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https://github.com/c-cube/ocaml-containers.git
synced 2025-12-08 04:05:30 -05:00
CCMultiMap now also contains a functor to build bidirectional multimaps
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@ -225,3 +225,136 @@ module Make(K : OrderedType)(V : OrderedType) = struct
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let values m k = iter m (fun _ v -> k v)
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let values m k = iter m (fun _ v -> k v)
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end
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end
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module type BIDIR = sig
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type t
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type left
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type right
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val empty : t
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val is_empty : t -> bool
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val add : t -> left -> right -> t
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(** Add a binding (left,right) *)
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val remove : t -> left -> right -> t
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(** Remove a specific binding *)
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val cardinal_left : t -> int
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(** number of distinct left keys *)
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val cardinal_right : t -> int
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(** number of distinct right keys *)
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val remove_left : t -> left -> t
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(** Remove all bindings for the left key *)
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val remove_right : t -> right -> t
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(** Remove all bindings for the right key *)
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val mem_left : t -> left -> bool
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(** Is the left key present in at least one pair? *)
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val mem_right : t -> right -> bool
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(** Is the right key present in at least one pair? *)
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val find_left : t -> left -> right sequence
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(** Find all bindings for this given left-key *)
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val find_right : t -> right -> left sequence
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(** Find all bindings for this given right-key *)
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val find1_left : t -> left -> right option
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(** like {!find_left} but returns at most one value *)
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val find1_right : t -> right -> left option
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(** like {!find_right} but returns at most one value *)
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val fold : ('a -> left -> right -> 'a) -> 'a -> t -> 'a
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(** Fold on pairs *)
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val pairs : t -> (left * right) sequence
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(** Iterate on pairs *)
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val add_pairs : t -> (left * right) sequence -> t
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(** Add pairs *)
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val seq_left : t -> left sequence
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val seq_right : t -> right sequence
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end
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let _fold_seq f acc seq =
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let acc = ref acc in
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seq (fun x -> acc := f !acc x);
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!acc
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let _head_seq seq =
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let r = ref None in
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begin try seq (fun x -> r := Some x; raise Exit)
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with Exit -> ();
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end;
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!r
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module MakeBidir(L : OrderedType)(R : OrderedType) = struct
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type left = L.t
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type right = R.t
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module MapL = Make(L)(R)
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module MapR = Make(R)(L)
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type t = {
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left : MapL.t;
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right : MapR.t;
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}
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let empty = {
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left = MapL.empty;
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right = MapR.empty;
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}
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let is_empty m = MapL.is_empty m.left
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let add m a b = {
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left = MapL.add m.left a b;
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right = MapR.add m.right b a;
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}
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let remove m a b = {
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left = MapL.remove m.left a b;
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right = MapR.remove m.right b a;
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}
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let cardinal_left m = MapL.size m.left
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let cardinal_right m = MapR.size m.right
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let find_left m a = MapL.find_iter m.left a
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let find_right m b = MapR.find_iter m.right b
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let remove_left m a =
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_fold_seq
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(fun m b -> remove m a b)
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m (find_left m a)
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let remove_right m b =
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_fold_seq
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(fun m a -> remove m a b)
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m (find_right m b)
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let mem_left m a = MapL.mem m.left a
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let mem_right m b = MapR.mem m.right b
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let find1_left m a = _head_seq (find_left m a)
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let find1_right m b = _head_seq (find_right m b)
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let fold f acc m =
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MapL.fold m.left acc f
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let pairs m = MapL.to_seq m.left
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let add_pairs m seq = _fold_seq (fun m (a,b) -> add m a b) m seq
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let seq_left m = MapL.keys m.left
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let seq_right m = MapR.keys m.right
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end
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@ -104,3 +104,66 @@ module type OrderedType = sig
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end
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end
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module Make(K : OrderedType)(V : OrderedType) : S with type key = K.t and type value = V.t
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module Make(K : OrderedType)(V : OrderedType) : S with type key = K.t and type value = V.t
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(** {2 Two-Way Multimap} *)
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module type BIDIR = sig
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type t
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type left
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type right
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val empty : t
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val is_empty : t -> bool
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val add : t -> left -> right -> t
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(** Add a binding (left,right) *)
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val remove : t -> left -> right -> t
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(** Remove a specific binding *)
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val cardinal_left : t -> int
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(** number of distinct left keys *)
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val cardinal_right : t -> int
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(** number of distinct right keys *)
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val remove_left : t -> left -> t
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(** Remove all bindings for the left key *)
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val remove_right : t -> right -> t
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(** Remove all bindings for the right key *)
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val mem_left : t -> left -> bool
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(** Is the left key present in at least one pair? *)
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val mem_right : t -> right -> bool
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(** Is the right key present in at least one pair? *)
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val find_left : t -> left -> right sequence
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(** Find all bindings for this given left-key *)
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val find_right : t -> right -> left sequence
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(** Find all bindings for this given right-key *)
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val find1_left : t -> left -> right option
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(** like {!find_left} but returns at most one value *)
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val find1_right : t -> right -> left option
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(** like {!find_right} but returns at most one value *)
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val fold : ('a -> left -> right -> 'a) -> 'a -> t -> 'a
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(** Fold on pairs *)
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val pairs : t -> (left * right) sequence
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(** Iterate on pairs *)
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val add_pairs : t -> (left * right) sequence -> t
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(** Add pairs *)
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val seq_left : t -> left sequence
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val seq_right : t -> right sequence
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end
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module MakeBidir(L : OrderedType)(R : OrderedType) : BIDIR
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with type left = L.t and type right = R.t
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