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sequence type
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sequence.ml
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31
sequence.ml
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(** {2 Transient iterators, that abstract on a finite sequence of elements. *)
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(** Sequence abstract iterator type *)
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type 'a sequence = {
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seq_fun: ('a -> unit) -> unit;
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}
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(** Build a sequence from a iter function *)
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let from_iter f = {
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seq_fun = f;
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}
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(** Consume the sequence, passing all its arguments to the function *)
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let iter f seq = seq.seq_fun f
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(** Fold over elements of the sequence, consuming it *)
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let fold f init seq =
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let r = ref init in
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seq.seq_fun (fun elt -> r := f !r elt);
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!r
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(** Map objects of the sequence into other elements, lazily *)
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let map f seq =
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let seq_fun' k = seq.seq_fun (fun x -> k (f x)) in
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{ seq_fun=seq_fun'; }
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(** Filter on elements of the sequence *)
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let filter p seq =
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let seq_fun' k = seq.seq_fun (fun x -> if p x then k x) in
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{ seq_fun=seq_fun'; }
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20
sequence.mli
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20
sequence.mli
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(** {2 Transient iterators, that abstract on a finite sequence of elements. *)
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type 'a sequence
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(** Sequence abstract iterator type *)
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val from_iter : (('a -> unit) -> unit) -> 'a sequence
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(** Build a sequence from a iter function *)
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val iter : ('a -> unit) -> 'a sequence -> unit
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(** Consume the sequence, passing all its arguments to the function *)
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val fold : ('b -> 'a -> 'b) -> 'b -> 'a sequence -> 'b
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(** Fold over elements of the sequence, consuming it *)
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val map : ('a -> 'b) -> 'a sequence -> 'b sequence
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(** Map objects of the sequence into other elements, lazily *)
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val filter : ('a -> bool) -> 'a sequence -> 'a sequence
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(** Filter on elements of the sequence *)
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