 
|
| 29904 | 573  | 
subclass cancel_comm_monoid_add  | 
| 28823 | 574  | 
proof  | 
| 25062 | 575  | 
fix a b c :: 'a  | 
| 
59815
 
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 | 
576  | 
have "b + a - a = b"  | 
| 
 
cce82e360c2f
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 | 
577  | 
by simp  | 
| 
 
cce82e360c2f
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 | 
578  | 
then show "a + b - a = b"  | 
| 
 
cce82e360c2f
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 | 
579  | 
by (simp add: ac_simps)  | 
| 
 
cce82e360c2f
explicit commutative additive inverse operation;
 
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 | 
580  | 
show "a - b - c = a - (b + c)"  | 
| 
 
cce82e360c2f
explicit commutative additive inverse operation;
 
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 | 
581  | 
by (simp add: algebra_simps)  | 
| 25062 | 582  | 
qed  | 
583  | 
||
| 63325 | 584  | 
lemma uminus_add_conv_diff [simp]: "- a + b = b - a"  | 
| 
57512
 
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585  | 
by (simp add: add.commute)  | 
| 25062 | 586  | 
|
| 63325 | 587  | 
lemma minus_add_distrib [simp]: "- (a + b) = - a + - b"  | 
| 
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588  | 
by (simp add: algebra_simps)  | 
| 25062 | 589  | 
|
| 63325 | 590  | 
lemma diff_add_eq [algebra_simps, field_simps]: "(a - b) + c = (a + c) - b"  | 
| 
54230
 
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591  | 
by (simp add: algebra_simps)  | 
| 25077 | 592  | 
|
| 25062 | 593  | 
end  | 
| 14738 | 594  | 
|
| 
37884
 
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 | 
595  | 
|
| 
62376
 
85f38d5f8807
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 | 
596  | 
subsection \<open>(Partially) Ordered Groups\<close>  | 
| 14738 | 597  | 
|
| 60758 | 598  | 
text \<open>  | 
| 
35301
 
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 | 
599  | 
The theory of partially ordered groups is taken from the books:  | 
| 63325 | 600  | 
|
601  | 
\<^item> \<^emph>\<open>Lattice Theory\<close> by Garret Birkhoff, American Mathematical Society, 1979  | 
|
602  | 
\<^item> \<^emph>\<open>Partially Ordered Algebraic Systems\<close>, Pergamon Press, 1963  | 
|
603  | 
||
| 
62376
 
85f38d5f8807
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 | 
604  | 
Most of the used notions can also be looked up in  | 
| 63680 | 605  | 
\<^item> \<^url>\<open>http://www.mathworld.com\<close> by Eric Weisstein et. al.  | 
| 63325 | 606  | 
\<^item> \<^emph>\<open>Algebra I\<close> by van der Waerden, Springer  | 
| 60758 | 607  | 
\<close>  | 
| 
35301
 
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 | 
608  | 
|
| 
35028
 
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 | 
609  | 
class ordered_ab_semigroup_add = order + ab_semigroup_add +  | 
| 25062 | 610  | 
assumes add_left_mono: "a \<le> b \<Longrightarrow> c + a \<le> c + b"  | 
611  | 
begin  | 
|
| 
24380
 
c215e256beca
moved ordered_ab_semigroup_add to OrderedGroup.thy
 
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 | 
612  | 
|
| 63325 | 613  | 
lemma add_right_mono: "a \<le> b \<Longrightarrow> a + c \<le> b + c"  | 
614  | 
by (simp add: add.commute [of _ c] add_left_mono)  | 
|
| 14738 | 615  | 
|
| 60758 | 616  | 
text \<open>non-strict, in both arguments\<close>  | 
| 63325 | 617  | 
lemma add_mono: "a \<le> b \<Longrightarrow> c \<le> d \<Longrightarrow> a + c \<le> b + d"  | 
| 14738 | 618  | 
apply (erule add_right_mono [THEN order_trans])  | 
| 
57512
 
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 | 
619  | 
apply (simp add: add.commute add_left_mono)  | 
| 14738 | 620  | 
done  | 
621  | 
||
| 25062 | 622  | 
end  | 
623  | 
||
| 63325 | 624  | 
text \<open>Strict monotonicity in both arguments\<close>  | 
| 
62377
 
ace69956d018
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62376 
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changeset
 | 
625  | 
class strict_ordered_ab_semigroup_add = ordered_ab_semigroup_add +  | 
| 
 
ace69956d018
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62376 
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 | 
626  | 
assumes add_strict_mono: "a < b \<Longrightarrow> c < d \<Longrightarrow> a + c < b + d"  | 
| 
 
ace69956d018
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changeset
 | 
627  | 
|
| 
35028
 
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more consistent naming of type classes involving orderings (and lattices) -- c.f. NEWS
 
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 | 
628  | 
class ordered_cancel_ab_semigroup_add =  | 
| 
 
108662d50512
more consistent naming of type classes involving orderings (and lattices) -- c.f. NEWS
 
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 | 
629  | 
ordered_ab_semigroup_add + cancel_ab_semigroup_add  | 
| 25062 | 630  | 
begin  | 
631  | 
||
| 63325 | 632  | 
lemma add_strict_left_mono: "a < b \<Longrightarrow> c + a < c + b"  | 
633  | 
by (auto simp add: less_le add_left_mono)  | 
|
| 14738 | 634  | 
|
| 63325 | 635  | 
lemma add_strict_right_mono: "a < b \<Longrightarrow> a + c < b + c"  | 
636  | 
by (simp add: add.commute [of _ c] add_strict_left_mono)  | 
|
| 14738 | 637  | 
|
| 
62377
 
ace69956d018
moved more proofs to ordered_comm_monoid_add; introduced strict_ordered_ab_semigroup/comm_monoid_add
 
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62376 
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changeset
 | 
638  | 
subclass strict_ordered_ab_semigroup_add  | 
| 
 
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changeset
 | 
639  | 
apply standard  | 
| 
 
ace69956d018
moved more proofs to ordered_comm_monoid_add; introduced strict_ordered_ab_semigroup/comm_monoid_add
 
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62376 
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changeset
 | 
640  | 
apply (erule add_strict_right_mono [THEN less_trans])  | 
| 
 
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moved more proofs to ordered_comm_monoid_add; introduced strict_ordered_ab_semigroup/comm_monoid_add
 
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changeset
 | 
641  | 
apply (erule add_strict_left_mono)  | 
| 
 
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changeset
 | 
642  | 
done  | 
| 14738 | 643  | 
|
| 63325 | 644  | 
lemma add_less_le_mono: "a < b \<Longrightarrow> c \<le> d \<Longrightarrow> a + c < b + d"  | 
645  | 
apply (erule add_strict_right_mono [THEN less_le_trans])  | 
|
646  | 
apply (erule add_left_mono)  | 
|
647  | 
done  | 
|
| 14738 | 648  | 
|
| 63325 | 649  | 
lemma add_le_less_mono: "a \<le> b \<Longrightarrow> c < d \<Longrightarrow> a + c < b + d"  | 
650  | 
apply (erule add_right_mono [THEN le_less_trans])  | 
|
651  | 
apply (erule add_strict_left_mono)  | 
|
652  | 
done  | 
|
| 14738 | 653  | 
|
| 25062 | 654  | 
end  | 
655  | 
||
| 
62377
 
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changeset
 | 
656  | 
class ordered_ab_semigroup_add_imp_le = ordered_cancel_ab_semigroup_add +  | 
| 25062 | 657  | 
assumes add_le_imp_le_left: "c + a \<le> c + b \<Longrightarrow> a \<le> b"  | 
658  | 
begin  | 
|
659  | 
||
| 14738 | 660  | 
lemma add_less_imp_less_left:  | 
| 63325 | 661  | 
assumes less: "c + a < c + b"  | 
662  | 
shows "a < b"  | 
|
| 14738 | 663  | 
proof -  | 
| 63325 | 664  | 
from less have le: "c + a \<le> c + b"  | 
665  | 
by (simp add: order_le_less)  | 
|
666  | 
have "a \<le> b"  | 
|
| 14738 | 667  | 
apply (insert le)  | 
668  | 
apply (drule add_le_imp_le_left)  | 
|
| 63325 | 669  | 
apply (insert le)  | 
670  | 
apply (drule add_le_imp_le_left)  | 
|
671  | 
apply assumption  | 
|
672  | 
done  | 
|
| 14738 | 673  | 
moreover have "a \<noteq> b"  | 
674  | 
proof (rule ccontr)  | 
|
| 63325 | 675  | 
assume "\<not> ?thesis"  | 
| 14738 | 676  | 
then have "a = b" by simp  | 
677  | 
then have "c + a = c + b" by simp  | 
|
| 63325 | 678  | 
with less show "False" by simp  | 
| 14738 | 679  | 
qed  | 
| 63325 | 680  | 
ultimately show "a < b"  | 
681  | 
by (simp add: order_le_less)  | 
|
| 14738 | 682  | 
qed  | 
683  | 
||
| 63325 | 684  | 
lemma add_less_imp_less_right: "a + c < b + c \<Longrightarrow> a < b"  | 
685  | 
by (rule add_less_imp_less_left [of c]) (simp add: add.commute)  | 
|
| 14738 | 686  | 
|
| 63325 | 687  | 
lemma add_less_cancel_left [simp]: "c + a < c + b \<longleftrightarrow> a < b"  | 
| 
62376
 
85f38d5f8807
Rename ordered_comm_monoid_add to ordered_cancel_comm_monoid_add. Introduce ordreed_comm_monoid_add, canonically_ordered_comm_monoid and dioid. Setup nat, entat and ennreal as dioids.
 
hoelzl 
parents: 
62348 
diff
changeset
 | 
688  | 
by (blast intro: add_less_imp_less_left add_strict_left_mono)  | 
| 14738 | 689  | 
|
| 63325 | 690  | 
lemma add_less_cancel_right [simp]: "a + c < b + c \<longleftrightarrow> a < b"  | 
| 
54230
 
b1d955791529
more simplification rules on unary and binary minus
 
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parents: 
54148 
diff
changeset
 | 
691  | 
by (blast intro: add_less_imp_less_right add_strict_right_mono)  | 
| 14738 | 692  | 
|
| 63325 | 693  | 
lemma add_le_cancel_left [simp]: "c + a \<le> c + b \<longleftrightarrow> a \<le> b"  | 
694  | 
apply auto  | 
|
| 63588 | 695  | 
apply (drule add_le_imp_le_left)  | 
696  | 
apply (simp_all add: add_left_mono)  | 
|
| 63325 | 697  | 
done  | 
| 14738 | 698  | 
|
| 63325 | 699  | 
lemma add_le_cancel_right [simp]: "a + c \<le> b + c \<longleftrightarrow> a \<le> b"  | 
| 
57512
 
cc97b347b301
reduced name variants for assoc and commute on plus and mult
 
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56950 
diff
changeset
 | 
700  | 
by (simp add: add.commute [of a c] add.commute [of b c])  | 
| 14738 | 701  | 
|
| 63325 | 702  | 
lemma add_le_imp_le_right: "a + c \<le> b + c \<Longrightarrow> a \<le> b"  | 
703  | 
by simp  | 
|
| 25062 | 704  | 
|
| 63325 | 705  | 
lemma max_add_distrib_left: "max x y + z = max (x + z) (y + z)"  | 
| 25077 | 706  | 
unfolding max_def by auto  | 
707  | 
||
| 63325 | 708  | 
lemma min_add_distrib_left: "min x y + z = min (x + z) (y + z)"  | 
| 25077 | 709  | 
unfolding min_def by auto  | 
710  | 
||
| 63325 | 711  | 
lemma max_add_distrib_right: "x + max y z = max (x + y) (x + z)"  | 
| 
44848
 
f4d0b060c7ca
remove lemmas nat_add_min_{left,right} in favor of generic lemmas min_add_distrib_{left,right}
 
huffman 
parents: 
44433 
diff
changeset
 | 
712  | 
unfolding max_def by auto  | 
| 
 
f4d0b060c7ca
remove lemmas nat_add_min_{left,right} in favor of generic lemmas min_add_distrib_{left,right}
 
huffman 
parents: 
44433 
diff
changeset
 | 
713  | 
|
| 63325 | 714  | 
lemma min_add_distrib_right: "x + min y z = min (x + y) (x + z)"  | 
| 
44848
 
f4d0b060c7ca
remove lemmas nat_add_min_{left,right} in favor of generic lemmas min_add_distrib_{left,right}
 
huffman 
parents: 
44433 
diff
changeset
 | 
715  | 
unfolding min_def by auto  | 
| 
 
f4d0b060c7ca
remove lemmas nat_add_min_{left,right} in favor of generic lemmas min_add_distrib_{left,right}
 
huffman 
parents: 
44433 
diff
changeset
 | 
716  | 
|
| 25062 | 717  | 
end  | 
718  | 
||
| 
62376
 
85f38d5f8807
Rename ordered_comm_monoid_add to ordered_cancel_comm_monoid_add. Introduce ordreed_comm_monoid_add, canonically_ordered_comm_monoid and dioid. Setup nat, entat and ennreal as dioids.
 
hoelzl 
parents: 
62348 
diff
changeset
 | 
719  | 
subsection \<open>Support for reasoning about signs\<close>  | 
| 
 
85f38d5f8807
Rename ordered_comm_monoid_add to ordered_cancel_comm_monoid_add. Introduce ordreed_comm_monoid_add, canonically_ordered_comm_monoid and dioid. Setup nat, entat and ennreal as dioids.
 
hoelzl 
parents: 
62348 
diff
changeset
 | 
720  | 
|
| 
 
85f38d5f8807
Rename ordered_comm_monoid_add to ordered_cancel_comm_monoid_add. Introduce ordreed_comm_monoid_add, canonically_ordered_comm_monoid and dioid. Setup nat, entat and ennreal as dioids.
 
hoelzl 
parents: 
62348 
diff
changeset
 | 
721  | 
class ordered_comm_monoid_add = comm_monoid_add + ordered_ab_semigroup_add  | 
| 
 
85f38d5f8807
Rename ordered_comm_monoid_add to ordered_cancel_comm_monoid_add. Introduce ordreed_comm_monoid_add, canonically_ordered_comm_monoid and dioid. Setup nat, entat and ennreal as dioids.
 
hoelzl 
parents: 
62348 
diff
changeset
 | 
722  | 
begin  | 
| 
 
85f38d5f8807
Rename ordered_comm_monoid_add to ordered_cancel_comm_monoid_add. Introduce ordreed_comm_monoid_add, canonically_ordered_comm_monoid and dioid. Setup nat, entat and ennreal as dioids.
 
hoelzl 
parents: 
62348 
diff
changeset
 | 
723  | 
|
| 63325 | 724  | 
lemma add_nonneg_nonneg [simp]: "0 \<le> a \<Longrightarrow> 0 \<le> b \<Longrightarrow> 0 \<le> a + b"  | 
| 
62377
 
ace69956d018
moved more proofs to ordered_comm_monoid_add; introduced strict_ordered_ab_semigroup/comm_monoid_add
 
hoelzl 
parents: 
62376 
diff
changeset
 | 
725  | 
using add_mono[of 0 a 0 b] by simp  | 
| 
62376
 
85f38d5f8807
Rename ordered_comm_monoid_add to ordered_cancel_comm_monoid_add. Introduce ordreed_comm_monoid_add, canonically_ordered_comm_monoid and dioid. Setup nat, entat and ennreal as dioids.
 
hoelzl 
parents: 
62348 
diff
changeset
 | 
726  | 
|
| 63325 | 727  | 
lemma add_nonpos_nonpos: "a \<le> 0 \<Longrightarrow> b \<le> 0 \<Longrightarrow> a + b \<le> 0"  | 
| 
62377
 
ace69956d018
moved more proofs to ordered_comm_monoid_add; introduced strict_ordered_ab_semigroup/comm_monoid_add
 
hoelzl 
parents: 
62376 
diff
changeset
 | 
728  | 
using add_mono[of a 0 b 0] by simp  | 
| 
62376
 
85f38d5f8807
Rename ordered_comm_monoid_add to ordered_cancel_comm_monoid_add. Introduce ordreed_comm_monoid_add, canonically_ordered_comm_monoid and dioid. Setup nat, entat and ennreal as dioids.
 
hoelzl 
parents: 
62348 
diff
changeset
 | 
729  | 
|
| 63325 | 730  | 
lemma add_nonneg_eq_0_iff: "0 \<le> x \<Longrightarrow> 0 \<le> y \<Longrightarrow> x + y = 0 \<longleftrightarrow> x = 0 \<and> y = 0"  | 
| 
62377
 
ace69956d018
moved more proofs to ordered_comm_monoid_add; introduced strict_ordered_ab_semigroup/comm_monoid_add
 
hoelzl 
parents: 
62376 
diff
changeset
 | 
731  | 
using add_left_mono[of 0 y x] add_right_mono[of 0 x y] by auto  | 
| 
 
ace69956d018
moved more proofs to ordered_comm_monoid_add; introduced strict_ordered_ab_semigroup/comm_monoid_add
 
hoelzl 
parents: 
62376 
diff
changeset
 | 
732  | 
|
| 63325 | 733  | 
lemma add_nonpos_eq_0_iff: "x \<le> 0 \<Longrightarrow> y \<le> 0 \<Longrightarrow> x + y = 0 \<longleftrightarrow> x = 0 \<and> y = 0"  | 
| 
62377
 
ace69956d018
moved more proofs to ordered_comm_monoid_add; introduced strict_ordered_ab_semigroup/comm_monoid_add
 
hoelzl 
parents: 
62376 
diff
changeset
 | 
734  | 
using add_left_mono[of y 0 x] add_right_mono[of x 0 y] by auto  | 
| 
62376
 
85f38d5f8807
Rename ordered_comm_monoid_add to ordered_cancel_comm_monoid_add. Introduce ordreed_comm_monoid_add, canonically_ordered_comm_monoid and dioid. Setup nat, entat and ennreal as dioids.
 
hoelzl 
parents: 
62348 
diff
changeset
 | 
735  | 
|
| 63325 | 736  | 
lemma add_increasing: "0 \<le> a \<Longrightarrow> b \<le> c \<Longrightarrow> b \<le> a + c"  | 
737  | 
using add_mono [of 0 a b c] by simp  | 
|
| 
62376
 
85f38d5f8807
Rename ordered_comm_monoid_add to ordered_cancel_comm_monoid_add. Introduce ordreed_comm_monoid_add, canonically_ordered_comm_monoid and dioid. Setup nat, entat and ennreal as dioids.
 
hoelzl 
parents: 
62348 
diff
changeset
 | 
738  | 
|
| 63325 | 739  | 
lemma add_increasing2: "0 \<le> c \<Longrightarrow> b \<le> a \<Longrightarrow> b \<le> a + c"  | 
| 
62376
 
85f38d5f8807
Rename ordered_comm_monoid_add to ordered_cancel_comm_monoid_add. Introduce ordreed_comm_monoid_add, canonically_ordered_comm_monoid and dioid. Setup nat, entat and ennreal as dioids.
 
hoelzl 
parents: 
62348 
diff
changeset
 | 
740  | 
by (simp add: add_increasing add.commute [of a])  | 
| 
 
85f38d5f8807
Rename ordered_comm_monoid_add to ordered_cancel_comm_monoid_add. Introduce ordreed_comm_monoid_add, canonically_ordered_comm_monoid and dioid. Setup nat, entat and ennreal as dioids.
 
hoelzl 
parents: 
62348 
diff
changeset
 | 
741  | 
|
| 63325 | 742  | 
lemma add_decreasing: "a \<le> 0 \<Longrightarrow> c \<le> b \<Longrightarrow> a + c \<le> b"  | 
743  | 
using add_mono [of a 0 c b] by simp  | 
|
| 52289 | 744  | 
|
| 63325 | 745  | 
lemma add_decreasing2: "c \<le> 0 \<Longrightarrow> a \<le> b \<Longrightarrow> a + c \<le> b"  | 
| 
62377
 
ace69956d018
moved more proofs to ordered_comm_monoid_add; introduced strict_ordered_ab_semigroup/comm_monoid_add
 
hoelzl 
parents: 
62376 
diff
changeset
 | 
746  | 
using add_mono[of a b c 0] by simp  | 
| 52289 | 747  | 
|
| 
62377
 
ace69956d018
moved more proofs to ordered_comm_monoid_add; introduced strict_ordered_ab_semigroup/comm_monoid_add
 
hoelzl 
parents: 
62376 
diff
changeset
 | 
748  | 
lemma add_pos_nonneg: "0 < a \<Longrightarrow> 0 \<le> b \<Longrightarrow> 0 < a + b"  | 
| 
 
ace69956d018
moved more proofs to ordered_comm_monoid_add; introduced strict_ordered_ab_semigroup/comm_monoid_add
 
hoelzl 
parents: 
62376 
diff
changeset
 | 
749  | 
using less_le_trans[of 0 a "a + b"] by (simp add: add_increasing2)  | 
| 52289 | 750  | 
|
| 
62377
 
ace69956d018
moved more proofs to ordered_comm_monoid_add; introduced strict_ordered_ab_semigroup/comm_monoid_add
 
hoelzl 
parents: 
62376 
diff
changeset
 | 
751  | 
lemma add_pos_pos: "0 < a \<Longrightarrow> 0 < b \<Longrightarrow> 0 < a + b"  | 
| 
 
ace69956d018
moved more proofs to ordered_comm_monoid_add; introduced strict_ordered_ab_semigroup/comm_monoid_add
 
hoelzl 
parents: 
62376 
diff
changeset
 | 
752  | 
by (intro add_pos_nonneg less_imp_le)  | 
| 52289 | 753  | 
|
| 
62377
 
ace69956d018
moved more proofs to ordered_comm_monoid_add; introduced strict_ordered_ab_semigroup/comm_monoid_add
 
hoelzl 
parents: 
62376 
diff
changeset
 | 
754  | 
lemma add_nonneg_pos: "0 \<le> a \<Longrightarrow> 0 < b \<Longrightarrow> 0 < a + b"  | 
| 
 
ace69956d018
moved more proofs to ordered_comm_monoid_add; introduced strict_ordered_ab_semigroup/comm_monoid_add
 
hoelzl 
parents: 
62376 
diff
changeset
 | 
755  | 
using add_pos_nonneg[of b a] by (simp add: add_commute)  | 
| 
62376
 
85f38d5f8807
Rename ordered_comm_monoid_add to ordered_cancel_comm_monoid_add. Introduce ordreed_comm_monoid_add, canonically_ordered_comm_monoid and dioid. Setup nat, entat and ennreal as dioids.
 
hoelzl 
parents: 
62348 
diff
changeset
 | 
756  | 
|
| 
62377
 
ace69956d018
moved more proofs to ordered_comm_monoid_add; introduced strict_ordered_ab_semigroup/comm_monoid_add
 
hoelzl 
parents: 
62376 
diff
changeset
 | 
757  | 
lemma add_neg_nonpos: "a < 0 \<Longrightarrow> b \<le> 0 \<Longrightarrow> a + b < 0"  | 
| 
 
ace69956d018
moved more proofs to ordered_comm_monoid_add; introduced strict_ordered_ab_semigroup/comm_monoid_add
 
hoelzl 
parents: 
62376 
diff
changeset
 | 
758  | 
using le_less_trans[of "a + b" a 0] by (simp add: add_decreasing2)  | 
| 
25303
 
0699e20feabd
renamed lordered_*_* to lordered_*_add_*; further localization
 
haftmann 
parents: 
25267 
diff
changeset
 | 
759  | 
|
| 
62377
 
ace69956d018
moved more proofs to ordered_comm_monoid_add; introduced strict_ordered_ab_semigroup/comm_monoid_add
 
hoelzl 
parents: 
62376 
diff
changeset
 | 
760  | 
lemma add_neg_neg: "a < 0 \<Longrightarrow> b < 0 \<Longrightarrow> a + b < 0"  | 
| 
 
ace69956d018
moved more proofs to ordered_comm_monoid_add; introduced strict_ordered_ab_semigroup/comm_monoid_add
 
hoelzl 
parents: 
62376 
diff
changeset
 | 
761  | 
by (intro add_neg_nonpos less_imp_le)  | 
| 
25303
 
0699e20feabd
renamed lordered_*_* to lordered_*_add_*; further localization
 
haftmann 
parents: 
25267 
diff
changeset
 | 
762  | 
|
| 
62377
 
ace69956d018
moved more proofs to ordered_comm_monoid_add; introduced strict_ordered_ab_semigroup/comm_monoid_add
 
hoelzl 
parents: 
62376 
diff
changeset
 | 
763  | 
lemma add_nonpos_neg: "a \<le> 0 \<Longrightarrow> b < 0 \<Longrightarrow> a + b < 0"  | 
| 
 
ace69956d018
moved more proofs to ordered_comm_monoid_add; introduced strict_ordered_ab_semigroup/comm_monoid_add
 
hoelzl 
parents: 
62376 
diff
changeset
 | 
764  | 
using add_neg_nonpos[of b a] by (simp add: add_commute)  | 
| 
25303
 
0699e20feabd
renamed lordered_*_* to lordered_*_add_*; further localization
 
haftmann 
parents: 
25267 
diff
changeset
 | 
765  | 
|
| 30691 | 766  | 
lemmas add_sign_intros =  | 
767  | 
add_pos_nonneg add_pos_pos add_nonneg_pos add_nonneg_nonneg  | 
|
768  | 
add_neg_nonpos add_neg_neg add_nonpos_neg add_nonpos_nonpos  | 
|
769  | 
||
| 
62377
 
ace69956d018
moved more proofs to ordered_comm_monoid_add; introduced strict_ordered_ab_semigroup/comm_monoid_add
 
hoelzl 
parents: 
62376 
diff
changeset
 | 
770  | 
end  | 
| 
 
ace69956d018
moved more proofs to ordered_comm_monoid_add; introduced strict_ordered_ab_semigroup/comm_monoid_add
 
hoelzl 
parents: 
62376 
diff
changeset
 | 
771  | 
|
| 
 
ace69956d018
moved more proofs to ordered_comm_monoid_add; introduced strict_ordered_ab_semigroup/comm_monoid_add
 
hoelzl 
parents: 
62376 
diff
changeset
 | 
772  | 
class strict_ordered_comm_monoid_add = comm_monoid_add + strict_ordered_ab_semigroup_add  | 
| 
62378
 
85ed00c1fe7c
generalize more theorems to support enat and ennreal
 
hoelzl 
parents: 
62377 
diff
changeset
 | 
773  | 
begin  | 
| 
 
85ed00c1fe7c
generalize more theorems to support enat and ennreal
 
hoelzl 
parents: 
62377 
diff
changeset
 | 
774  | 
|
| 63325 | 775  | 
lemma pos_add_strict: "0 < a \<Longrightarrow> b < c \<Longrightarrow> b < a + c"  | 
| 
62378
 
85ed00c1fe7c
generalize more theorems to support enat and ennreal
 
hoelzl 
parents: 
62377 
diff
changeset
 | 
776  | 
using add_strict_mono [of 0 a b c] by simp  | 
| 
 
85ed00c1fe7c
generalize more theorems to support enat and ennreal
 
hoelzl 
parents: 
62377 
diff
changeset
 | 
777  | 
|
| 
 
85ed00c1fe7c
generalize more theorems to support enat and ennreal
 
hoelzl 
parents: 
62377 
diff
changeset
 | 
778  | 
end  | 
| 
62377
 
ace69956d018
moved more proofs to ordered_comm_monoid_add; introduced strict_ordered_ab_semigroup/comm_monoid_add
 
hoelzl 
parents: 
62376 
diff
changeset
 | 
779  | 
|
| 
 
ace69956d018
moved more proofs to ordered_comm_monoid_add; introduced strict_ordered_ab_semigroup/comm_monoid_add
 
hoelzl 
parents: 
62376 
diff
changeset
 | 
780  | 
class ordered_cancel_comm_monoid_add = ordered_comm_monoid_add + cancel_ab_semigroup_add  | 
| 
 
ace69956d018
moved more proofs to ordered_comm_monoid_add; introduced strict_ordered_ab_semigroup/comm_monoid_add
 
hoelzl 
parents: 
62376 
diff
changeset
 | 
781  | 
begin  | 
| 
 
ace69956d018
moved more proofs to ordered_comm_monoid_add; introduced strict_ordered_ab_semigroup/comm_monoid_add
 
hoelzl 
parents: 
62376 
diff
changeset
 | 
782  | 
|
| 
 
ace69956d018
moved more proofs to ordered_comm_monoid_add; introduced strict_ordered_ab_semigroup/comm_monoid_add
 
hoelzl 
parents: 
62376 
diff
changeset
 | 
783  | 
subclass ordered_cancel_ab_semigroup_add ..  | 
| 
 
ace69956d018
moved more proofs to ordered_comm_monoid_add; introduced strict_ordered_ab_semigroup/comm_monoid_add
 
hoelzl 
parents: 
62376 
diff
changeset
 | 
784  | 
subclass strict_ordered_comm_monoid_add ..  | 
| 
 
ace69956d018
moved more proofs to ordered_comm_monoid_add; introduced strict_ordered_ab_semigroup/comm_monoid_add
 
hoelzl 
parents: 
62376 
diff
changeset
 | 
785  | 
|
| 63325 | 786  | 
lemma add_strict_increasing: "0 < a \<Longrightarrow> b \<le> c \<Longrightarrow> b < a + c"  | 
787  | 
using add_less_le_mono [of 0 a b c] by simp  | 
|
| 
54230
 
b1d955791529
more simplification rules on unary and binary minus
 
haftmann 
parents: 
54148 
diff
changeset
 | 
788  | 
|
| 63325 | 789  | 
lemma add_strict_increasing2: "0 \<le> a \<Longrightarrow> b < c \<Longrightarrow> b < a + c"  | 
790  | 
using add_le_less_mono [of 0 a b c] by simp  | 
|
| 
54230
 
b1d955791529
more simplification rules on unary and binary minus
 
haftmann 
parents: 
54148 
diff
changeset
 | 
791  | 
|
| 
25303
 
0699e20feabd
renamed lordered_*_* to lordered_*_add_*; further localization
 
haftmann 
parents: 
25267 
diff
changeset
 | 
792  | 
end  | 
| 
 
0699e20feabd
renamed lordered_*_* to lordered_*_add_*; further localization
 
haftmann 
parents: 
25267 
diff
changeset
 | 
793  | 
|
| 
63456
 
3365c8ec67bd
sharing simp rules between ordered monoids and rings
 
fleury <Mathias.Fleury@mpi-inf.mpg.de> 
parents: 
63364 
diff
changeset
 | 
794  | 
class ordered_ab_semigroup_monoid_add_imp_le = monoid_add + ordered_ab_semigroup_add_imp_le  | 
| 
 
3365c8ec67bd
sharing simp rules between ordered monoids and rings
 
fleury <Mathias.Fleury@mpi-inf.mpg.de> 
parents: 
63364 
diff
changeset
 | 
795  | 
begin  | 
| 
 
3365c8ec67bd
sharing simp rules between ordered monoids and rings
 
fleury <Mathias.Fleury@mpi-inf.mpg.de> 
parents: 
63364 
diff
changeset
 | 
796  | 
|
| 63588 | 797  | 
lemma add_less_same_cancel1 [simp]: "b + a < b \<longleftrightarrow> a < 0"  | 
| 
63456
 
3365c8ec67bd
sharing simp rules between ordered monoids and rings
 
fleury <Mathias.Fleury@mpi-inf.mpg.de> 
parents: 
63364 
diff
changeset
 | 
798  | 
using add_less_cancel_left [of _ _ 0] by simp  | 
| 
 
3365c8ec67bd
sharing simp rules between ordered monoids and rings
 
fleury <Mathias.Fleury@mpi-inf.mpg.de> 
parents: 
63364 
diff
changeset
 | 
799  | 
|
| 63588 | 800  | 
lemma add_less_same_cancel2 [simp]: "a + b < b \<longleftrightarrow> a < 0"  | 
| 
63456
 
3365c8ec67bd
sharing simp rules between ordered monoids and rings
 
fleury <Mathias.Fleury@mpi-inf.mpg.de> 
parents: 
63364 
diff
changeset
 | 
801  | 
using add_less_cancel_right [of _ _ 0] by simp  | 
| 
 
3365c8ec67bd
sharing simp rules between ordered monoids and rings
 
fleury <Mathias.Fleury@mpi-inf.mpg.de> 
parents: 
63364 
diff
changeset
 | 
802  | 
|
| 63588 | 803  | 
lemma less_add_same_cancel1 [simp]: "a < a + b \<longleftrightarrow> 0 < b"  | 
| 
63456
 
3365c8ec67bd
sharing simp rules between ordered monoids and rings
 
fleury <Mathias.Fleury@mpi-inf.mpg.de> 
parents: 
63364 
diff
changeset
 | 
804  | 
using add_less_cancel_left [of _ 0] by simp  | 
| 
 
3365c8ec67bd
sharing simp rules between ordered monoids and rings
 
fleury <Mathias.Fleury@mpi-inf.mpg.de> 
parents: 
63364 
diff
changeset
 | 
805  | 
|
| 63588 | 806  | 
lemma less_add_same_cancel2 [simp]: "a < b + a \<longleftrightarrow> 0 < b"  | 
| 
63456
 
3365c8ec67bd
sharing simp rules between ordered monoids and rings
 
fleury <Mathias.Fleury@mpi-inf.mpg.de> 
parents: 
63364 
diff
changeset
 | 
807  | 
using add_less_cancel_right [of 0] by simp  | 
| 
 
3365c8ec67bd
sharing simp rules between ordered monoids and rings
 
fleury <Mathias.Fleury@mpi-inf.mpg.de> 
parents: 
63364 
diff
changeset
 | 
808  | 
|
| 63588 | 809  | 
lemma add_le_same_cancel1 [simp]: "b + a \<le> b \<longleftrightarrow> a \<le> 0"  | 
| 
63456
 
3365c8ec67bd
sharing simp rules between ordered monoids and rings
 
fleury <Mathias.Fleury@mpi-inf.mpg.de> 
parents: 
63364 
diff
changeset
 | 
810  | 
using add_le_cancel_left [of _ _ 0] by simp  | 
| 
 
3365c8ec67bd
sharing simp rules between ordered monoids and rings
 
fleury <Mathias.Fleury@mpi-inf.mpg.de> 
parents: 
63364 
diff
changeset
 | 
811  | 
|
| 63588 | 812  | 
lemma add_le_same_cancel2 [simp]: "a + b \<le> b \<longleftrightarrow> a \<le> 0"  | 
| 
63456
 
3365c8ec67bd
sharing simp rules between ordered monoids and rings
 
fleury <Mathias.Fleury@mpi-inf.mpg.de> 
parents: 
63364 
diff
changeset
 | 
813  | 
using add_le_cancel_right [of _ _ 0] by simp  | 
| 
 
3365c8ec67bd
sharing simp rules between ordered monoids and rings
 
fleury <Mathias.Fleury@mpi-inf.mpg.de> 
parents: 
63364 
diff
changeset
 | 
814  | 
|
| 63588 | 815  | 
lemma le_add_same_cancel1 [simp]: "a \<le> a + b \<longleftrightarrow> 0 \<le> b"  | 
| 
63456
 
3365c8ec67bd
sharing simp rules between ordered monoids and rings
 
fleury <Mathias.Fleury@mpi-inf.mpg.de> 
parents: 
63364 
diff
changeset
 | 
816  | 
using add_le_cancel_left [of _ 0] by simp  | 
| 
 
3365c8ec67bd
sharing simp rules between ordered monoids and rings
 
fleury <Mathias.Fleury@mpi-inf.mpg.de> 
parents: 
63364 
diff
changeset
 | 
817  | 
|
| 63588 | 818  | 
lemma le_add_same_cancel2 [simp]: "a \<le> b + a \<longleftrightarrow> 0 \<le> b"  | 
| 
63456
 
3365c8ec67bd
sharing simp rules between ordered monoids and rings
 
fleury <Mathias.Fleury@mpi-inf.mpg.de> 
parents: 
63364 
diff
changeset
 | 
819  | 
using add_le_cancel_right [of 0] by simp  | 
| 
 
3365c8ec67bd
sharing simp rules between ordered monoids and rings
 
fleury <Mathias.Fleury@mpi-inf.mpg.de> 
parents: 
63364 
diff
changeset
 | 
820  | 
|
| 
 
3365c8ec67bd
sharing simp rules between ordered monoids and rings
 
fleury <Mathias.Fleury@mpi-inf.mpg.de> 
parents: 
63364 
diff
changeset
 | 
821  | 
subclass cancel_comm_monoid_add  | 
| 
 
3365c8ec67bd
sharing simp rules between ordered monoids and rings
 
fleury <Mathias.Fleury@mpi-inf.mpg.de> 
parents: 
63364 
diff
changeset
 | 
822  | 
by standard auto  | 
| 
 
3365c8ec67bd
sharing simp rules between ordered monoids and rings
 
fleury <Mathias.Fleury@mpi-inf.mpg.de> 
parents: 
63364 
diff
changeset
 | 
823  | 
|
| 
 
3365c8ec67bd
sharing simp rules between ordered monoids and rings
 
fleury <Mathias.Fleury@mpi-inf.mpg.de> 
parents: 
63364 
diff
changeset
 | 
824  | 
subclass ordered_cancel_comm_monoid_add  | 
| 
 
3365c8ec67bd
sharing simp rules between ordered monoids and rings
 
fleury <Mathias.Fleury@mpi-inf.mpg.de> 
parents: 
63364 
diff
changeset
 | 
825  | 
by standard  | 
| 
 
3365c8ec67bd
sharing simp rules between ordered monoids and rings
 
fleury <Mathias.Fleury@mpi-inf.mpg.de> 
parents: 
63364 
diff
changeset
 | 
826  | 
|
| 
 
3365c8ec67bd
sharing simp rules between ordered monoids and rings
 
fleury <Mathias.Fleury@mpi-inf.mpg.de> 
parents: 
63364 
diff
changeset
 | 
827  | 
end  | 
| 
 
3365c8ec67bd
sharing simp rules between ordered monoids and rings
 
fleury <Mathias.Fleury@mpi-inf.mpg.de> 
parents: 
63364 
diff
changeset
 | 
828  | 
|
| 
62376
 
85f38d5f8807
Rename ordered_comm_monoid_add to ordered_cancel_comm_monoid_add. Introduce ordreed_comm_monoid_add, canonically_ordered_comm_monoid and dioid. Setup nat, entat and ennreal as dioids.
 
hoelzl 
parents: 
62348 
diff
changeset
 | 
829  | 
class ordered_ab_group_add = ab_group_add + ordered_ab_semigroup_add  | 
| 25062 | 830  | 
begin  | 
831  | 
||
| 
35028
 
108662d50512
more consistent naming of type classes involving orderings (and lattices) -- c.f. NEWS
 
haftmann 
parents: 
34973 
diff
changeset
 | 
832  | 
subclass ordered_cancel_ab_semigroup_add ..  | 
| 25062 | 833  | 
|
| 
63456
 
3365c8ec67bd
sharing simp rules between ordered monoids and rings
 
fleury <Mathias.Fleury@mpi-inf.mpg.de> 
parents: 
63364 
diff
changeset
 | 
834  | 
subclass ordered_ab_semigroup_monoid_add_imp_le  | 
| 28823 | 835  | 
proof  | 
| 25062 | 836  | 
fix a b c :: 'a  | 
837  | 
assume "c + a \<le> c + b"  | 
|
| 63325 | 838  | 
then have "(-c) + (c + a) \<le> (-c) + (c + b)"  | 
839  | 
by (rule add_left_mono)  | 
|
840  | 
then have "((-c) + c) + a \<le> ((-c) + c) + b"  | 
|
841  | 
by (simp only: add.assoc)  | 
|
842  | 
then show "a \<le> b" by simp  | 
|
| 25062 | 843  | 
qed  | 
844  | 
||
| 63325 | 845  | 
lemma max_diff_distrib_left: "max x y - z = max (x - z) (y - z)"  | 
| 
54230
 
b1d955791529
more simplification rules on unary and binary minus
 
haftmann 
parents: 
54148 
diff
changeset
 | 
846  | 
using max_add_distrib_left [of x y "- z"] by simp  | 
| 25077 | 847  | 
|
| 63325 | 848  | 
lemma min_diff_distrib_left: "min x y - z = min (x - z) (y - z)"  | 
| 
54230
 
b1d955791529
more simplification rules on unary and binary minus
 
haftmann 
parents: 
54148 
diff
changeset
 | 
849  | 
using min_add_distrib_left [of x y "- z"] by simp  | 
| 25077 | 850  | 
|
851  | 
lemma le_imp_neg_le:  | 
|
| 63325 | 852  | 
assumes "a \<le> b"  | 
853  | 
shows "- b \<le> - a"  | 
|
| 25077 | 854  | 
proof -  | 
| 63325 | 855  | 
from assms have "- a + a \<le> - a + b"  | 
856  | 
by (rule add_left_mono)  | 
|
857  | 
then have "0 \<le> - a + b"  | 
|
858  | 
by simp  | 
|
859  | 
then have "0 + (- b) \<le> (- a + b) + (- b)"  | 
|
860  | 
by (rule add_right_mono)  | 
|
861  | 
then show ?thesis  | 
|
862  | 
by (simp add: algebra_simps)  | 
|
| 25077 | 863  | 
qed  | 
864  | 
||
865  | 
lemma neg_le_iff_le [simp]: "- b \<le> - a \<longleftrightarrow> a \<le> b"  | 
|
| 
62376
 
85f38d5f8807
Rename ordered_comm_monoid_add to ordered_cancel_comm_monoid_add. Introduce ordreed_comm_monoid_add, canonically_ordered_comm_monoid and dioid. Setup nat, entat and ennreal as dioids.
 
hoelzl 
parents: 
62348 
diff
changeset
 | 
866  | 
proof  | 
| 25077 | 867  | 
assume "- b \<le> - a"  | 
| 63325 | 868  | 
then have "- (- a) \<le> - (- b)"  | 
869  | 
by (rule le_imp_neg_le)  | 
|
870  | 
then show "a \<le> b"  | 
|
871  | 
by simp  | 
|
| 25077 | 872  | 
next  | 
| 63325 | 873  | 
assume "a \<le> b"  | 
874  | 
then show "- b \<le> - a"  | 
|
875  | 
by (rule le_imp_neg_le)  | 
|
| 25077 | 876  | 
qed  | 
877  | 
||
878  | 
lemma neg_le_0_iff_le [simp]: "- a \<le> 0 \<longleftrightarrow> 0 \<le> a"  | 
|
| 63325 | 879  | 
by (subst neg_le_iff_le [symmetric]) simp  | 
| 25077 | 880  | 
|
881  | 
lemma neg_0_le_iff_le [simp]: "0 \<le> - a \<longleftrightarrow> a \<le> 0"  | 
|
| 63325 | 882  | 
by (subst neg_le_iff_le [symmetric]) simp  | 
| 25077 | 883  | 
|
884  | 
lemma neg_less_iff_less [simp]: "- b < - a \<longleftrightarrow> a < b"  | 
|
| 63325 | 885  | 
by (auto simp add: less_le)  | 
| 25077 | 886  | 
|
887  | 
lemma neg_less_0_iff_less [simp]: "- a < 0 \<longleftrightarrow> 0 < a"  | 
|
| 63325 | 888  | 
by (subst neg_less_iff_less [symmetric]) simp  | 
| 25077 | 889  | 
|
890  | 
lemma neg_0_less_iff_less [simp]: "0 < - a \<longleftrightarrow> a < 0"  | 
|
| 63325 | 891  | 
by (subst neg_less_iff_less [symmetric]) simp  | 
| 25077 | 892  | 
|
| 63325 | 893  | 
text \<open>The next several equations can make the simplifier loop!\<close>  | 
| 25077 | 894  | 
|
895  | 
lemma less_minus_iff: "a < - b \<longleftrightarrow> b < - a"  | 
|
896  | 
proof -  | 
|
| 63588 | 897  | 
have "- (- a) < - b \<longleftrightarrow> b < - a"  | 
| 63325 | 898  | 
by (rule neg_less_iff_less)  | 
899  | 
then show ?thesis by simp  | 
|
| 25077 | 900  | 
qed  | 
901  | 
||
902  | 
lemma minus_less_iff: "- a < b \<longleftrightarrow> - b < a"  | 
|
903  | 
proof -  | 
|
| 63325 | 904  | 
have "- a < - (- b) \<longleftrightarrow> - b < a"  | 
905  | 
by (rule neg_less_iff_less)  | 
|
906  | 
then show ?thesis by simp  | 
|
| 25077 | 907  | 
qed  | 
908  | 
||
909  | 
lemma le_minus_iff: "a \<le> - b \<longleftrightarrow> b \<le> - a"  | 
|
910  | 
proof -  | 
|
| 63588 | 911  | 
have mm: "- (- a) < - b \<Longrightarrow> - (- b) < -a" for a b :: 'a  | 
| 63325 | 912  | 
by (simp only: minus_less_iff)  | 
| 63588 | 913  | 
have "- (- a) \<le> - b \<longleftrightarrow> b \<le> - a"  | 
| 25077 | 914  | 
apply (auto simp only: le_less)  | 
| 63588 | 915  | 
apply (drule mm)  | 
916  | 
apply (simp_all)  | 
|
| 25077 | 917  | 
apply (drule mm[simplified], assumption)  | 
918  | 
done  | 
|
919  | 
then show ?thesis by simp  | 
|
920  | 
qed  | 
|
921  | 
||
922  | 
lemma minus_le_iff: "- a \<le> b \<longleftrightarrow> - b \<le> a"  | 
|
| 63325 | 923  | 
by (auto simp add: le_less minus_less_iff)  | 
| 25077 | 924  | 
|
| 63325 | 925  | 
lemma diff_less_0_iff_less [simp]: "a - b < 0 \<longleftrightarrow> a < b"  | 
| 25077 | 926  | 
proof -  | 
| 63325 | 927  | 
have "a - b < 0 \<longleftrightarrow> a + (- b) < b + (- b)"  | 
928  | 
by simp  | 
|
929  | 
also have "\<dots> \<longleftrightarrow> a < b"  | 
|
930  | 
by (simp only: add_less_cancel_right)  | 
|
| 25077 | 931  | 
finally show ?thesis .  | 
932  | 
qed  | 
|
933  | 
||
| 
37884
 
314a88278715
discontinued pretending that abel_cancel is logic-independent; cleaned up junk
 
haftmann 
parents: 
36977 
diff
changeset
 | 
934  | 
lemmas less_iff_diff_less_0 = diff_less_0_iff_less [symmetric]  | 
| 
 
314a88278715
discontinued pretending that abel_cancel is logic-independent; cleaned up junk
 
haftmann 
parents: 
36977 
diff
changeset
 | 
935  | 
|
| 63325 | 936  | 
lemma diff_less_eq [algebra_simps, field_simps]: "a - b < c \<longleftrightarrow> a < c + b"  | 
937  | 
apply (subst less_iff_diff_less_0 [of a])  | 
|
938  | 
apply (rule less_iff_diff_less_0 [of _ c, THEN ssubst])  | 
|
939  | 
apply (simp add: algebra_simps)  | 
|
940  | 
done  | 
|
| 25077 | 941  | 
|
| 63325 | 942  | 
lemma less_diff_eq[algebra_simps, field_simps]: "a < c - b \<longleftrightarrow> a + b < c"  | 
943  | 
apply (subst less_iff_diff_less_0 [of "a + b"])  | 
|
944  | 
apply (subst less_iff_diff_less_0 [of a])  | 
|
945  | 
apply (simp add: algebra_simps)  | 
|
946  | 
done  | 
|
| 25077 | 947  | 
|
| 63325 | 948  | 
lemma diff_gt_0_iff_gt [simp]: "a - b > 0 \<longleftrightarrow> a > b"  | 
| 62348 | 949  | 
by (simp add: less_diff_eq)  | 
| 
61762
 
d50b993b4fb9
Removal of redundant lemmas (diff_less_iff, diff_le_iff) and of the abbreviation Exp. Addition of some new material.
 
paulson <lp15@cam.ac.uk> 
parents: 
61605 
diff
changeset
 | 
950  | 
|
| 63325 | 951  | 
lemma diff_le_eq [algebra_simps, field_simps]: "a - b \<le> c \<longleftrightarrow> a \<le> c + b"  | 
| 62348 | 952  | 
by (auto simp add: le_less diff_less_eq )  | 
| 25077 | 953  | 
|
| 63325 | 954  | 
lemma le_diff_eq [algebra_simps, field_simps]: "a \<le> c - b \<longleftrightarrow> a + b \<le> c"  | 
| 62348 | 955  | 
by (auto simp add: le_less less_diff_eq)  | 
| 25077 | 956  | 
|
| 63325 | 957  | 
lemma diff_le_0_iff_le [simp]: "a - b \<le> 0 \<longleftrightarrow> a \<le> b"  | 
| 
37884
 
314a88278715
discontinued pretending that abel_cancel is logic-independent; cleaned up junk
 
haftmann 
parents: 
36977 
diff
changeset
 | 
958  | 
by (simp add: algebra_simps)  | 
| 
 
314a88278715
discontinued pretending that abel_cancel is logic-independent; cleaned up junk
 
haftmann 
parents: 
36977 
diff
changeset
 | 
959  | 
|
| 
 
314a88278715
discontinued pretending that abel_cancel is logic-independent; cleaned up junk
 
haftmann 
parents: 
36977 
diff
changeset
 | 
960  | 
lemmas le_iff_diff_le_0 = diff_le_0_iff_le [symmetric]  | 
| 
 
314a88278715
discontinued pretending that abel_cancel is logic-independent; cleaned up junk
 
haftmann 
parents: 
36977 
diff
changeset
 | 
961  | 
|
| 63325 | 962  | 
lemma diff_ge_0_iff_ge [simp]: "a - b \<ge> 0 \<longleftrightarrow> a \<ge> b"  | 
| 62348 | 963  | 
by (simp add: le_diff_eq)  | 
964  | 
||
| 63325 | 965  | 
lemma diff_eq_diff_less: "a - b = c - d \<Longrightarrow> a < b \<longleftrightarrow> c < d"  | 
| 
37884
 
314a88278715
discontinued pretending that abel_cancel is logic-independent; cleaned up junk
 
haftmann 
parents: 
36977 
diff
changeset
 | 
966  | 
by (auto simp only: less_iff_diff_less_0 [of a b] less_iff_diff_less_0 [of c d])  | 
| 
 
314a88278715
discontinued pretending that abel_cancel is logic-independent; cleaned up junk
 
haftmann 
parents: 
36977 
diff
changeset
 | 
967  | 
|
| 63325 | 968  | 
lemma diff_eq_diff_less_eq: "a - b = c - d \<Longrightarrow> a \<le> b \<longleftrightarrow> c \<le> d"  | 
| 
37889
 
0d8058e0c270
keep explicit diff_def as legacy theorem; modernized abel_cancel simproc setup
 
haftmann 
parents: 
37884 
diff
changeset
 | 
969  | 
by (auto simp only: le_iff_diff_le_0 [of a b] le_iff_diff_le_0 [of c d])  | 
| 25077 | 970  | 
|
| 56950 | 971  | 
lemma diff_mono: "a \<le> b \<Longrightarrow> d \<le> c \<Longrightarrow> a - c \<le> b - d"  | 
972  | 
by (simp add: field_simps add_mono)  | 
|
973  | 
||
974  | 
lemma diff_left_mono: "b \<le> a \<Longrightarrow> c - a \<le> c - b"  | 
|
975  | 
by (simp add: field_simps)  | 
|
976  | 
||
977  | 
lemma diff_right_mono: "a \<le> b \<Longrightarrow> a - c \<le> b - c"  | 
|
978  | 
by (simp add: field_simps)  | 
|
979  | 
||
980  | 
lemma diff_strict_mono: "a < b \<Longrightarrow> d < c \<Longrightarrow> a - c < b - d"  | 
|
981  | 
by (simp add: field_simps add_strict_mono)  | 
|
982  | 
||
983  | 
lemma diff_strict_left_mono: "b < a \<Longrightarrow> c - a < c - b"  | 
|
984  | 
by (simp add: field_simps)  | 
|
985  | 
||
986  | 
lemma diff_strict_right_mono: "a < b \<Longrightarrow> a - c < b - c"  | 
|
987  | 
by (simp add: field_simps)  | 
|
988  | 
||
| 25077 | 989  | 
end  | 
990  | 
||
| 48891 | 991  | 
ML_file "Tools/group_cancel.ML"  | 
| 
48556
 
62a3fbf9d35b
replace abel_cancel simprocs with functionally equivalent, but simpler and faster ones
 
huffman 
parents: 
45548 
diff
changeset
 | 
992  | 
|
| 
 
62a3fbf9d35b
replace abel_cancel simprocs with functionally equivalent, but simpler and faster ones
 
huffman 
parents: 
45548 
diff
changeset
 | 
993  | 
simproc_setup group_cancel_add ("a + b::'a::ab_group_add") =
 | 
| 60758 | 994  | 
\<open>fn phi => fn ss => try Group_Cancel.cancel_add_conv\<close>  | 
| 
48556
 
62a3fbf9d35b
replace abel_cancel simprocs with functionally equivalent, but simpler and faster ones
 
huffman 
parents: 
45548 
diff
changeset
 | 
995  | 
|
| 
 
62a3fbf9d35b
replace abel_cancel simprocs with functionally equivalent, but simpler and faster ones
 
huffman 
parents: 
45548 
diff
changeset
 | 
996  | 
simproc_setup group_cancel_diff ("a - b::'a::ab_group_add") =
 | 
| 60758 | 997  | 
\<open>fn phi => fn ss => try Group_Cancel.cancel_diff_conv\<close>  | 
| 
37884
 
314a88278715
discontinued pretending that abel_cancel is logic-independent; cleaned up junk
 
haftmann 
parents: 
36977 
diff
changeset
 | 
998  | 
|
| 
48556
 
62a3fbf9d35b
replace abel_cancel simprocs with functionally equivalent, but simpler and faster ones
 
huffman 
parents: 
45548 
diff
changeset
 | 
999  | 
simproc_setup group_cancel_eq ("a = (b::'a::ab_group_add)") =
 | 
| 60758 | 1000  | 
\<open>fn phi => fn ss => try Group_Cancel.cancel_eq_conv\<close>  | 
| 
37889
 
0d8058e0c270
keep explicit diff_def as legacy theorem; modernized abel_cancel simproc setup
 
haftmann 
parents: 
37884 
diff
changeset
 | 
1001  | 
|
| 
48556
 
62a3fbf9d35b
replace abel_cancel simprocs with functionally equivalent, but simpler and faster ones
 
huffman 
parents: 
45548 
diff
changeset
 | 
1002  | 
simproc_setup group_cancel_le ("a \<le> (b::'a::ordered_ab_group_add)") =
 | 
| 60758 | 1003  | 
\<open>fn phi => fn ss => try Group_Cancel.cancel_le_conv\<close>  | 
| 
48556
 
62a3fbf9d35b
replace abel_cancel simprocs with functionally equivalent, but simpler and faster ones
 
huffman 
parents: 
45548 
diff
changeset
 | 
1004  | 
|
| 
 
62a3fbf9d35b
replace abel_cancel simprocs with functionally equivalent, but simpler and faster ones
 
huffman 
parents: 
45548 
diff
changeset
 | 
1005  | 
simproc_setup group_cancel_less ("a < (b::'a::ordered_ab_group_add)") =
 | 
| 60758 | 1006  | 
\<open>fn phi => fn ss => try Group_Cancel.cancel_less_conv\<close>  | 
| 
37884
 
314a88278715
discontinued pretending that abel_cancel is logic-independent; cleaned up junk
 
haftmann 
parents: 
36977 
diff
changeset
 | 
1007  | 
|
| 
35028
 
108662d50512
more consistent naming of type classes involving orderings (and lattices) -- c.f. NEWS
 
haftmann 
parents: 
34973 
diff
changeset
 | 
1008  | 
class linordered_ab_semigroup_add =  | 
| 
 
108662d50512
more consistent naming of type classes involving orderings (and lattices) -- c.f. NEWS
 
haftmann 
parents: 
34973 
diff
changeset
 | 
1009  | 
linorder + ordered_ab_semigroup_add  | 
| 25062 | 1010  | 
|
| 
35028
 
108662d50512
more consistent naming of type classes involving orderings (and lattices) -- c.f. NEWS
 
haftmann 
parents: 
34973 
diff
changeset
 | 
1011  | 
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
 | 
1012  | 
linorder + ordered_cancel_ab_semigroup_add  | 
| 25267 | 1013  | 
begin  | 
| 25062 | 1014  | 
|
| 
35028
 
108662d50512
more consistent naming of type classes involving orderings (and lattices) -- c.f. NEWS
 
haftmann 
parents: 
34973 
diff
changeset
 | 
1015  | 
subclass linordered_ab_semigroup_add ..  | 
| 25062 | 1016  | 
|
| 
35028
 
108662d50512
more consistent naming of type classes involving orderings (and lattices) -- c.f. NEWS
 
haftmann 
parents: 
34973 
diff
changeset
 | 
1017  | 
subclass ordered_ab_semigroup_add_imp_le  | 
| 28823 | 1018  | 
proof  | 
| 25062 | 1019  | 
fix a b c :: 'a  | 
| 63325 | 1020  | 
assume le1: "c + a \<le> c + b"  | 
1021  | 
show "a \<le> b"  | 
|
| 25062 | 1022  | 
proof (rule ccontr)  | 
| 63325 | 1023  | 
assume *: "\<not> ?thesis"  | 
1024  | 
then have "b \<le> a" by (simp add: linorder_not_le)  | 
|
| 63588 | 1025  | 
then have "c + b \<le> c + a" by (rule add_left_mono)  | 
1026  | 
with le1 have "a = b"  | 
|
1027  | 
apply -  | 
|
| 63325 | 1028  | 
apply (drule antisym)  | 
| 63588 | 1029  | 
apply simp_all  | 
| 25062 | 1030  | 
done  | 
| 63325 | 1031  | 
with * show False  | 
| 25062 | 1032  | 
by (simp add: linorder_not_le [symmetric])  | 
1033  | 
qed  | 
|
1034  | 
qed  | 
|
1035  | 
||
| 25267 | 1036  | 
end  | 
1037  | 
||
| 
35028
 
108662d50512
more consistent naming of type classes involving orderings (and lattices) -- c.f. NEWS
 
haftmann 
parents: 
34973 
diff
changeset
 | 
1038  | 
class linordered_ab_group_add = linorder + ordered_ab_group_add  | 
| 25267 | 1039  | 
begin  | 
| 25230 | 1040  | 
|
| 
35028
 
108662d50512
more consistent naming of type classes involving orderings (and lattices) -- c.f. NEWS
 
haftmann 
parents: 
34973 
diff
changeset
 | 
1041  | 
subclass linordered_cancel_ab_semigroup_add ..  | 
| 25230 | 1042  | 
|
| 63325 | 1043  | 
lemma equal_neg_zero [simp]: "a = - a \<longleftrightarrow> a = 0"  | 
| 
25303
 
0699e20feabd
renamed lordered_*_* to lordered_*_add_*; further localization
 
haftmann 
parents: 
25267 
diff
changeset
 | 
1044  | 
proof  | 
| 63325 | 1045  | 
assume "a = 0"  | 
1046  | 
then show "a = - a" by simp  | 
|
| 
25303
 
0699e20feabd
renamed lordered_*_* to lordered_*_add_*; further localization
 
haftmann 
parents: 
25267 
diff
changeset
 | 
1047  | 
next  | 
| 63325 | 1048  | 
assume A: "a = - a"  | 
1049  | 
show "a = 0"  | 
|
| 
25303
 
0699e20feabd
renamed lordered_*_* to lordered_*_add_*; further localization
 
haftmann 
parents: 
25267 
diff
changeset
 | 
1050  | 
proof (cases "0 \<le> a")  | 
| 63325 | 1051  | 
case True  | 
1052  | 
with A have "0 \<le> - a" by auto  | 
|
| 
25303
 
0699e20feabd
renamed lordered_*_* to lordered_*_add_*; further localization
 
haftmann 
parents: 
25267 
diff
changeset
 | 
1053  | 
with le_minus_iff have "a \<le> 0" by simp  | 
| 
 
0699e20feabd
renamed lordered_*_* to lordered_*_add_*; further localization
 
haftmann 
parents: 
25267 
diff
changeset
 | 
1054  | 
with True show ?thesis by (auto intro: order_trans)  | 
| 
 
0699e20feabd
renamed lordered_*_* to lordered_*_add_*; further localization
 
haftmann 
parents: 
25267 
diff
changeset
 | 
1055  | 
next  | 
| 63325 | 1056  | 
case False  | 
1057  | 
then have B: "a \<le> 0" by auto  | 
|
| 
25303
 
0699e20feabd
renamed lordered_*_* to lordered_*_add_*; further localization
 
haftmann 
parents: 
25267 
diff
changeset
 | 
1058  | 
with A have "- a \<le> 0" by auto  | 
| 
 
0699e20feabd
renamed lordered_*_* to lordered_*_add_*; further localization
 
haftmann 
parents: 
25267 
diff
changeset
 | 
1059  | 
with B show ?thesis by (auto intro: order_trans)  | 
| 
 
0699e20feabd
renamed lordered_*_* to lordered_*_add_*; further localization
 
haftmann 
parents: 
25267 
diff
changeset
 | 
1060  | 
qed  | 
| 
 
0699e20feabd
renamed lordered_*_* to lordered_*_add_*; further localization
 
haftmann 
parents: 
25267 
diff
changeset
 | 
1061  | 
qed  | 
| 
 
0699e20feabd
renamed lordered_*_* to lordered_*_add_*; further localization
 
haftmann 
parents: 
25267 
diff
changeset
 | 
1062  | 
|
| 63325 | 1063  | 
lemma neg_equal_zero [simp]: "- 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
 | 
1064  | 
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
 | 
1065  | 
|
| 63325 | 1066  | 
lemma neg_less_eq_nonneg [simp]: "- a \<le> a \<longleftrightarrow> 0 \<le> a"  | 
| 54250 | 1067  | 
proof  | 
| 63325 | 1068  | 
assume *: "- a \<le> a"  | 
1069  | 
show "0 \<le> a"  | 
|
| 54250 | 1070  | 
proof (rule classical)  | 
| 63325 | 1071  | 
assume "\<not> ?thesis"  | 
| 54250 | 1072  | 
then have "a < 0" by auto  | 
| 63325 | 1073  | 
with * have "- a < 0" by (rule le_less_trans)  | 
| 54250 | 1074  | 
then show ?thesis by auto  | 
1075  | 
qed  | 
|
1076  | 
next  | 
|
| 63325 | 1077  | 
assume *: "0 \<le> a"  | 
1078  | 
then have "- a \<le> 0" by (simp add: minus_le_iff)  | 
|
1079  | 
from this * show "- a \<le> a" by (rule order_trans)  | 
|
| 54250 | 1080  | 
qed  | 
1081  | 
||
| 63325 | 1082  | 
lemma neg_less_pos [simp]: "- a < a \<longleftrightarrow> 0 < a"  | 
| 54250 | 1083  | 
by (auto simp add: less_le)  | 
1084  | 
||
| 63325 | 1085  | 
lemma less_eq_neg_nonpos [simp]: "a \<le> - a \<longleftrightarrow> a \<le> 0"  | 
| 54250 | 1086  | 
using neg_less_eq_nonneg [of "- a"] by simp  | 
1087  | 
||
| 63325 | 1088  | 
lemma less_neg_neg [simp]: "a < - a \<longleftrightarrow> a < 0"  | 
| 54250 | 1089  | 
using neg_less_pos [of "- a"] by simp  | 
1090  | 
||
| 63325 | 1091  | 
lemma double_zero [simp]: "a + a = 0 \<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
 | 
1092  | 
proof  | 
| 63325 | 1093  | 
assume "a + a = 0"  | 
| 
35036
 
b8c8d01cc20d
separate library theory for type classes combining lattices with various algebraic structures; more simp rules
 
haftmann 
parents: 
35028 
diff
changeset
 | 
1094  | 
then have a: "- a = a" by (rule minus_unique)  | 
| 35216 | 1095  | 
then show "a = 0" by (simp only: neg_equal_zero)  | 
| 63325 | 1096  | 
next  | 
1097  | 
assume "a = 0"  | 
|
1098  | 
then show "a + a = 0" by simp  | 
|
1099  | 
qed  | 
|
| 
35036
 
b8c8d01cc20d
separate library theory for type classes combining lattices with various algebraic structures; more simp rules
 
haftmann 
parents: 
35028 
diff
changeset
 | 
1100  | 
|
| 63325 | 1101  | 
lemma double_zero_sym [simp]: "0 = a + a \<longleftrightarrow> a = 0"  | 
1102  | 
apply (rule iffI)  | 
|
| 63588 | 1103  | 
apply (drule sym)  | 
1104  | 
apply simp_all  | 
|
| 63325 | 1105  | 
done  | 
| 
35036
 
b8c8d01cc20d
separate library theory for type classes combining lattices with various algebraic structures; more simp rules
 
haftmann 
parents: 
35028 
diff
changeset
 | 
1106  | 
|
| 63325 | 1107  | 
lemma zero_less_double_add_iff_zero_less_single_add [simp]: "0 < a + a \<longleftrightarrow> 0 < a"  | 
| 
35036
 
b8c8d01cc20d
separate library theory for type classes combining lattices with various algebraic structures; more simp rules
 
haftmann 
parents: 
35028 
diff
changeset
 | 
1108  | 
proof  | 
| 
 
b8c8d01cc20d
separate library theory for type classes combining lattices with various algebraic structures; more simp rules
 
haftmann 
parents: 
35028 
diff
changeset
 | 
1109  | 
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
 | 
1110  | 
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
 | 
1111  | 
then have "- a < a" by simp  | 
| 54250 | 1112  | 
then show "0 < a" by simp  | 
| 
35036
 
b8c8d01cc20d
separate library theory for type classes combining lattices with various algebraic structures; more simp rules
 
haftmann 
parents: 
35028 
diff
changeset
 | 
1113  | 
next  | 
| 
 
b8c8d01cc20d
separate library theory for type classes combining lattices with various algebraic structures; more simp rules
 
haftmann 
parents: 
35028 
diff
changeset
 | 
1114  | 
assume "0 < a"  | 
| 
 
b8c8d01cc20d
separate library theory for type classes combining lattices with various algebraic structures; more simp rules
 
haftmann 
parents: 
35028 
diff
changeset
 | 
1115  | 
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
 | 
1116  | 
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
 | 
1117  | 
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
 | 
1118  | 
qed  | 
| 
 
b8c8d01cc20d
separate library theory for type classes combining lattices with various algebraic structures; more simp rules
 
haftmann 
parents: 
35028 
diff
changeset
 | 
1119  | 
|
| 63325 | 1120  | 
lemma zero_le_double_add_iff_zero_le_single_add [simp]: "0 \<le> a + a \<longleftrightarrow> 0 \<le> a"  | 
| 
35036
 
b8c8d01cc20d
separate library theory for type classes combining lattices with various algebraic structures; more simp rules
 
haftmann 
parents: 
35028 
diff
changeset
 | 
1121  | 
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
 | 
1122  | 
|
| 63325 | 1123  | 
lemma double_add_less_zero_iff_single_add_less_zero [simp]: "a + a < 0 \<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
 | 
1124  | 
proof -  | 
| 
 
b8c8d01cc20d
separate library theory for type classes combining lattices with various algebraic structures; more simp rules
 
haftmann 
parents: 
35028 
diff
changeset
 | 
1125  | 
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
 | 
1126  | 
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
 | 
1127  | 
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
 | 
1128  | 
qed  | 
| 
 
b8c8d01cc20d
separate library theory for type classes combining lattices with various algebraic structures; more simp rules
 
haftmann 
parents: 
35028 
diff
changeset
 | 
1129  | 
|
| 63325 | 1130  | 
lemma double_add_le_zero_iff_single_add_le_zero [simp]: "a + a \<le> 0 \<longleftrightarrow> a \<le> 0"  | 
| 
35036
 
b8c8d01cc20d
separate library theory for type classes combining lattices with various algebraic structures; more simp rules
 
haftmann 
parents: 
35028 
diff
changeset
 | 
1131  | 
proof -  | 
| 
 
b8c8d01cc20d
separate library theory for type classes combining lattices with various algebraic structures; more simp rules
 
haftmann 
parents: 
35028 
diff
changeset
 | 
1132  | 
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
 | 
1133  | 
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
 | 
1134  | 
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
 | 
1135  | 
qed  | 
| 
 
b8c8d01cc20d
separate library theory for type classes combining lattices with various algebraic structures; more simp rules
 
haftmann 
parents: 
35028 
diff
changeset
 | 
1136  | 
|
| 63325 | 1137  | 
lemma minus_max_eq_min: "- max x y = min (- x) (- y)"  | 
| 
35036
 
b8c8d01cc20d
separate library theory for type classes combining lattices with various algebraic structures; more simp rules
 
haftmann 
parents: 
35028 
diff
changeset
 | 
1138  | 
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
 | 
1139  | 
|
| 63325 | 1140  | 
lemma minus_min_eq_max: "- min x y = max (- x) (- y)"  | 
| 
35036
 
b8c8d01cc20d
separate library theory for type classes combining lattices with various algebraic structures; more simp rules
 
haftmann 
parents: 
35028 
diff
changeset
 | 
1141  | 
by (auto simp add: max_def min_def)  | 
| 
25303
 
0699e20feabd
renamed lordered_*_* to lordered_*_add_*; further localization
 
haftmann 
parents: 
25267 
diff
changeset
 | 
1142  | 
|
| 25267 | 1143  | 
end  | 
1144  | 
||
| 
35092
 
cfe605c54e50
moved less_eq, less to Orderings.thy; moved abs, sgn to Groups.thy
 
haftmann 
parents: 
35050 
diff
changeset
 | 
1145  | 
class abs =  | 
| 61944 | 1146  | 
  fixes abs :: "'a \<Rightarrow> 'a"  ("\<bar>_\<bar>")
 | 
| 
35092
 
cfe605c54e50
moved less_eq, less to Orderings.thy; moved abs, sgn to Groups.thy
 
haftmann 
parents: 
35050 
diff
changeset
 | 
1147  | 
|
| 
 
cfe605c54e50
moved less_eq, less to Orderings.thy; moved abs, sgn to Groups.thy
 
haftmann 
parents: 
35050 
diff
changeset
 | 
1148  | 
class sgn =  | 
| 
 
cfe605c54e50
moved less_eq, less to Orderings.thy; moved abs, sgn to Groups.thy
 
haftmann 
parents: 
35050 
diff
changeset
 | 
1149  | 
fixes sgn :: "'a \<Rightarrow> 'a"  | 
| 
 
cfe605c54e50
moved less_eq, less to Orderings.thy; moved abs, sgn to Groups.thy
 
haftmann 
parents: 
35050 
diff
changeset
 | 
1150  | 
|
| 
35028
 
108662d50512
more consistent naming of type classes involving orderings (and lattices) -- c.f. NEWS
 
haftmann 
parents: 
34973 
diff
changeset
 | 
1151  | 
class ordered_ab_group_add_abs = ordered_ab_group_add + abs +  | 
| 
25303
 
0699e20feabd
renamed lordered_*_* to lordered_*_add_*; further localization
 
haftmann 
parents: 
25267 
diff
changeset
 | 
1152  | 
assumes abs_ge_zero [simp]: "\<bar>a\<bar> \<ge> 0"  | 
| 
 
0699e20feabd
renamed lordered_*_* to lordered_*_add_*; further localization
 
haftmann 
parents: 
25267 
diff
changeset
 | 
1153  | 
and abs_ge_self: "a \<le> \<bar>a\<bar>"  | 
| 
 
0699e20feabd
renamed lordered_*_* to lordered_*_add_*; further localization
 
haftmann 
parents: 
25267 
diff
changeset
 | 
1154  | 
and abs_leI: "a \<le> b \<Longrightarrow> - a \<le> b \<Longrightarrow> \<bar>a\<bar> \<le> b"  | 
| 
 
0699e20feabd
renamed lordered_*_* to lordered_*_add_*; further localization
 
haftmann 
parents: 
25267 
diff
changeset
 | 
1155  | 
and abs_minus_cancel [simp]: "\<bar>-a\<bar> = \<bar>a\<bar>"  | 
| 
 
0699e20feabd
renamed lordered_*_* to lordered_*_add_*; further localization
 
haftmann 
parents: 
25267 
diff
changeset
 | 
1156  | 
and abs_triangle_ineq: "\<bar>a + b\<bar> \<le> \<bar>a\<bar> + \<bar>b\<bar>"  | 
| 
 
0699e20feabd
renamed lordered_*_* to lordered_*_add_*; further localization
 
haftmann 
parents: 
25267 
diff
changeset
 | 
1157  | 
begin  | 
| 
 
0699e20feabd
renamed lordered_*_* to lordered_*_add_*; further localization
 
haftmann 
parents: 
25267 
diff
changeset
 | 
1158  | 
|
| 25307 | 1159  | 
lemma abs_minus_le_zero: "- \<bar>a\<bar> \<le> 0"  | 
1160  | 
unfolding neg_le_0_iff_le by simp  | 
|
1161  | 
||
1162  | 
lemma abs_of_nonneg [simp]:  | 
|
| 63325 | 1163  | 
assumes nonneg: "0 \<le> a"  | 
1164  | 
shows "\<bar>a\<bar> = a"  | 
|
| 25307 | 1165  | 
proof (rule antisym)  | 
| 63325 | 1166  | 
show "a \<le> \<bar>a\<bar>" by (rule abs_ge_self)  | 
| 25307 | 1167  | 
from nonneg le_imp_neg_le have "- a \<le> 0" by simp  | 
1168  | 
from this nonneg have "- a \<le> a" by (rule order_trans)  | 
|
1169  | 
then show "\<bar>a\<bar> \<le> a" by (auto intro: abs_leI)  | 
|
| 63325 | 1170  | 
qed  | 
| 25307 | 1171  | 
|
1172  | 
lemma abs_idempotent [simp]: "\<bar>\<bar>a\<bar>\<bar> = \<bar>a\<bar>"  | 
|
| 63325 | 1173  | 
by (rule antisym) (auto intro!: abs_ge_self abs_leI order_trans [of "- \<bar>a\<bar>" 0 "\<bar>a\<bar>"])  | 
| 25307 | 1174  | 
|
1175  | 
lemma abs_eq_0 [simp]: "\<bar>a\<bar> = 0 \<longleftrightarrow> a = 0"  | 
|
1176  | 
proof -  | 
|
1177  | 
have "\<bar>a\<bar> = 0 \<Longrightarrow> a = 0"  | 
|
1178  | 
proof (rule antisym)  | 
|
1179  | 
assume zero: "\<bar>a\<bar> = 0"  | 
|
1180  | 
with abs_ge_self show "a \<le> 0" by auto  | 
|
1181  | 
from zero have "\<bar>-a\<bar> = 0" by simp  | 
|
| 36302 | 1182  | 
with abs_ge_self [of "- a"] have "- a \<le> 0" by auto  | 
| 25307 | 1183  | 
with neg_le_0_iff_le show "0 \<le> a" by auto  | 
1184  | 
qed  | 
|
1185  | 
then show ?thesis by auto  | 
|
1186  | 
qed  | 
|
1187  | 
||
| 
25303
 
0699e20feabd
renamed lordered_*_* to lordered_*_add_*; further localization
 
haftmann 
parents: 
25267 
diff
changeset
 | 
1188  | 
lemma abs_zero [simp]: "\<bar>0\<bar> = 0"  | 
| 63325 | 1189  | 
by simp  | 
| 
16775
 
c1b87ef4a1c3
added lemmas to OrderedGroup.thy (reasoning about signs, absolute value, triangle inequalities)
 
avigad 
parents: 
16417 
diff
changeset
 | 
1190  | 
|
| 54148 | 1191  | 
lemma abs_0_eq [simp]: "0 = \<bar>a\<bar> \<longleftrightarrow> a = 0"  | 
| 
25303
 
0699e20feabd
renamed lordered_*_* to lordered_*_add_*; further localization
 
haftmann 
parents: 
25267 
diff
changeset
 | 
1192  | 
proof -  | 
| 
 
0699e20feabd
renamed lordered_*_* to lordered_*_add_*; further localization
 
haftmann 
parents: 
25267 
diff
changeset
 | 
1193  | 
have "0 = \<bar>a\<bar> \<longleftrightarrow> \<bar>a\<bar> = 0" by (simp only: eq_ac)  | 
| 63325 | 1194  | 
then show ?thesis by simp  | 
| 
25303
 
0699e20feabd
renamed lordered_*_* to lordered_*_add_*; further localization
 
haftmann 
parents: 
25267 
diff
changeset
 | 
1195  | 
qed  | 
| 
 
0699e20feabd
renamed lordered_*_* to lordered_*_add_*; further localization
 
haftmann 
parents: 
25267 
diff
changeset
 | 
1196  | 
|
| 
62376
 
85f38d5f8807
Rename ordered_comm_monoid_add to ordered_cancel_comm_monoid_add. Introduce ordreed_comm_monoid_add, canonically_ordered_comm_monoid and dioid. Setup nat, entat and ennreal as dioids.
 
hoelzl 
parents: 
62348 
diff
changeset
 | 
1197  | 
lemma abs_le_zero_iff [simp]: "\<bar>a\<bar> \<le> 0 \<longleftrightarrow> a = 0"  | 
| 
25303
 
0699e20feabd
renamed lordered_*_* to lordered_*_add_*; further localization
 
haftmann 
parents: 
25267 
diff
changeset
 | 
1198  | 
proof  | 
| 
 
0699e20feabd
renamed lordered_*_* to lordered_*_add_*; further localization
 
haftmann 
parents: 
25267 
diff
changeset
 | 
1199  | 
assume "\<bar>a\<bar> \<le> 0"  | 
| 
 
0699e20feabd
renamed lordered_*_* to lordered_*_add_*; further localization
 
haftmann 
parents: 
25267 
diff
changeset
 | 
1200  | 
then have "\<bar>a\<bar> = 0" by (rule antisym) simp  | 
| 63325 | 1201  | 
then show "a = 0" by simp  | 
| 
25303
 
0699e20feabd
renamed lordered_*_* to lordered_*_add_*; further localization
 
haftmann 
parents: 
25267 
diff
changeset
 | 
1202  | 
next  | 
| 
 
0699e20feabd
renamed lordered_*_* to lordered_*_add_*; further localization
 
haftmann 
parents: 
25267 
diff
changeset
 | 
1203  | 
assume "a = 0"  | 
| 63325 | 1204  | 
then show "\<bar>a\<bar> \<le> 0" by simp  | 
| 
25303
 
0699e20feabd
renamed lordered_*_* to lordered_*_add_*; further localization
 
haftmann 
parents: 
25267 
diff
changeset
 | 
1205  | 
qed  | 
| 
 
0699e20feabd
renamed lordered_*_* to lordered_*_add_*; further localization
 
haftmann 
parents: 
25267 
diff
changeset
 | 
1206  | 
|
| 
62379
 
340738057c8c
An assortment of useful lemmas about sums, norm, etc. Also: norm_conv_dist [symmetric] is now a simprule!
 
paulson <lp15@cam.ac.uk> 
parents: 
62378 
diff
changeset
 | 
1207  | 
lemma abs_le_self_iff [simp]: "\<bar>a\<bar> \<le> a \<longleftrightarrow> 0 \<le> a"  | 
| 
 
340738057c8c
An assortment of useful lemmas about sums, norm, etc. Also: norm_conv_dist [symmetric] is now a simprule!
 
paulson <lp15@cam.ac.uk> 
parents: 
62378 
diff
changeset
 | 
1208  | 
proof -  | 
| 63325 | 1209  | 
have "0 \<le> \<bar>a\<bar>"  | 
| 
62379
 
340738057c8c
An assortment of useful lemmas about sums, norm, etc. Also: norm_conv_dist [symmetric] is now a simprule!
 
paulson <lp15@cam.ac.uk> 
parents: 
62378 
diff
changeset
 | 
1210  | 
using abs_ge_zero by blast  | 
| 
 
340738057c8c
An assortment of useful lemmas about sums, norm, etc. Also: norm_conv_dist [symmetric] is now a simprule!
 
paulson <lp15@cam.ac.uk> 
parents: 
62378 
diff
changeset
 | 
1211  | 
then have "\<bar>a\<bar> \<le> a \<Longrightarrow> 0 \<le> a"  | 
| 
 
340738057c8c
An assortment of useful lemmas about sums, norm, etc. Also: norm_conv_dist [symmetric] is now a simprule!
 
paulson <lp15@cam.ac.uk> 
parents: 
62378 
diff
changeset
 | 
1212  | 
using order.trans by blast  | 
| 
 
340738057c8c
An assortment of useful lemmas about sums, norm, etc. Also: norm_conv_dist [symmetric] is now a simprule!
 
paulson <lp15@cam.ac.uk> 
parents: 
62378 
diff
changeset
 | 
1213  | 
then show ?thesis  | 
| 
 
340738057c8c
An assortment of useful lemmas about sums, norm, etc. Also: norm_conv_dist [symmetric] is now a simprule!
 
paulson <lp15@cam.ac.uk> 
parents: 
62378 
diff
changeset
 | 
1214  | 
using abs_of_nonneg eq_refl by blast  | 
| 
 
340738057c8c
An assortment of useful lemmas about sums, norm, etc. Also: norm_conv_dist [symmetric] is now a simprule!
 
paulson <lp15@cam.ac.uk> 
parents: 
62378 
diff
changeset
 | 
1215  | 
qed  | 
| 
 
340738057c8c
An assortment of useful lemmas about sums, norm, etc. Also: norm_conv_dist [symmetric] is now a simprule!
 
paulson <lp15@cam.ac.uk> 
parents: 
62378 
diff
changeset
 | 
1216  | 
|
| 
25303
 
0699e20feabd
renamed lordered_*_* to lordered_*_add_*; further localization
 
haftmann 
parents: 
25267 
diff
changeset
 | 
1217  | 
lemma zero_less_abs_iff [simp]: "0 < \<bar>a\<bar> \<longleftrightarrow> a \<noteq> 0"  | 
| 63325 | 1218  | 
by (simp add: less_le)  | 
| 
25303
 
0699e20feabd
renamed lordered_*_* to lordered_*_add_*; further localization
 
haftmann 
parents: 
25267 
diff
changeset
 | 
1219  | 
|
| 
 
0699e20feabd
renamed lordered_*_* to lordered_*_add_*; further localization
 
haftmann 
parents: 
25267 
diff
changeset
 | 
1220  | 
lemma abs_not_less_zero [simp]: "\<not> \<bar>a\<bar> < 0"  | 
| 
 
0699e20feabd
renamed lordered_*_* to lordered_*_add_*; further localization
 
haftmann 
parents: 
25267 
diff
changeset
 | 
1221  | 
proof -  | 
| 63325 | 1222  | 
have "x \<le> y \<Longrightarrow> \<not> y < x" for x y by auto  | 
1223  | 
then show ?thesis by simp  | 
|
| 
25303
 
0699e20feabd
renamed lordered_*_* to lordered_*_add_*; further localization
 
haftmann 
parents: 
25267 
diff
changeset
 | 
1224  | 
qed  | 
| 
16775
 
c1b87ef4a1c3
added lemmas to OrderedGroup.thy (reasoning about signs, absolute value, triangle inequalities)
 
avigad 
parents: 
16417 
diff
changeset
 | 
1225  | 
|
| 
25303
 
0699e20feabd
renamed lordered_*_* to lordered_*_add_*; further localization
 
haftmann 
parents: 
25267 
diff
changeset
 | 
1226  | 
lemma abs_ge_minus_self: "- a \<le> \<bar>a\<bar>"  | 
| 
 
0699e20feabd
renamed lordered_*_* to lordered_*_add_*; further localization
 
haftmann 
parents: 
25267 
diff
changeset
 | 
1227  | 
proof -  | 
| 
 
0699e20feabd
renamed lordered_*_* to lordered_*_add_*; further localization
 
haftmann 
parents: 
25267 
diff
changeset
 | 
1228  | 
have "- a \<le> \<bar>-a\<bar>" by (rule abs_ge_self)  | 
| 
 
0699e20feabd
renamed lordered_*_* to lordered_*_add_*; further localization
 
haftmann 
parents: 
25267 
diff
changeset
 | 
1229  | 
then show ?thesis by simp  | 
| 
 
0699e20feabd
renamed lordered_*_* to lordered_*_add_*; further localization
 
haftmann 
parents: 
25267 
diff
changeset
 | 
1230  | 
qed  | 
| 
 
0699e20feabd
renamed lordered_*_* to lordered_*_add_*; further localization
 
haftmann 
parents: 
25267 
diff
changeset
 | 
1231  | 
|
| 63325 | 1232  | 
lemma abs_minus_commute: "\<bar>a - b\<bar> = \<bar>b - a\<bar>"  | 
| 
25303
 
0699e20feabd
renamed lordered_*_* to lordered_*_add_*; further localization
 
haftmann 
parents: 
25267 
diff
changeset
 | 
1233  | 
proof -  | 
| 63325 | 1234  | 
have "\<bar>a - b\<bar> = \<bar>- (a - b)\<bar>"  | 
1235  | 
by (simp only: abs_minus_cancel)  | 
|
1236  | 
also have "\<dots> = \<bar>b - a\<bar>" by simp  | 
|
| 
25303
 
0699e20feabd
renamed lordered_*_* to lordered_*_add_*; further localization
 
haftmann 
parents: 
25267 
diff
changeset
 | 
1237  | 
finally show ?thesis .  | 
| 
 
0699e20feabd
renamed lordered_*_* to lordered_*_add_*; further localization
 
haftmann 
parents: 
25267 
diff
changeset
 | 
1238  | 
qed  | 
| 
 
0699e20feabd
renamed lordered_*_* to lordered_*_add_*; further localization
 
haftmann 
parents: 
25267 
diff
changeset
 | 
1239  | 
|
| 
 
0699e20feabd
renamed lordered_*_* to lordered_*_add_*; further localization
 
haftmann 
parents: 
25267 
diff
changeset
 | 
1240  | 
lemma abs_of_pos: "0 < a \<Longrightarrow> \<bar>a\<bar> = a"  | 
| 63325 | 1241  | 
by (rule abs_of_nonneg) (rule less_imp_le)  | 
| 
16775
 
c1b87ef4a1c3
added lemmas to OrderedGroup.thy (reasoning about signs, absolute value, triangle inequalities)
 
avigad 
parents: 
16417 
diff
changeset
 | 
1242  | 
|
| 
25303
 
0699e20feabd
renamed lordered_*_* to lordered_*_add_*; further localization
 
haftmann 
parents: 
25267 
diff
changeset
 | 
1243  | 
lemma abs_of_nonpos [simp]:  | 
| 63325 | 1244  | 
assumes "a \<le> 0"  | 
1245  | 
shows "\<bar>a\<bar> = - a"  | 
|
| 
25303
 
0699e20feabd
renamed lordered_*_* to lordered_*_add_*; further localization
 
haftmann 
parents: 
25267 
diff
changeset
 | 
1246  | 
proof -  | 
| 
 
0699e20feabd
renamed lordered_*_* to lordered_*_add_*; further localization
 
haftmann 
parents: 
25267 
diff
changeset
 | 
1247  | 
let ?b = "- a"  | 
| 
 
0699e20feabd
renamed lordered_*_* to lordered_*_add_*; further localization
 
haftmann 
parents: 
25267 
diff
changeset
 | 
1248  | 
have "- ?b \<le> 0 \<Longrightarrow> \<bar>- ?b\<bar> = - (- ?b)"  | 
| 63325 | 1249  | 
unfolding abs_minus_cancel [of ?b]  | 
1250  | 
unfolding neg_le_0_iff_le [of ?b]  | 
|
1251  | 
unfolding minus_minus by (erule abs_of_nonneg)  | 
|
| 
25303
 
0699e20feabd
renamed lordered_*_* to lordered_*_add_*; further localization
 
haftmann 
parents: 
25267 
diff
changeset
 | 
1252  | 
then show ?thesis using assms by auto  | 
| 
 
0699e20feabd
renamed lordered_*_* to lordered_*_add_*; further localization
 
haftmann 
parents: 
25267 
diff
changeset
 | 
1253  | 
qed  | 
| 
62376
 
85f38d5f8807
Rename ordered_comm_monoid_add to ordered_cancel_comm_monoid_add. Introduce ordreed_comm_monoid_add, canonically_ordered_comm_monoid and dioid. Setup nat, entat and ennreal as dioids.
 
hoelzl 
parents: 
62348 
diff
changeset
 | 
1254  | 
|
| 
25303
 
0699e20feabd
renamed lordered_*_* to lordered_*_add_*; further localization
 
haftmann 
parents: 
25267 
diff
changeset
 | 
1255  | 
lemma abs_of_neg: "a < 0 \<Longrightarrow> \<bar>a\<bar> = - a"  | 
| 63325 | 1256  | 
by (rule abs_of_nonpos) (rule less_imp_le)  | 
| 
25303
 
0699e20feabd
renamed lordered_*_* to lordered_*_add_*; further localization
 
haftmann 
parents: 
25267 
diff
changeset
 | 
1257  | 
|
| 
 
0699e20feabd
renamed lordered_*_* to lordered_*_add_*; further localization
 
haftmann 
parents: 
25267 
diff
changeset
 | 
1258  | 
lemma abs_le_D1: "\<bar>a\<bar> \<le> b \<Longrightarrow> a \<le> b"  | 
| 63325 | 1259  | 
using abs_ge_self by (blast intro: order_trans)  | 
| 
25303
 
0699e20feabd
renamed lordered_*_* to lordered_*_add_*; further localization
 
haftmann 
parents: 
25267 
diff
changeset
 | 
1260  | 
|
| 
 
0699e20feabd
renamed lordered_*_* to lordered_*_add_*; further localization
 
haftmann 
parents: 
25267 
diff
changeset
 | 
1261  | 
lemma abs_le_D2: "\<bar>a\<bar> \<le> b \<Longrightarrow> - a \<le> b"  | 
| 63325 | 1262  | 
using abs_le_D1 [of "- a"] by simp  | 
| 
25303
 
0699e20feabd
renamed lordered_*_* to lordered_*_add_*; further localization
 
haftmann 
parents: 
25267 
diff
changeset
 | 
1263  | 
|
| 
 
0699e20feabd
renamed lordered_*_* to lordered_*_add_*; further localization
 
haftmann 
parents: 
25267 
diff
changeset
 | 
1264  | 
lemma abs_le_iff: "\<bar>a\<bar> \<le> b \<longleftrightarrow> a \<le> b \<and> - a \<le> b"  | 
| 63325 | 1265  | 
by (blast intro: abs_leI dest: abs_le_D1 abs_le_D2)  | 
| 
25303
 
0699e20feabd
renamed lordered_*_* to lordered_*_add_*; further localization
 
haftmann 
parents: 
25267 
diff
changeset
 | 
1266  | 
|
| 
 
0699e20feabd
renamed lordered_*_* to lordered_*_add_*; further localization
 
haftmann 
parents: 
25267 
diff
changeset
 | 
1267  | 
lemma abs_triangle_ineq2: "\<bar>a\<bar> - \<bar>b\<bar> \<le> \<bar>a - b\<bar>"  | 
| 36302 | 1268  | 
proof -  | 
1269  | 
have "\<bar>a\<bar> = \<bar>b + (a - b)\<bar>"  | 
|
| 
54230
 
b1d955791529
more simplification rules on unary and binary minus
 
haftmann 
parents: 
54148 
diff
changeset
 | 
1270  | 
by (simp add: algebra_simps)  | 
| 36302 | 1271  | 
then have "\<bar>a\<bar> \<le> \<bar>b\<bar> + \<bar>a - b\<bar>"  | 
1272  | 
by (simp add: abs_triangle_ineq)  | 
|
1273  | 
then show ?thesis  | 
|
1274  | 
by (simp add: algebra_simps)  | 
|
1275  | 
qed  | 
|
1276  | 
||
1277  | 
lemma abs_triangle_ineq2_sym: "\<bar>a\<bar> - \<bar>b\<bar> \<le> \<bar>b - a\<bar>"  | 
|
1278  | 
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
 | 
1279  | 
|
| 
25303
 
0699e20feabd
renamed lordered_*_* to lordered_*_add_*; further localization
 
haftmann 
parents: 
25267 
diff
changeset
 | 
1280  | 
lemma abs_triangle_ineq3: "\<bar>\<bar>a\<bar> - \<bar>b\<bar>\<bar> \<le> \<bar>a - b\<bar>"  | 
| 36302 | 1281  | 
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
 | 
1282  | 
|
| 
25303
 
0699e20feabd
renamed lordered_*_* to lordered_*_add_*; further localization
 
haftmann 
parents: 
25267 
diff
changeset
 | 
1283  | 
lemma abs_triangle_ineq4: "\<bar>a - b\<bar> \<le> \<bar>a\<bar> + \<bar>b\<bar>"  | 
| 
 
0699e20feabd
renamed lordered_*_* to lordered_*_add_*; further localization
 
haftmann 
parents: 
25267 
diff
changeset
 | 
1284  | 
proof -  | 
| 63325 | 1285  | 
have "\<bar>a - b\<bar> = \<bar>a + - b\<bar>"  | 
1286  | 
by (simp add: algebra_simps)  | 
|
1287  | 
also have "\<dots> \<le> \<bar>a\<bar> + \<bar>- b\<bar>"  | 
|
1288  | 
by (rule abs_triangle_ineq)  | 
|
| 29667 | 1289  | 
finally show ?thesis by simp  | 
| 
25303
 
0699e20feabd
renamed lordered_*_* to lordered_*_add_*; further localization
 
haftmann 
parents: 
25267 
diff
changeset
 | 
1290  | 
qed  | 
| 
16775
 
c1b87ef4a1c3
added lemmas to OrderedGroup.thy (reasoning about signs, absolute value, triangle inequalities)
 
avigad 
parents: 
16417 
diff
changeset
 | 
1291  | 
|
| 
25303
 
0699e20feabd
renamed lordered_*_* to lordered_*_add_*; further localization
 
haftmann 
parents: 
25267 
diff
changeset
 | 
1292  | 
lemma abs_diff_triangle_ineq: "\<bar>a + b - (c + d)\<bar> \<le> \<bar>a - c\<bar> + \<bar>b - d\<bar>"  | 
| 
 
0699e20feabd
renamed lordered_*_* to lordered_*_add_*; further localization
 
haftmann 
parents: 
25267 
diff
changeset
 | 
1293  | 
proof -  | 
| 63325 | 1294  | 
have "\<bar>a + b - (c + d)\<bar> = \<bar>(a - c) + (b - d)\<bar>"  | 
1295  | 
by (simp add: algebra_simps)  | 
|
1296  | 
also have "\<dots> \<le> \<bar>a - c\<bar> + \<bar>b - d\<bar>"  | 
|
1297  | 
by (rule abs_triangle_ineq)  | 
|
| 
25303
 
0699e20feabd
renamed lordered_*_* to lordered_*_add_*; further localization
 
haftmann 
parents: 
25267 
diff
changeset
 | 
1298  | 
finally show ?thesis .  | 
| 
 
0699e20feabd
renamed lordered_*_* to lordered_*_add_*; further localization
 
haftmann 
parents: 
25267 
diff
changeset
 | 
1299  | 
qed  | 
| 
16775
 
c1b87ef4a1c3
added lemmas to OrderedGroup.thy (reasoning about signs, absolute value, triangle inequalities)
 
avigad 
parents: 
16417 
diff
changeset
 | 
1300  | 
|
| 63325 | 1301  | 
lemma abs_add_abs [simp]: "\<bar>\<bar>a\<bar> + \<bar>b\<bar>\<bar> = \<bar>a\<bar> + \<bar>b\<bar>"  | 
1302  | 
(is "?L = ?R")  | 
|
| 
25303
 
0699e20feabd
renamed lordered_*_* to lordered_*_add_*; further localization
 
haftmann 
parents: 
25267 
diff
changeset
 | 
1303  | 
proof (rule antisym)  | 
| 63325 | 1304  | 
show "?L \<ge> ?R" by (rule abs_ge_self)  | 
1305  | 
have "?L \<le> \<bar>\<bar>a\<bar>\<bar> + \<bar>\<bar>b\<bar>\<bar>" by (rule abs_triangle_ineq)  | 
|
| 
25303
 
0699e20feabd
renamed lordered_*_* to lordered_*_add_*; further localization
 
haftmann 
parents: 
25267 
diff
changeset
 | 
1306  | 
also have "\<dots> = ?R" by simp  | 
| 
 
0699e20feabd
renamed lordered_*_* to lordered_*_add_*; further localization
 
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 | 
1307  | 
finally show "?L \<le> ?R" .  | 
| 
 
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 | 
1308  | 
qed  | 
| 
 
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changeset
 | 
1309  | 
|
| 
 
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 | 
1310  | 
end  | 
| 14738 | 1311  | 
|
| 60762 | 1312  | 
lemma dense_eq0_I:  | 
1313  | 
  fixes x::"'a::{dense_linorder,ordered_ab_group_add_abs}"
 | 
|
| 63325 | 1314  | 
shows "(\<And>e. 0 < e \<Longrightarrow> \<bar>x\<bar> \<le> e) \<Longrightarrow> x = 0"  | 
1315  | 
apply (cases "\<bar>x\<bar> = 0")  | 
|
| 63588 | 1316  | 
apply simp  | 
| 60762 | 1317  | 
apply (simp only: zero_less_abs_iff [symmetric])  | 
1318  | 
apply (drule dense)  | 
|
1319  | 
apply (auto simp add: not_less [symmetric])  | 
|
1320  | 
done  | 
|
1321  | 
||
| 
59815
 
cce82e360c2f
explicit commutative additive inverse operation;
 
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diff
changeset
 | 
1322  | 
hide_fact (open) ab_diff_conv_add_uminus add_0 mult_1 ab_left_minus  | 
| 
 
cce82e360c2f
explicit commutative additive inverse operation;
 
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parents: 
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changeset
 | 
1323  | 
|
| 63325 | 1324  | 
lemmas add_0 = add_0_left (* FIXME duplicate *)  | 
1325  | 
lemmas mult_1 = mult_1_left (* FIXME duplicate *)  | 
|
1326  | 
lemmas ab_left_minus = left_minus (* FIXME duplicate *)  | 
|
1327  | 
lemmas diff_diff_eq = diff_diff_add (* FIXME duplicate *)  | 
|
1328  | 
||
| 
59815
 
cce82e360c2f
explicit commutative additive inverse operation;
 
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parents: 
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diff
changeset
 | 
1329  | 
|
| 
62377
 
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changeset
 | 
1330  | 
subsection \<open>Canonically ordered monoids\<close>  | 
| 
 
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 | 
1331  | 
|
| 
 
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changeset
 | 
1332  | 
text \<open>Canonically ordered monoids are never groups.\<close>  | 
| 
 
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changeset
 | 
1333  | 
|
| 
 
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parents: 
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changeset
 | 
1334  | 
class canonically_ordered_monoid_add = comm_monoid_add + order +  | 
| 
 
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changeset
 | 
1335  | 
assumes le_iff_add: "a \<le> b \<longleftrightarrow> (\<exists>c. b = a + c)"  | 
| 
 
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changeset
 | 
1336  | 
begin  | 
| 
 
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changeset
 | 
1337  | 
|
| 
62378
 
85ed00c1fe7c
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changeset
 | 
1338  | 
lemma zero_le[simp]: "0 \<le> x"  | 
| 
62377
 
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parents: 
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changeset
 | 
1339  | 
by (auto simp: le_iff_add)  | 
| 
 
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changeset
 | 
1340  | 
|
| 
62378
 
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changeset
 | 
1341  | 
lemma le_zero_eq[simp]: "n \<le> 0 \<longleftrightarrow> n = 0"  | 
| 
 
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changeset
 | 
1342  | 
by (auto intro: antisym)  | 
| 
 
85ed00c1fe7c
generalize more theorems to support enat and ennreal
 
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changeset
 | 
1343  | 
|
| 
 
85ed00c1fe7c
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changeset
 | 
1344  | 
lemma not_less_zero[simp]: "\<not> n < 0"  | 
| 
 
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changeset
 | 
1345  | 
by (auto simp: less_le)  | 
| 
 
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changeset
 | 
1346  | 
|
| 63325 | 1347  | 
lemma zero_less_iff_neq_zero: "0 < n \<longleftrightarrow> n \<noteq> 0"  | 
| 
62378
 
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parents: 
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changeset
 | 
1348  | 
by (auto simp: less_le)  | 
| 
 
85ed00c1fe7c
generalize more theorems to support enat and ennreal
 
hoelzl 
parents: 
62377 
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changeset
 | 
1349  | 
|
| 
 
85ed00c1fe7c
generalize more theorems to support enat and ennreal
 
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parents: 
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changeset
 | 
1350  | 
text \<open>This theorem is useful with \<open>blast\<close>\<close>  | 
| 
 
85ed00c1fe7c
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changeset
 | 
1351  | 
lemma gr_zeroI: "(n = 0 \<Longrightarrow> False) \<Longrightarrow> 0 < n"  | 
| 
 
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changeset
 | 
1352  | 
by (rule zero_less_iff_neq_zero[THEN iffD2]) iprover  | 
| 
 
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changeset
 | 
1353  | 
|
| 63325 | 1354  | 
lemma not_gr_zero[simp]: "\<not> 0 < n \<longleftrightarrow> n = 0"  | 
| 
62378
 
85ed00c1fe7c
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parents: 
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changeset
 | 
1355  | 
by (simp add: zero_less_iff_neq_zero)  | 
| 
 
85ed00c1fe7c
generalize more theorems to support enat and ennreal
 
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changeset
 | 
1356  | 
|
| 
62377
 
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parents: 
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changeset
 | 
1357  | 
subclass ordered_comm_monoid_add  | 
| 
 
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changeset
 | 
1358  | 
proof qed (auto simp: le_iff_add add_ac)  | 
| 
 
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changeset
 | 
1359  | 
|
| 
63878
 
e26c7f58d78e
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hoelzl 
parents: 
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diff
changeset
 | 
1360  | 
lemma gr_implies_not_zero: "m < n \<Longrightarrow> n \<noteq> 0"  | 
| 
 
e26c7f58d78e
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parents: 
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changeset
 | 
1361  | 
by auto  | 
| 
 
e26c7f58d78e
add add_eq_0_iff_both_eq_0 and zero_eq_add_iff_both_eq_0 to simp set
 
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parents: 
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diff
changeset
 | 
1362  | 
|
| 
 
e26c7f58d78e
add add_eq_0_iff_both_eq_0 and zero_eq_add_iff_both_eq_0 to simp set
 
hoelzl 
parents: 
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diff
changeset
 | 
1363  | 
lemma add_eq_0_iff_both_eq_0[simp]: "x + y = 0 \<longleftrightarrow> x = 0 \<and> y = 0"  | 
| 
62377
 
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parents: 
62376 
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changeset
 | 
1364  | 
by (intro add_nonneg_eq_0_iff zero_le)  | 
| 
 
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changeset
 | 
1365  | 
|
| 
63878
 
e26c7f58d78e
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hoelzl 
parents: 
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diff
changeset
 | 
1366  | 
lemma zero_eq_add_iff_both_eq_0[simp]: "0 = x + y \<longleftrightarrow> x = 0 \<and> y = 0"  | 
| 
 
e26c7f58d78e
add add_eq_0_iff_both_eq_0 and zero_eq_add_iff_both_eq_0 to simp set
 
hoelzl 
parents: 
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changeset
 | 
1367  | 
using add_eq_0_iff_both_eq_0[of x y] unfolding eq_commute[of 0] .  | 
| 
62378
 
85ed00c1fe7c
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hoelzl 
parents: 
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diff
changeset
 | 
1368  | 
|
| 
 
85ed00c1fe7c
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changeset
 | 
1369  | 
lemmas zero_order = zero_le le_zero_eq not_less_zero zero_less_iff_neq_zero not_gr_zero  | 
| 63145 | 1370  | 
\<comment> \<open>This should be attributed with \<open>[iff]\<close>, but then \<open>blast\<close> fails in \<open>Set\<close>.\<close>  | 
| 
62378
 
85ed00c1fe7c
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parents: 
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changeset
 | 
1371  | 
|
| 
62377
 
ace69956d018
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parents: 
62376 
diff
changeset
 | 
1372  | 
end  | 
| 
 
ace69956d018
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parents: 
62376 
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changeset
 | 
1373  | 
|
| 
 
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moved more proofs to ordered_comm_monoid_add; introduced strict_ordered_ab_semigroup/comm_monoid_add
 
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parents: 
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changeset
 | 
1374  | 
class ordered_cancel_comm_monoid_diff =  | 
| 
 
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moved more proofs to ordered_comm_monoid_add; introduced strict_ordered_ab_semigroup/comm_monoid_add
 
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changeset
 | 
1375  | 
canonically_ordered_monoid_add + comm_monoid_diff + ordered_ab_semigroup_add_imp_le  | 
| 
 
ace69956d018
moved more proofs to ordered_comm_monoid_add; introduced strict_ordered_ab_semigroup/comm_monoid_add
 
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parents: 
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changeset
 | 
1376  | 
begin  | 
| 
 
ace69956d018
moved more proofs to ordered_comm_monoid_add; introduced strict_ordered_ab_semigroup/comm_monoid_add
 
hoelzl 
parents: 
62376 
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changeset
 | 
1377  | 
|
| 
 
ace69956d018
moved more proofs to ordered_comm_monoid_add; introduced strict_ordered_ab_semigroup/comm_monoid_add
 
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parents: 
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changeset
 | 
1378  | 
context  | 
| 63588 | 1379  | 
fixes a b :: 'a  | 
| 63325 | 1380  | 
assumes le: "a \<le> b"  | 
| 
62377
 
ace69956d018
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parents: 
62376 
diff
changeset
 | 
1381  | 
begin  | 
| 
 
ace69956d018
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parents: 
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changeset
 | 
1382  | 
|
| 63325 | 1383  | 
lemma add_diff_inverse: "a + (b - a) = b"  | 
1384  | 
using le by (auto simp add: le_iff_add)  | 
|
| 
62377
 
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parents: 
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diff
changeset
 | 
1385  | 
|
| 63325 | 1386  | 
lemma add_diff_assoc: "c + (b - a) = c + b - a"  | 
1387  | 
using le by (auto simp add: le_iff_add add.left_commute [of c])  | 
|
| 
62377
 
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parents: 
62376 
diff
changeset
 | 
1388  | 
|
| 63325 | 1389  | 
lemma add_diff_assoc2: "b - a + c = b + c - a"  | 
1390  | 
using le by (auto simp add: le_iff_add add.assoc)  | 
|
| 
62377
 
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parents: 
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changeset
 | 
1391  | 
|
| 63325 | 1392  | 
lemma diff_add_assoc: "c + b - a = c + (b - a)"  | 
1393  | 
using le by (simp add: add.commute add_diff_assoc)  | 
|
| 
62377
 
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62376 
diff
changeset
 | 
1394  | 
|
| 63325 | 1395  | 
lemma diff_add_assoc2: "b + c - a = b - a + c"  | 
1396  | 
using le by (simp add: add.commute add_diff_assoc)  | 
|
| 
62377
 
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changeset
 | 
1397  | 
|
| 63325 | 1398  | 
lemma diff_diff_right: "c - (b - a) = c + a - b"  | 
| 
62377
 
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parents: 
62376 
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changeset
 | 
1399  | 
by (simp add: add_diff_inverse add_diff_cancel_left [of a c "b - a", symmetric] add.commute)  | 
| 
 
ace69956d018
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parents: 
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diff
changeset
 | 
1400  | 
|
| 63325 | 1401  | 
lemma diff_add: "b - a + a = b"  | 
| 
62377
 
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changeset
 | 
1402  | 
by (simp add: add.commute add_diff_inverse)  | 
| 
 
ace69956d018
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changeset
 | 
1403  | 
|
| 63325 | 1404  | 
lemma le_add_diff: "c \<le> b + c - a"  | 
| 
62377
 
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changeset
 | 
1405  | 
by (auto simp add: add.commute diff_add_assoc2 le_iff_add)  | 
| 
 
ace69956d018
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parents: 
62376 
diff
changeset
 | 
1406  | 
|
| 63325 | 1407  | 
lemma le_imp_diff_is_add: "a \<le> b \<Longrightarrow> b - a = c \<longleftrightarrow> b = c + a"  | 
| 
62377
 
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changeset
 | 
1408  | 
by (auto simp add: add.commute add_diff_inverse)  | 
| 
 
ace69956d018
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62376 
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changeset
 | 
1409  | 
|
| 63325 | 1410  | 
lemma le_diff_conv2: "c \<le> b - a \<longleftrightarrow> c + a \<le> b"  | 
1411  | 
(is "?P \<longleftrightarrow> ?Q")  | 
|
| 
62377
 
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62376 
diff
changeset
 | 
1412  | 
proof  | 
| 
 
ace69956d018
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62376 
diff
changeset
 | 
1413  | 
assume ?P  | 
| 63325 | 1414  | 
then have "c + a \<le> b - a + a"  | 
1415  | 
by (rule add_right_mono)  | 
|
1416  | 
then show ?Q  | 
|
1417  | 
by (simp add: add_diff_inverse add.commute)  | 
|
| 
62377
 
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62376 
diff
changeset
 | 
1418  | 
next  | 
| 
 
ace69956d018
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changeset
 | 
1419  | 
assume ?Q  | 
| 63325 | 1420  | 
then have "a + c \<le> a + (b - a)"  | 
1421  | 
by (simp add: add_diff_inverse add.commute)  | 
|
| 
62377
 
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changeset
 | 
1422  | 
then show ?P by simp  | 
| 
 
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changeset
 | 
1423  | 
qed  | 
| 
 
ace69956d018
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changeset
 | 
1424  | 
|
| 
 
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changeset
 | 
1425  | 
end  | 
| 
 
ace69956d018
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changeset
 | 
1426  | 
|
| 
 
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changeset
 | 
1427  | 
end  | 
| 
 
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changeset
 | 
1428  | 
|
| 63325 | 1429  | 
|
| 60758 | 1430  | 
subsection \<open>Tools setup\<close>  | 
| 25090 | 1431  | 
|
| 
54147
 
97a8ff4e4ac9
killed most "no_atp", to make Sledgehammer more complete
 
blanchet 
parents: 
52435 
diff
changeset
 | 
1432  | 
lemma add_mono_thms_linordered_semiring:  | 
| 61076 | 1433  | 
fixes i j k :: "'a::ordered_ab_semigroup_add"  | 
| 25077 | 1434  | 
shows "i \<le> j \<and> k \<le> l \<Longrightarrow> i + k \<le> j + l"  | 
1435  | 
and "i = j \<and> k \<le> l \<Longrightarrow> i + k \<le> j + l"  | 
|
1436  | 
and "i \<le> j \<and> k = l \<Longrightarrow> i + k \<le> j + l"  | 
|
1437  | 
and "i = j \<and> k = l \<Longrightarrow> i + k = j + l"  | 
|
| 63325 | 1438  | 
by (rule add_mono, clarify+)+  | 
| 25077 | 1439  | 
|
| 
54147
 
97a8ff4e4ac9
killed most "no_atp", to make Sledgehammer more complete
 
blanchet 
parents: 
52435 
diff
changeset
 | 
1440  | 
lemma add_mono_thms_linordered_field:  | 
| 61076 | 1441  | 
fixes i j k :: "'a::ordered_cancel_ab_semigroup_add"  | 
| 25077 | 1442  | 
shows "i < j \<and> k = l \<Longrightarrow> i + k < j + l"  | 
1443  | 
and "i = j \<and> k < l \<Longrightarrow> i + k < j + l"  | 
|
1444  | 
and "i < j \<and> k \<le> l \<Longrightarrow> i + k < j + l"  | 
|
1445  | 
and "i \<le> j \<and> k < l \<Longrightarrow> i + k < j + l"  | 
|
1446  | 
and "i < j \<and> k < l \<Longrightarrow> i + k < j + l"  | 
|
| 63325 | 1447  | 
by (auto intro: add_strict_right_mono add_strict_left_mono  | 
1448  | 
add_less_le_mono add_le_less_mono add_strict_mono)  | 
|
| 25077 | 1449  | 
|
| 
52435
 
6646bb548c6b
migration from code_(const|type|class|instance) to code_printing and from code_module to code_identifier
 
haftmann 
parents: 
52289 
diff
changeset
 | 
1450  | 
code_identifier  | 
| 
 
6646bb548c6b
migration from code_(const|type|class|instance) to code_printing and from code_module to code_identifier
 
haftmann 
parents: 
52289 
diff
changeset
 | 
1451  | 
code_module Groups \<rightharpoonup> (SML) Arith and (OCaml) Arith and (Haskell) Arith  | 
| 33364 | 1452  | 
|
| 14738 | 1453  | 
end  |