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add {join_by,join_all_by,group_join_by}
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2 changed files with 139 additions and 0 deletions
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@ -15,6 +15,9 @@ type (+'a, +'b) t2 = ('a -> 'b -> unit) -> unit
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let pp_ilist = Q.Print.(list int)
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*)
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type 'a equal = 'a -> 'a -> bool
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type 'a hash = 'a -> int
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(** Build a sequence from a iter function *)
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let from_iter f = f
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@ -521,6 +524,96 @@ let join ~join_row s1 s2 k =
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OUnit.assert_equal ["1 = 1"; "2 = 2"] (to_list s);
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*)
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let join_by (type a) ?(eq=(=)) ?(hash=Hashtbl.hash) f1 f2 ~merge c1 c2 =
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let module Tbl = Hashtbl.Make(struct
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type t = a
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let equal = eq
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let hash = hash
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end) in
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let tbl = Tbl.create 32 in
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c1
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(fun x ->
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let key = f1 x in
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Tbl.add tbl key x);
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let res = ref [] in
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c2
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(fun y ->
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let key = f2 y in
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let xs = Tbl.find_all tbl key in
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List.iter
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(fun x -> match merge key x y with
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| None -> ()
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| Some z -> res := z :: !res)
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xs);
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fun yield -> List.iter yield !res
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type ('a, 'b) join_all_cell = {
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mutable ja_left: 'a list;
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mutable ja_right: 'b list;
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}
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let join_all_by (type a) ?(eq=(=)) ?(hash=Hashtbl.hash) f1 f2 ~merge c1 c2 =
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let module Tbl = Hashtbl.Make(struct
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type t = a
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let equal = eq
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let hash = hash
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end) in
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let tbl = Tbl.create 32 in
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(* build the map [key -> cell] *)
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c1
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(fun x ->
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let key = f1 x in
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try
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let c = Tbl.find tbl key in
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c.ja_left <- x :: c.ja_left
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with Not_found ->
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Tbl.add tbl key {ja_left=[x]; ja_right=[]});
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c2
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(fun y ->
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let key = f2 y in
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try
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let c = Tbl.find tbl key in
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c.ja_right <- y :: c.ja_right
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with Not_found ->
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Tbl.add tbl key {ja_left=[]; ja_right=[y]});
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let res = ref [] in
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Tbl.iter
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(fun key cell -> match merge key cell.ja_left cell.ja_right with
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| None -> ()
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| Some z -> res := z :: !res)
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tbl;
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fun yield -> List.iter yield !res
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let group_join_by (type a) ?(eq=(=)) ?(hash=Hashtbl.hash) f c1 c2 =
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let module Tbl = Hashtbl.Make(struct
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type t = a
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let equal = eq
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let hash = hash
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end) in
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let tbl = Tbl.create 32 in
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c1 (fun x -> Tbl.replace tbl x []);
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c2
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(fun y ->
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(* project [y] into some element of [c1] *)
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let key = f y in
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try
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let l = Tbl.find tbl key in
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Tbl.replace tbl key (y :: l)
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with Not_found -> ());
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fun yield -> Tbl.iter (fun k l -> yield (k,l)) tbl
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(*$=
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['a', ["abc"; "attic"]; \
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'b', ["barbary"; "boom"; "bop"]; \
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'c', []] \
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(group_join_by (fun s->s.[0]) \
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(of_str "abc") \
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(of_list ["abc"; "boom"; "attic"; "deleted"; "barbary"; "bop"]) \
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|> map (fun (c,l)->c,List.sort Pervasives.compare l) \
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|> sort |> to_list)
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*)
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let rec unfoldr f b k = match f b with
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| None -> ()
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| Some (x, b') ->
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@ -39,6 +39,9 @@ type +'a sequence = 'a t
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type (+'a, +'b) t2 = ('a -> 'b -> unit) -> unit
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(** Sequence of pairs of values of type ['a] and ['b]. *)
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type 'a equal = 'a -> 'a -> bool
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type 'a hash = 'a -> int
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(** {2 Build a sequence} *)
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val from_iter : (('a -> unit) -> unit) -> 'a t
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@ -285,6 +288,49 @@ val join : join_row:('a -> 'b -> 'c option) -> 'a t -> 'b t -> 'c t
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the two elements do not combine. Assume that [b] allows for multiple
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iterations. *)
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val join_by : ?eq:'key equal -> ?hash:'key hash ->
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('a -> 'key) -> ('b -> 'key) ->
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merge:('key -> 'a -> 'b -> 'c option) ->
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'a t ->
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'b t ->
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'c t
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(** [join key1 key2 ~merge] is a binary operation
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that takes two sequences [a] and [b], projects their
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elements resp. with [key1] and [key2], and combine
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values [(x,y)] from [(a,b)] with the same [key]
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using [merge]. If [merge] returns [None], the combination
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of values is discarded.
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@since NEXT_RELEASE *)
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val join_all_by : ?eq:'key equal -> ?hash:'key hash ->
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('a -> 'key) -> ('b -> 'key) ->
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merge:('key -> 'a list -> 'b list -> 'c option) ->
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'a t ->
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'b t ->
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'c t
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(** [join_all_by key1 key2 ~merge] is a binary operation
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that takes two sequences [a] and [b], projects their
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elements resp. with [key1] and [key2], and, for each key [k]
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occurring in at least one of them:
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- compute the list [l1] of elements of [a] that map to [k]
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- compute the list [l2] of elements of [b] that map to [k]
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- call [merge k l1 l2]. If [merge] returns [None], the combination
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of values is discarded, otherwise it returns [Some c]
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and [c] is inserted in the result.
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@since NEXT_RELEASE *)
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val group_join_by : ?eq:'a equal -> ?hash:'a hash ->
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('b -> 'a) ->
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'a t ->
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'b t ->
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('a * 'b list) t
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(** [group_join_by key2] associates to every element [x] of
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the first sequence, all the elements [y] of the second
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sequence such that [eq x (key y)]. Elements of the first
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sequences without corresponding values in the second one
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are mapped to [[]]
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@since NEXT_RELEASE *)
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val unfoldr : ('b -> ('a * 'b) option) -> 'b -> 'a t
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(** [unfoldr f b] will apply [f] to [b]. If it
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yields [Some (x,b')] then [x] is returned
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