include Hashtbl_intf.S with type key = M.t and type ('a, 'b) hashtbl = ('a, 'b) Hashtbl.t
include Hashtbl_intf.S_plain with type ('a, 'b) hashtbl = ('a, 'b) Hashtbl.t and type key = M.t
val sexp_of_t : ('b -> Ppx_sexp_conv_lib.Sexp.t) -> 'b t -> Ppx_sexp_conv_lib.Sexp.t
val hashable : key Hashtbl_intf.Hashable.t
include Base.Invariant.S1 with type 'b t := 'b t
val invariant : ('a -> unit) -> 'b t -> unit
include Hashtbl_intf.Creators with type ('a, 'b) t := ('a, 'b) t_ with type 'a key := 'a key_ with type ('key, 'data, 'z) create_options := ('key, 'data, 'z) Hashtbl_intf.create_options_without_hashable
val create : ('key, 'data, 'z) Hashtbl_intf.create_options_without_hashableval of_alist : ('key, 'data, 'z) Hashtbl_intf.create_options_without_hashableval of_alist_report_all_dups : ('key, 'data, 'z) Hashtbl_intf.create_options_without_hashableval of_alist_or_error : ('key, 'data, 'z) Hashtbl_intf.create_options_without_hashableval of_alist_exn : ('key, 'data, 'z) Hashtbl_intf.create_options_without_hashableval of_alist_multi : ('key, 'data, 'z) Hashtbl_intf.create_options_without_hashableval create_mapped : ('key, 'data, 'z) Hashtbl_intf.create_options_without_hashablecreate_mapped get_key get_data [x1,...,xn] = of_alist [get_key x1, get_data x1; ...; get_key xn, get_data xn]
val create_with_key : ('key, 'data, 'z) Hashtbl_intf.create_options_without_hashablecreate_with_key ~get_key [x1,...,xn] = of_alist [get_key x1, x1; ...; get_key xn, xn]
val create_with_key_or_error : ('key, 'data, 'z) Hashtbl_intf.create_options_without_hashableval create_with_key_exn : ('key, 'data, 'z) Hashtbl_intf.create_options_without_hashableval group : ('key, 'data, 'z) Hashtbl_intf.create_options_without_hashable
include Hashtbl_intf.Accessors with type ('a, 'b) t := ('a, 'b) t_ with type 'a key := 'a key_
val sexp_of_key : ('a, 'b) t_ -> 'a key_ -> Base.Sexp.tval clear : ('a, 'b) t_ -> unitval copy : ('a, 'b) t_ -> ('a, 'b) t_val fold : ('a, 'b) t_ -> init:'c -> f:(key:'a key_ -> data:'b -> 'c -> 'c) -> 'cAttempting to modify (
set,remove, etc.) the hashtable during iteration (fold,iter,iter_keys,iteri) will raise an exception.
val iter_keys : ('a, 'b) t_ -> f:('a key_ -> unit) -> unitval iter : ('a, 'b) t_ -> f:('b -> unit) -> unitval iteri : ('a, 'b) t_ -> f:(key:'a key_ -> data:'b -> unit) -> unitIterates over both keys and values.
Example:
let h = Hashtbl.of_alist_exn (module Int) [(1, 4); (5, 6)] in Hashtbl.iteri h ~f:(fun ~key ~data -> print_endline (Printf.sprintf "%d-%d" key data));; 1-4 5-6 - : unit = ()
val existsi : ('a, 'b) t_ -> f:(key:'a key_ -> data:'b -> bool) -> boolval exists : ('a, 'b) t_ -> f:('b -> bool) -> boolval for_alli : ('a, 'b) t_ -> f:(key:'a key_ -> data:'b -> bool) -> boolval for_all : ('a, 'b) t_ -> f:('b -> bool) -> boolval counti : ('a, 'b) t_ -> f:(key:'a key_ -> data:'b -> bool) -> intval count : ('a, 'b) t_ -> f:('b -> bool) -> intval length : ('a, 'b) t_ -> intval is_empty : ('a, 'b) t_ -> boolval mem : ('a, 'b) t_ -> 'a key_ -> boolval remove : ('a, 'b) t_ -> 'a key_ -> unitval choose : ('a, 'b) t_ -> ('a key_ * 'b) optionval choose_exn : ('a, 'b) t_ -> 'a key_ * 'bval set : ('a, 'b) t_ -> key:'a key_ -> data:'b -> unitSets the given
keytodata.
val add : ('a, 'b) t_ -> key:'a key_ -> data:'b -> [ `Ok | `Duplicate ]addandadd_exnleave the table unchanged if the key was already present.
val add_exn : ('a, 'b) t_ -> key:'a key_ -> data:'b -> unitval change : ('a, 'b) t_ -> 'a key_ -> f:('b option -> 'b option) -> unitchange t key ~fchangest's value forkeyto bef (find t key).
val update : ('a, 'b) t_ -> 'a key_ -> f:('b option -> 'b) -> unitupdate t key ~fischange t key ~f:(fun o -> Some (f o)).
val map : ('a, 'b) t_ -> f:('b -> 'c) -> ('a, 'b) t_map t freturns a new table with values replaced by the result of applyingfto the current values.Example:
let h = Hashtbl.of_alist_exn (module Int) [(1, 4); (5, 6)] in let h' = Hashtbl.map h ~f:(fun x -> x * 2) in Hashtbl.to_alist h';; - : (int * int) list = [(5, 12); (1, 8)]
val mapi : ('a, 'b) t_ -> f:(key:'a key_ -> data:'b -> 'c) -> ('a, 'b) t_Like
map, but the functionftakes both key and data as arguments.
val filter_map : ('a, 'b) t_ -> f:('b -> 'c option) -> ('a, 'b) t_Returns a new table by filtering the given table's values by
f: the keys for whichfapplied to the current value returnsSomeare kept, and those for which it returnsNoneare discarded.Example:
let h = Hashtbl.of_alist_exn (module Int) [(1, 4); (5, 6)] in Hashtbl.filter_map h ~f:(fun x -> if x > 5 then Some x else None) |> Hashtbl.to_alist;; - : (int * int) list = [(5, 6)]
val filter_mapi : ('a, 'b) t_ -> f:(key:'a key_ -> data:'b -> 'c option) -> ('a, 'b) t_Like
filter_map, but the functionftakes both key and data as arguments.
val filter_keys : ('a, 'b) t_ -> f:('a key_ -> bool) -> ('a, 'b) t_val filter : ('a, 'b) t_ -> f:('b -> bool) -> ('a, 'b) t_val filteri : ('a, 'b) t_ -> f:(key:'a key_ -> data:'b -> bool) -> ('a, 'b) t_val partition_map : ('a, 'b) t_ -> f:('b -> ('c, 'd) Base.Either.t) -> ('a, 'b) t_ * ('a, 'b) t_Returns new tables with bound values partitioned by
fapplied to the bound values.
val partition_mapi : ('a, 'b) t_ -> f:(key:'a key_ -> data:'b -> ('c, 'd) Base.Either.t) -> ('a, 'b) t_ * ('a, 'b) t_Like
partition_map, but the functionftakes both key and data as arguments.
val partition_tf : ('a, 'b) t_ -> f:('b -> bool) -> ('a, 'b) t_ * ('a, 'b) t_Returns a pair of tables
(t1, t2), wheret1contains all the elements of the initial table which satisfy the predicatef, andt2contains the rest.
val partitioni_tf : ('a, 'b) t_ -> f:(key:'a key_ -> data:'b -> bool) -> ('a, 'b) t_ * ('a, 'b) t_Like
partition_tf, but the functionftakes both key and data as arguments.
val find_or_add : ('a, 'b) t_ -> 'a key_ -> default:(unit -> 'b) -> 'bfind_or_add t k ~defaultreturns the data associated with keykif it is in the tablet, and otherwise assignskthe value returned bydefault ().
val findi_or_add : ('a, 'b) t_ -> 'a key_ -> default:('a key_ -> 'b) -> 'bLike
find_or_addbutdefaulttakes the key as an argument.
val find : ('a, 'b) t_ -> 'a key_ -> 'b optionfind t kreturnsSome(the current binding) ofkint, orNoneif no such binding exists.
val find_exn : ('a, 'b) t_ -> 'a key_ -> 'bfind_exn t kreturns the current binding ofkint, or raisesCaml.Not_foundorNot_found_sif no such binding exists.
val find_and_call : ('a, 'b) t_ -> 'a key_ -> if_found:('b -> 'c) -> if_not_found:('a key_ -> 'c) -> 'cfind_and_call t k ~if_found ~if_not_foundis equivalent to:
match find t k with Some v -> if_found v | None -> if_not_found kexcept that it doesn't allocate the option.
val find_and_call1 : ('a, 'b) t_ -> 'a key_ -> a:'d -> if_found:('b -> 'd -> 'c) -> if_not_found:('a key_ -> 'd -> 'c) -> 'cJust like
find_and_call, but takes an extra argument which is passed toif_foundandif_not_found, so that the client code can avoid allocating closures or using refs to pass this additional information. This function is only useful in code which tries to minimize heap allocation.
val find_and_call2 : ('a, 'b) t_ -> 'a key_ -> a:'d -> b:'e -> if_found:('b -> 'd -> 'e -> 'c) -> if_not_found:('a key_ -> 'd -> 'e -> 'c) -> 'cval findi_and_call : ('a, 'b) t_ -> 'a key_ -> if_found:(key:'a key_ -> data:'b -> 'c) -> if_not_found:('a key_ -> 'c) -> 'cval findi_and_call1 : ('a, 'b) t_ -> 'a key_ -> a:'d -> if_found:(key:'a key_ -> data:'b -> 'd -> 'c) -> if_not_found:('a key_ -> 'd -> 'c) -> 'cval findi_and_call2 : ('a, 'b) t_ -> 'a key_ -> a:'d -> b:'e -> if_found:(key:'a key_ -> data:'b -> 'd -> 'e -> 'c) -> if_not_found:('a key_ -> 'd -> 'e -> 'c) -> 'cval find_and_remove : ('a, 'b) t_ -> 'a key_ -> 'b optionfind_and_remove t kreturns Some (the current binding) of k in t and removes it, or None is no such binding exists.
val merge : ('a, 'b) t_ -> ('a, 'b) t_ -> f:(key:'a key_ -> [ `Left of 'a | `Right of 'b | `Both of 'a * 'b ] -> 'c option) -> ('a, 'b) t_Merges two hashtables.
The result of
merge f h1 h2has as keys the set of allkin the union of the sets of keys ofh1andh2for whichd(k)is not None, where:d(k) =
f ~key:k (`Left d1)ifkinh1maps to d1, andh2does not have data fork;
f ~key:k (`Right d2)ifkinh2maps to d2, andh1does not have data fork;
f ~key:k (`Both (d1, d2))otherwise, wherekinh1maps tod1andkinh2maps tod2.
Each key
kis mapped to a single piece of datax, whered(k) = Some x.Example:
let h1 = Hashtbl.of_alist_exn (module Int) [(1, 5); (2, 3232)] in let h2 = Hashtbl.of_alist_exn (module Int) [(1, 3)] in Hashtbl.merge h1 h2 ~f:(fun ~key:_ -> function | `Left x -> Some (`Left x) | `Right x -> Some (`Right x) | `Both (x, y) -> if x=y then None else Some (`Both (x,y)) ) |> Hashtbl.to_alist;; - : (int * [> `Both of int * int | `Left of int | `Right of int ]) list = [(2, `Left 3232); (1, `Both (5, 3))]
val merge_into : src:('a, 'b) t_ -> dst:('a, 'b) t_ -> f:(key:'a key_ -> 'a -> 'b option -> 'b Base__Hashtbl_intf.Merge_into_action.t) -> unitEvery
keyinsrcwill be removed or set indstaccording to the return value off.
val data : ('a, 'b) t_ -> 'b listReturns the list of all data for given hashtable.
val filter_keys_inplace : ('a, 'b) t_ -> f:('a key_ -> bool) -> unitfilter_inplace t ~fremoves all the elements fromtthat don't satisfyf.
val filter_inplace : ('a, 'b) t_ -> f:('b -> bool) -> unitval filteri_inplace : ('a, 'b) t_ -> f:(key:'a key_ -> data:'b -> bool) -> unitval map_inplace : ('a, 'b) t_ -> f:('b -> 'b) -> unitmap_inplace t ~fappliesfto all elements int, transforming them in place.
val mapi_inplace : ('a, 'b) t_ -> f:(key:'a key_ -> data:'b -> 'b) -> unitval filter_map_inplace : ('a, 'b) t_ -> f:('b -> 'b option) -> unitfilter_map_inplacecombines the effects ofmap_inplaceandfilter_inplace.
val filter_mapi_inplace : ('a, 'b) t_ -> f:(key:'a key_ -> data:'b -> 'b option) -> unitval equal : ('b -> 'b -> bool) -> ('a, 'b) t_ -> ('a, 'b) t_ -> boolequal f t1 t2andsimilar f t1 t2both return true ifft1andt2have the same keys and for all keysk,f (find_exn t1 k) (find_exn t2 k).equalandsimilaronly differ in their types.
val similar : ('b1 -> 'b2 -> bool) -> ('a, 'b) t_ -> ('a, 'b) t_ -> boolval to_alist : ('a, 'b) t_ -> ('a key_ * 'b) listReturns the list of all (key, data) pairs for given hashtable.
val validate : name:('a key_ -> string) -> 'b Base.Validate.check -> ('a, 'b) t_ Base.Validate.checkval incr : ?by:int -> ?remove_if_zero:bool -> ('a, 'b) t_ -> 'a key_ -> unitremove_if_zero's default isfalse.
include Hashtbl_intf.Multi with type ('a, 'b) t := ('a, 'b) t_ with type 'a key := 'a key_
val add_multi : ('a, 'b) t_ -> key:'a key_ -> data:'b -> unitadd_multi t ~key ~dataifkeyis present in the table then consdataon the list, otherwise addkeywith a single element list.
module Provide_of_sexp : functor (Key : sig ... end with type Provide_of_sexp.t := key) -> sig ... end with type 'a Provide_of_sexp.t := 'a tmodule Provide_bin_io : functor (Key : sig ... end with type Provide_bin_io.t := key) -> sig ... end with type 'a Provide_bin_io.t := 'a tinclude sig ... end with type 'a Table.t := 'a t
val t_of_sexp : (Ppx_sexp_conv_lib.Sexp.t -> 'v_x__002_) -> Ppx_sexp_conv_lib.Sexp.t -> 'a t
include Hashtbl_intf.Binable.S1 with type 'v t := 'v t
val bin_shape_t : Bin_prot.Shape.t -> Bin_prot.Shape.tval bin_size_t : ('a, 'v t) Bin_prot.Size.sizer1val bin_write_t : ('a, 'v t) Bin_prot.Write.writer1val bin_read_t : ('a, 'v t) Bin_prot.Read.reader1val __bin_read_t__ : ('a, int -> 'v t) Bin_prot.Read.reader1val bin_writer_t : ('a, 'v t) Bin_prot.Type_class.S1.writerval bin_reader_t : ('a, 'v t) Bin_prot.Type_class.S1.readerval bin_t : ('a, 'v t) Bin_prot.Type_class.S1.t