Utils: various doc improvements
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@ -9,7 +9,8 @@
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(* Tezos Utility library - Hexadecimal encoding *)
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(* Tezos Utility library - Hexadecimal encoding *)
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(* From OCaml's stdlib. See [Digest.to_hex] *)
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(* From OCaml's stdlib. See [Digest.to_hex], and [hex_of_bytes], [hex_encode]
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below for examples. *)
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let gen_encode length get s =
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let gen_encode length get s =
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let n = length s in
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let n = length s in
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let result = Bytes.create (n*2) in
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let result = Bytes.create (n*2) in
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@ -21,7 +22,8 @@ let gen_encode length get s =
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let hex_of_bytes = gen_encode MBytes.length MBytes.get_uint8
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let hex_of_bytes = gen_encode MBytes.length MBytes.get_uint8
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let hex_encode = gen_encode String.length (fun s i -> int_of_char s.[i])
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let hex_encode = gen_encode String.length (fun s i -> int_of_char s.[i])
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(* From OCaml's stdlib. See [Digest.from_hex]. *)
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(* From OCaml's stdlib. See [Digest.from_hex], and [hex_decode], [bytes_of_hex]
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below for examples. *)
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let gen_decode create set h =
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let gen_decode create set h =
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let n = String.length h in
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let n = String.length h in
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if n mod 2 <> 0 then invalid_arg ("hex_decode: " ^ h);
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if n mod 2 <> 0 then invalid_arg ("hex_decode: " ^ h);
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@ -45,41 +47,3 @@ let hex_decode s =
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let bytes_of_hex s =
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let bytes_of_hex s =
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gen_decode MBytes.create MBytes.set_int8 s
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gen_decode MBytes.create MBytes.set_int8 s
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(*
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let hex_bytes =
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let open Data_encoding in
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let schema =
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let open Json_schema in
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create
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{ title = None ;
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description = None ;
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default = None;
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enum = None;
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kind = String {
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pattern = Some "^[a-zA-Z0-9]+$";
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min_length = 0;
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max_length = None;
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};
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format = None ;
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id = None } in
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conv ~schema hex_of_bytes (Json.wrap_error bytes_of_hex) string
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let sha256 =
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let open Data_encoding in
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let schema =
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let open Json_schema in
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create
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{ title = None ;
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description = None ;
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default = None;
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enum = None;
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kind = String {
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pattern = Some "^[a-zA-Z0-9]+$";
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min_length = 64;
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max_length = Some 64;
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};
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format = Some "sha256" ;
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id = None } in
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conv ~schema hex_of_bytes (Json.wrap_error bytes_of_hex) string
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*)
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@ -7,11 +7,18 @@
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(* *)
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(* *)
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(**************************************************************************)
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(**************************************************************************)
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(** Low-level byte array querying and manipulation.
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Default layout for numeric operations is big-endian.
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Little-endian operations in the LE submodule. **)
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open Bigarray
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open Bigarray
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(* Arrays are of characters, represented as uint8's, in row-major layout. *)
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type t = (char, int8_unsigned_elt, c_layout) Array1.t
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type t = (char, int8_unsigned_elt, c_layout) Array1.t
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val create: int -> t
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val create: int -> t
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(** [create n] allocates and returns an array of size [n] **)
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val length: t -> int
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val length: t -> int
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@ -143,3 +150,4 @@ val (>) : t -> t -> bool
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val compare : t -> t -> int
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val compare : t -> t -> int
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val concat: t -> t -> t
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val concat: t -> t -> t
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(** Returns a new array with adjacent copies of the two input arrays **)
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@ -307,5 +307,5 @@ let parse_addr_port s =
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check_port port ;
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check_port port ;
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addr, port
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addr, port
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invalid_arg "split_url_port: IPv6 addresses must be bracketed"
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invalid_arg "Utils.parse_addr_port: IPv6 addresses must be bracketed"
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end
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end
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@ -18,32 +18,57 @@ val split_path: string -> string list
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string, if [limit] is passed, stops after [limit] split(s). *)
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string, if [limit] is passed, stops after [limit] split(s). *)
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val split: char -> ?dup:bool -> ?limit: int -> string -> string list
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val split: char -> ?dup:bool -> ?limit: int -> string -> string list
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(** [Some (f x)] if input is [Some x], or [None] if it's [None] **)
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val map_option: f:('a -> 'b) -> 'a option -> 'b option
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val map_option: f:('a -> 'b) -> 'a option -> 'b option
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(** [(f x)] if input is [Some x], or [None] if it's [None] **)
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val apply_option: f:('a -> 'b option) -> 'a option -> 'b option
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val apply_option: f:('a -> 'b option) -> 'a option -> 'b option
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(** Call [(f x)] if input is [Some x], noop if it's [None] **)
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val iter_option: f:('a -> unit) -> 'a option -> unit
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val iter_option: f:('a -> unit) -> 'a option -> unit
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(** [x] if input is [Some x], default if it's [None] **)
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val unopt: default:'a -> 'a option -> 'a
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val unopt: default:'a -> 'a option -> 'a
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(** [unopt_map f d x] is [y] if [x] is [Some y], [d] if [x] is [None] **)
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val unopt_map: f:('a -> 'b) -> default:'b -> 'a option -> 'b
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val unopt_map: f:('a -> 'b) -> default:'b -> 'a option -> 'b
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(** [x] for elements [Some x] in input. [None]s are dropped. **)
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val unopt_list: 'a option list -> 'a list
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val unopt_list: 'a option list -> 'a list
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(** First input of form [Some x], or [None] if none **)
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val first_some: 'a option -> 'a option -> 'a option
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val first_some: 'a option -> 'a option -> 'a option
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(** Print a paragraph in a box **)
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val display_paragraph: Format.formatter -> string -> unit
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val display_paragraph: Format.formatter -> string -> unit
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(** [remove nb list] remove the first [nb] elements from the list [list]. *)
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(** [remove nb list] remove the first [nb] elements from the list [list]. *)
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val remove_elem_from_list: int -> 'a list -> 'a list
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val remove_elem_from_list: int -> 'a list -> 'a list
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(** Return pair (list of first n items, remaining items) **)
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val split_list_at: int -> 'a list -> 'a list * 'a list
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val split_list_at: int -> 'a list -> 'a list * 'a list
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(** [true] if input has prefix **)
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val has_prefix: prefix:string -> string -> bool
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val has_prefix: prefix:string -> string -> bool
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(** Some (input with [prefix] removed), if string has [prefix], else [None] **)
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val remove_prefix: prefix:string -> string -> string option
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val remove_prefix: prefix:string -> string -> string option
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(** Length of common prefix of input strings *)
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val common_prefix: string -> string -> int
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val common_prefix: string -> string -> int
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(** [filter_map f l] is [[y for x in l where (f x) = Some y]] **)
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val filter_map: ('a -> 'b option) -> 'a list -> 'b list
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val filter_map: ('a -> 'b option) -> 'a list -> 'b list
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(** [list_rev_sub l n] is (List.rev l) capped to max n elements *)
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(** [list_rev_sub l n] is [List.rev l] capped to max [n] elements *)
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val list_rev_sub : 'a list -> int -> 'a list
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val list_rev_sub : 'a list -> int -> 'a list
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(** [list_sub l n] is l capped to max n elements *)
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(** [list_sub l n] is [l] capped to max [n] elements *)
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val list_sub: 'a list -> int -> 'a list
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val list_sub: 'a list -> int -> 'a list
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(** Like [List.hd], but [Some hd] or [None] if empty **)
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val list_hd_opt: 'a list -> 'a option
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val list_hd_opt: 'a list -> 'a option
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(** Last elt of list, or raise Not_found if empty **)
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val list_last_exn: 'a list -> 'a
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val list_last_exn: 'a list -> 'a
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(** [merge_filter_list2 ~compare ~f l1 l2] merges two lists ordered by [compare]
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(** [merge_filter_list2 ~compare ~f l1 l2] merges two lists ordered by [compare]
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'a list -> 'a list ->
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'a list -> 'a list ->
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'a list
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'a list
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(** [finalize f g ] ensures g() called after f(), even if exception raised **)
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val finalize: (unit -> 'a) -> (unit -> unit) -> 'a
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val finalize: (unit -> 'a) -> (unit -> unit) -> 'a
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(** Return contents of file at given filename. **)
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val read_file: ?bin:bool -> string -> string
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val read_file: ?bin:bool -> string -> string
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(** [write_file p c] writes c to file at path p **)
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val write_file: ?bin:bool -> string -> string -> unit
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val write_file: ?bin:bool -> string -> string -> unit
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(** Compose functions from right to left. *)
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(** Compose functions from right to left. *)
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@ -76,9 +105,10 @@ val (<<) : ('b -> 'c) -> ('a -> 'b) -> 'a -> 'c
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(** Sequence: [i--j] is the sequence [i;i+1;...;j-1;j] *)
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(** Sequence: [i--j] is the sequence [i;i+1;...;j-1;j] *)
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val (--) : int -> int -> int list
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val (--) : int -> int -> int list
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(** [repeat n x] is a list of [n] [x]'s **)
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val repeat: int -> 'a -> 'a list
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val repeat: int -> 'a -> 'a list
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(** [take_n n l] returns the [n] first elements of [n]. When [compare]
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(** [take_n n l] returns the [n] first elements of [l]. When [compare]
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is provided, it returns the [n] greatest element of [l]. *)
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is provided, it returns the [n] greatest element of [l]. *)
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val take_n: ?compare:('a -> 'a -> int) -> int -> 'a list -> 'a list
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val take_n: ?compare:('a -> 'a -> int) -> int -> 'a list -> 'a list
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@ -90,8 +120,9 @@ module Bounded(E: Set.OrderedType) : sig
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val get: t -> E.t list
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val get: t -> E.t list
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end
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end
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(** [select n l] is ([n]th element of [l], [l] without that element) **)
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val select: int -> 'a list -> 'a * 'a list
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val select: int -> 'a list -> 'a * 'a list
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(** [split_url_port uri] is (node, service) where [node] is the DNS or
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(** [parse_addr_port uri] is (node, service) where [node] is the DNS or
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IP and service is the optional port number or service name. *)
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IP and service is the optional port number or service name. *)
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val parse_addr_port: string -> string * string
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val parse_addr_port: string -> string * string
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