| author | wenzelm | 
| Sat, 04 Aug 2018 22:32:41 +0200 | |
| changeset 68724 | 7fafadbf16c7 | 
| parent 67972 | 959b0aed2ce5 | 
| child 69064 | 5840724b1d71 | 
| permissions | -rw-r--r-- | 
| 58061 | 1 | (* Title: HOL/SMT.thy | 
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changeset | 2 | Author: Sascha Boehme, TU Muenchen | 
| 66551 | 3 | Author: Jasmin Blanchette, VU Amsterdam | 
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changeset | 4 | *) | 
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changeset | 5 | |
| 61626 | 6 | section \<open>Bindings to Satisfiability Modulo Theories (SMT) solvers based on SMT-LIB 2\<close> | 
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changeset | 7 | |
| 58061 | 8 | theory SMT | 
| 66551 | 9 | imports Divides | 
| 10 | keywords "smt_status" :: diag | |
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changeset | 11 | begin | 
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changeset | 12 | |
| 60758 | 13 | subsection \<open>A skolemization tactic and proof method\<close> | 
| 58481 | 14 | |
| 15 | lemma choices: | |
| 16 | "\<And>Q. \<forall>x. \<exists>y ya. Q x y ya \<Longrightarrow> \<exists>f fa. \<forall>x. Q x (f x) (fa x)" | |
| 17 | "\<And>Q. \<forall>x. \<exists>y ya yb. Q x y ya yb \<Longrightarrow> \<exists>f fa fb. \<forall>x. Q x (f x) (fa x) (fb x)" | |
| 18 | "\<And>Q. \<forall>x. \<exists>y ya yb yc. Q x y ya yb yc \<Longrightarrow> \<exists>f fa fb fc. \<forall>x. Q x (f x) (fa x) (fb x) (fc x)" | |
| 58598 | 19 | "\<And>Q. \<forall>x. \<exists>y ya yb yc yd. Q x y ya yb yc yd \<Longrightarrow> | 
| 20 | \<exists>f fa fb fc fd. \<forall>x. Q x (f x) (fa x) (fb x) (fc x) (fd x)" | |
| 21 | "\<And>Q. \<forall>x. \<exists>y ya yb yc yd ye. Q x y ya yb yc yd ye \<Longrightarrow> | |
| 22 | \<exists>f fa fb fc fd fe. \<forall>x. Q x (f x) (fa x) (fb x) (fc x) (fd x) (fe x)" | |
| 23 | "\<And>Q. \<forall>x. \<exists>y ya yb yc yd ye yf. Q x y ya yb yc yd ye yf \<Longrightarrow> | |
| 24 | \<exists>f fa fb fc fd fe ff. \<forall>x. Q x (f x) (fa x) (fb x) (fc x) (fd x) (fe x) (ff x)" | |
| 25 | "\<And>Q. \<forall>x. \<exists>y ya yb yc yd ye yf yg. Q x y ya yb yc yd ye yf yg \<Longrightarrow> | |
| 26 | \<exists>f fa fb fc fd fe ff fg. \<forall>x. Q x (f x) (fa x) (fb x) (fc x) (fd x) (fe x) (ff x) (fg x)" | |
| 58481 | 27 | by metis+ | 
| 28 | ||
| 29 | lemma bchoices: | |
| 30 | "\<And>Q. \<forall>x \<in> S. \<exists>y ya. Q x y ya \<Longrightarrow> \<exists>f fa. \<forall>x \<in> S. Q x (f x) (fa x)" | |
| 31 | "\<And>Q. \<forall>x \<in> S. \<exists>y ya yb. Q x y ya yb \<Longrightarrow> \<exists>f fa fb. \<forall>x \<in> S. Q x (f x) (fa x) (fb x)" | |
| 32 | "\<And>Q. \<forall>x \<in> S. \<exists>y ya yb yc. Q x y ya yb yc \<Longrightarrow> \<exists>f fa fb fc. \<forall>x \<in> S. Q x (f x) (fa x) (fb x) (fc x)" | |
| 58598 | 33 | "\<And>Q. \<forall>x \<in> S. \<exists>y ya yb yc yd. Q x y ya yb yc yd \<Longrightarrow> | 
| 34 | \<exists>f fa fb fc fd. \<forall>x \<in> S. Q x (f x) (fa x) (fb x) (fc x) (fd x)" | |
| 35 | "\<And>Q. \<forall>x \<in> S. \<exists>y ya yb yc yd ye. Q x y ya yb yc yd ye \<Longrightarrow> | |
| 36 | \<exists>f fa fb fc fd fe. \<forall>x \<in> S. Q x (f x) (fa x) (fb x) (fc x) (fd x) (fe x)" | |
| 37 | "\<And>Q. \<forall>x \<in> S. \<exists>y ya yb yc yd ye yf. Q x y ya yb yc yd ye yf \<Longrightarrow> | |
| 38 | \<exists>f fa fb fc fd fe ff. \<forall>x \<in> S. Q x (f x) (fa x) (fb x) (fc x) (fd x) (fe x) (ff x)" | |
| 39 | "\<And>Q. \<forall>x \<in> S. \<exists>y ya yb yc yd ye yf yg. Q x y ya yb yc yd ye yf yg \<Longrightarrow> | |
| 40 | \<exists>f fa fb fc fd fe ff fg. \<forall>x \<in> S. Q x (f x) (fa x) (fb x) (fc x) (fd x) (fe x) (ff x) (fg x)" | |
| 58481 | 41 | by metis+ | 
| 42 | ||
| 60758 | 43 | ML \<open> | 
| 58481 | 44 | fun moura_tac ctxt = | 
| 45 | Atomize_Elim.atomize_elim_tac ctxt THEN' | |
| 46 |   SELECT_GOAL (Clasimp.auto_tac (ctxt addSIs @{thms choice choices bchoice bchoices}) THEN
 | |
| 58598 | 47 | ALLGOALS (Metis_Tactic.metis_tac (take 1 ATP_Proof_Reconstruct.partial_type_encs) | 
| 48 | ATP_Proof_Reconstruct.default_metis_lam_trans ctxt [] ORELSE' | |
| 49 | blast_tac ctxt)) | |
| 60758 | 50 | \<close> | 
| 58481 | 51 | |
| 60758 | 52 | method_setup moura = \<open> | 
| 60201 | 53 | Scan.succeed (SIMPLE_METHOD' o moura_tac) | 
| 60758 | 54 | \<close> "solve skolemization goals, especially those arising from Z3 proofs" | 
| 58481 | 55 | |
| 56 | hide_fact (open) choices bchoices | |
| 57 | ||
| 58 | ||
| 60758 | 59 | subsection \<open>Triggers for quantifier instantiation\<close> | 
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changeset | 60 | |
| 60758 | 61 | text \<open> | 
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changeset | 62 | Some SMT solvers support patterns as a quantifier instantiation | 
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changeset | 63 | heuristics. Patterns may either be positive terms (tagged by "pat") | 
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changeset | 64 | triggering quantifier instantiations -- when the solver finds a | 
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changeset | 65 | term matching a positive pattern, it instantiates the corresponding | 
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changeset | 66 | quantifier accordingly -- or negative terms (tagged by "nopat") | 
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changeset | 67 | inhibiting quantifier instantiations. A list of patterns | 
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changeset | 68 | of the same kind is called a multipattern, and all patterns in a | 
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changeset | 69 | multipattern are considered conjunctively for quantifier instantiation. | 
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changeset | 70 | A list of multipatterns is called a trigger, and their multipatterns | 
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changeset | 71 | act disjunctively during quantifier instantiation. Each multipattern | 
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changeset | 72 | should mention at least all quantified variables of the preceding | 
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changeset | 73 | quantifier block. | 
| 60758 | 74 | \<close> | 
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changeset | 75 | |
| 57230 | 76 | typedecl 'a symb_list | 
| 77 | ||
| 78 | consts | |
| 79 | Symb_Nil :: "'a symb_list" | |
| 80 | Symb_Cons :: "'a \<Rightarrow> 'a symb_list \<Rightarrow> 'a symb_list" | |
| 81 | ||
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changeset | 82 | typedecl pattern | 
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changeset | 83 | |
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changeset | 84 | consts | 
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changeset | 85 | pat :: "'a \<Rightarrow> pattern" | 
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changeset | 86 | nopat :: "'a \<Rightarrow> pattern" | 
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changeset | 87 | |
| 57230 | 88 | definition trigger :: "pattern symb_list symb_list \<Rightarrow> bool \<Rightarrow> bool" where | 
| 89 | "trigger _ P = P" | |
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changeset | 90 | |
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changeset | 91 | |
| 60758 | 92 | subsection \<open>Higher-order encoding\<close> | 
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changeset | 93 | |
| 60758 | 94 | text \<open> | 
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changeset | 95 | Application is made explicit for constants occurring with varying | 
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changeset | 96 | numbers of arguments. This is achieved by the introduction of the | 
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changeset | 97 | following constant. | 
| 60758 | 98 | \<close> | 
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changeset | 99 | |
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changeset | 100 | definition fun_app :: "'a \<Rightarrow> 'a" where "fun_app f = f" | 
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changeset | 101 | |
| 60758 | 102 | text \<open> | 
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changeset | 103 | Some solvers support a theory of arrays which can be used to encode | 
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changeset | 104 | higher-order functions. The following set of lemmas specifies the | 
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changeset | 105 | properties of such (extensional) arrays. | 
| 60758 | 106 | \<close> | 
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changeset | 107 | |
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changeset | 108 | lemmas array_rules = ext fun_upd_apply fun_upd_same fun_upd_other fun_upd_upd fun_app_def | 
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changeset | 109 | |
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changeset | 110 | |
| 60758 | 111 | subsection \<open>Normalization\<close> | 
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changeset | 112 | |
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changeset | 113 | lemma case_bool_if[abs_def]: "case_bool x y P = (if P then x else y)" | 
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changeset | 114 | by simp | 
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changeset | 115 | |
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changeset | 116 | lemmas Ex1_def_raw = Ex1_def[abs_def] | 
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changeset | 117 | lemmas Ball_def_raw = Ball_def[abs_def] | 
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changeset | 118 | lemmas Bex_def_raw = Bex_def[abs_def] | 
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changeset | 119 | lemmas abs_if_raw = abs_if[abs_def] | 
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changeset | 120 | lemmas min_def_raw = min_def[abs_def] | 
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changeset | 121 | lemmas max_def_raw = max_def[abs_def] | 
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changeset | 122 | |
| 66817 | 123 | lemma nat_zero_as_int: | 
| 124 | "0 = nat 0" | |
| 125 | by simp | |
| 126 | ||
| 127 | lemma nat_one_as_int: | |
| 128 | "1 = nat 1" | |
| 129 | by simp | |
| 130 | ||
| 66298 | 131 | lemma nat_numeral_as_int: "numeral = (\<lambda>i. nat (numeral i))" by simp | 
| 67399 | 132 | lemma nat_less_as_int: "(<) = (\<lambda>a b. int a < int b)" by simp | 
| 133 | lemma nat_leq_as_int: "(\<le>) = (\<lambda>a b. int a \<le> int b)" by simp | |
| 66298 | 134 | lemma Suc_as_int: "Suc = (\<lambda>a. nat (int a + 1))" by (rule ext) simp | 
| 67399 | 135 | lemma nat_plus_as_int: "(+) = (\<lambda>a b. nat (int a + int b))" by (rule ext)+ simp | 
| 136 | lemma nat_minus_as_int: "(-) = (\<lambda>a b. nat (int a - int b))" by (rule ext)+ simp | |
| 137 | lemma nat_times_as_int: "( * ) = (\<lambda>a b. nat (int a * int b))" by (simp add: nat_mult_distrib) | |
| 138 | lemma nat_div_as_int: "(div) = (\<lambda>a b. nat (int a div int b))" by (simp add: nat_div_distrib) | |
| 139 | lemma nat_mod_as_int: "(mod) = (\<lambda>a b. nat (int a mod int b))" by (simp add: nat_mod_distrib) | |
| 66298 | 140 | |
| 141 | lemma int_Suc: "int (Suc n) = int n + 1" by simp | |
| 142 | lemma int_plus: "int (n + m) = int n + int m" by (rule of_nat_add) | |
| 143 | lemma int_minus: "int (n - m) = int (nat (int n - int m))" by auto | |
| 144 | ||
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changeset | 145 | lemma nat_int_comparison: | 
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changeset | 146 | fixes a b :: nat | 
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changeset | 147 | shows "(a = b) = (int a = int b)" | 
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changeset | 148 | and "(a < b) = (int a < int b)" | 
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changeset | 149 | and "(a \<le> b) = (int a \<le> int b)" | 
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changeset | 150 | by simp_all | 
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changeset | 151 | |
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changeset | 152 | lemma int_ops: | 
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changeset | 153 | fixes a b :: nat | 
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changeset | 154 | shows "int 0 = 0" | 
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changeset | 155 | and "int 1 = 1" | 
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changeset | 156 | and "int (numeral n) = numeral n" | 
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changeset | 157 | and "int (Suc a) = int a + 1" | 
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changeset | 158 | and "int (a + b) = int a + int b" | 
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changeset | 159 | and "int (a - b) = (if int a < int b then 0 else int a - int b)" | 
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changeset | 160 | and "int (a * b) = int a * int b" | 
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changeset | 161 | and "int (a div b) = int a div int b" | 
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changeset | 162 | and "int (a mod b) = int a mod int b" | 
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changeset | 163 | by (auto intro: zdiv_int zmod_int) | 
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changeset | 164 | |
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changeset | 165 | lemma int_if: | 
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changeset | 166 | fixes a b :: nat | 
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changeset | 167 | shows "int (if P then a else b) = (if P then int a else int b)" | 
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changeset | 168 | by simp | 
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changeset | 169 | |
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changeset | 170 | |
| 60758 | 171 | subsection \<open>Integer division and modulo for Z3\<close> | 
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changeset | 172 | |
| 60758 | 173 | text \<open> | 
| 61799 | 174 | The following Z3-inspired definitions are overspecified for the case where \<open>l = 0\<close>. This | 
| 175 | Schönheitsfehler is corrected in the \<open>div_as_z3div\<close> and \<open>mod_as_z3mod\<close> theorems. | |
| 60758 | 176 | \<close> | 
| 56102 | 177 | |
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changeset | 178 | definition z3div :: "int \<Rightarrow> int \<Rightarrow> int" where | 
| 56102 | 179 | "z3div k l = (if l \<ge> 0 then k div l else - (k div - l))" | 
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changeset | 180 | |
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changeset | 181 | definition z3mod :: "int \<Rightarrow> int \<Rightarrow> int" where | 
| 56102 | 182 | "z3mod k l = k mod (if l \<ge> 0 then l else - l)" | 
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changeset | 183 | |
| 56101 | 184 | lemma div_as_z3div: | 
| 56102 | 185 | "\<forall>k l. k div l = (if l = 0 then 0 else if l > 0 then z3div k l else z3div (- k) (- l))" | 
| 56101 | 186 | by (simp add: z3div_def) | 
| 187 | ||
| 188 | lemma mod_as_z3mod: | |
| 56102 | 189 | "\<forall>k l. k mod l = (if l = 0 then k else if l > 0 then z3mod k l else - z3mod (- k) (- l))" | 
| 56101 | 190 | by (simp add: z3mod_def) | 
| 191 | ||
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changeset | 192 | |
| 60758 | 193 | subsection \<open>Setup\<close> | 
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changeset | 194 | |
| 58061 | 195 | ML_file "Tools/SMT/smt_util.ML" | 
| 196 | ML_file "Tools/SMT/smt_failure.ML" | |
| 197 | ML_file "Tools/SMT/smt_config.ML" | |
| 198 | ML_file "Tools/SMT/smt_builtin.ML" | |
| 199 | ML_file "Tools/SMT/smt_datatypes.ML" | |
| 200 | ML_file "Tools/SMT/smt_normalize.ML" | |
| 201 | ML_file "Tools/SMT/smt_translate.ML" | |
| 202 | ML_file "Tools/SMT/smtlib.ML" | |
| 203 | ML_file "Tools/SMT/smtlib_interface.ML" | |
| 204 | ML_file "Tools/SMT/smtlib_proof.ML" | |
| 205 | ML_file "Tools/SMT/smtlib_isar.ML" | |
| 206 | ML_file "Tools/SMT/z3_proof.ML" | |
| 207 | ML_file "Tools/SMT/z3_isar.ML" | |
| 208 | ML_file "Tools/SMT/smt_solver.ML" | |
| 58360 | 209 | ML_file "Tools/SMT/cvc4_interface.ML" | 
| 59015 | 210 | ML_file "Tools/SMT/cvc4_proof_parse.ML" | 
| 58360 | 211 | ML_file "Tools/SMT/verit_proof.ML" | 
| 212 | ML_file "Tools/SMT/verit_isar.ML" | |
| 213 | ML_file "Tools/SMT/verit_proof_parse.ML" | |
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changeset | 214 | ML_file "Tools/SMT/conj_disj_perm.ML" | 
| 58061 | 215 | ML_file "Tools/SMT/z3_interface.ML" | 
| 216 | ML_file "Tools/SMT/z3_replay_util.ML" | |
| 217 | ML_file "Tools/SMT/z3_replay_rules.ML" | |
| 218 | ML_file "Tools/SMT/z3_replay_methods.ML" | |
| 219 | ML_file "Tools/SMT/z3_replay.ML" | |
| 220 | ML_file "Tools/SMT/smt_systems.ML" | |
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changeset | 221 | |
| 60758 | 222 | method_setup smt = \<open> | 
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changeset | 223 | Scan.optional Attrib.thms [] >> | 
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changeset | 224 | (fn thms => fn ctxt => | 
| 58061 | 225 | METHOD (fn facts => HEADGOAL (SMT_Solver.smt_tac ctxt (thms @ facts)))) | 
| 60758 | 226 | \<close> "apply an SMT solver to the current goal" | 
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changeset | 227 | |
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changeset | 228 | |
| 60758 | 229 | subsection \<open>Configuration\<close> | 
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changeset | 230 | |
| 60758 | 231 | text \<open> | 
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changeset | 232 | The current configuration can be printed by the command | 
| 61799 | 233 | \<open>smt_status\<close>, which shows the values of most options. | 
| 60758 | 234 | \<close> | 
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changeset | 235 | |
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changeset | 236 | |
| 60758 | 237 | subsection \<open>General configuration options\<close> | 
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changeset | 238 | |
| 60758 | 239 | text \<open> | 
| 61799 | 240 | The option \<open>smt_solver\<close> can be used to change the target SMT | 
| 241 | solver. The possible values can be obtained from the \<open>smt_status\<close> | |
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changeset | 242 | command. | 
| 60758 | 243 | \<close> | 
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changeset | 244 | |
| 58061 | 245 | declare [[smt_solver = z3]] | 
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changeset | 246 | |
| 60758 | 247 | text \<open> | 
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changeset | 248 | Since SMT solvers are potentially nonterminating, there is a timeout | 
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changeset | 249 | (given in seconds) to restrict their runtime. | 
| 60758 | 250 | \<close> | 
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changeset | 251 | |
| 58061 | 252 | declare [[smt_timeout = 20]] | 
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changeset | 253 | |
| 60758 | 254 | text \<open> | 
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changeset | 255 | SMT solvers apply randomized heuristics. In case a problem is not | 
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changeset | 256 | solvable by an SMT solver, changing the following option might help. | 
| 60758 | 257 | \<close> | 
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changeset | 258 | |
| 58061 | 259 | declare [[smt_random_seed = 1]] | 
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changeset | 260 | |
| 60758 | 261 | text \<open> | 
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changeset | 262 | In general, the binding to SMT solvers runs as an oracle, i.e, the SMT | 
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changeset | 263 | solvers are fully trusted without additional checks. The following | 
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changeset | 264 | option can cause the SMT solver to run in proof-producing mode, giving | 
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changeset | 265 | a checkable certificate. This is currently only implemented for Z3. | 
| 60758 | 266 | \<close> | 
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changeset | 267 | |
| 58061 | 268 | declare [[smt_oracle = false]] | 
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changeset | 269 | |
| 60758 | 270 | text \<open> | 
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changeset | 271 | Each SMT solver provides several commandline options to tweak its | 
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changeset | 272 | behaviour. They can be passed to the solver by setting the following | 
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changeset | 273 | options. | 
| 60758 | 274 | \<close> | 
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changeset | 275 | |
| 58061 | 276 | declare [[cvc3_options = ""]] | 
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changeset | 277 | declare [[cvc4_options = "--full-saturate-quant --inst-when=full-last-call --inst-no-entail --term-db-mode=relevant --multi-trigger-linear"]] | 
| 66559 | 278 | declare [[verit_options = "--index-sorts --index-fresh-sorts"]] | 
| 58061 | 279 | declare [[z3_options = ""]] | 
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changeset | 280 | |
| 60758 | 281 | text \<open> | 
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changeset | 282 | The SMT method provides an inference mechanism to detect simple triggers | 
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changeset | 283 | in quantified formulas, which might increase the number of problems | 
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changeset | 284 | solvable by SMT solvers (note: triggers guide quantifier instantiations | 
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changeset | 285 | in the SMT solver). To turn it on, set the following option. | 
| 60758 | 286 | \<close> | 
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changeset | 287 | |
| 58061 | 288 | declare [[smt_infer_triggers = false]] | 
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changeset | 289 | |
| 60758 | 290 | text \<open> | 
| 58360 | 291 | Enable the following option to use built-in support for datatypes, | 
| 292 | codatatypes, and records in CVC4. Currently, this is implemented only | |
| 293 | in oracle mode. | |
| 60758 | 294 | \<close> | 
| 58360 | 295 | |
| 296 | declare [[cvc4_extensions = false]] | |
| 297 | ||
| 60758 | 298 | text \<open> | 
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changeset | 299 | Enable the following option to use built-in support for div/mod, datatypes, | 
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changeset | 300 | and records in Z3. Currently, this is implemented only in oracle mode. | 
| 60758 | 301 | \<close> | 
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changeset | 302 | |
| 58061 | 303 | declare [[z3_extensions = false]] | 
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changeset | 304 | |
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changeset | 305 | |
| 60758 | 306 | subsection \<open>Certificates\<close> | 
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changeset | 307 | |
| 60758 | 308 | text \<open> | 
| 61799 | 309 | By setting the option \<open>smt_certificates\<close> to the name of a file, | 
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changeset | 310 | all following applications of an SMT solver a cached in that file. | 
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changeset | 311 | Any further application of the same SMT solver (using the very same | 
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changeset | 312 | configuration) re-uses the cached certificate instead of invoking the | 
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changeset | 313 | solver. An empty string disables caching certificates. | 
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changeset | 314 | |
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changeset | 315 | The filename should be given as an explicit path. It is good | 
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changeset | 316 | practice to use the name of the current theory (with ending | 
| 61799 | 317 | \<open>.certs\<close> instead of \<open>.thy\<close>) as the certificates file. | 
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changeset | 318 | Certificate files should be used at most once in a certain theory context, | 
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changeset | 319 | to avoid race conditions with other concurrent accesses. | 
| 60758 | 320 | \<close> | 
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changeset | 321 | |
| 58061 | 322 | declare [[smt_certificates = ""]] | 
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changeset | 323 | |
| 60758 | 324 | text \<open> | 
| 61799 | 325 | The option \<open>smt_read_only_certificates\<close> controls whether only | 
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changeset | 326 | stored certificates are should be used or invocation of an SMT solver | 
| 61799 | 327 | is allowed. When set to \<open>true\<close>, no SMT solver will ever be | 
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changeset | 328 | invoked and only the existing certificates found in the configured | 
| 61799 | 329 | cache are used; when set to \<open>false\<close> and there is no cached | 
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changeset | 330 | certificate for some proposition, then the configured SMT solver is | 
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changeset | 331 | invoked. | 
| 60758 | 332 | \<close> | 
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changeset | 333 | |
| 58061 | 334 | declare [[smt_read_only_certificates = false]] | 
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changeset | 335 | |
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changeset | 336 | |
| 60758 | 337 | subsection \<open>Tracing\<close> | 
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changeset | 338 | |
| 60758 | 339 | text \<open> | 
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changeset | 340 | The SMT method, when applied, traces important information. To | 
| 61799 | 341 | make it entirely silent, set the following option to \<open>false\<close>. | 
| 60758 | 342 | \<close> | 
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changeset | 343 | |
| 58061 | 344 | declare [[smt_verbose = true]] | 
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changeset | 345 | |
| 60758 | 346 | text \<open> | 
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changeset | 347 | For tracing the generated problem file given to the SMT solver as | 
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changeset | 348 | well as the returned result of the solver, the option | 
| 61799 | 349 | \<open>smt_trace\<close> should be set to \<open>true\<close>. | 
| 60758 | 350 | \<close> | 
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changeset | 351 | |
| 58061 | 352 | declare [[smt_trace = false]] | 
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changeset | 353 | |
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changeset | 354 | |
| 60758 | 355 | subsection \<open>Schematic rules for Z3 proof reconstruction\<close> | 
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changeset | 356 | |
| 60758 | 357 | text \<open> | 
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changeset | 358 | Several prof rules of Z3 are not very well documented. There are two | 
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changeset | 359 | lemma groups which can turn failing Z3 proof reconstruction attempts | 
| 61799 | 360 | into succeeding ones: the facts in \<open>z3_rule\<close> are tried prior to | 
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changeset | 361 | any implemented reconstruction procedure for all uncertain Z3 proof | 
| 61799 | 362 | rules; the facts in \<open>z3_simp\<close> are only fed to invocations of | 
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changeset | 363 | the simplifier when reconstructing theory-specific proof steps. | 
| 60758 | 364 | \<close> | 
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changeset | 365 | |
| 58061 | 366 | lemmas [z3_rule] = | 
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changeset | 367 | refl eq_commute conj_commute disj_commute simp_thms nnf_simps | 
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changeset | 368 | ring_distribs field_simps times_divide_eq_right times_divide_eq_left | 
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changeset | 369 | if_True if_False not_not | 
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changeset | 370 | NO_MATCH_def | 
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changeset | 371 | |
| 58061 | 372 | lemma [z3_rule]: | 
| 57169 | 373 | "(P \<and> Q) = (\<not> (\<not> P \<or> \<not> Q))" | 
| 374 | "(P \<and> Q) = (\<not> (\<not> Q \<or> \<not> P))" | |
| 375 | "(\<not> P \<and> Q) = (\<not> (P \<or> \<not> Q))" | |
| 376 | "(\<not> P \<and> Q) = (\<not> (\<not> Q \<or> P))" | |
| 377 | "(P \<and> \<not> Q) = (\<not> (\<not> P \<or> Q))" | |
| 378 | "(P \<and> \<not> Q) = (\<not> (Q \<or> \<not> P))" | |
| 379 | "(\<not> P \<and> \<not> Q) = (\<not> (P \<or> Q))" | |
| 380 | "(\<not> P \<and> \<not> Q) = (\<not> (Q \<or> P))" | |
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changeset | 381 | by auto | 
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changeset | 382 | |
| 58061 | 383 | lemma [z3_rule]: | 
| 57169 | 384 | "(P \<longrightarrow> Q) = (Q \<or> \<not> P)" | 
| 385 | "(\<not> P \<longrightarrow> Q) = (P \<or> Q)" | |
| 386 | "(\<not> P \<longrightarrow> Q) = (Q \<or> P)" | |
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changeset | 387 | "(True \<longrightarrow> P) = P" | 
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changeset | 388 | "(P \<longrightarrow> True) = True" | 
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changeset | 389 | "(False \<longrightarrow> P) = True" | 
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changeset | 390 | "(P \<longrightarrow> P) = True" | 
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changeset | 391 | "(\<not> (A \<longleftrightarrow> \<not> B)) \<longleftrightarrow> (A \<longleftrightarrow> B)" | 
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changeset | 392 | by auto | 
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changeset | 393 | |
| 58061 | 394 | lemma [z3_rule]: | 
| 67091 | 395 | "((P = Q) \<longrightarrow> R) = (R \<or> (Q = (\<not> P)))" | 
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changeset | 396 | by auto | 
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changeset | 397 | |
| 58061 | 398 | lemma [z3_rule]: | 
| 57169 | 399 | "(\<not> True) = False" | 
| 400 | "(\<not> False) = True" | |
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changeset | 401 | "(x = x) = True" | 
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changeset | 402 | "(P = True) = P" | 
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changeset | 403 | "(True = P) = P" | 
| 57169 | 404 | "(P = False) = (\<not> P)" | 
| 405 | "(False = P) = (\<not> P)" | |
| 406 | "((\<not> P) = P) = False" | |
| 407 | "(P = (\<not> P)) = False" | |
| 408 | "((\<not> P) = (\<not> Q)) = (P = Q)" | |
| 409 | "\<not> (P = (\<not> Q)) = (P = Q)" | |
| 410 | "\<not> ((\<not> P) = Q) = (P = Q)" | |
| 411 | "(P \<noteq> Q) = (Q = (\<not> P))" | |
| 412 | "(P = Q) = ((\<not> P \<or> Q) \<and> (P \<or> \<not> Q))" | |
| 413 | "(P \<noteq> Q) = ((\<not> P \<or> \<not> Q) \<and> (P \<or> Q))" | |
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changeset | 414 | by auto | 
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changeset | 415 | |
| 58061 | 416 | lemma [z3_rule]: | 
| 57169 | 417 | "(if P then P else \<not> P) = True" | 
| 418 | "(if \<not> P then \<not> P else P) = True" | |
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changeset | 419 | "(if P then True else False) = P" | 
| 57169 | 420 | "(if P then False else True) = (\<not> P)" | 
| 421 | "(if P then Q else True) = ((\<not> P) \<or> Q)" | |
| 422 | "(if P then Q else True) = (Q \<or> (\<not> P))" | |
| 423 | "(if P then Q else \<not> Q) = (P = Q)" | |
| 424 | "(if P then Q else \<not> Q) = (Q = P)" | |
| 425 | "(if P then \<not> Q else Q) = (P = (\<not> Q))" | |
| 426 | "(if P then \<not> Q else Q) = ((\<not> Q) = P)" | |
| 427 | "(if \<not> P then x else y) = (if P then y else x)" | |
| 428 | "(if P then (if Q then x else y) else x) = (if P \<and> (\<not> Q) then y else x)" | |
| 429 | "(if P then (if Q then x else y) else x) = (if (\<not> Q) \<and> P then y else x)" | |
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changeset | 430 | "(if P then (if Q then x else y) else y) = (if P \<and> Q then x else y)" | 
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changeset | 431 | "(if P then (if Q then x else y) else y) = (if Q \<and> P then x else y)" | 
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changeset | 432 | "(if P then x else if P then y else z) = (if P then x else z)" | 
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changeset | 433 | "(if P then x else if Q then x else y) = (if P \<or> Q then x else y)" | 
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changeset | 434 | "(if P then x else if Q then x else y) = (if Q \<or> P then x else y)" | 
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changeset | 435 | "(if P then x = y else x = z) = (x = (if P then y else z))" | 
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changeset | 436 | "(if P then x = y else y = z) = (y = (if P then x else z))" | 
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changeset | 437 | "(if P then x = y else z = y) = (y = (if P then x else z))" | 
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changeset | 438 | by auto | 
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changeset | 439 | |
| 58061 | 440 | lemma [z3_rule]: | 
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changeset | 441 | "0 + (x::int) = x" | 
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changeset | 442 | "x + 0 = x" | 
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changeset | 443 | "x + x = 2 * x" | 
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changeset | 444 | "0 * x = 0" | 
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changeset | 445 | "1 * x = x" | 
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changeset | 446 | "x + y = y + x" | 
| 57230 | 447 | by (auto simp add: mult_2) | 
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changeset | 448 | |
| 58061 | 449 | lemma [z3_rule]: (* for def-axiom *) | 
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changeset | 450 | "P = Q \<or> P \<or> Q" | 
| 57169 | 451 | "P = Q \<or> \<not> P \<or> \<not> Q" | 
| 452 | "(\<not> P) = Q \<or> \<not> P \<or> Q" | |
| 453 | "(\<not> P) = Q \<or> P \<or> \<not> Q" | |
| 454 | "P = (\<not> Q) \<or> \<not> P \<or> Q" | |
| 455 | "P = (\<not> Q) \<or> P \<or> \<not> Q" | |
| 456 | "P \<noteq> Q \<or> P \<or> \<not> Q" | |
| 457 | "P \<noteq> Q \<or> \<not> P \<or> Q" | |
| 458 | "P \<noteq> (\<not> Q) \<or> P \<or> Q" | |
| 459 | "(\<not> P) \<noteq> Q \<or> P \<or> Q" | |
| 460 | "P \<or> Q \<or> P \<noteq> (\<not> Q)" | |
| 461 | "P \<or> Q \<or> (\<not> P) \<noteq> Q" | |
| 462 | "P \<or> \<not> Q \<or> P \<noteq> Q" | |
| 463 | "\<not> P \<or> Q \<or> P \<noteq> Q" | |
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changeset | 464 | "P \<or> y = (if P then x else y)" | 
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changeset | 465 | "P \<or> (if P then x else y) = y" | 
| 57169 | 466 | "\<not> P \<or> x = (if P then x else y)" | 
| 467 | "\<not> P \<or> (if P then x else y) = x" | |
| 468 | "P \<or> R \<or> \<not> (if P then Q else R)" | |
| 469 | "\<not> P \<or> Q \<or> \<not> (if P then Q else R)" | |
| 470 | "\<not> (if P then Q else R) \<or> \<not> P \<or> Q" | |
| 471 | "\<not> (if P then Q else R) \<or> P \<or> R" | |
| 472 | "(if P then Q else R) \<or> \<not> P \<or> \<not> Q" | |
| 473 | "(if P then Q else R) \<or> P \<or> \<not> R" | |
| 474 | "(if P then \<not> Q else R) \<or> \<not> P \<or> Q" | |
| 475 | "(if P then Q else \<not> R) \<or> P \<or> R" | |
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changeset | 476 | by auto | 
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changeset | 477 | |
| 57230 | 478 | hide_type (open) symb_list pattern | 
| 479 | hide_const (open) Symb_Nil Symb_Cons trigger pat nopat fun_app z3div z3mod | |
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changeset | 480 | |
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changeset | 481 | end |