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https://github.com/linuxkit/linuxkit.git
synced 2025-07-19 01:06:27 +00:00
miragesdk: rework the control plane protocol
Previously, the control plane was using HTTP client/server, that various people found way too complex to run in a privileged container (for very good reasons). So switching to a simpler binary protocol, using c-like structures. Will probably switch to an other serialization protocol later (eg. protobuf or cap-n-proto). Signed-off-by: Thomas Gazagnaire <thomas@gazagnaire.org>
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parent
df71c0f299
commit
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46
projects/miragesdk/src/sdk/IO.ml
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46
projects/miragesdk/src/sdk/IO.ml
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@ -0,0 +1,46 @@
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open Lwt.Infix
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let src = Logs.Src.create "IO" ~doc:"IO helpers"
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module Log = (val Logs.src_log src : Logs.LOG)
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let rec really_write fd buf off len =
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Log.debug (fun l -> l "really_write");
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match len with
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| 0 -> Lwt.return_unit
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| len ->
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Lwt_unix.write fd buf off len >>= fun n ->
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really_write fd buf (off+n) (len-n)
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let rec really_read fd buf off len =
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Log.debug (fun l -> l "really_read");
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match len with
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| 0 -> Lwt.return_unit
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| len ->
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Lwt_unix.read fd buf off len >>= fun n ->
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really_read fd buf (off+n) (len-n)
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let read_all fd =
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Log.debug (fun l -> l "read_all");
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let len = 16 * 1024 in
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let buf = Bytes.create len in
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let rec loop acc =
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Lwt_unix.read fd buf 0 len >>= fun n ->
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let acc = String.sub buf 0 n :: acc in
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if n <= len then Lwt.return (List.rev acc)
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else loop acc
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in
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loop [] >|= fun bufs ->
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String.concat "" bufs
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let read_n fd len =
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Log.debug (fun l -> l "read_n");
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let buf = Bytes.create len in
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let rec loop acc len =
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Lwt_unix.read fd buf 0 len >>= fun n ->
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let acc = String.sub buf 0 n :: acc in
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match len - n with
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| 0 -> Lwt.return (List.rev acc)
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| r -> loop acc r
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in
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loop [] len >|= fun bufs ->
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String.concat "" bufs
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13
projects/miragesdk/src/sdk/IO.mli
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13
projects/miragesdk/src/sdk/IO.mli
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@ -0,0 +1,13 @@
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(** IO helpers *)
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val really_write: Lwt_unix.file_descr -> string -> int -> int -> unit Lwt.t
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(** [really_write fd buf off len] writes exactly [len] bytes to [fd]. *)
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val really_read: Lwt_unix.file_descr -> string -> int -> int -> unit Lwt.t
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(** [really_read fd buf off len] reads exactly [len] bytes from [fd]. *)
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val read_all: Lwt_unix.file_descr -> string Lwt.t
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(** [read_all fd] reads as much data as it is available in [fd]. *)
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val read_n: Lwt_unix.file_descr -> int -> string Lwt.t
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(** [read_n fd n] reads exactly [n] bytes from [fd]. *)
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@ -4,7 +4,7 @@ let src = Logs.Src.create "init" ~doc:"Init steps"
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module Log = (val Logs.src_log src : Logs.LOG)
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(* FIXME: to avoid linking with gmp *)
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module IO = struct
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module No_IO = struct
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type ic = unit
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type oc = unit
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type ctx = unit
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@ -17,7 +17,7 @@ module IO = struct
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end
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(* FIXME: we don't use Irmin_unix.Git.FS.KV to avoid linking with gmp *)
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module Store = Irmin_git.FS.KV(IO)(Inflator)(Io_fs)
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module Store = Irmin_git.FS.KV(No_IO)(Inflator)(Io_fs)
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module KV = Store(Irmin.Contents.String)
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let v path =
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@ -28,17 +28,84 @@ let v path =
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let () =
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Irmin.Private.Watch.set_listen_dir_hook Irmin_watcher.hook
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module Message = struct
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[%%cenum
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type operation =
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| Write
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| Read
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| Delete
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[@@uint8_t]
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]
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type t = {
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operation: operation;
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path : string;
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payload : string option;
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}
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[%%cstruct type message = {
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operation : uint8_t; (* = type operation *)
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path : uint16_t;
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payload : uint16_t;
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} [@@little_endian]
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]
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(* to avoid warning 32 *)
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let _ = hexdump_message
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let _ = operation_to_string
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let _ = string_to_operation
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let read_message fd =
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IO.read_n fd 4 >>= fun buf ->
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let len =
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Cstruct.LE.get_uint32 (Cstruct.of_string buf) 0
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|> Int32.to_int
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in
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IO.read_n fd len >>= fun buf ->
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let buf = Cstruct.of_string buf in
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let operation = match int_to_operation (get_message_operation buf) with
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| None -> failwith "invalid operation"
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| Some o -> o
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in
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let path_len = get_message_path buf in
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let payload_len = get_message_payload buf in
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IO.read_n fd path_len >>= fun path ->
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(match payload_len with
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| 0 -> Lwt.return None
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| n -> IO.read_n fd n >|= fun x -> Some x)
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>|= fun payload ->
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{ operation; path; payload }
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let write_message fd msg =
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let operation = operation_to_int msg.operation in
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let path = String.length msg.path in
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let payload = match msg.payload with
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| None -> 0
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| Some x -> String.length x
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in
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let len = sizeof_message + path + payload in
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let buf = Cstruct.create len in
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set_message_operation buf operation;
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set_message_path buf path;
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set_message_payload buf path;
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Cstruct.blit_from_bytes msg.path 0 buf sizeof_message path;
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let () = match msg.payload with
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| None -> ()
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| Some x -> Cstruct.blit_from_bytes x 0 buf (sizeof_message+path) payload
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in
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IO.really_write fd (Cstruct.to_string buf) 0 len
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end
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module Dispatch = struct
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module Wm = struct
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module Rd = Webmachine.Rd
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include Webmachine.Make(Cohttp_lwt_unix.Server.IO)
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end
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open Message
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let with_key rd f =
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match KV.Key.of_string rd.Wm.Rd.dispatch_path with
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| Ok x -> f x
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| Error _ -> Wm.respond 404 rd
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let with_key msg f =
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match KV.Key.of_string msg.path with
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| Ok x -> f x
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| Error (`Msg e) -> Fmt.kstrf Lwt.fail_with "invalid key: %s" e
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let infof fmt =
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Fmt.kstrf (fun msg () ->
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@ -46,91 +113,50 @@ module Dispatch = struct
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Irmin.Info.v ~date ~author:"calf" msg
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) fmt
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let ok = "{\"status\": \"ok\"}"
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class item db = object(self)
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inherit [Cohttp_lwt_body.t] Wm.resource
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method private of_string rd =
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Cohttp_lwt_body.to_string rd.Wm.Rd.req_body >>= fun value ->
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with_key rd (fun key ->
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let dispatch db msg =
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with_key msg (fun key ->
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match msg.operation with
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| Write ->
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let info = infof "Updating %a" KV.Key.pp key in
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KV.set db ~info key value >>= fun () ->
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let resp_body = `String ok in
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let rd = { rd with Wm.Rd.resp_body } in
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Wm.continue true rd
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)
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(match msg.payload with
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| None -> Fmt.kstrf Lwt.fail_with "dispatch: missing payload"
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| Some v -> KV.set db ~info key v)
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| _ -> failwith "TODO"
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)
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method private to_string rd =
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with_key rd (fun key ->
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KV.find db key >>= function
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| Some value -> Wm.continue (`String value) rd
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| None -> assert false
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)
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method resource_exists rd =
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with_key rd (fun key ->
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KV.mem db key >>= fun mem ->
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Wm.continue mem rd
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)
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method allowed_methods rd =
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Wm.continue [`GET; `HEAD; `PUT; `DELETE] rd
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method content_types_provided rd =
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Wm.continue [
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"plain", self#to_string
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] rd
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method content_types_accepted rd =
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Wm.continue [
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"plain", self#of_string
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] rd
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method delete_resource rd =
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with_key rd (fun key ->
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let info = infof "Deleting %a" KV.Key.pp key in
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KV.remove db ~info key >>= fun () ->
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let resp_body = `String ok in
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Wm.continue true { rd with Wm.Rd.resp_body }
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)
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end
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let v db routes =
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let routes = List.map (fun r -> r, fun () -> new item db) routes in
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let callback (_ch, _conn) request body =
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let open Cohttp in
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(Wm.dispatch' routes ~body ~request >|= function
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| None -> (`Not_found, Header.init (), `String "Not found", [])
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| Some result -> result)
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>>= fun (status, headers, body, path) ->
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Log.info (fun l ->
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l "%d - %s %s"
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(Code.code_of_status status)
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(Code.string_of_method (Request.meth request))
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(Uri.path (Request.uri request)));
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Log.debug (fun l -> l "path=%a" Fmt.(Dump.list string) path);
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(* Finally, send the response to the client *)
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Cohttp_lwt_unix.Server.respond ~headers ~body ~status ()
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let serve fd db ~routes =
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let msgs = Queue.create () in
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let cond = Lwt_condition.create () in
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let rec listen () =
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read_message fd >>= fun msg ->
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Queue.add msg msgs;
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Lwt_condition.signal cond ();
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listen ()
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in
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(* create the server and handle requests with the function defined above *)
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let conn_closed (_, conn) =
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Log.info (fun l ->
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l "connection %s closed\n%!" (Cohttp.Connection.to_string conn))
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let rec process () =
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Lwt_condition.wait cond >>= fun () ->
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let msg = Queue.pop msgs in
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(if List.mem msg.path routes then dispatch db msg
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else (
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Log.err (fun l -> l "%s is not an allowed path" msg.path);
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Lwt.return_unit;
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)) >>= fun () ->
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process ()
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in
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Cohttp_lwt_unix.Server.make ~callback ~conn_closed ()
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Lwt.pick [
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listen ();
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process ();
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]
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end
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let int_of_fd (t:Lwt_unix.file_descr) =
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(Obj.magic (Lwt_unix.unix_file_descr t): int)
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let serve ~routes db fd =
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let http = Dispatch.v db routes in
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let on_exn e = Log.err (fun l -> l "ERROR: %a" Fmt.exn e) in
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Lwt_unix.blocking fd >>= fun blocking ->
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Log.debug (fun l ->
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l "Serving the control state over fd:%d (blocking=%b)"
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(int_of_fd fd) blocking
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);
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Cohttp_lwt_unix.Server.create ~on_exn ~mode:(`Fd fd) http
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Dispatch.serve fd db ~routes
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module KV: Irmin.KV with type contents = string
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module Message: sig
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(** The type for operations. *)
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type operation =
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| Write
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| Read
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| Delete
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(** The type for control messages. *)
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type t = {
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operation: operation;
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path : string;
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payload : string option;
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}
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val write_message: Lwt_unix.file_descr -> t -> unit Lwt.t
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(** [write_message fd t] writes a control message. *)
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val read_message: Lwt_unix.file_descr -> t Lwt.t
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(** [read_message fd] reads a control message. *)
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end
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val v: string -> KV.t Lwt.t
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(** [v p] is the KV store storing the control state, located at path
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[p] in the filesystem of the privileged container. *)
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@ -5,35 +5,6 @@ module Log = (val Logs.src_log src : Logs.LOG)
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let failf fmt = Fmt.kstrf Lwt.fail_with fmt
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module IO = struct
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let rec really_write fd buf off len =
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match len with
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| 0 -> Lwt.return_unit
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| len ->
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Lwt_unix.write fd buf off len >>= fun n ->
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really_write fd buf (off+n) (len-n)
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let rec really_read fd buf off len =
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match len with
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| 0 -> Lwt.return_unit
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| len ->
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Lwt_unix.read fd buf off len >>= fun n ->
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really_write fd buf (off+n) (len-n)
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let read_all fd =
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let len = 16 * 1024 in
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let buf = Bytes.create len in
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let rec loop acc =
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Lwt_unix.read fd buf 0 len >>= fun len ->
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let res = String.sub buf 0 len in
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loop (res :: acc)
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in
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loop [] >|= fun bufs ->
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String.concat "" (List.rev bufs)
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end
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module Fd = struct
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type t = {
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@ -120,12 +91,6 @@ module Fd = struct
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in
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loop ()
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let proxy x y =
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Lwt.pick [
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forward ~src:x ~dst:y;
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forward ~src:y ~dst:x;
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]
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end
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module Pipe = struct
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@ -229,7 +194,7 @@ let exec_priv ~pid ~cmd ~net ~ctl ~handlers =
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Fd.forward ~src:Pipe.(priv stderr) ~dst:Fd.stderr;
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(* TODO: Init.Fd.forward ~src:Init.Pipe.(priv metrics) ~dst:Init.Fd.metric; *)
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ctl ();
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(* handlers (); *)
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handlers ();
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])
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let run ~net ~ctl ~handlers cmd =
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@ -14,22 +14,6 @@
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data, e.g. the IP address once a DHCP lease is obtained.}
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}*)
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module IO: sig
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(** {IO helpers} *)
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val really_write: Lwt_unix.file_descr -> string -> int -> int -> unit Lwt.t
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(** [really_write fd buf off len] writes exactly [len] bytes. *)
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val really_read: Lwt_unix.file_descr -> string -> int -> int -> unit Lwt.t
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(** [really_read fd buf off len] reads exactly [len] bytes. *)
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val read_all: Lwt_unix.file_descr -> string Lwt.t
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(** [read_all fd] reads all the contents of [fd] bytes. *)
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end
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module Fd: sig
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type t
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@ -2,9 +2,8 @@
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(library
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((name sdk)
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(libraries (threads cohttp.lwt cstruct.lwt
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cmdliner fmt.cli logs.fmt logs.cli fmt.tty decompress
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irmin irmin-git irmin-http lwt.unix rawlink tuntap
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(libraries (threads cstruct.lwt cmdliner fmt.cli logs.fmt logs.cli fmt.tty
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decompress irmin irmin-git lwt.unix rawlink tuntap dispatch
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irmin-watcher inotify))
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(preprocess (per_file ((pps (cstruct.ppx)) (ctl))))
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))
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Block a user