| author | paulson | 
| Mon, 15 Apr 2024 22:24:31 +0100 | |
| changeset 80106 | 693d4e6cc5b8 | 
| parent 78800 | 0b3700d31758 | 
| child 80636 | 4041e7c8059d | 
| permissions | -rw-r--r-- | 
| 
24092
 
71c27b320610
HOL setup for linear arithmetic -- moved here from arith_data.ML;
 
wenzelm 
parents:  
diff
changeset
 | 
1  | 
(* Title: HOL/Tools/lin_arith.ML  | 
| 29288 | 2  | 
Author: Tjark Weber and Tobias Nipkow, TU Muenchen  | 
| 
24092
 
71c27b320610
HOL setup for linear arithmetic -- moved here from arith_data.ML;
 
wenzelm 
parents:  
diff
changeset
 | 
3  | 
|
| 
 
71c27b320610
HOL setup for linear arithmetic -- moved here from arith_data.ML;
 
wenzelm 
parents:  
diff
changeset
 | 
4  | 
HOL setup for linear arithmetic (see Provers/Arith/fast_lin_arith.ML).  | 
| 
 
71c27b320610
HOL setup for linear arithmetic -- moved here from arith_data.ML;
 
wenzelm 
parents:  
diff
changeset
 | 
5  | 
*)  | 
| 
 
71c27b320610
HOL setup for linear arithmetic -- moved here from arith_data.ML;
 
wenzelm 
parents:  
diff
changeset
 | 
6  | 
|
| 
 
71c27b320610
HOL setup for linear arithmetic -- moved here from arith_data.ML;
 
wenzelm 
parents:  
diff
changeset
 | 
7  | 
signature LIN_ARITH =  | 
| 
 
71c27b320610
HOL setup for linear arithmetic -- moved here from arith_data.ML;
 
wenzelm 
parents:  
diff
changeset
 | 
8  | 
sig  | 
| 
51717
 
9e7d1c139569
simplifier uses proper Proof.context instead of historic type simpset;
 
wenzelm 
parents: 
48560 
diff
changeset
 | 
9  | 
val pre_tac: Proof.context -> int -> tactic  | 
| 
31101
 
26c7bb764a38
qualified names for Lin_Arith tactics and simprocs
 
haftmann 
parents: 
31100 
diff
changeset
 | 
10  | 
val simple_tac: Proof.context -> int -> tactic  | 
| 
 
26c7bb764a38
qualified names for Lin_Arith tactics and simprocs
 
haftmann 
parents: 
31100 
diff
changeset
 | 
11  | 
val tac: Proof.context -> int -> tactic  | 
| 78800 | 12  | 
val simproc: Simplifier.proc  | 
| 31100 | 13  | 
val add_inj_thms: thm list -> Context.generic -> Context.generic  | 
14  | 
val add_lessD: thm -> Context.generic -> Context.generic  | 
|
15  | 
val add_simps: thm list -> Context.generic -> Context.generic  | 
|
16  | 
val add_simprocs: simproc list -> Context.generic -> Context.generic  | 
|
| 31082 | 17  | 
val add_inj_const: string * typ -> Context.generic -> Context.generic  | 
| 31100 | 18  | 
val add_discrete_type: string -> Context.generic -> Context.generic  | 
| 59996 | 19  | 
val set_number_of: (Proof.context -> typ -> int -> cterm) -> Context.generic -> Context.generic  | 
| 31100 | 20  | 
val global_setup: theory -> theory  | 
| 
70356
 
4a327c061870
streamlined setup for linear algebra, particularly removed redundant rule declarations
 
haftmann 
parents: 
69593 
diff
changeset
 | 
21  | 
val init_arith_data: Context.generic -> Context.generic  | 
| 31082 | 22  | 
val split_limit: int Config.T  | 
23  | 
val neq_limit: int Config.T  | 
|
| 44654 | 24  | 
val trace: bool Config.T  | 
| 
24092
 
71c27b320610
HOL setup for linear arithmetic -- moved here from arith_data.ML;
 
wenzelm 
parents:  
diff
changeset
 | 
25  | 
end;  | 
| 
 
71c27b320610
HOL setup for linear arithmetic -- moved here from arith_data.ML;
 
wenzelm 
parents:  
diff
changeset
 | 
26  | 
|
| 
30686
 
47a32dd1b86e
moved generic arith_tac (formerly silent_arith_tac), verbose_arith_tac (formerly arith_tac) to Arith_Data; simple_arith-tac now named linear_arith_tac
 
haftmann 
parents: 
30528 
diff
changeset
 | 
27  | 
structure Lin_Arith: LIN_ARITH =  | 
| 
24092
 
71c27b320610
HOL setup for linear arithmetic -- moved here from arith_data.ML;
 
wenzelm 
parents:  
diff
changeset
 | 
28  | 
struct  | 
| 
 
71c27b320610
HOL setup for linear arithmetic -- moved here from arith_data.ML;
 
wenzelm 
parents:  
diff
changeset
 | 
29  | 
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| 
 
71c27b320610
HOL setup for linear arithmetic -- moved here from arith_data.ML;
 
wenzelm 
parents:  
diff
changeset
 | 
30  | 
(* Parameters data for general linear arithmetic functor *)  | 
| 
 
71c27b320610
HOL setup for linear arithmetic -- moved here from arith_data.ML;
 
wenzelm 
parents:  
diff
changeset
 | 
31  | 
|
| 
 
71c27b320610
HOL setup for linear arithmetic -- moved here from arith_data.ML;
 
wenzelm 
parents:  
diff
changeset
 | 
32  | 
structure LA_Logic: LIN_ARITH_LOGIC =  | 
| 
 
71c27b320610
HOL setup for linear arithmetic -- moved here from arith_data.ML;
 
wenzelm 
parents:  
diff
changeset
 | 
33  | 
struct  | 
| 
 
71c27b320610
HOL setup for linear arithmetic -- moved here from arith_data.ML;
 
wenzelm 
parents:  
diff
changeset
 | 
34  | 
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| 55990 | 35  | 
val ccontr = @{thm ccontr};
 | 
| 
24092
 
71c27b320610
HOL setup for linear arithmetic -- moved here from arith_data.ML;
 
wenzelm 
parents:  
diff
changeset
 | 
36  | 
val conjI = conjI;  | 
| 
 
71c27b320610
HOL setup for linear arithmetic -- moved here from arith_data.ML;
 
wenzelm 
parents:  
diff
changeset
 | 
37  | 
val notI = notI;  | 
| 
 
71c27b320610
HOL setup for linear arithmetic -- moved here from arith_data.ML;
 
wenzelm 
parents:  
diff
changeset
 | 
38  | 
val sym = sym;  | 
| 
31510
 
e0f2bb4b0021
fast_lin_arith uses proper multiplication instead of unfolding to additions
 
boehmes 
parents: 
31101 
diff
changeset
 | 
39  | 
val trueI = TrueI;  | 
| 
24092
 
71c27b320610
HOL setup for linear arithmetic -- moved here from arith_data.ML;
 
wenzelm 
parents:  
diff
changeset
 | 
40  | 
val not_lessD = @{thm linorder_not_less} RS iffD1;
 | 
| 
 
71c27b320610
HOL setup for linear arithmetic -- moved here from arith_data.ML;
 
wenzelm 
parents:  
diff
changeset
 | 
41  | 
val not_leD = @{thm linorder_not_le} RS iffD1;
 | 
| 
 
71c27b320610
HOL setup for linear arithmetic -- moved here from arith_data.ML;
 
wenzelm 
parents:  
diff
changeset
 | 
42  | 
|
| 35410 | 43  | 
fun mk_Eq thm = thm RS @{thm Eq_FalseI} handle THM _ => thm RS @{thm Eq_TrueI};
 | 
| 
24092
 
71c27b320610
HOL setup for linear arithmetic -- moved here from arith_data.ML;
 
wenzelm 
parents:  
diff
changeset
 | 
44  | 
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| 
 
71c27b320610
HOL setup for linear arithmetic -- moved here from arith_data.ML;
 
wenzelm 
parents:  
diff
changeset
 | 
45  | 
val mk_Trueprop = HOLogic.mk_Trueprop;  | 
| 
 
71c27b320610
HOL setup for linear arithmetic -- moved here from arith_data.ML;
 
wenzelm 
parents:  
diff
changeset
 | 
46  | 
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| 
 
71c27b320610
HOL setup for linear arithmetic -- moved here from arith_data.ML;
 
wenzelm 
parents:  
diff
changeset
 | 
47  | 
fun atomize thm = case Thm.prop_of thm of  | 
| 67149 | 48  | 
Const (\<^const_name>\<open>Trueprop\<close>, _) $ (Const (\<^const_name>\<open>HOL.conj\<close>, _) $ _ $ _) =>  | 
| 31100 | 49  | 
atomize (thm RS conjunct1) @ atomize (thm RS conjunct2)  | 
| 
24092
 
71c27b320610
HOL setup for linear arithmetic -- moved here from arith_data.ML;
 
wenzelm 
parents:  
diff
changeset
 | 
50  | 
| _ => [thm];  | 
| 
 
71c27b320610
HOL setup for linear arithmetic -- moved here from arith_data.ML;
 
wenzelm 
parents:  
diff
changeset
 | 
51  | 
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| 67149 | 52  | 
fun neg_prop ((TP as Const(\<^const_name>\<open>Trueprop\<close>, _)) $ (Const (\<^const_name>\<open>Not\<close>, _) $ t)) = TP $ t  | 
53  | 
| neg_prop ((TP as Const(\<^const_name>\<open>Trueprop\<close>, _)) $ t) = TP $ (HOLogic.Not $t)  | 
|
| 
24092
 
71c27b320610
HOL setup for linear arithmetic -- moved here from arith_data.ML;
 
wenzelm 
parents:  
diff
changeset
 | 
54  | 
  | neg_prop t = raise TERM ("neg_prop", [t]);
 | 
| 
 
71c27b320610
HOL setup for linear arithmetic -- moved here from arith_data.ML;
 
wenzelm 
parents:  
diff
changeset
 | 
55  | 
|
| 
 
71c27b320610
HOL setup for linear arithmetic -- moved here from arith_data.ML;
 
wenzelm 
parents:  
diff
changeset
 | 
56  | 
fun is_False thm =  | 
| 
 
71c27b320610
HOL setup for linear arithmetic -- moved here from arith_data.ML;
 
wenzelm 
parents:  
diff
changeset
 | 
57  | 
let val _ $ t = Thm.prop_of thm  | 
| 67149 | 58  | 
in t = \<^term>\<open>False\<close> end;  | 
| 
24092
 
71c27b320610
HOL setup for linear arithmetic -- moved here from arith_data.ML;
 
wenzelm 
parents:  
diff
changeset
 | 
59  | 
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| 
30686
 
47a32dd1b86e
moved generic arith_tac (formerly silent_arith_tac), verbose_arith_tac (formerly arith_tac) to Arith_Data; simple_arith-tac now named linear_arith_tac
 
haftmann 
parents: 
30528 
diff
changeset
 | 
60  | 
fun is_nat t = (fastype_of1 t = HOLogic.natT);  | 
| 
24092
 
71c27b320610
HOL setup for linear arithmetic -- moved here from arith_data.ML;
 
wenzelm 
parents:  
diff
changeset
 | 
61  | 
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| 31100 | 62  | 
fun mk_nat_thm thy t =  | 
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74611
 
98e7930e6d15
clarified antiquotations, assuming that Drule.instantiate_normalize was merely a historical relic;
 
wenzelm 
parents: 
74561 
diff
changeset
 | 
63  | 
\<^instantiate>\<open>n = \<open>Thm.global_cterm_of thy t\<close> in  | 
| 
 
98e7930e6d15
clarified antiquotations, assuming that Drule.instantiate_normalize was merely a historical relic;
 
wenzelm 
parents: 
74561 
diff
changeset
 | 
64  | 
lemma (open) \<open>0 \<le> n\<close> for n :: nat by (rule le0)\<close>;  | 
| 
24092
 
71c27b320610
HOL setup for linear arithmetic -- moved here from arith_data.ML;
 
wenzelm 
parents:  
diff
changeset
 | 
65  | 
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| 
43333
 
2bdec7f430d3
renamed Drule.instantiate to Drule.instantiate_normalize to emphasize its meaning as opposed to plain Thm.instantiate;
 
wenzelm 
parents: 
42616 
diff
changeset
 | 
66  | 
end;  | 
| 
24092
 
71c27b320610
HOL setup for linear arithmetic -- moved here from arith_data.ML;
 
wenzelm 
parents:  
diff
changeset
 | 
67  | 
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| 
 
71c27b320610
HOL setup for linear arithmetic -- moved here from arith_data.ML;
 
wenzelm 
parents:  
diff
changeset
 | 
68  | 
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| 
 
71c27b320610
HOL setup for linear arithmetic -- moved here from arith_data.ML;
 
wenzelm 
parents:  
diff
changeset
 | 
69  | 
(* arith context data *)  | 
| 
 
71c27b320610
HOL setup for linear arithmetic -- moved here from arith_data.ML;
 
wenzelm 
parents:  
diff
changeset
 | 
70  | 
|
| 33519 | 71  | 
structure Lin_Arith_Data = Generic_Data  | 
| 
24092
 
71c27b320610
HOL setup for linear arithmetic -- moved here from arith_data.ML;
 
wenzelm 
parents:  
diff
changeset
 | 
72  | 
(  | 
| 
 
71c27b320610
HOL setup for linear arithmetic -- moved here from arith_data.ML;
 
wenzelm 
parents:  
diff
changeset
 | 
73  | 
  type T = {splits: thm list,
 | 
| 
 
71c27b320610
HOL setup for linear arithmetic -- moved here from arith_data.ML;
 
wenzelm 
parents:  
diff
changeset
 | 
74  | 
inj_consts: (string * typ) list,  | 
| 
30686
 
47a32dd1b86e
moved generic arith_tac (formerly silent_arith_tac), verbose_arith_tac (formerly arith_tac) to Arith_Data; simple_arith-tac now named linear_arith_tac
 
haftmann 
parents: 
30528 
diff
changeset
 | 
75  | 
discrete: string list};  | 
| 
 
47a32dd1b86e
moved generic arith_tac (formerly silent_arith_tac), verbose_arith_tac (formerly arith_tac) to Arith_Data; simple_arith-tac now named linear_arith_tac
 
haftmann 
parents: 
30528 
diff
changeset
 | 
76  | 
  val empty = {splits = [], inj_consts = [], discrete = []};
 | 
| 33519 | 77  | 
fun merge  | 
| 44946 | 78  | 
   ({splits = splits1, inj_consts = inj_consts1, discrete = discrete1},
 | 
79  | 
    {splits = splits2, inj_consts = inj_consts2, discrete = discrete2}) : T =
 | 
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| 33520 | 80  | 
   {splits = Thm.merge_thms (splits1, splits2),
 | 
| 
24092
 
71c27b320610
HOL setup for linear arithmetic -- moved here from arith_data.ML;
 
wenzelm 
parents:  
diff
changeset
 | 
81  | 
inj_consts = Library.merge (op =) (inj_consts1, inj_consts2),  | 
| 
30686
 
47a32dd1b86e
moved generic arith_tac (formerly silent_arith_tac), verbose_arith_tac (formerly arith_tac) to Arith_Data; simple_arith-tac now named linear_arith_tac
 
haftmann 
parents: 
30528 
diff
changeset
 | 
82  | 
discrete = Library.merge (op =) (discrete1, discrete2)};  | 
| 
24092
 
71c27b320610
HOL setup for linear arithmetic -- moved here from arith_data.ML;
 
wenzelm 
parents:  
diff
changeset
 | 
83  | 
);  | 
| 
 
71c27b320610
HOL setup for linear arithmetic -- moved here from arith_data.ML;
 
wenzelm 
parents:  
diff
changeset
 | 
84  | 
|
| 31100 | 85  | 
val get_arith_data = Lin_Arith_Data.get o Context.Proof;  | 
| 
24092
 
71c27b320610
HOL setup for linear arithmetic -- moved here from arith_data.ML;
 
wenzelm 
parents:  
diff
changeset
 | 
86  | 
|
| 67631 | 87  | 
fun get_splits ctxt =  | 
88  | 
#splits (get_arith_data ctxt)  | 
|
| 67649 | 89  | 
|> map (Thm.transfer' ctxt);  | 
| 67631 | 90  | 
|
| 31100 | 91  | 
fun add_split thm = Lin_Arith_Data.map (fn {splits, inj_consts, discrete} =>
 | 
| 67631 | 92  | 
  {splits = update Thm.eq_thm_prop (Thm.trim_context thm) splits,
 | 
| 31100 | 93  | 
inj_consts = inj_consts, discrete = discrete});  | 
| 
24092
 
71c27b320610
HOL setup for linear arithmetic -- moved here from arith_data.ML;
 
wenzelm 
parents:  
diff
changeset
 | 
94  | 
|
| 31100 | 95  | 
fun add_discrete_type d = Lin_Arith_Data.map (fn {splits, inj_consts, discrete} =>
 | 
| 
30686
 
47a32dd1b86e
moved generic arith_tac (formerly silent_arith_tac), verbose_arith_tac (formerly arith_tac) to Arith_Data; simple_arith-tac now named linear_arith_tac
 
haftmann 
parents: 
30528 
diff
changeset
 | 
96  | 
  {splits = splits, inj_consts = inj_consts,
 | 
| 
 
47a32dd1b86e
moved generic arith_tac (formerly silent_arith_tac), verbose_arith_tac (formerly arith_tac) to Arith_Data; simple_arith-tac now named linear_arith_tac
 
haftmann 
parents: 
30528 
diff
changeset
 | 
97  | 
discrete = update (op =) d discrete});  | 
| 
24092
 
71c27b320610
HOL setup for linear arithmetic -- moved here from arith_data.ML;
 
wenzelm 
parents:  
diff
changeset
 | 
98  | 
|
| 31100 | 99  | 
fun add_inj_const c = Lin_Arith_Data.map (fn {splits, inj_consts, discrete} =>
 | 
| 
30686
 
47a32dd1b86e
moved generic arith_tac (formerly silent_arith_tac), verbose_arith_tac (formerly arith_tac) to Arith_Data; simple_arith-tac now named linear_arith_tac
 
haftmann 
parents: 
30528 
diff
changeset
 | 
100  | 
  {splits = splits, inj_consts = update (op =) c inj_consts,
 | 
| 
 
47a32dd1b86e
moved generic arith_tac (formerly silent_arith_tac), verbose_arith_tac (formerly arith_tac) to Arith_Data; simple_arith-tac now named linear_arith_tac
 
haftmann 
parents: 
30528 
diff
changeset
 | 
101  | 
discrete = discrete});  | 
| 
24092
 
71c27b320610
HOL setup for linear arithmetic -- moved here from arith_data.ML;
 
wenzelm 
parents:  
diff
changeset
 | 
102  | 
|
| 67149 | 103  | 
val split_limit = Attrib.setup_config_int \<^binding>\<open>linarith_split_limit\<close> (K 9);  | 
104  | 
val neq_limit = Attrib.setup_config_int \<^binding>\<open>linarith_neq_limit\<close> (K 9);  | 
|
105  | 
val trace = Attrib.setup_config_bool \<^binding>\<open>linarith_trace\<close> (K false);  | 
|
| 
24092
 
71c27b320610
HOL setup for linear arithmetic -- moved here from arith_data.ML;
 
wenzelm 
parents:  
diff
changeset
 | 
106  | 
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| 
75879
 
24b17460ee60
streamlined simpset building, avoiding duplicated rewrite rules
 
haftmann 
parents: 
75878 
diff
changeset
 | 
107  | 
fun nnf_simpset ctxt =  | 
| 
 
24b17460ee60
streamlined simpset building, avoiding duplicated rewrite rules
 
haftmann 
parents: 
75878 
diff
changeset
 | 
108  | 
(empty_simpset ctxt  | 
| 
 
24b17460ee60
streamlined simpset building, avoiding duplicated rewrite rules
 
haftmann 
parents: 
75878 
diff
changeset
 | 
109  | 
|> Simplifier.set_mkeqTrue mk_eq_True  | 
| 
 
24b17460ee60
streamlined simpset building, avoiding duplicated rewrite rules
 
haftmann 
parents: 
75878 
diff
changeset
 | 
110  | 
|> Simplifier.set_mksimps (mksimps mksimps_pairs))  | 
| 
 
24b17460ee60
streamlined simpset building, avoiding duplicated rewrite rules
 
haftmann 
parents: 
75878 
diff
changeset
 | 
111  | 
  addsimps @{thms imp_conv_disj iff_conv_conj_imp de_Morgan_disj
 | 
| 
 
24b17460ee60
streamlined simpset building, avoiding duplicated rewrite rules
 
haftmann 
parents: 
75878 
diff
changeset
 | 
112  | 
de_Morgan_conj not_all not_ex not_not}  | 
| 
 
24b17460ee60
streamlined simpset building, avoiding duplicated rewrite rules
 
haftmann 
parents: 
75878 
diff
changeset
 | 
113  | 
|
| 
 
24b17460ee60
streamlined simpset building, avoiding duplicated rewrite rules
 
haftmann 
parents: 
75878 
diff
changeset
 | 
114  | 
fun prem_nnf_tac ctxt = full_simp_tac (nnf_simpset ctxt)  | 
| 
 
24b17460ee60
streamlined simpset building, avoiding duplicated rewrite rules
 
haftmann 
parents: 
75878 
diff
changeset
 | 
115  | 
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| 
24092
 
71c27b320610
HOL setup for linear arithmetic -- moved here from arith_data.ML;
 
wenzelm 
parents:  
diff
changeset
 | 
116  | 
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| 
60349
 
26700f36d6f1
tuned, including proper signature for functor argument
 
haftmann 
parents: 
59996 
diff
changeset
 | 
117  | 
structure LA_Data: LIN_ARITH_DATA =  | 
| 
24092
 
71c27b320610
HOL setup for linear arithmetic -- moved here from arith_data.ML;
 
wenzelm 
parents:  
diff
changeset
 | 
118  | 
struct  | 
| 
 
71c27b320610
HOL setup for linear arithmetic -- moved here from arith_data.ML;
 
wenzelm 
parents:  
diff
changeset
 | 
119  | 
|
| 44654 | 120  | 
val neq_limit = neq_limit;  | 
121  | 
val trace = trace;  | 
|
| 
24092
 
71c27b320610
HOL setup for linear arithmetic -- moved here from arith_data.ML;
 
wenzelm 
parents:  
diff
changeset
 | 
122  | 
|
| 
 
71c27b320610
HOL setup for linear arithmetic -- moved here from arith_data.ML;
 
wenzelm 
parents:  
diff
changeset
 | 
123  | 
|
| 
 
71c27b320610
HOL setup for linear arithmetic -- moved here from arith_data.ML;
 
wenzelm 
parents:  
diff
changeset
 | 
124  | 
(* Decomposition of terms *)  | 
| 
 
71c27b320610
HOL setup for linear arithmetic -- moved here from arith_data.ML;
 
wenzelm 
parents:  
diff
changeset
 | 
125  | 
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| 
 
71c27b320610
HOL setup for linear arithmetic -- moved here from arith_data.ML;
 
wenzelm 
parents:  
diff
changeset
 | 
126  | 
(*internal representation of linear (in-)equations*)  | 
| 26942 | 127  | 
type decomp =  | 
| 
24328
 
83afe527504d
fixed a bug in demult: -a in (-a * b) is no longer treated as atomic
 
webertj 
parents: 
24271 
diff
changeset
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128  | 
((term * Rat.rat) list * Rat.rat * string * (term * Rat.rat) list * Rat.rat * bool);  | 
| 
24092
 
71c27b320610
HOL setup for linear arithmetic -- moved here from arith_data.ML;
 
wenzelm 
parents:  
diff
changeset
 | 
129  | 
|
| 
 
71c27b320610
HOL setup for linear arithmetic -- moved here from arith_data.ML;
 
wenzelm 
parents:  
diff
changeset
 | 
130  | 
fun nT (Type ("fun", [N, _])) = (N = HOLogic.natT)
 | 
| 
 
71c27b320610
HOL setup for linear arithmetic -- moved here from arith_data.ML;
 
wenzelm 
parents:  
diff
changeset
 | 
131  | 
| nT _ = false;  | 
| 
 
71c27b320610
HOL setup for linear arithmetic -- moved here from arith_data.ML;
 
wenzelm 
parents:  
diff
changeset
 | 
132  | 
|
| 
 
71c27b320610
HOL setup for linear arithmetic -- moved here from arith_data.ML;
 
wenzelm 
parents:  
diff
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133  | 
fun add_atom (t : term) (m : Rat.rat) (p : (term * Rat.rat) list, i : Rat.rat) :  | 
| 
 
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134  | 
(term * Rat.rat) list * Rat.rat =  | 
| 52131 | 135  | 
case AList.lookup Envir.aeconv p t of  | 
| 
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 | 
136  | 
NONE => ((t, m) :: p, i)  | 
| 52131 | 137  | 
| SOME n => (AList.update Envir.aeconv (t, Rat.add n m) p, i);  | 
| 
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 | 
138  | 
|
| 
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 | 
139  | 
(* decompose nested multiplications, bracketing them to the right and combining  | 
| 
 
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140  | 
all their coefficients  | 
| 
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141  | 
|
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142  | 
inj_consts: list of constants to be ignored when encountered  | 
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143  | 
(e.g. arithmetic type conversions that preserve value)  | 
| 
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144  | 
|
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145  | 
m: multiplicity associated with the entire product  | 
| 
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146  | 
|
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147  | 
returns either (SOME term, associated multiplicity) or (NONE, constant)  | 
| 
 
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148  | 
*)  | 
| 67149 | 149  | 
fun of_field_sort thy U = Sign.of_sort thy (U, \<^sort>\<open>inverse\<close>);  | 
| 
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 | 
150  | 
|
| 
 
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151  | 
fun demult thy (inj_consts : (string * typ) list) : term * Rat.rat -> term option * Rat.rat =  | 
| 
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152  | 
let  | 
| 67149 | 153  | 
fun demult ((mC as Const (\<^const_name>\<open>Groups.times\<close>, _)) $ s $ t, m) =  | 
154  | 
(case s of Const (\<^const_name>\<open>Groups.times\<close>, _) $ s1 $ s2 =>  | 
|
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 | 
155  | 
(* bracketing to the right: '(s1 * s2) * t' becomes 's1 * (s2 * t)' *)  | 
| 
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156  | 
demult (mC $ s1 $ (mC $ s2 $ t), m)  | 
| 
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 | 
157  | 
| _ =>  | 
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 | 
158  | 
(* product 's * t', where either factor can be 'NONE' *)  | 
| 
 
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 | 
159  | 
(case demult (s, m) of  | 
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 | 
160  | 
(SOME s', m') =>  | 
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 | 
161  | 
(case demult (t, m') of  | 
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 | 
162  | 
(SOME t', m'') => (SOME (mC $ s' $ t'), m'')  | 
| 
 
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163  | 
| (NONE, m'') => (SOME s', m''))  | 
| 
 
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 | 
164  | 
| (NONE, m') => demult (t, m')))  | 
| 67149 | 165  | 
| demult (atom as (mC as Const (\<^const_name>\<open>Rings.divide\<close>, T)) $ s $ t, m) =  | 
| 
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changeset
 | 
166  | 
(* FIXME: Shouldn't we simplify nested quotients, e.g. '(s/t)/u' could  | 
| 
 
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 | 
167  | 
become 's/(t*u)', and '(s*t)/u' could become 's*(t/u)' ? Note that  | 
| 
 
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 | 
168  | 
if we choose to do so here, the simpset used by arith must be able to  | 
| 
 
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 | 
169  | 
perform the same simplifications. *)  | 
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 | 
170  | 
(* quotient 's / t', where the denominator t can be NONE *)  | 
| 
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171  | 
(* Note: will raise Div iff m' is @0 *)  | 
| 
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 | 
172  | 
if of_field_sort thy (domain_type T) then  | 
| 
 
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173  | 
let  | 
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 | 
174  | 
val (os',m') = demult (s, m);  | 
| 63205 | 175  | 
val (ot',p) = demult (t, @1)  | 
| 
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 | 
176  | 
in (case (os',ot') of  | 
| 55375 | 177  | 
(SOME s', SOME t') => SOME (mC $ s' $ t')  | 
178  | 
| (SOME s', NONE) => SOME s'  | 
|
179  | 
| (NONE, SOME t') =>  | 
|
| 67149 | 180  | 
SOME (mC $ Const (\<^const_name>\<open>Groups.one\<close>, domain_type (snd (dest_Const mC))) $ t')  | 
| 55375 | 181  | 
| (NONE, NONE) => NONE,  | 
182  | 
Rat.mult m' (Rat.inv p))  | 
|
| 
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 | 
183  | 
end  | 
| 
 
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 | 
184  | 
else (SOME atom, m)  | 
| 
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 | 
185  | 
(* terms that evaluate to numeric constants *)  | 
| 67149 | 186  | 
| demult (Const (\<^const_name>\<open>Groups.uminus\<close>, _) $ t, m) = demult (t, ~ m)  | 
187  | 
| demult (Const (\<^const_name>\<open>Groups.zero\<close>, _), _) = (NONE, @0)  | 
|
188  | 
| demult (Const (\<^const_name>\<open>Groups.one\<close>, _), m) = (NONE, m)  | 
|
| 
47108
 
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 | 
189  | 
(*Warning: in rare cases (neg_)numeral encloses a non-numeral,  | 
| 62342 | 190  | 
in which case dest_numeral raises TERM; hence all the handles below.  | 
| 
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 | 
191  | 
Same for Suc-terms that turn out not to be numerals -  | 
| 
 
83afe527504d
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 | 
192  | 
although the simplifier should eliminate those anyway ...*)  | 
| 63948 | 193  | 
    | demult (t as Const ("Num.numeral_class.numeral", _) (*DYNAMIC BINDING!*) $ n, m) =
 | 
| 63201 | 194  | 
((NONE, Rat.mult m (Rat.of_int (HOLogic.dest_numeral n)))  | 
| 
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 | 
195  | 
handle TERM _ => (SOME t, m))  | 
| 67149 | 196  | 
| demult (t as Const (\<^const_name>\<open>Suc\<close>, _) $ _, m) =  | 
| 63201 | 197  | 
((NONE, Rat.mult m (Rat.of_int (HOLogic.dest_nat t)))  | 
| 
24328
 
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webertj 
parents: 
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diff
changeset
 | 
198  | 
handle TERM _ => (SOME t, m))  | 
| 
 
83afe527504d
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 | 
199  | 
(* injection constants are ignored *)  | 
| 
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200  | 
| demult (t as Const f $ x, m) =  | 
| 
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parents: 
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diff
changeset
 | 
201  | 
if member (op =) inj_consts f then demult (x, m) else (SOME t, m)  | 
| 
 
83afe527504d
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 | 
202  | 
(* everything else is considered atomic *)  | 
| 
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 | 
203  | 
| demult (atom, m) = (SOME atom, m)  | 
| 
 
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204  | 
in demult end;  | 
| 
 
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 | 
205  | 
|
| 
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 | 
206  | 
fun decomp0 thy (inj_consts : (string * typ) list) (rel : string, lhs : term, rhs : term) :  | 
| 
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207  | 
((term * Rat.rat) list * Rat.rat * string * (term * Rat.rat) list * Rat.rat) option =  | 
| 
 
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 | 
208  | 
let  | 
| 
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webertj 
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changeset
 | 
209  | 
(* Turns a term 'all' and associated multiplicity 'm' into a list 'p' of  | 
| 
 
83afe527504d
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 | 
210  | 
summands and associated multiplicities, plus a constant 'i' (with implicit  | 
| 
 
83afe527504d
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 | 
211  | 
multiplicity 1) *)  | 
| 67149 | 212  | 
fun poly (Const (\<^const_name>\<open>Groups.plus\<close>, _) $ s $ t,  | 
| 
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 | 
213  | 
m : Rat.rat, pi : (term * Rat.rat) list * Rat.rat) = poly (s, m, poly (t, m, pi))  | 
| 67149 | 214  | 
| poly (all as Const (\<^const_name>\<open>Groups.minus\<close>, T) $ s $ t, m, pi) =  | 
| 63211 | 215  | 
if nT T then add_atom all m pi else poly (s, m, poly (t, ~ m, pi))  | 
| 67149 | 216  | 
| poly (all as Const (\<^const_name>\<open>Groups.uminus\<close>, T) $ t, m, pi) =  | 
| 63211 | 217  | 
if nT T then add_atom all m pi else poly (t, ~ m, pi)  | 
| 67149 | 218  | 
| poly (Const (\<^const_name>\<open>Groups.zero\<close>, _), _, pi) =  | 
| 
24092
 
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 | 
219  | 
pi  | 
| 67149 | 220  | 
| poly (Const (\<^const_name>\<open>Groups.one\<close>, _), m, (p, i)) =  | 
| 
24092
 
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 | 
221  | 
(p, Rat.add i m)  | 
| 63949 | 222  | 
    | poly (all as Const ("Num.numeral_class.numeral", _) (*DYNAMIC BINDING!*) $ t, m, pi as (p, i)) =
 | 
| 62342 | 223  | 
(let val k = HOLogic.dest_numeral t  | 
| 63201 | 224  | 
in (p, Rat.add i (Rat.mult m (Rat.of_int k))) end  | 
| 
54489
 
03ff4d1e6784
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haftmann 
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54249 
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changeset
 | 
225  | 
handle TERM _ => add_atom all m pi)  | 
| 67149 | 226  | 
| poly (Const (\<^const_name>\<open>Suc\<close>, _) $ t, m, (p, i)) =  | 
| 
24092
 
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wenzelm 
parents:  
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 | 
227  | 
poly (t, m, (p, Rat.add i m))  | 
| 67149 | 228  | 
| poly (all as Const (\<^const_name>\<open>Groups.times\<close>, _) $ _ $ _, m, pi as (p, i)) =  | 
| 
60351
 
5cdf3903a302
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haftmann 
parents: 
60350 
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 | 
229  | 
(case demult thy inj_consts (all, m) of  | 
| 
24092
 
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parents:  
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 | 
230  | 
(NONE, m') => (p, Rat.add i m')  | 
| 
 
71c27b320610
HOL setup for linear arithmetic -- moved here from arith_data.ML;
 
wenzelm 
parents:  
diff
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 | 
231  | 
| (SOME u, m') => add_atom u m' pi)  | 
| 67149 | 232  | 
| poly (all as Const (\<^const_name>\<open>Rings.divide\<close>, T) $ _ $ _, m, pi as (p, i)) =  | 
| 
60351
 
5cdf3903a302
explicit check for field sort, to anticipate situation where syntactic checking alone will not be sufficient any longer
 
haftmann 
parents: 
60350 
diff
changeset
 | 
233  | 
if of_field_sort thy (domain_type T) then  | 
| 
 
5cdf3903a302
explicit check for field sort, to anticipate situation where syntactic checking alone will not be sufficient any longer
 
haftmann 
parents: 
60350 
diff
changeset
 | 
234  | 
(case demult thy inj_consts (all, m) of  | 
| 
 
5cdf3903a302
explicit check for field sort, to anticipate situation where syntactic checking alone will not be sufficient any longer
 
haftmann 
parents: 
60350 
diff
changeset
 | 
235  | 
(NONE, m') => (p, Rat.add i m')  | 
| 
 
5cdf3903a302
explicit check for field sort, to anticipate situation where syntactic checking alone will not be sufficient any longer
 
haftmann 
parents: 
60350 
diff
changeset
 | 
236  | 
| (SOME u, m') => add_atom u m' pi)  | 
| 
 
5cdf3903a302
explicit check for field sort, to anticipate situation where syntactic checking alone will not be sufficient any longer
 
haftmann 
parents: 
60350 
diff
changeset
 | 
237  | 
else add_atom all m pi  | 
| 
24092
 
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parents:  
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 | 
238  | 
| poly (all as Const f $ x, m, pi) =  | 
| 
36692
 
54b64d4ad524
farewell to old-style mem infixes -- type inference in situations with mem_int and mem_string should provide enough information to resolve the type of (op =)
 
haftmann 
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36001 
diff
changeset
 | 
239  | 
if member (op =) inj_consts f then poly (x, m, pi) else add_atom all m pi  | 
| 
24092
 
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 | 
240  | 
| poly (all, m, pi) =  | 
| 
 
71c27b320610
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parents:  
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 | 
241  | 
add_atom all m pi  | 
| 63205 | 242  | 
val (p, i) = poly (lhs, @1, ([], @0))  | 
243  | 
val (q, j) = poly (rhs, @1, ([], @0))  | 
|
| 
24092
 
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 | 
244  | 
in  | 
| 
 
71c27b320610
HOL setup for linear arithmetic -- moved here from arith_data.ML;
 
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parents:  
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 | 
245  | 
case rel of  | 
| 67149 | 246  | 
\<^const_name>\<open>Orderings.less\<close> => SOME (p, i, "<", q, j)  | 
247  | 
| \<^const_name>\<open>Orderings.less_eq\<close> => SOME (p, i, "<=", q, j)  | 
|
248  | 
| \<^const_name>\<open>HOL.eq\<close> => SOME (p, i, "=", q, j)  | 
|
| 
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 | 
249  | 
| _ => NONE  | 
| 
63210
 
a0685d2b420b
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 | 
250  | 
end handle General.Div => NONE;  | 
| 
24092
 
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 | 
251  | 
|
| 24271 | 252  | 
fun of_lin_arith_sort thy U =  | 
| 67149 | 253  | 
Sign.of_sort thy (U, \<^sort>\<open>Rings.linordered_idom\<close>);  | 
| 
24092
 
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wenzelm 
parents:  
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 | 
254  | 
|
| 
31101
 
26c7bb764a38
qualified names for Lin_Arith tactics and simprocs
 
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31100 
diff
changeset
 | 
255  | 
fun allows_lin_arith thy (discrete : string list) (U as Type (D, [])) : bool * bool =  | 
| 
 
26c7bb764a38
qualified names for Lin_Arith tactics and simprocs
 
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changeset
 | 
256  | 
if of_lin_arith_sort thy U then (true, member (op =) discrete D)  | 
| 
 
26c7bb764a38
qualified names for Lin_Arith tactics and simprocs
 
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changeset
 | 
257  | 
else if member (op =) discrete D then (true, true) else (false, false)  | 
| 
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258  | 
| allows_lin_arith sg _ U = (of_lin_arith_sort sg U, false);  | 
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259  | 
|
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260  | 
fun decomp_typecheck thy (discrete, inj_consts) (T : typ, xxx) : decomp option =  | 
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261  | 
case T of  | 
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262  | 
    Type ("fun", [U, _]) =>
 | 
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263  | 
(case allows_lin_arith thy discrete U of  | 
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264  | 
(true, d) =>  | 
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265  | 
(case decomp0 thy inj_consts xxx of  | 
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266  | 
NONE => NONE  | 
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267  | 
| SOME (p, i, rel, q, j) => SOME (p, i, rel, q, j, d))  | 
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268  | 
| (false, _) =>  | 
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269  | 
NONE)  | 
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270  | 
| _ => NONE;  | 
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271  | 
|
| 
 
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272  | 
fun negate (SOME (x, i, rel, y, j, d)) = SOME (x, i, "~" ^ rel, y, j, d)  | 
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273  | 
| negate NONE = NONE;  | 
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274  | 
|
| 
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275  | 
fun decomp_negation thy data  | 
| 67149 | 276  | 
((Const (\<^const_name>\<open>Trueprop\<close>, _)) $ (Const (rel, T) $ lhs $ rhs)) : decomp option =  | 
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277  | 
decomp_typecheck thy data (T, (rel, lhs, rhs))  | 
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278  | 
| decomp_negation thy data  | 
| 67149 | 279  | 
((Const (\<^const_name>\<open>Trueprop\<close>, _)) $ (Const (\<^const_name>\<open>Not\<close>, _) $ (Const (rel, T) $ lhs $ rhs))) =  | 
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280  | 
negate (decomp_typecheck thy data (T, (rel, lhs, rhs)))  | 
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281  | 
| decomp_negation _ _ _ =  | 
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282  | 
NONE;  | 
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283  | 
|
| 26942 | 284  | 
fun decomp ctxt : term -> decomp option =  | 
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285  | 
let  | 
| 42361 | 286  | 
val thy = Proof_Context.theory_of ctxt  | 
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287  | 
    val {discrete, inj_consts, ...} = get_arith_data ctxt
 | 
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288  | 
in decomp_negation thy (discrete, inj_consts) end;  | 
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289  | 
|
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42439
 
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290  | 
fun domain_is_nat (_ $ (Const (_, T) $ _ $ _)) = nT T  | 
| 67149 | 291  | 
| domain_is_nat (_ $ (Const (\<^const_name>\<open>Not\<close>, _) $ (Const (_, T) $ _ $ _))) = nT T  | 
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292  | 
| domain_is_nat _ = false;  | 
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293  | 
|
| 
 
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294  | 
|
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295  | 
(* Abstraction of terms *)  | 
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296  | 
|
| 
 
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297  | 
(*  | 
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298  | 
Abstract terms contain only arithmetic operators and relations.  | 
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299  | 
|
| 
 
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300  | 
When constructing an abstract term for an arbitrary term, non-arithmetic sub-terms  | 
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301  | 
are replaced by fresh variables which are declared in the context. Constructing  | 
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302  | 
an abstract term from an arbitrary term follows the strategy of decomp.  | 
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303  | 
*)  | 
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304  | 
|
| 
 
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305  | 
fun apply t u = t $ u  | 
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306  | 
|
| 
 
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307  | 
fun with2 f c t u cx = f t cx ||>> f u |>> (fn (t, u) => c $ t $ u)  | 
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308  | 
|
| 
 
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309  | 
fun abstract_atom (t as Free _) cx = (t, cx)  | 
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310  | 
| abstract_atom (t as Const _) cx = (t, cx)  | 
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311  | 
| abstract_atom t (cx as (terms, ctxt)) =  | 
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312  | 
(case AList.lookup Envir.aeconv terms t of  | 
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313  | 
SOME u => (u, cx)  | 
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314  | 
| NONE =>  | 
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315  | 
let  | 
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316  | 
val (n, ctxt') = yield_singleton Variable.variant_fixes "" ctxt  | 
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317  | 
val u = Free (n, fastype_of t)  | 
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318  | 
in (u, ((t, u) :: terms, ctxt')) end)  | 
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319  | 
|
| 
 
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320  | 
fun abstract_num t cx = if can HOLogic.dest_number t then (t, cx) else abstract_atom t cx  | 
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321  | 
|
| 
 
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322  | 
fun is_field_sort (_, ctxt) T = of_field_sort (Proof_Context.theory_of ctxt) (domain_type T)  | 
| 
 
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323  | 
|
| 
 
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324  | 
fun is_inj_const (_, ctxt) f =  | 
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325  | 
  let val {inj_consts, ...} = get_arith_data ctxt
 | 
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326  | 
in member (op =) inj_consts f end  | 
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327  | 
|
| 67149 | 328  | 
fun abstract_arith ((c as Const (\<^const_name>\<open>Groups.plus\<close>, _)) $ u1 $ u2) cx =  | 
| 
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329  | 
with2 abstract_arith c u1 u2 cx  | 
| 67149 | 330  | 
| abstract_arith (t as (c as Const (\<^const_name>\<open>Groups.minus\<close>, T)) $ u1 $ u2) cx =  | 
| 
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331  | 
if nT T then abstract_atom t cx else with2 abstract_arith c u1 u2 cx  | 
| 67149 | 332  | 
| abstract_arith (t as (c as Const (\<^const_name>\<open>Groups.uminus\<close>, T)) $ u) cx =  | 
| 
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333  | 
if nT T then abstract_atom t cx else abstract_arith u cx |>> apply c  | 
| 67149 | 334  | 
| abstract_arith ((c as Const (\<^const_name>\<open>Suc\<close>, _)) $ u) cx = abstract_arith u cx |>> apply c  | 
335  | 
| abstract_arith ((c as Const (\<^const_name>\<open>Groups.times\<close>, _)) $ u1 $ u2) cx =  | 
|
| 
66035
 
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336  | 
with2 abstract_arith c u1 u2 cx  | 
| 67149 | 337  | 
| abstract_arith (t as (c as Const (\<^const_name>\<open>Rings.divide\<close>, T)) $ u1 $ u2) cx =  | 
| 
66035
 
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338  | 
if is_field_sort cx T then with2 abstract_arith c u1 u2 cx else abstract_atom t cx  | 
| 
 
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339  | 
| abstract_arith (t as (c as Const f) $ u) cx =  | 
| 
 
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340  | 
if is_inj_const cx f then abstract_arith u cx |>> apply c else abstract_num t cx  | 
| 
 
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341  | 
| abstract_arith t cx = abstract_num t cx  | 
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342  | 
|
| 67149 | 343  | 
fun is_lin_arith_rel \<^const_name>\<open>Orderings.less\<close> = true  | 
344  | 
| is_lin_arith_rel \<^const_name>\<open>Orderings.less_eq\<close> = true  | 
|
345  | 
| is_lin_arith_rel \<^const_name>\<open>HOL.eq\<close> = true  | 
|
| 
66035
 
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346  | 
| is_lin_arith_rel _ = false  | 
| 
 
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347  | 
|
| 
 
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348  | 
fun is_lin_arith_type (_, ctxt) T =  | 
| 
 
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349  | 
  let val {discrete, ...} = get_arith_data ctxt
 | 
| 
 
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350  | 
in fst (allows_lin_arith (Proof_Context.theory_of ctxt) discrete T) end  | 
| 
 
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351  | 
|
| 
 
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 | 
352  | 
fun abstract_rel (t as (r as Const (rel, Type ("fun", [U, _]))) $ lhs $ rhs) cx =
 | 
| 
 
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 | 
353  | 
if is_lin_arith_rel rel andalso is_lin_arith_type cx U then with2 abstract_arith r lhs rhs cx  | 
| 
 
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 | 
354  | 
else abstract_atom t cx  | 
| 
 
de6cd60b1226
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 | 
355  | 
| abstract_rel t cx = abstract_atom t cx  | 
| 
 
de6cd60b1226
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 | 
356  | 
|
| 67149 | 357  | 
fun abstract_neg ((c as Const (\<^const_name>\<open>Not\<close>, _)) $ t) cx = abstract_rel t cx |>> apply c  | 
| 
66035
 
de6cd60b1226
replace non-arithmetic terms by fresh variables before replaying linear-arithmetic proofs: avoid failed proof replays due to an overambitious simpset which may cause proof replay to diverge from the pre-computed proof trace
 
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 | 
358  | 
| abstract_neg t cx = abstract_rel t cx  | 
| 
 
de6cd60b1226
replace non-arithmetic terms by fresh variables before replaying linear-arithmetic proofs: avoid failed proof replays due to an overambitious simpset which may cause proof replay to diverge from the pre-computed proof trace
 
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 | 
359  | 
|
| 67149 | 360  | 
fun abstract ((c as Const (\<^const_name>\<open>Trueprop\<close>, _)) $ t) cx = abstract_neg t cx |>> apply c  | 
| 
66035
 
de6cd60b1226
replace non-arithmetic terms by fresh variables before replaying linear-arithmetic proofs: avoid failed proof replays due to an overambitious simpset which may cause proof replay to diverge from the pre-computed proof trace
 
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 | 
361  | 
| abstract t cx = abstract_atom t cx  | 
| 
 
de6cd60b1226
replace non-arithmetic terms by fresh variables before replaying linear-arithmetic proofs: avoid failed proof replays due to an overambitious simpset which may cause proof replay to diverge from the pre-computed proof trace
 
boehmes 
parents: 
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changeset
 | 
362  | 
|
| 
 
de6cd60b1226
replace non-arithmetic terms by fresh variables before replaying linear-arithmetic proofs: avoid failed proof replays due to an overambitious simpset which may cause proof replay to diverge from the pre-computed proof trace
 
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parents: 
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changeset
 | 
363  | 
|
| 
24092
 
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364  | 
(*---------------------------------------------------------------------------*)  | 
| 32369 | 365  | 
(* the following code performs splitting of certain constants (e.g., min, *)  | 
| 
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 | 
366  | 
(* max) in a linear arithmetic problem; similar to what split_tac later does *)  | 
| 
 
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 | 
367  | 
(* to the proof state *)  | 
| 
 
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 | 
368  | 
(*---------------------------------------------------------------------------*)  | 
| 
 
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 | 
369  | 
|
| 
 
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 | 
370  | 
(* checks if splitting with 'thm' is implemented *)  | 
| 
 
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HOL setup for linear arithmetic -- moved here from arith_data.ML;
 
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 | 
371  | 
|
| 
42439
 
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eliminated Display.string_of_thm_without_context;
 
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 | 
372  | 
fun is_split_thm ctxt thm =  | 
| 59582 | 373  | 
(case Thm.concl_of thm of _ $ (_ $ (_ $ lhs) $ _) =>  | 
| 
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374  | 
(* Trueprop $ ((op =) $ (?P $ lhs) $ rhs) *)  | 
| 
42439
 
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 | 
375  | 
(case head_of lhs of  | 
| 
 
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 | 
376  | 
Const (a, _) =>  | 
| 
 
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 | 
377  | 
member (op =)  | 
| 67149 | 378  | 
[\<^const_name>\<open>Orderings.max\<close>,  | 
379  | 
\<^const_name>\<open>Orderings.min\<close>,  | 
|
380  | 
\<^const_name>\<open>Groups.abs\<close>,  | 
|
381  | 
\<^const_name>\<open>Groups.minus\<close>,  | 
|
| 
42439
 
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 | 
382  | 
"Int.nat" (*DYNAMIC BINDING!*),  | 
| 67149 | 383  | 
\<^const_name>\<open>Rings.modulo\<close>,  | 
384  | 
\<^const_name>\<open>Rings.divide\<close>] a  | 
|
| 
42439
 
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 | 
385  | 
| _ =>  | 
| 
59352
 
63c02d051661
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diff
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 | 
386  | 
(if Context_Position.is_visible ctxt then  | 
| 61268 | 387  | 
        warning ("Lin. Arith.: wrong format for split rule " ^ Thm.string_of_thm ctxt thm)
 | 
| 
59352
 
63c02d051661
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 | 
388  | 
else (); false))  | 
| 
42439
 
9efdd0af15ac
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parents: 
42361 
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changeset
 | 
389  | 
| _ =>  | 
| 
59352
 
63c02d051661
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diff
changeset
 | 
390  | 
(if Context_Position.is_visible ctxt then  | 
| 61268 | 391  | 
      warning ("Lin. Arith.: wrong format for split rule " ^ Thm.string_of_thm ctxt thm)
 | 
| 
59352
 
63c02d051661
tuned warnings: observe Context_Position.is_visible;
 
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parents: 
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diff
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 | 
392  | 
else (); false));  | 
| 
24092
 
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HOL setup for linear arithmetic -- moved here from arith_data.ML;
 
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 | 
393  | 
|
| 
 
71c27b320610
HOL setup for linear arithmetic -- moved here from arith_data.ML;
 
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changeset
 | 
394  | 
(* substitute new for occurrences of old in a term, incrementing bound *)  | 
| 
 
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HOL setup for linear arithmetic -- moved here from arith_data.ML;
 
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changeset
 | 
395  | 
(* variables as needed when substituting inside an abstraction *)  | 
| 
 
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HOL setup for linear arithmetic -- moved here from arith_data.ML;
 
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changeset
 | 
396  | 
|
| 
 
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HOL setup for linear arithmetic -- moved here from arith_data.ML;
 
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 | 
397  | 
fun subst_term ([] : (term * term) list) (t : term) = t  | 
| 
 
71c27b320610
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 | 
398  | 
| subst_term pairs t =  | 
| 52131 | 399  | 
(case AList.lookup Envir.aeconv pairs t of  | 
| 
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 | 
400  | 
SOME new =>  | 
| 
 
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HOL setup for linear arithmetic -- moved here from arith_data.ML;
 
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changeset
 | 
401  | 
new  | 
| 
 
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HOL setup for linear arithmetic -- moved here from arith_data.ML;
 
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 | 
402  | 
| NONE =>  | 
| 
 
71c27b320610
HOL setup for linear arithmetic -- moved here from arith_data.ML;
 
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changeset
 | 
403  | 
(case t of Abs (a, T, body) =>  | 
| 
59058
 
a78612c67ec0
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diff
changeset
 | 
404  | 
let val pairs' = map (apply2 (incr_boundvars 1)) pairs  | 
| 
24092
 
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HOL setup for linear arithmetic -- moved here from arith_data.ML;
 
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changeset
 | 
405  | 
in Abs (a, T, subst_term pairs' body) end  | 
| 
59058
 
a78612c67ec0
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diff
changeset
 | 
406  | 
| t1 $ t2 => subst_term pairs t1 $ subst_term pairs t2  | 
| 
24092
 
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HOL setup for linear arithmetic -- moved here from arith_data.ML;
 
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 | 
407  | 
| _ => t));  | 
| 
 
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HOL setup for linear arithmetic -- moved here from arith_data.ML;
 
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changeset
 | 
408  | 
|
| 
 
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HOL setup for linear arithmetic -- moved here from arith_data.ML;
 
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 | 
409  | 
(* approximates the effect of one application of split_tac (followed by NNF *)  | 
| 
 
71c27b320610
HOL setup for linear arithmetic -- moved here from arith_data.ML;
 
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parents:  
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changeset
 | 
410  | 
(* normalization) on the subgoal represented by '(Ts, terms)'; returns a *)  | 
| 
 
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HOL setup for linear arithmetic -- moved here from arith_data.ML;
 
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parents:  
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changeset
 | 
411  | 
(* list of new subgoals (each again represented by a typ list for bound *)  | 
| 
 
71c27b320610
HOL setup for linear arithmetic -- moved here from arith_data.ML;
 
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parents:  
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changeset
 | 
412  | 
(* variables and a term list for premises), or NONE if split_tac would fail *)  | 
| 
 
71c27b320610
HOL setup for linear arithmetic -- moved here from arith_data.ML;
 
wenzelm 
parents:  
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changeset
 | 
413  | 
(* on the subgoal *)  | 
| 
 
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HOL setup for linear arithmetic -- moved here from arith_data.ML;
 
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parents:  
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changeset
 | 
414  | 
|
| 
 
71c27b320610
HOL setup for linear arithmetic -- moved here from arith_data.ML;
 
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parents:  
diff
changeset
 | 
415  | 
(* FIXME: currently only the effect of certain split theorems is reproduced *)  | 
| 
 
71c27b320610
HOL setup for linear arithmetic -- moved here from arith_data.ML;
 
wenzelm 
parents:  
diff
changeset
 | 
416  | 
(* (which is why we need 'is_split_thm'). A more canonical *)  | 
| 
 
71c27b320610
HOL setup for linear arithmetic -- moved here from arith_data.ML;
 
wenzelm 
parents:  
diff
changeset
 | 
417  | 
(* implementation should analyze the right-hand side of the split *)  | 
| 
 
71c27b320610
HOL setup for linear arithmetic -- moved here from arith_data.ML;
 
wenzelm 
parents:  
diff
changeset
 | 
418  | 
(* theorem that can be applied, and modify the subgoal accordingly. *)  | 
| 
 
71c27b320610
HOL setup for linear arithmetic -- moved here from arith_data.ML;
 
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parents:  
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changeset
 | 
419  | 
(* Or even better, the splitter should be extended to provide *)  | 
| 
 
71c27b320610
HOL setup for linear arithmetic -- moved here from arith_data.ML;
 
wenzelm 
parents:  
diff
changeset
 | 
420  | 
(* splitting on terms as well as splitting on theorems (where the *)  | 
| 
 
71c27b320610
HOL setup for linear arithmetic -- moved here from arith_data.ML;
 
wenzelm 
parents:  
diff
changeset
 | 
421  | 
(* former can have a faster implementation as it does not need to be *)  | 
| 
 
71c27b320610
HOL setup for linear arithmetic -- moved here from arith_data.ML;
 
wenzelm 
parents:  
diff
changeset
 | 
422  | 
(* proof-producing). *)  | 
| 
 
71c27b320610
HOL setup for linear arithmetic -- moved here from arith_data.ML;
 
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parents:  
diff
changeset
 | 
423  | 
|
| 
 
71c27b320610
HOL setup for linear arithmetic -- moved here from arith_data.ML;
 
wenzelm 
parents:  
diff
changeset
 | 
424  | 
fun split_once_items ctxt (Ts : typ list, terms : term list) :  | 
| 
 
71c27b320610
HOL setup for linear arithmetic -- moved here from arith_data.ML;
 
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parents:  
diff
changeset
 | 
425  | 
(typ list * term list) list option =  | 
| 
 
71c27b320610
HOL setup for linear arithmetic -- moved here from arith_data.ML;
 
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parents:  
diff
changeset
 | 
426  | 
let  | 
| 42361 | 427  | 
val thy = Proof_Context.theory_of ctxt  | 
| 
24092
 
71c27b320610
HOL setup for linear arithmetic -- moved here from arith_data.ML;
 
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parents:  
diff
changeset
 | 
428  | 
(* takes a list [t1, ..., tn] to the term *)  | 
| 
 
71c27b320610
HOL setup for linear arithmetic -- moved here from arith_data.ML;
 
wenzelm 
parents:  
diff
changeset
 | 
429  | 
(* tn' --> ... --> t1' --> False , *)  | 
| 
 
71c27b320610
HOL setup for linear arithmetic -- moved here from arith_data.ML;
 
wenzelm 
parents:  
diff
changeset
 | 
430  | 
(* where ti' = HOLogic.dest_Trueprop ti *)  | 
| 32369 | 431  | 
fun REPEAT_DETERM_etac_rev_mp tms =  | 
| 67149 | 432  | 
fold (curry HOLogic.mk_imp) (map HOLogic.dest_Trueprop tms) \<^term>\<open>False\<close>  | 
| 67631 | 433  | 
val split_thms = filter (is_split_thm ctxt) (get_splits ctxt)  | 
| 32369 | 434  | 
val cmap = Splitter.cmap_of_split_thms split_thms  | 
435  | 
val goal_tm = REPEAT_DETERM_etac_rev_mp terms  | 
|
436  | 
val splits = Splitter.split_posns cmap thy Ts goal_tm  | 
|
| 31082 | 437  | 
val split_limit = Config.get ctxt split_limit  | 
| 
24092
 
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HOL setup for linear arithmetic -- moved here from arith_data.ML;
 
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parents:  
diff
changeset
 | 
438  | 
in  | 
| 32369 | 439  | 
if length splits > split_limit then (  | 
440  | 
    tracing ("linarith_split_limit exceeded (current value is " ^
 | 
|
441  | 
string_of_int split_limit ^ ")");  | 
|
442  | 
NONE  | 
|
443  | 
) else case splits of  | 
|
444  | 
[] =>  | 
|
| 
24092
 
71c27b320610
HOL setup for linear arithmetic -- moved here from arith_data.ML;
 
wenzelm 
parents:  
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changeset
 | 
445  | 
(* split_tac would fail: no possible split *)  | 
| 
 
71c27b320610
HOL setup for linear arithmetic -- moved here from arith_data.ML;
 
wenzelm 
parents:  
diff
changeset
 | 
446  | 
NONE  | 
| 32369 | 447  | 
| (_, _::_, _, _, _) :: _ =>  | 
448  | 
(* disallow a split that involves non-locally bound variables (except *)  | 
|
449  | 
(* when bound by outermost meta-quantifiers) *)  | 
|
450  | 
NONE  | 
|
451  | 
| (_, [], _, split_type, split_term) :: _ =>  | 
|
452  | 
(* ignore all but the first possible split *)  | 
|
453  | 
(case strip_comb split_term of  | 
|
| 
24092
 
71c27b320610
HOL setup for linear arithmetic -- moved here from arith_data.ML;
 
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parents:  
diff
changeset
 | 
454  | 
(* ?P (max ?i ?j) = ((?i <= ?j --> ?P ?j) & (~ ?i <= ?j --> ?P ?i)) *)  | 
| 67149 | 455  | 
(Const (\<^const_name>\<open>Orderings.max\<close>, _), [t1, t2]) =>  | 
| 
24092
 
71c27b320610
HOL setup for linear arithmetic -- moved here from arith_data.ML;
 
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parents:  
diff
changeset
 | 
456  | 
let  | 
| 
 
71c27b320610
HOL setup for linear arithmetic -- moved here from arith_data.ML;
 
wenzelm 
parents:  
diff
changeset
 | 
457  | 
val rev_terms = rev terms  | 
| 
 
71c27b320610
HOL setup for linear arithmetic -- moved here from arith_data.ML;
 
wenzelm 
parents:  
diff
changeset
 | 
458  | 
val terms1 = map (subst_term [(split_term, t1)]) rev_terms  | 
| 
 
71c27b320610
HOL setup for linear arithmetic -- moved here from arith_data.ML;
 
wenzelm 
parents:  
diff
changeset
 | 
459  | 
val terms2 = map (subst_term [(split_term, t2)]) rev_terms  | 
| 67149 | 460  | 
val t1_leq_t2 = Const (\<^const_name>\<open>Orderings.less_eq\<close>,  | 
| 
24092
 
71c27b320610
HOL setup for linear arithmetic -- moved here from arith_data.ML;
 
wenzelm 
parents:  
diff
changeset
 | 
461  | 
split_type --> split_type --> HOLogic.boolT) $ t1 $ t2  | 
| 
 
71c27b320610
HOL setup for linear arithmetic -- moved here from arith_data.ML;
 
wenzelm 
parents:  
diff
changeset
 | 
462  | 
val not_t1_leq_t2 = HOLogic.Not $ t1_leq_t2  | 
| 67149 | 463  | 
val not_false = HOLogic.mk_Trueprop (HOLogic.Not $ \<^term>\<open>False\<close>)  | 
| 
24092
 
71c27b320610
HOL setup for linear arithmetic -- moved here from arith_data.ML;
 
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parents:  
diff
changeset
 | 
464  | 
val subgoal1 = (HOLogic.mk_Trueprop t1_leq_t2) :: terms2 @ [not_false]  | 
| 
 
71c27b320610
HOL setup for linear arithmetic -- moved here from arith_data.ML;
 
wenzelm 
parents:  
diff
changeset
 | 
465  | 
val subgoal2 = (HOLogic.mk_Trueprop not_t1_leq_t2) :: terms1 @ [not_false]  | 
| 
 
71c27b320610
HOL setup for linear arithmetic -- moved here from arith_data.ML;
 
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parents:  
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changeset
 | 
466  | 
in  | 
| 
 
71c27b320610
HOL setup for linear arithmetic -- moved here from arith_data.ML;
 
wenzelm 
parents:  
diff
changeset
 | 
467  | 
SOME [(Ts, subgoal1), (Ts, subgoal2)]  | 
| 
 
71c27b320610
HOL setup for linear arithmetic -- moved here from arith_data.ML;
 
wenzelm 
parents:  
diff
changeset
 | 
468  | 
end  | 
| 
 
71c27b320610
HOL setup for linear arithmetic -- moved here from arith_data.ML;
 
wenzelm 
parents:  
diff
changeset
 | 
469  | 
(* ?P (min ?i ?j) = ((?i <= ?j --> ?P ?i) & (~ ?i <= ?j --> ?P ?j)) *)  | 
| 67149 | 470  | 
| (Const (\<^const_name>\<open>Orderings.min\<close>, _), [t1, t2]) =>  | 
| 
24092
 
71c27b320610
HOL setup for linear arithmetic -- moved here from arith_data.ML;
 
wenzelm 
parents:  
diff
changeset
 | 
471  | 
let  | 
| 
 
71c27b320610
HOL setup for linear arithmetic -- moved here from arith_data.ML;
 
wenzelm 
parents:  
diff
changeset
 | 
472  | 
val rev_terms = rev terms  | 
| 
 
71c27b320610
HOL setup for linear arithmetic -- moved here from arith_data.ML;
 
wenzelm 
parents:  
diff
changeset
 | 
473  | 
val terms1 = map (subst_term [(split_term, t1)]) rev_terms  | 
| 
 
71c27b320610
HOL setup for linear arithmetic -- moved here from arith_data.ML;
 
wenzelm 
parents:  
diff
changeset
 | 
474  | 
val terms2 = map (subst_term [(split_term, t2)]) rev_terms  | 
| 67149 | 475  | 
val t1_leq_t2 = Const (\<^const_name>\<open>Orderings.less_eq\<close>,  | 
| 
24092
 
71c27b320610
HOL setup for linear arithmetic -- moved here from arith_data.ML;
 
wenzelm 
parents:  
diff
changeset
 | 
476  | 
split_type --> split_type --> HOLogic.boolT) $ t1 $ t2  | 
| 
 
71c27b320610
HOL setup for linear arithmetic -- moved here from arith_data.ML;
 
wenzelm 
parents:  
diff
changeset
 | 
477  | 
val not_t1_leq_t2 = HOLogic.Not $ t1_leq_t2  | 
| 67149 | 478  | 
val not_false = HOLogic.mk_Trueprop (HOLogic.Not $ \<^term>\<open>False\<close>)  | 
| 
24092
 
71c27b320610
HOL setup for linear arithmetic -- moved here from arith_data.ML;
 
wenzelm 
parents:  
diff
changeset
 | 
479  | 
val subgoal1 = (HOLogic.mk_Trueprop t1_leq_t2) :: terms1 @ [not_false]  | 
| 
 
71c27b320610
HOL setup for linear arithmetic -- moved here from arith_data.ML;
 
wenzelm 
parents:  
diff
changeset
 | 
480  | 
val subgoal2 = (HOLogic.mk_Trueprop not_t1_leq_t2) :: terms2 @ [not_false]  | 
| 
 
71c27b320610
HOL setup for linear arithmetic -- moved here from arith_data.ML;
 
wenzelm 
parents:  
diff
changeset
 | 
481  | 
in  | 
| 
 
71c27b320610
HOL setup for linear arithmetic -- moved here from arith_data.ML;
 
wenzelm 
parents:  
diff
changeset
 | 
482  | 
SOME [(Ts, subgoal1), (Ts, subgoal2)]  | 
| 
 
71c27b320610
HOL setup for linear arithmetic -- moved here from arith_data.ML;
 
wenzelm 
parents:  
diff
changeset
 | 
483  | 
end  | 
| 
 
71c27b320610
HOL setup for linear arithmetic -- moved here from arith_data.ML;
 
wenzelm 
parents:  
diff
changeset
 | 
484  | 
(* ?P (abs ?a) = ((0 <= ?a --> ?P ?a) & (?a < 0 --> ?P (- ?a))) *)  | 
| 67149 | 485  | 
| (Const (\<^const_name>\<open>Groups.abs\<close>, _), [t1]) =>  | 
| 
24092
 
71c27b320610
HOL setup for linear arithmetic -- moved here from arith_data.ML;
 
wenzelm 
parents:  
diff
changeset
 | 
486  | 
let  | 
| 
 
71c27b320610
HOL setup for linear arithmetic -- moved here from arith_data.ML;
 
wenzelm 
parents:  
diff
changeset
 | 
487  | 
val rev_terms = rev terms  | 
| 
 
71c27b320610
HOL setup for linear arithmetic -- moved here from arith_data.ML;
 
wenzelm 
parents:  
diff
changeset
 | 
488  | 
val terms1 = map (subst_term [(split_term, t1)]) rev_terms  | 
| 67149 | 489  | 
val terms2 = map (subst_term [(split_term, Const (\<^const_name>\<open>Groups.uminus\<close>,  | 
| 
24092
 
71c27b320610
HOL setup for linear arithmetic -- moved here from arith_data.ML;
 
wenzelm 
parents:  
diff
changeset
 | 
490  | 
split_type --> split_type) $ t1)]) rev_terms  | 
| 67149 | 491  | 
val zero = Const (\<^const_name>\<open>Groups.zero\<close>, split_type)  | 
492  | 
val zero_leq_t1 = Const (\<^const_name>\<open>Orderings.less_eq\<close>,  | 
|
| 
24092
 
71c27b320610
HOL setup for linear arithmetic -- moved here from arith_data.ML;
 
wenzelm 
parents:  
diff
changeset
 | 
493  | 
split_type --> split_type --> HOLogic.boolT) $ zero $ t1  | 
| 67149 | 494  | 
val t1_lt_zero = Const (\<^const_name>\<open>Orderings.less\<close>,  | 
| 
24092
 
71c27b320610
HOL setup for linear arithmetic -- moved here from arith_data.ML;
 
wenzelm 
parents:  
diff
changeset
 | 
495  | 
split_type --> split_type --> HOLogic.boolT) $ t1 $ zero  | 
| 67149 | 496  | 
val not_false = HOLogic.mk_Trueprop (HOLogic.Not $ \<^term>\<open>False\<close>)  | 
| 
24092
 
71c27b320610
HOL setup for linear arithmetic -- moved here from arith_data.ML;
 
wenzelm 
parents:  
diff
changeset
 | 
497  | 
val subgoal1 = (HOLogic.mk_Trueprop zero_leq_t1) :: terms1 @ [not_false]  | 
| 
 
71c27b320610
HOL setup for linear arithmetic -- moved here from arith_data.ML;
 
wenzelm 
parents:  
diff
changeset
 | 
498  | 
val subgoal2 = (HOLogic.mk_Trueprop t1_lt_zero) :: terms2 @ [not_false]  | 
| 
 
71c27b320610
HOL setup for linear arithmetic -- moved here from arith_data.ML;
 
wenzelm 
parents:  
diff
changeset
 | 
499  | 
in  | 
| 
 
71c27b320610
HOL setup for linear arithmetic -- moved here from arith_data.ML;
 
wenzelm 
parents:  
diff
changeset
 | 
500  | 
SOME [(Ts, subgoal1), (Ts, subgoal2)]  | 
| 
 
71c27b320610
HOL setup for linear arithmetic -- moved here from arith_data.ML;
 
wenzelm 
parents:  
diff
changeset
 | 
501  | 
end  | 
| 
 
71c27b320610
HOL setup for linear arithmetic -- moved here from arith_data.ML;
 
wenzelm 
parents:  
diff
changeset
 | 
502  | 
(* ?P (?a - ?b) = ((?a < ?b --> ?P 0) & (ALL d. ?a = ?b + d --> ?P d)) *)  | 
| 67149 | 503  | 
| (Const (\<^const_name>\<open>Groups.minus\<close>, _), [t1, t2]) =>  | 
| 
24092
 
71c27b320610
HOL setup for linear arithmetic -- moved here from arith_data.ML;
 
wenzelm 
parents:  
diff
changeset
 | 
504  | 
let  | 
| 
 
71c27b320610
HOL setup for linear arithmetic -- moved here from arith_data.ML;
 
wenzelm 
parents:  
diff
changeset
 | 
505  | 
(* "d" in the above theorem becomes a new bound variable after NNF *)  | 
| 
 
71c27b320610
HOL setup for linear arithmetic -- moved here from arith_data.ML;
 
wenzelm 
parents:  
diff
changeset
 | 
506  | 
(* transformation, therefore some adjustment of indices is necessary *)  | 
| 
 
71c27b320610
HOL setup for linear arithmetic -- moved here from arith_data.ML;
 
wenzelm 
parents:  
diff
changeset
 | 
507  | 
val rev_terms = rev terms  | 
| 67149 | 508  | 
val zero = Const (\<^const_name>\<open>Groups.zero\<close>, split_type)  | 
| 
24092
 
71c27b320610
HOL setup for linear arithmetic -- moved here from arith_data.ML;
 
wenzelm 
parents:  
diff
changeset
 | 
509  | 
val d = Bound 0  | 
| 
 
71c27b320610
HOL setup for linear arithmetic -- moved here from arith_data.ML;
 
wenzelm 
parents:  
diff
changeset
 | 
510  | 
val terms1 = map (subst_term [(split_term, zero)]) rev_terms  | 
| 
 
71c27b320610
HOL setup for linear arithmetic -- moved here from arith_data.ML;
 
wenzelm 
parents:  
diff
changeset
 | 
511  | 
val terms2 = map (subst_term [(incr_boundvars 1 split_term, d)])  | 
| 
 
71c27b320610
HOL setup for linear arithmetic -- moved here from arith_data.ML;
 
wenzelm 
parents:  
diff
changeset
 | 
512  | 
(map (incr_boundvars 1) rev_terms)  | 
| 
 
71c27b320610
HOL setup for linear arithmetic -- moved here from arith_data.ML;
 
wenzelm 
parents:  
diff
changeset
 | 
513  | 
val t1' = incr_boundvars 1 t1  | 
| 
 
71c27b320610
HOL setup for linear arithmetic -- moved here from arith_data.ML;
 
wenzelm 
parents:  
diff
changeset
 | 
514  | 
val t2' = incr_boundvars 1 t2  | 
| 67149 | 515  | 
val t1_lt_t2 = Const (\<^const_name>\<open>Orderings.less\<close>,  | 
| 
24092
 
71c27b320610
HOL setup for linear arithmetic -- moved here from arith_data.ML;
 
wenzelm 
parents:  
diff
changeset
 | 
516  | 
split_type --> split_type --> HOLogic.boolT) $ t1 $ t2  | 
| 67149 | 517  | 
val t1_eq_t2_plus_d = Const (\<^const_name>\<open>HOL.eq\<close>, split_type --> split_type --> HOLogic.boolT) $ t1' $  | 
518  | 
(Const (\<^const_name>\<open>Groups.plus\<close>,  | 
|
| 
24092
 
71c27b320610
HOL setup for linear arithmetic -- moved here from arith_data.ML;
 
wenzelm 
parents:  
diff
changeset
 | 
519  | 
split_type --> split_type --> split_type) $ t2' $ d)  | 
| 67149 | 520  | 
val not_false = HOLogic.mk_Trueprop (HOLogic.Not $ \<^term>\<open>False\<close>)  | 
| 
24092
 
71c27b320610
HOL setup for linear arithmetic -- moved here from arith_data.ML;
 
wenzelm 
parents:  
diff
changeset
 | 
521  | 
val subgoal1 = (HOLogic.mk_Trueprop t1_lt_t2) :: terms1 @ [not_false]  | 
| 
 
71c27b320610
HOL setup for linear arithmetic -- moved here from arith_data.ML;
 
wenzelm 
parents:  
diff
changeset
 | 
522  | 
val subgoal2 = (HOLogic.mk_Trueprop t1_eq_t2_plus_d) :: terms2 @ [not_false]  | 
| 
 
71c27b320610
HOL setup for linear arithmetic -- moved here from arith_data.ML;
 
wenzelm 
parents:  
diff
changeset
 | 
523  | 
in  | 
| 
 
71c27b320610
HOL setup for linear arithmetic -- moved here from arith_data.ML;
 
wenzelm 
parents:  
diff
changeset
 | 
524  | 
SOME [(Ts, subgoal1), (split_type :: Ts, subgoal2)]  | 
| 
 
71c27b320610
HOL setup for linear arithmetic -- moved here from arith_data.ML;
 
wenzelm 
parents:  
diff
changeset
 | 
525  | 
end  | 
| 
33728
 
cb4235333c30
Fixed splitting of div and mod on integers (split theorem differed from implementation).
 
webertj 
parents: 
33719 
diff
changeset
 | 
526  | 
(* ?P (nat ?i) = ((ALL n. ?i = of_nat n --> ?P n) & (?i < 0 --> ?P 0)) *)  | 
| 63948 | 527  | 
    | (Const ("Int.nat", _), (*DYNAMIC BINDING!*) [t1]) =>
 | 
| 
24092
 
71c27b320610
HOL setup for linear arithmetic -- moved here from arith_data.ML;
 
wenzelm 
parents:  
diff
changeset
 | 
528  | 
let  | 
| 
 
71c27b320610
HOL setup for linear arithmetic -- moved here from arith_data.ML;
 
wenzelm 
parents:  
diff
changeset
 | 
529  | 
val rev_terms = rev terms  | 
| 67149 | 530  | 
val zero_int = Const (\<^const_name>\<open>Groups.zero\<close>, HOLogic.intT)  | 
531  | 
val zero_nat = Const (\<^const_name>\<open>Groups.zero\<close>, HOLogic.natT)  | 
|
| 
24092
 
71c27b320610
HOL setup for linear arithmetic -- moved here from arith_data.ML;
 
wenzelm 
parents:  
diff
changeset
 | 
532  | 
val n = Bound 0  | 
| 
 
71c27b320610
HOL setup for linear arithmetic -- moved here from arith_data.ML;
 
wenzelm 
parents:  
diff
changeset
 | 
533  | 
val terms1 = map (subst_term [(incr_boundvars 1 split_term, n)])  | 
| 
 
71c27b320610
HOL setup for linear arithmetic -- moved here from arith_data.ML;
 
wenzelm 
parents:  
diff
changeset
 | 
534  | 
(map (incr_boundvars 1) rev_terms)  | 
| 
 
71c27b320610
HOL setup for linear arithmetic -- moved here from arith_data.ML;
 
wenzelm 
parents:  
diff
changeset
 | 
535  | 
val terms2 = map (subst_term [(split_term, zero_nat)]) rev_terms  | 
| 
 
71c27b320610
HOL setup for linear arithmetic -- moved here from arith_data.ML;
 
wenzelm 
parents:  
diff
changeset
 | 
536  | 
val t1' = incr_boundvars 1 t1  | 
| 67149 | 537  | 
val t1_eq_nat_n = Const (\<^const_name>\<open>HOL.eq\<close>, HOLogic.intT --> HOLogic.intT --> HOLogic.boolT) $ t1' $  | 
538  | 
(Const (\<^const_name>\<open>of_nat\<close>, HOLogic.natT --> HOLogic.intT) $ n)  | 
|
539  | 
val t1_lt_zero = Const (\<^const_name>\<open>Orderings.less\<close>,  | 
|
| 
24092
 
71c27b320610
HOL setup for linear arithmetic -- moved here from arith_data.ML;
 
wenzelm 
parents:  
diff
changeset
 | 
540  | 
HOLogic.intT --> HOLogic.intT --> HOLogic.boolT) $ t1 $ zero_int  | 
| 67149 | 541  | 
val not_false = HOLogic.mk_Trueprop (HOLogic.Not $ \<^term>\<open>False\<close>)  | 
| 
33728
 
cb4235333c30
Fixed splitting of div and mod on integers (split theorem differed from implementation).
 
webertj 
parents: 
33719 
diff
changeset
 | 
542  | 
val subgoal1 = (HOLogic.mk_Trueprop t1_eq_nat_n) :: terms1 @ [not_false]  | 
| 
24092
 
71c27b320610
HOL setup for linear arithmetic -- moved here from arith_data.ML;
 
wenzelm 
parents:  
diff
changeset
 | 
543  | 
val subgoal2 = (HOLogic.mk_Trueprop t1_lt_zero) :: terms2 @ [not_false]  | 
| 
 
71c27b320610
HOL setup for linear arithmetic -- moved here from arith_data.ML;
 
wenzelm 
parents:  
diff
changeset
 | 
544  | 
in  | 
| 
 
71c27b320610
HOL setup for linear arithmetic -- moved here from arith_data.ML;
 
wenzelm 
parents:  
diff
changeset
 | 
545  | 
SOME [(HOLogic.natT :: Ts, subgoal1), (Ts, subgoal2)]  | 
| 
 
71c27b320610
HOL setup for linear arithmetic -- moved here from arith_data.ML;
 
wenzelm 
parents:  
diff
changeset
 | 
546  | 
end  | 
| 
47108
 
2a1953f0d20d
merged fork with new numeral representation (see NEWS)
 
huffman 
parents: 
46709 
diff
changeset
 | 
547  | 
(* ?P ((?n::nat) mod (numeral ?k)) =  | 
| 
 
2a1953f0d20d
merged fork with new numeral representation (see NEWS)
 
huffman 
parents: 
46709 
diff
changeset
 | 
548  | 
((numeral ?k = 0 --> ?P ?n) & (~ (numeral ?k = 0) -->  | 
| 
 
2a1953f0d20d
merged fork with new numeral representation (see NEWS)
 
huffman 
parents: 
46709 
diff
changeset
 | 
549  | 
(ALL i j. j < numeral ?k --> ?n = numeral ?k * i + j --> ?P j))) *)  | 
| 67149 | 550  | 
    | (Const (\<^const_name>\<open>Rings.modulo\<close>, Type ("fun", [\<^typ>\<open>nat\<close>, _])), [t1, t2]) =>
 | 
| 
24092
 
71c27b320610
HOL setup for linear arithmetic -- moved here from arith_data.ML;
 
wenzelm 
parents:  
diff
changeset
 | 
551  | 
let  | 
| 
 
71c27b320610
HOL setup for linear arithmetic -- moved here from arith_data.ML;
 
wenzelm 
parents:  
diff
changeset
 | 
552  | 
val rev_terms = rev terms  | 
| 67149 | 553  | 
val zero = Const (\<^const_name>\<open>Groups.zero\<close>, split_type)  | 
| 
24092
 
71c27b320610
HOL setup for linear arithmetic -- moved here from arith_data.ML;
 
wenzelm 
parents:  
diff
changeset
 | 
554  | 
val i = Bound 1  | 
| 
 
71c27b320610
HOL setup for linear arithmetic -- moved here from arith_data.ML;
 
wenzelm 
parents:  
diff
changeset
 | 
555  | 
val j = Bound 0  | 
| 
 
71c27b320610
HOL setup for linear arithmetic -- moved here from arith_data.ML;
 
wenzelm 
parents:  
diff
changeset
 | 
556  | 
val terms1 = map (subst_term [(split_term, t1)]) rev_terms  | 
| 
 
71c27b320610
HOL setup for linear arithmetic -- moved here from arith_data.ML;
 
wenzelm 
parents:  
diff
changeset
 | 
557  | 
val terms2 = map (subst_term [(incr_boundvars 2 split_term, j)])  | 
| 
 
71c27b320610
HOL setup for linear arithmetic -- moved here from arith_data.ML;
 
wenzelm 
parents:  
diff
changeset
 | 
558  | 
(map (incr_boundvars 2) rev_terms)  | 
| 
 
71c27b320610
HOL setup for linear arithmetic -- moved here from arith_data.ML;
 
wenzelm 
parents:  
diff
changeset
 | 
559  | 
val t1' = incr_boundvars 2 t1  | 
| 
 
71c27b320610
HOL setup for linear arithmetic -- moved here from arith_data.ML;
 
wenzelm 
parents:  
diff
changeset
 | 
560  | 
val t2' = incr_boundvars 2 t2  | 
| 67149 | 561  | 
val t2_eq_zero = Const (\<^const_name>\<open>HOL.eq\<close>,  | 
| 
24092
 
71c27b320610
HOL setup for linear arithmetic -- moved here from arith_data.ML;
 
wenzelm 
parents:  
diff
changeset
 | 
562  | 
split_type --> split_type --> HOLogic.boolT) $ t2 $ zero  | 
| 67149 | 563  | 
val t2_neq_zero = HOLogic.mk_not (Const (\<^const_name>\<open>HOL.eq\<close>,  | 
| 
24092
 
71c27b320610
HOL setup for linear arithmetic -- moved here from arith_data.ML;
 
wenzelm 
parents:  
diff
changeset
 | 
564  | 
split_type --> split_type --> HOLogic.boolT) $ t2' $ zero)  | 
| 67149 | 565  | 
val j_lt_t2 = Const (\<^const_name>\<open>Orderings.less\<close>,  | 
| 
24092
 
71c27b320610
HOL setup for linear arithmetic -- moved here from arith_data.ML;
 
wenzelm 
parents:  
diff
changeset
 | 
566  | 
split_type --> split_type--> HOLogic.boolT) $ j $ t2'  | 
| 67149 | 567  | 
val t1_eq_t2_times_i_plus_j = Const (\<^const_name>\<open>HOL.eq\<close>, split_type --> split_type --> HOLogic.boolT) $ t1' $  | 
568  | 
(Const (\<^const_name>\<open>Groups.plus\<close>, split_type --> split_type --> split_type) $  | 
|
569  | 
(Const (\<^const_name>\<open>Groups.times\<close>,  | 
|
| 
24092
 
71c27b320610
HOL setup for linear arithmetic -- moved here from arith_data.ML;
 
wenzelm 
parents:  
diff
changeset
 | 
570  | 
split_type --> split_type --> split_type) $ t2' $ i) $ j)  | 
| 67149 | 571  | 
val not_false = HOLogic.mk_Trueprop (HOLogic.Not $ \<^term>\<open>False\<close>)  | 
| 
24092
 
71c27b320610
HOL setup for linear arithmetic -- moved here from arith_data.ML;
 
wenzelm 
parents:  
diff
changeset
 | 
572  | 
val subgoal1 = (HOLogic.mk_Trueprop t2_eq_zero) :: terms1 @ [not_false]  | 
| 
 
71c27b320610
HOL setup for linear arithmetic -- moved here from arith_data.ML;
 
wenzelm 
parents:  
diff
changeset
 | 
573  | 
val subgoal2 = (map HOLogic.mk_Trueprop  | 
| 
 
71c27b320610
HOL setup for linear arithmetic -- moved here from arith_data.ML;
 
wenzelm 
parents:  
diff
changeset
 | 
574  | 
[t2_neq_zero, j_lt_t2, t1_eq_t2_times_i_plus_j])  | 
| 
 
71c27b320610
HOL setup for linear arithmetic -- moved here from arith_data.ML;
 
wenzelm 
parents:  
diff
changeset
 | 
575  | 
@ terms2 @ [not_false]  | 
| 
 
71c27b320610
HOL setup for linear arithmetic -- moved here from arith_data.ML;
 
wenzelm 
parents:  
diff
changeset
 | 
576  | 
in  | 
| 
 
71c27b320610
HOL setup for linear arithmetic -- moved here from arith_data.ML;
 
wenzelm 
parents:  
diff
changeset
 | 
577  | 
SOME [(Ts, subgoal1), (split_type :: split_type :: Ts, subgoal2)]  | 
| 
 
71c27b320610
HOL setup for linear arithmetic -- moved here from arith_data.ML;
 
wenzelm 
parents:  
diff
changeset
 | 
578  | 
end  | 
| 
47108
 
2a1953f0d20d
merged fork with new numeral representation (see NEWS)
 
huffman 
parents: 
46709 
diff
changeset
 | 
579  | 
(* ?P ((?n::nat) div (numeral ?k)) =  | 
| 
 
2a1953f0d20d
merged fork with new numeral representation (see NEWS)
 
huffman 
parents: 
46709 
diff
changeset
 | 
580  | 
((numeral ?k = 0 --> ?P 0) & (~ (numeral ?k = 0) -->  | 
| 
 
2a1953f0d20d
merged fork with new numeral representation (see NEWS)
 
huffman 
parents: 
46709 
diff
changeset
 | 
581  | 
(ALL i j. j < numeral ?k --> ?n = numeral ?k * i + j --> ?P i))) *)  | 
| 67149 | 582  | 
    | (Const (\<^const_name>\<open>Rings.divide\<close>, Type ("fun", [\<^typ>\<open>nat\<close>, _])), [t1, t2]) =>
 | 
| 
24092
 
71c27b320610
HOL setup for linear arithmetic -- moved here from arith_data.ML;
 
wenzelm 
parents:  
diff
changeset
 | 
583  | 
let  | 
| 
 
71c27b320610
HOL setup for linear arithmetic -- moved here from arith_data.ML;
 
wenzelm 
parents:  
diff
changeset
 | 
584  | 
val rev_terms = rev terms  | 
| 67149 | 585  | 
val zero = Const (\<^const_name>\<open>Groups.zero\<close>, split_type)  | 
| 
24092
 
71c27b320610
HOL setup for linear arithmetic -- moved here from arith_data.ML;
 
wenzelm 
parents:  
diff
changeset
 | 
586  | 
val i = Bound 1  | 
| 
 
71c27b320610
HOL setup for linear arithmetic -- moved here from arith_data.ML;
 
wenzelm 
parents:  
diff
changeset
 | 
587  | 
val j = Bound 0  | 
| 
 
71c27b320610
HOL setup for linear arithmetic -- moved here from arith_data.ML;
 
wenzelm 
parents:  
diff
changeset
 | 
588  | 
val terms1 = map (subst_term [(split_term, zero)]) rev_terms  | 
| 
 
71c27b320610
HOL setup for linear arithmetic -- moved here from arith_data.ML;
 
wenzelm 
parents:  
diff
changeset
 | 
589  | 
val terms2 = map (subst_term [(incr_boundvars 2 split_term, i)])  | 
| 
 
71c27b320610
HOL setup for linear arithmetic -- moved here from arith_data.ML;
 
wenzelm 
parents:  
diff
changeset
 | 
590  | 
(map (incr_boundvars 2) rev_terms)  | 
| 
 
71c27b320610
HOL setup for linear arithmetic -- moved here from arith_data.ML;
 
wenzelm 
parents:  
diff
changeset
 | 
591  | 
val t1' = incr_boundvars 2 t1  | 
| 
 
71c27b320610
HOL setup for linear arithmetic -- moved here from arith_data.ML;
 
wenzelm 
parents:  
diff
changeset
 | 
592  | 
val t2' = incr_boundvars 2 t2  | 
| 67149 | 593  | 
val t2_eq_zero = Const (\<^const_name>\<open>HOL.eq\<close>,  | 
| 
24092
 
71c27b320610
HOL setup for linear arithmetic -- moved here from arith_data.ML;
 
wenzelm 
parents:  
diff
changeset
 | 
594  | 
split_type --> split_type --> HOLogic.boolT) $ t2 $ zero  | 
| 67149 | 595  | 
val t2_neq_zero = HOLogic.mk_not (Const (\<^const_name>\<open>HOL.eq\<close>,  | 
| 
24092
 
71c27b320610
HOL setup for linear arithmetic -- moved here from arith_data.ML;
 
wenzelm 
parents:  
diff
changeset
 | 
596  | 
split_type --> split_type --> HOLogic.boolT) $ t2' $ zero)  | 
| 67149 | 597  | 
val j_lt_t2 = Const (\<^const_name>\<open>Orderings.less\<close>,  | 
| 
24092
 
71c27b320610
HOL setup for linear arithmetic -- moved here from arith_data.ML;
 
wenzelm 
parents:  
diff
changeset
 | 
598  | 
split_type --> split_type--> HOLogic.boolT) $ j $ t2'  | 
| 67149 | 599  | 
val t1_eq_t2_times_i_plus_j = Const (\<^const_name>\<open>HOL.eq\<close>, split_type --> split_type --> HOLogic.boolT) $ t1' $  | 
600  | 
(Const (\<^const_name>\<open>Groups.plus\<close>, split_type --> split_type --> split_type) $  | 
|
601  | 
(Const (\<^const_name>\<open>Groups.times\<close>,  | 
|
| 
24092
 
71c27b320610
HOL setup for linear arithmetic -- moved here from arith_data.ML;
 
wenzelm 
parents:  
diff
changeset
 | 
602  | 
split_type --> split_type --> split_type) $ t2' $ i) $ j)  | 
| 67149 | 603  | 
val not_false = HOLogic.mk_Trueprop (HOLogic.Not $ \<^term>\<open>False\<close>)  | 
| 
24092
 
71c27b320610
HOL setup for linear arithmetic -- moved here from arith_data.ML;
 
wenzelm 
parents:  
diff
changeset
 | 
604  | 
val subgoal1 = (HOLogic.mk_Trueprop t2_eq_zero) :: terms1 @ [not_false]  | 
| 
 
71c27b320610
HOL setup for linear arithmetic -- moved here from arith_data.ML;
 
wenzelm 
parents:  
diff
changeset
 | 
605  | 
val subgoal2 = (map HOLogic.mk_Trueprop  | 
| 
 
71c27b320610
HOL setup for linear arithmetic -- moved here from arith_data.ML;
 
wenzelm 
parents:  
diff
changeset
 | 
606  | 
[t2_neq_zero, j_lt_t2, t1_eq_t2_times_i_plus_j])  | 
| 
 
71c27b320610
HOL setup for linear arithmetic -- moved here from arith_data.ML;
 
wenzelm 
parents:  
diff
changeset
 | 
607  | 
@ terms2 @ [not_false]  | 
| 
 
71c27b320610
HOL setup for linear arithmetic -- moved here from arith_data.ML;
 
wenzelm 
parents:  
diff
changeset
 | 
608  | 
in  | 
| 
 
71c27b320610
HOL setup for linear arithmetic -- moved here from arith_data.ML;
 
wenzelm 
parents:  
diff
changeset
 | 
609  | 
SOME [(Ts, subgoal1), (split_type :: split_type :: Ts, subgoal2)]  | 
| 
 
71c27b320610
HOL setup for linear arithmetic -- moved here from arith_data.ML;
 
wenzelm 
parents:  
diff
changeset
 | 
610  | 
end  | 
| 
47108
 
2a1953f0d20d
merged fork with new numeral representation (see NEWS)
 
huffman 
parents: 
46709 
diff
changeset
 | 
611  | 
(* ?P ((?n::int) mod (numeral ?k)) =  | 
| 
 
2a1953f0d20d
merged fork with new numeral representation (see NEWS)
 
huffman 
parents: 
46709 
diff
changeset
 | 
612  | 
((numeral ?k = 0 --> ?P ?n) &  | 
| 
 
2a1953f0d20d
merged fork with new numeral representation (see NEWS)
 
huffman 
parents: 
46709 
diff
changeset
 | 
613  | 
(0 < numeral ?k -->  | 
| 
33728
 
cb4235333c30
Fixed splitting of div and mod on integers (split theorem differed from implementation).
 
webertj 
parents: 
33719 
diff
changeset
 | 
614  | 
(ALL i j.  | 
| 
47108
 
2a1953f0d20d
merged fork with new numeral representation (see NEWS)
 
huffman 
parents: 
46709 
diff
changeset
 | 
615  | 
0 <= j & j < numeral ?k & ?n = numeral ?k * i + j --> ?P j)) &  | 
| 
 
2a1953f0d20d
merged fork with new numeral representation (see NEWS)
 
huffman 
parents: 
46709 
diff
changeset
 | 
616  | 
(numeral ?k < 0 -->  | 
| 
33728
 
cb4235333c30
Fixed splitting of div and mod on integers (split theorem differed from implementation).
 
webertj 
parents: 
33719 
diff
changeset
 | 
617  | 
(ALL i j.  | 
| 
47108
 
2a1953f0d20d
merged fork with new numeral representation (see NEWS)
 
huffman 
parents: 
46709 
diff
changeset
 | 
618  | 
numeral ?k < j & j <= 0 & ?n = numeral ?k * i + j --> ?P j))) *)  | 
| 67149 | 619  | 
| (Const (\<^const_name>\<open>Rings.modulo\<close>,  | 
| 63948 | 620  | 
        Type ("fun", [Type ("Int.int", []), _])), (*DYNAMIC BINDING!*) [t1, t2]) =>
 | 
| 
24092
 
71c27b320610
HOL setup for linear arithmetic -- moved here from arith_data.ML;
 
wenzelm 
parents:  
diff
changeset
 | 
621  | 
let  | 
| 
 
71c27b320610
HOL setup for linear arithmetic -- moved here from arith_data.ML;
 
wenzelm 
parents:  
diff
changeset
 | 
622  | 
val rev_terms = rev terms  | 
| 67149 | 623  | 
val zero = Const (\<^const_name>\<open>Groups.zero\<close>, split_type)  | 
| 
24092
 
71c27b320610
HOL setup for linear arithmetic -- moved here from arith_data.ML;
 
wenzelm 
parents:  
diff
changeset
 | 
624  | 
val i = Bound 1  | 
| 
 
71c27b320610
HOL setup for linear arithmetic -- moved here from arith_data.ML;
 
wenzelm 
parents:  
diff
changeset
 | 
625  | 
val j = Bound 0  | 
| 
 
71c27b320610
HOL setup for linear arithmetic -- moved here from arith_data.ML;
 
wenzelm 
parents:  
diff
changeset
 | 
626  | 
val terms1 = map (subst_term [(split_term, t1)]) rev_terms  | 
| 
 
71c27b320610
HOL setup for linear arithmetic -- moved here from arith_data.ML;
 
wenzelm 
parents:  
diff
changeset
 | 
627  | 
val terms2_3 = map (subst_term [(incr_boundvars 2 split_term, j)])  | 
| 
 
71c27b320610
HOL setup for linear arithmetic -- moved here from arith_data.ML;
 
wenzelm 
parents:  
diff
changeset
 | 
628  | 
(map (incr_boundvars 2) rev_terms)  | 
| 
 
71c27b320610
HOL setup for linear arithmetic -- moved here from arith_data.ML;
 
wenzelm 
parents:  
diff
changeset
 | 
629  | 
val t1' = incr_boundvars 2 t1  | 
| 
33728
 
cb4235333c30
Fixed splitting of div and mod on integers (split theorem differed from implementation).
 
webertj 
parents: 
33719 
diff
changeset
 | 
630  | 
val t2' = incr_boundvars 2 t2  | 
| 67149 | 631  | 
val t2_eq_zero = Const (\<^const_name>\<open>HOL.eq\<close>,  | 
| 
33728
 
cb4235333c30
Fixed splitting of div and mod on integers (split theorem differed from implementation).
 
webertj 
parents: 
33719 
diff
changeset
 | 
632  | 
split_type --> split_type --> HOLogic.boolT) $ t2 $ zero  | 
| 67149 | 633  | 
val zero_lt_t2 = Const (\<^const_name>\<open>Orderings.less\<close>,  | 
| 
33728
 
cb4235333c30
Fixed splitting of div and mod on integers (split theorem differed from implementation).
 
webertj 
parents: 
33719 
diff
changeset
 | 
634  | 
split_type --> split_type --> HOLogic.boolT) $ zero $ t2'  | 
| 67149 | 635  | 
val t2_lt_zero = Const (\<^const_name>\<open>Orderings.less\<close>,  | 
| 
33728
 
cb4235333c30
Fixed splitting of div and mod on integers (split theorem differed from implementation).
 
webertj 
parents: 
33719 
diff
changeset
 | 
636  | 
split_type --> split_type --> HOLogic.boolT) $ t2' $ zero  | 
| 67149 | 637  | 
val zero_leq_j = Const (\<^const_name>\<open>Orderings.less_eq\<close>,  | 
| 
24092
 
71c27b320610
HOL setup for linear arithmetic -- moved here from arith_data.ML;
 
wenzelm 
parents:  
diff
changeset
 | 
638  | 
split_type --> split_type --> HOLogic.boolT) $ zero $ j  | 
| 67149 | 639  | 
val j_leq_zero = Const (\<^const_name>\<open>Orderings.less_eq\<close>,  | 
| 
33728
 
cb4235333c30
Fixed splitting of div and mod on integers (split theorem differed from implementation).
 
webertj 
parents: 
33719 
diff
changeset
 | 
640  | 
split_type --> split_type --> HOLogic.boolT) $ j $ zero  | 
| 67149 | 641  | 
val j_lt_t2 = Const (\<^const_name>\<open>Orderings.less\<close>,  | 
| 
24092
 
71c27b320610
HOL setup for linear arithmetic -- moved here from arith_data.ML;
 
wenzelm 
parents:  
diff
changeset
 | 
642  | 
split_type --> split_type--> HOLogic.boolT) $ j $ t2'  | 
| 67149 | 643  | 
val t2_lt_j = Const (\<^const_name>\<open>Orderings.less\<close>,  | 
| 
33728
 
cb4235333c30
Fixed splitting of div and mod on integers (split theorem differed from implementation).
 
webertj 
parents: 
33719 
diff
changeset
 | 
644  | 
split_type --> split_type--> HOLogic.boolT) $ t2' $ j  | 
| 67149 | 645  | 
val t1_eq_t2_times_i_plus_j = Const (\<^const_name>\<open>HOL.eq\<close>, split_type --> split_type --> HOLogic.boolT) $ t1' $  | 
646  | 
(Const (\<^const_name>\<open>Groups.plus\<close>, split_type --> split_type --> split_type) $  | 
|
647  | 
(Const (\<^const_name>\<open>Groups.times\<close>,  | 
|
| 
24092
 
71c27b320610
HOL setup for linear arithmetic -- moved here from arith_data.ML;
 
wenzelm 
parents:  
diff
changeset
 | 
648  | 
split_type --> split_type --> split_type) $ t2' $ i) $ j)  | 
| 67149 | 649  | 
val not_false = HOLogic.mk_Trueprop (HOLogic.Not $ \<^term>\<open>False\<close>)  | 
| 
33728
 
cb4235333c30
Fixed splitting of div and mod on integers (split theorem differed from implementation).
 
webertj 
parents: 
33719 
diff
changeset
 | 
650  | 
val subgoal1 = (HOLogic.mk_Trueprop t2_eq_zero) :: terms1 @ [not_false]  | 
| 
 
cb4235333c30
Fixed splitting of div and mod on integers (split theorem differed from implementation).
 
webertj 
parents: 
33719 
diff
changeset
 | 
651  | 
val subgoal2 = (map HOLogic.mk_Trueprop [zero_lt_t2, zero_leq_j])  | 
| 
24092
 
71c27b320610
HOL setup for linear arithmetic -- moved here from arith_data.ML;
 
wenzelm 
parents:  
diff
changeset
 | 
652  | 
@ hd terms2_3  | 
| 
 
71c27b320610
HOL setup for linear arithmetic -- moved here from arith_data.ML;
 
wenzelm 
parents:  
diff
changeset
 | 
653  | 
:: (if tl terms2_3 = [] then [not_false] else [])  | 
| 
 
71c27b320610
HOL setup for linear arithmetic -- moved here from arith_data.ML;
 
wenzelm 
parents:  
diff
changeset
 | 
654  | 
@ (map HOLogic.mk_Trueprop [j_lt_t2, t1_eq_t2_times_i_plus_j])  | 
| 
 
71c27b320610
HOL setup for linear arithmetic -- moved here from arith_data.ML;
 
wenzelm 
parents:  
diff
changeset
 | 
655  | 
@ (if tl terms2_3 = [] then [] else tl terms2_3 @ [not_false])  | 
| 
33728
 
cb4235333c30
Fixed splitting of div and mod on integers (split theorem differed from implementation).
 
webertj 
parents: 
33719 
diff
changeset
 | 
656  | 
val subgoal3 = (map HOLogic.mk_Trueprop [t2_lt_zero, t2_lt_j])  | 
| 
24092
 
71c27b320610
HOL setup for linear arithmetic -- moved here from arith_data.ML;
 
wenzelm 
parents:  
diff
changeset
 | 
657  | 
@ hd terms2_3  | 
| 
 
71c27b320610
HOL setup for linear arithmetic -- moved here from arith_data.ML;
 
wenzelm 
parents:  
diff
changeset
 | 
658  | 
:: (if tl terms2_3 = [] then [not_false] else [])  | 
| 
 
71c27b320610
HOL setup for linear arithmetic -- moved here from arith_data.ML;
 
wenzelm 
parents:  
diff
changeset
 | 
659  | 
@ (map HOLogic.mk_Trueprop [j_leq_zero, t1_eq_t2_times_i_plus_j])  | 
| 
 
71c27b320610
HOL setup for linear arithmetic -- moved here from arith_data.ML;
 
wenzelm 
parents:  
diff
changeset
 | 
660  | 
@ (if tl terms2_3 = [] then [] else tl terms2_3 @ [not_false])  | 
| 
 
71c27b320610
HOL setup for linear arithmetic -- moved here from arith_data.ML;
 
wenzelm 
parents:  
diff
changeset
 | 
661  | 
val Ts' = split_type :: split_type :: Ts  | 
| 
 
71c27b320610
HOL setup for linear arithmetic -- moved here from arith_data.ML;
 
wenzelm 
parents:  
diff
changeset
 | 
662  | 
in  | 
| 
 
71c27b320610
HOL setup for linear arithmetic -- moved here from arith_data.ML;
 
wenzelm 
parents:  
diff
changeset
 | 
663  | 
SOME [(Ts, subgoal1), (Ts', subgoal2), (Ts', subgoal3)]  | 
| 
 
71c27b320610
HOL setup for linear arithmetic -- moved here from arith_data.ML;
 
wenzelm 
parents:  
diff
changeset
 | 
664  | 
end  | 
| 
47108
 
2a1953f0d20d
merged fork with new numeral representation (see NEWS)
 
huffman 
parents: 
46709 
diff
changeset
 | 
665  | 
(* ?P ((?n::int) div (numeral ?k)) =  | 
| 
 
2a1953f0d20d
merged fork with new numeral representation (see NEWS)
 
huffman 
parents: 
46709 
diff
changeset
 | 
666  | 
((numeral ?k = 0 --> ?P 0) &  | 
| 
 
2a1953f0d20d
merged fork with new numeral representation (see NEWS)
 
huffman 
parents: 
46709 
diff
changeset
 | 
667  | 
(0 < numeral ?k -->  | 
| 
33728
 
cb4235333c30
Fixed splitting of div and mod on integers (split theorem differed from implementation).
 
webertj 
parents: 
33719 
diff
changeset
 | 
668  | 
(ALL i j.  | 
| 
47108
 
2a1953f0d20d
merged fork with new numeral representation (see NEWS)
 
huffman 
parents: 
46709 
diff
changeset
 | 
669  | 
0 <= j & j < numeral ?k & ?n = numeral ?k * i + j --> ?P i)) &  | 
| 
 
2a1953f0d20d
merged fork with new numeral representation (see NEWS)
 
huffman 
parents: 
46709 
diff
changeset
 | 
670  | 
(numeral ?k < 0 -->  | 
| 
33728
 
cb4235333c30
Fixed splitting of div and mod on integers (split theorem differed from implementation).
 
webertj 
parents: 
33719 
diff
changeset
 | 
671  | 
(ALL i j.  | 
| 
47108
 
2a1953f0d20d
merged fork with new numeral representation (see NEWS)
 
huffman 
parents: 
46709 
diff
changeset
 | 
672  | 
numeral ?k < j & j <= 0 & ?n = numeral ?k * i + j --> ?P i))) *)  | 
| 67149 | 673  | 
| (Const (\<^const_name>\<open>Rings.divide\<close>,  | 
| 63948 | 674  | 
        Type ("fun", [Type ("Int.int", []), _])), (*DYNAMIC BINDING!*) [t1, t2]) =>
 | 
| 
24092
 
71c27b320610
HOL setup for linear arithmetic -- moved here from arith_data.ML;
 
wenzelm 
parents:  
diff
changeset
 | 
675  | 
let  | 
| 
 
71c27b320610
HOL setup for linear arithmetic -- moved here from arith_data.ML;
 
wenzelm 
parents:  
diff
changeset
 | 
676  | 
val rev_terms = rev terms  | 
| 67149 | 677  | 
val zero = Const (\<^const_name>\<open>Groups.zero\<close>, split_type)  | 
| 
24092
 
71c27b320610
HOL setup for linear arithmetic -- moved here from arith_data.ML;
 
wenzelm 
parents:  
diff
changeset
 | 
678  | 
val i = Bound 1  | 
| 
 
71c27b320610
HOL setup for linear arithmetic -- moved here from arith_data.ML;
 
wenzelm 
parents:  
diff
changeset
 | 
679  | 
val j = Bound 0  | 
| 
 
71c27b320610
HOL setup for linear arithmetic -- moved here from arith_data.ML;
 
wenzelm 
parents:  
diff
changeset
 | 
680  | 
val terms1 = map (subst_term [(split_term, zero)]) rev_terms  | 
| 
 
71c27b320610
HOL setup for linear arithmetic -- moved here from arith_data.ML;
 
wenzelm 
parents:  
diff
changeset
 | 
681  | 
val terms2_3 = map (subst_term [(incr_boundvars 2 split_term, i)])  | 
| 
 
71c27b320610
HOL setup for linear arithmetic -- moved here from arith_data.ML;
 
wenzelm 
parents:  
diff
changeset
 | 
682  | 
(map (incr_boundvars 2) rev_terms)  | 
| 
 
71c27b320610
HOL setup for linear arithmetic -- moved here from arith_data.ML;
 
wenzelm 
parents:  
diff
changeset
 | 
683  | 
val t1' = incr_boundvars 2 t1  | 
| 
33728
 
cb4235333c30
Fixed splitting of div and mod on integers (split theorem differed from implementation).
 
webertj 
parents: 
33719 
diff
changeset
 | 
684  | 
val t2' = incr_boundvars 2 t2  | 
| 67149 | 685  | 
val t2_eq_zero = Const (\<^const_name>\<open>HOL.eq\<close>,  | 
| 
33728
 
cb4235333c30
Fixed splitting of div and mod on integers (split theorem differed from implementation).
 
webertj 
parents: 
33719 
diff
changeset
 | 
686  | 
split_type --> split_type --> HOLogic.boolT) $ t2 $ zero  | 
| 67149 | 687  | 
val zero_lt_t2 = Const (\<^const_name>\<open>Orderings.less\<close>,  | 
| 
33728
 
cb4235333c30
Fixed splitting of div and mod on integers (split theorem differed from implementation).
 
webertj 
parents: 
33719 
diff
changeset
 | 
688  | 
split_type --> split_type --> HOLogic.boolT) $ zero $ t2'  | 
| 67149 | 689  | 
val t2_lt_zero = Const (\<^const_name>\<open>Orderings.less\<close>,  | 
| 
33728
 
cb4235333c30
Fixed splitting of div and mod on integers (split theorem differed from implementation).
 
webertj 
parents: 
33719 
diff
changeset
 | 
690  | 
split_type --> split_type --> HOLogic.boolT) $ t2' $ zero  | 
| 67149 | 691  | 
val zero_leq_j = Const (\<^const_name>\<open>Orderings.less_eq\<close>,  | 
| 
24092
 
71c27b320610
HOL setup for linear arithmetic -- moved here from arith_data.ML;
 
wenzelm 
parents:  
diff
changeset
 | 
692  | 
split_type --> split_type --> HOLogic.boolT) $ zero $ j  | 
| 67149 | 693  | 
val j_leq_zero = Const (\<^const_name>\<open>Orderings.less_eq\<close>,  | 
| 
33728
 
cb4235333c30
Fixed splitting of div and mod on integers (split theorem differed from implementation).
 
webertj 
parents: 
33719 
diff
changeset
 | 
694  | 
split_type --> split_type --> HOLogic.boolT) $ j $ zero  | 
| 67149 | 695  | 
val j_lt_t2 = Const (\<^const_name>\<open>Orderings.less\<close>,  | 
| 
24092
 
71c27b320610
HOL setup for linear arithmetic -- moved here from arith_data.ML;
 
wenzelm 
parents:  
diff
changeset
 | 
696  | 
split_type --> split_type--> HOLogic.boolT) $ j $ t2'  | 
| 67149 | 697  | 
val t2_lt_j = Const (\<^const_name>\<open>Orderings.less\<close>,  | 
| 
33728
 
cb4235333c30
Fixed splitting of div and mod on integers (split theorem differed from implementation).
 
webertj 
parents: 
33719 
diff
changeset
 | 
698  | 
split_type --> split_type--> HOLogic.boolT) $ t2' $ j  | 
| 67149 | 699  | 
val t1_eq_t2_times_i_plus_j = Const (\<^const_name>\<open>HOL.eq\<close>, split_type --> split_type --> HOLogic.boolT) $ t1' $  | 
700  | 
(Const (\<^const_name>\<open>Groups.plus\<close>, split_type --> split_type --> split_type) $  | 
|
701  | 
(Const (\<^const_name>\<open>Groups.times\<close>,  | 
|
| 
24092
 
71c27b320610
HOL setup for linear arithmetic -- moved here from arith_data.ML;
 
wenzelm 
parents:  
diff
changeset
 | 
702  | 
split_type --> split_type --> split_type) $ t2' $ i) $ j)  | 
| 67149 | 703  | 
val not_false = HOLogic.mk_Trueprop (HOLogic.Not $ \<^term>\<open>False\<close>)  | 
| 
33728
 
cb4235333c30
Fixed splitting of div and mod on integers (split theorem differed from implementation).
 
webertj 
parents: 
33719 
diff
changeset
 | 
704  | 
val subgoal1 = (HOLogic.mk_Trueprop t2_eq_zero) :: terms1 @ [not_false]  | 
| 
 
cb4235333c30
Fixed splitting of div and mod on integers (split theorem differed from implementation).
 
webertj 
parents: 
33719 
diff
changeset
 | 
705  | 
val subgoal2 = (map HOLogic.mk_Trueprop [zero_lt_t2, zero_leq_j])  | 
| 
 
cb4235333c30
Fixed splitting of div and mod on integers (split theorem differed from implementation).
 
webertj 
parents: 
33719 
diff
changeset
 | 
706  | 
@ hd terms2_3  | 
| 
 
cb4235333c30
Fixed splitting of div and mod on integers (split theorem differed from implementation).
 
webertj 
parents: 
33719 
diff
changeset
 | 
707  | 
:: (if tl terms2_3 = [] then [not_false] else [])  | 
| 
 
cb4235333c30
Fixed splitting of div and mod on integers (split theorem differed from implementation).
 
webertj 
parents: 
33719 
diff
changeset
 | 
708  | 
@ (map HOLogic.mk_Trueprop [j_lt_t2, t1_eq_t2_times_i_plus_j])  | 
| 
 
cb4235333c30
Fixed splitting of div and mod on integers (split theorem differed from implementation).
 
webertj 
parents: 
33719 
diff
changeset
 | 
709  | 
@ (if tl terms2_3 = [] then [] else tl terms2_3 @ [not_false])  | 
| 
 
cb4235333c30
Fixed splitting of div and mod on integers (split theorem differed from implementation).
 
webertj 
parents: 
33719 
diff
changeset
 | 
710  | 
val subgoal3 = (map HOLogic.mk_Trueprop [t2_lt_zero, t2_lt_j])  | 
| 
 
cb4235333c30
Fixed splitting of div and mod on integers (split theorem differed from implementation).
 
webertj 
parents: 
33719 
diff
changeset
 | 
711  | 
@ hd terms2_3  | 
| 
 
cb4235333c30
Fixed splitting of div and mod on integers (split theorem differed from implementation).
 
webertj 
parents: 
33719 
diff
changeset
 | 
712  | 
:: (if tl terms2_3 = [] then [not_false] else [])  | 
| 
 
cb4235333c30
Fixed splitting of div and mod on integers (split theorem differed from implementation).
 
webertj 
parents: 
33719 
diff
changeset
 | 
713  | 
@ (map HOLogic.mk_Trueprop [j_leq_zero, t1_eq_t2_times_i_plus_j])  | 
| 
 
cb4235333c30
Fixed splitting of div and mod on integers (split theorem differed from implementation).
 
webertj 
parents: 
33719 
diff
changeset
 | 
714  | 
@ (if tl terms2_3 = [] then [] else tl terms2_3 @ [not_false])  | 
| 
24092
 
71c27b320610
HOL setup for linear arithmetic -- moved here from arith_data.ML;
 
wenzelm 
parents:  
diff
changeset
 | 
715  | 
val Ts' = split_type :: split_type :: Ts  | 
| 
 
71c27b320610
HOL setup for linear arithmetic -- moved here from arith_data.ML;
 
wenzelm 
parents:  
diff
changeset
 | 
716  | 
in  | 
| 
 
71c27b320610
HOL setup for linear arithmetic -- moved here from arith_data.ML;
 
wenzelm 
parents:  
diff
changeset
 | 
717  | 
SOME [(Ts, subgoal1), (Ts', subgoal2), (Ts', subgoal3)]  | 
| 
 
71c27b320610
HOL setup for linear arithmetic -- moved here from arith_data.ML;
 
wenzelm 
parents:  
diff
changeset
 | 
718  | 
end  | 
| 
 
71c27b320610
HOL setup for linear arithmetic -- moved here from arith_data.ML;
 
wenzelm 
parents:  
diff
changeset
 | 
719  | 
(* this will only happen if a split theorem can be applied for which no *)  | 
| 
 
71c27b320610
HOL setup for linear arithmetic -- moved here from arith_data.ML;
 
wenzelm 
parents:  
diff
changeset
 | 
720  | 
(* code exists above -- in which case either the split theorem should be *)  | 
| 
 
71c27b320610
HOL setup for linear arithmetic -- moved here from arith_data.ML;
 
wenzelm 
parents:  
diff
changeset
 | 
721  | 
(* implemented above, or 'is_split_thm' should be modified to filter it *)  | 
| 
 
71c27b320610
HOL setup for linear arithmetic -- moved here from arith_data.ML;
 
wenzelm 
parents:  
diff
changeset
 | 
722  | 
(* out *)  | 
| 
59352
 
63c02d051661
tuned warnings: observe Context_Position.is_visible;
 
wenzelm 
parents: 
59058 
diff
changeset
 | 
723  | 
| (t, ts) =>  | 
| 
 
63c02d051661
tuned warnings: observe Context_Position.is_visible;
 
wenzelm 
parents: 
59058 
diff
changeset
 | 
724  | 
(if Context_Position.is_visible ctxt then  | 
| 
 
63c02d051661
tuned warnings: observe Context_Position.is_visible;
 
wenzelm 
parents: 
59058 
diff
changeset
 | 
725  | 
        warning ("Lin. Arith.: split rule for " ^ Syntax.string_of_term ctxt t ^
 | 
| 
 
63c02d051661
tuned warnings: observe Context_Position.is_visible;
 
wenzelm 
parents: 
59058 
diff
changeset
 | 
726  | 
" (with " ^ string_of_int (length ts) ^  | 
| 
 
63c02d051661
tuned warnings: observe Context_Position.is_visible;
 
wenzelm 
parents: 
59058 
diff
changeset
 | 
727  | 
" argument(s)) not implemented; proof reconstruction is likely to fail")  | 
| 
 
63c02d051661
tuned warnings: observe Context_Position.is_visible;
 
wenzelm 
parents: 
59058 
diff
changeset
 | 
728  | 
else (); NONE))  | 
| 32369 | 729  | 
end; (* split_once_items *)  | 
| 
24092
 
71c27b320610
HOL setup for linear arithmetic -- moved here from arith_data.ML;
 
wenzelm 
parents:  
diff
changeset
 | 
730  | 
|
| 
 
71c27b320610
HOL setup for linear arithmetic -- moved here from arith_data.ML;
 
wenzelm 
parents:  
diff
changeset
 | 
731  | 
(* remove terms that do not satisfy 'p'; change the order of the remaining *)  | 
| 
 
71c27b320610
HOL setup for linear arithmetic -- moved here from arith_data.ML;
 
wenzelm 
parents:  
diff
changeset
 | 
732  | 
(* terms in the same way as filter_prems_tac does *)  | 
| 
 
71c27b320610
HOL setup for linear arithmetic -- moved here from arith_data.ML;
 
wenzelm 
parents:  
diff
changeset
 | 
733  | 
|
| 
 
71c27b320610
HOL setup for linear arithmetic -- moved here from arith_data.ML;
 
wenzelm 
parents:  
diff
changeset
 | 
734  | 
fun filter_prems_tac_items (p : term -> bool) (terms : term list) : term list =  | 
| 
42439
 
9efdd0af15ac
eliminated Display.string_of_thm_without_context;
 
wenzelm 
parents: 
42361 
diff
changeset
 | 
735  | 
let  | 
| 
 
9efdd0af15ac
eliminated Display.string_of_thm_without_context;
 
wenzelm 
parents: 
42361 
diff
changeset
 | 
736  | 
fun filter_prems t (left, right) =  | 
| 
 
9efdd0af15ac
eliminated Display.string_of_thm_without_context;
 
wenzelm 
parents: 
42361 
diff
changeset
 | 
737  | 
if p t then (left, right @ [t]) else (left @ right, [])  | 
| 
 
9efdd0af15ac
eliminated Display.string_of_thm_without_context;
 
wenzelm 
parents: 
42361 
diff
changeset
 | 
738  | 
val (left, right) = fold filter_prems terms ([], [])  | 
| 
 
9efdd0af15ac
eliminated Display.string_of_thm_without_context;
 
wenzelm 
parents: 
42361 
diff
changeset
 | 
739  | 
in  | 
| 
 
9efdd0af15ac
eliminated Display.string_of_thm_without_context;
 
wenzelm 
parents: 
42361 
diff
changeset
 | 
740  | 
right @ left  | 
| 
 
9efdd0af15ac
eliminated Display.string_of_thm_without_context;
 
wenzelm 
parents: 
42361 
diff
changeset
 | 
741  | 
end;  | 
| 
24092
 
71c27b320610
HOL setup for linear arithmetic -- moved here from arith_data.ML;
 
wenzelm 
parents:  
diff
changeset
 | 
742  | 
|
| 
 
71c27b320610
HOL setup for linear arithmetic -- moved here from arith_data.ML;
 
wenzelm 
parents:  
diff
changeset
 | 
743  | 
(* return true iff TRY (etac notE) THEN eq_assume_tac would succeed on a *)  | 
| 
 
71c27b320610
HOL setup for linear arithmetic -- moved here from arith_data.ML;
 
wenzelm 
parents:  
diff
changeset
 | 
744  | 
(* subgoal that has 'terms' as premises *)  | 
| 
 
71c27b320610
HOL setup for linear arithmetic -- moved here from arith_data.ML;
 
wenzelm 
parents:  
diff
changeset
 | 
745  | 
|
| 
 
71c27b320610
HOL setup for linear arithmetic -- moved here from arith_data.ML;
 
wenzelm 
parents:  
diff
changeset
 | 
746  | 
fun negated_term_occurs_positively (terms : term list) : bool =  | 
| 58412 | 747  | 
exists  | 
| 67149 | 748  | 
(fn (Trueprop $ (Const (\<^const_name>\<open>Not\<close>, _) $ t)) =>  | 
| 52131 | 749  | 
member Envir.aeconv terms (Trueprop $ t)  | 
| 32369 | 750  | 
| _ => false)  | 
| 
24092
 
71c27b320610
HOL setup for linear arithmetic -- moved here from arith_data.ML;
 
wenzelm 
parents:  
diff
changeset
 | 
751  | 
terms;  | 
| 
 
71c27b320610
HOL setup for linear arithmetic -- moved here from arith_data.ML;
 
wenzelm 
parents:  
diff
changeset
 | 
752  | 
|
| 
 
71c27b320610
HOL setup for linear arithmetic -- moved here from arith_data.ML;
 
wenzelm 
parents:  
diff
changeset
 | 
753  | 
fun pre_decomp ctxt (Ts : typ list, terms : term list) : (typ list * term list) list =  | 
| 
42439
 
9efdd0af15ac
eliminated Display.string_of_thm_without_context;
 
wenzelm 
parents: 
42361 
diff
changeset
 | 
754  | 
let  | 
| 
 
9efdd0af15ac
eliminated Display.string_of_thm_without_context;
 
wenzelm 
parents: 
42361 
diff
changeset
 | 
755  | 
(* repeatedly split (including newly emerging subgoals) until no further *)  | 
| 
 
9efdd0af15ac
eliminated Display.string_of_thm_without_context;
 
wenzelm 
parents: 
42361 
diff
changeset
 | 
756  | 
(* splitting is possible *)  | 
| 
 
9efdd0af15ac
eliminated Display.string_of_thm_without_context;
 
wenzelm 
parents: 
42361 
diff
changeset
 | 
757  | 
fun split_loop ([] : (typ list * term list) list) = ([] : (typ list * term list) list)  | 
| 
 
9efdd0af15ac
eliminated Display.string_of_thm_without_context;
 
wenzelm 
parents: 
42361 
diff
changeset
 | 
758  | 
| split_loop (subgoal::subgoals) =  | 
| 
 
9efdd0af15ac
eliminated Display.string_of_thm_without_context;
 
wenzelm 
parents: 
42361 
diff
changeset
 | 
759  | 
(case split_once_items ctxt subgoal of  | 
| 
 
9efdd0af15ac
eliminated Display.string_of_thm_without_context;
 
wenzelm 
parents: 
42361 
diff
changeset
 | 
760  | 
SOME new_subgoals => split_loop (new_subgoals @ subgoals)  | 
| 
 
9efdd0af15ac
eliminated Display.string_of_thm_without_context;
 
wenzelm 
parents: 
42361 
diff
changeset
 | 
761  | 
| NONE => subgoal :: split_loop subgoals)  | 
| 
 
9efdd0af15ac
eliminated Display.string_of_thm_without_context;
 
wenzelm 
parents: 
42361 
diff
changeset
 | 
762  | 
fun is_relevant t = is_some (decomp ctxt t)  | 
| 
 
9efdd0af15ac
eliminated Display.string_of_thm_without_context;
 
wenzelm 
parents: 
42361 
diff
changeset
 | 
763  | 
(* filter_prems_tac is_relevant: *)  | 
| 
 
9efdd0af15ac
eliminated Display.string_of_thm_without_context;
 
wenzelm 
parents: 
42361 
diff
changeset
 | 
764  | 
val relevant_terms = filter_prems_tac_items is_relevant terms  | 
| 
 
9efdd0af15ac
eliminated Display.string_of_thm_without_context;
 
wenzelm 
parents: 
42361 
diff
changeset
 | 
765  | 
(* split_tac, NNF normalization: *)  | 
| 
 
9efdd0af15ac
eliminated Display.string_of_thm_without_context;
 
wenzelm 
parents: 
42361 
diff
changeset
 | 
766  | 
val split_goals = split_loop [(Ts, relevant_terms)]  | 
| 
 
9efdd0af15ac
eliminated Display.string_of_thm_without_context;
 
wenzelm 
parents: 
42361 
diff
changeset
 | 
767  | 
(* necessary because split_once_tac may normalize terms: *)  | 
| 
 
9efdd0af15ac
eliminated Display.string_of_thm_without_context;
 
wenzelm 
parents: 
42361 
diff
changeset
 | 
768  | 
val beta_eta_norm = map (apsnd (map (Envir.eta_contract o Envir.beta_norm)))  | 
| 
 
9efdd0af15ac
eliminated Display.string_of_thm_without_context;
 
wenzelm 
parents: 
42361 
diff
changeset
 | 
769  | 
split_goals  | 
| 
 
9efdd0af15ac
eliminated Display.string_of_thm_without_context;
 
wenzelm 
parents: 
42361 
diff
changeset
 | 
770  | 
(* TRY (etac notE) THEN eq_assume_tac: *)  | 
| 
 
9efdd0af15ac
eliminated Display.string_of_thm_without_context;
 
wenzelm 
parents: 
42361 
diff
changeset
 | 
771  | 
val result = filter_out (negated_term_occurs_positively o snd) beta_eta_norm  | 
| 
 
9efdd0af15ac
eliminated Display.string_of_thm_without_context;
 
wenzelm 
parents: 
42361 
diff
changeset
 | 
772  | 
in  | 
| 
 
9efdd0af15ac
eliminated Display.string_of_thm_without_context;
 
wenzelm 
parents: 
42361 
diff
changeset
 | 
773  | 
result  | 
| 
 
9efdd0af15ac
eliminated Display.string_of_thm_without_context;
 
wenzelm 
parents: 
42361 
diff
changeset
 | 
774  | 
end;  | 
| 
24092
 
71c27b320610
HOL setup for linear arithmetic -- moved here from arith_data.ML;
 
wenzelm 
parents:  
diff
changeset
 | 
775  | 
|
| 
75879
 
24b17460ee60
streamlined simpset building, avoiding duplicated rewrite rules
 
haftmann 
parents: 
75878 
diff
changeset
 | 
776  | 
|
| 
24092
 
71c27b320610
HOL setup for linear arithmetic -- moved here from arith_data.ML;
 
wenzelm 
parents:  
diff
changeset
 | 
777  | 
(* takes the i-th subgoal [| A1; ...; An |] ==> B to *)  | 
| 
 
71c27b320610
HOL setup for linear arithmetic -- moved here from arith_data.ML;
 
wenzelm 
parents:  
diff
changeset
 | 
778  | 
(* An --> ... --> A1 --> B, performs splitting with the given 'split_thms' *)  | 
| 
 
71c27b320610
HOL setup for linear arithmetic -- moved here from arith_data.ML;
 
wenzelm 
parents:  
diff
changeset
 | 
779  | 
(* (resulting in a different subgoal P), takes P to ~P ==> False, *)  | 
| 
 
71c27b320610
HOL setup for linear arithmetic -- moved here from arith_data.ML;
 
wenzelm 
parents:  
diff
changeset
 | 
780  | 
(* performs NNF-normalization of ~P, and eliminates conjunctions, *)  | 
| 
 
71c27b320610
HOL setup for linear arithmetic -- moved here from arith_data.ML;
 
wenzelm 
parents:  
diff
changeset
 | 
781  | 
(* disjunctions and existential quantifiers from the premises, possibly (in *)  | 
| 
 
71c27b320610
HOL setup for linear arithmetic -- moved here from arith_data.ML;
 
wenzelm 
parents:  
diff
changeset
 | 
782  | 
(* the case of disjunctions) resulting in several new subgoals, each of the *)  | 
| 
 
71c27b320610
HOL setup for linear arithmetic -- moved here from arith_data.ML;
 
wenzelm 
parents:  
diff
changeset
 | 
783  | 
(* general form [| Q1; ...; Qm |] ==> False. Fails if more than *)  | 
| 31082 | 784  | 
(* !split_limit splits are possible. *)  | 
| 
24092
 
71c27b320610
HOL setup for linear arithmetic -- moved here from arith_data.ML;
 
wenzelm 
parents:  
diff
changeset
 | 
785  | 
|
| 
51717
 
9e7d1c139569
simplifier uses proper Proof.context instead of historic type simpset;
 
wenzelm 
parents: 
48560 
diff
changeset
 | 
786  | 
fun split_once_tac ctxt split_thms =  | 
| 
24092
 
71c27b320610
HOL setup for linear arithmetic -- moved here from arith_data.ML;
 
wenzelm 
parents:  
diff
changeset
 | 
787  | 
let  | 
| 42361 | 788  | 
val thy = Proof_Context.theory_of ctxt  | 
| 
24092
 
71c27b320610
HOL setup for linear arithmetic -- moved here from arith_data.ML;
 
wenzelm 
parents:  
diff
changeset
 | 
789  | 
val cond_split_tac = SUBGOAL (fn (subgoal, i) =>  | 
| 
 
71c27b320610
HOL setup for linear arithmetic -- moved here from arith_data.ML;
 
wenzelm 
parents:  
diff
changeset
 | 
790  | 
let  | 
| 
 
71c27b320610
HOL setup for linear arithmetic -- moved here from arith_data.ML;
 
wenzelm 
parents:  
diff
changeset
 | 
791  | 
val Ts = rev (map snd (Logic.strip_params subgoal))  | 
| 
 
71c27b320610
HOL setup for linear arithmetic -- moved here from arith_data.ML;
 
wenzelm 
parents:  
diff
changeset
 | 
792  | 
val concl = HOLogic.dest_Trueprop (Logic.strip_assums_concl subgoal)  | 
| 
 
71c27b320610
HOL setup for linear arithmetic -- moved here from arith_data.ML;
 
wenzelm 
parents:  
diff
changeset
 | 
793  | 
val cmap = Splitter.cmap_of_split_thms split_thms  | 
| 
 
71c27b320610
HOL setup for linear arithmetic -- moved here from arith_data.ML;
 
wenzelm 
parents:  
diff
changeset
 | 
794  | 
val splits = Splitter.split_posns cmap thy Ts concl  | 
| 
 
71c27b320610
HOL setup for linear arithmetic -- moved here from arith_data.ML;
 
wenzelm 
parents:  
diff
changeset
 | 
795  | 
in  | 
| 32369 | 796  | 
if null splits orelse length splits > Config.get ctxt split_limit then  | 
797  | 
no_tac  | 
|
798  | 
else if null (#2 (hd splits)) then  | 
|
| 
58956
 
a816aa3ff391
proper context for compose_tac, Splitter.split_tac (relevant for unify trace options);
 
wenzelm 
parents: 
58839 
diff
changeset
 | 
799  | 
split_tac ctxt split_thms i  | 
| 32369 | 800  | 
else  | 
801  | 
(* disallow a split that involves non-locally bound variables *)  | 
|
802  | 
(* (except when bound by outermost meta-quantifiers) *)  | 
|
803  | 
no_tac  | 
|
| 
24092
 
71c27b320610
HOL setup for linear arithmetic -- moved here from arith_data.ML;
 
wenzelm 
parents:  
diff
changeset
 | 
804  | 
end)  | 
| 
 
71c27b320610
HOL setup for linear arithmetic -- moved here from arith_data.ML;
 
wenzelm 
parents:  
diff
changeset
 | 
805  | 
in  | 
| 
 
71c27b320610
HOL setup for linear arithmetic -- moved here from arith_data.ML;
 
wenzelm 
parents:  
diff
changeset
 | 
806  | 
EVERY' [  | 
| 
59498
 
50b60f501b05
proper context for resolve_tac, eresolve_tac, dresolve_tac, forward_tac etc.;
 
wenzelm 
parents: 
59352 
diff
changeset
 | 
807  | 
REPEAT_DETERM o eresolve_tac ctxt [rev_mp],  | 
| 
24092
 
71c27b320610
HOL setup for linear arithmetic -- moved here from arith_data.ML;
 
wenzelm 
parents:  
diff
changeset
 | 
808  | 
cond_split_tac,  | 
| 
59498
 
50b60f501b05
proper context for resolve_tac, eresolve_tac, dresolve_tac, forward_tac etc.;
 
wenzelm 
parents: 
59352 
diff
changeset
 | 
809  | 
      resolve_tac ctxt @{thms ccontr},
 | 
| 
51717
 
9e7d1c139569
simplifier uses proper Proof.context instead of historic type simpset;
 
wenzelm 
parents: 
48560 
diff
changeset
 | 
810  | 
prem_nnf_tac ctxt,  | 
| 
59498
 
50b60f501b05
proper context for resolve_tac, eresolve_tac, dresolve_tac, forward_tac etc.;
 
wenzelm 
parents: 
59352 
diff
changeset
 | 
811  | 
TRY o REPEAT_ALL_NEW  | 
| 
 
50b60f501b05
proper context for resolve_tac, eresolve_tac, dresolve_tac, forward_tac etc.;
 
wenzelm 
parents: 
59352 
diff
changeset
 | 
812  | 
(DETERM o (eresolve_tac ctxt [conjE, exE] ORELSE' eresolve_tac ctxt [disjE]))  | 
| 
24092
 
71c27b320610
HOL setup for linear arithmetic -- moved here from arith_data.ML;
 
wenzelm 
parents:  
diff
changeset
 | 
813  | 
]  | 
| 
 
71c27b320610
HOL setup for linear arithmetic -- moved here from arith_data.ML;
 
wenzelm 
parents:  
diff
changeset
 | 
814  | 
end;  | 
| 
 
71c27b320610
HOL setup for linear arithmetic -- moved here from arith_data.ML;
 
wenzelm 
parents:  
diff
changeset
 | 
815  | 
|
| 
 
71c27b320610
HOL setup for linear arithmetic -- moved here from arith_data.ML;
 
wenzelm 
parents:  
diff
changeset
 | 
816  | 
(* remove irrelevant premises, then split the i-th subgoal (and all new *)  | 
| 
 
71c27b320610
HOL setup for linear arithmetic -- moved here from arith_data.ML;
 
wenzelm 
parents:  
diff
changeset
 | 
817  | 
(* subgoals) by using 'split_once_tac' repeatedly. Beta-eta-normalize new *)  | 
| 
 
71c27b320610
HOL setup for linear arithmetic -- moved here from arith_data.ML;
 
wenzelm 
parents:  
diff
changeset
 | 
818  | 
(* subgoals and finally attempt to solve them by finding an immediate *)  | 
| 32369 | 819  | 
(* contradiction (i.e., a term and its negation) in their premises. *)  | 
| 
24092
 
71c27b320610
HOL setup for linear arithmetic -- moved here from arith_data.ML;
 
wenzelm 
parents:  
diff
changeset
 | 
820  | 
|
| 
51717
 
9e7d1c139569
simplifier uses proper Proof.context instead of historic type simpset;
 
wenzelm 
parents: 
48560 
diff
changeset
 | 
821  | 
fun pre_tac ctxt i =  | 
| 
42439
 
9efdd0af15ac
eliminated Display.string_of_thm_without_context;
 
wenzelm 
parents: 
42361 
diff
changeset
 | 
822  | 
let  | 
| 67631 | 823  | 
val split_thms = filter (is_split_thm ctxt) (get_splits ctxt)  | 
| 
42439
 
9efdd0af15ac
eliminated Display.string_of_thm_without_context;
 
wenzelm 
parents: 
42361 
diff
changeset
 | 
824  | 
fun is_relevant t = is_some (decomp ctxt t)  | 
| 
 
9efdd0af15ac
eliminated Display.string_of_thm_without_context;
 
wenzelm 
parents: 
42361 
diff
changeset
 | 
825  | 
in  | 
| 
 
9efdd0af15ac
eliminated Display.string_of_thm_without_context;
 
wenzelm 
parents: 
42361 
diff
changeset
 | 
826  | 
DETERM (  | 
| 
59498
 
50b60f501b05
proper context for resolve_tac, eresolve_tac, dresolve_tac, forward_tac etc.;
 
wenzelm 
parents: 
59352 
diff
changeset
 | 
827  | 
TRY (filter_prems_tac ctxt is_relevant i)  | 
| 
42439
 
9efdd0af15ac
eliminated Display.string_of_thm_without_context;
 
wenzelm 
parents: 
42361 
diff
changeset
 | 
828  | 
THEN (  | 
| 
51717
 
9e7d1c139569
simplifier uses proper Proof.context instead of historic type simpset;
 
wenzelm 
parents: 
48560 
diff
changeset
 | 
829  | 
(TRY o REPEAT_ALL_NEW (split_once_tac ctxt split_thms))  | 
| 
42439
 
9efdd0af15ac
eliminated Display.string_of_thm_without_context;
 
wenzelm 
parents: 
42361 
diff
changeset
 | 
830  | 
THEN_ALL_NEW  | 
| 
 
9efdd0af15ac
eliminated Display.string_of_thm_without_context;
 
wenzelm 
parents: 
42361 
diff
changeset
 | 
831  | 
(CONVERSION Drule.beta_eta_conversion  | 
| 
 
9efdd0af15ac
eliminated Display.string_of_thm_without_context;
 
wenzelm 
parents: 
42361 
diff
changeset
 | 
832  | 
THEN'  | 
| 
59498
 
50b60f501b05
proper context for resolve_tac, eresolve_tac, dresolve_tac, forward_tac etc.;
 
wenzelm 
parents: 
59352 
diff
changeset
 | 
833  | 
(TRY o (eresolve_tac ctxt [notE] THEN' eq_assume_tac)))  | 
| 
42439
 
9efdd0af15ac
eliminated Display.string_of_thm_without_context;
 
wenzelm 
parents: 
42361 
diff
changeset
 | 
834  | 
) i  | 
| 
 
9efdd0af15ac
eliminated Display.string_of_thm_without_context;
 
wenzelm 
parents: 
42361 
diff
changeset
 | 
835  | 
)  | 
| 
 
9efdd0af15ac
eliminated Display.string_of_thm_without_context;
 
wenzelm 
parents: 
42361 
diff
changeset
 | 
836  | 
end;  | 
| 
24092
 
71c27b320610
HOL setup for linear arithmetic -- moved here from arith_data.ML;
 
wenzelm 
parents:  
diff
changeset
 | 
837  | 
|
| 31100 | 838  | 
end; (* LA_Data *)  | 
| 
24092
 
71c27b320610
HOL setup for linear arithmetic -- moved here from arith_data.ML;
 
wenzelm 
parents:  
diff
changeset
 | 
839  | 
|
| 
 
71c27b320610
HOL setup for linear arithmetic -- moved here from arith_data.ML;
 
wenzelm 
parents:  
diff
changeset
 | 
840  | 
|
| 31100 | 841  | 
val pre_tac = LA_Data.pre_tac;  | 
| 
24092
 
71c27b320610
HOL setup for linear arithmetic -- moved here from arith_data.ML;
 
wenzelm 
parents:  
diff
changeset
 | 
842  | 
|
| 31100 | 843  | 
structure Fast_Arith = Fast_Lin_Arith(structure LA_Logic = LA_Logic and LA_Data = LA_Data);  | 
| 
24092
 
71c27b320610
HOL setup for linear arithmetic -- moved here from arith_data.ML;
 
wenzelm 
parents:  
diff
changeset
 | 
844  | 
|
| 
38762
 
996afaa9254a
slightly more abstract data handling in Fast_Lin_Arith;
 
wenzelm 
parents: 
38715 
diff
changeset
 | 
845  | 
val add_inj_thms = Fast_Arith.add_inj_thms;  | 
| 
 
996afaa9254a
slightly more abstract data handling in Fast_Lin_Arith;
 
wenzelm 
parents: 
38715 
diff
changeset
 | 
846  | 
val add_lessD = Fast_Arith.add_lessD;  | 
| 
 
996afaa9254a
slightly more abstract data handling in Fast_Lin_Arith;
 
wenzelm 
parents: 
38715 
diff
changeset
 | 
847  | 
val add_simps = Fast_Arith.add_simps;  | 
| 
 
996afaa9254a
slightly more abstract data handling in Fast_Lin_Arith;
 
wenzelm 
parents: 
38715 
diff
changeset
 | 
848  | 
val add_simprocs = Fast_Arith.add_simprocs;  | 
| 
 
996afaa9254a
slightly more abstract data handling in Fast_Lin_Arith;
 
wenzelm 
parents: 
38715 
diff
changeset
 | 
849  | 
val set_number_of = Fast_Arith.set_number_of;  | 
| 
31510
 
e0f2bb4b0021
fast_lin_arith uses proper multiplication instead of unfolding to additions
 
boehmes 
parents: 
31101 
diff
changeset
 | 
850  | 
|
| 59656 | 851  | 
val simple_tac = Fast_Arith.lin_arith_tac;  | 
| 
24092
 
71c27b320610
HOL setup for linear arithmetic -- moved here from arith_data.ML;
 
wenzelm 
parents:  
diff
changeset
 | 
852  | 
|
| 
 
71c27b320610
HOL setup for linear arithmetic -- moved here from arith_data.ML;
 
wenzelm 
parents:  
diff
changeset
 | 
853  | 
(* reduce contradictory <= to False.  | 
| 
 
71c27b320610
HOL setup for linear arithmetic -- moved here from arith_data.ML;
 
wenzelm 
parents:  
diff
changeset
 | 
854  | 
Most of the work is done by the cancel tactics. *)  | 
| 
 
71c27b320610
HOL setup for linear arithmetic -- moved here from arith_data.ML;
 
wenzelm 
parents:  
diff
changeset
 | 
855  | 
|
| 
 
71c27b320610
HOL setup for linear arithmetic -- moved here from arith_data.ML;
 
wenzelm 
parents:  
diff
changeset
 | 
856  | 
val init_arith_data =  | 
| 54249 | 857  | 
  Fast_Arith.map_data (fn {add_mono_thms, mult_mono_thms, inj_thms, lessD, neqE, number_of, ...} =>
 | 
| 61097 | 858  | 
   {add_mono_thms =
 | 
859  | 
      map Thm.trim_context @{thms add_mono_thms_linordered_semiring add_mono_thms_linordered_field}
 | 
|
860  | 
@ add_mono_thms,  | 
|
861  | 
mult_mono_thms =  | 
|
862  | 
map Thm.trim_context  | 
|
863  | 
        (@{thms mult_strict_left_mono mult_left_mono} @
 | 
|
864  | 
          [@{lemma "a = b ==> c * a = c * b" by (rule arg_cong)}]) @ mult_mono_thms,
 | 
|
| 
24092
 
71c27b320610
HOL setup for linear arithmetic -- moved here from arith_data.ML;
 
wenzelm 
parents:  
diff
changeset
 | 
865  | 
inj_thms = inj_thms,  | 
| 54249 | 866  | 
lessD = lessD,  | 
| 61097 | 867  | 
    neqE = map Thm.trim_context @{thms linorder_neqE_nat linorder_neqE_linordered_idom} @ neqE,
 | 
868  | 
simpset =  | 
|
| 69593 | 869  | 
      put_simpset HOL_basic_ss \<^context> |> Simplifier.add_cong @{thm if_weak_cong} |> simpset_of,
 | 
| 54249 | 870  | 
number_of = number_of});  | 
| 
24092
 
71c27b320610
HOL setup for linear arithmetic -- moved here from arith_data.ML;
 
wenzelm 
parents:  
diff
changeset
 | 
871  | 
|
| 
51717
 
9e7d1c139569
simplifier uses proper Proof.context instead of historic type simpset;
 
wenzelm 
parents: 
48560 
diff
changeset
 | 
872  | 
(* FIXME !?? *)  | 
| 
 
9e7d1c139569
simplifier uses proper Proof.context instead of historic type simpset;
 
wenzelm 
parents: 
48560 
diff
changeset
 | 
873  | 
fun add_arith_facts ctxt =  | 
| 69593 | 874  | 
Simplifier.add_prems (rev (Named_Theorems.get ctxt \<^named_theorems>\<open>arith\<close>)) ctxt;  | 
| 
29849
 
a2baf1b221be
new attribute "arith" for facts supplied to arith.
 
nipkow 
parents: 
29548 
diff
changeset
 | 
875  | 
|
| 
31101
 
26c7bb764a38
qualified names for Lin_Arith tactics and simprocs
 
haftmann 
parents: 
31100 
diff
changeset
 | 
876  | 
val simproc = add_arith_facts #> Fast_Arith.lin_arith_simproc;  | 
| 
24092
 
71c27b320610
HOL setup for linear arithmetic -- moved here from arith_data.ML;
 
wenzelm 
parents:  
diff
changeset
 | 
877  | 
|
| 
 
71c27b320610
HOL setup for linear arithmetic -- moved here from arith_data.ML;
 
wenzelm 
parents:  
diff
changeset
 | 
878  | 
|
| 26110 | 879  | 
(* generic refutation procedure *)  | 
880  | 
||
881  | 
(* parameters:  | 
|
882  | 
||
883  | 
test: term -> bool  | 
|
884  | 
tests if a term is at all relevant to the refutation proof;  | 
|
885  | 
if not, then it can be discarded. Can improve performance,  | 
|
886  | 
esp. if disjunctions can be discarded (no case distinction needed!).  | 
|
887  | 
||
888  | 
prep_tac: int -> tactic  | 
|
889  | 
A preparation tactic to be applied to the goal once all relevant premises  | 
|
890  | 
have been moved to the conclusion.  | 
|
891  | 
||
892  | 
ref_tac: int -> tactic  | 
|
893  | 
the actual refutation tactic. Should be able to deal with goals  | 
|
894  | 
[| A1; ...; An |] ==> False  | 
|
895  | 
where the Ai are atomic, i.e. no top-level &, | or EX  | 
|
896  | 
*)  | 
|
897  | 
||
| 
51717
 
9e7d1c139569
simplifier uses proper Proof.context instead of historic type simpset;
 
wenzelm 
parents: 
48560 
diff
changeset
 | 
898  | 
fun refute_tac ctxt test prep_tac ref_tac =  | 
| 26110 | 899  | 
let val refute_prems_tac =  | 
900  | 
REPEAT_DETERM  | 
|
| 
59498
 
50b60f501b05
proper context for resolve_tac, eresolve_tac, dresolve_tac, forward_tac etc.;
 
wenzelm 
parents: 
59352 
diff
changeset
 | 
901  | 
              (eresolve_tac ctxt [@{thm conjE}, @{thm exE}] 1 ORELSE
 | 
| 
 
50b60f501b05
proper context for resolve_tac, eresolve_tac, dresolve_tac, forward_tac etc.;
 
wenzelm 
parents: 
59352 
diff
changeset
 | 
902  | 
filter_prems_tac ctxt test 1 ORELSE  | 
| 
 
50b60f501b05
proper context for resolve_tac, eresolve_tac, dresolve_tac, forward_tac etc.;
 
wenzelm 
parents: 
59352 
diff
changeset
 | 
903  | 
               eresolve_tac ctxt @{thms disjE} 1) THEN
 | 
| 
 
50b60f501b05
proper context for resolve_tac, eresolve_tac, dresolve_tac, forward_tac etc.;
 
wenzelm 
parents: 
59352 
diff
changeset
 | 
904  | 
        (DETERM (eresolve_tac ctxt @{thms notE} 1 THEN eq_assume_tac 1) ORELSE
 | 
| 26110 | 905  | 
ref_tac 1);  | 
| 
59498
 
50b60f501b05
proper context for resolve_tac, eresolve_tac, dresolve_tac, forward_tac etc.;
 
wenzelm 
parents: 
59352 
diff
changeset
 | 
906  | 
in EVERY'[TRY o filter_prems_tac ctxt test,  | 
| 
 
50b60f501b05
proper context for resolve_tac, eresolve_tac, dresolve_tac, forward_tac etc.;
 
wenzelm 
parents: 
59352 
diff
changeset
 | 
907  | 
            REPEAT_DETERM o eresolve_tac ctxt @{thms rev_mp}, prep_tac,
 | 
| 
 
50b60f501b05
proper context for resolve_tac, eresolve_tac, dresolve_tac, forward_tac etc.;
 
wenzelm 
parents: 
59352 
diff
changeset
 | 
908  | 
              resolve_tac ctxt @{thms ccontr}, prem_nnf_tac ctxt,
 | 
| 26110 | 909  | 
SELECT_GOAL (DEPTH_SOLVE refute_prems_tac)]  | 
910  | 
end;  | 
|
| 
42439
 
9efdd0af15ac
eliminated Display.string_of_thm_without_context;
 
wenzelm 
parents: 
42361 
diff
changeset
 | 
911  | 
|
| 26110 | 912  | 
|
| 
24092
 
71c27b320610
HOL setup for linear arithmetic -- moved here from arith_data.ML;
 
wenzelm 
parents:  
diff
changeset
 | 
913  | 
(* arith proof method *)  | 
| 
 
71c27b320610
HOL setup for linear arithmetic -- moved here from arith_data.ML;
 
wenzelm 
parents:  
diff
changeset
 | 
914  | 
|
| 
 
71c27b320610
HOL setup for linear arithmetic -- moved here from arith_data.ML;
 
wenzelm 
parents:  
diff
changeset
 | 
915  | 
local  | 
| 
 
71c27b320610
HOL setup for linear arithmetic -- moved here from arith_data.ML;
 
wenzelm 
parents:  
diff
changeset
 | 
916  | 
|
| 59656 | 917  | 
fun raw_tac ctxt =  | 
| 33035 | 918  | 
(* FIXME: K true should be replaced by a sensible test (perhaps "is_some o  | 
| 
24092
 
71c27b320610
HOL setup for linear arithmetic -- moved here from arith_data.ML;
 
wenzelm 
parents:  
diff
changeset
 | 
919  | 
decomp sg"? -- but note that the test is applied to terms already before  | 
| 
 
71c27b320610
HOL setup for linear arithmetic -- moved here from arith_data.ML;
 
wenzelm 
parents:  
diff
changeset
 | 
920  | 
they are split/normalized) to speed things up in case there are lots of  | 
| 
 
71c27b320610
HOL setup for linear arithmetic -- moved here from arith_data.ML;
 
wenzelm 
parents:  
diff
changeset
 | 
921  | 
irrelevant terms involved; elimination of min/max can be optimized:  | 
| 
 
71c27b320610
HOL setup for linear arithmetic -- moved here from arith_data.ML;
 
wenzelm 
parents:  
diff
changeset
 | 
922  | 
(max m n + k <= r) = (m+k <= r & n+k <= r)  | 
| 
 
71c27b320610
HOL setup for linear arithmetic -- moved here from arith_data.ML;
 
wenzelm 
parents:  
diff
changeset
 | 
923  | 
(l <= min m n + k) = (l <= m+k & l <= n+k)  | 
| 
 
71c27b320610
HOL setup for linear arithmetic -- moved here from arith_data.ML;
 
wenzelm 
parents:  
diff
changeset
 | 
924  | 
*)  | 
| 
51717
 
9e7d1c139569
simplifier uses proper Proof.context instead of historic type simpset;
 
wenzelm 
parents: 
48560 
diff
changeset
 | 
925  | 
refute_tac ctxt (K true)  | 
| 
33728
 
cb4235333c30
Fixed splitting of div and mod on integers (split theorem differed from implementation).
 
webertj 
parents: 
33719 
diff
changeset
 | 
926  | 
(* Splitting is also done inside simple_tac, but not completely -- *)  | 
| 
 
cb4235333c30
Fixed splitting of div and mod on integers (split theorem differed from implementation).
 
webertj 
parents: 
33719 
diff
changeset
 | 
927  | 
(* split_tac may use split theorems that have not been implemented in *)  | 
| 
 
cb4235333c30
Fixed splitting of div and mod on integers (split theorem differed from implementation).
 
webertj 
parents: 
33719 
diff
changeset
 | 
928  | 
(* simple_tac (cf. pre_decomp and split_once_items above), and *)  | 
| 
 
cb4235333c30
Fixed splitting of div and mod on integers (split theorem differed from implementation).
 
webertj 
parents: 
33719 
diff
changeset
 | 
929  | 
(* split_limit may trigger. *)  | 
| 
 
cb4235333c30
Fixed splitting of div and mod on integers (split theorem differed from implementation).
 
webertj 
parents: 
33719 
diff
changeset
 | 
930  | 
(* Therefore splitting outside of simple_tac may allow us to prove *)  | 
| 
 
cb4235333c30
Fixed splitting of div and mod on integers (split theorem differed from implementation).
 
webertj 
parents: 
33719 
diff
changeset
 | 
931  | 
(* some goals that simple_tac alone would fail on. *)  | 
| 67631 | 932  | 
(REPEAT_DETERM o split_tac ctxt (get_splits ctxt))  | 
| 59656 | 933  | 
(Fast_Arith.lin_arith_tac ctxt);  | 
| 
24092
 
71c27b320610
HOL setup for linear arithmetic -- moved here from arith_data.ML;
 
wenzelm 
parents:  
diff
changeset
 | 
934  | 
|
| 
 
71c27b320610
HOL setup for linear arithmetic -- moved here from arith_data.ML;
 
wenzelm 
parents:  
diff
changeset
 | 
935  | 
in  | 
| 
 
71c27b320610
HOL setup for linear arithmetic -- moved here from arith_data.ML;
 
wenzelm 
parents:  
diff
changeset
 | 
936  | 
|
| 59656 | 937  | 
fun tac ctxt =  | 
| 
54742
 
7a86358a3c0b
proper context for basic Simplifier operations: rewrite_rule, rewrite_goals_rule, rewrite_goals_tac etc.;
 
wenzelm 
parents: 
54489 
diff
changeset
 | 
938  | 
FIRST' [simple_tac ctxt,  | 
| 58839 | 939  | 
Object_Logic.full_atomize_tac ctxt THEN'  | 
| 59656 | 940  | 
(REPEAT_DETERM o resolve_tac ctxt [impI]) THEN' raw_tac ctxt];  | 
| 
24092
 
71c27b320610
HOL setup for linear arithmetic -- moved here from arith_data.ML;
 
wenzelm 
parents:  
diff
changeset
 | 
941  | 
|
| 
 
71c27b320610
HOL setup for linear arithmetic -- moved here from arith_data.ML;
 
wenzelm 
parents:  
diff
changeset
 | 
942  | 
end;  | 
| 
 
71c27b320610
HOL setup for linear arithmetic -- moved here from arith_data.ML;
 
wenzelm 
parents:  
diff
changeset
 | 
943  | 
|
| 
 
71c27b320610
HOL setup for linear arithmetic -- moved here from arith_data.ML;
 
wenzelm 
parents:  
diff
changeset
 | 
944  | 
|
| 
 
71c27b320610
HOL setup for linear arithmetic -- moved here from arith_data.ML;
 
wenzelm 
parents:  
diff
changeset
 | 
945  | 
(* context setup *)  | 
| 
 
71c27b320610
HOL setup for linear arithmetic -- moved here from arith_data.ML;
 
wenzelm 
parents:  
diff
changeset
 | 
946  | 
|
| 31100 | 947  | 
val global_setup =  | 
| 
51717
 
9e7d1c139569
simplifier uses proper Proof.context instead of historic type simpset;
 
wenzelm 
parents: 
48560 
diff
changeset
 | 
948  | 
map_theory_simpset (fn ctxt => ctxt  | 
| 
 
9e7d1c139569
simplifier uses proper Proof.context instead of historic type simpset;
 
wenzelm 
parents: 
48560 
diff
changeset
 | 
949  | 
addSolver (mk_solver "lin_arith" (add_arith_facts #> Fast_Arith.prems_lin_arith_tac))) #>  | 
| 75878 | 950  | 
Attrib.setup \<^binding>\<open>linarith_split\<close> (Scan.succeed (Thm.declaration_attribute add_split))  | 
| 31100 | 951  | 
"declaration of split rules for arithmetic procedure" #>  | 
| 67149 | 952  | 
Method.setup \<^binding>\<open>linarith\<close>  | 
| 33554 | 953  | 
(Scan.succeed (fn ctxt =>  | 
| 31100 | 954  | 
METHOD (fn facts =>  | 
| 
61841
 
4d3527b94f2a
more general types Proof.method / context_tactic;
 
wenzelm 
parents: 
61268 
diff
changeset
 | 
955  | 
HEADGOAL  | 
| 
 
4d3527b94f2a
more general types Proof.method / context_tactic;
 
wenzelm 
parents: 
61268 
diff
changeset
 | 
956  | 
(Method.insert_tac ctxt  | 
| 69593 | 957  | 
(rev (Named_Theorems.get ctxt \<^named_theorems>\<open>arith\<close>) @ facts)  | 
| 
31101
 
26c7bb764a38
qualified names for Lin_Arith tactics and simprocs
 
haftmann 
parents: 
31100 
diff
changeset
 | 
958  | 
THEN' tac ctxt)))) "linear arithmetic" #>  | 
| 
59657
 
2441a80fb6c1
eliminated unused arith "verbose" flag -- tools that need options can use the context;
 
wenzelm 
parents: 
59656 
diff
changeset
 | 
959  | 
Arith_Data.add_tactic "linear arithmetic" tac;  | 
| 
24092
 
71c27b320610
HOL setup for linear arithmetic -- moved here from arith_data.ML;
 
wenzelm 
parents:  
diff
changeset
 | 
960  | 
|
| 
 
71c27b320610
HOL setup for linear arithmetic -- moved here from arith_data.ML;
 
wenzelm 
parents:  
diff
changeset
 | 
961  | 
end;  |