203 lines
7 KiB
OCaml
203 lines
7 KiB
OCaml
(* (c) 2017 Hannes Mehnert, all rights reserved *)
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open Vmm_cli
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type stats = {
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start : Ptime.t ;
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vm_created : int ;
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vm_destroyed : int ;
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}
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let s = ref { start = Ptime_clock.now () ; vm_created = 0 ; vm_destroyed = 0 }
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let pp_stats ppf s =
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let diff = Ptime.(diff (Ptime_clock.now ()) s.start) in
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Fmt.pf ppf "up %a: %d vms created, %d vms destroyed, %d running"
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Ptime.Span.pp diff
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s.vm_created s.vm_destroyed (s.vm_created - s.vm_destroyed)
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open Lwt.Infix
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let version = `AV2
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let state = ref (Vmm_vmmd.init version)
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let create process cont =
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let await, wakeme = Lwt.wait () in
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match cont !state await with
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| Error (`Msg msg) ->
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Logs.err (fun m -> m "create continuation failed %s" msg) ;
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Lwt.return_unit
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| Ok (state'', out, name, vm) ->
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state := state'' ;
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s := { !s with vm_created = succ !s.vm_created } ;
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Lwt.async (fun () ->
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Vmm_lwt.wait_and_clear vm.Vmm_core.pid vm.Vmm_core.stdout >>= fun r ->
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let state', out' = Vmm_vmmd.handle_shutdown !state name vm r in
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s := { !s with vm_destroyed = succ !s.vm_destroyed } ;
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state := state' ;
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(process "handle_shutdown" out' >|= fun _ -> ()) >|= fun () ->
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Lwt.wakeup wakeme ()) ;
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(process "setting up console" out >|= fun _ -> ()) >>= fun () ->
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let state', out = Vmm_vmmd.setup_stats !state name vm in
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state := state' ;
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process "setting up statistics" [ out ] >|= fun _ -> ()
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let handle out fd addr =
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Logs.debug (fun m -> m "connection from %a" Vmm_lwt.pp_sockaddr addr) ;
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(* now we need to read a packet and handle it
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(1)
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(a) easy for info (look up name/prefix in resources)
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(b) destroy looks up vm in resources, executes kill (wait for pid will do the cleanup)
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logs "destroy issued"
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(c) create initiates the vm startup procedure:
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write image file, create fifo, create tap(s), send fifo to console
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-- Lwt effects happen (console) --
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executes solo5-hvt + waiter, send stats pid and taps, inserts await into state, logs "created vm"
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-- Lwt effects happen (stats, logs, wait_and_clear) --
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(2) goto (1)
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*)
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let process txt wires =
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Lwt_list.fold_left_s (fun r data ->
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match r, data with
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| Ok (), (#Vmm_vmmd.service_out as o) -> out o
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| Ok (), `Data wire ->
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(* rather: terminate connection *)
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Vmm_lwt.write_wire fd wire >|= fun _ ->
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Ok ()
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| Error e, _ -> Lwt.return (Error e))
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(Ok ()) wires >|= function
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| Ok () -> Ok ()
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| Error (`Msg msg) ->
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Logs.err (fun m -> m "error in process %s: %s" txt msg) ;
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Error ()
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in
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let rec loop () =
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Logs.debug (fun m -> m "now reading") ;
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Vmm_lwt.read_wire fd >>= function
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| Error _ ->
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Logs.err (fun m -> m "error while reading") ;
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Lwt.return_unit
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| Ok wire ->
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Logs.debug (fun m -> m "read sth") ;
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let state', data, next = Vmm_vmmd.handle_command !state wire in
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state := state' ;
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process "handle_command" data >>= function
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| Error () -> Lwt.return_unit
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| Ok () -> match next with
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| `Loop -> loop ()
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| `End -> Lwt.return_unit
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| `Create cont -> create process cont
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| `Wait (task, out) ->
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task >>= fun () ->
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process "wait" [ out ] >|= ignore
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| `Wait_and_create (task, next) ->
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task >>= fun () ->
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let state', data, n = next !state in
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state := state' ;
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process "wait and create" data >>= fun _ ->
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match n with
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| `End -> Lwt.return_unit
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| `Create cont -> create process cont >|= ignore
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in
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loop () >>= fun () ->
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Vmm_lwt.safe_close fd
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let init_sock sock =
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let name = Vmm_core.socket_path sock in
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let c = Lwt_unix.(socket PF_UNIX SOCK_STREAM 0) in
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Lwt_unix.set_close_on_exec c ;
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Lwt.catch (fun () ->
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Lwt_unix.(connect c (ADDR_UNIX name)) >|= fun () -> Some c)
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(fun e ->
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Logs.warn (fun m -> m "error %s connecting to socket %s"
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(Printexc.to_string e) name) ;
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(Lwt.catch (fun () -> Lwt_unix.close c) (fun _ -> Lwt.return_unit)) >|= fun () ->
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None)
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let create_mbox sock =
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init_sock sock >|= function
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| None -> None
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| Some fd ->
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let mvar = Lwt_mvar.create_empty () in
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(* could be more elaborate:
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if <log> fails, we can reconnect and spit our more log messages to the new socket
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if <console> fails, all running VMs terminate, so we can terminate as well ;)
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if <stat> fails, we'd need to retransmit all VM info to stat (or stat has to ask at connect) *)
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let rec loop () =
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Lwt_mvar.take mvar >>= fun data ->
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Vmm_lwt.write_wire fd data >>= function
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| Ok () -> loop ()
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| Error `Exception -> invalid_arg ("exception while writing to " ^ Fmt.to_to_string Vmm_core.pp_socket sock) ;
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in
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Lwt.async loop ;
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Some (mvar, fd)
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let server_socket sock =
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let name = Vmm_core.socket_path sock in
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(Lwt_unix.file_exists name >>= function
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| true -> Lwt_unix.unlink name
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| false -> Lwt.return_unit) >>= fun () ->
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let s = Lwt_unix.(socket PF_UNIX SOCK_STREAM 0) in
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Lwt_unix.set_close_on_exec s ;
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Lwt_unix.(bind s (ADDR_UNIX name)) >|= fun () ->
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Lwt_unix.listen s 1 ;
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s
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let rec stats_loop () =
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Logs.info (fun m -> m "%a" pp_stats !s) ;
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Lwt_unix.sleep 600. >>= fun () ->
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stats_loop ()
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let jump _ =
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Sys.(set_signal sigpipe Signal_ignore) ;
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Lwt_main.run
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(server_socket `Vmmd >>= fun ss ->
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(create_mbox `Console >|= function
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| None -> invalid_arg "cannot connect to console socket"
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| Some c -> c) >>= fun (c, c_fd) ->
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create_mbox `Stats >>= fun s ->
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(create_mbox `Log >|= function
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| None -> invalid_arg "cannot connect to log socket"
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| Some l -> l) >>= fun (l, l_fd) ->
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let write_reply (header, cmd) mvar fd =
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Lwt_mvar.put mvar (header, cmd) >>= fun () ->
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Vmm_lwt.read_wire fd >|= function
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| Ok (header', reply) ->
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if not Vmm_commands.(version_eq header.version header'.version) then
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Error (`Msg "wrong version in reply")
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else if not Vmm_commands.(Int64.equal header.sequence header'.sequence) then
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Error (`Msg "wrong id in reply")
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else begin match reply with
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| `Success _ -> Ok ()
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| `Failure msg -> Error (`Msg msg)
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| _ -> Error (`Msg "unexpected data")
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end
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| Error _ -> Error (`Msg "error in read")
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in
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let out = function
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| `Stat wire ->
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begin match s with
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| None -> Lwt.return (Ok ())
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| Some (s, s_fd) -> write_reply wire s s_fd
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end
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| `Log wire -> write_reply wire l l_fd
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| `Cons wire -> write_reply wire c c_fd
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in
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Lwt.async stats_loop ;
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let rec loop () =
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Lwt_unix.accept ss >>= fun (fd, addr) ->
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Lwt_unix.set_close_on_exec fd ;
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Lwt.async (fun () -> handle out fd addr) ;
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loop ()
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in
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loop ())
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open Cmdliner
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let cmd =
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Term.(ret (const jump $ setup_log)),
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Term.info "vmmd" ~version:"%%VERSION_NUM%%"
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let () = match Term.eval cmd with `Ok () -> exit 0 | _ -> exit 1
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