Set.Treeinclude Set_intf.Make_S_plain_tree(Elt).Stype t = (Elt.t, Elt.comparator_witness) Set_intf.Tree.tval compare : t -> t -> Base.Int.ttype named = (Elt.t, Elt.comparator_witness) Set_intf.Tree.Named.tinclude Set_intf.Creators_and_accessors0 with type ('a, 'b) set := ('a, 'b) Set_intf.Tree.t with type t := t with type tree
:= t with type elt := Elt.t with type named := named with type comparator_witness := Elt.comparator_witnessinclude Set_intf.Accessors0 with type t := t with type tree := t with type elt := Elt.t with type named
:= named with type comparator_witness := Elt.comparator_witnessinclude Set_intf.Set.Accessors0 with type t := t with type tree := t with type elt := Elt.t with type named
:= named with type comparator_witness := Elt.comparator_witnessinclude Base.Container.S0 with type t := t with type elt := Elt.tval length : t -> intval is_empty : t -> booliter must allow exceptions raised in f to escape, terminating the iteration cleanly. The same holds for all functions below taking an f.
fold t ~init ~f returns f (... f (f (f init e1) e2) e3 ...) en, where e1..en are the elements of t.
val fold_result : t -> init:'accum -> f:('accum -> Elt.t -> ('accum, 'e) Base.Result.t) -> ('accum, 'e) Base.Result.tfold_result t ~init ~f is a short-circuiting version of fold that runs in the Result monad. If f returns an Error _, that value is returned without any additional invocations of f.
Returns true if and only if there exists an element for which the provided function evaluates to true. This is a short-circuiting operation.
Returns true if and only if the provided function evaluates to true for all elements. This is a short-circuiting operation.
Returns the number of elements for which the provided function evaluates to true.
val sum : (module Base__Container_intf.Summable with type t = 'sum) -> t -> f:(Elt.t -> 'sum) -> 'sumReturns the sum of f i for all i in the container.
Returns as an option the first element for which f evaluates to true.
Returns the first evaluation of f that returns Some, and returns None if there is no such element.
val invariants : t -> boolval symmetric_diff : t -> t -> (Elt.t, Elt.t) Base.Either.t Base.Sequence.tmodule Named : sig ... endval to_sequence : ?order:[ `Increasing | `Decreasing ] -> ?greater_or_equal_to:Elt.t
-> ?less_or_equal_to:Elt.t -> t -> Elt.t Base.Sequence.tval merge_to_sequence : ?order:[ `Increasing | `Decreasing ] ->
?greater_or_equal_to:Elt.t -> ?less_or_equal_to:Elt.t -> t -> t -> (Elt.t, Elt.t) Base.Sequence.Merge_with_duplicates_element.t Base.Sequence.tval to_map : t -> f:(Elt.t -> 'data) -> (Elt.t, 'data, Elt.comparator_witness) Base.Map.tval quickcheck_observer : Elt.t Quickcheck.Observer.t -> t Quickcheck.Observer.tval quickcheck_shrinker : Elt.t Quickcheck.Shrinker.t -> t Quickcheck.Shrinker.tinclude Set_intf.Creators0 with type t := t with type tree := t with type elt := Elt.t with type comparator_witness
:= Elt.comparator_witness with type ('a, 'b) set := ('a, 'b) Set_intf.Tree.tinclude Set_intf.Set.Creators0 with type t := t with type tree := t with type elt := Elt.t with type comparator_witness
:= Elt.comparator_witness with type ('a, 'b) set := ('a, 'b) Set_intf.Tree.tval empty : tval of_sorted_array : Elt.t array -> t Base.Or_error.tval map : ('a, _) Set_intf.Tree.t -> f:('a -> Elt.t) -> tval filter_map : ('a, _) Set_intf.Tree.t -> f:('a -> Elt.t option) -> tval of_hash_set : Elt.t Hash_set.t -> tval of_map_keys : (Elt.t, _, Elt.comparator_witness) Base.Map.t -> tval quickcheck_generator : Elt.t Quickcheck.Generator.t -> t Quickcheck.Generator.tmodule Provide_of_sexp (Elt : sig ... end) : sig ... endinclude Sexpable.S with type t := tval t_of_sexp : Sexplib0.Sexp.t -> tval sexp_of_t : t -> Sexplib0.Sexp.t