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add CCSimple_queue to containers.data
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4 changed files with 140 additions and 1 deletions
2
_oasis
2
_oasis
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@ -67,7 +67,7 @@ Library "containers_data"
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CCPersistentHashtbl, CCDeque, CCFQueue, CCBV, CCMixtbl,
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CCPersistentHashtbl, CCDeque, CCFQueue, CCBV, CCMixtbl,
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CCMixmap, CCRingBuffer, CCIntMap, CCPersistentArray,
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CCMixmap, CCRingBuffer, CCIntMap, CCPersistentArray,
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CCMixset, CCGraph, CCHashSet, CCBitField,
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CCMixset, CCGraph, CCHashSet, CCBitField,
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CCHashTrie, CCWBTree, CCRAL,
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CCHashTrie, CCWBTree, CCRAL, CCSimple_queue,
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CCImmutArray, CCHet, CCZipper
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CCImmutArray, CCHet, CCZipper
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BuildDepends: bytes
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BuildDepends: bytes
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# BuildDepends: bytes, bisect_ppx
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# BuildDepends: bytes, bisect_ppx
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@ -93,6 +93,7 @@ CCPersistentArray
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CCPersistentHashtbl
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CCPersistentHashtbl
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CCRAL
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CCRAL
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CCRingBuffer
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CCRingBuffer
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CCSimple_queue
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CCTrie
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CCTrie
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CCWBTree
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CCWBTree
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}
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}
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79
src/data/CCSimple_queue.ml
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79
src/data/CCSimple_queue.ml
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@ -0,0 +1,79 @@
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(* This file is free software, part of containers. See file "license" for more details. *)
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(** {1 Functional queues (fifo)} *)
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type 'a t = {
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hd : 'a list;
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tl : 'a list;
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} (** Queue containing elements of type 'a *)
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let empty = {
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hd = [];
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tl = [];
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}
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(* invariant: if hd=[], then tl=[] *)
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let _make hd tl = match hd with
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| [] -> {hd=List.rev tl; tl=[] }
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| _::_ -> {hd; tl; }
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let is_empty q = q.hd = []
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let push x q = {q with tl = x :: q.tl; }
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let snoc q x = push x q
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let peek_exn q =
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match q.hd with
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| [] -> assert (q.tl = []); raise (Invalid_argument "Queue.peek")
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| x::_ -> x
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let peek q = match q.hd with
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| [] -> None
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| x::_ -> Some x
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let pop_exn q =
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match q.hd with
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| [] -> assert (q.tl = []); raise (Invalid_argument "Queue.peek")
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| x::hd' ->
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let q' = _make hd' q.tl in
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x, q'
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let pop q =
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try Some (pop_exn q)
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with Invalid_argument _ -> None
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let junk q =
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try
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let _, q' = pop_exn q in
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q'
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with Invalid_argument _ -> q
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(** Append two queues. Elements from the second one come
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after elements of the first one *)
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let append q1 q2 =
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{ hd=q1.hd;
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tl=q2.tl @ (List.rev_append q2.hd q1.tl);
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}
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let map f q = { hd=List.map f q.hd; tl=List.map f q.tl; }
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let size q = List.length q.hd + List.length q.tl
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let (>|=) q f = map f q
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let fold f acc q =
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let acc' = List.fold_left f acc q.hd in
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List.fold_right (fun x acc -> f acc x) q.tl acc'
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let iter f q = fold (fun () x -> f x) () q
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type 'a sequence = ('a -> unit) -> unit
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let to_seq q = fun k -> iter k q
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let of_seq seq =
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let q = ref empty in
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seq (fun x -> q := push x !q);
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!q
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59
src/data/CCSimple_queue.mli
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59
src/data/CCSimple_queue.mli
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@ -0,0 +1,59 @@
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(* This file is free software, part of containers. See file "license" for more details. *)
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(** {1 Functional queues (fifo)} *)
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(** Simple implementation of functional queues
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@since NEXT_RELEASE *)
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type +'a t
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(** Queue containing elements of type 'a *)
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val empty : 'a t
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val is_empty : 'a t -> bool
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val push : 'a -> 'a t -> 'a t
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(** Push element at the end of the queue *)
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val snoc : 'a t -> 'a -> 'a t
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(** Flip version of {!push} *)
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val peek : 'a t -> 'a option
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(** First element of the queue *)
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val peek_exn : 'a t -> 'a
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(** Same as {!peek} but
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@raise Invalid_argument if the queue is empty *)
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val pop : 'a t -> ('a * 'a t) option
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(** Get and remove the first element *)
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val pop_exn : 'a t -> ('a * 'a t)
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(** Same as {!pop}, but fails on empty queues.
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@raise Invalid_argument if the queue is empty *)
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val junk : 'a t -> 'a t
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(** Remove first element. If the queue is empty, do nothing. *)
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val append : 'a t -> 'a t -> 'a t
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(** Append two queues. Elements from the second one come
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after elements of the first one.
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Linear in the size of the second queue. *)
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val map : ('a -> 'b) -> 'a t -> 'b t
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(** Map values *)
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val (>|=) : 'a t -> ('a -> 'b) -> 'b t
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val size : 'a t -> int
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(** Number of elements in the queue (linear in time) *)
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val fold : ('b -> 'a -> 'b) -> 'b -> 'a t -> 'b
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val iter : ('a -> unit) -> 'a t -> unit
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type 'a sequence = ('a -> unit) -> unit
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val to_seq : 'a t -> 'a sequence
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val of_seq : 'a sequence -> 'a t
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