src/Pure/proofterm.ML
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Tue, 21 Apr 2020 22:19:59 +0200
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clarified signature: avoid clash with Isabelle/Scala Term.OFCLASS on case-insensible file-system;
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(*  Title:      Pure/proofterm.ML
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    Author:     Stefan Berghofer, TU Muenchen
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LF style proof terms.
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*)
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infix 8 % %% %>;
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signature PROOFTERM =
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sig
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  type thm_header =
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    {serial: serial, pos: Position.T list, theory_name: string, name: string,
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      prop: term, types: typ list option}
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  type thm_body
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  type thm_node
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  datatype proof =
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     MinProof
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   | PBound of int
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   | Abst of string * typ option * proof
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   | AbsP of string * term option * proof
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   | % of proof * term option
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   | %% of proof * proof
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   | Hyp of term
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   | PAxm of string * term * typ list option
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   | PClass of typ * class
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   | Oracle of string * term * typ list option
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   | PThm of thm_header * thm_body
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  and proof_body = PBody of
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    {oracles: ((string * Position.T) * term option) Ord_List.T,
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     thms: (serial * thm_node) Ord_List.T,
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     proof: proof}
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  type oracle = (string * Position.T) * term option
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  type thm = serial * thm_node
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  exception MIN_PROOF of unit
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  val proof_of: proof_body -> proof
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  val join_proof: proof_body future -> proof
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  val map_proof_of: (proof -> proof) -> proof_body -> proof_body
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  val thm_header: serial -> Position.T list -> string -> string -> term -> typ list option ->
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    thm_header
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  val thm_body: proof_body -> thm_body
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  val thm_body_proof_raw: thm_body -> proof
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  val thm_body_proof_open: thm_body -> proof
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  val thm_node_theory_name: thm_node -> string
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  val thm_node_name: thm_node -> string
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  val thm_node_prop: thm_node -> term
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  val thm_node_body: thm_node -> proof_body future
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  val thm_node_thms: thm_node -> thm list
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  val join_thms: thm list -> proof_body list
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  val make_thm: thm_header -> thm_body -> thm
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  val fold_proof_atoms: bool -> (proof -> 'a -> 'a) -> proof list -> 'a -> 'a
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  val fold_body_thms:
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    ({serial: serial, name: string, prop: term, body: proof_body} -> 'a -> 'a) ->
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    proof_body list -> 'a -> 'a
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  val oracle_ord: oracle ord
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  val thm_ord: thm ord
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  val unions_oracles: oracle Ord_List.T list -> oracle Ord_List.T
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  val unions_thms: thm Ord_List.T list -> thm Ord_List.T
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  val no_proof_body: proof -> proof_body
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  val no_thm_names: proof -> proof
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  val no_thm_proofs: proof -> proof
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  val no_body_proofs: proof -> proof
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  val encode: Consts.T -> proof XML.Encode.T
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  val encode_body: Consts.T -> proof_body XML.Encode.T
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  val encode_standard_term: Consts.T -> term XML.Encode.T
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  val encode_standard_proof: Consts.T -> proof XML.Encode.T
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  val decode: Consts.T -> proof XML.Decode.T
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  val decode_body: Consts.T -> proof_body XML.Decode.T
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  val %> : proof * term -> proof
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  (*primitive operations*)
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  val proofs: int Unsynchronized.ref
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  val proofs_enabled: unit -> bool
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  val atomic_proof: proof -> bool
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  val compact_proof: proof -> bool
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  val proof_combt: proof * term list -> proof
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  val proof_combt': proof * term option list -> proof
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  val proof_combP: proof * proof list -> proof
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  val strip_combt: proof -> proof * term option list
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  val strip_combP: proof -> proof * proof list
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  val strip_thm_body: proof_body -> proof_body
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  val map_proof_same: term Same.operation -> typ Same.operation
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    -> (typ * class -> proof) -> proof Same.operation
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  val map_proof_terms_same: term Same.operation -> typ Same.operation -> proof Same.operation
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  val map_proof_types_same: typ Same.operation -> proof Same.operation
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  val map_proof_terms: (term -> term) -> (typ -> typ) -> proof -> proof
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  val map_proof_types: (typ -> typ) -> proof -> proof
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  val fold_proof_terms: (term -> 'a -> 'a) -> proof -> 'a -> 'a
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  val fold_proof_terms_types: (term -> 'a -> 'a) -> (typ -> 'a -> 'a) -> proof -> 'a -> 'a
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  val maxidx_proof: proof -> int -> int
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  val size_of_proof: proof -> int
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  val change_types: typ list option -> proof -> proof
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  val prf_abstract_over: term -> proof -> proof
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  val prf_incr_bv: int -> int -> int -> int -> proof -> proof
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  val incr_pboundvars: int -> int -> proof -> proof
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  val prf_loose_bvar1: proof -> int -> bool
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  val prf_loose_Pbvar1: proof -> int -> bool
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  val prf_add_loose_bnos: int -> int -> proof -> int list * int list -> int list * int list
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  val norm_proof: Envir.env -> proof -> proof
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  val norm_proof': Envir.env -> proof -> proof
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  val prf_subst_bounds: term list -> proof -> proof
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  val prf_subst_pbounds: proof list -> proof -> proof
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  val freeze_thaw_prf: proof -> proof * (proof -> proof)
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  (*proof terms for specific inference rules*)
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  val trivial_proof: proof
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  val implies_intr_proof: term -> proof -> proof
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  val implies_intr_proof': term -> proof -> proof
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  val forall_intr_proof: string * term -> typ option -> proof -> proof
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  val forall_intr_proof': term -> proof -> proof
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  val varify_proof: term -> (string * sort) list -> proof -> proof
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  val legacy_freezeT: term -> proof -> proof
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  val rotate_proof: term list -> term -> (string * typ) list -> term list -> int -> proof -> proof
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  val permute_prems_proof: term list -> int -> int -> proof -> proof
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  val generalize_proof: string list * string list -> int -> term -> proof -> proof
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  val instantiate: ((indexname * sort) * typ) list * ((indexname * typ) * term) list
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    -> proof -> proof
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  val lift_proof: term -> int -> term -> proof -> proof
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  val incr_indexes: int -> proof -> proof
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  val assumption_proof: term list -> term -> int -> proof -> proof
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  val bicompose_proof: bool -> term list -> term list -> term option -> term list ->
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    int -> int -> proof -> proof -> proof
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  val equality_axms: (string * term) list
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  val reflexive_axm: proof
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  val symmetric_axm: proof
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  val transitive_axm: proof
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  val equal_intr_axm: proof
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  val equal_elim_axm: proof
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  val abstract_rule_axm: proof
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  val combination_axm: proof
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  val reflexive_proof: proof
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  val symmetric_proof: proof -> proof
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  val transitive_proof: typ -> term -> proof -> proof -> proof
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  val equal_intr_proof: term -> term -> proof -> proof -> proof
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  val equal_elim_proof: term -> term -> proof -> proof -> proof
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  val abstract_rule_proof: string * term -> proof -> proof
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  val combination_proof: term -> term -> term -> term -> proof -> proof -> proof
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  val strip_shyps_proof: Sorts.algebra -> (typ * sort) list -> (typ * sort) list ->
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    sort list -> proof -> proof
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  val of_sort_proof: Sorts.algebra ->
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    (class * class -> proof) ->
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    (string * class list list * class -> proof) ->
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    (typ * class -> proof) -> typ * sort -> proof list
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  val axm_proof: string -> term -> proof
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  val oracle_proof: string -> term -> proof
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  val shrink_proof: proof -> proof
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  (*rewriting on proof terms*)
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  val add_prf_rrule: proof * proof -> theory -> theory
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  val add_prf_rproc: (typ list -> term option list -> proof -> (proof * proof) option) -> theory -> theory
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  val set_preproc: (theory -> proof -> proof) -> theory -> theory
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  val apply_preproc: theory -> proof -> proof
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  val forall_intr_variables_term: term -> term
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  val forall_intr_variables: term -> proof -> proof
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  val no_skel: proof
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  val normal_skel: proof
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  val rewrite_proof: theory -> (proof * proof) list *
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    (typ list -> term option list -> proof -> (proof * proof) option) list -> proof -> proof
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  val rewrite_proof_notypes: (proof * proof) list *
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    (typ list -> term option list -> proof -> (proof * proof) option) list -> proof -> proof
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  val rew_proof: theory -> proof -> proof
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  val reconstruct_proof: theory -> term -> proof -> proof
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  val prop_of': term list -> proof -> term
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  val prop_of: proof -> term
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  val expand_name_empty: thm_header -> string option
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  val expand_proof: theory -> (thm_header -> string option) -> proof -> proof
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  val standard_vars: Name.context -> term * proof option -> term * proof option
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  val standard_vars_term: Name.context -> term -> term
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  val add_standard_vars: proof -> (string * typ) list -> (string * typ) list
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  val add_standard_vars_term: term -> (string * typ) list -> (string * typ) list
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  val export_enabled: unit -> bool
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  val export_standard_enabled: unit -> bool
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  val export_proof_boxes_required: theory -> bool
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  val export_proof_boxes: proof_body list -> unit
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  val fulfill_norm_proof: theory -> (serial * proof_body) list -> proof_body -> proof_body
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  val thm_proof: theory -> (class * class -> proof) ->
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    (string * class list list * class -> proof) -> string * Position.T -> sort list ->
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    term list -> term -> (serial * proof_body future) list -> proof_body -> thm * proof
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  val unconstrain_thm_proof: theory -> (class * class -> proof) ->
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    (string * class list list * class -> proof) -> sort list -> term ->
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    (serial * proof_body future) list -> proof_body -> thm * proof
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  val get_identity: sort list -> term list -> term -> proof ->
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    {serial: serial, theory_name: string, name: string} option
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  val get_approximative_name: sort list -> term list -> term -> proof -> string
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  type thm_id = {serial: serial, theory_name: string}
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  val make_thm_id: serial * string -> thm_id
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  val thm_header_id: thm_header -> thm_id
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  val thm_id: thm -> thm_id
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  val get_id: sort list -> term list -> term -> proof -> thm_id option
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  val this_id: thm_id option -> thm_id -> bool
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  val proof_boxes: {excluded: thm_id -> bool, included: thm_id -> bool} ->
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    proof list -> (thm_header * proof) list  (*exception MIN_PROOF*)
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end
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structure Proofterm : PROOFTERM =
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struct
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(** datatype proof **)
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type thm_header =
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  {serial: serial, pos: Position.T list, theory_name: string, name: string,
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    prop: term, types: typ list option};
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datatype proof =
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   MinProof
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 | PBound of int
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 | Abst of string * typ option * proof
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 | AbsP of string * term option * proof
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 | op % of proof * term option
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 | op %% of proof * proof
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 | Hyp of term
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 | PAxm of string * term * typ list option
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 | PClass of typ * class
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 | Oracle of string * term * typ list option
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 | PThm of thm_header * thm_body
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and proof_body = PBody of
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  {oracles: ((string * Position.T) * term option) Ord_List.T,
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   thms: (serial * thm_node) Ord_List.T,
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   proof: proof}
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and thm_body =
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  Thm_Body of {open_proof: proof -> proof, body: proof_body future}
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and thm_node =
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  Thm_Node of {theory_name: string, name: string, prop: term,
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    body: proof_body future, export: unit lazy, consolidate: unit lazy};
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type oracle = (string * Position.T) * term option;
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val oracle_ord: oracle ord =
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  prod_ord (prod_ord fast_string_ord Position.ord) (option_ord Term_Ord.fast_term_ord);
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type thm = serial * thm_node;
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val thm_ord: thm ord = fn ((i, _), (j, _)) => int_ord (j, i);
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70587
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exception MIN_PROOF of unit;
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fun proof_of (PBody {proof, ...}) = proof;
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val join_proof = Future.join #> proof_of;
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fun map_proof_of f (PBody {oracles, thms, proof}) =
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  PBody {oracles = oracles, thms = thms, proof = f proof};
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fun thm_header serial pos theory_name name prop types : thm_header =
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  {serial = serial, pos = pos, theory_name = theory_name, name = name, prop = prop, types = types};
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fun thm_body body = Thm_Body {open_proof = I, body = Future.value body};
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fun thm_body_proof_raw (Thm_Body {body, ...}) = join_proof body;
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fun thm_body_proof_open (Thm_Body {open_proof, body, ...}) = open_proof (join_proof body);
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fun rep_thm_node (Thm_Node args) = args;
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val thm_node_theory_name = #theory_name o rep_thm_node;
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val thm_node_name = #name o rep_thm_node;
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val thm_node_prop = #prop o rep_thm_node;
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val thm_node_body = #body o rep_thm_node;
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val thm_node_thms = thm_node_body #> Future.join #> (fn PBody {thms, ...} => thms);
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val thm_node_export = #export o rep_thm_node;
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val thm_node_consolidate = #consolidate o rep_thm_node;
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fun join_thms (thms: thm list) =
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  Future.joins (map (thm_node_body o #2) thms);
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val consolidate_bodies =
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  maps (fn PBody {thms, ...} => map (thm_node_consolidate o #2) thms)
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  #> Lazy.consolidate #> map Lazy.force #> ignore;
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fun make_thm_node theory_name name prop body export =
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  let
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    val consolidate =
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      Lazy.lazy_name "Proofterm.make_thm_node" (fn () =>
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        let val PBody {thms, ...} = Future.join body
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        in consolidate_bodies (join_thms thms) end);
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  in
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    Thm_Node {theory_name = theory_name, name = name, prop = prop, body = body,
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      export = export, consolidate = consolidate}
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  end;
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val no_export = Lazy.value ();
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fun make_thm ({serial, theory_name, name, prop, ...}: thm_header) (Thm_Body {body, ...}) =
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  (serial, make_thm_node theory_name name prop body no_export);
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(* proof atoms *)
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fun fold_proof_atoms all f =
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  let
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    fun app (Abst (_, _, prf)) = app prf
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      | app (AbsP (_, _, prf)) = app prf
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      | app (prf % _) = app prf
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      | app (prf1 %% prf2) = app prf1 #> app prf2
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      | app (prf as PThm ({serial = i, ...}, Thm_Body {body, ...})) = (fn (x, seen) =>
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          if Inttab.defined seen i then (x, seen)
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          else
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            let val (x', seen') =
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              (if all then app (join_proof body) else I) (x, Inttab.update (i, ()) seen)
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            in (f prf x', seen') end)
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      | app prf = (fn (x, seen) => (f prf x, seen));
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  in fn prfs => fn x => #1 (fold app prfs (x, Inttab.empty)) end;
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fun fold_body_thms f =
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  let
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    fun app (PBody {thms, ...}) =
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      tap join_thms thms |> fold (fn (i, thm_node) => fn (x, seen) =>
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        if Inttab.defined seen i then (x, seen)
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        else
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          let
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            val name = thm_node_name thm_node;
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            val prop = thm_node_prop thm_node;
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            val body = Future.join (thm_node_body thm_node);
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            val (x', seen') = app body (x, Inttab.update (i, ()) seen);
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          in (f {serial = i, name = name, prop = prop, body = body} x', seen') end);
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  in fn bodies => fn x => #1 (fold app bodies (x, Inttab.empty)) end;
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(* proof body *)
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   319
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val unions_oracles = Ord_List.unions oracle_ord;
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val unions_thms = Ord_List.unions thm_ord;
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   322
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fun no_proof_body proof = PBody {oracles = [], thms = [], proof = proof};
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val no_thm_body = thm_body (no_proof_body MinProof);
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   325
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fun no_thm_names (Abst (x, T, prf)) = Abst (x, T, no_thm_names prf)
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  | no_thm_names (AbsP (x, t, prf)) = AbsP (x, t, no_thm_names prf)
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  | no_thm_names (prf % t) = no_thm_names prf % t
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  | no_thm_names (prf1 %% prf2) = no_thm_names prf1 %% no_thm_names prf2
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  | no_thm_names (PThm ({serial, pos, theory_name, name = _, prop, types}, thm_body)) =
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      PThm (thm_header serial pos theory_name "" prop types, thm_body)
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  | no_thm_names a = a;
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   333
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fun no_thm_proofs (Abst (x, T, prf)) = Abst (x, T, no_thm_proofs prf)
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  | no_thm_proofs (AbsP (x, t, prf)) = AbsP (x, t, no_thm_proofs prf)
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  | no_thm_proofs (prf % t) = no_thm_proofs prf % t
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  | no_thm_proofs (prf1 %% prf2) = no_thm_proofs prf1 %% no_thm_proofs prf2
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  | no_thm_proofs (PThm (header, _)) = PThm (header, no_thm_body)
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  | no_thm_proofs a = a;
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fun no_body_proofs (Abst (x, T, prf)) = Abst (x, T, no_body_proofs prf)
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  | no_body_proofs (AbsP (x, t, prf)) = AbsP (x, t, no_body_proofs prf)
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  | no_body_proofs (prf % t) = no_body_proofs prf % t
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  | no_body_proofs (prf1 %% prf2) = no_body_proofs prf1 %% no_body_proofs prf2
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  | no_body_proofs (PThm (header, Thm_Body {open_proof, body})) =
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      let
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        val body' = Future.value (no_proof_body (join_proof body));
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        val thm_body' = Thm_Body {open_proof = open_proof, body = body'};
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      in PThm (header, thm_body') end
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  | no_body_proofs a = a;
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52424
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   353
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   354
(** XML data representation **)
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(* encode *)
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local
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   360
open XML.Encode Term_XML.Encode;
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   361
70784
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   362
fun proof consts prf = prf |> variant
52424
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   363
 [fn MinProof => ([], []),
70844
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   364
  fn PBound a => ([], int a),
70784
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   365
  fn Abst (a, b, c) => ([a], pair (option typ) (proof consts) (b, c)),
799437173553 Term_XML.Encode/Decode.term uses Const "typargs";
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  fn AbsP (a, b, c) => ([a], pair (option (term consts)) (proof consts) (b, c)),
799437173553 Term_XML.Encode/Decode.term uses Const "typargs";
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  fn a % b => ([], pair (proof consts) (option (term consts)) (a, b)),
799437173553 Term_XML.Encode/Decode.term uses Const "typargs";
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   368
  fn a %% b => ([], pair (proof consts) (proof consts) (a, b)),
799437173553 Term_XML.Encode/Decode.term uses Const "typargs";
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   369
  fn Hyp a => ([], term consts a),
799437173553 Term_XML.Encode/Decode.term uses Const "typargs";
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   370
  fn PAxm (a, b, c) => ([a], pair (term consts) (option (list typ)) (b, c)),
71777
3875815f5967 clarified signature: avoid clash with Isabelle/Scala Term.OFCLASS on case-insensible file-system;
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   371
  fn PClass (a, b) => ([b], typ a),
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614ca81fa28e clarified oracle_proof;
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   372
  fn Oracle (a, b, c) => ([a], pair (term consts) (option (list typ)) (b, c)),
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fc9ba6fe367f clarified PThm: theory_name simplifies retrieval from exports;
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   373
  fn PThm ({serial, pos, theory_name, name, prop, types}, Thm_Body {open_proof, body, ...}) =>
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   374
    ([int_atom serial, theory_name, name],
70784
799437173553 Term_XML.Encode/Decode.term uses Const "typargs";
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   375
      pair (list properties) (pair (term consts) (pair (option (list typ)) (proof_body consts)))
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   376
        (map Position.properties_of pos, (prop, (types, map_proof_of open_proof (Future.join body)))))]
70784
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   377
and proof_body consts (PBody {oracles, thms, proof = prf}) =
71465
910a081cca74 more position information for oracles (e.g. "skip_proof" for 'sorry'), requires Proofterm.proofs := 1;
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   378
  triple (list (pair (pair string (properties o Position.properties_of))
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   379
      (option (term consts)))) (list (thm consts)) (proof consts) (oracles, thms, prf)
70784
799437173553 Term_XML.Encode/Decode.term uses Const "typargs";
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   380
and thm consts (a, thm_node) =
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   381
  pair int (pair string (pair string (pair (term consts) (proof_body consts))))
70595
2ae7e33c950f clarified thm_id vs. thm_node/thm: retain theory_name;
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diff changeset
   382
    (a, (thm_node_theory_name thm_node, (thm_node_name thm_node, (thm_node_prop thm_node,
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wenzelm
parents: 70593
diff changeset
   383
      (Future.join (thm_node_body thm_node))))));
52424
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parents: 51700
diff changeset
   384
70843
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diff changeset
   385
fun standard_term consts t = t |> variant
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parents: 70839
diff changeset
   386
 [fn Const (a, b) => ([a], list typ (Consts.typargs consts (a, b))),
cc987440d776 more compact XML: separate environment for free variables;
wenzelm
parents: 70839
diff changeset
   387
  fn Free (a, _) => ([a], []),
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diff changeset
   388
  fn Var (a, _) => (indexname a, []),
70844
f95a85446a24 more compact XML;
wenzelm
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diff changeset
   389
  fn Bound a => ([], int a),
70843
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wenzelm
parents: 70839
diff changeset
   390
  fn Abs (a, b, c) => ([a], pair typ (standard_term consts) (b, c)),
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wenzelm
parents: 70839
diff changeset
   391
  fn op $ a => ([], pair (standard_term consts) (standard_term consts) a)];
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parents: 70839
diff changeset
   392
70829
1fa55b0873bc tuned signature;
wenzelm
parents: 70827
diff changeset
   393
fun standard_proof consts prf = prf |> variant
70534
fb876ebbf5a7 export facts with reconstructed proof term (if possible), but its PThm boxes need to be collected separately;
wenzelm
parents: 70531
diff changeset
   394
 [fn MinProof => ([], []),
70844
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wenzelm
parents: 70843
diff changeset
   395
  fn PBound a => ([], int a),
70829
1fa55b0873bc tuned signature;
wenzelm
parents: 70827
diff changeset
   396
  fn Abst (a, SOME b, c) => ([a], pair typ (standard_proof consts) (b, c)),
70843
cc987440d776 more compact XML: separate environment for free variables;
wenzelm
parents: 70839
diff changeset
   397
  fn AbsP (a, SOME b, c) => ([a], pair (standard_term consts) (standard_proof consts) (b, c)),
cc987440d776 more compact XML: separate environment for free variables;
wenzelm
parents: 70839
diff changeset
   398
  fn a % SOME b => ([], pair (standard_proof consts) (standard_term consts) (a, b)),
70829
1fa55b0873bc tuned signature;
wenzelm
parents: 70827
diff changeset
   399
  fn a %% b => ([], pair (standard_proof consts) (standard_proof consts) (a, b)),
70843
cc987440d776 more compact XML: separate environment for free variables;
wenzelm
parents: 70839
diff changeset
   400
  fn Hyp a => ([], standard_term consts a),
70534
fb876ebbf5a7 export facts with reconstructed proof term (if possible), but its PThm boxes need to be collected separately;
wenzelm
parents: 70531
diff changeset
   401
  fn PAxm (name, _, SOME Ts) => ([name], list typ Ts),
71777
3875815f5967 clarified signature: avoid clash with Isabelle/Scala Term.OFCLASS on case-insensible file-system;
wenzelm
parents: 71533
diff changeset
   402
  fn PClass (T, c) => ([c], typ T),
70843
cc987440d776 more compact XML: separate environment for free variables;
wenzelm
parents: 70839
diff changeset
   403
  fn Oracle (name, prop, SOME Ts) => ([name], pair (standard_term consts) (list typ) (prop, Ts)),
70538
fc9ba6fe367f clarified PThm: theory_name simplifies retrieval from exports;
wenzelm
parents: 70534
diff changeset
   404
  fn PThm ({serial, theory_name, name, types = SOME Ts, ...}, _) =>
fc9ba6fe367f clarified PThm: theory_name simplifies retrieval from exports;
wenzelm
parents: 70534
diff changeset
   405
    ([int_atom serial, theory_name, name], list typ Ts)];
70534
fb876ebbf5a7 export facts with reconstructed proof term (if possible), but its PThm boxes need to be collected separately;
wenzelm
parents: 70531
diff changeset
   406
52424
77075c576d4c support for XML data representation of proof terms;
wenzelm
parents: 51700
diff changeset
   407
in
77075c576d4c support for XML data representation of proof terms;
wenzelm
parents: 51700
diff changeset
   408
77075c576d4c support for XML data representation of proof terms;
wenzelm
parents: 51700
diff changeset
   409
val encode = proof;
77075c576d4c support for XML data representation of proof terms;
wenzelm
parents: 51700
diff changeset
   410
val encode_body = proof_body;
70843
cc987440d776 more compact XML: separate environment for free variables;
wenzelm
parents: 70839
diff changeset
   411
val encode_standard_term = standard_term;
cc987440d776 more compact XML: separate environment for free variables;
wenzelm
parents: 70839
diff changeset
   412
val encode_standard_proof = standard_proof;
52424
77075c576d4c support for XML data representation of proof terms;
wenzelm
parents: 51700
diff changeset
   413
77075c576d4c support for XML data representation of proof terms;
wenzelm
parents: 51700
diff changeset
   414
end;
77075c576d4c support for XML data representation of proof terms;
wenzelm
parents: 51700
diff changeset
   415
77075c576d4c support for XML data representation of proof terms;
wenzelm
parents: 51700
diff changeset
   416
77075c576d4c support for XML data representation of proof terms;
wenzelm
parents: 51700
diff changeset
   417
(* decode *)
77075c576d4c support for XML data representation of proof terms;
wenzelm
parents: 51700
diff changeset
   418
77075c576d4c support for XML data representation of proof terms;
wenzelm
parents: 51700
diff changeset
   419
local
77075c576d4c support for XML data representation of proof terms;
wenzelm
parents: 51700
diff changeset
   420
77075c576d4c support for XML data representation of proof terms;
wenzelm
parents: 51700
diff changeset
   421
open XML.Decode Term_XML.Decode;
77075c576d4c support for XML data representation of proof terms;
wenzelm
parents: 51700
diff changeset
   422
70784
799437173553 Term_XML.Encode/Decode.term uses Const "typargs";
wenzelm
parents: 70604
diff changeset
   423
fun proof consts prf = prf |> variant
52424
77075c576d4c support for XML data representation of proof terms;
wenzelm
parents: 51700
diff changeset
   424
 [fn ([], []) => MinProof,
70844
f95a85446a24 more compact XML;
wenzelm
parents: 70843
diff changeset
   425
  fn ([], a) => PBound (int a),
70784
799437173553 Term_XML.Encode/Decode.term uses Const "typargs";
wenzelm
parents: 70604
diff changeset
   426
  fn ([a], b) => let val (c, d) = pair (option typ) (proof consts) b in Abst (a, c, d) end,
799437173553 Term_XML.Encode/Decode.term uses Const "typargs";
wenzelm
parents: 70604
diff changeset
   427
  fn ([a], b) => let val (c, d) = pair (option (term consts)) (proof consts) b in AbsP (a, c, d) end,
799437173553 Term_XML.Encode/Decode.term uses Const "typargs";
wenzelm
parents: 70604
diff changeset
   428
  fn ([], a) => op % (pair (proof consts) (option (term consts)) a),
799437173553 Term_XML.Encode/Decode.term uses Const "typargs";
wenzelm
parents: 70604
diff changeset
   429
  fn ([], a) => op %% (pair (proof consts) (proof consts) a),
799437173553 Term_XML.Encode/Decode.term uses Const "typargs";
wenzelm
parents: 70604
diff changeset
   430
  fn ([], a) => Hyp (term consts a),
799437173553 Term_XML.Encode/Decode.term uses Const "typargs";
wenzelm
parents: 70604
diff changeset
   431
  fn ([a], b) => let val (c, d) = pair (term consts) (option (list typ)) b in PAxm (a, c, d) end,
71777
3875815f5967 clarified signature: avoid clash with Isabelle/Scala Term.OFCLASS on case-insensible file-system;
wenzelm
parents: 71533
diff changeset
   432
  fn ([b], a) => PClass (typ a, b),
70834
614ca81fa28e clarified oracle_proof;
wenzelm
parents: 70833
diff changeset
   433
  fn ([a], b) => let val (c, d) = pair (term consts) (option (list typ)) b in Oracle (a, c, d) end,
70538
fc9ba6fe367f clarified PThm: theory_name simplifies retrieval from exports;
wenzelm
parents: 70534
diff changeset
   434
  fn ([a, b, c], d) =>
70497
8a19b92ec3d6 more positions;
wenzelm
parents: 70495
diff changeset
   435
    let
70538
fc9ba6fe367f clarified PThm: theory_name simplifies retrieval from exports;
wenzelm
parents: 70534
diff changeset
   436
      val ((e, (f, (g, h)))) =
70784
799437173553 Term_XML.Encode/Decode.term uses Const "typargs";
wenzelm
parents: 70604
diff changeset
   437
        pair (list properties) (pair (term consts) (pair (option (list typ)) (proof_body consts))) d;
70538
fc9ba6fe367f clarified PThm: theory_name simplifies retrieval from exports;
wenzelm
parents: 70534
diff changeset
   438
      val header = thm_header (int_atom a) (map Position.of_properties e) b c f g;
fc9ba6fe367f clarified PThm: theory_name simplifies retrieval from exports;
wenzelm
parents: 70534
diff changeset
   439
    in PThm (header, thm_body h) end]
70784
799437173553 Term_XML.Encode/Decode.term uses Const "typargs";
wenzelm
parents: 70604
diff changeset
   440
and proof_body consts x =
799437173553 Term_XML.Encode/Decode.term uses Const "typargs";
wenzelm
parents: 70604
diff changeset
   441
  let
799437173553 Term_XML.Encode/Decode.term uses Const "typargs";
wenzelm
parents: 70604
diff changeset
   442
    val (a, b, c) =
71465
910a081cca74 more position information for oracles (e.g. "skip_proof" for 'sorry'), requires Proofterm.proofs := 1;
wenzelm
parents: 71022
diff changeset
   443
      triple (list (pair (pair string (Position.of_properties o properties))
910a081cca74 more position information for oracles (e.g. "skip_proof" for 'sorry'), requires Proofterm.proofs := 1;
wenzelm
parents: 71022
diff changeset
   444
        (option (term consts)))) (list (thm consts)) (proof consts) x;
52424
77075c576d4c support for XML data representation of proof terms;
wenzelm
parents: 51700
diff changeset
   445
  in PBody {oracles = a, thms = b, proof = c} end
70784
799437173553 Term_XML.Encode/Decode.term uses Const "typargs";
wenzelm
parents: 70604
diff changeset
   446
and thm consts x =
799437173553 Term_XML.Encode/Decode.term uses Const "typargs";
wenzelm
parents: 70604
diff changeset
   447
  let
799437173553 Term_XML.Encode/Decode.term uses Const "typargs";
wenzelm
parents: 70604
diff changeset
   448
    val (a, (b, (c, (d, e)))) =
799437173553 Term_XML.Encode/Decode.term uses Const "typargs";
wenzelm
parents: 70604
diff changeset
   449
      pair int (pair string (pair string (pair (term consts) (proof_body consts)))) x
71018
d32ed8927a42 more robust expose_proofs corresponding to register_proofs/consolidate_theory;
wenzelm
parents: 71010
diff changeset
   450
  in (a, make_thm_node b c d (Future.value e) no_export) end;
52424
77075c576d4c support for XML data representation of proof terms;
wenzelm
parents: 51700
diff changeset
   451
77075c576d4c support for XML data representation of proof terms;
wenzelm
parents: 51700
diff changeset
   452
in
77075c576d4c support for XML data representation of proof terms;
wenzelm
parents: 51700
diff changeset
   453
77075c576d4c support for XML data representation of proof terms;
wenzelm
parents: 51700
diff changeset
   454
val decode = proof;
77075c576d4c support for XML data representation of proof terms;
wenzelm
parents: 51700
diff changeset
   455
val decode_body = proof_body;
77075c576d4c support for XML data representation of proof terms;
wenzelm
parents: 51700
diff changeset
   456
77075c576d4c support for XML data representation of proof terms;
wenzelm
parents: 51700
diff changeset
   457
end;
77075c576d4c support for XML data representation of proof terms;
wenzelm
parents: 51700
diff changeset
   458
28803
d90258bbb18f reworked type proof: MinProof is vacous, added Promise, refined PThm (with serial);
wenzelm
parents: 28329
diff changeset
   459
70397
f5bce5af361b tuned comments -- proper sections;
wenzelm
parents: 70396
diff changeset
   460
(** proof objects with different levels of detail **)
11519
0c96830636a1 New implementation of LF style proof terms.
berghofe
parents:
diff changeset
   461
70587
wenzelm
parents: 70586
diff changeset
   462
val proofs = Unsynchronized.ref 2;
wenzelm
parents: 70586
diff changeset
   463
fun proofs_enabled () = ! proofs >= 2;
wenzelm
parents: 70586
diff changeset
   464
64568
a504a3dec35a more careful derivation_closed / close_derivation;
wenzelm
parents: 64566
diff changeset
   465
fun atomic_proof prf =
a504a3dec35a more careful derivation_closed / close_derivation;
wenzelm
parents: 64566
diff changeset
   466
  (case prf of
a504a3dec35a more careful derivation_closed / close_derivation;
wenzelm
parents: 64566
diff changeset
   467
    Abst _ => false
a504a3dec35a more careful derivation_closed / close_derivation;
wenzelm
parents: 64566
diff changeset
   468
  | AbsP _ => false
a504a3dec35a more careful derivation_closed / close_derivation;
wenzelm
parents: 64566
diff changeset
   469
  | op % _ => false
a504a3dec35a more careful derivation_closed / close_derivation;
wenzelm
parents: 64566
diff changeset
   470
  | op %% _ => false
70402
29d81b53c40b treat MinProof like Promise before 725438ceae7c, e.g. relevant for performance of session Corec (due to Thm.derivation_closed/close_derivation);
wenzelm
parents: 70400
diff changeset
   471
  | MinProof => false
64568
a504a3dec35a more careful derivation_closed / close_derivation;
wenzelm
parents: 64566
diff changeset
   472
  | _ => true);
a504a3dec35a more careful derivation_closed / close_derivation;
wenzelm
parents: 64566
diff changeset
   473
a504a3dec35a more careful derivation_closed / close_derivation;
wenzelm
parents: 64566
diff changeset
   474
fun compact_proof (prf % _) = compact_proof prf
a504a3dec35a more careful derivation_closed / close_derivation;
wenzelm
parents: 64566
diff changeset
   475
  | compact_proof (prf1 %% prf2) = atomic_proof prf2 andalso compact_proof prf1
a504a3dec35a more careful derivation_closed / close_derivation;
wenzelm
parents: 64566
diff changeset
   476
  | compact_proof prf = atomic_proof prf;
a504a3dec35a more careful derivation_closed / close_derivation;
wenzelm
parents: 64566
diff changeset
   477
15531
08c8dad8e399 Deleted Library.option type.
skalberg
parents: 15030
diff changeset
   478
fun (prf %> t) = prf % SOME t;
11519
0c96830636a1 New implementation of LF style proof terms.
berghofe
parents:
diff changeset
   479
15570
8d8c70b41bab Move towards standard functions.
skalberg
parents: 15531
diff changeset
   480
val proof_combt = Library.foldl (op %>);
8d8c70b41bab Move towards standard functions.
skalberg
parents: 15531
diff changeset
   481
val proof_combt' = Library.foldl (op %);
8d8c70b41bab Move towards standard functions.
skalberg
parents: 15531
diff changeset
   482
val proof_combP = Library.foldl (op %%);
11519
0c96830636a1 New implementation of LF style proof terms.
berghofe
parents:
diff changeset
   483
21646
c07b5b0e8492 thm/prf: separate official name vs. additional tags;
wenzelm
parents: 20853
diff changeset
   484
fun strip_combt prf =
11615
ca7be12b2cbc - Exchanged % and %%.
berghofe
parents: 11543
diff changeset
   485
    let fun stripc (prf % t, ts) = stripc (prf, t::ts)
21646
c07b5b0e8492 thm/prf: separate official name vs. additional tags;
wenzelm
parents: 20853
diff changeset
   486
          | stripc  x =  x
11519
0c96830636a1 New implementation of LF style proof terms.
berghofe
parents:
diff changeset
   487
    in  stripc (prf, [])  end;
0c96830636a1 New implementation of LF style proof terms.
berghofe
parents:
diff changeset
   488
21646
c07b5b0e8492 thm/prf: separate official name vs. additional tags;
wenzelm
parents: 20853
diff changeset
   489
fun strip_combP prf =
11615
ca7be12b2cbc - Exchanged % and %%.
berghofe
parents: 11543
diff changeset
   490
    let fun stripc (prf %% prf', prfs) = stripc (prf, prf'::prfs)
11519
0c96830636a1 New implementation of LF style proof terms.
berghofe
parents:
diff changeset
   491
          | stripc  x =  x
0c96830636a1 New implementation of LF style proof terms.
berghofe
parents:
diff changeset
   492
    in  stripc (prf, [])  end;
0c96830636a1 New implementation of LF style proof terms.
berghofe
parents:
diff changeset
   493
70830
8f050cc0ec50 clarified signature;
wenzelm
parents: 70829
diff changeset
   494
fun strip_thm_body (body as PBody {proof, ...}) =
70493
a9053fa30909 clarified ML types;
wenzelm
parents: 70492
diff changeset
   495
  (case fst (strip_combt (fst (strip_combP proof))) of
a9053fa30909 clarified ML types;
wenzelm
parents: 70492
diff changeset
   496
    PThm (_, Thm_Body {body = body', ...}) => Future.join body'
28803
d90258bbb18f reworked type proof: MinProof is vacous, added Promise, refined PThm (with serial);
wenzelm
parents: 28329
diff changeset
   497
  | _ => body);
11519
0c96830636a1 New implementation of LF style proof terms.
berghofe
parents:
diff changeset
   498
70822
22e2f5acc0b4 more accurate treatment of propositions within proof terms, but these are ultimately ignored for performance reasons;
wenzelm
parents: 70815
diff changeset
   499
val mk_Abst = fold_rev (fn (x, _: typ) => fn prf => Abst (x, NONE, prf));
22e2f5acc0b4 more accurate treatment of propositions within proof terms, but these are ultimately ignored for performance reasons;
wenzelm
parents: 70815
diff changeset
   500
val mk_AbsP = fold_rev (fn _: term => fn prf => AbsP ("H", NONE, prf));
11519
0c96830636a1 New implementation of LF style proof terms.
berghofe
parents:
diff changeset
   501
36620
e6bb250402b5 simplified/unified fundamental operations on types/terms/proofterms -- prefer Same.operation over "option" variant;
wenzelm
parents: 36619
diff changeset
   502
fun map_proof_same term typ ofclass =
20000
2fa767ab91aa added map_proof_terms_option;
wenzelm
parents: 19908
diff changeset
   503
  let
32024
a5e7c8e60c85 tuned map_proof_terms_option;
wenzelm
parents: 32019
diff changeset
   504
    val typs = Same.map typ;
20000
2fa767ab91aa added map_proof_terms_option;
wenzelm
parents: 19908
diff changeset
   505
32024
a5e7c8e60c85 tuned map_proof_terms_option;
wenzelm
parents: 32019
diff changeset
   506
    fun proof (Abst (s, T, prf)) =
a5e7c8e60c85 tuned map_proof_terms_option;
wenzelm
parents: 32019
diff changeset
   507
          (Abst (s, Same.map_option typ T, Same.commit proof prf)
a5e7c8e60c85 tuned map_proof_terms_option;
wenzelm
parents: 32019
diff changeset
   508
            handle Same.SAME => Abst (s, T, proof prf))
a5e7c8e60c85 tuned map_proof_terms_option;
wenzelm
parents: 32019
diff changeset
   509
      | proof (AbsP (s, t, prf)) =
a5e7c8e60c85 tuned map_proof_terms_option;
wenzelm
parents: 32019
diff changeset
   510
          (AbsP (s, Same.map_option term t, Same.commit proof prf)
a5e7c8e60c85 tuned map_proof_terms_option;
wenzelm
parents: 32019
diff changeset
   511
            handle Same.SAME => AbsP (s, t, proof prf))
a5e7c8e60c85 tuned map_proof_terms_option;
wenzelm
parents: 32019
diff changeset
   512
      | proof (prf % t) =
a5e7c8e60c85 tuned map_proof_terms_option;
wenzelm
parents: 32019
diff changeset
   513
          (proof prf % Same.commit (Same.map_option term) t
a5e7c8e60c85 tuned map_proof_terms_option;
wenzelm
parents: 32019
diff changeset
   514
            handle Same.SAME => prf % Same.map_option term t)
a5e7c8e60c85 tuned map_proof_terms_option;
wenzelm
parents: 32019
diff changeset
   515
      | proof (prf1 %% prf2) =
a5e7c8e60c85 tuned map_proof_terms_option;
wenzelm
parents: 32019
diff changeset
   516
          (proof prf1 %% Same.commit proof prf2
a5e7c8e60c85 tuned map_proof_terms_option;
wenzelm
parents: 32019
diff changeset
   517
            handle Same.SAME => prf1 %% proof prf2)
a5e7c8e60c85 tuned map_proof_terms_option;
wenzelm
parents: 32019
diff changeset
   518
      | proof (PAxm (a, prop, SOME Ts)) = PAxm (a, prop, SOME (typs Ts))
71777
3875815f5967 clarified signature: avoid clash with Isabelle/Scala Term.OFCLASS on case-insensible file-system;
wenzelm
parents: 71533
diff changeset
   519
      | proof (PClass T_c) = ofclass T_c
32024
a5e7c8e60c85 tuned map_proof_terms_option;
wenzelm
parents: 32019
diff changeset
   520
      | proof (Oracle (a, prop, SOME Ts)) = Oracle (a, prop, SOME (typs Ts))
70538
fc9ba6fe367f clarified PThm: theory_name simplifies retrieval from exports;
wenzelm
parents: 70534
diff changeset
   521
      | proof (PThm ({serial, pos, theory_name, name, prop, types = SOME Ts}, thm_body)) =
fc9ba6fe367f clarified PThm: theory_name simplifies retrieval from exports;
wenzelm
parents: 70534
diff changeset
   522
          PThm (thm_header serial pos theory_name name prop (SOME (typs Ts)), thm_body)
32024
a5e7c8e60c85 tuned map_proof_terms_option;
wenzelm
parents: 32019
diff changeset
   523
      | proof _ = raise Same.SAME;
36620
e6bb250402b5 simplified/unified fundamental operations on types/terms/proofterms -- prefer Same.operation over "option" variant;
wenzelm
parents: 36619
diff changeset
   524
  in proof end;
e6bb250402b5 simplified/unified fundamental operations on types/terms/proofterms -- prefer Same.operation over "option" variant;
wenzelm
parents: 36619
diff changeset
   525
71777
3875815f5967 clarified signature: avoid clash with Isabelle/Scala Term.OFCLASS on case-insensible file-system;
wenzelm
parents: 71533
diff changeset
   526
fun map_proof_terms_same term typ = map_proof_same term typ (fn (T, c) => PClass (typ T, c));
36620
e6bb250402b5 simplified/unified fundamental operations on types/terms/proofterms -- prefer Same.operation over "option" variant;
wenzelm
parents: 36619
diff changeset
   527
fun map_proof_types_same typ = map_proof_terms_same (Term_Subst.map_types_same typ) typ;
20000
2fa767ab91aa added map_proof_terms_option;
wenzelm
parents: 19908
diff changeset
   528
22662
3e492ba59355 canonical merge operations
haftmann
parents: 21646
diff changeset
   529
fun same eq f x =
11715
592923615f77 Tuned several functions to improve sharing of unchanged subproofs.
berghofe
parents: 11652
diff changeset
   530
  let val x' = f x
32019
827a8ebb3b2c use structure Same;
wenzelm
parents: 31977
diff changeset
   531
  in if eq (x, x') then raise Same.SAME else x' end;
11715
592923615f77 Tuned several functions to improve sharing of unchanged subproofs.
berghofe
parents: 11652
diff changeset
   532
36620
e6bb250402b5 simplified/unified fundamental operations on types/terms/proofterms -- prefer Same.operation over "option" variant;
wenzelm
parents: 36619
diff changeset
   533
fun map_proof_terms f g = Same.commit (map_proof_terms_same (same (op =) f) (same (op =) g));
e6bb250402b5 simplified/unified fundamental operations on types/terms/proofterms -- prefer Same.operation over "option" variant;
wenzelm
parents: 36619
diff changeset
   534
fun map_proof_types f = Same.commit (map_proof_types_same (same (op =) f));
11519
0c96830636a1 New implementation of LF style proof terms.
berghofe
parents:
diff changeset
   535
70843
cc987440d776 more compact XML: separate environment for free variables;
wenzelm
parents: 70839
diff changeset
   536
fun fold_proof_terms f (Abst (_, _, prf)) = fold_proof_terms f prf
cc987440d776 more compact XML: separate environment for free variables;
wenzelm
parents: 70839
diff changeset
   537
  | fold_proof_terms f (AbsP (_, SOME t, prf)) = f t #> fold_proof_terms f prf
cc987440d776 more compact XML: separate environment for free variables;
wenzelm
parents: 70839
diff changeset
   538
  | fold_proof_terms f (AbsP (_, NONE, prf)) = fold_proof_terms f prf
cc987440d776 more compact XML: separate environment for free variables;
wenzelm
parents: 70839
diff changeset
   539
  | fold_proof_terms f (prf % SOME t) = fold_proof_terms f prf #> f t
cc987440d776 more compact XML: separate environment for free variables;
wenzelm
parents: 70839
diff changeset
   540
  | fold_proof_terms f (prf % NONE) = fold_proof_terms f prf
cc987440d776 more compact XML: separate environment for free variables;
wenzelm
parents: 70839
diff changeset
   541
  | fold_proof_terms f (prf1 %% prf2) = fold_proof_terms f prf1 #> fold_proof_terms f prf2
cc987440d776 more compact XML: separate environment for free variables;
wenzelm
parents: 70839
diff changeset
   542
  | fold_proof_terms _ _ = I;
11519
0c96830636a1 New implementation of LF style proof terms.
berghofe
parents:
diff changeset
   543
70843
cc987440d776 more compact XML: separate environment for free variables;
wenzelm
parents: 70839
diff changeset
   544
fun fold_proof_terms_types f g (Abst (_, SOME T, prf)) = g T #> fold_proof_terms_types f g prf
cc987440d776 more compact XML: separate environment for free variables;
wenzelm
parents: 70839
diff changeset
   545
  | fold_proof_terms_types f g (Abst (_, NONE, prf)) = fold_proof_terms_types f g prf
cc987440d776 more compact XML: separate environment for free variables;
wenzelm
parents: 70839
diff changeset
   546
  | fold_proof_terms_types f g (AbsP (_, SOME t, prf)) = f t #> fold_proof_terms_types f g prf
cc987440d776 more compact XML: separate environment for free variables;
wenzelm
parents: 70839
diff changeset
   547
  | fold_proof_terms_types f g (AbsP (_, NONE, prf)) = fold_proof_terms_types f g prf
cc987440d776 more compact XML: separate environment for free variables;
wenzelm
parents: 70839
diff changeset
   548
  | fold_proof_terms_types f g (prf % SOME t) = fold_proof_terms_types f g prf #> f t
cc987440d776 more compact XML: separate environment for free variables;
wenzelm
parents: 70839
diff changeset
   549
  | fold_proof_terms_types f g (prf % NONE) = fold_proof_terms_types f g prf
cc987440d776 more compact XML: separate environment for free variables;
wenzelm
parents: 70839
diff changeset
   550
  | fold_proof_terms_types f g (prf1 %% prf2) =
cc987440d776 more compact XML: separate environment for free variables;
wenzelm
parents: 70839
diff changeset
   551
      fold_proof_terms_types f g prf1 #> fold_proof_terms_types f g prf2
cc987440d776 more compact XML: separate environment for free variables;
wenzelm
parents: 70839
diff changeset
   552
  | fold_proof_terms_types _ g (PAxm (_, _, SOME Ts)) = fold g Ts
71777
3875815f5967 clarified signature: avoid clash with Isabelle/Scala Term.OFCLASS on case-insensible file-system;
wenzelm
parents: 71533
diff changeset
   553
  | fold_proof_terms_types _ g (PClass (T, _)) = g T
70843
cc987440d776 more compact XML: separate environment for free variables;
wenzelm
parents: 70839
diff changeset
   554
  | fold_proof_terms_types _ g (Oracle (_, _, SOME Ts)) = fold g Ts
cc987440d776 more compact XML: separate environment for free variables;
wenzelm
parents: 70839
diff changeset
   555
  | fold_proof_terms_types _ g (PThm ({types = SOME Ts, ...}, _)) = fold g Ts
cc987440d776 more compact XML: separate environment for free variables;
wenzelm
parents: 70839
diff changeset
   556
  | fold_proof_terms_types _ _ _ = I;
cc987440d776 more compact XML: separate environment for free variables;
wenzelm
parents: 70839
diff changeset
   557
cc987440d776 more compact XML: separate environment for free variables;
wenzelm
parents: 70839
diff changeset
   558
fun maxidx_proof prf = fold_proof_terms_types Term.maxidx_term Term.maxidx_typ prf;
12868
cdf338ef5fad New function maxidx_of_proof.
berghofe
parents: 12497
diff changeset
   559
13744
2241191a3c54 Added size_of_proof.
berghofe
parents: 13662
diff changeset
   560
fun size_of_proof (Abst (_, _, prf)) = 1 + size_of_proof prf
63857
0883c1cc655c tuned -- fewer warnings;
wenzelm
parents: 63623
diff changeset
   561
  | size_of_proof (AbsP (_, _, prf)) = 1 + size_of_proof prf
28803
d90258bbb18f reworked type proof: MinProof is vacous, added Promise, refined PThm (with serial);
wenzelm
parents: 28329
diff changeset
   562
  | size_of_proof (prf % _) = 1 + size_of_proof prf
13744
2241191a3c54 Added size_of_proof.
berghofe
parents: 13662
diff changeset
   563
  | size_of_proof (prf1 %% prf2) = size_of_proof prf1 + size_of_proof prf2
2241191a3c54 Added size_of_proof.
berghofe
parents: 13662
diff changeset
   564
  | size_of_proof _ = 1;
2241191a3c54 Added size_of_proof.
berghofe
parents: 13662
diff changeset
   565
70417
eb6ff14767cd tuned signature;
wenzelm
parents: 70416
diff changeset
   566
fun change_types types (PAxm (name, prop, _)) = PAxm (name, prop, types)
71777
3875815f5967 clarified signature: avoid clash with Isabelle/Scala Term.OFCLASS on case-insensible file-system;
wenzelm
parents: 71533
diff changeset
   567
  | change_types (SOME [T]) (PClass (_, c)) = PClass (T, c)
70417
eb6ff14767cd tuned signature;
wenzelm
parents: 70416
diff changeset
   568
  | change_types types (Oracle (name, prop, _)) = Oracle (name, prop, types)
70538
fc9ba6fe367f clarified PThm: theory_name simplifies retrieval from exports;
wenzelm
parents: 70534
diff changeset
   569
  | change_types types (PThm ({serial, pos, theory_name, name, prop, types = _}, thm_body)) =
fc9ba6fe367f clarified PThm: theory_name simplifies retrieval from exports;
wenzelm
parents: 70534
diff changeset
   570
      PThm (thm_header serial pos theory_name name prop types, thm_body)
70417
eb6ff14767cd tuned signature;
wenzelm
parents: 70416
diff changeset
   571
  | change_types _ prf = prf;
12907
27e6d344d724 New function change_type for changing type assignments of theorems,
berghofe
parents: 12890
diff changeset
   572
11519
0c96830636a1 New implementation of LF style proof terms.
berghofe
parents:
diff changeset
   573
70397
f5bce5af361b tuned comments -- proper sections;
wenzelm
parents: 70396
diff changeset
   574
(* utilities *)
11519
0c96830636a1 New implementation of LF style proof terms.
berghofe
parents:
diff changeset
   575
0c96830636a1 New implementation of LF style proof terms.
berghofe
parents:
diff changeset
   576
fun strip_abs (_::Ts) (Abs (_, _, t)) = strip_abs Ts t
0c96830636a1 New implementation of LF style proof terms.
berghofe
parents:
diff changeset
   577
  | strip_abs _ t = t;
0c96830636a1 New implementation of LF style proof terms.
berghofe
parents:
diff changeset
   578
15570
8d8c70b41bab Move towards standard functions.
skalberg
parents: 15531
diff changeset
   579
fun mk_abs Ts t = Library.foldl (fn (t', T) => Abs ("", T, t')) (t, Ts);
11519
0c96830636a1 New implementation of LF style proof terms.
berghofe
parents:
diff changeset
   580
0c96830636a1 New implementation of LF style proof terms.
berghofe
parents:
diff changeset
   581
21646
c07b5b0e8492 thm/prf: separate official name vs. additional tags;
wenzelm
parents: 20853
diff changeset
   582
(*Abstraction of a proof term over its occurrences of v,
11519
0c96830636a1 New implementation of LF style proof terms.
berghofe
parents:
diff changeset
   583
    which must contain no loose bound variables.
0c96830636a1 New implementation of LF style proof terms.
berghofe
parents:
diff changeset
   584
  The resulting proof term is ready to become the body of an Abst.*)
0c96830636a1 New implementation of LF style proof terms.
berghofe
parents:
diff changeset
   585
0c96830636a1 New implementation of LF style proof terms.
berghofe
parents:
diff changeset
   586
fun prf_abstract_over v =
0c96830636a1 New implementation of LF style proof terms.
berghofe
parents:
diff changeset
   587
  let
11715
592923615f77 Tuned several functions to improve sharing of unchanged subproofs.
berghofe
parents: 11652
diff changeset
   588
    fun abst' lev u = if v aconv u then Bound lev else
592923615f77 Tuned several functions to improve sharing of unchanged subproofs.
berghofe
parents: 11652
diff changeset
   589
      (case u of
592923615f77 Tuned several functions to improve sharing of unchanged subproofs.
berghofe
parents: 11652
diff changeset
   590
         Abs (a, T, t) => Abs (a, T, abst' (lev + 1) t)
32019
827a8ebb3b2c use structure Same;
wenzelm
parents: 31977
diff changeset
   591
       | f $ t => (abst' lev f $ absth' lev t handle Same.SAME => f $ abst' lev t)
827a8ebb3b2c use structure Same;
wenzelm
parents: 31977
diff changeset
   592
       | _ => raise Same.SAME)
827a8ebb3b2c use structure Same;
wenzelm
parents: 31977
diff changeset
   593
    and absth' lev t = (abst' lev t handle Same.SAME => t);
11519
0c96830636a1 New implementation of LF style proof terms.
berghofe
parents:
diff changeset
   594
11715
592923615f77 Tuned several functions to improve sharing of unchanged subproofs.
berghofe
parents: 11652
diff changeset
   595
    fun abst lev (AbsP (a, t, prf)) =
32024
a5e7c8e60c85 tuned map_proof_terms_option;
wenzelm
parents: 32019
diff changeset
   596
          (AbsP (a, Same.map_option (abst' lev) t, absth lev prf)
32019
827a8ebb3b2c use structure Same;
wenzelm
parents: 31977
diff changeset
   597
           handle Same.SAME => AbsP (a, t, abst lev prf))
11715
592923615f77 Tuned several functions to improve sharing of unchanged subproofs.
berghofe
parents: 11652
diff changeset
   598
      | abst lev (Abst (a, T, prf)) = Abst (a, T, abst (lev + 1) prf)
592923615f77 Tuned several functions to improve sharing of unchanged subproofs.
berghofe
parents: 11652
diff changeset
   599
      | abst lev (prf1 %% prf2) = (abst lev prf1 %% absth lev prf2
32019
827a8ebb3b2c use structure Same;
wenzelm
parents: 31977
diff changeset
   600
          handle Same.SAME => prf1 %% abst lev prf2)
15570
8d8c70b41bab Move towards standard functions.
skalberg
parents: 15531
diff changeset
   601
      | abst lev (prf % t) = (abst lev prf % Option.map (absth' lev) t
32024
a5e7c8e60c85 tuned map_proof_terms_option;
wenzelm
parents: 32019
diff changeset
   602
          handle Same.SAME => prf % Same.map_option (abst' lev) t)
32019
827a8ebb3b2c use structure Same;
wenzelm
parents: 31977
diff changeset
   603
      | abst _ _ = raise Same.SAME
32024
a5e7c8e60c85 tuned map_proof_terms_option;
wenzelm
parents: 32019
diff changeset
   604
    and absth lev prf = (abst lev prf handle Same.SAME => prf);
11519
0c96830636a1 New implementation of LF style proof terms.
berghofe
parents:
diff changeset
   605
11715
592923615f77 Tuned several functions to improve sharing of unchanged subproofs.
berghofe
parents: 11652
diff changeset
   606
  in absth 0 end;
11519
0c96830636a1 New implementation of LF style proof terms.
berghofe
parents:
diff changeset
   607
0c96830636a1 New implementation of LF style proof terms.
berghofe
parents:
diff changeset
   608
0c96830636a1 New implementation of LF style proof terms.
berghofe
parents:
diff changeset
   609
(*increments a proof term's non-local bound variables
0c96830636a1 New implementation of LF style proof terms.
berghofe
parents:
diff changeset
   610
  required when moving a proof term within abstractions
0c96830636a1 New implementation of LF style proof terms.
berghofe
parents:
diff changeset
   611
     inc is  increment for bound variables
0c96830636a1 New implementation of LF style proof terms.
berghofe
parents:
diff changeset
   612
     lev is  level at which a bound variable is considered 'loose'*)
0c96830636a1 New implementation of LF style proof terms.
berghofe
parents:
diff changeset
   613
0c96830636a1 New implementation of LF style proof terms.
berghofe
parents:
diff changeset
   614
fun incr_bv' inct tlev t = incr_bv (inct, tlev, t);
0c96830636a1 New implementation of LF style proof terms.
berghofe
parents:
diff changeset
   615
63857
0883c1cc655c tuned -- fewer warnings;
wenzelm
parents: 63623
diff changeset
   616
fun prf_incr_bv' incP _ Plev _ (PBound i) =
32019
827a8ebb3b2c use structure Same;
wenzelm
parents: 31977
diff changeset
   617
      if i >= Plev then PBound (i+incP) else raise Same.SAME
11715
592923615f77 Tuned several functions to improve sharing of unchanged subproofs.
berghofe
parents: 11652
diff changeset
   618
  | prf_incr_bv' incP inct Plev tlev (AbsP (a, t, body)) =
32024
a5e7c8e60c85 tuned map_proof_terms_option;
wenzelm
parents: 32019
diff changeset
   619
      (AbsP (a, Same.map_option (same (op =) (incr_bv' inct tlev)) t,
32019
827a8ebb3b2c use structure Same;
wenzelm
parents: 31977
diff changeset
   620
         prf_incr_bv incP inct (Plev+1) tlev body) handle Same.SAME =>
11715
592923615f77 Tuned several functions to improve sharing of unchanged subproofs.
berghofe
parents: 11652
diff changeset
   621
           AbsP (a, t, prf_incr_bv' incP inct (Plev+1) tlev body))
592923615f77 Tuned several functions to improve sharing of unchanged subproofs.
berghofe
parents: 11652
diff changeset
   622
  | prf_incr_bv' incP inct Plev tlev (Abst (a, T, body)) =
592923615f77 Tuned several functions to improve sharing of unchanged subproofs.
berghofe
parents: 11652
diff changeset
   623
      Abst (a, T, prf_incr_bv' incP inct Plev (tlev+1) body)
21646
c07b5b0e8492 thm/prf: separate official name vs. additional tags;
wenzelm
parents: 20853
diff changeset
   624
  | prf_incr_bv' incP inct Plev tlev (prf %% prf') =
11715
592923615f77 Tuned several functions to improve sharing of unchanged subproofs.
berghofe
parents: 11652
diff changeset
   625
      (prf_incr_bv' incP inct Plev tlev prf %% prf_incr_bv incP inct Plev tlev prf'
32019
827a8ebb3b2c use structure Same;
wenzelm
parents: 31977
diff changeset
   626
       handle Same.SAME => prf %% prf_incr_bv' incP inct Plev tlev prf')
21646
c07b5b0e8492 thm/prf: separate official name vs. additional tags;
wenzelm
parents: 20853
diff changeset
   627
  | prf_incr_bv' incP inct Plev tlev (prf % t) =
15570
8d8c70b41bab Move towards standard functions.
skalberg
parents: 15531
diff changeset
   628
      (prf_incr_bv' incP inct Plev tlev prf % Option.map (incr_bv' inct tlev) t
32024
a5e7c8e60c85 tuned map_proof_terms_option;
wenzelm
parents: 32019
diff changeset
   629
       handle Same.SAME => prf % Same.map_option (same (op =) (incr_bv' inct tlev)) t)
32019
827a8ebb3b2c use structure Same;
wenzelm
parents: 31977
diff changeset
   630
  | prf_incr_bv' _ _ _ _ _ = raise Same.SAME
11715
592923615f77 Tuned several functions to improve sharing of unchanged subproofs.
berghofe
parents: 11652
diff changeset
   631
and prf_incr_bv incP inct Plev tlev prf =
32019
827a8ebb3b2c use structure Same;
wenzelm
parents: 31977
diff changeset
   632
      (prf_incr_bv' incP inct Plev tlev prf handle Same.SAME => prf);
11519
0c96830636a1 New implementation of LF style proof terms.
berghofe
parents:
diff changeset
   633
0c96830636a1 New implementation of LF style proof terms.
berghofe
parents:
diff changeset
   634
fun incr_pboundvars  0 0 prf = prf
0c96830636a1 New implementation of LF style proof terms.
berghofe
parents:
diff changeset
   635
  | incr_pboundvars incP inct prf = prf_incr_bv incP inct 0 0 prf;
0c96830636a1 New implementation of LF style proof terms.
berghofe
parents:
diff changeset
   636
0c96830636a1 New implementation of LF style proof terms.
berghofe
parents:
diff changeset
   637
11615
ca7be12b2cbc - Exchanged % and %%.
berghofe
parents: 11543
diff changeset
   638
fun prf_loose_bvar1 (prf1 %% prf2) k = prf_loose_bvar1 prf1 k orelse prf_loose_bvar1 prf2 k
15531
08c8dad8e399 Deleted Library.option type.
skalberg
parents: 15030
diff changeset
   639
  | prf_loose_bvar1 (prf % SOME t) k = prf_loose_bvar1 prf k orelse loose_bvar1 (t, k)
08c8dad8e399 Deleted Library.option type.
skalberg
parents: 15030
diff changeset
   640
  | prf_loose_bvar1 (_ % NONE) _ = true
08c8dad8e399 Deleted Library.option type.
skalberg
parents: 15030
diff changeset
   641
  | prf_loose_bvar1 (AbsP (_, SOME t, prf)) k = loose_bvar1 (t, k) orelse prf_loose_bvar1 prf k
63857
0883c1cc655c tuned -- fewer warnings;
wenzelm
parents: 63623
diff changeset
   642
  | prf_loose_bvar1 (AbsP (_, NONE, _)) _ = true
11519
0c96830636a1 New implementation of LF style proof terms.
berghofe
parents:
diff changeset
   643
  | prf_loose_bvar1 (Abst (_, _, prf)) k = prf_loose_bvar1 prf (k+1)
0c96830636a1 New implementation of LF style proof terms.
berghofe
parents:
diff changeset
   644
  | prf_loose_bvar1 _ _ = false;
0c96830636a1 New implementation of LF style proof terms.
berghofe
parents:
diff changeset
   645
0c96830636a1 New implementation of LF style proof terms.
berghofe
parents:
diff changeset
   646
fun prf_loose_Pbvar1 (PBound i) k = i = k
11615
ca7be12b2cbc - Exchanged % and %%.
berghofe
parents: 11543
diff changeset
   647
  | prf_loose_Pbvar1 (prf1 %% prf2) k = prf_loose_Pbvar1 prf1 k orelse prf_loose_Pbvar1 prf2 k
ca7be12b2cbc - Exchanged % and %%.
berghofe
parents: 11543
diff changeset
   648
  | prf_loose_Pbvar1 (prf % _) k = prf_loose_Pbvar1 prf k
11519
0c96830636a1 New implementation of LF style proof terms.
berghofe
parents:
diff changeset
   649
  | prf_loose_Pbvar1 (AbsP (_, _, prf)) k = prf_loose_Pbvar1 prf (k+1)
0c96830636a1 New implementation of LF style proof terms.
berghofe
parents:
diff changeset
   650
  | prf_loose_Pbvar1 (Abst (_, _, prf)) k = prf_loose_Pbvar1 prf k
0c96830636a1 New implementation of LF style proof terms.
berghofe
parents:
diff changeset
   651
  | prf_loose_Pbvar1 _ _ = false;
0c96830636a1 New implementation of LF style proof terms.
berghofe
parents:
diff changeset
   652
63857
0883c1cc655c tuned -- fewer warnings;
wenzelm
parents: 63623
diff changeset
   653
fun prf_add_loose_bnos plev _ (PBound i) (is, js) =
17492
714c95aab8bc shrink: compress terms and types;
wenzelm
parents: 17412
diff changeset
   654
      if i < plev then (is, js) else (insert (op =) (i-plev) is, js)
12279
dc3020e938e2 Extended match_proof to handle abstractions.
berghofe
parents: 12233
diff changeset
   655
  | prf_add_loose_bnos plev tlev (prf1 %% prf2) p =
dc3020e938e2 Extended match_proof to handle abstractions.
berghofe
parents: 12233
diff changeset
   656
      prf_add_loose_bnos plev tlev prf2
dc3020e938e2 Extended match_proof to handle abstractions.
berghofe
parents: 12233
diff changeset
   657
        (prf_add_loose_bnos plev tlev prf1 p)
dc3020e938e2 Extended match_proof to handle abstractions.
berghofe
parents: 12233
diff changeset
   658
  | prf_add_loose_bnos plev tlev (prf % opt) (is, js) =
64566
679710d324f1 tuned whitespace;
wenzelm
parents: 63857
diff changeset
   659
      prf_add_loose_bnos plev tlev prf
679710d324f1 tuned whitespace;
wenzelm
parents: 63857
diff changeset
   660
        (case opt of
17492
714c95aab8bc shrink: compress terms and types;
wenzelm
parents: 17412
diff changeset
   661
          NONE => (is, insert (op =) ~1 js)
15531
08c8dad8e399 Deleted Library.option type.
skalberg
parents: 15030
diff changeset
   662
        | SOME t => (is, add_loose_bnos (t, tlev, js)))
12279
dc3020e938e2 Extended match_proof to handle abstractions.
berghofe
parents: 12233
diff changeset
   663
  | prf_add_loose_bnos plev tlev (AbsP (_, opt, prf)) (is, js) =
64566
679710d324f1 tuned whitespace;
wenzelm
parents: 63857
diff changeset
   664
      prf_add_loose_bnos (plev+1) tlev prf
679710d324f1 tuned whitespace;
wenzelm
parents: 63857
diff changeset
   665
        (case opt of
17492
714c95aab8bc shrink: compress terms and types;
wenzelm
parents: 17412
diff changeset
   666
          NONE => (is, insert (op =) ~1 js)
15531
08c8dad8e399 Deleted Library.option type.
skalberg
parents: 15030
diff changeset
   667
        | SOME t => (is, add_loose_bnos (t, tlev, js)))
12279
dc3020e938e2 Extended match_proof to handle abstractions.
berghofe
parents: 12233
diff changeset
   668
  | prf_add_loose_bnos plev tlev (Abst (_, _, prf)) p =
dc3020e938e2 Extended match_proof to handle abstractions.
berghofe
parents: 12233
diff changeset
   669
      prf_add_loose_bnos plev (tlev+1) prf p
dc3020e938e2 Extended match_proof to handle abstractions.
berghofe
parents: 12233
diff changeset
   670
  | prf_add_loose_bnos _ _ _ _ = ([], []);
dc3020e938e2 Extended match_proof to handle abstractions.
berghofe
parents: 12233
diff changeset
   671
11519
0c96830636a1 New implementation of LF style proof terms.
berghofe
parents:
diff changeset
   672
70397
f5bce5af361b tuned comments -- proper sections;
wenzelm
parents: 70396
diff changeset
   673
(* substitutions *)
11519
0c96830636a1 New implementation of LF style proof terms.
berghofe
parents:
diff changeset
   674
31977
e03059ae2d82 renamed structure TermSubst to Term_Subst;
wenzelm
parents: 31943
diff changeset
   675
fun del_conflicting_tvars envT T = Term_Subst.instantiateT
19482
9f11af8f7ef9 tuned basic list operators (flat, maps, map_filter);
wenzelm
parents: 19357
diff changeset
   676
  (map_filter (fn ixnS as (_, S) =>
26328
b2d6f520172c Type.lookup now curried
haftmann
parents: 23780
diff changeset
   677
     (Type.lookup envT ixnS; NONE) handle TYPE _ =>
70811
785a2112f861 clarified signature -- some operations to support fully explicit proof terms;
wenzelm
parents: 70810
diff changeset
   678
        SOME (ixnS, Logic.dummy_tfree S)) (Term.add_tvarsT T [])) T;
18316
4b62e0cb3aa8 Improved norm_proof to handle proofs containing term (type) variables
berghofe
parents: 18030
diff changeset
   679
31977
e03059ae2d82 renamed structure TermSubst to Term_Subst;
wenzelm
parents: 31943
diff changeset
   680
fun del_conflicting_vars env t = Term_Subst.instantiate
19482
9f11af8f7ef9 tuned basic list operators (flat, maps, map_filter);
wenzelm
parents: 19357
diff changeset
   681
  (map_filter (fn ixnS as (_, S) =>
32019
827a8ebb3b2c use structure Same;
wenzelm
parents: 31977
diff changeset
   682
     (Type.lookup (Envir.type_env env) ixnS; NONE) handle TYPE _ =>
70811
785a2112f861 clarified signature -- some operations to support fully explicit proof terms;
wenzelm
parents: 70810
diff changeset
   683
        SOME (ixnS, Logic.dummy_tfree S)) (Term.add_tvars t []),
44118
69e29cf993c0 avoid OldTerm operations -- with subtle changes of semantics;
wenzelm
parents: 44116
diff changeset
   684
   map_filter (fn (ixnT as (_, T)) =>
51700
c8f2bad67dbb tuned signature;
wenzelm
parents: 51100
diff changeset
   685
     (Envir.lookup env ixnT; NONE) handle TYPE _ =>
44118
69e29cf993c0 avoid OldTerm operations -- with subtle changes of semantics;
wenzelm
parents: 44116
diff changeset
   686
        SOME (ixnT, Free ("dummy", T))) (Term.add_vars t [])) t;
18316
4b62e0cb3aa8 Improved norm_proof to handle proofs containing term (type) variables
berghofe
parents: 18030
diff changeset
   687
11519
0c96830636a1 New implementation of LF style proof terms.
berghofe
parents:
diff changeset
   688
fun norm_proof env =
0c96830636a1 New implementation of LF style proof terms.
berghofe
parents:
diff changeset
   689
  let
32019
827a8ebb3b2c use structure Same;
wenzelm
parents: 31977
diff changeset
   690
    val envT = Envir.type_env env;
18316
4b62e0cb3aa8 Improved norm_proof to handle proofs containing term (type) variables
berghofe
parents: 18030
diff changeset
   691
    fun msg s = warning ("type conflict in norm_proof:\n" ^ s);
4b62e0cb3aa8 Improved norm_proof to handle proofs containing term (type) variables
berghofe
parents: 18030
diff changeset
   692
    fun htype f t = f env t handle TYPE (s, _, _) =>
4b62e0cb3aa8 Improved norm_proof to handle proofs containing term (type) variables
berghofe
parents: 18030
diff changeset
   693
      (msg s; f env (del_conflicting_vars env t));
4b62e0cb3aa8 Improved norm_proof to handle proofs containing term (type) variables
berghofe
parents: 18030
diff changeset
   694
    fun htypeT f T = f envT T handle TYPE (s, _, _) =>
4b62e0cb3aa8 Improved norm_proof to handle proofs containing term (type) variables
berghofe
parents: 18030
diff changeset
   695
      (msg s; f envT (del_conflicting_tvars envT T));
4b62e0cb3aa8 Improved norm_proof to handle proofs containing term (type) variables
berghofe
parents: 18030
diff changeset
   696
    fun htypeTs f Ts = f envT Ts handle TYPE (s, _, _) =>
4b62e0cb3aa8 Improved norm_proof to handle proofs containing term (type) variables
berghofe
parents: 18030
diff changeset
   697
      (msg s; f envT (map (del_conflicting_tvars envT) Ts));
32024
a5e7c8e60c85 tuned map_proof_terms_option;
wenzelm
parents: 32019
diff changeset
   698
32019
827a8ebb3b2c use structure Same;
wenzelm
parents: 31977
diff changeset
   699
    fun norm (Abst (s, T, prf)) =
32024
a5e7c8e60c85 tuned map_proof_terms_option;
wenzelm
parents: 32019
diff changeset
   700
          (Abst (s, Same.map_option (htypeT Envir.norm_type_same) T, Same.commit norm prf)
32019
827a8ebb3b2c use structure Same;
wenzelm
parents: 31977
diff changeset
   701
            handle Same.SAME => Abst (s, T, norm prf))
827a8ebb3b2c use structure Same;
wenzelm
parents: 31977
diff changeset
   702
      | norm (AbsP (s, t, prf)) =
32024
a5e7c8e60c85 tuned map_proof_terms_option;
wenzelm
parents: 32019
diff changeset
   703
          (AbsP (s, Same.map_option (htype Envir.norm_term_same) t, Same.commit norm prf)
32019
827a8ebb3b2c use structure Same;
wenzelm
parents: 31977
diff changeset
   704
            handle Same.SAME => AbsP (s, t, norm prf))
827a8ebb3b2c use structure Same;
wenzelm
parents: 31977
diff changeset
   705
      | norm (prf % t) =
827a8ebb3b2c use structure Same;
wenzelm
parents: 31977
diff changeset
   706
          (norm prf % Option.map (htype Envir.norm_term) t
32024
a5e7c8e60c85 tuned map_proof_terms_option;
wenzelm
parents: 32019
diff changeset
   707
            handle Same.SAME => prf % Same.map_option (htype Envir.norm_term_same) t)
32019
827a8ebb3b2c use structure Same;
wenzelm
parents: 31977
diff changeset
   708
      | norm (prf1 %% prf2) =
827a8ebb3b2c use structure Same;
wenzelm
parents: 31977
diff changeset
   709
          (norm prf1 %% Same.commit norm prf2
827a8ebb3b2c use structure Same;
wenzelm
parents: 31977
diff changeset
   710
            handle Same.SAME => prf1 %% norm prf2)
827a8ebb3b2c use structure Same;
wenzelm
parents: 31977
diff changeset
   711
      | norm (PAxm (s, prop, Ts)) =
32024
a5e7c8e60c85 tuned map_proof_terms_option;
wenzelm
parents: 32019
diff changeset
   712
          PAxm (s, prop, Same.map_option (htypeTs Envir.norm_types_same) Ts)
71777
3875815f5967 clarified signature: avoid clash with Isabelle/Scala Term.OFCLASS on case-insensible file-system;
wenzelm
parents: 71533
diff changeset
   713
      | norm (PClass (T, c)) =
3875815f5967 clarified signature: avoid clash with Isabelle/Scala Term.OFCLASS on case-insensible file-system;
wenzelm
parents: 71533
diff changeset
   714
          PClass (htypeT Envir.norm_type_same T, c)
32019
827a8ebb3b2c use structure Same;
wenzelm
parents: 31977
diff changeset
   715
      | norm (Oracle (s, prop, Ts)) =
32024
a5e7c8e60c85 tuned map_proof_terms_option;
wenzelm
parents: 32019
diff changeset
   716
          Oracle (s, prop, Same.map_option (htypeTs Envir.norm_types_same) Ts)
70538
fc9ba6fe367f clarified PThm: theory_name simplifies retrieval from exports;
wenzelm
parents: 70534
diff changeset
   717
      | norm (PThm ({serial = i, pos = p, theory_name, name = a, prop = t, types = Ts}, thm_body)) =
fc9ba6fe367f clarified PThm: theory_name simplifies retrieval from exports;
wenzelm
parents: 70534
diff changeset
   718
          PThm (thm_header i p theory_name a t
fc9ba6fe367f clarified PThm: theory_name simplifies retrieval from exports;
wenzelm
parents: 70534
diff changeset
   719
            (Same.map_option (htypeTs Envir.norm_types_same) Ts), thm_body)
32019
827a8ebb3b2c use structure Same;
wenzelm
parents: 31977
diff changeset
   720
      | norm _ = raise Same.SAME;
827a8ebb3b2c use structure Same;
wenzelm
parents: 31977
diff changeset
   721
  in Same.commit norm end;
11519
0c96830636a1 New implementation of LF style proof terms.
berghofe
parents:
diff changeset
   722
28803
d90258bbb18f reworked type proof: MinProof is vacous, added Promise, refined PThm (with serial);
wenzelm
parents: 28329
diff changeset
   723
70397
f5bce5af361b tuned comments -- proper sections;
wenzelm
parents: 70396
diff changeset
   724
(* remove some types in proof term (to save space) *)
11519
0c96830636a1 New implementation of LF style proof terms.
berghofe
parents:
diff changeset
   725
0c96830636a1 New implementation of LF style proof terms.
berghofe
parents:
diff changeset
   726
fun remove_types (Abs (s, _, t)) = Abs (s, dummyT, remove_types t)
0c96830636a1 New implementation of LF style proof terms.
berghofe
parents:
diff changeset
   727
  | remove_types (t $ u) = remove_types t $ remove_types u
0c96830636a1 New implementation of LF style proof terms.
berghofe
parents:
diff changeset
   728
  | remove_types (Const (s, _)) = Const (s, dummyT)
0c96830636a1 New implementation of LF style proof terms.
berghofe
parents:
diff changeset
   729
  | remove_types t = t;
0c96830636a1 New implementation of LF style proof terms.
berghofe
parents:
diff changeset
   730
32032
a6a6e8031c14 tuned/modernized Envir operations;
wenzelm
parents: 32027
diff changeset
   731
fun remove_types_env (Envir.Envir {maxidx, tenv, tyenv}) =
39020
ac0f24f850c9 replaced Table.map' by Table.map
haftmann
parents: 37297
diff changeset
   732
  Envir.Envir {maxidx = maxidx, tenv = Vartab.map (K (apsnd remove_types)) tenv, tyenv = tyenv};
11519
0c96830636a1 New implementation of LF style proof terms.
berghofe
parents:
diff changeset
   733
0c96830636a1 New implementation of LF style proof terms.
berghofe
parents:
diff changeset
   734
fun norm_proof' env prf = norm_proof (remove_types_env env) prf;
0c96830636a1 New implementation of LF style proof terms.
berghofe
parents:
diff changeset
   735
28803
d90258bbb18f reworked type proof: MinProof is vacous, added Promise, refined PThm (with serial);
wenzelm
parents: 28329
diff changeset
   736
70397
f5bce5af361b tuned comments -- proper sections;
wenzelm
parents: 70396
diff changeset
   737
(* substitution of bound variables *)
11519
0c96830636a1 New implementation of LF style proof terms.
berghofe
parents:
diff changeset
   738
0c96830636a1 New implementation of LF style proof terms.
berghofe
parents:
diff changeset
   739
fun prf_subst_bounds args prf =
0c96830636a1 New implementation of LF style proof terms.
berghofe
parents:
diff changeset
   740
  let
0c96830636a1 New implementation of LF style proof terms.
berghofe
parents:
diff changeset
   741
    val n = length args;
0c96830636a1 New implementation of LF style proof terms.
berghofe
parents:
diff changeset
   742
    fun subst' lev (Bound i) =
32019
827a8ebb3b2c use structure Same;
wenzelm
parents: 31977
diff changeset
   743
         (if i<lev then raise Same.SAME    (*var is locally bound*)
30146
a77fc0209723 eliminated NJ's List.nth;
wenzelm
parents: 29642
diff changeset
   744
          else  incr_boundvars lev (nth args (i-lev))
43278
1fbdcebb364b more robust exception pattern General.Subscript;
wenzelm
parents: 41699
diff changeset
   745
                  handle General.Subscript => Bound (i-n))  (*loose: change it*)
11519
0c96830636a1 New implementation of LF style proof terms.
berghofe
parents:
diff changeset
   746
      | subst' lev (Abs (a, T, body)) = Abs (a, T,  subst' (lev+1) body)
0c96830636a1 New implementation of LF style proof terms.
berghofe
parents:
diff changeset
   747
      | subst' lev (f $ t) = (subst' lev f $ substh' lev t
32019
827a8ebb3b2c use structure Same;
wenzelm
parents: 31977
diff changeset
   748
          handle Same.SAME => f $ subst' lev t)
827a8ebb3b2c use structure Same;
wenzelm
parents: 31977
diff changeset
   749
      | subst' _ _ = raise Same.SAME
827a8ebb3b2c use structure Same;
wenzelm
parents: 31977
diff changeset
   750
    and substh' lev t = (subst' lev t handle Same.SAME => t);
11519
0c96830636a1 New implementation of LF style proof terms.
berghofe
parents:
diff changeset
   751
32057
wenzelm
parents: 32054
diff changeset
   752
    fun subst lev (AbsP (a, t, body)) =
wenzelm
parents: 32054
diff changeset
   753
        (AbsP (a, Same.map_option (subst' lev) t, substh lev body)
32019
827a8ebb3b2c use structure Same;
wenzelm
parents: 31977
diff changeset
   754
          handle Same.SAME => AbsP (a, t, subst lev body))
11519
0c96830636a1 New implementation of LF style proof terms.
berghofe
parents:
diff changeset
   755
      | subst lev (Abst (a, T, body)) = Abst (a, T, subst (lev+1) body)
11615
ca7be12b2cbc - Exchanged % and %%.
berghofe
parents: 11543
diff changeset
   756
      | subst lev (prf %% prf') = (subst lev prf %% substh lev prf'
32019
827a8ebb3b2c use structure Same;
wenzelm
parents: 31977
diff changeset
   757
          handle Same.SAME => prf %% subst lev prf')
15570
8d8c70b41bab Move towards standard functions.
skalberg
parents: 15531
diff changeset
   758
      | subst lev (prf % t) = (subst lev prf % Option.map (substh' lev) t
32024
a5e7c8e60c85 tuned map_proof_terms_option;
wenzelm
parents: 32019
diff changeset
   759
          handle Same.SAME => prf % Same.map_option (subst' lev) t)
32019
827a8ebb3b2c use structure Same;
wenzelm
parents: 31977
diff changeset
   760
      | subst _ _ = raise Same.SAME
32024
a5e7c8e60c85 tuned map_proof_terms_option;
wenzelm
parents: 32019
diff changeset
   761
    and substh lev prf = (subst lev prf handle Same.SAME => prf);
64566
679710d324f1 tuned whitespace;
wenzelm
parents: 63857
diff changeset
   762
  in (case args of [] => prf | _ => substh 0 prf) end;
11519
0c96830636a1 New implementation of LF style proof terms.
berghofe
parents:
diff changeset
   763
0c96830636a1 New implementation of LF style proof terms.
berghofe
parents:
diff changeset
   764
fun prf_subst_pbounds args prf =
0c96830636a1 New implementation of LF style proof terms.
berghofe
parents:
diff changeset
   765
  let
0c96830636a1 New implementation of LF style proof terms.
berghofe
parents:
diff changeset
   766
    val n = length args;
0c96830636a1 New implementation of LF style proof terms.
berghofe
parents:
diff changeset
   767
    fun subst (PBound i) Plev tlev =
32019
827a8ebb3b2c use structure Same;
wenzelm
parents: 31977
diff changeset
   768
         (if i < Plev then raise Same.SAME    (*var is locally bound*)
30146
a77fc0209723 eliminated NJ's List.nth;
wenzelm
parents: 29642
diff changeset
   769
          else incr_pboundvars Plev tlev (nth args (i-Plev))
43278
1fbdcebb364b more robust exception pattern General.Subscript;
wenzelm
parents: 41699
diff changeset
   770
                 handle General.Subscript => PBound (i-n)  (*loose: change it*))
11519
0c96830636a1 New implementation of LF style proof terms.
berghofe
parents:
diff changeset
   771
      | subst (AbsP (a, t, body)) Plev tlev = AbsP (a, t, subst body (Plev+1) tlev)
0c96830636a1 New implementation of LF style proof terms.
berghofe
parents:
diff changeset
   772
      | subst (Abst (a, T, body)) Plev tlev = Abst (a, T, subst body Plev (tlev+1))
11615
ca7be12b2cbc - Exchanged % and %%.
berghofe
parents: 11543
diff changeset
   773
      | subst (prf %% prf') Plev tlev = (subst prf Plev tlev %% substh prf' Plev tlev
32019
827a8ebb3b2c use structure Same;
wenzelm
parents: 31977
diff changeset
   774
          handle Same.SAME => prf %% subst prf' Plev tlev)
11615
ca7be12b2cbc - Exchanged % and %%.
berghofe
parents: 11543
diff changeset
   775
      | subst (prf % t) Plev tlev = subst prf Plev tlev % t
63857
0883c1cc655c tuned -- fewer warnings;
wenzelm
parents: 63623
diff changeset
   776
      | subst  _ _ _ = raise Same.SAME
32019
827a8ebb3b2c use structure Same;
wenzelm
parents: 31977
diff changeset
   777
    and substh prf Plev tlev = (subst prf Plev tlev handle Same.SAME => prf)
64566
679710d324f1 tuned whitespace;
wenzelm
parents: 63857
diff changeset
   778
  in (case args of [] => prf | _ => substh prf 0 0) end;
11519
0c96830636a1 New implementation of LF style proof terms.
berghofe
parents:
diff changeset
   779
0c96830636a1 New implementation of LF style proof terms.
berghofe
parents:
diff changeset
   780
70397
f5bce5af361b tuned comments -- proper sections;
wenzelm
parents: 70396
diff changeset
   781
(* freezing and thawing of variables in proof terms *)
11519
0c96830636a1 New implementation of LF style proof terms.
berghofe
parents:
diff changeset
   782
44101
202d2f56560c misc tuning and clarification;
wenzelm
parents: 44100
diff changeset
   783
local
202d2f56560c misc tuning and clarification;
wenzelm
parents: 44100
diff changeset
   784
11519
0c96830636a1 New implementation of LF style proof terms.
berghofe
parents:
diff changeset
   785
fun frzT names =
44101
202d2f56560c misc tuning and clarification;
wenzelm
parents: 44100
diff changeset
   786
  map_type_tvar (fn (ixn, S) => TFree (the (AList.lookup (op =) names ixn), S));
11519
0c96830636a1 New implementation of LF style proof terms.
berghofe
parents:
diff changeset
   787
0c96830636a1 New implementation of LF style proof terms.
berghofe
parents:
diff changeset
   788
fun thawT names =
44101
202d2f56560c misc tuning and clarification;
wenzelm
parents: 44100
diff changeset
   789
  map_type_tfree (fn (a, S) =>
202d2f56560c misc tuning and clarification;
wenzelm
parents: 44100
diff changeset
   790
    (case AList.lookup (op =) names a of
202d2f56560c misc tuning and clarification;
wenzelm
parents: 44100
diff changeset
   791
      NONE => TFree (a, S)
202d2f56560c misc tuning and clarification;
wenzelm
parents: 44100
diff changeset
   792
    | SOME ixn => TVar (ixn, S)));
11519
0c96830636a1 New implementation of LF style proof terms.
berghofe
parents:
diff changeset
   793
0c96830636a1 New implementation of LF style proof terms.
berghofe
parents:
diff changeset
   794
fun freeze names names' (t $ u) =
0c96830636a1 New implementation of LF style proof terms.
berghofe
parents:
diff changeset
   795
      freeze names names' t $ freeze names names' u
0c96830636a1 New implementation of LF style proof terms.
berghofe
parents:
diff changeset
   796
  | freeze names names' (Abs (s, T, t)) =
0c96830636a1 New implementation of LF style proof terms.
berghofe
parents:
diff changeset
   797
      Abs (s, frzT names' T, freeze names names' t)
63857
0883c1cc655c tuned -- fewer warnings;
wenzelm
parents: 63623
diff changeset
   798
  | freeze _ names' (Const (s, T)) = Const (s, frzT names' T)
0883c1cc655c tuned -- fewer warnings;
wenzelm
parents: 63623
diff changeset
   799
  | freeze _ names' (Free (s, T)) = Free (s, frzT names' T)
11519
0c96830636a1 New implementation of LF style proof terms.
berghofe
parents:
diff changeset
   800
  | freeze names names' (Var (ixn, T)) =
44101
202d2f56560c misc tuning and clarification;
wenzelm
parents: 44100
diff changeset
   801
      Free (the (AList.lookup (op =) names ixn), frzT names' T)
63857
0883c1cc655c tuned -- fewer warnings;
wenzelm
parents: 63623
diff changeset
   802
  | freeze _ _ t = t;
11519
0c96830636a1 New implementation of LF style proof terms.
berghofe
parents:
diff changeset
   803
0c96830636a1 New implementation of LF style proof terms.
berghofe
parents:
diff changeset
   804
fun thaw names names' (t $ u) =
0c96830636a1 New implementation of LF style proof terms.
berghofe
parents:
diff changeset
   805
      thaw names names' t $ thaw names names' u
0c96830636a1 New implementation of LF style proof terms.
berghofe
parents:
diff changeset
   806
  | thaw names names' (Abs (s, T, t)) =
0c96830636a1 New implementation of LF style proof terms.
berghofe
parents:
diff changeset
   807
      Abs (s, thawT names' T, thaw names names' t)
63857
0883c1cc655c tuned -- fewer warnings;
wenzelm
parents: 63623
diff changeset
   808
  | thaw _ names' (Const (s, T)) = Const (s, thawT names' T)
21646
c07b5b0e8492 thm/prf: separate official name vs. additional tags;
wenzelm
parents: 20853
diff changeset
   809
  | thaw names names' (Free (s, T)) =
44101
202d2f56560c misc tuning and clarification;
wenzelm
parents: 44100
diff changeset
   810
      let val T' = thawT names' T in
202d2f56560c misc tuning and clarification;
wenzelm
parents: 44100
diff changeset
   811
        (case AList.lookup (op =) names s of
15531
08c8dad8e399 Deleted Library.option type.
skalberg
parents: 15030
diff changeset
   812
          NONE => Free (s, T')
44101
202d2f56560c misc tuning and clarification;
wenzelm
parents: 44100
diff changeset
   813
        | SOME ixn => Var (ixn, T'))
11519
0c96830636a1 New implementation of LF style proof terms.
berghofe
parents:
diff changeset
   814
      end
63857
0883c1cc655c tuned -- fewer warnings;
wenzelm
parents: 63623
diff changeset
   815
  | thaw _ names' (Var (ixn, T)) = Var (ixn, thawT names' T)
0883c1cc655c tuned -- fewer warnings;
wenzelm
parents: 63623
diff changeset
   816
  | thaw _ _ t = t;
11519
0c96830636a1 New implementation of LF style proof terms.
berghofe
parents:
diff changeset
   817
44101
202d2f56560c misc tuning and clarification;
wenzelm
parents: 44100
diff changeset
   818
in
202d2f56560c misc tuning and clarification;
wenzelm
parents: 44100
diff changeset
   819
11519
0c96830636a1 New implementation of LF style proof terms.
berghofe
parents:
diff changeset
   820
fun freeze_thaw_prf prf =
0c96830636a1 New implementation of LF style proof terms.
berghofe
parents:
diff changeset
   821
  let
70843
cc987440d776 more compact XML: separate environment for free variables;
wenzelm
parents: 70839
diff changeset
   822
    val (fs, Tfs, vs, Tvs) = fold_proof_terms_types
20147
7aa076a45cb4 fold_proof_terms: canonical arguments;
wenzelm
parents: 20071
diff changeset
   823
      (fn t => fn (fs, Tfs, vs, Tvs) =>
29261
7ee78cc8ef2c freeze_thaw: canonical Term.add_XXX operations;
wenzelm
parents: 28971
diff changeset
   824
         (Term.add_free_names t fs, Term.add_tfree_names t Tfs,
7ee78cc8ef2c freeze_thaw: canonical Term.add_XXX operations;
wenzelm
parents: 28971
diff changeset
   825
          Term.add_var_names t vs, Term.add_tvar_names t Tvs))
20147
7aa076a45cb4 fold_proof_terms: canonical arguments;
wenzelm
parents: 20071
diff changeset
   826
      (fn T => fn (fs, Tfs, vs, Tvs) =>
29261
7ee78cc8ef2c freeze_thaw: canonical Term.add_XXX operations;
wenzelm
parents: 28971
diff changeset
   827
         (fs, Term.add_tfree_namesT T Tfs,
7ee78cc8ef2c freeze_thaw: canonical Term.add_XXX operations;
wenzelm
parents: 28971
diff changeset
   828
          vs, Term.add_tvar_namesT T Tvs))
20147
7aa076a45cb4 fold_proof_terms: canonical arguments;
wenzelm
parents: 20071
diff changeset
   829
      prf ([], [], [], []);
29261
7ee78cc8ef2c freeze_thaw: canonical Term.add_XXX operations;
wenzelm
parents: 28971
diff changeset
   830
    val names = vs ~~ Name.variant_list fs (map fst vs);
20071
8f3e1ddb50e6 replaced Term.variant(list) by Name.variant(_list);
wenzelm
parents: 20000
diff changeset
   831
    val names' = Tvs ~~ Name.variant_list Tfs (map fst Tvs);
11519
0c96830636a1 New implementation of LF style proof terms.
berghofe
parents:
diff changeset
   832
    val rnames = map swap names;
0c96830636a1 New implementation of LF style proof terms.
berghofe
parents:
diff changeset
   833
    val rnames' = map swap names';
0c96830636a1 New implementation of LF style proof terms.
berghofe
parents:
diff changeset
   834
  in
0c96830636a1 New implementation of LF style proof terms.
berghofe
parents:
diff changeset
   835
    (map_proof_terms (freeze names names') (frzT names') prf,
0c96830636a1 New implementation of LF style proof terms.
berghofe
parents:
diff changeset
   836
     map_proof_terms (thaw rnames rnames') (thawT rnames'))
0c96830636a1 New implementation of LF style proof terms.
berghofe
parents:
diff changeset
   837
  end;
0c96830636a1 New implementation of LF style proof terms.
berghofe
parents:
diff changeset
   838
44101
202d2f56560c misc tuning and clarification;
wenzelm
parents: 44100
diff changeset
   839
end;
202d2f56560c misc tuning and clarification;
wenzelm
parents: 44100
diff changeset
   840
11519
0c96830636a1 New implementation of LF style proof terms.
berghofe
parents:
diff changeset
   841
70397
f5bce5af361b tuned comments -- proper sections;
wenzelm
parents: 70396
diff changeset
   842
f5bce5af361b tuned comments -- proper sections;
wenzelm
parents: 70396
diff changeset
   843
(** inference rules **)
f5bce5af361b tuned comments -- proper sections;
wenzelm
parents: 70396
diff changeset
   844
70824
7000868c6098 clarified modules;
wenzelm
parents: 70823
diff changeset
   845
(* trivial implication *)
7000868c6098 clarified modules;
wenzelm
parents: 70823
diff changeset
   846
7000868c6098 clarified modules;
wenzelm
parents: 70823
diff changeset
   847
val trivial_proof = AbsP ("H", NONE, PBound 0);
7000868c6098 clarified modules;
wenzelm
parents: 70823
diff changeset
   848
7000868c6098 clarified modules;
wenzelm
parents: 70823
diff changeset
   849
70397
f5bce5af361b tuned comments -- proper sections;
wenzelm
parents: 70396
diff changeset
   850
(* implication introduction *)
11519
0c96830636a1 New implementation of LF style proof terms.
berghofe
parents:
diff changeset
   851
37231
e5419ecf92b7 - outer_constraints with original variable names, to ensure that argsP is consistent with args
berghofe
parents: 36883
diff changeset
   852
fun gen_implies_intr_proof f h prf =
11519
0c96830636a1 New implementation of LF style proof terms.
berghofe
parents:
diff changeset
   853
  let
32019
827a8ebb3b2c use structure Same;
wenzelm
parents: 31977
diff changeset
   854
    fun abshyp i (Hyp t) = if h aconv t then PBound i else raise Same.SAME
11519
0c96830636a1 New implementation of LF style proof terms.
berghofe
parents:
diff changeset
   855
      | abshyp i (Abst (s, T, prf)) = Abst (s, T, abshyp i prf)
32024
a5e7c8e60c85 tuned map_proof_terms_option;
wenzelm
parents: 32019
diff changeset
   856
      | abshyp i (AbsP (s, t, prf)) = AbsP (s, t, abshyp (i + 1) prf)
11615
ca7be12b2cbc - Exchanged % and %%.
berghofe
parents: 11543
diff changeset
   857
      | abshyp i (prf % t) = abshyp i prf % t
32024
a5e7c8e60c85 tuned map_proof_terms_option;
wenzelm
parents: 32019
diff changeset
   858
      | abshyp i (prf1 %% prf2) =
a5e7c8e60c85 tuned map_proof_terms_option;
wenzelm
parents: 32019
diff changeset
   859
          (abshyp i prf1 %% abshyph i prf2
a5e7c8e60c85 tuned map_proof_terms_option;
wenzelm
parents: 32019
diff changeset
   860
            handle Same.SAME => prf1 %% abshyp i prf2)
32019
827a8ebb3b2c use structure Same;
wenzelm
parents: 31977
diff changeset
   861
      | abshyp _ _ = raise Same.SAME
32024
a5e7c8e60c85 tuned map_proof_terms_option;
wenzelm
parents: 32019
diff changeset
   862
    and abshyph i prf = (abshyp i prf handle Same.SAME => prf);
11519
0c96830636a1 New implementation of LF style proof terms.
berghofe
parents:
diff changeset
   863
  in
37231
e5419ecf92b7 - outer_constraints with original variable names, to ensure that argsP is consistent with args
berghofe
parents: 36883
diff changeset
   864
    AbsP ("H", f h, abshyph 0 prf)
11519
0c96830636a1 New implementation of LF style proof terms.
berghofe
parents:
diff changeset
   865
  end;
0c96830636a1 New implementation of LF style proof terms.
berghofe
parents:
diff changeset
   866
37231
e5419ecf92b7 - outer_constraints with original variable names, to ensure that argsP is consistent with args
berghofe
parents: 36883
diff changeset
   867
val implies_intr_proof = gen_implies_intr_proof (K NONE);
e5419ecf92b7 - outer_constraints with original variable names, to ensure that argsP is consistent with args
berghofe
parents: 36883
diff changeset
   868
val implies_intr_proof' = gen_implies_intr_proof SOME;
e5419ecf92b7 - outer_constraints with original variable names, to ensure that argsP is consistent with args
berghofe
parents: 36883
diff changeset
   869
11519
0c96830636a1 New implementation of LF style proof terms.
berghofe
parents:
diff changeset
   870
70397
f5bce5af361b tuned comments -- proper sections;
wenzelm
parents: 70396
diff changeset
   871
(* forall introduction *)
11519
0c96830636a1 New implementation of LF style proof terms.
berghofe
parents:
diff changeset
   872
70814
a6644dfe8e26 misc tuning and clarification;
wenzelm
parents: 70811
diff changeset
   873
fun forall_intr_proof (a, v) opt_T prf = Abst (a, opt_T, prf_abstract_over v prf);
11519
0c96830636a1 New implementation of LF style proof terms.
berghofe
parents:
diff changeset
   874
70814
a6644dfe8e26 misc tuning and clarification;
wenzelm
parents: 70811
diff changeset
   875
fun forall_intr_proof' v prf =
a6644dfe8e26 misc tuning and clarification;
wenzelm
parents: 70811
diff changeset
   876
  let val (a, T) = (case v of Var ((a, _), T) => (a, T) | Free (a, T) => (a, T))
a6644dfe8e26 misc tuning and clarification;
wenzelm
parents: 70811
diff changeset
   877
  in forall_intr_proof (a, v) (SOME T) prf end;
37231
e5419ecf92b7 - outer_constraints with original variable names, to ensure that argsP is consistent with args
berghofe
parents: 36883
diff changeset
   878
11519
0c96830636a1 New implementation of LF style proof terms.
berghofe
parents:
diff changeset
   879
70397
f5bce5af361b tuned comments -- proper sections;
wenzelm
parents: 70396
diff changeset
   880
(* varify *)
11519
0c96830636a1 New implementation of LF style proof terms.
berghofe
parents:
diff changeset
   881
0c96830636a1 New implementation of LF style proof terms.
berghofe
parents:
diff changeset
   882
fun varify_proof t fixed prf =
0c96830636a1 New implementation of LF style proof terms.
berghofe
parents:
diff changeset
   883
  let
19304
15f001295a7b remove (op =);
wenzelm
parents: 19222
diff changeset
   884
    val fs = Term.fold_types (Term.fold_atyps
15f001295a7b remove (op =);
wenzelm
parents: 19222
diff changeset
   885
      (fn TFree v => if member (op =) fixed v then I else insert (op =) v | _ => I)) t [];
29261
7ee78cc8ef2c freeze_thaw: canonical Term.add_XXX operations;
wenzelm
parents: 28971
diff changeset
   886
    val used = Name.context
7ee78cc8ef2c freeze_thaw: canonical Term.add_XXX operations;
wenzelm
parents: 28971
diff changeset
   887
      |> fold_types (fold_atyps (fn TVar ((a, _), _) => Name.declare a | _ => I)) t;
43326
47cf4bc789aa simplified Name.variant -- discontinued builtin fold_map;
wenzelm
parents: 43324
diff changeset
   888
    val fmap = fs ~~ #1 (fold_map Name.variant (map fst fs) used);
63857
0883c1cc655c tuned -- fewer warnings;
wenzelm
parents: 63623
diff changeset
   889
    fun thaw (a, S) =
0883c1cc655c tuned -- fewer warnings;
wenzelm
parents: 63623
diff changeset
   890
      (case AList.lookup (op =) fmap (a, S) of
0883c1cc655c tuned -- fewer warnings;
wenzelm
parents: 63623
diff changeset
   891
        NONE => TFree (a, S)
15531
08c8dad8e399 Deleted Library.option type.
skalberg
parents: 15030
diff changeset
   892
      | SOME b => TVar ((b, 0), S));
28803
d90258bbb18f reworked type proof: MinProof is vacous, added Promise, refined PThm (with serial);
wenzelm
parents: 28329
diff changeset
   893
  in map_proof_terms (map_types (map_type_tfree thaw)) (map_type_tfree thaw) prf end;
11519
0c96830636a1 New implementation of LF style proof terms.
berghofe
parents:
diff changeset
   894
0c96830636a1 New implementation of LF style proof terms.
berghofe
parents:
diff changeset
   895
0c96830636a1 New implementation of LF style proof terms.
berghofe
parents:
diff changeset
   896
local
0c96830636a1 New implementation of LF style proof terms.
berghofe
parents:
diff changeset
   897
44116
c70257b4cb7e avoid OldTerm operations -- with subtle changes of semantics;
wenzelm
parents: 44113
diff changeset
   898
fun new_name ix (pairs, used) =
43324
2b47822868e4 discontinued Name.variant to emphasize that this is old-style / indirect;
wenzelm
parents: 43278
diff changeset
   899
  let val v = singleton (Name.variant_list used) (string_of_indexname ix)
44116
c70257b4cb7e avoid OldTerm operations -- with subtle changes of semantics;
wenzelm
parents: 44113
diff changeset
   900
  in ((ix, v) :: pairs, v :: used) end;
11519
0c96830636a1 New implementation of LF style proof terms.
berghofe
parents:
diff changeset
   901
44116
c70257b4cb7e avoid OldTerm operations -- with subtle changes of semantics;
wenzelm
parents: 44113
diff changeset
   902
fun freeze_one alist (ix, sort) =
c70257b4cb7e avoid OldTerm operations -- with subtle changes of semantics;
wenzelm
parents: 44113
diff changeset
   903
  (case AList.lookup (op =) alist ix of
15531
08c8dad8e399 Deleted Library.option type.
skalberg
parents: 15030
diff changeset
   904
    NONE => TVar (ix, sort)
08c8dad8e399 Deleted Library.option type.
skalberg
parents: 15030
diff changeset
   905
  | SOME name => TFree (name, sort));
11519
0c96830636a1 New implementation of LF style proof terms.
berghofe
parents:
diff changeset
   906
0c96830636a1 New implementation of LF style proof terms.
berghofe
parents:
diff changeset
   907
in
0c96830636a1 New implementation of LF style proof terms.
berghofe
parents:
diff changeset
   908
36619
deadcd0ec431 renamed Proofterm.freezeT to Proofterm.legacy_freezeT (cf. 88756a5a92fc);
wenzelm
parents: 35851
diff changeset
   909
fun legacy_freezeT t prf =
11519
0c96830636a1 New implementation of LF style proof terms.
berghofe
parents:
diff changeset
   910
  let
44116
c70257b4cb7e avoid OldTerm operations -- with subtle changes of semantics;
wenzelm
parents: 44113
diff changeset
   911
    val used = Term.add_tfree_names t [];
c70257b4cb7e avoid OldTerm operations -- with subtle changes of semantics;
wenzelm
parents: 44113
diff changeset
   912
    val (alist, _) = fold_rev new_name (map #1 (Term.add_tvars t [])) ([], used);
11519
0c96830636a1 New implementation of LF style proof terms.
berghofe
parents:
diff changeset
   913
  in
0c96830636a1 New implementation of LF style proof terms.
berghofe
parents:
diff changeset
   914
    (case alist of
0c96830636a1 New implementation of LF style proof terms.
berghofe
parents:
diff changeset
   915
      [] => prf (*nothing to do!*)
0c96830636a1 New implementation of LF style proof terms.
berghofe
parents:
diff changeset
   916
    | _ =>
44116
c70257b4cb7e avoid OldTerm operations -- with subtle changes of semantics;
wenzelm
parents: 44113
diff changeset
   917
        let val frzT = map_type_tvar (freeze_one alist)
c70257b4cb7e avoid OldTerm operations -- with subtle changes of semantics;
wenzelm
parents: 44113
diff changeset
   918
        in map_proof_terms (map_types frzT) frzT prf end)
11519
0c96830636a1 New implementation of LF style proof terms.
berghofe
parents:
diff changeset
   919
  end;
0c96830636a1 New implementation of LF style proof terms.
berghofe
parents:
diff changeset
   920
0c96830636a1 New implementation of LF style proof terms.
berghofe
parents:
diff changeset
   921
end;
0c96830636a1 New implementation of LF style proof terms.
berghofe
parents:
diff changeset
   922
0c96830636a1 New implementation of LF style proof terms.
berghofe
parents:
diff changeset
   923
70397
f5bce5af361b tuned comments -- proper sections;
wenzelm
parents: 70396
diff changeset
   924
(* rotate assumptions *)
11519
0c96830636a1 New implementation of LF style proof terms.
berghofe
parents:
diff changeset
   925
70822
22e2f5acc0b4 more accurate treatment of propositions within proof terms, but these are ultimately ignored for performance reasons;
wenzelm
parents: 70815
diff changeset
   926
fun rotate_proof Bs Bi' params asms m prf =
11519
0c96830636a1 New implementation of LF style proof terms.
berghofe
parents:
diff changeset
   927
  let
0c96830636a1 New implementation of LF style proof terms.
berghofe
parents:
diff changeset
   928
    val i = length asms;
0c96830636a1 New implementation of LF style proof terms.
berghofe
parents:
diff changeset
   929
    val j = length Bs;
0c96830636a1 New implementation of LF style proof terms.
berghofe
parents:
diff changeset
   930
  in
70822
22e2f5acc0b4 more accurate treatment of propositions within proof terms, but these are ultimately ignored for performance reasons;
wenzelm
parents: 70815
diff changeset
   931
    mk_AbsP (Bs @ [Bi']) (proof_combP (prf, map PBound
22e2f5acc0b4 more accurate treatment of propositions within proof terms, but these are ultimately ignored for performance reasons;
wenzelm
parents: 70815
diff changeset
   932
      (j downto 1) @ [mk_Abst params (mk_AbsP asms
22e2f5acc0b4 more accurate treatment of propositions within proof terms, but these are ultimately ignored for performance reasons;
wenzelm
parents: 70815
diff changeset
   933
        (proof_combP (proof_combt (PBound i, map Bound ((length params - 1) downto 0)),
23178
07ba6b58b3d2 simplified/unified list fold;
wenzelm
parents: 22846
diff changeset
   934
          map PBound (((i-m-1) downto 0) @ ((i-1) downto (i-m))))))]))
11519
0c96830636a1 New implementation of LF style proof terms.
berghofe
parents:
diff changeset
   935
  end;
0c96830636a1 New implementation of LF style proof terms.
berghofe
parents:
diff changeset
   936
0c96830636a1 New implementation of LF style proof terms.
berghofe
parents:
diff changeset
   937
70397
f5bce5af361b tuned comments -- proper sections;
wenzelm
parents: 70396
diff changeset
   938
(* permute premises *)
11519
0c96830636a1 New implementation of LF style proof terms.
berghofe
parents:
diff changeset
   939
70822
22e2f5acc0b4 more accurate treatment of propositions within proof terms, but these are ultimately ignored for performance reasons;
wenzelm
parents: 70815
diff changeset
   940
fun permute_prems_proof prems' j k prf =
22e2f5acc0b4 more accurate treatment of propositions within proof terms, but these are ultimately ignored for performance reasons;
wenzelm
parents: 70815
diff changeset
   941
  let val n = length prems' in
22e2f5acc0b4 more accurate treatment of propositions within proof terms, but these are ultimately ignored for performance reasons;
wenzelm
parents: 70815
diff changeset
   942
    mk_AbsP prems'
22e2f5acc0b4 more accurate treatment of propositions within proof terms, but these are ultimately ignored for performance reasons;
wenzelm
parents: 70815
diff changeset
   943
      (proof_combP (prf, map PBound ((n-1 downto n-j) @ (k-1 downto 0) @ (n-j-1 downto k))))
11519
0c96830636a1 New implementation of LF style proof terms.
berghofe
parents:
diff changeset
   944
  end;
0c96830636a1 New implementation of LF style proof terms.
berghofe
parents:
diff changeset
   945
0c96830636a1 New implementation of LF style proof terms.
berghofe
parents:
diff changeset
   946
70397
f5bce5af361b tuned comments -- proper sections;
wenzelm
parents: 70396
diff changeset
   947
(* generalization *)
19908
f035261fb5b9 added generalize rule;
wenzelm
parents: 19502
diff changeset
   948
70827
730251503341 proper generalize_proof: schematic variables need to be explicit in the resulting proof term (for shrink/reconstruct operation);
wenzelm
parents: 70824
diff changeset
   949
fun generalize_proof (tfrees, frees) idx prop prf =
730251503341 proper generalize_proof: schematic variables need to be explicit in the resulting proof term (for shrink/reconstruct operation);
wenzelm
parents: 70824
diff changeset
   950
  let
730251503341 proper generalize_proof: schematic variables need to be explicit in the resulting proof term (for shrink/reconstruct operation);
wenzelm
parents: 70824
diff changeset
   951
    val gen =
730251503341 proper generalize_proof: schematic variables need to be explicit in the resulting proof term (for shrink/reconstruct operation);
wenzelm
parents: 70824
diff changeset
   952
      if null frees then []
730251503341 proper generalize_proof: schematic variables need to be explicit in the resulting proof term (for shrink/reconstruct operation);
wenzelm
parents: 70824
diff changeset
   953
      else
730251503341 proper generalize_proof: schematic variables need to be explicit in the resulting proof term (for shrink/reconstruct operation);
wenzelm
parents: 70824
diff changeset
   954
        fold_aterms (fn Free (x, T) => member (op =) frees x ? insert (op =) (x, T) | _ => I)
730251503341 proper generalize_proof: schematic variables need to be explicit in the resulting proof term (for shrink/reconstruct operation);
wenzelm
parents: 70824
diff changeset
   955
          (Term_Subst.generalize (tfrees, []) idx prop) [];
730251503341 proper generalize_proof: schematic variables need to be explicit in the resulting proof term (for shrink/reconstruct operation);
wenzelm
parents: 70824
diff changeset
   956
  in
730251503341 proper generalize_proof: schematic variables need to be explicit in the resulting proof term (for shrink/reconstruct operation);
wenzelm
parents: 70824
diff changeset
   957
    prf
730251503341 proper generalize_proof: schematic variables need to be explicit in the resulting proof term (for shrink/reconstruct operation);
wenzelm
parents: 70824
diff changeset
   958
    |> Same.commit (map_proof_terms_same
730251503341 proper generalize_proof: schematic variables need to be explicit in the resulting proof term (for shrink/reconstruct operation);
wenzelm
parents: 70824
diff changeset
   959
        (Term_Subst.generalize_same (tfrees, []) idx)
730251503341 proper generalize_proof: schematic variables need to be explicit in the resulting proof term (for shrink/reconstruct operation);
wenzelm
parents: 70824
diff changeset
   960
        (Term_Subst.generalizeT_same tfrees idx))
730251503341 proper generalize_proof: schematic variables need to be explicit in the resulting proof term (for shrink/reconstruct operation);
wenzelm
parents: 70824
diff changeset
   961
    |> fold (fn (x, T) => forall_intr_proof (x, Free (x, T)) NONE) gen
730251503341 proper generalize_proof: schematic variables need to be explicit in the resulting proof term (for shrink/reconstruct operation);
wenzelm
parents: 70824
diff changeset
   962
    |> fold_rev (fn (x, T) => fn prf' => prf' %> Var (Name.clean_index (x, idx), T)) gen
730251503341 proper generalize_proof: schematic variables need to be explicit in the resulting proof term (for shrink/reconstruct operation);
wenzelm
parents: 70824
diff changeset
   963
  end;
19908
f035261fb5b9 added generalize rule;
wenzelm
parents: 19502
diff changeset
   964
f035261fb5b9 added generalize rule;
wenzelm
parents: 19502
diff changeset
   965
70397
f5bce5af361b tuned comments -- proper sections;
wenzelm
parents: 70396
diff changeset
   966
(* instantiation *)
11519
0c96830636a1 New implementation of LF style proof terms.
berghofe
parents:
diff changeset
   967
20000
2fa767ab91aa added map_proof_terms_option;
wenzelm
parents: 19908
diff changeset
   968
fun instantiate (instT, inst) =
36620
e6bb250402b5 simplified/unified fundamental operations on types/terms/proofterms -- prefer Same.operation over "option" variant;
wenzelm
parents: 36619
diff changeset
   969
  Same.commit (map_proof_terms_same
e6bb250402b5 simplified/unified fundamental operations on types/terms/proofterms -- prefer Same.operation over "option" variant;
wenzelm
parents: 36619
diff changeset
   970
    (Term_Subst.instantiate_same (instT, map (apsnd remove_types) inst))
e6bb250402b5 simplified/unified fundamental operations on types/terms/proofterms -- prefer Same.operation over "option" variant;
wenzelm
parents: 36619
diff changeset
   971
    (Term_Subst.instantiateT_same instT));
11519
0c96830636a1 New implementation of LF style proof terms.
berghofe
parents:
diff changeset
   972
0c96830636a1 New implementation of LF style proof terms.
berghofe
parents:
diff changeset
   973
70397
f5bce5af361b tuned comments -- proper sections;
wenzelm
parents: 70396
diff changeset
   974
(* lifting *)
11519
0c96830636a1 New implementation of LF style proof terms.
berghofe
parents:
diff changeset
   975
0c96830636a1 New implementation of LF style proof terms.
berghofe
parents:
diff changeset
   976
fun lift_proof Bi inc prop prf =
0c96830636a1 New implementation of LF style proof terms.
berghofe
parents:
diff changeset
   977
  let
32024
a5e7c8e60c85 tuned map_proof_terms_option;
wenzelm
parents: 32019
diff changeset
   978
    fun lift'' Us Ts t =
59787
6e2a20486897 local fixes may depend on goal params;
wenzelm
parents: 59058
diff changeset
   979
      strip_abs Ts (Logic.incr_indexes ([], Us, inc) (mk_abs Ts t));
11519
0c96830636a1 New implementation of LF style proof terms.
berghofe
parents:
diff changeset
   980
11715
592923615f77 Tuned several functions to improve sharing of unchanged subproofs.
berghofe
parents: 11652
diff changeset
   981
    fun lift' Us Ts (Abst (s, T, prf)) =
32024
a5e7c8e60c85 tuned map_proof_terms_option;
wenzelm
parents: 32019
diff changeset
   982
          (Abst (s, Same.map_option (Logic.incr_tvar_same inc) T, lifth' Us (dummyT::Ts) prf)
32019
827a8ebb3b2c use structure Same;
wenzelm
parents: 31977
diff changeset
   983
           handle Same.SAME => Abst (s, T, lift' Us (dummyT::Ts) prf))
11715
592923615f77 Tuned several functions to improve sharing of unchanged subproofs.
berghofe
parents: 11652
diff changeset
   984
      | lift' Us Ts (AbsP (s, t, prf)) =
32024
a5e7c8e60c85 tuned map_proof_terms_option;
wenzelm
parents: 32019
diff changeset
   985
          (AbsP (s, Same.map_option (same (op =) (lift'' Us Ts)) t, lifth' Us Ts prf)
32019
827a8ebb3b2c use structure Same;
wenzelm
parents: 31977
diff changeset
   986
           handle Same.SAME => AbsP (s, t, lift' Us Ts prf))
15570
8d8c70b41bab Move towards standard functions.
skalberg
parents: 15531
diff changeset
   987
      | lift' Us Ts (prf % t) = (lift' Us Ts prf % Option.map (lift'' Us Ts) t
32024
a5e7c8e60c85 tuned map_proof_terms_option;
wenzelm
parents: 32019
diff changeset
   988
          handle Same.SAME => prf % Same.map_option (same (op =) (lift'' Us Ts)) t)
11715
592923615f77 Tuned several functions to improve sharing of unchanged subproofs.
berghofe
parents: 11652
diff changeset
   989
      | lift' Us Ts (prf1 %% prf2) = (lift' Us Ts prf1 %% lifth' Us Ts prf2
32019
827a8ebb3b2c use structure Same;
wenzelm
parents: 31977
diff changeset
   990
          handle Same.SAME => prf1 %% lift' Us Ts prf2)
11715
592923615f77 Tuned several functions to improve sharing of unchanged subproofs.
berghofe
parents: 11652
diff changeset
   991
      | lift' _ _ (PAxm (s, prop, Ts)) =
32024
a5e7c8e60c85 tuned map_proof_terms_option;
wenzelm
parents: 32019
diff changeset
   992
          PAxm (s, prop, (Same.map_option o Same.map) (Logic.incr_tvar_same inc) Ts)
71777
3875815f5967 clarified signature: avoid clash with Isabelle/Scala Term.OFCLASS on case-insensible file-system;
wenzelm
parents: 71533
diff changeset
   993
      | lift' _ _ (PClass (T, c)) =
3875815f5967 clarified signature: avoid clash with Isabelle/Scala Term.OFCLASS on case-insensible file-system;
wenzelm
parents: 71533
diff changeset
   994
          PClass (Logic.incr_tvar_same inc T, c)
28828
c25dd83a6f9f unified treatment of PAxm/Oracle/Promise in basic proof term operations;
wenzelm
parents: 28815
diff changeset
   995
      | lift' _ _ (Oracle (s, prop, Ts)) =
32024
a5e7c8e60c85 tuned map_proof_terms_option;
wenzelm
parents: 32019
diff changeset
   996
          Oracle (s, prop, (Same.map_option o Same.map) (Logic.incr_tvar_same inc) Ts)
70538
fc9ba6fe367f clarified PThm: theory_name simplifies retrieval from exports;
wenzelm
parents: 70534
diff changeset
   997
      | lift' _ _ (PThm ({serial = i, pos = p, theory_name, name = s, prop, types = Ts}, thm_body)) =
fc9ba6fe367f clarified PThm: theory_name simplifies retrieval from exports;
wenzelm
parents: 70534
diff changeset
   998
          PThm (thm_header i p theory_name s prop
fc9ba6fe367f clarified PThm: theory_name simplifies retrieval from exports;
wenzelm
parents: 70534
diff changeset
   999
            ((Same.map_option o Same.map) (Logic.incr_tvar inc) Ts), thm_body)
32019
827a8ebb3b2c use structure Same;
wenzelm
parents: 31977
diff changeset
  1000
      | lift' _ _ _ = raise Same.SAME
827a8ebb3b2c use structure Same;
wenzelm
parents: 31977
diff changeset
  1001
    and lifth' Us Ts prf = (lift' Us Ts prf handle Same.SAME => prf);
11519
0c96830636a1 New implementation of LF style proof terms.
berghofe
parents:
diff changeset
  1002
18030
5dadabde8fe4 Logic.lift_all;
wenzelm
parents: 17756
diff changeset
  1003
    val ps = map (Logic.lift_all inc Bi) (Logic.strip_imp_prems prop);
11519
0c96830636a1 New implementation of LF style proof terms.
berghofe
parents:
diff changeset
  1004
    val k = length ps;
0c96830636a1 New implementation of LF style proof terms.
berghofe
parents:
diff changeset
  1005
23178
07ba6b58b3d2 simplified/unified list fold;
wenzelm
parents: 22846
diff changeset
  1006
    fun mk_app b (i, j, prf) =
11615
ca7be12b2cbc - Exchanged % and %%.
berghofe
parents: 11543
diff changeset
  1007
          if b then (i-1, j, prf %% PBound i) else (i, j-1, prf %> Bound j);
11519
0c96830636a1 New implementation of LF style proof terms.
berghofe
parents:
diff changeset
  1008
56245
84fc7dfa3cd4 more qualified names;
wenzelm
parents: 52696
diff changeset
  1009
    fun lift Us bs i j (Const ("Pure.imp", _) $ A $ B) =
20147
7aa076a45cb4 fold_proof_terms: canonical arguments;
wenzelm
parents: 20071
diff changeset
  1010
            AbsP ("H", NONE (*A*), lift Us (true::bs) (i+1) j B)
56245
84fc7dfa3cd4 more qualified names;
wenzelm
parents: 52696
diff changeset
  1011
      | lift Us bs i j (Const ("Pure.all", _) $ Abs (a, T, t)) =
20147
7aa076a45cb4 fold_proof_terms: canonical arguments;
wenzelm
parents: 20071
diff changeset
  1012
            Abst (a, NONE (*T*), lift (T::Us) (false::bs) i (j+1) t)
11715
592923615f77 Tuned several functions to improve sharing of unchanged subproofs.
berghofe
parents: 11652
diff changeset
  1013
      | lift Us bs i j _ = proof_combP (lifth' (rev Us) [] prf,
23178
07ba6b58b3d2 simplified/unified list fold;
wenzelm
parents: 22846
diff changeset
  1014
            map (fn k => (#3 (fold_rev mk_app bs (i-1, j-1, PBound k))))
11519
0c96830636a1 New implementation of LF style proof terms.
berghofe
parents:
diff changeset
  1015
              (i + k - 1 downto i));
0c96830636a1 New implementation of LF style proof terms.
berghofe
parents:
diff changeset
  1016
  in
70822
22e2f5acc0b4 more accurate treatment of propositions within proof terms, but these are ultimately ignored for performance reasons;
wenzelm
parents: 70815
diff changeset
  1017
    mk_AbsP ps (lift [] [] 0 0 Bi)
11519
0c96830636a1 New implementation of LF style proof terms.
berghofe
parents:
diff changeset
  1018
  end;
0c96830636a1 New implementation of LF style proof terms.
berghofe
parents:
diff changeset
  1019
32027
9dd548810ed1 tuned incr_indexes;
wenzelm
parents: 32024
diff changeset
  1020
fun incr_indexes i =
36620
e6bb250402b5 simplified/unified fundamental operations on types/terms/proofterms -- prefer Same.operation over "option" variant;
wenzelm
parents: 36619
diff changeset
  1021
  Same.commit (map_proof_terms_same
59787
6e2a20486897 local fixes may depend on goal params;
wenzelm
parents: 59058
diff changeset
  1022
    (Logic.incr_indexes_same ([], [], i)) (Logic.incr_tvar_same i));
32027
9dd548810ed1 tuned incr_indexes;
wenzelm
parents: 32024
diff changeset
  1023
11519
0c96830636a1 New implementation of LF style proof terms.
berghofe
parents:
diff changeset
  1024
70397
f5bce5af361b tuned comments -- proper sections;
wenzelm
parents: 70396
diff changeset
  1025
(* proof by assumption *)
11519
0c96830636a1 New implementation of LF style proof terms.
berghofe
parents:
diff changeset
  1026
23296
25f28f9c28a3 Adapted Proofterm.bicompose_proof to Larry's changes in
berghofe
parents: 23178
diff changeset
  1027
fun mk_asm_prf t i m =
25f28f9c28a3 Adapted Proofterm.bicompose_proof to Larry's changes in
berghofe
parents: 23178
diff changeset
  1028
  let
25f28f9c28a3 Adapted Proofterm.bicompose_proof to Larry's changes in
berghofe
parents: 23178
diff changeset
  1029
    fun imp_prf _ i 0 = PBound i
56245
84fc7dfa3cd4 more qualified names;
wenzelm
parents: 52696
diff changeset
  1030
      | imp_prf (Const ("Pure.imp", _) $ A $ B) i m = AbsP ("H", NONE (*A*), imp_prf B (i+1) (m-1))
23296
25f28f9c28a3 Adapted Proofterm.bicompose_proof to Larry's changes in
berghofe
parents: 23178
diff changeset
  1031
      | imp_prf _ i _ = PBound i;
56245
84fc7dfa3cd4 more qualified names;
wenzelm
parents: 52696
diff changeset
  1032
    fun all_prf (Const ("Pure.all", _) $ Abs (a, T, t)) = Abst (a, NONE (*T*), all_prf t)
23296
25f28f9c28a3 Adapted Proofterm.bicompose_proof to Larry's changes in
berghofe
parents: 23178
diff changeset
  1033
      | all_prf t = imp_prf t (~i) m
25f28f9c28a3 Adapted Proofterm.bicompose_proof to Larry's changes in
berghofe
parents: 23178
diff changeset
  1034
  in all_prf t end;
11519
0c96830636a1 New implementation of LF style proof terms.
berghofe
parents:
diff changeset
  1035
0c96830636a1 New implementation of LF style proof terms.
berghofe
parents:
diff changeset
  1036
fun assumption_proof Bs Bi n prf =
70822
22e2f5acc0b4 more accurate treatment of propositions within proof terms, but these are ultimately ignored for performance reasons;
wenzelm
parents: 70815
diff changeset
  1037
  mk_AbsP Bs (proof_combP (prf, map PBound (length Bs - 1 downto 0) @ [mk_asm_prf Bi n ~1]));
11519
0c96830636a1 New implementation of LF style proof terms.
berghofe
parents:
diff changeset
  1038
0c96830636a1 New implementation of LF style proof terms.
berghofe
parents:
diff changeset
  1039
70397
f5bce5af361b tuned comments -- proper sections;
wenzelm
parents: 70396
diff changeset
  1040
(* composition of object rule with proof state *)
11519
0c96830636a1 New implementation of LF style proof terms.
berghofe
parents:
diff changeset
  1041
56245
84fc7dfa3cd4 more qualified names;
wenzelm
parents: 52696
diff changeset
  1042
fun flatten_params_proof i j n (Const ("Pure.imp", _) $ A $ B, k) =
15531
08c8dad8e399 Deleted Library.option type.
skalberg
parents: 15030
diff changeset
  1043
      AbsP ("H", NONE (*A*), flatten_params_proof (i+1) j n (B, k))
56245
84fc7dfa3cd4 more qualified names;
wenzelm
parents: 52696
diff changeset
  1044
  | flatten_params_proof i j n (Const ("Pure.all", _) $ Abs (a, T, t), k) =
15531
08c8dad8e399 Deleted Library.option type.
skalberg
parents: 15030
diff changeset
  1045
      Abst (a, NONE (*T*), flatten_params_proof i (j+1) n (t, k))
11519
0c96830636a1 New implementation of LF style proof terms.
berghofe
parents:
diff changeset
  1046
  | flatten_params_proof i j n (_, k) = proof_combP (proof_combt (PBound (k+i),
19304
15f001295a7b remove (op =);
wenzelm
parents: 19222
diff changeset
  1047
      map Bound (j-1 downto 0)), map PBound (remove (op =) (i-n) (i-1 downto 0)));
11519
0c96830636a1 New implementation of LF style proof terms.
berghofe
parents:
diff changeset
  1048
70822
22e2f5acc0b4 more accurate treatment of propositions within proof terms, but these are ultimately ignored for performance reasons;
wenzelm
parents: 70815
diff changeset
  1049
fun bicompose_proof flatten Bs As A oldAs n m rprf sprf =
11519
0c96830636a1 New implementation of LF style proof terms.
berghofe
parents:
diff changeset
  1050
  let
0c96830636a1 New implementation of LF style proof terms.
berghofe
parents:
diff changeset
  1051
    val lb = length Bs;
70822
22e2f5acc0b4 more accurate treatment of propositions within proof terms, but these are ultimately ignored for performance reasons;
wenzelm
parents: 70815
diff changeset
  1052
    val la = length As;
11519
0c96830636a1 New implementation of LF style proof terms.
berghofe
parents:
diff changeset
  1053
  in
70822
22e2f5acc0b4 more accurate treatment of propositions within proof terms, but these are ultimately ignored for performance reasons;
wenzelm
parents: 70815
diff changeset
  1054
    mk_AbsP (Bs @ As) (proof_combP (sprf,
11615
ca7be12b2cbc - Exchanged % and %%.
berghofe
parents: 11543
diff changeset
  1055
      map PBound (lb + la - 1 downto la)) %%
23296
25f28f9c28a3 Adapted Proofterm.bicompose_proof to Larry's changes in
berghofe
parents: 23178
diff changeset
  1056
        proof_combP (rprf, (if n>0 then [mk_asm_prf (the A) n m] else []) @
18485
5959295f82d3 bicompose_proof: no_flatten;
wenzelm
parents: 18316
diff changeset
  1057
          map (if flatten then flatten_params_proof 0 0 n else PBound o snd)
5959295f82d3 bicompose_proof: no_flatten;
wenzelm
parents: 18316
diff changeset
  1058
            (oldAs ~~ (la - 1 downto 0))))
11519
0c96830636a1 New implementation of LF style proof terms.
berghofe
parents:
diff changeset
  1059
  end;
0c96830636a1 New implementation of LF style proof terms.
berghofe
parents:
diff changeset
  1060
0c96830636a1 New implementation of LF style proof terms.
berghofe
parents:
diff changeset
  1061
70397
f5bce5af361b tuned comments -- proper sections;
wenzelm
parents: 70396
diff changeset
  1062
f5bce5af361b tuned comments -- proper sections;
wenzelm
parents: 70396
diff changeset
  1063
(** type classes **)
36621
2fd4e2c76636 proof terms for strip_shyps, based on the version by krauss/schropp with some notable differences:
wenzelm
parents: 36620
diff changeset
  1064
71529
dd56597e026b clarified;
wenzelm
parents: 71528
diff changeset
  1065
fun strip_shyps_proof algebra present witnessed extra prf =
36621
2fd4e2c76636 proof terms for strip_shyps, based on the version by krauss/schropp with some notable differences:
wenzelm
parents: 36620
diff changeset
  1066
  let
71529
dd56597e026b clarified;
wenzelm
parents: 71528
diff changeset
  1067
    val replacements = present @ witnessed @ map (`Logic.dummy_tfree) extra;
dd56597e026b clarified;
wenzelm
parents: 71528
diff changeset
  1068
    fun get_replacement S =
dd56597e026b clarified;
wenzelm
parents: 71528
diff changeset
  1069
      replacements |> get_first (fn (T', S') =>
dd56597e026b clarified;
wenzelm
parents: 71528
diff changeset
  1070
        if Sorts.sort_le algebra (S', S) then SOME T' else NONE);
36621
2fd4e2c76636 proof terms for strip_shyps, based on the version by krauss/schropp with some notable differences:
wenzelm
parents: 36620
diff changeset
  1071
    fun replace T =
2fd4e2c76636 proof terms for strip_shyps, based on the version by krauss/schropp with some notable differences:
wenzelm
parents: 36620
diff changeset
  1072
      if exists (fn (T', _) => T' = T) present then raise Same.SAME
2fd4e2c76636 proof terms for strip_shyps, based on the version by krauss/schropp with some notable differences:
wenzelm
parents: 36620
diff changeset
  1073
      else
71529
dd56597e026b clarified;
wenzelm
parents: 71528
diff changeset
  1074
        (case get_replacement (Type.sort_of_atyp T) of
36621
2fd4e2c76636 proof terms for strip_shyps, based on the version by krauss/schropp with some notable differences:
wenzelm
parents: 36620
diff changeset
  1075
          SOME T' => T'
2fd4e2c76636 proof terms for strip_shyps, based on the version by krauss/schropp with some notable differences:
wenzelm
parents: 36620
diff changeset
  1076
        | NONE => raise Fail "strip_shyps_proof: bad type variable in proof term");
2fd4e2c76636 proof terms for strip_shyps, based on the version by krauss/schropp with some notable differences:
wenzelm
parents: 36620
diff changeset
  1077
  in Same.commit (map_proof_types_same (Term_Subst.map_atypsT_same replace)) prf end;
2fd4e2c76636 proof terms for strip_shyps, based on the version by krauss/schropp with some notable differences:
wenzelm
parents: 36620
diff changeset
  1078
70458
9e2173eb23eb more direct proofs for type classes;
wenzelm
parents: 70454
diff changeset
  1079
fun of_sort_proof algebra classrel_proof arity_proof hyps =
9e2173eb23eb more direct proofs for type classes;
wenzelm
parents: 70454
diff changeset
  1080
  Sorts.of_sort_derivation algebra
9e2173eb23eb more direct proofs for type classes;
wenzelm
parents: 70454
diff changeset
  1081
   {class_relation = fn _ => fn _ => fn (prf, c1) => fn c2 =>
9e2173eb23eb more direct proofs for type classes;
wenzelm
parents: 70454
diff changeset
  1082
      if c1 = c2 then prf else classrel_proof (c1, c2) %% prf,
9e2173eb23eb more direct proofs for type classes;
wenzelm
parents: 70454
diff changeset
  1083
    type_constructor = fn (a, _) => fn dom => fn c =>
36741
d65ed9d7275e added of_sort_proof according to krauss/schropp, with slightly more direct canonical_instance;
wenzelm
parents: 36740
diff changeset
  1084
      let val Ss = map (map snd) dom and prfs = maps (map fst) dom
70458
9e2173eb23eb more direct proofs for type classes;
wenzelm
parents: 70454
diff changeset
  1085
      in proof_combP (arity_proof (a, Ss, c), prfs) end,
36741
d65ed9d7275e added of_sort_proof according to krauss/schropp, with slightly more direct canonical_instance;
wenzelm
parents: 36740
diff changeset
  1086
    type_variable = fn typ => map (fn c => (hyps (typ, c), c)) (Type.sort_of_atyp typ)};
d65ed9d7275e added of_sort_proof according to krauss/schropp, with slightly more direct canonical_instance;
wenzelm
parents: 36740
diff changeset
  1087
d65ed9d7275e added of_sort_proof according to krauss/schropp, with slightly more direct canonical_instance;
wenzelm
parents: 36740
diff changeset
  1088
70420
328573dd886f tuned -- reorder sections;
wenzelm
parents: 70419
diff changeset
  1089
70397
f5bce5af361b tuned comments -- proper sections;
wenzelm
parents: 70396
diff changeset
  1090
(** axioms and theorems **)
11519
0c96830636a1 New implementation of LF style proof terms.
berghofe
parents:
diff changeset
  1091
70948
5ed8c7e826a2 proper order of variables, independently of varify/unvarify state -- relevant for export of locale conclusions;
wenzelm
parents: 70916
diff changeset
  1092
val add_type_variables = (fold_types o fold_atyps) (insert (op =));
5ed8c7e826a2 proper order of variables, independently of varify/unvarify state -- relevant for export of locale conclusions;
wenzelm
parents: 70916
diff changeset
  1093
fun type_variables_of t = rev (add_type_variables t []);
70810
wenzelm
parents: 70809
diff changeset
  1094
70948
5ed8c7e826a2 proper order of variables, independently of varify/unvarify state -- relevant for export of locale conclusions;
wenzelm
parents: 70916
diff changeset
  1095
val add_variables = fold_aterms (fn a => (is_Var a orelse is_Free a) ? insert (op =) a);
5ed8c7e826a2 proper order of variables, independently of varify/unvarify state -- relevant for export of locale conclusions;
wenzelm
parents: 70916
diff changeset
  1096
fun variables_of t = rev (add_variables t []);
11519
0c96830636a1 New implementation of LF style proof terms.
berghofe
parents:
diff changeset
  1097
0c96830636a1 New implementation of LF style proof terms.
berghofe
parents:
diff changeset
  1098
fun test_args _ [] = true
0c96830636a1 New implementation of LF style proof terms.
berghofe
parents:
diff changeset
  1099
  | test_args is (Bound i :: ts) =
17492
714c95aab8bc shrink: compress terms and types;
wenzelm
parents: 17412
diff changeset
  1100
      not (member (op =) is i) andalso test_args (i :: is) ts
11519
0c96830636a1 New implementation of LF style proof terms.
berghofe
parents:
diff changeset
  1101
  | test_args _ _ = false;
0c96830636a1 New implementation of LF style proof terms.
berghofe
parents:
diff changeset
  1102
0c96830636a1 New implementation of LF style proof terms.
berghofe
parents:
diff changeset
  1103
fun is_fun (Type ("fun", _)) = true
0c96830636a1 New implementation of LF style proof terms.
berghofe
parents:
diff changeset
  1104
  | is_fun (TVar _) = true
0c96830636a1 New implementation of LF style proof terms.
berghofe
parents:
diff changeset
  1105
  | is_fun _ = false;
0c96830636a1 New implementation of LF style proof terms.
berghofe
parents:
diff changeset
  1106
70948
5ed8c7e826a2 proper order of variables, independently of varify/unvarify state -- relevant for export of locale conclusions;
wenzelm
parents: 70916
diff changeset
  1107
fun vars_of t = map Var (rev (Term.add_vars t []));
5ed8c7e826a2 proper order of variables, independently of varify/unvarify state -- relevant for export of locale conclusions;
wenzelm
parents: 70916
diff changeset
  1108
11519
0c96830636a1 New implementation of LF style proof terms.
berghofe
parents:
diff changeset
  1109
fun add_funvars Ts (vs, t) =
0c96830636a1 New implementation of LF style proof terms.
berghofe
parents:
diff changeset
  1110
  if is_fun (fastype_of1 (Ts, t)) then
33042
ddf1f03a9ad9 curried union as canonical list operation
haftmann
parents: 33038
diff changeset
  1111
    union (op =) vs (map_filter (fn Var (ixn, T) =>
33037
b22e44496dc2 replaced old_style infixes eq_set, subset, union, inter and variants by generic versions
haftmann
parents: 32810
diff changeset
  1112
      if is_fun T then SOME ixn else NONE | _ => NONE) (vars_of t))
11519
0c96830636a1 New implementation of LF style proof terms.
berghofe
parents:
diff changeset
  1113
  else vs;
0c96830636a1 New implementation of LF style proof terms.
berghofe
parents:
diff changeset
  1114
56245
84fc7dfa3cd4 more qualified names;
wenzelm
parents: 52696
diff changeset
  1115
fun add_npvars q p Ts (vs, Const ("Pure.imp", _) $ t $ u) =
11519
0c96830636a1 New implementation of LF style proof terms.
berghofe
parents:
diff changeset
  1116
      add_npvars q p Ts (add_npvars q (not p) Ts (vs, t), u)
56245
84fc7dfa3cd4 more qualified names;
wenzelm
parents: 52696
diff changeset
  1117
  | add_npvars q p Ts (vs, Const ("Pure.all", Type (_, [Type (_, [T, _]), _])) $ t) =
11519
0c96830636a1 New implementation of LF style proof terms.
berghofe
parents:
diff changeset
  1118
      add_npvars q p Ts (vs, if p andalso q then betapply (t, Var (("",0), T)) else t)
12041
27214c16ebe4 Fixed bug in function add_npvars.
berghofe
parents: 11999
diff changeset
  1119
  | add_npvars q p Ts (vs, Abs (_, T, t)) = add_npvars q p (T::Ts) (vs, t)
27214c16ebe4 Fixed bug in function add_npvars.
berghofe
parents: 11999
diff changeset
  1120
  | add_npvars _ _ Ts (vs, t) = add_npvars' Ts (vs, t)
64566
679710d324f1 tuned whitespace;
wenzelm
parents: 63857
diff changeset
  1121
and add_npvars' Ts (vs, t) =
679710d324f1 tuned whitespace;
wenzelm
parents: 63857
diff changeset
  1122
  (case strip_comb t of
11519
0c96830636a1 New implementation of LF style proof terms.
berghofe
parents:
diff changeset
  1123
    (Var (ixn, _), ts) => if test_args [] ts then vs
17314
04e21a27c0ad introduces some modern-style AList operations
haftmann
parents: 17221
diff changeset
  1124
      else Library.foldl (add_npvars' Ts)
04e21a27c0ad introduces some modern-style AList operations
haftmann
parents: 17221
diff changeset
  1125
        (AList.update (op =) (ixn,
04e21a27c0ad introduces some modern-style AList operations
haftmann
parents: 17221
diff changeset
  1126
          Library.foldl (add_funvars Ts) ((these ooo AList.lookup) (op =) vs ixn, ts)) vs, ts)
15570
8d8c70b41bab Move towards standard functions.
skalberg
parents: 15531
diff changeset
  1127
  | (Abs (_, T, u), ts) => Library.foldl (add_npvars' (T::Ts)) (vs, u :: ts)
8d8c70b41bab Move towards standard functions.
skalberg
parents: 15531
diff changeset
  1128
  | (_, ts) => Library.foldl (add_npvars' Ts) (vs, ts));
11519
0c96830636a1 New implementation of LF style proof terms.
berghofe
parents:
diff changeset
  1129
56245
84fc7dfa3cd4 more qualified names;
wenzelm
parents: 52696
diff changeset
  1130
fun prop_vars (Const ("Pure.imp", _) $ P $ Q) = union (op =) (prop_vars P) (prop_vars Q)
84fc7dfa3cd4 more qualified names;
wenzelm
parents: 52696
diff changeset
  1131
  | prop_vars (Const ("Pure.all", _) $ Abs (_, _, t)) = prop_vars t
64566
679710d324f1 tuned whitespace;
wenzelm
parents: 63857
diff changeset
  1132
  | prop_vars t = (case strip_comb t of (Var (ixn, _), _) => [ixn] | _ => []);
11519
0c96830636a1 New implementation of LF style proof terms.
berghofe
parents:
diff changeset
  1133
0c96830636a1 New implementation of LF style proof terms.
berghofe
parents:
diff changeset
  1134
fun is_proj t =
0c96830636a1 New implementation of LF style proof terms.
berghofe
parents:
diff changeset
  1135
  let
64566
679710d324f1 tuned whitespace;
wenzelm
parents: 63857
diff changeset
  1136
    fun is_p i t =
679710d324f1 tuned whitespace;
wenzelm
parents: 63857
diff changeset
  1137
      (case strip_comb t of
63857
0883c1cc655c tuned -- fewer warnings;
wenzelm
parents: 63623
diff changeset
  1138
        (Bound _, []) => false
11519
0c96830636a1 New implementation of LF style proof terms.
berghofe
parents:
diff changeset
  1139
      | (Bound j, ts) => j >= i orelse exists (is_p i) ts
0c96830636a1 New implementation of LF style proof terms.
berghofe
parents:
diff changeset
  1140
      | (Abs (_, _, u), _) => is_p (i+1) u
0c96830636a1 New implementation of LF style proof terms.
berghofe
parents:
diff changeset
  1141
      | (_, ts) => exists (is_p i) ts)
64566
679710d324f1 tuned whitespace;
wenzelm
parents: 63857
diff changeset
  1142
  in
679710d324f1 tuned whitespace;
wenzelm
parents: 63857
diff changeset
  1143
    (case strip_abs_body t of
679710d324f1 tuned whitespace;
wenzelm
parents: 63857
diff changeset
  1144
      Bound _ => true
679710d324f1 tuned whitespace;
wenzelm
parents: 63857
diff changeset
  1145
    | t' => is_p 0 t')
11519
0c96830636a1 New implementation of LF style proof terms.
berghofe
parents:
diff changeset
  1146
  end;
0c96830636a1 New implementation of LF style proof terms.
berghofe
parents:
diff changeset
  1147
70416
wenzelm
parents: 70415
diff changeset
  1148
fun prop_args prop =
wenzelm
parents: 70415
diff changeset
  1149
  let
wenzelm
parents: 70415
diff changeset
  1150
    val needed_vars =
wenzelm
parents: 70415
diff changeset
  1151
      union (op =) (Library.foldl (uncurry (union (op =)))
wenzelm
parents: 70415
diff changeset
  1152
        ([], map (uncurry (insert (op =))) (add_npvars true true [] ([], prop))))
wenzelm
parents: 70415
diff changeset
  1153
      (prop_vars prop);
70948
5ed8c7e826a2 proper order of variables, independently of varify/unvarify state -- relevant for export of locale conclusions;
wenzelm
parents: 70916
diff changeset
  1154
  in
5ed8c7e826a2 proper order of variables, independently of varify/unvarify state -- relevant for export of locale conclusions;
wenzelm
parents: 70916
diff changeset
  1155
    variables_of prop |> map
5ed8c7e826a2 proper order of variables, independently of varify/unvarify state -- relevant for export of locale conclusions;
wenzelm
parents: 70916
diff changeset
  1156
      (fn var as Var (ixn, _) => if member (op =) needed_vars ixn then SOME var else NONE
5ed8c7e826a2 proper order of variables, independently of varify/unvarify state -- relevant for export of locale conclusions;
wenzelm
parents: 70916
diff changeset
  1157
        | free => SOME free)
5ed8c7e826a2 proper order of variables, independently of varify/unvarify state -- relevant for export of locale conclusions;
wenzelm
parents: 70916
diff changeset
  1158
  end;
11519
0c96830636a1 New implementation of LF style proof terms.
berghofe
parents:
diff changeset
  1159
70835
2d991e01a671 proper treatment of axm_proof/oracle_proof like a closed proof constant, e.g. relevant for proof reconstruction of List.list.full_exhaustive_list.simps;
wenzelm
parents: 70834
diff changeset
  1160
fun const_proof mk name prop =
2d991e01a671 proper treatment of axm_proof/oracle_proof like a closed proof constant, e.g. relevant for proof reconstruction of List.list.full_exhaustive_list.simps;
wenzelm
parents: 70834
diff changeset
  1161
  let
2d991e01a671 proper treatment of axm_proof/oracle_proof like a closed proof constant, e.g. relevant for proof reconstruction of List.list.full_exhaustive_list.simps;
wenzelm
parents: 70834
diff changeset
  1162
    val args = prop_args prop;
2d991e01a671 proper treatment of axm_proof/oracle_proof like a closed proof constant, e.g. relevant for proof reconstruction of List.list.full_exhaustive_list.simps;
wenzelm
parents: 70834
diff changeset
  1163
    val ({outer_constraints, ...}, prop1) = Logic.unconstrainT [] prop;
2d991e01a671 proper treatment of axm_proof/oracle_proof like a closed proof constant, e.g. relevant for proof reconstruction of List.list.full_exhaustive_list.simps;
wenzelm
parents: 70834
diff changeset
  1164
    val head = mk (name, prop1, NONE);
71777
3875815f5967 clarified signature: avoid clash with Isabelle/Scala Term.OFCLASS on case-insensible file-system;
wenzelm
parents: 71533
diff changeset
  1165
  in proof_combP (proof_combt' (head, args), map PClass outer_constraints) end;
17017
fa8e32209734 - Tuned handling of oracles
berghofe
parents: 16983
diff changeset
  1166
70835
2d991e01a671 proper treatment of axm_proof/oracle_proof like a closed proof constant, e.g. relevant for proof reconstruction of List.list.full_exhaustive_list.simps;
wenzelm
parents: 70834
diff changeset
  1167
val axm_proof = const_proof PAxm;
2d991e01a671 proper treatment of axm_proof/oracle_proof like a closed proof constant, e.g. relevant for proof reconstruction of List.list.full_exhaustive_list.simps;
wenzelm
parents: 70834
diff changeset
  1168
val oracle_proof = const_proof Oracle;
11519
0c96830636a1 New implementation of LF style proof terms.
berghofe
parents:
diff changeset
  1169
63623
1a38142e1172 tuned signature;
wenzelm
parents: 62897
diff changeset
  1170
val shrink_proof =
17492
714c95aab8bc shrink: compress terms and types;
wenzelm
parents: 17412
diff changeset
  1171
  let
714c95aab8bc shrink: compress terms and types;
wenzelm
parents: 17412
diff changeset
  1172
    fun shrink ls lev (prf as Abst (a, T, body)) =
714c95aab8bc shrink: compress terms and types;
wenzelm
parents: 17412
diff changeset
  1173
          let val (b, is, ch, body') = shrink ls (lev+1) body
51100
18daa3380ff7 discontinued home-made sharing for proof terms -- leave memory management to the Poly/ML RTS;
wenzelm
parents: 51047
diff changeset
  1174
          in (b, is, ch, if ch then Abst (a, T, body') else prf) end
17492
714c95aab8bc shrink: compress terms and types;
wenzelm
parents: 17412
diff changeset
  1175
      | shrink ls lev (prf as AbsP (a, t, body)) =
714c95aab8bc shrink: compress terms and types;
wenzelm
parents: 17412
diff changeset
  1176
          let val (b, is, ch, body') = shrink (lev::ls) lev body
19482
9f11af8f7ef9 tuned basic list operators (flat, maps, map_filter);
wenzelm
parents: 19357
diff changeset
  1177
          in (b orelse member (op =) is 0, map_filter (fn 0 => NONE | i => SOME (i-1)) is,
51100
18daa3380ff7 discontinued home-made sharing for proof terms -- leave memory management to the Poly/ML RTS;
wenzelm
parents: 51047
diff changeset
  1178
            ch, if ch then AbsP (a, t, body') else prf)
17492
714c95aab8bc shrink: compress terms and types;
wenzelm
parents: 17412
diff changeset
  1179
          end
714c95aab8bc shrink: compress terms and types;
wenzelm
parents: 17412
diff changeset
  1180
      | shrink ls lev prf =
714c95aab8bc shrink: compress terms and types;
wenzelm
parents: 17412
diff changeset
  1181
          let val (is, ch, _, prf') = shrink' ls lev [] [] prf
714c95aab8bc shrink: compress terms and types;
wenzelm
parents: 17412
diff changeset
  1182
          in (false, is, ch, prf') end
714c95aab8bc shrink: compress terms and types;
wenzelm
parents: 17412
diff changeset
  1183
    and shrink' ls lev ts prfs (prf as prf1 %% prf2) =
714c95aab8bc shrink: compress terms and types;
wenzelm
parents: 17412
diff changeset
  1184
          let
714c95aab8bc shrink: compress terms and types;
wenzelm
parents: 17412
diff changeset
  1185
            val p as (_, is', ch', prf') = shrink ls lev prf2;
714c95aab8bc shrink: compress terms and types;
wenzelm
parents: 17412
diff changeset
  1186
            val (is, ch, ts', prf'') = shrink' ls lev ts (p::prfs) prf1
33042
ddf1f03a9ad9 curried union as canonical list operation
haftmann
parents: 33038
diff changeset
  1187
          in (union (op =) is is', ch orelse ch', ts',
17492
714c95aab8bc shrink: compress terms and types;
wenzelm
parents: 17412
diff changeset
  1188
              if ch orelse ch' then prf'' %% prf' else prf)
714c95aab8bc shrink: compress terms and types;
wenzelm
parents: 17412
diff changeset
  1189
          end
714c95aab8bc shrink: compress terms and types;
wenzelm
parents: 17412
diff changeset
  1190
      | shrink' ls lev ts prfs (prf as prf1 % t) =
714c95aab8bc shrink: compress terms and types;
wenzelm
parents: 17412
diff changeset
  1191
          let val (is, ch, (ch', t')::ts', prf') = shrink' ls lev (t::ts) prfs prf1
714c95aab8bc shrink: compress terms and types;
wenzelm
parents: 17412
diff changeset
  1192
          in (is, ch orelse ch', ts',
51100
18daa3380ff7 discontinued home-made sharing for proof terms -- leave memory management to the Poly/ML RTS;
wenzelm
parents: 51047
diff changeset
  1193
              if ch orelse ch' then prf' % t' else prf) end
17492
714c95aab8bc shrink: compress terms and types;
wenzelm
parents: 17412
diff changeset
  1194
      | shrink' ls lev ts prfs (prf as PBound i) =
30146
a77fc0209723 eliminated NJ's List.nth;
wenzelm
parents: 29642
diff changeset
  1195
          (if exists (fn SOME (Bound j) => lev-j <= nth ls i | _ => true) ts
18928
042608ffa2ec subsituted gen_duplicates / has_duplicates for duplicates whenever appropriate
haftmann
parents: 18485
diff changeset
  1196
             orelse has_duplicates (op =)
042608ffa2ec subsituted gen_duplicates / has_duplicates for duplicates whenever appropriate
haftmann
parents: 18485
diff changeset
  1197
               (Library.foldl (fn (js, SOME (Bound j)) => j :: js | (js, _) => js) ([], ts))
17492
714c95aab8bc shrink: compress terms and types;
wenzelm
parents: 17412
diff changeset
  1198
             orelse exists #1 prfs then [i] else [], false, map (pair false) ts, prf)
63857
0883c1cc655c tuned -- fewer warnings;
wenzelm
parents: 63623
diff changeset
  1199
      | shrink' _ _ ts _ (Hyp t) = ([], false, map (pair false) ts, Hyp t)
0883c1cc655c tuned -- fewer warnings;
wenzelm
parents: 63623
diff changeset
  1200
      | shrink' _ _ ts _ (prf as MinProof) = ([], false, map (pair false) ts, prf)
71777
3875815f5967 clarified signature: avoid clash with Isabelle/Scala Term.OFCLASS on case-insensible file-system;
wenzelm
parents: 71533
diff changeset
  1201
      | shrink' _ _ ts _ (prf as PClass _) = ([], false, map (pair false) ts, prf)
63857
0883c1cc655c tuned -- fewer warnings;
wenzelm
parents: 63623
diff changeset
  1202
      | shrink' _ _ ts prfs prf =
17492
714c95aab8bc shrink: compress terms and types;
wenzelm
parents: 17412
diff changeset
  1203
          let
28803
d90258bbb18f reworked type proof: MinProof is vacous, added Promise, refined PThm (with serial);
wenzelm
parents: 28329
diff changeset
  1204
            val prop =
d90258bbb18f reworked type proof: MinProof is vacous, added Promise, refined PThm (with serial);
wenzelm
parents: 28329
diff changeset
  1205
              (case prf of
d90258bbb18f reworked type proof: MinProof is vacous, added Promise, refined PThm (with serial);
wenzelm
parents: 28329
diff changeset
  1206
                PAxm (_, prop, _) => prop
70834
614ca81fa28e clarified oracle_proof;
wenzelm
parents: 70833
diff changeset
  1207
              | Oracle (_, prop, _) => prop
70493
a9053fa30909 clarified ML types;
wenzelm
parents: 70492
diff changeset
  1208
              | PThm ({prop, ...}, _) => prop
36879
201a4afd8533 raise Fail uniformly for proofterm errors, which appear to be rather low-level;
wenzelm
parents: 36878
diff changeset
  1209
              | _ => raise Fail "shrink: proof not in normal form");
17492
714c95aab8bc shrink: compress terms and types;
wenzelm
parents: 17412
diff changeset
  1210
            val vs = vars_of prop;
19012
wenzelm
parents: 18928
diff changeset
  1211
            val (ts', ts'') = chop (length vs) ts;
33957
e9afca2118d4 normalized uncurry take/drop
haftmann
parents: 33955
diff changeset
  1212
            val insts = take (length ts') (map (fst o dest_Var) vs) ~~ ts';
17492
714c95aab8bc shrink: compress terms and types;
wenzelm
parents: 17412
diff changeset
  1213
            val nvs = Library.foldl (fn (ixns', (ixn, ixns)) =>
64566
679710d324f1 tuned whitespace;
wenzelm
parents: 63857
diff changeset
  1214
              insert (op =) ixn
679710d324f1 tuned whitespace;
wenzelm
parents: 63857
diff changeset
  1215
                (case AList.lookup (op =) insts ixn of
33042
ddf1f03a9ad9 curried union as canonical list operation
haftmann
parents: 33038
diff changeset
  1216
                  SOME (SOME t) => if is_proj t then union (op =) ixns ixns' else ixns'
ddf1f03a9ad9 curried union as canonical list operation
haftmann
parents: 33038
diff changeset
  1217
                | _ => union (op =) ixns ixns'))
17492
714c95aab8bc shrink: compress terms and types;
wenzelm
parents: 17412
diff changeset
  1218
                  (needed prop ts'' prfs, add_npvars false true [] ([], prop));
714c95aab8bc shrink: compress terms and types;
wenzelm
parents: 17412
diff changeset
  1219
            val insts' = map
714c95aab8bc shrink: compress terms and types;
wenzelm
parents: 17412
diff changeset
  1220
              (fn (ixn, x as SOME _) => if member (op =) nvs ixn then (false, x) else (true, NONE)
714c95aab8bc shrink: compress terms and types;
wenzelm
parents: 17412
diff changeset
  1221
                | (_, x) => (false, x)) insts
714c95aab8bc shrink: compress terms and types;
wenzelm
parents: 17412
diff changeset
  1222
          in ([], false, insts' @ map (pair false) ts'', prf) end
56245
84fc7dfa3cd4 more qualified names;
wenzelm
parents: 52696
diff changeset
  1223
    and needed (Const ("Pure.imp", _) $ t $ u) ts ((b, _, _, _)::prfs) =
33042
ddf1f03a9ad9 curried union as canonical list operation
haftmann
parents: 33038
diff changeset
  1224
          union (op =) (if b then map (fst o dest_Var) (vars_of t) else []) (needed u ts prfs)
17492
714c95aab8bc shrink: compress terms and types;
wenzelm
parents: 17412
diff changeset
  1225
      | needed (Var (ixn, _)) (_::_) _ = [ixn]
714c95aab8bc shrink: compress terms and types;
wenzelm
parents: 17412
diff changeset
  1226
      | needed _ _ _ = [];
63623
1a38142e1172 tuned signature;
wenzelm
parents: 62897
diff changeset
  1227
  in fn prf => #4 (shrink [] 0 prf) end;
11519
0c96830636a1 New implementation of LF style proof terms.
berghofe
parents:
diff changeset
  1228
0c96830636a1 New implementation of LF style proof terms.
berghofe
parents:
diff changeset
  1229
70397
f5bce5af361b tuned comments -- proper sections;
wenzelm
parents: 70396
diff changeset
  1230
70420
328573dd886f tuned -- reorder sections;
wenzelm
parents: 70419
diff changeset
  1231
(** axioms for equality **)
328573dd886f tuned -- reorder sections;
wenzelm
parents: 70419
diff changeset
  1232
328573dd886f tuned -- reorder sections;
wenzelm
parents: 70419
diff changeset
  1233
val aT = TFree ("'a", []);
328573dd886f tuned -- reorder sections;
wenzelm
parents: 70419
diff changeset
  1234
val bT = TFree ("'b", []);
328573dd886f tuned -- reorder sections;
wenzelm
parents: 70419
diff changeset
  1235
val x = Free ("x", aT);
328573dd886f tuned -- reorder sections;
wenzelm
parents: 70419
diff changeset
  1236
val y = Free ("y", aT);
328573dd886f tuned -- reorder sections;
wenzelm
parents: 70419
diff changeset
  1237
val z = Free ("z", aT);
328573dd886f tuned -- reorder sections;
wenzelm
parents: 70419
diff changeset
  1238
val A = Free ("A", propT);
328573dd886f tuned -- reorder sections;
wenzelm
parents: 70419
diff changeset
  1239
val B = Free ("B", propT);
328573dd886f tuned -- reorder sections;
wenzelm
parents: 70419
diff changeset
  1240
val f = Free ("f", aT --> bT);
328573dd886f tuned -- reorder sections;
wenzelm
parents: 70419
diff changeset
  1241
val g = Free ("g", aT --> bT);
328573dd886f tuned -- reorder sections;
wenzelm
parents: 70419
diff changeset
  1242
328573dd886f tuned -- reorder sections;
wenzelm
parents: 70419
diff changeset
  1243
val equality_axms =
328573dd886f tuned -- reorder sections;
wenzelm
parents: 70419
diff changeset
  1244
 [("reflexive", Logic.mk_equals (x, x)),
328573dd886f tuned -- reorder sections;
wenzelm
parents: 70419
diff changeset
  1245
  ("symmetric", Logic.mk_implies (Logic.mk_equals (x, y), Logic.mk_equals (y, x))),
328573dd886f tuned -- reorder sections;
wenzelm
parents: 70419
diff changeset
  1246
  ("transitive",
328573dd886f tuned -- reorder sections;
wenzelm
parents: 70419
diff changeset
  1247
    Logic.list_implies ([Logic.mk_equals (x, y), Logic.mk_equals (y, z)], Logic.mk_equals (x, z))),
328573dd886f tuned -- reorder sections;
wenzelm
parents: 70419
diff changeset
  1248
  ("equal_intr",
328573dd886f tuned -- reorder sections;
wenzelm
parents: 70419
diff changeset
  1249
    Logic.list_implies ([Logic.mk_implies (A, B), Logic.mk_implies (B, A)], Logic.mk_equals (A, B))),
328573dd886f tuned -- reorder sections;
wenzelm
parents: 70419
diff changeset
  1250
  ("equal_elim", Logic.list_implies ([Logic.mk_equals (A, B), A], B)),
328573dd886f tuned -- reorder sections;
wenzelm
parents: 70419
diff changeset
  1251
  ("abstract_rule",
328573dd886f tuned -- reorder sections;
wenzelm
parents: 70419
diff changeset
  1252
    Logic.mk_implies
70814
a6644dfe8e26 misc tuning and clarification;
wenzelm
parents: 70811
diff changeset
  1253
      (Logic.all x (Logic.mk_equals (f $ x, g $ x)),
a6644dfe8e26 misc tuning and clarification;
wenzelm
parents: 70811
diff changeset
  1254
        Logic.mk_equals (lambda x (f $ x), lambda x (g $ x)))),
70420
328573dd886f tuned -- reorder sections;
wenzelm
parents: 70419
diff changeset
  1255
  ("combination", Logic.list_implies
328573dd886f tuned -- reorder sections;
wenzelm
parents: 70419
diff changeset
  1256
    ([Logic.mk_equals (f, g), Logic.mk_equals (x, y)], Logic.mk_equals (f $ x, g $ y)))];
328573dd886f tuned -- reorder sections;
wenzelm
parents: 70419
diff changeset
  1257
328573dd886f tuned -- reorder sections;
wenzelm
parents: 70419
diff changeset
  1258
val [reflexive_axm, symmetric_axm, transitive_axm, equal_intr_axm,
328573dd886f tuned -- reorder sections;
wenzelm
parents: 70419
diff changeset
  1259
  equal_elim_axm, abstract_rule_axm, combination_axm] =
328573dd886f tuned -- reorder sections;
wenzelm
parents: 70419
diff changeset
  1260
    map (fn (s, t) => PAxm ("Pure." ^ s, Logic.varify_global t, NONE)) equality_axms;
328573dd886f tuned -- reorder sections;
wenzelm
parents: 70419
diff changeset
  1261
70814
a6644dfe8e26 misc tuning and clarification;
wenzelm
parents: 70811
diff changeset
  1262
val reflexive_proof = reflexive_axm % NONE;
a6644dfe8e26 misc tuning and clarification;
wenzelm
parents: 70811
diff changeset
  1263
a6644dfe8e26 misc tuning and clarification;
wenzelm
parents: 70811
diff changeset
  1264
val is_reflexive_proof = fn PAxm ("Pure.reflexive", _, _) % _ => true | _ => false;
70420
328573dd886f tuned -- reorder sections;
wenzelm
parents: 70419
diff changeset
  1265
70814
a6644dfe8e26 misc tuning and clarification;
wenzelm
parents: 70811
diff changeset
  1266
fun symmetric_proof prf =
a6644dfe8e26 misc tuning and clarification;
wenzelm
parents: 70811
diff changeset
  1267
  if is_reflexive_proof prf then prf
a6644dfe8e26 misc tuning and clarification;
wenzelm
parents: 70811
diff changeset
  1268
  else symmetric_axm % NONE % NONE %% prf;
70420
328573dd886f tuned -- reorder sections;
wenzelm
parents: 70419
diff changeset
  1269
70814
a6644dfe8e26 misc tuning and clarification;
wenzelm
parents: 70811
diff changeset
  1270
fun transitive_proof U u prf1 prf2 =
a6644dfe8e26 misc tuning and clarification;
wenzelm
parents: 70811
diff changeset
  1271
  if is_reflexive_proof prf1 then prf2
a6644dfe8e26 misc tuning and clarification;
wenzelm
parents: 70811
diff changeset
  1272
  else if is_reflexive_proof prf2 then prf1
a6644dfe8e26 misc tuning and clarification;
wenzelm
parents: 70811
diff changeset
  1273
  else if U = propT then transitive_axm % NONE % SOME (remove_types u) % NONE %% prf1 %% prf2
a6644dfe8e26 misc tuning and clarification;
wenzelm
parents: 70811
diff changeset
  1274
  else transitive_axm % NONE % NONE % NONE %% prf1 %% prf2;
70420
328573dd886f tuned -- reorder sections;
wenzelm
parents: 70419
diff changeset
  1275
70814
a6644dfe8e26 misc tuning and clarification;
wenzelm
parents: 70811
diff changeset
  1276
fun equal_intr_proof A B prf1 prf2 =
a6644dfe8e26 misc tuning and clarification;
wenzelm
parents: 70811
diff changeset
  1277
  equal_intr_axm %> remove_types A %> remove_types B %% prf1 %% prf2;
a6644dfe8e26 misc tuning and clarification;
wenzelm
parents: 70811
diff changeset
  1278
a6644dfe8e26 misc tuning and clarification;
wenzelm
parents: 70811
diff changeset
  1279
fun equal_elim_proof A B prf1 prf2 =
a6644dfe8e26 misc tuning and clarification;
wenzelm
parents: 70811
diff changeset
  1280
  equal_elim_axm %> remove_types A %> remove_types B %% prf1 %% prf2;
a6644dfe8e26 misc tuning and clarification;
wenzelm
parents: 70811
diff changeset
  1281
a6644dfe8e26 misc tuning and clarification;
wenzelm
parents: 70811
diff changeset
  1282
fun abstract_rule_proof (a, x) prf =
a6644dfe8e26 misc tuning and clarification;
wenzelm
parents: 70811
diff changeset
  1283
  abstract_rule_axm % NONE % NONE %% forall_intr_proof (a, x) NONE prf;
70420
328573dd886f tuned -- reorder sections;
wenzelm
parents: 70419
diff changeset
  1284
328573dd886f tuned -- reorder sections;
wenzelm
parents: 70419
diff changeset
  1285
fun check_comb (PAxm ("Pure.combination", _, _) % f % _ % _ % _ %% prf %% _) =
328573dd886f tuned -- reorder sections;
wenzelm
parents: 70419
diff changeset
  1286
      is_some f orelse check_comb prf
328573dd886f tuned -- reorder sections;
wenzelm
parents: 70419
diff changeset
  1287
  | check_comb (PAxm ("Pure.transitive", _, _) % _ % _ % _ %% prf1 %% prf2) =
328573dd886f tuned -- reorder sections;
wenzelm
parents: 70419
diff changeset
  1288
      check_comb prf1 andalso check_comb prf2
328573dd886f tuned -- reorder sections;
wenzelm
parents: 70419
diff changeset
  1289
  | check_comb (PAxm ("Pure.symmetric", _, _) % _ % _ %% prf) = check_comb prf
328573dd886f tuned -- reorder sections;
wenzelm
parents: 70419
diff changeset
  1290
  | check_comb _ = false;
328573dd886f tuned -- reorder sections;
wenzelm
parents: 70419
diff changeset
  1291
70908
3828a57e537d tuned signature;
wenzelm
parents: 70898
diff changeset
  1292
fun combination_proof f g t u prf1 prf2 =
70420
328573dd886f tuned -- reorder sections;
wenzelm
parents: 70419
diff changeset
  1293
  let
328573dd886f tuned -- reorder sections;
wenzelm
parents: 70419
diff changeset
  1294
    val f = Envir.beta_norm f;
328573dd886f tuned -- reorder sections;
wenzelm
parents: 70419
diff changeset
  1295
    val g = Envir.beta_norm g;
328573dd886f tuned -- reorder sections;
wenzelm
parents: 70419
diff changeset
  1296
    val prf =
328573dd886f tuned -- reorder sections;
wenzelm
parents: 70419
diff changeset
  1297
      if check_comb prf1 then
328573dd886f tuned -- reorder sections;
wenzelm
parents: 70419
diff changeset
  1298
        combination_axm % NONE % NONE
328573dd886f tuned -- reorder sections;
wenzelm
parents: 70419
diff changeset
  1299
      else
328573dd886f tuned -- reorder sections;
wenzelm
parents: 70419
diff changeset
  1300
        (case prf1 of
328573dd886f tuned -- reorder sections;
wenzelm
parents: 70419
diff changeset
  1301
          PAxm ("Pure.reflexive", _, _) % _ =>
328573dd886f tuned -- reorder sections;
wenzelm
parents: 70419
diff changeset
  1302
            combination_axm %> remove_types f % NONE
328573dd886f tuned -- reorder sections;
wenzelm
parents: 70419
diff changeset
  1303
        | _ => combination_axm %> remove_types f %> remove_types g)
328573dd886f tuned -- reorder sections;
wenzelm
parents: 70419
diff changeset
  1304
  in
70888
9ff9559f1ee2 more informative combination_proof, e.g. relevant for proper type inference in HOL.Product_Type (with export_proofs);
wenzelm
parents: 70887
diff changeset
  1305
    prf %
9ff9559f1ee2 more informative combination_proof, e.g. relevant for proper type inference in HOL.Product_Type (with export_proofs);
wenzelm
parents: 70887
diff changeset
  1306
      (case head_of f of
9ff9559f1ee2 more informative combination_proof, e.g. relevant for proper type inference in HOL.Product_Type (with export_proofs);
wenzelm
parents: 70887
diff changeset
  1307
        Abs _ => SOME (remove_types t)
9ff9559f1ee2 more informative combination_proof, e.g. relevant for proper type inference in HOL.Product_Type (with export_proofs);
wenzelm
parents: 70887
diff changeset
  1308
      | Var _ => SOME (remove_types t)
9ff9559f1ee2 more informative combination_proof, e.g. relevant for proper type inference in HOL.Product_Type (with export_proofs);
wenzelm
parents: 70887
diff changeset
  1309
      | _ => NONE) %
9ff9559f1ee2 more informative combination_proof, e.g. relevant for proper type inference in HOL.Product_Type (with export_proofs);
wenzelm
parents: 70887
diff changeset
  1310
      (case head_of g of
9ff9559f1ee2 more informative combination_proof, e.g. relevant for proper type inference in HOL.Product_Type (with export_proofs);
wenzelm
parents: 70887
diff changeset
  1311
        Abs _ => SOME (remove_types u)
9ff9559f1ee2 more informative combination_proof, e.g. relevant for proper type inference in HOL.Product_Type (with export_proofs);
wenzelm
parents: 70887
diff changeset
  1312
      | Var _ => SOME (remove_types u)
9ff9559f1ee2 more informative combination_proof, e.g. relevant for proper type inference in HOL.Product_Type (with export_proofs);
wenzelm
parents: 70887
diff changeset
  1313
      | _ => NONE) %% prf1 %% prf2
70420
328573dd886f tuned -- reorder sections;
wenzelm
parents: 70419
diff changeset
  1314
  end;
328573dd886f tuned -- reorder sections;
wenzelm
parents: 70419
diff changeset
  1315
328573dd886f tuned -- reorder sections;
wenzelm
parents: 70419
diff changeset
  1316
328573dd886f tuned -- reorder sections;
wenzelm
parents: 70419
diff changeset
  1317
70399
ac570c179ee9 tuned comments;
wenzelm
parents: 70398
diff changeset
  1318
(** rewriting on proof terms **)
ac570c179ee9 tuned comments;
wenzelm
parents: 70398
diff changeset
  1319
ac570c179ee9 tuned comments;
wenzelm
parents: 70398
diff changeset
  1320
(* simple first order matching functions for terms and proofs (see pattern.ML) *)
11519
0c96830636a1 New implementation of LF style proof terms.
berghofe
parents:
diff changeset
  1321
0c96830636a1 New implementation of LF style proof terms.
berghofe
parents:
diff changeset
  1322
exception PMatch;
0c96830636a1 New implementation of LF style proof terms.
berghofe
parents:
diff changeset
  1323
33317
b4534348b8fd standardized filter/filter_out;
wenzelm
parents: 33042
diff changeset
  1324
fun flt (i: int) = filter (fn n => n < i);
12279
dc3020e938e2 Extended match_proof to handle abstractions.
berghofe
parents: 12233
diff changeset
  1325
37231
e5419ecf92b7 - outer_constraints with original variable names, to ensure that argsP is consistent with args
berghofe
parents: 36883
diff changeset
  1326
fun fomatch Ts tymatch j instsp p =
11519
0c96830636a1 New implementation of LF style proof terms.
berghofe
parents:
diff changeset
  1327
  let
0c96830636a1 New implementation of LF style proof terms.
berghofe
parents:
diff changeset
  1328
    fun mtch (instsp as (tyinsts, insts)) = fn
0c96830636a1 New implementation of LF style proof terms.
berghofe
parents:
diff changeset
  1329
        (Var (ixn, T), t)  =>
12279
dc3020e938e2 Extended match_proof to handle abstractions.
berghofe
parents: 12233
diff changeset
  1330
          if j>0 andalso not (null (flt j (loose_bnos t)))
dc3020e938e2 Extended match_proof to handle abstractions.
berghofe
parents: 12233
diff changeset
  1331
          then raise PMatch
dc3020e938e2 Extended match_proof to handle abstractions.
berghofe
parents: 12233
diff changeset
  1332
          else (tymatch (tyinsts, fn () => (T, fastype_of1 (Ts, t))),
dc3020e938e2 Extended match_proof to handle abstractions.
berghofe
parents: 12233
diff changeset
  1333
            (ixn, t) :: insts)
11519
0c96830636a1 New implementation of LF style proof terms.
berghofe
parents:
diff changeset
  1334
      | (Free (a, T), Free (b, U)) =>
20147
7aa076a45cb4 fold_proof_terms: canonical arguments;
wenzelm
parents: 20071
diff changeset
  1335
          if a=b then (tymatch (tyinsts, K (T, U)), insts) else raise PMatch
11519
0c96830636a1 New implementation of LF style proof terms.
berghofe
parents:
diff changeset
  1336
      | (Const (a, T), Const (b, U))  =>
20147
7aa076a45cb4 fold_proof_terms: canonical arguments;
wenzelm
parents: 20071
diff changeset
  1337
          if a=b then (tymatch (tyinsts, K (T, U)), insts) else raise PMatch
11519
0c96830636a1 New implementation of LF style proof terms.
berghofe
parents:
diff changeset
  1338
      | (f $ t, g $ u) => mtch (mtch instsp (f, g)) (t, u)
12279
dc3020e938e2 Extended match_proof to handle abstractions.
berghofe
parents: 12233
diff changeset
  1339
      | (Bound i, Bound j) => if i=j then instsp else raise PMatch
11519
0c96830636a1 New implementation of LF style proof terms.
berghofe
parents:
diff changeset
  1340
      | _ => raise PMatch
59058
a78612c67ec0 renamed "pairself" to "apply2", in accordance to @{apply 2};
wenzelm
parents: 56245
diff changeset
  1341
  in mtch instsp (apply2 Envir.beta_eta_contract p) end;
11519
0c96830636a1 New implementation of LF style proof terms.
berghofe
parents:
diff changeset
  1342
12279
dc3020e938e2 Extended match_proof to handle abstractions.
berghofe
parents: 12233
diff changeset
  1343
fun match_proof Ts tymatch =
11519
0c96830636a1 New implementation of LF style proof terms.
berghofe
parents:
diff changeset
  1344
  let
15531
08c8dad8e399 Deleted Library.option type.
skalberg
parents: 15030
diff changeset
  1345
    fun optmatch _ inst (NONE, _) = inst
08c8dad8e399 Deleted Library.option type.
skalberg
parents: 15030
diff changeset
  1346
      | optmatch _ _ (SOME _, NONE) = raise PMatch
08c8dad8e399 Deleted Library.option type.
skalberg
parents: 15030
diff changeset
  1347
      | optmatch mtch inst (SOME x, SOME y) = mtch inst (x, y)
12279
dc3020e938e2 Extended match_proof to handle abstractions.
berghofe
parents: 12233
diff changeset
  1348
dc3020e938e2 Extended match_proof to handle abstractions.
berghofe
parents: 12233
diff changeset
  1349
    fun matcht Ts j (pinst, tinst) (t, u) =
dc3020e938e2 Extended match_proof to handle abstractions.
berghofe
parents: 12233
diff changeset
  1350
      (pinst, fomatch Ts tymatch j tinst (t, Envir.beta_norm u));
dc3020e938e2 Extended match_proof to handle abstractions.
berghofe
parents: 12233
diff changeset
  1351
    fun matchT (pinst, (tyinsts, insts)) p =
dc3020e938e2 Extended match_proof to handle abstractions.
berghofe
parents: 12233
diff changeset
  1352
      (pinst, (tymatch (tyinsts, K p), insts));
15570
8d8c70b41bab Move towards standard functions.
skalberg
parents: 15531
diff changeset
  1353
    fun matchTs inst (Ts, Us) = Library.foldl (uncurry matchT) (inst, Ts ~~ Us);
12279
dc3020e938e2 Extended match_proof to handle abstractions.
berghofe
parents: 12233
diff changeset
  1354
dc3020e938e2 Extended match_proof to handle abstractions.
berghofe
parents: 12233
diff changeset
  1355
    fun mtch Ts i j (pinst, tinst) (Hyp (Var (ixn, _)), prf) =
dc3020e938e2 Extended match_proof to handle abstractions.
berghofe
parents: 12233
diff changeset
  1356
          if i = 0 andalso j = 0 then ((ixn, prf) :: pinst, tinst)
64566
679710d324f1 tuned whitespace;
wenzelm
parents: 63857
diff changeset
  1357
          else
679710d324f1 tuned whitespace;
wenzelm
parents: 63857
diff changeset
  1358
            (case apfst (flt i) (apsnd (flt j) (prf_add_loose_bnos 0 0 prf ([], []))) of
12279
dc3020e938e2 Extended match_proof to handle abstractions.
berghofe
parents: 12233
diff changeset
  1359
              ([], []) => ((ixn, incr_pboundvars (~i) (~j) prf) :: pinst, tinst)
64566
679710d324f1 tuned whitespace;
wenzelm
parents: 63857
diff changeset
  1360
            | ([], _) =>
679710d324f1 tuned whitespace;
wenzelm
parents: 63857
diff changeset
  1361
                if j = 0 then ((ixn, incr_pboundvars (~i) (~j) prf) :: pinst, tinst)
679710d324f1 tuned whitespace;
wenzelm
parents: 63857
diff changeset
  1362
                else raise PMatch
12279
dc3020e938e2 Extended match_proof to handle abstractions.
berghofe
parents: 12233
diff changeset
  1363
            | _ => raise PMatch)
dc3020e938e2 Extended match_proof to handle abstractions.
berghofe
parents: 12233
diff changeset
  1364
      | mtch Ts i j inst (prf1 % opt1, prf2 % opt2) =
dc3020e938e2 Extended match_proof to handle abstractions.
berghofe
parents: 12233
diff changeset
  1365
          optmatch (matcht Ts j) (mtch Ts i j inst (prf1, prf2)) (opt1, opt2)
dc3020e938e2 Extended match_proof to handle abstractions.
berghofe
parents: 12233
diff changeset
  1366
      | mtch Ts i j inst (prf1 %% prf2, prf1' %% prf2') =
dc3020e938e2 Extended match_proof to handle abstractions.
berghofe
parents: 12233
diff changeset
  1367
          mtch Ts i j (mtch Ts i j inst (prf1, prf1')) (prf2, prf2')
dc3020e938e2 Extended match_proof to handle abstractions.
berghofe
parents: 12233
diff changeset
  1368
      | mtch Ts i j inst (Abst (_, opT, prf1), Abst (_, opU, prf2)) =
18485
5959295f82d3 bicompose_proof: no_flatten;
wenzelm
parents: 18316
diff changeset
  1369
          mtch (the_default dummyT opU :: Ts) i (j+1)
12279
dc3020e938e2 Extended match_proof to handle abstractions.
berghofe
parents: 12233
diff changeset
  1370
            (optmatch matchT inst (opT, opU)) (prf1, prf2)
dc3020e938e2 Extended match_proof to handle abstractions.
berghofe
parents: 12233
diff changeset
  1371
      | mtch Ts i j inst (prf1, Abst (_, opU, prf2)) =
18485
5959295f82d3 bicompose_proof: no_flatten;
wenzelm
parents: 18316
diff changeset
  1372
          mtch (the_default dummyT opU :: Ts) i (j+1) inst
12279
dc3020e938e2 Extended match_proof to handle abstractions.
berghofe
parents: 12233
diff changeset
  1373
            (incr_pboundvars 0 1 prf1 %> Bound 0, prf2)
dc3020e938e2 Extended match_proof to handle abstractions.
berghofe
parents: 12233
diff changeset
  1374
      | mtch Ts i j inst (AbsP (_, opt, prf1), AbsP (_, opu, prf2)) =
dc3020e938e2 Extended match_proof to handle abstractions.
berghofe
parents: 12233
diff changeset
  1375
          mtch Ts (i+1) j (optmatch (matcht Ts j) inst (opt, opu)) (prf1, prf2)
dc3020e938e2 Extended match_proof to handle abstractions.
berghofe
parents: 12233
diff changeset
  1376
      | mtch Ts i j inst (prf1, AbsP (_, _, prf2)) =
dc3020e938e2 Extended match_proof to handle abstractions.
berghofe
parents: 12233
diff changeset
  1377
          mtch Ts (i+1) j inst (incr_pboundvars 1 0 prf1 %% PBound 0, prf2)
28803
d90258bbb18f reworked type proof: MinProof is vacous, added Promise, refined PThm (with serial);
wenzelm
parents: 28329
diff changeset
  1378
      | mtch Ts i j inst (PAxm (s1, _, opTs), PAxm (s2, _, opUs)) =
d90258bbb18f reworked type proof: MinProof is vacous, added Promise, refined PThm (with serial);
wenzelm
parents: 28329
diff changeset
  1379
          if s1 = s2 then optmatch matchTs inst (opTs, opUs)
d90258bbb18f reworked type proof: MinProof is vacous, added Promise, refined PThm (with serial);
wenzelm
parents: 28329
diff changeset
  1380
          else raise PMatch
71777
3875815f5967 clarified signature: avoid clash with Isabelle/Scala Term.OFCLASS on case-insensible file-system;
wenzelm
parents: 71533
diff changeset
  1381
      | mtch Ts i j inst (PClass (T1, c1), PClass (T2, c2)) =
31903
c5221dbc40f6 added pro-forma proof constructor Inclass;
wenzelm
parents: 30716
diff changeset
  1382
          if c1 = c2 then matchT inst (T1, T2)
c5221dbc40f6 added pro-forma proof constructor Inclass;
wenzelm
parents: 30716
diff changeset
  1383
          else raise PMatch
70412
64ead6de6212 defer rew_proof on unnamed PThm node as open_proof operation: significant performance improvement;
wenzelm
parents: 70409
diff changeset
  1384
      | mtch Ts i j inst
70493
a9053fa30909 clarified ML types;
wenzelm
parents: 70492
diff changeset
  1385
            (PThm ({name = name1, prop = prop1, types = types1, ...}, _),
a9053fa30909 clarified ML types;
wenzelm
parents: 70492
diff changeset
  1386
              PThm ({name = name2, prop = prop2, types = types2, ...}, _)) =
a9053fa30909 clarified ML types;
wenzelm
parents: 70492
diff changeset
  1387
          if name1 = name2 andalso prop1 = prop2
a9053fa30909 clarified ML types;
wenzelm
parents: 70492
diff changeset
  1388
          then optmatch matchTs inst (types1, types2)
11519
0c96830636a1 New implementation of LF style proof terms.
berghofe
parents:
diff changeset
  1389
          else raise PMatch
12279
dc3020e938e2 Extended match_proof to handle abstractions.
berghofe
parents: 12233
diff changeset
  1390
      | mtch _ _ _ inst (PBound i, PBound j) = if i = j then inst else raise PMatch
dc3020e938e2 Extended match_proof to handle abstractions.
berghofe
parents: 12233
diff changeset
  1391
      | mtch _ _ _ _ _ = raise PMatch
dc3020e938e2 Extended match_proof to handle abstractions.
berghofe
parents: 12233
diff changeset
  1392
  in mtch Ts 0 0 end;
11519
0c96830636a1 New implementation of LF style proof terms.
berghofe
parents:
diff changeset
  1393
0c96830636a1 New implementation of LF style proof terms.
berghofe
parents:
diff changeset
  1394
fun prf_subst (pinst, (tyinsts, insts)) =
0c96830636a1 New implementation of LF style proof terms.
berghofe
parents:
diff changeset
  1395
  let
32049
d6065a237059 tuned prf_subst: use structure Same;
wenzelm
parents: 32035
diff changeset
  1396
    val substT = Envir.subst_type_same tyinsts;
d6065a237059 tuned prf_subst: use structure Same;
wenzelm
parents: 32035
diff changeset
  1397
    val substTs = Same.map substT;
11519
0c96830636a1 New implementation of LF style proof terms.
berghofe
parents:
diff changeset
  1398
32049
d6065a237059 tuned prf_subst: use structure Same;
wenzelm
parents: 32035
diff changeset
  1399
    fun subst' lev (Var (xi, _)) =
d6065a237059 tuned prf_subst: use structure Same;
wenzelm
parents: 32035
diff changeset
  1400
        (case AList.lookup (op =) insts xi of
d6065a237059 tuned prf_subst: use structure Same;
wenzelm
parents: 32035
diff changeset
  1401
          NONE => raise Same.SAME
15531
08c8dad8e399 Deleted Library.option type.
skalberg
parents: 15030
diff changeset
  1402
        | SOME u => incr_boundvars lev u)
32049
d6065a237059 tuned prf_subst: use structure Same;
wenzelm
parents: 32035
diff changeset
  1403
      | subst' _ (Const (s, T)) = Const (s, substT T)
d6065a237059 tuned prf_subst: use structure Same;
wenzelm
parents: 32035
diff changeset
  1404
      | subst' _ (Free (s, T)) = Free (s, substT T)
d6065a237059 tuned prf_subst: use structure Same;
wenzelm
parents: 32035
diff changeset
  1405
      | subst' lev (Abs (a, T, body)) =
d6065a237059 tuned prf_subst: use structure Same;
wenzelm
parents: 32035
diff changeset
  1406
          (Abs (a, substT T, Same.commit (subst' (lev + 1)) body)
d6065a237059 tuned prf_subst: use structure Same;
wenzelm
parents: 32035
diff changeset
  1407
            handle Same.SAME => Abs (a, T, subst' (lev + 1) body))
d6065a237059 tuned prf_subst: use structure Same;
wenzelm
parents: 32035
diff changeset
  1408
      | subst' lev (f $ t) =
d6065a237059 tuned prf_subst: use structure Same;
wenzelm
parents: 32035
diff changeset
  1409
          (subst' lev f $ Same.commit (subst' lev) t
d6065a237059 tuned prf_subst: use structure Same;
wenzelm
parents: 32035
diff changeset
  1410
            handle Same.SAME => f $ subst' lev t)
d6065a237059 tuned prf_subst: use structure Same;
wenzelm
parents: 32035
diff changeset
  1411
      | subst' _ _ = raise Same.SAME;
11519
0c96830636a1 New implementation of LF style proof terms.
berghofe
parents:
diff changeset
  1412
0c96830636a1 New implementation of LF style proof terms.
berghofe
parents:
diff changeset
  1413
    fun subst plev tlev (AbsP (a, t, body)) =
32049
d6065a237059 tuned prf_subst: use structure Same;
wenzelm
parents: 32035
diff changeset
  1414
          (AbsP (a, Same.map_option (subst' tlev) t, Same.commit (subst (plev + 1) tlev) body)
d6065a237059 tuned prf_subst: use structure Same;
wenzelm
parents: 32035
diff changeset
  1415
            handle Same.SAME => AbsP (a, t, subst (plev + 1) tlev body))
11519
0c96830636a1 New implementation of LF style proof terms.
berghofe
parents:
diff changeset
  1416
      | subst plev tlev (Abst (a, T, body)) =
32049
d6065a237059 tuned prf_subst: use structure Same;
wenzelm
parents: 32035
diff changeset
  1417
          (Abst (a, Same.map_option substT T, Same.commit (subst plev (tlev + 1)) body)
d6065a237059 tuned prf_subst: use structure Same;
wenzelm
parents: 32035
diff changeset
  1418
            handle Same.SAME => Abst (a, T, subst plev (tlev + 1) body))
d6065a237059 tuned prf_subst: use structure Same;
wenzelm
parents: 32035
diff changeset
  1419
      | subst plev tlev (prf %% prf') =
d6065a237059 tuned prf_subst: use structure Same;
wenzelm
parents: 32035
diff changeset
  1420
          (subst plev tlev prf %% Same.commit (subst plev tlev) prf'
d6065a237059 tuned prf_subst: use structure Same;
wenzelm
parents: 32035
diff changeset
  1421
            handle Same.SAME => prf %% subst plev tlev prf')
d6065a237059 tuned prf_subst: use structure Same;
wenzelm
parents: 32035
diff changeset
  1422
      | subst plev tlev (prf % t) =
d6065a237059 tuned prf_subst: use structure Same;
wenzelm
parents: 32035
diff changeset
  1423
          (subst plev tlev prf % Same.commit (Same.map_option (subst' tlev)) t
d6065a237059 tuned prf_subst: use structure Same;
wenzelm
parents: 32035
diff changeset
  1424
            handle Same.SAME => prf % Same.map_option (subst' tlev) t)
d6065a237059 tuned prf_subst: use structure Same;
wenzelm
parents: 32035
diff changeset
  1425
      | subst plev tlev (Hyp (Var (xi, _))) =
d6065a237059 tuned prf_subst: use structure Same;
wenzelm
parents: 32035
diff changeset
  1426
          (case AList.lookup (op =) pinst xi of
d6065a237059 tuned prf_subst: use structure Same;
wenzelm
parents: 32035
diff changeset
  1427
            NONE => raise Same.SAME
d6065a237059 tuned prf_subst: use structure Same;
wenzelm
parents: 32035
diff changeset
  1428
          | SOME prf' => incr_pboundvars plev tlev prf')
d6065a237059 tuned prf_subst: use structure Same;
wenzelm
parents: 32035
diff changeset
  1429
      | subst _ _ (PAxm (id, prop, Ts)) = PAxm (id, prop, Same.map_option substTs Ts)
71777
3875815f5967 clarified signature: avoid clash with Isabelle/Scala Term.OFCLASS on case-insensible file-system;
wenzelm
parents: 71533
diff changeset
  1430
      | subst _ _ (PClass (T, c)) = PClass (substT T, c)
32049
d6065a237059 tuned prf_subst: use structure Same;
wenzelm
parents: 32035
diff changeset
  1431
      | subst _ _ (Oracle (id, prop, Ts)) = Oracle (id, prop, Same.map_option substTs Ts)
70538
fc9ba6fe367f clarified PThm: theory_name simplifies retrieval from exports;
wenzelm
parents: 70534
diff changeset
  1432
      | subst _ _ (PThm ({serial = i, pos = p, theory_name, name = id, prop, types}, thm_body)) =
fc9ba6fe367f clarified PThm: theory_name simplifies retrieval from exports;
wenzelm
parents: 70534
diff changeset
  1433
          PThm (thm_header i p theory_name id prop (Same.map_option substTs types), thm_body)
32049
d6065a237059 tuned prf_subst: use structure Same;
wenzelm
parents: 32035
diff changeset
  1434
      | subst _ _ _ = raise Same.SAME;
d6065a237059 tuned prf_subst: use structure Same;
wenzelm
parents: 32035
diff changeset
  1435
  in fn t => subst 0 0 t handle Same.SAME => t end;
11519
0c96830636a1 New implementation of LF style proof terms.
berghofe
parents:
diff changeset
  1436
21646
c07b5b0e8492 thm/prf: separate official name vs. additional tags;
wenzelm
parents: 20853
diff changeset
  1437
(*A fast unification filter: true unless the two terms cannot be unified.
12871
21486a0557d1 Added function could_unify to speed up rewriting of proof terms.
berghofe
parents: 12868
diff changeset
  1438
  Terms must be NORMAL.  Treats all Vars as distinct. *)
21486a0557d1 Added function could_unify to speed up rewriting of proof terms.
berghofe
parents: 12868
diff changeset
  1439
fun could_unify prf1 prf2 =
21486a0557d1 Added function could_unify to speed up rewriting of proof terms.
berghofe
parents: 12868
diff changeset
  1440
  let
21486a0557d1 Added function could_unify to speed up rewriting of proof terms.
berghofe
parents: 12868
diff changeset
  1441
    fun matchrands (prf1 %% prf2) (prf1' %% prf2') =
21486a0557d1 Added function could_unify to speed up rewriting of proof terms.
berghofe
parents: 12868
diff changeset
  1442
          could_unify prf2 prf2' andalso matchrands prf1 prf1'
15531
08c8dad8e399 Deleted Library.option type.
skalberg
parents: 15030
diff changeset
  1443
      | matchrands (prf % SOME t) (prf' % SOME t') =
12871
21486a0557d1 Added function could_unify to speed up rewriting of proof terms.
berghofe
parents: 12868
diff changeset
  1444
          Term.could_unify (t, t') andalso matchrands prf prf'
21486a0557d1 Added function could_unify to speed up rewriting of proof terms.
berghofe
parents: 12868
diff changeset
  1445
      | matchrands (prf % _) (prf' % _) = matchrands prf prf'
21486a0557d1 Added function could_unify to speed up rewriting of proof terms.
berghofe
parents: 12868
diff changeset
  1446
      | matchrands _ _ = true
21486a0557d1 Added function could_unify to speed up rewriting of proof terms.
berghofe
parents: 12868
diff changeset
  1447
21486a0557d1 Added function could_unify to speed up rewriting of proof terms.
berghofe
parents: 12868
diff changeset
  1448
    fun head_of (prf %% _) = head_of prf
21486a0557d1 Added function could_unify to speed up rewriting of proof terms.
berghofe
parents: 12868
diff changeset
  1449
      | head_of (prf % _) = head_of prf
21486a0557d1 Added function could_unify to speed up rewriting of proof terms.
berghofe
parents: 12868
diff changeset
  1450
      | head_of prf = prf
21486a0557d1 Added function could_unify to speed up rewriting of proof terms.
berghofe
parents: 12868
diff changeset
  1451
21486a0557d1 Added function could_unify to speed up rewriting of proof terms.
berghofe
parents: 12868
diff changeset
  1452
  in case (head_of prf1, head_of prf2) of
21486a0557d1 Added function could_unify to speed up rewriting of proof terms.
berghofe
parents: 12868
diff changeset
  1453
        (_, Hyp (Var _)) => true
21486a0557d1 Added function could_unify to speed up rewriting of proof terms.
berghofe
parents: 12868
diff changeset
  1454
      | (Hyp (Var _), _) => true
28803
d90258bbb18f reworked type proof: MinProof is vacous, added Promise, refined PThm (with serial);
wenzelm
parents: 28329
diff changeset
  1455
      | (PAxm (a, _, _), PAxm (b, _, _)) => a = b andalso matchrands prf1 prf2
71777
3875815f5967 clarified signature: avoid clash with Isabelle/Scala Term.OFCLASS on case-insensible file-system;
wenzelm
parents: 71533
diff changeset
  1456
      | (PClass (_, c), PClass (_, d)) => c = d andalso matchrands prf1 prf2
70493
a9053fa30909 clarified ML types;
wenzelm
parents: 70492
diff changeset
  1457
      | (PThm ({name = a, prop = propa, ...}, _), PThm ({name = b, prop = propb, ...}, _)) =>
12871
21486a0557d1 Added function could_unify to speed up rewriting of proof terms.
berghofe
parents: 12868
diff changeset
  1458
          a = b andalso propa = propb andalso matchrands prf1 prf2
28803
d90258bbb18f reworked type proof: MinProof is vacous, added Promise, refined PThm (with serial);
wenzelm
parents: 28329
diff changeset
  1459
      | (PBound i, PBound j) => i = j andalso matchrands prf1 prf2
12871
21486a0557d1 Added function could_unify to speed up rewriting of proof terms.
berghofe
parents: 12868
diff changeset
  1460
      | (AbsP _, _) =>  true   (*because of possible eta equality*)
21486a0557d1 Added function could_unify to speed up rewriting of proof terms.
berghofe
parents: 12868
diff changeset
  1461
      | (Abst _, _) =>  true
21486a0557d1 Added function could_unify to speed up rewriting of proof terms.
berghofe
parents: 12868
diff changeset
  1462
      | (_, AbsP _) =>  true
21486a0557d1 Added function could_unify to speed up rewriting of proof terms.
berghofe
parents: 12868
diff changeset
  1463
      | (_, Abst _) =>  true
21486a0557d1 Added function could_unify to speed up rewriting of proof terms.
berghofe
parents: 12868
diff changeset
  1464
      | _ => false
21486a0557d1 Added function could_unify to speed up rewriting of proof terms.
berghofe
parents: 12868
diff changeset
  1465
  end;
21486a0557d1 Added function could_unify to speed up rewriting of proof terms.
berghofe
parents: 12868
diff changeset
  1466
28329
e6a5fa9f1e41 added conditional add_oracles, keep oracles_of_proof private;
wenzelm
parents: 28319
diff changeset
  1467
70399
ac570c179ee9 tuned comments;
wenzelm
parents: 70398
diff changeset
  1468
(* rewrite proof *)
11519
0c96830636a1 New implementation of LF style proof terms.
berghofe
parents:
diff changeset
  1469
33722
e588744f14da generalized procs for rewrite_proof: allow skeleton;
wenzelm
parents: 33522
diff changeset
  1470
val no_skel = PBound 0;
e588744f14da generalized procs for rewrite_proof: allow skeleton;
wenzelm
parents: 33522
diff changeset
  1471
val normal_skel = Hyp (Var ((Name.uu, 0), propT));
13102
b6f8aae5f152 Added skeletons to speed up rewriting on proof terms.
berghofe
parents: 12923
diff changeset
  1472
12279
dc3020e938e2 Extended match_proof to handle abstractions.
berghofe
parents: 12233
diff changeset
  1473
fun rewrite_prf tymatch (rules, procs) prf =
11519
0c96830636a1 New implementation of LF style proof terms.
berghofe
parents:
diff changeset
  1474
  let
37231
e5419ecf92b7 - outer_constraints with original variable names, to ensure that argsP is consistent with args
berghofe
parents: 36883
diff changeset
  1475
    fun rew _ _ (Abst (_, _, body) % SOME t) = SOME (prf_subst_bounds [t] body, no_skel)
e5419ecf92b7 - outer_constraints with original variable names, to ensure that argsP is consistent with args
berghofe
parents: 36883
diff changeset
  1476
      | rew _ _ (AbsP (_, _, body) %% prf) = SOME (prf_subst_pbounds [prf] body, no_skel)
e5419ecf92b7 - outer_constraints with original variable names, to ensure that argsP is consistent with args
berghofe
parents: 36883
diff changeset
  1477
      | rew Ts hs prf =
e5419ecf92b7 - outer_constraints with original variable names, to ensure that argsP is consistent with args
berghofe
parents: 36883
diff changeset
  1478
          (case get_first (fn r => r Ts hs prf) procs of
33722
e588744f14da generalized procs for rewrite_proof: allow skeleton;
wenzelm
parents: 33522
diff changeset
  1479
            NONE => get_first (fn (prf1, prf2) => SOME (prf_subst
e588744f14da generalized procs for rewrite_proof: allow skeleton;
wenzelm
parents: 33522
diff changeset
  1480
              (match_proof Ts tymatch ([], (Vartab.empty, [])) (prf1, prf)) prf2, prf2)
e588744f14da generalized procs for rewrite_proof: allow skeleton;
wenzelm
parents: 33522
diff changeset
  1481
                 handle PMatch => NONE) (filter (could_unify prf o fst) rules)
e588744f14da generalized procs for rewrite_proof: allow skeleton;
wenzelm
parents: 33522
diff changeset
  1482
          | some => some);
11519
0c96830636a1 New implementation of LF style proof terms.
berghofe
parents:
diff changeset
  1483
37231
e5419ecf92b7 - outer_constraints with original variable names, to ensure that argsP is consistent with args
berghofe
parents: 36883
diff changeset
  1484
    fun rew0 Ts hs (prf as AbsP (_, _, prf' %% PBound 0)) =
e5419ecf92b7 - outer_constraints with original variable names, to ensure that argsP is consistent with args
berghofe
parents: 36883
diff changeset
  1485
          if prf_loose_Pbvar1 prf' 0 then rew Ts hs prf
11519
0c96830636a1 New implementation of LF style proof terms.
berghofe
parents:
diff changeset
  1486
          else
0c96830636a1 New implementation of LF style proof terms.
berghofe
parents:
diff changeset
  1487
            let val prf'' = incr_pboundvars (~1) 0 prf'
37231
e5419ecf92b7 - outer_constraints with original variable names, to ensure that argsP is consistent with args
berghofe
parents: 36883
diff changeset
  1488
            in SOME (the_default (prf'', no_skel) (rew Ts hs prf'')) end
e5419ecf92b7 - outer_constraints with original variable names, to ensure that argsP is consistent with args
berghofe
parents: 36883
diff changeset
  1489
      | rew0 Ts hs (prf as Abst (_, _, prf' % SOME (Bound 0))) =
e5419ecf92b7 - outer_constraints with original variable names, to ensure that argsP is consistent with args
berghofe
parents: 36883
diff changeset
  1490
          if prf_loose_bvar1 prf' 0 then rew Ts hs prf
11519
0c96830636a1 New implementation of LF style proof terms.
berghofe
parents:
diff changeset
  1491
          else
0c96830636a1 New implementation of LF style proof terms.
berghofe
parents:
diff changeset
  1492
            let val prf'' = incr_pboundvars 0 (~1) prf'
37231
e5419ecf92b7 - outer_constraints with original variable names, to ensure that argsP is consistent with args
berghofe
parents: 36883
diff changeset
  1493
            in SOME (the_default (prf'', no_skel) (rew Ts hs prf'')) end
e5419ecf92b7 - outer_constraints with original variable names, to ensure that argsP is consistent with args
berghofe
parents: 36883
diff changeset
  1494
      | rew0 Ts hs prf = rew Ts hs prf;
11519
0c96830636a1 New implementation of LF style proof terms.
berghofe
parents:
diff changeset
  1495
37231
e5419ecf92b7 - outer_constraints with original variable names, to ensure that argsP is consistent with args
berghofe
parents: 36883
diff changeset
  1496
    fun rew1 _ _ (Hyp (Var _)) _ = NONE
64566
679710d324f1 tuned whitespace;
wenzelm
parents: 63857
diff changeset
  1497
      | rew1 Ts hs skel prf =
679710d324f1 tuned whitespace;
wenzelm
parents: 63857
diff changeset
  1498
          (case rew2 Ts hs skel prf of
679710d324f1 tuned whitespace;
wenzelm
parents: 63857
diff changeset
  1499
            SOME prf1 =>
679710d324f1 tuned whitespace;
wenzelm
parents: 63857
diff changeset
  1500
              (case rew0 Ts hs prf1 of
679710d324f1 tuned whitespace;
wenzelm
parents: 63857
diff changeset
  1501
                SOME (prf2, skel') => SOME (the_default prf2 (rew1 Ts hs skel' prf2))
679710d324f1 tuned whitespace;
wenzelm
parents: 63857
diff changeset
  1502
              | NONE => SOME prf1)
679710d324f1 tuned whitespace;
wenzelm
parents: 63857
diff changeset
  1503
          | NONE =>
679710d324f1 tuned whitespace;
wenzelm
parents: 63857
diff changeset
  1504
              (case rew0 Ts hs prf of
679710d324f1 tuned whitespace;
wenzelm
parents: 63857
diff changeset
  1505
                SOME (prf1, skel') => SOME (the_default prf1 (rew1 Ts hs skel' prf1))
679710d324f1 tuned whitespace;
wenzelm
parents: 63857
diff changeset
  1506
              | NONE => NONE))
11519
0c96830636a1 New implementation of LF style proof terms.
berghofe
parents:
diff changeset
  1507
64566
679710d324f1 tuned whitespace;
wenzelm
parents: 63857
diff changeset
  1508
    and rew2 Ts hs skel (prf % SOME t) =
679710d324f1 tuned whitespace;
wenzelm
parents: 63857
diff changeset
  1509
          (case prf of
11519
0c96830636a1 New implementation of LF style proof terms.
berghofe
parents:
diff changeset
  1510
            Abst (_, _, body) =>
0c96830636a1 New implementation of LF style proof terms.
berghofe
parents:
diff changeset
  1511
              let val prf' = prf_subst_bounds [t] body
37231
e5419ecf92b7 - outer_constraints with original variable names, to ensure that argsP is consistent with args
berghofe
parents: 36883
diff changeset
  1512
              in SOME (the_default prf' (rew2 Ts hs no_skel prf')) end
64566
679710d324f1 tuned whitespace;
wenzelm
parents: 63857
diff changeset
  1513
          | _ =>
679710d324f1 tuned whitespace;
wenzelm
parents: 63857
diff changeset
  1514
              (case rew1 Ts hs (case skel of skel' % _ => skel' | _ => no_skel) prf of
679710d324f1 tuned whitespace;
wenzelm
parents: 63857
diff changeset
  1515
                SOME prf' => SOME (prf' % SOME t)
679710d324f1 tuned whitespace;
wenzelm
parents: 63857
diff changeset
  1516
              | NONE => NONE))
37231
e5419ecf92b7 - outer_constraints with original variable names, to ensure that argsP is consistent with args
berghofe
parents: 36883
diff changeset
  1517
      | rew2 Ts hs skel (prf % NONE) = Option.map (fn prf' => prf' % NONE)
e5419ecf92b7 - outer_constraints with original variable names, to ensure that argsP is consistent with args
berghofe
parents: 36883
diff changeset
  1518
          (rew1 Ts hs (case skel of skel' % _ => skel' | _ => no_skel) prf)
64566
679710d324f1 tuned whitespace;
wenzelm
parents: 63857
diff changeset
  1519
      | rew2 Ts hs skel (prf1 %% prf2) =
679710d324f1 tuned whitespace;
wenzelm
parents: 63857
diff changeset
  1520
          (case prf1 of
11519
0c96830636a1 New implementation of LF style proof terms.
berghofe
parents:
diff changeset
  1521
            AbsP (_, _, body) =>
0c96830636a1 New implementation of LF style proof terms.
berghofe
parents:
diff changeset
  1522
              let val prf' = prf_subst_pbounds [prf2] body
37231
e5419ecf92b7 - outer_constraints with original variable names, to ensure that argsP is consistent with args
berghofe
parents: 36883
diff changeset
  1523
              in SOME (the_default prf' (rew2 Ts hs no_skel prf')) end
13102
b6f8aae5f152 Added skeletons to speed up rewriting on proof terms.
berghofe
parents: 12923
diff changeset
  1524
          | _ =>
64566
679710d324f1 tuned whitespace;
wenzelm
parents: 63857
diff changeset
  1525
            let
679710d324f1 tuned whitespace;
wenzelm
parents: 63857
diff changeset
  1526
              val (skel1, skel2) =
679710d324f1 tuned whitespace;
wenzelm
parents: 63857
diff changeset
  1527
                (case skel of
679710d324f1 tuned whitespace;
wenzelm
parents: 63857
diff changeset
  1528
                  skel1 %% skel2 => (skel1, skel2)
679710d324f1 tuned whitespace;
wenzelm
parents: 63857
diff changeset
  1529
                | _ => (no_skel, no_skel))
679710d324f1 tuned whitespace;
wenzelm
parents: 63857
diff changeset
  1530
            in
679710d324f1 tuned whitespace;
wenzelm
parents: 63857
diff changeset
  1531
              (case rew1 Ts hs skel1 prf1 of
679710d324f1 tuned whitespace;
wenzelm
parents: 63857
diff changeset
  1532
                SOME prf1' =>
679710d324f1 tuned whitespace;
wenzelm
parents: 63857
diff changeset
  1533
                  (case rew1 Ts hs skel2 prf2 of
15531
08c8dad8e399 Deleted Library.option type.
skalberg
parents: 15030
diff changeset
  1534
                    SOME prf2' => SOME (prf1' %% prf2')
08c8dad8e399 Deleted Library.option type.
skalberg
parents: 15030
diff changeset
  1535
                  | NONE => SOME (prf1' %% prf2))
64566
679710d324f1 tuned whitespace;
wenzelm
parents: 63857
diff changeset
  1536
              | NONE =>
679710d324f1 tuned whitespace;
wenzelm
parents: 63857
diff changeset
  1537
                  (case rew1 Ts hs skel2 prf2 of
15531
08c8dad8e399 Deleted Library.option type.
skalberg
parents: 15030
diff changeset
  1538
                    SOME prf2' => SOME (prf1 %% prf2')
64566
679710d324f1 tuned whitespace;
wenzelm
parents: 63857
diff changeset
  1539
                  | NONE => NONE))
13102
b6f8aae5f152 Added skeletons to speed up rewriting on proof terms.
berghofe
parents: 12923
diff changeset
  1540
            end)
64566
679710d324f1 tuned whitespace;
wenzelm
parents: 63857
diff changeset
  1541
      | rew2 Ts hs skel (Abst (s, T, prf)) =
679710d324f1 tuned whitespace;
wenzelm
parents: 63857
diff changeset
  1542
          (case rew1 (the_default dummyT T :: Ts) hs
33722
e588744f14da generalized procs for rewrite_proof: allow skeleton;
wenzelm
parents: 33522
diff changeset
  1543
              (case skel of Abst (_, _, skel') => skel' | _ => no_skel) prf of
15531
08c8dad8e399 Deleted Library.option type.
skalberg
parents: 15030
diff changeset
  1544
            SOME prf' => SOME (Abst (s, T, prf'))
08c8dad8e399 Deleted Library.option type.
skalberg
parents: 15030
diff changeset
  1545
          | NONE => NONE)
64566
679710d324f1 tuned whitespace;
wenzelm
parents: 63857
diff changeset
  1546
      | rew2 Ts hs skel (AbsP (s, t, prf)) =
679710d324f1 tuned whitespace;
wenzelm
parents: 63857
diff changeset
  1547
          (case rew1 Ts (t :: hs) (case skel of AbsP (_, _, skel') => skel' | _ => no_skel) prf of
15531
08c8dad8e399 Deleted Library.option type.
skalberg
parents: 15030
diff changeset
  1548
            SOME prf' => SOME (AbsP (s, t, prf'))
08c8dad8e399 Deleted Library.option type.
skalberg
parents: 15030
diff changeset
  1549
          | NONE => NONE)
37231
e5419ecf92b7 - outer_constraints with original variable names, to ensure that argsP is consistent with args
berghofe
parents: 36883
diff changeset
  1550
      | rew2 _ _ _ _ = NONE;
11519
0c96830636a1 New implementation of LF style proof terms.
berghofe
parents:
diff changeset
  1551
37231
e5419ecf92b7 - outer_constraints with original variable names, to ensure that argsP is consistent with args
berghofe
parents: 36883
diff changeset
  1552
  in the_default prf (rew1 [] [] no_skel prf) end;
11519
0c96830636a1 New implementation of LF style proof terms.
berghofe
parents:
diff changeset
  1553
17203
29b2563f5c11 refer to theory instead of low-level tsig;
wenzelm
parents: 17017
diff changeset
  1554
fun rewrite_proof thy = rewrite_prf (fn (tyenv, f) =>
29b2563f5c11 refer to theory instead of low-level tsig;
wenzelm
parents: 17017
diff changeset
  1555
  Sign.typ_match thy (f ()) tyenv handle Type.TYPE_MATCH => raise PMatch);
11519
0c96830636a1 New implementation of LF style proof terms.
berghofe
parents:
diff changeset
  1556
11715
592923615f77 Tuned several functions to improve sharing of unchanged subproofs.
berghofe
parents: 11652
diff changeset
  1557
fun rewrite_proof_notypes rews = rewrite_prf fst rews;
11615
ca7be12b2cbc - Exchanged % and %%.
berghofe
parents: 11543
diff changeset
  1558
16940
d14ec6f2d29b adapted Type.typ_match;
wenzelm
parents: 16880
diff changeset
  1559
70399
ac570c179ee9 tuned comments;
wenzelm
parents: 70398
diff changeset
  1560
(* theory data *)
11519
0c96830636a1 New implementation of LF style proof terms.
berghofe
parents:
diff changeset
  1561
37216
3165bc303f66 modernized some structure names, keeping a few legacy aliases;
wenzelm
parents: 36883
diff changeset
  1562
structure Data = Theory_Data
22846
fb79144af9a3 simplified DataFun interfaces;
wenzelm
parents: 22662
diff changeset
  1563
(
33722
e588744f14da generalized procs for rewrite_proof: allow skeleton;
wenzelm
parents: 33522
diff changeset
  1564
  type T =
70848
fbba2075f823 support preprocessing of exported proofs;
wenzelm
parents: 70844
diff changeset
  1565
    ((stamp * (proof * proof)) list *
fbba2075f823 support preprocessing of exported proofs;
wenzelm
parents: 70844
diff changeset
  1566
     (stamp * (typ list -> term option list -> proof -> (proof * proof) option)) list) *
fbba2075f823 support preprocessing of exported proofs;
wenzelm
parents: 70844
diff changeset
  1567
    (theory -> proof -> proof) option;
11519
0c96830636a1 New implementation of LF style proof terms.
berghofe
parents:
diff changeset
  1568
70848
fbba2075f823 support preprocessing of exported proofs;
wenzelm
parents: 70844
diff changeset
  1569
  val empty = (([], []), NONE);
16458
4c6fd0c01d28 accomodate change of TheoryDataFun;
wenzelm
parents: 15797
diff changeset
  1570
  val extend = I;
70848
fbba2075f823 support preprocessing of exported proofs;
wenzelm
parents: 70844
diff changeset
  1571
  fun merge (((rules1, procs1), preproc1), ((rules2, procs2), preproc2)) : T =
fbba2075f823 support preprocessing of exported proofs;
wenzelm
parents: 70844
diff changeset
  1572
    ((AList.merge (op =) (K true) (rules1, rules2),
fbba2075f823 support preprocessing of exported proofs;
wenzelm
parents: 70844
diff changeset
  1573
      AList.merge (op =) (K true) (procs1, procs2)),
fbba2075f823 support preprocessing of exported proofs;
wenzelm
parents: 70844
diff changeset
  1574
      merge_options (preproc1, preproc2));
22846
fb79144af9a3 simplified DataFun interfaces;
wenzelm
parents: 22662
diff changeset
  1575
);
11519
0c96830636a1 New implementation of LF style proof terms.
berghofe
parents:
diff changeset
  1576
70848
fbba2075f823 support preprocessing of exported proofs;
wenzelm
parents: 70844
diff changeset
  1577
fun get_rew_data thy =
fbba2075f823 support preprocessing of exported proofs;
wenzelm
parents: 70844
diff changeset
  1578
  let val (rules, procs) = #1 (Data.get thy)
fbba2075f823 support preprocessing of exported proofs;
wenzelm
parents: 70844
diff changeset
  1579
  in (map #2 rules, map #2 procs) end;
fbba2075f823 support preprocessing of exported proofs;
wenzelm
parents: 70844
diff changeset
  1580
fbba2075f823 support preprocessing of exported proofs;
wenzelm
parents: 70844
diff changeset
  1581
fun rew_proof thy = rewrite_prf fst (get_rew_data thy);
23780
a0e7305dd0cb Added function rew_proof (for pre-normalizing proofs).
berghofe
parents: 23296
diff changeset
  1582
70848
fbba2075f823 support preprocessing of exported proofs;
wenzelm
parents: 70844
diff changeset
  1583
fun add_prf_rrule r = (Data.map o apfst o apfst) (cons (stamp (), r));
fbba2075f823 support preprocessing of exported proofs;
wenzelm
parents: 70844
diff changeset
  1584
fun add_prf_rproc p = (Data.map o apfst o apsnd) (cons (stamp (), p));
fbba2075f823 support preprocessing of exported proofs;
wenzelm
parents: 70844
diff changeset
  1585
fbba2075f823 support preprocessing of exported proofs;
wenzelm
parents: 70844
diff changeset
  1586
fun set_preproc f = (Data.map o apsnd) (K (SOME f));
fbba2075f823 support preprocessing of exported proofs;
wenzelm
parents: 70844
diff changeset
  1587
fun apply_preproc thy = (case #2 (Data.get thy) of NONE => I | SOME f => f thy);
28803
d90258bbb18f reworked type proof: MinProof is vacous, added Promise, refined PThm (with serial);
wenzelm
parents: 28329
diff changeset
  1588
d90258bbb18f reworked type proof: MinProof is vacous, added Promise, refined PThm (with serial);
wenzelm
parents: 28329
diff changeset
  1589
70447
755d58b48cec clarified modules: provide reconstruct_proof / expand_proof at the bottom of proof term construction;
wenzelm
parents: 70442
diff changeset
  1590
755d58b48cec clarified modules: provide reconstruct_proof / expand_proof at the bottom of proof term construction;
wenzelm
parents: 70442
diff changeset
  1591
(** reconstruction of partial proof terms **)
70400
65bbef66e2ec clarified treatment of unnamed PThm nodes (from close_derivation): retain full proof, publish when named;
wenzelm
parents: 70399
diff changeset
  1592
70978
a1c137961c12 tuned signature;
wenzelm
parents: 70976
diff changeset
  1593
fun forall_intr_variables_term prop = fold_rev Logic.all (variables_of prop) prop;
a1c137961c12 tuned signature;
wenzelm
parents: 70976
diff changeset
  1594
fun forall_intr_variables prop prf = fold_rev forall_intr_proof' (variables_of prop) prf;
70400
65bbef66e2ec clarified treatment of unnamed PThm nodes (from close_derivation): retain full proof, publish when named;
wenzelm
parents: 70399
diff changeset
  1595
70978
a1c137961c12 tuned signature;
wenzelm
parents: 70976
diff changeset
  1596
local
70400
65bbef66e2ec clarified treatment of unnamed PThm nodes (from close_derivation): retain full proof, publish when named;
wenzelm
parents: 70399
diff changeset
  1597
70419
wenzelm
parents: 70417
diff changeset
  1598
fun app_types shift prop Ts prf =
wenzelm
parents: 70417
diff changeset
  1599
  let
70810
wenzelm
parents: 70809
diff changeset
  1600
    val inst = type_variables_of prop ~~ Ts;
wenzelm
parents: 70809
diff changeset
  1601
    fun subst_same A =
wenzelm
parents: 70809
diff changeset
  1602
      (case AList.lookup (op =) inst A of SOME T => T | NONE => raise Same.SAME);
70807
303721c3caa2 tuned app_types: more direct map_proof_types_same;
wenzelm
parents: 70784
diff changeset
  1603
    val subst_type_same =
303721c3caa2 tuned app_types: more direct map_proof_types_same;
wenzelm
parents: 70784
diff changeset
  1604
      Term_Subst.map_atypsT_same
70810
wenzelm
parents: 70809
diff changeset
  1605
        (fn TVar ((a, i), S) => subst_same (TVar ((a, i - shift), S)) | A => subst_same A);
70807
303721c3caa2 tuned app_types: more direct map_proof_types_same;
wenzelm
parents: 70784
diff changeset
  1606
  in Same.commit (map_proof_types_same subst_type_same) prf end;
70419
wenzelm
parents: 70417
diff changeset
  1607
70493
a9053fa30909 clarified ML types;
wenzelm
parents: 70492
diff changeset
  1608
fun guess_name (PThm ({name, ...}, _)) = name
70447
755d58b48cec clarified modules: provide reconstruct_proof / expand_proof at the bottom of proof term construction;
wenzelm
parents: 70442
diff changeset
  1609
  | guess_name (prf %% Hyp _) = guess_name prf
71777
3875815f5967 clarified signature: avoid clash with Isabelle/Scala Term.OFCLASS on case-insensible file-system;
wenzelm
parents: 71533
diff changeset
  1610
  | guess_name (prf %% PClass _) = guess_name prf
70447
755d58b48cec clarified modules: provide reconstruct_proof / expand_proof at the bottom of proof term construction;
wenzelm
parents: 70442
diff changeset
  1611
  | guess_name (prf % NONE) = guess_name prf
755d58b48cec clarified modules: provide reconstruct_proof / expand_proof at the bottom of proof term construction;
wenzelm
parents: 70442
diff changeset
  1612
  | guess_name (prf % SOME (Var _)) = guess_name prf
755d58b48cec clarified modules: provide reconstruct_proof / expand_proof at the bottom of proof term construction;
wenzelm
parents: 70442
diff changeset
  1613
  | guess_name _ = "";
755d58b48cec clarified modules: provide reconstruct_proof / expand_proof at the bottom of proof term construction;
wenzelm
parents: 70442
diff changeset
  1614
755d58b48cec clarified modules: provide reconstruct_proof / expand_proof at the bottom of proof term construction;
wenzelm
parents: 70442
diff changeset
  1615
755d58b48cec clarified modules: provide reconstruct_proof / expand_proof at the bottom of proof term construction;
wenzelm
parents: 70442
diff changeset
  1616
(* generate constraints for proof term *)
755d58b48cec clarified modules: provide reconstruct_proof / expand_proof at the bottom of proof term construction;
wenzelm
parents: 70442
diff changeset
  1617
755d58b48cec clarified modules: provide reconstruct_proof / expand_proof at the bottom of proof term construction;
wenzelm
parents: 70442
diff changeset
  1618
fun mk_var env Ts T =
755d58b48cec clarified modules: provide reconstruct_proof / expand_proof at the bottom of proof term construction;
wenzelm
parents: 70442
diff changeset
  1619
  let val (env', v) = Envir.genvar "a" (env, rev Ts ---> T)
755d58b48cec clarified modules: provide reconstruct_proof / expand_proof at the bottom of proof term construction;
wenzelm
parents: 70442
diff changeset
  1620
  in (list_comb (v, map Bound (length Ts - 1 downto 0)), env') end;
755d58b48cec clarified modules: provide reconstruct_proof / expand_proof at the bottom of proof term construction;
wenzelm
parents: 70442
diff changeset
  1621
755d58b48cec clarified modules: provide reconstruct_proof / expand_proof at the bottom of proof term construction;
wenzelm
parents: 70442
diff changeset
  1622
fun mk_tvar S (Envir.Envir {maxidx, tenv, tyenv}) =
755d58b48cec clarified modules: provide reconstruct_proof / expand_proof at the bottom of proof term construction;
wenzelm
parents: 70442
diff changeset
  1623
  (TVar (("'t", maxidx + 1), S),
755d58b48cec clarified modules: provide reconstruct_proof / expand_proof at the bottom of proof term construction;
wenzelm
parents: 70442
diff changeset
  1624
    Envir.Envir {maxidx = maxidx + 1, tenv = tenv, tyenv = tyenv});
755d58b48cec clarified modules: provide reconstruct_proof / expand_proof at the bottom of proof term construction;
wenzelm
parents: 70442
diff changeset
  1625
755d58b48cec clarified modules: provide reconstruct_proof / expand_proof at the bottom of proof term construction;
wenzelm
parents: 70442
diff changeset
  1626
val mk_abs = fold (fn T => fn u => Abs ("", T, u));
755d58b48cec clarified modules: provide reconstruct_proof / expand_proof at the bottom of proof term construction;
wenzelm
parents: 70442
diff changeset
  1627
70449
6e34025981be clarified global theory context;
wenzelm
parents: 70448
diff changeset
  1628
fun unifyT thy env T U =
70447
755d58b48cec clarified modules: provide reconstruct_proof / expand_proof at the bottom of proof term construction;
wenzelm
parents: 70442
diff changeset
  1629
  let
755d58b48cec clarified modules: provide reconstruct_proof / expand_proof at the bottom of proof term construction;
wenzelm
parents: 70442
diff changeset
  1630
    val Envir.Envir {maxidx, tenv, tyenv} = env;
70449
6e34025981be clarified global theory context;
wenzelm
parents: 70448
diff changeset
  1631
    val (tyenv', maxidx') = Sign.typ_unify thy (T, U) (tyenv, maxidx);
70447
755d58b48cec clarified modules: provide reconstruct_proof / expand_proof at the bottom of proof term construction;
wenzelm
parents: 70442
diff changeset
  1632
  in Envir.Envir {maxidx = maxidx', tenv = tenv, tyenv = tyenv'} end;
755d58b48cec clarified modules: provide reconstruct_proof / expand_proof at the bottom of proof term construction;
wenzelm
parents: 70442
diff changeset
  1633
755d58b48cec clarified modules: provide reconstruct_proof / expand_proof at the bottom of proof term construction;
wenzelm
parents: 70442
diff changeset
  1634
fun chaseT env (T as TVar v) =
755d58b48cec clarified modules: provide reconstruct_proof / expand_proof at the bottom of proof term construction;
wenzelm
parents: 70442
diff changeset
  1635
      (case Type.lookup (Envir.type_env env) v of
755d58b48cec clarified modules: provide reconstruct_proof / expand_proof at the bottom of proof term construction;
wenzelm
parents: 70442
diff changeset
  1636
        NONE => T
755d58b48cec clarified modules: provide reconstruct_proof / expand_proof at the bottom of proof term construction;
wenzelm
parents: 70442
diff changeset
  1637
      | SOME T' => chaseT env T')
755d58b48cec clarified modules: provide reconstruct_proof / expand_proof at the bottom of proof term construction;
wenzelm
parents: 70442
diff changeset
  1638
  | chaseT _ T = T;
755d58b48cec clarified modules: provide reconstruct_proof / expand_proof at the bottom of proof term construction;
wenzelm
parents: 70442
diff changeset
  1639
71531
50ac132a49bb tuned whitespace;
wenzelm
parents: 71529
diff changeset
  1640
fun infer_type thy (env as Envir.Envir {maxidx, tenv, tyenv}) _ vTs (t as Const (s, T)) =
50ac132a49bb tuned whitespace;
wenzelm
parents: 71529
diff changeset
  1641
      if T = dummyT then
70449
6e34025981be clarified global theory context;
wenzelm
parents: 70448
diff changeset
  1642
        (case Sign.const_type thy s of
70447
755d58b48cec clarified modules: provide reconstruct_proof / expand_proof at the bottom of proof term construction;
wenzelm
parents: 70442
diff changeset
  1643
          NONE => error ("reconstruct_proof: No such constant: " ^ quote s)
755d58b48cec clarified modules: provide reconstruct_proof / expand_proof at the bottom of proof term construction;
wenzelm
parents: 70442
diff changeset
  1644
        | SOME T =>
71531
50ac132a49bb tuned whitespace;
wenzelm
parents: 71529
diff changeset
  1645
            let val T' = Type.strip_sorts (Logic.incr_tvar (maxidx + 1) T) in
50ac132a49bb tuned whitespace;
wenzelm
parents: 71529
diff changeset
  1646
              (Const (s, T'), T', vTs,
50ac132a49bb tuned whitespace;
wenzelm
parents: 71529
diff changeset
  1647
                Envir.Envir {maxidx = maxidx + 1, tenv = tenv, tyenv = tyenv})
70447
755d58b48cec clarified modules: provide reconstruct_proof / expand_proof at the bottom of proof term construction;
wenzelm
parents: 70442
diff changeset
  1648
            end)
755d58b48cec clarified modules: provide reconstruct_proof / expand_proof at the bottom of proof term construction;
wenzelm
parents: 70442
diff changeset
  1649
      else (t, T, vTs, env)
755d58b48cec clarified modules: provide reconstruct_proof / expand_proof at the bottom of proof term construction;
wenzelm
parents: 70442
diff changeset
  1650
  | infer_type _ env _ vTs (t as Free (s, T)) =
71531
50ac132a49bb tuned whitespace;
wenzelm
parents: 71529
diff changeset
  1651
      if T = dummyT then
50ac132a49bb tuned whitespace;
wenzelm
parents: 71529
diff changeset
  1652
        (case Symtab.lookup vTs s of
70447
755d58b48cec clarified modules: provide reconstruct_proof / expand_proof at the bottom of proof term construction;
wenzelm
parents: 70442
diff changeset
  1653
          NONE =>
755d58b48cec clarified modules: provide reconstruct_proof / expand_proof at the bottom of proof term construction;
wenzelm
parents: 70442
diff changeset
  1654
            let val (T, env') = mk_tvar [] env
755d58b48cec clarified modules: provide reconstruct_proof / expand_proof at the bottom of proof term construction;
wenzelm
parents: 70442
diff changeset
  1655
            in (Free (s, T), T, Symtab.update_new (s, T) vTs, env') end
755d58b48cec clarified modules: provide reconstruct_proof / expand_proof at the bottom of proof term construction;
wenzelm
parents: 70442
diff changeset
  1656
        | SOME T => (Free (s, T), T, vTs, env))
755d58b48cec clarified modules: provide reconstruct_proof / expand_proof at the bottom of proof term construction;
wenzelm
parents: 70442
diff changeset
  1657
      else (t, T, vTs, env)
755d58b48cec clarified modules: provide reconstruct_proof / expand_proof at the bottom of proof term construction;
wenzelm
parents: 70442
diff changeset
  1658
  | infer_type _ _ _ _ (Var _) = error "reconstruct_proof: internal error"
70449
6e34025981be clarified global theory context;
wenzelm
parents: 70448
diff changeset
  1659
  | infer_type thy env Ts vTs (Abs (s, T, t)) =
70447
755d58b48cec clarified modules: provide reconstruct_proof / expand_proof at the bottom of proof term construction;
wenzelm
parents: 70442
diff changeset
  1660
      let
755d58b48cec clarified modules: provide reconstruct_proof / expand_proof at the bottom of proof term construction;
wenzelm
parents: 70442
diff changeset
  1661
        val (T', env') = if T = dummyT then mk_tvar [] env else (T, env);
70449
6e34025981be clarified global theory context;
wenzelm
parents: 70448
diff changeset
  1662
        val (t', U, vTs', env'') = infer_type thy env' (T' :: Ts) vTs t
70447
755d58b48cec clarified modules: provide reconstruct_proof / expand_proof at the bottom of proof term construction;
wenzelm
parents: 70442
diff changeset
  1663
      in (Abs (s, T', t'), T' --> U, vTs', env'') end
70449
6e34025981be clarified global theory context;
wenzelm
parents: 70448
diff changeset
  1664
  | infer_type thy env Ts vTs (t $ u) =
70447
755d58b48cec clarified modules: provide reconstruct_proof / expand_proof at the bottom of proof term construction;
wenzelm
parents: 70442
diff changeset
  1665
      let
70449
6e34025981be clarified global theory context;
wenzelm
parents: 70448
diff changeset
  1666
        val (t', T, vTs1, env1) = infer_type thy env Ts vTs t;
6e34025981be clarified global theory context;
wenzelm
parents: 70448
diff changeset
  1667
        val (u', U, vTs2, env2) = infer_type thy env1 Ts vTs1 u;
71531
50ac132a49bb tuned whitespace;
wenzelm
parents: 71529
diff changeset
  1668
      in
50ac132a49bb tuned whitespace;
wenzelm
parents: 71529
diff changeset
  1669
        (case chaseT env2 T of
70449
6e34025981be clarified global theory context;
wenzelm
parents: 70448
diff changeset
  1670
          Type ("fun", [U', V]) => (t' $ u', V, vTs2, unifyT thy env2 U U')
70447
755d58b48cec clarified modules: provide reconstruct_proof / expand_proof at the bottom of proof term construction;
wenzelm
parents: 70442
diff changeset
  1671
        | _ =>
755d58b48cec clarified modules: provide reconstruct_proof / expand_proof at the bottom of proof term construction;
wenzelm
parents: 70442
diff changeset
  1672
          let val (V, env3) = mk_tvar [] env2
70449
6e34025981be clarified global theory context;
wenzelm
parents: 70448
diff changeset
  1673
          in (t' $ u', V, vTs2, unifyT thy env3 T (U --> V)) end)
70447
755d58b48cec clarified modules: provide reconstruct_proof / expand_proof at the bottom of proof term construction;
wenzelm
parents: 70442
diff changeset
  1674
      end
755d58b48cec clarified modules: provide reconstruct_proof / expand_proof at the bottom of proof term construction;
wenzelm
parents: 70442
diff changeset
  1675
  | infer_type _ env Ts vTs (t as Bound i) = ((t, nth Ts i, vTs, env)
755d58b48cec clarified modules: provide reconstruct_proof / expand_proof at the bottom of proof term construction;
wenzelm
parents: 70442
diff changeset
  1676
      handle General.Subscript => error ("infer_type: bad variable index " ^ string_of_int i));
755d58b48cec clarified modules: provide reconstruct_proof / expand_proof at the bottom of proof term construction;
wenzelm
parents: 70442
diff changeset
  1677
70449
6e34025981be clarified global theory context;
wenzelm
parents: 70448
diff changeset
  1678
fun cantunify thy (t, u) =
70447
755d58b48cec clarified modules: provide reconstruct_proof / expand_proof at the bottom of proof term construction;
wenzelm
parents: 70442
diff changeset
  1679
  error ("Non-unifiable terms:\n" ^
70449
6e34025981be clarified global theory context;
wenzelm
parents: 70448
diff changeset
  1680
    Syntax.string_of_term_global thy t ^ "\n\n" ^ Syntax.string_of_term_global thy u);
70447
755d58b48cec clarified modules: provide reconstruct_proof / expand_proof at the bottom of proof term construction;
wenzelm
parents: 70442
diff changeset
  1681
70449
6e34025981be clarified global theory context;
wenzelm
parents: 70448
diff changeset
  1682
fun decompose thy Ts (p as (t, u)) env =
70447
755d58b48cec clarified modules: provide reconstruct_proof / expand_proof at the bottom of proof term construction;
wenzelm
parents: 70442
diff changeset
  1683
  let
755d58b48cec clarified modules: provide reconstruct_proof / expand_proof at the bottom of proof term construction;
wenzelm
parents: 70442
diff changeset
  1684
    fun rigrig (a, T) (b, U) uT ts us =
70449
6e34025981be clarified global theory context;
wenzelm
parents: 70448
diff changeset
  1685
      if a <> b then cantunify thy p
6e34025981be clarified global theory context;
wenzelm
parents: 70448
diff changeset
  1686
      else apfst flat (fold_map (decompose thy Ts) (ts ~~ us) (uT env T U))
70447
755d58b48cec clarified modules: provide reconstruct_proof / expand_proof at the bottom of proof term construction;
wenzelm
parents: 70442
diff changeset
  1687
  in
755d58b48cec clarified modules: provide reconstruct_proof / expand_proof at the bottom of proof term construction;
wenzelm
parents: 70442
diff changeset
  1688
    case apply2 (strip_comb o Envir.head_norm env) p of
70449
6e34025981be clarified global theory context;
wenzelm
parents: 70448
diff changeset
  1689
      ((Const c, ts), (Const d, us)) => rigrig c d (unifyT thy) ts us
6e34025981be clarified global theory context;
wenzelm
parents: 70448
diff changeset
  1690
    | ((Free c, ts), (Free d, us)) => rigrig c d (unifyT thy) ts us
70447
755d58b48cec clarified modules: provide reconstruct_proof / expand_proof at the bottom of proof term construction;
wenzelm
parents: 70442
diff changeset
  1691
    | ((Bound i, ts), (Bound j, us)) =>
755d58b48cec clarified modules: provide reconstruct_proof / expand_proof at the bottom of proof term construction;
wenzelm
parents: 70442
diff changeset
  1692
        rigrig (i, dummyT) (j, dummyT) (K o K) ts us
755d58b48cec clarified modules: provide reconstruct_proof / expand_proof at the bottom of proof term construction;
wenzelm
parents: 70442
diff changeset
  1693
    | ((Abs (_, T, t), []), (Abs (_, U, u), [])) =>
70449
6e34025981be clarified global theory context;
wenzelm
parents: 70448
diff changeset
  1694
        decompose thy (T::Ts) (t, u) (unifyT thy env T U)
70447
755d58b48cec clarified modules: provide reconstruct_proof / expand_proof at the bottom of proof term construction;
wenzelm
parents: 70442
diff changeset
  1695
    | ((Abs (_, T, t), []), _) =>
70449
6e34025981be clarified global theory context;
wenzelm
parents: 70448
diff changeset
  1696
        decompose thy (T::Ts) (t, incr_boundvars 1 u $ Bound 0) env
70447
755d58b48cec clarified modules: provide reconstruct_proof / expand_proof at the bottom of proof term construction;
wenzelm
parents: 70442
diff changeset
  1697
    | (_, (Abs (_, T, u), [])) =>
70449
6e34025981be clarified global theory context;
wenzelm
parents: 70448
diff changeset
  1698
        decompose thy (T::Ts) (incr_boundvars 1 t $ Bound 0, u) env
70447
755d58b48cec clarified modules: provide reconstruct_proof / expand_proof at the bottom of proof term construction;
wenzelm
parents: 70442
diff changeset
  1699
    | _ => ([(mk_abs Ts t, mk_abs Ts u)], env)
755d58b48cec clarified modules: provide reconstruct_proof / expand_proof at the bottom of proof term construction;
wenzelm
parents: 70442
diff changeset
  1700
  end;
755d58b48cec clarified modules: provide reconstruct_proof / expand_proof at the bottom of proof term construction;
wenzelm
parents: 70442
diff changeset
  1701
70449
6e34025981be clarified global theory context;
wenzelm
parents: 70448
diff changeset
  1702
fun make_constraints_cprf thy env cprf =
70447
755d58b48cec clarified modules: provide reconstruct_proof / expand_proof at the bottom of proof term construction;
wenzelm
parents: 70442
diff changeset
  1703
  let
755d58b48cec clarified modules: provide reconstruct_proof / expand_proof at the bottom of proof term construction;
wenzelm
parents: 70442
diff changeset
  1704
    fun add_cnstrt Ts prop prf cs env vTs (t, u) =
755d58b48cec clarified modules: provide reconstruct_proof / expand_proof at the bottom of proof term construction;
wenzelm
parents: 70442
diff changeset
  1705
      let
755d58b48cec clarified modules: provide reconstruct_proof / expand_proof at the bottom of proof term construction;
wenzelm
parents: 70442
diff changeset
  1706
        val t' = mk_abs Ts t;
755d58b48cec clarified modules: provide reconstruct_proof / expand_proof at the bottom of proof term construction;
wenzelm
parents: 70442
diff changeset
  1707
        val u' = mk_abs Ts u
755d58b48cec clarified modules: provide reconstruct_proof / expand_proof at the bottom of proof term construction;
wenzelm
parents: 70442
diff changeset
  1708
      in
70449
6e34025981be clarified global theory context;
wenzelm
parents: 70448
diff changeset
  1709
        (prop, prf, cs, Pattern.unify (Context.Theory thy) (t', u') env, vTs)
6e34025981be clarified global theory context;
wenzelm
parents: 70448
diff changeset
  1710
          handle Pattern.Pattern =>
6e34025981be clarified global theory context;
wenzelm
parents: 70448
diff changeset
  1711
            let val (cs', env') = decompose thy [] (t', u') env
70447
755d58b48cec clarified modules: provide reconstruct_proof / expand_proof at the bottom of proof term construction;
wenzelm
parents: 70442
diff changeset
  1712
            in (prop, prf, cs @ cs', env', vTs) end
70449
6e34025981be clarified global theory context;
wenzelm
parents: 70448
diff changeset
  1713
          | Pattern.Unif => cantunify thy (Envir.norm_term env t', Envir.norm_term env u')
70447
755d58b48cec clarified modules: provide reconstruct_proof / expand_proof at the bottom of proof term construction;
wenzelm
parents: 70442
diff changeset
  1714
      end;
755d58b48cec clarified modules: provide reconstruct_proof / expand_proof at the bottom of proof term construction;
wenzelm
parents: 70442
diff changeset
  1715
755d58b48cec clarified modules: provide reconstruct_proof / expand_proof at the bottom of proof term construction;
wenzelm
parents: 70442
diff changeset
  1716
    fun mk_cnstrts_atom env vTs prop opTs prf =
755d58b48cec clarified modules: provide reconstruct_proof / expand_proof at the bottom of proof term construction;
wenzelm
parents: 70442
diff changeset
  1717
          let
70948
5ed8c7e826a2 proper order of variables, independently of varify/unvarify state -- relevant for export of locale conclusions;
wenzelm
parents: 70916
diff changeset
  1718
            val prop_types = type_variables_of prop;
70447
755d58b48cec clarified modules: provide reconstruct_proof / expand_proof at the bottom of proof term construction;
wenzelm
parents: 70442
diff changeset
  1719
            val (Ts, env') =
755d58b48cec clarified modules: provide reconstruct_proof / expand_proof at the bottom of proof term construction;
wenzelm
parents: 70442
diff changeset
  1720
              (case opTs of
70948
5ed8c7e826a2 proper order of variables, independently of varify/unvarify state -- relevant for export of locale conclusions;
wenzelm
parents: 70916
diff changeset
  1721
                NONE => fold_map (mk_tvar o Type.sort_of_atyp) prop_types env
70447
755d58b48cec clarified modules: provide reconstruct_proof / expand_proof at the bottom of proof term construction;
wenzelm
parents: 70442
diff changeset
  1722
              | SOME Ts => (Ts, env));
70948
5ed8c7e826a2 proper order of variables, independently of varify/unvarify state -- relevant for export of locale conclusions;
wenzelm
parents: 70916
diff changeset
  1723
            val prop' = subst_atomic_types (prop_types ~~ Ts)
70978
a1c137961c12 tuned signature;
wenzelm
parents: 70976
diff changeset
  1724
              (forall_intr_variables_term prop) handle ListPair.UnequalLengths =>
70447
755d58b48cec clarified modules: provide reconstruct_proof / expand_proof at the bottom of proof term construction;
wenzelm
parents: 70442
diff changeset
  1725
                error ("Wrong number of type arguments for " ^ quote (guess_name prf))
755d58b48cec clarified modules: provide reconstruct_proof / expand_proof at the bottom of proof term construction;
wenzelm
parents: 70442
diff changeset
  1726
          in (prop', change_types (SOME Ts) prf, [], env', vTs) end;
755d58b48cec clarified modules: provide reconstruct_proof / expand_proof at the bottom of proof term construction;
wenzelm
parents: 70442
diff changeset
  1727
755d58b48cec clarified modules: provide reconstruct_proof / expand_proof at the bottom of proof term construction;
wenzelm
parents: 70442
diff changeset
  1728
    fun head_norm (prop, prf, cnstrts, env, vTs) =
755d58b48cec clarified modules: provide reconstruct_proof / expand_proof at the bottom of proof term construction;
wenzelm
parents: 70442
diff changeset
  1729
      (Envir.head_norm env prop, prf, cnstrts, env, vTs);
755d58b48cec clarified modules: provide reconstruct_proof / expand_proof at the bottom of proof term construction;
wenzelm
parents: 70442
diff changeset
  1730
755d58b48cec clarified modules: provide reconstruct_proof / expand_proof at the bottom of proof term construction;
wenzelm
parents: 70442
diff changeset
  1731
    fun mk_cnstrts env _ Hs vTs (PBound i) = ((nth Hs i, PBound i, [], env, vTs)
755d58b48cec clarified modules: provide reconstruct_proof / expand_proof at the bottom of proof term construction;
wenzelm
parents: 70442
diff changeset
  1732
          handle General.Subscript => error ("mk_cnstrts: bad variable index " ^ string_of_int i))
755d58b48cec clarified modules: provide reconstruct_proof / expand_proof at the bottom of proof term construction;
wenzelm
parents: 70442
diff changeset
  1733
      | mk_cnstrts env Ts Hs vTs (Abst (s, opT, cprf)) =
755d58b48cec clarified modules: provide reconstruct_proof / expand_proof at the bottom of proof term construction;
wenzelm
parents: 70442
diff changeset
  1734
          let
755d58b48cec clarified modules: provide reconstruct_proof / expand_proof at the bottom of proof term construction;
wenzelm
parents: 70442
diff changeset
  1735
            val (T, env') =
755d58b48cec clarified modules: provide reconstruct_proof / expand_proof at the bottom of proof term construction;
wenzelm
parents: 70442
diff changeset
  1736
              (case opT of
755d58b48cec clarified modules: provide reconstruct_proof / expand_proof at the bottom of proof term construction;
wenzelm
parents: 70442
diff changeset
  1737
                NONE => mk_tvar [] env
755d58b48cec clarified modules: provide reconstruct_proof / expand_proof at the bottom of proof term construction;
wenzelm
parents: 70442
diff changeset
  1738
              | SOME T => (T, env));
755d58b48cec clarified modules: provide reconstruct_proof / expand_proof at the bottom of proof term construction;
wenzelm
parents: 70442
diff changeset
  1739
            val (t, prf, cnstrts, env'', vTs') =
755d58b48cec clarified modules: provide reconstruct_proof / expand_proof at the bottom of proof term construction;
wenzelm
parents: 70442
diff changeset
  1740
              mk_cnstrts env' (T::Ts) (map (incr_boundvars 1) Hs) vTs cprf;
755d58b48cec clarified modules: provide reconstruct_proof / expand_proof at the bottom of proof term construction;
wenzelm
parents: 70442
diff changeset
  1741
          in
755d58b48cec clarified modules: provide reconstruct_proof / expand_proof at the bottom of proof term construction;
wenzelm
parents: 70442
diff changeset
  1742
            (Const ("Pure.all", (T --> propT) --> propT) $ Abs (s, T, t), Abst (s, SOME T, prf),
755d58b48cec clarified modules: provide reconstruct_proof / expand_proof at the bottom of proof term construction;
wenzelm
parents: 70442
diff changeset
  1743
              cnstrts, env'', vTs')
755d58b48cec clarified modules: provide reconstruct_proof / expand_proof at the bottom of proof term construction;
wenzelm
parents: 70442
diff changeset
  1744
          end
755d58b48cec clarified modules: provide reconstruct_proof / expand_proof at the bottom of proof term construction;
wenzelm
parents: 70442
diff changeset
  1745
      | mk_cnstrts env Ts Hs vTs (AbsP (s, SOME t, cprf)) =
755d58b48cec clarified modules: provide reconstruct_proof / expand_proof at the bottom of proof term construction;
wenzelm
parents: 70442
diff changeset
  1746
          let
70449
6e34025981be clarified global theory context;
wenzelm
parents: 70448
diff changeset
  1747
            val (t', _, vTs', env') = infer_type thy env Ts vTs t;
70447
755d58b48cec clarified modules: provide reconstruct_proof / expand_proof at the bottom of proof term construction;
wenzelm
parents: 70442
diff changeset
  1748
            val (u, prf, cnstrts, env'', vTs'') = mk_cnstrts env' Ts (t'::Hs) vTs' cprf;
755d58b48cec clarified modules: provide reconstruct_proof / expand_proof at the bottom of proof term construction;
wenzelm
parents: 70442
diff changeset
  1749
          in (Logic.mk_implies (t', u), AbsP (s, SOME t', prf), cnstrts, env'', vTs'')
755d58b48cec clarified modules: provide reconstruct_proof / expand_proof at the bottom of proof term construction;
wenzelm
parents: 70442
diff changeset
  1750
          end
755d58b48cec clarified modules: provide reconstruct_proof / expand_proof at the bottom of proof term construction;
wenzelm
parents: 70442
diff changeset
  1751
      | mk_cnstrts env Ts Hs vTs (AbsP (s, NONE, cprf)) =
755d58b48cec clarified modules: provide reconstruct_proof / expand_proof at the bottom of proof term construction;
wenzelm
parents: 70442
diff changeset
  1752
          let
755d58b48cec clarified modules: provide reconstruct_proof / expand_proof at the bottom of proof term construction;
wenzelm
parents: 70442
diff changeset
  1753
            val (t, env') = mk_var env Ts propT;
755d58b48cec clarified modules: provide reconstruct_proof / expand_proof at the bottom of proof term construction;
wenzelm
parents: 70442
diff changeset
  1754
            val (u, prf, cnstrts, env'', vTs') = mk_cnstrts env' Ts (t::Hs) vTs cprf;
755d58b48cec clarified modules: provide reconstruct_proof / expand_proof at the bottom of proof term construction;
wenzelm
parents: 70442
diff changeset
  1755
          in (Logic.mk_implies (t, u), AbsP (s, SOME t, prf), cnstrts, env'', vTs')
755d58b48cec clarified modules: provide reconstruct_proof / expand_proof at the bottom of proof term construction;
wenzelm
parents: 70442
diff changeset
  1756
          end
755d58b48cec clarified modules: provide reconstruct_proof / expand_proof at the bottom of proof term construction;
wenzelm
parents: 70442
diff changeset
  1757
      | mk_cnstrts env Ts Hs vTs (cprf1 %% cprf2) =
755d58b48cec clarified modules: provide reconstruct_proof / expand_proof at the bottom of proof term construction;
wenzelm
parents: 70442
diff changeset
  1758
          let val (u, prf2, cnstrts, env', vTs') = mk_cnstrts env Ts Hs vTs cprf2
755d58b48cec clarified modules: provide reconstruct_proof / expand_proof at the bottom of proof term construction;
wenzelm
parents: 70442
diff changeset
  1759
          in (case head_norm (mk_cnstrts env' Ts Hs vTs' cprf1) of
755d58b48cec clarified modules: provide reconstruct_proof / expand_proof at the bottom of proof term construction;
wenzelm
parents: 70442
diff changeset
  1760
              (Const ("Pure.imp", _) $ u' $ t', prf1, cnstrts', env'', vTs'') =>
755d58b48cec clarified modules: provide reconstruct_proof / expand_proof at the bottom of proof term construction;
wenzelm
parents: 70442
diff changeset
  1761
                add_cnstrt Ts t' (prf1 %% prf2) (cnstrts' @ cnstrts)
755d58b48cec clarified modules: provide reconstruct_proof / expand_proof at the bottom of proof term construction;
wenzelm
parents: 70442
diff changeset
  1762
                  env'' vTs'' (u, u')
755d58b48cec clarified modules: provide reconstruct_proof / expand_proof at the bottom of proof term construction;
wenzelm
parents: 70442
diff changeset
  1763
            | (t, prf1, cnstrts', env'', vTs'') =>
755d58b48cec clarified modules: provide reconstruct_proof / expand_proof at the bottom of proof term construction;
wenzelm
parents: 70442
diff changeset
  1764
                let val (v, env''') = mk_var env'' Ts propT
755d58b48cec clarified modules: provide reconstruct_proof / expand_proof at the bottom of proof term construction;
wenzelm
parents: 70442
diff changeset
  1765
                in add_cnstrt Ts v (prf1 %% prf2) (cnstrts' @ cnstrts)
755d58b48cec clarified modules: provide reconstruct_proof / expand_proof at the bottom of proof term construction;
wenzelm
parents: 70442
diff changeset
  1766
                  env''' vTs'' (t, Logic.mk_implies (u, v))
755d58b48cec clarified modules: provide reconstruct_proof / expand_proof at the bottom of proof term construction;
wenzelm
parents: 70442
diff changeset
  1767
                end)
755d58b48cec clarified modules: provide reconstruct_proof / expand_proof at the bottom of proof term construction;
wenzelm
parents: 70442
diff changeset
  1768
          end
755d58b48cec clarified modules: provide reconstruct_proof / expand_proof at the bottom of proof term construction;
wenzelm
parents: 70442
diff changeset
  1769
      | mk_cnstrts env Ts Hs vTs (cprf % SOME t) =
70449
6e34025981be clarified global theory context;
wenzelm
parents: 70448
diff changeset
  1770
          let val (t', U, vTs1, env1) = infer_type thy env Ts vTs t
70447
755d58b48cec clarified modules: provide reconstruct_proof / expand_proof at the bottom of proof term construction;
wenzelm
parents: 70442
diff changeset
  1771
          in (case head_norm (mk_cnstrts env1 Ts Hs vTs1 cprf) of
755d58b48cec clarified modules: provide reconstruct_proof / expand_proof at the bottom of proof term construction;
wenzelm
parents: 70442
diff changeset
  1772
             (Const ("Pure.all", Type ("fun", [Type ("fun", [T, _]), _])) $ f,
755d58b48cec clarified modules: provide reconstruct_proof / expand_proof at the bottom of proof term construction;
wenzelm
parents: 70442
diff changeset
  1773
                 prf, cnstrts, env2, vTs2) =>
70449
6e34025981be clarified global theory context;
wenzelm
parents: 70448
diff changeset
  1774
               let val env3 = unifyT thy env2 T U
70447
755d58b48cec clarified modules: provide reconstruct_proof / expand_proof at the bottom of proof term construction;
wenzelm
parents: 70442
diff changeset
  1775
               in (betapply (f, t'), prf % SOME t', cnstrts, env3, vTs2)
755d58b48cec clarified modules: provide reconstruct_proof / expand_proof at the bottom of proof term construction;
wenzelm
parents: 70442
diff changeset
  1776
               end
755d58b48cec clarified modules: provide reconstruct_proof / expand_proof at the bottom of proof term construction;
wenzelm
parents: 70442
diff changeset
  1777
           | (u, prf, cnstrts, env2, vTs2) =>
755d58b48cec clarified modules: provide reconstruct_proof / expand_proof at the bottom of proof term construction;
wenzelm
parents: 70442
diff changeset
  1778
               let val (v, env3) = mk_var env2 Ts (U --> propT);
755d58b48cec clarified modules: provide reconstruct_proof / expand_proof at the bottom of proof term construction;
wenzelm
parents: 70442
diff changeset
  1779
               in
755d58b48cec clarified modules: provide reconstruct_proof / expand_proof at the bottom of proof term construction;
wenzelm
parents: 70442
diff changeset
  1780
                 add_cnstrt Ts (v $ t') (prf % SOME t') cnstrts env3 vTs2
755d58b48cec clarified modules: provide reconstruct_proof / expand_proof at the bottom of proof term construction;
wenzelm
parents: 70442
diff changeset
  1781
                   (u, Const ("Pure.all", (U --> propT) --> propT) $ v)
755d58b48cec clarified modules: provide reconstruct_proof / expand_proof at the bottom of proof term construction;
wenzelm
parents: 70442
diff changeset
  1782
               end)
755d58b48cec clarified modules: provide reconstruct_proof / expand_proof at the bottom of proof term construction;
wenzelm
parents: 70442
diff changeset
  1783
          end
755d58b48cec clarified modules: provide reconstruct_proof / expand_proof at the bottom of proof term construction;
wenzelm
parents: 70442
diff changeset
  1784
      | mk_cnstrts env Ts Hs vTs (cprf % NONE) =
755d58b48cec clarified modules: provide reconstruct_proof / expand_proof at the bottom of proof term construction;
wenzelm
parents: 70442
diff changeset
  1785
          (case head_norm (mk_cnstrts env Ts Hs vTs cprf) of
755d58b48cec clarified modules: provide reconstruct_proof / expand_proof at the bottom of proof term construction;
wenzelm
parents: 70442
diff changeset
  1786
             (Const ("Pure.all", Type ("fun", [Type ("fun", [T, _]), _])) $ f,
755d58b48cec clarified modules: provide reconstruct_proof / expand_proof at the bottom of proof term construction;
wenzelm
parents: 70442
diff changeset
  1787
                 prf, cnstrts, env', vTs') =>
755d58b48cec clarified modules: provide reconstruct_proof / expand_proof at the bottom of proof term construction;
wenzelm
parents: 70442
diff changeset
  1788
               let val (t, env'') = mk_var env' Ts T
755d58b48cec clarified modules: provide reconstruct_proof / expand_proof at the bottom of proof term construction;
wenzelm
parents: 70442
diff changeset
  1789
               in (betapply (f, t), prf % SOME t, cnstrts, env'', vTs')
755d58b48cec clarified modules: provide reconstruct_proof / expand_proof at the bottom of proof term construction;
wenzelm
parents: 70442
diff changeset
  1790
               end
755d58b48cec clarified modules: provide reconstruct_proof / expand_proof at the bottom of proof term construction;
wenzelm
parents: 70442
diff changeset
  1791
           | (u, prf, cnstrts, env', vTs') =>
755d58b48cec clarified modules: provide reconstruct_proof / expand_proof at the bottom of proof term construction;
wenzelm
parents: 70442
diff changeset
  1792
               let
755d58b48cec clarified modules: provide reconstruct_proof / expand_proof at the bottom of proof term construction;
wenzelm
parents: 70442
diff changeset
  1793
                 val (T, env1) = mk_tvar [] env';
755d58b48cec clarified modules: provide reconstruct_proof / expand_proof at the bottom of proof term construction;
wenzelm
parents: 70442
diff changeset
  1794
                 val (v, env2) = mk_var env1 Ts (T --> propT);
755d58b48cec clarified modules: provide reconstruct_proof / expand_proof at the bottom of proof term construction;
wenzelm
parents: 70442
diff changeset
  1795
                 val (t, env3) = mk_var env2 Ts T
755d58b48cec clarified modules: provide reconstruct_proof / expand_proof at the bottom of proof term construction;
wenzelm
parents: 70442
diff changeset
  1796
               in
755d58b48cec clarified modules: provide reconstruct_proof / expand_proof at the bottom of proof term construction;
wenzelm
parents: 70442
diff changeset
  1797
                 add_cnstrt Ts (v $ t) (prf % SOME t) cnstrts env3 vTs'
755d58b48cec clarified modules: provide reconstruct_proof / expand_proof at the bottom of proof term construction;
wenzelm
parents: 70442
diff changeset
  1798
                   (u, Const ("Pure.all", (T --> propT) --> propT) $ v)
755d58b48cec clarified modules: provide reconstruct_proof / expand_proof at the bottom of proof term construction;
wenzelm
parents: 70442
diff changeset
  1799
               end)
70493
a9053fa30909 clarified ML types;
wenzelm
parents: 70492
diff changeset
  1800
      | mk_cnstrts env _ _ vTs (prf as PThm ({prop, types = opTs, ...}, _)) =
70447
755d58b48cec clarified modules: provide reconstruct_proof / expand_proof at the bottom of proof term construction;
wenzelm
parents: 70442
diff changeset
  1801
          mk_cnstrts_atom env vTs prop opTs prf
755d58b48cec clarified modules: provide reconstruct_proof / expand_proof at the bottom of proof term construction;
wenzelm
parents: 70442
diff changeset
  1802
      | mk_cnstrts env _ _ vTs (prf as PAxm (_, prop, opTs)) =
755d58b48cec clarified modules: provide reconstruct_proof / expand_proof at the bottom of proof term construction;
wenzelm
parents: 70442
diff changeset
  1803
          mk_cnstrts_atom env vTs prop opTs prf
71777
3875815f5967 clarified signature: avoid clash with Isabelle/Scala Term.OFCLASS on case-insensible file-system;
wenzelm
parents: 71533
diff changeset
  1804
      | mk_cnstrts env _ _ vTs (prf as PClass (T, c)) =
70447
755d58b48cec clarified modules: provide reconstruct_proof / expand_proof at the bottom of proof term construction;
wenzelm
parents: 70442
diff changeset
  1805
          mk_cnstrts_atom env vTs (Logic.mk_of_class (T, c)) NONE prf
755d58b48cec clarified modules: provide reconstruct_proof / expand_proof at the bottom of proof term construction;
wenzelm
parents: 70442
diff changeset
  1806
      | mk_cnstrts env _ _ vTs (prf as Oracle (_, prop, opTs)) =
70834
614ca81fa28e clarified oracle_proof;
wenzelm
parents: 70833
diff changeset
  1807
          mk_cnstrts_atom env vTs prop opTs prf
70447
755d58b48cec clarified modules: provide reconstruct_proof / expand_proof at the bottom of proof term construction;
wenzelm
parents: 70442
diff changeset
  1808
      | mk_cnstrts env _ _ vTs (Hyp t) = (t, Hyp t, [], env, vTs)
70603
706dac15554b clarified signature: prefer total operations;
wenzelm
parents: 70595
diff changeset
  1809
      | mk_cnstrts _ _ _ _ MinProof = raise MIN_PROOF ()
70447
755d58b48cec clarified modules: provide reconstruct_proof / expand_proof at the bottom of proof term construction;
wenzelm
parents: 70442
diff changeset
  1810
  in mk_cnstrts env [] [] Symtab.empty cprf end;
755d58b48cec clarified modules: provide reconstruct_proof / expand_proof at the bottom of proof term construction;
wenzelm
parents: 70442
diff changeset
  1811
755d58b48cec clarified modules: provide reconstruct_proof / expand_proof at the bottom of proof term construction;
wenzelm
parents: 70442
diff changeset
  1812
755d58b48cec clarified modules: provide reconstruct_proof / expand_proof at the bottom of proof term construction;
wenzelm
parents: 70442
diff changeset
  1813
(* update list of free variables of constraints *)
755d58b48cec clarified modules: provide reconstruct_proof / expand_proof at the bottom of proof term construction;
wenzelm
parents: 70442
diff changeset
  1814
755d58b48cec clarified modules: provide reconstruct_proof / expand_proof at the bottom of proof term construction;
wenzelm
parents: 70442
diff changeset
  1815
fun upd_constrs env cs =
755d58b48cec clarified modules: provide reconstruct_proof / expand_proof at the bottom of proof term construction;
wenzelm
parents: 70442
diff changeset
  1816
  let
755d58b48cec clarified modules: provide reconstruct_proof / expand_proof at the bottom of proof term construction;
wenzelm
parents: 70442
diff changeset
  1817
    val tenv = Envir.term_env env;
755d58b48cec clarified modules: provide reconstruct_proof / expand_proof at the bottom of proof term construction;
wenzelm
parents: 70442
diff changeset
  1818
    val tyenv = Envir.type_env env;
755d58b48cec clarified modules: provide reconstruct_proof / expand_proof at the bottom of proof term construction;
wenzelm
parents: 70442
diff changeset
  1819
    val dom = []
755d58b48cec clarified modules: provide reconstruct_proof / expand_proof at the bottom of proof term construction;
wenzelm
parents: 70442
diff changeset
  1820
      |> Vartab.fold (cons o #1) tenv
755d58b48cec clarified modules: provide reconstruct_proof / expand_proof at the bottom of proof term construction;
wenzelm
parents: 70442
diff changeset
  1821
      |> Vartab.fold (cons o #1) tyenv;
755d58b48cec clarified modules: provide reconstruct_proof / expand_proof at the bottom of proof term construction;
wenzelm
parents: 70442
diff changeset
  1822
    val vran = []
755d58b48cec clarified modules: provide reconstruct_proof / expand_proof at the bottom of proof term construction;
wenzelm
parents: 70442
diff changeset
  1823
      |> Vartab.fold (Term.add_var_names o #2 o #2) tenv
755d58b48cec clarified modules: provide reconstruct_proof / expand_proof at the bottom of proof term construction;
wenzelm
parents: 70442
diff changeset
  1824
      |> Vartab.fold (Term.add_tvar_namesT o #2 o #2) tyenv;
755d58b48cec clarified modules: provide reconstruct_proof / expand_proof at the bottom of proof term construction;
wenzelm
parents: 70442
diff changeset
  1825
    fun check_cs [] = []
755d58b48cec clarified modules: provide reconstruct_proof / expand_proof at the bottom of proof term construction;
wenzelm
parents: 70442
diff changeset
  1826
      | check_cs ((u, p, vs) :: ps) =
755d58b48cec clarified modules: provide reconstruct_proof / expand_proof at the bottom of proof term construction;
wenzelm
parents: 70442
diff changeset
  1827
          let val vs' = subtract (op =) dom vs in
755d58b48cec clarified modules: provide reconstruct_proof / expand_proof at the bottom of proof term construction;
wenzelm
parents: 70442
diff changeset
  1828
            if vs = vs' then (u, p, vs) :: check_cs ps
755d58b48cec clarified modules: provide reconstruct_proof / expand_proof at the bottom of proof term construction;
wenzelm
parents: 70442
diff changeset
  1829
            else (true, p, fold (insert op =) vs' vran) :: check_cs ps
755d58b48cec clarified modules: provide reconstruct_proof / expand_proof at the bottom of proof term construction;
wenzelm
parents: 70442
diff changeset
  1830
          end;
755d58b48cec clarified modules: provide reconstruct_proof / expand_proof at the bottom of proof term construction;
wenzelm
parents: 70442
diff changeset
  1831
  in check_cs cs end;
755d58b48cec clarified modules: provide reconstruct_proof / expand_proof at the bottom of proof term construction;
wenzelm
parents: 70442
diff changeset
  1832
755d58b48cec clarified modules: provide reconstruct_proof / expand_proof at the bottom of proof term construction;
wenzelm
parents: 70442
diff changeset
  1833
755d58b48cec clarified modules: provide reconstruct_proof / expand_proof at the bottom of proof term construction;
wenzelm
parents: 70442
diff changeset
  1834
(* solution of constraints *)
755d58b48cec clarified modules: provide reconstruct_proof / expand_proof at the bottom of proof term construction;
wenzelm
parents: 70442
diff changeset
  1835
755d58b48cec clarified modules: provide reconstruct_proof / expand_proof at the bottom of proof term construction;
wenzelm
parents: 70442
diff changeset
  1836
fun solve _ [] bigenv = bigenv
70449
6e34025981be clarified global theory context;
wenzelm
parents: 70448
diff changeset
  1837
  | solve thy cs bigenv =
70447
755d58b48cec clarified modules: provide reconstruct_proof / expand_proof at the bottom of proof term construction;
wenzelm
parents: 70442
diff changeset
  1838
      let
70449
6e34025981be clarified global theory context;
wenzelm
parents: 70448
diff changeset
  1839
        fun search _ [] =
6e34025981be clarified global theory context;
wenzelm
parents: 70448
diff changeset
  1840
              error ("Unsolvable constraints:\n" ^
6e34025981be clarified global theory context;
wenzelm
parents: 70448
diff changeset
  1841
                Pretty.string_of (Pretty.chunks (map (fn (_, p, _) =>
6e34025981be clarified global theory context;
wenzelm
parents: 70448
diff changeset
  1842
                  Syntax.pretty_flexpair (Syntax.init_pretty_global thy)
6e34025981be clarified global theory context;
wenzelm
parents: 70448
diff changeset
  1843
                    (apply2 (Envir.norm_term bigenv) p)) cs)))
70447
755d58b48cec clarified modules: provide reconstruct_proof / expand_proof at the bottom of proof term construction;
wenzelm
parents: 70442
diff changeset
  1844
          | search env ((u, p as (t1, t2), vs)::ps) =
755d58b48cec clarified modules: provide reconstruct_proof / expand_proof at the bottom of proof term construction;
wenzelm
parents: 70442
diff changeset
  1845
              if u then
755d58b48cec clarified modules: provide reconstruct_proof / expand_proof at the bottom of proof term construction;
wenzelm
parents: 70442
diff changeset
  1846
                let
755d58b48cec clarified modules: provide reconstruct_proof / expand_proof at the bottom of proof term construction;
wenzelm
parents: 70442
diff changeset
  1847
                  val tn1 = Envir.norm_term bigenv t1;
755d58b48cec clarified modules: provide reconstruct_proof / expand_proof at the bottom of proof term construction;
wenzelm
parents: 70442
diff changeset
  1848
                  val tn2 = Envir.norm_term bigenv t2
755d58b48cec clarified modules: provide reconstruct_proof / expand_proof at the bottom of proof term construction;
wenzelm
parents: 70442
diff changeset
  1849
                in
755d58b48cec clarified modules: provide reconstruct_proof / expand_proof at the bottom of proof term construction;
wenzelm
parents: 70442
diff changeset
  1850
                  if Pattern.pattern tn1 andalso Pattern.pattern tn2 then
70449
6e34025981be clarified global theory context;
wenzelm
parents: 70448
diff changeset
  1851
                    (Pattern.unify (Context.Theory thy) (tn1, tn2) env, ps)
6e34025981be clarified global theory context;
wenzelm
parents: 70448
diff changeset
  1852
                      handle Pattern.Unif => cantunify thy (tn1, tn2)
70447
755d58b48cec clarified modules: provide reconstruct_proof / expand_proof at the bottom of proof term construction;
wenzelm
parents: 70442
diff changeset
  1853
                  else
70449
6e34025981be clarified global theory context;
wenzelm
parents: 70448
diff changeset
  1854
                    let val (cs', env') = decompose thy [] (tn1, tn2) env
70447
755d58b48cec clarified modules: provide reconstruct_proof / expand_proof at the bottom of proof term construction;
wenzelm
parents: 70442
diff changeset
  1855
                    in if cs' = [(tn1, tn2)] then
755d58b48cec clarified modules: provide reconstruct_proof / expand_proof at the bottom of proof term construction;
wenzelm
parents: 70442
diff changeset
  1856
                         apsnd (cons (false, (tn1, tn2), vs)) (search env ps)
755d58b48cec clarified modules: provide reconstruct_proof / expand_proof at the bottom of proof term construction;
wenzelm
parents: 70442
diff changeset
  1857
                       else search env' (map (fn q => (true, q, vs)) cs' @ ps)
755d58b48cec clarified modules: provide reconstruct_proof / expand_proof at the bottom of proof term construction;
wenzelm
parents: 70442
diff changeset
  1858
                    end
755d58b48cec clarified modules: provide reconstruct_proof / expand_proof at the bottom of proof term construction;
wenzelm
parents: 70442
diff changeset
  1859
                end
755d58b48cec clarified modules: provide reconstruct_proof / expand_proof at the bottom of proof term construction;
wenzelm
parents: 70442
diff changeset
  1860
              else apsnd (cons (false, p, vs)) (search env ps);
755d58b48cec clarified modules: provide reconstruct_proof / expand_proof at the bottom of proof term construction;
wenzelm
parents: 70442
diff changeset
  1861
        val Envir.Envir {maxidx, ...} = bigenv;
755d58b48cec clarified modules: provide reconstruct_proof / expand_proof at the bottom of proof term construction;
wenzelm
parents: 70442
diff changeset
  1862
        val (env, cs') = search (Envir.empty maxidx) cs;
755d58b48cec clarified modules: provide reconstruct_proof / expand_proof at the bottom of proof term construction;
wenzelm
parents: 70442
diff changeset
  1863
      in
70449
6e34025981be clarified global theory context;
wenzelm
parents: 70448
diff changeset
  1864
        solve thy (upd_constrs env cs') (Envir.merge (bigenv, env))
70447
755d58b48cec clarified modules: provide reconstruct_proof / expand_proof at the bottom of proof term construction;
wenzelm
parents: 70442
diff changeset
  1865
      end;
755d58b48cec clarified modules: provide reconstruct_proof / expand_proof at the bottom of proof term construction;
wenzelm
parents: 70442
diff changeset
  1866
755d58b48cec clarified modules: provide reconstruct_proof / expand_proof at the bottom of proof term construction;
wenzelm
parents: 70442
diff changeset
  1867
in
755d58b48cec clarified modules: provide reconstruct_proof / expand_proof at the bottom of proof term construction;
wenzelm
parents: 70442
diff changeset
  1868
755d58b48cec clarified modules: provide reconstruct_proof / expand_proof at the bottom of proof term construction;
wenzelm
parents: 70442
diff changeset
  1869
755d58b48cec clarified modules: provide reconstruct_proof / expand_proof at the bottom of proof term construction;
wenzelm
parents: 70442
diff changeset
  1870
(* reconstruction of proofs *)
755d58b48cec clarified modules: provide reconstruct_proof / expand_proof at the bottom of proof term construction;
wenzelm
parents: 70442
diff changeset
  1871
70449
6e34025981be clarified global theory context;
wenzelm
parents: 70448
diff changeset
  1872
fun reconstruct_proof thy prop cprf =
70447
755d58b48cec clarified modules: provide reconstruct_proof / expand_proof at the bottom of proof term construction;
wenzelm
parents: 70442
diff changeset
  1873
  let
755d58b48cec clarified modules: provide reconstruct_proof / expand_proof at the bottom of proof term construction;
wenzelm
parents: 70442
diff changeset
  1874
    val (cprf' % SOME prop', thawf) = freeze_thaw_prf (cprf % SOME prop);
70449
6e34025981be clarified global theory context;
wenzelm
parents: 70448
diff changeset
  1875
    val (t, prf, cs, env, _) = make_constraints_cprf thy
70447
755d58b48cec clarified modules: provide reconstruct_proof / expand_proof at the bottom of proof term construction;
wenzelm
parents: 70442
diff changeset
  1876
      (Envir.empty (maxidx_proof cprf ~1)) cprf';
755d58b48cec clarified modules: provide reconstruct_proof / expand_proof at the bottom of proof term construction;
wenzelm
parents: 70442
diff changeset
  1877
    val cs' =
755d58b48cec clarified modules: provide reconstruct_proof / expand_proof at the bottom of proof term construction;
wenzelm
parents: 70442
diff changeset
  1878
      map (apply2 (Envir.norm_term env)) ((t, prop') :: cs)
755d58b48cec clarified modules: provide reconstruct_proof / expand_proof at the bottom of proof term construction;
wenzelm
parents: 70442
diff changeset
  1879
      |> map (fn p => (true, p, Term.add_var_names (#1 p) (Term.add_var_names (#2 p) [])));
71532
wenzelm
parents: 71531
diff changeset
  1880
    val env' = solve thy cs' env;
70603
706dac15554b clarified signature: prefer total operations;
wenzelm
parents: 70595
diff changeset
  1881
  in thawf (norm_proof env' prf) end handle MIN_PROOF () => MinProof;
70447
755d58b48cec clarified modules: provide reconstruct_proof / expand_proof at the bottom of proof term construction;
wenzelm
parents: 70442
diff changeset
  1882
70815
wenzelm
parents: 70814
diff changeset
  1883
fun prop_of_atom prop Ts =
70978
a1c137961c12 tuned signature;
wenzelm
parents: 70976
diff changeset
  1884
  subst_atomic_types (type_variables_of prop ~~ Ts) (forall_intr_variables_term prop);
70447
755d58b48cec clarified modules: provide reconstruct_proof / expand_proof at the bottom of proof term construction;
wenzelm
parents: 70442
diff changeset
  1885
755d58b48cec clarified modules: provide reconstruct_proof / expand_proof at the bottom of proof term construction;
wenzelm
parents: 70442
diff changeset
  1886
val head_norm = Envir.head_norm Envir.init;
755d58b48cec clarified modules: provide reconstruct_proof / expand_proof at the bottom of proof term construction;
wenzelm
parents: 70442
diff changeset
  1887
755d58b48cec clarified modules: provide reconstruct_proof / expand_proof at the bottom of proof term construction;
wenzelm
parents: 70442
diff changeset
  1888
fun prop_of0 Hs (PBound i) = nth Hs i
755d58b48cec clarified modules: provide reconstruct_proof / expand_proof at the bottom of proof term construction;
wenzelm
parents: 70442
diff changeset
  1889
  | prop_of0 Hs (Abst (s, SOME T, prf)) =
755d58b48cec clarified modules: provide reconstruct_proof / expand_proof at the bottom of proof term construction;
wenzelm
parents: 70442
diff changeset
  1890
      Logic.all_const T $ (Abs (s, T, prop_of0 Hs prf))
755d58b48cec clarified modules: provide reconstruct_proof / expand_proof at the bottom of proof term construction;
wenzelm
parents: 70442
diff changeset
  1891
  | prop_of0 Hs (AbsP (_, SOME t, prf)) =
755d58b48cec clarified modules: provide reconstruct_proof / expand_proof at the bottom of proof term construction;
wenzelm
parents: 70442
diff changeset
  1892
      Logic.mk_implies (t, prop_of0 (t :: Hs) prf)
755d58b48cec clarified modules: provide reconstruct_proof / expand_proof at the bottom of proof term construction;
wenzelm
parents: 70442
diff changeset
  1893
  | prop_of0 Hs (prf % SOME t) = (case head_norm (prop_of0 Hs prf) of
755d58b48cec clarified modules: provide reconstruct_proof / expand_proof at the bottom of proof term construction;
wenzelm
parents: 70442
diff changeset
  1894
      Const ("Pure.all", _) $ f => f $ t
755d58b48cec clarified modules: provide reconstruct_proof / expand_proof at the bottom of proof term construction;
wenzelm
parents: 70442
diff changeset
  1895
    | _ => error "prop_of: all expected")
755d58b48cec clarified modules: provide reconstruct_proof / expand_proof at the bottom of proof term construction;
wenzelm
parents: 70442
diff changeset
  1896
  | prop_of0 Hs (prf1 %% _) = (case head_norm (prop_of0 Hs prf1) of
755d58b48cec clarified modules: provide reconstruct_proof / expand_proof at the bottom of proof term construction;
wenzelm
parents: 70442
diff changeset
  1897
      Const ("Pure.imp", _) $ _ $ Q => Q
755d58b48cec clarified modules: provide reconstruct_proof / expand_proof at the bottom of proof term construction;
wenzelm
parents: 70442
diff changeset
  1898
    | _ => error "prop_of: ==> expected")
755d58b48cec clarified modules: provide reconstruct_proof / expand_proof at the bottom of proof term construction;
wenzelm
parents: 70442
diff changeset
  1899
  | prop_of0 _ (Hyp t) = t
70493
a9053fa30909 clarified ML types;
wenzelm
parents: 70492
diff changeset
  1900
  | prop_of0 _ (PThm ({prop, types = SOME Ts, ...}, _)) = prop_of_atom prop Ts
70447
755d58b48cec clarified modules: provide reconstruct_proof / expand_proof at the bottom of proof term construction;
wenzelm
parents: 70442
diff changeset
  1901
  | prop_of0 _ (PAxm (_, prop, SOME Ts)) = prop_of_atom prop Ts
71777
3875815f5967 clarified signature: avoid clash with Isabelle/Scala Term.OFCLASS on case-insensible file-system;
wenzelm
parents: 71533
diff changeset
  1902
  | prop_of0 _ (PClass (T, c)) = Logic.mk_of_class (T, c)
70834
614ca81fa28e clarified oracle_proof;
wenzelm
parents: 70833
diff changeset
  1903
  | prop_of0 _ (Oracle (_, prop, SOME Ts)) = prop_of_atom prop Ts
70447
755d58b48cec clarified modules: provide reconstruct_proof / expand_proof at the bottom of proof term construction;
wenzelm
parents: 70442
diff changeset
  1904
  | prop_of0 _ _ = error "prop_of: partial proof object";
755d58b48cec clarified modules: provide reconstruct_proof / expand_proof at the bottom of proof term construction;
wenzelm
parents: 70442
diff changeset
  1905
755d58b48cec clarified modules: provide reconstruct_proof / expand_proof at the bottom of proof term construction;
wenzelm
parents: 70442
diff changeset
  1906
val prop_of' = Envir.beta_eta_contract oo prop_of0;
755d58b48cec clarified modules: provide reconstruct_proof / expand_proof at the bottom of proof term construction;
wenzelm
parents: 70442
diff changeset
  1907
val prop_of = prop_of' [];
755d58b48cec clarified modules: provide reconstruct_proof / expand_proof at the bottom of proof term construction;
wenzelm
parents: 70442
diff changeset
  1908
755d58b48cec clarified modules: provide reconstruct_proof / expand_proof at the bottom of proof term construction;
wenzelm
parents: 70442
diff changeset
  1909
755d58b48cec clarified modules: provide reconstruct_proof / expand_proof at the bottom of proof term construction;
wenzelm
parents: 70442
diff changeset
  1910
(* expand and reconstruct subproofs *)
755d58b48cec clarified modules: provide reconstruct_proof / expand_proof at the bottom of proof term construction;
wenzelm
parents: 70442
diff changeset
  1911
70915
bd4d37edfee4 clarified expand_proof/expand_name: allow more detailed control via thm_header;
wenzelm
parents: 70909
diff changeset
  1912
fun expand_name_empty (header: thm_header) = if #name header = "" then SOME "" else NONE;
bd4d37edfee4 clarified expand_proof/expand_name: allow more detailed control via thm_header;
wenzelm
parents: 70909
diff changeset
  1913
bd4d37edfee4 clarified expand_proof/expand_name: allow more detailed control via thm_header;
wenzelm
parents: 70909
diff changeset
  1914
fun expand_proof thy expand_name prf =
70447
755d58b48cec clarified modules: provide reconstruct_proof / expand_proof at the bottom of proof term construction;
wenzelm
parents: 70442
diff changeset
  1915
  let
70833
wenzelm
parents: 70832
diff changeset
  1916
    fun expand seen maxidx (AbsP (s, t, prf)) =
wenzelm
parents: 70832
diff changeset
  1917
          let val (seen', maxidx', prf') = expand seen maxidx prf
wenzelm
parents: 70832
diff changeset
  1918
          in (seen', maxidx', AbsP (s, t, prf')) end
wenzelm
parents: 70832
diff changeset
  1919
      | expand seen maxidx (Abst (s, T, prf)) =
wenzelm
parents: 70832
diff changeset
  1920
          let val (seen', maxidx', prf') = expand seen maxidx prf
wenzelm
parents: 70832
diff changeset
  1921
          in (seen', maxidx', Abst (s, T, prf')) end
wenzelm
parents: 70832
diff changeset
  1922
      | expand seen maxidx (prf1 %% prf2) =
70447
755d58b48cec clarified modules: provide reconstruct_proof / expand_proof at the bottom of proof term construction;
wenzelm
parents: 70442
diff changeset
  1923
          let
70833
wenzelm
parents: 70832
diff changeset
  1924
            val (seen', maxidx', prf1') = expand seen maxidx prf1;
wenzelm
parents: 70832
diff changeset
  1925
            val (seen'', maxidx'', prf2') = expand seen' maxidx' prf2;
wenzelm
parents: 70832
diff changeset
  1926
          in (seen'', maxidx'', prf1' %% prf2') end
wenzelm
parents: 70832
diff changeset
  1927
      | expand seen maxidx (prf % t) =
wenzelm
parents: 70832
diff changeset
  1928
          let val (seen', maxidx', prf') = expand seen maxidx prf
wenzelm
parents: 70832
diff changeset
  1929
          in (seen', maxidx', prf' % t) end
70915
bd4d37edfee4 clarified expand_proof/expand_name: allow more detailed control via thm_header;
wenzelm
parents: 70909
diff changeset
  1930
      | expand seen maxidx (prf as PThm (header, thm_body)) =
bd4d37edfee4 clarified expand_proof/expand_name: allow more detailed control via thm_header;
wenzelm
parents: 70909
diff changeset
  1931
          let val {serial, pos, theory_name, name, prop, types} = header in
bd4d37edfee4 clarified expand_proof/expand_name: allow more detailed control via thm_header;
wenzelm
parents: 70909
diff changeset
  1932
            (case expand_name header of
bd4d37edfee4 clarified expand_proof/expand_name: allow more detailed control via thm_header;
wenzelm
parents: 70909
diff changeset
  1933
              SOME name' =>
bd4d37edfee4 clarified expand_proof/expand_name: allow more detailed control via thm_header;
wenzelm
parents: 70909
diff changeset
  1934
                if name' = "" andalso is_some types then
bd4d37edfee4 clarified expand_proof/expand_name: allow more detailed control via thm_header;
wenzelm
parents: 70909
diff changeset
  1935
                  let
bd4d37edfee4 clarified expand_proof/expand_name: allow more detailed control via thm_header;
wenzelm
parents: 70909
diff changeset
  1936
                    val (seen', maxidx', prf') =
bd4d37edfee4 clarified expand_proof/expand_name: allow more detailed control via thm_header;
wenzelm
parents: 70909
diff changeset
  1937
                      (case Inttab.lookup seen serial of
bd4d37edfee4 clarified expand_proof/expand_name: allow more detailed control via thm_header;
wenzelm
parents: 70909
diff changeset
  1938
                        NONE =>
bd4d37edfee4 clarified expand_proof/expand_name: allow more detailed control via thm_header;
wenzelm
parents: 70909
diff changeset
  1939
                          let
bd4d37edfee4 clarified expand_proof/expand_name: allow more detailed control via thm_header;
wenzelm
parents: 70909
diff changeset
  1940
                            val prf1 =
bd4d37edfee4 clarified expand_proof/expand_name: allow more detailed control via thm_header;
wenzelm
parents: 70909
diff changeset
  1941
                              thm_body_proof_open thm_body
bd4d37edfee4 clarified expand_proof/expand_name: allow more detailed control via thm_header;
wenzelm
parents: 70909
diff changeset
  1942
                              |> reconstruct_proof thy prop
70978
a1c137961c12 tuned signature;
wenzelm
parents: 70976
diff changeset
  1943
                              |> forall_intr_variables prop;
70915
bd4d37edfee4 clarified expand_proof/expand_name: allow more detailed control via thm_header;
wenzelm
parents: 70909
diff changeset
  1944
                            val (seen1, maxidx1, prf2) = expand_init seen prf1
bd4d37edfee4 clarified expand_proof/expand_name: allow more detailed control via thm_header;
wenzelm
parents: 70909
diff changeset
  1945
                            val seen2 = seen1 |> Inttab.update (serial, (maxidx1, prf2));
bd4d37edfee4 clarified expand_proof/expand_name: allow more detailed control via thm_header;
wenzelm
parents: 70909
diff changeset
  1946
                          in (seen2, maxidx1, prf2) end
bd4d37edfee4 clarified expand_proof/expand_name: allow more detailed control via thm_header;
wenzelm
parents: 70909
diff changeset
  1947
                      | SOME (maxidx1, prf1) => (seen, maxidx1, prf1));
bd4d37edfee4 clarified expand_proof/expand_name: allow more detailed control via thm_header;
wenzelm
parents: 70909
diff changeset
  1948
                    val prf'' = prf'
bd4d37edfee4 clarified expand_proof/expand_name: allow more detailed control via thm_header;
wenzelm
parents: 70909
diff changeset
  1949
                      |> incr_indexes (maxidx + 1) |> app_types (maxidx + 1) prop (the types);
bd4d37edfee4 clarified expand_proof/expand_name: allow more detailed control via thm_header;
wenzelm
parents: 70909
diff changeset
  1950
                  in (seen', maxidx' + maxidx + 1, prf'') end
bd4d37edfee4 clarified expand_proof/expand_name: allow more detailed control via thm_header;
wenzelm
parents: 70909
diff changeset
  1951
                else if name' <> name then
bd4d37edfee4 clarified expand_proof/expand_name: allow more detailed control via thm_header;
wenzelm
parents: 70909
diff changeset
  1952
                  (seen, maxidx, PThm (thm_header serial pos theory_name name' prop types, thm_body))
bd4d37edfee4 clarified expand_proof/expand_name: allow more detailed control via thm_header;
wenzelm
parents: 70909
diff changeset
  1953
                else (seen, maxidx, prf)
bd4d37edfee4 clarified expand_proof/expand_name: allow more detailed control via thm_header;
wenzelm
parents: 70909
diff changeset
  1954
            | NONE => (seen, maxidx, prf))
bd4d37edfee4 clarified expand_proof/expand_name: allow more detailed control via thm_header;
wenzelm
parents: 70909
diff changeset
  1955
          end
70833
wenzelm
parents: 70832
diff changeset
  1956
      | expand seen maxidx prf = (seen, maxidx, prf)
wenzelm
parents: 70832
diff changeset
  1957
    and expand_init seen prf = expand seen (maxidx_proof prf ~1) prf;
70447
755d58b48cec clarified modules: provide reconstruct_proof / expand_proof at the bottom of proof term construction;
wenzelm
parents: 70442
diff changeset
  1958
70915
bd4d37edfee4 clarified expand_proof/expand_name: allow more detailed control via thm_header;
wenzelm
parents: 70909
diff changeset
  1959
  in #3 (expand_init Inttab.empty prf) end;
70447
755d58b48cec clarified modules: provide reconstruct_proof / expand_proof at the bottom of proof term construction;
wenzelm
parents: 70442
diff changeset
  1960
70400
65bbef66e2ec clarified treatment of unnamed PThm nodes (from close_derivation): retain full proof, publish when named;
wenzelm
parents: 70399
diff changeset
  1961
end;
65bbef66e2ec clarified treatment of unnamed PThm nodes (from close_derivation): retain full proof, publish when named;
wenzelm
parents: 70399
diff changeset
  1962
65bbef66e2ec clarified treatment of unnamed PThm nodes (from close_derivation): retain full proof, publish when named;
wenzelm
parents: 70399
diff changeset
  1963
70397
f5bce5af361b tuned comments -- proper sections;
wenzelm
parents: 70396
diff changeset
  1964
f5bce5af361b tuned comments -- proper sections;
wenzelm
parents: 70396
diff changeset
  1965
(** promises **)
11519
0c96830636a1 New implementation of LF style proof terms.
berghofe
parents:
diff changeset
  1966
33722
e588744f14da generalized procs for rewrite_proof: allow skeleton;
wenzelm
parents: 33522
diff changeset
  1967
fun fulfill_norm_proof thy ps body0 =
e588744f14da generalized procs for rewrite_proof: allow skeleton;
wenzelm
parents: 33522
diff changeset
  1968
  let
71018
d32ed8927a42 more robust expose_proofs corresponding to register_proofs/consolidate_theory;
wenzelm
parents: 71010
diff changeset
  1969
    val _ = consolidate_bodies (map #2 ps @ [body0]);
33722
e588744f14da generalized procs for rewrite_proof: allow skeleton;
wenzelm
parents: 33522
diff changeset
  1970
    val PBody {oracles = oracles0, thms = thms0, proof = proof0} = body0;
44334
605381e7c7c5 more direct balanced version Ord_List.unions;
wenzelm
parents: 44333
diff changeset
  1971
    val oracles =
605381e7c7c5 more direct balanced version Ord_List.unions;
wenzelm
parents: 44333
diff changeset
  1972
      unions_oracles
605381e7c7c5 more direct balanced version Ord_List.unions;
wenzelm
parents: 44333
diff changeset
  1973
        (fold (fn (_, PBody {oracles, ...}) => not (null oracles) ? cons oracles) ps [oracles0]);
605381e7c7c5 more direct balanced version Ord_List.unions;
wenzelm
parents: 44333
diff changeset
  1974
    val thms =
605381e7c7c5 more direct balanced version Ord_List.unions;
wenzelm
parents: 44333
diff changeset
  1975
      unions_thms (fold (fn (_, PBody {thms, ...}) => not (null thms) ? cons thms) ps [thms0]);
70398
725438ceae7c proof terms are always constructed sequentially;
wenzelm
parents: 70397
diff changeset
  1976
    val proof = rew_proof thy proof0;
33722
e588744f14da generalized procs for rewrite_proof: allow skeleton;
wenzelm
parents: 33522
diff changeset
  1977
  in PBody {oracles = oracles, thms = thms, proof = proof} end;
28828
c25dd83a6f9f unified treatment of PAxm/Oracle/Promise in basic proof term operations;
wenzelm
parents: 28815
diff changeset
  1978
70395
af88c05696bd clarified postproc: apply shrink_proof last, e.g. relevant for export of full proof term;
wenzelm
parents: 70394
diff changeset
  1979
fun fulfill_proof_future thy promises (postproc: proof_body -> proof_body) body =
51047
2ad5c46bcd04 avoid extra fork for fulfill_proof_future whenever possible -- without proof terms it merely doubles the number of proof tasks redundantly, by piggy-backing another 10 microseconds task;
wenzelm
parents: 50763
diff changeset
  1980
  let
2ad5c46bcd04 avoid extra fork for fulfill_proof_future whenever possible -- without proof terms it merely doubles the number of proof tasks redundantly, by piggy-backing another 10 microseconds task;
wenzelm
parents: 50763
diff changeset
  1981
    fun fulfill () =
2ad5c46bcd04 avoid extra fork for fulfill_proof_future whenever possible -- without proof terms it merely doubles the number of proof tasks redundantly, by piggy-backing another 10 microseconds task;
wenzelm
parents: 50763
diff changeset
  1982
      postproc (fulfill_norm_proof thy (map (apsnd Future.join) promises) (Future.join body));
2ad5c46bcd04 avoid extra fork for fulfill_proof_future whenever possible -- without proof terms it merely doubles the number of proof tasks redundantly, by piggy-backing another 10 microseconds task;
wenzelm
parents: 50763
diff changeset
  1983
  in
2ad5c46bcd04 avoid extra fork for fulfill_proof_future whenever possible -- without proof terms it merely doubles the number of proof tasks redundantly, by piggy-backing another 10 microseconds task;
wenzelm
parents: 50763
diff changeset
  1984
    if null promises then Future.map postproc body
2ad5c46bcd04 avoid extra fork for fulfill_proof_future whenever possible -- without proof terms it merely doubles the number of proof tasks redundantly, by piggy-backing another 10 microseconds task;
wenzelm
parents: 50763
diff changeset
  1985
    else if Future.is_finished body andalso length promises = 1 then
2ad5c46bcd04 avoid extra fork for fulfill_proof_future whenever possible -- without proof terms it merely doubles the number of proof tasks redundantly, by piggy-backing another 10 microseconds task;
wenzelm
parents: 50763
diff changeset
  1986
      Future.map (fn _ => fulfill ()) (snd (hd promises))
2ad5c46bcd04 avoid extra fork for fulfill_proof_future whenever possible -- without proof terms it merely doubles the number of proof tasks redundantly, by piggy-backing another 10 microseconds task;
wenzelm
parents: 50763
diff changeset
  1987
    else
2ad5c46bcd04 avoid extra fork for fulfill_proof_future whenever possible -- without proof terms it merely doubles the number of proof tasks redundantly, by piggy-backing another 10 microseconds task;
wenzelm
parents: 50763
diff changeset
  1988
      (singleton o Future.forks)
2ad5c46bcd04 avoid extra fork for fulfill_proof_future whenever possible -- without proof terms it merely doubles the number of proof tasks redundantly, by piggy-backing another 10 microseconds task;
wenzelm
parents: 50763
diff changeset
  1989
        {name = "Proofterm.fulfill_proof_future", group = NONE,
70415
3c20a86f14f1 finalize proofs earlier to reduce memory requirement;
wenzelm
parents: 70413
diff changeset
  1990
          deps = Future.task_of body :: map (Future.task_of o snd) promises, pri = 1,
51047
2ad5c46bcd04 avoid extra fork for fulfill_proof_future whenever possible -- without proof terms it merely doubles the number of proof tasks redundantly, by piggy-backing another 10 microseconds task;
wenzelm
parents: 50763
diff changeset
  1991
          interrupts = true}
2ad5c46bcd04 avoid extra fork for fulfill_proof_future whenever possible -- without proof terms it merely doubles the number of proof tasks redundantly, by piggy-backing another 10 microseconds task;
wenzelm
parents: 50763
diff changeset
  1992
        fulfill
2ad5c46bcd04 avoid extra fork for fulfill_proof_future whenever possible -- without proof terms it merely doubles the number of proof tasks redundantly, by piggy-backing another 10 microseconds task;
wenzelm
parents: 50763
diff changeset
  1993
  end;
29642
be22ba214475 thm_proof: recovered single-threaded version;
wenzelm
parents: 29636
diff changeset
  1994
28828
c25dd83a6f9f unified treatment of PAxm/Oracle/Promise in basic proof term operations;
wenzelm
parents: 28815
diff changeset
  1995
70397
f5bce5af361b tuned comments -- proper sections;
wenzelm
parents: 70396
diff changeset
  1996
f5bce5af361b tuned comments -- proper sections;
wenzelm
parents: 70396
diff changeset
  1997
(** theorems **)
11519
0c96830636a1 New implementation of LF style proof terms.
berghofe
parents:
diff changeset
  1998
70529
2ecbbe6b35db uniform standard_vars for terms and proof terms;
wenzelm
parents: 70511
diff changeset
  1999
(* standardization of variables for export: only frees and named bounds *)
2ecbbe6b35db uniform standard_vars for terms and proof terms;
wenzelm
parents: 70511
diff changeset
  2000
2ecbbe6b35db uniform standard_vars for terms and proof terms;
wenzelm
parents: 70511
diff changeset
  2001
local
2ecbbe6b35db uniform standard_vars for terms and proof terms;
wenzelm
parents: 70511
diff changeset
  2002
70531
2d2b5a8e8d59 clarified name context for abstractions -- in contrast to 367e60d9aa1b and Term.variant_frees (*as they are printed :-*);
wenzelm
parents: 70530
diff changeset
  2003
val declare_names_term = Term.declare_term_frees;
70529
2ecbbe6b35db uniform standard_vars for terms and proof terms;
wenzelm
parents: 70511
diff changeset
  2004
val declare_names_term' = fn SOME t => declare_names_term t | NONE => I;
70843
cc987440d776 more compact XML: separate environment for free variables;
wenzelm
parents: 70839
diff changeset
  2005
val declare_names_proof = fold_proof_terms declare_names_term;
70529
2ecbbe6b35db uniform standard_vars for terms and proof terms;
wenzelm
parents: 70511
diff changeset
  2006
2ecbbe6b35db uniform standard_vars for terms and proof terms;
wenzelm
parents: 70511
diff changeset
  2007
fun variant names bs x =
2ecbbe6b35db uniform standard_vars for terms and proof terms;
wenzelm
parents: 70511
diff changeset
  2008
  #1 (Name.variant x (fold Name.declare bs names));
2ecbbe6b35db uniform standard_vars for terms and proof terms;
wenzelm
parents: 70511
diff changeset
  2009
2ecbbe6b35db uniform standard_vars for terms and proof terms;
wenzelm
parents: 70511
diff changeset
  2010
fun variant_term bs (Abs (x, T, t)) =
2ecbbe6b35db uniform standard_vars for terms and proof terms;
wenzelm
parents: 70511
diff changeset
  2011
      let
2ecbbe6b35db uniform standard_vars for terms and proof terms;
wenzelm
parents: 70511
diff changeset
  2012
        val x' = variant (declare_names_term t Name.context) bs x;
2ecbbe6b35db uniform standard_vars for terms and proof terms;
wenzelm
parents: 70511
diff changeset
  2013
        val t' = variant_term (x' :: bs) t;
2ecbbe6b35db uniform standard_vars for terms and proof terms;
wenzelm
parents: 70511
diff changeset
  2014
      in Abs (x', T, t') end
2ecbbe6b35db uniform standard_vars for terms and proof terms;
wenzelm
parents: 70511
diff changeset
  2015
  | variant_term bs (t $ u) = variant_term bs t $ variant_term bs u
2ecbbe6b35db uniform standard_vars for terms and proof terms;
wenzelm
parents: 70511
diff changeset
  2016
  | variant_term _ t = t;
2ecbbe6b35db uniform standard_vars for terms and proof terms;
wenzelm
parents: 70511
diff changeset
  2017
2ecbbe6b35db uniform standard_vars for terms and proof terms;
wenzelm
parents: 70511
diff changeset
  2018
fun variant_proof bs (Abst (x, T, prf)) =
2ecbbe6b35db uniform standard_vars for terms and proof terms;
wenzelm
parents: 70511
diff changeset
  2019
      let
2ecbbe6b35db uniform standard_vars for terms and proof terms;
wenzelm
parents: 70511
diff changeset
  2020
        val x' = variant (declare_names_proof prf Name.context) bs x;
2ecbbe6b35db uniform standard_vars for terms and proof terms;
wenzelm
parents: 70511
diff changeset
  2021
        val prf' = variant_proof (x' :: bs) prf;
2ecbbe6b35db uniform standard_vars for terms and proof terms;
wenzelm
parents: 70511
diff changeset
  2022
      in Abst (x', T, prf') end
2ecbbe6b35db uniform standard_vars for terms and proof terms;
wenzelm
parents: 70511
diff changeset
  2023
  | variant_proof bs (AbsP (x, t, prf)) =
2ecbbe6b35db uniform standard_vars for terms and proof terms;
wenzelm
parents: 70511
diff changeset
  2024
      let
2ecbbe6b35db uniform standard_vars for terms and proof terms;
wenzelm
parents: 70511
diff changeset
  2025
        val x' = variant (declare_names_term' t (declare_names_proof prf Name.context)) bs x;
2ecbbe6b35db uniform standard_vars for terms and proof terms;
wenzelm
parents: 70511
diff changeset
  2026
        val t' = Option.map (variant_term bs) t;
2ecbbe6b35db uniform standard_vars for terms and proof terms;
wenzelm
parents: 70511
diff changeset
  2027
        val prf' = variant_proof (x' :: bs) prf;
2ecbbe6b35db uniform standard_vars for terms and proof terms;
wenzelm
parents: 70511
diff changeset
  2028
      in AbsP (x', t', prf') end
2ecbbe6b35db uniform standard_vars for terms and proof terms;
wenzelm
parents: 70511
diff changeset
  2029
  | variant_proof bs (prf % t) = variant_proof bs prf % Option.map (variant_term bs) t
2ecbbe6b35db uniform standard_vars for terms and proof terms;
wenzelm
parents: 70511
diff changeset
  2030
  | variant_proof bs (prf1 %% prf2) = variant_proof bs prf1 %% variant_proof bs prf2
2ecbbe6b35db uniform standard_vars for terms and proof terms;
wenzelm
parents: 70511
diff changeset
  2031
  | variant_proof bs (Hyp t) = Hyp (variant_term bs t)
2ecbbe6b35db uniform standard_vars for terms and proof terms;
wenzelm
parents: 70511
diff changeset
  2032
  | variant_proof _ prf = prf;
2ecbbe6b35db uniform standard_vars for terms and proof terms;
wenzelm
parents: 70511
diff changeset
  2033
70540
04ef5ee3dd4d more careful treatment of standard_vars: rename apart from existing frees and avoid approximative Name.declared, proper application of unvarifyT within terms of proof;
wenzelm
parents: 70538
diff changeset
  2034
val used_frees_type = fold_atyps (fn TFree (a, _) => Name.declare a | _ => I);
04ef5ee3dd4d more careful treatment of standard_vars: rename apart from existing frees and avoid approximative Name.declared, proper application of unvarifyT within terms of proof;
wenzelm
parents: 70538
diff changeset
  2035
fun used_frees_term t = fold_types used_frees_type t #> Term.declare_term_frees t;
70843
cc987440d776 more compact XML: separate environment for free variables;
wenzelm
parents: 70839
diff changeset
  2036
val used_frees_proof = fold_proof_terms_types used_frees_term used_frees_type;
70540
04ef5ee3dd4d more careful treatment of standard_vars: rename apart from existing frees and avoid approximative Name.declared, proper application of unvarifyT within terms of proof;
wenzelm
parents: 70538
diff changeset
  2037
04ef5ee3dd4d more careful treatment of standard_vars: rename apart from existing frees and avoid approximative Name.declared, proper application of unvarifyT within terms of proof;
wenzelm
parents: 70538
diff changeset
  2038
val unvarifyT = Term.map_atyps (fn TVar ((a, _), S) => TFree (a, S) | T => T);
04ef5ee3dd4d more careful treatment of standard_vars: rename apart from existing frees and avoid approximative Name.declared, proper application of unvarifyT within terms of proof;
wenzelm
parents: 70538
diff changeset
  2039
val unvarify = Term.map_aterms (fn Var ((x, _), T) => Free (x, T) | t => t) #> map_types unvarifyT;
70541
f3fbc7f3559d more careful treatment of hidden type variable names: smash before zero_var_indexes to get standard enumeration;
wenzelm
parents: 70540
diff changeset
  2040
val unvarify_proof = map_proof_terms unvarify unvarifyT;
f3fbc7f3559d more careful treatment of hidden type variable names: smash before zero_var_indexes to get standard enumeration;
wenzelm
parents: 70540
diff changeset
  2041
f3fbc7f3559d more careful treatment of hidden type variable names: smash before zero_var_indexes to get standard enumeration;
wenzelm
parents: 70540
diff changeset
  2042
fun hidden_types prop proof =
f3fbc7f3559d more careful treatment of hidden type variable names: smash before zero_var_indexes to get standard enumeration;
wenzelm
parents: 70540
diff changeset
  2043
  let
f3fbc7f3559d more careful treatment of hidden type variable names: smash before zero_var_indexes to get standard enumeration;
wenzelm
parents: 70540
diff changeset
  2044
    val visible = (fold_types o fold_atyps) (insert (op =)) prop [];
f3fbc7f3559d more careful treatment of hidden type variable names: smash before zero_var_indexes to get standard enumeration;
wenzelm
parents: 70540
diff changeset
  2045
    val add_hiddenT = fold_atyps (fn T => not (member (op =) visible T) ? insert (op =) T);
70843
cc987440d776 more compact XML: separate environment for free variables;
wenzelm
parents: 70839
diff changeset
  2046
  in rev (fold_proof_terms_types (fold_types add_hiddenT) add_hiddenT proof []) end;
70541
f3fbc7f3559d more careful treatment of hidden type variable names: smash before zero_var_indexes to get standard enumeration;
wenzelm
parents: 70540
diff changeset
  2047
f3fbc7f3559d more careful treatment of hidden type variable names: smash before zero_var_indexes to get standard enumeration;
wenzelm
parents: 70540
diff changeset
  2048
fun standard_hidden_types term proof =
f3fbc7f3559d more careful treatment of hidden type variable names: smash before zero_var_indexes to get standard enumeration;
wenzelm
parents: 70540
diff changeset
  2049
  let
f3fbc7f3559d more careful treatment of hidden type variable names: smash before zero_var_indexes to get standard enumeration;
wenzelm
parents: 70540
diff changeset
  2050
    val hidden = hidden_types term proof;
f3fbc7f3559d more careful treatment of hidden type variable names: smash before zero_var_indexes to get standard enumeration;
wenzelm
parents: 70540
diff changeset
  2051
    val idx = Term.maxidx_term term (maxidx_proof proof ~1) + 1;
71533
d7175626d61e proper grounding of free types produced by reconstruct_proof/infer_type, e.g. relevant for Lattices_Big.semilattice_set.infinite;
wenzelm
parents: 71532
diff changeset
  2052
    fun smash T =
d7175626d61e proper grounding of free types produced by reconstruct_proof/infer_type, e.g. relevant for Lattices_Big.semilattice_set.infinite;
wenzelm
parents: 71532
diff changeset
  2053
      if member (op =) hidden T then
d7175626d61e proper grounding of free types produced by reconstruct_proof/infer_type, e.g. relevant for Lattices_Big.semilattice_set.infinite;
wenzelm
parents: 71532
diff changeset
  2054
        (case Type.sort_of_atyp T of
d7175626d61e proper grounding of free types produced by reconstruct_proof/infer_type, e.g. relevant for Lattices_Big.semilattice_set.infinite;
wenzelm
parents: 71532
diff changeset
  2055
          [] => dummyT
d7175626d61e proper grounding of free types produced by reconstruct_proof/infer_type, e.g. relevant for Lattices_Big.semilattice_set.infinite;
wenzelm
parents: 71532
diff changeset
  2056
        | S => TVar (("'", idx), S))
d7175626d61e proper grounding of free types produced by reconstruct_proof/infer_type, e.g. relevant for Lattices_Big.semilattice_set.infinite;
wenzelm
parents: 71532
diff changeset
  2057
      else T;
70541
f3fbc7f3559d more careful treatment of hidden type variable names: smash before zero_var_indexes to get standard enumeration;
wenzelm
parents: 70540
diff changeset
  2058
    val smashT = map_atyps smash;
f3fbc7f3559d more careful treatment of hidden type variable names: smash before zero_var_indexes to get standard enumeration;
wenzelm
parents: 70540
diff changeset
  2059
  in map_proof_terms (map_types smashT) smashT proof end;
70540
04ef5ee3dd4d more careful treatment of standard_vars: rename apart from existing frees and avoid approximative Name.declared, proper application of unvarifyT within terms of proof;
wenzelm
parents: 70538
diff changeset
  2060
70898
c13d9d3ee128 turn hidden terms into dummy, e.g. relevant for boundary cases of reconstruct_proof;
wenzelm
parents: 70895
diff changeset
  2061
fun standard_hidden_terms term proof =
c13d9d3ee128 turn hidden terms into dummy, e.g. relevant for boundary cases of reconstruct_proof;
wenzelm
parents: 70895
diff changeset
  2062
  let
71532
wenzelm
parents: 71531
diff changeset
  2063
    fun add_unless excluded x =
wenzelm
parents: 71531
diff changeset
  2064
      ((is_Free x orelse is_Var x) andalso not (member (op =) excluded x)) ? insert (op =) x;
wenzelm
parents: 71531
diff changeset
  2065
    val visible = fold_aterms (add_unless []) term [];
wenzelm
parents: 71531
diff changeset
  2066
    val hidden = fold_proof_terms (fold_aterms (add_unless visible)) proof [];
70898
c13d9d3ee128 turn hidden terms into dummy, e.g. relevant for boundary cases of reconstruct_proof;
wenzelm
parents: 70895
diff changeset
  2067
    val dummy_term = Term.map_aterms (fn x =>
c13d9d3ee128 turn hidden terms into dummy, e.g. relevant for boundary cases of reconstruct_proof;
wenzelm
parents: 70895
diff changeset
  2068
      if member (op =) hidden x then Term.dummy_pattern (Term.fastype_of x) else x);
c13d9d3ee128 turn hidden terms into dummy, e.g. relevant for boundary cases of reconstruct_proof;
wenzelm
parents: 70895
diff changeset
  2069
  in proof |> not (null hidden) ? map_proof_terms dummy_term I end;
c13d9d3ee128 turn hidden terms into dummy, e.g. relevant for boundary cases of reconstruct_proof;
wenzelm
parents: 70895
diff changeset
  2070
70529
2ecbbe6b35db uniform standard_vars for terms and proof terms;
wenzelm
parents: 70511
diff changeset
  2071
in
2ecbbe6b35db uniform standard_vars for terms and proof terms;
wenzelm
parents: 70511
diff changeset
  2072
70541
f3fbc7f3559d more careful treatment of hidden type variable names: smash before zero_var_indexes to get standard enumeration;
wenzelm
parents: 70540
diff changeset
  2073
fun standard_vars used (term, opt_proof) =
70529
2ecbbe6b35db uniform standard_vars for terms and proof terms;
wenzelm
parents: 70511
diff changeset
  2074
  let
70898
c13d9d3ee128 turn hidden terms into dummy, e.g. relevant for boundary cases of reconstruct_proof;
wenzelm
parents: 70895
diff changeset
  2075
    val proofs = opt_proof
c13d9d3ee128 turn hidden terms into dummy, e.g. relevant for boundary cases of reconstruct_proof;
wenzelm
parents: 70895
diff changeset
  2076
      |> Option.map (standard_hidden_types term #> standard_hidden_terms term) |> the_list;
70843
cc987440d776 more compact XML: separate environment for free variables;
wenzelm
parents: 70839
diff changeset
  2077
    val proof_terms = rev (fold (fold_proof_terms_types cons (cons o Logic.mk_type)) proofs []);
70541
f3fbc7f3559d more careful treatment of hidden type variable names: smash before zero_var_indexes to get standard enumeration;
wenzelm
parents: 70540
diff changeset
  2078
    val used_frees = used
f3fbc7f3559d more careful treatment of hidden type variable names: smash before zero_var_indexes to get standard enumeration;
wenzelm
parents: 70540
diff changeset
  2079
      |> used_frees_term term
70540
04ef5ee3dd4d more careful treatment of standard_vars: rename apart from existing frees and avoid approximative Name.declared, proper application of unvarifyT within terms of proof;
wenzelm
parents: 70538
diff changeset
  2080
      |> fold used_frees_proof proofs;
70541
f3fbc7f3559d more careful treatment of hidden type variable names: smash before zero_var_indexes to get standard enumeration;
wenzelm
parents: 70540
diff changeset
  2081
    val inst = Term_Subst.zero_var_indexes_inst used_frees (term :: proof_terms);
f3fbc7f3559d more careful treatment of hidden type variable names: smash before zero_var_indexes to get standard enumeration;
wenzelm
parents: 70540
diff changeset
  2082
    val term' = term |> Term_Subst.instantiate inst |> unvarify |> variant_term [];
f3fbc7f3559d more careful treatment of hidden type variable names: smash before zero_var_indexes to get standard enumeration;
wenzelm
parents: 70540
diff changeset
  2083
    val proofs' = proofs |> map (instantiate inst #> unvarify_proof #> variant_proof []);
f3fbc7f3559d more careful treatment of hidden type variable names: smash before zero_var_indexes to get standard enumeration;
wenzelm
parents: 70540
diff changeset
  2084
  in (term', try hd proofs') end;
70529
2ecbbe6b35db uniform standard_vars for terms and proof terms;
wenzelm
parents: 70511
diff changeset
  2085
70541
f3fbc7f3559d more careful treatment of hidden type variable names: smash before zero_var_indexes to get standard enumeration;
wenzelm
parents: 70540
diff changeset
  2086
fun standard_vars_term used t = #1 (standard_vars used (t, NONE));
70529
2ecbbe6b35db uniform standard_vars for terms and proof terms;
wenzelm
parents: 70511
diff changeset
  2087
70843
cc987440d776 more compact XML: separate environment for free variables;
wenzelm
parents: 70839
diff changeset
  2088
val add_standard_vars_term = fold_aterms
cc987440d776 more compact XML: separate environment for free variables;
wenzelm
parents: 70839
diff changeset
  2089
  (fn Free (x, T) =>
cc987440d776 more compact XML: separate environment for free variables;
wenzelm
parents: 70839
diff changeset
  2090
    (fn env =>
cc987440d776 more compact XML: separate environment for free variables;
wenzelm
parents: 70839
diff changeset
  2091
      (case AList.lookup (op =) env x of
cc987440d776 more compact XML: separate environment for free variables;
wenzelm
parents: 70839
diff changeset
  2092
        NONE => (x, T) :: env
cc987440d776 more compact XML: separate environment for free variables;
wenzelm
parents: 70839
diff changeset
  2093
      | SOME T' =>
cc987440d776 more compact XML: separate environment for free variables;
wenzelm
parents: 70839
diff changeset
  2094
          if T = T' then env
cc987440d776 more compact XML: separate environment for free variables;
wenzelm
parents: 70839
diff changeset
  2095
          else raise TYPE ("standard_vars_env: type conflict for variable " ^ quote x, [T, T'], [])))
cc987440d776 more compact XML: separate environment for free variables;
wenzelm
parents: 70839
diff changeset
  2096
    | _ => I);
cc987440d776 more compact XML: separate environment for free variables;
wenzelm
parents: 70839
diff changeset
  2097
cc987440d776 more compact XML: separate environment for free variables;
wenzelm
parents: 70839
diff changeset
  2098
val add_standard_vars = fold_proof_terms add_standard_vars_term;
cc987440d776 more compact XML: separate environment for free variables;
wenzelm
parents: 70839
diff changeset
  2099
70529
2ecbbe6b35db uniform standard_vars for terms and proof terms;
wenzelm
parents: 70511
diff changeset
  2100
end;
2ecbbe6b35db uniform standard_vars for terms and proof terms;
wenzelm
parents: 70511
diff changeset
  2101
2ecbbe6b35db uniform standard_vars for terms and proof terms;
wenzelm
parents: 70511
diff changeset
  2102
2ecbbe6b35db uniform standard_vars for terms and proof terms;
wenzelm
parents: 70511
diff changeset
  2103
(* PThm nodes *)
2ecbbe6b35db uniform standard_vars for terms and proof terms;
wenzelm
parents: 70511
diff changeset
  2104
71022
6504ea98623c uniform "prune_proofs" for Thm_Node / PThm, but it is in conflict with export_proofs of re-used nodes;
wenzelm
parents: 71018
diff changeset
  2105
fun prune_body body =
6504ea98623c uniform "prune_proofs" for Thm_Node / PThm, but it is in conflict with export_proofs of re-used nodes;
wenzelm
parents: 71018
diff changeset
  2106
  if Options.default_bool "prune_proofs"
6504ea98623c uniform "prune_proofs" for Thm_Node / PThm, but it is in conflict with export_proofs of re-used nodes;
wenzelm
parents: 71018
diff changeset
  2107
  then (Future.map o map_proof_of) (K MinProof) body
6504ea98623c uniform "prune_proofs" for Thm_Node / PThm, but it is in conflict with export_proofs of re-used nodes;
wenzelm
parents: 71018
diff changeset
  2108
  else body;
6504ea98623c uniform "prune_proofs" for Thm_Node / PThm, but it is in conflict with export_proofs of re-used nodes;
wenzelm
parents: 71018
diff changeset
  2109
70604
8088cf2576f3 more compact: avoid pointless PThm rudiments;
wenzelm
parents: 70603
diff changeset
  2110
fun export_enabled () = Options.default_bool "export_proofs";
70983
52a62342c9ce clarified signature;
wenzelm
parents: 70982
diff changeset
  2111
fun export_standard_enabled () = Options.default_bool "export_standard_proofs";
70604
8088cf2576f3 more compact: avoid pointless PThm rudiments;
wenzelm
parents: 70603
diff changeset
  2112
70984
5e98925f86ed clarified signature (again);
wenzelm
parents: 70983
diff changeset
  2113
fun export_proof_boxes_required thy =
5e98925f86ed clarified signature (again);
wenzelm
parents: 70983
diff changeset
  2114
  Context.theory_name thy = Context.PureN orelse
5e98925f86ed clarified signature (again);
wenzelm
parents: 70983
diff changeset
  2115
    (export_enabled () andalso not (export_standard_enabled ()));
5e98925f86ed clarified signature (again);
wenzelm
parents: 70983
diff changeset
  2116
71018
d32ed8927a42 more robust expose_proofs corresponding to register_proofs/consolidate_theory;
wenzelm
parents: 71010
diff changeset
  2117
fun export_proof_boxes bodies =
70909
9e05f382e749 export toplevel proof similar to named PThm;
wenzelm
parents: 70908
diff changeset
  2118
  let
71018
d32ed8927a42 more robust expose_proofs corresponding to register_proofs/consolidate_theory;
wenzelm
parents: 71010
diff changeset
  2119
    fun export_thm (i, thm_node) boxes =
d32ed8927a42 more robust expose_proofs corresponding to register_proofs/consolidate_theory;
wenzelm
parents: 71010
diff changeset
  2120
      if Inttab.defined boxes i then boxes
d32ed8927a42 more robust expose_proofs corresponding to register_proofs/consolidate_theory;
wenzelm
parents: 71010
diff changeset
  2121
      else
d32ed8927a42 more robust expose_proofs corresponding to register_proofs/consolidate_theory;
wenzelm
parents: 71010
diff changeset
  2122
        boxes
d32ed8927a42 more robust expose_proofs corresponding to register_proofs/consolidate_theory;
wenzelm
parents: 71010
diff changeset
  2123
        |> Inttab.update (i, thm_node_export thm_node)
d32ed8927a42 more robust expose_proofs corresponding to register_proofs/consolidate_theory;
wenzelm
parents: 71010
diff changeset
  2124
        |> fold export_thm (thm_node_thms thm_node);
d32ed8927a42 more robust expose_proofs corresponding to register_proofs/consolidate_theory;
wenzelm
parents: 71010
diff changeset
  2125
d32ed8927a42 more robust expose_proofs corresponding to register_proofs/consolidate_theory;
wenzelm
parents: 71010
diff changeset
  2126
    fun export_body (PBody {thms, ...}) = fold export_thm thms;
d32ed8927a42 more robust expose_proofs corresponding to register_proofs/consolidate_theory;
wenzelm
parents: 71010
diff changeset
  2127
d32ed8927a42 more robust expose_proofs corresponding to register_proofs/consolidate_theory;
wenzelm
parents: 71010
diff changeset
  2128
    val exports = (bodies, Inttab.empty) |-> fold export_body |> Inttab.dest;
d32ed8927a42 more robust expose_proofs corresponding to register_proofs/consolidate_theory;
wenzelm
parents: 71010
diff changeset
  2129
  in List.app (Lazy.force o #2) exports end;
70909
9e05f382e749 export toplevel proof similar to named PThm;
wenzelm
parents: 70908
diff changeset
  2130
70416
wenzelm
parents: 70415
diff changeset
  2131
local
wenzelm
parents: 70415
diff changeset
  2132
70458
9e2173eb23eb more direct proofs for type classes;
wenzelm
parents: 70454
diff changeset
  2133
fun unconstrainT_proof algebra classrel_proof arity_proof (ucontext: Logic.unconstrain_context) =
70436
251f1fb44ccd clarified signature;
wenzelm
parents: 70435
diff changeset
  2134
  let
251f1fb44ccd clarified signature;
wenzelm
parents: 70435
diff changeset
  2135
    fun hyp_map hyp =
251f1fb44ccd clarified signature;
wenzelm
parents: 70435
diff changeset
  2136
      (case AList.lookup (op =) (#constraints ucontext) hyp of
251f1fb44ccd clarified signature;
wenzelm
parents: 70435
diff changeset
  2137
        SOME t => Hyp t
70458
9e2173eb23eb more direct proofs for type classes;
wenzelm
parents: 70454
diff changeset
  2138
      | NONE => raise Fail "unconstrainT_proof: missing constraint");
70436
251f1fb44ccd clarified signature;
wenzelm
parents: 70435
diff changeset
  2139
251f1fb44ccd clarified signature;
wenzelm
parents: 70435
diff changeset
  2140
    val typ = Term_Subst.map_atypsT_same (Type.strip_sorts o #atyp_map ucontext);
251f1fb44ccd clarified signature;
wenzelm
parents: 70435
diff changeset
  2141
    fun ofclass (ty, c) =
251f1fb44ccd clarified signature;
wenzelm
parents: 70435
diff changeset
  2142
      let val ty' = Term.map_atyps (#atyp_map ucontext) ty;
70823
c6f2a73987cd tuned whitespace;
wenzelm
parents: 70822
diff changeset
  2143
      in the_single (of_sort_proof algebra classrel_proof arity_proof hyp_map (ty', [c])) end;
70436
251f1fb44ccd clarified signature;
wenzelm
parents: 70435
diff changeset
  2144
  in
251f1fb44ccd clarified signature;
wenzelm
parents: 70435
diff changeset
  2145
    Same.commit (map_proof_same (Term_Subst.map_types_same typ) typ ofclass)
251f1fb44ccd clarified signature;
wenzelm
parents: 70435
diff changeset
  2146
    #> fold_rev (implies_intr_proof o snd) (#constraints ucontext)
251f1fb44ccd clarified signature;
wenzelm
parents: 70435
diff changeset
  2147
  end;
251f1fb44ccd clarified signature;
wenzelm
parents: 70435
diff changeset
  2148
70877
f2ce687bfa0a apply_preproc for all proof boxes;
wenzelm
parents: 70848
diff changeset
  2149
fun export_proof thy i prop prf0 =
70451
550a5a822edb clarified export: retain proof boxes as local definitions -- more scalable;
wenzelm
parents: 70449
diff changeset
  2150
  let
70877
f2ce687bfa0a apply_preproc for all proof boxes;
wenzelm
parents: 70848
diff changeset
  2151
    val prf = prf0
f2ce687bfa0a apply_preproc for all proof boxes;
wenzelm
parents: 70848
diff changeset
  2152
      |> reconstruct_proof thy prop
f2ce687bfa0a apply_preproc for all proof boxes;
wenzelm
parents: 70848
diff changeset
  2153
      |> apply_preproc thy;
f2ce687bfa0a apply_preproc for all proof boxes;
wenzelm
parents: 70848
diff changeset
  2154
    val (prop', SOME prf') = (prop, SOME prf) |> standard_vars Name.context;
70881
80f3a290b35c clarified proof export;
wenzelm
parents: 70878
diff changeset
  2155
    val args = [] |> add_standard_vars_term prop' |> add_standard_vars prf' |> rev;
80f3a290b35c clarified proof export;
wenzelm
parents: 70878
diff changeset
  2156
    val typargs = [] |> Term.add_tfrees prop' |> fold_proof_terms Term.add_tfrees prf' |> rev;
80f3a290b35c clarified proof export;
wenzelm
parents: 70878
diff changeset
  2157
80f3a290b35c clarified proof export;
wenzelm
parents: 70878
diff changeset
  2158
    val consts = Sign.consts_of thy;
70916
4c15217d6266 clarified signature: name of standard_proof is authentic, otherwise empty;
wenzelm
parents: 70915
diff changeset
  2159
    val xml = (typargs, (args, (prop', no_thm_names prf'))) |>
70881
80f3a290b35c clarified proof export;
wenzelm
parents: 70878
diff changeset
  2160
      let
80f3a290b35c clarified proof export;
wenzelm
parents: 70878
diff changeset
  2161
        open XML.Encode Term_XML.Encode;
80f3a290b35c clarified proof export;
wenzelm
parents: 70878
diff changeset
  2162
        val encode_vars = list (pair string typ);
80f3a290b35c clarified proof export;
wenzelm
parents: 70878
diff changeset
  2163
        val encode_term = encode_standard_term consts;
80f3a290b35c clarified proof export;
wenzelm
parents: 70878
diff changeset
  2164
        val encode_proof = encode_standard_proof consts;
80f3a290b35c clarified proof export;
wenzelm
parents: 70878
diff changeset
  2165
      in pair (list (pair string sort)) (pair encode_vars (pair encode_term encode_proof)) end;
70500
5d540dbbe5ba export each PThm node separately: slightly more scalable;
wenzelm
parents: 70497
diff changeset
  2166
  in
70991
f9f7c34b7dd4 more scalable protocol_message: use XML.body directly (Output.output hook is not required);
wenzelm
parents: 70990
diff changeset
  2167
    Export.export_params
70500
5d540dbbe5ba export each PThm node separately: slightly more scalable;
wenzelm
parents: 70497
diff changeset
  2168
     {theory = thy,
5d540dbbe5ba export each PThm node separately: slightly more scalable;
wenzelm
parents: 70497
diff changeset
  2169
      binding = Path.binding0 (Path.make ["proofs", string_of_int i]),
5d540dbbe5ba export each PThm node separately: slightly more scalable;
wenzelm
parents: 70497
diff changeset
  2170
      executable = false,
5d540dbbe5ba export each PThm node separately: slightly more scalable;
wenzelm
parents: 70497
diff changeset
  2171
      compress = true,
70991
f9f7c34b7dd4 more scalable protocol_message: use XML.body directly (Output.output hook is not required);
wenzelm
parents: 70990
diff changeset
  2172
      strict = false} xml
70500
5d540dbbe5ba export each PThm node separately: slightly more scalable;
wenzelm
parents: 70497
diff changeset
  2173
  end;
5d540dbbe5ba export each PThm node separately: slightly more scalable;
wenzelm
parents: 70497
diff changeset
  2174
70458
9e2173eb23eb more direct proofs for type classes;
wenzelm
parents: 70454
diff changeset
  2175
fun prepare_thm_proof unconstrain thy classrel_proof arity_proof
70494
41108e3e9ca5 formal position for PThm nodes;
wenzelm
parents: 70493
diff changeset
  2176
    (name, pos) shyps hyps concl promises body =
11519
0c96830636a1 New implementation of LF style proof terms.
berghofe
parents:
diff changeset
  2177
  let
70422
wenzelm
parents: 70420
diff changeset
  2178
    val named = name <> "";
wenzelm
parents: 70420
diff changeset
  2179
32810
f3466a5645fa back to simple fold_body_thms and fulfill_proof/thm_proof (reverting a900d3cd47cc) -- the cycle check is implicit in the future computation of join_proofs;
wenzelm
parents: 32785
diff changeset
  2180
    val prop = Logic.list_implies (hyps, concl);
70416
wenzelm
parents: 70415
diff changeset
  2181
    val args = prop_args prop;
28803
d90258bbb18f reworked type proof: MinProof is vacous, added Promise, refined PThm (with serial);
wenzelm
parents: 28329
diff changeset
  2182
70436
251f1fb44ccd clarified signature;
wenzelm
parents: 70435
diff changeset
  2183
    val (ucontext, prop1) = Logic.unconstrainT shyps prop;
36882
f33760bb8ca0 conditionally unconstrain thm proofs -- loosely based on the version by krauss/schropp;
wenzelm
parents: 36880
diff changeset
  2184
70416
wenzelm
parents: 70415
diff changeset
  2185
    val PBody {oracles = oracles0, thms = thms0, proof = prf} = body;
37251
72c7e636067b normalize and postprocess proof body in a separate future, taking care of platforms without multithreading (greately improves parallelization in general without the overhead of promised proofs, cf. usedir -q 0);
wenzelm
parents: 37236
diff changeset
  2186
    val body0 =
70416
wenzelm
parents: 70415
diff changeset
  2187
      Future.value
wenzelm
parents: 70415
diff changeset
  2188
        (PBody {oracles = oracles0, thms = thms0,
wenzelm
parents: 70415
diff changeset
  2189
          proof = if proofs_enabled () then fold_rev implies_intr_proof hyps prf else MinProof});
70400
65bbef66e2ec clarified treatment of unnamed PThm nodes (from close_derivation): retain full proof, publish when named;
wenzelm
parents: 70399
diff changeset
  2190
70396
425c5f9bc61a support export_proofs, prune_proofs;
wenzelm
parents: 70395
diff changeset
  2191
    fun new_prf () =
425c5f9bc61a support export_proofs, prune_proofs;
wenzelm
parents: 70395
diff changeset
  2192
      let
70577
ed651a58afe4 back to uniform serial (reverting 913b4afb6ac2): this allows to treat derivation id like name space entity id;
wenzelm
parents: 70573
diff changeset
  2193
        val i = serial ();
70458
9e2173eb23eb more direct proofs for type classes;
wenzelm
parents: 70454
diff changeset
  2194
        val unconstrainT =
9e2173eb23eb more direct proofs for type classes;
wenzelm
parents: 70454
diff changeset
  2195
          unconstrainT_proof (Sign.classes_of thy) classrel_proof arity_proof ucontext;
71018
d32ed8927a42 more robust expose_proofs corresponding to register_proofs/consolidate_theory;
wenzelm
parents: 71010
diff changeset
  2196
        val postproc = map_proof_of (unconstrainT #> named ? rew_proof thy);
70396
425c5f9bc61a support export_proofs, prune_proofs;
wenzelm
parents: 70395
diff changeset
  2197
      in (i, fulfill_proof_future thy promises postproc body0) end;
70395
af88c05696bd clarified postproc: apply shrink_proof last, e.g. relevant for export of full proof term;
wenzelm
parents: 70394
diff changeset
  2198
36880
49d3cc859a12 avoid redundant rebinding of name/prop -- probably introduced accidentally in 80bb72a0f577;
wenzelm
parents: 36879
diff changeset
  2199
    val (i, body') =
71022
6504ea98623c uniform "prune_proofs" for Thm_Node / PThm, but it is in conflict with export_proofs of re-used nodes;
wenzelm
parents: 71018
diff changeset
  2200
      (*somewhat non-deterministic proof boxes!*)
6504ea98623c uniform "prune_proofs" for Thm_Node / PThm, but it is in conflict with export_proofs of re-used nodes;
wenzelm
parents: 71018
diff changeset
  2201
      if export_enabled () then new_prf ()
6504ea98623c uniform "prune_proofs" for Thm_Node / PThm, but it is in conflict with export_proofs of re-used nodes;
wenzelm
parents: 71018
diff changeset
  2202
      else
6504ea98623c uniform "prune_proofs" for Thm_Node / PThm, but it is in conflict with export_proofs of re-used nodes;
wenzelm
parents: 71018
diff changeset
  2203
        (case strip_combt (fst (strip_combP prf)) of
6504ea98623c uniform "prune_proofs" for Thm_Node / PThm, but it is in conflict with export_proofs of re-used nodes;
wenzelm
parents: 71018
diff changeset
  2204
          (PThm ({serial = ser, name = a, prop = prop', types = NONE, ...}, thm_body'), args') =>
6504ea98623c uniform "prune_proofs" for Thm_Node / PThm, but it is in conflict with export_proofs of re-used nodes;
wenzelm
parents: 71018
diff changeset
  2205
            if (a = "" orelse a = name) andalso prop' = prop1 andalso args' = args then
6504ea98623c uniform "prune_proofs" for Thm_Node / PThm, but it is in conflict with export_proofs of re-used nodes;
wenzelm
parents: 71018
diff changeset
  2206
              let
6504ea98623c uniform "prune_proofs" for Thm_Node / PThm, but it is in conflict with export_proofs of re-used nodes;
wenzelm
parents: 71018
diff changeset
  2207
                val Thm_Body {body = body', ...} = thm_body';
6504ea98623c uniform "prune_proofs" for Thm_Node / PThm, but it is in conflict with export_proofs of re-used nodes;
wenzelm
parents: 71018
diff changeset
  2208
                val i = if a = "" andalso named then serial () else ser;
6504ea98623c uniform "prune_proofs" for Thm_Node / PThm, but it is in conflict with export_proofs of re-used nodes;
wenzelm
parents: 71018
diff changeset
  2209
              in (i, body' |> ser <> i ? Future.map (map_proof_of (rew_proof thy))) end
6504ea98623c uniform "prune_proofs" for Thm_Node / PThm, but it is in conflict with export_proofs of re-used nodes;
wenzelm
parents: 71018
diff changeset
  2210
            else new_prf ()
6504ea98623c uniform "prune_proofs" for Thm_Node / PThm, but it is in conflict with export_proofs of re-used nodes;
wenzelm
parents: 71018
diff changeset
  2211
        | _ => new_prf ());
70416
wenzelm
parents: 70415
diff changeset
  2212
71018
d32ed8927a42 more robust expose_proofs corresponding to register_proofs/consolidate_theory;
wenzelm
parents: 71010
diff changeset
  2213
    val open_proof = not named ? rew_proof thy;
d32ed8927a42 more robust expose_proofs corresponding to register_proofs/consolidate_theory;
wenzelm
parents: 71010
diff changeset
  2214
d32ed8927a42 more robust expose_proofs corresponding to register_proofs/consolidate_theory;
wenzelm
parents: 71010
diff changeset
  2215
    val export =
d32ed8927a42 more robust expose_proofs corresponding to register_proofs/consolidate_theory;
wenzelm
parents: 71010
diff changeset
  2216
      if export_enabled () then
70889
62b3acc801ec more robust: avoid looping Lazy.force due to misinterpreted interrupt;
wenzelm
parents: 70888
diff changeset
  2217
        Lazy.lazy (fn () =>
62b3acc801ec more robust: avoid looping Lazy.force due to misinterpreted interrupt;
wenzelm
parents: 70888
diff changeset
  2218
          join_proof body' |> open_proof |> export_proof thy i prop1 handle exn =>
62b3acc801ec more robust: avoid looping Lazy.force due to misinterpreted interrupt;
wenzelm
parents: 70888
diff changeset
  2219
            if Exn.is_interrupt exn then
62b3acc801ec more robust: avoid looping Lazy.force due to misinterpreted interrupt;
wenzelm
parents: 70888
diff changeset
  2220
              raise Fail ("Interrupt: potential resource problems while exporting proof " ^
62b3acc801ec more robust: avoid looping Lazy.force due to misinterpreted interrupt;
wenzelm
parents: 70888
diff changeset
  2221
                string_of_int i)
71018
d32ed8927a42 more robust expose_proofs corresponding to register_proofs/consolidate_theory;
wenzelm
parents: 71010
diff changeset
  2222
            else Exn.reraise exn)
d32ed8927a42 more robust expose_proofs corresponding to register_proofs/consolidate_theory;
wenzelm
parents: 71010
diff changeset
  2223
      else no_export;
70502
b053c9ed0b0a more careful export of unnamed proof boxes: avoid duplicates via memoing;
wenzelm
parents: 70501
diff changeset
  2224
71022
6504ea98623c uniform "prune_proofs" for Thm_Node / PThm, but it is in conflict with export_proofs of re-used nodes;
wenzelm
parents: 71018
diff changeset
  2225
    val thm_body = prune_body body';
70595
2ae7e33c950f clarified thm_id vs. thm_node/thm: retain theory_name;
wenzelm
parents: 70593
diff changeset
  2226
    val theory_name = Context.theory_long_name thy;
71022
6504ea98623c uniform "prune_proofs" for Thm_Node / PThm, but it is in conflict with export_proofs of re-used nodes;
wenzelm
parents: 71018
diff changeset
  2227
    val thm = (i, make_thm_node theory_name name prop1 thm_body export);
70423
wenzelm
parents: 70422
diff changeset
  2228
70595
2ae7e33c950f clarified thm_id vs. thm_node/thm: retain theory_name;
wenzelm
parents: 70593
diff changeset
  2229
    val header = thm_header i ([pos, Position.thread_data ()]) theory_name name prop1 NONE;
71022
6504ea98623c uniform "prune_proofs" for Thm_Node / PThm, but it is in conflict with export_proofs of re-used nodes;
wenzelm
parents: 71018
diff changeset
  2230
    val head = PThm (header, Thm_Body {open_proof = open_proof, body = thm_body});
70423
wenzelm
parents: 70422
diff changeset
  2231
    val proof =
70439
145fb19d906d tuned -- non-strict args;
wenzelm
parents: 70437
diff changeset
  2232
      if unconstrain then
145fb19d906d tuned -- non-strict args;
wenzelm
parents: 70437
diff changeset
  2233
        proof_combt' (head, (map o Option.map o Term.map_types) (#map_atyps ucontext) args)
145fb19d906d tuned -- non-strict args;
wenzelm
parents: 70437
diff changeset
  2234
      else
145fb19d906d tuned -- non-strict args;
wenzelm
parents: 70437
diff changeset
  2235
        proof_combP (proof_combt' (head, args),
71777
3875815f5967 clarified signature: avoid clash with Isabelle/Scala Term.OFCLASS on case-insensible file-system;
wenzelm
parents: 71533
diff changeset
  2236
          map PClass (#outer_constraints ucontext) @ map Hyp hyps);
70590
8214aa5d5650 tuned signature;
wenzelm
parents: 70589
diff changeset
  2237
  in (thm, proof) end;
36883
4ed0d72def50 added Proofterm.unconstrain_thm_proof for Thm.unconstrainT -- loosely based on the version by krauss/schropp;
wenzelm
parents: 36882
diff changeset
  2238
70422
wenzelm
parents: 70420
diff changeset
  2239
in
wenzelm
parents: 70420
diff changeset
  2240
70887
de6f137a07d3 tuned -- more stable type inference;
wenzelm
parents: 70884
diff changeset
  2241
fun thm_proof thy = prepare_thm_proof false thy;
36883
4ed0d72def50 added Proofterm.unconstrain_thm_proof for Thm.unconstrainT -- loosely based on the version by krauss/schropp;
wenzelm
parents: 36882
diff changeset
  2242
70458
9e2173eb23eb more direct proofs for type classes;
wenzelm
parents: 70454
diff changeset
  2243
fun unconstrain_thm_proof thy classrel_proof arity_proof shyps concl promises body =
70494
41108e3e9ca5 formal position for PThm nodes;
wenzelm
parents: 70493
diff changeset
  2244
  prepare_thm_proof true thy classrel_proof arity_proof ("", Position.none)
41108e3e9ca5 formal position for PThm nodes;
wenzelm
parents: 70493
diff changeset
  2245
    shyps [] concl promises body;
36883
4ed0d72def50 added Proofterm.unconstrain_thm_proof for Thm.unconstrainT -- loosely based on the version by krauss/schropp;
wenzelm
parents: 36882
diff changeset
  2246
70422
wenzelm
parents: 70420
diff changeset
  2247
end;
wenzelm
parents: 70420
diff changeset
  2248
11519
0c96830636a1 New implementation of LF style proof terms.
berghofe
parents:
diff changeset
  2249
70892
aadb5c23af24 clarified proof_boxes (requires prune_proofs=false);
wenzelm
parents: 70889
diff changeset
  2250
(* PThm identity *)
70416
wenzelm
parents: 70415
diff changeset
  2251
70551
9e87e978be5e clarified identity of PThm nodes: do not reuse old id after renaming -- enforce uniqueness of substructures;
wenzelm
parents: 70541
diff changeset
  2252
fun get_identity shyps hyps prop prf =
70436
251f1fb44ccd clarified signature;
wenzelm
parents: 70435
diff changeset
  2253
  let val (_, prop) = Logic.unconstrainT shyps (Logic.list_implies (hyps, prop)) in
70493
a9053fa30909 clarified ML types;
wenzelm
parents: 70492
diff changeset
  2254
    (case fst (strip_combt (fst (strip_combP prf))) of
70551
9e87e978be5e clarified identity of PThm nodes: do not reuse old id after renaming -- enforce uniqueness of substructures;
wenzelm
parents: 70541
diff changeset
  2255
      PThm ({serial, theory_name, name, prop = prop', ...}, _) =>
9e87e978be5e clarified identity of PThm nodes: do not reuse old id after renaming -- enforce uniqueness of substructures;
wenzelm
parents: 70541
diff changeset
  2256
        if prop = prop'
9e87e978be5e clarified identity of PThm nodes: do not reuse old id after renaming -- enforce uniqueness of substructures;
wenzelm
parents: 70541
diff changeset
  2257
        then SOME {serial = serial, theory_name = theory_name, name = name} else NONE
9e87e978be5e clarified identity of PThm nodes: do not reuse old id after renaming -- enforce uniqueness of substructures;
wenzelm
parents: 70541
diff changeset
  2258
    | _ => NONE)
36877
7699f7fafde7 added Proofterm.get_name variants according to krauss/schropp;
wenzelm
parents: 36742
diff changeset
  2259
  end;
7699f7fafde7 added Proofterm.get_name variants according to krauss/schropp;
wenzelm
parents: 36742
diff changeset
  2260
70554
10d41bf28b92 clarified signature;
wenzelm
parents: 70551
diff changeset
  2261
fun get_approximative_name shyps hyps prop prf =
70551
9e87e978be5e clarified identity of PThm nodes: do not reuse old id after renaming -- enforce uniqueness of substructures;
wenzelm
parents: 70541
diff changeset
  2262
  Option.map #name (get_identity shyps hyps prop prf) |> the_default "";
9e87e978be5e clarified identity of PThm nodes: do not reuse old id after renaming -- enforce uniqueness of substructures;
wenzelm
parents: 70541
diff changeset
  2263
70554
10d41bf28b92 clarified signature;
wenzelm
parents: 70551
diff changeset
  2264
70892
aadb5c23af24 clarified proof_boxes (requires prune_proofs=false);
wenzelm
parents: 70889
diff changeset
  2265
(* thm_id *)
aadb5c23af24 clarified proof_boxes (requires prune_proofs=false);
wenzelm
parents: 70889
diff changeset
  2266
70577
ed651a58afe4 back to uniform serial (reverting 913b4afb6ac2): this allows to treat derivation id like name space entity id;
wenzelm
parents: 70573
diff changeset
  2267
type thm_id = {serial: serial, theory_name: string};
70554
10d41bf28b92 clarified signature;
wenzelm
parents: 70551
diff changeset
  2268
70892
aadb5c23af24 clarified proof_boxes (requires prune_proofs=false);
wenzelm
parents: 70889
diff changeset
  2269
fun make_thm_id (serial, theory_name) : thm_id =
aadb5c23af24 clarified proof_boxes (requires prune_proofs=false);
wenzelm
parents: 70889
diff changeset
  2270
  {serial = serial, theory_name = theory_name};
aadb5c23af24 clarified proof_boxes (requires prune_proofs=false);
wenzelm
parents: 70889
diff changeset
  2271
70915
bd4d37edfee4 clarified expand_proof/expand_name: allow more detailed control via thm_header;
wenzelm
parents: 70909
diff changeset
  2272
fun thm_header_id ({serial, theory_name, ...}: thm_header) =
bd4d37edfee4 clarified expand_proof/expand_name: allow more detailed control via thm_header;
wenzelm
parents: 70909
diff changeset
  2273
  make_thm_id (serial, theory_name);
bd4d37edfee4 clarified expand_proof/expand_name: allow more detailed control via thm_header;
wenzelm
parents: 70909
diff changeset
  2274
70595
2ae7e33c950f clarified thm_id vs. thm_node/thm: retain theory_name;
wenzelm
parents: 70593
diff changeset
  2275
fun thm_id (serial, thm_node) : thm_id =
70892
aadb5c23af24 clarified proof_boxes (requires prune_proofs=false);
wenzelm
parents: 70889
diff changeset
  2276
  make_thm_id (serial, thm_node_theory_name thm_node);
70595
2ae7e33c950f clarified thm_id vs. thm_node/thm: retain theory_name;
wenzelm
parents: 70593
diff changeset
  2277
70554
10d41bf28b92 clarified signature;
wenzelm
parents: 70551
diff changeset
  2278
fun get_id shyps hyps prop prf : thm_id option =
70551
9e87e978be5e clarified identity of PThm nodes: do not reuse old id after renaming -- enforce uniqueness of substructures;
wenzelm
parents: 70541
diff changeset
  2279
  (case get_identity shyps hyps prop prf of
9e87e978be5e clarified identity of PThm nodes: do not reuse old id after renaming -- enforce uniqueness of substructures;
wenzelm
parents: 70541
diff changeset
  2280
    NONE => NONE
9e87e978be5e clarified identity of PThm nodes: do not reuse old id after renaming -- enforce uniqueness of substructures;
wenzelm
parents: 70541
diff changeset
  2281
  | SOME {name = "", ...} => NONE
70892
aadb5c23af24 clarified proof_boxes (requires prune_proofs=false);
wenzelm
parents: 70889
diff changeset
  2282
  | SOME {serial, theory_name, ...} => SOME (make_thm_id (serial, theory_name)));
70551
9e87e978be5e clarified identity of PThm nodes: do not reuse old id after renaming -- enforce uniqueness of substructures;
wenzelm
parents: 70541
diff changeset
  2283
70979
7abe5abb4c05 more detailed proof term output;
wenzelm
parents: 70978
diff changeset
  2284
fun this_id NONE _ = false
7abe5abb4c05 more detailed proof term output;
wenzelm
parents: 70978
diff changeset
  2285
  | this_id (SOME (thm_id: thm_id)) (thm_id': thm_id) = #serial thm_id = #serial thm_id';
7abe5abb4c05 more detailed proof term output;
wenzelm
parents: 70978
diff changeset
  2286
70976
d86798eddc14 more accurate proof_boxes -- from actual proof body;
wenzelm
parents: 70948
diff changeset
  2287
d86798eddc14 more accurate proof_boxes -- from actual proof body;
wenzelm
parents: 70948
diff changeset
  2288
(* proof boxes: intermediate PThm nodes *)
d86798eddc14 more accurate proof_boxes -- from actual proof body;
wenzelm
parents: 70948
diff changeset
  2289
d86798eddc14 more accurate proof_boxes -- from actual proof body;
wenzelm
parents: 70948
diff changeset
  2290
fun proof_boxes {included, excluded} proofs =
d86798eddc14 more accurate proof_boxes -- from actual proof body;
wenzelm
parents: 70948
diff changeset
  2291
  let
d86798eddc14 more accurate proof_boxes -- from actual proof body;
wenzelm
parents: 70948
diff changeset
  2292
    fun boxes_of (Abst (_, _, prf)) = boxes_of prf
d86798eddc14 more accurate proof_boxes -- from actual proof body;
wenzelm
parents: 70948
diff changeset
  2293
      | boxes_of (AbsP (_, _, prf)) = boxes_of prf
d86798eddc14 more accurate proof_boxes -- from actual proof body;
wenzelm
parents: 70948
diff changeset
  2294
      | boxes_of (prf % _) = boxes_of prf
d86798eddc14 more accurate proof_boxes -- from actual proof body;
wenzelm
parents: 70948
diff changeset
  2295
      | boxes_of (prf1 %% prf2) = boxes_of prf1 #> boxes_of prf2
d86798eddc14 more accurate proof_boxes -- from actual proof body;
wenzelm
parents: 70948
diff changeset
  2296
      | boxes_of (PThm (header as {serial = i, ...}, thm_body)) =
d86798eddc14 more accurate proof_boxes -- from actual proof body;
wenzelm
parents: 70948
diff changeset
  2297
          (fn boxes =>
d86798eddc14 more accurate proof_boxes -- from actual proof body;
wenzelm
parents: 70948
diff changeset
  2298
            let val thm_id = thm_header_id header in
d86798eddc14 more accurate proof_boxes -- from actual proof body;
wenzelm
parents: 70948
diff changeset
  2299
              if Inttab.defined boxes i orelse (excluded thm_id andalso not (included thm_id))
d86798eddc14 more accurate proof_boxes -- from actual proof body;
wenzelm
parents: 70948
diff changeset
  2300
              then boxes
d86798eddc14 more accurate proof_boxes -- from actual proof body;
wenzelm
parents: 70948
diff changeset
  2301
              else
d86798eddc14 more accurate proof_boxes -- from actual proof body;
wenzelm
parents: 70948
diff changeset
  2302
                let
d86798eddc14 more accurate proof_boxes -- from actual proof body;
wenzelm
parents: 70948
diff changeset
  2303
                  val prf' = thm_body_proof_open thm_body;
d86798eddc14 more accurate proof_boxes -- from actual proof body;
wenzelm
parents: 70948
diff changeset
  2304
                  val boxes' = Inttab.update (i, (header, prf')) boxes;
d86798eddc14 more accurate proof_boxes -- from actual proof body;
wenzelm
parents: 70948
diff changeset
  2305
                in boxes_of prf' boxes' end
d86798eddc14 more accurate proof_boxes -- from actual proof body;
wenzelm
parents: 70948
diff changeset
  2306
            end)
d86798eddc14 more accurate proof_boxes -- from actual proof body;
wenzelm
parents: 70948
diff changeset
  2307
      | boxes_of MinProof = raise MIN_PROOF ()
d86798eddc14 more accurate proof_boxes -- from actual proof body;
wenzelm
parents: 70948
diff changeset
  2308
      | boxes_of _ = I;
d86798eddc14 more accurate proof_boxes -- from actual proof body;
wenzelm
parents: 70948
diff changeset
  2309
  in Inttab.fold_rev (cons o #2) (fold boxes_of proofs Inttab.empty) [] end;
d86798eddc14 more accurate proof_boxes -- from actual proof body;
wenzelm
parents: 70948
diff changeset
  2310
11519
0c96830636a1 New implementation of LF style proof terms.
berghofe
parents:
diff changeset
  2311
end;
0c96830636a1 New implementation of LF style proof terms.
berghofe
parents:
diff changeset
  2312
70578
7bb2bbb3ccd6 tuned signature;
wenzelm
parents: 70577
diff changeset
  2313
structure Basic_Proofterm =
7bb2bbb3ccd6 tuned signature;
wenzelm
parents: 70577
diff changeset
  2314
struct
7bb2bbb3ccd6 tuned signature;
wenzelm
parents: 70577
diff changeset
  2315
  datatype proof = datatype Proofterm.proof
7bb2bbb3ccd6 tuned signature;
wenzelm
parents: 70577
diff changeset
  2316
  datatype proof_body = datatype Proofterm.proof_body
7bb2bbb3ccd6 tuned signature;
wenzelm
parents: 70577
diff changeset
  2317
  val op %> = Proofterm.%>
7bb2bbb3ccd6 tuned signature;
wenzelm
parents: 70577
diff changeset
  2318
end;
7bb2bbb3ccd6 tuned signature;
wenzelm
parents: 70577
diff changeset
  2319
32094
89b9210c7506 prefer simultaneous join -- for improved scheduling;
wenzelm
parents: 32057
diff changeset
  2320
open Basic_Proofterm;