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wip: add moonpool-lwt
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10
dune-project
10
dune-project
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@ -33,4 +33,14 @@
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(tags
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(tags
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(thread pool domain futures fork-join)))
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(thread pool domain futures fork-join)))
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(package
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(name moonpool-lwt)
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(synopsis "Event loop for moonpool based on Lwt-engine")
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(depends
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(moonpool (= :version))
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(ocaml (>= 5.0))
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lwt
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base-unix
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(odoc :with-doc)))
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; See the complete stanza docs at https://dune.readthedocs.io/en/stable/dune-files.html#dune-project
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; See the complete stanza docs at https://dune.readthedocs.io/en/stable/dune-files.html#dune-project
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12
src/lwt/cancel_handle.ml
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12
src/lwt/cancel_handle.ml
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(** Cancellation handle. *)
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type t = { cancel: unit -> unit } [@@unboxed]
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(** A handle to cancel atomic actions (waiting on something), or
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stopping a subscription to some event. *)
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(** Perform the cancellation. This should be idempotent. *)
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let[@inline] cancel self = self.cancel ()
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(** Dummy that cancels nothing *)
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let dummy : t = { cancel = ignore }
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8
src/lwt/common_.ml
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8
src/lwt/common_.ml
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module M = Moonpool
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module Exn_bt = M.Exn_bt
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let ( let@ ) = ( @@ )
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let[@inline] cancel_handle_of_event (ev : Lwt_engine.event) : Cancel_handle.t =
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let cancel () = Lwt_engine.stop_event ev in
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{ Cancel_handle.cancel }
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8
src/lwt/dune
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8
src/lwt/dune
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@ -0,0 +1,8 @@
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(library
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(name moonpool_lwt)
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(public_name moonpool-lwt)
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(private_modules common_)
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(enabled_if
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(>= %{ocaml_version} 5.0))
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(libraries moonpool moonpool.fib lwt lwt.unix))
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159
src/lwt/moonpool_lwt.ml
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159
src/lwt/moonpool_lwt.ml
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@ -0,0 +1,159 @@
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open Common_
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module Cancel_handle = Cancel_handle
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module Fiber = Moonpool_fib.Fiber
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module FLS = Moonpool_fib.Fls
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open struct
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let _pp_pending out engine =
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Printf.fprintf out "readc=%d writec=%d timerc=%d" engine#readable_count
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engine#writable_count engine#timer_count
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end
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(** Action scheduled from outside the loop *)
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module Action = struct
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type event = Lwt_engine.event
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type cb = event -> unit
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(** Action that we ask the lwt loop to perform, from the outside *)
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type t =
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| Wait_readable of Unix.file_descr * cb
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| Wait_writable of Unix.file_descr * cb
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| Sleep of float * bool * cb
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| Cancel of event
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| On_termination : 'a Lwt.t * ('a Exn_bt.result -> unit) -> t
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| Wakeup : 'a Lwt.u * 'a -> t
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| Wakeup_exn : _ Lwt.u * exn -> t
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| Other of (unit -> unit)
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(** Perform the action from within the Lwt thread *)
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let perform (self : t) : unit =
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match self with
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| Wait_readable (fd, cb) -> ignore (Lwt_engine.on_readable fd cb : event)
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| Wait_writable (fd, cb) -> ignore (Lwt_engine.on_writable fd cb : event)
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| Sleep (f, repeat, cb) -> ignore (Lwt_engine.on_timer f repeat cb : event)
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| Cancel ev -> Lwt_engine.stop_event ev
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| On_termination (fut, f) ->
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Lwt.on_any fut
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(fun x -> f @@ Ok x)
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(fun exn -> f @@ Error (Exn_bt.get_callstack 10 exn))
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| Wakeup (prom, x) -> Lwt.wakeup prom x
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| Wakeup_exn (prom, e) -> Lwt.wakeup_exn prom e
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| Other f -> f ()
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end
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module Action_queue = struct
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type t = { q: Action.t list Atomic.t } [@@unboxed]
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let create () : t = { q = Atomic.make [] }
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let pop_all (self : t) : _ list = Atomic.exchange self.q []
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(** Push the action and return whether the queue was previously empty *)
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let push (self : t) (a : Action.t) : bool =
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let is_first = ref true in
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while
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let old = Atomic.get self.q in
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if Atomic.compare_and_set self.q old (a :: old) then (
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is_first := old = [];
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false
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) else
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true
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do
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()
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done;
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!is_first
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end
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module Perform_action_in_lwt = struct
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open struct
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let actions_ : Action_queue.t = Action_queue.create ()
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(** Gets the current set of notifications and perform them from inside the
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Lwt thread *)
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let perform_pending_actions () : unit =
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let l = Action_queue.pop_all actions_ in
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List.iter Action.perform l
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let notification : int =
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Lwt_unix.make_notification ~once:false perform_pending_actions
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end
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let schedule (a : Action.t) : unit =
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let is_first = Action_queue.push actions_ a in
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if is_first then Lwt_unix.send_notification notification
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end
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let get_runner () : M.Runner.t =
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match M.Runner.get_current_runner () with
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| Some r -> r
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| None -> failwith "Moonpool_lwt.get_runner: not inside a runner"
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let fut_of_lwt (lwt_fut : _ Lwt.t) : _ M.Fut.t =
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match Lwt.poll lwt_fut with
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| Some x -> M.Fut.return x
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| None ->
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let fut, prom = M.Fut.make () in
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Lwt.on_any lwt_fut
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(fun x -> M.Fut.fulfill prom (Ok x))
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(fun e -> M.Fut.fulfill prom (Error (e, Printexc.get_callstack 10)));
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fut
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let await_lwt (fut : _ Lwt.t) =
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match Lwt.poll fut with
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| Some x -> x
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| None ->
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(* suspend fiber, wake it up when [fut] resolves *)
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M.Private.Suspend_.suspend
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{
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handle =
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(fun ~ls ~run:_ ~resume sus ->
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let on_lwt_done _ = resume ~ls sus @@ Ok () in
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Perform_action_in_lwt.(
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schedule Action.(On_termination (fut, on_lwt_done))));
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};
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(match Lwt.poll fut with
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| Some x -> x
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| None -> assert false)
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let run_in_lwt f : _ M.Fut.t =
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let fut, prom = M.Fut.make () in
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Perform_action_in_lwt.schedule
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(Action.Other
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(fun () ->
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let lwt_fut = f () in
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Lwt.on_any lwt_fut
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(fun x -> M.Fut.fulfill prom @@ Ok x)
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(fun exn -> M.Fut.fulfill prom @@ Error (Exn_bt.get exn))));
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fut
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let run_in_lwt_and_await f = M.Fut.await @@ run_in_lwt f
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let spawn_as_lwt ?name (f : unit -> 'a) : 'a Lwt.t =
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let fut, promise = Lwt.wait () in
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let _fib =
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Fiber.spawn_top ?name (fun () ->
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try
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let x = f () in
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Perform_action_in_lwt.schedule (Action.Wakeup (promise, x))
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with exn ->
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Perform_action_in_lwt.schedule (Action.Wakeup_exn (promise, exn)))
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in
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fut
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let main_with_runner ~runner (f : unit -> 'a) : 'a =
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let lwt_fut, lwt_prom = Lwt.wait () in
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let _fiber =
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Fiber.spawn_top ~name:"Moonpool_lwt.main" ~on:runner (fun () ->
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try
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let x = f () in
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Perform_action_in_lwt.schedule (Action.Wakeup (lwt_prom, x))
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with exn ->
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Perform_action_in_lwt.schedule (Action.Wakeup_exn (lwt_prom, exn)))
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in
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Lwt_main.run lwt_fut
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let main f =
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let@ runner = M.Ws_pool.with_ () in
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main_with_runner ~runner f
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31
src/lwt/moonpool_lwt.mli
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31
src/lwt/moonpool_lwt.mli
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@ -0,0 +1,31 @@
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(** Lwt_engine-based event loop for Moonpool *)
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module Cancel_handle = Cancel_handle
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module Fiber = Moonpool_fib.Fiber
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module FLS = Moonpool_fib.Fls
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val fut_of_lwt : 'a Lwt.t -> 'a Moonpool.Fut.t
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val await_lwt : 'a Lwt.t -> 'a
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(** [await_lwt fut] awaits a Lwt future from inside a task running on
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a moonpool runner. *)
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val run_in_lwt : (unit -> 'a Lwt.t) -> 'a Moonpool.Fut.t
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(** [run_in_lwt f] runs [f()] from within the Lwt thread
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and returns a thread-safe future. *)
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val run_in_lwt_and_await : (unit -> 'a Lwt.t) -> 'a
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(** [run_in_lwt_and_await f] runs [f] in the Lwt thread, and
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awaits its result. Must be run from inside a moonpool runner. *)
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val get_runner : unit -> Moonpool.Runner.t
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(** Returns the runner from within which this is called.
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Must be run from within a fiber.
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@raise Failure if not run within a fiber *)
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val main_with_runner : runner:Moonpool.Runner.t -> (unit -> 'a) -> 'a
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(** [main_with_runner ~runner f] starts a Lwt-based event loop and runs [f()] inside
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a fiber in [runner]. *)
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val main : (unit -> 'a) -> 'a
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(** Like {!main_with_runner} but with a default choice of runner. *)
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