minor tweaks
This commit is contained in:
parent
a08f35ee5e
commit
d6c87bacde
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@ -57,19 +57,6 @@ let sign ?dbname ?certname extensions issuer key csr delta =
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match nam with
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| `CN name -> Ok name
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| _ -> Error (`Msg "cannot happen")) >>= fun certname ->
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(match dbname with
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| None -> Ok None
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| Some dbname ->
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Bos.OS.File.exists dbname >>= function
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| false -> Ok None
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| true ->
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Bos.OS.File.read_lines dbname >>= fun content ->
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Vmm_core.parse_db content >>= fun db ->
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match Vmm_core.find_name db certname with
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| Ok serial ->
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Logs.info (fun m -> m "reusing serial %s" (Z.to_string serial)) ;
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Ok (Some serial)
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| Error _ -> Ok None) >>= fun serial ->
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timestamps delta >>= fun (valid_from, valid_until) ->
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let extensions =
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match dbname with
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@ -80,11 +67,10 @@ let sign ?dbname ?certname extensions issuer key csr delta =
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let capub = `RSA (Nocrypto.Rsa.pub_of_priv priv) in
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extensions @ key_ids (X509.CA.info csr).X509.CA.public_key capub
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in
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let cert = X509.CA.sign csr ?serial ~valid_from ~valid_until ~extensions key issuer in
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(match serial, dbname with
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| Some _, _ -> Ok () (* already in DB! *)
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| _, None -> Ok () (* no DB! *)
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| None, Some dbname ->
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let cert = X509.CA.sign csr ~valid_from ~valid_until ~extensions key issuer in
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(match dbname with
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| None -> Ok () (* no DB! *)
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| Some dbname ->
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append dbname (Printf.sprintf "%s %s\n" (Z.to_string (X509.serial cert)) certname)) >>= fun () ->
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let enc = X509.Encoding.Pem.Certificate.to_pem_cstruct1 cert in
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Bos.OS.File.write Fpath.(v certname + "pem") (Cstruct.to_string enc)
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@ -6,6 +6,26 @@ open Astring
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open Rresult.R.Infix
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let parse_db lines =
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List.fold_left (fun acc s ->
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acc >>= fun datas ->
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match String.cut ~sep:" " s with
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| None -> Rresult.R.error_msgf "unable to parse entry %s" s
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| Some (a, b) ->
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(try Ok (Z.of_string a) with Invalid_argument x -> Error (`Msg x)) >>= fun s ->
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Ok ((s, b) :: datas))
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(Ok []) lines
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let find_in_db label db tst =
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try Ok (List.find tst db)
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with Not_found -> Rresult.R.error_msgf "couldn't find %s in database" label
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let find_name db name =
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find_in_db name db (fun (_, n) -> String.equal n name) >>= fun (serial, _) ->
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Ok serial
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let jump _ db cacert cakey crl cn serial =
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Nocrypto_entropy_unix.initialize () ;
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match
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@ -14,8 +34,8 @@ let jump _ db cacert cakey crl cn serial =
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(try Ok (Z.of_string y) with Invalid_argument x -> Error (`Msg x))
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| x, y when y = "" ->
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Bos.OS.File.read_lines (Fpath.v db) >>= fun entries ->
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Vmm_core.parse_db entries >>= fun db ->
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Vmm_core.find_name db x
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parse_db entries >>= fun db ->
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find_name db x
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| _ -> Error (`Msg "please provide either common name or serial!")) >>= fun serial ->
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Bos.OS.File.read (Fpath.v cakey) >>= fun pk ->
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let cakey = X509.Encoding.Pem.Private_key.of_pem_cstruct1 (Cstruct.of_string pk) in
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@ -229,35 +229,6 @@ let id cert = identifier (X509.serial cert)
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let name cert = X509.common_name_to_string cert
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let parse_db lines =
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List.fold_left (fun acc s ->
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acc >>= fun datas ->
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match String.cut ~sep:" " s with
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| None -> Rresult.R.error_msgf "unable to parse entry %s" s
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| Some (a, b) ->
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(try Ok (Z.of_string a) with Invalid_argument x -> Error (`Msg x)) >>= fun s ->
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Ok ((s, b) :: datas))
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(Ok []) lines
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let find_in_db label db tst =
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try Ok (List.find tst db)
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with Not_found -> Rresult.R.error_msgf "couldn't find %s in database" label
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let find_name db name =
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find_in_db name db (fun (_, n) -> String.equal n name) >>= fun (serial, _) ->
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Ok serial
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let translate_serial db serial =
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let tst (s, _) = String.equal serial (identifier s) in
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match find_in_db "" db tst with
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| Ok (_, n) -> n
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| Error _ -> serial
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let translate_name db name =
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match find_name db name with
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| Ok serial -> identifier serial
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| Error _ -> name
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(* this separates the leaf and top-level certificate from the chain,
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and also reverses the intermediates (to be (leaf, CA -> subCA -> subCA')
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in which subCA' signed leaf *)
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226
src/vmm_core.mli
226
src/vmm_core.mli
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@ -4,126 +4,20 @@ val socket_path : [< `Console | `Log | `Stats | `Vmmd ] -> string
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val pp_socket :
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Format.formatter -> [< `Console | `Log | `Stats | `Vmmd ] -> unit
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module I : sig type t = int val compare : int -> int -> int end
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module IS :
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sig
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type elt = I.t
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type t = Set.Make(I).t
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val empty : t
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val is_empty : t -> bool
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val mem : elt -> t -> bool
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val add : elt -> t -> t
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val singleton : elt -> t
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val remove : elt -> t -> t
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val union : t -> t -> t
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val inter : t -> t -> t
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val diff : t -> t -> t
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val compare : t -> t -> int
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val equal : t -> t -> bool
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val subset : t -> t -> bool
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val iter : (elt -> unit) -> t -> unit
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val map : (elt -> elt) -> t -> t
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val fold : (elt -> 'a -> 'a) -> t -> 'a -> 'a
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val for_all : (elt -> bool) -> t -> bool
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val exists : (elt -> bool) -> t -> bool
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val filter : (elt -> bool) -> t -> t
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val partition : (elt -> bool) -> t -> t * t
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val cardinal : t -> int
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val elements : t -> elt list
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val min_elt : t -> elt
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val min_elt_opt : t -> elt option
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val max_elt : t -> elt
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val max_elt_opt : t -> elt option
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val choose : t -> elt
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val choose_opt : t -> elt option
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val split : elt -> t -> t * bool * t
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val find : elt -> t -> elt
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val find_opt : elt -> t -> elt option
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val find_first : (elt -> bool) -> t -> elt
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val find_first_opt : (elt -> bool) -> t -> elt option
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val find_last : (elt -> bool) -> t -> elt
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val find_last_opt : (elt -> bool) -> t -> elt option
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val of_list : elt list -> t
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module IS : sig
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include Set.S with type elt = I.t
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end
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module IM :
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sig
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type key = I.t
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type 'a t = 'a Map.Make(I).t
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val empty : 'a t
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val is_empty : 'a t -> bool
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val mem : key -> 'a t -> bool
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val add : key -> 'a -> 'a t -> 'a t
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val update : key -> ('a option -> 'a option) -> 'a t -> 'a t
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val singleton : key -> 'a -> 'a t
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val remove : key -> 'a t -> 'a t
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val merge :
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(key -> 'a option -> 'b option -> 'c option) -> 'a t -> 'b t -> 'c t
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val union : (key -> 'a -> 'a -> 'a option) -> 'a t -> 'a t -> 'a t
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val compare : ('a -> 'a -> int) -> 'a t -> 'a t -> int
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val equal : ('a -> 'a -> bool) -> 'a t -> 'a t -> bool
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val iter : (key -> 'a -> unit) -> 'a t -> unit
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val fold : (key -> 'a -> 'b -> 'b) -> 'a t -> 'b -> 'b
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val for_all : (key -> 'a -> bool) -> 'a t -> bool
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val exists : (key -> 'a -> bool) -> 'a t -> bool
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val filter : (key -> 'a -> bool) -> 'a t -> 'a t
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val partition : (key -> 'a -> bool) -> 'a t -> 'a t * 'a t
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val cardinal : 'a t -> int
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val bindings : 'a t -> (key * 'a) list
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val min_binding : 'a t -> key * 'a
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val min_binding_opt : 'a t -> (key * 'a) option
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val max_binding : 'a t -> key * 'a
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val max_binding_opt : 'a t -> (key * 'a) option
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val choose : 'a t -> key * 'a
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val choose_opt : 'a t -> (key * 'a) option
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val split : key -> 'a t -> 'a t * 'a option * 'a t
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val find : key -> 'a t -> 'a
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val find_opt : key -> 'a t -> 'a option
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val find_first : (key -> bool) -> 'a t -> key * 'a
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val find_first_opt : (key -> bool) -> 'a t -> (key * 'a) option
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val find_last : (key -> bool) -> 'a t -> key * 'a
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val find_last_opt : (key -> bool) -> 'a t -> (key * 'a) option
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val map : ('a -> 'b) -> 'a t -> 'b t
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val mapi : (key -> 'a -> 'b) -> 'a t -> 'b t
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val pp_is : IS.t Fmt.t
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module IM : sig
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include Map.S with type key = I.t
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end
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module IM64 :
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sig
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type key = Int64.t
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type 'a t = 'a Map.Make(Int64).t
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val empty : 'a t
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val is_empty : 'a t -> bool
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val mem : key -> 'a t -> bool
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val add : key -> 'a -> 'a t -> 'a t
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val update : key -> ('a option -> 'a option) -> 'a t -> 'a t
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val singleton : key -> 'a -> 'a t
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val remove : key -> 'a t -> 'a t
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val merge :
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(key -> 'a option -> 'b option -> 'c option) -> 'a t -> 'b t -> 'c t
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val union : (key -> 'a -> 'a -> 'a option) -> 'a t -> 'a t -> 'a t
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val compare : ('a -> 'a -> int) -> 'a t -> 'a t -> int
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val equal : ('a -> 'a -> bool) -> 'a t -> 'a t -> bool
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val iter : (key -> 'a -> unit) -> 'a t -> unit
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val fold : (key -> 'a -> 'b -> 'b) -> 'a t -> 'b -> 'b
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val for_all : (key -> 'a -> bool) -> 'a t -> bool
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val exists : (key -> 'a -> bool) -> 'a t -> bool
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val filter : (key -> 'a -> bool) -> 'a t -> 'a t
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val partition : (key -> 'a -> bool) -> 'a t -> 'a t * 'a t
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val cardinal : 'a t -> int
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val bindings : 'a t -> (key * 'a) list
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val min_binding : 'a t -> key * 'a
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val min_binding_opt : 'a t -> (key * 'a) option
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val max_binding : 'a t -> key * 'a
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val max_binding_opt : 'a t -> (key * 'a) option
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val choose : 'a t -> key * 'a
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val choose_opt : 'a t -> (key * 'a) option
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val split : key -> 'a t -> 'a t * 'a option * 'a t
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val find : key -> 'a t -> 'a
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val find_opt : key -> 'a t -> 'a option
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val find_first : (key -> bool) -> 'a t -> key * 'a
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val find_first_opt : (key -> bool) -> 'a t -> (key * 'a) option
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val find_last : (key -> bool) -> 'a t -> key * 'a
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val find_last_opt : (key -> bool) -> 'a t -> (key * 'a) option
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val map : ('a -> 'b) -> 'a t -> 'b t
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val mapi : (key -> 'a -> 'b) -> 'a t -> 'b t
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module IM64 : sig
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include Map.S with type key = Int64.t
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end
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type command =
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[ `Console
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| `Create_block
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@ -135,56 +29,28 @@ type command =
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| `Info
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| `Log
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| `Statistics ]
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val pp_command :
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Format.formatter ->
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[< `Console
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| `Create_block
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| `Create_vm
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| `Crl
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| `Destroy_block
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| `Destroy_vm
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| `Force_create_vm
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| `Info
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| `Log
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| `Statistics ] ->
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unit
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val command_of_string :
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string ->
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[> `Console
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| `Create_block
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| `Create_vm
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| `Crl
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| `Destroy_block
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| `Destroy_vm
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| `Force_create_vm
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| `Info
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| `Log
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| `Statistics ]
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option
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val pp_command : command Fmt.t
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val command_of_string : string -> command option
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type vmtype = [ `Hvt_amd64 | `Hvt_amd64_compressed | `Hvt_arm64 ]
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val vmtype_to_int :
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[< `Hvt_amd64 | `Hvt_amd64_compressed | `Hvt_arm64 ] -> int
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val int_to_vmtype :
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int -> [> `Hvt_amd64 | `Hvt_amd64_compressed | `Hvt_arm64 ] option
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val pp_vmtype :
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Format.formatter ->
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[< `Hvt_amd64 | `Hvt_amd64_compressed | `Hvt_arm64 ] -> unit
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val vmtype_to_int : vmtype -> int
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val int_to_vmtype : int -> vmtype option
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val pp_vmtype : vmtype Fmt.t
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type id = string list
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val string_of_id : string list -> string
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val id_of_string : string -> string list
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val drop_super : super:string list -> sub:string list -> string list option
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val is_sub_id : super:string list -> sub:string list -> bool
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val domain : 'a list -> 'a list
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val pp_id : Format.formatter -> string list -> unit
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val pp_is : Format.formatter -> IS.t -> unit
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val pp_id : id Fmt.t
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type bridge =
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[ `External of string * Ipaddr.V4.t * Ipaddr.V4.t * Ipaddr.V4.t * int
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| `Internal of string ]
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val pp_bridge :
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Format.formatter ->
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[< `External of string * Ipaddr.V4.t * Ipaddr.V4.t * Ipaddr.V4.t * int
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| `Internal of string ] ->
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unit
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val pp_bridge : bridge Fmt.t
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type policy = {
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vms : int;
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cpuids : IS.t;
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@ -192,17 +58,14 @@ type policy = {
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block : int option;
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bridges : bridge Astring.String.Map.t;
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}
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val pp_policy : Format.formatter -> policy -> unit
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val sub_bridges :
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[> `External of string * Ipaddr.V4.t * Ipaddr.V4.t * Ipaddr.V4.t * 'a
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| `Internal of string ]
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Astring.String.map ->
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[> `External of string * Ipaddr.V4.t * Ipaddr.V4.t * Ipaddr.V4.t * 'a
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| `Internal of string ]
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Astring.String.map -> bool
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val pp_policy : policy Fmt.t
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val sub_bridges : bridge Astring.String.map -> bridge Astring.String.map -> bool
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val sub_block : 'a option -> 'a option -> bool
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val sub_cpu : IS.t -> IS.t -> bool
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val is_sub : super:policy -> sub:policy -> bool
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type vm_config = {
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cpuid : int;
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requested_memory : int;
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@ -211,14 +74,17 @@ type vm_config = {
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vmimage : vmtype * Cstruct.t;
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argv : string list option;
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}
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val pp_image :
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Format.formatter ->
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[< `Hvt_amd64 | `Hvt_amd64_compressed | `Hvt_arm64 ] * Cstruct.t -> unit
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val pp_vm_config : Format.formatter -> vm_config -> unit
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val good_bridge : string list -> 'a Astring.String.map -> bool
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val pp_image : (vmtype * Cstruct.t) Fmt.t
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val pp_vm_config : vm_config Fmt.t
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val good_bridge : id -> 'a Astring.String.map -> bool
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val vm_matches_res : policy -> vm_config -> bool
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val check_policies :
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vm_config -> policy list -> (unit, [> `Msg of string ]) Result.result
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type vm = {
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config : vm_config;
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cmd : Bos.Cmd.t;
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@ -226,21 +92,16 @@ type vm = {
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taps : string list;
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stdout : Unix.file_descr;
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}
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val pp_vm : Format.formatter -> vm -> unit
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val pp_vm : vm Fmt.t
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val translate_tap : vm -> string -> string option
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val identifier : Nocrypto.Numeric.Z.t -> string
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val id : X509.t -> string
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val name : X509.t -> string
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val parse_db :
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string list -> ((Z.t * string) list, [> Rresult.R.msg ]) Result.result
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val find_in_db :
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string -> 'a list -> ('a -> bool) -> ('a, [> Rresult.R.msg ]) Result.result
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val find_name :
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('a * string) list -> string -> ('a, [> Rresult.R.msg ]) Result.result
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val translate_serial :
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(Nocrypto.Numeric.Z.t * string) list -> string -> string
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val translate_name : (Nocrypto.Numeric.Z.t * string) list -> string -> string
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val separate_chain : 'a list -> ('a * 'a list, [> `Msg of string ]) result
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type rusage = {
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utime : int64 * int;
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stime : int64 * int;
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@ -259,7 +120,7 @@ type rusage = {
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nvcsw : int64;
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nivcsw : int64;
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}
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val pp_rusage : Format.formatter -> rusage -> unit
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val pp_rusage : rusage Fmt.t
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val pp_vmm : (string * int64) list Fmt.t
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type ifdata = {
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@ -282,7 +143,8 @@ type ifdata = {
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input_dropped : int64;
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output_dropped : int64;
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}
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val pp_ifdata : Format.formatter -> ifdata -> unit
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val pp_ifdata : ifdata Fmt.t
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module Log :
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sig
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||||
type event =
|
||||
|
|
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Reference in a new issue