| author | wenzelm | 
| Wed, 09 Apr 2014 12:33:02 +0200 | |
| changeset 56493 | 1f660d858a75 | 
| parent 53015 | a1119cf551e8 | 
| child 58152 | 6fe60a9a5bad | 
| permissions | -rw-r--r-- | 
| 
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1  | 
(* Author: Lukas Bulwahn, TU Muenchen *)  | 
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552563ea3304
adding code and theory for smallvalue generators, but do not setup the interpretation yet
 
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2  | 
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3  | 
header {* A simple counterexample generator performing exhaustive testing *}
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4  | 
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theory Quickcheck_Exhaustive  | 
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imports Quickcheck_Random  | 
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keywords "quickcheck_generator" :: thy_decl  | 
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552563ea3304
adding code and theory for smallvalue generators, but do not setup the interpretation yet
 
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parents:  
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8  | 
begin  | 
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552563ea3304
adding code and theory for smallvalue generators, but do not setup the interpretation yet
 
bulwahn 
parents:  
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9  | 
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subsection {* basic operations for exhaustive generators *}
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definition orelse :: "'a option => 'a option => 'a option" (infixr "orelse" 55)  | 
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where  | 
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[code_unfold]: "x orelse y = (case x of Some x' => Some x' | None => y)"  | 
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adding code and theory for smallvalue generators, but do not setup the interpretation yet
 
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parents:  
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16  | 
subsection {* exhaustive generator type classes *}
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adding code and theory for smallvalue generators, but do not setup the interpretation yet
 
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parents:  
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17  | 
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18  | 
class exhaustive = term_of +  | 
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19  | 
  fixes exhaustive :: "('a \<Rightarrow> (bool * term list) option) \<Rightarrow> natural \<Rightarrow> (bool * term list) option"
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class full_exhaustive = term_of +  | 
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22  | 
  fixes full_exhaustive :: "('a * (unit => term) \<Rightarrow> (bool * term list) option) \<Rightarrow> natural \<Rightarrow> (bool * term list) option"
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adding code and theory for smallvalue generators, but do not setup the interpretation yet
 
bulwahn 
parents:  
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23  | 
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24  | 
instantiation natural :: full_exhaustive  | 
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begin  | 
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26  | 
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function full_exhaustive_natural' :: "(natural * (unit => term) => (bool * term list) option) => natural => natural => (bool * term list) option"  | 
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where "full_exhaustive_natural' f d i =  | 
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(if d < i then None  | 
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else (f (i, %_. Code_Evaluation.term_of i)) orelse (full_exhaustive_natural' f d (i + 1)))"  | 
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by pat_completeness auto  | 
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termination  | 
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by (relation "measure (%(_, d, i). nat_of_natural (d + 1 - i))")  | 
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(auto simp add: less_natural_def)  | 
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definition "full_exhaustive f d = full_exhaustive_natural' f d 0"  | 
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instance ..  | 
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end  | 
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42  | 
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instantiation natural :: exhaustive  | 
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begin  | 
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function exhaustive_natural' :: "(natural => (bool * term list) option) => natural => natural => (bool * term list) option"  | 
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where "exhaustive_natural' f d i =  | 
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(if d < i then None  | 
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else (f i orelse exhaustive_natural' f d (i + 1)))"  | 
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by pat_completeness auto  | 
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termination  | 
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by (relation "measure (%(_, d, i). nat_of_natural (d + 1 - i))")  | 
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parents: 
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(auto simp add: less_natural_def)  | 
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definition "exhaustive f d = exhaustive_natural' f d 0"  | 
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instance ..  | 
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parents: 
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59  | 
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end  | 
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61  | 
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instantiation integer :: exhaustive  | 
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parents: 
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begin  | 
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parents: 
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65  | 
function exhaustive_integer' :: "(integer => (bool * term list) option) => integer => integer => (bool * term list) option"  | 
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parents: 
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where "exhaustive_integer' f d i = (if d < i then None else (f i orelse exhaustive_integer' f d (i + 1)))"  | 
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by pat_completeness auto  | 
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69  | 
termination  | 
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70  | 
by (relation "measure (%(_, d, i). nat_of_integer (d + 1 - i))")  | 
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(auto simp add: less_integer_def nat_of_integer_def)  | 
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definition "exhaustive f d = exhaustive_integer' f (integer_of_natural d) (- (integer_of_natural d))"  | 
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74  | 
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instance ..  | 
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end  | 
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78  | 
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79  | 
instantiation integer :: full_exhaustive  | 
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begin  | 
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function full_exhaustive_integer' :: "(integer * (unit => term) => (bool * term list) option) => integer => integer => (bool * term list) option"  | 
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where "full_exhaustive_integer' f d i = (if d < i then None else (case f (i, %_. Code_Evaluation.term_of i) of Some t => Some t | None => full_exhaustive_integer' f d (i + 1)))"  | 
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by pat_completeness auto  | 
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85  | 
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86  | 
termination  | 
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87  | 
by (relation "measure (%(_, d, i). nat_of_integer (d + 1 - i))")  | 
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(auto simp add: less_integer_def nat_of_integer_def)  | 
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89  | 
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90  | 
definition "full_exhaustive f d = full_exhaustive_integer' f (integer_of_natural d) (- (integer_of_natural d))"  | 
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92  | 
instance ..  | 
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94  | 
end  | 
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95  | 
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instantiation nat :: exhaustive  | 
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begin  | 
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98  | 
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99  | 
definition "exhaustive f d = exhaustive (%x. f (nat_of_natural x)) d"  | 
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101  | 
instance ..  | 
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102  | 
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103  | 
end  | 
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104  | 
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105  | 
instantiation nat :: full_exhaustive  | 
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106  | 
begin  | 
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107  | 
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108  | 
definition "full_exhaustive f d = full_exhaustive (%(x, xt). f (nat_of_natural x, %_. Code_Evaluation.term_of (nat_of_natural x))) d"  | 
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109  | 
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110  | 
instance ..  | 
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111  | 
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112  | 
end  | 
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adding exhaustive tester instances for numeric types: code_numeral, nat, rat and real
 
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113  | 
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114  | 
instantiation int :: exhaustive  | 
| 
40639
 
f1f0e6adca0a
adding function generation to SmallCheck; activating exhaustive search space testing
 
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115  | 
begin  | 
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116  | 
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function exhaustive_int' :: "(int => (bool * term list) option) => int => int => (bool * term list) option"  | 
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where "exhaustive_int' f d i = (if d < i then None else (f i orelse exhaustive_int' f d (i + 1)))"  | 
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by pat_completeness auto  | 
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termination  | 
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by (relation "measure (%(_, d, i). nat (d + 1 - i))") auto  | 
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definition "exhaustive f d = exhaustive_int' f (int_of_integer (integer_of_natural d))  | 
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(- (int_of_integer (integer_of_natural d)))"  | 
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instance ..  | 
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end  | 
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instantiation int :: full_exhaustive  | 
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begin  | 
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function full_exhaustive_int' :: "(int * (unit => term) => (bool * term list) option) => int => int => (bool * term list) option"  | 
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where "full_exhaustive_int' f d i = (if d < i then None else (case f (i, %_. Code_Evaluation.term_of i) of Some t => Some t | None => full_exhaustive_int' f d (i + 1)))"  | 
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by pat_completeness auto  | 
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termination  | 
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by (relation "measure (%(_, d, i). nat (d + 1 - i))") auto  | 
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definition "full_exhaustive f d = full_exhaustive_int' f (int_of_integer (integer_of_natural d))  | 
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(- (int_of_integer (integer_of_natural d)))"  | 
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instance ..  | 
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end  | 
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instantiation prod :: (exhaustive, exhaustive) exhaustive  | 
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begin  | 
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definition  | 
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"exhaustive f d = exhaustive (%x. exhaustive (%y. f ((x, y))) d) d"  | 
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instance ..  | 
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end  | 
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definition (in term_syntax) [code_unfold]: "valtermify_pair x y = Code_Evaluation.valtermify (Pair :: 'a :: typerep => 'b :: typerep => 'a * 'b) {\<cdot>} x {\<cdot>} y"
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instantiation prod :: (full_exhaustive, full_exhaustive) full_exhaustive  | 
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begin  | 
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definition  | 
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"full_exhaustive f d = full_exhaustive (%x. full_exhaustive (%y. f (valtermify_pair x y)) d) d"  | 
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instance ..  | 
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end  | 
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instantiation set :: (exhaustive) exhaustive  | 
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begin  | 
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fun exhaustive_set  | 
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where  | 
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  "exhaustive_set f i = (if i = 0 then None else (f {} orelse exhaustive_set (%A. f A orelse exhaustive (%x. if x \<in> A then None else f (insert x A)) (i - 1)) (i - 1)))"
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instance ..  | 
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end  | 
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instantiation set :: (full_exhaustive) full_exhaustive  | 
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begin  | 
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fun full_exhaustive_set  | 
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where  | 
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"full_exhaustive_set f i = (if i = 0 then None else (f valterm_emptyset orelse full_exhaustive_set (%A. f A orelse Quickcheck_Exhaustive.full_exhaustive (%x. if fst x \<in> fst A then None else f (valtermify_insert x A)) (i - 1)) (i - 1)))"  | 
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instance ..  | 
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end  | 
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instantiation "fun" :: ("{equal, exhaustive}", exhaustive) exhaustive
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begin  | 
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195  | 
fun exhaustive_fun' :: "(('a => 'b) => (bool * term list) option) => natural => natural => (bool * term list) option"
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"exhaustive_fun' f i d = (exhaustive (%b. f (%_. b)) d)  | 
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orelse (if i > 1 then  | 
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exhaustive_fun' (%g. exhaustive (%a. exhaustive (%b.  | 
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f (g(a := b))) d) d) (i - 1) d else None)"  | 
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definition exhaustive_fun :: "(('a => 'b) => (bool * term list) option) => natural => (bool * term list) option"
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203  | 
where  | 
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"exhaustive_fun f d = exhaustive_fun' f d d"  | 
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instance ..  | 
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end  | 
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209  | 
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210  | 
definition [code_unfold]: "valtermify_absdummy = (%(v, t). (%_::'a. v, %u::unit. Code_Evaluation.Abs (STR ''x'') (Typerep.typerep TYPE('a::typerep)) (t ())))"
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definition (in term_syntax) [code_unfold]: "valtermify_fun_upd g a b = Code_Evaluation.valtermify (fun_upd :: ('a :: typerep => 'b :: typerep) => 'a => 'b => 'a => 'b) {\<cdot>} g {\<cdot>} a {\<cdot>} b"
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instantiation "fun" :: ("{equal, full_exhaustive}", full_exhaustive) full_exhaustive
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215  | 
begin  | 
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217  | 
fun full_exhaustive_fun' :: "(('a => 'b) * (unit => term) => (bool * term list) option) => natural => natural => (bool * term list) option"
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where  | 
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"full_exhaustive_fun' f i d = (full_exhaustive (%v. f (valtermify_absdummy v)) d)  | 
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orelse (if i > 1 then  | 
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full_exhaustive_fun' (%g. full_exhaustive (%a. full_exhaustive (%b.  | 
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f (valtermify_fun_upd g a b)) d) d) (i - 1) d else None)"  | 
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224  | 
definition full_exhaustive_fun :: "(('a => 'b) * (unit => term) => (bool * term list) option) => natural => (bool * term list) option"
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225  | 
where  | 
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"full_exhaustive_fun f d = full_exhaustive_fun' f d d"  | 
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instance ..  | 
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end  | 
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subsubsection {* A smarter enumeration scheme for functions over finite datatypes *}
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234  | 
class check_all = enum + term_of +  | 
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236  | 
fixes enum_term_of :: "'a itself \<Rightarrow> unit \<Rightarrow> term list"  | 
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237  | 
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238  | 
fun check_all_n_lists :: "(('a :: check_all) list * (unit \<Rightarrow> term list) \<Rightarrow> (bool * term list) option) \<Rightarrow> natural \<Rightarrow> (bool * term list) option"
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where  | 
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240  | 
"check_all_n_lists f n =  | 
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241  | 
(if n = 0 then f ([], (%_. [])) else check_all (%(x, xt). check_all_n_lists (%(xs, xst). f ((x # xs), (%_. (xt () # xst ())))) (n - 1)))"  | 
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243  | 
definition (in term_syntax) [code_unfold]: "termify_fun_upd g a b = (Code_Evaluation.termify (fun_upd :: ('a :: typerep => 'b :: typerep) => 'a => 'b => 'a => 'b) <\<cdot>> g <\<cdot>> a <\<cdot>> b)"
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244  | 
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definition mk_map_term :: " (unit \<Rightarrow> typerep) \<Rightarrow> (unit \<Rightarrow> typerep) \<Rightarrow> (unit \<Rightarrow> term list) \<Rightarrow> (unit \<Rightarrow> term list) \<Rightarrow> unit \<Rightarrow> term"  | 
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where  | 
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247  | 
"mk_map_term T1 T2 domm rng =  | 
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(%_. let T1 = T1 ();  | 
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T2 = T2 ();  | 
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update_term = (%g (a, b).  | 
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251  | 
Code_Evaluation.App (Code_Evaluation.App (Code_Evaluation.App  | 
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252  | 
(Code_Evaluation.Const (STR ''Fun.fun_upd'')  | 
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253  | 
(Typerep.Typerep (STR ''fun'') [Typerep.Typerep (STR ''fun'') [T1, T2],  | 
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Typerep.Typerep (STR ''fun'') [T1,  | 
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255  | 
Typerep.Typerep (STR ''fun'') [T2, Typerep.Typerep (STR ''fun'') [T1, T2]]]]))  | 
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256  | 
g) a) b)  | 
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in  | 
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258  | 
List.foldl update_term (Code_Evaluation.Abs (STR ''x'') T1 (Code_Evaluation.Const (STR ''HOL.undefined'') T2)) (zip (domm ()) (rng ())))"  | 
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259  | 
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260  | 
instantiation "fun" :: ("{equal, check_all}", check_all) check_all
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261  | 
begin  | 
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262  | 
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263  | 
definition  | 
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264  | 
"check_all f =  | 
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265  | 
(let  | 
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266  | 
      mk_term = mk_map_term (%_. Typerep.typerep (TYPE('a))) (%_. Typerep.typerep (TYPE('b))) (enum_term_of (TYPE('a)));
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enum = (Enum.enum :: 'a list)  | 
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in check_all_n_lists (\<lambda>(ys, yst). f (the o map_of (zip enum ys), mk_term yst)) (natural_of_nat (length enum)))"  | 
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269  | 
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270  | 
definition enum_term_of_fun :: "('a => 'b) itself => unit => term list"
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271  | 
where  | 
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272  | 
"enum_term_of_fun = (%_ _. let  | 
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    enum_term_of_a = enum_term_of (TYPE('a));
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    mk_term = mk_map_term (%_. Typerep.typerep (TYPE('a))) (%_. Typerep.typerep (TYPE('b))) enum_term_of_a
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  in map (%ys. mk_term (%_. ys) ()) (List.n_lists (length (enum_term_of_a ())) (enum_term_of (TYPE('b)) ())))"
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276  | 
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instance ..  | 
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278  | 
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end  | 
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280  | 
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fun (in term_syntax) check_all_subsets :: "(('a :: typerep) set * (unit => term) => (bool * term list) option) => ('a * (unit => term)) list => (bool * term list) option"
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282  | 
where  | 
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283  | 
"check_all_subsets f [] = f valterm_emptyset"  | 
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284  | 
| "check_all_subsets f (x # xs) = check_all_subsets (%s. case f s of Some ts => Some ts | None => f (valtermify_insert x s)) xs"  | 
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definition (in term_syntax) [code_unfold]: "term_emptyset = Code_Evaluation.termify ({} :: ('a :: typerep) set)"
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definition (in term_syntax) [code_unfold]: "termify_insert x s = Code_Evaluation.termify (insert :: ('a::typerep) => 'a set => 'a set)  <\<cdot>> x <\<cdot>> s"
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definition (in term_syntax) setify :: "('a::typerep) itself => term list => term"
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291  | 
where  | 
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292  | 
"setify T ts = foldr (termify_insert T) ts (term_emptyset T)"  | 
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293  | 
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instantiation set :: (check_all) check_all  | 
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begin  | 
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definition  | 
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"check_all_set f =  | 
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     check_all_subsets f (zip (Enum.enum :: 'a list) (map (%a. %u :: unit. a) (Quickcheck_Exhaustive.enum_term_of (TYPE ('a)) ())))"
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300  | 
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definition enum_term_of_set :: "'a set itself => unit => term list"  | 
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302  | 
where  | 
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  "enum_term_of_set _ _ = map (setify (TYPE('a))) (sublists (Quickcheck_Exhaustive.enum_term_of (TYPE('a)) ()))"
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instance ..  | 
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end  | 
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308  | 
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309  | 
instantiation unit :: check_all  | 
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310  | 
begin  | 
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311  | 
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312  | 
definition  | 
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313  | 
"check_all f = f (Code_Evaluation.valtermify ())"  | 
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314  | 
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315  | 
definition enum_term_of_unit :: "unit itself => unit => term list"  | 
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316  | 
where  | 
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317  | 
"enum_term_of_unit = (%_ _. [Code_Evaluation.term_of ()])"  | 
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318  | 
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319  | 
instance ..  | 
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320  | 
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321  | 
end  | 
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322  | 
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323  | 
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324  | 
instantiation bool :: check_all  | 
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325  | 
begin  | 
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326  | 
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327  | 
definition  | 
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328  | 
"check_all f = (case f (Code_Evaluation.valtermify False) of Some x' \<Rightarrow> Some x' | None \<Rightarrow> f (Code_Evaluation.valtermify True))"  | 
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329  | 
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330  | 
definition enum_term_of_bool :: "bool itself => unit => term list"  | 
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331  | 
where  | 
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332  | 
"enum_term_of_bool = (%_ _. map Code_Evaluation.term_of (Enum.enum :: bool list))"  | 
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333  | 
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334  | 
instance ..  | 
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335  | 
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336  | 
end  | 
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337  | 
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338  | 
definition (in term_syntax) [code_unfold]: "termify_pair x y = Code_Evaluation.termify (Pair :: 'a :: typerep => 'b :: typerep => 'a * 'b) <\<cdot>> x <\<cdot>> y"  | 
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339  | 
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340  | 
instantiation prod :: (check_all, check_all) check_all  | 
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341  | 
begin  | 
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342  | 
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343  | 
definition  | 
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344  | 
"check_all f = check_all (%x. check_all (%y. f (valtermify_pair x y)))"  | 
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345  | 
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346  | 
definition enum_term_of_prod :: "('a * 'b) itself => unit => term list"
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347  | 
where  | 
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348  | 
  "enum_term_of_prod = (%_ _. map (%(x, y). termify_pair TYPE('a) TYPE('b) x y)
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349  | 
     (List.product (enum_term_of (TYPE('a)) ()) (enum_term_of (TYPE('b)) ())))"
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350  | 
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351  | 
instance ..  | 
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352  | 
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353  | 
end  | 
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354  | 
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355  | 
definition (in term_syntax) [code_unfold]: "valtermify_Inl x = Code_Evaluation.valtermify (Inl :: 'a :: typerep => 'a + 'b :: typerep) {\<cdot>} x"
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356  | 
definition (in term_syntax) [code_unfold]: "valtermify_Inr x = Code_Evaluation.valtermify (Inr :: 'b :: typerep => 'a ::typerep + 'b) {\<cdot>} x"
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357  | 
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358  | 
instantiation sum :: (check_all, check_all) check_all  | 
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359  | 
begin  | 
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360  | 
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361  | 
definition  | 
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362  | 
"check_all f = check_all (%a. f (valtermify_Inl a)) orelse check_all (%b. f (valtermify_Inr b))"  | 
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363  | 
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364  | 
definition enum_term_of_sum :: "('a + 'b) itself => unit => term list"
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365  | 
where  | 
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366  | 
"enum_term_of_sum = (%_ _.  | 
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367  | 
let  | 
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368  | 
       T1 = (Typerep.typerep (TYPE('a)));
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369  | 
       T2 = (Typerep.typerep (TYPE('b)))
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370  | 
in  | 
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371  | 
map (Code_Evaluation.App (Code_Evaluation.Const (STR ''Sum_Type.Inl'')  | 
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372  | 
(Typerep.Typerep (STR ''fun'') [T1, Typerep.Typerep (STR ''Sum_Type.sum'') [T1, T2]])))  | 
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373  | 
             (enum_term_of (TYPE('a)) ()) @
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374  | 
map (Code_Evaluation.App (Code_Evaluation.Const (STR ''Sum_Type.Inr'')  | 
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375  | 
(Typerep.Typerep (STR ''fun'') [T2, Typerep.Typerep (STR ''Sum_Type.sum'') [T1, T2]])))  | 
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376  | 
             (enum_term_of (TYPE('b)) ()))"
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377  | 
|
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378  | 
instance ..  | 
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379  | 
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380  | 
end  | 
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381  | 
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382  | 
instantiation nibble :: check_all  | 
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383  | 
begin  | 
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384  | 
|
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385  | 
definition  | 
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386  | 
"check_all f =  | 
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387  | 
f (Code_Evaluation.valtermify Nibble0) orelse  | 
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388  | 
f (Code_Evaluation.valtermify Nibble1) orelse  | 
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389  | 
f (Code_Evaluation.valtermify Nibble2) orelse  | 
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390  | 
f (Code_Evaluation.valtermify Nibble3) orelse  | 
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391  | 
f (Code_Evaluation.valtermify Nibble4) orelse  | 
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392  | 
f (Code_Evaluation.valtermify Nibble5) orelse  | 
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393  | 
f (Code_Evaluation.valtermify Nibble6) orelse  | 
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394  | 
f (Code_Evaluation.valtermify Nibble7) orelse  | 
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395  | 
f (Code_Evaluation.valtermify Nibble8) orelse  | 
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396  | 
f (Code_Evaluation.valtermify Nibble9) orelse  | 
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397  | 
f (Code_Evaluation.valtermify NibbleA) orelse  | 
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398  | 
f (Code_Evaluation.valtermify NibbleB) orelse  | 
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399  | 
f (Code_Evaluation.valtermify NibbleC) orelse  | 
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400  | 
f (Code_Evaluation.valtermify NibbleD) orelse  | 
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401  | 
f (Code_Evaluation.valtermify NibbleE) orelse  | 
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402  | 
f (Code_Evaluation.valtermify NibbleF)"  | 
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403  | 
|
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404  | 
definition enum_term_of_nibble :: "nibble itself => unit => term list"  | 
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405  | 
where  | 
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406  | 
"enum_term_of_nibble = (%_ _. map Code_Evaluation.term_of (Enum.enum :: nibble list))"  | 
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407  | 
|
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408  | 
instance ..  | 
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409  | 
|
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410  | 
end  | 
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411  | 
|
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412  | 
|
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413  | 
instantiation char :: check_all  | 
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414  | 
begin  | 
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415  | 
|
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416  | 
definition  | 
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417  | 
"check_all f = check_all (%(x, t1). check_all (%(y, t2). f (Char x y, %_. Code_Evaluation.App (Code_Evaluation.App (Code_Evaluation.term_of Char) (t1 ())) (t2 ()))))"  | 
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418  | 
|
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419  | 
definition enum_term_of_char :: "char itself => unit => term list"  | 
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420  | 
where  | 
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421  | 
"enum_term_of_char = (%_ _. map Code_Evaluation.term_of (Enum.enum :: char list))"  | 
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422  | 
|
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423  | 
instance ..  | 
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424  | 
|
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425  | 
end  | 
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426  | 
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427  | 
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428  | 
instantiation option :: (check_all) check_all  | 
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429  | 
begin  | 
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430  | 
|
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431  | 
definition  | 
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432  | 
"check_all f = f (Code_Evaluation.valtermify (None :: 'a option)) orelse check_all (%(x, t). f (Some x, %_. Code_Evaluation.App  | 
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433  | 
(Code_Evaluation.Const (STR ''Option.option.Some'')  | 
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434  | 
      (Typerep.Typerep (STR ''fun'') [Typerep.typerep TYPE('a),  Typerep.Typerep (STR ''Option.option'') [Typerep.typerep TYPE('a)]])) (t ())))"
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435  | 
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436  | 
definition enum_term_of_option :: "'a option itself => unit => term list"  | 
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437  | 
where  | 
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438  | 
"enum_term_of_option = (% _ _. (Code_Evaluation.term_of (None :: 'a option)) # (map (Code_Evaluation.App (Code_Evaluation.Const (STR ''Option.option.Some'')  | 
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439  | 
      (Typerep.Typerep (STR ''fun'') [Typerep.typerep TYPE('a),  Typerep.Typerep (STR ''Option.option'') [Typerep.typerep TYPE('a)]]))) (enum_term_of (TYPE('a)) ())))"
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440  | 
|
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441  | 
instance ..  | 
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442  | 
|
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443  | 
end  | 
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444  | 
|
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445  | 
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446  | 
instantiation Enum.finite_1 :: check_all  | 
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447  | 
begin  | 
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448  | 
|
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449  | 
definition  | 
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450  | 
"check_all f = f (Code_Evaluation.valtermify Enum.finite_1.a\<^sub>1)"  | 
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451  | 
|
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452  | 
definition enum_term_of_finite_1 :: "Enum.finite_1 itself => unit => term list"  | 
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453  | 
where  | 
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454  | 
"enum_term_of_finite_1 = (%_ _. [Code_Evaluation.term_of Enum.finite_1.a\<^sub>1])"  | 
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455  | 
|
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456  | 
instance ..  | 
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457  | 
|
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458  | 
end  | 
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459  | 
|
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460  | 
instantiation Enum.finite_2 :: check_all  | 
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461  | 
begin  | 
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462  | 
|
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463  | 
definition  | 
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464  | 
"check_all f = (f (Code_Evaluation.valtermify Enum.finite_2.a\<^sub>1)  | 
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465  | 
orelse f (Code_Evaluation.valtermify Enum.finite_2.a\<^sub>2))"  | 
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466  | 
|
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467  | 
definition enum_term_of_finite_2 :: "Enum.finite_2 itself => unit => term list"  | 
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468  | 
where  | 
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469  | 
"enum_term_of_finite_2 = (%_ _. map Code_Evaluation.term_of (Enum.enum :: Enum.finite_2 list))"  | 
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470  | 
|
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471  | 
instance ..  | 
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472  | 
|
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473  | 
end  | 
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474  | 
|
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475  | 
instantiation Enum.finite_3 :: check_all  | 
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476  | 
begin  | 
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477  | 
|
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478  | 
definition  | 
| 
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479  | 
"check_all f = (f (Code_Evaluation.valtermify Enum.finite_3.a\<^sub>1)  | 
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480  | 
orelse f (Code_Evaluation.valtermify Enum.finite_3.a\<^sub>2)  | 
| 
 
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481  | 
orelse f (Code_Evaluation.valtermify Enum.finite_3.a\<^sub>3))"  | 
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482  | 
|
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483  | 
definition enum_term_of_finite_3 :: "Enum.finite_3 itself => unit => term list"  | 
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484  | 
where  | 
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485  | 
"enum_term_of_finite_3 = (%_ _. map Code_Evaluation.term_of (Enum.enum :: Enum.finite_3 list))"  | 
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486  | 
|
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487  | 
instance ..  | 
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488  | 
|
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489  | 
end  | 
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490  | 
|
| 
46417
 
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491  | 
instantiation Enum.finite_4 :: check_all  | 
| 
 
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492  | 
begin  | 
| 
 
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493  | 
|
| 
 
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494  | 
definition  | 
| 
53015
 
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495  | 
"check_all f = (f (Code_Evaluation.valtermify Enum.finite_4.a\<^sub>1)  | 
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496  | 
orelse f (Code_Evaluation.valtermify Enum.finite_4.a\<^sub>2)  | 
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497  | 
orelse f (Code_Evaluation.valtermify Enum.finite_4.a\<^sub>3)  | 
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498  | 
orelse f (Code_Evaluation.valtermify Enum.finite_4.a\<^sub>4))"  | 
| 
46417
 
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499  | 
|
| 
 
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500  | 
definition enum_term_of_finite_4 :: "Enum.finite_4 itself => unit => term list"  | 
| 
 
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501  | 
where  | 
| 
 
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502  | 
"enum_term_of_finite_4 = (%_ _. map Code_Evaluation.term_of (Enum.enum :: Enum.finite_4 list))"  | 
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503  | 
|
| 
 
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504  | 
instance ..  | 
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505  | 
|
| 
 
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506  | 
end  | 
| 
 
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507  | 
|
| 
42195
 
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 | 
508  | 
subsection {* Bounded universal quantifiers *}
 | 
| 
41085
 
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509  | 
|
| 
42195
 
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510  | 
class bounded_forall =  | 
| 
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511  | 
  fixes bounded_forall :: "('a \<Rightarrow> bool) \<Rightarrow> natural \<Rightarrow> bool"
 | 
| 
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512  | 
|
| 
42305
 
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513  | 
subsection {* Fast exhaustive combinators *}
 | 
| 
 
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514  | 
|
| 
 
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515  | 
class fast_exhaustive = term_of +  | 
| 
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516  | 
  fixes fast_exhaustive :: "('a \<Rightarrow> unit) \<Rightarrow> natural \<Rightarrow> unit"
 | 
| 
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517  | 
|
| 
45818
 
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 | 
518  | 
axiomatization throw_Counterexample :: "term list => unit"  | 
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519  | 
axiomatization catch_Counterexample :: "unit => term list option"  | 
| 
42305
 
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 | 
520  | 
|
| 
52435
 
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521  | 
code_printing  | 
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 | 
522  | 
constant throw_Counterexample \<rightharpoonup>  | 
| 
 
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 | 
523  | 
(Quickcheck) "raise (Exhaustive'_Generators.Counterexample _)"  | 
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 | 
524  | 
| constant catch_Counterexample \<rightharpoonup>  | 
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 | 
525  | 
(Quickcheck) "(((_); NONE) handle Exhaustive'_Generators.Counterexample ts => SOME ts)"  | 
| 
42305
 
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 | 
526  | 
|
| 45450 | 527  | 
subsection {* Continuation passing style functions as plus monad *}
 | 
528  | 
||
529  | 
type_synonym 'a cps = "('a => term list option) => term list option"
 | 
|
530  | 
||
531  | 
definition cps_empty :: "'a cps"  | 
|
532  | 
where  | 
|
533  | 
"cps_empty = (%cont. None)"  | 
|
534  | 
||
535  | 
definition cps_single :: "'a => 'a cps"  | 
|
536  | 
where  | 
|
537  | 
"cps_single v = (%cont. cont v)"  | 
|
538  | 
||
539  | 
definition cps_bind :: "'a cps => ('a => 'b cps) => 'b cps" 
 | 
|
540  | 
where  | 
|
541  | 
"cps_bind m f = (%cont. m (%a. (f a) cont))"  | 
|
542  | 
||
543  | 
definition cps_plus :: "'a cps => 'a cps => 'a cps"  | 
|
544  | 
where  | 
|
545  | 
"cps_plus a b = (%c. case a c of None => b c | Some x => Some x)"  | 
|
546  | 
||
547  | 
definition cps_if :: "bool => unit cps"  | 
|
548  | 
where  | 
|
549  | 
"cps_if b = (if b then cps_single () else cps_empty)"  | 
|
550  | 
||
551  | 
definition cps_not :: "unit cps => unit cps"  | 
|
552  | 
where  | 
|
553  | 
"cps_not n = (%c. case n (%u. Some []) of None => c () | Some _ => None)"  | 
|
554  | 
||
| 
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555  | 
type_synonym 'a pos_bound_cps = "('a => (bool * term list) option) => natural => (bool * term list) option"
 | 
| 45450 | 556  | 
|
557  | 
definition pos_bound_cps_empty :: "'a pos_bound_cps"  | 
|
558  | 
where  | 
|
559  | 
"pos_bound_cps_empty = (%cont i. None)"  | 
|
560  | 
||
561  | 
definition pos_bound_cps_single :: "'a => 'a pos_bound_cps"  | 
|
562  | 
where  | 
|
563  | 
"pos_bound_cps_single v = (%cont i. cont v)"  | 
|
564  | 
||
565  | 
definition pos_bound_cps_bind :: "'a pos_bound_cps => ('a => 'b pos_bound_cps) => 'b pos_bound_cps" 
 | 
|
566  | 
where  | 
|
567  | 
"pos_bound_cps_bind m f = (%cont i. if i = 0 then None else (m (%a. (f a) cont i) (i - 1)))"  | 
|
568  | 
||
569  | 
definition pos_bound_cps_plus :: "'a pos_bound_cps => 'a pos_bound_cps => 'a pos_bound_cps"  | 
|
570  | 
where  | 
|
571  | 
"pos_bound_cps_plus a b = (%c i. case a c i of None => b c i | Some x => Some x)"  | 
|
572  | 
||
573  | 
definition pos_bound_cps_if :: "bool => unit pos_bound_cps"  | 
|
574  | 
where  | 
|
575  | 
"pos_bound_cps_if b = (if b then pos_bound_cps_single () else pos_bound_cps_empty)"  | 
|
576  | 
||
577  | 
datatype 'a unknown = Unknown | Known 'a  | 
|
578  | 
datatype 'a three_valued = Unknown_value | Value 'a | No_value  | 
|
579  | 
||
| 
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 | 
580  | 
type_synonym 'a neg_bound_cps = "('a unknown => term list three_valued) => natural => term list three_valued"
 | 
| 45450 | 581  | 
|
582  | 
definition neg_bound_cps_empty :: "'a neg_bound_cps"  | 
|
583  | 
where  | 
|
584  | 
"neg_bound_cps_empty = (%cont i. No_value)"  | 
|
585  | 
||
586  | 
definition neg_bound_cps_single :: "'a => 'a neg_bound_cps"  | 
|
587  | 
where  | 
|
588  | 
"neg_bound_cps_single v = (%cont i. cont (Known v))"  | 
|
589  | 
||
590  | 
definition neg_bound_cps_bind :: "'a neg_bound_cps => ('a => 'b neg_bound_cps) => 'b neg_bound_cps" 
 | 
|
591  | 
where  | 
|
592  | 
"neg_bound_cps_bind m f = (%cont i. if i = 0 then cont Unknown else m (%a. case a of Unknown => cont Unknown | Known a' => f a' cont i) (i - 1))"  | 
|
593  | 
||
594  | 
definition neg_bound_cps_plus :: "'a neg_bound_cps => 'a neg_bound_cps => 'a neg_bound_cps"  | 
|
595  | 
where  | 
|
596  | 
"neg_bound_cps_plus a b = (%c i. case a c i of No_value => b c i | Value x => Value x | Unknown_value => (case b c i of No_value => Unknown_value | Value x => Value x | Unknown_value => Unknown_value))"  | 
|
597  | 
||
598  | 
definition neg_bound_cps_if :: "bool => unit neg_bound_cps"  | 
|
599  | 
where  | 
|
600  | 
"neg_bound_cps_if b = (if b then neg_bound_cps_single () else neg_bound_cps_empty)"  | 
|
601  | 
||
602  | 
definition neg_bound_cps_not :: "unit pos_bound_cps => unit neg_bound_cps"  | 
|
603  | 
where  | 
|
| 
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 | 
604  | 
"neg_bound_cps_not n = (%c i. case n (%u. Some (True, [])) i of None => c (Known ()) | Some _ => No_value)"  | 
| 45450 | 605  | 
|
606  | 
definition pos_bound_cps_not :: "unit neg_bound_cps => unit pos_bound_cps"  | 
|
607  | 
where  | 
|
608  | 
"pos_bound_cps_not n = (%c i. case n (%u. Value []) i of No_value => c () | Value _ => None | Unknown_value => None)"  | 
|
609  | 
||
| 45925 | 610  | 
subsection {* Defining generators for any first-order data type *}
 | 
| 
40420
 
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 | 
611  | 
|
| 
45697
 
3b7c35a08723
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 | 
612  | 
axiomatization unknown :: 'a  | 
| 
 
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 | 
613  | 
|
| 
 
3b7c35a08723
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changeset
 | 
614  | 
notation (output) unknown  ("?")
 | 
| 
51143
 
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 | 
615  | 
|
| 48891 | 616  | 
ML_file "Tools/Quickcheck/exhaustive_generators.ML"  | 
| 
40420
 
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 | 
617  | 
|
| 41918 | 618  | 
setup {* Exhaustive_Generators.setup *}
 | 
| 
40420
 
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 | 
619  | 
|
| 
43882
 
05d5696f177f
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changeset
 | 
620  | 
declare [[quickcheck_batch_tester = exhaustive]]  | 
| 
40915
 
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declaring quickcheck testers as default after their setup
 
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 | 
621  | 
|
| 45925 | 622  | 
subsection {* Defining generators for abstract types *}
 | 
623  | 
||
| 48891 | 624  | 
ML_file "Tools/Quickcheck/abstract_generators.ML"  | 
| 45925 | 625  | 
|
| 47203 | 626  | 
hide_fact (open) orelse_def  | 
| 
41105
 
a76ee71c3313
adding check_all instances for a few more finite types in smallcheck
 
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changeset
 | 
627  | 
no_notation orelse (infixr "orelse" 55)  | 
| 
45818
 
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changeset
 | 
628  | 
|
| 
 
53a697f5454a
hiding constants and facts in the Quickcheck_Exhaustive and Quickcheck_Narrowing theory;
 
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changeset
 | 
629  | 
hide_fact  | 
| 
51143
 
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 | 
630  | 
exhaustive_int'_def  | 
| 
 
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 | 
631  | 
exhaustive_integer'_def  | 
| 
 
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 | 
632  | 
exhaustive_natural'_def  | 
| 
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633  | 
|
| 
46307
 
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 | 
634  | 
hide_const valtermify_absdummy valtermify_fun_upd valterm_emptyset valtermify_insert valtermify_pair  | 
| 
 
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 | 
635  | 
valtermify_Inl valtermify_Inr  | 
| 
 
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 | 
636  | 
termify_fun_upd term_emptyset termify_insert termify_pair setify  | 
| 46305 | 637  | 
|
| 
45818
 
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changeset
 | 
638  | 
hide_const (open)  | 
| 
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 | 
639  | 
exhaustive full_exhaustive  | 
| 
 
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 | 
640  | 
exhaustive_int' full_exhaustive_int'  | 
| 
 
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 | 
641  | 
exhaustive_integer' full_exhaustive_integer'  | 
| 
 
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 | 
642  | 
exhaustive_natural' full_exhaustive_natural'  | 
| 
45818
 
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 | 
643  | 
throw_Counterexample catch_Counterexample  | 
| 
 
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hiding constants and facts in the Quickcheck_Exhaustive and Quickcheck_Narrowing theory;
 
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changeset
 | 
644  | 
check_all enum_term_of  | 
| 46305 | 645  | 
orelse unknown mk_map_term check_all_n_lists check_all_subsets  | 
| 
40420
 
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 | 
646  | 
|
| 45450 | 647  | 
hide_type (open) cps pos_bound_cps neg_bound_cps unknown three_valued  | 
648  | 
hide_const (open) cps_empty cps_single cps_bind cps_plus cps_if cps_not  | 
|
649  | 
pos_bound_cps_empty pos_bound_cps_single pos_bound_cps_bind pos_bound_cps_plus pos_bound_cps_if pos_bound_cps_not  | 
|
650  | 
neg_bound_cps_empty neg_bound_cps_single neg_bound_cps_bind neg_bound_cps_plus neg_bound_cps_if neg_bound_cps_not  | 
|
651  | 
Unknown Known Unknown_value Value No_value  | 
|
652  | 
||
653  | 
end  |