| author | blanchet | 
| Wed, 14 Jun 2023 15:47:27 +0200 | |
| changeset 78149 | d3122089b67c | 
| parent 74319 | 54b2e5f771da | 
| child 78791 | 4f7dce5c1a81 | 
| permissions | -rw-r--r-- | 
| 23146 | 1 | (* Title: ZF/int_arith.ML | 
| 2 | Author: Larry Paulson | |
| 3 | ||
| 4 | Simprocs for linear arithmetic. | |
| 5 | *) | |
| 6 | ||
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changeset | 7 | signature INT_NUMERAL_SIMPROCS = | 
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changeset | 8 | sig | 
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changeset | 9 | val cancel_numerals: simproc list | 
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changeset | 10 | val combine_numerals: simproc | 
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changeset | 11 | val combine_numerals_prod: simproc | 
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changeset | 12 | end | 
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changeset | 13 | |
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changeset | 14 | structure Int_Numeral_Simprocs: INT_NUMERAL_SIMPROCS = | 
| 23146 | 15 | struct | 
| 16 | ||
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changeset | 17 | (* abstract syntax operations *) | 
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changeset | 18 | |
| 69593 | 19 | fun mk_bit 0 = \<^term>\<open>0\<close> | 
| 20 | | mk_bit 1 = \<^term>\<open>succ(0)\<close> | |
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changeset | 21 |   | mk_bit _ = raise TERM ("mk_bit", []);
 | 
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changeset | 22 | |
| 69593 | 23 | fun dest_bit \<^term>\<open>0\<close> = 0 | 
| 24 | | dest_bit \<^term>\<open>succ(0)\<close> = 1 | |
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changeset | 25 |   | dest_bit t = raise TERM ("dest_bit", [t]);
 | 
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changeset | 26 | |
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changeset | 27 | fun mk_bin i = | 
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changeset | 28 | let | 
| 69593 | 29 | fun term_of [] = \<^term>\<open>Pls\<close> | 
| 30 | | term_of [~1] = \<^term>\<open>Min\<close> | |
| 31 | | term_of (b :: bs) = \<^term>\<open>Bit\<close> $ term_of bs $ mk_bit b; | |
| 35123 | 32 | in term_of (Numeral_Syntax.make_binary i) end; | 
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changeset | 33 | |
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changeset | 34 | fun dest_bin tm = | 
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changeset | 35 | let | 
| 69593 | 36 | fun bin_of \<^term>\<open>Pls\<close> = [] | 
| 37 | | bin_of \<^term>\<open>Min\<close> = [~1] | |
| 38 | | bin_of (\<^term>\<open>Bit\<close> $ bs $ b) = dest_bit b :: bin_of bs | |
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changeset | 39 |       | bin_of _ = raise TERM ("dest_bin", [tm]);
 | 
| 35123 | 40 | in Numeral_Syntax.dest_binary (bin_of tm) end; | 
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changeset | 41 | |
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changeset | 42 | |
| 23146 | 43 | (*Utilities*) | 
| 44 | ||
| 74296 | 45 | fun mk_numeral i = \<^Const>\<open>integ_of\<close> $ mk_bin i; | 
| 23146 | 46 | |
| 74294 | 47 | fun dest_numeral \<^Const_>\<open>integ_of for w\<close> = dest_bin w | 
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changeset | 48 |   | dest_numeral t = raise TERM ("dest_numeral", [t]);
 | 
| 23146 | 49 | |
| 50 | fun find_first_numeral past (t::terms) = | |
| 51 | ((dest_numeral t, rev past @ terms) | |
| 52 | handle TERM _ => find_first_numeral (t::past) terms) | |
| 53 |   | find_first_numeral past [] = raise TERM("find_first_numeral", []);
 | |
| 54 | ||
| 55 | val zero = mk_numeral 0; | |
| 74297 | 56 | fun mk_plus (t, u) = \<^Const>\<open>zadd for t u\<close>; | 
| 23146 | 57 | |
| 58 | (*Thus mk_sum[t] yields t+#0; longer sums don't have a trailing zero*) | |
| 59 | fun mk_sum [] = zero | |
| 60 | | mk_sum [t,u] = mk_plus (t, u) | |
| 61 | | mk_sum (t :: ts) = mk_plus (t, mk_sum ts); | |
| 62 | ||
| 63 | (*this version ALWAYS includes a trailing zero*) | |
| 64 | fun long_mk_sum [] = zero | |
| 65 | | long_mk_sum (t :: ts) = mk_plus (t, mk_sum ts); | |
| 66 | ||
| 67 | (*decompose additions AND subtractions as a sum*) | |
| 74294 | 68 | fun dest_summing (pos, \<^Const_>\<open>zadd for t u\<close>, ts) = | 
| 23146 | 69 | dest_summing (pos, t, dest_summing (pos, u, ts)) | 
| 74294 | 70 | | dest_summing (pos, \<^Const_>\<open>zdiff for t u\<close>, ts) = | 
| 23146 | 71 | dest_summing (pos, t, dest_summing (not pos, u, ts)) | 
| 72 | | dest_summing (pos, t, ts) = | |
| 74296 | 73 | if pos then t::ts else \<^Const>\<open>zminus for t\<close> :: ts; | 
| 23146 | 74 | |
| 75 | fun dest_sum t = dest_summing (true, t, []); | |
| 76 | ||
| 77 | val one = mk_numeral 1; | |
| 74297 | 78 | fun mk_times (t, u) = \<^Const>\<open>zmult for t u\<close>; | 
| 23146 | 79 | |
| 80 | fun mk_prod [] = one | |
| 81 | | mk_prod [t] = t | |
| 82 | | mk_prod (t :: ts) = if t = one then mk_prod ts | |
| 83 | else mk_times (t, mk_prod ts); | |
| 84 | ||
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changeset | 85 | fun dest_prod tm = | 
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changeset | 86 | let val (t,u) = \<^Const_fn>\<open>zmult for t u => \<open>(t, u)\<close>\<close> tm | 
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changeset | 87 | in dest_prod t @ dest_prod u end | 
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changeset | 88 | handle TERM _ => [tm]; | 
| 23146 | 89 | |
| 90 | (*DON'T do the obvious simplifications; that would create special cases*) | |
| 91 | fun mk_coeff (k, t) = mk_times (mk_numeral k, t); | |
| 92 | ||
| 93 | (*Express t as a product of (possibly) a numeral with other sorted terms*) | |
| 74294 | 94 | fun dest_coeff sign \<^Const_>\<open>zminus for t\<close> = dest_coeff (~sign) t | 
| 23146 | 95 | | dest_coeff sign t = | 
| 35408 | 96 | let val ts = sort Term_Ord.term_ord (dest_prod t) | 
| 23146 | 97 | val (n, ts') = find_first_numeral [] ts | 
| 98 | handle TERM _ => (1, ts) | |
| 99 | in (sign*n, mk_prod ts') end; | |
| 100 | ||
| 101 | (*Find first coefficient-term THAT MATCHES u*) | |
| 102 | fun find_first_coeff past u [] = raise TERM("find_first_coeff", [])
 | |
| 103 | | find_first_coeff past u (t::terms) = | |
| 104 | let val (n,u') = dest_coeff 1 t | |
| 105 | in if u aconv u' then (n, rev past @ terms) | |
| 106 | else find_first_coeff (t::past) u terms | |
| 107 | end | |
| 108 | handle TERM _ => find_first_coeff (t::past) u terms; | |
| 109 | ||
| 110 | ||
| 111 | (*Simplify #1*n and n*#1 to n*) | |
| 24893 | 112 | val add_0s = [@{thm zadd_0_intify}, @{thm zadd_0_right_intify}];
 | 
| 23146 | 113 | |
| 24893 | 114 | val mult_1s = [@{thm zmult_1_intify}, @{thm zmult_1_right_intify},
 | 
| 115 |                @{thm zmult_minus1}, @{thm zmult_minus1_right}];
 | |
| 23146 | 116 | |
| 24893 | 117 | val tc_rules = [@{thm integ_of_type}, @{thm intify_in_int},
 | 
| 118 |                 @{thm int_of_type}, @{thm zadd_type}, @{thm zdiff_type}, @{thm zmult_type}] @ 
 | |
| 119 |                @{thms bin.intros};
 | |
| 120 | val intifys = [@{thm intify_ident}, @{thm zadd_intify1}, @{thm zadd_intify2},
 | |
| 121 |                @{thm zdiff_intify1}, @{thm zdiff_intify2}, @{thm zmult_intify1}, @{thm zmult_intify2},
 | |
| 122 |                @{thm zless_intify1}, @{thm zless_intify2}, @{thm zle_intify1}, @{thm zle_intify2}];
 | |
| 23146 | 123 | |
| 124 | (*To perform binary arithmetic*) | |
| 24893 | 125 | val bin_simps = [@{thm add_integ_of_left}] @ @{thms bin_arith_simps} @ @{thms bin_rel_simps};
 | 
| 23146 | 126 | |
| 127 | (*To evaluate binary negations of coefficients*) | |
| 24893 | 128 | val zminus_simps = @{thms NCons_simps} @
 | 
| 35409 | 129 |                    [@{thm integ_of_minus} RS @{thm sym},
 | 
| 24893 | 130 |                     @{thm bin_minus_1}, @{thm bin_minus_0}, @{thm bin_minus_Pls}, @{thm bin_minus_Min},
 | 
| 131 |                     @{thm bin_pred_1}, @{thm bin_pred_0}, @{thm bin_pred_Pls}, @{thm bin_pred_Min}];
 | |
| 23146 | 132 | |
| 133 | (*To let us treat subtraction as addition*) | |
| 24893 | 134 | val diff_simps = [@{thm zdiff_def}, @{thm zminus_zadd_distrib}, @{thm zminus_zminus}];
 | 
| 23146 | 135 | |
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changeset | 136 | (*push the unary minus down*) | 
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changeset | 137 | val int_minus_mult_eq_1_to_2 = @{lemma "$- w $* z = w $* $- z" by simp};
 | 
| 23146 | 138 | |
| 139 | (*to extract again any uncancelled minuses*) | |
| 140 | val int_minus_from_mult_simps = | |
| 24893 | 141 |     [@{thm zminus_zminus}, @{thm zmult_zminus}, @{thm zmult_zminus_right}];
 | 
| 23146 | 142 | |
| 143 | (*combine unary minus with numeric literals, however nested within a product*) | |
| 144 | val int_mult_minus_simps = | |
| 35409 | 145 |     [@{thm zmult_assoc}, @{thm zmult_zminus} RS @{thm sym}, int_minus_mult_eq_1_to_2];
 | 
| 23146 | 146 | |
| 147 | structure CancelNumeralsCommon = | |
| 148 | struct | |
| 59530 | 149 | val mk_sum = (fn _ : typ => mk_sum) | 
| 150 | val dest_sum = dest_sum | |
| 151 | val mk_coeff = mk_coeff | |
| 152 | val dest_coeff = dest_coeff 1 | |
| 153 | val find_first_coeff = find_first_coeff [] | |
| 154 |   fun trans_tac ctxt = ArithData.gen_trans_tac ctxt @{thm iff_trans}
 | |
| 23146 | 155 | |
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changeset | 156 | val norm_ss1 = | 
| 69593 | 157 | simpset_of (put_simpset ZF_ss \<^context> | 
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changeset | 158 |       addsimps add_0s @ mult_1s @ diff_simps @ zminus_simps @ @{thms zadd_ac})
 | 
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changeset | 159 | val norm_ss2 = | 
| 69593 | 160 | simpset_of (put_simpset ZF_ss \<^context> | 
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changeset | 161 | addsimps bin_simps @ int_mult_minus_simps @ intifys) | 
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changeset | 162 | val norm_ss3 = | 
| 69593 | 163 | simpset_of (put_simpset ZF_ss \<^context> | 
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changeset | 164 |       addsimps int_minus_from_mult_simps @ @{thms zadd_ac} @ @{thms zmult_ac} @ tc_rules @ intifys)
 | 
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changeset | 165 | fun norm_tac ctxt = | 
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changeset | 166 | ALLGOALS (asm_simp_tac (put_simpset norm_ss1 ctxt)) | 
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changeset | 167 | THEN ALLGOALS (asm_simp_tac (put_simpset norm_ss2 ctxt)) | 
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changeset | 168 | THEN ALLGOALS (asm_simp_tac (put_simpset norm_ss3 ctxt)) | 
| 23146 | 169 | |
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changeset | 170 | val numeral_simp_ss = | 
| 69593 | 171 | simpset_of (put_simpset ZF_ss \<^context> | 
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changeset | 172 | addsimps add_0s @ bin_simps @ tc_rules @ intifys) | 
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changeset | 173 | fun numeral_simp_tac ctxt = | 
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changeset | 174 | ALLGOALS (simp_tac (put_simpset numeral_simp_ss ctxt)) | 
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changeset | 175 | THEN ALLGOALS (asm_simp_tac ctxt) | 
| 23146 | 176 | val simplify_meta_eq = ArithData.simplify_meta_eq (add_0s @ mult_1s) | 
| 177 | end; | |
| 178 | ||
| 179 | ||
| 180 | structure EqCancelNumerals = CancelNumeralsFun | |
| 181 | (open CancelNumeralsCommon | |
| 182 | val prove_conv = ArithData.prove_conv "inteq_cancel_numerals" | |
| 183 | val mk_bal = FOLogic.mk_eq | |
| 184 | val dest_bal = FOLogic.dest_eq | |
| 35409 | 185 |   val bal_add1 = @{thm eq_add_iff1} RS @{thm iff_trans}
 | 
| 186 |   val bal_add2 = @{thm eq_add_iff2} RS @{thm iff_trans}
 | |
| 23146 | 187 | ); | 
| 188 | ||
| 189 | structure LessCancelNumerals = CancelNumeralsFun | |
| 190 | (open CancelNumeralsCommon | |
| 191 | val prove_conv = ArithData.prove_conv "intless_cancel_numerals" | |
| 74297 | 192 | fun mk_bal (t, u) = \<^Const>\<open>zless for t u\<close> | 
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changeset | 193 | val dest_bal = \<^Const_fn>\<open>zless for t u => \<open>(t, u)\<close>\<close> | 
| 35409 | 194 |   val bal_add1 = @{thm less_add_iff1} RS @{thm iff_trans}
 | 
| 195 |   val bal_add2 = @{thm less_add_iff2} RS @{thm iff_trans}
 | |
| 23146 | 196 | ); | 
| 197 | ||
| 198 | structure LeCancelNumerals = CancelNumeralsFun | |
| 199 | (open CancelNumeralsCommon | |
| 200 | val prove_conv = ArithData.prove_conv "intle_cancel_numerals" | |
| 74297 | 201 | fun mk_bal (t, u) = \<^Const>\<open>zle for t u\<close> | 
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changeset | 202 | val dest_bal = \<^Const_fn>\<open>zle for t u => \<open>(t, u)\<close>\<close> | 
| 35409 | 203 |   val bal_add1 = @{thm le_add_iff1} RS @{thm iff_trans}
 | 
| 204 |   val bal_add2 = @{thm le_add_iff2} RS @{thm iff_trans}
 | |
| 23146 | 205 | ); | 
| 206 | ||
| 207 | val cancel_numerals = | |
| 69593 | 208 | [Simplifier.make_simproc \<^context> "inteq_cancel_numerals" | 
| 61144 | 209 |    {lhss =
 | 
| 69593 | 210 | [\<^term>\<open>l $+ m = n\<close>, \<^term>\<open>l = m $+ n\<close>, | 
| 211 | \<^term>\<open>l $- m = n\<close>, \<^term>\<open>l = m $- n\<close>, | |
| 212 | \<^term>\<open>l $* m = n\<close>, \<^term>\<open>l = m $* n\<close>], | |
| 62913 | 213 | proc = K EqCancelNumerals.proc}, | 
| 69593 | 214 | Simplifier.make_simproc \<^context> "intless_cancel_numerals" | 
| 61144 | 215 |    {lhss =
 | 
| 69593 | 216 | [\<^term>\<open>l $+ m $< n\<close>, \<^term>\<open>l $< m $+ n\<close>, | 
| 217 | \<^term>\<open>l $- m $< n\<close>, \<^term>\<open>l $< m $- n\<close>, | |
| 218 | \<^term>\<open>l $* m $< n\<close>, \<^term>\<open>l $< m $* n\<close>], | |
| 62913 | 219 | proc = K LessCancelNumerals.proc}, | 
| 69593 | 220 | Simplifier.make_simproc \<^context> "intle_cancel_numerals" | 
| 61144 | 221 |    {lhss =
 | 
| 69593 | 222 | [\<^term>\<open>l $+ m $\<le> n\<close>, \<^term>\<open>l $\<le> m $+ n\<close>, | 
| 223 | \<^term>\<open>l $- m $\<le> n\<close>, \<^term>\<open>l $\<le> m $- n\<close>, | |
| 224 | \<^term>\<open>l $* m $\<le> n\<close>, \<^term>\<open>l $\<le> m $* n\<close>], | |
| 62913 | 225 | proc = K LeCancelNumerals.proc}]; | 
| 23146 | 226 | |
| 227 | ||
| 228 | (*version without the hyps argument*) | |
| 229 | fun prove_conv_nohyps name tacs sg = ArithData.prove_conv name tacs sg []; | |
| 230 | ||
| 231 | structure CombineNumeralsData = | |
| 232 | struct | |
| 59530 | 233 | type coeff = int | 
| 234 | val iszero = (fn x => x = 0) | |
| 235 | val add = op + | |
| 236 | val mk_sum = (fn _ : typ => long_mk_sum) (*to work for #2*x $+ #3*x *) | |
| 237 | val dest_sum = dest_sum | |
| 238 | val mk_coeff = mk_coeff | |
| 239 | val dest_coeff = dest_coeff 1 | |
| 240 |   val left_distrib = @{thm left_zadd_zmult_distrib} RS @{thm trans}
 | |
| 241 | val prove_conv = prove_conv_nohyps "int_combine_numerals" | |
| 242 |   fun trans_tac ctxt = ArithData.gen_trans_tac ctxt @{thm trans}
 | |
| 23146 | 243 | |
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changeset | 244 | val norm_ss1 = | 
| 69593 | 245 | simpset_of (put_simpset ZF_ss \<^context> | 
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changeset | 246 |       addsimps add_0s @ mult_1s @ diff_simps @ zminus_simps @ @{thms zadd_ac} @ intifys)
 | 
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changeset | 247 | val norm_ss2 = | 
| 69593 | 248 | simpset_of (put_simpset ZF_ss \<^context> | 
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changeset | 249 | addsimps bin_simps @ int_mult_minus_simps @ intifys) | 
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changeset | 250 | val norm_ss3 = | 
| 69593 | 251 | simpset_of (put_simpset ZF_ss \<^context> | 
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changeset | 252 |       addsimps int_minus_from_mult_simps @ @{thms zadd_ac} @ @{thms zmult_ac} @ tc_rules @ intifys)
 | 
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changeset | 253 | fun norm_tac ctxt = | 
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changeset | 254 | ALLGOALS (asm_simp_tac (put_simpset norm_ss1 ctxt)) | 
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changeset | 255 | THEN ALLGOALS (asm_simp_tac (put_simpset norm_ss2 ctxt)) | 
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changeset | 256 | THEN ALLGOALS (asm_simp_tac (put_simpset norm_ss3 ctxt)) | 
| 23146 | 257 | |
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changeset | 258 | val numeral_simp_ss = | 
| 69593 | 259 | simpset_of (put_simpset ZF_ss \<^context> addsimps add_0s @ bin_simps @ tc_rules @ intifys) | 
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changeset | 260 | fun numeral_simp_tac ctxt = | 
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changeset | 261 | ALLGOALS (simp_tac (put_simpset numeral_simp_ss ctxt)) | 
| 23146 | 262 | val simplify_meta_eq = ArithData.simplify_meta_eq (add_0s @ mult_1s) | 
| 263 | end; | |
| 264 | ||
| 265 | structure CombineNumerals = CombineNumeralsFun(CombineNumeralsData); | |
| 266 | ||
| 267 | val combine_numerals = | |
| 69593 | 268 | Simplifier.make_simproc \<^context> "int_combine_numerals" | 
| 269 |     {lhss = [\<^term>\<open>i $+ j\<close>, \<^term>\<open>i $- j\<close>],
 | |
| 62913 | 270 | proc = K CombineNumerals.proc}; | 
| 23146 | 271 | |
| 272 | ||
| 273 | ||
| 274 | (** Constant folding for integer multiplication **) | |
| 275 | ||
| 276 | (*The trick is to regard products as sums, e.g. #3 $* x $* #4 as | |
| 277 | the "sum" of #3, x, #4; the literals are then multiplied*) | |
| 278 | ||
| 279 | ||
| 280 | structure CombineNumeralsProdData = | |
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changeset | 281 | struct | 
| 59530 | 282 | type coeff = int | 
| 283 | val iszero = (fn x => x = 0) | |
| 284 | val add = op * | |
| 285 | val mk_sum = (fn _ : typ => mk_prod) | |
| 286 | val dest_sum = dest_prod | |
| 287 | fun mk_coeff(k,t) = | |
| 288 | if t = one then mk_numeral k | |
| 289 |     else raise TERM("mk_coeff", [])
 | |
| 23146 | 290 | fun dest_coeff t = (dest_numeral t, one) (*We ONLY want pure numerals.*) | 
| 59530 | 291 |   val left_distrib = @{thm zmult_assoc} RS @{thm sym} RS @{thm trans}
 | 
| 292 | val prove_conv = prove_conv_nohyps "int_combine_numerals_prod" | |
| 293 |   fun trans_tac ctxt = ArithData.gen_trans_tac ctxt @{thm trans}
 | |
| 23146 | 294 | |
| 59530 | 295 | val norm_ss1 = | 
| 69593 | 296 | simpset_of (put_simpset ZF_ss \<^context> addsimps mult_1s @ diff_simps @ zminus_simps) | 
| 59530 | 297 | val norm_ss2 = | 
| 69593 | 298 |     simpset_of (put_simpset ZF_ss \<^context> addsimps [@{thm zmult_zminus_right} RS @{thm sym}] @
 | 
| 59530 | 299 |     bin_simps @ @{thms zmult_ac} @ tc_rules @ intifys)
 | 
| 300 | fun norm_tac ctxt = | |
| 301 | ALLGOALS (asm_simp_tac (put_simpset norm_ss1 ctxt)) | |
| 302 | THEN ALLGOALS (asm_simp_tac (put_simpset norm_ss2 ctxt)) | |
| 23146 | 303 | |
| 59530 | 304 | val numeral_simp_ss = | 
| 69593 | 305 | simpset_of (put_simpset ZF_ss \<^context> addsimps bin_simps @ tc_rules @ intifys) | 
| 59530 | 306 | fun numeral_simp_tac ctxt = | 
| 307 | ALLGOALS (simp_tac (put_simpset numeral_simp_ss ctxt)) | |
| 308 | val simplify_meta_eq = ArithData.simplify_meta_eq (mult_1s); | |
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changeset | 309 | end; | 
| 23146 | 310 | |
| 311 | ||
| 312 | structure CombineNumeralsProd = CombineNumeralsFun(CombineNumeralsProdData); | |
| 313 | ||
| 314 | val combine_numerals_prod = | |
| 69593 | 315 | Simplifier.make_simproc \<^context> "int_combine_numerals_prod" | 
| 316 |    {lhss = [\<^term>\<open>i $* j\<close>], proc = K CombineNumeralsProd.proc};
 | |
| 23146 | 317 | |
| 318 | end; | |
| 319 | ||
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changeset | 320 | val _ = | 
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changeset | 321 | Theory.setup (Simplifier.map_theory_simpset (fn ctxt => | 
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changeset | 322 | ctxt addsimprocs | 
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changeset | 323 | (Int_Numeral_Simprocs.cancel_numerals @ | 
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changeset | 324 | [Int_Numeral_Simprocs.combine_numerals, | 
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changeset | 325 | Int_Numeral_Simprocs.combine_numerals_prod]))); |