| author | wenzelm | 
| Fri, 21 Feb 2014 15:12:50 +0100 | |
| changeset 55649 | 1532ab0dc67b | 
| parent 55495 | b389f65edc44 | 
| child 55987 | 52c22561996d | 
| permissions | -rw-r--r-- | 
| 30439 | 1  | 
(* Title: HOL/Decision_Procs/cooper_tac.ML  | 
| 29788 | 2  | 
Author: Amine Chaieb, TU Muenchen  | 
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*)  | 
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signature COOPER_TAC =  | 
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sig  | 
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val linz_tac: Proof.context -> bool -> int -> tactic  | 
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end  | 
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structure Cooper_Tac: COOPER_TAC =  | 
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struct  | 
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51717
 
9e7d1c139569
simplifier uses proper Proof.context instead of historic type simpset;
 
wenzelm 
parents: 
47432 
diff
changeset
 | 
13  | 
val cooper_ss = simpset_of @{context};
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val nT = HOLogic.natT;  | 
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47108
 
2a1953f0d20d
merged fork with new numeral representation (see NEWS)
 
huffman 
parents: 
45654 
diff
changeset
 | 
16  | 
val comp_arith = @{thms simp_thms}
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27651
 
16a26996c30e
moved op dvd to theory Ring_and_Field; generalized a couple of lemmas
 
haftmann 
parents: 
26075 
diff
changeset
 | 
18  | 
val zdvd_int = @{thm zdvd_int};
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| 
 
16a26996c30e
moved op dvd to theory Ring_and_Field; generalized a couple of lemmas
 
haftmann 
parents: 
26075 
diff
changeset
 | 
19  | 
val zdiff_int_split = @{thm zdiff_int_split};
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| 
 
16a26996c30e
moved op dvd to theory Ring_and_Field; generalized a couple of lemmas
 
haftmann 
parents: 
26075 
diff
changeset
 | 
20  | 
val split_zdiv = @{thm split_zdiv};
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| 
 
16a26996c30e
moved op dvd to theory Ring_and_Field; generalized a couple of lemmas
 
haftmann 
parents: 
26075 
diff
changeset
 | 
21  | 
val split_zmod = @{thm split_zmod};
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| 
 
16a26996c30e
moved op dvd to theory Ring_and_Field; generalized a couple of lemmas
 
haftmann 
parents: 
26075 
diff
changeset
 | 
22  | 
val mod_div_equality' = @{thm mod_div_equality'};
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| 
 
16a26996c30e
moved op dvd to theory Ring_and_Field; generalized a couple of lemmas
 
haftmann 
parents: 
26075 
diff
changeset
 | 
23  | 
val split_div' = @{thm split_div'};
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val Suc_eq_plus1 = @{thm Suc_eq_plus1};
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val mod_add_left_eq = @{thm mod_add_left_eq} RS sym;
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val mod_add_right_eq = @{thm mod_add_right_eq} RS sym;
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val mod_add_eq = @{thm mod_add_eq} RS sym;
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27651
 
16a26996c30e
moved op dvd to theory Ring_and_Field; generalized a couple of lemmas
 
haftmann 
parents: 
26075 
diff
changeset
 | 
28  | 
val nat_div_add_eq = @{thm div_add1_eq} RS sym;
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| 
 
16a26996c30e
moved op dvd to theory Ring_and_Field; generalized a couple of lemmas
 
haftmann 
parents: 
26075 
diff
changeset
 | 
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val int_div_add_eq = @{thm zdiv_zadd1_eq} RS sym;
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fun prepare_for_linz q fm =  | 
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let  | 
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val ps = Logic.strip_params fm  | 
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val hs = map HOLogic.dest_Trueprop (Logic.strip_assums_hyp fm)  | 
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val c = HOLogic.dest_Trueprop (Logic.strip_assums_concl fm)  | 
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fun mk_all ((s, T), (P,n)) =  | 
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42083
 
e1209fc7ecdc
added Term.is_open and Term.is_dependent convenience, to cover common situations of loose bounds;
 
wenzelm 
parents: 
38558 
diff
changeset
 | 
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if Term.is_dependent P then  | 
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(HOLogic.all_const T $ Abs (s, T, P), n)  | 
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else (incr_boundvars ~1 P, n-1)  | 
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fun mk_all2 (v, t) = HOLogic.all_const (fastype_of v) $ lambda v t;  | 
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27651
 
16a26996c30e
moved op dvd to theory Ring_and_Field; generalized a couple of lemmas
 
haftmann 
parents: 
26075 
diff
changeset
 | 
41  | 
val rhs = hs  | 
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val np = length ps  | 
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33004
 
715566791eb0
always qualify NJ's old List.foldl/foldr in Isabelle/ML;
 
wenzelm 
parents: 
32960 
diff
changeset
 | 
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val (fm',np) = List.foldr (fn ((x, T), (fm,n)) => mk_all ((x, T), (fm,n)))  | 
| 
 
715566791eb0
always qualify NJ's old List.foldl/foldr in Isabelle/ML;
 
wenzelm 
parents: 
32960 
diff
changeset
 | 
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(List.foldr HOLogic.mk_imp c rhs, np) ps  | 
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val (vs, _) = List.partition (fn t => q orelse (type_of t) = nT)  | 
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(Misc_Legacy.term_frees fm' @ Misc_Legacy.term_vars fm');  | 
| 
33004
 
715566791eb0
always qualify NJ's old List.foldl/foldr in Isabelle/ML;
 
wenzelm 
parents: 
32960 
diff
changeset
 | 
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val fm2 = List.foldr mk_all2 fm' vs  | 
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in (fm2, np + length vs, length rhs) end;  | 
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(*Object quantifier to meta --*)  | 
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fun spec_step n th = if (n=0) then th else (spec_step (n-1) th) RS spec ;  | 
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(* object implication to meta---*)  | 
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fun mp_step n th = if (n=0) then th else (mp_step (n-1) th) RS mp;  | 
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54742
 
7a86358a3c0b
proper context for basic Simplifier operations: rewrite_rule, rewrite_goals_rule, rewrite_goals_tac etc.;
 
wenzelm 
parents: 
52131 
diff
changeset
 | 
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fun linz_tac ctxt q = Object_Logic.atomize_prems_tac ctxt THEN' SUBGOAL (fn (g, i) =>  | 
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let  | 
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val thy = Proof_Context.theory_of ctxt  | 
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(* Transform the term*)  | 
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val (t,np,nh) = prepare_for_linz q g  | 
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(* Some simpsets for dealing with mod div abs and nat*)  | 
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51717
 
9e7d1c139569
simplifier uses proper Proof.context instead of historic type simpset;
 
wenzelm 
parents: 
47432 
diff
changeset
 | 
63  | 
val mod_div_simpset =  | 
| 
 
9e7d1c139569
simplifier uses proper Proof.context instead of historic type simpset;
 
wenzelm 
parents: 
47432 
diff
changeset
 | 
64  | 
put_simpset HOL_basic_ss ctxt  | 
| 
32960
 
69916a850301
eliminated hard tabulators, guessing at each author's individual tab-width;
 
wenzelm 
parents: 
32740 
diff
changeset
 | 
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addsimps [refl,mod_add_eq, mod_add_left_eq,  | 
| 
 
69916a850301
eliminated hard tabulators, guessing at each author's individual tab-width;
 
wenzelm 
parents: 
32740 
diff
changeset
 | 
66  | 
mod_add_right_eq,  | 
| 
 
69916a850301
eliminated hard tabulators, guessing at each author's individual tab-width;
 
wenzelm 
parents: 
32740 
diff
changeset
 | 
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nat_div_add_eq, int_div_add_eq,  | 
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          @{thm mod_self},
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          @{thm div_by_0}, @{thm mod_by_0}, @{thm div_0}, @{thm mod_0},
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          @{thm div_by_1}, @{thm mod_by_1}, @{thm div_1}, @{thm mod_1},
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32960
 
69916a850301
eliminated hard tabulators, guessing at each author's individual tab-width;
 
wenzelm 
parents: 
32740 
diff
changeset
 | 
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Suc_eq_plus1]  | 
| 
 
69916a850301
eliminated hard tabulators, guessing at each author's individual tab-width;
 
wenzelm 
parents: 
32740 
diff
changeset
 | 
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      addsimps @{thms add_ac}
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      addsimprocs [@{simproc cancel_div_mod_nat}, @{simproc cancel_div_mod_int}]
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51717
 
9e7d1c139569
simplifier uses proper Proof.context instead of historic type simpset;
 
wenzelm 
parents: 
47432 
diff
changeset
 | 
74  | 
val simpset0 =  | 
| 
 
9e7d1c139569
simplifier uses proper Proof.context instead of historic type simpset;
 
wenzelm 
parents: 
47432 
diff
changeset
 | 
75  | 
put_simpset HOL_basic_ss ctxt  | 
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addsimps [mod_div_equality', Suc_eq_plus1]  | 
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addsimps comp_arith  | 
| 
45620
 
f2a587696afb
modernized some old-style infix operations, which were left over from the time of ML proof scripts;
 
wenzelm 
parents: 
44121 
diff
changeset
 | 
78  | 
|> fold Splitter.add_split  | 
| 
 
f2a587696afb
modernized some old-style infix operations, which were left over from the time of ML proof scripts;
 
wenzelm 
parents: 
44121 
diff
changeset
 | 
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          [split_zdiv, split_zmod, split_div', @{thm "split_min"}, @{thm "split_max"}]
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(* Simp rules for changing (n::int) to int n *)  | 
| 
51717
 
9e7d1c139569
simplifier uses proper Proof.context instead of historic type simpset;
 
wenzelm 
parents: 
47432 
diff
changeset
 | 
81  | 
val simpset1 =  | 
| 
 
9e7d1c139569
simplifier uses proper Proof.context instead of historic type simpset;
 
wenzelm 
parents: 
47432 
diff
changeset
 | 
82  | 
put_simpset HOL_basic_ss ctxt  | 
| 
47108
 
2a1953f0d20d
merged fork with new numeral representation (see NEWS)
 
huffman 
parents: 
45654 
diff
changeset
 | 
83  | 
addsimps [zdvd_int] @ map (fn r => r RS sym)  | 
| 
 
2a1953f0d20d
merged fork with new numeral representation (see NEWS)
 
huffman 
parents: 
45654 
diff
changeset
 | 
84  | 
        [@{thm int_numeral}, @{thm int_int_eq}, @{thm zle_int}, @{thm zless_int}, @{thm zadd_int}, @{thm zmult_int}]
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| 
45620
 
f2a587696afb
modernized some old-style infix operations, which were left over from the time of ML proof scripts;
 
wenzelm 
parents: 
44121 
diff
changeset
 | 
85  | 
|> Splitter.add_split zdiff_int_split  | 
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(*simp rules for elimination of int n*)  | 
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||
| 
51717
 
9e7d1c139569
simplifier uses proper Proof.context instead of historic type simpset;
 
wenzelm 
parents: 
47432 
diff
changeset
 | 
88  | 
val simpset2 =  | 
| 
 
9e7d1c139569
simplifier uses proper Proof.context instead of historic type simpset;
 
wenzelm 
parents: 
47432 
diff
changeset
 | 
89  | 
put_simpset HOL_basic_ss ctxt  | 
| 
47108
 
2a1953f0d20d
merged fork with new numeral representation (see NEWS)
 
huffman 
parents: 
45654 
diff
changeset
 | 
90  | 
      addsimps [@{thm nat_0_le}, @{thm all_nat}, @{thm ex_nat}, @{thm zero_le_numeral}, @{thm order_refl}(* FIXME: necessary? *), @{thm int_0}, @{thm int_1}]
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| 
45620
 
f2a587696afb
modernized some old-style infix operations, which were left over from the time of ML proof scripts;
 
wenzelm 
parents: 
44121 
diff
changeset
 | 
91  | 
      |> fold Simplifier.add_cong [@{thm conj_le_cong}, @{thm imp_le_cong}]
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(* simp rules for elimination of abs *)  | 
| 
51717
 
9e7d1c139569
simplifier uses proper Proof.context instead of historic type simpset;
 
wenzelm 
parents: 
47432 
diff
changeset
 | 
93  | 
    val simpset3 = put_simpset HOL_basic_ss ctxt |> Splitter.add_split @{thm abs_split}
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val ct = cterm_of thy (HOLogic.mk_Trueprop t)  | 
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(* Theorem for the nat --> int transformation *)  | 
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val pre_thm = Seq.hd (EVERY  | 
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[simp_tac mod_div_simpset 1, simp_tac simpset0 1,  | 
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TRY (simp_tac simpset1 1), TRY (simp_tac simpset2 1),  | 
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51717
 
9e7d1c139569
simplifier uses proper Proof.context instead of historic type simpset;
 
wenzelm 
parents: 
47432 
diff
changeset
 | 
99  | 
TRY (simp_tac simpset3 1), TRY (simp_tac (put_simpset cooper_ss ctxt) 1)]  | 
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(Thm.trivial ct))  | 
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fun assm_tac i = REPEAT_DETERM_N nh (assume_tac i)  | 
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(* The result of the quantifier elimination *)  | 
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val (th, tac) = case (prop_of pre_thm) of  | 
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        Const ("==>", _) $ (Const (@{const_name Trueprop}, _) $ t1) $ _ =>
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let val pth = linzqe_oracle (cterm_of thy (Envir.eta_long [] t1))  | 
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in  | 
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((pth RS iffD2) RS pre_thm,  | 
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assm_tac (i + 1) THEN (if q then I else TRY) (rtac TrueI i))  | 
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end  | 
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| _ => (pre_thm, assm_tac i)  | 
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42368
 
3b8498ac2314
proper subgoal addressing via SUBGOAL/CSUBGOAL -- assuming these tactics did not handle Subscript in any special way;
 
wenzelm 
parents: 
42364 
diff
changeset
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111  | 
in rtac (((mp_step nh) o (spec_step np)) th) i THEN tac end);  | 
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23590
 
ad95084a5c63
renamed ObjectLogic.atomize_tac to ObjectLogic.atomize_prems_tac;
 
wenzelm 
parents: 
23469 
diff
changeset
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end  |