| author | wenzelm | 
| Sun, 29 Mar 2015 18:32:28 +0200 | |
| changeset 59839 | 62d69ffa639f | 
| parent 59690 | 46b635624feb | 
| child 60184 | 7541f29492c3 | 
| permissions | -rw-r--r-- | 
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changeset | 1 | (* Title: Pure/raw_simplifier.ML | 
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changeset | 2 | Author: Tobias Nipkow and Stefan Berghofer, TU Muenchen | 
| 10413 | 3 | |
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changeset | 4 | Higher-order Simplification. | 
| 10413 | 5 | *) | 
| 6 | ||
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changeset | 7 | infix 4 | 
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changeset | 8 | addsimps delsimps addsimprocs delsimprocs | 
| 52037 | 9 | setloop addloop delloop | 
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changeset | 10 | setSSolver addSSolver setSolver addSolver; | 
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changeset | 11 | |
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changeset | 12 | signature BASIC_RAW_SIMPLIFIER = | 
| 11672 | 13 | sig | 
| 41227 | 14 | val simp_depth_limit: int Config.T | 
| 15 | val simp_trace_depth_limit: int Config.T | |
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changeset | 16 | val simp_debug: bool Config.T | 
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changeset | 17 | val simp_trace: bool Config.T | 
| 51590 | 18 | type cong_name = bool * string | 
| 15023 | 19 | type rrule | 
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changeset | 20 | val mk_rrules: Proof.context -> thm list -> rrule list | 
| 16807 | 21 | val eq_rrule: rrule * rrule -> bool | 
| 15023 | 22 | type proc | 
| 17614 | 23 | type solver | 
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changeset | 24 | val mk_solver: string -> (Proof.context -> int -> tactic) -> solver | 
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changeset | 25 | type simpset | 
| 15023 | 26 | val empty_ss: simpset | 
| 27 | val merge_ss: simpset * simpset -> simpset | |
| 30356 | 28 | val dest_ss: simpset -> | 
| 29 |    {simps: (string * thm) list,
 | |
| 30 | procs: (string * cterm list) list, | |
| 51590 | 31 | congs: (cong_name * thm) list, | 
| 32 | weak_congs: cong_name list, | |
| 30356 | 33 | loopers: string list, | 
| 34 | unsafe_solvers: string list, | |
| 35 | safe_solvers: string list} | |
| 15023 | 36 | type simproc | 
| 22234 | 37 | val eq_simproc: simproc * simproc -> bool | 
| 45290 | 38 | val transform_simproc: morphism -> simproc -> simproc | 
| 22234 | 39 |   val make_simproc: {name: string, lhss: cterm list,
 | 
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changeset | 40 | proc: morphism -> Proof.context -> cterm -> thm option, identifier: thm list} -> simproc | 
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changeset | 41 | val mk_simproc: string -> cterm list -> (Proof.context -> term -> thm option) -> simproc | 
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changeset | 42 | val simpset_of: Proof.context -> simpset | 
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changeset | 43 | val put_simpset: simpset -> Proof.context -> Proof.context | 
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changeset | 44 | val simpset_map: Proof.context -> (Proof.context -> Proof.context) -> simpset -> simpset | 
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changeset | 45 | val map_theory_simpset: (Proof.context -> Proof.context) -> theory -> theory | 
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changeset | 46 | val empty_simpset: Proof.context -> Proof.context | 
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changeset | 47 | val clear_simpset: Proof.context -> Proof.context | 
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changeset | 48 | val addsimps: Proof.context * thm list -> Proof.context | 
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changeset | 49 | val delsimps: Proof.context * thm list -> Proof.context | 
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changeset | 50 | val addsimprocs: Proof.context * simproc list -> Proof.context | 
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changeset | 51 | val delsimprocs: Proof.context * simproc list -> Proof.context | 
| 52037 | 52 | val setloop: Proof.context * (Proof.context -> int -> tactic) -> Proof.context | 
| 53 | val addloop: Proof.context * (string * (Proof.context -> int -> tactic)) -> Proof.context | |
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changeset | 54 | val delloop: Proof.context * string -> Proof.context | 
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changeset | 55 | val setSSolver: Proof.context * solver -> Proof.context | 
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changeset | 56 | val addSSolver: Proof.context * solver -> Proof.context | 
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changeset | 57 | val setSolver: Proof.context * solver -> Proof.context | 
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changeset | 58 | val addSolver: Proof.context * solver -> Proof.context | 
| 21708 | 59 | |
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changeset | 60 | val rewrite_rule: Proof.context -> thm list -> thm -> thm | 
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changeset | 61 | val rewrite_goals_rule: Proof.context -> thm list -> thm -> thm | 
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changeset | 62 | val rewrite_goals_tac: Proof.context -> thm list -> tactic | 
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changeset | 63 | val rewrite_goal_tac: Proof.context -> thm list -> int -> tactic | 
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changeset | 64 | val prune_params_tac: Proof.context -> tactic | 
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changeset | 65 | val fold_rule: Proof.context -> thm list -> thm -> thm | 
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changeset | 66 | val fold_goals_tac: Proof.context -> thm list -> tactic | 
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changeset | 67 | val norm_hhf: Proof.context -> thm -> thm | 
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changeset | 68 | val norm_hhf_protect: Proof.context -> thm -> thm | 
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changeset | 69 | end; | 
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changeset | 70 | |
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changeset | 71 | signature RAW_SIMPLIFIER = | 
| 10413 | 72 | sig | 
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changeset | 73 | include BASIC_RAW_SIMPLIFIER | 
| 54997 | 74 | exception SIMPLIFIER of string * thm list | 
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changeset | 75 | type trace_ops | 
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changeset | 76 | val set_trace_ops: trace_ops -> theory -> theory | 
| 30336 | 77 | val internal_ss: simpset -> | 
| 51590 | 78 |    {congs: (cong_name * thm) list * cong_name list,
 | 
| 30336 | 79 | procs: proc Net.net, | 
| 80 | mk_rews: | |
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changeset | 81 |      {mk: Proof.context -> thm -> thm list,
 | 
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changeset | 82 | mk_cong: Proof.context -> thm -> thm, | 
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changeset | 83 | mk_sym: Proof.context -> thm -> thm option, | 
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changeset | 84 | mk_eq_True: Proof.context -> thm -> thm option, | 
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changeset | 85 | reorient: Proof.context -> term list -> term -> term -> bool}, | 
| 30336 | 86 | termless: term * term -> bool, | 
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changeset | 87 | subgoal_tac: Proof.context -> int -> tactic, | 
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changeset | 88 | loop_tacs: (string * (Proof.context -> int -> tactic)) list, | 
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changeset | 89 | solvers: solver list * solver list} | 
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changeset | 90 | val map_ss: (Proof.context -> Proof.context) -> Context.generic -> Context.generic | 
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changeset | 91 | val prems_of: Proof.context -> thm list | 
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changeset | 92 | val add_simp: thm -> Proof.context -> Proof.context | 
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changeset | 93 | val del_simp: thm -> Proof.context -> Proof.context | 
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changeset | 94 | val add_eqcong: thm -> Proof.context -> Proof.context | 
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changeset | 95 | val del_eqcong: thm -> Proof.context -> Proof.context | 
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changeset | 96 | val add_cong: thm -> Proof.context -> Proof.context | 
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changeset | 97 | val del_cong: thm -> Proof.context -> Proof.context | 
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changeset | 98 | val mksimps: Proof.context -> thm -> thm list | 
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changeset | 99 | val set_mksimps: (Proof.context -> thm -> thm list) -> Proof.context -> Proof.context | 
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changeset | 100 | val set_mkcong: (Proof.context -> thm -> thm) -> Proof.context -> Proof.context | 
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changeset | 101 | val set_mksym: (Proof.context -> thm -> thm option) -> Proof.context -> Proof.context | 
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changeset | 102 | val set_mkeqTrue: (Proof.context -> thm -> thm option) -> Proof.context -> Proof.context | 
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changeset | 103 | val set_termless: (term * term -> bool) -> Proof.context -> Proof.context | 
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changeset | 104 | val set_subgoaler: (Proof.context -> int -> tactic) -> Proof.context -> Proof.context | 
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changeset | 105 | val solver: Proof.context -> solver -> int -> tactic | 
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changeset | 106 | val simp_depth_limit_raw: Config.raw | 
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changeset | 107 | val default_mk_sym: Proof.context -> thm -> thm option | 
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changeset | 108 | val simproc_global_i: theory -> string -> term list -> | 
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changeset | 109 | (Proof.context -> term -> thm option) -> simproc | 
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changeset | 110 | val simproc_global: theory -> string -> string list -> | 
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changeset | 111 | (Proof.context -> term -> thm option) -> simproc | 
| 41227 | 112 | val simp_trace_depth_limit_raw: Config.raw | 
| 113 | val simp_trace_raw: Config.raw | |
| 114 | val simp_debug_raw: Config.raw | |
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changeset | 115 | val add_prems: thm list -> Proof.context -> Proof.context | 
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changeset | 116 | val set_reorient: (Proof.context -> term list -> term -> term -> bool) -> | 
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changeset | 117 | Proof.context -> Proof.context | 
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changeset | 118 | val set_solvers: solver list -> Proof.context -> Proof.context | 
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changeset | 119 | val rewrite_cterm: bool * bool * bool -> | 
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changeset | 120 | (Proof.context -> thm -> thm option) -> Proof.context -> conv | 
| 16458 | 121 | val rewrite_term: theory -> thm list -> (term -> term option) list -> term -> term | 
| 15023 | 122 | val rewrite_thm: bool * bool * bool -> | 
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changeset | 123 | (Proof.context -> thm -> thm option) -> Proof.context -> thm -> thm | 
| 46465 | 124 | val generic_rewrite_goal_tac: bool * bool * bool -> | 
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changeset | 125 | (Proof.context -> tactic) -> Proof.context -> int -> tactic | 
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changeset | 126 | val rewrite: Proof.context -> bool -> thm list -> conv | 
| 10413 | 127 | end; | 
| 128 | ||
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changeset | 129 | structure Raw_Simplifier: RAW_SIMPLIFIER = | 
| 10413 | 130 | struct | 
| 131 | ||
| 15023 | 132 | (** datatype simpset **) | 
| 133 | ||
| 51590 | 134 | (* congruence rules *) | 
| 135 | ||
| 136 | type cong_name = bool * string; | |
| 137 | ||
| 138 | fun cong_name (Const (a, _)) = SOME (true, a) | |
| 139 | | cong_name (Free (a, _)) = SOME (false, a) | |
| 140 | | cong_name _ = NONE; | |
| 141 | ||
| 142 | ||
| 15023 | 143 | (* rewrite rules *) | 
| 10413 | 144 | |
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changeset | 145 | type rrule = | 
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changeset | 146 |  {thm: thm,         (*the rewrite rule*)
 | 
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changeset | 147 | name: string, (*name of theorem from which rewrite rule was extracted*) | 
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changeset | 148 | lhs: term, (*the left-hand side*) | 
| 58836 | 149 | elhs: cterm, (*the eta-contracted lhs*) | 
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changeset | 150 | extra: bool, (*extra variables outside of elhs*) | 
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changeset | 151 | fo: bool, (*use first-order matching*) | 
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changeset | 152 | perm: bool}; (*the rewrite rule is permutative*) | 
| 15023 | 153 | |
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changeset | 154 | (* | 
| 12603 | 155 | Remarks: | 
| 10413 | 156 | - elhs is used for matching, | 
| 15023 | 157 | lhs only for preservation of bound variable names; | 
| 10413 | 158 | - fo is set iff | 
| 159 | either elhs is first-order (no Var is applied), | |
| 15023 | 160 | in which case fo-matching is complete, | 
| 10413 | 161 | or elhs is not a pattern, | 
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changeset | 162 | in which case there is nothing better to do; | 
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changeset | 163 | *) | 
| 10413 | 164 | |
| 165 | fun eq_rrule ({thm = thm1, ...}: rrule, {thm = thm2, ...}: rrule) =
 | |
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changeset | 166 | Thm.eq_thm_prop (thm1, thm2); | 
| 15023 | 167 | |
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changeset | 168 | (* FIXME: it seems that the conditions on extra variables are too liberal if | 
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changeset | 169 | prems are nonempty: does solving the prems really guarantee instantiation of | 
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changeset | 170 | all its Vars? Better: a dynamic check each time a rule is applied. | 
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changeset | 171 | *) | 
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changeset | 172 | fun rewrite_rule_extra_vars prems elhs erhs = | 
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changeset | 173 | let | 
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changeset | 174 | val elhss = elhs :: prems; | 
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changeset | 175 | val tvars = fold Term.add_tvars elhss []; | 
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changeset | 176 | val vars = fold Term.add_vars elhss []; | 
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changeset | 177 | in | 
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changeset | 178 | erhs |> Term.exists_type (Term.exists_subtype | 
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changeset | 179 | (fn TVar v => not (member (op =) tvars v) | _ => false)) orelse | 
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changeset | 180 | erhs |> Term.exists_subterm | 
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changeset | 181 | (fn Var v => not (member (op =) vars v) | _ => false) | 
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changeset | 182 | end; | 
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changeset | 183 | |
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changeset | 184 | fun rrule_extra_vars elhs thm = | 
| 59582 | 185 | rewrite_rule_extra_vars [] (Thm.term_of elhs) (Thm.full_prop_of thm); | 
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changeset | 186 | |
| 15023 | 187 | fun mk_rrule2 {thm, name, lhs, elhs, perm} =
 | 
| 188 | let | |
| 59582 | 189 | val t = Thm.term_of elhs; | 
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changeset | 190 | val fo = Pattern.first_order t orelse not (Pattern.pattern t); | 
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changeset | 191 | val extra = rrule_extra_vars elhs thm; | 
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changeset | 192 |   in {thm = thm, name = name, lhs = lhs, elhs = elhs, extra = extra, fo = fo, perm = perm} end;
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| 10413 | 193 | |
| 15023 | 194 | (*simple test for looping rewrite rules and stupid orientations*) | 
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changeset | 195 | fun default_reorient ctxt prems lhs rhs = | 
| 15023 | 196 | rewrite_rule_extra_vars prems lhs rhs | 
| 197 | orelse | |
| 198 | is_Var (head_of lhs) | |
| 199 | orelse | |
| 16305 | 200 | (* turns t = x around, which causes a headache if x is a local variable - | 
| 201 | usually it is very useful :-( | |
| 202 | is_Free rhs andalso not(is_Free lhs) andalso not(Logic.occs(rhs,lhs)) | |
| 203 | andalso not(exists_subterm is_Var lhs) | |
| 204 | orelse | |
| 205 | *) | |
| 16842 | 206 | exists (fn t => Logic.occs (lhs, t)) (rhs :: prems) | 
| 15023 | 207 | orelse | 
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changeset | 208 | null prems andalso Pattern.matches (Proof_Context.theory_of ctxt) (lhs, rhs) | 
| 10413 | 209 | (*the condition "null prems" is necessary because conditional rewrites | 
| 210 | with extra variables in the conditions may terminate although | |
| 15023 | 211 | the rhs is an instance of the lhs; example: ?m < ?n ==> f(?n) == f(?m)*) | 
| 212 | orelse | |
| 213 | is_Const lhs andalso not (is_Const rhs); | |
| 10413 | 214 | |
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changeset | 215 | |
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changeset | 216 | (* simplification procedures *) | 
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changeset | 217 | |
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changeset | 218 | datatype proc = | 
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changeset | 219 | Proc of | 
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changeset | 220 |    {name: string,
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changeset | 221 | lhs: cterm, | 
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changeset | 222 | proc: Proof.context -> cterm -> thm option, | 
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changeset | 223 | id: stamp * thm list}; | 
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changeset | 224 | |
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changeset | 225 | fun eq_procid ((s1: stamp, ths1: thm list), (s2, ths2)) = | 
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changeset | 226 | s1 = s2 andalso eq_list Thm.eq_thm (ths1, ths2); | 
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changeset | 227 | |
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changeset | 228 | fun eq_proc (Proc {id = id1, ...}, Proc {id = id2, ...}) = eq_procid (id1, id2);
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changeset | 229 | |
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changeset | 230 | |
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changeset | 231 | (* solvers *) | 
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changeset | 232 | |
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changeset | 233 | datatype solver = | 
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changeset | 234 | Solver of | 
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changeset | 235 |    {name: string,
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changeset | 236 | solver: Proof.context -> int -> tactic, | 
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changeset | 237 | id: stamp}; | 
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changeset | 238 | |
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changeset | 239 | fun mk_solver name solver = Solver {name = name, solver = solver, id = stamp ()};
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changeset | 240 | |
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changeset | 241 | fun solver_name (Solver {name, ...}) = name;
 | 
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changeset | 242 | fun solver ctxt (Solver {solver = tac, ...}) = tac ctxt;
 | 
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changeset | 243 | fun eq_solver (Solver {id = id1, ...}, Solver {id = id2, ...}) = (id1 = id2);
 | 
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changeset | 244 | |
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changeset | 245 | |
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changeset | 246 | (* simplification sets *) | 
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changeset | 247 | |
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changeset | 248 | (*A simpset contains data required during conversion: | 
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changeset | 249 | rules: discrimination net of rewrite rules; | 
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changeset | 250 | prems: current premises; | 
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changeset | 251 | depth: simp_depth and exceeded flag; | 
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changeset | 252 | congs: association list of congruence rules and | 
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changeset | 253 | a list of `weak' congruence constants. | 
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changeset | 254 | A congruence is `weak' if it avoids normalization of some argument. | 
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changeset | 255 | procs: discrimination net of simplification procedures | 
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changeset | 256 | (functions that prove rewrite rules on the fly); | 
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changeset | 257 | mk_rews: | 
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changeset | 258 | mk: turn simplification thms into rewrite rules; | 
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changeset | 259 | mk_cong: prepare congruence rules; | 
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changeset | 260 | mk_sym: turn == around; | 
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changeset | 261 | mk_eq_True: turn P into P == True; | 
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changeset | 262 | termless: relation for ordered rewriting;*) | 
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changeset | 263 | |
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changeset | 264 | datatype simpset = | 
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changeset | 265 | Simpset of | 
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changeset | 266 |    {rules: rrule Net.net,
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changeset | 267 | prems: thm list, | 
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changeset | 268 | depth: int * bool Unsynchronized.ref} * | 
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changeset | 269 |    {congs: (cong_name * thm) list * cong_name list,
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changeset | 270 | procs: proc Net.net, | 
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changeset | 271 | mk_rews: | 
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changeset | 272 |      {mk: Proof.context -> thm -> thm list,
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changeset | 273 | mk_cong: Proof.context -> thm -> thm, | 
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changeset | 274 | mk_sym: Proof.context -> thm -> thm option, | 
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changeset | 275 | mk_eq_True: Proof.context -> thm -> thm option, | 
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changeset | 276 | reorient: Proof.context -> term list -> term -> term -> bool}, | 
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changeset | 277 | termless: term * term -> bool, | 
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changeset | 278 | subgoal_tac: Proof.context -> int -> tactic, | 
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changeset | 279 | loop_tacs: (string * (Proof.context -> int -> tactic)) list, | 
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changeset | 280 | solvers: solver list * solver list}; | 
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changeset | 281 | |
| 54728 | 282 | fun internal_ss (Simpset (_, ss2)) = ss2; | 
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changeset | 283 | |
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changeset | 284 | fun make_ss1 (rules, prems, depth) = {rules = rules, prems = prems, depth = depth};
 | 
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changeset | 285 | |
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changeset | 286 | fun map_ss1 f {rules, prems, depth} = make_ss1 (f (rules, prems, depth));
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changeset | 287 | |
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changeset | 288 | fun make_ss2 (congs, procs, mk_rews, termless, subgoal_tac, loop_tacs, solvers) = | 
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changeset | 289 |   {congs = congs, procs = procs, mk_rews = mk_rews, termless = termless,
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changeset | 290 | subgoal_tac = subgoal_tac, loop_tacs = loop_tacs, solvers = solvers}; | 
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changeset | 291 | |
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changeset | 292 | fun map_ss2 f {congs, procs, mk_rews, termless, subgoal_tac, loop_tacs, solvers} =
 | 
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changeset | 293 | make_ss2 (f (congs, procs, mk_rews, termless, subgoal_tac, loop_tacs, solvers)); | 
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changeset | 294 | |
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changeset | 295 | fun make_simpset (args1, args2) = Simpset (make_ss1 args1, make_ss2 args2); | 
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changeset | 296 | |
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changeset | 297 | fun dest_ss (Simpset ({rules, ...}, {congs, procs, loop_tacs, solvers, ...})) =
 | 
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changeset | 298 |  {simps = Net.entries rules
 | 
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changeset | 299 |     |> map (fn {name, thm, ...} => (name, thm)),
 | 
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changeset | 300 | procs = Net.entries procs | 
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changeset | 301 |     |> map (fn Proc {name, lhs, id, ...} => ((name, lhs), id))
 | 
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changeset | 302 | |> partition_eq (eq_snd eq_procid) | 
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changeset | 303 | |> map (fn ps => (fst (fst (hd ps)), map (snd o fst) ps)), | 
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changeset | 304 | congs = #1 congs, | 
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changeset | 305 | weak_congs = #2 congs, | 
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changeset | 306 | loopers = map fst loop_tacs, | 
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changeset | 307 | unsafe_solvers = map solver_name (#1 solvers), | 
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changeset | 308 | safe_solvers = map solver_name (#2 solvers)}; | 
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changeset | 309 | |
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changeset | 310 | |
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changeset | 311 | (* empty *) | 
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changeset | 312 | |
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changeset | 313 | fun init_ss depth mk_rews termless subgoal_tac solvers = | 
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changeset | 314 | make_simpset ((Net.empty, [], depth), | 
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changeset | 315 | (([], []), Net.empty, mk_rews, termless, subgoal_tac, [], solvers)); | 
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changeset | 316 | |
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changeset | 317 | fun default_mk_sym _ th = SOME (th RS Drule.symmetric_thm); | 
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changeset | 318 | |
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changeset | 319 | val empty_ss = | 
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changeset | 320 | init_ss (0, Unsynchronized.ref false) | 
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changeset | 321 |     {mk = fn _ => fn th => if can Logic.dest_equals (Thm.concl_of th) then [th] else [],
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changeset | 322 | mk_cong = K I, | 
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changeset | 323 | mk_sym = default_mk_sym, | 
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changeset | 324 | mk_eq_True = K (K NONE), | 
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changeset | 325 | reorient = default_reorient} | 
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changeset | 326 | Term_Ord.termless (K (K no_tac)) ([], []); | 
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changeset | 327 | |
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changeset | 328 | |
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changeset | 329 | (* merge *) (*NOTE: ignores some fields of 2nd simpset*) | 
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changeset | 330 | |
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changeset | 331 | fun merge_ss (ss1, ss2) = | 
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changeset | 332 | if pointer_eq (ss1, ss2) then ss1 | 
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changeset | 333 | else | 
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changeset | 334 | let | 
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changeset | 335 |       val Simpset ({rules = rules1, prems = prems1, depth = depth1},
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changeset | 336 |        {congs = (congs1, weak1), procs = procs1, mk_rews, termless, subgoal_tac,
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changeset | 337 | loop_tacs = loop_tacs1, solvers = (unsafe_solvers1, solvers1)}) = ss1; | 
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changeset | 338 |       val Simpset ({rules = rules2, prems = prems2, depth = depth2},
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changeset | 339 |        {congs = (congs2, weak2), procs = procs2, mk_rews = _, termless = _, subgoal_tac = _,
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changeset | 340 | loop_tacs = loop_tacs2, solvers = (unsafe_solvers2, solvers2)}) = ss2; | 
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changeset | 341 | |
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changeset | 342 | val rules' = Net.merge eq_rrule (rules1, rules2); | 
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changeset | 343 | val prems' = Thm.merge_thms (prems1, prems2); | 
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changeset | 344 | val depth' = if #1 depth1 < #1 depth2 then depth2 else depth1; | 
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changeset | 345 | val congs' = merge (Thm.eq_thm_prop o apply2 #2) (congs1, congs2); | 
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changeset | 346 | val weak' = merge (op =) (weak1, weak2); | 
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changeset | 347 | val procs' = Net.merge eq_proc (procs1, procs2); | 
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changeset | 348 | val loop_tacs' = AList.merge (op =) (K true) (loop_tacs1, loop_tacs2); | 
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changeset | 349 | val unsafe_solvers' = merge eq_solver (unsafe_solvers1, unsafe_solvers2); | 
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changeset | 350 | val solvers' = merge eq_solver (solvers1, solvers2); | 
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changeset | 351 | in | 
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changeset | 352 | make_simpset ((rules', prems', depth'), ((congs', weak'), procs', | 
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changeset | 353 | mk_rews, termless, subgoal_tac, loop_tacs', (unsafe_solvers', solvers'))) | 
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changeset | 354 | end; | 
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changeset | 355 | |
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changeset | 356 | |
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changeset | 357 | |
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changeset | 358 | (** context data **) | 
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changeset | 359 | |
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changeset | 360 | structure Simpset = Generic_Data | 
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changeset | 361 | ( | 
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changeset | 362 | type T = simpset; | 
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changeset | 363 | val empty = empty_ss; | 
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changeset | 364 | val extend = I; | 
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changeset | 365 | val merge = merge_ss; | 
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changeset | 366 | ); | 
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changeset | 367 | |
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changeset | 368 | val simpset_of = Simpset.get o Context.Proof; | 
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changeset | 369 | |
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changeset | 370 | fun map_simpset f = Context.proof_map (Simpset.map f); | 
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changeset | 371 | fun map_simpset1 f = map_simpset (fn Simpset (ss1, ss2) => Simpset (map_ss1 f ss1, ss2)); | 
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changeset | 372 | fun map_simpset2 f = map_simpset (fn Simpset (ss1, ss2) => Simpset (ss1, map_ss2 f ss2)); | 
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changeset | 373 | |
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changeset | 374 | fun simpset_map ctxt f ss = ctxt |> map_simpset (K ss) |> f |> Context.Proof |> Simpset.get; | 
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changeset | 375 | |
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changeset | 376 | fun put_simpset ss = map_simpset (K ss); | 
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changeset | 377 | |
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changeset | 378 | val empty_simpset = put_simpset empty_ss; | 
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changeset | 379 | |
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changeset | 380 | fun map_theory_simpset f thy = | 
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changeset | 381 | let | 
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changeset | 382 | val ctxt' = f (Proof_Context.init_global thy); | 
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changeset | 383 | val thy' = Proof_Context.theory_of ctxt'; | 
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changeset | 384 | in Context.theory_map (Simpset.map (K (simpset_of ctxt'))) thy' end; | 
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changeset | 385 | |
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changeset | 386 | fun map_ss f = Context.mapping (map_theory_simpset (f o Context_Position.not_really)) f; | 
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changeset | 387 | |
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changeset | 388 | val clear_simpset = | 
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changeset | 389 |   map_simpset (fn Simpset ({depth, ...}, {mk_rews, termless, subgoal_tac, solvers, ...}) =>
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changeset | 390 | init_ss depth mk_rews termless subgoal_tac solvers); | 
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changeset | 391 | |
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changeset | 392 | |
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changeset | 393 | (* simp depth *) | 
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changeset | 394 | |
| 56438 | 395 | val simp_depth_limit_raw = Config.declare ("simp_depth_limit", @{here}) (K (Config.Int 100));
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changeset | 396 | val simp_depth_limit = Config.int simp_depth_limit_raw; | 
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changeset | 397 | |
| 56438 | 398 | val simp_trace_depth_limit_raw = | 
| 58859 | 399 |   Config.declare ("simp_trace_depth_limit", @{here}) (fn _ => Config.Int 1);
 | 
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changeset | 400 | val simp_trace_depth_limit = Config.int simp_trace_depth_limit_raw; | 
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changeset | 401 | |
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changeset | 402 | fun inc_simp_depth ctxt = | 
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changeset | 403 | ctxt |> map_simpset1 (fn (rules, prems, (depth, exceeded)) => | 
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changeset | 404 | (rules, prems, | 
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changeset | 405 | (depth + 1, | 
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changeset | 406 | if depth = Config.get ctxt simp_trace_depth_limit | 
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changeset | 407 | then Unsynchronized.ref false else exceeded))); | 
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changeset | 408 | |
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changeset | 409 | fun simp_depth ctxt = | 
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changeset | 410 |   let val Simpset ({depth = (depth, _), ...}, _) = simpset_of ctxt
 | 
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changeset | 411 | in depth end; | 
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changeset | 412 | |
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changeset | 413 | |
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changeset | 414 | (* diagnostics *) | 
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changeset | 415 | |
| 54997 | 416 | exception SIMPLIFIER of string * thm list; | 
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changeset | 417 | |
| 56438 | 418 | val simp_debug_raw = Config.declare ("simp_debug", @{here}) (K (Config.Bool false));
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changeset | 419 | val simp_debug = Config.bool simp_debug_raw; | 
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changeset | 420 | |
| 58859 | 421 | val simp_trace_raw = Config.declare ("simp_trace", @{here}) (fn _ => Config.Bool false);
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changeset | 422 | val simp_trace = Config.bool simp_trace_raw; | 
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changeset | 423 | |
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changeset | 424 | fun cond_warning ctxt msg = | 
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changeset | 425 | if Context_Position.is_really_visible ctxt then warning (msg ()) else (); | 
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changeset | 426 | |
| 55031 | 427 | fun cond_tracing' ctxt flag msg = | 
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changeset | 428 | if Config.get ctxt flag then | 
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changeset | 429 | let | 
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changeset | 430 |       val Simpset ({depth = (depth, exceeded), ...}, _) = simpset_of ctxt;
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changeset | 431 | val depth_limit = Config.get ctxt simp_trace_depth_limit; | 
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changeset | 432 | in | 
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changeset | 433 | if depth > depth_limit then | 
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changeset | 434 | if ! exceeded then () else (tracing "simp_trace_depth_limit exceeded!"; exceeded := true) | 
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changeset | 435 | else (tracing (enclose "[" "]" (string_of_int depth) ^ msg ()); exceeded := false) | 
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changeset | 436 | end | 
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changeset | 437 | else (); | 
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changeset | 438 | |
| 55031 | 439 | fun cond_tracing ctxt = cond_tracing' ctxt simp_trace; | 
| 440 | ||
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changeset | 441 | fun print_term ctxt s t = | 
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changeset | 442 | s ^ "\n" ^ Syntax.string_of_term ctxt t; | 
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changeset | 443 | |
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changeset | 444 | fun print_thm ctxt s (name, th) = | 
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changeset | 445 | print_term ctxt (if name = "" then s else s ^ " " ^ quote name ^ ":") (Thm.full_prop_of th); | 
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changeset | 446 | |
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changeset | 447 | |
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changeset | 448 | |
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changeset | 449 | (** simpset operations **) | 
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changeset | 450 | |
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changeset | 451 | (* prems *) | 
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changeset | 452 | |
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changeset | 453 | fun prems_of ctxt = | 
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changeset | 454 |   let val Simpset ({prems, ...}, _) = simpset_of ctxt in prems end;
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changeset | 455 | |
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changeset | 456 | fun add_prems ths = | 
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changeset | 457 | map_simpset1 (fn (rules, prems, depth) => (rules, ths @ prems, depth)); | 
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changeset | 458 | |
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changeset | 459 | |
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changeset | 460 | (* maintain simp rules *) | 
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changeset | 461 | |
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changeset | 462 | fun del_rrule (rrule as {thm, elhs, ...}) ctxt =
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changeset | 463 | ctxt |> map_simpset1 (fn (rules, prems, depth) => | 
| 59582 | 464 | (Net.delete_term eq_rrule (Thm.term_of elhs, rrule) rules, prems, depth)) | 
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changeset | 465 | handle Net.DELETE => | 
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changeset | 466 |     (cond_warning ctxt (fn () => print_thm ctxt "Rewrite rule not in simpset:" ("", thm)); ctxt);
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changeset | 467 | |
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changeset | 468 | fun insert_rrule (rrule as {thm, name, ...}) ctxt =
 | 
| 55031 | 469 | (cond_tracing ctxt (fn () => print_thm ctxt "Adding rewrite rule" (name, thm)); | 
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changeset | 470 | ctxt |> map_simpset1 (fn (rules, prems, depth) => | 
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changeset | 471 | let | 
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changeset | 472 |       val rrule2 as {elhs, ...} = mk_rrule2 rrule;
 | 
| 59582 | 473 | val rules' = Net.insert_term eq_rrule (Thm.term_of elhs, rrule2) rules; | 
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changeset | 474 | in (rules', prems, depth) end) | 
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changeset | 475 | handle Net.INSERT => | 
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changeset | 476 |     (cond_warning ctxt (fn () => print_thm ctxt "Ignoring duplicate rewrite rule:" ("", thm));
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changeset | 477 | ctxt)); | 
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changeset | 478 | |
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changeset | 479 | local | 
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changeset | 480 | |
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changeset | 481 | fun vperm (Var _, Var _) = true | 
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changeset | 482 | | vperm (Abs (_, _, s), Abs (_, _, t)) = vperm (s, t) | 
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changeset | 483 | | vperm (t1 $ t2, u1 $ u2) = vperm (t1, u1) andalso vperm (t2, u2) | 
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changeset | 484 | | vperm (t, u) = (t = u); | 
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changeset | 485 | |
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changeset | 486 | fun var_perm (t, u) = | 
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changeset | 487 | vperm (t, u) andalso eq_set (op =) (Term.add_vars t [], Term.add_vars u []); | 
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changeset | 488 | |
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changeset | 489 | in | 
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changeset | 490 | |
| 10413 | 491 | fun decomp_simp thm = | 
| 15023 | 492 | let | 
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changeset | 493 | val prop = Thm.prop_of thm; | 
| 15023 | 494 | val prems = Logic.strip_imp_prems prop; | 
| 495 | val concl = Drule.strip_imp_concl (Thm.cprop_of thm); | |
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changeset | 496 | val (lhs, rhs) = Thm.dest_equals concl handle TERM _ => | 
| 54997 | 497 |       raise SIMPLIFIER ("Rewrite rule not a meta-equality", [thm]);
 | 
| 20579 | 498 | val elhs = Thm.dest_arg (Thm.cprop_of (Thm.eta_conversion lhs)); | 
| 59582 | 499 | val erhs = Envir.eta_contract (Thm.term_of rhs); | 
| 15023 | 500 | val perm = | 
| 59582 | 501 | var_perm (Thm.term_of elhs, erhs) andalso | 
| 502 | not (Thm.term_of elhs aconv erhs) andalso | |
| 503 | not (is_Var (Thm.term_of elhs)); | |
| 504 | in (prems, Thm.term_of lhs, elhs, Thm.term_of rhs, perm) end; | |
| 10413 | 505 | |
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changeset | 506 | end; | 
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changeset | 507 | |
| 12783 | 508 | fun decomp_simp' thm = | 
| 52091 | 509 | let val (_, lhs, _, rhs, _) = decomp_simp thm in | 
| 54997 | 510 |     if Thm.nprems_of thm > 0 then raise SIMPLIFIER ("Bad conditional rewrite rule", [thm])
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changeset | 511 | else (lhs, rhs) | 
| 12783 | 512 | end; | 
| 513 | ||
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changeset | 514 | fun mk_eq_True ctxt (thm, name) = | 
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changeset | 515 |   let val Simpset (_, {mk_rews = {mk_eq_True, ...}, ...}) = simpset_of ctxt in
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changeset | 516 | (case mk_eq_True ctxt thm of | 
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changeset | 517 | NONE => [] | 
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changeset | 518 | | SOME eq_True => | 
| 52091 | 519 | let val (_, lhs, elhs, _, _) = decomp_simp eq_True; | 
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changeset | 520 |         in [{thm = eq_True, name = name, lhs = lhs, elhs = elhs, perm = false}] end)
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changeset | 521 | end; | 
| 10413 | 522 | |
| 15023 | 523 | (*create the rewrite rule and possibly also the eq_True variant, | 
| 524 | in case there are extra vars on the rhs*) | |
| 52082 | 525 | fun rrule_eq_True ctxt thm name lhs elhs rhs thm2 = | 
| 15023 | 526 |   let val rrule = {thm = thm, name = name, lhs = lhs, elhs = elhs, perm = false} in
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changeset | 527 | if rewrite_rule_extra_vars [] lhs rhs then | 
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changeset | 528 | mk_eq_True ctxt (thm2, name) @ [rrule] | 
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changeset | 529 | else [rrule] | 
| 10413 | 530 | end; | 
| 531 | ||
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changeset | 532 | fun mk_rrule ctxt (thm, name) = | 
| 52091 | 533 | let val (prems, lhs, elhs, rhs, perm) = decomp_simp thm in | 
| 15023 | 534 |     if perm then [{thm = thm, name = name, lhs = lhs, elhs = elhs, perm = true}]
 | 
| 535 | else | |
| 536 | (*weak test for loops*) | |
| 59582 | 537 | if rewrite_rule_extra_vars prems lhs rhs orelse is_Var (Thm.term_of elhs) | 
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changeset | 538 | then mk_eq_True ctxt (thm, name) | 
| 52082 | 539 | else rrule_eq_True ctxt thm name lhs elhs rhs thm | 
| 10413 | 540 | end; | 
| 541 | ||
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changeset | 542 | fun orient_rrule ctxt (thm, name) = | 
| 18208 | 543 | let | 
| 52091 | 544 | val (prems, lhs, elhs, rhs, perm) = decomp_simp thm; | 
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changeset | 545 |     val Simpset (_, {mk_rews = {reorient, mk_sym, ...}, ...}) = simpset_of ctxt;
 | 
| 18208 | 546 | in | 
| 15023 | 547 |     if perm then [{thm = thm, name = name, lhs = lhs, elhs = elhs, perm = true}]
 | 
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changeset | 548 | else if reorient ctxt prems lhs rhs then | 
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changeset | 549 | if reorient ctxt prems rhs lhs | 
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changeset | 550 | then mk_eq_True ctxt (thm, name) | 
| 15023 | 551 | else | 
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changeset | 552 | (case mk_sym ctxt thm of | 
| 18208 | 553 | NONE => [] | 
| 554 | | SOME thm' => | |
| 52091 | 555 | let val (_, lhs', elhs', rhs', _) = decomp_simp thm' | 
| 52082 | 556 | in rrule_eq_True ctxt thm' name lhs' elhs' rhs' thm end) | 
| 557 | else rrule_eq_True ctxt thm name lhs elhs rhs thm | |
| 10413 | 558 | end; | 
| 559 | ||
| 54982 | 560 | fun extract_rews ctxt thms = | 
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changeset | 561 |   let val Simpset (_, {mk_rews = {mk, ...}, ...}) = simpset_of ctxt
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changeset | 562 | in maps (fn thm => map (rpair (Thm.get_name_hint thm)) (mk ctxt thm)) thms end; | 
| 10413 | 563 | |
| 54982 | 564 | fun extract_safe_rrules ctxt thm = | 
| 565 | maps (orient_rrule ctxt) (extract_rews ctxt [thm]); | |
| 10413 | 566 | |
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changeset | 567 | fun mk_rrules ctxt thms = | 
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changeset | 568 | let | 
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changeset | 569 | val rews = extract_rews ctxt thms | 
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changeset | 570 | val raw_rrules = flat (map (mk_rrule ctxt) rews) | 
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changeset | 571 | in map mk_rrule2 raw_rrules end | 
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changeset | 572 | |
| 10413 | 573 | |
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changeset | 574 | (* add/del rules explicitly *) | 
| 10413 | 575 | |
| 54982 | 576 | fun comb_simps ctxt comb mk_rrule thms = | 
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changeset | 577 | let | 
| 54982 | 578 | val rews = extract_rews ctxt thms; | 
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changeset | 579 | in fold (fold comb o mk_rrule) rews ctxt end; | 
| 10413 | 580 | |
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changeset | 581 | fun ctxt addsimps thms = | 
| 54982 | 582 | comb_simps ctxt insert_rrule (mk_rrule ctxt) thms; | 
| 10413 | 583 | |
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changeset | 584 | fun ctxt delsimps thms = | 
| 54982 | 585 | comb_simps ctxt del_rrule (map mk_rrule2 o mk_rrule ctxt) thms; | 
| 15023 | 586 | |
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changeset | 587 | fun add_simp thm ctxt = ctxt addsimps [thm]; | 
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changeset | 588 | fun del_simp thm ctxt = ctxt delsimps [thm]; | 
| 15023 | 589 | |
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changeset | 590 | |
| 15023 | 591 | (* congs *) | 
| 10413 | 592 | |
| 15023 | 593 | local | 
| 594 | ||
| 595 | fun is_full_cong_prems [] [] = true | |
| 596 | | is_full_cong_prems [] _ = false | |
| 597 | | is_full_cong_prems (p :: prems) varpairs = | |
| 598 | (case Logic.strip_assums_concl p of | |
| 56245 | 599 |         Const ("Pure.eq", _) $ lhs $ rhs =>
 | 
| 15023 | 600 | let val (x, xs) = strip_comb lhs and (y, ys) = strip_comb rhs in | 
| 601 | is_Var x andalso forall is_Bound xs andalso | |
| 20972 | 602 | not (has_duplicates (op =) xs) andalso xs = ys andalso | 
| 20671 | 603 | member (op =) varpairs (x, y) andalso | 
| 19303 | 604 | is_full_cong_prems prems (remove (op =) (x, y) varpairs) | 
| 15023 | 605 | end | 
| 606 | | _ => false); | |
| 607 | ||
| 608 | fun is_full_cong thm = | |
| 10413 | 609 | let | 
| 43597 | 610 | val prems = Thm.prems_of thm and concl = Thm.concl_of thm; | 
| 15023 | 611 | val (lhs, rhs) = Logic.dest_equals concl; | 
| 612 | val (f, xs) = strip_comb lhs and (g, ys) = strip_comb rhs; | |
| 10413 | 613 | in | 
| 20972 | 614 | f = g andalso not (has_duplicates (op =) (xs @ ys)) andalso length xs = length ys andalso | 
| 15023 | 615 | is_full_cong_prems prems (xs ~~ ys) | 
| 10413 | 616 | end; | 
| 617 | ||
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changeset | 618 | fun mk_cong ctxt = | 
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changeset | 619 |   let val Simpset (_, {mk_rews = {mk_cong = f, ...}, ...}) = simpset_of ctxt
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changeset | 620 | in f ctxt end; | 
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changeset | 621 | |
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changeset | 622 | in | 
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changeset | 623 | |
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changeset | 624 | fun add_eqcong thm ctxt = ctxt |> map_simpset2 | 
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changeset | 625 | (fn (congs, procs, mk_rews, termless, subgoal_tac, loop_tacs, solvers) => | 
| 15023 | 626 | let | 
| 45621 | 627 | val (lhs, _) = Logic.dest_equals (Thm.concl_of thm) | 
| 54997 | 628 |         handle TERM _ => raise SIMPLIFIER ("Congruence not a meta-equality", [thm]);
 | 
| 18929 | 629 | (*val lhs = Envir.eta_contract lhs;*) | 
| 45621 | 630 | val a = the (cong_name (head_of lhs)) handle Option.Option => | 
| 54997 | 631 |         raise SIMPLIFIER ("Congruence must start with a constant or free variable", [thm]);
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changeset | 632 | val (xs, weak) = congs; | 
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changeset | 633 | val _ = | 
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changeset | 634 | if AList.defined (op =) xs a then | 
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changeset | 635 | cond_warning ctxt (fn () => "Overwriting congruence rule for " ^ quote (#2 a)) | 
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changeset | 636 | else (); | 
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changeset | 637 | val xs' = AList.update (op =) (a, thm) xs; | 
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changeset | 638 | val weak' = if is_full_cong thm then weak else a :: weak; | 
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changeset | 639 | in ((xs', weak'), procs, mk_rews, termless, subgoal_tac, loop_tacs, solvers) end); | 
| 10413 | 640 | |
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changeset | 641 | fun del_eqcong thm ctxt = ctxt |> map_simpset2 | 
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changeset | 642 | (fn (congs, procs, mk_rews, termless, subgoal_tac, loop_tacs, solvers) => | 
| 15023 | 643 | let | 
| 45621 | 644 | val (lhs, _) = Logic.dest_equals (Thm.concl_of thm) | 
| 54997 | 645 |         handle TERM _ => raise SIMPLIFIER ("Congruence not a meta-equality", [thm]);
 | 
| 18929 | 646 | (*val lhs = Envir.eta_contract lhs;*) | 
| 20057 | 647 | val a = the (cong_name (head_of lhs)) handle Option.Option => | 
| 54997 | 648 |         raise SIMPLIFIER ("Congruence must start with a constant", [thm]);
 | 
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changeset | 649 | val (xs, _) = congs; | 
| 51590 | 650 | val xs' = filter_out (fn (x : cong_name, _) => x = a) xs; | 
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changeset | 651 | val weak' = xs' |> map_filter (fn (a, thm) => | 
| 15531 | 652 | if is_full_cong thm then NONE else SOME a); | 
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changeset | 653 | in ((xs', weak'), procs, mk_rews, termless, subgoal_tac, loop_tacs, solvers) end); | 
| 10413 | 654 | |
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changeset | 655 | fun add_cong thm ctxt = add_eqcong (mk_cong ctxt thm) ctxt; | 
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changeset | 656 | fun del_cong thm ctxt = del_eqcong (mk_cong ctxt thm) ctxt; | 
| 15023 | 657 | |
| 658 | end; | |
| 10413 | 659 | |
| 660 | ||
| 15023 | 661 | (* simprocs *) | 
| 662 | ||
| 22234 | 663 | datatype simproc = | 
| 664 | Simproc of | |
| 665 |     {name: string,
 | |
| 666 | lhss: cterm list, | |
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changeset | 667 | proc: morphism -> Proof.context -> cterm -> thm option, | 
| 22234 | 668 | id: stamp * thm list}; | 
| 669 | ||
| 670 | fun eq_simproc (Simproc {id = id1, ...}, Simproc {id = id2, ...}) = eq_procid (id1, id2);
 | |
| 22008 | 671 | |
| 45290 | 672 | fun transform_simproc phi (Simproc {name, lhss, proc, id = (s, ths)}) =
 | 
| 22234 | 673 | Simproc | 
| 674 |    {name = name,
 | |
| 675 | lhss = map (Morphism.cterm phi) lhss, | |
| 22669 | 676 | proc = Morphism.transform phi proc, | 
| 22234 | 677 | id = (s, Morphism.fact phi ths)}; | 
| 678 | ||
| 679 | fun make_simproc {name, lhss, proc, identifier} =
 | |
| 680 |   Simproc {name = name, lhss = lhss, proc = proc, id = (stamp (), identifier)};
 | |
| 22008 | 681 | |
| 682 | fun mk_simproc name lhss proc = | |
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changeset | 683 |   make_simproc {name = name, lhss = lhss, proc = fn _ => fn ctxt => fn ct =>
 | 
| 59582 | 684 | proc ctxt (Thm.term_of ct), identifier = []}; | 
| 22008 | 685 | |
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changeset | 686 | (* FIXME avoid global thy and Logic.varify_global *) | 
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changeset | 687 | fun simproc_global_i thy name = mk_simproc name o map (Thm.global_cterm_of thy o Logic.varify_global); | 
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changeset | 688 | fun simproc_global thy name = simproc_global_i thy name o map (Syntax.read_term_global thy); | 
| 22008 | 689 | |
| 690 | ||
| 15023 | 691 | local | 
| 10413 | 692 | |
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changeset | 693 | fun add_proc (proc as Proc {name, lhs, ...}) ctxt =
 | 
| 55031 | 694 | (cond_tracing ctxt (fn () => | 
| 59582 | 695 |     print_term ctxt ("Adding simplification procedure " ^ quote name ^ " for") (Thm.term_of lhs));
 | 
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changeset | 696 | ctxt |> map_simpset2 | 
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changeset | 697 | (fn (congs, procs, mk_rews, termless, subgoal_tac, loop_tacs, solvers) => | 
| 59582 | 698 | (congs, Net.insert_term eq_proc (Thm.term_of lhs, proc) procs, | 
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changeset | 699 | mk_rews, termless, subgoal_tac, loop_tacs, solvers)) | 
| 15023 | 700 | handle Net.INSERT => | 
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changeset | 701 | (cond_warning ctxt (fn () => "Ignoring duplicate simplification procedure " ^ quote name); | 
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changeset | 702 | ctxt)); | 
| 10413 | 703 | |
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changeset | 704 | fun del_proc (proc as Proc {name, lhs, ...}) ctxt =
 | 
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changeset | 705 | ctxt |> map_simpset2 | 
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changeset | 706 | (fn (congs, procs, mk_rews, termless, subgoal_tac, loop_tacs, solvers) => | 
| 59582 | 707 | (congs, Net.delete_term eq_proc (Thm.term_of lhs, proc) procs, | 
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changeset | 708 | mk_rews, termless, subgoal_tac, loop_tacs, solvers)) | 
| 15023 | 709 | handle Net.DELETE => | 
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changeset | 710 | (cond_warning ctxt (fn () => "Simplification procedure " ^ quote name ^ " not in simpset"); | 
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changeset | 711 | ctxt); | 
| 10413 | 712 | |
| 22234 | 713 | fun prep_procs (Simproc {name, lhss, proc, id}) =
 | 
| 22669 | 714 |   lhss |> map (fn lhs => Proc {name = name, lhs = lhs, proc = Morphism.form proc, id = id});
 | 
| 22234 | 715 | |
| 15023 | 716 | in | 
| 10413 | 717 | |
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changeset | 718 | fun ctxt addsimprocs ps = fold (fold add_proc o prep_procs) ps ctxt; | 
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changeset | 719 | fun ctxt delsimprocs ps = fold (fold del_proc o prep_procs) ps ctxt; | 
| 10413 | 720 | |
| 15023 | 721 | end; | 
| 10413 | 722 | |
| 723 | ||
| 724 | (* mk_rews *) | |
| 725 | ||
| 15023 | 726 | local | 
| 727 | ||
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changeset | 728 | fun map_mk_rews f = | 
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changeset | 729 | map_simpset2 (fn (congs, procs, mk_rews, termless, subgoal_tac, loop_tacs, solvers) => | 
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changeset | 730 | let | 
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changeset | 731 |       val {mk, mk_cong, mk_sym, mk_eq_True, reorient} = mk_rews;
 | 
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changeset | 732 | val (mk', mk_cong', mk_sym', mk_eq_True', reorient') = | 
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changeset | 733 | f (mk, mk_cong, mk_sym, mk_eq_True, reorient); | 
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changeset | 734 |       val mk_rews' = {mk = mk', mk_cong = mk_cong', mk_sym = mk_sym', mk_eq_True = mk_eq_True',
 | 
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changeset | 735 | reorient = reorient'}; | 
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changeset | 736 | in (congs, procs, mk_rews', termless, subgoal_tac, loop_tacs, solvers) end); | 
| 15023 | 737 | |
| 738 | in | |
| 10413 | 739 | |
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changeset | 740 | fun mksimps ctxt = | 
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changeset | 741 |   let val Simpset (_, {mk_rews = {mk, ...}, ...}) = simpset_of ctxt
 | 
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changeset | 742 | in mk ctxt end; | 
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changeset | 743 | |
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changeset | 744 | fun set_mksimps mk = map_mk_rews (fn (_, mk_cong, mk_sym, mk_eq_True, reorient) => | 
| 18208 | 745 | (mk, mk_cong, mk_sym, mk_eq_True, reorient)); | 
| 15023 | 746 | |
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changeset | 747 | fun set_mkcong mk_cong = map_mk_rews (fn (mk, _, mk_sym, mk_eq_True, reorient) => | 
| 18208 | 748 | (mk, mk_cong, mk_sym, mk_eq_True, reorient)); | 
| 10413 | 749 | |
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changeset | 750 | fun set_mksym mk_sym = map_mk_rews (fn (mk, mk_cong, _, mk_eq_True, reorient) => | 
| 18208 | 751 | (mk, mk_cong, mk_sym, mk_eq_True, reorient)); | 
| 10413 | 752 | |
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changeset | 753 | fun set_mkeqTrue mk_eq_True = map_mk_rews (fn (mk, mk_cong, mk_sym, _, reorient) => | 
| 18208 | 754 | (mk, mk_cong, mk_sym, mk_eq_True, reorient)); | 
| 755 | ||
| 756 | fun set_reorient reorient = map_mk_rews (fn (mk, mk_cong, mk_sym, mk_eq_True, _) => | |
| 757 | (mk, mk_cong, mk_sym, mk_eq_True, reorient)); | |
| 15023 | 758 | |
| 759 | end; | |
| 760 | ||
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changeset | 761 | |
| 10413 | 762 | (* termless *) | 
| 763 | ||
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changeset | 764 | fun set_termless termless = | 
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changeset | 765 | map_simpset2 (fn (congs, procs, mk_rews, _, subgoal_tac, loop_tacs, solvers) => | 
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changeset | 766 | (congs, procs, mk_rews, termless, subgoal_tac, loop_tacs, solvers)); | 
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changeset | 767 | |
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changeset | 768 | |
| 15023 | 769 | (* tactics *) | 
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changeset | 770 | |
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changeset | 771 | fun set_subgoaler subgoal_tac = | 
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changeset | 772 | map_simpset2 (fn (congs, procs, mk_rews, termless, _, loop_tacs, solvers) => | 
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changeset | 773 | (congs, procs, mk_rews, termless, subgoal_tac, loop_tacs, solvers)); | 
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changeset | 774 | |
| 52037 | 775 | fun ctxt setloop tac = ctxt |> | 
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changeset | 776 | map_simpset2 (fn (congs, procs, mk_rews, termless, subgoal_tac, _, solvers) => | 
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changeset | 777 |    (congs, procs, mk_rews, termless, subgoal_tac, [("", tac)], solvers));
 | 
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changeset | 778 | |
| 52037 | 779 | fun ctxt addloop (name, tac) = ctxt |> | 
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changeset | 780 | map_simpset2 (fn (congs, procs, mk_rews, termless, subgoal_tac, loop_tacs, solvers) => | 
| 15023 | 781 | (congs, procs, mk_rews, termless, subgoal_tac, | 
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changeset | 782 | AList.update (op =) (name, tac) loop_tacs, solvers)); | 
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changeset | 783 | |
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changeset | 784 | fun ctxt delloop name = ctxt |> | 
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changeset | 785 | map_simpset2 (fn (congs, procs, mk_rews, termless, subgoal_tac, loop_tacs, solvers) => | 
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changeset | 786 | (congs, procs, mk_rews, termless, subgoal_tac, | 
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changeset | 787 | (if AList.defined (op =) loop_tacs name then () | 
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changeset | 788 | else cond_warning ctxt (fn () => "No such looper in simpset: " ^ quote name); | 
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changeset | 789 | AList.delete (op =) name loop_tacs), solvers)); | 
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changeset | 790 | |
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changeset | 791 | fun ctxt setSSolver solver = ctxt |> map_simpset2 | 
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changeset | 792 | (fn (congs, procs, mk_rews, termless, subgoal_tac, loop_tacs, (unsafe_solvers, _)) => | 
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changeset | 793 | (congs, procs, mk_rews, termless, subgoal_tac, loop_tacs, (unsafe_solvers, [solver]))); | 
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changeset | 794 | |
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changeset | 795 | fun ctxt addSSolver solver = ctxt |> map_simpset2 (fn (congs, procs, mk_rews, termless, | 
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changeset | 796 | subgoal_tac, loop_tacs, (unsafe_solvers, solvers)) => (congs, procs, mk_rews, termless, | 
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changeset | 797 | subgoal_tac, loop_tacs, (unsafe_solvers, insert eq_solver solver solvers))); | 
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changeset | 798 | |
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changeset | 799 | fun ctxt setSolver solver = ctxt |> map_simpset2 (fn (congs, procs, mk_rews, termless, | 
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changeset | 800 | subgoal_tac, loop_tacs, (_, solvers)) => (congs, procs, mk_rews, termless, | 
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changeset | 801 | subgoal_tac, loop_tacs, ([solver], solvers))); | 
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changeset | 802 | |
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changeset | 803 | fun ctxt addSolver solver = ctxt |> map_simpset2 (fn (congs, procs, mk_rews, termless, | 
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changeset | 804 | subgoal_tac, loop_tacs, (unsafe_solvers, solvers)) => (congs, procs, mk_rews, termless, | 
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changeset | 805 | subgoal_tac, loop_tacs, (insert eq_solver solver unsafe_solvers, solvers))); | 
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changeset | 806 | |
| 15023 | 807 | fun set_solvers solvers = map_simpset2 (fn (congs, procs, mk_rews, termless, | 
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changeset | 808 | subgoal_tac, loop_tacs, _) => (congs, procs, mk_rews, termless, | 
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changeset | 809 | subgoal_tac, loop_tacs, (solvers, solvers))); | 
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changeset | 810 | |
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changeset | 811 | |
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changeset | 812 | (* trace operations *) | 
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changeset | 813 | |
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changeset | 814 | type trace_ops = | 
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changeset | 815 |  {trace_invoke: {depth: int, term: term} -> Proof.context -> Proof.context,
 | 
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changeset | 816 |   trace_apply: {unconditional: bool, term: term, thm: thm, rrule: rrule} ->
 | 
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changeset | 817 | Proof.context -> (Proof.context -> (thm * term) option) -> (thm * term) option}; | 
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changeset | 818 | |
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changeset | 819 | structure Trace_Ops = Theory_Data | 
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changeset | 820 | ( | 
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changeset | 821 | type T = trace_ops; | 
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changeset | 822 | val empty: T = | 
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changeset | 823 |    {trace_invoke = fn _ => fn ctxt => ctxt,
 | 
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changeset | 824 | trace_apply = fn _ => fn ctxt => fn cont => cont ctxt}; | 
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changeset | 825 | val extend = I; | 
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changeset | 826 | fun merge (trace_ops, _) = trace_ops; | 
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changeset | 827 | ); | 
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changeset | 828 | |
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changeset | 829 | val set_trace_ops = Trace_Ops.put; | 
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changeset | 830 | |
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changeset | 831 | val trace_ops = Trace_Ops.get o Proof_Context.theory_of; | 
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changeset | 832 | fun trace_invoke args ctxt = #trace_invoke (trace_ops ctxt) args ctxt; | 
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changeset | 833 | fun trace_apply args ctxt = #trace_apply (trace_ops ctxt) args ctxt; | 
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changeset | 834 | |
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changeset | 835 | |
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changeset | 836 | |
| 10413 | 837 | (** rewriting **) | 
| 838 | ||
| 839 | (* | |
| 840 | Uses conversions, see: | |
| 841 | L C Paulson, A higher-order implementation of rewriting, | |
| 842 | Science of Computer Programming 3 (1983), pages 119-149. | |
| 843 | *) | |
| 844 | ||
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changeset | 845 | fun check_conv ctxt msg thm thm' = | 
| 10413 | 846 | let | 
| 36944 | 847 | val thm'' = Thm.transitive thm thm' handle THM _ => | 
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changeset | 848 | let | 
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changeset | 849 | val nthm' = | 
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changeset | 850 | Thm.transitive (Thm.symmetric (Drule.beta_eta_conversion (Thm.lhs_of thm'))) thm' | 
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changeset | 851 | in Thm.transitive thm nthm' handle THM _ => | 
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changeset | 852 | let | 
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changeset | 853 | val nthm = | 
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changeset | 854 | Thm.transitive thm (Drule.beta_eta_conversion (Thm.rhs_of thm)) | 
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changeset | 855 | in Thm.transitive nthm nthm' end | 
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changeset | 856 | end | 
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changeset | 857 | val _ = | 
| 55031 | 858 |       if msg then cond_tracing ctxt (fn () => print_thm ctxt "SUCCEEDED" ("", thm'))
 | 
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changeset | 859 | else (); | 
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changeset | 860 | in SOME thm'' end | 
| 10413 | 861 | handle THM _ => | 
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changeset | 862 | let | 
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changeset | 863 | val _ $ _ $ prop0 = Thm.prop_of thm; | 
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changeset | 864 | val _ = | 
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changeset | 865 | cond_tracing ctxt (fn () => | 
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changeset | 866 |           print_thm ctxt "Proved wrong theorem (bad subgoaler?)" ("", thm') ^ "\n" ^
 | 
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changeset | 867 | print_term ctxt "Should have proved:" prop0); | 
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changeset | 868 | in NONE end; | 
| 10413 | 869 | |
| 870 | ||
| 871 | (* mk_procrule *) | |
| 872 | ||
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changeset | 873 | fun mk_procrule ctxt thm = | 
| 52091 | 874 | let val (prems, lhs, elhs, rhs, _) = decomp_simp thm in | 
| 15023 | 875 | if rewrite_rule_extra_vars prems lhs rhs | 
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changeset | 876 |     then (cond_warning ctxt (fn () => print_thm ctxt "Extra vars on rhs:" ("", thm)); [])
 | 
| 15023 | 877 |     else [mk_rrule2 {thm = thm, name = "", lhs = lhs, elhs = elhs, perm = false}]
 | 
| 10413 | 878 | end; | 
| 879 | ||
| 880 | ||
| 15023 | 881 | (* rewritec: conversion to apply the meta simpset to a term *) | 
| 10413 | 882 | |
| 15023 | 883 | (*Since the rewriting strategy is bottom-up, we avoid re-normalizing already | 
| 884 | normalized terms by carrying around the rhs of the rewrite rule just | |
| 885 | applied. This is called the `skeleton'. It is decomposed in parallel | |
| 886 | with the term. Once a Var is encountered, the corresponding term is | |
| 887 | already in normal form. | |
| 888 | skel0 is a dummy skeleton that is to enforce complete normalization.*) | |
| 889 | ||
| 10413 | 890 | val skel0 = Bound 0; | 
| 891 | ||
| 15023 | 892 | (*Use rhs as skeleton only if the lhs does not contain unnormalized bits. | 
| 893 | The latter may happen iff there are weak congruence rules for constants | |
| 894 | in the lhs.*) | |
| 10413 | 895 | |
| 15023 | 896 | fun uncond_skel ((_, weak), (lhs, rhs)) = | 
| 897 | if null weak then rhs (*optimization*) | |
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changeset | 898 | else if exists_subterm | 
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changeset | 899 | (fn Const (a, _) => member (op =) weak (true, a) | 
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changeset | 900 | | Free (a, _) => member (op =) weak (false, a) | 
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changeset | 901 | | _ => false) lhs then skel0 | 
| 15023 | 902 | else rhs; | 
| 903 | ||
| 904 | (*Behaves like unconditional rule if rhs does not contain vars not in the lhs. | |
| 905 | Otherwise those vars may become instantiated with unnormalized terms | |
| 906 | while the premises are solved.*) | |
| 907 | ||
| 32797 | 908 | fun cond_skel (args as (_, (lhs, rhs))) = | 
| 33038 | 909 | if subset (op =) (Term.add_vars rhs [], Term.add_vars lhs []) then uncond_skel args | 
| 10413 | 910 | else skel0; | 
| 911 | ||
| 912 | (* | |
| 15023 | 913 | Rewriting -- we try in order: | 
| 10413 | 914 | (1) beta reduction | 
| 915 | (2) unconditional rewrite rules | |
| 916 | (3) conditional rewrite rules | |
| 917 | (4) simplification procedures | |
| 918 | ||
| 919 | IMPORTANT: rewrite rules must not introduce new Vars or TVars! | |
| 920 | *) | |
| 921 | ||
| 52091 | 922 | fun rewritec (prover, maxt) ctxt t = | 
| 10413 | 923 | let | 
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changeset | 924 |     val Simpset ({rules, ...}, {congs, procs, termless, ...}) = simpset_of ctxt;
 | 
| 10413 | 925 | val eta_thm = Thm.eta_conversion t; | 
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changeset | 926 | val eta_t' = Thm.rhs_of eta_thm; | 
| 59582 | 927 | val eta_t = Thm.term_of eta_t'; | 
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changeset | 928 | fun rew rrule = | 
| 10413 | 929 | let | 
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changeset | 930 |         val {thm, name, lhs, elhs, extra, fo, perm} = rrule
 | 
| 32797 | 931 | val prop = Thm.prop_of thm; | 
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changeset | 932 | val (rthm, elhs') = | 
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changeset | 933 | if maxt = ~1 orelse not extra then (thm, elhs) | 
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changeset | 934 | else (Thm.incr_indexes (maxt + 1) thm, Thm.incr_indexes_cterm (maxt + 1) elhs); | 
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changeset | 935 | val insts = | 
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changeset | 936 | if fo then Thm.first_order_match (elhs', eta_t') | 
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changeset | 937 | else Thm.match (elhs', eta_t'); | 
| 10413 | 938 | val thm' = Thm.instantiate insts (Thm.rename_boundvars lhs eta_t rthm); | 
| 14643 | 939 | val prop' = Thm.prop_of thm'; | 
| 21576 | 940 | val unconditional = (Logic.count_prems prop' = 0); | 
| 54725 | 941 | val (lhs', rhs') = Logic.dest_equals (Logic.strip_imp_concl prop'); | 
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changeset | 942 |         val trace_args = {unconditional = unconditional, term = eta_t, thm = thm', rrule = rrule};
 | 
| 10413 | 943 | in | 
| 11295 | 944 | if perm andalso not (termless (rhs', lhs')) | 
| 54725 | 945 | then | 
| 55031 | 946 | (cond_tracing ctxt (fn () => | 
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changeset | 947 | print_thm ctxt "Cannot apply permutative rewrite rule" (name, thm) ^ "\n" ^ | 
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changeset | 948 |             print_thm ctxt "Term does not become smaller:" ("", thm'));
 | 
| 54725 | 949 | NONE) | 
| 950 | else | |
| 55031 | 951 | (cond_tracing ctxt (fn () => | 
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changeset | 952 | print_thm ctxt "Applying instance of rewrite rule" (name, thm)); | 
| 54725 | 953 | if unconditional | 
| 954 | then | |
| 55031 | 955 |            (cond_tracing ctxt (fn () => print_thm ctxt "Rewriting:" ("", thm'));
 | 
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changeset | 956 | trace_apply trace_args ctxt (fn ctxt' => | 
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changeset | 957 | let | 
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changeset | 958 | val lr = Logic.dest_equals prop; | 
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changeset | 959 | val SOME thm'' = check_conv ctxt' false eta_thm thm'; | 
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changeset | 960 | in SOME (thm'', uncond_skel (congs, lr)) end)) | 
| 54725 | 961 | else | 
| 55031 | 962 |            (cond_tracing ctxt (fn () => print_thm ctxt "Trying to rewrite:" ("", thm'));
 | 
| 54725 | 963 | if simp_depth ctxt > Config.get ctxt simp_depth_limit | 
| 55031 | 964 | then (cond_tracing ctxt (fn () => "simp_depth_limit exceeded - giving up"); NONE) | 
| 54725 | 965 | else | 
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changeset | 966 | trace_apply trace_args ctxt (fn ctxt' => | 
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changeset | 967 | (case prover ctxt' thm' of | 
| 55031 | 968 |                   NONE => (cond_tracing ctxt' (fn () => print_thm ctxt' "FAILED" ("", thm')); NONE)
 | 
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changeset | 969 | | SOME thm2 => | 
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changeset | 970 | (case check_conv ctxt' true eta_thm thm2 of | 
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changeset | 971 | NONE => NONE | 
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changeset | 972 | | SOME thm2' => | 
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changeset | 973 | let | 
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changeset | 974 | val concl = Logic.strip_imp_concl prop; | 
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changeset | 975 | val lr = Logic.dest_equals concl; | 
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changeset | 976 | in SOME (thm2', cond_skel (congs, lr)) end))))) | 
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changeset | 977 | end; | 
| 10413 | 978 | |
| 15531 | 979 | fun rews [] = NONE | 
| 10413 | 980 | | rews (rrule :: rrules) = | 
| 15531 | 981 | let val opt = rew rrule handle Pattern.MATCH => NONE | 
| 54725 | 982 | in (case opt of NONE => rews rrules | some => some) end; | 
| 10413 | 983 | |
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changeset | 984 | fun sort_rrules rrs = | 
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changeset | 985 | let | 
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changeset | 986 |         fun is_simple ({thm, ...}: rrule) =
 | 
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changeset | 987 | (case Thm.prop_of thm of | 
| 56245 | 988 |             Const ("Pure.eq", _) $ _ $ _ => true
 | 
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changeset | 989 | | _ => false); | 
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changeset | 990 | fun sort [] (re1, re2) = re1 @ re2 | 
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changeset | 991 | | sort (rr :: rrs) (re1, re2) = | 
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changeset | 992 | if is_simple rr | 
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changeset | 993 | then sort rrs (rr :: re1, re2) | 
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changeset | 994 | else sort rrs (re1, rr :: re2); | 
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changeset | 995 | in sort rrs ([], []) end; | 
| 10413 | 996 | |
| 15531 | 997 | fun proc_rews [] = NONE | 
| 15023 | 998 |       | proc_rews (Proc {name, proc, lhs, ...} :: ps) =
 | 
| 59582 | 999 | if Pattern.matches (Proof_Context.theory_of ctxt) (Thm.term_of lhs, Thm.term_of t) then | 
| 55031 | 1000 | (cond_tracing' ctxt simp_debug (fn () => | 
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changeset | 1001 |               print_term ctxt ("Trying procedure " ^ quote name ^ " on:") eta_t);
 | 
| 54725 | 1002 | (case proc ctxt eta_t' of | 
| 55031 | 1003 | NONE => (cond_tracing' ctxt simp_debug (fn () => "FAILED"); proc_rews ps) | 
| 15531 | 1004 | | SOME raw_thm => | 
| 55031 | 1005 | (cond_tracing ctxt (fn () => | 
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changeset | 1006 |                     print_thm ctxt ("Procedure " ^ quote name ^ " produced rewrite rule:")
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changeset | 1007 |                       ("", raw_thm));
 | 
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changeset | 1008 | (case rews (mk_procrule ctxt raw_thm) of | 
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changeset | 1009 | NONE => | 
| 55031 | 1010 | (cond_tracing ctxt (fn () => | 
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changeset | 1011 |                         print_term ctxt ("IGNORED result of simproc " ^ quote name ^
 | 
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changeset | 1012 | " -- does not match") (Thm.term_of t)); | 
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changeset | 1013 | proc_rews ps) | 
| 54725 | 1014 | | some => some)))) | 
| 10413 | 1015 | else proc_rews ps; | 
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changeset | 1016 | in | 
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changeset | 1017 | (case eta_t of | 
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changeset | 1018 | Abs _ $ _ => SOME (Thm.transitive eta_thm (Thm.beta_conversion false eta_t'), skel0) | 
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changeset | 1019 | | _ => | 
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changeset | 1020 | (case rews (sort_rrules (Net.match_term rules eta_t)) of | 
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changeset | 1021 | NONE => proc_rews (Net.match_term procs eta_t) | 
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changeset | 1022 | | some => some)) | 
| 10413 | 1023 | end; | 
| 1024 | ||
| 1025 | ||
| 1026 | (* conversion to apply a congruence rule to a term *) | |
| 1027 | ||
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changeset | 1028 | fun congc prover ctxt maxt cong t = | 
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changeset | 1029 | let | 
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changeset | 1030 | val rthm = Thm.incr_indexes (maxt + 1) cong; | 
| 59582 | 1031 | val rlhs = fst (Thm.dest_equals (Drule.strip_imp_concl (Thm.cprop_of rthm))); | 
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changeset | 1032 | val insts = Thm.match (rlhs, t) | 
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changeset | 1033 | (* Thm.match can raise Pattern.MATCH; | 
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changeset | 1034 | is handled when congc is called *) | 
| 59582 | 1035 | val thm' = | 
| 1036 | Thm.instantiate insts (Thm.rename_boundvars (Thm.term_of rlhs) (Thm.term_of t) rthm); | |
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changeset | 1037 | val _ = | 
| 55031 | 1038 |       cond_tracing ctxt (fn () => print_thm ctxt "Applying congruence rule:" ("", thm'));
 | 
| 1039 |     fun err (msg, thm) = (cond_tracing ctxt (fn () => print_thm ctxt msg ("", thm)); NONE);
 | |
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changeset | 1040 | in | 
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changeset | 1041 | (case prover thm' of | 
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changeset | 1042 |       NONE => err ("Congruence proof failed.  Could not prove", thm')
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changeset | 1043 | | SOME thm2 => | 
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changeset | 1044 | (case check_conv ctxt true (Drule.beta_eta_conversion t) thm2 of | 
| 15531 | 1045 |           NONE => err ("Congruence proof failed.  Should not have proved", thm2)
 | 
| 1046 | | SOME thm2' => | |
| 59582 | 1047 | if op aconv (apply2 Thm.term_of (Thm.dest_equals (Thm.cprop_of thm2'))) | 
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changeset | 1048 | then NONE else SOME thm2')) | 
| 10413 | 1049 | end; | 
| 1050 | ||
| 1051 | val (cA, (cB, cC)) = | |
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changeset | 1052 | apsnd Thm.dest_equals (Thm.dest_implies (hd (cprems_of Drule.imp_cong))); | 
| 10413 | 1053 | |
| 15531 | 1054 | fun transitive1 NONE NONE = NONE | 
| 1055 | | transitive1 (SOME thm1) NONE = SOME thm1 | |
| 1056 | | transitive1 NONE (SOME thm2) = SOME thm2 | |
| 54725 | 1057 | | transitive1 (SOME thm1) (SOME thm2) = SOME (Thm.transitive thm1 thm2); | 
| 10413 | 1058 | |
| 15531 | 1059 | fun transitive2 thm = transitive1 (SOME thm); | 
| 1060 | fun transitive3 thm = transitive1 thm o SOME; | |
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changeset | 1061 | |
| 52091 | 1062 | fun bottomc ((simprem, useprem, mutsimp), prover, maxidx) = | 
| 10413 | 1063 | let | 
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changeset | 1064 | fun botc skel ctxt t = | 
| 54725 | 1065 | if is_Var skel then NONE | 
| 1066 | else | |
| 1067 | (case subc skel ctxt t of | |
| 1068 | some as SOME thm1 => | |
| 1069 | (case rewritec (prover, maxidx) ctxt (Thm.rhs_of thm1) of | |
| 1070 | SOME (thm2, skel2) => | |
| 1071 | transitive2 (Thm.transitive thm1 thm2) | |
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changeset | 1072 | (botc skel2 ctxt (Thm.rhs_of thm2)) | 
| 54725 | 1073 | | NONE => some) | 
| 1074 | | NONE => | |
| 1075 | (case rewritec (prover, maxidx) ctxt t of | |
| 1076 | SOME (thm2, skel2) => transitive2 thm2 | |
| 1077 | (botc skel2 ctxt (Thm.rhs_of thm2)) | |
| 1078 | | NONE => NONE)) | |
| 10413 | 1079 | |
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changeset | 1080 | and try_botc ctxt t = | 
| 54725 | 1081 | (case botc skel0 ctxt t of | 
| 1082 | SOME trec1 => trec1 | |
| 1083 | | NONE => Thm.reflexive t) | |
| 10413 | 1084 | |
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changeset | 1085 | and subc skel ctxt t0 = | 
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changeset | 1086 |         let val Simpset (_, {congs, ...}) = simpset_of ctxt in
 | 
| 59582 | 1087 | (case Thm.term_of t0 of | 
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changeset | 1088 | Abs (a, T, _) => | 
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changeset | 1089 | let | 
| 55635 | 1090 | val (v, ctxt') = Variable.next_bound (a, T) ctxt; | 
| 1091 | val b = #1 (Term.dest_Free v); | |
| 1092 | val (v', t') = Thm.dest_abs (SOME b) t0; | |
| 59582 | 1093 | val b' = #1 (Term.dest_Free (Thm.term_of v')); | 
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changeset | 1094 | val _ = | 
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changeset | 1095 | if b <> b' then | 
| 55635 | 1096 |                         warning ("Bad Simplifier context: renamed bound variable " ^
 | 
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changeset | 1097 | quote b ^ " to " ^ quote b' ^ Position.here (Position.thread_data ())) | 
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changeset | 1098 | else (); | 
| 54725 | 1099 | val skel' = (case skel of Abs (_, _, sk) => sk | _ => skel0); | 
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changeset | 1100 | in | 
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changeset | 1101 | (case botc skel' ctxt' t' of | 
| 55635 | 1102 | SOME thm => SOME (Thm.abstract_rule a v' thm) | 
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changeset | 1103 | | NONE => NONE) | 
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changeset | 1104 | end | 
| 54725 | 1105 | | t $ _ => | 
| 1106 | (case t of | |
| 56245 | 1107 |                 Const ("Pure.imp", _) $ _  => impc t0 ctxt
 | 
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changeset | 1108 | | Abs _ => | 
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changeset | 1109 | let val thm = Thm.beta_conversion false t0 | 
| 54725 | 1110 | in | 
| 1111 | (case subc skel0 ctxt (Thm.rhs_of thm) of | |
| 1112 | NONE => SOME thm | |
| 1113 | | SOME thm' => SOME (Thm.transitive thm thm')) | |
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changeset | 1114 | end | 
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changeset | 1115 | | _ => | 
| 54727 | 1116 | let | 
| 1117 | fun appc () = | |
| 1118 | let | |
| 1119 | val (tskel, uskel) = | |
| 1120 | (case skel of | |
| 1121 | tskel $ uskel => (tskel, uskel) | |
| 1122 | | _ => (skel0, skel0)); | |
| 1123 | val (ct, cu) = Thm.dest_comb t0; | |
| 1124 | in | |
| 1125 | (case botc tskel ctxt ct of | |
| 1126 | SOME thm1 => | |
| 1127 | (case botc uskel ctxt cu of | |
| 1128 | SOME thm2 => SOME (Thm.combination thm1 thm2) | |
| 1129 | | NONE => SOME (Thm.combination thm1 (Thm.reflexive cu))) | |
| 1130 | | NONE => | |
| 1131 | (case botc uskel ctxt cu of | |
| 1132 | SOME thm1 => SOME (Thm.combination (Thm.reflexive ct) thm1) | |
| 1133 | | NONE => NONE)) | |
| 1134 | end; | |
| 1135 | val (h, ts) = strip_comb t; | |
| 54725 | 1136 | in | 
| 1137 | (case cong_name h of | |
| 1138 | SOME a => | |
| 1139 | (case AList.lookup (op =) (fst congs) a of | |
| 1140 | NONE => appc () | |
| 1141 | | SOME cong => | |
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changeset | 1142 | (*post processing: some partial applications h t1 ... tj, j <= length ts, | 
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changeset | 1143 | may be a redex. Example: map (%x. x) = (%xs. xs) wrt map_cong*) | 
| 54725 | 1144 | (let | 
| 1145 | val thm = congc (prover ctxt) ctxt maxidx cong t0; | |
| 1146 | val t = the_default t0 (Option.map Thm.rhs_of thm); | |
| 1147 | val (cl, cr) = Thm.dest_comb t | |
| 1148 |                               val dVar = Var(("", 0), dummyT)
 | |
| 1149 | val skel = | |
| 1150 | list_comb (h, replicate (length ts) dVar) | |
| 1151 | in | |
| 1152 | (case botc skel ctxt cl of | |
| 1153 | NONE => thm | |
| 1154 | | SOME thm' => | |
| 1155 | transitive3 thm (Thm.combination thm' (Thm.reflexive cr))) | |
| 1156 | end handle Pattern.MATCH => appc ())) | |
| 1157 | | _ => appc ()) | |
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changeset | 1158 | end) | 
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changeset | 1159 | | _ => NONE) | 
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changeset | 1160 | end | 
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changeset | 1161 | and impc ct ctxt = | 
| 54725 | 1162 | if mutsimp then mut_impc0 [] ct [] [] ctxt | 
| 1163 | else nonmut_impc ct ctxt | |
| 10413 | 1164 | |
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changeset | 1165 | and rules_of_prem prem ctxt = | 
| 59582 | 1166 | if maxidx_of_term (Thm.term_of prem) <> ~1 | 
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changeset | 1167 | then | 
| 55031 | 1168 | (cond_tracing ctxt (fn () => | 
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changeset | 1169 | print_term ctxt "Cannot add premise as rewrite rule because it contains (type) unknowns:" | 
| 59582 | 1170 | (Thm.term_of prem)); | 
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changeset | 1171 | (([], NONE), ctxt)) | 
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changeset | 1172 | else | 
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changeset | 1173 | let val (asm, ctxt') = Thm.assume_hyps prem ctxt | 
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changeset | 1174 | in ((extract_safe_rrules ctxt' asm, SOME asm), ctxt') end | 
| 10413 | 1175 | |
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changeset | 1176 | and add_rrules (rrss, asms) ctxt = | 
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changeset | 1177 | (fold o fold) insert_rrule rrss ctxt |> add_prems (map_filter I asms) | 
| 10413 | 1178 | |
| 23178 | 1179 | and disch r prem eq = | 
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changeset | 1180 | let | 
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changeset | 1181 | val (lhs, rhs) = Thm.dest_equals (Thm.cprop_of eq); | 
| 54727 | 1182 | val eq' = | 
| 1183 | Thm.implies_elim | |
| 1184 | (Thm.instantiate ([], [(cA, prem), (cB, lhs), (cC, rhs)]) Drule.imp_cong) | |
| 1185 | (Thm.implies_intr prem eq); | |
| 54725 | 1186 | in | 
| 1187 | if not r then eq' | |
| 1188 | else | |
| 1189 | let | |
| 1190 | val (prem', concl) = Thm.dest_implies lhs; | |
| 54727 | 1191 | val (prem'', _) = Thm.dest_implies rhs; | 
| 1192 | in | |
| 1193 | Thm.transitive | |
| 1194 | (Thm.transitive | |
| 1195 | (Thm.instantiate ([], [(cA, prem'), (cB, prem), (cC, concl)]) Drule.swap_prems_eq) | |
| 1196 | eq') | |
| 1197 | (Thm.instantiate ([], [(cA, prem), (cB, prem''), (cC, concl)]) Drule.swap_prems_eq) | |
| 54725 | 1198 | end | 
| 10413 | 1199 | end | 
| 1200 | ||
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changeset | 1201 | and rebuild [] _ _ _ _ eq = eq | 
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changeset | 1202 | | rebuild (prem :: prems) concl (_ :: rrss) (_ :: asms) ctxt eq = | 
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changeset | 1203 | let | 
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changeset | 1204 | val ctxt' = add_rrules (rev rrss, rev asms) ctxt; | 
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changeset | 1205 | val concl' = | 
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changeset | 1206 | Drule.mk_implies (prem, the_default concl (Option.map Thm.rhs_of eq)); | 
| 54727 | 1207 | val dprem = Option.map (disch false prem); | 
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changeset | 1208 | in | 
| 52091 | 1209 | (case rewritec (prover, maxidx) ctxt' concl' of | 
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changeset | 1210 | NONE => rebuild prems concl' rrss asms ctxt (dprem eq) | 
| 54727 | 1211 | | SOME (eq', _) => | 
| 1212 | transitive2 (fold (disch false) prems (the (transitive3 (dprem eq) eq'))) | |
| 1213 | (mut_impc0 (rev prems) (Thm.rhs_of eq') (rev rrss) (rev asms) ctxt)) | |
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changeset | 1214 | end | 
| 15023 | 1215 | |
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changeset | 1216 | and mut_impc0 prems concl rrss asms ctxt = | 
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changeset | 1217 | let | 
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changeset | 1218 | val prems' = strip_imp_prems concl; | 
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changeset | 1219 | val ((rrss', asms'), ctxt') = fold_map rules_of_prem prems' ctxt |>> split_list; | 
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changeset | 1220 | in | 
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changeset | 1221 | mut_impc (prems @ prems') (strip_imp_concl concl) (rrss @ rrss') | 
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changeset | 1222 | (asms @ asms') [] [] [] [] ctxt' ~1 ~1 | 
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changeset | 1223 | end | 
| 15023 | 1224 | |
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changeset | 1225 | and mut_impc [] concl [] [] prems' rrss' asms' eqns ctxt changed k = | 
| 33245 | 1226 | transitive1 (fold (fn (eq1, prem) => fn eq2 => transitive1 eq1 | 
| 1227 | (Option.map (disch false prem) eq2)) (eqns ~~ prems') NONE) | |
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changeset | 1228 | (if changed > 0 then | 
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changeset | 1229 | mut_impc (rev prems') concl (rev rrss') (rev asms') | 
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changeset | 1230 | [] [] [] [] ctxt ~1 changed | 
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changeset | 1231 | else rebuild prems' concl rrss' asms' ctxt | 
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changeset | 1232 | (botc skel0 (add_rrules (rev rrss', rev asms') ctxt) concl)) | 
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changeset | 1233 | |
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changeset | 1234 | | mut_impc (prem :: prems) concl (rrs :: rrss) (asm :: asms) | 
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changeset | 1235 | prems' rrss' asms' eqns ctxt changed k = | 
| 54725 | 1236 | (case (if k = 0 then NONE else botc skel0 (add_rrules | 
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changeset | 1237 | (rev rrss' @ rrss, rev asms' @ asms) ctxt) prem) of | 
| 15531 | 1238 | NONE => mut_impc prems concl rrss asms (prem :: prems') | 
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changeset | 1239 | (rrs :: rrss') (asm :: asms') (NONE :: eqns) ctxt changed | 
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changeset | 1240 | (if k = 0 then 0 else k - 1) | 
| 54725 | 1241 | | SOME eqn => | 
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changeset | 1242 | let | 
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changeset | 1243 | val prem' = Thm.rhs_of eqn; | 
| 59582 | 1244 | val tprems = map Thm.term_of prems; | 
| 33029 | 1245 | val i = 1 + fold Integer.max (map (fn p => | 
| 44058 | 1246 | find_index (fn q => q aconv p) tprems) (Thm.hyps_of eqn)) ~1; | 
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changeset | 1247 | val ((rrs', asm'), ctxt') = rules_of_prem prem' ctxt; | 
| 54725 | 1248 | in | 
| 1249 | mut_impc prems concl rrss asms (prem' :: prems') | |
| 1250 | (rrs' :: rrss') (asm' :: asms') | |
| 1251 | (SOME (fold_rev (disch true) | |
| 1252 | (take i prems) | |
| 1253 | (Drule.imp_cong_rule eqn (Thm.reflexive (Drule.list_implies | |
| 1254 | (drop i prems, concl))))) :: eqns) | |
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changeset | 1255 | ctxt' (length prems') ~1 | 
| 54725 | 1256 | end) | 
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changeset | 1257 | |
| 54725 | 1258 | (*legacy code -- only for backwards compatibility*) | 
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changeset | 1259 | and nonmut_impc ct ctxt = | 
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changeset | 1260 | let | 
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changeset | 1261 | val (prem, conc) = Thm.dest_implies ct; | 
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changeset | 1262 | val thm1 = if simprem then botc skel0 ctxt prem else NONE; | 
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changeset | 1263 | val prem1 = the_default prem (Option.map Thm.rhs_of thm1); | 
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changeset | 1264 | val ctxt1 = | 
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changeset | 1265 | if not useprem then ctxt | 
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changeset | 1266 | else | 
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changeset | 1267 | let val ((rrs, asm), ctxt') = rules_of_prem prem1 ctxt | 
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changeset | 1268 | in add_rrules ([rrs], [asm]) ctxt' end; | 
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changeset | 1269 | in | 
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changeset | 1270 | (case botc skel0 ctxt1 conc of | 
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changeset | 1271 | NONE => | 
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changeset | 1272 | (case thm1 of | 
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changeset | 1273 | NONE => NONE | 
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changeset | 1274 | | SOME thm1' => SOME (Drule.imp_cong_rule thm1' (Thm.reflexive conc))) | 
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changeset | 1275 | | SOME thm2 => | 
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changeset | 1276 | let val thm2' = disch false prem1 thm2 in | 
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changeset | 1277 | (case thm1 of | 
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changeset | 1278 | NONE => SOME thm2' | 
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changeset | 1279 | | SOME thm1' => | 
| 36944 | 1280 | SOME (Thm.transitive (Drule.imp_cong_rule thm1' (Thm.reflexive conc)) thm2')) | 
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changeset | 1281 | end) | 
| 54725 | 1282 | end; | 
| 10413 | 1283 | |
| 54725 | 1284 | in try_botc end; | 
| 10413 | 1285 | |
| 1286 | ||
| 15023 | 1287 | (* Meta-rewriting: rewrites t to u and returns the theorem t==u *) | 
| 10413 | 1288 | |
| 1289 | (* | |
| 1290 | Parameters: | |
| 1291 | mode = (simplify A, | |
| 1292 | use A in simplifying B, | |
| 1293 | use prems of B (if B is again a meta-impl.) to simplify A) | |
| 1294 | when simplifying A ==> B | |
| 1295 | prover: how to solve premises in conditional rewrites and congruences | |
| 1296 | *) | |
| 1297 | ||
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changeset | 1298 | fun rewrite_cterm mode prover raw_ctxt raw_ct = | 
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changeset | 1299 | let | 
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changeset | 1300 | val thy = Proof_Context.theory_of raw_ctxt; | 
| 52091 | 1301 | |
| 20260 | 1302 | val ct = Thm.adjust_maxidx_cterm ~1 raw_ct; | 
| 59586 | 1303 | val maxidx = Thm.maxidx_of_cterm ct; | 
| 52091 | 1304 | val _ = | 
| 59582 | 1305 | Theory.subthy (Thm.theory_of_cterm ct, thy) orelse | 
| 52091 | 1306 |         raise CTERM ("rewrite_cterm: bad background theory", [ct]);
 | 
| 1307 | ||
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changeset | 1308 | val ctxt = | 
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changeset | 1309 | raw_ctxt | 
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changeset | 1310 | |> Context_Position.set_visible false | 
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changeset | 1311 | |> inc_simp_depth | 
| 59582 | 1312 |       |> (fn ctxt => trace_invoke {depth = simp_depth ctxt, term = Thm.term_of ct} ctxt);
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changeset | 1313 | |
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changeset | 1314 | val _ = | 
| 55031 | 1315 | cond_tracing ctxt (fn () => | 
| 59582 | 1316 | print_term ctxt "SIMPLIFIER INVOKED ON THE FOLLOWING TERM:" (Thm.term_of ct)); | 
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changeset | 1317 | in bottomc (mode, Option.map (Drule.flexflex_unique (SOME ctxt)) oo prover, maxidx) ctxt ct end; | 
| 10413 | 1318 | |
| 21708 | 1319 | val simple_prover = | 
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changeset | 1320 | SINGLE o (fn ctxt => ALLGOALS (resolve_tac ctxt (prems_of ctxt))); | 
| 21708 | 1321 | |
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changeset | 1322 | fun rewrite _ _ [] = Thm.reflexive | 
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changeset | 1323 | | rewrite ctxt full thms = | 
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changeset | 1324 | rewrite_cterm (full, false, false) simple_prover | 
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changeset | 1325 | (empty_simpset ctxt addsimps thms); | 
| 11672 | 1326 | |
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changeset | 1327 | fun rewrite_rule ctxt = Conv.fconv_rule o rewrite ctxt true; | 
| 21708 | 1328 | |
| 15023 | 1329 | (*simple term rewriting -- no proof*) | 
| 16458 | 1330 | fun rewrite_term thy rules procs = | 
| 17203 | 1331 | Pattern.rewrite_term thy (map decomp_simp' rules) procs; | 
| 15023 | 1332 | |
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changeset | 1333 | fun rewrite_thm mode prover ctxt = Conv.fconv_rule (rewrite_cterm mode prover ctxt); | 
| 10413 | 1334 | |
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changeset | 1335 | (*Rewrite the subgoals of a proof state (represented by a theorem)*) | 
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changeset | 1336 | fun rewrite_goals_rule ctxt thms th = | 
| 23584 | 1337 | Conv.fconv_rule (Conv.prems_conv ~1 (rewrite_cterm (true, true, true) simple_prover | 
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changeset | 1338 | (empty_simpset ctxt addsimps thms))) th; | 
| 10413 | 1339 | |
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changeset | 1340 | |
| 21708 | 1341 | (** meta-rewriting tactics **) | 
| 1342 | ||
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changeset | 1343 | (*Rewrite all subgoals*) | 
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changeset | 1344 | fun rewrite_goals_tac ctxt defs = PRIMITIVE (rewrite_goals_rule ctxt defs); | 
| 21708 | 1345 | |
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changeset | 1346 | (*Rewrite one subgoal*) | 
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changeset | 1347 | fun generic_rewrite_goal_tac mode prover_tac ctxt i thm = | 
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changeset | 1348 | if 0 < i andalso i <= Thm.nprems_of thm then | 
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changeset | 1349 | Seq.single (Conv.gconv_rule (rewrite_cterm mode (SINGLE o prover_tac) ctxt) i thm) | 
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changeset | 1350 | else Seq.empty; | 
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changeset | 1351 | |
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changeset | 1352 | fun rewrite_goal_tac ctxt rews = | 
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changeset | 1353 | generic_rewrite_goal_tac (true, false, false) (K no_tac) | 
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changeset | 1354 | (empty_simpset ctxt addsimps rews); | 
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changeset | 1355 | |
| 46707 | 1356 | (*Prunes all redundant parameters from the proof state by rewriting.*) | 
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changeset | 1357 | fun prune_params_tac ctxt = rewrite_goals_tac ctxt [Drule.triv_forall_equality]; | 
| 21708 | 1358 | |
| 1359 | ||
| 1360 | (* for folding definitions, handling critical pairs *) | |
| 1361 | ||
| 1362 | (*The depth of nesting in a term*) | |
| 32797 | 1363 | fun term_depth (Abs (_, _, t)) = 1 + term_depth t | 
| 1364 | | term_depth (f $ t) = 1 + Int.max (term_depth f, term_depth t) | |
| 21708 | 1365 | | term_depth _ = 0; | 
| 1366 | ||
| 59582 | 1367 | val lhs_of_thm = #1 o Logic.dest_equals o Thm.prop_of; | 
| 21708 | 1368 | |
| 1369 | (*folding should handle critical pairs! E.g. K == Inl(0), S == Inr(Inl(0)) | |
| 1370 | Returns longest lhs first to avoid folding its subexpressions.*) | |
| 1371 | fun sort_lhs_depths defs = | |
| 1372 | let val keylist = AList.make (term_depth o lhs_of_thm) defs | |
| 1373 | val keys = sort_distinct (rev_order o int_ord) (map #2 keylist) | |
| 1374 | in map (AList.find (op =) keylist) keys end; | |
| 1375 | ||
| 36944 | 1376 | val rev_defs = sort_lhs_depths o map Thm.symmetric; | 
| 21708 | 1377 | |
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changeset | 1378 | fun fold_rule ctxt defs = fold (rewrite_rule ctxt) (rev_defs defs); | 
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changeset | 1379 | fun fold_goals_tac ctxt defs = EVERY (map (rewrite_goals_tac ctxt) (rev_defs defs)); | 
| 21708 | 1380 | |
| 1381 | ||
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changeset | 1382 | (* HHF normal form: !! before ==>, outermost !! generalized *) | 
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changeset | 1383 | |
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changeset | 1384 | local | 
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changeset | 1385 | |
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changeset | 1386 | fun gen_norm_hhf ss ctxt th = | 
| 21565 | 1387 | (if Drule.is_norm_hhf (Thm.prop_of th) then th | 
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changeset | 1388 | else | 
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changeset | 1389 | Conv.fconv_rule | 
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changeset | 1390 | (rewrite_cterm (true, false, false) (K (K NONE)) (put_simpset ss ctxt)) th) | 
| 21565 | 1391 | |> Thm.adjust_maxidx_thm ~1 | 
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changeset | 1392 | |> Drule.gen_all (Variable.maxidx_of ctxt); | 
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changeset | 1393 | |
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changeset | 1394 | val hhf_ss = | 
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changeset | 1395 | simpset_of (empty_simpset (Context.proof_of (Context.the_thread_data ())) | 
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changeset | 1396 | addsimps Drule.norm_hhf_eqs); | 
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changeset | 1397 | |
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changeset | 1398 | val hhf_protect_ss = | 
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changeset | 1399 | simpset_of (empty_simpset (Context.proof_of (Context.the_thread_data ())) | 
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changeset | 1400 | addsimps Drule.norm_hhf_eqs |> add_eqcong Drule.protect_cong); | 
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changeset | 1401 | |
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changeset | 1402 | in | 
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changeset | 1403 | |
| 26424 | 1404 | val norm_hhf = gen_norm_hhf hhf_ss; | 
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changeset | 1405 | val norm_hhf_protect = gen_norm_hhf hhf_protect_ss; | 
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changeset | 1406 | |
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changeset | 1407 | end; | 
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changeset | 1408 | |
| 10413 | 1409 | end; | 
| 1410 | ||
| 41228 
e1fce873b814
renamed structure MetaSimplifier to raw_Simplifer, to emphasize its meaning;
 wenzelm parents: 
41227diff
changeset | 1411 | structure Basic_Meta_Simplifier: BASIC_RAW_SIMPLIFIER = Raw_Simplifier; | 
| 32738 | 1412 | open Basic_Meta_Simplifier; |