Source file flow_lwt_hvsock_shutdown.ml
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let src =
let src = Logs.Src.create "flow_lwt_hvsock_shutdown" ~doc:"AF_HYPERV framed messages" in
Logs.Src.set_level src (Some Logs.Info);
src
module Log = (val Logs.src_log src : Logs.LOG)
let maxMsgSize = 4 * 1024
module Message = struct
type t =
| ShutdownRead
| ShutdownWrite
| Close
| Data of int
let sizeof = 4
let marshal x rest =
Cstruct.LE.set_uint32 rest 0 (match x with
| ShutdownRead -> 0xdeadbeefl
| ShutdownWrite -> 0xbeefdeadl
| Close -> 0xdeaddeadl
| Data len -> Int32.of_int len
)
let unmarshal x =
match Cstruct.LE.get_uint32 x 0 with
| 0xdeadbeefl -> ShutdownRead
| 0xbeefdeadl -> ShutdownWrite
| 0xdeaddeadl -> Close
| other -> Data (Int32.to_int other)
end
open Lwt.Infix
module Make(Time: Mirage_time_lwt.S)(Fn: Lwt_hvsock.FN) = struct
module Hvsock = Lwt_hvsock.Make(Time)(Fn)
type 'a io = 'a Lwt.t
type buffer = Cstruct.t
type error = [ `Unix of Unix.error ]
let pp_error ppf (`Unix e) = Fmt.string ppf (Unix.error_message e)
type write_error = [ Mirage_flow.write_error | error ]
let pp_write_error ppf = function
| #Mirage_flow.write_error as e -> Mirage_flow.pp_write_error ppf e
| #error as e -> pp_error ppf e
let error_message = Unix.error_message
type flow = {
fd: Hvsock.t;
rlock: Lwt_mutex.t;
wlock: Lwt_mutex.t;
read_header_buffer: Cstruct.t;
write_header_buffer: Cstruct.t;
read_buffer: Bytes.t;
mutable leftover: Cstruct.t;
mutable closed: bool;
mutable read_closed: bool;
mutable write_closed: bool;
}
let connect fd =
let closed = false in
let read_closed = false in
let write_closed = false in
let rlock = Lwt_mutex.create () in
let wlock = Lwt_mutex.create () in
let = Cstruct.create Message.sizeof in
let = Cstruct.create Message.sizeof in
let read_buffer = Bytes.make maxMsgSize '\000' in
let leftover = Cstruct.create 0 in
{ fd; rlock; wlock; read_header_buffer; write_header_buffer;
read_buffer; leftover; closed; read_closed; write_closed }
let really_write fd buffer =
let rec loop remaining =
if Cstruct.len remaining = 0
then Lwt.return `Done
else
Hvsock.write fd remaining >>= function
| 0 -> Lwt.return `Eof
| n ->
loop (Cstruct.shift remaining n) in
Lwt.catch
(fun () ->
loop buffer
) (function
| Unix.Unix_error(Unix.ECONNRESET, _, _) ->
Lwt.return `Eof
| e ->
Log.err (fun f -> f "Hvsock.write: %s" (Printexc.to_string e));
Lwt.return `Eof
)
let really_read fd buffer =
let rec loop remaining =
if Cstruct.len remaining = 0
then Lwt.return `Done
else
Hvsock.read fd remaining >>= function
| 0 -> Lwt.return `Eof
| n -> loop (Cstruct.shift remaining n)
in
Lwt.catch
(fun () ->
loop buffer
) (function
| Unix.Unix_error(Unix.ECONNRESET, _, _) ->
Lwt.return `Eof
| e ->
Log.err (fun f -> f "Hvsock.read: %s" (Printexc.to_string e));
Lwt.return `Eof
)
let shutdown_write flow =
if flow.write_closed
then Lwt.return ()
else begin
flow.write_closed <- true;
Lwt_mutex.with_lock flow.wlock (fun () ->
Message.(marshal ShutdownWrite flow.write_header_buffer);
Log.debug (fun f -> f "TX ShutdownWrite");
really_write flow.fd flow.write_header_buffer >>= function
| `Done -> Lwt.return ()
| `Eof ->
Log.err (fun f -> f "Hvsock.shutdown_write: got Eof");
Lwt.return ()
)
end
let shutdown_read flow =
if flow.read_closed
then Lwt.return ()
else begin
flow.read_closed <- true;
Lwt_mutex.with_lock flow.wlock (fun () ->
Message.(marshal ShutdownRead flow.write_header_buffer);
Log.debug (fun f -> f "TX ShutdownRead");
really_write flow.fd flow.write_header_buffer >>= function
| `Done -> Lwt.return ()
| `Eof ->
Log.err (fun f -> f "Hvsock.shutdown_write: got Eof");
Lwt.return ()
)
end
let close flow =
match flow.closed with
| false ->
flow.closed <- true;
flow.read_closed <- true;
flow.write_closed <- true;
Lwt.finalize (fun () ->
Lwt_mutex.with_lock flow.wlock (fun () ->
Log.debug (fun f -> f "TX Close");
Message.(marshal Close flow.write_header_buffer);
really_write flow.fd flow.write_header_buffer >>= function
| `Eof -> Lwt.return ()
| `Done ->
let = Cstruct.create Message.sizeof in
let payload = Cstruct.create maxMsgSize in
let rec wait_for_close () =
really_read flow.fd header >>= function
| `Eof -> Lwt.return ()
| `Done ->
match Message.unmarshal header with
| Message.Close ->
Log.debug (fun f -> f "RX Close");
Lwt.return ()
| Message.ShutdownRead ->
Log.debug (fun f -> f "RX Close");
Lwt.return ()
| Message.ShutdownWrite ->
Log.debug (fun f -> f "RX ShutdownWrite");
wait_for_close ()
| Message.Data n ->
Log.debug (fun f -> f "RX Data %d" n);
really_read flow.fd (Cstruct.sub payload 0 n) >>= function
| `Eof -> Lwt.return ()
| `Done -> wait_for_close () in
wait_for_close ()
)
) (fun () ->
Hvsock.close flow.fd
)
| true ->
Lwt.return ()
let write flow buffer =
if flow.closed || flow.write_closed then Lwt.return (Error `Closed)
else
let rec loop remaining =
let len = Cstruct.len remaining in
if len = 0
then Lwt.return (Ok ())
else
let this_batch = min len maxMsgSize in
Lwt_mutex.with_lock flow.wlock
(fun () ->
let to_send = Cstruct.sub remaining 0 this_batch in
Log.debug (fun f ->
f "TX Data %d (%s)" this_batch
(String.escaped (Cstruct.to_string to_send)));
Message.(marshal (Data this_batch) flow.write_header_buffer);
really_write flow.fd flow.write_header_buffer >>= function
| `Eof -> Lwt.return `Eof
| `Done -> really_write flow.fd to_send
)
>>= function
| `Eof -> Lwt.return (Error `Closed)
| `Done -> loop (Cstruct.shift remaining this_batch)
in
loop buffer
let read_next_chunk flow =
if flow.closed || flow.read_closed then Lwt.return `Eof
else
let rec loop () =
really_read flow.fd flow.read_header_buffer >>= function
| `Eof -> Lwt.return `Eof
| `Done ->
match Message.unmarshal flow.read_header_buffer with
| Message.ShutdownWrite ->
Log.debug (fun f -> f "RX ShutdownWrite");
flow.read_closed <- true;
Lwt.return `Eof
| Message.Close ->
Log.debug (fun f -> f "RX Close");
close flow >|= fun () ->
`Eof
| Message.ShutdownRead ->
Log.debug (fun f -> f "RX ShutdownRead");
flow.write_closed <- true;
loop ()
| Message.Data n ->
Log.debug (fun f -> f "RX Data %d" n);
let payload = Cstruct.create n in
really_read flow.fd payload >|= function
| `Eof -> `Eof
| `Done -> `Ok payload
in
loop ()
let read flow =
if Cstruct.len flow.leftover = 0 then
Lwt_mutex.with_lock flow.rlock (fun () ->
read_next_chunk flow >|= function
| `Eof -> Ok `Eof
| `Ok x -> Ok (`Data x)
)
else
let result = flow.leftover in
flow.leftover <- Cstruct.create 0;
Lwt.return (Ok (`Data result))
let rec read_into flow buf =
if Cstruct.len buf = 0
then Lwt.return (Ok (`Data ()))
else begin
if Cstruct.len flow.leftover = 0 then begin
Lwt_mutex.with_lock flow.rlock (fun () ->
read_next_chunk flow >|= function
| `Eof -> `Eof
| `Ok payload ->
let to_consume = min (Cstruct.len buf) (Cstruct.len payload) in
Cstruct.blit payload 0 buf 0 to_consume;
flow.leftover <- Cstruct.shift payload to_consume;
`Ok (Cstruct.shift buf to_consume)
) >>= function
| `Eof -> Lwt.return (Ok `Eof)
| `Ok buf -> read_into flow buf
end else begin
let to_consume = min (Cstruct.len buf) (Cstruct.len flow.leftover) in
Cstruct.blit flow.leftover 0 buf 0 to_consume;
flow.leftover <- Cstruct.shift flow.leftover to_consume;
read_into flow (Cstruct.shift buf to_consume)
end
end
let writev flow bufs =
let rec loop = function
| [] -> Lwt.return (Ok ())
| x :: xs ->
write flow x >>= function
| Error _ as e -> Lwt.return e
| Ok () -> loop xs in
loop bufs
end