2017-01-14 16:14:02 +04:00
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(**************************************************************************)
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(* *)
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(* Copyright (c) 2014 - 2016. *)
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(* Dynamic Ledger Solutions, Inc. <contact@tezos.com> *)
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(* *)
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(* All rights reserved. No warranty, explicit or implicit, provided. *)
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(* *)
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(**************************************************************************)
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(* TODO Use Kaputt on the client side and remove `assert` from the
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server. *)
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open Error_monad
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open P2p_types
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include Logging.Make (struct let name = "test-p2p-connection" end)
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2017-01-24 01:01:18 +04:00
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let proof_of_work_target = Crypto_box.make_target 16.
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2017-01-14 16:14:02 +04:00
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let id1 = Identity.generate proof_of_work_target
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let id2 = Identity.generate proof_of_work_target
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let id0 =
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(* Luckilly, this will be an insuficient proof of work! *)
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2017-01-24 01:01:18 +04:00
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Identity.generate (Crypto_box.make_target 0.)
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2017-01-14 16:14:02 +04:00
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let versions = Version.[{ name = "TEST" ; minor = 0 ; major = 0 }]
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let rec listen ?port addr =
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let tentative_port =
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match port with
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| None -> 1024 + Random.int 8192
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| Some port -> port in
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let uaddr = Ipaddr_unix.V6.to_inet_addr addr in
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let main_socket = Lwt_unix.(socket PF_INET6 SOCK_STREAM 0) in
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Lwt_unix.(setsockopt main_socket SO_REUSEADDR true) ;
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Lwt.catch begin fun () ->
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Lwt_unix.Versioned.bind_2 main_socket
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(ADDR_INET (uaddr, tentative_port)) >>= fun () ->
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Lwt_unix.listen main_socket 1 ;
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Lwt.return (main_socket, tentative_port)
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end begin function
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| Unix.Unix_error
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((Unix.EADDRINUSE | Unix.EADDRNOTAVAIL), _, _) when port = None ->
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listen addr
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| exn -> Lwt.fail exn
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end
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let raw_accept sched main_socket =
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Lwt_unix.accept main_socket >>= fun (fd, sockaddr) ->
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let fd = P2p_io_scheduler.register sched fd in
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let point =
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match sockaddr with
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| Lwt_unix.ADDR_UNIX _ -> assert false
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| Lwt_unix.ADDR_INET (addr, port) ->
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Ipaddr_unix.V6.of_inet_addr_exn addr, port in
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Lwt.return (fd, point)
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let accept sched main_socket =
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raw_accept sched main_socket >>= fun (fd, point) ->
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P2p_connection.authenticate
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~proof_of_work_target
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~incoming:true fd point id1 versions
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let raw_connect sched addr port =
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let fd = Lwt_unix.socket PF_INET6 SOCK_STREAM 0 in
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let uaddr =
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Lwt_unix.ADDR_INET (Ipaddr_unix.V6.to_inet_addr addr, port) in
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Lwt_unix.connect fd uaddr >>= fun () ->
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let fd = P2p_io_scheduler.register sched fd in
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Lwt.return fd
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let connect sched addr port id =
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raw_connect sched addr port >>= fun fd ->
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P2p_connection.authenticate
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~proof_of_work_target
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~incoming:false fd (addr, port) id versions >>=? fun (info, auth_fd) ->
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assert (not info.incoming) ;
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assert (Gid.compare info.gid id1.gid = 0) ;
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return auth_fd
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let simple_msg =
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MBytes.create (1 lsl 1)
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let is_rejected = function
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| Error [P2p_connection.Rejected] -> true
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2017-01-20 18:25:12 +04:00
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| Ok _ -> false
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| Error err ->
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log_notice "Error: %a" pp_print_error err ;
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false
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2017-01-14 16:14:02 +04:00
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let is_connection_closed = function
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| Error [P2p_io_scheduler.Connection_closed] -> true
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2017-01-20 18:25:12 +04:00
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| Ok _ -> false
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| Error err ->
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log_notice "Error: %a" pp_print_error err ;
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false
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2017-01-14 16:14:02 +04:00
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let bytes_encoding = Data_encoding.Variable.bytes
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let server main_socket =
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let sched = P2p_io_scheduler.create ~read_buffer_size:(1 lsl 12) () in
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(* Low-level test. *)
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raw_accept sched main_socket >>= fun (fd, point) ->
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lwt_log_notice "Low_level" >>= fun () ->
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P2p_io_scheduler.write fd simple_msg >>=? fun () ->
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P2p_io_scheduler.close fd >>=? fun _ ->
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lwt_log_notice "Low_level OK" >>= fun () ->
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(* Kick the first connection. *)
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accept sched main_socket >>=? fun (info, auth_fd) ->
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lwt_log_notice "Kick" >>= fun () ->
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assert (info.incoming) ;
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assert (Gid.compare info.gid id2.gid = 0) ;
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P2p_connection.kick auth_fd >>= fun () ->
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lwt_log_notice "Kick OK" >>= fun () ->
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(* Let's be rejected. *)
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accept sched main_socket >>=? fun (info, auth_fd) ->
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P2p_connection.accept auth_fd bytes_encoding >>= fun conn ->
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assert (is_rejected conn) ;
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lwt_log_notice "Kicked OK" >>= fun () ->
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(* Accept and send a single message. *)
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accept sched main_socket >>=? fun (info, auth_fd) ->
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lwt_log_notice "Single" >>= fun () ->
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P2p_connection.accept auth_fd bytes_encoding >>=? fun conn ->
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P2p_connection.write_sync conn simple_msg >>=? fun () ->
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P2p_connection.close conn >>= fun _stat ->
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lwt_log_notice "Single OK" >>= fun () ->
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(* Accept and send a single message, while the client expected 2. *)
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accept sched main_socket >>=? fun (info, auth_fd) ->
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lwt_log_notice "Early close (read)" >>= fun () ->
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P2p_connection.accept auth_fd bytes_encoding >>=? fun conn ->
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P2p_connection.write_sync conn simple_msg >>=? fun () ->
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P2p_connection.close conn >>= fun _stat ->
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lwt_log_notice "Early close (read) OK" >>= fun () ->
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(* Accept and wait for the client to close the connection. *)
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accept sched main_socket >>=? fun (info, auth_fd) ->
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lwt_log_notice "Early close (write)" >>= fun () ->
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P2p_connection.accept auth_fd bytes_encoding >>=? fun conn ->
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P2p_connection.close conn >>= fun _stat ->
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lwt_log_notice "Early close (write) OK" >>= fun () ->
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P2p_io_scheduler.shutdown sched >>= fun () ->
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Lwt_unix.sleep 0.2 >>= fun () ->
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lwt_log_notice "Success" >>= fun () ->
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return ()
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let client addr port =
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let msg = MBytes.create (MBytes.length simple_msg) in
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let sched = P2p_io_scheduler.create ~read_buffer_size:(1 lsl 12) () in
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raw_connect sched addr port >>= fun fd ->
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P2p_io_scheduler.read_full fd msg >>=? fun () ->
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assert (MBytes.compare simple_msg msg = 0) ;
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P2p_io_scheduler.close fd >>=? fun () ->
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lwt_log_notice "Low_level OK" >>= fun () ->
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(* let's be rejected. *)
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connect sched addr port id2 >>=? fun auth_fd ->
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P2p_connection.accept auth_fd bytes_encoding >>= fun conn ->
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assert (is_rejected conn) ;
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lwt_log_notice "Kick OK" >>= fun () ->
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(* let's reject! *)
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lwt_log_notice "Kicked" >>= fun () ->
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connect sched addr port id2 >>=? fun auth_fd ->
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P2p_connection.kick auth_fd >>= fun () ->
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(* let's exchange a simple message. *)
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connect sched addr port id2 >>=? fun auth_fd ->
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P2p_connection.accept auth_fd bytes_encoding >>=? fun conn ->
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2017-01-23 20:19:54 +04:00
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P2p_connection.read conn >>=? fun (msg_size, msg) ->
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2017-01-14 16:14:02 +04:00
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assert (MBytes.compare simple_msg msg = 0) ;
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P2p_connection.close conn >>= fun _stat ->
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lwt_log_notice "Simple OK" >>= fun () ->
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(* let's detect a closed connection on `read`. *)
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connect sched addr port id2 >>=? fun auth_fd ->
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P2p_connection.accept auth_fd bytes_encoding >>=? fun conn ->
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2017-01-23 20:19:54 +04:00
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P2p_connection.read conn >>=? fun (msg_size, msg) ->
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2017-01-14 16:14:02 +04:00
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assert (MBytes.compare simple_msg msg = 0) ;
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P2p_connection.read conn >>= fun msg ->
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assert (is_connection_closed msg) ;
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P2p_connection.close conn >>= fun _stat ->
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lwt_log_notice "Early close (read) OK" >>= fun () ->
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(* let's detect a closed connection on `write`. *)
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connect sched addr port id2 >>=? fun auth_fd ->
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P2p_connection.accept auth_fd bytes_encoding >>=? fun conn ->
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Lwt_unix.sleep 0.1 >>= fun () ->
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P2p_connection.write_sync conn simple_msg >>= fun unit ->
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assert (is_connection_closed unit) ;
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P2p_connection.close conn >>= fun _stat ->
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lwt_log_notice "Early close (write) OK" >>= fun () ->
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P2p_io_scheduler.shutdown sched >>= fun () ->
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lwt_log_notice "Success" >>= fun () ->
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return ()
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let default_addr = Ipaddr.V6.localhost
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let main () =
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listen default_addr >>= fun (main_socket, port) ->
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let server =
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Process.detach ~prefix:"server " begin fun () ->
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Process.handle_error begin fun () ->
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server main_socket
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end
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end in
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let client =
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Process.detach ~prefix:"client " begin fun () ->
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Lwt_utils.safe_close main_socket >>= fun () ->
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Process.handle_error begin fun () ->
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client default_addr port
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end
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end in
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Process.wait [ server ; client ]
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let () =
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Lwt_main.run (main ())
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