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open Lwt.Infix
let src = Logs.Src.create "tcp.segment" ~doc:"Mirage TCP Segment module"
module Log = (val Logs.src_log src : Logs.LOG)
let lwt_sequence_add_l s seq =
let (_:'a Lwt_dllist.node) = Lwt_dllist.add_l s seq in
()
let lwt_sequence_add_r s seq =
let (_:'a Lwt_dllist.node) = Lwt_dllist.add_r s seq in
()
let peek_opt_l seq =
match Lwt_dllist.take_opt_l seq with
| None -> None
| Some s ->
lwt_sequence_add_l s seq;
Some s
let peek_l seq =
match Lwt_dllist.take_opt_l seq with
| None -> assert false
| Some s ->
let _ = Lwt_dllist.add_l s seq in
s
let rec reset_seq segs =
match Lwt_dllist.take_opt_l segs with
| None -> ()
| Some _ -> reset_seq segs
module Rx(ACK: Ack.M) = struct
open Tcp_packet
type segment = { header: Tcp_packet.t; payload: Cstruct.t }
let pp_segment fmt {; payload} =
Format.fprintf fmt
"RX seg seq=%a acknum=%a ack=%b rst=%b syn=%b fin=%b win=%d len=%d"
Sequence.pp header.sequence Sequence.pp header.ack_number
header.ack header.rst header.syn header.fin
header.window (Cstruct.length payload)
let len seg =
Sequence.of_int ((Cstruct.length seg.payload) +
(if seg.header.fin then 1 else 0) +
(if seg.header.syn then 1 else 0))
module S = Set.Make(struct
type t = segment
let compare a b = (Sequence.compare a.header.sequence b.header.sequence)
end)
type t = {
mutable segs: S.t;
rx_data: (Cstruct.t list option * Sequence.t option) Lwt_mvar.t;
ack: ACK.t;
tx_ack: (Sequence.t * int) Lwt_mvar.t;
wnd: Window.t;
state: State.t;
}
let create ~rx_data ~ack ~wnd ~state ~tx_ack =
let segs = S.empty in
{ segs; rx_data; ack; tx_ack; wnd; state }
let pp fmt t =
let pp_v fmt seg =
Format.fprintf fmt "%a[%a]" Sequence.pp seg.header.sequence Sequence.pp (len seg)
in
Format.pp_print_list pp_v fmt (S.elements t.segs)
let fin q =
try (S.max_elt q).header.fin
with Not_found -> false
let is_empty q = S.is_empty q.segs
let check_valid_segment q seg =
if seg.header.rst then
begin match State.state q.state with
| State.Reset ->
`Drop
| _ ->
if Sequence.compare seg.header.sequence (Window.rx_nxt q.wnd) = 0 then
`Reset
else if Window.valid q.wnd seg.header.sequence then
`ChallengeAck
else
`Drop
end
else if seg.header.syn then
`ChallengeAck
else if Window.valid q.wnd seg.header.sequence then
let min = Sequence.(sub (Window.tx_una q.wnd) (of_int32 (Window.max_tx_wnd q.wnd))) in
if Sequence.between seg.header.ack_number min (Window.tx_nxt q.wnd) then
`Ok
else
`ChallengeAck
else
`Drop
let send_challenge_ack q =
ACK.pushack q.ack Sequence.zero
let input (q:t) seg =
match check_valid_segment q seg with
| `Ok ->
let force_ack = ref false in
let segs = S.add seg q.segs in
let ready, waiting = S.fold (fun seg acc ->
match Sequence.compare seg.header.sequence (Window.rx_nxt_inseq q.wnd) with
| (-1) ->
force_ack := true;
acc
| 0 ->
let (ready,waiting) = acc in
Window.rx_advance_inseq q.wnd (len seg);
(S.add seg ready), waiting
| 1 ->
force_ack := true;
let (ready,waiting) = acc in
ready, (S.add seg waiting)
| _ -> assert false
) segs (S.empty, S.empty) in
q.segs <- waiting;
let tx_ack =
if seg.header.ack && (Sequence.geq seg.header.ack_number (Window.ack_seq q.wnd)) then begin
State.tick q.state (State.Recv_ack seg.header.ack_number);
let data_in_flight = Window.tx_inflight q.wnd in
let ack_has_advanced = (Window.ack_seq q.wnd) <> seg.header.ack_number in
let win_has_changed = (Window.ack_win q.wnd) <> seg.header.window in
if ((data_in_flight && (Window.ack_serviced q.wnd || not ack_has_advanced)) ||
(not data_in_flight && win_has_changed)) then begin
Window.set_ack_serviced q.wnd false;
Window.set_ack_seq_win q.wnd seg.header.ack_number seg.header.window;
Lwt_mvar.put q.tx_ack ((Window.ack_seq q.wnd), (Window.ack_win q.wnd))
end else begin
Window.set_ack_seq_win q.wnd seg.header.ack_number seg.header.window;
Lwt.return_unit
end
end else Lwt.return_unit
in
let urx_inform =
let elems_r, winadv = S.fold (fun seg (acc_l, acc_w) ->
(if Cstruct.length seg.payload > 0 then seg.payload :: acc_l else acc_l),
(Sequence.add (len seg) acc_w)
) ready ([], Sequence.zero) in
let elems = List.rev elems_r in
let w = if !force_ack || Sequence.(gt winadv zero)
then Some winadv else None in
Lwt_mvar.put q.rx_data (Some elems, w) >>= fun () ->
(if fin ready then begin
if S.cardinal waiting != 0 then
Log.info (fun f -> f "application receive queue closed, but there are waiting segments.");
Lwt_mvar.put q.rx_data (None, Some Sequence.zero)
end else Lwt.return_unit)
in
tx_ack <&> urx_inform
| `ChallengeAck ->
send_challenge_ack q
| `Drop ->
Lwt.return_unit
| `Reset ->
State.tick q.state State.Recv_rst;
q.segs <- S.empty;
let txalert ack_svcd =
if not ack_svcd then Lwt.return_unit
else Lwt_mvar.put q.tx_ack (Window.ack_seq q.wnd, Window.ack_win q.wnd)
in
txalert (Window.ack_serviced q.wnd) >>= fun () ->
Lwt_mvar.put q.rx_data (None, Some Sequence.zero)
end
type tx_flags =
| No_flags
| Syn
| Fin
| Rst
| Psh
module Tx = struct
type ('a, 'b) xmit =
flags:tx_flags -> wnd:Window.t -> options:Options.t list ->
seq:Sequence.t -> Cstruct.t -> ('a, 'b) result Lwt.t
type seg = {
data: Cstruct.t;
flags: tx_flags;
seq: Sequence.t;
}
let len seg =
Sequence.of_int
((match seg.flags with
| No_flags | Psh | Rst -> 0
| Syn | Fin -> 1) +
(Cstruct.length seg.data))
type ('a, 'b) q = {
segs: seg Lwt_dllist.t;
xmit: ('a, 'b) xmit;
rx_ack: Sequence.t Lwt_mvar.t;
wnd: Window.t;
state: State.t;
tx_wnd_update: int Lwt_mvar.t;
rexmit_timer: Tcptimer.t;
mutable dup_acks: int;
}
type t = T: ('a, 'b) q -> t
let ack_segment _ _ = ()
let ontimer xmit st segs wnd seq =
match State.state st with
| State.Syn_rcvd _ | State.Established | State.Fin_wait_1 _
| State.Close_wait | State.Closing _ | State.Last_ack _ ->
begin match peek_opt_l segs with
| None -> Lwt.return Tcptimer.Stoptimer
| Some rexmit_seg ->
match rexmit_seg.seq = seq with
| false ->
Log.debug (fun fmt ->
fmt "PUSHING TIMER - new time=%Lu, new seq=%a"
(Window.rto wnd) Sequence.pp rexmit_seg.seq);
let ret =
Tcptimer.ContinueSetPeriod (Window.rto wnd, rexmit_seg.seq)
in
Lwt.return ret
| true ->
if (Window.max_rexmits_done wnd) then (
Log.debug (fun f -> f "Max retransmits reached: %a" Window.pp wnd);
Log.info (fun fmt -> fmt "Max retransmits reached for connection - terminating");
State.tick st State.Timeout;
Lwt.return Tcptimer.Stoptimer
) else (
let flags = rexmit_seg.flags in
let options = [] in
Log.debug (fun fmt ->
fmt "TCP retransmission triggered by timer! seq = %d"
(Sequence.to_int rexmit_seg.seq));
Lwt.async
(fun () ->
xmit ~flags ~wnd ~options ~seq rexmit_seg.data
>|= fun (_: ('a,'b) result) -> () );
Window.alert_fast_rexmit wnd rexmit_seg.seq;
Window.backoff_rto wnd;
Log.debug (fun fmt -> fmt "Backed off! %a" Window.pp wnd);
Log.debug (fun fmt ->
fmt "PUSHING TIMER - new time = %Lu, new seq = %a"
(Window.rto wnd) Sequence.pp rexmit_seg.seq);
let ret =
Tcptimer.ContinueSetPeriod (Window.rto wnd, rexmit_seg.seq)
in
Lwt.return ret
)
end
| _ -> Lwt.return Tcptimer.Stoptimer
let rec clearsegs q ack_remaining segs =
match Sequence.(gt ack_remaining zero) with
| false -> Sequence.zero
| true ->
match Lwt_dllist.take_opt_l segs with
| None ->
Log.debug (fun f -> f "Dubious ACK received");
ack_remaining
| Some s ->
let seg_len = (len s) in
match Sequence.lt ack_remaining seg_len with
| true ->
Log.debug (fun f -> f "Partial ACK received");
lwt_sequence_add_l s segs;
ack_remaining
| false ->
ack_segment q s;
clearsegs q (Sequence.sub ack_remaining seg_len) segs
let rto_t q tx_ack =
let rec tx_ack_t () =
let serviceack dupack ack_len seq win =
let partleft = clearsegs q ack_len q.segs in
Window.tx_ack q.wnd (Sequence.sub seq partleft) win;
match dupack || Window.fast_rec q.wnd with
| true ->
q.dup_acks <- q.dup_acks + 1;
if q.dup_acks = 3 ||
(Sequence.to_int32 ack_len > 0l) then begin
Window.alert_fast_rexmit q.wnd seq;
let rexmit_seg = peek_l q.segs in
Log.debug (fun fmt ->
fmt "TCP fast retransmission seq=%a, dupack=%a"
Sequence.pp rexmit_seg.seq Sequence.pp seq);
let { wnd; _ } = q in
let flags=rexmit_seg.flags in
let options=[] in
Lwt.async (fun () ->
q.xmit ~flags ~wnd ~options ~seq rexmit_seg.data
>|= fun (_: ('a,'b) result) -> () );
Lwt.return_unit
end else
Lwt.return_unit
| false ->
q.dup_acks <- 0;
Lwt.return_unit
in
Lwt_mvar.take tx_ack >>= fun _ ->
Window.set_ack_serviced q.wnd true;
let seq = Window.ack_seq q.wnd in
let win = Window.ack_win q.wnd in
begin match State.state q.state with
| State.Reset ->
reset_seq q.segs;
Lwt.return_unit
| _ ->
let ack_len = Sequence.sub seq (Window.tx_una q.wnd) in
let dupacktest () =
0l = Sequence.to_int32 ack_len &&
Window.tx_wnd_unscaled q.wnd = Int32.of_int win &&
not (Lwt_dllist.is_empty q.segs)
in
serviceack (dupacktest ()) ack_len seq win
end >>= fun () ->
Lwt_mvar.put q.tx_wnd_update win >>= fun () ->
tx_ack_t ()
in
tx_ack_t ()
let create ~xmit ~wnd ~state ~rx_ack ~tx_ack ~tx_wnd_update =
let segs = Lwt_dllist.create () in
let dup_acks = 0 in
let expire = ontimer xmit state segs wnd in
let period_ns = Window.rto wnd in
let rexmit_timer = Tcptimer.t ~period_ns ~expire in
let q =
{ xmit; wnd; state; rx_ack; segs; tx_wnd_update;
rexmit_timer; dup_acks }
in
let t = rto_t q tx_ack in
T q, t
let output ?(flags=No_flags) ?(options=[]) (T q) data =
let { wnd; _ } = q in
let ack = Window.rx_nxt wnd in
let seq = Window.tx_nxt wnd in
let seg = { data; flags; seq } in
let seq_len = len seg in
Window.tx_advance q.wnd seq_len;
let q_rexmit () =
match Sequence.(gt seq_len zero) with
| false -> Lwt.return_unit
| true ->
lwt_sequence_add_r seg q.segs;
let p = Window.rto q.wnd in
Tcptimer.start q.rexmit_timer ~p seg.seq
in
q_rexmit () >>= fun () ->
q.xmit ~flags ~wnd ~options ~seq data >>= fun _ ->
Lwt_mvar.put q.rx_ack ack
end