author | wenzelm |
Fri, 13 Nov 2009 19:57:46 +0100 | |
changeset 33669 | ae9a2ea9a989 |
parent 33522 | 737589bb9bb8 |
child 33700 | 768d14a67256 |
permissions | -rw-r--r-- |
3987 | 1 |
(* Title: Pure/pure_thy.ML |
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Author: Markus Wenzel, TU Muenchen |
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Theorem storage. Pure theory syntax and logical content. |
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*) |
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signature PURE_THY = |
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sig |
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val facts_of: theory -> Facts.T |
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val intern_fact: theory -> xstring -> string |
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val defined_fact: theory -> string -> bool |
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val hide_fact: bool -> string -> theory -> theory |
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val join_proofs: theory -> unit |
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val get_fact: Context.generic -> theory -> Facts.ref -> thm list |
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val get_thms: theory -> xstring -> thm list |
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val get_thm: theory -> xstring -> thm |
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val all_thms_of: theory -> (string * thm) list |
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val map_facts: ('a -> 'b) -> ('c * ('a list * 'd) list) list -> ('c * ('b list * 'd) list) list |
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val burrow_fact: ('a list -> 'b list) -> ('a list * 'c) list -> ('b list * 'c) list |
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val burrow_facts: ('a list -> 'b list) -> |
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('c * ('a list * 'd) list) list -> ('c * ('b list * 'd) list) list |
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val name_multi: string -> 'a list -> (string * 'a) list |
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val name_thm: bool -> bool -> Position.T -> string -> thm -> thm |
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val name_thms: bool -> bool -> Position.T -> string -> thm list -> thm list |
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val name_thmss: bool -> Position.T -> string -> (thm list * 'a) list -> (thm list * 'a) list |
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val store_thms: binding * thm list -> theory -> thm list * theory |
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val store_thm: binding * thm -> theory -> thm * theory |
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val store_thm_open: binding * thm -> theory -> thm * theory |
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val add_thms: ((binding * thm) * attribute list) list -> theory -> thm list * theory |
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val add_thm: (binding * thm) * attribute list -> theory -> thm * theory |
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val add_thmss: ((binding * thm list) * attribute list) list -> theory -> thm list list * theory |
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val add_thms_dynamic: binding * (Context.generic -> thm list) -> theory -> theory |
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val note_thmss: string -> (Thm.binding * (thm list * attribute list) list) list |
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-> theory -> (string * thm list) list * theory |
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val add_axioms: ((binding * term) * attribute list) list -> theory -> thm list * theory |
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val add_axioms_cmd: ((binding * string) * attribute list) list -> theory -> thm list * theory |
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val add_defs: bool -> ((binding * term) * attribute list) list -> |
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theory -> thm list * theory |
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val add_defs_unchecked: bool -> ((binding * term) * attribute list) list -> |
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theory -> thm list * theory |
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val add_defs_cmd: bool -> ((binding * string) * attribute list) list -> |
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theory -> thm list * theory |
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val add_defs_unchecked_cmd: bool -> ((binding * string) * attribute list) list -> |
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theory -> thm list * theory |
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theory Pure provides regular application syntax by default;
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val old_appl_syntax: theory -> bool |
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theory Pure provides regular application syntax by default;
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val old_appl_syntax_setup: theory -> theory |
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end; |
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structure PureThy: PURE_THY = |
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struct |
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(*** stored facts ***) |
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(** theory data **) |
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structure FactsData = Theory_Data |
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( |
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type T = Facts.T * thm list; |
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val empty = (Facts.empty, []); |
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fun extend (facts, _) = (facts, []); |
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fun merge ((facts1, _), (facts2, _)) = (Facts.merge (facts1, facts2), []); |
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); |
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(* facts *) |
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val facts_of = #1 o FactsData.get; |
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val intern_fact = Facts.intern o facts_of; |
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val defined_fact = Facts.defined o facts_of; |
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fun hide_fact fully name = FactsData.map (apfst (Facts.hide fully name)); |
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(* proofs *) |
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fun register_proofs (thy, thms) = (FactsData.map (apsnd (append thms)) thy, thms); |
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fun join_proofs thy = Thm.join_proofs (rev (#2 (FactsData.get thy))); |
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(** retrieve theorems **) |
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fun get_fact context thy xthmref = |
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let |
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val xname = Facts.name_of_ref xthmref; |
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val pos = Facts.pos_of_ref xthmref; |
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val name = intern_fact thy xname; |
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val res = Facts.lookup context (facts_of thy) name; |
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val _ = Theory.check_thy thy; |
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in |
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(case res of |
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NONE => error ("Unknown fact " ^ quote name ^ Position.str_of pos) |
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| SOME (static, ths) => |
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(Position.report ((if static then Markup.fact else Markup.dynamic_fact) name) pos; |
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Facts.select xthmref (map (Thm.transfer thy) ths))) |
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end; |
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fun get_thms thy = get_fact (Context.Theory thy) thy o Facts.named; |
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fun get_thm thy name = Facts.the_single name (get_thms thy name); |
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fun all_thms_of thy = |
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Facts.fold_static (fn (_, ths) => append (map (`(Thm.get_name_hint)) ths)) (facts_of thy) []; |
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(** store theorems **) |
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(* fact specifications *) |
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fun map_facts f = map (apsnd (map (apfst (map f)))); |
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fun burrow_fact f = split_list #>> burrow f #> op ~~; |
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fun burrow_facts f = split_list ##> burrow (burrow_fact f) #> op ~~; |
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(* naming *) |
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fun name_multi name [x] = [(name, x)] |
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| name_multi "" xs = map (pair "") xs |
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| name_multi name xs = map_index (fn (i, x) => (name ^ "_" ^ string_of_int (i + 1), x)) xs; |
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fun name_thm pre official pos name thm = thm |
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|> (if Thm.get_name thm <> "" andalso pre orelse not official then I else Thm.put_name name) |
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|> (if Thm.has_name_hint thm andalso pre orelse name = "" then I else Thm.put_name_hint name) |
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|> Thm.default_position pos |
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|> Thm.default_position (Position.thread_data ()); |
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Theorems are only "pre-named" if the do not already have names.
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fun name_thms pre official pos name xs = |
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map (uncurry (name_thm pre official pos)) (name_multi name xs); |
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fun name_thmss official pos name fact = |
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burrow_fact (name_thms true official pos name) fact; |
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(* enter_thms *) |
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fun enter_thms pre_name post_name app_att (b, thms) thy = |
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if Binding.is_empty b |
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then swap (register_proofs (app_att (thy, thms))) |
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else |
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let |
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val naming = Sign.naming_of thy; |
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val name = Name_Space.full_name naming b; |
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val (thy', thms') = |
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register_proofs (apsnd (post_name name) (app_att (thy, pre_name name thms))); |
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val thms'' = map (Thm.transfer thy') thms'; |
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val thy'' = thy' |> (FactsData.map o apfst) (Facts.add_global naming (b, thms'') #> snd); |
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in (thms'', thy'') end; |
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(* store_thm(s) *) |
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fun store_thms (b, thms) = enter_thms (name_thms true true Position.none) |
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(name_thms false true Position.none) I (b, thms); |
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fun store_thm (b, th) = store_thms (b, [th]) #>> the_single; |
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fun store_thm_open (b, th) = |
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enter_thms (name_thms true false Position.none) (name_thms false false Position.none) I |
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(b, [th]) #>> the_single; |
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(* add_thms(s) *) |
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fun add_thms_atts pre_name ((b, thms), atts) = |
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enter_thms pre_name (name_thms false true Position.none) |
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(Library.foldl_map (Thm.theory_attributes atts)) (b, thms); |
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fun gen_add_thmss pre_name = |
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fold_map (add_thms_atts pre_name); |
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fun gen_add_thms pre_name args = |
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apfst (map hd) o gen_add_thmss pre_name (map (apfst (apsnd single)) args); |
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val add_thmss = gen_add_thmss (name_thms true true Position.none); |
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val add_thms = gen_add_thms (name_thms true true Position.none); |
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val add_thm = yield_singleton add_thms; |
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(* add_thms_dynamic *) |
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fun add_thms_dynamic (b, f) thy = thy |
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|> (FactsData.map o apfst) |
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(Facts.add_dynamic (Sign.naming_of thy) (b, f) #> snd); |
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(* note_thmss *) |
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fun note_thmss kind = fold_map (fn ((b, more_atts), ths_atts) => fn thy => |
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let |
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val pos = Binding.pos_of b; |
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val name = Sign.full_name thy b; |
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val _ = Position.report (Markup.fact_decl name) pos; |
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fun app (x, (ths, atts)) = Library.foldl_map (Thm.theory_attributes atts) (x, ths); |
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val (thms, thy') = thy |> enter_thms |
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(name_thmss true pos) (name_thms false true pos) (apsnd flat o Library.foldl_map app) |
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(b, map (fn (ths, atts) => (ths, surround (Thm.kind kind) (atts @ more_atts))) ths_atts); |
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in ((name, thms), thy') end); |
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(* store axioms as theorems *) |
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local |
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fun get_ax thy (b, _) = Thm.axiom thy (Sign.full_name thy b); |
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fun get_axs thy named_axs = map (Thm.forall_elim_vars 0 o get_ax thy) named_axs; |
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fun add_axm add = fold_map (fn ((b, ax), atts) => fn thy => |
4853 | 211 |
let |
29579 | 212 |
val named_ax = [(b, ax)]; |
7753 | 213 |
val thy' = add named_ax thy; |
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val thm = hd (get_axs thy' named_ax); |
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in apfst hd (gen_add_thms (K I) [((b, thm), atts)] thy') end); |
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in |
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val add_defs = add_axm o Theory.add_defs_i false; |
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val add_defs_unchecked = add_axm o Theory.add_defs_i true; |
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val add_axioms = add_axm Theory.add_axioms_i; |
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val add_defs_cmd = add_axm o Theory.add_defs false; |
eb189f7e43a1
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parents:
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val add_defs_unchecked_cmd = add_axm o Theory.add_defs true; |
eb189f7e43a1
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parents:
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diff
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222 |
val add_axioms_cmd = add_axm Theory.add_axioms; |
4853 | 223 |
end; |
4022
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added ignored_consts, thms_containing, add_store_axioms(_i),
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added ignored_consts, thms_containing, add_store_axioms(_i),
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225 |
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3987 | 226 |
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26430 | 227 |
(*** Pure theory syntax and logical content ***) |
3987 | 228 |
|
33384 | 229 |
val typ = Simple_Syntax.read_typ; |
230 |
val prop = Simple_Syntax.read_prop; |
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24243 | 231 |
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232 |
val typeT = Syntax.typeT; |
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val spropT = Syntax.spropT; |
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|
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theory Pure provides regular application syntax by default;
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235 |
|
f8f2df3e4d83
theory Pure provides regular application syntax by default;
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parents:
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diff
changeset
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(* application syntax variants *) |
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|
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val appl_syntax = |
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[("_appl", typ "('b => 'a) => args => logic", Mixfix ("(1_/(1'(_')))", [1000, 0], 1000)), |
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("_appl", typ "('b => 'a) => args => aprop", Mixfix ("(1_/(1'(_')))", [1000, 0], 1000))]; |
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|
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val applC_syntax = |
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[("", typ "'a => cargs", Delimfix "_"), |
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("_cargs", typ "'a => cargs => cargs", Mixfix ("_/ _", [1000, 1000], 1000)), |
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("_applC", typ "('b => 'a) => cargs => logic", Mixfix ("(1_/ _)", [1000, 1000], 999)), |
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("_applC", typ "('b => 'a) => cargs => aprop", Mixfix ("(1_/ _)", [1000, 1000], 999))]; |
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structure OldApplSyntax = Theory_Data |
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( |
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type T = bool; |
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val empty = false; |
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val extend = I; |
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fun merge (b1, b2) : T = |
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if b1 = b2 then b1 |
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else error "Cannot merge theories with different application syntax"; |
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); |
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|
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val old_appl_syntax = OldApplSyntax.get; |
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|
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val old_appl_syntax_setup = |
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OldApplSyntax.put true #> |
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Sign.del_modesyntax_i Syntax.mode_default applC_syntax #> |
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Sign.add_syntax_i appl_syntax; |
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|
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|
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(* main content *) |
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|
26463 | 268 |
val _ = Context.>> (Context.map_theory |
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(Sign.map_naming (Name_Space.set_theory_name Context.PureN) #> |
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OldApplSyntax.put false #> |
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Sign.add_types |
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[(Binding.name "fun", 2, NoSyn), |
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(Binding.name "prop", 0, NoSyn), |
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(Binding.name "itself", 1, NoSyn), |
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(Binding.name "dummy", 0, NoSyn)] |
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#> Sign.add_nonterminals (map Binding.name Syntax.basic_nonterms) |
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#> Sign.add_syntax_i |
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[("_lambda", typ "pttrns => 'a => logic", Mixfix ("(3%_./ _)", [0, 3], 3)), |
279 |
("_abs", typ "'a", NoSyn), |
|
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("", typ "'a => args", Delimfix "_"), |
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("_args", typ "'a => args => args", Delimfix "_,/ _"), |
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("", typ "id => idt", Delimfix "_"), |
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("_idtdummy", typ "idt", Delimfix "'_"), |
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("_idtyp", typ "id => type => idt", Mixfix ("_::_", [], 0)), |
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("_idtypdummy", typ "type => idt", Mixfix ("'_()::_", [], 0)), |
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("", typ "idt => idt", Delimfix "'(_')"), |
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("", typ "idt => idts", Delimfix "_"), |
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("_idts", typ "idt => idts => idts", Mixfix ("_/ _", [1, 0], 0)), |
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("", typ "idt => pttrn", Delimfix "_"), |
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("", typ "pttrn => pttrns", Delimfix "_"), |
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("_pttrns", typ "pttrn => pttrns => pttrns", Mixfix ("_/ _", [1, 0], 0)), |
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("", typ "aprop => aprop", Delimfix "'(_')"), |
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("", typ "id => aprop", Delimfix "_"), |
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("", typ "longid => aprop", Delimfix "_"), |
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("", typ "var => aprop", Delimfix "_"), |
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("_DDDOT", typ "aprop", Delimfix "..."), |
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("_aprop", typ "aprop => prop", Delimfix "PROP _"), |
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("_asm", typ "prop => asms", Delimfix "_"), |
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("_asms", typ "prop => asms => asms", Delimfix "_;/ _"), |
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("_bigimpl", typ "asms => prop => prop", Mixfix ("((3[| _ |])/ ==> _)", [0, 1], 1)), |
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("_ofclass", typ "type => logic => prop", Delimfix "(1OFCLASS/(1'(_,/ _')))"), |
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("_mk_ofclass", typ "dummy", NoSyn), |
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("_TYPE", typ "type => logic", Delimfix "(1TYPE/(1'(_')))"), |
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("", typ "id => logic", Delimfix "_"), |
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("", typ "longid => logic", Delimfix "_"), |
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("", typ "var => logic", Delimfix "_"), |
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("_DDDOT", typ "logic", Delimfix "..."), |
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("_constify", typ "num => num_const", Delimfix "_"), |
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("_constify", typ "float_token => float_const", Delimfix "_"), |
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("_indexnum", typ "num_const => index", Delimfix "\\<^sub>_"), |
311 |
("_index", typ "logic => index", Delimfix "(00\\<^bsub>_\\<^esub>)"), |
|
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("_indexdefault", typ "index", Delimfix ""), |
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("_indexvar", typ "index", Delimfix "'\\<index>"), |
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("_struct", typ "index => logic", Mixfix ("\\<struct>_", [1000], 1000)), |
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("==>", typ "prop => prop => prop", Delimfix "op ==>"), |
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(Term.dummy_patternN, typ "aprop", Delimfix "'_"), |
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("_sort_constraint", typ "type => prop", Delimfix "(1SORT'_CONSTRAINT/(1'(_')))"), |
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("Pure.term", typ "logic => prop", Delimfix "TERM _"), |
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("Pure.conjunction", typ "prop => prop => prop", InfixrName ("&&&", 2))] |
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#> Sign.add_syntax_i applC_syntax |
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#> Sign.add_modesyntax_i (Symbol.xsymbolsN, true) |
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[("fun", typ "type => type => type", Mixfix ("(_/ \\<Rightarrow> _)", [1, 0], 0)), |
323 |
("_bracket", typ "types => type => type", Mixfix ("([_]/ \\<Rightarrow> _)", [0, 0], 0)), |
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("_ofsort", typ "tid => sort => type", Mixfix ("_\\<Colon>_", [1000, 0], 1000)), |
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("_constrain", typ "logic => type => logic", Mixfix ("_\\<Colon>_", [4, 0], 3)), |
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("_constrain", [spropT, typeT] ---> spropT, Mixfix ("_\\<Colon>_", [4, 0], 3)), |
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("_idtyp", typ "id => type => idt", Mixfix ("_\\<Colon>_", [], 0)), |
328 |
("_idtypdummy", typ "type => idt", Mixfix ("'_()\\<Colon>_", [], 0)), |
|
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("_type_constraint_", typ "'a", NoSyn), |
|
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("_lambda", typ "pttrns => 'a => logic", Mixfix ("(3\\<lambda>_./ _)", [0, 3], 3)), |
|
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("==", typ "'a => 'a => prop", InfixrName ("\\<equiv>", 2)), |
|
332 |
("all_binder", typ "idts => prop => prop", Mixfix ("(3\\<And>_./ _)", [0, 0], 0)), |
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("==>", typ "prop => prop => prop", InfixrName ("\\<Longrightarrow>", 1)), |
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("_DDDOT", typ "aprop", Delimfix "\\<dots>"), |
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("_bigimpl", typ "asms => prop => prop", Mixfix ("((1\\<lbrakk>_\\<rbrakk>)/ \\<Longrightarrow> _)", [0, 1], 1)), |
|
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("_DDDOT", typ "logic", Delimfix "\\<dots>")] |
|
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#> Sign.add_modesyntax_i ("", false) |
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[("prop", typ "prop => prop", Mixfix ("_", [0], 0))] |
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#> Sign.add_modesyntax_i ("HTML", false) |
24243 | 340 |
[("_lambda", typ "pttrns => 'a => logic", Mixfix ("(3\\<lambda>_./ _)", [0, 3], 3))] |
26430 | 341 |
#> Sign.add_consts_i |
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[(Binding.name "==", typ "'a => 'a => prop", InfixrName ("==", 2)), |
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(Binding.name "==>", typ "prop => prop => prop", Mixfix ("(_/ ==> _)", [2, 1], 1)), |
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(Binding.name "all", typ "('a => prop) => prop", Binder ("!!", 0, 0)), |
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(Binding.name "prop", typ "prop => prop", NoSyn), |
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(Binding.name "TYPE", typ "'a itself", NoSyn), |
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347 |
(Binding.name Term.dummy_patternN, typ "'a", Delimfix "'_")] |
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#> Theory.add_deps "==" ("==", typ "'a => 'a => prop") [] |
349 |
#> Theory.add_deps "==>" ("==>", typ "prop => prop => prop") [] |
|
350 |
#> Theory.add_deps "all" ("all", typ "('a => prop) => prop") [] |
|
351 |
#> Theory.add_deps "TYPE" ("TYPE", typ "'a itself") [] |
|
352 |
#> Theory.add_deps Term.dummy_patternN (Term.dummy_patternN, typ "'a") [] |
|
353 |
#> Sign.add_trfuns Syntax.pure_trfuns |
|
354 |
#> Sign.add_trfunsT Syntax.pure_trfunsT |
|
355 |
#> Sign.local_path |
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356 |
#> Sign.add_consts_i |
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[(Binding.name "term", typ "'a => prop", NoSyn), |
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(Binding.name "sort_constraint", typ "'a itself => prop", NoSyn), |
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359 |
(Binding.name "conjunction", typ "prop => prop => prop", NoSyn)] |
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#> (add_defs false o map Thm.no_attributes) |
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[(Binding.name "prop_def", prop "(CONST prop :: prop => prop) (A::prop) == A::prop"), |
362 |
(Binding.name "term_def", prop "(CONST Pure.term :: 'a => prop) (x::'a) == (!!A::prop. A ==> A)"), |
|
363 |
(Binding.name "sort_constraint_def", |
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prop "(CONST Pure.sort_constraint :: 'a itself => prop) (CONST TYPE :: 'a itself) ==\ |
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\ (CONST Pure.term :: 'a itself => prop) (CONST TYPE :: 'a itself)"), |
29579 | 366 |
(Binding.name "conjunction_def", prop "(A &&& B) == (!!C::prop. (A ==> B ==> C) ==> C)")] #> snd |
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#> Sign.hide_const false "Pure.term" |
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368 |
#> Sign.hide_const false "Pure.sort_constraint" |
26666 | 369 |
#> Sign.hide_const false "Pure.conjunction" |
29579 | 370 |
#> add_thmss [((Binding.name "nothing", []), [])] #> snd |
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#> Theory.add_axioms_i (map (apfst Binding.name) Proofterm.equality_axms))); |
3987 | 372 |
|
373 |
end; |