mirror of
https://github.com/processone/ejabberd.git
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fd8e07af47
The header consisted of too many unrelated stuff and macros misuse. Some stuff is moved into scram.hrl and type_compat.hrl. All macros have been replaced with the corresponding function calls. TODO: probably type_compat.hrl is not even needed anymore since we support only Erlang >= OTP 17.5
306 lines
9.6 KiB
Erlang
306 lines
9.6 KiB
Erlang
%%%----------------------------------------------------------------------
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%%% File : mod_proxy65_stream.erl
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%%% Author : Evgeniy Khramtsov <xram@jabber.ru>
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%%% Purpose : Bytestream process.
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%%% Created : 12 Oct 2006 by Evgeniy Khramtsov <xram@jabber.ru>
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%%%
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%%% ejabberd, Copyright (C) 2002-2018 ProcessOne
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%%%
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%%% This program is free software; you can redistribute it and/or
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%%% modify it under the terms of the GNU General Public License as
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%%% published by the Free Software Foundation; either version 2 of the
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%%% License, or (at your option) any later version.
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%%%
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%%% This program is distributed in the hope that it will be useful,
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%%% but WITHOUT ANY WARRANTY; without even the implied warranty of
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%%% MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
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%%% General Public License for more details.
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%%%
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%%% You should have received a copy of the GNU General Public License along
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%%% with this program; if not, write to the Free Software Foundation, Inc.,
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%%% 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA.
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%%%
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%%%----------------------------------------------------------------------
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-module(mod_proxy65_stream).
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-author('xram@jabber.ru').
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-behaviour(p1_fsm).
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%% gen_fsm callbacks.
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-export([init/1, handle_event/3, handle_sync_event/4,
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code_change/4, handle_info/3, terminate/3]).
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%% gen_fsm states.
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-export([wait_for_init/2, wait_for_auth/2,
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wait_for_request/2, wait_for_activation/2,
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stream_established/2]).
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-export([start/2, stop/1, start_link/3, activate/2,
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relay/3, socket_type/0, listen_opt_type/1,
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listen_options/0]).
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-include("mod_proxy65.hrl").
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-include("logger.hrl").
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-define(WAIT_TIMEOUT, 60000).
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-record(state,
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{socket :: inet:socket(),
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timer = make_ref() :: reference(),
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sha1 = <<"">> :: binary(),
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host = <<"">> :: binary(),
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auth_type = anonymous :: plain | anonymous,
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shaper = none :: shaper:shaper()}).
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%% Unused callbacks
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handle_event(_Event, StateName, StateData) ->
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{next_state, StateName, StateData}.
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code_change(_OldVsn, StateName, StateData, _Extra) ->
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{ok, StateName, StateData}.
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%%-------------------------------
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start({gen_tcp, Socket}, Opts1) ->
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{[{server_host, Host}], Opts} = lists:partition(
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fun({server_host, _}) -> true;
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(_) -> false
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end, Opts1),
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Supervisor = gen_mod:get_module_proc(Host,
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ejabberd_mod_proxy65_sup),
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supervisor:start_child(Supervisor,
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[Socket, Host, Opts]).
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start_link(Socket, Host, Opts) ->
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p1_fsm:start_link(?MODULE, [Socket, Host, Opts], []).
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init([Socket, Host, Opts]) ->
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process_flag(trap_exit, true),
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AuthType = gen_mod:get_opt(auth_type, Opts),
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Shaper = gen_mod:get_opt(shaper, Opts),
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RecvBuf = gen_mod:get_opt(recbuf, Opts),
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SendBuf = gen_mod:get_opt(sndbuf, Opts),
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TRef = erlang:send_after(?WAIT_TIMEOUT, self(), stop),
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inet:setopts(Socket,
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[{active, true}, {recbuf, RecvBuf}, {sndbuf, SendBuf}]),
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{ok, wait_for_init,
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#state{host = Host, auth_type = AuthType,
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socket = Socket, shaper = Shaper, timer = TRef}}.
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terminate(_Reason, StateName, #state{sha1 = SHA1}) ->
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Mod = gen_mod:ram_db_mod(global, mod_proxy65),
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Mod:unregister_stream(SHA1),
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if StateName == stream_established ->
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?INFO_MSG("(~w) Bytestream terminated", [self()]);
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true -> ok
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end.
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%%%------------------------------
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%%% API.
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%%%------------------------------
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socket_type() -> raw.
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stop(StreamPid) -> StreamPid ! stop.
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activate({P1, J1}, {P2, J2}) ->
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case catch {p1_fsm:sync_send_all_state_event(P1,
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get_socket),
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p1_fsm:sync_send_all_state_event(P2, get_socket)}
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of
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{S1, S2} when is_port(S1), is_port(S2) ->
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P1 ! {activate, P2, S2, J1, J2},
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P2 ! {activate, P1, S1, J1, J2},
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JID1 = jid:encode(J1),
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JID2 = jid:encode(J2),
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?INFO_MSG("(~w:~w) Activated bytestream for ~s "
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"-> ~s",
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[P1, P2, JID1, JID2]),
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ok;
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_ -> error
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end.
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%%%-----------------------
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%%% States
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%%%-----------------------
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wait_for_init(Packet,
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#state{socket = Socket, auth_type = AuthType} =
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StateData) ->
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case mod_proxy65_lib:unpack_init_message(Packet) of
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{ok, AuthMethods} ->
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Method = select_auth_method(AuthType, AuthMethods),
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gen_tcp:send(Socket,
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mod_proxy65_lib:make_init_reply(Method)),
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case Method of
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?AUTH_ANONYMOUS ->
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{next_state, wait_for_request, StateData};
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?AUTH_PLAIN -> {next_state, wait_for_auth, StateData};
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?AUTH_NO_METHODS -> {stop, normal, StateData}
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end;
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error -> {stop, normal, StateData}
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end.
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wait_for_auth(Packet,
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#state{socket = Socket, host = Host} = StateData) ->
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case mod_proxy65_lib:unpack_auth_request(Packet) of
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{User, Pass} ->
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Result = ejabberd_auth:check_password(User, <<"">>, Host, Pass),
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gen_tcp:send(Socket,
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mod_proxy65_lib:make_auth_reply(Result)),
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case Result of
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true -> {next_state, wait_for_request, StateData};
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false -> {stop, normal, StateData}
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end;
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_ -> {stop, normal, StateData}
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end.
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wait_for_request(Packet,
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#state{socket = Socket} = StateData) ->
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Request = mod_proxy65_lib:unpack_request(Packet),
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case Request of
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#s5_request{sha1 = SHA1, cmd = connect} ->
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Mod = gen_mod:ram_db_mod(global, mod_proxy65),
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case Mod:register_stream(SHA1, self()) of
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ok ->
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inet:setopts(Socket, [{active, false}]),
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gen_tcp:send(Socket,
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mod_proxy65_lib:make_reply(Request)),
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{next_state, wait_for_activation,
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StateData#state{sha1 = SHA1}};
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_ ->
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Err = mod_proxy65_lib:make_error_reply(Request),
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gen_tcp:send(Socket, Err),
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{stop, normal, StateData}
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end;
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#s5_request{cmd = udp} ->
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Err = mod_proxy65_lib:make_error_reply(Request,
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?ERR_COMMAND_NOT_SUPPORTED),
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gen_tcp:send(Socket, Err),
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{stop, normal, StateData};
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_ -> {stop, normal, StateData}
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end.
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wait_for_activation(_Data, StateData) ->
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{next_state, wait_for_activation, StateData}.
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stream_established(_Data, StateData) ->
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{next_state, stream_established, StateData}.
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%%%-----------------------
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%%% Callbacks processing
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%%%-----------------------
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%% SOCKS5 packets.
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handle_info({tcp, _S, Data}, StateName, StateData)
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when StateName /= wait_for_activation ->
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erlang:cancel_timer(StateData#state.timer),
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TRef = erlang:send_after(?WAIT_TIMEOUT, self(), stop),
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p1_fsm:send_event(self(), Data),
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{next_state, StateName, StateData#state{timer = TRef}};
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%% Activation message.
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handle_info({activate, PeerPid, PeerSocket, IJid, TJid},
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wait_for_activation, StateData) ->
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erlang:monitor(process, PeerPid),
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erlang:cancel_timer(StateData#state.timer),
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MySocket = StateData#state.socket,
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Shaper = StateData#state.shaper,
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Host = StateData#state.host,
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MaxRate = find_maxrate(Shaper, IJid, TJid, Host),
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spawn_link(?MODULE, relay,
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[MySocket, PeerSocket, MaxRate]),
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{next_state, stream_established, StateData};
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%% Socket closed
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handle_info({tcp_closed, _Socket}, _StateName,
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StateData) ->
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{stop, normal, StateData};
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handle_info({tcp_error, _Socket, _Reason}, _StateName,
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StateData) ->
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{stop, normal, StateData};
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%% Got stop message.
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handle_info(stop, _StateName, StateData) ->
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{stop, normal, StateData};
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%% Either linked process or peer process died.
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handle_info({'EXIT', _, _}, _StateName, StateData) ->
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{stop, normal, StateData};
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handle_info({'DOWN', _, _, _, _}, _StateName,
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StateData) ->
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{stop, normal, StateData};
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%% Packets of no interest
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handle_info(_Info, StateName, StateData) ->
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{next_state, StateName, StateData}.
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%% Socket request.
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handle_sync_event(get_socket, _From,
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wait_for_activation, StateData) ->
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Socket = StateData#state.socket,
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{reply, Socket, wait_for_activation, StateData};
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handle_sync_event(_Event, _From, StateName,
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StateData) ->
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{reply, error, StateName, StateData}.
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%%%-------------------------------------------------
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%%% Relay Process.
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%%%-------------------------------------------------
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relay(MySocket, PeerSocket, Shaper) ->
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case gen_tcp:recv(MySocket, 0) of
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{ok, Data} ->
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gen_tcp:send(PeerSocket, Data),
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{NewShaper, Pause} = shaper:update(Shaper, byte_size(Data)),
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if Pause > 0 -> timer:sleep(Pause);
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true -> pass
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end,
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relay(MySocket, PeerSocket, NewShaper);
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_ -> stopped
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end.
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%%%------------------------
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%%% Auxiliary functions
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%%%------------------------
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select_auth_method(plain, AuthMethods) ->
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case lists:member(?AUTH_PLAIN, AuthMethods) of
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true -> ?AUTH_PLAIN;
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false -> ?AUTH_NO_METHODS
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end;
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select_auth_method(anonymous, AuthMethods) ->
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case lists:member(?AUTH_ANONYMOUS, AuthMethods) of
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true -> ?AUTH_ANONYMOUS;
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false -> ?AUTH_NO_METHODS
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end.
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%% Obviously, we must use shaper with maximum rate.
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find_maxrate(Shaper, JID1, JID2, Host) ->
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MaxRate1 = case acl:match_rule(Host, Shaper, JID1) of
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deny -> none;
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R1 -> shaper:new(R1)
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end,
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MaxRate2 = case acl:match_rule(Host, Shaper, JID2) of
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deny -> none;
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R2 -> shaper:new(R2)
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end,
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if MaxRate1 == none; MaxRate2 == none -> none;
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true -> lists:max([MaxRate1, MaxRate2])
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end.
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listen_opt_type(server_host) ->
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fun iolist_to_binary/1;
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listen_opt_type(auth_type) ->
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fun (plain) -> plain;
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(anonymous) -> anonymous
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end;
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listen_opt_type(recbuf) ->
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fun (I) when is_integer(I), I > 0 -> I end;
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listen_opt_type(shaper) -> fun acl:shaper_rules_validator/1;
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listen_opt_type(sndbuf) ->
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fun (I) when is_integer(I), I > 0 -> I end;
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listen_opt_type(accept_interval) ->
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fun(I) when is_integer(I), I>=0 -> I end.
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listen_options() ->
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[{auth_type, anonymous},
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{recbuf, 8192},
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{sndbuf, 8192},
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{accept_interval, 0},
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{shaper, none}].
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