src/Pure/thm.ML
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(*  Title:      Pure/thm.ML
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    Author:     Lawrence C Paulson, Cambridge University Computer Laboratory
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    Author:     Makarius
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4002c4cd450c Pure: MAJOR CHANGE. Moved ML types ctyp and cterm and their associated
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The very core of Isabelle's Meta Logic: certified types and terms,
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derivations, theorems, inference rules (including lifting and
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resolution), oracles.
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*)
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signature BASIC_THM =
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sig
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  type ctyp
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  type cterm
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  exception CTERM of string * cterm list
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  type thm
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  type conv = cterm -> thm
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  exception THM of string * int * thm list
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end;
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signature THM =
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sig
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  include BASIC_THM
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  (*certified types*)
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  val typ_of: ctyp -> typ
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  val global_ctyp_of: theory -> typ -> ctyp
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  val ctyp_of: Proof.context -> typ -> ctyp
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  val dest_ctyp: ctyp -> ctyp list
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  (*certified terms*)
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  val term_of: cterm -> term
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  val typ_of_cterm: cterm -> typ
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  val ctyp_of_cterm: cterm -> ctyp
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  val maxidx_of_cterm: cterm -> int
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  val global_cterm_of: theory -> term -> cterm
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  val cterm_of: Proof.context -> term -> cterm
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  val renamed_term: term -> cterm -> cterm
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  val dest_comb: cterm -> cterm * cterm
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  val dest_fun: cterm -> cterm
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  val dest_arg: cterm -> cterm
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  val dest_fun2: cterm -> cterm
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  val dest_arg1: cterm -> cterm
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  val dest_abs: string option -> cterm -> cterm * cterm
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  val rename_tvar: indexname -> ctyp -> ctyp
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  val var: indexname * ctyp -> cterm
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  val apply: cterm -> cterm -> cterm
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  val lambda_name: string * cterm -> cterm -> cterm
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  val lambda: cterm -> cterm -> cterm
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  val adjust_maxidx_cterm: int -> cterm -> cterm
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  val incr_indexes_cterm: int -> cterm -> cterm
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  val match: cterm * cterm ->
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    ((indexname * sort) * ctyp) list * ((indexname * typ) * cterm) list
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  val first_order_match: cterm * cterm ->
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    ((indexname * sort) * ctyp) list * ((indexname * typ) * cterm) list
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  (*theorems*)
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  val fold_terms: (term -> 'a -> 'a) -> thm -> 'a -> 'a
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  val fold_atomic_ctyps: (ctyp -> 'a -> 'a) -> thm -> 'a -> 'a
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  val fold_atomic_cterms: (cterm -> 'a -> 'a) -> thm -> 'a -> 'a
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  val terms_of_tpairs: (term * term) list -> term list
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  val full_prop_of: thm -> term
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  val theory_id: thm -> Context.theory_id
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  val theory_name: thm -> string
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  val maxidx_of: thm -> int
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  val maxidx_thm: thm -> int -> int
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  val shyps_of: thm -> sort Ord_List.T
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  val hyps_of: thm -> term list
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  val prop_of: thm -> term
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  val tpairs_of: thm -> (term * term) list
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  val concl_of: thm -> term
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  val prems_of: thm -> term list
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  val nprems_of: thm -> int
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  val no_prems: thm -> bool
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  val major_prem_of: thm -> term
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  val cprop_of: thm -> cterm
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  val cprem_of: thm -> int -> cterm
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  val chyps_of: thm -> cterm list
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  exception CONTEXT of string * ctyp list * cterm list * thm list * Context.generic option
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  val theory_of_cterm: cterm -> theory
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  val theory_of_thm: thm -> theory
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  val trim_context_cterm: cterm -> cterm
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  val trim_context: thm -> thm
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  val transfer_cterm: theory -> cterm -> cterm
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  val transfer: theory -> thm -> thm
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  val renamed_prop: term -> thm -> thm
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  val weaken: cterm -> thm -> thm
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  val weaken_sorts: sort list -> cterm -> cterm
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  val extra_shyps: thm -> sort list
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  val proof_bodies_of: thm list -> proof_body list
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  val proof_body_of: thm -> proof_body
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  val proof_of: thm -> proof
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  val consolidate: thm list -> unit
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  val peek_status: thm -> {oracle: bool, unfinished: bool, failed: bool}
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  val future: thm future -> cterm -> thm
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  val derivation_closed: thm -> bool
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  val derivation_name: thm -> string
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  val name_derivation: string -> thm -> thm
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  val axiom: theory -> string -> thm
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  val axioms_of: theory -> (string * thm) list
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  val get_tags: thm -> Properties.T
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  val map_tags: (Properties.T -> Properties.T) -> thm -> thm
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  val norm_proof: thm -> thm
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  val adjust_maxidx_thm: int -> thm -> thm
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  (*inference rules*)
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  val assume: cterm -> thm
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  val implies_intr: cterm -> thm -> thm
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  val implies_elim: thm -> thm -> thm
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  val forall_intr: cterm -> thm -> thm
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  val forall_elim: cterm -> thm -> thm
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  val reflexive: cterm -> thm
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  val symmetric: thm -> thm
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  val transitive: thm -> thm -> thm
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  val beta_conversion: bool -> conv
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  val eta_conversion: conv
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  val eta_long_conversion: conv
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  val abstract_rule: string -> cterm -> thm -> thm
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  val combination: thm -> thm -> thm
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  val equal_intr: thm -> thm -> thm
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  val equal_elim: thm -> thm -> thm
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  val flexflex_rule: Proof.context option -> thm -> thm Seq.seq
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  val generalize: string list * string list -> int -> thm -> thm
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  val instantiate: ((indexname * sort) * ctyp) list * ((indexname * typ) * cterm) list ->
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    thm -> thm
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  val instantiate_cterm: ((indexname * sort) * ctyp) list * ((indexname * typ) * cterm) list ->
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    cterm -> cterm
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  val trivial: cterm -> thm
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  val of_class: ctyp * class -> thm
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  val strip_shyps: thm -> thm
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  val unconstrainT: thm -> thm
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  val varifyT_global': (string * sort) list -> thm -> ((string * sort) * indexname) list * thm
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  val varifyT_global: thm -> thm
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  val legacy_freezeT: thm -> thm
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  val dest_state: thm * int -> (term * term) list * term list * term * term
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  val lift_rule: cterm -> thm -> thm
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  val incr_indexes: int -> thm -> thm
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  val assumption: Proof.context option -> int -> thm -> thm Seq.seq
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  val eq_assumption: int -> thm -> thm
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  val rotate_rule: int -> int -> thm -> thm
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  val permute_prems: int -> int -> thm -> thm
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  val bicompose: Proof.context option -> {flatten: bool, match: bool, incremented: bool} ->
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    bool * thm * int -> int -> thm -> thm Seq.seq
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  val biresolution: Proof.context option -> bool -> (bool * thm) list -> int -> thm -> thm Seq.seq
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  (*oracles*)
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  val extern_oracles: bool -> Proof.context -> (Markup.T * xstring) list
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  val add_oracle: binding * ('a -> cterm) -> theory -> (string * ('a -> thm)) * theory
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end;
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structure Thm: THM =
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struct
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(*** Certified terms and types ***)
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(** certified types **)
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abstype ctyp = Ctyp of {cert: Context.certificate, T: typ, maxidx: int, sorts: sort Ord_List.T}
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with
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fun typ_of (Ctyp {T, ...}) = T;
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fun global_ctyp_of thy raw_T =
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  let
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    val T = Sign.certify_typ thy raw_T;
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    val maxidx = Term.maxidx_of_typ T;
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    val sorts = Sorts.insert_typ T [];
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  in Ctyp {cert = Context.Certificate thy, T = T, maxidx = maxidx, sorts = sorts} end;
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val ctyp_of = global_ctyp_of o Proof_Context.theory_of;
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fun dest_ctyp (Ctyp {cert, T = Type (_, Ts), maxidx, sorts}) =
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      map (fn T => Ctyp {cert = cert, T = T, maxidx = maxidx, sorts = sorts}) Ts
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  | dest_ctyp cT = raise TYPE ("dest_ctyp", [typ_of cT], []);
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229
4002c4cd450c Pure: MAJOR CHANGE. Moved ML types ctyp and cterm and their associated
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(** certified terms **)
229
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(*certified terms with checked typ, maxidx, and sorts*)
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abstype cterm =
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  Cterm of {cert: Context.certificate, t: term, T: typ, maxidx: int, sorts: sort Ord_List.T}
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with
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exception CTERM of string * cterm list;
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fun term_of (Cterm {t, ...}) = t;
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fun typ_of_cterm (Cterm {T, ...}) = T;
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fun ctyp_of_cterm (Cterm {cert, T, maxidx, sorts, ...}) =
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  Ctyp {cert = cert, T = T, maxidx = maxidx, sorts = sorts};
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fun maxidx_of_cterm (Cterm {maxidx, ...}) = maxidx;
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fun global_cterm_of thy tm =
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  let
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    val (t, T, maxidx) = Sign.certify_term thy tm;
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    val sorts = Sorts.insert_term t [];
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  in Cterm {cert = Context.Certificate thy, t = t, T = T, maxidx = maxidx, sorts = sorts} end;
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val cterm_of = global_cterm_of o Proof_Context.theory_of;
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fun join_certificate0 (Cterm {cert = cert1, ...}, Cterm {cert = cert2, ...}) =
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  Context.join_certificate (cert1, cert2);
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fun renamed_term t' (Cterm {cert, t, T, maxidx, sorts}) =
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  if t aconv t' then Cterm {cert = cert, t = t', T = T, maxidx = maxidx, sorts = sorts}
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  else raise TERM ("renamed_term: terms disagree", [t, t']);
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(* destructors *)
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fun dest_comb (Cterm {t = c $ a, T, cert, maxidx, sorts}) =
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      let val A = Term.argument_type_of c 0 in
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        (Cterm {t = c, T = A --> T, cert = cert, maxidx = maxidx, sorts = sorts},
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         Cterm {t = a, T = A, cert = cert, maxidx = maxidx, sorts = sorts})
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      end
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  | dest_comb ct = raise CTERM ("dest_comb", [ct]);
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fun dest_fun (Cterm {t = c $ _, T, cert, maxidx, sorts}) =
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      let val A = Term.argument_type_of c 0
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      in Cterm {t = c, T = A --> T, cert = cert, maxidx = maxidx, sorts = sorts} end
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  | dest_fun ct = raise CTERM ("dest_fun", [ct]);
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fun dest_arg (Cterm {t = c $ a, T = _, cert, maxidx, sorts}) =
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      let val A = Term.argument_type_of c 0
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      in Cterm {t = a, T = A, cert = cert, maxidx = maxidx, sorts = sorts} end
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  | dest_arg ct = raise CTERM ("dest_arg", [ct]);
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fun dest_fun2 (Cterm {t = c $ _ $ _, T, cert, maxidx, sorts}) =
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      let
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        val A = Term.argument_type_of c 0;
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        val B = Term.argument_type_of c 1;
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      in Cterm {t = c, T = A --> B --> T, cert = cert, maxidx = maxidx, sorts = sorts} end
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  | dest_fun2 ct = raise CTERM ("dest_fun2", [ct]);
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fun dest_arg1 (Cterm {t = c $ a $ _, T = _, cert, maxidx, sorts}) =
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      let val A = Term.argument_type_of c 0
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      in Cterm {t = a, T = A, cert = cert, maxidx = maxidx, sorts = sorts} end
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  | dest_arg1 ct = raise CTERM ("dest_arg1", [ct]);
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fun dest_abs a (Cterm {t = Abs (x, T, t), T = Type ("fun", [_, U]), cert, maxidx, sorts}) =
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      let val (y', t') = Term.dest_abs (the_default x a, T, t) in
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        (Cterm {t = Free (y', T), T = T, cert = cert, maxidx = maxidx, sorts = sorts},
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          Cterm {t = t', T = U, cert = cert, maxidx = maxidx, sorts = sorts})
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      end
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  | dest_abs _ ct = raise CTERM ("dest_abs", [ct]);
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(* constructors *)
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fun rename_tvar (a, i) (Ctyp {cert, T, maxidx, sorts}) =
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  let
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    val S =
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      (case T of
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        TFree (_, S) => S
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      | TVar (_, S) => S
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      | _ => raise TYPE ("rename_tvar: no variable", [T], []));
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    val _ = if i < 0 then raise TYPE ("rename_tvar: bad index", [TVar ((a, i), S)], []) else ();
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  in Ctyp {cert = cert, T = TVar ((a, i), S), maxidx = Int.max (i, maxidx), sorts = sorts} end;
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fun var ((x, i), Ctyp {cert, T, maxidx, sorts}) =
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  if i < 0 then raise TERM ("var: bad index", [Var ((x, i), T)])
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  else Cterm {cert = cert, t = Var ((x, i), T), T = T, maxidx = Int.max (i, maxidx), sorts = sorts};
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46497
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fun apply
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  (cf as Cterm {t = f, T = Type ("fun", [dty, rty]), maxidx = maxidx1, sorts = sorts1, ...})
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  (cx as Cterm {t = x, T, maxidx = maxidx2, sorts = sorts2, ...}) =
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    if T = dty then
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      Cterm {cert = join_certificate0 (cf, cx),
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        t = f $ x,
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        T = rty,
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        maxidx = Int.max (maxidx1, maxidx2),
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        sorts = Sorts.union sorts1 sorts2}
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      else raise CTERM ("apply: types don't agree", [cf, cx])
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  | apply cf cx = raise CTERM ("apply: first arg is not a function", [cf, cx]);
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fun lambda_name
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  (x, ct1 as Cterm {t = t1, T = T1, maxidx = maxidx1, sorts = sorts1, ...})
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  (ct2 as Cterm {t = t2, T = T2, maxidx = maxidx2, sorts = sorts2, ...}) =
32198
9bdd47909ea8 lambda/cabs/all: named variants;
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   277
    let val t = Term.lambda_name (x, t1) t2 in
61044
b7af255dd200 more abstract theory certificate, which is not necessarily the full theory;
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diff changeset
   278
      Cterm {cert = join_certificate0 (ct1, ct2),
16656
18b0cb22057d ctyp: added 'sorts' field;
wenzelm
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diff changeset
   279
        t = t, T = T1 --> T2,
18b0cb22057d ctyp: added 'sorts' field;
wenzelm
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diff changeset
   280
        maxidx = Int.max (maxidx1, maxidx2),
18b0cb22057d ctyp: added 'sorts' field;
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diff changeset
   281
        sorts = Sorts.union sorts1 sorts2}
16601
ee8eefade568 more efficient treatment of shyps and hyps (use ordered lists);
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parents: 16425
diff changeset
   282
    end;
229
4002c4cd450c Pure: MAJOR CHANGE. Moved ML types ctyp and cterm and their associated
lcp
parents: 225
diff changeset
   283
46497
89ccf66aa73d renamed Thm.capply to Thm.apply, and Thm.cabs to Thm.lambda in conformance with similar operations in structure Term and Logic;
wenzelm
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   284
fun lambda t u = lambda_name ("", t) u;
32198
9bdd47909ea8 lambda/cabs/all: named variants;
wenzelm
parents: 32104
diff changeset
   285
20580
6fb75df09253 added dest_arg, i.e. a tuned version of #2 o dest_comb;
wenzelm
parents: 20548
diff changeset
   286
22909
7de3b0ac4189 added dest_fun/fun2/arg1;
wenzelm
parents: 22685
diff changeset
   287
(* indexes *)
7de3b0ac4189 added dest_fun/fun2/arg1;
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parents: 22685
diff changeset
   288
61044
b7af255dd200 more abstract theory certificate, which is not necessarily the full theory;
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   289
fun adjust_maxidx_cterm i (ct as Cterm {cert, t, T, maxidx, sorts}) =
20580
6fb75df09253 added dest_arg, i.e. a tuned version of #2 o dest_comb;
wenzelm
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diff changeset
   290
  if maxidx = i then ct
6fb75df09253 added dest_arg, i.e. a tuned version of #2 o dest_comb;
wenzelm
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diff changeset
   291
  else if maxidx < i then
61044
b7af255dd200 more abstract theory certificate, which is not necessarily the full theory;
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   292
    Cterm {maxidx = i, cert = cert, t = t, T = T, sorts = sorts}
20580
6fb75df09253 added dest_arg, i.e. a tuned version of #2 o dest_comb;
wenzelm
parents: 20548
diff changeset
   293
  else
61044
b7af255dd200 more abstract theory certificate, which is not necessarily the full theory;
wenzelm
parents: 61042
diff changeset
   294
    Cterm {maxidx = Int.max (maxidx_of_term t, i), cert = cert, t = t, T = T, sorts = sorts};
20580
6fb75df09253 added dest_arg, i.e. a tuned version of #2 o dest_comb;
wenzelm
parents: 20548
diff changeset
   295
61044
b7af255dd200 more abstract theory certificate, which is not necessarily the full theory;
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parents: 61042
diff changeset
   296
fun incr_indexes_cterm i (ct as Cterm {cert, t, T, maxidx, sorts}) =
22909
7de3b0ac4189 added dest_fun/fun2/arg1;
wenzelm
parents: 22685
diff changeset
   297
  if i < 0 then raise CTERM ("negative increment", [ct])
7de3b0ac4189 added dest_fun/fun2/arg1;
wenzelm
parents: 22685
diff changeset
   298
  else if i = 0 then ct
61044
b7af255dd200 more abstract theory certificate, which is not necessarily the full theory;
wenzelm
parents: 61042
diff changeset
   299
  else Cterm {cert = cert, t = Logic.incr_indexes ([], [], i) t,
22909
7de3b0ac4189 added dest_fun/fun2/arg1;
wenzelm
parents: 22685
diff changeset
   300
    T = Logic.incr_tvar i T, maxidx = maxidx + i, sorts = sorts};
7de3b0ac4189 added dest_fun/fun2/arg1;
wenzelm
parents: 22685
diff changeset
   301
7de3b0ac4189 added dest_fun/fun2/arg1;
wenzelm
parents: 22685
diff changeset
   302
2509
0a7169d89b7a added termless parameter;
wenzelm
parents: 2386
diff changeset
   303
28321
9f4499bf9384 type thm: fully internal derivation, no longer exported;
wenzelm
parents: 28290
diff changeset
   304
(*** Derivations and Theorems ***)
229
4002c4cd450c Pure: MAJOR CHANGE. Moved ML types ctyp and cterm and their associated
lcp
parents: 225
diff changeset
   305
32590
95f4f08f950f replaced opaque signature matching by plain old abstype (again, cf. ac4498f95d1c) -- this recovers pretty printing in SML/NJ and Poly/ML 5.3;
wenzelm
parents: 32198
diff changeset
   306
abstype thm = Thm of
40124
fc77d3211f71 recovered some odd two-dimensional layout;
wenzelm
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   307
 deriv *                        (*derivation*)
61044
b7af255dd200 more abstract theory certificate, which is not necessarily the full theory;
wenzelm
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diff changeset
   308
 {cert: Context.certificate,    (*background theory certificate*)
40124
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   309
  tags: Properties.T,           (*additional annotations/comments*)
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  maxidx: int,                  (*maximum index of any Var or TVar*)
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   311
  shyps: sort Ord_List.T,       (*sort hypotheses*)
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   312
  hyps: term Ord_List.T,        (*hypotheses*)
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wenzelm
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   313
  tpairs: (term * term) list,   (*flex-flex pairs*)
fc77d3211f71 recovered some odd two-dimensional layout;
wenzelm
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diff changeset
   314
  prop: term}                   (*conclusion*)
28624
d983515e5cdf added weaken_sorts;
wenzelm
parents: 28446
diff changeset
   315
and deriv = Deriv of
39687
4e9b6ada3a21 modernized structure Ord_List;
wenzelm
parents: 38709
diff changeset
   316
 {promises: (serial * thm future) Ord_List.T,
37309
38ce84c83738 eliminated ML structure alias;
wenzelm
parents: 37297
diff changeset
   317
  body: Proofterm.proof_body}
32590
95f4f08f950f replaced opaque signature matching by plain old abstype (again, cf. ac4498f95d1c) -- this recovers pretty printing in SML/NJ and Poly/ML 5.3;
wenzelm
parents: 32198
diff changeset
   318
with
0
a5a9c433f639 Initial revision
clasohm
parents:
diff changeset
   319
23601
3a40294140f0 added type conv;
wenzelm
parents: 23493
diff changeset
   320
type conv = cterm -> thm;
3a40294140f0 added type conv;
wenzelm
parents: 23493
diff changeset
   321
16725
597830f91930 added full_prop_of: includes tpairs;
wenzelm
parents: 16711
diff changeset
   322
(*errors involving theorems*)
597830f91930 added full_prop_of: includes tpairs;
wenzelm
parents: 16711
diff changeset
   323
exception THM of string * int * thm list;
13658
c9ad3e64ddcf Changed handling of flex-flex constraints: now stored in separate
berghofe
parents: 13642
diff changeset
   324
28321
9f4499bf9384 type thm: fully internal derivation, no longer exported;
wenzelm
parents: 28290
diff changeset
   325
fun rep_thm (Thm (_, args)) = args;
0
a5a9c433f639 Initial revision
clasohm
parents:
diff changeset
   326
31947
7daee3bed3af clarified strip_shyps: proper type witnesses for present sorts;
wenzelm
parents: 31945
diff changeset
   327
fun fold_terms f (Thm (_, {tpairs, prop, hyps, ...})) =
7daee3bed3af clarified strip_shyps: proper type witnesses for present sorts;
wenzelm
parents: 31945
diff changeset
   328
  fold (fn (t, u) => f t #> f u) tpairs #> f prop #> fold f hyps;
7daee3bed3af clarified strip_shyps: proper type witnesses for present sorts;
wenzelm
parents: 31945
diff changeset
   329
61044
b7af255dd200 more abstract theory certificate, which is not necessarily the full theory;
wenzelm
parents: 61042
diff changeset
   330
fun fold_atomic_ctyps f (th as Thm (_, {cert, maxidx, shyps, ...})) =
b7af255dd200 more abstract theory certificate, which is not necessarily the full theory;
wenzelm
parents: 61042
diff changeset
   331
  let fun ctyp T = Ctyp {cert = cert, T = T, maxidx = maxidx, sorts = shyps}
60952
762cb38a3147 produce certified vars without access to theory_of_thm, and without context;
wenzelm
parents: 60951
diff changeset
   332
  in (fold_terms o fold_types o fold_atyps) (f o ctyp) th end;
762cb38a3147 produce certified vars without access to theory_of_thm, and without context;
wenzelm
parents: 60951
diff changeset
   333
61044
b7af255dd200 more abstract theory certificate, which is not necessarily the full theory;
wenzelm
parents: 61042
diff changeset
   334
fun fold_atomic_cterms f (th as Thm (_, {cert, maxidx, shyps, ...})) =
b7af255dd200 more abstract theory certificate, which is not necessarily the full theory;
wenzelm
parents: 61042
diff changeset
   335
  let fun cterm t T = Cterm {cert = cert, t = t, T = T, maxidx = maxidx, sorts = shyps} in
60818
5e11a6e2b044 more direct access to atomic cterms;
wenzelm
parents: 60642
diff changeset
   336
    (fold_terms o fold_aterms)
5e11a6e2b044 more direct access to atomic cterms;
wenzelm
parents: 60642
diff changeset
   337
      (fn t as Const (_, T) => f (cterm t T)
5e11a6e2b044 more direct access to atomic cterms;
wenzelm
parents: 60642
diff changeset
   338
        | t as Free (_, T) => f (cterm t T)
5e11a6e2b044 more direct access to atomic cterms;
wenzelm
parents: 60642
diff changeset
   339
        | t as Var (_, T) => f (cterm t T)
5e11a6e2b044 more direct access to atomic cterms;
wenzelm
parents: 60642
diff changeset
   340
        | _ => I) th
5e11a6e2b044 more direct access to atomic cterms;
wenzelm
parents: 60642
diff changeset
   341
  end;
5e11a6e2b044 more direct access to atomic cterms;
wenzelm
parents: 60642
diff changeset
   342
16725
597830f91930 added full_prop_of: includes tpairs;
wenzelm
parents: 16711
diff changeset
   343
fun terms_of_tpairs tpairs = fold_rev (fn (t, u) => cons t o cons u) tpairs [];
597830f91930 added full_prop_of: includes tpairs;
wenzelm
parents: 16711
diff changeset
   344
597830f91930 added full_prop_of: includes tpairs;
wenzelm
parents: 16711
diff changeset
   345
fun eq_tpairs ((t, u), (t', u')) = t aconv t' andalso u aconv u';
18944
7d2ed9063477 union_tpairs: Library.merge;
wenzelm
parents: 18733
diff changeset
   346
fun union_tpairs ts us = Library.merge eq_tpairs (ts, us);
16884
1678a796b6b2 tuned instantiate (avoid subst_atomic, subst_atomic_types);
wenzelm
parents: 16847
diff changeset
   347
val maxidx_tpairs = fold (fn (t, u) => Term.maxidx_term t #> Term.maxidx_term u);
16725
597830f91930 added full_prop_of: includes tpairs;
wenzelm
parents: 16711
diff changeset
   348
597830f91930 added full_prop_of: includes tpairs;
wenzelm
parents: 16711
diff changeset
   349
fun attach_tpairs tpairs prop =
597830f91930 added full_prop_of: includes tpairs;
wenzelm
parents: 16711
diff changeset
   350
  Logic.list_implies (map Logic.mk_equals tpairs, prop);
597830f91930 added full_prop_of: includes tpairs;
wenzelm
parents: 16711
diff changeset
   351
28321
9f4499bf9384 type thm: fully internal derivation, no longer exported;
wenzelm
parents: 28290
diff changeset
   352
fun full_prop_of (Thm (_, {tpairs, prop, ...})) = attach_tpairs tpairs prop;
16945
5d3ae25673a8 added weaken, adjust_maxidx_thm;
wenzelm
parents: 16884
diff changeset
   353
39687
4e9b6ada3a21 modernized structure Ord_List;
wenzelm
parents: 38709
diff changeset
   354
val union_hyps = Ord_List.union Term_Ord.fast_term_ord;
4e9b6ada3a21 modernized structure Ord_List;
wenzelm
parents: 38709
diff changeset
   355
val insert_hyps = Ord_List.insert Term_Ord.fast_term_ord;
4e9b6ada3a21 modernized structure Ord_List;
wenzelm
parents: 38709
diff changeset
   356
val remove_hyps = Ord_List.remove Term_Ord.fast_term_ord;
22365
ce62a5f6954c moved some non-kernel material to more_thm.ML;
wenzelm
parents: 22237
diff changeset
   357
61044
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wenzelm
parents: 61042
diff changeset
   358
fun join_certificate1 (Cterm {cert = cert1, ...}, Thm (_, {cert = cert2, ...})) =
b7af255dd200 more abstract theory certificate, which is not necessarily the full theory;
wenzelm
parents: 61042
diff changeset
   359
  Context.join_certificate (cert1, cert2);
16945
5d3ae25673a8 added weaken, adjust_maxidx_thm;
wenzelm
parents: 16884
diff changeset
   360
61044
b7af255dd200 more abstract theory certificate, which is not necessarily the full theory;
wenzelm
parents: 61042
diff changeset
   361
fun join_certificate2 (Thm (_, {cert = cert1, ...}), Thm (_, {cert = cert2, ...})) =
b7af255dd200 more abstract theory certificate, which is not necessarily the full theory;
wenzelm
parents: 61042
diff changeset
   362
  Context.join_certificate (cert1, cert2);
16945
5d3ae25673a8 added weaken, adjust_maxidx_thm;
wenzelm
parents: 16884
diff changeset
   363
0
a5a9c433f639 Initial revision
clasohm
parents:
diff changeset
   364
22365
ce62a5f6954c moved some non-kernel material to more_thm.ML;
wenzelm
parents: 22237
diff changeset
   365
(* basic components *)
16135
c66545fe72bf added eq_thms;
wenzelm
parents: 16024
diff changeset
   366
61044
b7af255dd200 more abstract theory certificate, which is not necessarily the full theory;
wenzelm
parents: 61042
diff changeset
   367
val cert_of = #cert o rep_thm;
65458
cf504b7a7aa7 tuned signature;
wenzelm
parents: 64981
diff changeset
   368
val theory_id = Context.certificate_theory_id o cert_of;
cf504b7a7aa7 tuned signature;
wenzelm
parents: 64981
diff changeset
   369
val theory_name = Context.theory_id_name o theory_id;
61050
3bc7dcc565dc clarified exceptions;
wenzelm
parents: 61048
diff changeset
   370
28321
9f4499bf9384 type thm: fully internal derivation, no longer exported;
wenzelm
parents: 28290
diff changeset
   371
val maxidx_of = #maxidx o rep_thm;
19910
2b4a222fef3c added generalize rule;
wenzelm
parents: 19881
diff changeset
   372
fun maxidx_thm th i = Int.max (maxidx_of th, i);
61039
80f40d89dab6 tuned signature;
wenzelm
parents: 60952
diff changeset
   373
val shyps_of = #shyps o rep_thm;
28321
9f4499bf9384 type thm: fully internal derivation, no longer exported;
wenzelm
parents: 28290
diff changeset
   374
val hyps_of = #hyps o rep_thm;
9f4499bf9384 type thm: fully internal derivation, no longer exported;
wenzelm
parents: 28290
diff changeset
   375
val prop_of = #prop o rep_thm;
9f4499bf9384 type thm: fully internal derivation, no longer exported;
wenzelm
parents: 28290
diff changeset
   376
val tpairs_of = #tpairs o rep_thm;
0
a5a9c433f639 Initial revision
clasohm
parents:
diff changeset
   377
16601
ee8eefade568 more efficient treatment of shyps and hyps (use ordered lists);
wenzelm
parents: 16425
diff changeset
   378
val concl_of = Logic.strip_imp_concl o prop_of;
ee8eefade568 more efficient treatment of shyps and hyps (use ordered lists);
wenzelm
parents: 16425
diff changeset
   379
val prems_of = Logic.strip_imp_prems o prop_of;
21576
8c11b1ce2f05 simplified Logic.count_prems;
wenzelm
parents: 21437
diff changeset
   380
val nprems_of = Logic.count_prems o prop_of;
19305
5c16895d548b avoid polymorphic equality;
wenzelm
parents: 19230
diff changeset
   381
fun no_prems th = nprems_of th = 0;
16601
ee8eefade568 more efficient treatment of shyps and hyps (use ordered lists);
wenzelm
parents: 16425
diff changeset
   382
ee8eefade568 more efficient treatment of shyps and hyps (use ordered lists);
wenzelm
parents: 16425
diff changeset
   383
fun major_prem_of th =
ee8eefade568 more efficient treatment of shyps and hyps (use ordered lists);
wenzelm
parents: 16425
diff changeset
   384
  (case prems_of th of
ee8eefade568 more efficient treatment of shyps and hyps (use ordered lists);
wenzelm
parents: 16425
diff changeset
   385
    prem :: _ => Logic.strip_assums_concl prem
ee8eefade568 more efficient treatment of shyps and hyps (use ordered lists);
wenzelm
parents: 16425
diff changeset
   386
  | [] => raise THM ("major_prem_of: rule with no premises", 0, [th]));
ee8eefade568 more efficient treatment of shyps and hyps (use ordered lists);
wenzelm
parents: 16425
diff changeset
   387
61044
b7af255dd200 more abstract theory certificate, which is not necessarily the full theory;
wenzelm
parents: 61042
diff changeset
   388
fun cprop_of (Thm (_, {cert, maxidx, shyps, prop, ...})) =
b7af255dd200 more abstract theory certificate, which is not necessarily the full theory;
wenzelm
parents: 61042
diff changeset
   389
  Cterm {cert = cert, maxidx = maxidx, T = propT, t = prop, sorts = shyps};
16601
ee8eefade568 more efficient treatment of shyps and hyps (use ordered lists);
wenzelm
parents: 16425
diff changeset
   390
61044
b7af255dd200 more abstract theory certificate, which is not necessarily the full theory;
wenzelm
parents: 61042
diff changeset
   391
fun cprem_of (th as Thm (_, {cert, maxidx, shyps, prop, ...})) i =
b7af255dd200 more abstract theory certificate, which is not necessarily the full theory;
wenzelm
parents: 61042
diff changeset
   392
  Cterm {cert = cert, maxidx = maxidx, T = propT, sorts = shyps,
18145
6757627acf59 renamed Thm.cgoal_of to Thm.cprem_of;
wenzelm
parents: 18127
diff changeset
   393
    t = Logic.nth_prem (i, prop) handle TERM _ => raise THM ("cprem_of", i, [th])};
18035
eaae44affc9e added cgoal_of;
wenzelm
parents: 17868
diff changeset
   394
61044
b7af255dd200 more abstract theory certificate, which is not necessarily the full theory;
wenzelm
parents: 61042
diff changeset
   395
fun chyps_of (Thm (_, {cert, shyps, hyps, ...})) =
b7af255dd200 more abstract theory certificate, which is not necessarily the full theory;
wenzelm
parents: 61042
diff changeset
   396
  map (fn t => Cterm {cert = cert, maxidx = ~1, T = propT, sorts = shyps, t = t}) hyps;
60949
ccbf9379e355 added Thm.chyps_of;
wenzelm
parents: 60948
diff changeset
   397
61051
310cf33d5481 clarified exceptions;
wenzelm
parents: 61050
diff changeset
   398
310cf33d5481 clarified exceptions;
wenzelm
parents: 61050
diff changeset
   399
(* implicit theory context *)
310cf33d5481 clarified exceptions;
wenzelm
parents: 61050
diff changeset
   400
310cf33d5481 clarified exceptions;
wenzelm
parents: 61050
diff changeset
   401
exception CONTEXT of string * ctyp list * cterm list * thm list * Context.generic option;
310cf33d5481 clarified exceptions;
wenzelm
parents: 61050
diff changeset
   402
310cf33d5481 clarified exceptions;
wenzelm
parents: 61050
diff changeset
   403
fun theory_of_cterm (ct as Cterm {cert, ...}) =
310cf33d5481 clarified exceptions;
wenzelm
parents: 61050
diff changeset
   404
  Context.certificate_theory cert
310cf33d5481 clarified exceptions;
wenzelm
parents: 61050
diff changeset
   405
    handle ERROR msg => raise CONTEXT (msg, [], [ct], [], NONE);
310cf33d5481 clarified exceptions;
wenzelm
parents: 61050
diff changeset
   406
310cf33d5481 clarified exceptions;
wenzelm
parents: 61050
diff changeset
   407
fun theory_of_thm th =
310cf33d5481 clarified exceptions;
wenzelm
parents: 61050
diff changeset
   408
  Context.certificate_theory (cert_of th)
310cf33d5481 clarified exceptions;
wenzelm
parents: 61050
diff changeset
   409
    handle ERROR msg => raise CONTEXT (msg, [], [], [th], NONE);
310cf33d5481 clarified exceptions;
wenzelm
parents: 61050
diff changeset
   410
310cf33d5481 clarified exceptions;
wenzelm
parents: 61050
diff changeset
   411
fun trim_context_cterm ct =
310cf33d5481 clarified exceptions;
wenzelm
parents: 61050
diff changeset
   412
  (case ct of
310cf33d5481 clarified exceptions;
wenzelm
parents: 61050
diff changeset
   413
    Cterm {cert = Context.Certificate_Id _, ...} => ct
310cf33d5481 clarified exceptions;
wenzelm
parents: 61050
diff changeset
   414
  | Cterm {cert = Context.Certificate thy, t, T, maxidx, sorts} =>
310cf33d5481 clarified exceptions;
wenzelm
parents: 61050
diff changeset
   415
      Cterm {cert = Context.Certificate_Id (Context.theory_id thy),
310cf33d5481 clarified exceptions;
wenzelm
parents: 61050
diff changeset
   416
        t = t, T = T, maxidx = maxidx, sorts = sorts});
310cf33d5481 clarified exceptions;
wenzelm
parents: 61050
diff changeset
   417
61048
408ff2390530 trim context for persistent storage;
wenzelm
parents: 61047
diff changeset
   418
fun trim_context th =
408ff2390530 trim context for persistent storage;
wenzelm
parents: 61047
diff changeset
   419
  (case th of
408ff2390530 trim context for persistent storage;
wenzelm
parents: 61047
diff changeset
   420
    Thm (_, {cert = Context.Certificate_Id _, ...}) => th
408ff2390530 trim context for persistent storage;
wenzelm
parents: 61047
diff changeset
   421
  | Thm (der, {cert = Context.Certificate thy, tags, maxidx, shyps, hyps, tpairs, prop}) =>
408ff2390530 trim context for persistent storage;
wenzelm
parents: 61047
diff changeset
   422
      Thm (der,
408ff2390530 trim context for persistent storage;
wenzelm
parents: 61047
diff changeset
   423
       {cert = Context.Certificate_Id (Context.theory_id thy),
408ff2390530 trim context for persistent storage;
wenzelm
parents: 61047
diff changeset
   424
        tags = tags, maxidx = maxidx, shyps = shyps, hyps = hyps, tpairs = tpairs, prop = prop}));
408ff2390530 trim context for persistent storage;
wenzelm
parents: 61047
diff changeset
   425
61051
310cf33d5481 clarified exceptions;
wenzelm
parents: 61050
diff changeset
   426
fun transfer_cterm thy' ct =
3895
b2463861c86a added transfer: theory -> thm -> thm;
wenzelm
parents: 3893
diff changeset
   427
  let
61051
310cf33d5481 clarified exceptions;
wenzelm
parents: 61050
diff changeset
   428
    val Cterm {cert, t, T, maxidx, sorts} = ct;
61044
b7af255dd200 more abstract theory certificate, which is not necessarily the full theory;
wenzelm
parents: 61042
diff changeset
   429
    val _ =
b7af255dd200 more abstract theory certificate, which is not necessarily the full theory;
wenzelm
parents: 61042
diff changeset
   430
      Context.subthy_id (Context.certificate_theory_id cert, Context.theory_id thy') orelse
61051
310cf33d5481 clarified exceptions;
wenzelm
parents: 61050
diff changeset
   431
        raise CONTEXT ("Cannot transfer: not a super theory", [], [ct], [],
310cf33d5481 clarified exceptions;
wenzelm
parents: 61050
diff changeset
   432
          SOME (Context.Theory thy'));
61044
b7af255dd200 more abstract theory certificate, which is not necessarily the full theory;
wenzelm
parents: 61042
diff changeset
   433
    val cert' = Context.join_certificate (Context.Certificate thy', cert);
3895
b2463861c86a added transfer: theory -> thm -> thm;
wenzelm
parents: 3893
diff changeset
   434
  in
61051
310cf33d5481 clarified exceptions;
wenzelm
parents: 61050
diff changeset
   435
    if Context.eq_certificate (cert, cert') then ct
310cf33d5481 clarified exceptions;
wenzelm
parents: 61050
diff changeset
   436
    else Cterm {cert = cert', t = t, T = T, maxidx = maxidx, sorts = sorts}
310cf33d5481 clarified exceptions;
wenzelm
parents: 61050
diff changeset
   437
  end;
310cf33d5481 clarified exceptions;
wenzelm
parents: 61050
diff changeset
   438
310cf33d5481 clarified exceptions;
wenzelm
parents: 61050
diff changeset
   439
fun transfer thy' th =
310cf33d5481 clarified exceptions;
wenzelm
parents: 61050
diff changeset
   440
  let
310cf33d5481 clarified exceptions;
wenzelm
parents: 61050
diff changeset
   441
    val Thm (der, {cert, tags, maxidx, shyps, hyps, tpairs, prop}) = th;
310cf33d5481 clarified exceptions;
wenzelm
parents: 61050
diff changeset
   442
    val _ =
310cf33d5481 clarified exceptions;
wenzelm
parents: 61050
diff changeset
   443
      Context.subthy_id (Context.certificate_theory_id cert, Context.theory_id thy') orelse
310cf33d5481 clarified exceptions;
wenzelm
parents: 61050
diff changeset
   444
        raise CONTEXT ("Cannot transfer: not a super theory", [], [], [th],
310cf33d5481 clarified exceptions;
wenzelm
parents: 61050
diff changeset
   445
          SOME (Context.Theory thy'));
310cf33d5481 clarified exceptions;
wenzelm
parents: 61050
diff changeset
   446
    val cert' = Context.join_certificate (Context.Certificate thy', cert);
310cf33d5481 clarified exceptions;
wenzelm
parents: 61050
diff changeset
   447
  in
310cf33d5481 clarified exceptions;
wenzelm
parents: 61050
diff changeset
   448
    if Context.eq_certificate (cert, cert') then th
16945
5d3ae25673a8 added weaken, adjust_maxidx_thm;
wenzelm
parents: 16884
diff changeset
   449
    else
28321
9f4499bf9384 type thm: fully internal derivation, no longer exported;
wenzelm
parents: 28290
diff changeset
   450
      Thm (der,
61044
b7af255dd200 more abstract theory certificate, which is not necessarily the full theory;
wenzelm
parents: 61042
diff changeset
   451
       {cert = cert',
21646
c07b5b0e8492 thm/prf: separate official name vs. additional tags;
wenzelm
parents: 21576
diff changeset
   452
        tags = tags,
16945
5d3ae25673a8 added weaken, adjust_maxidx_thm;
wenzelm
parents: 16884
diff changeset
   453
        maxidx = maxidx,
5d3ae25673a8 added weaken, adjust_maxidx_thm;
wenzelm
parents: 16884
diff changeset
   454
        shyps = shyps,
5d3ae25673a8 added weaken, adjust_maxidx_thm;
wenzelm
parents: 16884
diff changeset
   455
        hyps = hyps,
5d3ae25673a8 added weaken, adjust_maxidx_thm;
wenzelm
parents: 16884
diff changeset
   456
        tpairs = tpairs,
28321
9f4499bf9384 type thm: fully internal derivation, no longer exported;
wenzelm
parents: 28290
diff changeset
   457
        prop = prop})
3895
b2463861c86a added transfer: theory -> thm -> thm;
wenzelm
parents: 3893
diff changeset
   458
  end;
387
69f4356d915d new datatype theory, supports 'draft theories' and incremental extension:
wenzelm
parents: 309
diff changeset
   459
61051
310cf33d5481 clarified exceptions;
wenzelm
parents: 61050
diff changeset
   460
310cf33d5481 clarified exceptions;
wenzelm
parents: 61050
diff changeset
   461
(* matching *)
310cf33d5481 clarified exceptions;
wenzelm
parents: 61050
diff changeset
   462
310cf33d5481 clarified exceptions;
wenzelm
parents: 61050
diff changeset
   463
local
310cf33d5481 clarified exceptions;
wenzelm
parents: 61050
diff changeset
   464
310cf33d5481 clarified exceptions;
wenzelm
parents: 61050
diff changeset
   465
fun gen_match match
310cf33d5481 clarified exceptions;
wenzelm
parents: 61050
diff changeset
   466
    (ct1 as Cterm {t = t1, sorts = sorts1, ...},
310cf33d5481 clarified exceptions;
wenzelm
parents: 61050
diff changeset
   467
     ct2 as Cterm {t = t2, sorts = sorts2, maxidx = maxidx2, ...}) =
310cf33d5481 clarified exceptions;
wenzelm
parents: 61050
diff changeset
   468
  let
310cf33d5481 clarified exceptions;
wenzelm
parents: 61050
diff changeset
   469
    val cert = join_certificate0 (ct1, ct2);
310cf33d5481 clarified exceptions;
wenzelm
parents: 61050
diff changeset
   470
    val thy = Context.certificate_theory cert
310cf33d5481 clarified exceptions;
wenzelm
parents: 61050
diff changeset
   471
      handle ERROR msg => raise CONTEXT (msg, [], [ct1, ct2], [], NONE);
310cf33d5481 clarified exceptions;
wenzelm
parents: 61050
diff changeset
   472
    val (Tinsts, tinsts) = match thy (t1, t2) (Vartab.empty, Vartab.empty);
310cf33d5481 clarified exceptions;
wenzelm
parents: 61050
diff changeset
   473
    val sorts = Sorts.union sorts1 sorts2;
310cf33d5481 clarified exceptions;
wenzelm
parents: 61050
diff changeset
   474
    fun mk_cTinst ((a, i), (S, T)) =
310cf33d5481 clarified exceptions;
wenzelm
parents: 61050
diff changeset
   475
      (((a, i), S), Ctyp {T = T, cert = cert, maxidx = maxidx2, sorts = sorts});
310cf33d5481 clarified exceptions;
wenzelm
parents: 61050
diff changeset
   476
    fun mk_ctinst ((x, i), (U, t)) =
310cf33d5481 clarified exceptions;
wenzelm
parents: 61050
diff changeset
   477
      let val T = Envir.subst_type Tinsts U in
310cf33d5481 clarified exceptions;
wenzelm
parents: 61050
diff changeset
   478
        (((x, i), T), Cterm {t = t, T = T, cert = cert, maxidx = maxidx2, sorts = sorts})
310cf33d5481 clarified exceptions;
wenzelm
parents: 61050
diff changeset
   479
      end;
310cf33d5481 clarified exceptions;
wenzelm
parents: 61050
diff changeset
   480
  in (Vartab.fold (cons o mk_cTinst) Tinsts [], Vartab.fold (cons o mk_ctinst) tinsts []) end;
310cf33d5481 clarified exceptions;
wenzelm
parents: 61050
diff changeset
   481
310cf33d5481 clarified exceptions;
wenzelm
parents: 61050
diff changeset
   482
in
310cf33d5481 clarified exceptions;
wenzelm
parents: 61050
diff changeset
   483
310cf33d5481 clarified exceptions;
wenzelm
parents: 61050
diff changeset
   484
val match = gen_match Pattern.match;
310cf33d5481 clarified exceptions;
wenzelm
parents: 61050
diff changeset
   485
val first_order_match = gen_match Pattern.first_order_match;
310cf33d5481 clarified exceptions;
wenzelm
parents: 61050
diff changeset
   486
310cf33d5481 clarified exceptions;
wenzelm
parents: 61050
diff changeset
   487
end;
310cf33d5481 clarified exceptions;
wenzelm
parents: 61050
diff changeset
   488
310cf33d5481 clarified exceptions;
wenzelm
parents: 61050
diff changeset
   489
59969
bcccad156236 explicitly checked alpha conversion -- actual renaming happens outside kernel;
wenzelm
parents: 59917
diff changeset
   490
(*implicit alpha-conversion*)
61044
b7af255dd200 more abstract theory certificate, which is not necessarily the full theory;
wenzelm
parents: 61042
diff changeset
   491
fun renamed_prop prop' (Thm (der, {cert, tags, maxidx, shyps, hyps, tpairs, prop})) =
59969
bcccad156236 explicitly checked alpha conversion -- actual renaming happens outside kernel;
wenzelm
parents: 59917
diff changeset
   492
  if prop aconv prop' then
61044
b7af255dd200 more abstract theory certificate, which is not necessarily the full theory;
wenzelm
parents: 61042
diff changeset
   493
    Thm (der, {cert = cert, tags = tags, maxidx = maxidx, shyps = shyps,
59969
bcccad156236 explicitly checked alpha conversion -- actual renaming happens outside kernel;
wenzelm
parents: 59917
diff changeset
   494
      hyps = hyps, tpairs = tpairs, prop = prop'})
bcccad156236 explicitly checked alpha conversion -- actual renaming happens outside kernel;
wenzelm
parents: 59917
diff changeset
   495
  else raise TERM ("renamed_prop: props disagree", [prop, prop']);
bcccad156236 explicitly checked alpha conversion -- actual renaming happens outside kernel;
wenzelm
parents: 59917
diff changeset
   496
61044
b7af255dd200 more abstract theory certificate, which is not necessarily the full theory;
wenzelm
parents: 61042
diff changeset
   497
fun make_context ths NONE cert =
b7af255dd200 more abstract theory certificate, which is not necessarily the full theory;
wenzelm
parents: 61042
diff changeset
   498
      (Context.Theory (Context.certificate_theory cert)
61051
310cf33d5481 clarified exceptions;
wenzelm
parents: 61050
diff changeset
   499
        handle ERROR msg => raise CONTEXT (msg, [], [], ths, NONE))
61045
c7a7f063704a clarified exceptions: avoid interference of formal context failure with regular rule application failure (which is routinely handled in user-space);
wenzelm
parents: 61044
diff changeset
   500
  | make_context ths (SOME ctxt) cert =
61044
b7af255dd200 more abstract theory certificate, which is not necessarily the full theory;
wenzelm
parents: 61042
diff changeset
   501
      let
b7af255dd200 more abstract theory certificate, which is not necessarily the full theory;
wenzelm
parents: 61042
diff changeset
   502
        val thy_id = Context.certificate_theory_id cert;
b7af255dd200 more abstract theory certificate, which is not necessarily the full theory;
wenzelm
parents: 61042
diff changeset
   503
        val thy_id' = Context.theory_id (Proof_Context.theory_of ctxt);
b7af255dd200 more abstract theory certificate, which is not necessarily the full theory;
wenzelm
parents: 61042
diff changeset
   504
      in
b7af255dd200 more abstract theory certificate, which is not necessarily the full theory;
wenzelm
parents: 61042
diff changeset
   505
        if Context.subthy_id (thy_id, thy_id') then Context.Proof ctxt
61051
310cf33d5481 clarified exceptions;
wenzelm
parents: 61050
diff changeset
   506
        else raise CONTEXT ("Bad context", [], [], ths, SOME (Context.Proof ctxt))
61044
b7af255dd200 more abstract theory certificate, which is not necessarily the full theory;
wenzelm
parents: 61042
diff changeset
   507
      end;
58950
d07464875dd4 optional proof context for unify operations, for the sake of proper local options;
wenzelm
parents: 58946
diff changeset
   508
64981
ea6199b23dfa proper background certificate from make_context, which can be a super-theory of the direct join (amending d07464875dd4);
wenzelm
parents: 64574
diff changeset
   509
fun make_context_certificate ths opt_ctxt cert =
ea6199b23dfa proper background certificate from make_context, which can be a super-theory of the direct join (amending d07464875dd4);
wenzelm
parents: 64574
diff changeset
   510
  let
ea6199b23dfa proper background certificate from make_context, which can be a super-theory of the direct join (amending d07464875dd4);
wenzelm
parents: 64574
diff changeset
   511
    val context = make_context ths opt_ctxt cert;
ea6199b23dfa proper background certificate from make_context, which can be a super-theory of the direct join (amending d07464875dd4);
wenzelm
parents: 64574
diff changeset
   512
    val cert' = Context.Certificate (Context.theory_of context);
ea6199b23dfa proper background certificate from make_context, which can be a super-theory of the direct join (amending d07464875dd4);
wenzelm
parents: 64574
diff changeset
   513
  in (context, cert') end;
ea6199b23dfa proper background certificate from make_context, which can be a super-theory of the direct join (amending d07464875dd4);
wenzelm
parents: 64574
diff changeset
   514
16945
5d3ae25673a8 added weaken, adjust_maxidx_thm;
wenzelm
parents: 16884
diff changeset
   515
(*explicit weakening: maps |- B to A |- B*)
5d3ae25673a8 added weaken, adjust_maxidx_thm;
wenzelm
parents: 16884
diff changeset
   516
fun weaken raw_ct th =
5d3ae25673a8 added weaken, adjust_maxidx_thm;
wenzelm
parents: 16884
diff changeset
   517
  let
20261
af51389aa756 adjust_maxidx: pass explicit lower bound;
wenzelm
parents: 20071
diff changeset
   518
    val ct as Cterm {t = A, T, sorts, maxidx = maxidxA, ...} = adjust_maxidx_cterm ~1 raw_ct;
28321
9f4499bf9384 type thm: fully internal derivation, no longer exported;
wenzelm
parents: 28290
diff changeset
   519
    val Thm (der, {tags, maxidx, shyps, hyps, tpairs, prop, ...}) = th;
16945
5d3ae25673a8 added weaken, adjust_maxidx_thm;
wenzelm
parents: 16884
diff changeset
   520
  in
5d3ae25673a8 added weaken, adjust_maxidx_thm;
wenzelm
parents: 16884
diff changeset
   521
    if T <> propT then
5d3ae25673a8 added weaken, adjust_maxidx_thm;
wenzelm
parents: 16884
diff changeset
   522
      raise THM ("weaken: assumptions must have type prop", 0, [])
5d3ae25673a8 added weaken, adjust_maxidx_thm;
wenzelm
parents: 16884
diff changeset
   523
    else if maxidxA <> ~1 then
5d3ae25673a8 added weaken, adjust_maxidx_thm;
wenzelm
parents: 16884
diff changeset
   524
      raise THM ("weaken: assumptions may not contain schematic variables", maxidxA, [])
5d3ae25673a8 added weaken, adjust_maxidx_thm;
wenzelm
parents: 16884
diff changeset
   525
    else
28321
9f4499bf9384 type thm: fully internal derivation, no longer exported;
wenzelm
parents: 28290
diff changeset
   526
      Thm (der,
61044
b7af255dd200 more abstract theory certificate, which is not necessarily the full theory;
wenzelm
parents: 61042
diff changeset
   527
       {cert = join_certificate1 (ct, th),
21646
c07b5b0e8492 thm/prf: separate official name vs. additional tags;
wenzelm
parents: 21576
diff changeset
   528
        tags = tags,
16945
5d3ae25673a8 added weaken, adjust_maxidx_thm;
wenzelm
parents: 16884
diff changeset
   529
        maxidx = maxidx,
5d3ae25673a8 added weaken, adjust_maxidx_thm;
wenzelm
parents: 16884
diff changeset
   530
        shyps = Sorts.union sorts shyps,
28354
c5fe7372ae4e explicit type OrdList.T;
wenzelm
parents: 28330
diff changeset
   531
        hyps = insert_hyps A hyps,
16945
5d3ae25673a8 added weaken, adjust_maxidx_thm;
wenzelm
parents: 16884
diff changeset
   532
        tpairs = tpairs,
28321
9f4499bf9384 type thm: fully internal derivation, no longer exported;
wenzelm
parents: 28290
diff changeset
   533
        prop = prop})
16945
5d3ae25673a8 added weaken, adjust_maxidx_thm;
wenzelm
parents: 16884
diff changeset
   534
  end;
16656
18b0cb22057d ctyp: added 'sorts' field;
wenzelm
parents: 16601
diff changeset
   535
28624
d983515e5cdf added weaken_sorts;
wenzelm
parents: 28446
diff changeset
   536
fun weaken_sorts raw_sorts ct =
d983515e5cdf added weaken_sorts;
wenzelm
parents: 28446
diff changeset
   537
  let
61044
b7af255dd200 more abstract theory certificate, which is not necessarily the full theory;
wenzelm
parents: 61042
diff changeset
   538
    val Cterm {cert, t, T, maxidx, sorts} = ct;
61050
3bc7dcc565dc clarified exceptions;
wenzelm
parents: 61048
diff changeset
   539
    val thy = theory_of_cterm ct;
28624
d983515e5cdf added weaken_sorts;
wenzelm
parents: 28446
diff changeset
   540
    val more_sorts = Sorts.make (map (Sign.certify_sort thy) raw_sorts);
d983515e5cdf added weaken_sorts;
wenzelm
parents: 28446
diff changeset
   541
    val sorts' = Sorts.union sorts more_sorts;
61044
b7af255dd200 more abstract theory certificate, which is not necessarily the full theory;
wenzelm
parents: 61042
diff changeset
   542
  in Cterm {cert = cert, t = t, T = T, maxidx = maxidx, sorts = sorts'} end;
28624
d983515e5cdf added weaken_sorts;
wenzelm
parents: 28446
diff changeset
   543
16656
18b0cb22057d ctyp: added 'sorts' field;
wenzelm
parents: 16601
diff changeset
   544
(*dangling sort constraints of a thm*)
31947
7daee3bed3af clarified strip_shyps: proper type witnesses for present sorts;
wenzelm
parents: 31945
diff changeset
   545
fun extra_shyps (th as Thm (_, {shyps, ...})) =
7daee3bed3af clarified strip_shyps: proper type witnesses for present sorts;
wenzelm
parents: 31945
diff changeset
   546
  Sorts.subtract (fold_terms Sorts.insert_term th []) shyps;
28321
9f4499bf9384 type thm: fully internal derivation, no longer exported;
wenzelm
parents: 28290
diff changeset
   547
9f4499bf9384 type thm: fully internal derivation, no longer exported;
wenzelm
parents: 28290
diff changeset
   548
9f4499bf9384 type thm: fully internal derivation, no longer exported;
wenzelm
parents: 28290
diff changeset
   549
32725
57e29093ecfb tuned internal source structure;
wenzelm
parents: 32590
diff changeset
   550
(** derivations and promised proofs **)
28321
9f4499bf9384 type thm: fully internal derivation, no longer exported;
wenzelm
parents: 28290
diff changeset
   551
32059
7991cdf10a54 support for arbitrarity nested future proofs -- replaced crude order by explicit normalization (which might loop for bad dependencies);
wenzelm
parents: 32035
diff changeset
   552
fun make_deriv promises oracles thms proof =
7991cdf10a54 support for arbitrarity nested future proofs -- replaced crude order by explicit normalization (which might loop for bad dependencies);
wenzelm
parents: 32035
diff changeset
   553
  Deriv {promises = promises, body = PBody {oracles = oracles, thms = thms, proof = proof}};
28321
9f4499bf9384 type thm: fully internal derivation, no longer exported;
wenzelm
parents: 28290
diff changeset
   554
37309
38ce84c83738 eliminated ML structure alias;
wenzelm
parents: 37297
diff changeset
   555
val empty_deriv = make_deriv [] [] [] Proofterm.MinProof;
28321
9f4499bf9384 type thm: fully internal derivation, no longer exported;
wenzelm
parents: 28290
diff changeset
   556
28330
7e803c392342 added dest_deriv, removed external type deriv;
wenzelm
parents: 28321
diff changeset
   557
28354
c5fe7372ae4e explicit type OrdList.T;
wenzelm
parents: 28330
diff changeset
   558
(* inference rules *)
28321
9f4499bf9384 type thm: fully internal derivation, no longer exported;
wenzelm
parents: 28290
diff changeset
   559
28378
60cc0359363d promise: include check into future body, i.e. joined results are always valid;
wenzelm
parents: 28364
diff changeset
   560
fun promise_ord ((i, _), (j, _)) = int_ord (j, i);
28330
7e803c392342 added dest_deriv, removed external type deriv;
wenzelm
parents: 28321
diff changeset
   561
52487
48bc24467008 backout dedd7952a62c: static "proofs" value within theory prevents later inferencing with different configuration;
wenzelm
parents: 52470
diff changeset
   562
fun deriv_rule2 f
32059
7991cdf10a54 support for arbitrarity nested future proofs -- replaced crude order by explicit normalization (which might loop for bad dependencies);
wenzelm
parents: 32035
diff changeset
   563
    (Deriv {promises = ps1, body = PBody {oracles = oras1, thms = thms1, proof = prf1}})
7991cdf10a54 support for arbitrarity nested future proofs -- replaced crude order by explicit normalization (which might loop for bad dependencies);
wenzelm
parents: 32035
diff changeset
   564
    (Deriv {promises = ps2, body = PBody {oracles = oras2, thms = thms2, proof = prf2}}) =
28321
9f4499bf9384 type thm: fully internal derivation, no longer exported;
wenzelm
parents: 28290
diff changeset
   565
  let
39687
4e9b6ada3a21 modernized structure Ord_List;
wenzelm
parents: 38709
diff changeset
   566
    val ps = Ord_List.union promise_ord ps1 ps2;
44334
605381e7c7c5 more direct balanced version Ord_List.unions;
wenzelm
parents: 44333
diff changeset
   567
    val oras = Proofterm.unions_oracles [oras1, oras2];
605381e7c7c5 more direct balanced version Ord_List.unions;
wenzelm
parents: 44333
diff changeset
   568
    val thms = Proofterm.unions_thms [thms1, thms2];
28321
9f4499bf9384 type thm: fully internal derivation, no longer exported;
wenzelm
parents: 28290
diff changeset
   569
    val prf =
52487
48bc24467008 backout dedd7952a62c: static "proofs" value within theory prevents later inferencing with different configuration;
wenzelm
parents: 52470
diff changeset
   570
      (case ! Proofterm.proofs of
28321
9f4499bf9384 type thm: fully internal derivation, no longer exported;
wenzelm
parents: 28290
diff changeset
   571
        2 => f prf1 prf2
28804
5d3b1df16353 refined notion of derivation, consiting of promises and proof_body;
wenzelm
parents: 28675
diff changeset
   572
      | 1 => MinProof
5d3b1df16353 refined notion of derivation, consiting of promises and proof_body;
wenzelm
parents: 28675
diff changeset
   573
      | 0 => MinProof
28321
9f4499bf9384 type thm: fully internal derivation, no longer exported;
wenzelm
parents: 28290
diff changeset
   574
      | i => error ("Illegal level of detail for proof objects: " ^ string_of_int i));
32059
7991cdf10a54 support for arbitrarity nested future proofs -- replaced crude order by explicit normalization (which might loop for bad dependencies);
wenzelm
parents: 32035
diff changeset
   575
  in make_deriv ps oras thms prf end;
28321
9f4499bf9384 type thm: fully internal derivation, no longer exported;
wenzelm
parents: 28290
diff changeset
   576
52487
48bc24467008 backout dedd7952a62c: static "proofs" value within theory prevents later inferencing with different configuration;
wenzelm
parents: 52470
diff changeset
   577
fun deriv_rule1 f = deriv_rule2 (K f) empty_deriv;
48bc24467008 backout dedd7952a62c: static "proofs" value within theory prevents later inferencing with different configuration;
wenzelm
parents: 52470
diff changeset
   578
fun deriv_rule0 prf = deriv_rule1 I (make_deriv [] [] [] prf);
28321
9f4499bf9384 type thm: fully internal derivation, no longer exported;
wenzelm
parents: 28290
diff changeset
   579
36621
2fd4e2c76636 proof terms for strip_shyps, based on the version by krauss/schropp with some notable differences:
wenzelm
parents: 36619
diff changeset
   580
fun deriv_rule_unconditional f (Deriv {promises, body = PBody {oracles, thms, proof}}) =
2fd4e2c76636 proof terms for strip_shyps, based on the version by krauss/schropp with some notable differences:
wenzelm
parents: 36619
diff changeset
   581
  make_deriv promises oracles thms (f proof);
2fd4e2c76636 proof terms for strip_shyps, based on the version by krauss/schropp with some notable differences:
wenzelm
parents: 36619
diff changeset
   582
1238
289c573327f0 considerably tuned shyps handling;
wenzelm
parents: 1229
diff changeset
   583
32725
57e29093ecfb tuned internal source structure;
wenzelm
parents: 32590
diff changeset
   584
(* fulfilled proofs *)
57e29093ecfb tuned internal source structure;
wenzelm
parents: 32590
diff changeset
   585
44331
aa9c1e9ef2ce clarified fulfill_norm_proof: no join_thms yet;
wenzelm
parents: 44330
diff changeset
   586
fun raw_body_of (Thm (Deriv {body, ...}, _)) = body;
aa9c1e9ef2ce clarified fulfill_norm_proof: no join_thms yet;
wenzelm
parents: 44330
diff changeset
   587
fun raw_promises_of (Thm (Deriv {promises, ...}, _)) = promises;
aa9c1e9ef2ce clarified fulfill_norm_proof: no join_thms yet;
wenzelm
parents: 44330
diff changeset
   588
aa9c1e9ef2ce clarified fulfill_norm_proof: no join_thms yet;
wenzelm
parents: 44330
diff changeset
   589
fun join_promises [] = ()
aa9c1e9ef2ce clarified fulfill_norm_proof: no join_thms yet;
wenzelm
parents: 44330
diff changeset
   590
  | join_promises promises = join_promises_of (Future.joins (map snd promises))
49008
a3cdb49c22cc proper merge of promises to avoid exponential blow-up in pathologic situations (e.g. lack of PThm wrapping);
wenzelm
parents: 48263
diff changeset
   591
and join_promises_of thms = join_promises (Ord_List.make promise_ord (maps raw_promises_of thms));
32725
57e29093ecfb tuned internal source structure;
wenzelm
parents: 32590
diff changeset
   592
61044
b7af255dd200 more abstract theory certificate, which is not necessarily the full theory;
wenzelm
parents: 61042
diff changeset
   593
fun fulfill_body (th as Thm (Deriv {promises, body}, _)) =
64571
wenzelm
parents: 64570
diff changeset
   594
  let val fulfilled_promises = map #1 promises ~~ map fulfill_body (Future.joins (map #2 promises))
wenzelm
parents: 64570
diff changeset
   595
  in Proofterm.fulfill_norm_proof (theory_of_thm th) fulfilled_promises body end;
32725
57e29093ecfb tuned internal source structure;
wenzelm
parents: 32590
diff changeset
   596
64574
1134e4d5e5b7 consolidate nested thms with persistent result, for improved performance;
wenzelm
parents: 64573
diff changeset
   597
fun proof_bodies_of thms = (join_promises_of thms; map fulfill_body thms);
44333
cc53ce50f738 reverted to join_bodies/join_proofs based on fold_body_thms to regain performance (escpecially of HOL-Proofs) -- see also aa9c1e9ef2ce and 4e2abb045eac;
wenzelm
parents: 44331
diff changeset
   598
val proof_body_of = singleton proof_bodies_of;
44331
aa9c1e9ef2ce clarified fulfill_norm_proof: no join_thms yet;
wenzelm
parents: 44330
diff changeset
   599
val proof_of = Proofterm.proof_of o proof_body_of;
32725
57e29093ecfb tuned internal source structure;
wenzelm
parents: 32590
diff changeset
   600
66168
fcd09fc36d7f consolidate proofs more simultaneously;
wenzelm
parents: 65458
diff changeset
   601
val consolidate = ignore o proof_bodies_of;
32725
57e29093ecfb tuned internal source structure;
wenzelm
parents: 32590
diff changeset
   602
57e29093ecfb tuned internal source structure;
wenzelm
parents: 32590
diff changeset
   603
57e29093ecfb tuned internal source structure;
wenzelm
parents: 32590
diff changeset
   604
(* derivation status *)
57e29093ecfb tuned internal source structure;
wenzelm
parents: 32590
diff changeset
   605
50126
3dec88149176 theorem status about oracles/futures is no longer printed by default;
wenzelm
parents: 49008
diff changeset
   606
fun peek_status (Thm (Deriv {promises, body}, _)) =
32725
57e29093ecfb tuned internal source structure;
wenzelm
parents: 32590
diff changeset
   607
  let
57e29093ecfb tuned internal source structure;
wenzelm
parents: 32590
diff changeset
   608
    val ps = map (Future.peek o snd) promises;
57e29093ecfb tuned internal source structure;
wenzelm
parents: 32590
diff changeset
   609
    val bodies = body ::
44331
aa9c1e9ef2ce clarified fulfill_norm_proof: no join_thms yet;
wenzelm
parents: 44330
diff changeset
   610
      map_filter (fn SOME (Exn.Res th) => SOME (raw_body_of th) | _ => NONE) ps;
50126
3dec88149176 theorem status about oracles/futures is no longer printed by default;
wenzelm
parents: 49008
diff changeset
   611
    val {oracle, unfinished, failed} = Proofterm.peek_status bodies;
32725
57e29093ecfb tuned internal source structure;
wenzelm
parents: 32590
diff changeset
   612
  in
57e29093ecfb tuned internal source structure;
wenzelm
parents: 32590
diff changeset
   613
   {oracle = oracle,
57e29093ecfb tuned internal source structure;
wenzelm
parents: 32590
diff changeset
   614
    unfinished = unfinished orelse exists is_none ps,
57e29093ecfb tuned internal source structure;
wenzelm
parents: 32590
diff changeset
   615
    failed = failed orelse exists (fn SOME (Exn.Exn _) => true | _ => false) ps}
57e29093ecfb tuned internal source structure;
wenzelm
parents: 32590
diff changeset
   616
  end;
57e29093ecfb tuned internal source structure;
wenzelm
parents: 32590
diff changeset
   617
57e29093ecfb tuned internal source structure;
wenzelm
parents: 32590
diff changeset
   618
57e29093ecfb tuned internal source structure;
wenzelm
parents: 32590
diff changeset
   619
(* future rule *)
57e29093ecfb tuned internal source structure;
wenzelm
parents: 32590
diff changeset
   620
61044
b7af255dd200 more abstract theory certificate, which is not necessarily the full theory;
wenzelm
parents: 61042
diff changeset
   621
fun future_result i orig_cert orig_shyps orig_prop thm =
32725
57e29093ecfb tuned internal source structure;
wenzelm
parents: 32590
diff changeset
   622
  let
36613
f3157c288aca simplified primitive Thm.future: more direct theory check, do not hardwire strip_shyps here;
wenzelm
parents: 36330
diff changeset
   623
    fun err msg = raise THM ("future_result: " ^ msg, 0, [thm]);
61044
b7af255dd200 more abstract theory certificate, which is not necessarily the full theory;
wenzelm
parents: 61042
diff changeset
   624
    val Thm (Deriv {promises, ...}, {cert, shyps, hyps, tpairs, prop, ...}) = thm;
36613
f3157c288aca simplified primitive Thm.future: more direct theory check, do not hardwire strip_shyps here;
wenzelm
parents: 36330
diff changeset
   625
61044
b7af255dd200 more abstract theory certificate, which is not necessarily the full theory;
wenzelm
parents: 61042
diff changeset
   626
    val _ = Context.eq_certificate (cert, orig_cert) orelse err "bad theory";
32725
57e29093ecfb tuned internal source structure;
wenzelm
parents: 32590
diff changeset
   627
    val _ = prop aconv orig_prop orelse err "bad prop";
57e29093ecfb tuned internal source structure;
wenzelm
parents: 32590
diff changeset
   628
    val _ = null tpairs orelse err "bad tpairs";
57e29093ecfb tuned internal source structure;
wenzelm
parents: 32590
diff changeset
   629
    val _ = null hyps orelse err "bad hyps";
57e29093ecfb tuned internal source structure;
wenzelm
parents: 32590
diff changeset
   630
    val _ = Sorts.subset (shyps, orig_shyps) orelse err "bad shyps";
57e29093ecfb tuned internal source structure;
wenzelm
parents: 32590
diff changeset
   631
    val _ = forall (fn (j, _) => i <> j) promises orelse err "bad dependencies";
44331
aa9c1e9ef2ce clarified fulfill_norm_proof: no join_thms yet;
wenzelm
parents: 44330
diff changeset
   632
    val _ = join_promises promises;
32725
57e29093ecfb tuned internal source structure;
wenzelm
parents: 32590
diff changeset
   633
  in thm end;
57e29093ecfb tuned internal source structure;
wenzelm
parents: 32590
diff changeset
   634
57e29093ecfb tuned internal source structure;
wenzelm
parents: 32590
diff changeset
   635
fun future future_thm ct =
57e29093ecfb tuned internal source structure;
wenzelm
parents: 32590
diff changeset
   636
  let
61044
b7af255dd200 more abstract theory certificate, which is not necessarily the full theory;
wenzelm
parents: 61042
diff changeset
   637
    val Cterm {cert = cert, t = prop, T, maxidx, sorts} = ct;
32725
57e29093ecfb tuned internal source structure;
wenzelm
parents: 32590
diff changeset
   638
    val _ = T <> propT andalso raise CTERM ("future: prop expected", [ct]);
57e29093ecfb tuned internal source structure;
wenzelm
parents: 32590
diff changeset
   639
61050
3bc7dcc565dc clarified exceptions;
wenzelm
parents: 61048
diff changeset
   640
    val thy = theory_of_cterm ct;
32725
57e29093ecfb tuned internal source structure;
wenzelm
parents: 32590
diff changeset
   641
    val i = serial ();
61044
b7af255dd200 more abstract theory certificate, which is not necessarily the full theory;
wenzelm
parents: 61042
diff changeset
   642
    val future = future_thm |> Future.map (future_result i cert sorts prop);
32725
57e29093ecfb tuned internal source structure;
wenzelm
parents: 32590
diff changeset
   643
  in
37309
38ce84c83738 eliminated ML structure alias;
wenzelm
parents: 37297
diff changeset
   644
    Thm (make_deriv [(i, future)] [] [] (Proofterm.promise_proof thy i prop),
61044
b7af255dd200 more abstract theory certificate, which is not necessarily the full theory;
wenzelm
parents: 61042
diff changeset
   645
     {cert = cert,
32725
57e29093ecfb tuned internal source structure;
wenzelm
parents: 32590
diff changeset
   646
      tags = [],
57e29093ecfb tuned internal source structure;
wenzelm
parents: 32590
diff changeset
   647
      maxidx = maxidx,
57e29093ecfb tuned internal source structure;
wenzelm
parents: 32590
diff changeset
   648
      shyps = sorts,
57e29093ecfb tuned internal source structure;
wenzelm
parents: 32590
diff changeset
   649
      hyps = [],
57e29093ecfb tuned internal source structure;
wenzelm
parents: 32590
diff changeset
   650
      tpairs = [],
57e29093ecfb tuned internal source structure;
wenzelm
parents: 32590
diff changeset
   651
      prop = prop})
57e29093ecfb tuned internal source structure;
wenzelm
parents: 32590
diff changeset
   652
  end;
57e29093ecfb tuned internal source structure;
wenzelm
parents: 32590
diff changeset
   653
57e29093ecfb tuned internal source structure;
wenzelm
parents: 32590
diff changeset
   654
57e29093ecfb tuned internal source structure;
wenzelm
parents: 32590
diff changeset
   655
(* closed derivations with official name *)
57e29093ecfb tuned internal source structure;
wenzelm
parents: 32590
diff changeset
   656
41699
21492e1c2b5a tuned comments;
wenzelm
parents: 40238
diff changeset
   657
(*non-deterministic, depends on unknown promises*)
64568
a504a3dec35a more careful derivation_closed / close_derivation;
wenzelm
parents: 63858
diff changeset
   658
fun derivation_closed (Thm (Deriv {body, ...}, _)) =
a504a3dec35a more careful derivation_closed / close_derivation;
wenzelm
parents: 63858
diff changeset
   659
  Proofterm.compact_proof (Proofterm.proof_of body);
a504a3dec35a more careful derivation_closed / close_derivation;
wenzelm
parents: 63858
diff changeset
   660
a504a3dec35a more careful derivation_closed / close_derivation;
wenzelm
parents: 63858
diff changeset
   661
(*non-deterministic, depends on unknown promises*)
37297
a1acd424645a always unconstrain thm proofs;
wenzelm
parents: 36983
diff changeset
   662
fun derivation_name (Thm (Deriv {body, ...}, {shyps, hyps, prop, ...})) =
37309
38ce84c83738 eliminated ML structure alias;
wenzelm
parents: 37297
diff changeset
   663
  Proofterm.get_name shyps hyps prop (Proofterm.proof_of body);
32725
57e29093ecfb tuned internal source structure;
wenzelm
parents: 32590
diff changeset
   664
36744
6e1f3d609a68 renamed Thm.get_name -> Thm.derivation_name and Thm.put_name -> Thm.name_derivation, to emphasize the true nature of these operations;
wenzelm
parents: 36742
diff changeset
   665
fun name_derivation name (thm as Thm (der, args)) =
32725
57e29093ecfb tuned internal source structure;
wenzelm
parents: 32590
diff changeset
   666
  let
57e29093ecfb tuned internal source structure;
wenzelm
parents: 32590
diff changeset
   667
    val Deriv {promises, body} = der;
61044
b7af255dd200 more abstract theory certificate, which is not necessarily the full theory;
wenzelm
parents: 61042
diff changeset
   668
    val {shyps, hyps, prop, tpairs, ...} = args;
32725
57e29093ecfb tuned internal source structure;
wenzelm
parents: 32590
diff changeset
   669
    val _ = null tpairs orelse raise THM ("put_name: unsolved flex-flex constraints", 0, [thm]);
61044
b7af255dd200 more abstract theory certificate, which is not necessarily the full theory;
wenzelm
parents: 61042
diff changeset
   670
    val thy = theory_of_thm thm;
32725
57e29093ecfb tuned internal source structure;
wenzelm
parents: 32590
diff changeset
   671
41700
f33d5a00c25d thm_proof: visible fulfill_body only, without joining nested thms -- retain proof irrelevance, which is important for parallel performance;
wenzelm
parents: 41699
diff changeset
   672
    val ps = map (apsnd (Future.map fulfill_body)) promises;
37309
38ce84c83738 eliminated ML structure alias;
wenzelm
parents: 37297
diff changeset
   673
    val (pthm, proof) = Proofterm.thm_proof thy name shyps hyps prop ps body;
32725
57e29093ecfb tuned internal source structure;
wenzelm
parents: 32590
diff changeset
   674
    val der' = make_deriv [] [] [pthm] proof;
57e29093ecfb tuned internal source structure;
wenzelm
parents: 32590
diff changeset
   675
  in Thm (der', args) end;
57e29093ecfb tuned internal source structure;
wenzelm
parents: 32590
diff changeset
   676
57e29093ecfb tuned internal source structure;
wenzelm
parents: 32590
diff changeset
   677
1238
289c573327f0 considerably tuned shyps handling;
wenzelm
parents: 1229
diff changeset
   678
1529
09d9ad015269 Addition of proof objects
paulson
parents: 1517
diff changeset
   679
(** Axioms **)
387
69f4356d915d new datatype theory, supports 'draft theories' and incremental extension:
wenzelm
parents: 309
diff changeset
   680
61044
b7af255dd200 more abstract theory certificate, which is not necessarily the full theory;
wenzelm
parents: 61042
diff changeset
   681
fun axiom thy0 name =
387
69f4356d915d new datatype theory, supports 'draft theories' and incremental extension:
wenzelm
parents: 309
diff changeset
   682
  let
16425
2427be27cc60 accomodate identification of type Sign.sg and theory;
wenzelm
parents: 16352
diff changeset
   683
    fun get_ax thy =
59884
bbf49d7dfd6f tuned signature;
wenzelm
parents: 59787
diff changeset
   684
      Name_Space.lookup (Theory.axiom_table thy) name
bbf49d7dfd6f tuned signature;
wenzelm
parents: 59787
diff changeset
   685
      |> Option.map (fn prop =>
24143
90a9a6fe0d01 replaced Theory.self_ref by Theory.check_thy, which now produces a checked ref;
wenzelm
parents: 23781
diff changeset
   686
           let
52487
48bc24467008 backout dedd7952a62c: static "proofs" value within theory prevents later inferencing with different configuration;
wenzelm
parents: 52470
diff changeset
   687
             val der = deriv_rule0 (Proofterm.axm_proof name prop);
61044
b7af255dd200 more abstract theory certificate, which is not necessarily the full theory;
wenzelm
parents: 61042
diff changeset
   688
             val cert = Context.Certificate thy;
24143
90a9a6fe0d01 replaced Theory.self_ref by Theory.check_thy, which now produces a checked ref;
wenzelm
parents: 23781
diff changeset
   689
             val maxidx = maxidx_of_term prop;
26640
92e6d3ec91bd simplified handling of sorts, removed unnecessary universal witness;
wenzelm
parents: 26631
diff changeset
   690
             val shyps = Sorts.insert_term prop [];
24143
90a9a6fe0d01 replaced Theory.self_ref by Theory.check_thy, which now produces a checked ref;
wenzelm
parents: 23781
diff changeset
   691
           in
61044
b7af255dd200 more abstract theory certificate, which is not necessarily the full theory;
wenzelm
parents: 61042
diff changeset
   692
             Thm (der, {cert = cert, tags = [],
28321
9f4499bf9384 type thm: fully internal derivation, no longer exported;
wenzelm
parents: 28290
diff changeset
   693
               maxidx = maxidx, shyps = shyps, hyps = [], tpairs = [], prop = prop})
24143
90a9a6fe0d01 replaced Theory.self_ref by Theory.check_thy, which now produces a checked ref;
wenzelm
parents: 23781
diff changeset
   694
           end);
387
69f4356d915d new datatype theory, supports 'draft theories' and incremental extension:
wenzelm
parents: 309
diff changeset
   695
  in
61044
b7af255dd200 more abstract theory certificate, which is not necessarily the full theory;
wenzelm
parents: 61042
diff changeset
   696
    (case get_first get_ax (Theory.nodes_of thy0) of
15531
08c8dad8e399 Deleted Library.option type.
skalberg
parents: 15454
diff changeset
   697
      SOME thm => thm
61044
b7af255dd200 more abstract theory certificate, which is not necessarily the full theory;
wenzelm
parents: 61042
diff changeset
   698
    | NONE => raise THEORY ("No axiom " ^ quote name, [thy0]))
387
69f4356d915d new datatype theory, supports 'draft theories' and incremental extension:
wenzelm
parents: 309
diff changeset
   699
  end;
69f4356d915d new datatype theory, supports 'draft theories' and incremental extension:
wenzelm
parents: 309
diff changeset
   700
776
df8f91c0e57c improved axioms_of: returns thms as the manual says;
wenzelm
parents: 721
diff changeset
   701
(*return additional axioms of this theory node*)
df8f91c0e57c improved axioms_of: returns thms as the manual says;
wenzelm
parents: 721
diff changeset
   702
fun axioms_of thy =
56025
d74fed45fa8b abstract type Name_Space.table;
wenzelm
parents: 52789
diff changeset
   703
  map (fn (name, _) => (name, axiom thy name)) (Theory.axioms_of thy);
776
df8f91c0e57c improved axioms_of: returns thms as the manual says;
wenzelm
parents: 721
diff changeset
   704
6089
4d2d5556b4f9 signature BASIC_THM;
wenzelm
parents: 5624
diff changeset
   705
28804
5d3b1df16353 refined notion of derivation, consiting of promises and proof_body;
wenzelm
parents: 28675
diff changeset
   706
(* tags *)
6089
4d2d5556b4f9 signature BASIC_THM;
wenzelm
parents: 5624
diff changeset
   707
21646
c07b5b0e8492 thm/prf: separate official name vs. additional tags;
wenzelm
parents: 21576
diff changeset
   708
val get_tags = #tags o rep_thm;
6089
4d2d5556b4f9 signature BASIC_THM;
wenzelm
parents: 5624
diff changeset
   709
61044
b7af255dd200 more abstract theory certificate, which is not necessarily the full theory;
wenzelm
parents: 61042
diff changeset
   710
fun map_tags f (Thm (der, {cert, tags, maxidx, shyps, hyps, tpairs, prop})) =
b7af255dd200 more abstract theory certificate, which is not necessarily the full theory;
wenzelm
parents: 61042
diff changeset
   711
  Thm (der, {cert = cert, tags = f tags, maxidx = maxidx,
28321
9f4499bf9384 type thm: fully internal derivation, no longer exported;
wenzelm
parents: 28290
diff changeset
   712
    shyps = shyps, hyps = hyps, tpairs = tpairs, prop = prop});
0
a5a9c433f639 Initial revision
clasohm
parents:
diff changeset
   713
a5a9c433f639 Initial revision
clasohm
parents:
diff changeset
   714
43795
ca5896a836ba recovered some runtime sharing from d6b6c74a8bcf, without the global memory bottleneck;
wenzelm
parents: 43761
diff changeset
   715
(* technical adjustments *)
ca5896a836ba recovered some runtime sharing from d6b6c74a8bcf, without the global memory bottleneck;
wenzelm
parents: 43761
diff changeset
   716
61044
b7af255dd200 more abstract theory certificate, which is not necessarily the full theory;
wenzelm
parents: 61042
diff changeset
   717
fun norm_proof (th as Thm (der, args)) =
b7af255dd200 more abstract theory certificate, which is not necessarily the full theory;
wenzelm
parents: 61042
diff changeset
   718
  Thm (deriv_rule1 (Proofterm.rew_proof (theory_of_thm th)) der, args);
23781
ab793a6ddf9f Added function norm_proof for normalizing the proof term
berghofe
parents: 23657
diff changeset
   719
61044
b7af255dd200 more abstract theory certificate, which is not necessarily the full theory;
wenzelm
parents: 61042
diff changeset
   720
fun adjust_maxidx_thm i (th as Thm (der, {cert, tags, maxidx, shyps, hyps, tpairs, prop})) =
20261
af51389aa756 adjust_maxidx: pass explicit lower bound;
wenzelm
parents: 20071
diff changeset
   721
  if maxidx = i then th
af51389aa756 adjust_maxidx: pass explicit lower bound;
wenzelm
parents: 20071
diff changeset
   722
  else if maxidx < i then
61044
b7af255dd200 more abstract theory certificate, which is not necessarily the full theory;
wenzelm
parents: 61042
diff changeset
   723
    Thm (der, {maxidx = i, cert = cert, tags = tags, shyps = shyps,
28321
9f4499bf9384 type thm: fully internal derivation, no longer exported;
wenzelm
parents: 28290
diff changeset
   724
      hyps = hyps, tpairs = tpairs, prop = prop})
20261
af51389aa756 adjust_maxidx: pass explicit lower bound;
wenzelm
parents: 20071
diff changeset
   725
  else
61044
b7af255dd200 more abstract theory certificate, which is not necessarily the full theory;
wenzelm
parents: 61042
diff changeset
   726
    Thm (der, {maxidx = Int.max (maxidx_tpairs tpairs (maxidx_of_term prop), i),
b7af255dd200 more abstract theory certificate, which is not necessarily the full theory;
wenzelm
parents: 61042
diff changeset
   727
      cert = cert, tags = tags, shyps = shyps, hyps = hyps, tpairs = tpairs, prop = prop});
564
eec3a9222b50 added inferT_axm;
wenzelm
parents: 480
diff changeset
   728
387
69f4356d915d new datatype theory, supports 'draft theories' and incremental extension:
wenzelm
parents: 309
diff changeset
   729
2509
0a7169d89b7a added termless parameter;
wenzelm
parents: 2386
diff changeset
   730
1529
09d9ad015269 Addition of proof objects
paulson
parents: 1517
diff changeset
   731
(*** Meta rules ***)
0
a5a9c433f639 Initial revision
clasohm
parents:
diff changeset
   732
16601
ee8eefade568 more efficient treatment of shyps and hyps (use ordered lists);
wenzelm
parents: 16425
diff changeset
   733
(** primitive rules **)
0
a5a9c433f639 Initial revision
clasohm
parents:
diff changeset
   734
16656
18b0cb22057d ctyp: added 'sorts' field;
wenzelm
parents: 16601
diff changeset
   735
(*The assumption rule A |- A*)
16601
ee8eefade568 more efficient treatment of shyps and hyps (use ordered lists);
wenzelm
parents: 16425
diff changeset
   736
fun assume raw_ct =
61044
b7af255dd200 more abstract theory certificate, which is not necessarily the full theory;
wenzelm
parents: 61042
diff changeset
   737
  let val Cterm {cert, t = prop, T, maxidx, sorts} = adjust_maxidx_cterm ~1 raw_ct in
16601
ee8eefade568 more efficient treatment of shyps and hyps (use ordered lists);
wenzelm
parents: 16425
diff changeset
   738
    if T <> propT then
19230
3342e7554b77 Shortened the exception messages from assume.
mengj
parents: 19012
diff changeset
   739
      raise THM ("assume: prop", 0, [])
16601
ee8eefade568 more efficient treatment of shyps and hyps (use ordered lists);
wenzelm
parents: 16425
diff changeset
   740
    else if maxidx <> ~1 then
19230
3342e7554b77 Shortened the exception messages from assume.
mengj
parents: 19012
diff changeset
   741
      raise THM ("assume: variables", maxidx, [])
52487
48bc24467008 backout dedd7952a62c: static "proofs" value within theory prevents later inferencing with different configuration;
wenzelm
parents: 52470
diff changeset
   742
    else Thm (deriv_rule0 (Proofterm.Hyp prop),
61044
b7af255dd200 more abstract theory certificate, which is not necessarily the full theory;
wenzelm
parents: 61042
diff changeset
   743
     {cert = cert,
21646
c07b5b0e8492 thm/prf: separate official name vs. additional tags;
wenzelm
parents: 21576
diff changeset
   744
      tags = [],
16601
ee8eefade568 more efficient treatment of shyps and hyps (use ordered lists);
wenzelm
parents: 16425
diff changeset
   745
      maxidx = ~1,
ee8eefade568 more efficient treatment of shyps and hyps (use ordered lists);
wenzelm
parents: 16425
diff changeset
   746
      shyps = sorts,
ee8eefade568 more efficient treatment of shyps and hyps (use ordered lists);
wenzelm
parents: 16425
diff changeset
   747
      hyps = [prop],
ee8eefade568 more efficient treatment of shyps and hyps (use ordered lists);
wenzelm
parents: 16425
diff changeset
   748
      tpairs = [],
28321
9f4499bf9384 type thm: fully internal derivation, no longer exported;
wenzelm
parents: 28290
diff changeset
   749
      prop = prop})
0
a5a9c433f639 Initial revision
clasohm
parents:
diff changeset
   750
  end;
a5a9c433f639 Initial revision
clasohm
parents:
diff changeset
   751
1220
3b0b8408fc5f MAJOR changes:
wenzelm
parents: 1195
diff changeset
   752
(*Implication introduction
3529
31186470665f tuned warning;
wenzelm
parents: 3410
diff changeset
   753
    [A]
31186470665f tuned warning;
wenzelm
parents: 3410
diff changeset
   754
     :
31186470665f tuned warning;
wenzelm
parents: 3410
diff changeset
   755
     B
1220
3b0b8408fc5f MAJOR changes:
wenzelm
parents: 1195
diff changeset
   756
  -------
3b0b8408fc5f MAJOR changes:
wenzelm
parents: 1195
diff changeset
   757
  A ==> B
3b0b8408fc5f MAJOR changes:
wenzelm
parents: 1195
diff changeset
   758
*)
16601
ee8eefade568 more efficient treatment of shyps and hyps (use ordered lists);
wenzelm
parents: 16425
diff changeset
   759
fun implies_intr
16679
abd1461fa288 dest_ctyp: raise exception for non-constructor;
wenzelm
parents: 16656
diff changeset
   760
    (ct as Cterm {t = A, T, maxidx = maxidxA, sorts, ...})
28321
9f4499bf9384 type thm: fully internal derivation, no longer exported;
wenzelm
parents: 28290
diff changeset
   761
    (th as Thm (der, {maxidx, hyps, shyps, tpairs, prop, ...})) =
16601
ee8eefade568 more efficient treatment of shyps and hyps (use ordered lists);
wenzelm
parents: 16425
diff changeset
   762
  if T <> propT then
ee8eefade568 more efficient treatment of shyps and hyps (use ordered lists);
wenzelm
parents: 16425
diff changeset
   763
    raise THM ("implies_intr: assumptions must have type prop", 0, [th])
ee8eefade568 more efficient treatment of shyps and hyps (use ordered lists);
wenzelm
parents: 16425
diff changeset
   764
  else
52487
48bc24467008 backout dedd7952a62c: static "proofs" value within theory prevents later inferencing with different configuration;
wenzelm
parents: 52470
diff changeset
   765
    Thm (deriv_rule1 (Proofterm.implies_intr_proof A) der,
61044
b7af255dd200 more abstract theory certificate, which is not necessarily the full theory;
wenzelm
parents: 61042
diff changeset
   766
     {cert = join_certificate1 (ct, th),
52487
48bc24467008 backout dedd7952a62c: static "proofs" value within theory prevents later inferencing with different configuration;
wenzelm
parents: 52470
diff changeset
   767
      tags = [],
48bc24467008 backout dedd7952a62c: static "proofs" value within theory prevents later inferencing with different configuration;
wenzelm
parents: 52470
diff changeset
   768
      maxidx = Int.max (maxidxA, maxidx),
48bc24467008 backout dedd7952a62c: static "proofs" value within theory prevents later inferencing with different configuration;
wenzelm
parents: 52470
diff changeset
   769
      shyps = Sorts.union sorts shyps,
48bc24467008 backout dedd7952a62c: static "proofs" value within theory prevents later inferencing with different configuration;
wenzelm
parents: 52470
diff changeset
   770
      hyps = remove_hyps A hyps,
48bc24467008 backout dedd7952a62c: static "proofs" value within theory prevents later inferencing with different configuration;
wenzelm
parents: 52470
diff changeset
   771
      tpairs = tpairs,
48bc24467008 backout dedd7952a62c: static "proofs" value within theory prevents later inferencing with different configuration;
wenzelm
parents: 52470
diff changeset
   772
      prop = Logic.mk_implies (A, prop)});
0
a5a9c433f639 Initial revision
clasohm
parents:
diff changeset
   773
1529
09d9ad015269 Addition of proof objects
paulson
parents: 1517
diff changeset
   774
1220
3b0b8408fc5f MAJOR changes:
wenzelm
parents: 1195
diff changeset
   775
(*Implication elimination
3b0b8408fc5f MAJOR changes:
wenzelm
parents: 1195
diff changeset
   776
  A ==> B    A
3b0b8408fc5f MAJOR changes:
wenzelm
parents: 1195
diff changeset
   777
  ------------
3b0b8408fc5f MAJOR changes:
wenzelm
parents: 1195
diff changeset
   778
        B
3b0b8408fc5f MAJOR changes:
wenzelm
parents: 1195
diff changeset
   779
*)
16601
ee8eefade568 more efficient treatment of shyps and hyps (use ordered lists);
wenzelm
parents: 16425
diff changeset
   780
fun implies_elim thAB thA =
ee8eefade568 more efficient treatment of shyps and hyps (use ordered lists);
wenzelm
parents: 16425
diff changeset
   781
  let
28321
9f4499bf9384 type thm: fully internal derivation, no longer exported;
wenzelm
parents: 28290
diff changeset
   782
    val Thm (derA, {maxidx = maxA, hyps = hypsA, shyps = shypsA, tpairs = tpairsA,
9f4499bf9384 type thm: fully internal derivation, no longer exported;
wenzelm
parents: 28290
diff changeset
   783
      prop = propA, ...}) = thA
9f4499bf9384 type thm: fully internal derivation, no longer exported;
wenzelm
parents: 28290
diff changeset
   784
    and Thm (der, {maxidx, hyps, shyps, tpairs, prop, ...}) = thAB;
16601
ee8eefade568 more efficient treatment of shyps and hyps (use ordered lists);
wenzelm
parents: 16425
diff changeset
   785
    fun err () = raise THM ("implies_elim: major premise", 0, [thAB, thA]);
ee8eefade568 more efficient treatment of shyps and hyps (use ordered lists);
wenzelm
parents: 16425
diff changeset
   786
  in
ee8eefade568 more efficient treatment of shyps and hyps (use ordered lists);
wenzelm
parents: 16425
diff changeset
   787
    case prop of
56245
84fc7dfa3cd4 more qualified names;
wenzelm
parents: 56052
diff changeset
   788
      Const ("Pure.imp", _) $ A $ B =>
20512
a041c2afb52e ctyp: maintain maxidx;
wenzelm
parents: 20348
diff changeset
   789
        if A aconv propA then
52487
48bc24467008 backout dedd7952a62c: static "proofs" value within theory prevents later inferencing with different configuration;
wenzelm
parents: 52470
diff changeset
   790
          Thm (deriv_rule2 (curry Proofterm.%%) der derA,
61044
b7af255dd200 more abstract theory certificate, which is not necessarily the full theory;
wenzelm
parents: 61042
diff changeset
   791
           {cert = join_certificate2 (thAB, thA),
21646
c07b5b0e8492 thm/prf: separate official name vs. additional tags;
wenzelm
parents: 21576
diff changeset
   792
            tags = [],
16601
ee8eefade568 more efficient treatment of shyps and hyps (use ordered lists);
wenzelm
parents: 16425
diff changeset
   793
            maxidx = Int.max (maxA, maxidx),
ee8eefade568 more efficient treatment of shyps and hyps (use ordered lists);
wenzelm
parents: 16425
diff changeset
   794
            shyps = Sorts.union shypsA shyps,
ee8eefade568 more efficient treatment of shyps and hyps (use ordered lists);
wenzelm
parents: 16425
diff changeset
   795
            hyps = union_hyps hypsA hyps,
ee8eefade568 more efficient treatment of shyps and hyps (use ordered lists);
wenzelm
parents: 16425
diff changeset
   796
            tpairs = union_tpairs tpairsA tpairs,
28321
9f4499bf9384 type thm: fully internal derivation, no longer exported;
wenzelm
parents: 28290
diff changeset
   797
            prop = B})
16601
ee8eefade568 more efficient treatment of shyps and hyps (use ordered lists);
wenzelm
parents: 16425
diff changeset
   798
        else err ()
ee8eefade568 more efficient treatment of shyps and hyps (use ordered lists);
wenzelm
parents: 16425
diff changeset
   799
    | _ => err ()
ee8eefade568 more efficient treatment of shyps and hyps (use ordered lists);
wenzelm
parents: 16425
diff changeset
   800
  end;
250
9b5a069285ce extend_theory: changed type of "abbrs" arg;
wenzelm
parents: 242
diff changeset
   801
1220
3b0b8408fc5f MAJOR changes:
wenzelm
parents: 1195
diff changeset
   802
(*Forall introduction.  The Free or Var x must not be free in the hypotheses.
16656
18b0cb22057d ctyp: added 'sorts' field;
wenzelm
parents: 16601
diff changeset
   803
    [x]
18b0cb22057d ctyp: added 'sorts' field;
wenzelm
parents: 16601
diff changeset
   804
     :
18b0cb22057d ctyp: added 'sorts' field;
wenzelm
parents: 16601
diff changeset
   805
     A
18b0cb22057d ctyp: added 'sorts' field;
wenzelm
parents: 16601
diff changeset
   806
  ------
18b0cb22057d ctyp: added 'sorts' field;
wenzelm
parents: 16601
diff changeset
   807
  !!x. A
1220
3b0b8408fc5f MAJOR changes:
wenzelm
parents: 1195
diff changeset
   808
*)
16601
ee8eefade568 more efficient treatment of shyps and hyps (use ordered lists);
wenzelm
parents: 16425
diff changeset
   809
fun forall_intr
ee8eefade568 more efficient treatment of shyps and hyps (use ordered lists);
wenzelm
parents: 16425
diff changeset
   810
    (ct as Cterm {t = x, T, sorts, ...})
28321
9f4499bf9384 type thm: fully internal derivation, no longer exported;
wenzelm
parents: 28290
diff changeset
   811
    (th as Thm (der, {maxidx, shyps, hyps, tpairs, prop, ...})) =
16601
ee8eefade568 more efficient treatment of shyps and hyps (use ordered lists);
wenzelm
parents: 16425
diff changeset
   812
  let
ee8eefade568 more efficient treatment of shyps and hyps (use ordered lists);
wenzelm
parents: 16425
diff changeset
   813
    fun result a =
52487
48bc24467008 backout dedd7952a62c: static "proofs" value within theory prevents later inferencing with different configuration;
wenzelm
parents: 52470
diff changeset
   814
      Thm (deriv_rule1 (Proofterm.forall_intr_proof x a) der,
61044
b7af255dd200 more abstract theory certificate, which is not necessarily the full theory;
wenzelm
parents: 61042
diff changeset
   815
       {cert = join_certificate1 (ct, th),
21646
c07b5b0e8492 thm/prf: separate official name vs. additional tags;
wenzelm
parents: 21576
diff changeset
   816
        tags = [],
16601
ee8eefade568 more efficient treatment of shyps and hyps (use ordered lists);
wenzelm
parents: 16425
diff changeset
   817
        maxidx = maxidx,
ee8eefade568 more efficient treatment of shyps and hyps (use ordered lists);
wenzelm
parents: 16425
diff changeset
   818
        shyps = Sorts.union sorts shyps,
ee8eefade568 more efficient treatment of shyps and hyps (use ordered lists);
wenzelm
parents: 16425
diff changeset
   819
        hyps = hyps,
ee8eefade568 more efficient treatment of shyps and hyps (use ordered lists);
wenzelm
parents: 16425
diff changeset
   820
        tpairs = tpairs,
46217
7b19666f0e3d renamed Term.all to Logic.all_const, in accordance to HOLogic.all_const;
wenzelm
parents: 45443
diff changeset
   821
        prop = Logic.all_const T $ Abs (a, T, abstract_over (x, prop))});
21798
a1399df6ecf3 tuned error messages;
wenzelm
parents: 21646
diff changeset
   822
    fun check_occs a x ts =
16847
8fc160b12e73 invoke_oracle: do not keep theory value, but theory_ref;
wenzelm
parents: 16725
diff changeset
   823
      if exists (fn t => Logic.occs (x, t)) ts then
21798
a1399df6ecf3 tuned error messages;
wenzelm
parents: 21646
diff changeset
   824
        raise THM ("forall_intr: variable " ^ quote a ^ " free in assumptions", 0, [th])
16601
ee8eefade568 more efficient treatment of shyps and hyps (use ordered lists);
wenzelm
parents: 16425
diff changeset
   825
      else ();
ee8eefade568 more efficient treatment of shyps and hyps (use ordered lists);
wenzelm
parents: 16425
diff changeset
   826
  in
52788
da1fdbfebd39 type theory is purely value-oriented;
wenzelm
parents: 52709
diff changeset
   827
    (case x of
21798
a1399df6ecf3 tuned error messages;
wenzelm
parents: 21646
diff changeset
   828
      Free (a, _) => (check_occs a x hyps; check_occs a x (terms_of_tpairs tpairs); result a)
a1399df6ecf3 tuned error messages;
wenzelm
parents: 21646
diff changeset
   829
    | Var ((a, _), _) => (check_occs a x (terms_of_tpairs tpairs); result a)
52788
da1fdbfebd39 type theory is purely value-oriented;
wenzelm
parents: 52709
diff changeset
   830
    | _ => raise THM ("forall_intr: not a variable", 0, [th]))
0
a5a9c433f639 Initial revision
clasohm
parents:
diff changeset
   831
  end;
a5a9c433f639 Initial revision
clasohm
parents:
diff changeset
   832
1220
3b0b8408fc5f MAJOR changes:
wenzelm
parents: 1195
diff changeset
   833
(*Forall elimination
16656
18b0cb22057d ctyp: added 'sorts' field;
wenzelm
parents: 16601
diff changeset
   834
  !!x. A
1220
3b0b8408fc5f MAJOR changes:
wenzelm
parents: 1195
diff changeset
   835
  ------
3b0b8408fc5f MAJOR changes:
wenzelm
parents: 1195
diff changeset
   836
  A[t/x]
3b0b8408fc5f MAJOR changes:
wenzelm
parents: 1195
diff changeset
   837
*)
16601
ee8eefade568 more efficient treatment of shyps and hyps (use ordered lists);
wenzelm
parents: 16425
diff changeset
   838
fun forall_elim
ee8eefade568 more efficient treatment of shyps and hyps (use ordered lists);
wenzelm
parents: 16425
diff changeset
   839
    (ct as Cterm {t, T, maxidx = maxt, sorts, ...})
28321
9f4499bf9384 type thm: fully internal derivation, no longer exported;
wenzelm
parents: 28290
diff changeset
   840
    (th as Thm (der, {maxidx, shyps, hyps, tpairs, prop, ...})) =
16601
ee8eefade568 more efficient treatment of shyps and hyps (use ordered lists);
wenzelm
parents: 16425
diff changeset
   841
  (case prop of
56245
84fc7dfa3cd4 more qualified names;
wenzelm
parents: 56052
diff changeset
   842
    Const ("Pure.all", Type ("fun", [Type ("fun", [qary, _]), _])) $ A =>
16601
ee8eefade568 more efficient treatment of shyps and hyps (use ordered lists);
wenzelm
parents: 16425
diff changeset
   843
      if T <> qary then
ee8eefade568 more efficient treatment of shyps and hyps (use ordered lists);
wenzelm
parents: 16425
diff changeset
   844
        raise THM ("forall_elim: type mismatch", 0, [th])
ee8eefade568 more efficient treatment of shyps and hyps (use ordered lists);
wenzelm
parents: 16425
diff changeset
   845
      else
52487
48bc24467008 backout dedd7952a62c: static "proofs" value within theory prevents later inferencing with different configuration;
wenzelm
parents: 52470
diff changeset
   846
        Thm (deriv_rule1 (Proofterm.% o rpair (SOME t)) der,
61044
b7af255dd200 more abstract theory certificate, which is not necessarily the full theory;
wenzelm
parents: 61042
diff changeset
   847
         {cert = join_certificate1 (ct, th),
52487
48bc24467008 backout dedd7952a62c: static "proofs" value within theory prevents later inferencing with different configuration;
wenzelm
parents: 52470
diff changeset
   848
          tags = [],
48bc24467008 backout dedd7952a62c: static "proofs" value within theory prevents later inferencing with different configuration;
wenzelm
parents: 52470
diff changeset
   849
          maxidx = Int.max (maxidx, maxt),
48bc24467008 backout dedd7952a62c: static "proofs" value within theory prevents later inferencing with different configuration;
wenzelm
parents: 52470
diff changeset
   850
          shyps = Sorts.union sorts shyps,
48bc24467008 backout dedd7952a62c: static "proofs" value within theory prevents later inferencing with different configuration;
wenzelm
parents: 52470
diff changeset
   851
          hyps = hyps,
48bc24467008 backout dedd7952a62c: static "proofs" value within theory prevents later inferencing with different configuration;
wenzelm
parents: 52470
diff changeset
   852
          tpairs = tpairs,
48bc24467008 backout dedd7952a62c: static "proofs" value within theory prevents later inferencing with different configuration;
wenzelm
parents: 52470
diff changeset
   853
          prop = Term.betapply (A, t)})
16601
ee8eefade568 more efficient treatment of shyps and hyps (use ordered lists);
wenzelm
parents: 16425
diff changeset
   854
  | _ => raise THM ("forall_elim: not quantified", 0, [th]));
0
a5a9c433f639 Initial revision
clasohm
parents:
diff changeset
   855
a5a9c433f639 Initial revision
clasohm
parents:
diff changeset
   856
1220
3b0b8408fc5f MAJOR changes:
wenzelm
parents: 1195
diff changeset
   857
(* Equality *)
0
a5a9c433f639 Initial revision
clasohm
parents:
diff changeset
   858
16601
ee8eefade568 more efficient treatment of shyps and hyps (use ordered lists);
wenzelm
parents: 16425
diff changeset
   859
(*Reflexivity
ee8eefade568 more efficient treatment of shyps and hyps (use ordered lists);
wenzelm
parents: 16425
diff changeset
   860
  t == t
ee8eefade568 more efficient treatment of shyps and hyps (use ordered lists);
wenzelm
parents: 16425
diff changeset
   861
*)
61044
b7af255dd200 more abstract theory certificate, which is not necessarily the full theory;
wenzelm
parents: 61042
diff changeset
   862
fun reflexive (Cterm {cert, t, T = _, maxidx, sorts}) =
52487
48bc24467008 backout dedd7952a62c: static "proofs" value within theory prevents later inferencing with different configuration;
wenzelm
parents: 52470
diff changeset
   863
  Thm (deriv_rule0 Proofterm.reflexive,
61044
b7af255dd200 more abstract theory certificate, which is not necessarily the full theory;
wenzelm
parents: 61042
diff changeset
   864
   {cert = cert,
21646
c07b5b0e8492 thm/prf: separate official name vs. additional tags;
wenzelm
parents: 21576
diff changeset
   865
    tags = [],
16601
ee8eefade568 more efficient treatment of shyps and hyps (use ordered lists);
wenzelm
parents: 16425
diff changeset
   866
    maxidx = maxidx,
ee8eefade568 more efficient treatment of shyps and hyps (use ordered lists);
wenzelm
parents: 16425
diff changeset
   867
    shyps = sorts,
ee8eefade568 more efficient treatment of shyps and hyps (use ordered lists);
wenzelm
parents: 16425
diff changeset
   868
    hyps = [],
ee8eefade568 more efficient treatment of shyps and hyps (use ordered lists);
wenzelm
parents: 16425
diff changeset
   869
    tpairs = [],
28321
9f4499bf9384 type thm: fully internal derivation, no longer exported;
wenzelm
parents: 28290
diff changeset
   870
    prop = Logic.mk_equals (t, t)});
0
a5a9c433f639 Initial revision
clasohm
parents:
diff changeset
   871
16601
ee8eefade568 more efficient treatment of shyps and hyps (use ordered lists);
wenzelm
parents: 16425
diff changeset
   872
(*Symmetry
ee8eefade568 more efficient treatment of shyps and hyps (use ordered lists);
wenzelm
parents: 16425
diff changeset
   873
  t == u
ee8eefade568 more efficient treatment of shyps and hyps (use ordered lists);
wenzelm
parents: 16425
diff changeset
   874
  ------
ee8eefade568 more efficient treatment of shyps and hyps (use ordered lists);
wenzelm
parents: 16425
diff changeset
   875
  u == t
1220
3b0b8408fc5f MAJOR changes:
wenzelm
parents: 1195
diff changeset
   876
*)
61044
b7af255dd200 more abstract theory certificate, which is not necessarily the full theory;
wenzelm
parents: 61042
diff changeset
   877
fun symmetric (th as Thm (der, {cert, maxidx, shyps, hyps, tpairs, prop, ...})) =
16601
ee8eefade568 more efficient treatment of shyps and hyps (use ordered lists);
wenzelm
parents: 16425
diff changeset
   878
  (case prop of
56245
84fc7dfa3cd4 more qualified names;
wenzelm
parents: 56052
diff changeset
   879
    (eq as Const ("Pure.eq", _)) $ t $ u =>
52487
48bc24467008 backout dedd7952a62c: static "proofs" value within theory prevents later inferencing with different configuration;
wenzelm
parents: 52470
diff changeset
   880
      Thm (deriv_rule1 Proofterm.symmetric der,
61044
b7af255dd200 more abstract theory certificate, which is not necessarily the full theory;
wenzelm
parents: 61042
diff changeset
   881
       {cert = cert,
21646
c07b5b0e8492 thm/prf: separate official name vs. additional tags;
wenzelm
parents: 21576
diff changeset
   882
        tags = [],
16601
ee8eefade568 more efficient treatment of shyps and hyps (use ordered lists);
wenzelm
parents: 16425
diff changeset
   883
        maxidx = maxidx,
ee8eefade568 more efficient treatment of shyps and hyps (use ordered lists);
wenzelm
parents: 16425
diff changeset
   884
        shyps = shyps,
ee8eefade568 more efficient treatment of shyps and hyps (use ordered lists);
wenzelm
parents: 16425
diff changeset
   885
        hyps = hyps,
ee8eefade568 more efficient treatment of shyps and hyps (use ordered lists);
wenzelm
parents: 16425
diff changeset
   886
        tpairs = tpairs,
28321
9f4499bf9384 type thm: fully internal derivation, no longer exported;
wenzelm
parents: 28290
diff changeset
   887
        prop = eq $ u $ t})
16601
ee8eefade568 more efficient treatment of shyps and hyps (use ordered lists);
wenzelm
parents: 16425
diff changeset
   888
    | _ => raise THM ("symmetric", 0, [th]));
0
a5a9c433f639 Initial revision
clasohm
parents:
diff changeset
   889
16601
ee8eefade568 more efficient treatment of shyps and hyps (use ordered lists);
wenzelm
parents: 16425
diff changeset
   890
(*Transitivity
ee8eefade568 more efficient treatment of shyps and hyps (use ordered lists);
wenzelm
parents: 16425
diff changeset
   891
  t1 == u    u == t2
ee8eefade568 more efficient treatment of shyps and hyps (use ordered lists);
wenzelm
parents: 16425
diff changeset
   892
  ------------------
ee8eefade568 more efficient treatment of shyps and hyps (use ordered lists);
wenzelm
parents: 16425
diff changeset
   893
       t1 == t2
1220
3b0b8408fc5f MAJOR changes:
wenzelm
parents: 1195
diff changeset
   894
*)
0
a5a9c433f639 Initial revision
clasohm
parents:
diff changeset
   895
fun transitive th1 th2 =
16601
ee8eefade568 more efficient treatment of shyps and hyps (use ordered lists);
wenzelm
parents: 16425
diff changeset
   896
  let
28321
9f4499bf9384 type thm: fully internal derivation, no longer exported;
wenzelm
parents: 28290
diff changeset
   897
    val Thm (der1, {maxidx = max1, hyps = hyps1, shyps = shyps1, tpairs = tpairs1,
9f4499bf9384 type thm: fully internal derivation, no longer exported;
wenzelm
parents: 28290
diff changeset
   898
      prop = prop1, ...}) = th1
9f4499bf9384 type thm: fully internal derivation, no longer exported;
wenzelm
parents: 28290
diff changeset
   899
    and Thm (der2, {maxidx = max2, hyps = hyps2, shyps = shyps2, tpairs = tpairs2,
9f4499bf9384 type thm: fully internal derivation, no longer exported;
wenzelm
parents: 28290
diff changeset
   900
      prop = prop2, ...}) = th2;
16601
ee8eefade568 more efficient treatment of shyps and hyps (use ordered lists);
wenzelm
parents: 16425
diff changeset
   901
    fun err msg = raise THM ("transitive: " ^ msg, 0, [th1, th2]);
ee8eefade568 more efficient treatment of shyps and hyps (use ordered lists);
wenzelm
parents: 16425
diff changeset
   902
  in
ee8eefade568 more efficient treatment of shyps and hyps (use ordered lists);
wenzelm
parents: 16425
diff changeset
   903
    case (prop1, prop2) of
56245
84fc7dfa3cd4 more qualified names;
wenzelm
parents: 56052
diff changeset
   904
      ((eq as Const ("Pure.eq", Type (_, [T, _]))) $ t1 $ u, Const ("Pure.eq", _) $ u' $ t2) =>
16601
ee8eefade568 more efficient treatment of shyps and hyps (use ordered lists);
wenzelm
parents: 16425
diff changeset
   905
        if not (u aconv u') then err "middle term"
ee8eefade568 more efficient treatment of shyps and hyps (use ordered lists);
wenzelm
parents: 16425
diff changeset
   906
        else
52487
48bc24467008 backout dedd7952a62c: static "proofs" value within theory prevents later inferencing with different configuration;
wenzelm
parents: 52470
diff changeset
   907
          Thm (deriv_rule2 (Proofterm.transitive u T) der1 der2,
61044
b7af255dd200 more abstract theory certificate, which is not necessarily the full theory;
wenzelm
parents: 61042
diff changeset
   908
           {cert = join_certificate2 (th1, th2),
21646
c07b5b0e8492 thm/prf: separate official name vs. additional tags;
wenzelm
parents: 21576
diff changeset
   909
            tags = [],
16601
ee8eefade568 more efficient treatment of shyps and hyps (use ordered lists);
wenzelm
parents: 16425
diff changeset
   910
            maxidx = Int.max (max1, max2),
ee8eefade568 more efficient treatment of shyps and hyps (use ordered lists);
wenzelm
parents: 16425
diff changeset
   911
            shyps = Sorts.union shyps1 shyps2,
ee8eefade568 more efficient treatment of shyps and hyps (use ordered lists);
wenzelm
parents: 16425
diff changeset
   912
            hyps = union_hyps hyps1 hyps2,
ee8eefade568 more efficient treatment of shyps and hyps (use ordered lists);
wenzelm
parents: 16425
diff changeset
   913
            tpairs = union_tpairs tpairs1 tpairs2,
28321
9f4499bf9384 type thm: fully internal derivation, no longer exported;
wenzelm
parents: 28290
diff changeset
   914
            prop = eq $ t1 $ t2})
16601
ee8eefade568 more efficient treatment of shyps and hyps (use ordered lists);
wenzelm
parents: 16425
diff changeset
   915
     | _ =>  err "premises"
0
a5a9c433f639 Initial revision
clasohm
parents:
diff changeset
   916
  end;
a5a9c433f639 Initial revision
clasohm
parents:
diff changeset
   917
16601
ee8eefade568 more efficient treatment of shyps and hyps (use ordered lists);
wenzelm
parents: 16425
diff changeset
   918
(*Beta-conversion
16656
18b0cb22057d ctyp: added 'sorts' field;
wenzelm
parents: 16601
diff changeset
   919
  (%x. t)(u) == t[u/x]
16601
ee8eefade568 more efficient treatment of shyps and hyps (use ordered lists);
wenzelm
parents: 16425
diff changeset
   920
  fully beta-reduces the term if full = true
10416
5b33e732e459 - Moved rewriting functions to meta_simplifier.ML
berghofe
parents: 10348
diff changeset
   921
*)
61044
b7af255dd200 more abstract theory certificate, which is not necessarily the full theory;
wenzelm
parents: 61042
diff changeset
   922
fun beta_conversion full (Cterm {cert, t, T = _, maxidx, sorts}) =
16601
ee8eefade568 more efficient treatment of shyps and hyps (use ordered lists);
wenzelm
parents: 16425
diff changeset
   923
  let val t' =
ee8eefade568 more efficient treatment of shyps and hyps (use ordered lists);
wenzelm
parents: 16425
diff changeset
   924
    if full then Envir.beta_norm t
ee8eefade568 more efficient treatment of shyps and hyps (use ordered lists);
wenzelm
parents: 16425
diff changeset
   925
    else
ee8eefade568 more efficient treatment of shyps and hyps (use ordered lists);
wenzelm
parents: 16425
diff changeset
   926
      (case t of Abs (_, _, bodt) $ u => subst_bound (u, bodt)
ee8eefade568 more efficient treatment of shyps and hyps (use ordered lists);
wenzelm
parents: 16425
diff changeset
   927
      | _ => raise THM ("beta_conversion: not a redex", 0, []));
ee8eefade568 more efficient treatment of shyps and hyps (use ordered lists);
wenzelm
parents: 16425
diff changeset
   928
  in
52487
48bc24467008 backout dedd7952a62c: static "proofs" value within theory prevents later inferencing with different configuration;
wenzelm
parents: 52470
diff changeset
   929
    Thm (deriv_rule0 Proofterm.reflexive,
61044
b7af255dd200 more abstract theory certificate, which is not necessarily the full theory;
wenzelm
parents: 61042
diff changeset
   930
     {cert = cert,
21646
c07b5b0e8492 thm/prf: separate official name vs. additional tags;
wenzelm
parents: 21576
diff changeset
   931
      tags = [],
16601
ee8eefade568 more efficient treatment of shyps and hyps (use ordered lists);
wenzelm
parents: 16425
diff changeset
   932
      maxidx = maxidx,
ee8eefade568 more efficient treatment of shyps and hyps (use ordered lists);
wenzelm
parents: 16425
diff changeset
   933
      shyps = sorts,
ee8eefade568 more efficient treatment of shyps and hyps (use ordered lists);
wenzelm
parents: 16425
diff changeset
   934
      hyps = [],
ee8eefade568 more efficient treatment of shyps and hyps (use ordered lists);
wenzelm
parents: 16425
diff changeset
   935
      tpairs = [],
28321
9f4499bf9384 type thm: fully internal derivation, no longer exported;
wenzelm
parents: 28290
diff changeset
   936
      prop = Logic.mk_equals (t, t')})
10416
5b33e732e459 - Moved rewriting functions to meta_simplifier.ML
berghofe
parents: 10348
diff changeset
   937
  end;
5b33e732e459 - Moved rewriting functions to meta_simplifier.ML
berghofe
parents: 10348
diff changeset
   938
61044
b7af255dd200 more abstract theory certificate, which is not necessarily the full theory;
wenzelm
parents: 61042
diff changeset
   939
fun eta_conversion (Cterm {cert, t, T = _, maxidx, sorts}) =
52487
48bc24467008 backout dedd7952a62c: static "proofs" value within theory prevents later inferencing with different configuration;
wenzelm
parents: 52470
diff changeset
   940
  Thm (deriv_rule0 Proofterm.reflexive,
61044
b7af255dd200 more abstract theory certificate, which is not necessarily the full theory;
wenzelm
parents: 61042
diff changeset
   941
   {cert = cert,
21646
c07b5b0e8492 thm/prf: separate official name vs. additional tags;
wenzelm
parents: 21576
diff changeset
   942
    tags = [],
16601
ee8eefade568 more efficient treatment of shyps and hyps (use ordered lists);
wenzelm
parents: 16425
diff changeset
   943
    maxidx = maxidx,
ee8eefade568 more efficient treatment of shyps and hyps (use ordered lists);
wenzelm
parents: 16425
diff changeset
   944
    shyps = sorts,
ee8eefade568 more efficient treatment of shyps and hyps (use ordered lists);
wenzelm
parents: 16425
diff changeset
   945
    hyps = [],
ee8eefade568 more efficient treatment of shyps and hyps (use ordered lists);
wenzelm
parents: 16425
diff changeset
   946
    tpairs = [],
28321
9f4499bf9384 type thm: fully internal derivation, no longer exported;
wenzelm
parents: 28290
diff changeset
   947
    prop = Logic.mk_equals (t, Envir.eta_contract t)});
0
a5a9c433f639 Initial revision
clasohm
parents:
diff changeset
   948
61044
b7af255dd200 more abstract theory certificate, which is not necessarily the full theory;
wenzelm
parents: 61042
diff changeset
   949
fun eta_long_conversion (Cterm {cert, t, T = _, maxidx, sorts}) =
52487
48bc24467008 backout dedd7952a62c: static "proofs" value within theory prevents later inferencing with different configuration;
wenzelm
parents: 52470
diff changeset
   950
  Thm (deriv_rule0 Proofterm.reflexive,
61044
b7af255dd200 more abstract theory certificate, which is not necessarily the full theory;
wenzelm
parents: 61042
diff changeset
   951
   {cert = cert,
23493
a056eefb76e5 added eta_long_conversion;
wenzelm
parents: 23296
diff changeset
   952
    tags = [],
a056eefb76e5 added eta_long_conversion;
wenzelm
parents: 23296
diff changeset
   953
    maxidx = maxidx,
a056eefb76e5 added eta_long_conversion;
wenzelm
parents: 23296
diff changeset
   954
    shyps = sorts,
a056eefb76e5 added eta_long_conversion;
wenzelm
parents: 23296
diff changeset
   955
    hyps = [],
a056eefb76e5 added eta_long_conversion;
wenzelm
parents: 23296
diff changeset
   956
    tpairs = [],
52131
366fa32ee2a3 tuned signature;
wenzelm
parents: 51604
diff changeset
   957
    prop = Logic.mk_equals (t, Envir.eta_long [] t)});
23493
a056eefb76e5 added eta_long_conversion;
wenzelm
parents: 23296
diff changeset
   958
0
a5a9c433f639 Initial revision
clasohm
parents:
diff changeset
   959
(*The abstraction rule.  The Free or Var x must not be free in the hypotheses.
a5a9c433f639 Initial revision
clasohm
parents:
diff changeset
   960
  The bound variable will be named "a" (since x will be something like x320)
16601
ee8eefade568 more efficient treatment of shyps and hyps (use ordered lists);
wenzelm
parents: 16425
diff changeset
   961
      t == u
ee8eefade568 more efficient treatment of shyps and hyps (use ordered lists);
wenzelm
parents: 16425
diff changeset
   962
  --------------
ee8eefade568 more efficient treatment of shyps and hyps (use ordered lists);
wenzelm
parents: 16425
diff changeset
   963
  %x. t == %x. u
1220
3b0b8408fc5f MAJOR changes:
wenzelm
parents: 1195
diff changeset
   964
*)
16601
ee8eefade568 more efficient treatment of shyps and hyps (use ordered lists);
wenzelm
parents: 16425
diff changeset
   965
fun abstract_rule a
ee8eefade568 more efficient treatment of shyps and hyps (use ordered lists);
wenzelm
parents: 16425
diff changeset
   966
    (Cterm {t = x, T, sorts, ...})
61044
b7af255dd200 more abstract theory certificate, which is not necessarily the full theory;
wenzelm
parents: 61042
diff changeset
   967
    (th as Thm (der, {cert, maxidx, hyps, shyps, tpairs, prop, ...})) =
16601
ee8eefade568 more efficient treatment of shyps and hyps (use ordered lists);
wenzelm
parents: 16425
diff changeset
   968
  let
ee8eefade568 more efficient treatment of shyps and hyps (use ordered lists);
wenzelm
parents: 16425
diff changeset
   969
    val (t, u) = Logic.dest_equals prop
ee8eefade568 more efficient treatment of shyps and hyps (use ordered lists);
wenzelm
parents: 16425
diff changeset
   970
      handle TERM _ => raise THM ("abstract_rule: premise not an equality", 0, [th]);
ee8eefade568 more efficient treatment of shyps and hyps (use ordered lists);
wenzelm
parents: 16425
diff changeset
   971
    val result =
52487
48bc24467008 backout dedd7952a62c: static "proofs" value within theory prevents later inferencing with different configuration;
wenzelm
parents: 52470
diff changeset
   972
      Thm (deriv_rule1 (Proofterm.abstract_rule x a) der,
61044
b7af255dd200 more abstract theory certificate, which is not necessarily the full theory;
wenzelm
parents: 61042
diff changeset
   973
       {cert = cert,
21646
c07b5b0e8492 thm/prf: separate official name vs. additional tags;
wenzelm
parents: 21576
diff changeset
   974
        tags = [],
16601
ee8eefade568 more efficient treatment of shyps and hyps (use ordered lists);
wenzelm
parents: 16425
diff changeset
   975
        maxidx = maxidx,
ee8eefade568 more efficient treatment of shyps and hyps (use ordered lists);
wenzelm
parents: 16425
diff changeset
   976
        shyps = Sorts.union sorts shyps,
ee8eefade568 more efficient treatment of shyps and hyps (use ordered lists);
wenzelm
parents: 16425
diff changeset
   977
        hyps = hyps,
ee8eefade568 more efficient treatment of shyps and hyps (use ordered lists);
wenzelm
parents: 16425
diff changeset
   978
        tpairs = tpairs,
ee8eefade568 more efficient treatment of shyps and hyps (use ordered lists);
wenzelm
parents: 16425
diff changeset
   979
        prop = Logic.mk_equals
28321
9f4499bf9384 type thm: fully internal derivation, no longer exported;
wenzelm
parents: 28290
diff changeset
   980
          (Abs (a, T, abstract_over (x, t)), Abs (a, T, abstract_over (x, u)))});
21798
a1399df6ecf3 tuned error messages;
wenzelm
parents: 21646
diff changeset
   981
    fun check_occs a x ts =
16847
8fc160b12e73 invoke_oracle: do not keep theory value, but theory_ref;
wenzelm
parents: 16725
diff changeset
   982
      if exists (fn t => Logic.occs (x, t)) ts then
21798
a1399df6ecf3 tuned error messages;
wenzelm
parents: 21646
diff changeset
   983
        raise THM ("abstract_rule: variable " ^ quote a ^ " free in assumptions", 0, [th])
16601
ee8eefade568 more efficient treatment of shyps and hyps (use ordered lists);
wenzelm
parents: 16425
diff changeset
   984
      else ();
ee8eefade568 more efficient treatment of shyps and hyps (use ordered lists);
wenzelm
parents: 16425
diff changeset
   985
  in
52788
da1fdbfebd39 type theory is purely value-oriented;
wenzelm
parents: 52709
diff changeset
   986
    (case x of
21798
a1399df6ecf3 tuned error messages;
wenzelm
parents: 21646
diff changeset
   987
      Free (a, _) => (check_occs a x hyps; check_occs a x (terms_of_tpairs tpairs); result)
a1399df6ecf3 tuned error messages;
wenzelm
parents: 21646
diff changeset
   988
    | Var ((a, _), _) => (check_occs a x (terms_of_tpairs tpairs); result)
52788
da1fdbfebd39 type theory is purely value-oriented;
wenzelm
parents: 52709
diff changeset
   989
    | _ => raise THM ("abstract_rule: not a variable", 0, [th]))
0
a5a9c433f639 Initial revision
clasohm
parents:
diff changeset
   990
  end;
a5a9c433f639 Initial revision
clasohm
parents:
diff changeset
   991
a5a9c433f639 Initial revision
clasohm
parents:
diff changeset
   992
(*The combination rule
3529
31186470665f tuned warning;
wenzelm
parents: 3410
diff changeset
   993
  f == g  t == u
31186470665f tuned warning;
wenzelm
parents: 3410
diff changeset
   994
  --------------
16601
ee8eefade568 more efficient treatment of shyps and hyps (use ordered lists);
wenzelm
parents: 16425
diff changeset
   995
    f t == g u
1220
3b0b8408fc5f MAJOR changes:
wenzelm
parents: 1195
diff changeset
   996
*)
0
a5a9c433f639 Initial revision
clasohm
parents:
diff changeset
   997
fun combination th1 th2 =
16601
ee8eefade568 more efficient treatment of shyps and hyps (use ordered lists);
wenzelm
parents: 16425
diff changeset
   998
  let
28321
9f4499bf9384 type thm: fully internal derivation, no longer exported;
wenzelm
parents: 28290
diff changeset
   999
    val Thm (der1, {maxidx = max1, shyps = shyps1, hyps = hyps1, tpairs = tpairs1,
9f4499bf9384 type thm: fully internal derivation, no longer exported;
wenzelm
parents: 28290
diff changeset
  1000
      prop = prop1, ...}) = th1
9f4499bf9384 type thm: fully internal derivation, no longer exported;
wenzelm
parents: 28290
diff changeset
  1001
    and Thm (der2, {maxidx = max2, shyps = shyps2, hyps = hyps2, tpairs = tpairs2,
9f4499bf9384 type thm: fully internal derivation, no longer exported;
wenzelm
parents: 28290
diff changeset
  1002
      prop = prop2, ...}) = th2;
16601
ee8eefade568 more efficient treatment of shyps and hyps (use ordered lists);
wenzelm
parents: 16425
diff changeset
  1003
    fun chktypes fT tT =
ee8eefade568 more efficient treatment of shyps and hyps (use ordered lists);
wenzelm
parents: 16425
diff changeset
  1004
      (case fT of
32784
1a5dde5079ac eliminated redundant bindings;
wenzelm
parents: 32726
diff changeset
  1005
        Type ("fun", [T1, _]) =>
16601
ee8eefade568 more efficient treatment of shyps and hyps (use ordered lists);
wenzelm
parents: 16425
diff changeset
  1006
          if T1 <> tT then
ee8eefade568 more efficient treatment of shyps and hyps (use ordered lists);
wenzelm
parents: 16425
diff changeset
  1007
            raise THM ("combination: types", 0, [th1, th2])
ee8eefade568 more efficient treatment of shyps and hyps (use ordered lists);
wenzelm
parents: 16425
diff changeset
  1008
          else ()
ee8eefade568 more efficient treatment of shyps and hyps (use ordered lists);
wenzelm
parents: 16425
diff changeset
  1009
      | _ => raise THM ("combination: not function type", 0, [th1, th2]));
ee8eefade568 more efficient treatment of shyps and hyps (use ordered lists);
wenzelm
parents: 16425
diff changeset
  1010
  in
52788
da1fdbfebd39 type theory is purely value-oriented;
wenzelm
parents: 52709
diff changeset
  1011
    (case (prop1, prop2) of
56245
84fc7dfa3cd4 more qualified names;
wenzelm
parents: 56052
diff changeset
  1012
      (Const ("Pure.eq", Type ("fun", [fT, _])) $ f $ g,
84fc7dfa3cd4 more qualified names;
wenzelm
parents: 56052
diff changeset
  1013
       Const ("Pure.eq", Type ("fun", [tT, _])) $ t $ u) =>
16601
ee8eefade568 more efficient treatment of shyps and hyps (use ordered lists);
wenzelm
parents: 16425
diff changeset
  1014
        (chktypes fT tT;
52487
48bc24467008 backout dedd7952a62c: static "proofs" value within theory prevents later inferencing with different configuration;
wenzelm
parents: 52470
diff changeset
  1015
          Thm (deriv_rule2 (Proofterm.combination f g t u fT) der1 der2,
61044
b7af255dd200 more abstract theory certificate, which is not necessarily the full theory;
wenzelm
parents: 61042
diff changeset
  1016
           {cert = join_certificate2 (th1, th2),
21646
c07b5b0e8492 thm/prf: separate official name vs. additional tags;
wenzelm
parents: 21576
diff changeset
  1017
            tags = [],
16601
ee8eefade568 more efficient treatment of shyps and hyps (use ordered lists);
wenzelm
parents: 16425
diff changeset
  1018
            maxidx = Int.max (max1, max2),
ee8eefade568 more efficient treatment of shyps and hyps (use ordered lists);
wenzelm
parents: 16425
diff changeset
  1019
            shyps = Sorts.union shyps1 shyps2,
ee8eefade568 more efficient treatment of shyps and hyps (use ordered lists);
wenzelm
parents: 16425
diff changeset
  1020
            hyps = union_hyps hyps1 hyps2,
ee8eefade568 more efficient treatment of shyps and hyps (use ordered lists);
wenzelm
parents: 16425
diff changeset
  1021
            tpairs = union_tpairs tpairs1 tpairs2,
28321
9f4499bf9384 type thm: fully internal derivation, no longer exported;
wenzelm
parents: 28290
diff changeset
  1022
            prop = Logic.mk_equals (f $ t, g $ u)}))
52788
da1fdbfebd39 type theory is purely value-oriented;
wenzelm
parents: 52709
diff changeset
  1023
     | _ => raise THM ("combination: premises", 0, [th1, th2]))
0
a5a9c433f639 Initial revision
clasohm
parents:
diff changeset
  1024
  end;
a5a9c433f639 Initial revision
clasohm
parents:
diff changeset
  1025
16601
ee8eefade568 more efficient treatment of shyps and hyps (use ordered lists);
wenzelm
parents: 16425
diff changeset
  1026
(*Equality introduction
3529
31186470665f tuned warning;
wenzelm
parents: 3410
diff changeset
  1027
  A ==> B  B ==> A
31186470665f tuned warning;
wenzelm
parents: 3410
diff changeset
  1028
  ----------------
31186470665f tuned warning;
wenzelm
parents: 3410
diff changeset
  1029
       A == B
1220
3b0b8408fc5f MAJOR changes:
wenzelm
parents: 1195
diff changeset
  1030
*)
0
a5a9c433f639 Initial revision
clasohm
parents:
diff changeset
  1031
fun equal_intr th1 th2 =
16601
ee8eefade568 more efficient treatment of shyps and hyps (use ordered lists);
wenzelm
parents: 16425
diff changeset
  1032
  let
28321
9f4499bf9384 type thm: fully internal derivation, no longer exported;
wenzelm
parents: 28290
diff changeset
  1033
    val Thm (der1, {maxidx = max1, shyps = shyps1, hyps = hyps1, tpairs = tpairs1,
9f4499bf9384 type thm: fully internal derivation, no longer exported;
wenzelm
parents: 28290
diff changeset
  1034
      prop = prop1, ...}) = th1
9f4499bf9384 type thm: fully internal derivation, no longer exported;
wenzelm
parents: 28290
diff changeset
  1035
    and Thm (der2, {maxidx = max2, shyps = shyps2, hyps = hyps2, tpairs = tpairs2,
9f4499bf9384 type thm: fully internal derivation, no longer exported;
wenzelm
parents: 28290
diff changeset
  1036
      prop = prop2, ...}) = th2;
16601
ee8eefade568 more efficient treatment of shyps and hyps (use ordered lists);
wenzelm
parents: 16425
diff changeset
  1037
    fun err msg = raise THM ("equal_intr: " ^ msg, 0, [th1, th2]);
ee8eefade568 more efficient treatment of shyps and hyps (use ordered lists);
wenzelm
parents: 16425
diff changeset
  1038
  in
52788
da1fdbfebd39 type theory is purely value-oriented;
wenzelm
parents: 52709
diff changeset
  1039
    (case (prop1, prop2) of
56245
84fc7dfa3cd4 more qualified names;
wenzelm
parents: 56052
diff changeset
  1040
      (Const("Pure.imp", _) $ A $ B, Const("Pure.imp", _) $ B' $ A') =>
16601
ee8eefade568 more efficient treatment of shyps and hyps (use ordered lists);
wenzelm
parents: 16425
diff changeset
  1041
        if A aconv A' andalso B aconv B' then
52487
48bc24467008 backout dedd7952a62c: static "proofs" value within theory prevents later inferencing with different configuration;
wenzelm
parents: 52470
diff changeset
  1042
          Thm (deriv_rule2 (Proofterm.equal_intr A B) der1 der2,
61044
b7af255dd200 more abstract theory certificate, which is not necessarily the full theory;
wenzelm
parents: 61042
diff changeset
  1043
           {cert = join_certificate2 (th1, th2),
21646
c07b5b0e8492 thm/prf: separate official name vs. additional tags;
wenzelm
parents: 21576
diff changeset
  1044
            tags = [],
16601
ee8eefade568 more efficient treatment of shyps and hyps (use ordered lists);
wenzelm
parents: 16425
diff changeset
  1045
            maxidx = Int.max (max1, max2),
ee8eefade568 more efficient treatment of shyps and hyps (use ordered lists);
wenzelm
parents: 16425
diff changeset
  1046
            shyps = Sorts.union shyps1 shyps2,
ee8eefade568 more efficient treatment of shyps and hyps (use ordered lists);
wenzelm
parents: 16425
diff changeset
  1047
            hyps = union_hyps hyps1 hyps2,
ee8eefade568 more efficient treatment of shyps and hyps (use ordered lists);
wenzelm
parents: 16425
diff changeset
  1048
            tpairs = union_tpairs tpairs1 tpairs2,
28321
9f4499bf9384 type thm: fully internal derivation, no longer exported;
wenzelm
parents: 28290
diff changeset
  1049
            prop = Logic.mk_equals (A, B)})
16601
ee8eefade568 more efficient treatment of shyps and hyps (use ordered lists);
wenzelm
parents: 16425
diff changeset
  1050
        else err "not equal"
52788
da1fdbfebd39 type theory is purely value-oriented;
wenzelm
parents: 52709
diff changeset
  1051
    | _ =>  err "premises")
1529
09d9ad015269 Addition of proof objects
paulson
parents: 1517
diff changeset
  1052
  end;
09d9ad015269 Addition of proof objects
paulson
parents: 1517
diff changeset
  1053
09d9ad015269 Addition of proof objects
paulson
parents: 1517
diff changeset
  1054
(*The equal propositions rule
3529
31186470665f tuned warning;
wenzelm
parents: 3410
diff changeset
  1055
  A == B  A
1529
09d9ad015269 Addition of proof objects
paulson
parents: 1517
diff changeset
  1056
  ---------
09d9ad015269 Addition of proof objects
paulson
parents: 1517
diff changeset
  1057
      B
09d9ad015269 Addition of proof objects
paulson
parents: 1517
diff changeset
  1058
*)
09d9ad015269 Addition of proof objects
paulson
parents: 1517
diff changeset
  1059
fun equal_elim th1 th2 =
16601
ee8eefade568 more efficient treatment of shyps and hyps (use ordered lists);
wenzelm
parents: 16425
diff changeset
  1060
  let
28321
9f4499bf9384 type thm: fully internal derivation, no longer exported;
wenzelm
parents: 28290
diff changeset
  1061
    val Thm (der1, {maxidx = max1, shyps = shyps1, hyps = hyps1,
9f4499bf9384 type thm: fully internal derivation, no longer exported;
wenzelm
parents: 28290
diff changeset
  1062
      tpairs = tpairs1, prop = prop1, ...}) = th1
9f4499bf9384 type thm: fully internal derivation, no longer exported;
wenzelm
parents: 28290
diff changeset
  1063
    and Thm (der2, {maxidx = max2, shyps = shyps2, hyps = hyps2,
9f4499bf9384 type thm: fully internal derivation, no longer exported;
wenzelm
parents: 28290
diff changeset
  1064
      tpairs = tpairs2, prop = prop2, ...}) = th2;
16601
ee8eefade568 more efficient treatment of shyps and hyps (use ordered lists);
wenzelm
parents: 16425
diff changeset
  1065
    fun err msg = raise THM ("equal_elim: " ^ msg, 0, [th1, th2]);
ee8eefade568 more efficient treatment of shyps and hyps (use ordered lists);
wenzelm
parents: 16425
diff changeset
  1066
  in
52788
da1fdbfebd39 type theory is purely value-oriented;
wenzelm
parents: 52709
diff changeset
  1067
    (case prop1 of
56245
84fc7dfa3cd4 more qualified names;
wenzelm
parents: 56052
diff changeset
  1068
      Const ("Pure.eq", _) $ A $ B =>
16601
ee8eefade568 more efficient treatment of shyps and hyps (use ordered lists);
wenzelm
parents: 16425
diff changeset
  1069
        if prop2 aconv A then
52487
48bc24467008 backout dedd7952a62c: static "proofs" value within theory prevents later inferencing with different configuration;
wenzelm
parents: 52470
diff changeset
  1070
          Thm (deriv_rule2 (Proofterm.equal_elim A B) der1 der2,
61044
b7af255dd200 more abstract theory certificate, which is not necessarily the full theory;
wenzelm
parents: 61042
diff changeset
  1071
           {cert = join_certificate2 (th1, th2),
21646
c07b5b0e8492 thm/prf: separate official name vs. additional tags;
wenzelm
parents: 21576
diff changeset
  1072
            tags = [],
16601
ee8eefade568 more efficient treatment of shyps and hyps (use ordered lists);
wenzelm
parents: 16425
diff changeset
  1073
            maxidx = Int.max (max1, max2),
ee8eefade568 more efficient treatment of shyps and hyps (use ordered lists);
wenzelm
parents: 16425
diff changeset
  1074
            shyps = Sorts.union shyps1 shyps2,
ee8eefade568 more efficient treatment of shyps and hyps (use ordered lists);
wenzelm
parents: 16425
diff changeset
  1075
            hyps = union_hyps hyps1 hyps2,
ee8eefade568 more efficient treatment of shyps and hyps (use ordered lists);
wenzelm
parents: 16425
diff changeset
  1076
            tpairs = union_tpairs tpairs1 tpairs2,
28321
9f4499bf9384 type thm: fully internal derivation, no longer exported;
wenzelm
parents: 28290
diff changeset
  1077
            prop = B})
16601
ee8eefade568 more efficient treatment of shyps and hyps (use ordered lists);
wenzelm
parents: 16425
diff changeset
  1078
        else err "not equal"
52789
wenzelm
parents: 52788
diff changeset
  1079
     | _ =>  err "major premise")
1529
09d9ad015269 Addition of proof objects
paulson
parents: 1517
diff changeset
  1080
  end;
0
a5a9c433f639 Initial revision
clasohm
parents:
diff changeset
  1081
1220
3b0b8408fc5f MAJOR changes:
wenzelm
parents: 1195
diff changeset
  1082
3b0b8408fc5f MAJOR changes:
wenzelm
parents: 1195
diff changeset
  1083
0
a5a9c433f639 Initial revision
clasohm
parents:
diff changeset
  1084
(**** Derived rules ****)
a5a9c433f639 Initial revision
clasohm
parents:
diff changeset
  1085
16601
ee8eefade568 more efficient treatment of shyps and hyps (use ordered lists);
wenzelm
parents: 16425
diff changeset
  1086
(*Smash unifies the list of term pairs leaving no flex-flex pairs.
24143
90a9a6fe0d01 replaced Theory.self_ref by Theory.check_thy, which now produces a checked ref;
wenzelm
parents: 23781
diff changeset
  1087
  Instantiates the theorem and deletes trivial tpairs.  Resulting
90a9a6fe0d01 replaced Theory.self_ref by Theory.check_thy, which now produces a checked ref;
wenzelm
parents: 23781
diff changeset
  1088
  sequence may contain multiple elements if the tpairs are not all
90a9a6fe0d01 replaced Theory.self_ref by Theory.check_thy, which now produces a checked ref;
wenzelm
parents: 23781
diff changeset
  1089
  flex-flex.*)
61044
b7af255dd200 more abstract theory certificate, which is not necessarily the full theory;
wenzelm
parents: 61042
diff changeset
  1090
fun flexflex_rule opt_ctxt (th as Thm (der, {cert, maxidx, shyps, hyps, tpairs, prop, ...})) =
64981
ea6199b23dfa proper background certificate from make_context, which can be a super-theory of the direct join (amending d07464875dd4);
wenzelm
parents: 64574
diff changeset
  1091
  let val (context, cert') = make_context_certificate [th] opt_ctxt cert in
ea6199b23dfa proper background certificate from make_context, which can be a super-theory of the direct join (amending d07464875dd4);
wenzelm
parents: 64574
diff changeset
  1092
    Unify.smash_unifiers context tpairs (Envir.empty maxidx)
ea6199b23dfa proper background certificate from make_context, which can be a super-theory of the direct join (amending d07464875dd4);
wenzelm
parents: 64574
diff changeset
  1093
    |> Seq.map (fn env =>
ea6199b23dfa proper background certificate from make_context, which can be a super-theory of the direct join (amending d07464875dd4);
wenzelm
parents: 64574
diff changeset
  1094
        if Envir.is_empty env then th
ea6199b23dfa proper background certificate from make_context, which can be a super-theory of the direct join (amending d07464875dd4);
wenzelm
parents: 64574
diff changeset
  1095
        else
ea6199b23dfa proper background certificate from make_context, which can be a super-theory of the direct join (amending d07464875dd4);
wenzelm
parents: 64574
diff changeset
  1096
          let
ea6199b23dfa proper background certificate from make_context, which can be a super-theory of the direct join (amending d07464875dd4);
wenzelm
parents: 64574
diff changeset
  1097
            val tpairs' = tpairs |> map (apply2 (Envir.norm_term env))
ea6199b23dfa proper background certificate from make_context, which can be a super-theory of the direct join (amending d07464875dd4);
wenzelm
parents: 64574
diff changeset
  1098
              (*remove trivial tpairs, of the form t==t*)
ea6199b23dfa proper background certificate from make_context, which can be a super-theory of the direct join (amending d07464875dd4);
wenzelm
parents: 64574
diff changeset
  1099
              |> filter_out (op aconv);
ea6199b23dfa proper background certificate from make_context, which can be a super-theory of the direct join (amending d07464875dd4);
wenzelm
parents: 64574
diff changeset
  1100
            val der' = deriv_rule1 (Proofterm.norm_proof' env) der;
ea6199b23dfa proper background certificate from make_context, which can be a super-theory of the direct join (amending d07464875dd4);
wenzelm
parents: 64574
diff changeset
  1101
            val prop' = Envir.norm_term env prop;
ea6199b23dfa proper background certificate from make_context, which can be a super-theory of the direct join (amending d07464875dd4);
wenzelm
parents: 64574
diff changeset
  1102
            val maxidx = maxidx_tpairs tpairs' (maxidx_of_term prop');
ea6199b23dfa proper background certificate from make_context, which can be a super-theory of the direct join (amending d07464875dd4);
wenzelm
parents: 64574
diff changeset
  1103
            val shyps = Envir.insert_sorts env shyps;
ea6199b23dfa proper background certificate from make_context, which can be a super-theory of the direct join (amending d07464875dd4);
wenzelm
parents: 64574
diff changeset
  1104
          in
ea6199b23dfa proper background certificate from make_context, which can be a super-theory of the direct join (amending d07464875dd4);
wenzelm
parents: 64574
diff changeset
  1105
            Thm (der', {cert = cert', tags = [], maxidx = maxidx,
ea6199b23dfa proper background certificate from make_context, which can be a super-theory of the direct join (amending d07464875dd4);
wenzelm
parents: 64574
diff changeset
  1106
              shyps = shyps, hyps = hyps, tpairs = tpairs', prop = prop'})
ea6199b23dfa proper background certificate from make_context, which can be a super-theory of the direct join (amending d07464875dd4);
wenzelm
parents: 64574
diff changeset
  1107
          end)
ea6199b23dfa proper background certificate from make_context, which can be a super-theory of the direct join (amending d07464875dd4);
wenzelm
parents: 64574
diff changeset
  1108
  end;
16601
ee8eefade568 more efficient treatment of shyps and hyps (use ordered lists);
wenzelm
parents: 16425
diff changeset
  1109
0
a5a9c433f639 Initial revision
clasohm
parents:
diff changeset
  1110
19910
2b4a222fef3c added generalize rule;
wenzelm
parents: 19881
diff changeset
  1111
(*Generalization of fixed variables
2b4a222fef3c added generalize rule;
wenzelm
parents: 19881
diff changeset
  1112
           A
2b4a222fef3c added generalize rule;
wenzelm
parents: 19881
diff changeset
  1113
  --------------------
2b4a222fef3c added generalize rule;
wenzelm
parents: 19881
diff changeset
  1114
  A[?'a/'a, ?x/x, ...]
2b4a222fef3c added generalize rule;
wenzelm
parents: 19881
diff changeset
  1115
*)
2b4a222fef3c added generalize rule;
wenzelm
parents: 19881
diff changeset
  1116
2b4a222fef3c added generalize rule;
wenzelm
parents: 19881
diff changeset
  1117
fun generalize ([], []) _ th = th
2b4a222fef3c added generalize rule;
wenzelm
parents: 19881
diff changeset
  1118
  | generalize (tfrees, frees) idx th =
2b4a222fef3c added generalize rule;
wenzelm
parents: 19881
diff changeset
  1119
      let
61044
b7af255dd200 more abstract theory certificate, which is not necessarily the full theory;
wenzelm
parents: 61042
diff changeset
  1120
        val Thm (der, {cert, maxidx, shyps, hyps, tpairs, prop, ...}) = th;
19910
2b4a222fef3c added generalize rule;
wenzelm
parents: 19881
diff changeset
  1121
        val _ = idx <= maxidx andalso raise THM ("generalize: bad index", idx, [th]);
2b4a222fef3c added generalize rule;
wenzelm
parents: 19881
diff changeset
  1122
33697
wenzelm
parents: 33522
diff changeset
  1123
        val bad_type =
wenzelm
parents: 33522
diff changeset
  1124
          if null tfrees then K false
wenzelm
parents: 33522
diff changeset
  1125
          else Term.exists_subtype (fn TFree (a, _) => member (op =) tfrees a | _ => false);
19910
2b4a222fef3c added generalize rule;
wenzelm
parents: 19881
diff changeset
  1126
        fun bad_term (Free (x, T)) = bad_type T orelse member (op =) frees x
2b4a222fef3c added generalize rule;
wenzelm
parents: 19881
diff changeset
  1127
          | bad_term (Var (_, T)) = bad_type T
2b4a222fef3c added generalize rule;
wenzelm
parents: 19881
diff changeset
  1128
          | bad_term (Const (_, T)) = bad_type T
2b4a222fef3c added generalize rule;
wenzelm
parents: 19881
diff changeset
  1129
          | bad_term (Abs (_, T, t)) = bad_type T orelse bad_term t
2b4a222fef3c added generalize rule;
wenzelm
parents: 19881
diff changeset
  1130
          | bad_term (t $ u) = bad_term t orelse bad_term u
2b4a222fef3c added generalize rule;
wenzelm
parents: 19881
diff changeset
  1131
          | bad_term (Bound _) = false;
2b4a222fef3c added generalize rule;
wenzelm
parents: 19881
diff changeset
  1132
        val _ = exists bad_term hyps andalso
2b4a222fef3c added generalize rule;
wenzelm
parents: 19881
diff changeset
  1133
          raise THM ("generalize: variable free in assumptions", 0, [th]);
2b4a222fef3c added generalize rule;
wenzelm
parents: 19881
diff changeset
  1134
31977
e03059ae2d82 renamed structure TermSubst to Term_Subst;
wenzelm
parents: 31947
diff changeset
  1135
        val gen = Term_Subst.generalize (tfrees, frees) idx;
19910
2b4a222fef3c added generalize rule;
wenzelm
parents: 19881
diff changeset
  1136
        val prop' = gen prop;
59058
a78612c67ec0 renamed "pairself" to "apply2", in accordance to @{apply 2};
wenzelm
parents: 58950
diff changeset
  1137
        val tpairs' = map (apply2 gen) tpairs;
19910
2b4a222fef3c added generalize rule;
wenzelm
parents: 19881
diff changeset
  1138
        val maxidx' = maxidx_tpairs tpairs' (maxidx_of_term prop');
2b4a222fef3c added generalize rule;
wenzelm
parents: 19881
diff changeset
  1139
      in
52487
48bc24467008 backout dedd7952a62c: static "proofs" value within theory prevents later inferencing with different configuration;
wenzelm
parents: 52470
diff changeset
  1140
        Thm (deriv_rule1 (Proofterm.generalize (tfrees, frees) idx) der,
61044
b7af255dd200 more abstract theory certificate, which is not necessarily the full theory;
wenzelm
parents: 61042
diff changeset
  1141
         {cert = cert,
21646
c07b5b0e8492 thm/prf: separate official name vs. additional tags;
wenzelm
parents: 21576
diff changeset
  1142
          tags = [],
19910
2b4a222fef3c added generalize rule;
wenzelm
parents: 19881
diff changeset
  1143
          maxidx = maxidx',
2b4a222fef3c added generalize rule;
wenzelm
parents: 19881
diff changeset
  1144
          shyps = shyps,
2b4a222fef3c added generalize rule;
wenzelm
parents: 19881
diff changeset
  1145
          hyps = hyps,
2b4a222fef3c added generalize rule;
wenzelm
parents: 19881
diff changeset
  1146
          tpairs = tpairs',
28321
9f4499bf9384 type thm: fully internal derivation, no longer exported;
wenzelm
parents: 28290
diff changeset
  1147
          prop = prop'})
19910
2b4a222fef3c added generalize rule;
wenzelm
parents: 19881
diff changeset
  1148
      end;
2b4a222fef3c added generalize rule;
wenzelm
parents: 19881
diff changeset
  1149
2b4a222fef3c added generalize rule;
wenzelm
parents: 19881
diff changeset
  1150
22584
d0f0f37ec346 improved exception CTERM;
wenzelm
parents: 22573
diff changeset
  1151
(*Instantiation of schematic variables
16656
18b0cb22057d ctyp: added 'sorts' field;
wenzelm
parents: 16601
diff changeset
  1152
           A
18b0cb22057d ctyp: added 'sorts' field;
wenzelm
parents: 16601
diff changeset
  1153
  --------------------
18b0cb22057d ctyp: added 'sorts' field;
wenzelm
parents: 16601
diff changeset
  1154
  A[t1/v1, ..., tn/vn]
1220
3b0b8408fc5f MAJOR changes:
wenzelm
parents: 1195
diff changeset
  1155
*)
0
a5a9c433f639 Initial revision
clasohm
parents:
diff changeset
  1156
6928
9b4cd97b459d improved error msgs of instantiate;
wenzelm
parents: 6899
diff changeset
  1157
local
9b4cd97b459d improved error msgs of instantiate;
wenzelm
parents: 6899
diff changeset
  1158
26939
1035c89b4c02 moved global pretty/string_of functions from Sign to Syntax;
wenzelm
parents: 26832
diff changeset
  1159
fun pretty_typing thy t T = Pretty.block
1035c89b4c02 moved global pretty/string_of functions from Sign to Syntax;
wenzelm
parents: 26832
diff changeset
  1160
  [Syntax.pretty_term_global thy t, Pretty.str " ::", Pretty.brk 1, Syntax.pretty_typ_global thy T];
15797
a63605582573 - Eliminated nodup_vars check.
berghofe
parents: 15672
diff changeset
  1161
61044
b7af255dd200 more abstract theory certificate, which is not necessarily the full theory;
wenzelm
parents: 61042
diff changeset
  1162
fun add_inst (v as (_, T), cu) (cert, sorts) =
6928
9b4cd97b459d improved error msgs of instantiate;
wenzelm
parents: 6899
diff changeset
  1163
  let
61044
b7af255dd200 more abstract theory certificate, which is not necessarily the full theory;
wenzelm
parents: 61042
diff changeset
  1164
    val Cterm {t = u, T = U, cert = cert2, sorts = sorts_u, maxidx = maxidx_u, ...} = cu;
b7af255dd200 more abstract theory certificate, which is not necessarily the full theory;
wenzelm
parents: 61042
diff changeset
  1165
    val cert' = Context.join_certificate (cert, cert2);
16884
1678a796b6b2 tuned instantiate (avoid subst_atomic, subst_atomic_types);
wenzelm
parents: 16847
diff changeset
  1166
    val sorts' = Sorts.union sorts_u sorts;
3967
edd5ff9371f8 sg_ref: automatic adjustment of thms of draft theories;
wenzelm
parents: 3895
diff changeset
  1167
  in
61044
b7af255dd200 more abstract theory certificate, which is not necessarily the full theory;
wenzelm
parents: 61042
diff changeset
  1168
    if T = U then ((v, (u, maxidx_u)), (cert', sorts'))
60642
48dd1cefb4ae simplified Thm.instantiate and derivatives: the LHS refers to non-certified variables -- this merely serves as index into already certified structures (or is ignored);
wenzelm
parents: 60638
diff changeset
  1169
    else
61044
b7af255dd200 more abstract theory certificate, which is not necessarily the full theory;
wenzelm
parents: 61042
diff changeset
  1170
      let
b7af255dd200 more abstract theory certificate, which is not necessarily the full theory;
wenzelm
parents: 61042
diff changeset
  1171
        val msg =
b7af255dd200 more abstract theory certificate, which is not necessarily the full theory;
wenzelm
parents: 61042
diff changeset
  1172
          (case cert' of
b7af255dd200 more abstract theory certificate, which is not necessarily the full theory;
wenzelm
parents: 61042
diff changeset
  1173
            Context.Certificate thy' =>
b7af255dd200 more abstract theory certificate, which is not necessarily the full theory;
wenzelm
parents: 61042
diff changeset
  1174
              Pretty.string_of (Pretty.block
b7af255dd200 more abstract theory certificate, which is not necessarily the full theory;
wenzelm
parents: 61042
diff changeset
  1175
               [Pretty.str "instantiate: type conflict",
b7af255dd200 more abstract theory certificate, which is not necessarily the full theory;
wenzelm
parents: 61042
diff changeset
  1176
                Pretty.fbrk, pretty_typing thy' (Var v) T,
b7af255dd200 more abstract theory certificate, which is not necessarily the full theory;
wenzelm
parents: 61042
diff changeset
  1177
                Pretty.fbrk, pretty_typing thy' u U])
b7af255dd200 more abstract theory certificate, which is not necessarily the full theory;
wenzelm
parents: 61042
diff changeset
  1178
          | Context.Certificate_Id _ => "instantiate: type conflict");
b7af255dd200 more abstract theory certificate, which is not necessarily the full theory;
wenzelm
parents: 61042
diff changeset
  1179
      in raise TYPE (msg, [T, U], [Var v, u]) end
0
a5a9c433f639 Initial revision
clasohm
parents:
diff changeset
  1180
  end;
a5a9c433f639 Initial revision
clasohm
parents:
diff changeset
  1181
61044
b7af255dd200 more abstract theory certificate, which is not necessarily the full theory;
wenzelm
parents: 61042
diff changeset
  1182
fun add_instT (v as (_, S), cU) (cert, sorts) =
16656
18b0cb22057d ctyp: added 'sorts' field;
wenzelm
parents: 16601
diff changeset
  1183
  let
61044
b7af255dd200 more abstract theory certificate, which is not necessarily the full theory;
wenzelm
parents: 61042
diff changeset
  1184
    val Ctyp {T = U, cert = cert2, sorts = sorts_U, maxidx = maxidx_U, ...} = cU;
b7af255dd200 more abstract theory certificate, which is not necessarily the full theory;
wenzelm
parents: 61042
diff changeset
  1185
    val cert' = Context.join_certificate (cert, cert2);
61051
310cf33d5481 clarified exceptions;
wenzelm
parents: 61050
diff changeset
  1186
    val thy' = Context.certificate_theory cert'
310cf33d5481 clarified exceptions;
wenzelm
parents: 61050
diff changeset
  1187
      handle ERROR msg => raise CONTEXT (msg, [cU], [], [], NONE);
16884
1678a796b6b2 tuned instantiate (avoid subst_atomic, subst_atomic_types);
wenzelm
parents: 16847
diff changeset
  1188
    val sorts' = Sorts.union sorts_U sorts;
16656
18b0cb22057d ctyp: added 'sorts' field;
wenzelm
parents: 16601
diff changeset
  1189
  in
61044
b7af255dd200 more abstract theory certificate, which is not necessarily the full theory;
wenzelm
parents: 61042
diff changeset
  1190
    if Sign.of_sort thy' (U, S) then ((v, (U, maxidx_U)), (cert', sorts'))
60642
48dd1cefb4ae simplified Thm.instantiate and derivatives: the LHS refers to non-certified variables -- this merely serves as index into already certified structures (or is ignored);
wenzelm
parents: 60638
diff changeset
  1191
    else raise TYPE ("Type not of sort " ^ Syntax.string_of_sort_global thy' S, [U], [])
16656
18b0cb22057d ctyp: added 'sorts' field;
wenzelm
parents: 16601
diff changeset
  1192
  end;
0
a5a9c433f639 Initial revision
clasohm
parents:
diff changeset
  1193
6928
9b4cd97b459d improved error msgs of instantiate;
wenzelm
parents: 6899
diff changeset
  1194
in
9b4cd97b459d improved error msgs of instantiate;
wenzelm
parents: 6899
diff changeset
  1195
16601
ee8eefade568 more efficient treatment of shyps and hyps (use ordered lists);
wenzelm
parents: 16425
diff changeset
  1196
(*Left-to-right replacements: ctpairs = [..., (vi, ti), ...].
0
a5a9c433f639 Initial revision
clasohm
parents:
diff changeset
  1197
  Instantiates distinct Vars by terms of same type.
16601
ee8eefade568 more efficient treatment of shyps and hyps (use ordered lists);
wenzelm
parents: 16425
diff changeset
  1198
  Does NOT normalize the resulting theorem!*)
1529
09d9ad015269 Addition of proof objects
paulson
parents: 1517
diff changeset
  1199
fun instantiate ([], []) th = th
16884
1678a796b6b2 tuned instantiate (avoid subst_atomic, subst_atomic_types);
wenzelm
parents: 16847
diff changeset
  1200
  | instantiate (instT, inst) th =
16656
18b0cb22057d ctyp: added 'sorts' field;
wenzelm
parents: 16601
diff changeset
  1201
      let
61044
b7af255dd200 more abstract theory certificate, which is not necessarily the full theory;
wenzelm
parents: 61042
diff changeset
  1202
        val Thm (der, {cert, hyps, shyps, tpairs, prop, ...}) = th;
b7af255dd200 more abstract theory certificate, which is not necessarily the full theory;
wenzelm
parents: 61042
diff changeset
  1203
        val (inst', (instT', (cert', shyps'))) =
61051
310cf33d5481 clarified exceptions;
wenzelm
parents: 61050
diff changeset
  1204
          (cert, shyps) |> fold_map add_inst inst ||> fold_map add_instT instT
61053
wenzelm
parents: 61051
diff changeset
  1205
            handle CONTEXT (msg, cTs, cts, ths, context) =>
wenzelm
parents: 61051
diff changeset
  1206
              raise CONTEXT (msg, cTs, cts, th :: ths, context);
31977
e03059ae2d82 renamed structure TermSubst to Term_Subst;
wenzelm
parents: 31947
diff changeset
  1207
        val subst = Term_Subst.instantiate_maxidx (instT', inst');
20512
a041c2afb52e ctyp: maintain maxidx;
wenzelm
parents: 20348
diff changeset
  1208
        val (prop', maxidx1) = subst prop ~1;
a041c2afb52e ctyp: maintain maxidx;
wenzelm
parents: 20348
diff changeset
  1209
        val (tpairs', maxidx') =
a041c2afb52e ctyp: maintain maxidx;
wenzelm
parents: 20348
diff changeset
  1210
          fold_map (fn (t, u) => fn i => subst t i ||>> subst u) tpairs maxidx1;
16656
18b0cb22057d ctyp: added 'sorts' field;
wenzelm
parents: 16601
diff changeset
  1211
      in
52487
48bc24467008 backout dedd7952a62c: static "proofs" value within theory prevents later inferencing with different configuration;
wenzelm
parents: 52470
diff changeset
  1212
        Thm (deriv_rule1
37309
38ce84c83738 eliminated ML structure alias;
wenzelm
parents: 37297
diff changeset
  1213
          (fn d => Proofterm.instantiate (map (apsnd #1) instT', map (apsnd #1) inst') d) der,
61044
b7af255dd200 more abstract theory certificate, which is not necessarily the full theory;
wenzelm
parents: 61042
diff changeset
  1214
         {cert = cert',
21646
c07b5b0e8492 thm/prf: separate official name vs. additional tags;
wenzelm
parents: 21576
diff changeset
  1215
          tags = [],
20545
4c1068697159 instantiate: omit has_duplicates check, which is irrelevant for soundness;
wenzelm
parents: 20512
diff changeset
  1216
          maxidx = maxidx',
4c1068697159 instantiate: omit has_duplicates check, which is irrelevant for soundness;
wenzelm
parents: 20512
diff changeset
  1217
          shyps = shyps',
4c1068697159 instantiate: omit has_duplicates check, which is irrelevant for soundness;
wenzelm
parents: 20512
diff changeset
  1218
          hyps = hyps,
4c1068697159 instantiate: omit has_duplicates check, which is irrelevant for soundness;
wenzelm
parents: 20512
diff changeset
  1219
          tpairs = tpairs',
28321
9f4499bf9384 type thm: fully internal derivation, no longer exported;
wenzelm
parents: 28290
diff changeset
  1220
          prop = prop'})
16656
18b0cb22057d ctyp: added 'sorts' field;
wenzelm
parents: 16601
diff changeset
  1221
      end
18b0cb22057d ctyp: added 'sorts' field;
wenzelm
parents: 16601
diff changeset
  1222
      handle TYPE (msg, _, _) => raise THM (msg, 0, [th]);
6928
9b4cd97b459d improved error msgs of instantiate;
wenzelm
parents: 6899
diff changeset
  1223
22584
d0f0f37ec346 improved exception CTERM;
wenzelm
parents: 22573
diff changeset
  1224
fun instantiate_cterm ([], []) ct = ct
d0f0f37ec346 improved exception CTERM;
wenzelm
parents: 22573
diff changeset
  1225
  | instantiate_cterm (instT, inst) ct =
d0f0f37ec346 improved exception CTERM;
wenzelm
parents: 22573
diff changeset
  1226
      let
61044
b7af255dd200 more abstract theory certificate, which is not necessarily the full theory;
wenzelm
parents: 61042
diff changeset
  1227
        val Cterm {cert, t, T, sorts, ...} = ct;
b7af255dd200 more abstract theory certificate, which is not necessarily the full theory;
wenzelm
parents: 61042
diff changeset
  1228
        val (inst', (instT', (cert', sorts'))) =
b7af255dd200 more abstract theory certificate, which is not necessarily the full theory;
wenzelm
parents: 61042
diff changeset
  1229
          (cert, sorts) |> fold_map add_inst inst ||> fold_map add_instT instT;
31977
e03059ae2d82 renamed structure TermSubst to Term_Subst;
wenzelm
parents: 31947
diff changeset
  1230
        val subst = Term_Subst.instantiate_maxidx (instT', inst');
e03059ae2d82 renamed structure TermSubst to Term_Subst;
wenzelm
parents: 31947
diff changeset
  1231
        val substT = Term_Subst.instantiateT_maxidx instT';
22584
d0f0f37ec346 improved exception CTERM;
wenzelm
parents: 22573
diff changeset
  1232
        val (t', maxidx1) = subst t ~1;
d0f0f37ec346 improved exception CTERM;
wenzelm
parents: 22573
diff changeset
  1233
        val (T', maxidx') = substT T maxidx1;
61044
b7af255dd200 more abstract theory certificate, which is not necessarily the full theory;
wenzelm
parents: 61042
diff changeset
  1234
      in Cterm {cert = cert', t = t', T = T', sorts = sorts', maxidx = maxidx'} end
22584
d0f0f37ec346 improved exception CTERM;
wenzelm
parents: 22573
diff changeset
  1235
      handle TYPE (msg, _, _) => raise CTERM (msg, [ct]);
d0f0f37ec346 improved exception CTERM;
wenzelm
parents: 22573
diff changeset
  1236
6928
9b4cd97b459d improved error msgs of instantiate;
wenzelm
parents: 6899
diff changeset
  1237
end;
9b4cd97b459d improved error msgs of instantiate;
wenzelm
parents: 6899
diff changeset
  1238
0
a5a9c433f639 Initial revision
clasohm
parents:
diff changeset
  1239
16601
ee8eefade568 more efficient treatment of shyps and hyps (use ordered lists);
wenzelm
parents: 16425
diff changeset
  1240
(*The trivial implication A ==> A, justified by assume and forall rules.
ee8eefade568 more efficient treatment of shyps and hyps (use ordered lists);
wenzelm
parents: 16425
diff changeset
  1241
  A can contain Vars, not so for assume!*)
61044
b7af255dd200 more abstract theory certificate, which is not necessarily the full theory;
wenzelm
parents: 61042
diff changeset
  1242
fun trivial (Cterm {cert, t = A, T, maxidx, sorts}) =
16601
ee8eefade568 more efficient treatment of shyps and hyps (use ordered lists);
wenzelm
parents: 16425
diff changeset
  1243
  if T <> propT then
ee8eefade568 more efficient treatment of shyps and hyps (use ordered lists);
wenzelm
parents: 16425
diff changeset
  1244
    raise THM ("trivial: the term must have type prop", 0, [])
ee8eefade568 more efficient treatment of shyps and hyps (use ordered lists);
wenzelm
parents: 16425
diff changeset
  1245
  else
52487
48bc24467008 backout dedd7952a62c: static "proofs" value within theory prevents later inferencing with different configuration;
wenzelm
parents: 52470
diff changeset
  1246
    Thm (deriv_rule0 (Proofterm.AbsP ("H", NONE, Proofterm.PBound 0)),
61044
b7af255dd200 more abstract theory certificate, which is not necessarily the full theory;
wenzelm
parents: 61042
diff changeset
  1247
     {cert = cert,
21646
c07b5b0e8492 thm/prf: separate official name vs. additional tags;
wenzelm
parents: 21576
diff changeset
  1248
      tags = [],
16601
ee8eefade568 more efficient treatment of shyps and hyps (use ordered lists);
wenzelm
parents: 16425
diff changeset
  1249
      maxidx = maxidx,
ee8eefade568 more efficient treatment of shyps and hyps (use ordered lists);
wenzelm
parents: 16425
diff changeset
  1250
      shyps = sorts,
ee8eefade568 more efficient treatment of shyps and hyps (use ordered lists);
wenzelm
parents: 16425
diff changeset
  1251
      hyps = [],
ee8eefade568 more efficient treatment of shyps and hyps (use ordered lists);
wenzelm
parents: 16425
diff changeset
  1252
      tpairs = [],
28321
9f4499bf9384 type thm: fully internal derivation, no longer exported;
wenzelm
parents: 28290
diff changeset
  1253
      prop = Logic.mk_implies (A, A)});
0
a5a9c433f639 Initial revision
clasohm
parents:
diff changeset
  1254
31944
c8a35979a5bc clarified Thm.of_class/of_sort/class_triv;
wenzelm
parents: 31943
diff changeset
  1255
(*Axiom-scheme reflecting signature contents
c8a35979a5bc clarified Thm.of_class/of_sort/class_triv;
wenzelm
parents: 31943
diff changeset
  1256
        T :: c
c8a35979a5bc clarified Thm.of_class/of_sort/class_triv;
wenzelm
parents: 31943
diff changeset
  1257
  -------------------
c8a35979a5bc clarified Thm.of_class/of_sort/class_triv;
wenzelm
parents: 31943
diff changeset
  1258
  OFCLASS(T, c_class)
c8a35979a5bc clarified Thm.of_class/of_sort/class_triv;
wenzelm
parents: 31943
diff changeset
  1259
*)
c8a35979a5bc clarified Thm.of_class/of_sort/class_triv;
wenzelm
parents: 31943
diff changeset
  1260
fun of_class (cT, raw_c) =
24143
90a9a6fe0d01 replaced Theory.self_ref by Theory.check_thy, which now produces a checked ref;
wenzelm
parents: 23781
diff changeset
  1261
  let
61044
b7af255dd200 more abstract theory certificate, which is not necessarily the full theory;
wenzelm
parents: 61042
diff changeset
  1262
    val Ctyp {cert, T, ...} = cT;
61051
310cf33d5481 clarified exceptions;
wenzelm
parents: 61050
diff changeset
  1263
    val thy = Context.certificate_theory cert
310cf33d5481 clarified exceptions;
wenzelm
parents: 61050
diff changeset
  1264
      handle ERROR msg => raise CONTEXT (msg, [cT], [], [], NONE);
31903
c5221dbc40f6 added pro-forma proof constructor Inclass;
wenzelm
parents: 30717
diff changeset
  1265
    val c = Sign.certify_class thy raw_c;
59621
291934bac95e Thm.cterm_of and Thm.ctyp_of operate on local context;
wenzelm
parents: 59591
diff changeset
  1266
    val Cterm {t = prop, maxidx, sorts, ...} = global_cterm_of thy (Logic.mk_of_class (T, c));
399
86cc2b98f9e0 added class_triv: theory -> class -> thm (for axclasses);
wenzelm
parents: 387
diff changeset
  1267
  in
31944
c8a35979a5bc clarified Thm.of_class/of_sort/class_triv;
wenzelm
parents: 31943
diff changeset
  1268
    if Sign.of_sort thy (T, [c]) then
52487
48bc24467008 backout dedd7952a62c: static "proofs" value within theory prevents later inferencing with different configuration;
wenzelm
parents: 52470
diff changeset
  1269
      Thm (deriv_rule0 (Proofterm.OfClass (T, c)),
61044
b7af255dd200 more abstract theory certificate, which is not necessarily the full theory;
wenzelm
parents: 61042
diff changeset
  1270
       {cert = cert,
31944
c8a35979a5bc clarified Thm.of_class/of_sort/class_triv;
wenzelm
parents: 31943
diff changeset
  1271
        tags = [],
c8a35979a5bc clarified Thm.of_class/of_sort/class_triv;
wenzelm
parents: 31943
diff changeset
  1272
        maxidx = maxidx,
c8a35979a5bc clarified Thm.of_class/of_sort/class_triv;
wenzelm
parents: 31943
diff changeset
  1273
        shyps = sorts,
c8a35979a5bc clarified Thm.of_class/of_sort/class_triv;
wenzelm
parents: 31943
diff changeset
  1274
        hyps = [],
c8a35979a5bc clarified Thm.of_class/of_sort/class_triv;
wenzelm
parents: 31943
diff changeset
  1275
        tpairs = [],
c8a35979a5bc clarified Thm.of_class/of_sort/class_triv;
wenzelm
parents: 31943
diff changeset
  1276
        prop = prop})
c8a35979a5bc clarified Thm.of_class/of_sort/class_triv;
wenzelm
parents: 31943
diff changeset
  1277
    else raise THM ("of_class: type not of class " ^ Syntax.string_of_sort_global thy [c], 0, [])
399
86cc2b98f9e0 added class_triv: theory -> class -> thm (for axclasses);
wenzelm
parents: 387
diff changeset
  1278
  end;
86cc2b98f9e0 added class_triv: theory -> class -> thm (for axclasses);
wenzelm
parents: 387
diff changeset
  1279
36614
b6c031ad3690 minor tuning of Thm.strip_shyps -- no longer pervasive;
wenzelm
parents: 36613
diff changeset
  1280
(*Remove extra sorts that are witnessed by type signature information*)
b6c031ad3690 minor tuning of Thm.strip_shyps -- no longer pervasive;
wenzelm
parents: 36613
diff changeset
  1281
fun strip_shyps (thm as Thm (_, {shyps = [], ...})) = thm
61044
b7af255dd200 more abstract theory certificate, which is not necessarily the full theory;
wenzelm
parents: 61042
diff changeset
  1282
  | strip_shyps (thm as Thm (der, {cert, tags, maxidx, shyps, hyps, tpairs, prop})) =
36614
b6c031ad3690 minor tuning of Thm.strip_shyps -- no longer pervasive;
wenzelm
parents: 36613
diff changeset
  1283
      let
61044
b7af255dd200 more abstract theory certificate, which is not necessarily the full theory;
wenzelm
parents: 61042
diff changeset
  1284
        val thy = theory_of_thm thm;
36621
2fd4e2c76636 proof terms for strip_shyps, based on the version by krauss/schropp with some notable differences:
wenzelm
parents: 36619
diff changeset
  1285
        val algebra = Sign.classes_of thy;
2fd4e2c76636 proof terms for strip_shyps, based on the version by krauss/schropp with some notable differences:
wenzelm
parents: 36619
diff changeset
  1286
2fd4e2c76636 proof terms for strip_shyps, based on the version by krauss/schropp with some notable differences:
wenzelm
parents: 36619
diff changeset
  1287
        val present = (fold_terms o fold_types o fold_atyps_sorts) (insert (eq_fst op =)) thm [];
36614
b6c031ad3690 minor tuning of Thm.strip_shyps -- no longer pervasive;
wenzelm
parents: 36613
diff changeset
  1288
        val extra = fold (Sorts.remove_sort o #2) present shyps;
b6c031ad3690 minor tuning of Thm.strip_shyps -- no longer pervasive;
wenzelm
parents: 36613
diff changeset
  1289
        val witnessed = Sign.witness_sorts thy present extra;
b6c031ad3690 minor tuning of Thm.strip_shyps -- no longer pervasive;
wenzelm
parents: 36613
diff changeset
  1290
        val extra' = fold (Sorts.remove_sort o #2) witnessed extra
36621
2fd4e2c76636 proof terms for strip_shyps, based on the version by krauss/schropp with some notable differences:
wenzelm
parents: 36619
diff changeset
  1291
          |> Sorts.minimal_sorts algebra;
36614
b6c031ad3690 minor tuning of Thm.strip_shyps -- no longer pervasive;
wenzelm
parents: 36613
diff changeset
  1292
        val shyps' = fold (Sorts.insert_sort o #2) present extra';
b6c031ad3690 minor tuning of Thm.strip_shyps -- no longer pervasive;
wenzelm
parents: 36613
diff changeset
  1293
      in
37309
38ce84c83738 eliminated ML structure alias;
wenzelm
parents: 37297
diff changeset
  1294
        Thm (deriv_rule_unconditional
38ce84c83738 eliminated ML structure alias;
wenzelm
parents: 37297
diff changeset
  1295
          (Proofterm.strip_shyps_proof algebra present witnessed extra') der,
61044
b7af255dd200 more abstract theory certificate, which is not necessarily the full theory;
wenzelm
parents: 61042
diff changeset
  1296
         {cert = cert, tags = tags, maxidx = maxidx,
36614
b6c031ad3690 minor tuning of Thm.strip_shyps -- no longer pervasive;
wenzelm
parents: 36613
diff changeset
  1297
          shyps = shyps', hyps = hyps, tpairs = tpairs, prop = prop})
b6c031ad3690 minor tuning of Thm.strip_shyps -- no longer pervasive;
wenzelm
parents: 36613
diff changeset
  1298
      end;
b6c031ad3690 minor tuning of Thm.strip_shyps -- no longer pervasive;
wenzelm
parents: 36613
diff changeset
  1299
36769
b6b88bf695b3 Thm.unconstrainT based on Logic.unconstrainT -- no proofterm yet;
wenzelm
parents: 36768
diff changeset
  1300
(*Internalize sort constraints of type variables*)
36883
4ed0d72def50 added Proofterm.unconstrain_thm_proof for Thm.unconstrainT -- loosely based on the version by krauss/schropp;
wenzelm
parents: 36882
diff changeset
  1301
fun unconstrainT (thm as Thm (der, args)) =
19505
0b345cf953c4 added unconstrainT;
wenzelm
parents: 19475
diff changeset
  1302
  let
36883
4ed0d72def50 added Proofterm.unconstrain_thm_proof for Thm.unconstrainT -- loosely based on the version by krauss/schropp;
wenzelm
parents: 36882
diff changeset
  1303
    val Deriv {promises, body} = der;
61044
b7af255dd200 more abstract theory certificate, which is not necessarily the full theory;
wenzelm
parents: 61042
diff changeset
  1304
    val {cert, shyps, hyps, tpairs, prop, ...} = args;
b7af255dd200 more abstract theory certificate, which is not necessarily the full theory;
wenzelm
parents: 61042
diff changeset
  1305
    val thy = theory_of_thm thm;
36883
4ed0d72def50 added Proofterm.unconstrain_thm_proof for Thm.unconstrainT -- loosely based on the version by krauss/schropp;
wenzelm
parents: 36882
diff changeset
  1306
36769
b6b88bf695b3 Thm.unconstrainT based on Logic.unconstrainT -- no proofterm yet;
wenzelm
parents: 36768
diff changeset
  1307
    fun err msg = raise THM ("unconstrainT: " ^ msg, 0, [thm]);
b6b88bf695b3 Thm.unconstrainT based on Logic.unconstrainT -- no proofterm yet;
wenzelm
parents: 36768
diff changeset
  1308
    val _ = null hyps orelse err "illegal hyps";
b6b88bf695b3 Thm.unconstrainT based on Logic.unconstrainT -- no proofterm yet;
wenzelm
parents: 36768
diff changeset
  1309
    val _ = null tpairs orelse err "unsolved flex-flex constraints";
b6b88bf695b3 Thm.unconstrainT based on Logic.unconstrainT -- no proofterm yet;
wenzelm
parents: 36768
diff changeset
  1310
    val tfrees = rev (Term.add_tfree_names prop []);
b6b88bf695b3 Thm.unconstrainT based on Logic.unconstrainT -- no proofterm yet;
wenzelm
parents: 36768
diff changeset
  1311
    val _ = null tfrees orelse err ("illegal free type variables " ^ commas_quote tfrees);
b6b88bf695b3 Thm.unconstrainT based on Logic.unconstrainT -- no proofterm yet;
wenzelm
parents: 36768
diff changeset
  1312
41700
f33d5a00c25d thm_proof: visible fulfill_body only, without joining nested thms -- retain proof irrelevance, which is important for parallel performance;
wenzelm
parents: 41699
diff changeset
  1313
    val ps = map (apsnd (Future.map fulfill_body)) promises;
64573
e6aee01da22d tuned signature -- more abstract type thm_node;
wenzelm
parents: 64571
diff changeset
  1314
    val (pthm, proof) = Proofterm.unconstrain_thm_proof thy shyps prop ps body;
36883
4ed0d72def50 added Proofterm.unconstrain_thm_proof for Thm.unconstrainT -- loosely based on the version by krauss/schropp;
wenzelm
parents: 36882
diff changeset
  1315
    val der' = make_deriv [] [] [pthm] proof;
64573
e6aee01da22d tuned signature -- more abstract type thm_node;
wenzelm
parents: 64571
diff changeset
  1316
    val prop' = Proofterm.thm_node_prop (#2 pthm);
19505
0b345cf953c4 added unconstrainT;
wenzelm
parents: 19475
diff changeset
  1317
  in
36883
4ed0d72def50 added Proofterm.unconstrain_thm_proof for Thm.unconstrainT -- loosely based on the version by krauss/schropp;
wenzelm
parents: 36882
diff changeset
  1318
    Thm (der',
61044
b7af255dd200 more abstract theory certificate, which is not necessarily the full theory;
wenzelm
parents: 61042
diff changeset
  1319
     {cert = cert,
21646
c07b5b0e8492 thm/prf: separate official name vs. additional tags;
wenzelm
parents: 21576
diff changeset
  1320
      tags = [],
36769
b6b88bf695b3 Thm.unconstrainT based on Logic.unconstrainT -- no proofterm yet;
wenzelm
parents: 36768
diff changeset
  1321
      maxidx = maxidx_of_term prop',
b6b88bf695b3 Thm.unconstrainT based on Logic.unconstrainT -- no proofterm yet;
wenzelm
parents: 36768
diff changeset
  1322
      shyps = [[]],  (*potentially redundant*)
36883
4ed0d72def50 added Proofterm.unconstrain_thm_proof for Thm.unconstrainT -- loosely based on the version by krauss/schropp;
wenzelm
parents: 36882
diff changeset
  1323
      hyps = [],
4ed0d72def50 added Proofterm.unconstrain_thm_proof for Thm.unconstrainT -- loosely based on the version by krauss/schropp;
wenzelm
parents: 36882
diff changeset
  1324
      tpairs = [],
36769
b6b88bf695b3 Thm.unconstrainT based on Logic.unconstrainT -- no proofterm yet;
wenzelm
parents: 36768
diff changeset
  1325
      prop = prop'})
19505
0b345cf953c4 added unconstrainT;
wenzelm
parents: 19475
diff changeset
  1326
  end;
399
86cc2b98f9e0 added class_triv: theory -> class -> thm (for axclasses);
wenzelm
parents: 387
diff changeset
  1327
63611
fb63942e470e tuned whitespace;
wenzelm
parents: 61053
diff changeset
  1328
(*Replace all TFrees not fixed or in the hyps by new TVars*)
61044
b7af255dd200 more abstract theory certificate, which is not necessarily the full theory;
wenzelm
parents: 61042
diff changeset
  1329
fun varifyT_global' fixed (Thm (der, {cert, maxidx, shyps, hyps, tpairs, prop, ...})) =
12500
0a6667d65e9b varifyT' returns newly introduces variables;
wenzelm
parents: 11692
diff changeset
  1330
  let
29272
fb3ccf499df5 use regular Term.add_XXX etc.;
wenzelm
parents: 29269
diff changeset
  1331
    val tfrees = fold Term.add_tfrees hyps fixed;
13658
c9ad3e64ddcf Changed handling of flex-flex constraints: now stored in separate
berghofe
parents: 13642
diff changeset
  1332
    val prop1 = attach_tpairs tpairs prop;
35845
e5980f0ad025 renamed varify/unvarify operations to varify_global/unvarify_global to emphasize that these only work in a global situation;
wenzelm
parents: 35408
diff changeset
  1333
    val (al, prop2) = Type.varify_global tfrees prop1;
16601
ee8eefade568 more efficient treatment of shyps and hyps (use ordered lists);
wenzelm
parents: 16425
diff changeset
  1334
    val (ts, prop3) = Logic.strip_prems (length tpairs, [], prop2);
ee8eefade568 more efficient treatment of shyps and hyps (use ordered lists);
wenzelm
parents: 16425
diff changeset
  1335
  in
52487
48bc24467008 backout dedd7952a62c: static "proofs" value within theory prevents later inferencing with different configuration;
wenzelm
parents: 52470
diff changeset
  1336
    (al, Thm (deriv_rule1 (Proofterm.varify_proof prop tfrees) der,
61044
b7af255dd200 more abstract theory certificate, which is not necessarily the full theory;
wenzelm
parents: 61042
diff changeset
  1337
     {cert = cert,
21646
c07b5b0e8492 thm/prf: separate official name vs. additional tags;
wenzelm
parents: 21576
diff changeset
  1338
      tags = [],
16601
ee8eefade568 more efficient treatment of shyps and hyps (use ordered lists);
wenzelm
parents: 16425
diff changeset
  1339
      maxidx = Int.max (0, maxidx),
ee8eefade568 more efficient treatment of shyps and hyps (use ordered lists);
wenzelm
parents: 16425
diff changeset
  1340
      shyps = shyps,
ee8eefade568 more efficient treatment of shyps and hyps (use ordered lists);
wenzelm
parents: 16425
diff changeset
  1341
      hyps = hyps,
ee8eefade568 more efficient treatment of shyps and hyps (use ordered lists);
wenzelm
parents: 16425
diff changeset
  1342
      tpairs = rev (map Logic.dest_equals ts),
28321
9f4499bf9384 type thm: fully internal derivation, no longer exported;
wenzelm
parents: 28290
diff changeset
  1343
      prop = prop3}))
9f4499bf9384 type thm: fully internal derivation, no longer exported;
wenzelm
parents: 28290
diff changeset
  1344
  end;
9f4499bf9384 type thm: fully internal derivation, no longer exported;
wenzelm
parents: 28290
diff changeset
  1345
35845
e5980f0ad025 renamed varify/unvarify operations to varify_global/unvarify_global to emphasize that these only work in a global situation;
wenzelm
parents: 35408
diff changeset
  1346
val varifyT_global = #2 o varifyT_global' [];
28321
9f4499bf9384 type thm: fully internal derivation, no longer exported;
wenzelm
parents: 28290
diff changeset
  1347
63611
fb63942e470e tuned whitespace;
wenzelm
parents: 61053
diff changeset
  1348
(*Replace all TVars by TFrees that are often new*)
61044
b7af255dd200 more abstract theory certificate, which is not necessarily the full theory;
wenzelm
parents: 61042
diff changeset
  1349
fun legacy_freezeT (Thm (der, {cert, shyps, hyps, tpairs, prop, ...})) =
28321
9f4499bf9384 type thm: fully internal derivation, no longer exported;
wenzelm
parents: 28290
diff changeset
  1350
  let
9f4499bf9384 type thm: fully internal derivation, no longer exported;
wenzelm
parents: 28290
diff changeset
  1351
    val prop1 = attach_tpairs tpairs prop;
33832
cff42395c246 explicitly mark some legacy freeze operations;
wenzelm
parents: 33722
diff changeset
  1352
    val prop2 = Type.legacy_freeze prop1;
28321
9f4499bf9384 type thm: fully internal derivation, no longer exported;
wenzelm
parents: 28290
diff changeset
  1353
    val (ts, prop3) = Logic.strip_prems (length tpairs, [], prop2);
9f4499bf9384 type thm: fully internal derivation, no longer exported;
wenzelm
parents: 28290
diff changeset
  1354
  in
52487
48bc24467008 backout dedd7952a62c: static "proofs" value within theory prevents later inferencing with different configuration;
wenzelm
parents: 52470
diff changeset
  1355
    Thm (deriv_rule1 (Proofterm.legacy_freezeT prop1) der,
61044
b7af255dd200 more abstract theory certificate, which is not necessarily the full theory;
wenzelm
parents: 61042
diff changeset
  1356
     {cert = cert,
28321
9f4499bf9384 type thm: fully internal derivation, no longer exported;
wenzelm
parents: 28290
diff changeset
  1357
      tags = [],
9f4499bf9384 type thm: fully internal derivation, no longer exported;
wenzelm
parents: 28290
diff changeset
  1358
      maxidx = maxidx_of_term prop2,
9f4499bf9384 type thm: fully internal derivation, no longer exported;
wenzelm
parents: 28290
diff changeset
  1359
      shyps = shyps,
9f4499bf9384 type thm: fully internal derivation, no longer exported;
wenzelm
parents: 28290
diff changeset
  1360
      hyps = hyps,
9f4499bf9384 type thm: fully internal derivation, no longer exported;
wenzelm
parents: 28290
diff changeset
  1361
      tpairs = rev (map Logic.dest_equals ts),
18127
9f03d8a9a81b Thm.varifyT': natural argument order;
wenzelm
parents: 18035
diff changeset
  1362
      prop = prop3})
0
a5a9c433f639 Initial revision
clasohm
parents:
diff changeset
  1363
  end;
a5a9c433f639 Initial revision
clasohm
parents:
diff changeset
  1364
a5a9c433f639 Initial revision
clasohm
parents:
diff changeset
  1365
a5a9c433f639 Initial revision
clasohm
parents:
diff changeset
  1366
(*** Inference rules for tactics ***)
a5a9c433f639 Initial revision
clasohm
parents:
diff changeset
  1367
a5a9c433f639 Initial revision
clasohm
parents:
diff changeset
  1368
(*Destruct proof state into constraints, other goals, goal(i), rest *)
28321
9f4499bf9384 type thm: fully internal derivation, no longer exported;
wenzelm
parents: 28290
diff changeset
  1369
fun dest_state (state as Thm (_, {prop,tpairs,...}), i) =
13658
c9ad3e64ddcf Changed handling of flex-flex constraints: now stored in separate
berghofe
parents: 13642
diff changeset
  1370
  (case  Logic.strip_prems(i, [], prop) of
c9ad3e64ddcf Changed handling of flex-flex constraints: now stored in separate
berghofe
parents: 13642
diff changeset
  1371
      (B::rBs, C) => (tpairs, rev rBs, B, C)
c9ad3e64ddcf Changed handling of flex-flex constraints: now stored in separate
berghofe
parents: 13642
diff changeset
  1372
    | _ => raise THM("dest_state", i, [state]))
0
a5a9c433f639 Initial revision
clasohm
parents:
diff changeset
  1373
  handle TERM _ => raise THM("dest_state", i, [state]);
a5a9c433f639 Initial revision
clasohm
parents:
diff changeset
  1374
46255
6fae74ee591a removed obscure/outdated material;
wenzelm
parents: 46218
diff changeset
  1375
(*Prepare orule for resolution by lifting it over the parameters and
52487
48bc24467008 backout dedd7952a62c: static "proofs" value within theory prevents later inferencing with different configuration;
wenzelm
parents: 52470
diff changeset
  1376
assumptions of goal.*)
18035
eaae44affc9e added cgoal_of;
wenzelm
parents: 17868
diff changeset
  1377
fun lift_rule goal orule =
16601
ee8eefade568 more efficient treatment of shyps and hyps (use ordered lists);
wenzelm
parents: 16425
diff changeset
  1378
  let
18035
eaae44affc9e added cgoal_of;
wenzelm
parents: 17868
diff changeset
  1379
    val Cterm {t = gprop, T, maxidx = gmax, sorts, ...} = goal;
eaae44affc9e added cgoal_of;
wenzelm
parents: 17868
diff changeset
  1380
    val inc = gmax + 1;
eaae44affc9e added cgoal_of;
wenzelm
parents: 17868
diff changeset
  1381
    val lift_abs = Logic.lift_abs inc gprop;
eaae44affc9e added cgoal_of;
wenzelm
parents: 17868
diff changeset
  1382
    val lift_all = Logic.lift_all inc gprop;
28321
9f4499bf9384 type thm: fully internal derivation, no longer exported;
wenzelm
parents: 28290
diff changeset
  1383
    val Thm (der, {maxidx, shyps, hyps, tpairs, prop, ...}) = orule;
16601
ee8eefade568 more efficient treatment of shyps and hyps (use ordered lists);
wenzelm
parents: 16425
diff changeset
  1384
    val (As, B) = Logic.strip_horn prop;
ee8eefade568 more efficient treatment of shyps and hyps (use ordered lists);
wenzelm
parents: 16425
diff changeset
  1385
  in
18035
eaae44affc9e added cgoal_of;
wenzelm
parents: 17868
diff changeset
  1386
    if T <> propT then raise THM ("lift_rule: the term must have type prop", 0, [])
eaae44affc9e added cgoal_of;
wenzelm
parents: 17868
diff changeset
  1387
    else
52487
48bc24467008 backout dedd7952a62c: static "proofs" value within theory prevents later inferencing with different configuration;
wenzelm
parents: 52470
diff changeset
  1388
      Thm (deriv_rule1 (Proofterm.lift_proof gprop inc prop) der,
61044
b7af255dd200 more abstract theory certificate, which is not necessarily the full theory;
wenzelm
parents: 61042
diff changeset
  1389
       {cert = join_certificate1 (goal, orule),
21646
c07b5b0e8492 thm/prf: separate official name vs. additional tags;
wenzelm
parents: 21576
diff changeset
  1390
        tags = [],
18035
eaae44affc9e added cgoal_of;
wenzelm
parents: 17868
diff changeset
  1391
        maxidx = maxidx + inc,
eaae44affc9e added cgoal_of;
wenzelm
parents: 17868
diff changeset
  1392
        shyps = Sorts.union shyps sorts,  (*sic!*)
eaae44affc9e added cgoal_of;
wenzelm
parents: 17868
diff changeset
  1393
        hyps = hyps,
59058
a78612c67ec0 renamed "pairself" to "apply2", in accordance to @{apply 2};
wenzelm
parents: 58950
diff changeset
  1394
        tpairs = map (apply2 lift_abs) tpairs,
28321
9f4499bf9384 type thm: fully internal derivation, no longer exported;
wenzelm
parents: 28290
diff changeset
  1395
        prop = Logic.list_implies (map lift_all As, lift_all B)})
0
a5a9c433f639 Initial revision
clasohm
parents:
diff changeset
  1396
  end;
a5a9c433f639 Initial revision
clasohm
parents:
diff changeset
  1397
61044
b7af255dd200 more abstract theory certificate, which is not necessarily the full theory;
wenzelm
parents: 61042
diff changeset
  1398
fun incr_indexes i (thm as Thm (der, {cert, maxidx, shyps, hyps, tpairs, prop, ...})) =
16601
ee8eefade568 more efficient treatment of shyps and hyps (use ordered lists);
wenzelm
parents: 16425
diff changeset
  1399
  if i < 0 then raise THM ("negative increment", 0, [thm])
ee8eefade568 more efficient treatment of shyps and hyps (use ordered lists);
wenzelm
parents: 16425
diff changeset
  1400
  else if i = 0 then thm
ee8eefade568 more efficient treatment of shyps and hyps (use ordered lists);
wenzelm
parents: 16425
diff changeset
  1401
  else
52487
48bc24467008 backout dedd7952a62c: static "proofs" value within theory prevents later inferencing with different configuration;
wenzelm
parents: 52470
diff changeset
  1402
    Thm (deriv_rule1 (Proofterm.incr_indexes i) der,
61044
b7af255dd200 more abstract theory certificate, which is not necessarily the full theory;
wenzelm
parents: 61042
diff changeset
  1403
     {cert = cert,
21646
c07b5b0e8492 thm/prf: separate official name vs. additional tags;
wenzelm
parents: 21576
diff changeset
  1404
      tags = [],
16601
ee8eefade568 more efficient treatment of shyps and hyps (use ordered lists);
wenzelm
parents: 16425
diff changeset
  1405
      maxidx = maxidx + i,
ee8eefade568 more efficient treatment of shyps and hyps (use ordered lists);
wenzelm
parents: 16425
diff changeset
  1406
      shyps = shyps,
ee8eefade568 more efficient treatment of shyps and hyps (use ordered lists);
wenzelm
parents: 16425
diff changeset
  1407
      hyps = hyps,
59787
6e2a20486897 local fixes may depend on goal params;
wenzelm
parents: 59621
diff changeset
  1408
      tpairs = map (apply2 (Logic.incr_indexes ([], [], i))) tpairs,
6e2a20486897 local fixes may depend on goal params;
wenzelm
parents: 59621
diff changeset
  1409
      prop = Logic.incr_indexes ([], [], i) prop});
10416
5b33e732e459 - Moved rewriting functions to meta_simplifier.ML
berghofe
parents: 10348
diff changeset
  1410
0
a5a9c433f639 Initial revision
clasohm
parents:
diff changeset
  1411
(*Solve subgoal Bi of proof state B1...Bn/C by assumption. *)
58950
d07464875dd4 optional proof context for unify operations, for the sake of proper local options;
wenzelm
parents: 58946
diff changeset
  1412
fun assumption opt_ctxt i state =
16601
ee8eefade568 more efficient treatment of shyps and hyps (use ordered lists);
wenzelm
parents: 16425
diff changeset
  1413
  let
61044
b7af255dd200 more abstract theory certificate, which is not necessarily the full theory;
wenzelm
parents: 61042
diff changeset
  1414
    val Thm (der, {cert, maxidx, shyps, hyps, ...}) = state;
64981
ea6199b23dfa proper background certificate from make_context, which can be a super-theory of the direct join (amending d07464875dd4);
wenzelm
parents: 64574
diff changeset
  1415
    val (context, cert') = make_context_certificate [state] opt_ctxt cert;
16601
ee8eefade568 more efficient treatment of shyps and hyps (use ordered lists);
wenzelm
parents: 16425
diff changeset
  1416
    val (tpairs, Bs, Bi, C) = dest_state (state, i);
32032
a6a6e8031c14 tuned/modernized Envir operations;
wenzelm
parents: 32027
diff changeset
  1417
    fun newth n (env, tpairs) =
52487
48bc24467008 backout dedd7952a62c: static "proofs" value within theory prevents later inferencing with different configuration;
wenzelm
parents: 52470
diff changeset
  1418
      Thm (deriv_rule1
63858
wenzelm
parents: 63611
diff changeset
  1419
          ((if Envir.is_empty env then I else Proofterm.norm_proof' env) o
37309
38ce84c83738 eliminated ML structure alias;
wenzelm
parents: 37297
diff changeset
  1420
            Proofterm.assumption_proof Bs Bi n) der,
28321
9f4499bf9384 type thm: fully internal derivation, no longer exported;
wenzelm
parents: 28290
diff changeset
  1421
       {tags = [],
32032
a6a6e8031c14 tuned/modernized Envir operations;
wenzelm
parents: 32027
diff changeset
  1422
        maxidx = Envir.maxidx_of env,
26640
92e6d3ec91bd simplified handling of sorts, removed unnecessary universal witness;
wenzelm
parents: 26631
diff changeset
  1423
        shyps = Envir.insert_sorts env shyps,
16601
ee8eefade568 more efficient treatment of shyps and hyps (use ordered lists);
wenzelm
parents: 16425
diff changeset
  1424
        hyps = hyps,
ee8eefade568 more efficient treatment of shyps and hyps (use ordered lists);
wenzelm
parents: 16425
diff changeset
  1425
        tpairs =
ee8eefade568 more efficient treatment of shyps and hyps (use ordered lists);
wenzelm
parents: 16425
diff changeset
  1426
          if Envir.is_empty env then tpairs
59058
a78612c67ec0 renamed "pairself" to "apply2", in accordance to @{apply 2};
wenzelm
parents: 58950
diff changeset
  1427
          else map (apply2 (Envir.norm_term env)) tpairs,
16601
ee8eefade568 more efficient treatment of shyps and hyps (use ordered lists);
wenzelm
parents: 16425
diff changeset
  1428
        prop =
ee8eefade568 more efficient treatment of shyps and hyps (use ordered lists);
wenzelm
parents: 16425
diff changeset
  1429
          if Envir.is_empty env then (*avoid wasted normalizations*)
ee8eefade568 more efficient treatment of shyps and hyps (use ordered lists);
wenzelm
parents: 16425
diff changeset
  1430
            Logic.list_implies (Bs, C)
ee8eefade568 more efficient treatment of shyps and hyps (use ordered lists);
wenzelm
parents: 16425
diff changeset
  1431
          else (*normalize the new rule fully*)
24143
90a9a6fe0d01 replaced Theory.self_ref by Theory.check_thy, which now produces a checked ref;
wenzelm
parents: 23781
diff changeset
  1432
            Envir.norm_term env (Logic.list_implies (Bs, C)),
64981
ea6199b23dfa proper background certificate from make_context, which can be a super-theory of the direct join (amending d07464875dd4);
wenzelm
parents: 64574
diff changeset
  1433
        cert = cert'});
30554
73f8bd5f0af8 substantial speedup of assumption and elim-resolution: Logic.assum_problems refrains from eager application of parameters, discriminate via Term.could_unify before invoking full unification (assumes terms in beta-normal form, as do higher term net operations anyway);
wenzelm
parents: 30466
diff changeset
  1434
30556
7be15917f3fa eq_assumption: slightly more efficient by checking (open) result of Logic.assum_problems directly;
wenzelm
parents: 30554
diff changeset
  1435
    val (close, asms, concl) = Logic.assum_problems (~1, Bi);
7be15917f3fa eq_assumption: slightly more efficient by checking (open) result of Logic.assum_problems directly;
wenzelm
parents: 30554
diff changeset
  1436
    val concl' = close concl;
16601
ee8eefade568 more efficient treatment of shyps and hyps (use ordered lists);
wenzelm
parents: 16425
diff changeset
  1437
    fun addprfs [] _ = Seq.empty
30556
7be15917f3fa eq_assumption: slightly more efficient by checking (open) result of Logic.assum_problems directly;
wenzelm
parents: 30554
diff changeset
  1438
      | addprfs (asm :: rest) n = Seq.make (fn () => Seq.pull
16601
ee8eefade568 more efficient treatment of shyps and hyps (use ordered lists);
wenzelm
parents: 16425
diff changeset
  1439
          (Seq.mapp (newth n)
30556
7be15917f3fa eq_assumption: slightly more efficient by checking (open) result of Logic.assum_problems directly;
wenzelm
parents: 30554
diff changeset
  1440
            (if Term.could_unify (asm, concl) then
58950
d07464875dd4 optional proof context for unify operations, for the sake of proper local options;
wenzelm
parents: 58946
diff changeset
  1441
              (Unify.unifiers (context, Envir.empty maxidx, (close asm, concl') :: tpairs))
30554
73f8bd5f0af8 substantial speedup of assumption and elim-resolution: Logic.assum_problems refrains from eager application of parameters, discriminate via Term.could_unify before invoking full unification (assumes terms in beta-normal form, as do higher term net operations anyway);
wenzelm
parents: 30466
diff changeset
  1442
             else Seq.empty)
73f8bd5f0af8 substantial speedup of assumption and elim-resolution: Logic.assum_problems refrains from eager application of parameters, discriminate via Term.could_unify before invoking full unification (assumes terms in beta-normal form, as do higher term net operations anyway);
wenzelm
parents: 30466
diff changeset
  1443
            (addprfs rest (n + 1))))
30556
7be15917f3fa eq_assumption: slightly more efficient by checking (open) result of Logic.assum_problems directly;
wenzelm
parents: 30554
diff changeset
  1444
  in addprfs asms 1 end;
0
a5a9c433f639 Initial revision
clasohm
parents:
diff changeset
  1445
250
9b5a069285ce extend_theory: changed type of "abbrs" arg;
wenzelm
parents: 242
diff changeset
  1446
(*Solve subgoal Bi of proof state B1...Bn/C by assumption.
51604
f83661733143 updated comment to 46b90bbc370d;
wenzelm
parents: 50301
diff changeset
  1447
  Checks if Bi's conclusion is alpha/eta-convertible to one of its assumptions*)
0
a5a9c433f639 Initial revision
clasohm
parents:
diff changeset
  1448
fun eq_assumption i state =
16601
ee8eefade568 more efficient treatment of shyps and hyps (use ordered lists);
wenzelm
parents: 16425
diff changeset
  1449
  let
61044
b7af255dd200 more abstract theory certificate, which is not necessarily the full theory;
wenzelm
parents: 61042
diff changeset
  1450
    val Thm (der, {cert, maxidx, shyps, hyps, ...}) = state;
16601
ee8eefade568 more efficient treatment of shyps and hyps (use ordered lists);
wenzelm
parents: 16425
diff changeset
  1451
    val (tpairs, Bs, Bi, C) = dest_state (state, i);
30556
7be15917f3fa eq_assumption: slightly more efficient by checking (open) result of Logic.assum_problems directly;
wenzelm
parents: 30554
diff changeset
  1452
    val (_, asms, concl) = Logic.assum_problems (~1, Bi);
16601
ee8eefade568 more efficient treatment of shyps and hyps (use ordered lists);
wenzelm
parents: 16425
diff changeset
  1453
  in
52131
366fa32ee2a3 tuned signature;
wenzelm
parents: 51604
diff changeset
  1454
    (case find_index (fn asm => Envir.aeconv (asm, concl)) asms of
16601
ee8eefade568 more efficient treatment of shyps and hyps (use ordered lists);
wenzelm
parents: 16425
diff changeset
  1455
      ~1 => raise THM ("eq_assumption", 0, [state])
ee8eefade568 more efficient treatment of shyps and hyps (use ordered lists);
wenzelm
parents: 16425
diff changeset
  1456
    | n =>
52487
48bc24467008 backout dedd7952a62c: static "proofs" value within theory prevents later inferencing with different configuration;
wenzelm
parents: 52470
diff changeset
  1457
        Thm (deriv_rule1 (Proofterm.assumption_proof Bs Bi (n + 1)) der,
61044
b7af255dd200 more abstract theory certificate, which is not necessarily the full theory;
wenzelm
parents: 61042
diff changeset
  1458
         {cert = cert,
21646
c07b5b0e8492 thm/prf: separate official name vs. additional tags;
wenzelm
parents: 21576
diff changeset
  1459
          tags = [],
16601
ee8eefade568 more efficient treatment of shyps and hyps (use ordered lists);
wenzelm
parents: 16425
diff changeset
  1460
          maxidx = maxidx,
ee8eefade568 more efficient treatment of shyps and hyps (use ordered lists);
wenzelm
parents: 16425
diff changeset
  1461
          shyps = shyps,
ee8eefade568 more efficient treatment of shyps and hyps (use ordered lists);
wenzelm
parents: 16425
diff changeset
  1462
          hyps = hyps,
ee8eefade568 more efficient treatment of shyps and hyps (use ordered lists);
wenzelm
parents: 16425
diff changeset
  1463
          tpairs = tpairs,
28321
9f4499bf9384 type thm: fully internal derivation, no longer exported;
wenzelm
parents: 28290
diff changeset
  1464
          prop = Logic.list_implies (Bs, C)}))
0
a5a9c433f639 Initial revision
clasohm
parents:
diff changeset
  1465
  end;
a5a9c433f639 Initial revision
clasohm
parents:
diff changeset
  1466
a5a9c433f639 Initial revision
clasohm
parents:
diff changeset
  1467
2671
510d94c71dda Introduction of rotate_rule
paulson
parents: 2626
diff changeset
  1468
(*For rotate_tac: fast rotation of assumptions of subgoal i*)
510d94c71dda Introduction of rotate_rule
paulson
parents: 2626
diff changeset
  1469
fun rotate_rule k i state =
16601
ee8eefade568 more efficient treatment of shyps and hyps (use ordered lists);
wenzelm
parents: 16425
diff changeset
  1470
  let
61044
b7af255dd200 more abstract theory certificate, which is not necessarily the full theory;
wenzelm
parents: 61042
diff changeset
  1471
    val Thm (der, {cert, maxidx, shyps, hyps, ...}) = state;
16601
ee8eefade568 more efficient treatment of shyps and hyps (use ordered lists);
wenzelm
parents: 16425
diff changeset
  1472
    val (tpairs, Bs, Bi, C) = dest_state (state, i);
46218
ecf6375e2abb renamed Term.list_all to Logic.list_all, in accordance to HOLogic.list_all;
wenzelm
parents: 46217
diff changeset
  1473
    val params = Term.strip_all_vars Bi;
ecf6375e2abb renamed Term.list_all to Logic.list_all, in accordance to HOLogic.list_all;
wenzelm
parents: 46217
diff changeset
  1474
    val rest = Term.strip_all_body Bi;
ecf6375e2abb renamed Term.list_all to Logic.list_all, in accordance to HOLogic.list_all;
wenzelm
parents: 46217
diff changeset
  1475
    val asms = Logic.strip_imp_prems rest
ecf6375e2abb renamed Term.list_all to Logic.list_all, in accordance to HOLogic.list_all;
wenzelm
parents: 46217
diff changeset
  1476
    val concl = Logic.strip_imp_concl rest;
16601
ee8eefade568 more efficient treatment of shyps and hyps (use ordered lists);
wenzelm
parents: 16425
diff changeset
  1477
    val n = length asms;
ee8eefade568 more efficient treatment of shyps and hyps (use ordered lists);
wenzelm
parents: 16425
diff changeset
  1478
    val m = if k < 0 then n + k else k;
ee8eefade568 more efficient treatment of shyps and hyps (use ordered lists);
wenzelm
parents: 16425
diff changeset
  1479
    val Bi' =
ee8eefade568 more efficient treatment of shyps and hyps (use ordered lists);
wenzelm
parents: 16425
diff changeset
  1480
      if 0 = m orelse m = n then Bi
ee8eefade568 more efficient treatment of shyps and hyps (use ordered lists);
wenzelm
parents: 16425
diff changeset
  1481
      else if 0 < m andalso m < n then
19012
wenzelm
parents: 18969
diff changeset
  1482
        let val (ps, qs) = chop m asms
46218
ecf6375e2abb renamed Term.list_all to Logic.list_all, in accordance to HOLogic.list_all;
wenzelm
parents: 46217
diff changeset
  1483
        in Logic.list_all (params, Logic.list_implies (qs @ ps, concl)) end
16601
ee8eefade568 more efficient treatment of shyps and hyps (use ordered lists);
wenzelm
parents: 16425
diff changeset
  1484
      else raise THM ("rotate_rule", k, [state]);
ee8eefade568 more efficient treatment of shyps and hyps (use ordered lists);
wenzelm
parents: 16425
diff changeset
  1485
  in
52487
48bc24467008 backout dedd7952a62c: static "proofs" value within theory prevents later inferencing with different configuration;
wenzelm
parents: 52470
diff changeset
  1486
    Thm (deriv_rule1 (Proofterm.rotate_proof Bs Bi m) der,
61044
b7af255dd200 more abstract theory certificate, which is not necessarily the full theory;
wenzelm
parents: 61042
diff changeset
  1487
     {cert = cert,
21646
c07b5b0e8492 thm/prf: separate official name vs. additional tags;
wenzelm
parents: 21576
diff changeset
  1488
      tags = [],
16601
ee8eefade568 more efficient treatment of shyps and hyps (use ordered lists);
wenzelm
parents: 16425
diff changeset
  1489
      maxidx = maxidx,
ee8eefade568 more efficient treatment of shyps and hyps (use ordered lists);
wenzelm
parents: 16425
diff changeset
  1490
      shyps = shyps,
ee8eefade568 more efficient treatment of shyps and hyps (use ordered lists);
wenzelm
parents: 16425
diff changeset
  1491
      hyps = hyps,
ee8eefade568 more efficient treatment of shyps and hyps (use ordered lists);
wenzelm
parents: 16425
diff changeset
  1492
      tpairs = tpairs,
28321
9f4499bf9384 type thm: fully internal derivation, no longer exported;
wenzelm
parents: 28290
diff changeset
  1493
      prop = Logic.list_implies (Bs @ [Bi'], C)})
2671
510d94c71dda Introduction of rotate_rule
paulson
parents: 2626
diff changeset
  1494
  end;
510d94c71dda Introduction of rotate_rule
paulson
parents: 2626
diff changeset
  1495
510d94c71dda Introduction of rotate_rule
paulson
parents: 2626
diff changeset
  1496
7248
322151fe6f02 new primitive rule permute_prems to underlie defer_tac and rotate_prems
paulson
parents: 7070
diff changeset
  1497
(*Rotates a rule's premises to the left by k, leaving the first j premises
322151fe6f02 new primitive rule permute_prems to underlie defer_tac and rotate_prems
paulson
parents: 7070
diff changeset
  1498
  unchanged.  Does nothing if k=0 or if k equals n-j, where n is the
58837
e84d900cd287 eliminated aliases;
wenzelm
parents: 56245
diff changeset
  1499
  number of premises.  Useful with eresolve_tac and underlies defer_tac*)
7248
322151fe6f02 new primitive rule permute_prems to underlie defer_tac and rotate_prems
paulson
parents: 7070
diff changeset
  1500
fun permute_prems j k rl =
16601
ee8eefade568 more efficient treatment of shyps and hyps (use ordered lists);
wenzelm
parents: 16425
diff changeset
  1501
  let
61044
b7af255dd200 more abstract theory certificate, which is not necessarily the full theory;
wenzelm
parents: 61042
diff changeset
  1502
    val Thm (der, {cert, maxidx, shyps, hyps, tpairs, prop, ...}) = rl;
16601
ee8eefade568 more efficient treatment of shyps and hyps (use ordered lists);
wenzelm
parents: 16425
diff changeset
  1503
    val prems = Logic.strip_imp_prems prop
ee8eefade568 more efficient treatment of shyps and hyps (use ordered lists);
wenzelm
parents: 16425
diff changeset
  1504
    and concl = Logic.strip_imp_concl prop;
ee8eefade568 more efficient treatment of shyps and hyps (use ordered lists);
wenzelm
parents: 16425
diff changeset
  1505
    val moved_prems = List.drop (prems, j)
ee8eefade568 more efficient treatment of shyps and hyps (use ordered lists);
wenzelm
parents: 16425
diff changeset
  1506
    and fixed_prems = List.take (prems, j)
43278
1fbdcebb364b more robust exception pattern General.Subscript;
wenzelm
parents: 42425
diff changeset
  1507
      handle General.Subscript => raise THM ("permute_prems: j", j, [rl]);
16601
ee8eefade568 more efficient treatment of shyps and hyps (use ordered lists);
wenzelm
parents: 16425
diff changeset
  1508
    val n_j = length moved_prems;
ee8eefade568 more efficient treatment of shyps and hyps (use ordered lists);
wenzelm
parents: 16425
diff changeset
  1509
    val m = if k < 0 then n_j + k else k;
ee8eefade568 more efficient treatment of shyps and hyps (use ordered lists);
wenzelm
parents: 16425
diff changeset
  1510
    val prop' =
ee8eefade568 more efficient treatment of shyps and hyps (use ordered lists);
wenzelm
parents: 16425
diff changeset
  1511
      if 0 = m orelse m = n_j then prop
ee8eefade568 more efficient treatment of shyps and hyps (use ordered lists);
wenzelm
parents: 16425
diff changeset
  1512
      else if 0 < m andalso m < n_j then
19012
wenzelm
parents: 18969
diff changeset
  1513
        let val (ps, qs) = chop m moved_prems
16601
ee8eefade568 more efficient treatment of shyps and hyps (use ordered lists);
wenzelm
parents: 16425
diff changeset
  1514
        in Logic.list_implies (fixed_prems @ qs @ ps, concl) end
16725
597830f91930 added full_prop_of: includes tpairs;
wenzelm
parents: 16711
diff changeset
  1515
      else raise THM ("permute_prems: k", k, [rl]);
16601
ee8eefade568 more efficient treatment of shyps and hyps (use ordered lists);
wenzelm
parents: 16425
diff changeset
  1516
  in
52487
48bc24467008 backout dedd7952a62c: static "proofs" value within theory prevents later inferencing with different configuration;
wenzelm
parents: 52470
diff changeset
  1517
    Thm (deriv_rule1 (Proofterm.permute_prems_proof prems j m) der,
61044
b7af255dd200 more abstract theory certificate, which is not necessarily the full theory;
wenzelm
parents: 61042
diff changeset
  1518
     {cert = cert,
21646
c07b5b0e8492 thm/prf: separate official name vs. additional tags;
wenzelm
parents: 21576
diff changeset
  1519
      tags = [],
16601
ee8eefade568 more efficient treatment of shyps and hyps (use ordered lists);
wenzelm
parents: 16425
diff changeset
  1520
      maxidx = maxidx,
ee8eefade568 more efficient treatment of shyps and hyps (use ordered lists);
wenzelm
parents: 16425
diff changeset
  1521
      shyps = shyps,
ee8eefade568 more efficient treatment of shyps and hyps (use ordered lists);
wenzelm
parents: 16425
diff changeset
  1522
      hyps = hyps,
ee8eefade568 more efficient treatment of shyps and hyps (use ordered lists);
wenzelm
parents: 16425
diff changeset
  1523
      tpairs = tpairs,
28321
9f4499bf9384 type thm: fully internal derivation, no longer exported;
wenzelm
parents: 28290
diff changeset
  1524
      prop = prop'})
7248
322151fe6f02 new primitive rule permute_prems to underlie defer_tac and rotate_prems
paulson
parents: 7070
diff changeset
  1525
  end;
322151fe6f02 new primitive rule permute_prems to underlie defer_tac and rotate_prems
paulson
parents: 7070
diff changeset
  1526
322151fe6f02 new primitive rule permute_prems to underlie defer_tac and rotate_prems
paulson
parents: 7070
diff changeset
  1527
44108
476a239d3e0e rename_bvs now avoids introducing name clashes between schematic variables
berghofe
parents: 43795
diff changeset
  1528
(* strip_apply f B A strips off all assumptions/parameters from A
0
a5a9c433f639 Initial revision
clasohm
parents:
diff changeset
  1529
   introduced by lifting over B, and applies f to remaining part of A*)
a5a9c433f639 Initial revision
clasohm
parents:
diff changeset
  1530
fun strip_apply f =
56245
84fc7dfa3cd4 more qualified names;
wenzelm
parents: 56052
diff changeset
  1531
  let fun strip (Const ("Pure.imp", _) $ _  $ B1)
84fc7dfa3cd4 more qualified names;
wenzelm
parents: 56052
diff changeset
  1532
                (Const ("Pure.imp", _) $ A2 $ B2) = Logic.mk_implies (A2, strip B1 B2)
84fc7dfa3cd4 more qualified names;
wenzelm
parents: 56052
diff changeset
  1533
        | strip ((c as Const ("Pure.all", _)) $ Abs (_, _, t1))
84fc7dfa3cd4 more qualified names;
wenzelm
parents: 56052
diff changeset
  1534
                (      Const ("Pure.all", _)  $ Abs (a, T, t2)) = c $ Abs (a, T, strip t1 t2)
44108
476a239d3e0e rename_bvs now avoids introducing name clashes between schematic variables
berghofe
parents: 43795
diff changeset
  1535
        | strip _ A = f A
0
a5a9c433f639 Initial revision
clasohm
parents:
diff changeset
  1536
  in strip end;
a5a9c433f639 Initial revision
clasohm
parents:
diff changeset
  1537
56245
84fc7dfa3cd4 more qualified names;
wenzelm
parents: 56052
diff changeset
  1538
fun strip_lifted (Const ("Pure.imp", _) $ _ $ B1)
84fc7dfa3cd4 more qualified names;
wenzelm
parents: 56052
diff changeset
  1539
                 (Const ("Pure.imp", _) $ _ $ B2) = strip_lifted B1 B2
84fc7dfa3cd4 more qualified names;
wenzelm
parents: 56052
diff changeset
  1540
  | strip_lifted (Const ("Pure.all", _) $ Abs (_, _, t1))
84fc7dfa3cd4 more qualified names;
wenzelm
parents: 56052
diff changeset
  1541
                 (Const ("Pure.all", _) $ Abs (_, _, t2)) = strip_lifted t1 t2
44108
476a239d3e0e rename_bvs now avoids introducing name clashes between schematic variables
berghofe
parents: 43795
diff changeset
  1542
  | strip_lifted _ A = A;
476a239d3e0e rename_bvs now avoids introducing name clashes between schematic variables
berghofe
parents: 43795
diff changeset
  1543
0
a5a9c433f639 Initial revision
clasohm
parents:
diff changeset
  1544
(*Use the alist to rename all bound variables and some unknowns in a term
a5a9c433f639 Initial revision
clasohm
parents:
diff changeset
  1545
  dpairs = current disagreement pairs;  tpairs = permanent ones (flexflex);
a5a9c433f639 Initial revision
clasohm
parents:
diff changeset
  1546
  Preserves unknowns in tpairs and on lhs of dpairs. *)
44108
476a239d3e0e rename_bvs now avoids introducing name clashes between schematic variables
berghofe
parents: 43795
diff changeset
  1547
fun rename_bvs [] _ _ _ _ = K I
476a239d3e0e rename_bvs now avoids introducing name clashes between schematic variables
berghofe
parents: 43795
diff changeset
  1548
  | rename_bvs al dpairs tpairs B As =
20330
wenzelm
parents: 20289
diff changeset
  1549
      let
wenzelm
parents: 20289
diff changeset
  1550
        val add_var = fold_aterms (fn Var ((x, _), _) => insert (op =) x | _ => I);
wenzelm
parents: 20289
diff changeset
  1551
        val vids = []
wenzelm
parents: 20289
diff changeset
  1552
          |> fold (add_var o fst) dpairs
wenzelm
parents: 20289
diff changeset
  1553
          |> fold (add_var o fst) tpairs
wenzelm
parents: 20289
diff changeset
  1554
          |> fold (add_var o snd) tpairs;
44108
476a239d3e0e rename_bvs now avoids introducing name clashes between schematic variables
berghofe
parents: 43795
diff changeset
  1555
        val vids' = fold (add_var o strip_lifted B) As [];
250
9b5a069285ce extend_theory: changed type of "abbrs" arg;
wenzelm
parents: 242
diff changeset
  1556
        (*unknowns appearing elsewhere be preserved!*)
59058
a78612c67ec0 renamed "pairself" to "apply2", in accordance to @{apply 2};
wenzelm
parents: 58950
diff changeset
  1557
        val al' = distinct ((op =) o apply2 fst)
44108
476a239d3e0e rename_bvs now avoids introducing name clashes between schematic variables
berghofe
parents: 43795
diff changeset
  1558
          (filter_out (fn (x, y) =>
476a239d3e0e rename_bvs now avoids introducing name clashes between schematic variables
berghofe
parents: 43795
diff changeset
  1559
             not (member (op =) vids' x) orelse
476a239d3e0e rename_bvs now avoids introducing name clashes between schematic variables
berghofe
parents: 43795
diff changeset
  1560
             member (op =) vids x orelse member (op =) vids y) al);
476a239d3e0e rename_bvs now avoids introducing name clashes between schematic variables
berghofe
parents: 43795
diff changeset
  1561
        val unchanged = filter_out (AList.defined (op =) al') vids';
476a239d3e0e rename_bvs now avoids introducing name clashes between schematic variables
berghofe
parents: 43795
diff changeset
  1562
        fun del_clashing clash xs _ [] qs =
476a239d3e0e rename_bvs now avoids introducing name clashes between schematic variables
berghofe
parents: 43795
diff changeset
  1563
              if clash then del_clashing false xs xs qs [] else qs
476a239d3e0e rename_bvs now avoids introducing name clashes between schematic variables
berghofe
parents: 43795
diff changeset
  1564
          | del_clashing clash xs ys ((p as (x, y)) :: ps) qs =
476a239d3e0e rename_bvs now avoids introducing name clashes between schematic variables
berghofe
parents: 43795
diff changeset
  1565
              if member (op =) ys y
476a239d3e0e rename_bvs now avoids introducing name clashes between schematic variables
berghofe
parents: 43795
diff changeset
  1566
              then del_clashing true (x :: xs) (x :: ys) ps qs
476a239d3e0e rename_bvs now avoids introducing name clashes between schematic variables
berghofe
parents: 43795
diff changeset
  1567
              else del_clashing clash xs (y :: ys) ps (p :: qs);
46497
89ccf66aa73d renamed Thm.capply to Thm.apply, and Thm.cabs to Thm.lambda in conformance with similar operations in structure Term and Logic;
wenzelm
parents: 46475
diff changeset
  1568
        val al'' = del_clashing false unchanged unchanged al' [];
44108
476a239d3e0e rename_bvs now avoids introducing name clashes between schematic variables
berghofe
parents: 43795
diff changeset
  1569
        fun rename (t as Var ((x, i), T)) =
476a239d3e0e rename_bvs now avoids introducing name clashes between schematic variables
berghofe
parents: 43795
diff changeset
  1570
              (case AList.lookup (op =) al'' x of
476a239d3e0e rename_bvs now avoids introducing name clashes between schematic variables
berghofe
parents: 43795
diff changeset
  1571
                 SOME y => Var ((y, i), T)
476a239d3e0e rename_bvs now avoids introducing name clashes between schematic variables
berghofe
parents: 43795
diff changeset
  1572
               | NONE => t)
476a239d3e0e rename_bvs now avoids introducing name clashes between schematic variables
berghofe
parents: 43795
diff changeset
  1573
          | rename (Abs (x, T, t)) =
18944
7d2ed9063477 union_tpairs: Library.merge;
wenzelm
parents: 18733
diff changeset
  1574
              Abs (the_default x (AList.lookup (op =) al x), T, rename t)
44108
476a239d3e0e rename_bvs now avoids introducing name clashes between schematic variables
berghofe
parents: 43795
diff changeset
  1575
          | rename (f $ t) = rename f $ rename t
476a239d3e0e rename_bvs now avoids introducing name clashes between schematic variables
berghofe
parents: 43795
diff changeset
  1576
          | rename t = t;
476a239d3e0e rename_bvs now avoids introducing name clashes between schematic variables
berghofe
parents: 43795
diff changeset
  1577
        fun strip_ren f Ai = f rename B Ai
20330
wenzelm
parents: 20289
diff changeset
  1578
      in strip_ren end;
0
a5a9c433f639 Initial revision
clasohm
parents:
diff changeset
  1579
a5a9c433f639 Initial revision
clasohm
parents:
diff changeset
  1580
(*Function to rename bounds/unknowns in the argument, lifted over B*)
44108
476a239d3e0e rename_bvs now avoids introducing name clashes between schematic variables
berghofe
parents: 43795
diff changeset
  1581
fun rename_bvars dpairs =
48263
94a7dc2276e4 prefer canonical fold_rev;
wenzelm
parents: 47005
diff changeset
  1582
  rename_bvs (fold_rev Term.match_bvars dpairs []) dpairs;
0
a5a9c433f639 Initial revision
clasohm
parents:
diff changeset
  1583
a5a9c433f639 Initial revision
clasohm
parents:
diff changeset
  1584
a5a9c433f639 Initial revision
clasohm
parents:
diff changeset
  1585
(*** RESOLUTION ***)
a5a9c433f639 Initial revision
clasohm
parents:
diff changeset
  1586
721
479832ff2d29 Pure/thm/norm_term_skip: new, for skipping normalization of the context
lcp
parents: 678
diff changeset
  1587
(** Lifting optimizations **)
479832ff2d29 Pure/thm/norm_term_skip: new, for skipping normalization of the context
lcp
parents: 678
diff changeset
  1588
0
a5a9c433f639 Initial revision
clasohm
parents:
diff changeset
  1589
(*strip off pairs of assumptions/parameters in parallel -- they are
a5a9c433f639 Initial revision
clasohm
parents:
diff changeset
  1590
  identical because of lifting*)
56245
84fc7dfa3cd4 more qualified names;
wenzelm
parents: 56052
diff changeset
  1591
fun strip_assums2 (Const("Pure.imp", _) $ _ $ B1,
84fc7dfa3cd4 more qualified names;
wenzelm
parents: 56052
diff changeset
  1592
                   Const("Pure.imp", _) $ _ $ B2) = strip_assums2 (B1,B2)
84fc7dfa3cd4 more qualified names;
wenzelm
parents: 56052
diff changeset
  1593
  | strip_assums2 (Const("Pure.all",_)$Abs(a,T,t1),
84fc7dfa3cd4 more qualified names;
wenzelm
parents: 56052
diff changeset
  1594
                   Const("Pure.all",_)$Abs(_,_,t2)) =
0
a5a9c433f639 Initial revision
clasohm
parents:
diff changeset
  1595
      let val (B1,B2) = strip_assums2 (t1,t2)
a5a9c433f639 Initial revision
clasohm
parents:
diff changeset
  1596
      in  (Abs(a,T,B1), Abs(a,T,B2))  end
a5a9c433f639 Initial revision
clasohm
parents:
diff changeset
  1597
  | strip_assums2 BB = BB;
a5a9c433f639 Initial revision
clasohm
parents:
diff changeset
  1598
a5a9c433f639 Initial revision
clasohm
parents:
diff changeset
  1599
721
479832ff2d29 Pure/thm/norm_term_skip: new, for skipping normalization of the context
lcp
parents: 678
diff changeset
  1600
(*Faster normalization: skip assumptions that were lifted over*)
479832ff2d29 Pure/thm/norm_term_skip: new, for skipping normalization of the context
lcp
parents: 678
diff changeset
  1601
fun norm_term_skip env 0 t = Envir.norm_term env t
56245
84fc7dfa3cd4 more qualified names;
wenzelm
parents: 56052
diff changeset
  1602
  | norm_term_skip env n (Const ("Pure.all", _) $ Abs (a, T, t)) =
32032
a6a6e8031c14 tuned/modernized Envir operations;
wenzelm
parents: 32027
diff changeset
  1603
      let
58946
3bf80312508e proper Envir.norm_type for result of Unify.unifiers (amending 479832ff2d29 from 20 years ago);
wenzelm
parents: 58837
diff changeset
  1604
        val T' = Envir.norm_type (Envir.type_env env) T
32032
a6a6e8031c14 tuned/modernized Envir operations;
wenzelm
parents: 32027
diff changeset
  1605
        (*Must instantiate types of parameters because they are flattened;
a6a6e8031c14 tuned/modernized Envir operations;
wenzelm
parents: 32027
diff changeset
  1606
          this could be a NEW parameter*)
46217
7b19666f0e3d renamed Term.all to Logic.all_const, in accordance to HOLogic.all_const;
wenzelm
parents: 45443
diff changeset
  1607
      in Logic.all_const T' $ Abs (a, T', norm_term_skip env n t) end
56245
84fc7dfa3cd4 more qualified names;
wenzelm
parents: 56052
diff changeset
  1608
  | norm_term_skip env n (Const ("Pure.imp", _) $ A $ B) =
32032
a6a6e8031c14 tuned/modernized Envir operations;
wenzelm
parents: 32027
diff changeset
  1609
      Logic.mk_implies (A, norm_term_skip env (n - 1) B)
32784
1a5dde5079ac eliminated redundant bindings;
wenzelm
parents: 32726
diff changeset
  1610
  | norm_term_skip _ _ _ = error "norm_term_skip: too few assumptions??";
721
479832ff2d29 Pure/thm/norm_term_skip: new, for skipping normalization of the context
lcp
parents: 678
diff changeset
  1611
479832ff2d29 Pure/thm/norm_term_skip: new, for skipping normalization of the context
lcp
parents: 678
diff changeset
  1612
52222
0fa3b456a267 unify types of schematic variables in non-lifted case (i.e. "compose variants") -- allow schematic polymorphism, without revisiting HO-unification;
wenzelm
parents: 52131
diff changeset
  1613
(*unify types of schematic variables (non-lifted case)*)
58950
d07464875dd4 optional proof context for unify operations, for the sake of proper local options;
wenzelm
parents: 58946
diff changeset
  1614
fun unify_var_types context (th1, th2) env =
52222
0fa3b456a267 unify types of schematic variables in non-lifted case (i.e. "compose variants") -- allow schematic polymorphism, without revisiting HO-unification;
wenzelm
parents: 52131
diff changeset
  1615
  let
58950
d07464875dd4 optional proof context for unify operations, for the sake of proper local options;
wenzelm
parents: 58946
diff changeset
  1616
    fun unify_vars (T :: Us) = fold (fn U => Pattern.unify_types context (T, U)) Us
52222
0fa3b456a267 unify types of schematic variables in non-lifted case (i.e. "compose variants") -- allow schematic polymorphism, without revisiting HO-unification;
wenzelm
parents: 52131
diff changeset
  1617
      | unify_vars _ = I;
0fa3b456a267 unify types of schematic variables in non-lifted case (i.e. "compose variants") -- allow schematic polymorphism, without revisiting HO-unification;
wenzelm
parents: 52131
diff changeset
  1618
    val add_vars =
0fa3b456a267 unify types of schematic variables in non-lifted case (i.e. "compose variants") -- allow schematic polymorphism, without revisiting HO-unification;
wenzelm
parents: 52131
diff changeset
  1619
      full_prop_of #>
0fa3b456a267 unify types of schematic variables in non-lifted case (i.e. "compose variants") -- allow schematic polymorphism, without revisiting HO-unification;
wenzelm
parents: 52131
diff changeset
  1620
      fold_aterms (fn Var v => Vartab.insert_list (op =) v | _ => I);
0fa3b456a267 unify types of schematic variables in non-lifted case (i.e. "compose variants") -- allow schematic polymorphism, without revisiting HO-unification;
wenzelm
parents: 52131
diff changeset
  1621
    val vars = Vartab.empty |> add_vars th1 |> add_vars th2;
0fa3b456a267 unify types of schematic variables in non-lifted case (i.e. "compose variants") -- allow schematic polymorphism, without revisiting HO-unification;
wenzelm
parents: 52131
diff changeset
  1622
  in SOME (Vartab.fold (unify_vars o #2) vars env) end
0fa3b456a267 unify types of schematic variables in non-lifted case (i.e. "compose variants") -- allow schematic polymorphism, without revisiting HO-unification;
wenzelm
parents: 52131
diff changeset
  1623
  handle Pattern.Unif => NONE;
0fa3b456a267 unify types of schematic variables in non-lifted case (i.e. "compose variants") -- allow schematic polymorphism, without revisiting HO-unification;
wenzelm
parents: 52131
diff changeset
  1624
0
a5a9c433f639 Initial revision
clasohm
parents:
diff changeset
  1625
(*Composition of object rule r=(A1...Am/B) with proof state s=(B1...Bn/C)
250
9b5a069285ce extend_theory: changed type of "abbrs" arg;
wenzelm
parents: 242
diff changeset
  1626
  Unifies B with Bi, replacing subgoal i    (1 <= i <= n)
0
a5a9c433f639 Initial revision
clasohm
parents:
diff changeset
  1627
  If match then forbid instantiations in proof state
a5a9c433f639 Initial revision
clasohm
parents:
diff changeset
  1628
  If lifted then shorten the dpair using strip_assums2.
a5a9c433f639 Initial revision
clasohm
parents:
diff changeset
  1629
  If eres_flg then simultaneously proves A1 by assumption.
250
9b5a069285ce extend_theory: changed type of "abbrs" arg;
wenzelm
parents: 242
diff changeset
  1630
  nsubgoal is the number of new subgoals (written m above).
0
a5a9c433f639 Initial revision
clasohm
parents:
diff changeset
  1631
  Curried so that resolution calls dest_state only once.
a5a9c433f639 Initial revision
clasohm
parents:
diff changeset
  1632
*)
4270
957c887b89b5 changed Sequence interface (now Seq, in seq.ML);
wenzelm
parents: 4254
diff changeset
  1633
local exception COMPOSE
0
a5a9c433f639 Initial revision
clasohm
parents:
diff changeset
  1634
in
58950
d07464875dd4 optional proof context for unify operations, for the sake of proper local options;
wenzelm
parents: 58946
diff changeset
  1635
fun bicompose_aux opt_ctxt {flatten, match, incremented} (state, (stpairs, Bs, Bi, C), lifted)
0
a5a9c433f639 Initial revision
clasohm
parents:
diff changeset
  1636
                        (eres_flg, orule, nsubgoal) =
28321
9f4499bf9384 type thm: fully internal derivation, no longer exported;
wenzelm
parents: 28290
diff changeset
  1637
 let val Thm (sder, {maxidx=smax, shyps=sshyps, hyps=shyps, ...}) = state
9f4499bf9384 type thm: fully internal derivation, no longer exported;
wenzelm
parents: 28290
diff changeset
  1638
     and Thm (rder, {maxidx=rmax, shyps=rshyps, hyps=rhyps,
9f4499bf9384 type thm: fully internal derivation, no longer exported;
wenzelm
parents: 28290
diff changeset
  1639
             tpairs=rtpairs, prop=rprop,...}) = orule
1529
09d9ad015269 Addition of proof objects
paulson
parents: 1517
diff changeset
  1640
         (*How many hyps to skip over during normalization*)
21576
8c11b1ce2f05 simplified Logic.count_prems;
wenzelm
parents: 21437
diff changeset
  1641
     and nlift = Logic.count_prems (strip_all_body Bi) + (if eres_flg then ~1 else 0)
64981
ea6199b23dfa proper background certificate from make_context, which can be a super-theory of the direct join (amending d07464875dd4);
wenzelm
parents: 64574
diff changeset
  1642
     val (context, cert) =
ea6199b23dfa proper background certificate from make_context, which can be a super-theory of the direct join (amending d07464875dd4);
wenzelm
parents: 64574
diff changeset
  1643
       make_context_certificate [state, orule] opt_ctxt (join_certificate2 (state, orule));
63611
fb63942e470e tuned whitespace;
wenzelm
parents: 61053
diff changeset
  1644
     (*Add new theorem with prop = '[| Bs; As |] ==> C' to thq*)
32032
a6a6e8031c14 tuned/modernized Envir operations;
wenzelm
parents: 32027
diff changeset
  1645
     fun addth A (As, oldAs, rder', n) ((env, tpairs), thq) =
250
9b5a069285ce extend_theory: changed type of "abbrs" arg;
wenzelm
parents: 242
diff changeset
  1646
       let val normt = Envir.norm_term env;
9b5a069285ce extend_theory: changed type of "abbrs" arg;
wenzelm
parents: 242
diff changeset
  1647
           (*perform minimal copying here by examining env*)
13658
c9ad3e64ddcf Changed handling of flex-flex constraints: now stored in separate
berghofe
parents: 13642
diff changeset
  1648
           val (ntpairs, normp) =
c9ad3e64ddcf Changed handling of flex-flex constraints: now stored in separate
berghofe
parents: 13642
diff changeset
  1649
             if Envir.is_empty env then (tpairs, (Bs @ As, C))
250
9b5a069285ce extend_theory: changed type of "abbrs" arg;
wenzelm
parents: 242
diff changeset
  1650
             else
59058
a78612c67ec0 renamed "pairself" to "apply2", in accordance to @{apply 2};
wenzelm
parents: 58950
diff changeset
  1651
             let val ntps = map (apply2 normt) tpairs
19861
620d90091788 tuned Seq/Envir/Unify interfaces;
wenzelm
parents: 19525
diff changeset
  1652
             in if Envir.above env smax then
1238
289c573327f0 considerably tuned shyps handling;
wenzelm
parents: 1229
diff changeset
  1653
                  (*no assignments in state; normalize the rule only*)
289c573327f0 considerably tuned shyps handling;
wenzelm
parents: 1229
diff changeset
  1654
                  if lifted
13658
c9ad3e64ddcf Changed handling of flex-flex constraints: now stored in separate
berghofe
parents: 13642
diff changeset
  1655
                  then (ntps, (Bs @ map (norm_term_skip env nlift) As, C))
c9ad3e64ddcf Changed handling of flex-flex constraints: now stored in separate
berghofe
parents: 13642
diff changeset
  1656
                  else (ntps, (Bs @ map normt As, C))
1529
09d9ad015269 Addition of proof objects
paulson
parents: 1517
diff changeset
  1657
                else if match then raise COMPOSE
250
9b5a069285ce extend_theory: changed type of "abbrs" arg;
wenzelm
parents: 242
diff changeset
  1658
                else (*normalize the new rule fully*)
13658
c9ad3e64ddcf Changed handling of flex-flex constraints: now stored in separate
berghofe
parents: 13642
diff changeset
  1659
                  (ntps, (map normt (Bs @ As), normt C))
250
9b5a069285ce extend_theory: changed type of "abbrs" arg;
wenzelm
parents: 242
diff changeset
  1660
             end
16601
ee8eefade568 more efficient treatment of shyps and hyps (use ordered lists);
wenzelm
parents: 16425
diff changeset
  1661
           val th =
52487
48bc24467008 backout dedd7952a62c: static "proofs" value within theory prevents later inferencing with different configuration;
wenzelm
parents: 52470
diff changeset
  1662
             Thm (deriv_rule2
11518
5f2616a1c10a Replaced old derivations by proof terms.
berghofe
parents: 10767
diff changeset
  1663
                   ((if Envir.is_empty env then I
19861
620d90091788 tuned Seq/Envir/Unify interfaces;
wenzelm
parents: 19525
diff changeset
  1664
                     else if Envir.above env smax then
37309
38ce84c83738 eliminated ML structure alias;
wenzelm
parents: 37297
diff changeset
  1665
                       (fn f => fn der => f (Proofterm.norm_proof' env der))
11518
5f2616a1c10a Replaced old derivations by proof terms.
berghofe
parents: 10767
diff changeset
  1666
                     else
37309
38ce84c83738 eliminated ML structure alias;
wenzelm
parents: 37297
diff changeset
  1667
                       curry op oo (Proofterm.norm_proof' env))
38ce84c83738 eliminated ML structure alias;
wenzelm
parents: 37297
diff changeset
  1668
                    (Proofterm.bicompose_proof flatten Bs oldAs As A n (nlift+1))) rder' sder,
28321
9f4499bf9384 type thm: fully internal derivation, no longer exported;
wenzelm
parents: 28290
diff changeset
  1669
                {tags = [],
32032
a6a6e8031c14 tuned/modernized Envir operations;
wenzelm
parents: 32027
diff changeset
  1670
                 maxidx = Envir.maxidx_of env,
26640
92e6d3ec91bd simplified handling of sorts, removed unnecessary universal witness;
wenzelm
parents: 26631
diff changeset
  1671
                 shyps = Envir.insert_sorts env (Sorts.union rshyps sshyps),
16601
ee8eefade568 more efficient treatment of shyps and hyps (use ordered lists);
wenzelm
parents: 16425
diff changeset
  1672
                 hyps = union_hyps rhyps shyps,
13658
c9ad3e64ddcf Changed handling of flex-flex constraints: now stored in separate
berghofe
parents: 13642
diff changeset
  1673
                 tpairs = ntpairs,
24143
90a9a6fe0d01 replaced Theory.self_ref by Theory.check_thy, which now produces a checked ref;
wenzelm
parents: 23781
diff changeset
  1674
                 prop = Logic.list_implies normp,
61044
b7af255dd200 more abstract theory certificate, which is not necessarily the full theory;
wenzelm
parents: 61042
diff changeset
  1675
                 cert = cert})
19475
8aa2b380614a curried Seq.cons;
wenzelm
parents: 19429
diff changeset
  1676
        in  Seq.cons th thq  end  handle COMPOSE => thq;
13658
c9ad3e64ddcf Changed handling of flex-flex constraints: now stored in separate
berghofe
parents: 13642
diff changeset
  1677
     val (rAs,B) = Logic.strip_prems(nsubgoal, [], rprop)
0
a5a9c433f639 Initial revision
clasohm
parents:
diff changeset
  1678
       handle TERM _ => raise THM("bicompose: rule", 0, [orule,state]);
a5a9c433f639 Initial revision
clasohm
parents:
diff changeset
  1679
     (*Modify assumptions, deleting n-th if n>0 for e-resolution*)
a5a9c433f639 Initial revision
clasohm
parents:
diff changeset
  1680
     fun newAs(As0, n, dpairs, tpairs) =
11518
5f2616a1c10a Replaced old derivations by proof terms.
berghofe
parents: 10767
diff changeset
  1681
       let val (As1, rder') =
25939
ddea202704b4 Removed Logic.auto_rename.
berghofe
parents: 24848
diff changeset
  1682
         if not lifted then (As0, rder)
44108
476a239d3e0e rename_bvs now avoids introducing name clashes between schematic variables
berghofe
parents: 43795
diff changeset
  1683
         else
476a239d3e0e rename_bvs now avoids introducing name clashes between schematic variables
berghofe
parents: 43795
diff changeset
  1684
           let val rename = rename_bvars dpairs tpairs B As0
476a239d3e0e rename_bvs now avoids introducing name clashes between schematic variables
berghofe
parents: 43795
diff changeset
  1685
           in (map (rename strip_apply) As0,
52487
48bc24467008 backout dedd7952a62c: static "proofs" value within theory prevents later inferencing with different configuration;
wenzelm
parents: 52470
diff changeset
  1686
             deriv_rule1 (Proofterm.map_proof_terms (rename K) I) rder)
44108
476a239d3e0e rename_bvs now avoids introducing name clashes between schematic variables
berghofe
parents: 43795
diff changeset
  1687
           end;
18486
bf8637d9d53b added bicompose_no_flatten, which refrains from
wenzelm
parents: 18418
diff changeset
  1688
       in (map (if flatten then (Logic.flatten_params n) else I) As1, As1, rder', n)
250
9b5a069285ce extend_theory: changed type of "abbrs" arg;
wenzelm
parents: 242
diff changeset
  1689
          handle TERM _ =>
9b5a069285ce extend_theory: changed type of "abbrs" arg;
wenzelm
parents: 242
diff changeset
  1690
          raise THM("bicompose: 1st premise", 0, [orule])
0
a5a9c433f639 Initial revision
clasohm
parents:
diff changeset
  1691
       end;
a5a9c433f639 Initial revision
clasohm
parents:
diff changeset
  1692
     val BBi = if lifted then strip_assums2(B,Bi) else (B,Bi);
a5a9c433f639 Initial revision
clasohm
parents:
diff changeset
  1693
     val dpairs = BBi :: (rtpairs@stpairs);
30554
73f8bd5f0af8 substantial speedup of assumption and elim-resolution: Logic.assum_problems refrains from eager application of parameters, discriminate via Term.could_unify before invoking full unification (assumes terms in beta-normal form, as do higher term net operations anyway);
wenzelm
parents: 30466
diff changeset
  1694
73f8bd5f0af8 substantial speedup of assumption and elim-resolution: Logic.assum_problems refrains from eager application of parameters, discriminate via Term.could_unify before invoking full unification (assumes terms in beta-normal form, as do higher term net operations anyway);
wenzelm
parents: 30466
diff changeset
  1695
     (*elim-resolution: try each assumption in turn*)
52222
0fa3b456a267 unify types of schematic variables in non-lifted case (i.e. "compose variants") -- allow schematic polymorphism, without revisiting HO-unification;
wenzelm
parents: 52131
diff changeset
  1696
     fun eres _ [] = raise THM ("bicompose: no premises", 0, [orule, state])
0fa3b456a267 unify types of schematic variables in non-lifted case (i.e. "compose variants") -- allow schematic polymorphism, without revisiting HO-unification;
wenzelm
parents: 52131
diff changeset
  1697
       | eres env (A1 :: As) =
30554
73f8bd5f0af8 substantial speedup of assumption and elim-resolution: Logic.assum_problems refrains from eager application of parameters, discriminate via Term.could_unify before invoking full unification (assumes terms in beta-normal form, as do higher term net operations anyway);
wenzelm
parents: 30466
diff changeset
  1698
           let
73f8bd5f0af8 substantial speedup of assumption and elim-resolution: Logic.assum_problems refrains from eager application of parameters, discriminate via Term.could_unify before invoking full unification (assumes terms in beta-normal form, as do higher term net operations anyway);
wenzelm
parents: 30466
diff changeset
  1699
             val A = SOME A1;
30556
7be15917f3fa eq_assumption: slightly more efficient by checking (open) result of Logic.assum_problems directly;
wenzelm
parents: 30554
diff changeset
  1700
             val (close, asms, concl) = Logic.assum_problems (nlift + 1, A1);
7be15917f3fa eq_assumption: slightly more efficient by checking (open) result of Logic.assum_problems directly;
wenzelm
parents: 30554
diff changeset
  1701
             val concl' = close concl;
30554
73f8bd5f0af8 substantial speedup of assumption and elim-resolution: Logic.assum_problems refrains from eager application of parameters, discriminate via Term.could_unify before invoking full unification (assumes terms in beta-normal form, as do higher term net operations anyway);
wenzelm
parents: 30466
diff changeset
  1702
             fun tryasms [] _ = Seq.empty
30556
7be15917f3fa eq_assumption: slightly more efficient by checking (open) result of Logic.assum_problems directly;
wenzelm
parents: 30554
diff changeset
  1703
               | tryasms (asm :: rest) n =
7be15917f3fa eq_assumption: slightly more efficient by checking (open) result of Logic.assum_problems directly;
wenzelm
parents: 30554
diff changeset
  1704
                   if Term.could_unify (asm, concl) then
7be15917f3fa eq_assumption: slightly more efficient by checking (open) result of Logic.assum_problems directly;
wenzelm
parents: 30554
diff changeset
  1705
                     let val asm' = close asm in
58950
d07464875dd4 optional proof context for unify operations, for the sake of proper local options;
wenzelm
parents: 58946
diff changeset
  1706
                       (case Seq.pull (Unify.unifiers (context, env, (asm', concl') :: dpairs)) of
30554
73f8bd5f0af8 substantial speedup of assumption and elim-resolution: Logic.assum_problems refrains from eager application of parameters, discriminate via Term.could_unify before invoking full unification (assumes terms in beta-normal form, as do higher term net operations anyway);
wenzelm
parents: 30466
diff changeset
  1707
                         NONE => tryasms rest (n + 1)
73f8bd5f0af8 substantial speedup of assumption and elim-resolution: Logic.assum_problems refrains from eager application of parameters, discriminate via Term.could_unify before invoking full unification (assumes terms in beta-normal form, as do higher term net operations anyway);
wenzelm
parents: 30466
diff changeset
  1708
                       | cell as SOME ((_, tpairs), _) =>
30556
7be15917f3fa eq_assumption: slightly more efficient by checking (open) result of Logic.assum_problems directly;
wenzelm
parents: 30554
diff changeset
  1709
                           Seq.it_right (addth A (newAs (As, n, [BBi, (concl', asm')], tpairs)))
30554
73f8bd5f0af8 substantial speedup of assumption and elim-resolution: Logic.assum_problems refrains from eager application of parameters, discriminate via Term.could_unify before invoking full unification (assumes terms in beta-normal form, as do higher term net operations anyway);
wenzelm
parents: 30466
diff changeset
  1710
                             (Seq.make (fn () => cell),
73f8bd5f0af8 substantial speedup of assumption and elim-resolution: Logic.assum_problems refrains from eager application of parameters, discriminate via Term.could_unify before invoking full unification (assumes terms in beta-normal form, as do higher term net operations anyway);
wenzelm
parents: 30466
diff changeset
  1711
                              Seq.make (fn () => Seq.pull (tryasms rest (n + 1)))))
73f8bd5f0af8 substantial speedup of assumption and elim-resolution: Logic.assum_problems refrains from eager application of parameters, discriminate via Term.could_unify before invoking full unification (assumes terms in beta-normal form, as do higher term net operations anyway);
wenzelm
parents: 30466
diff changeset
  1712
                     end
73f8bd5f0af8 substantial speedup of assumption and elim-resolution: Logic.assum_problems refrains from eager application of parameters, discriminate via Term.could_unify before invoking full unification (assumes terms in beta-normal form, as do higher term net operations anyway);
wenzelm
parents: 30466
diff changeset
  1713
                   else tryasms rest (n + 1);
30556
7be15917f3fa eq_assumption: slightly more efficient by checking (open) result of Logic.assum_problems directly;
wenzelm
parents: 30554
diff changeset
  1714
           in tryasms asms 1 end;
30554
73f8bd5f0af8 substantial speedup of assumption and elim-resolution: Logic.assum_problems refrains from eager application of parameters, discriminate via Term.could_unify before invoking full unification (assumes terms in beta-normal form, as do higher term net operations anyway);
wenzelm
parents: 30466
diff changeset
  1715
0
a5a9c433f639 Initial revision
clasohm
parents:
diff changeset
  1716
     (*ordinary resolution*)
52222
0fa3b456a267 unify types of schematic variables in non-lifted case (i.e. "compose variants") -- allow schematic polymorphism, without revisiting HO-unification;
wenzelm
parents: 52131
diff changeset
  1717
     fun res env =
58950
d07464875dd4 optional proof context for unify operations, for the sake of proper local options;
wenzelm
parents: 58946
diff changeset
  1718
       (case Seq.pull (Unify.unifiers (context, env, dpairs)) of
30554
73f8bd5f0af8 substantial speedup of assumption and elim-resolution: Logic.assum_problems refrains from eager application of parameters, discriminate via Term.could_unify before invoking full unification (assumes terms in beta-normal form, as do higher term net operations anyway);
wenzelm
parents: 30466
diff changeset
  1719
         NONE => Seq.empty
73f8bd5f0af8 substantial speedup of assumption and elim-resolution: Logic.assum_problems refrains from eager application of parameters, discriminate via Term.could_unify before invoking full unification (assumes terms in beta-normal form, as do higher term net operations anyway);
wenzelm
parents: 30466
diff changeset
  1720
       | cell as SOME ((_, tpairs), _) =>
73f8bd5f0af8 substantial speedup of assumption and elim-resolution: Logic.assum_problems refrains from eager application of parameters, discriminate via Term.could_unify before invoking full unification (assumes terms in beta-normal form, as do higher term net operations anyway);
wenzelm
parents: 30466
diff changeset
  1721
           Seq.it_right (addth NONE (newAs (rev rAs, 0, [BBi], tpairs)))
73f8bd5f0af8 substantial speedup of assumption and elim-resolution: Logic.assum_problems refrains from eager application of parameters, discriminate via Term.could_unify before invoking full unification (assumes terms in beta-normal form, as do higher term net operations anyway);
wenzelm
parents: 30466
diff changeset
  1722
             (Seq.make (fn () => cell), Seq.empty));
52222
0fa3b456a267 unify types of schematic variables in non-lifted case (i.e. "compose variants") -- allow schematic polymorphism, without revisiting HO-unification;
wenzelm
parents: 52131
diff changeset
  1723
0fa3b456a267 unify types of schematic variables in non-lifted case (i.e. "compose variants") -- allow schematic polymorphism, without revisiting HO-unification;
wenzelm
parents: 52131
diff changeset
  1724
     val env0 = Envir.empty (Int.max (rmax, smax));
30554
73f8bd5f0af8 substantial speedup of assumption and elim-resolution: Logic.assum_problems refrains from eager application of parameters, discriminate via Term.could_unify before invoking full unification (assumes terms in beta-normal form, as do higher term net operations anyway);
wenzelm
parents: 30466
diff changeset
  1725
 in
58950
d07464875dd4 optional proof context for unify operations, for the sake of proper local options;
wenzelm
parents: 58946
diff changeset
  1726
   (case if incremented then SOME env0 else unify_var_types context (state, orule) env0 of
52222
0fa3b456a267 unify types of schematic variables in non-lifted case (i.e. "compose variants") -- allow schematic polymorphism, without revisiting HO-unification;
wenzelm
parents: 52131
diff changeset
  1727
     NONE => Seq.empty
0fa3b456a267 unify types of schematic variables in non-lifted case (i.e. "compose variants") -- allow schematic polymorphism, without revisiting HO-unification;
wenzelm
parents: 52131
diff changeset
  1728
   | SOME env => if eres_flg then eres env (rev rAs) else res env)
0
a5a9c433f639 Initial revision
clasohm
parents:
diff changeset
  1729
 end;
7528
ee5f37e4f186 removed obsolete comment;
wenzelm
parents: 7323
diff changeset
  1730
end;
0
a5a9c433f639 Initial revision
clasohm
parents:
diff changeset
  1731
58950
d07464875dd4 optional proof context for unify operations, for the sake of proper local options;
wenzelm
parents: 58946
diff changeset
  1732
fun bicompose opt_ctxt flags arg i state =
d07464875dd4 optional proof context for unify operations, for the sake of proper local options;
wenzelm
parents: 58946
diff changeset
  1733
  bicompose_aux opt_ctxt flags (state, dest_state (state,i), false) arg;
0
a5a9c433f639 Initial revision
clasohm
parents:
diff changeset
  1734
a5a9c433f639 Initial revision
clasohm
parents:
diff changeset
  1735
(*Quick test whether rule is resolvable with the subgoal with hyps Hs
a5a9c433f639 Initial revision
clasohm
parents:
diff changeset
  1736
  and conclusion B.  If eres_flg then checks 1st premise of rule also*)
a5a9c433f639 Initial revision
clasohm
parents:
diff changeset
  1737
fun could_bires (Hs, B, eres_flg, rule) =
29269
5c25a2012975 moved term order operations to structure TermOrd (cf. Pure/term_ord.ML);
wenzelm
parents: 29003
diff changeset
  1738
    let fun could_reshyp (A1::_) = exists (fn H => Term.could_unify (A1, H)) Hs
250
9b5a069285ce extend_theory: changed type of "abbrs" arg;
wenzelm
parents: 242
diff changeset
  1739
          | could_reshyp [] = false;  (*no premise -- illegal*)
29269
5c25a2012975 moved term order operations to structure TermOrd (cf. Pure/term_ord.ML);
wenzelm
parents: 29003
diff changeset
  1740
    in  Term.could_unify(concl_of rule, B) andalso
250
9b5a069285ce extend_theory: changed type of "abbrs" arg;
wenzelm
parents: 242
diff changeset
  1741
        (not eres_flg  orelse  could_reshyp (prems_of rule))
0
a5a9c433f639 Initial revision
clasohm
parents:
diff changeset
  1742
    end;
a5a9c433f639 Initial revision
clasohm
parents:
diff changeset
  1743
a5a9c433f639 Initial revision
clasohm
parents:
diff changeset
  1744
(*Bi-resolution of a state with a list of (flag,rule) pairs.
a5a9c433f639 Initial revision
clasohm
parents:
diff changeset
  1745
  Puts the rule above:  rule/state.  Renames vars in the rules. *)
58950
d07464875dd4 optional proof context for unify operations, for the sake of proper local options;
wenzelm
parents: 58946
diff changeset
  1746
fun biresolution opt_ctxt match brules i state =
18035
eaae44affc9e added cgoal_of;
wenzelm
parents: 17868
diff changeset
  1747
    let val (stpairs, Bs, Bi, C) = dest_state(state,i);
18145
6757627acf59 renamed Thm.cgoal_of to Thm.cprem_of;
wenzelm
parents: 18127
diff changeset
  1748
        val lift = lift_rule (cprem_of state i);
250
9b5a069285ce extend_theory: changed type of "abbrs" arg;
wenzelm
parents: 242
diff changeset
  1749
        val B = Logic.strip_assums_concl Bi;
9b5a069285ce extend_theory: changed type of "abbrs" arg;
wenzelm
parents: 242
diff changeset
  1750
        val Hs = Logic.strip_assums_hyp Bi;
52223
5bb6ae8acb87 tuned signature -- more explicit flags for low-level Thm.bicompose;
wenzelm
parents: 52222
diff changeset
  1751
        val compose =
58950
d07464875dd4 optional proof context for unify operations, for the sake of proper local options;
wenzelm
parents: 58946
diff changeset
  1752
          bicompose_aux opt_ctxt {flatten = true, match = match, incremented = true}
52223
5bb6ae8acb87 tuned signature -- more explicit flags for low-level Thm.bicompose;
wenzelm
parents: 52222
diff changeset
  1753
            (state, (stpairs, Bs, Bi, C), true);
4270
957c887b89b5 changed Sequence interface (now Seq, in seq.ML);
wenzelm
parents: 4254
diff changeset
  1754
        fun res [] = Seq.empty
250
9b5a069285ce extend_theory: changed type of "abbrs" arg;
wenzelm
parents: 242
diff changeset
  1755
          | res ((eres_flg, rule)::brules) =
61044
b7af255dd200 more abstract theory certificate, which is not necessarily the full theory;
wenzelm
parents: 61042
diff changeset
  1756
              if Config.get_generic (make_context [state] opt_ctxt (cert_of state))
58950
d07464875dd4 optional proof context for unify operations, for the sake of proper local options;
wenzelm
parents: 58946
diff changeset
  1757
                  Pattern.unify_trace_failure orelse could_bires (Hs, B, eres_flg, rule)
4270
957c887b89b5 changed Sequence interface (now Seq, in seq.ML);
wenzelm
parents: 4254
diff changeset
  1758
              then Seq.make (*delay processing remainder till needed*)
22573
2ac646ab2f6c avoid clash with Alice keywords;
wenzelm
parents: 22365
diff changeset
  1759
                  (fn()=> SOME(compose (eres_flg, lift rule, nprems_of rule),
250
9b5a069285ce extend_theory: changed type of "abbrs" arg;
wenzelm
parents: 242
diff changeset
  1760
                               res brules))
9b5a069285ce extend_theory: changed type of "abbrs" arg;
wenzelm
parents: 242
diff changeset
  1761
              else res brules
4270
957c887b89b5 changed Sequence interface (now Seq, in seq.ML);
wenzelm
parents: 4254
diff changeset
  1762
    in  Seq.flat (res brules)  end;
0
a5a9c433f639 Initial revision
clasohm
parents:
diff changeset
  1763
a5a9c433f639 Initial revision
clasohm
parents:
diff changeset
  1764
28321
9f4499bf9384 type thm: fully internal derivation, no longer exported;
wenzelm
parents: 28290
diff changeset
  1765
2509
0a7169d89b7a added termless parameter;
wenzelm
parents: 2386
diff changeset
  1766
(*** Oracles ***)
0a7169d89b7a added termless parameter;
wenzelm
parents: 2386
diff changeset
  1767
28290
4cc2b6046258 simplified oracle interface;
wenzelm
parents: 28288
diff changeset
  1768
(* oracle rule *)
4cc2b6046258 simplified oracle interface;
wenzelm
parents: 28288
diff changeset
  1769
52788
da1fdbfebd39 type theory is purely value-oriented;
wenzelm
parents: 52709
diff changeset
  1770
fun invoke_oracle thy1 name oracle arg =
61044
b7af255dd200 more abstract theory certificate, which is not necessarily the full theory;
wenzelm
parents: 61042
diff changeset
  1771
  let val Cterm {cert = cert2, t = prop, T, maxidx, sorts} = oracle arg in
28290
4cc2b6046258 simplified oracle interface;
wenzelm
parents: 28288
diff changeset
  1772
    if T <> propT then
4cc2b6046258 simplified oracle interface;
wenzelm
parents: 28288
diff changeset
  1773
      raise THM ("Oracle's result must have type prop: " ^ name, 0, [])
4cc2b6046258 simplified oracle interface;
wenzelm
parents: 28288
diff changeset
  1774
    else
52487
48bc24467008 backout dedd7952a62c: static "proofs" value within theory prevents later inferencing with different configuration;
wenzelm
parents: 52470
diff changeset
  1775
      let val (ora, prf) = Proofterm.oracle_proof name prop in
32059
7991cdf10a54 support for arbitrarity nested future proofs -- replaced crude order by explicit normalization (which might loop for bad dependencies);
wenzelm
parents: 32035
diff changeset
  1776
        Thm (make_deriv [] [ora] [] prf,
61044
b7af255dd200 more abstract theory certificate, which is not necessarily the full theory;
wenzelm
parents: 61042
diff changeset
  1777
         {cert = Context.join_certificate (Context.Certificate thy1, cert2),
28804
5d3b1df16353 refined notion of derivation, consiting of promises and proof_body;
wenzelm
parents: 28675
diff changeset
  1778
          tags = [],
5d3b1df16353 refined notion of derivation, consiting of promises and proof_body;
wenzelm
parents: 28675
diff changeset
  1779
          maxidx = maxidx,
5d3b1df16353 refined notion of derivation, consiting of promises and proof_body;
wenzelm
parents: 28675
diff changeset
  1780
          shyps = sorts,
5d3b1df16353 refined notion of derivation, consiting of promises and proof_body;
wenzelm
parents: 28675
diff changeset
  1781
          hyps = [],
5d3b1df16353 refined notion of derivation, consiting of promises and proof_body;
wenzelm
parents: 28675
diff changeset
  1782
          tpairs = [],
5d3b1df16353 refined notion of derivation, consiting of promises and proof_body;
wenzelm
parents: 28675
diff changeset
  1783
          prop = prop})
5d3b1df16353 refined notion of derivation, consiting of promises and proof_body;
wenzelm
parents: 28675
diff changeset
  1784
      end
3812
66fa30839377 fixed get_axiom, invoke_oracle;
wenzelm
parents: 3789
diff changeset
  1785
  end;
66fa30839377 fixed get_axiom, invoke_oracle;
wenzelm
parents: 3789
diff changeset
  1786
32590
95f4f08f950f replaced opaque signature matching by plain old abstype (again, cf. ac4498f95d1c) -- this recovers pretty printing in SML/NJ and Poly/ML 5.3;
wenzelm
parents: 32198
diff changeset
  1787
end;
95f4f08f950f replaced opaque signature matching by plain old abstype (again, cf. ac4498f95d1c) -- this recovers pretty printing in SML/NJ and Poly/ML 5.3;
wenzelm
parents: 32198
diff changeset
  1788
end;
95f4f08f950f replaced opaque signature matching by plain old abstype (again, cf. ac4498f95d1c) -- this recovers pretty printing in SML/NJ and Poly/ML 5.3;
wenzelm
parents: 32198
diff changeset
  1789
end;
95f4f08f950f replaced opaque signature matching by plain old abstype (again, cf. ac4498f95d1c) -- this recovers pretty printing in SML/NJ and Poly/ML 5.3;
wenzelm
parents: 32198
diff changeset
  1790
28290
4cc2b6046258 simplified oracle interface;
wenzelm
parents: 28288
diff changeset
  1791
4cc2b6046258 simplified oracle interface;
wenzelm
parents: 28288
diff changeset
  1792
(* authentic derivation names *)
4cc2b6046258 simplified oracle interface;
wenzelm
parents: 28288
diff changeset
  1793
33522
737589bb9bb8 adapted Theory_Data;
wenzelm
parents: 33159
diff changeset
  1794
structure Oracles = Theory_Data
28290
4cc2b6046258 simplified oracle interface;
wenzelm
parents: 28288
diff changeset
  1795
(
33095
bbd52d2f8696 renamed NameSpace to Name_Space -- also to emphasize its subtle change in semantics;
wenzelm
parents: 33092
diff changeset
  1796
  type T = unit Name_Space.table;
33159
369da293bbd4 make SML/NJ happy;
wenzelm
parents: 33096
diff changeset
  1797
  val empty : T = Name_Space.empty_table "oracle";
28290
4cc2b6046258 simplified oracle interface;
wenzelm
parents: 28288
diff changeset
  1798
  val extend = I;
33522
737589bb9bb8 adapted Theory_Data;
wenzelm
parents: 33159
diff changeset
  1799
  fun merge data : T = Name_Space.merge_tables data;
28290
4cc2b6046258 simplified oracle interface;
wenzelm
parents: 28288
diff changeset
  1800
);
4cc2b6046258 simplified oracle interface;
wenzelm
parents: 28288
diff changeset
  1801
59917
9830c944670f more uniform "verbose" option to print name space;
wenzelm
parents: 59884
diff changeset
  1802
fun extern_oracles verbose ctxt =
9830c944670f more uniform "verbose" option to print name space;
wenzelm
parents: 59884
diff changeset
  1803
  map #1 (Name_Space.markup_table verbose ctxt (Oracles.get (Proof_Context.theory_of ctxt)));
28290
4cc2b6046258 simplified oracle interface;
wenzelm
parents: 28288
diff changeset
  1804
30288
a32700e45ab3 Thm.add_oracle interface: replaced old bstring by binding;
wenzelm
parents: 29636
diff changeset
  1805
fun add_oracle (b, oracle) thy =
28290
4cc2b6046258 simplified oracle interface;
wenzelm
parents: 28288
diff changeset
  1806
  let
47005
421760a1efe7 maintain generic context naming in structure Name_Space (NB: empty = default_naming, init = local_naming);
wenzelm
parents: 46497
diff changeset
  1807
    val (name, tab') = Name_Space.define (Context.Theory thy) true (b, ()) (Oracles.get thy);
30288
a32700e45ab3 Thm.add_oracle interface: replaced old bstring by binding;
wenzelm
parents: 29636
diff changeset
  1808
    val thy' = Oracles.put tab' thy;
52788
da1fdbfebd39 type theory is purely value-oriented;
wenzelm
parents: 52709
diff changeset
  1809
  in ((name, invoke_oracle thy' name oracle), thy') end;
28290
4cc2b6046258 simplified oracle interface;
wenzelm
parents: 28288
diff changeset
  1810
0
a5a9c433f639 Initial revision
clasohm
parents:
diff changeset
  1811
end;
1503
7dba648ee25c Elimination of fully-functorial style.
paulson
parents: 1495
diff changeset
  1812
32104
d1d98a02473e simultaneous join_proofs;
wenzelm
parents: 32094
diff changeset
  1813
structure Basic_Thm: BASIC_THM = Thm;
d1d98a02473e simultaneous join_proofs;
wenzelm
parents: 32094
diff changeset
  1814
open Basic_Thm;