| author | hoelzl | 
| Tue, 19 Jul 2011 14:36:12 +0200 | |
| changeset 43920 | cedb5cb948fd | 
| parent 43890 | eba9c3b1f84a | 
| child 43909 | 7feb72f7bc3e | 
| permissions | -rw-r--r-- | 
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(* Title: HOL/ex/Quickcheck_Examples.thy  | 
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Author: Stefan Berghofer, Lukas Bulwahn  | 
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Copyright 2004 - 2010 TU Muenchen  | 
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*)  | 
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header {* Examples for the 'quickcheck' command *}
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theory Quickcheck_Examples  | 
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imports Complex_Main  | 
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begin  | 
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text {*
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The 'quickcheck' command allows to find counterexamples by evaluating  | 
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formulae.  | 
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Currently, there are two different exploration schemes:  | 
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- random testing: this is incomplete, but explores the search space faster.  | 
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- exhaustive testing: this is complete, but increasing the depth leads to  | 
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exponentially many assignments.  | 
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quickcheck can handle quantifiers on finite universes.  | 
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*}  | 
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declare [[quickcheck_timeout = 3600]]  | 
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subsection {* Lists *}
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theorem "map g (map f xs) = map (g o f) xs"  | 
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quickcheck[random, expect = no_counterexample]  | 
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quickcheck[exhaustive, size = 3, expect = no_counterexample]  | 
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oops  | 
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theorem "map g (map f xs) = map (f o g) xs"  | 
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quickcheck[random, expect = counterexample]  | 
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quickcheck[exhaustive, expect = counterexample]  | 
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oops  | 
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theorem "rev (xs @ ys) = rev ys @ rev xs"  | 
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quickcheck[random, expect = no_counterexample]  | 
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quickcheck[exhaustive, expect = no_counterexample]  | 
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quickcheck[exhaustive, size = 1000, timeout = 0.1]  | 
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oops  | 
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theorem "rev (xs @ ys) = rev xs @ rev ys"  | 
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quickcheck[random, expect = counterexample]  | 
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quickcheck[exhaustive, expect = counterexample]  | 
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oops  | 
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theorem "rev (rev xs) = xs"  | 
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quickcheck[random, expect = no_counterexample]  | 
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quickcheck[exhaustive, expect = no_counterexample]  | 
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oops  | 
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theorem "rev xs = xs"  | 
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quickcheck[tester = random, finite_types = true, report = false, expect = counterexample]  | 
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quickcheck[tester = random, finite_types = false, report = false, expect = counterexample]  | 
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quickcheck[tester = random, finite_types = true, report = true, expect = counterexample]  | 
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quickcheck[tester = random, finite_types = false, report = true, expect = counterexample]  | 
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quickcheck[tester = exhaustive, finite_types = true, expect = counterexample]  | 
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quickcheck[tester = exhaustive, finite_types = false, expect = counterexample]  | 
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oops  | 
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text {* An example involving functions inside other data structures *}
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primrec app :: "('a \<Rightarrow> 'a) list \<Rightarrow> 'a \<Rightarrow> 'a" where
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"app [] x = x"  | 
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| "app (f # fs) x = app fs (f x)"  | 
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lemma "app (fs @ gs) x = app gs (app fs x)"  | 
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quickcheck[random, expect = no_counterexample]  | 
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quickcheck[exhaustive, size = 4, expect = no_counterexample]  | 
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by (induct fs arbitrary: x) simp_all  | 
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lemma "app (fs @ gs) x = app fs (app gs x)"  | 
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quickcheck[random, expect = counterexample]  | 
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quickcheck[exhaustive, expect = counterexample]  | 
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oops  | 
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primrec occurs :: "'a \<Rightarrow> 'a list \<Rightarrow> nat" where  | 
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"occurs a [] = 0"  | 
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| "occurs a (x#xs) = (if (x=a) then Suc(occurs a xs) else occurs a xs)"  | 
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primrec del1 :: "'a \<Rightarrow> 'a list \<Rightarrow> 'a list" where  | 
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"del1 a [] = []"  | 
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| "del1 a (x#xs) = (if (x=a) then xs else (x#del1 a xs))"  | 
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text {* A lemma, you'd think to be true from our experience with delAll *}
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lemma "Suc (occurs a (del1 a xs)) = occurs a xs"  | 
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  -- {* Wrong. Precondition needed.*}
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quickcheck[random, expect = counterexample]  | 
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quickcheck[exhaustive, expect = counterexample]  | 
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oops  | 
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lemma "xs ~= [] \<longrightarrow> Suc (occurs a (del1 a xs)) = occurs a xs"  | 
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quickcheck[random, expect = counterexample]  | 
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quickcheck[exhaustive, expect = counterexample]  | 
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    -- {* Also wrong.*}
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oops  | 
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lemma "0 < occurs a xs \<longrightarrow> Suc (occurs a (del1 a xs)) = occurs a xs"  | 
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quickcheck[random, expect = no_counterexample]  | 
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quickcheck[exhaustive, expect = no_counterexample]  | 
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by (induct xs) auto  | 
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primrec replace :: "'a \<Rightarrow> 'a \<Rightarrow> 'a list \<Rightarrow> 'a list" where  | 
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"replace a b [] = []"  | 
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| "replace a b (x#xs) = (if (x=a) then (b#(replace a b xs))  | 
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else (x#(replace a b xs)))"  | 
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lemma "occurs a xs = occurs b (replace a b xs)"  | 
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quickcheck[random, expect = counterexample]  | 
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quickcheck[exhaustive, expect = counterexample]  | 
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  -- {* Wrong. Precondition needed.*}
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oops  | 
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lemma "occurs b xs = 0 \<or> a=b \<longrightarrow> occurs a xs = occurs b (replace a b xs)"  | 
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quickcheck[random, expect = no_counterexample]  | 
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quickcheck[exhaustive, expect = no_counterexample]  | 
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by (induct xs) simp_all  | 
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subsection {* Trees *}
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datatype 'a tree = Twig | Leaf 'a | Branch "'a tree" "'a tree"  | 
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primrec leaves :: "'a tree \<Rightarrow> 'a list" where  | 
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"leaves Twig = []"  | 
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| "leaves (Leaf a) = [a]"  | 
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| "leaves (Branch l r) = (leaves l) @ (leaves r)"  | 
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primrec plant :: "'a list \<Rightarrow> 'a tree" where  | 
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"plant [] = Twig "  | 
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| "plant (x#xs) = Branch (Leaf x) (plant xs)"  | 
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primrec mirror :: "'a tree \<Rightarrow> 'a tree" where  | 
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"mirror (Twig) = Twig "  | 
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| "mirror (Leaf a) = Leaf a "  | 
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| "mirror (Branch l r) = Branch (mirror r) (mirror l)"  | 
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theorem "plant (rev (leaves xt)) = mirror xt"  | 
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quickcheck[random, expect = counterexample]  | 
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quickcheck[exhaustive, expect = counterexample]  | 
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    --{* Wrong! *} 
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oops  | 
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theorem "plant((leaves xt) @ (leaves yt)) = Branch xt yt"  | 
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quickcheck[random, expect = counterexample]  | 
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quickcheck[exhaustive, expect = counterexample]  | 
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    --{* Wrong! *} 
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oops  | 
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datatype 'a ntree = Tip "'a" | Node "'a" "'a ntree" "'a ntree"  | 
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primrec inOrder :: "'a ntree \<Rightarrow> 'a list" where  | 
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"inOrder (Tip a)= [a]"  | 
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| "inOrder (Node f x y) = (inOrder x)@[f]@(inOrder y)"  | 
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primrec root :: "'a ntree \<Rightarrow> 'a" where  | 
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"root (Tip a) = a"  | 
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| "root (Node f x y) = f"  | 
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theorem "hd (inOrder xt) = root xt"  | 
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quickcheck[random, expect = counterexample]  | 
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quickcheck[exhaustive, expect = counterexample]  | 
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  --{* Wrong! *} 
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oops  | 
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subsection {* Exhaustive Testing beats Random Testing *}
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text {* Here are some examples from mutants from the List theory
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where exhaustive testing beats random testing *}  | 
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lemma  | 
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"[] ~= xs ==> hd xs = last (x # xs)"  | 
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quickcheck[random]  | 
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quickcheck[exhaustive, expect = counterexample]  | 
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oops  | 
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lemma  | 
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assumes "!!i. [| i < n; i < length xs |] ==> P (xs ! i)" "n < length xs ==> ~ P (xs ! n)"  | 
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shows "drop n xs = takeWhile P xs"  | 
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quickcheck[random, iterations = 10000, quiet]  | 
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quickcheck[exhaustive, expect = counterexample]  | 
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oops  | 
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lemma  | 
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"i < length (List.transpose (List.transpose xs)) ==> xs ! i = map (%xs. xs ! i) [ys<-xs. i < length ys]"  | 
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quickcheck[random, iterations = 10000]  | 
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quickcheck[exhaustive, expect = counterexample]  | 
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oops  | 
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lemma  | 
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"i < n - m ==> f (lcm m i) = map f [m..<n] ! i"  | 
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quickcheck[random, iterations = 10000, finite_types = false]  | 
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quickcheck[exhaustive, finite_types = false, expect = counterexample]  | 
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oops  | 
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lemma  | 
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"i < n - m ==> f (lcm m i) = map f [m..<n] ! i"  | 
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quickcheck[random, iterations = 10000, finite_types = false]  | 
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quickcheck[exhaustive, finite_types = false, expect = counterexample]  | 
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oops  | 
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lemma  | 
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"ns ! k < length ns ==> k <= listsum ns"  | 
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quickcheck[random, iterations = 10000, finite_types = false, quiet]  | 
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quickcheck[exhaustive, finite_types = false, expect = counterexample]  | 
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oops  | 
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lemma  | 
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"[| ys = x # xs1; zs = xs1 @ xs |] ==> ys @ zs = x # xs"  | 
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quickcheck[random, iterations = 10000]  | 
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quickcheck[exhaustive, expect = counterexample]  | 
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oops  | 
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lemma  | 
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"i < length xs ==> take (Suc i) xs = [] @ xs ! i # take i xs"  | 
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quickcheck[random, iterations = 10000]  | 
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quickcheck[exhaustive, expect = counterexample]  | 
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oops  | 
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lemma  | 
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"i < length xs ==> take (Suc i) xs = (xs ! i # xs) @ take i []"  | 
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quickcheck[random, iterations = 10000]  | 
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quickcheck[exhaustive, expect = counterexample]  | 
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oops  | 
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lemma  | 
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"[| sorted (rev (map length xs)); i < length xs |] ==> xs ! i = map (%ys. ys ! i) [ys<-remdups xs. i < length ys]"  | 
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quickcheck[random]  | 
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quickcheck[exhaustive, expect = counterexample]  | 
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oops  | 
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235  | 
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236  | 
lemma  | 
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  "[| sorted (rev (map length xs)); i < length xs |] ==> xs ! i = map (%ys. ys ! i) [ys<-List.transpose xs. {..<i} (length ys)]"
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quickcheck[random]  | 
239  | 
quickcheck[exhaustive, expect = counterexample]  | 
|
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oops  | 
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241  | 
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242  | 
lemma  | 
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"(ys = zs) = (xs @ ys = splice xs zs)"  | 
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quickcheck[random]  | 
245  | 
quickcheck[exhaustive, expect = counterexample]  | 
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oops  | 
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247  | 
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248  | 
subsection {* Examples with quantifiers *}
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| 40654 | 249  | 
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250  | 
text {*
 | 
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251  | 
These examples show that we can handle quantifiers.  | 
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252  | 
*}  | 
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253  | 
||
254  | 
lemma "(\<exists>x. P x) \<longrightarrow> (\<forall>x. P x)"  | 
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quickcheck[random, expect = counterexample]  | 
256  | 
quickcheck[exhaustive, expect = counterexample]  | 
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258  | 
||
259  | 
lemma "(\<forall>x. \<exists>y. P x y) \<longrightarrow> (\<exists>y. \<forall>x. P x y)"  | 
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quickcheck[random, expect = counterexample]  | 
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quickcheck[expect = counterexample]  | 
262  | 
oops  | 
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263  | 
||
264  | 
lemma "(\<exists>x. P x) \<longrightarrow> (EX! x. P x)"  | 
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quickcheck[random, expect = counterexample]  | 
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quickcheck[expect = counterexample]  | 
267  | 
oops  | 
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268  | 
||
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269  | 
subsection {* Examples with numerical types *}
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270  | 
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271  | 
text {*
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272  | 
Quickcheck supports the common types nat, int, rat and real.  | 
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*}  | 
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274  | 
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275  | 
lemma  | 
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"(x :: nat) > 0 ==> y > 0 ==> z > 0 ==> x * x + y * y \<noteq> z * z"  | 
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quickcheck[exhaustive, size = 10, expect = counterexample]  | 
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quickcheck[random, size = 10]  | 
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279  | 
oops  | 
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280  | 
|
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281  | 
lemma  | 
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282  | 
"(x :: int) > 0 ==> y > 0 ==> z > 0 ==> x * x + y * y \<noteq> z * z"  | 
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quickcheck[exhaustive, size = 10, expect = counterexample]  | 
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quickcheck[random, size = 10]  | 
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285  | 
oops  | 
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286  | 
|
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287  | 
lemma  | 
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288  | 
"(x :: rat) > 0 ==> y > 0 ==> z > 0 ==> x * x + y * y \<noteq> z * z"  | 
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quickcheck[exhaustive, size = 10, expect = counterexample]  | 
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quickcheck[random, size = 10]  | 
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291  | 
oops  | 
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292  | 
|
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293  | 
lemma  | 
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"(x :: real) > 0 ==> y > 0 ==> z > 0 ==> x * x + y * y \<noteq> z * z"  | 
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quickcheck[exhaustive, size = 10, expect = counterexample]  | 
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quickcheck[random, size = 10]  | 
| 
 
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297  | 
oops  | 
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298  | 
|
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299  | 
subsubsection {* floor and ceiling functions *}
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300  | 
|
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301  | 
lemma  | 
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"floor x + floor y = floor (x + y :: rat)"  | 
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quickcheck[expect = counterexample]  | 
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oops  | 
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305  | 
|
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306  | 
lemma  | 
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"floor x + floor y = floor (x + y :: real)"  | 
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quickcheck[expect = counterexample]  | 
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oops  | 
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310  | 
|
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311  | 
lemma  | 
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"ceiling x + ceiling y = ceiling (x + y :: rat)"  | 
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quickcheck[expect = counterexample]  | 
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314  | 
oops  | 
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315  | 
|
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316  | 
lemma  | 
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317  | 
"ceiling x + ceiling y = ceiling (x + y :: real)"  | 
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quickcheck[expect = counterexample]  | 
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319  | 
oops  | 
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320  | 
|
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321  | 
|
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322  | 
subsection {* Examples with Records *}
 | 
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323  | 
|
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324  | 
record point =  | 
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325  | 
xpos :: nat  | 
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326  | 
ypos :: nat  | 
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327  | 
|
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328  | 
lemma  | 
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329  | 
"xpos r = xpos r' ==> r = r'"  | 
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330  | 
quickcheck[exhaustive, expect = counterexample]  | 
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331  | 
quickcheck[random, expect = counterexample]  | 
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332  | 
oops  | 
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333  | 
|
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334  | 
datatype colour = Red | Green | Blue  | 
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335  | 
|
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336  | 
record cpoint = point +  | 
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337  | 
colour :: colour  | 
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338  | 
|
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339  | 
lemma  | 
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340  | 
"xpos r = xpos r' ==> ypos r = ypos r' ==> (r :: cpoint) = r'"  | 
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341  | 
quickcheck[exhaustive, expect = counterexample]  | 
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342  | 
quickcheck[random, expect = counterexample]  | 
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343  | 
oops  | 
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344  | 
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345  | 
subsection {* Examples with locales *}
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346  | 
|
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347  | 
locale Truth  | 
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348  | 
|
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349  | 
context Truth  | 
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350  | 
begin  | 
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351  | 
|
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352  | 
lemma "False"  | 
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353  | 
quickcheck[expect = no_counterexample]  | 
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354  | 
oops  | 
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355  | 
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end  | 
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357  | 
|
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358  | 
interpretation Truth .  | 
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359  | 
|
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360  | 
context Truth  | 
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361  | 
begin  | 
| 
 
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362  | 
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363  | 
lemma "False"  | 
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quickcheck[exhaustive, expect = counterexample]  | 
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365  | 
oops  | 
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366  | 
|
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367  | 
end  | 
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368  | 
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369  | 
end  |