author | wenzelm |
Fri, 18 Nov 2011 21:50:50 +0100 | |
changeset 45580 | 136e3faf74da |
parent 44338 | 700008399ee5 |
child 45595 | fe57d786fd5b |
permissions | -rw-r--r-- |
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(* Title: Pure/sorts.ML |
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Author: Markus Wenzel and Stefan Berghofer, TU Muenchen |
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The order-sorted algebra of type classes. |
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Classes denote (possibly empty) collections of types that are |
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partially ordered by class inclusion. They are represented |
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symbolically by strings. |
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Sorts are intersections of finitely many classes. They are represented |
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by lists of classes. Normal forms of sorts are sorted lists of |
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minimal classes (wrt. current class inclusion). |
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*) |
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signature SORTS = |
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sig |
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val make: sort list -> sort Ord_List.T |
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val subset: sort Ord_List.T * sort Ord_List.T -> bool |
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val union: sort Ord_List.T -> sort Ord_List.T -> sort Ord_List.T |
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val subtract: sort Ord_List.T -> sort Ord_List.T -> sort Ord_List.T |
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val remove_sort: sort -> sort Ord_List.T -> sort Ord_List.T |
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val insert_sort: sort -> sort Ord_List.T -> sort Ord_List.T |
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val insert_typ: typ -> sort Ord_List.T -> sort Ord_List.T |
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val insert_typs: typ list -> sort Ord_List.T -> sort Ord_List.T |
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val insert_term: term -> sort Ord_List.T -> sort Ord_List.T |
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val insert_terms: term list -> sort Ord_List.T -> sort Ord_List.T |
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type algebra |
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val classes_of: algebra -> serial Graph.T |
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arities: no need to maintain original codomain (cf. f795c1164708) -- completion happens in axclass.ML;
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val arities_of: algebra -> (class * sort list) list Symtab.table |
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val all_classes: algebra -> class list |
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val super_classes: algebra -> class -> class list |
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val class_less: algebra -> class * class -> bool |
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val class_le: algebra -> class * class -> bool |
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val sort_eq: algebra -> sort * sort -> bool |
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val sort_le: algebra -> sort * sort -> bool |
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val sorts_le: algebra -> sort list * sort list -> bool |
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val inter_sort: algebra -> sort * sort -> sort |
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val minimize_sort: algebra -> sort -> sort |
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val complete_sort: algebra -> sort -> sort |
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val minimal_sorts: algebra -> sort list -> sort Ord_List.T |
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val certify_class: algebra -> class -> class (*exception TYPE*) |
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val certify_sort: algebra -> sort -> sort (*exception TYPE*) |
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val add_class: Proof.context -> class * class list -> algebra -> algebra |
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val add_classrel: Proof.context -> class * class -> algebra -> algebra |
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val add_arities: Proof.context -> string * (class * sort list) list -> algebra -> algebra |
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val empty_algebra: algebra |
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val merge_algebra: Proof.context -> algebra * algebra -> algebra |
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val subalgebra: Proof.context -> (class -> bool) -> (class * string -> sort list option) |
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-> algebra -> (sort -> sort) * algebra |
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added class_error and exception CLASS_ERROR (supercedes DOMAIN);
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type class_error |
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simplified Sorts.class_error: plain Proof.context;
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val class_error: Proof.context -> class_error -> string |
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exception CLASS_ERROR of class_error |
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val mg_domain: algebra -> string -> sort -> sort list (*exception CLASS_ERROR*) |
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val meet_sort: algebra -> typ * sort |
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-> sort Vartab.table -> sort Vartab.table (*exception CLASS_ERROR*) |
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val meet_sort_typ: algebra -> typ * sort -> typ -> typ (*exception CLASS_ERROR*) |
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val of_sort: algebra -> typ * sort -> bool |
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val of_sort_derivation: algebra -> |
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of_sort_derivation: pass-through full type information -- following the version by krauss/schropp;
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{class_relation: typ -> 'a * class -> class -> 'a, |
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type_constructor: string * typ list -> ('a * class) list list -> class -> 'a, |
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renamed of_sort_derivation record fields (avoid clash with Alice keywords);
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type_variable: typ -> ('a * class) list} -> |
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typ * sort -> 'a list (*exception CLASS_ERROR*) |
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Sorts.of_sort_derivation: do not use slow Graph.irreducible_paths here, which not always needed (SUBTLE CHANGE IN SEMANTICS);
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val classrel_derivation: algebra -> |
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Sorts.of_sort_derivation: do not use slow Graph.irreducible_paths here, which not always needed (SUBTLE CHANGE IN SEMANTICS);
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('a * class -> class -> 'a) -> 'a * class -> class -> 'a (*exception CLASS_ERROR*) |
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witness_sorts: proper type witnesses for hyps, not invented "'hyp" variables;
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val witness_sorts: algebra -> string list -> (typ * sort) list -> sort list -> (typ * sort) list |
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end; |
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structure Sorts: SORTS = |
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struct |
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(** ordered lists of sorts **) |
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val make = Ord_List.make Term_Ord.sort_ord; |
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val subset = Ord_List.subset Term_Ord.sort_ord; |
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val union = Ord_List.union Term_Ord.sort_ord; |
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val subtract = Ord_List.subtract Term_Ord.sort_ord; |
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val remove_sort = Ord_List.remove Term_Ord.sort_ord; |
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val insert_sort = Ord_List.insert Term_Ord.sort_ord; |
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removed obsolete eq_sort, mem_sort, subset_sort, eq_set_sort, ins_sort, union_sort, rems_sort;
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fun insert_typ (TFree (_, S)) Ss = insert_sort S Ss |
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| insert_typ (TVar (_, S)) Ss = insert_sort S Ss |
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| insert_typ (Type (_, Ts)) Ss = insert_typs Ts Ss |
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and insert_typs [] Ss = Ss |
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| insert_typs (T :: Ts) Ss = insert_typs Ts (insert_typ T Ss); |
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incorporate sort ops from term.ML; use Graph.T; misc cleanup;
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fun insert_term (Const (_, T)) Ss = insert_typ T Ss |
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| insert_term (Free (_, T)) Ss = insert_typ T Ss |
59381032be14
removed obsolete eq_sort, mem_sort, subset_sort, eq_set_sort, ins_sort, union_sort, rems_sort;
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| insert_term (Var (_, T)) Ss = insert_typ T Ss |
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removed obsolete eq_sort, mem_sort, subset_sort, eq_set_sort, ins_sort, union_sort, rems_sort;
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| insert_term (Bound _) Ss = Ss |
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| insert_term (Abs (_, T, t)) Ss = insert_term t (insert_typ T Ss) |
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| insert_term (t $ u) Ss = insert_term t (insert_term u Ss); |
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incorporate sort ops from term.ML; use Graph.T; misc cleanup;
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removed obsolete eq_sort, mem_sort, subset_sort, eq_set_sort, ins_sort, union_sort, rems_sort;
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fun insert_terms [] Ss = Ss |
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removed obsolete eq_sort, mem_sort, subset_sort, eq_set_sort, ins_sort, union_sort, rems_sort;
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| insert_terms (t :: ts) Ss = insert_terms ts (insert_term t Ss); |
14782
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incorporate sort ops from term.ML; use Graph.T; misc cleanup;
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|
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incorporate sort ops from term.ML; use Graph.T; misc cleanup;
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(** order-sorted algebra **) |
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(* |
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classes: graph representing class declarations together with proper |
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incorporate sort ops from term.ML; use Graph.T; misc cleanup;
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subclass relation, which needs to be transitive and acyclic. |
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incorporate sort ops from term.ML; use Graph.T; misc cleanup;
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arities: table of association lists of all type arities; (t, ars) |
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means that type constructor t has the arities ars; an element |
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(c, Ss) of ars represents the arity t::(Ss)c. "Coregularity" of |
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the arities structure requires that for any two declarations |
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t::(Ss1)c1 and t::(Ss2)c2 such that c1 <= c2 holds Ss1 <= Ss2. |
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*) |
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datatype algebra = Algebra of |
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{classes: serial Graph.T, |
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arities: (class * sort list) list Symtab.table}; |
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fun classes_of (Algebra {classes, ...}) = classes; |
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fun arities_of (Algebra {arities, ...}) = arities; |
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fun make_algebra (classes, arities) = |
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Algebra {classes = classes, arities = arities}; |
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fun map_classes f (Algebra {classes, arities}) = make_algebra (f classes, arities); |
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fun map_arities f (Algebra {classes, arities}) = make_algebra (classes, f arities); |
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(* classes *) |
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fun all_classes (Algebra {classes, ...}) = Graph.all_preds classes (Graph.maximals classes); |
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refined Graph implementation: more abstract/scalable Graph.Keys instead of plain lists -- order of adjacency is now standardized wrt. Key.ord;
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val super_classes = Graph.immediate_succs o classes_of; |
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(* class relations *) |
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val class_less = Graph.is_edge o classes_of; |
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fun class_le algebra (c1, c2) = c1 = c2 orelse class_less algebra (c1, c2); |
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(* sort relations *) |
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fun sort_le algebra (S1, S2) = |
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S1 = S2 orelse forall (fn c2 => exists (fn c1 => class_le algebra (c1, c2)) S1) S2; |
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fun sorts_le algebra (Ss1, Ss2) = |
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ListPair.all (sort_le algebra) (Ss1, Ss2); |
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fun sort_eq algebra (S1, S2) = |
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sort_le algebra (S1, S2) andalso sort_le algebra (S2, S1); |
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(* intersection *) |
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fun inter_class algebra c S = |
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let |
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fun intr [] = [c] |
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| intr (S' as c' :: c's) = |
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if class_le algebra (c', c) then S' |
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else if class_le algebra (c, c') then intr c's |
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else c' :: intr c's |
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in intr S end; |
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fun inter_sort algebra (S1, S2) = |
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sort_strings (fold (inter_class algebra) S1 S2); |
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(* normal forms *) |
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fun minimize_sort _ [] = [] |
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| minimize_sort _ (S as [_]) = S |
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| minimize_sort algebra S = |
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filter (fn c => not (exists (fn c' => class_less algebra (c', c)) S)) S |
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|> sort_distinct string_ord; |
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fun complete_sort algebra = |
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Graph.all_succs (classes_of algebra) o minimize_sort algebra; |
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fun minimal_sorts algebra raw_sorts = |
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let |
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fun le S1 S2 = sort_le algebra (S1, S2); |
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val sorts = make (map (minimize_sort algebra) raw_sorts); |
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in sorts |> filter_out (fn S => exists (fn S' => le S' S andalso not (le S S')) sorts) end; |
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(* certify *) |
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fun certify_class algebra c = |
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Table.lookup_key and Graph.get_entry allow to retrieve the original key, which is not necessarily identical to the given one;
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#1 (Graph.get_entry (classes_of algebra) c) |
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handle Graph.UNDEF _ => raise TYPE ("Undeclared class: " ^ quote c, [], []); |
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|
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fun certify_sort classes = map (certify_class classes); |
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(** build algebras **) |
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(* classes *) |
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||
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replaced exception TableFun/GraphFun.DUPS by TableFun/GraphFun.DUP;
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fun err_dup_class c = error ("Duplicate declaration of class: " ^ quote c); |
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fun err_cyclic_classes ctxt css = |
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error (cat_lines (map (fn cs => |
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"Cycle in class relation: " ^ Syntax.string_of_classrel ctxt cs) css)); |
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fun add_class ctxt (c, cs) = map_classes (fn classes => |
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let |
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val classes' = classes |> Graph.new_node (c, serial ()) |
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replaced exception TableFun/GraphFun.DUPS by TableFun/GraphFun.DUP;
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handle Graph.DUP dup => err_dup_class dup; |
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val classes'' = classes' |> fold Graph.add_edge_trans_acyclic (map (pair c) cs) |
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handle Graph.CYCLES css => err_cyclic_classes ctxt css; |
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in classes'' end); |
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214 |
(* arities *) |
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216 |
local |
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217 |
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fun for_classes _ NONE = "" |
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| for_classes ctxt (SOME (c1, c2)) = " for classes " ^ Syntax.string_of_classrel ctxt [c1, c2]; |
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fun err_conflict ctxt t cc (c, Ss) (c', Ss') = |
222 |
error ("Conflict of type arities" ^ for_classes ctxt cc ^ ":\n " ^ |
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Syntax.string_of_arity ctxt (t, Ss, [c]) ^ " and\n " ^ |
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Syntax.string_of_arity ctxt (t, Ss', [c'])); |
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fun coregular ctxt algebra t (c, Ss) ars = |
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let |
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228 |
fun conflict (c', Ss') = |
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if class_le algebra (c, c') andalso not (sorts_le algebra (Ss, Ss')) then |
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SOME ((c, c'), (c', Ss')) |
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else if class_le algebra (c', c) andalso not (sorts_le algebra (Ss', Ss)) then |
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SOME ((c', c), (c', Ss')) |
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else NONE; |
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in |
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(case get_first conflict ars of |
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SOME ((c1, c2), (c', Ss')) => err_conflict ctxt t (SOME (c1, c2)) (c, Ss) (c', Ss') |
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| NONE => (c, Ss) :: ars) |
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end; |
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240 |
fun complete algebra (c, Ss) = map (rpair Ss) (c :: super_classes algebra c); |
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|
42387 | 242 |
fun insert ctxt algebra t (c, Ss) ars = |
19514 | 243 |
(case AList.lookup (op =) ars c of |
42387 | 244 |
NONE => coregular ctxt algebra t (c, Ss) ars |
37248
8e8e5f9d1441
arities: no need to maintain original codomain (cf. f795c1164708) -- completion happens in axclass.ML;
wenzelm
parents:
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diff
changeset
|
245 |
| SOME Ss' => |
19645 | 246 |
if sorts_le algebra (Ss, Ss') then ars |
37248
8e8e5f9d1441
arities: no need to maintain original codomain (cf. f795c1164708) -- completion happens in axclass.ML;
wenzelm
parents:
36429
diff
changeset
|
247 |
else if sorts_le algebra (Ss', Ss) |
42387 | 248 |
then coregular ctxt algebra t (c, Ss) (remove (op =) (c, Ss') ars) |
249 |
else err_conflict ctxt t NONE (c, Ss) (c, Ss')); |
|
19514 | 250 |
|
35975
cef3c78ace0a
more efficient merge_algebra for important special cases -- tricky due to required completion if class algebra changes;
wenzelm
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changeset
|
251 |
in |
cef3c78ace0a
more efficient merge_algebra for important special cases -- tricky due to required completion if class algebra changes;
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parents:
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changeset
|
252 |
|
42387 | 253 |
fun insert_ars ctxt algebra t = fold_rev (insert ctxt algebra t); |
35975
cef3c78ace0a
more efficient merge_algebra for important special cases -- tricky due to required completion if class algebra changes;
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parents:
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diff
changeset
|
254 |
|
42387 | 255 |
fun insert_complete_ars ctxt algebra (t, ars) arities = |
19645 | 256 |
let val ars' = |
257 |
Symtab.lookup_list arities t |
|
42387 | 258 |
|> fold_rev (insert_ars ctxt algebra t) (map (complete algebra) ars); |
19645 | 259 |
in Symtab.update (t, ars') arities end; |
19514 | 260 |
|
42387 | 261 |
fun add_arities ctxt arg algebra = |
262 |
algebra |> map_arities (insert_complete_ars ctxt algebra arg); |
|
19514 | 263 |
|
42387 | 264 |
fun add_arities_table ctxt algebra = |
265 |
Symtab.fold (fn (t, ars) => insert_complete_ars ctxt algebra (t, ars)); |
|
19514 | 266 |
|
267 |
end; |
|
268 |
||
19529 | 269 |
|
19645 | 270 |
(* classrel *) |
271 |
||
42387 | 272 |
fun rebuild_arities ctxt algebra = algebra |> map_arities (fn arities => |
19645 | 273 |
Symtab.empty |
42387 | 274 |
|> add_arities_table ctxt algebra arities); |
19645 | 275 |
|
42387 | 276 |
fun add_classrel ctxt rel = rebuild_arities ctxt o map_classes (fn classes => |
19645 | 277 |
classes |> Graph.add_edge_trans_acyclic rel |
42387 | 278 |
handle Graph.CYCLES css => err_cyclic_classes ctxt css); |
19645 | 279 |
|
280 |
||
281 |
(* empty and merge *) |
|
282 |
||
283 |
val empty_algebra = make_algebra (Graph.empty, Symtab.empty); |
|
284 |
||
42387 | 285 |
fun merge_algebra ctxt |
19645 | 286 |
(Algebra {classes = classes1, arities = arities1}, |
287 |
Algebra {classes = classes2, arities = arities2}) = |
|
288 |
let |
|
289 |
val classes' = Graph.merge_trans_acyclic (op =) (classes1, classes2) |
|
23655
d2d1138e0ddc
replaced exception TableFun/GraphFun.DUPS by TableFun/GraphFun.DUP;
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parents:
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diff
changeset
|
290 |
handle Graph.DUP c => err_dup_class c |
42387 | 291 |
| Graph.CYCLES css => err_cyclic_classes ctxt css; |
19645 | 292 |
val algebra0 = make_algebra (classes', Symtab.empty); |
35975
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more efficient merge_algebra for important special cases -- tricky due to required completion if class algebra changes;
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changeset
|
293 |
val arities' = |
cef3c78ace0a
more efficient merge_algebra for important special cases -- tricky due to required completion if class algebra changes;
wenzelm
parents:
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diff
changeset
|
294 |
(case (pointer_eq (classes1, classes2), pointer_eq (arities1, arities2)) of |
cef3c78ace0a
more efficient merge_algebra for important special cases -- tricky due to required completion if class algebra changes;
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changeset
|
295 |
(true, true) => arities1 |
cef3c78ace0a
more efficient merge_algebra for important special cases -- tricky due to required completion if class algebra changes;
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parents:
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changeset
|
296 |
| (true, false) => (*no completion*) |
cef3c78ace0a
more efficient merge_algebra for important special cases -- tricky due to required completion if class algebra changes;
wenzelm
parents:
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diff
changeset
|
297 |
(arities1, arities2) |> Symtab.join (fn t => fn (ars1, ars2) => |
cef3c78ace0a
more efficient merge_algebra for important special cases -- tricky due to required completion if class algebra changes;
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parents:
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diff
changeset
|
298 |
if pointer_eq (ars1, ars2) then raise Symtab.SAME |
42387 | 299 |
else insert_ars ctxt algebra0 t ars2 ars1) |
35975
cef3c78ace0a
more efficient merge_algebra for important special cases -- tricky due to required completion if class algebra changes;
wenzelm
parents:
35961
diff
changeset
|
300 |
| (false, true) => (*unary completion*) |
cef3c78ace0a
more efficient merge_algebra for important special cases -- tricky due to required completion if class algebra changes;
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parents:
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changeset
|
301 |
Symtab.empty |
42387 | 302 |
|> add_arities_table ctxt algebra0 arities1 |
35975
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more efficient merge_algebra for important special cases -- tricky due to required completion if class algebra changes;
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parents:
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diff
changeset
|
303 |
| (false, false) => (*binary completion*) |
cef3c78ace0a
more efficient merge_algebra for important special cases -- tricky due to required completion if class algebra changes;
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parents:
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diff
changeset
|
304 |
Symtab.empty |
42387 | 305 |
|> add_arities_table ctxt algebra0 arities1 |
306 |
|> add_arities_table ctxt algebra0 arities2); |
|
19645 | 307 |
in make_algebra (classes', arities') end; |
308 |
||
21933
819ef284720b
classes: more direct way to achieve topological sorting;
wenzelm
parents:
21926
diff
changeset
|
309 |
|
37248
8e8e5f9d1441
arities: no need to maintain original codomain (cf. f795c1164708) -- completion happens in axclass.ML;
wenzelm
parents:
36429
diff
changeset
|
310 |
(* algebra projections *) (* FIXME potentially violates abstract type integrity *) |
28922 | 311 |
|
42387 | 312 |
fun subalgebra ctxt P sargs (algebra as Algebra {classes, arities}) = |
19952 | 313 |
let |
24732 | 314 |
val restrict_sort = minimize_sort algebra o filter P o Graph.all_succs classes; |
37248
8e8e5f9d1441
arities: no need to maintain original codomain (cf. f795c1164708) -- completion happens in axclass.ML;
wenzelm
parents:
36429
diff
changeset
|
315 |
fun restrict_arity t (c, Ss) = |
8e8e5f9d1441
arities: no need to maintain original codomain (cf. f795c1164708) -- completion happens in axclass.ML;
wenzelm
parents:
36429
diff
changeset
|
316 |
if P c then |
8e8e5f9d1441
arities: no need to maintain original codomain (cf. f795c1164708) -- completion happens in axclass.ML;
wenzelm
parents:
36429
diff
changeset
|
317 |
(case sargs (c, t) of |
8e8e5f9d1441
arities: no need to maintain original codomain (cf. f795c1164708) -- completion happens in axclass.ML;
wenzelm
parents:
36429
diff
changeset
|
318 |
SOME sorts => |
8e8e5f9d1441
arities: no need to maintain original codomain (cf. f795c1164708) -- completion happens in axclass.ML;
wenzelm
parents:
36429
diff
changeset
|
319 |
SOME (c, Ss |> map2 (curry (inter_sort algebra)) sorts |> map restrict_sort) |
8e8e5f9d1441
arities: no need to maintain original codomain (cf. f795c1164708) -- completion happens in axclass.ML;
wenzelm
parents:
36429
diff
changeset
|
320 |
| NONE => NONE) |
22181
39104d1c43ca
added explicit query function for arities to subalgebra projection
haftmann
parents:
21933
diff
changeset
|
321 |
else NONE; |
21933
819ef284720b
classes: more direct way to achieve topological sorting;
wenzelm
parents:
21926
diff
changeset
|
322 |
val classes' = classes |> Graph.subgraph P; |
39020 | 323 |
val arities' = arities |> Symtab.map (map_filter o restrict_arity); |
42387 | 324 |
in (restrict_sort, rebuild_arities ctxt (make_algebra (classes', arities'))) end; |
20465 | 325 |
|
19645 | 326 |
|
19529 | 327 |
|
328 |
(** sorts of types **) |
|
329 |
||
35961
00e48e1d9afd
Sorts.of_sort_derivation: do not use slow Graph.irreducible_paths here, which not always needed (SUBTLE CHANGE IN SEMANTICS);
wenzelm
parents:
35408
diff
changeset
|
330 |
(* errors -- performance tuning via delayed message composition *) |
19578
f93b7637a5e6
added class_error and exception CLASS_ERROR (supercedes DOMAIN);
wenzelm
parents:
19531
diff
changeset
|
331 |
|
26639 | 332 |
datatype class_error = |
36105 | 333 |
No_Classrel of class * class | |
334 |
No_Arity of string * class | |
|
335 |
No_Subsort of sort * sort; |
|
19529 | 336 |
|
42385
b46b47775cbe
simplified Sorts.class_error: plain Proof.context;
wenzelm
parents:
42383
diff
changeset
|
337 |
fun class_error ctxt (No_Classrel (c1, c2)) = |
b46b47775cbe
simplified Sorts.class_error: plain Proof.context;
wenzelm
parents:
42383
diff
changeset
|
338 |
"No class relation " ^ Syntax.string_of_classrel ctxt [c1, c2] |
b46b47775cbe
simplified Sorts.class_error: plain Proof.context;
wenzelm
parents:
42383
diff
changeset
|
339 |
| class_error ctxt (No_Arity (a, c)) = |
b46b47775cbe
simplified Sorts.class_error: plain Proof.context;
wenzelm
parents:
42383
diff
changeset
|
340 |
"No type arity " ^ Syntax.string_of_arity ctxt (a, [], [c]) |
b46b47775cbe
simplified Sorts.class_error: plain Proof.context;
wenzelm
parents:
42383
diff
changeset
|
341 |
| class_error ctxt (No_Subsort (S1, S2)) = |
42383
0ae4ad40d7b5
simplified pretty printing context, which is only required for certain kernel operations;
wenzelm
parents:
39687
diff
changeset
|
342 |
"Cannot derive subsort relation " ^ |
42385
b46b47775cbe
simplified Sorts.class_error: plain Proof.context;
wenzelm
parents:
42383
diff
changeset
|
343 |
Syntax.string_of_sort ctxt S1 ^ " < " ^ Syntax.string_of_sort ctxt S2; |
19529 | 344 |
|
19578
f93b7637a5e6
added class_error and exception CLASS_ERROR (supercedes DOMAIN);
wenzelm
parents:
19531
diff
changeset
|
345 |
exception CLASS_ERROR of class_error; |
f93b7637a5e6
added class_error and exception CLASS_ERROR (supercedes DOMAIN);
wenzelm
parents:
19531
diff
changeset
|
346 |
|
f93b7637a5e6
added class_error and exception CLASS_ERROR (supercedes DOMAIN);
wenzelm
parents:
19531
diff
changeset
|
347 |
|
f93b7637a5e6
added class_error and exception CLASS_ERROR (supercedes DOMAIN);
wenzelm
parents:
19531
diff
changeset
|
348 |
(* mg_domain *) |
19529 | 349 |
|
19645 | 350 |
fun mg_domain algebra a S = |
19529 | 351 |
let |
19645 | 352 |
val arities = arities_of algebra; |
19529 | 353 |
fun dom c = |
354 |
(case AList.lookup (op =) (Symtab.lookup_list arities a) c of |
|
36105 | 355 |
NONE => raise CLASS_ERROR (No_Arity (a, c)) |
37248
8e8e5f9d1441
arities: no need to maintain original codomain (cf. f795c1164708) -- completion happens in axclass.ML;
wenzelm
parents:
36429
diff
changeset
|
356 |
| SOME Ss => Ss); |
19645 | 357 |
fun dom_inter c Ss = ListPair.map (inter_sort algebra) (dom c, Ss); |
19529 | 358 |
in |
359 |
(case S of |
|
360 |
[] => raise Fail "Unknown domain of empty intersection" |
|
361 |
| c :: cs => fold dom_inter cs (dom c)) |
|
362 |
end; |
|
363 |
||
364 |
||
26639 | 365 |
(* meet_sort *) |
366 |
||
367 |
fun meet_sort algebra = |
|
368 |
let |
|
369 |
fun inters S S' = inter_sort algebra (S, S'); |
|
370 |
fun meet _ [] = I |
|
371 |
| meet (TFree (_, S)) S' = |
|
372 |
if sort_le algebra (S, S') then I |
|
36105 | 373 |
else raise CLASS_ERROR (No_Subsort (S, S')) |
26639 | 374 |
| meet (TVar (v, S)) S' = |
375 |
if sort_le algebra (S, S') then I |
|
376 |
else Vartab.map_default (v, S) (inters S') |
|
377 |
| meet (Type (a, Ts)) S = fold2 meet Ts (mg_domain algebra a S); |
|
378 |
in uncurry meet end; |
|
379 |
||
28665 | 380 |
fun meet_sort_typ algebra (T, S) = |
37248
8e8e5f9d1441
arities: no need to maintain original codomain (cf. f795c1164708) -- completion happens in axclass.ML;
wenzelm
parents:
36429
diff
changeset
|
381 |
let val tab = meet_sort algebra (T, S) Vartab.empty; |
8e8e5f9d1441
arities: no need to maintain original codomain (cf. f795c1164708) -- completion happens in axclass.ML;
wenzelm
parents:
36429
diff
changeset
|
382 |
in Term.map_type_tvar (fn (v, _) => TVar (v, (the o Vartab.lookup tab) v)) end; |
28665 | 383 |
|
26639 | 384 |
|
19529 | 385 |
(* of_sort *) |
386 |
||
19645 | 387 |
fun of_sort algebra = |
19529 | 388 |
let |
389 |
fun ofS (_, []) = true |
|
19645 | 390 |
| ofS (TFree (_, S), S') = sort_le algebra (S, S') |
391 |
| ofS (TVar (_, S), S') = sort_le algebra (S, S') |
|
19529 | 392 |
| ofS (Type (a, Ts), S) = |
19645 | 393 |
let val Ss = mg_domain algebra a S in |
19529 | 394 |
ListPair.all ofS (Ts, Ss) |
19578
f93b7637a5e6
added class_error and exception CLASS_ERROR (supercedes DOMAIN);
wenzelm
parents:
19531
diff
changeset
|
395 |
end handle CLASS_ERROR _ => false; |
19529 | 396 |
in ofS end; |
397 |
||
398 |
||
27498 | 399 |
(* animating derivations *) |
400 |
||
32791 | 401 |
fun of_sort_derivation algebra {class_relation, type_constructor, type_variable} = |
19529 | 402 |
let |
27555 | 403 |
val arities = arities_of algebra; |
19578
f93b7637a5e6
added class_error and exception CLASS_ERROR (supercedes DOMAIN);
wenzelm
parents:
19531
diff
changeset
|
404 |
|
36104
fecb587a1d0e
of_sort_derivation: weaken bypasses derivation for identical sort -- accomodate proof terms by krauss/schropp, for example;
wenzelm
parents:
36103
diff
changeset
|
405 |
fun weaken T D1 S2 = |
fecb587a1d0e
of_sort_derivation: weaken bypasses derivation for identical sort -- accomodate proof terms by krauss/schropp, for example;
wenzelm
parents:
36103
diff
changeset
|
406 |
let val S1 = map snd D1 in |
fecb587a1d0e
of_sort_derivation: weaken bypasses derivation for identical sort -- accomodate proof terms by krauss/schropp, for example;
wenzelm
parents:
36103
diff
changeset
|
407 |
if S1 = S2 then map fst D1 |
fecb587a1d0e
of_sort_derivation: weaken bypasses derivation for identical sort -- accomodate proof terms by krauss/schropp, for example;
wenzelm
parents:
36103
diff
changeset
|
408 |
else |
fecb587a1d0e
of_sort_derivation: weaken bypasses derivation for identical sort -- accomodate proof terms by krauss/schropp, for example;
wenzelm
parents:
36103
diff
changeset
|
409 |
S2 |> map (fn c2 => |
fecb587a1d0e
of_sort_derivation: weaken bypasses derivation for identical sort -- accomodate proof terms by krauss/schropp, for example;
wenzelm
parents:
36103
diff
changeset
|
410 |
(case D1 |> find_first (fn (_, c1) => class_le algebra (c1, c2)) of |
fecb587a1d0e
of_sort_derivation: weaken bypasses derivation for identical sort -- accomodate proof terms by krauss/schropp, for example;
wenzelm
parents:
36103
diff
changeset
|
411 |
SOME d1 => class_relation T d1 c2 |
36105 | 412 |
| NONE => raise CLASS_ERROR (No_Subsort (S1, S2)))) |
36104
fecb587a1d0e
of_sort_derivation: weaken bypasses derivation for identical sort -- accomodate proof terms by krauss/schropp, for example;
wenzelm
parents:
36103
diff
changeset
|
413 |
end; |
19529 | 414 |
|
36103 | 415 |
fun derive (_, []) = [] |
44338
700008399ee5
refined Graph implementation: more abstract/scalable Graph.Keys instead of plain lists -- order of adjacency is now standardized wrt. Key.ord;
wenzelm
parents:
43792
diff
changeset
|
416 |
| derive (Type (a, Us), S) = |
19529 | 417 |
let |
19645 | 418 |
val Ss = mg_domain algebra a S; |
36103 | 419 |
val dom = map2 (fn U => fn S => derive (U, S) ~~ S) Us Ss; |
19529 | 420 |
in |
421 |
S |> map (fn c => |
|
422 |
let |
|
37248
8e8e5f9d1441
arities: no need to maintain original codomain (cf. f795c1164708) -- completion happens in axclass.ML;
wenzelm
parents:
36429
diff
changeset
|
423 |
val Ss' = the (AList.lookup (op =) (Symtab.lookup_list arities a) c); |
36102
a51d1d154c71
of_sort_derivation: pass-through full type information -- following the version by krauss/schropp;
wenzelm
parents:
35975
diff
changeset
|
424 |
val dom' = map (fn ((U, d), S') => weaken U d S' ~~ S') ((Us ~~ dom) ~~ Ss'); |
37248
8e8e5f9d1441
arities: no need to maintain original codomain (cf. f795c1164708) -- completion happens in axclass.ML;
wenzelm
parents:
36429
diff
changeset
|
425 |
in type_constructor (a, Us) dom' c end) |
19529 | 426 |
end |
36103 | 427 |
| derive (T, S) = weaken T (type_variable T) S; |
428 |
in derive end; |
|
19529 | 429 |
|
35961
00e48e1d9afd
Sorts.of_sort_derivation: do not use slow Graph.irreducible_paths here, which not always needed (SUBTLE CHANGE IN SEMANTICS);
wenzelm
parents:
35408
diff
changeset
|
430 |
fun classrel_derivation algebra class_relation = |
00e48e1d9afd
Sorts.of_sort_derivation: do not use slow Graph.irreducible_paths here, which not always needed (SUBTLE CHANGE IN SEMANTICS);
wenzelm
parents:
35408
diff
changeset
|
431 |
let |
00e48e1d9afd
Sorts.of_sort_derivation: do not use slow Graph.irreducible_paths here, which not always needed (SUBTLE CHANGE IN SEMANTICS);
wenzelm
parents:
35408
diff
changeset
|
432 |
fun path (x, c1 :: c2 :: cs) = path (class_relation (x, c1) c2, c2 :: cs) |
00e48e1d9afd
Sorts.of_sort_derivation: do not use slow Graph.irreducible_paths here, which not always needed (SUBTLE CHANGE IN SEMANTICS);
wenzelm
parents:
35408
diff
changeset
|
433 |
| path (x, _) = x; |
00e48e1d9afd
Sorts.of_sort_derivation: do not use slow Graph.irreducible_paths here, which not always needed (SUBTLE CHANGE IN SEMANTICS);
wenzelm
parents:
35408
diff
changeset
|
434 |
in |
00e48e1d9afd
Sorts.of_sort_derivation: do not use slow Graph.irreducible_paths here, which not always needed (SUBTLE CHANGE IN SEMANTICS);
wenzelm
parents:
35408
diff
changeset
|
435 |
fn (x, c1) => fn c2 => |
00e48e1d9afd
Sorts.of_sort_derivation: do not use slow Graph.irreducible_paths here, which not always needed (SUBTLE CHANGE IN SEMANTICS);
wenzelm
parents:
35408
diff
changeset
|
436 |
(case Graph.irreducible_paths (classes_of algebra) (c1, c2) of |
36105 | 437 |
[] => raise CLASS_ERROR (No_Classrel (c1, c2)) |
35961
00e48e1d9afd
Sorts.of_sort_derivation: do not use slow Graph.irreducible_paths here, which not always needed (SUBTLE CHANGE IN SEMANTICS);
wenzelm
parents:
35408
diff
changeset
|
438 |
| cs :: _ => path (x, cs)) |
00e48e1d9afd
Sorts.of_sort_derivation: do not use slow Graph.irreducible_paths here, which not always needed (SUBTLE CHANGE IN SEMANTICS);
wenzelm
parents:
35408
diff
changeset
|
439 |
end; |
00e48e1d9afd
Sorts.of_sort_derivation: do not use slow Graph.irreducible_paths here, which not always needed (SUBTLE CHANGE IN SEMANTICS);
wenzelm
parents:
35408
diff
changeset
|
440 |
|
19529 | 441 |
|
442 |
(* witness_sorts *) |
|
443 |
||
19645 | 444 |
fun witness_sorts algebra types hyps sorts = |
19529 | 445 |
let |
19645 | 446 |
fun le S1 S2 = sort_le algebra (S1, S2); |
31946
99ac0321cd47
witness_sorts: proper type witnesses for hyps, not invented "'hyp" variables;
wenzelm
parents:
30242
diff
changeset
|
447 |
fun get S2 (T, S1) = if le S1 S2 then SOME (T, S2) else NONE; |
19645 | 448 |
fun mg_dom t S = SOME (mg_domain algebra t S) handle CLASS_ERROR _ => NONE; |
19529 | 449 |
|
19578
f93b7637a5e6
added class_error and exception CLASS_ERROR (supercedes DOMAIN);
wenzelm
parents:
19531
diff
changeset
|
450 |
fun witn_sort _ [] solved_failed = (SOME (propT, []), solved_failed) |
f93b7637a5e6
added class_error and exception CLASS_ERROR (supercedes DOMAIN);
wenzelm
parents:
19531
diff
changeset
|
451 |
| witn_sort path S (solved, failed) = |
f93b7637a5e6
added class_error and exception CLASS_ERROR (supercedes DOMAIN);
wenzelm
parents:
19531
diff
changeset
|
452 |
if exists (le S) failed then (NONE, (solved, failed)) |
19529 | 453 |
else |
31946
99ac0321cd47
witness_sorts: proper type witnesses for hyps, not invented "'hyp" variables;
wenzelm
parents:
30242
diff
changeset
|
454 |
(case get_first (get S) solved of |
19578
f93b7637a5e6
added class_error and exception CLASS_ERROR (supercedes DOMAIN);
wenzelm
parents:
19531
diff
changeset
|
455 |
SOME w => (SOME w, (solved, failed)) |
19529 | 456 |
| NONE => |
31946
99ac0321cd47
witness_sorts: proper type witnesses for hyps, not invented "'hyp" variables;
wenzelm
parents:
30242
diff
changeset
|
457 |
(case get_first (get S) hyps of |
19578
f93b7637a5e6
added class_error and exception CLASS_ERROR (supercedes DOMAIN);
wenzelm
parents:
19531
diff
changeset
|
458 |
SOME w => (SOME w, (w :: solved, failed)) |
19584 | 459 |
| NONE => witn_types path types S (solved, failed))) |
19529 | 460 |
|
19578
f93b7637a5e6
added class_error and exception CLASS_ERROR (supercedes DOMAIN);
wenzelm
parents:
19531
diff
changeset
|
461 |
and witn_sorts path x = fold_map (witn_sort path) x |
19529 | 462 |
|
19578
f93b7637a5e6
added class_error and exception CLASS_ERROR (supercedes DOMAIN);
wenzelm
parents:
19531
diff
changeset
|
463 |
and witn_types _ [] S (solved, failed) = (NONE, (solved, S :: failed)) |
f93b7637a5e6
added class_error and exception CLASS_ERROR (supercedes DOMAIN);
wenzelm
parents:
19531
diff
changeset
|
464 |
| witn_types path (t :: ts) S solved_failed = |
19529 | 465 |
(case mg_dom t S of |
466 |
SOME SS => |
|
467 |
(*do not descend into stronger args (achieving termination)*) |
|
468 |
if exists (fn D => le D S orelse exists (le D) path) SS then |
|
19578
f93b7637a5e6
added class_error and exception CLASS_ERROR (supercedes DOMAIN);
wenzelm
parents:
19531
diff
changeset
|
469 |
witn_types path ts S solved_failed |
19529 | 470 |
else |
19578
f93b7637a5e6
added class_error and exception CLASS_ERROR (supercedes DOMAIN);
wenzelm
parents:
19531
diff
changeset
|
471 |
let val (ws, (solved', failed')) = witn_sorts (S :: path) SS solved_failed in |
19529 | 472 |
if forall is_some ws then |
473 |
let val w = (Type (t, map (#1 o the) ws), S) |
|
19578
f93b7637a5e6
added class_error and exception CLASS_ERROR (supercedes DOMAIN);
wenzelm
parents:
19531
diff
changeset
|
474 |
in (SOME w, (w :: solved', failed')) end |
f93b7637a5e6
added class_error and exception CLASS_ERROR (supercedes DOMAIN);
wenzelm
parents:
19531
diff
changeset
|
475 |
else witn_types path ts S (solved', failed') |
19529 | 476 |
end |
19578
f93b7637a5e6
added class_error and exception CLASS_ERROR (supercedes DOMAIN);
wenzelm
parents:
19531
diff
changeset
|
477 |
| NONE => witn_types path ts S solved_failed); |
19529 | 478 |
|
19584 | 479 |
in map_filter I (#1 (witn_sorts [] sorts ([], []))) end; |
19529 | 480 |
|
19514 | 481 |
end; |