Chain0.Innermodule Elt : Base.Equal.SElements must have equality. While this is an extra restriction on top of the Core equivalent, it is required by Make0, and helps us define chaining operations.
We export Elt.t as elt for compatibility with Core-style containers.
include Generic_types.S0 with type elt = Elt.t with type t := Outer.Elt.ttype elt = Elt.tThe element type.
include Traversable_types.Generic
with type 'a t := Outer.Elt.t
and type 'a elt := Elt.tinclude Generic_types.Generic
with type 'a t := Outer.Elt.t
with type 'a elt := Elt.tmodule On_monad
(M : Base.Monad.S) :
Traversable_types.Generic_on_monad
with type 'a t := Outer.Elt.t
and type 'a elt := Elt.t
and module M := MOn_monad implements monadic traversal operators for a given monad M.
We can do generic container operations.
include Base.Container.Generic
with type 'a t := Outer.Elt.t
and type 'a elt := Elt.tWe can do non-monadic mapping operations.
include Mappable_types.Generic
with type 'a t := Outer.Elt.t
and type 'a elt := Elt.tGeneric refers to the container type as 'a t, and the element type as 'a elt; substitute t/elt (arity-0) or 'a t/'a (arity-1) accordingly below.
include Generic_types.Generic
with type 'a t := Outer.Elt.t
with type 'a elt := Elt.tval fold_map :
Outer.Elt.t ->
f:('acc -> Elt.t -> 'acc * Elt.t) ->
init:'acc ->
'acc * Outer.Elt.tfold_map c ~f ~init folds f over every t in c, threading through an accumulator with initial value init.
val mapi : f:(Base.int -> Elt.t -> Elt.t) -> Outer.Elt.t -> Outer.Elt.tmapi ~f t maps f across t, passing in an increasing position counter.
module With_errors :
Traversable_types.Generic_on_monad
with type 'a t := Outer.Elt.t
and type 'a elt := Elt.t
and module M := Base.Or_errorWith_errors specialises On_monad to the error monad.
include Mappable_types.S0_container
with type t := Outer.Elt.t
and type elt := Elt.tinclude Mappable_types.S0 with type t := Outer.Elt.t with type elt := Elt.tinclude Generic_types.S0 with type t := Outer.Elt.t with type elt := Elt.tinclude Mappable_types.Generic
with type 'a t := Outer.Elt.t
and type 'a elt := Elt.tGeneric refers to the container type as 'a t, and the element type as 'a elt; substitute t/elt (arity-0) or 'a t/'a (arity-1) accordingly below.
include Generic_types.Generic
with type 'a t := Outer.Elt.t
with type 'a elt := Elt.tval map : Outer.Elt.t -> f:(Elt.t -> Elt.t) -> Outer.Elt.tmap c ~f maps f over every t in c.
include Base.Container.S0 with type t := Outer.Elt.t and type elt := Elt.tval mem : Outer.Elt.t -> Elt.t -> boolChecks whether the provided element is there, using equality on elts.
val length : Outer.Elt.t -> intval is_empty : Outer.Elt.t -> boolval iter : Outer.Elt.t -> f:(Elt.t -> unit) -> unititer must allow exceptions raised in f to escape, terminating the iteration cleanly. The same holds for all functions below taking an f.
val fold :
Outer.Elt.t ->
init:'accum ->
f:('accum -> Elt.t -> 'accum) ->
'accumfold t ~init ~f returns f (... f (f (f init e1) e2) e3 ...) en, where e1..en are the elements of t.
val fold_result :
Outer.Elt.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.
val fold_until :
Outer.Elt.t ->
init:'accum ->
f:
('accum ->
Elt.t ->
('accum, 'final) Base__.Container_intf.Export.Continue_or_stop.t) ->
finish:('accum -> 'final) ->
'finalfold_until t ~init ~f ~finish is a short-circuiting version of fold. If f returns Stop _ the computation ceases and results in that value. If f returns Continue _, the fold will proceed. If f never returns Stop _, the final result is computed by finish.
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 -3val exists : Outer.Elt.t -> f:(Elt.t -> bool) -> boolReturns true if and only if there exists an element for which the provided function evaluates to true. This is a short-circuiting operation.
val for_all : Outer.Elt.t -> f:(Elt.t -> bool) -> boolReturns true if and only if the provided function evaluates to true for all elements. This is a short-circuiting operation.
val count : Outer.Elt.t -> f:(Elt.t -> 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) ->
Outer.Elt.t ->
f:(Elt.t -> 'sum) ->
'sumReturns the sum of f i for all i in the container.
val find : Outer.Elt.t -> f:(Elt.t -> bool) -> Elt.t optionReturns as an option the first element for which f evaluates to true.
val find_map : Outer.Elt.t -> f:(Elt.t -> 'a option) -> 'a optionReturns the first evaluation of f that returns Some, and returns None if there is no such element.
val to_list : Outer.Elt.t -> Elt.t listval to_array : Outer.Elt.t -> Elt.t arrayval min_elt : Outer.Elt.t -> compare:(Elt.t -> Elt.t -> int) -> Elt.t optionReturns a min (resp. max) element from the collection using the provided compare function. In case of a tie, the first element encountered while traversing the collection is returned. The implementation uses fold so it has the same complexity as fold. Returns None iff the collection is empty.
val max_elt : Outer.Elt.t -> compare:(Elt.t -> Elt.t -> int) -> Elt.t option