Module type Set_intf.Accessors0
include Base.Container.S0
val length : t -> intval is_empty : t -> boolval iter : t -> f:(elt -> unit) -> unititermust allow exceptions raised infto escape, terminating the iteration cleanly. The same holds for all functions below taking anf.
val fold : t -> init:'accum -> f:('accum -> elt -> 'accum) -> 'accumfold t ~init ~freturnsf (... f (f (f init e1) e2) e3 ...) en, wheree1..enare the elements oft.
val fold_result : t -> init:'accum -> f:('accum -> elt -> ('accum, 'e) Base.Result.t) -> ('accum, 'e) Base.Result.tfold_result t ~init ~fis a short-circuiting version offoldthat runs in theResultmonad. Iffreturns anError _, that value is returned without any additional invocations off.
val fold_until : t -> init:'accum -> f:('accum -> elt -> ('accum, 'final) Base__.Container_intf.Continue_or_stop.t) -> finish:('accum -> 'final) -> 'finalfold_until t ~init ~f ~finishis a short-circuiting version offold. IffreturnsStop _the computation ceases and results in that value. IffreturnsContinue _, the fold will proceed. Iffnever returnsStop _, the final result is computed byfinish.Example:
type maybe_negative = | Found_negative of int | All_nonnegative of { sum : int } (** [first_neg_or_sum list] returns the first negative number in [list], if any, otherwise returns the sum of the list. *) let first_neg_or_sum = List.fold_until ~init:0 ~f:(fun sum x -> if x < 0 then Stop (Found_negative x) else Continue (sum + x)) ~finish:(fun sum -> All_nonnegative { sum }) ;; let x = first_neg_or_sum [1; 2; 3; 4; 5] val x : maybe_negative = All_nonnegative {sum = 15} let y = first_neg_or_sum [1; 2; -3; 4; 5] val y : maybe_negative = Found_negative -3
val exists : t -> f:(elt -> bool) -> boolReturns
trueif and only if there exists an element for which the provided function evaluates totrue. This is a short-circuiting operation.
val for_all : t -> f:(elt -> bool) -> boolReturns
trueif and only if the provided function evaluates totruefor all elements. This is a short-circuiting operation.
val count : t -> f:(elt -> bool) -> intReturns 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 -> 'sum) -> 'sumReturns the sum of
f ifor alliin the container.
val find : t -> f:(elt -> bool) -> elt optionReturns as an
optionthe first element for whichfevaluates to true.
val find_map : t -> f:(elt -> 'a option) -> 'a optionReturns the first evaluation of
fthat returnsSome, and returnsNoneif there is no such element.
val to_list : t -> elt listval to_array : t -> elt arrayval min_elt : t -> compare:(elt -> elt -> int) -> elt optionReturns a min (resp. max) element from the collection using the provided
comparefunction. In case of a tie, the first element encountered while traversing the collection is returned. The implementation usesfoldso it has the same complexity asfold. ReturnsNoneiff the collection is empty.
val invariants : t -> boolval mem : t -> elt -> boolval add : t -> elt -> tval remove : t -> elt -> tval union : t -> t -> tval inter : t -> t -> tval diff : t -> t -> tval symmetric_diff : t -> t -> (elt, elt) Base.Either.t Base.Sequence.tval compare_direct : t -> t -> intval equal : t -> t -> boolval is_subset : t -> of_:t -> bool
module Named : sig ... endval fold_until : t -> init:'b -> f:('b -> elt -> ('b, 'final) Continue_or_stop.t) -> finish:('b -> 'final) -> 'finalval fold_right : t -> init:'b -> f:(elt -> 'b -> 'b) -> 'bval iter2 : t -> t -> f:([ `Left of elt | `Right of elt | `Both of elt * elt ] -> unit) -> unitval filter : t -> f:(elt -> bool) -> tval partition_tf : t -> f:(elt -> bool) -> t * tval elements : t -> elt listval min_elt : t -> elt optionval min_elt_exn : t -> eltval max_elt : t -> elt optionval max_elt_exn : t -> eltval choose : t -> elt optionval choose_exn : t -> eltval split : t -> elt -> t * elt option * tval group_by : t -> equiv:(elt -> elt -> bool) -> t listval find_exn : t -> f:(elt -> bool) -> eltval nth : t -> int -> elt optionval remove_index : t -> int -> tval to_tree : t -> treeval to_sequence : ?order:[ `Increasing | `Decreasing ] -> ?greater_or_equal_to:elt -> ?less_or_equal_to:elt -> t -> elt Base.Sequence.tval binary_search : t -> compare:(elt -> 'key -> int) -> [ `Last_strictly_less_than | `Last_less_than_or_equal_to | `Last_equal_to | `First_equal_to | `First_greater_than_or_equal_to | `First_strictly_greater_than ] -> 'key -> elt optionval binary_search_segmented : t -> segment_of:(elt -> [ `Left | `Right ]) -> [ `Last_on_left | `First_on_right ] -> elt optionval merge_to_sequence : ?order:[ `Increasing | `Decreasing ] -> ?greater_or_equal_to:elt -> ?less_or_equal_to:elt -> t -> t -> (elt, elt) Merge_to_sequence_element.t Base.Sequence.t