| author | wenzelm | 
| Tue, 08 Apr 2014 14:15:48 +0200 | |
| changeset 56465 | 6ad693903e22 | 
| parent 54388 | 8b165615ffe3 | 
| child 58022 | 464c1815fde9 | 
| permissions | -rw-r--r-- | 
| 23146 | 1  | 
(* Title: ZF/int_arith.ML  | 
2  | 
Author: Larry Paulson  | 
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Simprocs for linear arithmetic.  | 
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*)  | 
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40312
 
dff9f73a3763
more conventional exceptions for abstract syntax operations -- eliminated ancient SYS_ERROR;
 
wenzelm 
parents: 
38715 
diff
changeset
 | 
7  | 
signature INT_NUMERAL_SIMPROCS =  | 
| 
 
dff9f73a3763
more conventional exceptions for abstract syntax operations -- eliminated ancient SYS_ERROR;
 
wenzelm 
parents: 
38715 
diff
changeset
 | 
8  | 
sig  | 
| 
 
dff9f73a3763
more conventional exceptions for abstract syntax operations -- eliminated ancient SYS_ERROR;
 
wenzelm 
parents: 
38715 
diff
changeset
 | 
9  | 
val cancel_numerals: simproc list  | 
| 
 
dff9f73a3763
more conventional exceptions for abstract syntax operations -- eliminated ancient SYS_ERROR;
 
wenzelm 
parents: 
38715 
diff
changeset
 | 
10  | 
val combine_numerals: simproc  | 
| 
 
dff9f73a3763
more conventional exceptions for abstract syntax operations -- eliminated ancient SYS_ERROR;
 
wenzelm 
parents: 
38715 
diff
changeset
 | 
11  | 
val combine_numerals_prod: simproc  | 
| 
 
dff9f73a3763
more conventional exceptions for abstract syntax operations -- eliminated ancient SYS_ERROR;
 
wenzelm 
parents: 
38715 
diff
changeset
 | 
12  | 
end  | 
| 
 
dff9f73a3763
more conventional exceptions for abstract syntax operations -- eliminated ancient SYS_ERROR;
 
wenzelm 
parents: 
38715 
diff
changeset
 | 
13  | 
|
| 
 
dff9f73a3763
more conventional exceptions for abstract syntax operations -- eliminated ancient SYS_ERROR;
 
wenzelm 
parents: 
38715 
diff
changeset
 | 
14  | 
structure Int_Numeral_Simprocs: INT_NUMERAL_SIMPROCS =  | 
| 23146 | 15  | 
struct  | 
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35112
 
ff6f60e6ab85
numeral syntax: clarify parse trees vs. actual terms;
 
wenzelm 
parents: 
35020 
diff
changeset
 | 
17  | 
(* abstract syntax operations *)  | 
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ff6f60e6ab85
numeral syntax: clarify parse trees vs. actual terms;
 
wenzelm 
parents: 
35020 
diff
changeset
 | 
18  | 
|
| 
 
ff6f60e6ab85
numeral syntax: clarify parse trees vs. actual terms;
 
wenzelm 
parents: 
35020 
diff
changeset
 | 
19  | 
fun mk_bit 0 = @{term "0"}
 | 
| 
 
ff6f60e6ab85
numeral syntax: clarify parse trees vs. actual terms;
 
wenzelm 
parents: 
35020 
diff
changeset
 | 
20  | 
  | mk_bit 1 = @{term "succ(0)"}
 | 
| 
40312
 
dff9f73a3763
more conventional exceptions for abstract syntax operations -- eliminated ancient SYS_ERROR;
 
wenzelm 
parents: 
38715 
diff
changeset
 | 
21  | 
  | mk_bit _ = raise TERM ("mk_bit", []);
 | 
| 
35112
 
ff6f60e6ab85
numeral syntax: clarify parse trees vs. actual terms;
 
wenzelm 
parents: 
35020 
diff
changeset
 | 
22  | 
|
| 
 
ff6f60e6ab85
numeral syntax: clarify parse trees vs. actual terms;
 
wenzelm 
parents: 
35020 
diff
changeset
 | 
23  | 
fun dest_bit @{term "0"} = 0
 | 
| 
 
ff6f60e6ab85
numeral syntax: clarify parse trees vs. actual terms;
 
wenzelm 
parents: 
35020 
diff
changeset
 | 
24  | 
  | dest_bit @{term "succ(0)"} = 1
 | 
| 
40312
 
dff9f73a3763
more conventional exceptions for abstract syntax operations -- eliminated ancient SYS_ERROR;
 
wenzelm 
parents: 
38715 
diff
changeset
 | 
25  | 
  | dest_bit t = raise TERM ("dest_bit", [t]);
 | 
| 
35112
 
ff6f60e6ab85
numeral syntax: clarify parse trees vs. actual terms;
 
wenzelm 
parents: 
35020 
diff
changeset
 | 
26  | 
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| 
 
ff6f60e6ab85
numeral syntax: clarify parse trees vs. actual terms;
 
wenzelm 
parents: 
35020 
diff
changeset
 | 
27  | 
fun mk_bin i =  | 
| 
 
ff6f60e6ab85
numeral syntax: clarify parse trees vs. actual terms;
 
wenzelm 
parents: 
35020 
diff
changeset
 | 
28  | 
let  | 
| 
 
ff6f60e6ab85
numeral syntax: clarify parse trees vs. actual terms;
 
wenzelm 
parents: 
35020 
diff
changeset
 | 
29  | 
    fun term_of [] = @{term Pls}
 | 
| 
 
ff6f60e6ab85
numeral syntax: clarify parse trees vs. actual terms;
 
wenzelm 
parents: 
35020 
diff
changeset
 | 
30  | 
      | term_of [~1] = @{term Min}
 | 
| 
 
ff6f60e6ab85
numeral syntax: clarify parse trees vs. actual terms;
 
wenzelm 
parents: 
35020 
diff
changeset
 | 
31  | 
      | term_of (b :: bs) = @{term Bit} $ term_of bs $ mk_bit b;
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in term_of (Numeral_Syntax.make_binary i) end;  | 
| 
35112
 
ff6f60e6ab85
numeral syntax: clarify parse trees vs. actual terms;
 
wenzelm 
parents: 
35020 
diff
changeset
 | 
33  | 
|
| 
 
ff6f60e6ab85
numeral syntax: clarify parse trees vs. actual terms;
 
wenzelm 
parents: 
35020 
diff
changeset
 | 
34  | 
fun dest_bin tm =  | 
| 
 
ff6f60e6ab85
numeral syntax: clarify parse trees vs. actual terms;
 
wenzelm 
parents: 
35020 
diff
changeset
 | 
35  | 
let  | 
| 
 
ff6f60e6ab85
numeral syntax: clarify parse trees vs. actual terms;
 
wenzelm 
parents: 
35020 
diff
changeset
 | 
36  | 
    fun bin_of @{term Pls} = []
 | 
| 
 
ff6f60e6ab85
numeral syntax: clarify parse trees vs. actual terms;
 
wenzelm 
parents: 
35020 
diff
changeset
 | 
37  | 
      | bin_of @{term Min} = [~1]
 | 
| 
 
ff6f60e6ab85
numeral syntax: clarify parse trees vs. actual terms;
 
wenzelm 
parents: 
35020 
diff
changeset
 | 
38  | 
      | bin_of (@{term Bit} $ bs $ b) = dest_bit b :: bin_of bs
 | 
| 
40312
 
dff9f73a3763
more conventional exceptions for abstract syntax operations -- eliminated ancient SYS_ERROR;
 
wenzelm 
parents: 
38715 
diff
changeset
 | 
39  | 
      | bin_of _ = raise TERM ("dest_bin", [tm]);
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| 35123 | 40  | 
in Numeral_Syntax.dest_binary (bin_of tm) end;  | 
| 
35112
 
ff6f60e6ab85
numeral syntax: clarify parse trees vs. actual terms;
 
wenzelm 
parents: 
35020 
diff
changeset
 | 
41  | 
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| 
 
ff6f60e6ab85
numeral syntax: clarify parse trees vs. actual terms;
 
wenzelm 
parents: 
35020 
diff
changeset
 | 
42  | 
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| 23146 | 43  | 
(*Utilities*)  | 
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35112
 
ff6f60e6ab85
numeral syntax: clarify parse trees vs. actual terms;
 
wenzelm 
parents: 
35020 
diff
changeset
 | 
45  | 
fun mk_numeral i = @{const integ_of} $ mk_bin i;
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| 23146 | 46  | 
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40312
 
dff9f73a3763
more conventional exceptions for abstract syntax operations -- eliminated ancient SYS_ERROR;
 
wenzelm 
parents: 
38715 
diff
changeset
 | 
47  | 
fun dest_numeral (Const(@{const_name integ_of}, _) $ w) = dest_bin w
 | 
| 
 
dff9f73a3763
more conventional exceptions for abstract syntax operations -- eliminated ancient SYS_ERROR;
 
wenzelm 
parents: 
38715 
diff
changeset
 | 
48  | 
  | dest_numeral t = raise TERM ("dest_numeral", [t]);
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fun find_first_numeral past (t::terms) =  | 
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((dest_numeral t, rev past @ terms)  | 
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handle TERM _ => find_first_numeral (t::past) terms)  | 
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  | find_first_numeral past [] = raise TERM("find_first_numeral", []);
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val zero = mk_numeral 0;  | 
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val mk_plus = FOLogic.mk_binop @{const_name "zadd"};
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(*Thus mk_sum[t] yields t+#0; longer sums don't have a trailing zero*)  | 
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fun mk_sum [] = zero  | 
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| mk_sum [t,u] = mk_plus (t, u)  | 
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| mk_sum (t :: ts) = mk_plus (t, mk_sum ts);  | 
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(*this version ALWAYS includes a trailing zero*)  | 
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fun long_mk_sum [] = zero  | 
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| long_mk_sum (t :: ts) = mk_plus (t, mk_sum ts);  | 
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(*decompose additions AND subtractions as a sum*)  | 
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fun dest_summing (pos, Const (@{const_name "zadd"}, _) $ t $ u, ts) =
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dest_summing (pos, t, dest_summing (pos, u, ts))  | 
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  | dest_summing (pos, Const (@{const_name "zdiff"}, _) $ t $ u, ts) =
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dest_summing (pos, t, dest_summing (not pos, u, ts))  | 
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| dest_summing (pos, t, ts) =  | 
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        if pos then t::ts else @{const zminus} $ t :: ts;
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fun dest_sum t = dest_summing (true, t, []);  | 
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val one = mk_numeral 1;  | 
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val mk_times = FOLogic.mk_binop @{const_name "zmult"};
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fun mk_prod [] = one  | 
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| mk_prod [t] = t  | 
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| mk_prod (t :: ts) = if t = one then mk_prod ts  | 
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else mk_times (t, mk_prod ts);  | 
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val dest_times = FOLogic.dest_bin @{const_name "zmult"} @{typ i};
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fun dest_prod t =  | 
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let val (t,u) = dest_times t  | 
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in dest_prod t @ dest_prod u end  | 
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handle TERM _ => [t];  | 
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(*DON'T do the obvious simplifications; that would create special cases*)  | 
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fun mk_coeff (k, t) = mk_times (mk_numeral k, t);  | 
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(*Express t as a product of (possibly) a numeral with other sorted terms*)  | 
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fun dest_coeff sign (Const (@{const_name "zminus"}, _) $ t) = dest_coeff (~sign) t
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| dest_coeff sign t =  | 
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let val ts = sort Term_Ord.term_ord (dest_prod t)  | 
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val (n, ts') = find_first_numeral [] ts  | 
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handle TERM _ => (1, ts)  | 
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in (sign*n, mk_prod ts') end;  | 
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(*Find first coefficient-term THAT MATCHES u*)  | 
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fun find_first_coeff past u [] = raise TERM("find_first_coeff", [])
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| find_first_coeff past u (t::terms) =  | 
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let val (n,u') = dest_coeff 1 t  | 
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in if u aconv u' then (n, rev past @ terms)  | 
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else find_first_coeff (t::past) u terms  | 
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end  | 
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handle TERM _ => find_first_coeff (t::past) u terms;  | 
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(*Simplify #1*n and n*#1 to n*)  | 
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val add_0s = [@{thm zadd_0_intify}, @{thm zadd_0_right_intify}];
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val mult_1s = [@{thm zmult_1_intify}, @{thm zmult_1_right_intify},
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               @{thm zmult_minus1}, @{thm zmult_minus1_right}];
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val tc_rules = [@{thm integ_of_type}, @{thm intify_in_int},
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                @{thm int_of_type}, @{thm zadd_type}, @{thm zdiff_type}, @{thm zmult_type}] @ 
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               @{thms bin.intros};
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val intifys = [@{thm intify_ident}, @{thm zadd_intify1}, @{thm zadd_intify2},
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               @{thm zdiff_intify1}, @{thm zdiff_intify2}, @{thm zmult_intify1}, @{thm zmult_intify2},
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               @{thm zless_intify1}, @{thm zless_intify2}, @{thm zle_intify1}, @{thm zle_intify2}];
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(*To perform binary arithmetic*)  | 
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val bin_simps = [@{thm add_integ_of_left}] @ @{thms bin_arith_simps} @ @{thms bin_rel_simps};
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(*To evaluate binary negations of coefficients*)  | 
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val zminus_simps = @{thms NCons_simps} @
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                   [@{thm integ_of_minus} RS @{thm sym},
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                    @{thm bin_minus_1}, @{thm bin_minus_0}, @{thm bin_minus_Pls}, @{thm bin_minus_Min},
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                    @{thm bin_pred_1}, @{thm bin_pred_0}, @{thm bin_pred_Pls}, @{thm bin_pred_Min}];
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(*To let us treat subtraction as addition*)  | 
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val diff_simps = [@{thm zdiff_def}, @{thm zminus_zadd_distrib}, @{thm zminus_zminus}];
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| 23146 | 137  | 
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35020
 
862a20ffa8e2
prefer explicit @{lemma} over adhoc forward reasoning;
 
wenzelm 
parents: 
32957 
diff
changeset
 | 
138  | 
(*push the unary minus down*)  | 
| 
 
862a20ffa8e2
prefer explicit @{lemma} over adhoc forward reasoning;
 
wenzelm 
parents: 
32957 
diff
changeset
 | 
139  | 
val int_minus_mult_eq_1_to_2 = @{lemma "$- w $* z = w $* $- z" by simp};
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(*to extract again any uncancelled minuses*)  | 
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val int_minus_from_mult_simps =  | 
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    [@{thm zminus_zminus}, @{thm zmult_zminus}, @{thm zmult_zminus_right}];
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(*combine unary minus with numeric literals, however nested within a product*)  | 
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val int_mult_minus_simps =  | 
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    [@{thm zmult_assoc}, @{thm zmult_zminus} RS @{thm sym}, int_minus_mult_eq_1_to_2];
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fun prep_simproc thy (name, pats, proc) =  | 
| 
38715
 
6513ea67d95d
renamed Simplifier.simproc(_i) to Simplifier.simproc_global(_i) to emphasize that this is not the real thing;
 
wenzelm 
parents: 
35409 
diff
changeset
 | 
150  | 
Simplifier.simproc_global thy name pats proc;  | 
| 23146 | 151  | 
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152  | 
structure CancelNumeralsCommon =  | 
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struct  | 
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val mk_sum = (fn T:typ => mk_sum)  | 
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val dest_sum = dest_sum  | 
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val mk_coeff = mk_coeff  | 
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val dest_coeff = dest_coeff 1  | 
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val find_first_coeff = find_first_coeff []  | 
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| 
44947
 
8ae418dfe561
dropped unused argument – avoids problem with SML/NJ
 
haftmann 
parents: 
40878 
diff
changeset
 | 
159  | 
  val trans_tac         = ArithData.gen_trans_tac @{thm iff_trans}
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| 23146 | 160  | 
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| 
51717
 
9e7d1c139569
simplifier uses proper Proof.context instead of historic type simpset;
 
wenzelm 
parents: 
44947 
diff
changeset
 | 
161  | 
val norm_ss1 =  | 
| 
 
9e7d1c139569
simplifier uses proper Proof.context instead of historic type simpset;
 
wenzelm 
parents: 
44947 
diff
changeset
 | 
162  | 
    simpset_of (put_simpset ZF_ss @{context}
 | 
| 
 
9e7d1c139569
simplifier uses proper Proof.context instead of historic type simpset;
 
wenzelm 
parents: 
44947 
diff
changeset
 | 
163  | 
      addsimps add_0s @ mult_1s @ diff_simps @ zminus_simps @ @{thms zadd_ac})
 | 
| 
 
9e7d1c139569
simplifier uses proper Proof.context instead of historic type simpset;
 
wenzelm 
parents: 
44947 
diff
changeset
 | 
164  | 
val norm_ss2 =  | 
| 
 
9e7d1c139569
simplifier uses proper Proof.context instead of historic type simpset;
 
wenzelm 
parents: 
44947 
diff
changeset
 | 
165  | 
    simpset_of (put_simpset ZF_ss @{context}
 | 
| 
 
9e7d1c139569
simplifier uses proper Proof.context instead of historic type simpset;
 
wenzelm 
parents: 
44947 
diff
changeset
 | 
166  | 
addsimps bin_simps @ int_mult_minus_simps @ intifys)  | 
| 
 
9e7d1c139569
simplifier uses proper Proof.context instead of historic type simpset;
 
wenzelm 
parents: 
44947 
diff
changeset
 | 
167  | 
val norm_ss3 =  | 
| 
 
9e7d1c139569
simplifier uses proper Proof.context instead of historic type simpset;
 
wenzelm 
parents: 
44947 
diff
changeset
 | 
168  | 
    simpset_of (put_simpset ZF_ss @{context}
 | 
| 
 
9e7d1c139569
simplifier uses proper Proof.context instead of historic type simpset;
 
wenzelm 
parents: 
44947 
diff
changeset
 | 
169  | 
      addsimps int_minus_from_mult_simps @ @{thms zadd_ac} @ @{thms zmult_ac} @ tc_rules @ intifys)
 | 
| 
 
9e7d1c139569
simplifier uses proper Proof.context instead of historic type simpset;
 
wenzelm 
parents: 
44947 
diff
changeset
 | 
170  | 
fun norm_tac ctxt =  | 
| 
 
9e7d1c139569
simplifier uses proper Proof.context instead of historic type simpset;
 
wenzelm 
parents: 
44947 
diff
changeset
 | 
171  | 
ALLGOALS (asm_simp_tac (put_simpset norm_ss1 ctxt))  | 
| 
 
9e7d1c139569
simplifier uses proper Proof.context instead of historic type simpset;
 
wenzelm 
parents: 
44947 
diff
changeset
 | 
172  | 
THEN ALLGOALS (asm_simp_tac (put_simpset norm_ss2 ctxt))  | 
| 
 
9e7d1c139569
simplifier uses proper Proof.context instead of historic type simpset;
 
wenzelm 
parents: 
44947 
diff
changeset
 | 
173  | 
THEN ALLGOALS (asm_simp_tac (put_simpset norm_ss3 ctxt))  | 
| 23146 | 174  | 
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| 
51717
 
9e7d1c139569
simplifier uses proper Proof.context instead of historic type simpset;
 
wenzelm 
parents: 
44947 
diff
changeset
 | 
175  | 
val numeral_simp_ss =  | 
| 
 
9e7d1c139569
simplifier uses proper Proof.context instead of historic type simpset;
 
wenzelm 
parents: 
44947 
diff
changeset
 | 
176  | 
    simpset_of (put_simpset ZF_ss @{context}
 | 
| 
 
9e7d1c139569
simplifier uses proper Proof.context instead of historic type simpset;
 
wenzelm 
parents: 
44947 
diff
changeset
 | 
177  | 
addsimps add_0s @ bin_simps @ tc_rules @ intifys)  | 
| 
 
9e7d1c139569
simplifier uses proper Proof.context instead of historic type simpset;
 
wenzelm 
parents: 
44947 
diff
changeset
 | 
178  | 
fun numeral_simp_tac ctxt =  | 
| 
 
9e7d1c139569
simplifier uses proper Proof.context instead of historic type simpset;
 
wenzelm 
parents: 
44947 
diff
changeset
 | 
179  | 
ALLGOALS (simp_tac (put_simpset numeral_simp_ss ctxt))  | 
| 
 
9e7d1c139569
simplifier uses proper Proof.context instead of historic type simpset;
 
wenzelm 
parents: 
44947 
diff
changeset
 | 
180  | 
THEN ALLGOALS (asm_simp_tac ctxt)  | 
| 23146 | 181  | 
val simplify_meta_eq = ArithData.simplify_meta_eq (add_0s @ mult_1s)  | 
182  | 
end;  | 
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183  | 
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184  | 
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185  | 
structure EqCancelNumerals = CancelNumeralsFun  | 
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186  | 
(open CancelNumeralsCommon  | 
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187  | 
val prove_conv = ArithData.prove_conv "inteq_cancel_numerals"  | 
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188  | 
val mk_bal = FOLogic.mk_eq  | 
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189  | 
val dest_bal = FOLogic.dest_eq  | 
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| 35409 | 190  | 
  val bal_add1 = @{thm eq_add_iff1} RS @{thm iff_trans}
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191  | 
  val bal_add2 = @{thm eq_add_iff2} RS @{thm iff_trans}
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| 23146 | 192  | 
);  | 
193  | 
||
194  | 
structure LessCancelNumerals = CancelNumeralsFun  | 
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195  | 
(open CancelNumeralsCommon  | 
|
196  | 
val prove_conv = ArithData.prove_conv "intless_cancel_numerals"  | 
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| 26059 | 197  | 
  val mk_bal   = FOLogic.mk_binrel @{const_name "zless"}
 | 
| 26190 | 198  | 
  val dest_bal = FOLogic.dest_bin @{const_name "zless"} @{typ i}
 | 
| 35409 | 199  | 
  val bal_add1 = @{thm less_add_iff1} RS @{thm iff_trans}
 | 
200  | 
  val bal_add2 = @{thm less_add_iff2} RS @{thm iff_trans}
 | 
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| 23146 | 201  | 
);  | 
202  | 
||
203  | 
structure LeCancelNumerals = CancelNumeralsFun  | 
|
204  | 
(open CancelNumeralsCommon  | 
|
205  | 
val prove_conv = ArithData.prove_conv "intle_cancel_numerals"  | 
|
| 26059 | 206  | 
  val mk_bal   = FOLogic.mk_binrel @{const_name "zle"}
 | 
| 26190 | 207  | 
  val dest_bal = FOLogic.dest_bin @{const_name "zle"} @{typ i}
 | 
| 35409 | 208  | 
  val bal_add1 = @{thm le_add_iff1} RS @{thm iff_trans}
 | 
209  | 
  val bal_add2 = @{thm le_add_iff2} RS @{thm iff_trans}
 | 
|
| 23146 | 210  | 
);  | 
211  | 
||
212  | 
val cancel_numerals =  | 
|
| 32155 | 213  | 
  map (prep_simproc @{theory})
 | 
| 23146 | 214  | 
   [("inteq_cancel_numerals",
 | 
215  | 
["l $+ m = n", "l = m $+ n",  | 
|
216  | 
"l $- m = n", "l = m $- n",  | 
|
217  | 
"l $* m = n", "l = m $* n"],  | 
|
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 | 
218  | 
EqCancelNumerals.proc),  | 
| 23146 | 219  | 
    ("intless_cancel_numerals",
 | 
220  | 
["l $+ m $< n", "l $< m $+ n",  | 
|
221  | 
"l $- m $< n", "l $< m $- n",  | 
|
222  | 
"l $* m $< n", "l $< m $* n"],  | 
|
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 | 
223  | 
LessCancelNumerals.proc),  | 
| 23146 | 224  | 
    ("intle_cancel_numerals",
 | 
225  | 
["l $+ m $<= n", "l $<= m $+ n",  | 
|
226  | 
"l $- m $<= n", "l $<= m $- n",  | 
|
227  | 
"l $* m $<= n", "l $<= m $* n"],  | 
|
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 | 
228  | 
LeCancelNumerals.proc)];  | 
| 23146 | 229  | 
|
230  | 
||
231  | 
(*version without the hyps argument*)  | 
|
232  | 
fun prove_conv_nohyps name tacs sg = ArithData.prove_conv name tacs sg [];  | 
|
233  | 
||
234  | 
structure CombineNumeralsData =  | 
|
235  | 
struct  | 
|
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236  | 
type coeff = int  | 
| 
 
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 | 
237  | 
val iszero = (fn x => x = 0)  | 
| 
 
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238  | 
val add = op +  | 
| 23146 | 239  | 
val mk_sum = (fn T:typ => long_mk_sum) (*to work for #2*x $+ #3*x *)  | 
240  | 
val dest_sum = dest_sum  | 
|
241  | 
val mk_coeff = mk_coeff  | 
|
242  | 
val dest_coeff = dest_coeff 1  | 
|
| 35409 | 243  | 
  val left_distrib      = @{thm left_zadd_zmult_distrib} RS @{thm trans}
 | 
| 23146 | 244  | 
val prove_conv = prove_conv_nohyps "int_combine_numerals"  | 
| 
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 | 
245  | 
  val trans_tac         = ArithData.gen_trans_tac @{thm trans}
 | 
| 23146 | 246  | 
|
| 
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 | 
247  | 
val norm_ss1 =  | 
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248  | 
    simpset_of (put_simpset ZF_ss @{context}
 | 
| 
 
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249  | 
      addsimps add_0s @ mult_1s @ diff_simps @ zminus_simps @ @{thms zadd_ac} @ intifys)
 | 
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250  | 
val norm_ss2 =  | 
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251  | 
    simpset_of (put_simpset ZF_ss @{context}
 | 
| 
 
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 | 
252  | 
addsimps bin_simps @ int_mult_minus_simps @ intifys)  | 
| 
 
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253  | 
val norm_ss3 =  | 
| 
 
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 | 
254  | 
    simpset_of (put_simpset ZF_ss @{context}
 | 
| 
 
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255  | 
      addsimps int_minus_from_mult_simps @ @{thms zadd_ac} @ @{thms zmult_ac} @ tc_rules @ intifys)
 | 
| 
 
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 | 
256  | 
fun norm_tac ctxt =  | 
| 
 
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 | 
257  | 
ALLGOALS (asm_simp_tac (put_simpset norm_ss1 ctxt))  | 
| 
 
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 | 
258  | 
THEN ALLGOALS (asm_simp_tac (put_simpset norm_ss2 ctxt))  | 
| 
 
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259  | 
THEN ALLGOALS (asm_simp_tac (put_simpset norm_ss3 ctxt))  | 
| 23146 | 260  | 
|
| 
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 | 
261  | 
val numeral_simp_ss =  | 
| 
 
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 | 
262  | 
    simpset_of (put_simpset ZF_ss @{context} addsimps add_0s @ bin_simps @ tc_rules @ intifys)
 | 
| 
 
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 | 
263  | 
fun numeral_simp_tac ctxt =  | 
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 | 
264  | 
ALLGOALS (simp_tac (put_simpset numeral_simp_ss ctxt))  | 
| 23146 | 265  | 
val simplify_meta_eq = ArithData.simplify_meta_eq (add_0s @ mult_1s)  | 
266  | 
end;  | 
|
267  | 
||
268  | 
structure CombineNumerals = CombineNumeralsFun(CombineNumeralsData);  | 
|
269  | 
||
270  | 
val combine_numerals =  | 
|
| 32155 | 271  | 
  prep_simproc @{theory}
 | 
| 
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272  | 
    ("int_combine_numerals", ["i $+ j", "i $- j"], CombineNumerals.proc);
 | 
| 23146 | 273  | 
|
274  | 
||
275  | 
||
276  | 
(** Constant folding for integer multiplication **)  | 
|
277  | 
||
278  | 
(*The trick is to regard products as sums, e.g. #3 $* x $* #4 as  | 
|
279  | 
the "sum" of #3, x, #4; the literals are then multiplied*)  | 
|
280  | 
||
281  | 
||
282  | 
structure CombineNumeralsProdData =  | 
|
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 | 
283  | 
struct  | 
| 
24630
 
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 | 
284  | 
type coeff = int  | 
| 
 
351a308ab58d
simplified type int (eliminated IntInf.int, integer);
 
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parents: 
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diff
changeset
 | 
285  | 
val iszero = (fn x => x = 0)  | 
| 
 
351a308ab58d
simplified type int (eliminated IntInf.int, integer);
 
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parents: 
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diff
changeset
 | 
286  | 
val add = op *  | 
| 23146 | 287  | 
val mk_sum = (fn T:typ => mk_prod)  | 
288  | 
val dest_sum = dest_prod  | 
|
289  | 
fun mk_coeff(k,t) = if t=one then mk_numeral k  | 
|
290  | 
                      else raise TERM("mk_coeff", [])
 | 
|
291  | 
fun dest_coeff t = (dest_numeral t, one) (*We ONLY want pure numerals.*)  | 
|
| 35409 | 292  | 
  val left_distrib      = @{thm zmult_assoc} RS @{thm sym} RS @{thm trans}
 | 
| 23146 | 293  | 
val prove_conv = prove_conv_nohyps "int_combine_numerals_prod"  | 
| 
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diff
changeset
 | 
294  | 
  val trans_tac         = ArithData.gen_trans_tac @{thm trans}
 | 
| 23146 | 295  | 
|
296  | 
||
297  | 
||
| 
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 | 
298  | 
val norm_ss1 =  | 
| 
 
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 | 
299  | 
  simpset_of (put_simpset ZF_ss @{context} addsimps mult_1s @ diff_simps @ zminus_simps)
 | 
| 
 
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 | 
300  | 
val norm_ss2 =  | 
| 
 
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 | 
301  | 
  simpset_of (put_simpset ZF_ss @{context} addsimps [@{thm zmult_zminus_right} RS @{thm sym}] @
 | 
| 
 
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302  | 
  bin_simps @ @{thms zmult_ac} @ tc_rules @ intifys)
 | 
| 
 
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 | 
303  | 
fun norm_tac ctxt =  | 
| 
 
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 | 
304  | 
ALLGOALS (asm_simp_tac (put_simpset norm_ss1 ctxt))  | 
| 
 
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 | 
305  | 
THEN ALLGOALS (asm_simp_tac (put_simpset norm_ss2 ctxt))  | 
| 23146 | 306  | 
|
| 
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 | 
307  | 
val numeral_simp_ss =  | 
| 
 
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 | 
308  | 
  simpset_of (put_simpset ZF_ss @{context} addsimps bin_simps @ tc_rules @ intifys)
 | 
| 
 
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 | 
309  | 
fun numeral_simp_tac ctxt =  | 
| 
 
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 | 
310  | 
ALLGOALS (simp_tac (put_simpset numeral_simp_ss ctxt))  | 
| 
 
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 | 
311  | 
val simplify_meta_eq = ArithData.simplify_meta_eq (mult_1s);  | 
| 
 
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 | 
312  | 
end;  | 
| 23146 | 313  | 
|
314  | 
||
315  | 
structure CombineNumeralsProd = CombineNumeralsFun(CombineNumeralsProdData);  | 
|
316  | 
||
317  | 
val combine_numerals_prod =  | 
|
| 32155 | 318  | 
  prep_simproc @{theory}
 | 
| 
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 | 
319  | 
    ("int_combine_numerals_prod", ["i $* j"], CombineNumeralsProd.proc);
 | 
| 23146 | 320  | 
|
321  | 
end;  | 
|
322  | 
||
| 
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 | 
323  | 
val _ =  | 
| 
 
8b165615ffe3
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 | 
324  | 
Theory.setup (Simplifier.map_theory_simpset (fn ctxt =>  | 
| 
 
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 | 
325  | 
ctxt addsimprocs  | 
| 
 
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 | 
326  | 
(Int_Numeral_Simprocs.cancel_numerals @  | 
| 
 
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 | 
327  | 
[Int_Numeral_Simprocs.combine_numerals,  | 
| 
 
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 | 
328  | 
Int_Numeral_Simprocs.combine_numerals_prod])));  | 
| 23146 | 329  | 
|
330  | 
||
331  | 
(*examples:*)  | 
|
332  | 
(*  | 
|
333  | 
print_depth 22;  | 
|
334  | 
set timing;  | 
|
| 
40878
 
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 | 
335  | 
set simp_trace;  | 
| 23146 | 336  | 
fun test s = (Goal s; by (Asm_simp_tac 1));  | 
337  | 
val sg = #sign (rep_thm (topthm()));  | 
|
338  | 
val t = FOLogic.dest_Trueprop (Logic.strip_assums_concl(getgoal 1));  | 
|
339  | 
val (t,_) = FOLogic.dest_eq t;  | 
|
340  | 
||
341  | 
(*combine_numerals_prod (products of separate literals) *)  | 
|
342  | 
test "#5 $* x $* #3 = y";  | 
|
343  | 
||
344  | 
test "y2 $+ ?x42 = y $+ y2";  | 
|
345  | 
||
346  | 
test "oo : int ==> l $+ (l $+ #2) $+ oo = oo";  | 
|
347  | 
||
348  | 
test "#9$*x $+ y = x$*#23 $+ z";  | 
|
349  | 
test "y $+ x = x $+ z";  | 
|
350  | 
||
351  | 
test "x : int ==> x $+ y $+ z = x $+ z";  | 
|
352  | 
test "x : int ==> y $+ (z $+ x) = z $+ x";  | 
|
353  | 
test "z : int ==> x $+ y $+ z = (z $+ y) $+ (x $+ w)";  | 
|
354  | 
test "z : int ==> x$*y $+ z = (z $+ y) $+ (y$*x $+ w)";  | 
|
355  | 
||
356  | 
test "#-3 $* x $+ y $<= x $* #2 $+ z";  | 
|
357  | 
test "y $+ x $<= x $+ z";  | 
|
358  | 
test "x $+ y $+ z $<= x $+ z";  | 
|
359  | 
||
360  | 
test "y $+ (z $+ x) $< z $+ x";  | 
|
361  | 
test "x $+ y $+ z $< (z $+ y) $+ (x $+ w)";  | 
|
362  | 
test "x$*y $+ z $< (z $+ y) $+ (y$*x $+ w)";  | 
|
363  | 
||
364  | 
test "l $+ #2 $+ #2 $+ #2 $+ (l $+ #2) $+ (oo $+ #2) = uu";  | 
|
365  | 
test "u : int ==> #2 $* u = u";  | 
|
366  | 
test "(i $+ j $+ #12 $+ k) $- #15 = y";  | 
|
367  | 
test "(i $+ j $+ #12 $+ k) $- #5 = y";  | 
|
368  | 
||
369  | 
test "y $- b $< b";  | 
|
370  | 
test "y $- (#3 $* b $+ c) $< b $- #2 $* c";  | 
|
371  | 
||
372  | 
test "(#2 $* x $- (u $* v) $+ y) $- v $* #3 $* u = w";  | 
|
373  | 
test "(#2 $* x $* u $* v $+ (u $* v) $* #4 $+ y) $- v $* u $* #4 = w";  | 
|
374  | 
test "(#2 $* x $* u $* v $+ (u $* v) $* #4 $+ y) $- v $* u = w";  | 
|
375  | 
test "u $* v $- (x $* u $* v $+ (u $* v) $* #4 $+ y) = w";  | 
|
376  | 
||
377  | 
test "(i $+ j $+ #12 $+ k) = u $+ #15 $+ y";  | 
|
378  | 
test "(i $+ j $* #2 $+ #12 $+ k) = j $+ #5 $+ y";  | 
|
379  | 
||
380  | 
test "#2 $* y $+ #3 $* z $+ #6 $* w $+ #2 $* y $+ #3 $* z $+ #2 $* u = #2 $* y' $+ #3 $* z' $+ #6 $* w' $+ #2 $* y' $+ #3 $* z' $+ u $+ vv";  | 
|
381  | 
||
382  | 
test "a $+ $-(b$+c) $+ b = d";  | 
|
383  | 
test "a $+ $-(b$+c) $- b = d";  | 
|
384  | 
||
385  | 
(*negative numerals*)  | 
|
386  | 
test "(i $+ j $+ #-2 $+ k) $- (u $+ #5 $+ y) = zz";  | 
|
387  | 
test "(i $+ j $+ #-3 $+ k) $< u $+ #5 $+ y";  | 
|
388  | 
test "(i $+ j $+ #3 $+ k) $< u $+ #-6 $+ y";  | 
|
389  | 
test "(i $+ j $+ #-12 $+ k) $- #15 = y";  | 
|
390  | 
test "(i $+ j $+ #12 $+ k) $- #-15 = y";  | 
|
391  | 
test "(i $+ j $+ #-12 $+ k) $- #-15 = y";  | 
|
392  | 
||
393  | 
(*Multiplying separated numerals*)  | 
|
394  | 
Goal "#6 $* ($# x $* #2) = uu";  | 
|
395  | 
Goal "#4 $* ($# x $* $# x) $* (#2 $* $# x) = uu";  | 
|
396  | 
*)  | 
|
397  |