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(* Title: Pure/Isar/net_rules.ML
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ID: $Id$
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Author: Markus Wenzel, TU Muenchen
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License: GPL (GNU GENERAL PUBLIC LICENSE)
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Efficient storage of rules: preserves order, prefers later entries.
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*)
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signature NET_RULES =
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sig
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type 'a T
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val rules: 'a T -> 'a list
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val retrieve: 'a T -> term -> 'a list
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val init: ('a * 'a -> bool) -> ('a -> term) -> 'a T
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val merge: 'a T * 'a T -> 'a T
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val delete: 'a -> 'a T -> 'a T
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val insert: 'a -> 'a T -> 'a T
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val intro: thm T
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val elim: thm T
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end;
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structure NetRules: NET_RULES =
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struct
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(* datatype rules *)
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datatype 'a T =
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Rules of {
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eq: 'a * 'a -> bool,
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index: 'a -> term,
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rules: 'a list,
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next: int,
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net: (int * 'a) Net.net};
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fun mk_rules eq index rules next net =
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Rules {eq = eq, index = index, rules = rules, next = next, net = net};
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fun rules (Rules {rules = rs, ...}) = rs;
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fun retrieve (Rules {rules, net, ...}) tm =
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Tactic.untaglist ((Library.sort (int_ord o pairself #1) (Net.unify_term net tm)));
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(* build rules *)
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fun init eq index = mk_rules eq index [] ~1 Net.empty;
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fun add rule (Rules {eq, index, rules, next, net}) =
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mk_rules eq index (rule :: rules) (next - 1)
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(Net.insert_term ((index rule, (next, rule)), net, K false));
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fun merge (Rules {eq, index, rules = rules1, ...}, Rules {rules = rules2, ...}) =
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let val rules = Library.gen_merge_lists' eq rules1 rules2
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in foldr (uncurry add) (rules, init eq index) end;
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fun delete rule (rs as Rules {eq, index, rules, next, net}) =
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if not (Library.gen_mem eq (rule, rules)) then rs
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else mk_rules eq index (Library.gen_rem eq (rules, rule)) next
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(Net.delete_term ((index rule, (0, rule)), net, eq o pairself #2));
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fun insert rule rs = add rule (delete rule rs); (*ensure that new rule gets precedence*)
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(* intro/elim rules *)
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val intro = init Thm.eq_thm Thm.concl_of;
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val elim = init Thm.eq_thm Thm.major_prem_of;
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end;
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