| author | wenzelm | 
| Wed, 20 Aug 2014 11:51:39 +0200 | |
| changeset 58013 | 14c8269d0de9 | 
| parent 47836 | 471cc845430b | 
| child 58249 | 180f1b3508ed | 
| permissions | -rw-r--r-- | 
| 
29181
 
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renamed LexOrds.thy to Termination.thy; examples for sizechange method
 
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1  | 
(* Title: HOL/ex/Termination.thy  | 
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cc177742e607
renamed LexOrds.thy to Termination.thy; examples for sizechange method
 
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2  | 
Author: Lukas Bulwahn, TU Muenchen  | 
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cc177742e607
renamed LexOrds.thy to Termination.thy; examples for sizechange method
 
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3  | 
Author: Alexander Krauss, TU Muenchen  | 
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cc177742e607
renamed LexOrds.thy to Termination.thy; examples for sizechange method
 
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4  | 
*)  | 
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cc177742e607
renamed LexOrds.thy to Termination.thy; examples for sizechange method
 
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5  | 
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cc177742e607
renamed LexOrds.thy to Termination.thy; examples for sizechange method
 
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6  | 
header {* Examples and regression tests for automated termination proofs *}
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cc177742e607
renamed LexOrds.thy to Termination.thy; examples for sizechange method
 
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7  | 
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renamed LexOrds.thy to Termination.thy; examples for sizechange method
 
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8  | 
theory Termination  | 
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41413
 
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explicit file specifications -- avoid secondary load path;
 
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9  | 
imports Main "~~/src/HOL/Library/Multiset"  | 
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29181
 
cc177742e607
renamed LexOrds.thy to Termination.thy; examples for sizechange method
 
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10  | 
begin  | 
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11  | 
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| 32399 | 12  | 
subsection {* Manually giving termination relations using @{text relation} and
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13  | 
@{term measure} *}
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14  | 
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15  | 
function sum :: "nat \<Rightarrow> nat \<Rightarrow> nat"  | 
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16  | 
where  | 
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17  | 
"sum i N = (if i > N then 0 else i + sum (Suc i) N)"  | 
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18  | 
by pat_completeness auto  | 
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19  | 
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20  | 
termination by (relation "measure (\<lambda>(i,N). N + 1 - i)") auto  | 
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21  | 
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22  | 
function foo :: "nat \<Rightarrow> nat \<Rightarrow> nat"  | 
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23  | 
where  | 
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24  | 
"foo i N = (if i > N  | 
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25  | 
then (if N = 0 then 0 else foo 0 (N - 1))  | 
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26  | 
else i + foo (Suc i) N)"  | 
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27  | 
by pat_completeness auto  | 
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28  | 
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29  | 
termination by (relation "measures [\<lambda>(i, N). N, \<lambda>(i,N). N + 1 - i]") auto  | 
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30  | 
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31  | 
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32  | 
subsection {* @{text lexicographic_order}: Trivial examples *}
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33  | 
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29181
 
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renamed LexOrds.thy to Termination.thy; examples for sizechange method
 
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34  | 
text {*
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| 32399 | 35  | 
  The @{text fun} command uses the method @{text lexicographic_order} by default,
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36  | 
so it is not explicitly invoked.  | 
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29181
 
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renamed LexOrds.thy to Termination.thy; examples for sizechange method
 
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37  | 
*}  | 
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cc177742e607
renamed LexOrds.thy to Termination.thy; examples for sizechange method
 
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38  | 
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renamed LexOrds.thy to Termination.thy; examples for sizechange method
 
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39  | 
fun identity :: "nat \<Rightarrow> nat"  | 
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renamed LexOrds.thy to Termination.thy; examples for sizechange method
 
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40  | 
where  | 
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renamed LexOrds.thy to Termination.thy; examples for sizechange method
 
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41  | 
"identity n = n"  | 
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renamed LexOrds.thy to Termination.thy; examples for sizechange method
 
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42  | 
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43  | 
fun yaSuc :: "nat \<Rightarrow> nat"  | 
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44  | 
where  | 
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45  | 
"yaSuc 0 = 0"  | 
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cc177742e607
renamed LexOrds.thy to Termination.thy; examples for sizechange method
 
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46  | 
| "yaSuc (Suc n) = Suc (yaSuc n)"  | 
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renamed LexOrds.thy to Termination.thy; examples for sizechange method
 
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47  | 
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48  | 
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49  | 
subsection {* Examples on natural numbers *}
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50  | 
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51  | 
fun bin :: "(nat * nat) \<Rightarrow> nat"  | 
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52  | 
where  | 
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53  | 
"bin (0, 0) = 1"  | 
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54  | 
| "bin (Suc n, 0) = 0"  | 
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55  | 
| "bin (0, Suc m) = 0"  | 
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56  | 
| "bin (Suc n, Suc m) = bin (n, m) + bin (Suc n, m)"  | 
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57  | 
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58  | 
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59  | 
fun t :: "(nat * nat) \<Rightarrow> nat"  | 
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60  | 
where  | 
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61  | 
"t (0,n) = 0"  | 
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cc177742e607
renamed LexOrds.thy to Termination.thy; examples for sizechange method
 
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62  | 
| "t (n,0) = 0"  | 
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cc177742e607
renamed LexOrds.thy to Termination.thy; examples for sizechange method
 
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63  | 
| "t (Suc n, Suc m) = (if (n mod 2 = 0) then (t (Suc n, m)) else (t (n, Suc m)))"  | 
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64  | 
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65  | 
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66  | 
fun k :: "(nat * nat) * (nat * nat) \<Rightarrow> nat"  | 
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67  | 
where  | 
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68  | 
"k ((0,0),(0,0)) = 0"  | 
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69  | 
| "k ((Suc z, y), (u,v)) = k((z, y), (u, v))" (* z is descending *)  | 
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70  | 
| "k ((0, Suc y), (u,v)) = k((1, y), (u, v))" (* y is descending *)  | 
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71  | 
| "k ((0,0), (Suc u, v)) = k((1, 1), (u, v))" (* u is descending *)  | 
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72  | 
| "k ((0,0), (0, Suc v)) = k((1,1), (1,v))" (* v is descending *)  | 
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73  | 
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74  | 
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75  | 
fun gcd2 :: "nat \<Rightarrow> nat \<Rightarrow> nat"  | 
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76  | 
where  | 
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77  | 
"gcd2 x 0 = x"  | 
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78  | 
| "gcd2 0 y = y"  | 
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79  | 
| "gcd2 (Suc x) (Suc y) = (if x < y then gcd2 (Suc x) (y - x)  | 
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80  | 
else gcd2 (x - y) (Suc y))"  | 
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81  | 
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82  | 
fun ack :: "(nat * nat) \<Rightarrow> nat"  | 
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83  | 
where  | 
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84  | 
"ack (0, m) = Suc m"  | 
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85  | 
| "ack (Suc n, 0) = ack(n, 1)"  | 
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86  | 
| "ack (Suc n, Suc m) = ack (n, ack (Suc n, m))"  | 
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87  | 
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88  | 
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89  | 
fun greedy :: "nat * nat * nat * nat * nat => nat"  | 
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90  | 
where  | 
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91  | 
"greedy (Suc a, Suc b, Suc c, Suc d, Suc e) =  | 
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92  | 
(if (a < 10) then greedy (Suc a, Suc b, c, d + 2, Suc e) else  | 
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93  | 
(if (a < 20) then greedy (Suc a, b, Suc c, d, Suc e) else  | 
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94  | 
(if (a < 30) then greedy (Suc a, b, Suc c, d, Suc e) else  | 
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95  | 
(if (a < 40) then greedy (Suc a, b, Suc c, d, Suc e) else  | 
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96  | 
(if (a < 50) then greedy (Suc a, b, Suc c, d, Suc e) else  | 
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97  | 
(if (a < 60) then greedy (a, Suc b, Suc c, d, Suc e) else  | 
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98  | 
(if (a < 70) then greedy (a, Suc b, Suc c, d, Suc e) else  | 
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99  | 
(if (a < 80) then greedy (a, Suc b, Suc c, d, Suc e) else  | 
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100  | 
(if (a < 90) then greedy (Suc a, Suc b, Suc c, d, e) else  | 
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101  | 
greedy (Suc a, Suc b, Suc c, d, e))))))))))"  | 
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102  | 
| "greedy (a, b, c, d, e) = 0"  | 
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103  | 
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104  | 
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105  | 
fun blowup :: "nat => nat => nat => nat => nat => nat => nat => nat => nat => nat"  | 
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106  | 
where  | 
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107  | 
"blowup 0 0 0 0 0 0 0 0 0 = 0"  | 
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108  | 
| "blowup 0 0 0 0 0 0 0 0 (Suc i) = Suc (blowup i i i i i i i i i)"  | 
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109  | 
| "blowup 0 0 0 0 0 0 0 (Suc h) i = Suc (blowup h h h h h h h h i)"  | 
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110  | 
| "blowup 0 0 0 0 0 0 (Suc g) h i = Suc (blowup g g g g g g g h i)"  | 
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111  | 
| "blowup 0 0 0 0 0 (Suc f) g h i = Suc (blowup f f f f f f g h i)"  | 
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112  | 
| "blowup 0 0 0 0 (Suc e) f g h i = Suc (blowup e e e e e f g h i)"  | 
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113  | 
| "blowup 0 0 0 (Suc d) e f g h i = Suc (blowup d d d d e f g h i)"  | 
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114  | 
| "blowup 0 0 (Suc c) d e f g h i = Suc (blowup c c c d e f g h i)"  | 
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115  | 
| "blowup 0 (Suc b) c d e f g h i = Suc (blowup b b c d e f g h i)"  | 
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116  | 
| "blowup (Suc a) b c d e f g h i = Suc (blowup a b c d e f g h i)"  | 
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117  | 
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118  | 
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119  | 
subsection {* Simple examples with other datatypes than nat, e.g. trees and lists *}
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120  | 
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121  | 
datatype tree = Node | Branch tree tree  | 
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122  | 
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123  | 
fun g_tree :: "tree * tree \<Rightarrow> tree"  | 
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124  | 
where  | 
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125  | 
"g_tree (Node, Node) = Node"  | 
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126  | 
| "g_tree (Node, Branch a b) = Branch Node (g_tree (a,b))"  | 
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127  | 
| "g_tree (Branch a b, Node) = Branch (g_tree (a,Node)) b"  | 
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128  | 
| "g_tree (Branch a b, Branch c d) = Branch (g_tree (a,c)) (g_tree (b,d))"  | 
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129  | 
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130  | 
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131  | 
fun acklist :: "'a list * 'a list \<Rightarrow> 'a list"  | 
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132  | 
where  | 
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133  | 
"acklist ([], m) = ((hd m)#m)"  | 
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134  | 
| "acklist (n#ns, []) = acklist (ns, [n])"  | 
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135  | 
| "acklist ((n#ns), (m#ms)) = acklist (ns, acklist ((n#ns), ms))"  | 
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136  | 
|
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137  | 
|
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138  | 
subsection {* Examples with mutual recursion *}
 | 
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139  | 
|
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140  | 
fun evn od :: "nat \<Rightarrow> bool"  | 
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141  | 
where  | 
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142  | 
"evn 0 = True"  | 
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143  | 
| "od 0 = False"  | 
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144  | 
| "evn (Suc n) = od (Suc n)"  | 
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145  | 
| "od (Suc n) = evn n"  | 
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146  | 
|
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147  | 
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148  | 
fun sizechange_f :: "'a list => 'a list => 'a list" and  | 
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149  | 
sizechange_g :: "'a list => 'a list => 'a list => 'a list"  | 
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150  | 
where  | 
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151  | 
"sizechange_f i x = (if i=[] then x else sizechange_g (tl i) x i)"  | 
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152  | 
| "sizechange_g a b c = sizechange_f a (b @ c)"  | 
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153  | 
|
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154  | 
fun  | 
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155  | 
pedal :: "nat => nat => nat => nat"  | 
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156  | 
and  | 
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157  | 
coast :: "nat => nat => nat => nat"  | 
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158  | 
where  | 
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159  | 
"pedal 0 m c = c"  | 
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160  | 
| "pedal n 0 c = c"  | 
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161  | 
| "pedal n m c =  | 
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162  | 
(if n < m then coast (n - 1) (m - 1) (c + m)  | 
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163  | 
else pedal (n - 1) m (c + m))"  | 
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164  | 
|
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165  | 
| "coast n m c =  | 
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166  | 
(if n < m then coast n (m - 1) (c + n)  | 
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167  | 
else pedal n m (c + n))"  | 
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168  | 
|
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169  | 
|
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170  | 
|
| 33468 | 171  | 
subsection {* Refined analysis: The @{text size_change} method *}
 | 
| 
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172  | 
|
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173  | 
text {* Unsolvable for @{text lexicographic_order} *}
 | 
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174  | 
|
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175  | 
function fun1 :: "nat * nat \<Rightarrow> nat"  | 
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176  | 
where  | 
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177  | 
"fun1 (0,0) = 1"  | 
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178  | 
| "fun1 (0, Suc b) = 0"  | 
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179  | 
| "fun1 (Suc a, 0) = 0"  | 
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180  | 
| "fun1 (Suc a, Suc b) = fun1 (b, a)"  | 
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181  | 
by pat_completeness auto  | 
| 33468 | 182  | 
termination by size_change  | 
| 
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183  | 
|
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184  | 
|
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185  | 
text {* 
 | 
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186  | 
  @{text lexicographic_order} can do the following, but it is much slower. 
 | 
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187  | 
*}  | 
| 
 
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188  | 
|
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189  | 
function  | 
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190  | 
prod :: "nat => nat => nat => nat" and  | 
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191  | 
eprod :: "nat => nat => nat => nat" and  | 
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192  | 
oprod :: "nat => nat => nat => nat"  | 
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193  | 
where  | 
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194  | 
"prod x y z = (if y mod 2 = 0 then eprod x y z else oprod x y z)"  | 
| 
 
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195  | 
| "oprod x y z = eprod x (y - 1) (z+x)"  | 
| 
 
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196  | 
| "eprod x y z = (if y=0 then z else prod (2*x) (y div 2) z)"  | 
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197  | 
by pat_completeness auto  | 
| 33468 | 198  | 
termination by size_change  | 
| 
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199  | 
|
| 
 
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200  | 
text {* 
 | 
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201  | 
Permutations of arguments:  | 
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202  | 
*}  | 
| 
 
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203  | 
|
| 
 
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204  | 
function perm :: "nat \<Rightarrow> nat \<Rightarrow> nat \<Rightarrow> nat"  | 
| 
 
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205  | 
where  | 
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206  | 
"perm m n r = (if r > 0 then perm m (r - 1) n  | 
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207  | 
else if n > 0 then perm r (n - 1) m  | 
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208  | 
else m)"  | 
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209  | 
by auto  | 
| 33468 | 210  | 
termination by size_change  | 
| 
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211  | 
|
| 
 
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212  | 
text {*
 | 
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213  | 
Artificial examples and regression tests:  | 
| 
 
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214  | 
*}  | 
| 
 
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215  | 
|
| 
 
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216  | 
function  | 
| 
 
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217  | 
fun2 :: "nat \<Rightarrow> nat \<Rightarrow> nat \<Rightarrow> nat"  | 
| 
 
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218  | 
where  | 
| 
 
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219  | 
"fun2 x y z =  | 
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220  | 
(if x > 1000 \<and> z > 0 then  | 
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221  | 
fun2 (min x y) y (z - 1)  | 
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222  | 
else if y > 0 \<and> x > 100 then  | 
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223  | 
fun2 x (y - 1) (2 * z)  | 
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224  | 
else if z > 0 then  | 
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225  | 
fun2 (min y (z - 1)) x x  | 
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226  | 
else  | 
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227  | 
0  | 
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228  | 
)"  | 
| 
 
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229  | 
by pat_completeness auto  | 
| 33468 | 230  | 
termination by size_change -- {* requires Multiset *}
 | 
| 
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231  | 
|
| 
47836
 
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232  | 
definition negate :: "int \<Rightarrow> int"  | 
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233  | 
where "negate i = - i"  | 
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234  | 
|
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235  | 
function fun3 :: "int => nat"  | 
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236  | 
where  | 
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237  | 
"fun3 i =  | 
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238  | 
(if i < 0 then fun3 (negate i)  | 
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239  | 
else if i = 0 then 0  | 
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240  | 
else fun3 (i - 1))"  | 
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241  | 
by (pat_completeness) auto  | 
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242  | 
termination  | 
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243  | 
apply size_change  | 
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244  | 
apply (simp add: negate_def)  | 
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245  | 
apply size_change  | 
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246  | 
done  | 
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247  | 
|
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471cc845430b
added test case for dependency graph (cf. 2d48bf79b725)
 
krauss 
parents: 
41413 
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29181
 
cc177742e607
renamed LexOrds.thy to Termination.thy; examples for sizechange method
 
krauss 
parents:  
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249  | 
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