| author | immler | 
| Wed, 14 Nov 2018 14:25:57 -0500 | |
| changeset 69298 | 360bde07daf9 | 
| parent 68028 | 1f9f973eed2a | 
| child 69593 | 3dda49e08b9d | 
| permissions | -rw-r--r-- | 
| 63764 | 1 | (* Title: HOL/Library/Predicate_Compile_Alternative_Defs.thy | 
| 2 | Author: Lukas Bulwahn, TU Muenchen | |
| 3 | *) | |
| 4 | ||
| 35953 | 5 | theory Predicate_Compile_Alternative_Defs | 
| 63764 | 6 | imports Main | 
| 35953 | 7 | begin | 
| 8 | ||
| 60500 | 9 | section \<open>Common constants\<close> | 
| 35953 | 10 | |
| 11 | declare HOL.if_bool_eq_disj[code_pred_inline] | |
| 12 | ||
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changeset | 13 | declare bool_diff_def[code_pred_inline] | 
| 46905 | 14 | declare inf_bool_def[abs_def, code_pred_inline] | 
| 15 | declare less_bool_def[abs_def, code_pred_inline] | |
| 16 | declare le_bool_def[abs_def, code_pred_inline] | |
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changeset | 17 | |
| 67399 | 18 | lemma min_bool_eq [code_pred_inline]: "(min :: bool => bool => bool) == (\<and>)" | 
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changeset | 19 | by (rule eq_reflection) (auto simp add: fun_eq_iff min_def) | 
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changeset | 20 | |
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changeset | 21 | lemma [code_pred_inline]: | 
| 67091 | 22 | "((A::bool) \<noteq> (B::bool)) = ((A \<and> \<not> B) \<or> (B \<and> \<not> A))" | 
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changeset | 23 | by fast | 
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changeset | 24 | |
| 60500 | 25 | setup \<open>Predicate_Compile_Data.ignore_consts [@{const_name Let}]\<close>
 | 
| 35953 | 26 | |
| 60500 | 27 | section \<open>Pairs\<close> | 
| 35953 | 28 | |
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changeset | 29 | setup \<open>Predicate_Compile_Data.ignore_consts [@{const_name fst}, @{const_name snd}, @{const_name case_prod}]\<close>
 | 
| 35953 | 30 | |
| 60500 | 31 | section \<open>Filters\<close> | 
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changeset | 32 | |
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changeset | 33 | (*TODO: shouldn't this be done by typedef? *) | 
| 60500 | 34 | setup \<open>Predicate_Compile_Data.ignore_consts [@{const_name Abs_filter}, @{const_name Rep_filter}]\<close>
 | 
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changeset | 35 | |
| 60500 | 36 | section \<open>Bounded quantifiers\<close> | 
| 35953 | 37 | |
| 38 | declare Ball_def[code_pred_inline] | |
| 39 | declare Bex_def[code_pred_inline] | |
| 40 | ||
| 60500 | 41 | section \<open>Operations on Predicates\<close> | 
| 35953 | 42 | |
| 43 | lemma Diff[code_pred_inline]: | |
| 44 | "(A - B) = (%x. A x \<and> \<not> B x)" | |
| 46884 | 45 | by (simp add: fun_eq_iff) | 
| 35953 | 46 | |
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changeset | 47 | lemma subset_eq[code_pred_inline]: | 
| 67091 | 48 | "(P :: 'a \<Rightarrow> bool) < (Q :: 'a \<Rightarrow> bool) \<equiv> ((\<exists>x. Q x \<and> (\<not> P x)) \<and> (\<forall>x. P x \<longrightarrow> Q x))" | 
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changeset | 49 | by (rule eq_reflection) (auto simp add: less_fun_def le_fun_def) | 
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changeset | 50 | |
| 35953 | 51 | lemma set_equality[code_pred_inline]: | 
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changeset | 52 | "A = B \<longleftrightarrow> (\<forall>x. A x \<longrightarrow> B x) \<and> (\<forall>x. B x \<longrightarrow> A x)" | 
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changeset | 53 | by (auto simp add: fun_eq_iff) | 
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changeset | 54 | |
| 60500 | 55 | section \<open>Setup for Numerals\<close> | 
| 35953 | 56 | |
| 60500 | 57 | setup \<open>Predicate_Compile_Data.ignore_consts [@{const_name numeral}]\<close>
 | 
| 58 | setup \<open>Predicate_Compile_Data.keep_functions [@{const_name numeral}]\<close>
 | |
| 62597 | 59 | setup \<open>Predicate_Compile_Data.ignore_consts [@{const_name Char}]\<close>
 | 
| 60 | setup \<open>Predicate_Compile_Data.keep_functions [@{const_name Char}]\<close>
 | |
| 35953 | 61 | |
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changeset | 62 | setup \<open>Predicate_Compile_Data.ignore_consts [@{const_name divide}, @{const_name modulo}, @{const_name times}]\<close>
 | 
| 35953 | 63 | |
| 60500 | 64 | section \<open>Arithmetic operations\<close> | 
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changeset | 65 | |
| 60500 | 66 | subsection \<open>Arithmetic on naturals and integers\<close> | 
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changeset | 67 | |
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changeset | 68 | definition plus_eq_nat :: "nat => nat => nat => bool" | 
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changeset | 69 | where | 
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changeset | 70 | "plus_eq_nat x y z = (x + y = z)" | 
| 35953 | 71 | |
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changeset | 72 | definition minus_eq_nat :: "nat => nat => nat => bool" | 
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changeset | 73 | where | 
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changeset | 74 | "minus_eq_nat x y z = (x - y = z)" | 
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changeset | 75 | |
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changeset | 76 | definition plus_eq_int :: "int => int => int => bool" | 
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changeset | 77 | where | 
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changeset | 78 | "plus_eq_int x y z = (x + y = z)" | 
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changeset | 79 | |
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changeset | 80 | definition minus_eq_int :: "int => int => int => bool" | 
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changeset | 81 | where | 
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changeset | 82 | "minus_eq_int x y z = (x - y = z)" | 
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changeset | 83 | |
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changeset | 84 | definition subtract | 
| 35953 | 85 | where | 
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changeset | 86 | [code_unfold]: "subtract x y = y - x" | 
| 35953 | 87 | |
| 60500 | 88 | setup \<open> | 
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changeset | 89 | let | 
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changeset | 90 | val Fun = Predicate_Compile_Aux.Fun | 
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changeset | 91 | val Input = Predicate_Compile_Aux.Input | 
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changeset | 92 | val Output = Predicate_Compile_Aux.Output | 
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changeset | 93 | val Bool = Predicate_Compile_Aux.Bool | 
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changeset | 94 | val iio = Fun (Input, Fun (Input, Fun (Output, Bool))) | 
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changeset | 95 | val ioi = Fun (Input, Fun (Output, Fun (Input, Bool))) | 
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changeset | 96 | val oii = Fun (Output, Fun (Input, Fun (Input, Bool))) | 
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changeset | 97 | val ooi = Fun (Output, Fun (Output, Fun (Input, Bool))) | 
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changeset | 98 |   val plus_nat = Core_Data.functional_compilation @{const_name plus} iio
 | 
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changeset | 99 |   val minus_nat = Core_Data.functional_compilation @{const_name "minus"} iio
 | 
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changeset | 100 | fun subtract_nat compfuns (_ : typ) = | 
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changeset | 101 | let | 
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changeset | 102 |       val T = Predicate_Compile_Aux.mk_monadT compfuns @{typ nat}
 | 
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changeset | 103 | in | 
| 44241 | 104 |       absdummy @{typ nat} (absdummy @{typ nat}
 | 
| 105 |         (Const (@{const_name "If"}, @{typ bool} --> T --> T --> T) $
 | |
| 67399 | 106 |           (@{term "(>) :: nat => nat => bool"} $ Bound 1 $ Bound 0) $
 | 
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changeset | 107 |           Predicate_Compile_Aux.mk_empty compfuns @{typ nat} $
 | 
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changeset | 108 | Predicate_Compile_Aux.mk_single compfuns | 
| 67399 | 109 |           (@{term "(-) :: nat => nat => nat"} $ Bound 0 $ Bound 1)))
 | 
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changeset | 110 | end | 
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changeset | 111 | fun enumerate_addups_nat compfuns (_ : typ) = | 
| 44241 | 112 |     absdummy @{typ nat} (Predicate_Compile_Aux.mk_iterate_upto compfuns @{typ "nat * nat"}
 | 
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changeset | 113 |     (absdummy @{typ natural} (@{term "Pair :: nat => nat => nat * nat"} $
 | 
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changeset | 114 |       (@{term "nat_of_natural"} $ Bound 0) $
 | 
| 67399 | 115 |       (@{term "(-) :: nat => nat => nat"} $ Bound 1 $ (@{term "nat_of_natural"} $ Bound 0))),
 | 
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changeset | 116 |       @{term "0 :: natural"}, @{term "natural_of_nat"} $ Bound 0))
 | 
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changeset | 117 | fun enumerate_nats compfuns (_ : typ) = | 
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changeset | 118 | let | 
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changeset | 119 |       val (single_const, _) = strip_comb (Predicate_Compile_Aux.mk_single compfuns @{term "0 :: nat"})
 | 
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changeset | 120 |       val T = Predicate_Compile_Aux.mk_monadT compfuns @{typ nat}
 | 
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changeset | 121 | in | 
| 44241 | 122 |       absdummy @{typ nat} (absdummy @{typ nat}
 | 
| 123 |         (Const (@{const_name If}, @{typ bool} --> T --> T --> T) $
 | |
| 67399 | 124 |           (@{term "(=) :: nat => nat => bool"} $ Bound 0 $ @{term "0::nat"}) $
 | 
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changeset | 125 |           (Predicate_Compile_Aux.mk_iterate_upto compfuns @{typ nat} (@{term "nat_of_natural"},
 | 
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changeset | 126 |             @{term "0::natural"}, @{term "natural_of_nat"} $ Bound 1)) $
 | 
| 67399 | 127 |             (single_const $ (@{term "(+) :: nat => nat => nat"} $ Bound 1 $ Bound 0))))
 | 
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changeset | 128 | end | 
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changeset | 129 | in | 
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changeset | 130 |   Core_Data.force_modes_and_compilations @{const_name plus_eq_nat}
 | 
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changeset | 131 | [(iio, (plus_nat, false)), (oii, (subtract_nat, false)), (ioi, (subtract_nat, false)), | 
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changeset | 132 | (ooi, (enumerate_addups_nat, false))] | 
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changeset | 133 | #> Predicate_Compile_Fun.add_function_predicate_translation | 
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changeset | 134 |        (@{term "plus :: nat => nat => nat"}, @{term "plus_eq_nat"})
 | 
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changeset | 135 |   #> Core_Data.force_modes_and_compilations @{const_name minus_eq_nat}
 | 
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changeset | 136 | [(iio, (minus_nat, false)), (oii, (enumerate_nats, false))] | 
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changeset | 137 | #> Predicate_Compile_Fun.add_function_predicate_translation | 
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changeset | 138 |       (@{term "minus :: nat => nat => nat"}, @{term "minus_eq_nat"})
 | 
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changeset | 139 |   #> Core_Data.force_modes_and_functions @{const_name plus_eq_int}
 | 
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changeset | 140 |     [(iio, (@{const_name plus}, false)), (ioi, (@{const_name subtract}, false)),
 | 
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changeset | 141 |      (oii, (@{const_name subtract}, false))]
 | 
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changeset | 142 | #> Predicate_Compile_Fun.add_function_predicate_translation | 
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changeset | 143 |        (@{term "plus :: int => int => int"}, @{term "plus_eq_int"})
 | 
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changeset | 144 |   #> Core_Data.force_modes_and_functions @{const_name minus_eq_int}
 | 
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changeset | 145 |     [(iio, (@{const_name minus}, false)), (oii, (@{const_name plus}, false)),
 | 
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changeset | 146 |      (ioi, (@{const_name minus}, false))]
 | 
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changeset | 147 | #> Predicate_Compile_Fun.add_function_predicate_translation | 
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changeset | 148 |       (@{term "minus :: int => int => int"}, @{term "minus_eq_int"})
 | 
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changeset | 149 | end | 
| 60500 | 150 | \<close> | 
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changeset | 151 | |
| 60500 | 152 | subsection \<open>Inductive definitions for ordering on naturals\<close> | 
| 35953 | 153 | |
| 154 | inductive less_nat | |
| 155 | where | |
| 156 | "less_nat 0 (Suc y)" | |
| 157 | | "less_nat x y ==> less_nat (Suc x) (Suc y)" | |
| 158 | ||
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changeset | 159 | lemma less_nat[code_pred_inline]: | 
| 35953 | 160 | "x < y = less_nat x y" | 
| 161 | apply (rule iffI) | |
| 162 | apply (induct x arbitrary: y) | |
| 163 | apply (case_tac y) apply (auto intro: less_nat.intros) | |
| 164 | apply (case_tac y) | |
| 165 | apply (auto intro: less_nat.intros) | |
| 166 | apply (induct rule: less_nat.induct) | |
| 167 | apply auto | |
| 168 | done | |
| 169 | ||
| 170 | inductive less_eq_nat | |
| 171 | where | |
| 172 | "less_eq_nat 0 y" | |
| 173 | | "less_eq_nat x y ==> less_eq_nat (Suc x) (Suc y)" | |
| 174 | ||
| 175 | lemma [code_pred_inline]: | |
| 176 | "x <= y = less_eq_nat x y" | |
| 177 | apply (rule iffI) | |
| 178 | apply (induct x arbitrary: y) | |
| 179 | apply (auto intro: less_eq_nat.intros) | |
| 180 | apply (case_tac y) apply (auto intro: less_eq_nat.intros) | |
| 181 | apply (induct rule: less_eq_nat.induct) | |
| 182 | apply auto done | |
| 183 | ||
| 60500 | 184 | section \<open>Alternative list definitions\<close> | 
| 35953 | 185 | |
| 61585 | 186 | subsection \<open>Alternative rules for \<open>length\<close>\<close> | 
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changeset | 187 | |
| 56679 | 188 | definition size_list' :: "'a list => nat" | 
| 189 | where "size_list' = size" | |
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changeset | 190 | |
| 56679 | 191 | lemma size_list'_simps: | 
| 192 | "size_list' [] = 0" | |
| 193 | "size_list' (x # xs) = Suc (size_list' xs)" | |
| 194 | by (auto simp add: size_list'_def) | |
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changeset | 195 | |
| 56679 | 196 | declare size_list'_simps[code_pred_def] | 
| 197 | declare size_list'_def[symmetric, code_pred_inline] | |
| 35953 | 198 | |
| 199 | ||
| 61585 | 200 | subsection \<open>Alternative rules for \<open>list_all2\<close>\<close> | 
| 35953 | 201 | |
| 202 | lemma list_all2_NilI [code_pred_intro]: "list_all2 P [] []" | |
| 203 | by auto | |
| 204 | ||
| 205 | lemma list_all2_ConsI [code_pred_intro]: "list_all2 P xs ys ==> P x y ==> list_all2 P (x#xs) (y#ys)" | |
| 206 | by auto | |
| 207 | ||
| 208 | code_pred [skip_proof] list_all2 | |
| 209 | proof - | |
| 210 | case list_all2 | |
| 211 | from this show thesis | |
| 212 | apply - | |
| 213 | apply (case_tac xb) | |
| 214 | apply (case_tac xc) | |
| 215 | apply auto | |
| 216 | apply (case_tac xc) | |
| 217 | apply auto | |
| 218 | done | |
| 219 | qed | |
| 220 | ||
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changeset | 221 | subsection \<open>Alternative rules for membership in lists\<close> | 
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changeset | 222 | |
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changeset | 223 | declare in_set_member[code_pred_inline] | 
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changeset | 224 | |
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changeset | 225 | lemma member_intros [code_pred_intro]: | 
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changeset | 226 | "List.member (x#xs) x" | 
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changeset | 227 | "List.member xs x \<Longrightarrow> List.member (y#xs) x" | 
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changeset | 228 | by(simp_all add: List.member_def) | 
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changeset | 229 | |
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changeset | 230 | code_pred List.member | 
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changeset | 231 | by(auto simp add: List.member_def elim: list.set_cases) | 
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changeset | 232 | |
| 61180 | 233 | code_identifier constant member_i_i | 
| 234 | \<rightharpoonup> (SML) "List.member_i_i" | |
| 235 | and (OCaml) "List.member_i_i" | |
| 236 | and (Haskell) "List.member_i_i" | |
| 237 | and (Scala) "List.member_i_i" | |
| 238 | ||
| 239 | code_identifier constant member_i_o | |
| 240 | \<rightharpoonup> (SML) "List.member_i_o" | |
| 241 | and (OCaml) "List.member_i_o" | |
| 242 | and (Haskell) "List.member_i_o" | |
| 243 | and (Scala) "List.member_i_o" | |
| 244 | ||
| 60500 | 245 | section \<open>Setup for String.literal\<close> | 
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changeset | 246 | |
| 68028 | 247 | setup \<open>Predicate_Compile_Data.ignore_consts [@{const_name String.Literal}]\<close>
 | 
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changeset | 248 | |
| 60500 | 249 | section \<open>Simplification rules for optimisation\<close> | 
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changeset | 250 | |
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changeset | 251 | lemma [code_pred_simp]: "\<not> False == True" | 
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changeset | 252 | by auto | 
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changeset | 253 | |
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changeset | 254 | lemma [code_pred_simp]: "\<not> True == False" | 
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changeset | 255 | by auto | 
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changeset | 256 | |
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changeset | 257 | lemma less_nat_k_0 [code_pred_simp]: "less_nat k 0 == False" | 
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changeset | 258 | unfolding less_nat[symmetric] by auto | 
| 35953 | 259 | |
| 46884 | 260 | end |