author | wenzelm |
Thu, 01 Sep 2016 21:28:46 +0200 | |
changeset 63763 | 0f61ea70d384 |
parent 63167 | 0909deb8059b |
child 66298 | 5ff9fe3fee66 |
permissions | -rw-r--r-- |
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(* Title: HOL/SMT_Examples/SMT_Examples.thy |
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Author: Sascha Boehme, TU Muenchen |
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*) |
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section \<open>Examples for the SMT binding\<close> |
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theory SMT_Examples |
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imports Complex_Main |
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begin |
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declare [[smt_certificates = "SMT_Examples.certs"]] |
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declare [[smt_read_only_certificates = true]] |
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section \<open>Propositional and first-order logic\<close> |
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lemma "True" by smt |
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lemma "p \<or> \<not>p" by smt |
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lemma "(p \<and> True) = p" by smt |
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lemma "(p \<or> q) \<and> \<not>p \<Longrightarrow> q" by smt |
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lemma "(a \<and> b) \<or> (c \<and> d) \<Longrightarrow> (a \<and> b) \<or> (c \<and> d)" by smt |
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lemma "(p1 \<and> p2) \<or> p3 \<longrightarrow> (p1 \<longrightarrow> (p3 \<and> p2) \<or> (p1 \<and> p3)) \<or> p1" by smt |
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lemma "P = P = P = P = P = P = P = P = P = P" by smt |
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lemma |
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assumes "a \<or> b \<or> c \<or> d" |
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and "e \<or> f \<or> (a \<and> d)" |
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and "\<not> (a \<or> (c \<and> ~c)) \<or> b" |
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and "\<not> (b \<and> (x \<or> \<not> x)) \<or> c" |
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and "\<not> (d \<or> False) \<or> c" |
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and "\<not> (c \<or> (\<not> p \<and> (p \<or> (q \<and> \<not> q))))" |
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shows False |
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using assms by smt |
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axiomatization symm_f :: "'a \<Rightarrow> 'a \<Rightarrow> 'a" where |
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symm_f: "symm_f x y = symm_f y x" |
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lemma "a = a \<and> symm_f a b = symm_f b a" by (smt symm_f) |
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(* |
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Taken from ~~/src/HOL/ex/SAT_Examples.thy. |
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Translated from TPTP problem library: PUZ015-2.006.dimacs |
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*) |
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lemma |
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assumes "~x0" |
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and "~x30" |
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and "~x29" |
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and "~x59" |
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and "x1 \<or> x31 \<or> x0" |
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and "x2 \<or> x32 \<or> x1" |
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and "x3 \<or> x33 \<or> x2" |
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and "x4 \<or> x34 \<or> x3" |
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and "x35 \<or> x4" |
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and "x5 \<or> x36 \<or> x30" |
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and "x6 \<or> x37 \<or> x5 \<or> x31" |
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and "x7 \<or> x38 \<or> x6 \<or> x32" |
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and "x8 \<or> x39 \<or> x7 \<or> x33" |
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and "x9 \<or> x40 \<or> x8 \<or> x34" |
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and "x41 \<or> x9 \<or> x35" |
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and "x10 \<or> x42 \<or> x36" |
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and "x11 \<or> x43 \<or> x10 \<or> x37" |
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and "x12 \<or> x44 \<or> x11 \<or> x38" |
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and "x13 \<or> x45 \<or> x12 \<or> x39" |
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and "x14 \<or> x46 \<or> x13 \<or> x40" |
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and "x47 \<or> x14 \<or> x41" |
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and "x15 \<or> x48 \<or> x42" |
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and "x16 \<or> x49 \<or> x15 \<or> x43" |
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and "x17 \<or> x50 \<or> x16 \<or> x44" |
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and "x18 \<or> x51 \<or> x17 \<or> x45" |
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and "x19 \<or> x52 \<or> x18 \<or> x46" |
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and "x53 \<or> x19 \<or> x47" |
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and "x20 \<or> x54 \<or> x48" |
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and "x21 \<or> x55 \<or> x20 \<or> x49" |
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and "x22 \<or> x56 \<or> x21 \<or> x50" |
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and "x23 \<or> x57 \<or> x22 \<or> x51" |
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and "x24 \<or> x58 \<or> x23 \<or> x52" |
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and "x59 \<or> x24 \<or> x53" |
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and "x25 \<or> x54" |
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and "x26 \<or> x25 \<or> x55" |
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and "x27 \<or> x26 \<or> x56" |
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and "x28 \<or> x27 \<or> x57" |
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and "x29 \<or> x28 \<or> x58" |
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and "~x1 \<or> ~x31" |
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and "~x1 \<or> ~x0" |
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and "~x31 \<or> ~x0" |
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and "~x2 \<or> ~x32" |
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and "~x2 \<or> ~x1" |
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and "~x32 \<or> ~x1" |
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and "~x3 \<or> ~x33" |
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and "~x3 \<or> ~x2" |
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and "~x33 \<or> ~x2" |
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and "~x4 \<or> ~x34" |
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and "~x4 \<or> ~x3" |
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and "~x34 \<or> ~x3" |
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and "~x35 \<or> ~x4" |
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and "~x5 \<or> ~x36" |
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and "~x5 \<or> ~x30" |
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and "~x36 \<or> ~x30" |
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and "~x6 \<or> ~x37" |
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and "~x6 \<or> ~x5" |
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and "~x6 \<or> ~x31" |
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and "~x37 \<or> ~x5" |
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and "~x37 \<or> ~x31" |
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and "~x5 \<or> ~x31" |
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and "~x7 \<or> ~x38" |
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and "~x7 \<or> ~x6" |
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and "~x7 \<or> ~x32" |
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and "~x38 \<or> ~x6" |
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and "~x38 \<or> ~x32" |
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and "~x6 \<or> ~x32" |
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and "~x8 \<or> ~x39" |
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and "~x8 \<or> ~x7" |
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and "~x8 \<or> ~x33" |
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and "~x39 \<or> ~x7" |
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and "~x39 \<or> ~x33" |
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and "~x7 \<or> ~x33" |
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and "~x9 \<or> ~x40" |
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and "~x9 \<or> ~x8" |
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and "~x9 \<or> ~x34" |
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and "~x40 \<or> ~x8" |
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and "~x40 \<or> ~x34" |
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and "~x8 \<or> ~x34" |
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and "~x41 \<or> ~x9" |
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and "~x41 \<or> ~x35" |
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and "~x9 \<or> ~x35" |
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and "~x10 \<or> ~x42" |
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and "~x10 \<or> ~x36" |
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and "~x42 \<or> ~x36" |
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and "~x11 \<or> ~x43" |
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and "~x11 \<or> ~x10" |
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and "~x11 \<or> ~x37" |
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and "~x43 \<or> ~x10" |
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and "~x43 \<or> ~x37" |
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and "~x10 \<or> ~x37" |
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and "~x12 \<or> ~x44" |
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and "~x12 \<or> ~x11" |
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and "~x12 \<or> ~x38" |
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and "~x44 \<or> ~x11" |
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and "~x44 \<or> ~x38" |
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and "~x11 \<or> ~x38" |
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and "~x13 \<or> ~x45" |
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and "~x13 \<or> ~x12" |
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and "~x13 \<or> ~x39" |
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and "~x45 \<or> ~x12" |
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and "~x45 \<or> ~x39" |
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and "~x12 \<or> ~x39" |
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and "~x14 \<or> ~x46" |
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and "~x14 \<or> ~x13" |
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and "~x14 \<or> ~x40" |
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and "~x46 \<or> ~x13" |
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and "~x46 \<or> ~x40" |
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and "~x13 \<or> ~x40" |
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and "~x47 \<or> ~x14" |
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and "~x47 \<or> ~x41" |
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and "~x14 \<or> ~x41" |
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and "~x15 \<or> ~x48" |
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and "~x15 \<or> ~x42" |
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and "~x48 \<or> ~x42" |
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and "~x16 \<or> ~x49" |
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and "~x16 \<or> ~x15" |
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and "~x16 \<or> ~x43" |
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and "~x49 \<or> ~x15" |
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and "~x49 \<or> ~x43" |
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and "~x15 \<or> ~x43" |
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and "~x17 \<or> ~x50" |
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and "~x17 \<or> ~x16" |
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and "~x17 \<or> ~x44" |
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and "~x50 \<or> ~x16" |
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and "~x50 \<or> ~x44" |
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and "~x16 \<or> ~x44" |
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and "~x18 \<or> ~x51" |
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and "~x18 \<or> ~x17" |
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and "~x18 \<or> ~x45" |
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and "~x51 \<or> ~x17" |
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and "~x51 \<or> ~x45" |
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and "~x17 \<or> ~x45" |
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and "~x19 \<or> ~x52" |
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and "~x19 \<or> ~x18" |
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and "~x19 \<or> ~x46" |
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and "~x52 \<or> ~x18" |
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and "~x52 \<or> ~x46" |
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and "~x18 \<or> ~x46" |
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and "~x53 \<or> ~x19" |
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and "~x53 \<or> ~x47" |
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and "~x19 \<or> ~x47" |
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and "~x20 \<or> ~x54" |
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and "~x20 \<or> ~x48" |
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and "~x54 \<or> ~x48" |
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and "~x21 \<or> ~x55" |
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and "~x21 \<or> ~x20" |
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and "~x21 \<or> ~x49" |
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and "~x55 \<or> ~x20" |
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and "~x55 \<or> ~x49" |
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and "~x20 \<or> ~x49" |
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and "~x22 \<or> ~x56" |
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and "~x22 \<or> ~x21" |
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and "~x22 \<or> ~x50" |
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and "~x56 \<or> ~x21" |
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and "~x56 \<or> ~x50" |
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and "~x21 \<or> ~x50" |
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and "~x23 \<or> ~x57" |
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and "~x23 \<or> ~x22" |
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and "~x23 \<or> ~x51" |
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and "~x57 \<or> ~x22" |
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and "~x57 \<or> ~x51" |
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and "~x22 \<or> ~x51" |
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and "~x24 \<or> ~x58" |
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and "~x24 \<or> ~x23" |
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and "~x24 \<or> ~x52" |
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and "~x58 \<or> ~x23" |
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and "~x58 \<or> ~x52" |
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and "~x23 \<or> ~x52" |
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and "~x59 \<or> ~x24" |
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and "~x59 \<or> ~x53" |
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and "~x24 \<or> ~x53" |
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and "~x25 \<or> ~x54" |
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and "~x26 \<or> ~x25" |
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and "~x26 \<or> ~x55" |
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and "~x25 \<or> ~x55" |
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and "~x27 \<or> ~x26" |
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and "~x27 \<or> ~x56" |
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and "~x26 \<or> ~x56" |
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and "~x28 \<or> ~x27" |
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and "~x28 \<or> ~x57" |
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and "~x27 \<or> ~x57" |
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and "~x29 \<or> ~x28" |
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and "~x29 \<or> ~x58" |
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and "~x28 \<or> ~x58" |
36898 | 229 |
shows False |
58061 | 230 |
using assms by smt |
36898 | 231 |
|
232 |
lemma "\<forall>x::int. P x \<longrightarrow> (\<forall>y::int. P x \<or> P y)" |
|
58061 | 233 |
by smt |
36898 | 234 |
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lemma |
36898 | 236 |
assumes "(\<forall>x y. P x y = x)" |
237 |
shows "(\<exists>y. P x y) = P x c" |
|
58061 | 238 |
using assms by smt |
36898 | 239 |
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lemma |
36898 | 241 |
assumes "(\<forall>x y. P x y = x)" |
242 |
and "(\<forall>x. \<exists>y. P x y) = (\<forall>x. P x c)" |
|
243 |
shows "(EX y. P x y) = P x c" |
|
58061 | 244 |
using assms by smt |
36898 | 245 |
|
246 |
lemma |
|
247 |
assumes "if P x then \<not>(\<exists>y. P y) else (\<forall>y. \<not>P y)" |
|
248 |
shows "P x \<longrightarrow> P y" |
|
58061 | 249 |
using assms by smt |
36898 | 250 |
|
251 |
||
63167 | 252 |
section \<open>Arithmetic\<close> |
36898 | 253 |
|
63167 | 254 |
subsection \<open>Linear arithmetic over integers and reals\<close> |
36898 | 255 |
|
58061 | 256 |
lemma "(3::int) = 3" by smt |
257 |
lemma "(3::real) = 3" by smt |
|
258 |
lemma "(3 :: int) + 1 = 4" by smt |
|
259 |
lemma "x + (y + z) = y + (z + (x::int))" by smt |
|
260 |
lemma "max (3::int) 8 > 5" by smt |
|
61945 | 261 |
lemma "\<bar>x :: real\<bar> + \<bar>y\<bar> \<ge> \<bar>x + y\<bar>" by smt |
58061 | 262 |
lemma "P ((2::int) < 3) = P True" by smt |
263 |
lemma "x + 3 \<ge> 4 \<or> x < (1::int)" by smt |
|
36898 | 264 |
|
265 |
lemma |
|
266 |
assumes "x \<ge> (3::int)" and "y = x + 4" |
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shows "y - x > 0" |
58061 | 268 |
using assms by smt |
36898 | 269 |
|
58061 | 270 |
lemma "let x = (2 :: int) in x + x \<noteq> 5" by smt |
36898 | 271 |
|
272 |
lemma |
|
273 |
fixes x :: real |
|
274 |
assumes "3 * x + 7 * a < 4" and "3 < 2 * x" |
|
275 |
shows "a < 0" |
|
58061 | 276 |
using assms by smt |
36898 | 277 |
|
58061 | 278 |
lemma "(0 \<le> y + -1 * x \<or> \<not> 0 \<le> x \<or> 0 \<le> (x::int)) = (\<not> False)" by smt |
36898 | 279 |
|
280 |
lemma " |
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(n < m \<and> m < n') \<or> (n < m \<and> m = n') \<or> (n < n' \<and> n' < m) \<or> |
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(n = n' \<and> n' < m) \<or> (n = m \<and> m < n') \<or> |
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(n' < m \<and> m < n) \<or> (n' < m \<and> m = n) \<or> |
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(n' < n \<and> n < m) \<or> (n' = n \<and> n < m) \<or> (n' = m \<and> m < n) \<or> |
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(m < n \<and> n < n') \<or> (m < n \<and> n' = n) \<or> (m < n' \<and> n' < n) \<or> |
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(m = n \<and> n < n') \<or> (m = n' \<and> n' < n) \<or> |
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287 |
(n' = m \<and> m = (n::int))" |
58061 | 288 |
by smt |
36898 | 289 |
|
63167 | 290 |
text\<open> |
36898 | 291 |
The following example was taken from HOL/ex/PresburgerEx.thy, where it says: |
292 |
||
293 |
This following theorem proves that all solutions to the |
|
294 |
recurrence relation $x_{i+2} = |x_{i+1}| - x_i$ are periodic with |
|
295 |
period 9. The example was brought to our attention by John |
|
296 |
Harrison. It does does not require Presburger arithmetic but merely |
|
297 |
quantifier-free linear arithmetic and holds for the rationals as well. |
|
298 |
||
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Warning: it takes (in 2006) over 4.2 minutes! |
36898 | 300 |
|
301 |
There, it is proved by "arith". SMT is able to prove this within a fraction |
|
302 |
of one second. With proof reconstruction, it takes about 13 seconds on a Core2 |
|
303 |
processor. |
|
63167 | 304 |
\<close> |
36898 | 305 |
|
61945 | 306 |
lemma "\<lbrakk> x3 = \<bar>x2\<bar> - x1; x4 = \<bar>x3\<bar> - x2; x5 = \<bar>x4\<bar> - x3; |
307 |
x6 = \<bar>x5\<bar> - x4; x7 = \<bar>x6\<bar> - x5; x8 = \<bar>x7\<bar> - x6; |
|
308 |
x9 = \<bar>x8\<bar> - x7; x10 = \<bar>x9\<bar> - x8; x11 = \<bar>x10\<bar> - x9 \<rbrakk> |
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\<Longrightarrow> x1 = x10 \<and> x2 = (x11::int)" |
58061 | 310 |
by smt |
36898 | 311 |
|
312 |
||
58061 | 313 |
lemma "let P = 2 * x + 1 > x + (x::real) in P \<or> False \<or> P" by smt |
36898 | 314 |
|
48069
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restricted Z3 by default to a fragment where proof reconstruction should not fail (for better integration with Sledgehammer) -- the full set of supported Z3 features can still be used by enabling the configuration option "z3_with_extensions"
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|
315 |
lemma "x + (let y = x mod 2 in 2 * y + 1) \<ge> x + (1::int)" |
58061 | 316 |
using [[z3_extensions]] by smt |
36898 | 317 |
|
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restricted Z3 by default to a fragment where proof reconstruction should not fail (for better integration with Sledgehammer) -- the full set of supported Z3 features can still be used by enabling the configuration option "z3_with_extensions"
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|
318 |
lemma "x + (let y = x mod 2 in y + y) < x + (3::int)" |
58061 | 319 |
using [[z3_extensions]] by smt |
36898 | 320 |
|
321 |
lemma |
|
322 |
assumes "x \<noteq> (0::real)" |
|
61945 | 323 |
shows "x + x \<noteq> (let P = (\<bar>x\<bar> > 1) in if P \<or> \<not> P then 4 else 2) * x" |
58061 | 324 |
using assms [[z3_extensions]] by smt |
36898 | 325 |
|
326 |
||
63167 | 327 |
subsection \<open>Linear arithmetic with quantifiers\<close> |
36898 | 328 |
|
58061 | 329 |
lemma "~ (\<exists>x::int. False)" by smt |
330 |
lemma "~ (\<exists>x::real. False)" by smt |
|
36898 | 331 |
|
58061 | 332 |
lemma "\<exists>x::int. 0 < x" by smt |
36898 | 333 |
|
334 |
lemma "\<exists>x::real. 0 < x" |
|
58061 | 335 |
using [[smt_oracle=true]] (* no Z3 proof *) |
336 |
by smt |
|
36898 | 337 |
|
58061 | 338 |
lemma "\<forall>x::int. \<exists>y. y > x" by smt |
36898 | 339 |
|
58061 | 340 |
lemma "\<forall>x y::int. (x = 0 \<and> y = 1) \<longrightarrow> x \<noteq> y" by smt |
341 |
lemma "\<exists>x::int. \<forall>y. x < y \<longrightarrow> y < 0 \<or> y >= 0" by smt |
|
342 |
lemma "\<forall>x y::int. x < y \<longrightarrow> (2 * x + 1) < (2 * y)" by smt |
|
343 |
lemma "\<forall>x y::int. (2 * x + 1) \<noteq> (2 * y)" by smt |
|
344 |
lemma "\<forall>x y::int. x + y > 2 \<or> x + y = 2 \<or> x + y < 2" by smt |
|
345 |
lemma "\<forall>x::int. if x > 0 then x + 1 > 0 else 1 > x" by smt |
|
346 |
lemma "if (ALL x::int. x < 0 \<or> x > 0) then False else True" by smt |
|
347 |
lemma "(if (ALL x::int. x < 0 \<or> x > 0) then -1 else 3) > (0::int)" by smt |
|
348 |
lemma "~ (\<exists>x y z::int. 4 * x + -6 * y = (1::int))" by smt |
|
349 |
lemma "\<exists>x::int. \<forall>x y. 0 < x \<and> 0 < y \<longrightarrow> (0::int) < x + y" by smt |
|
350 |
lemma "\<exists>u::int. \<forall>(x::int) y::real. 0 < x \<and> 0 < y \<longrightarrow> -1 < x" by smt |
|
351 |
lemma "\<exists>x::int. (\<forall>y. y \<ge> x \<longrightarrow> y > 0) \<longrightarrow> x > 0" by smt |
|
352 |
lemma "\<forall>(a::int) b::int. 0 < b \<or> b < 1" by smt |
|
42318
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|
353 |
|
36898 | 354 |
|
63167 | 355 |
subsection \<open>Non-linear arithmetic over integers and reals\<close> |
36898 | 356 |
|
357 |
lemma "a > (0::int) \<Longrightarrow> a*b > 0 \<Longrightarrow> b > 0" |
|
58061 | 358 |
using [[smt_oracle, z3_extensions]] |
359 |
by smt |
|
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layered SMT setup, adapted SMT clients, added further tests, made Z3 proof abstraction configurable
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changeset
|
360 |
|
41282 | 361 |
lemma "(a::int) * (x + 1 + y) = a * x + a * (y + 1)" |
58061 | 362 |
using [[z3_extensions]] |
363 |
by smt |
|
36898 | 364 |
|
41282 | 365 |
lemma "((x::real) * (1 + y) - x * (1 - y)) = (2 * x * y)" |
58061 | 366 |
using [[z3_extensions]] |
367 |
by smt |
|
36898 | 368 |
|
369 |
lemma |
|
370 |
"(U::int) + (1 + p) * (b + e) + p * d = |
|
371 |
U + (2 * (1 + p) * (b + e) + (1 + p) * d + d * p) - (1 + p) * (b + d + e)" |
|
58061 | 372 |
using [[z3_extensions]] by smt |
36898 | 373 |
|
58061 | 374 |
lemma [z3_rule]: |
43893
f3e75541cb78
allow rules with premises to be declared as z3_rule (to circumvent incompleteness of Z3 proof reconstruction)
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|
375 |
fixes x :: "int" |
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allow rules with premises to be declared as z3_rule (to circumvent incompleteness of Z3 proof reconstruction)
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diff
changeset
|
376 |
assumes "x * y \<le> 0" and "\<not> y \<le> 0" and "\<not> x \<le> 0" |
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|
377 |
shows False |
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changeset
|
378 |
using assms by (metis mult_le_0_iff) |
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diff
changeset
|
379 |
|
36898 | 380 |
|
63167 | 381 |
section \<open>Pairs\<close> |
36898 | 382 |
|
41132 | 383 |
lemma "fst (x, y) = a \<Longrightarrow> x = a" |
58061 | 384 |
using fst_conv by smt |
36898 | 385 |
|
41132 | 386 |
lemma "p1 = (x, y) \<and> p2 = (y, x) \<Longrightarrow> fst p1 = snd p2" |
58061 | 387 |
using fst_conv snd_conv by smt |
36898 | 388 |
|
389 |
||
63167 | 390 |
section \<open>Higher-order problems and recursion\<close> |
36898 | 391 |
|
41132 | 392 |
lemma "i \<noteq> i1 \<and> i \<noteq> i2 \<Longrightarrow> (f (i1 := v1, i2 := v2)) i = f i" |
58061 | 393 |
using fun_upd_same fun_upd_apply by smt |
36898 | 394 |
|
395 |
lemma "(f g (x::'a::type) = (g x \<and> True)) \<or> (f g x = True) \<or> (g x = True)" |
|
58061 | 396 |
by smt |
36898 | 397 |
|
56109 | 398 |
lemma "id x = x \<and> id True = True" |
58061 | 399 |
by (smt id_def) |
36898 | 400 |
|
41132 | 401 |
lemma "i \<noteq> i1 \<and> i \<noteq> i2 \<Longrightarrow> ((f (i1 := v1)) (i2 := v2)) i = f i" |
58061 | 402 |
using fun_upd_same fun_upd_apply by smt |
36898 | 403 |
|
41786
a5899d0ce1a1
added test cases with quantifier occurring in first-order term positions
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parents:
41601
diff
changeset
|
404 |
lemma |
a5899d0ce1a1
added test cases with quantifier occurring in first-order term positions
boehmes
parents:
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diff
changeset
|
405 |
"f (\<exists>x. g x) \<Longrightarrow> True" |
a5899d0ce1a1
added test cases with quantifier occurring in first-order term positions
boehmes
parents:
41601
diff
changeset
|
406 |
"f (\<forall>x. g x) \<Longrightarrow> True" |
58061 | 407 |
by smt+ |
36899
bcd6fce5bf06
layered SMT setup, adapted SMT clients, added further tests, made Z3 proof abstraction configurable
boehmes
parents:
36898
diff
changeset
|
408 |
|
58061 | 409 |
lemma True using let_rsp by smt |
410 |
lemma "le = op \<le> \<Longrightarrow> le (3::int) 42" by smt |
|
411 |
lemma "map (\<lambda>i::int. i + 1) [0, 1] = [1, 2]" by (smt list.map) |
|
412 |
lemma "(ALL x. P x) \<or> ~ All P" by smt |
|
36898 | 413 |
|
57696
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do not embed 'nat' into 'int's in 'smt2' method -- this is highly inefficient and decreases the Sledgehammer success rate significantly
blanchet
parents:
57232
diff
changeset
|
414 |
fun dec_10 :: "int \<Rightarrow> int" where |
36898 | 415 |
"dec_10 n = (if n < 10 then n else dec_10 (n - 10))" |
56109 | 416 |
|
58061 | 417 |
lemma "dec_10 (4 * dec_10 4) = 6" by (smt dec_10.simps) |
36898 | 418 |
|
419 |
axiomatization |
|
57696
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do not embed 'nat' into 'int's in 'smt2' method -- this is highly inefficient and decreases the Sledgehammer success rate significantly
blanchet
parents:
57232
diff
changeset
|
420 |
eval_dioph :: "int list \<Rightarrow> int list \<Rightarrow> int" |
56109 | 421 |
where |
57696
fb71c6f100f8
do not embed 'nat' into 'int's in 'smt2' method -- this is highly inefficient and decreases the Sledgehammer success rate significantly
blanchet
parents:
57232
diff
changeset
|
422 |
eval_dioph_mod: "eval_dioph ks xs mod n = eval_dioph ks (map (\<lambda>x. x mod n) xs) mod n" |
56109 | 423 |
and |
36898 | 424 |
eval_dioph_div_mult: |
57696
fb71c6f100f8
do not embed 'nat' into 'int's in 'smt2' method -- this is highly inefficient and decreases the Sledgehammer success rate significantly
blanchet
parents:
57232
diff
changeset
|
425 |
"eval_dioph ks (map (\<lambda>x. x div n) xs) * n + |
36898 | 426 |
eval_dioph ks (map (\<lambda>x. x mod n) xs) = eval_dioph ks xs" |
56109 | 427 |
|
36898 | 428 |
lemma |
429 |
"(eval_dioph ks xs = l) = |
|
430 |
(eval_dioph ks (map (\<lambda>x. x mod 2) xs) mod 2 = l mod 2 \<and> |
|
57696
fb71c6f100f8
do not embed 'nat' into 'int's in 'smt2' method -- this is highly inefficient and decreases the Sledgehammer success rate significantly
blanchet
parents:
57232
diff
changeset
|
431 |
eval_dioph ks (map (\<lambda>x. x div 2) xs) = (l - eval_dioph ks (map (\<lambda>x. x mod 2) xs)) div 2)" |
58061 | 432 |
using [[smt_oracle = true]] (*FIXME*) |
433 |
using [[z3_extensions]] |
|
434 |
by (smt eval_dioph_mod[where n=2] eval_dioph_div_mult[where n=2]) |
|
36898 | 435 |
|
436 |
||
45393
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try different alternatives in discharging extra assumptions when schematic theorems obtained from lambda-lifting can be instantiated in different ways
boehmes
parents:
43893
diff
changeset
|
437 |
context complete_lattice |
13ab80eafd71
try different alternatives in discharging extra assumptions when schematic theorems obtained from lambda-lifting can be instantiated in different ways
boehmes
parents:
43893
diff
changeset
|
438 |
begin |
13ab80eafd71
try different alternatives in discharging extra assumptions when schematic theorems obtained from lambda-lifting can be instantiated in different ways
boehmes
parents:
43893
diff
changeset
|
439 |
|
46084
dd7fb9e651ad
regenerate SMT example certificates, to reflect "set" type constructor
blanchet
parents:
45972
diff
changeset
|
440 |
lemma |
56079
175ac95720d4
use 'smt2' in SMT examples as much as currently possible
blanchet
parents:
55465
diff
changeset
|
441 |
assumes "Sup {a | i::bool. True} \<le> Sup {b | i::bool. True}" |
175ac95720d4
use 'smt2' in SMT examples as much as currently possible
blanchet
parents:
55465
diff
changeset
|
442 |
and "Sup {b | i::bool. True} \<le> Sup {a | i::bool. True}" |
175ac95720d4
use 'smt2' in SMT examples as much as currently possible
blanchet
parents:
55465
diff
changeset
|
443 |
shows "Sup {a | i::bool. True} \<le> Sup {a | i::bool. True}" |
58061 | 444 |
using assms by (smt order_trans) |
45393
13ab80eafd71
try different alternatives in discharging extra assumptions when schematic theorems obtained from lambda-lifting can be instantiated in different ways
boehmes
parents:
43893
diff
changeset
|
445 |
|
13ab80eafd71
try different alternatives in discharging extra assumptions when schematic theorems obtained from lambda-lifting can be instantiated in different ways
boehmes
parents:
43893
diff
changeset
|
446 |
end |
13ab80eafd71
try different alternatives in discharging extra assumptions when schematic theorems obtained from lambda-lifting can be instantiated in different ways
boehmes
parents:
43893
diff
changeset
|
447 |
|
13ab80eafd71
try different alternatives in discharging extra assumptions when schematic theorems obtained from lambda-lifting can be instantiated in different ways
boehmes
parents:
43893
diff
changeset
|
448 |
|
63167 | 449 |
section \<open>Monomorphization examples\<close> |
36898 | 450 |
|
36899
bcd6fce5bf06
layered SMT setup, adapted SMT clients, added further tests, made Z3 proof abstraction configurable
boehmes
parents:
36898
diff
changeset
|
451 |
definition Pred :: "'a \<Rightarrow> bool" where "Pred x = True" |
56079
175ac95720d4
use 'smt2' in SMT examples as much as currently possible
blanchet
parents:
55465
diff
changeset
|
452 |
|
175ac95720d4
use 'smt2' in SMT examples as much as currently possible
blanchet
parents:
55465
diff
changeset
|
453 |
lemma poly_Pred: "Pred x \<and> (Pred [x] \<or> \<not> Pred [x])" by (simp add: Pred_def) |
56109 | 454 |
|
58061 | 455 |
lemma "Pred (1::int)" by (smt poly_Pred) |
36898 | 456 |
|
36899
bcd6fce5bf06
layered SMT setup, adapted SMT clients, added further tests, made Z3 proof abstraction configurable
boehmes
parents:
36898
diff
changeset
|
457 |
axiomatization g :: "'a \<Rightarrow> nat" |
bcd6fce5bf06
layered SMT setup, adapted SMT clients, added further tests, made Z3 proof abstraction configurable
boehmes
parents:
36898
diff
changeset
|
458 |
axiomatization where |
bcd6fce5bf06
layered SMT setup, adapted SMT clients, added further tests, made Z3 proof abstraction configurable
boehmes
parents:
36898
diff
changeset
|
459 |
g1: "g (Some x) = g [x]" and |
bcd6fce5bf06
layered SMT setup, adapted SMT clients, added further tests, made Z3 proof abstraction configurable
boehmes
parents:
36898
diff
changeset
|
460 |
g2: "g None = g []" and |
36898 | 461 |
g3: "g xs = length xs" |
56079
175ac95720d4
use 'smt2' in SMT examples as much as currently possible
blanchet
parents:
55465
diff
changeset
|
462 |
|
58061 | 463 |
lemma "g (Some (3::int)) = g (Some True)" by (smt g1 g2 g3 list.size) |
36898 | 464 |
|
465 |
end |