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
386 lines
15 KiB
Erlang
386 lines
15 KiB
Erlang
%%%----------------------------------------------------------------------
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%%% File : ejabberd_websocket.erl
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%%% Author : Eric Cestari <ecestari@process-one.net>
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%%% Purpose : XMPP Websocket support
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%%% Created : 09-10-2010 by Eric Cestari <ecestari@process-one.net>
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%%%
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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(ejabberd_http_ws).
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-behaviour(ejabberd_config).
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-author('ecestari@process-one.net').
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-behaviour(p1_fsm).
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-export([start/1, start_link/1, init/1, handle_event/3,
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handle_sync_event/4, code_change/4, handle_info/3,
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terminate/3, send_xml/2, setopts/2, sockname/1,
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peername/1, controlling_process/2, become_controller/2,
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monitor/1, reset_stream/1, close/1, change_shaper/2,
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socket_handoff/3, opt_type/1]).
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-include("logger.hrl").
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-include("xmpp.hrl").
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-include("ejabberd_http.hrl").
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-define(PING_INTERVAL, 60).
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-define(WEBSOCKET_TIMEOUT, 300).
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-record(state,
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{socket :: ws_socket(),
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ping_interval = ?PING_INTERVAL :: non_neg_integer(),
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ping_timer = make_ref() :: reference(),
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pong_expected = false :: boolean(),
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timeout = ?WEBSOCKET_TIMEOUT :: non_neg_integer(),
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timer = make_ref() :: reference(),
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input = [] :: list(),
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waiting_input = false :: false | pid(),
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last_receiver = self() :: pid(),
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ws :: {#ws{}, pid()},
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rfc_compilant = undefined :: boolean() | undefined}).
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%-define(DBGFSM, true).
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-ifdef(DBGFSM).
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-define(FSMOPTS, [{debug, [trace]}]).
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-else.
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-define(FSMOPTS, []).
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-endif.
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-type ws_socket() :: {http_ws, pid(), {inet:ip_address(), inet:port_number()}}.
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-export_type([ws_socket/0]).
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start(WS) ->
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p1_fsm:start(?MODULE, [WS], ?FSMOPTS).
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start_link(WS) ->
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p1_fsm:start_link(?MODULE, [WS], ?FSMOPTS).
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send_xml({http_ws, FsmRef, _IP}, Packet) ->
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case catch p1_fsm:sync_send_all_state_event(FsmRef,
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{send_xml, Packet},
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15000)
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of
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{'EXIT', {timeout, _}} -> {error, timeout};
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{'EXIT', _} -> {error, einval};
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Res -> Res
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end.
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setopts({http_ws, FsmRef, _IP}, Opts) ->
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case lists:member({active, once}, Opts) of
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true ->
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p1_fsm:send_all_state_event(FsmRef,
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{activate, self()});
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_ -> ok
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end.
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sockname(_Socket) -> {ok, {{0, 0, 0, 0}, 0}}.
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peername({http_ws, _FsmRef, IP}) -> {ok, IP}.
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controlling_process(_Socket, _Pid) -> ok.
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become_controller(FsmRef, C2SPid) ->
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p1_fsm:send_all_state_event(FsmRef, {activate, C2SPid}).
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close({http_ws, FsmRef, _IP}) ->
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catch p1_fsm:sync_send_all_state_event(FsmRef, close).
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monitor({http_ws, FsmRef, _IP}) ->
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erlang:monitor(process, FsmRef).
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reset_stream({http_ws, _FsmRef, _IP} = Socket) ->
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Socket.
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change_shaper({http_ws, _FsmRef, _IP}, _Shaper) ->
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%% TODO???
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ok.
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socket_handoff(LocalPath, Request, Opts) ->
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ejabberd_websocket:socket_handoff(LocalPath, Request, Opts, ?MODULE, fun get_human_html_xmlel/0).
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%%% Internal
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init([{#ws{ip = IP, http_opts = HOpts}, _} = WS]) ->
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SOpts = lists:filtermap(fun({stream_management, _}) -> true;
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({max_ack_queue, _}) -> true;
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({ack_timeout, _}) -> true;
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({resume_timeout, _}) -> true;
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({max_resume_timeout, _}) -> true;
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({resend_on_timeout, _}) -> true;
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({access, _}) -> true;
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(_) -> false
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end, HOpts),
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Opts = ejabberd_c2s_config:get_c2s_limits() ++ SOpts,
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PingInterval = ejabberd_config:get_option(
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{websocket_ping_interval, ejabberd_config:get_myname()},
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?PING_INTERVAL) * 1000,
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WSTimeout = ejabberd_config:get_option(
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{websocket_timeout, ejabberd_config:get_myname()},
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?WEBSOCKET_TIMEOUT) * 1000,
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Socket = {http_ws, self(), IP},
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?DEBUG("Client connected through websocket ~p",
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[Socket]),
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xmpp_socket:start(ejabberd_c2s, ?MODULE, Socket,
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[{receiver, self()}|Opts]),
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Timer = erlang:start_timer(WSTimeout, self(), []),
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{ok, loop,
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#state{socket = Socket, timeout = WSTimeout,
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timer = Timer, ws = WS,
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ping_interval = PingInterval}}.
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handle_event({activate, From}, StateName, StateData) ->
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case StateData#state.input of
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[] ->
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{next_state, StateName,
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StateData#state{waiting_input = From}};
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Input ->
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Receiver = From,
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lists:foreach(fun(I) when is_binary(I)->
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Receiver ! {tcp, StateData#state.socket, I};
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(I2) ->
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Receiver ! {tcp, StateData#state.socket, [I2]}
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end, Input),
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{next_state, StateName,
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StateData#state{input = [], waiting_input = false,
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last_receiver = Receiver}}
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end.
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handle_sync_event({send_xml, Packet}, _From, StateName,
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#state{ws = {_, WsPid}, rfc_compilant = R} = StateData) ->
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Packet2 = case {case R of undefined -> true; V -> V end, Packet} of
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{true, {xmlstreamstart, _, Attrs}} ->
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Attrs2 = [{<<"xmlns">>, <<"urn:ietf:params:xml:ns:xmpp-framing">>} |
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lists:keydelete(<<"xmlns">>, 1, lists:keydelete(<<"xmlns:stream">>, 1, Attrs))],
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{xmlstreamelement, #xmlel{name = <<"open">>, attrs = Attrs2}};
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{true, {xmlstreamend, _}} ->
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{xmlstreamelement, #xmlel{name = <<"close">>,
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attrs = [{<<"xmlns">>, <<"urn:ietf:params:xml:ns:xmpp-framing">>}]}};
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{true, {xmlstreamraw, <<"\r\n\r\n">>}} -> % cdata ping
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skip;
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{true, {xmlstreamelement, #xmlel{name=Name2} = El2}} ->
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El3 = case Name2 of
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<<"stream:", _/binary>> ->
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fxml:replace_tag_attr(<<"xmlns:stream">>, ?NS_STREAM, El2);
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_ ->
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case fxml:get_tag_attr_s(<<"xmlns">>, El2) of
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<<"">> ->
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fxml:replace_tag_attr(<<"xmlns">>, <<"jabber:client">>, El2);
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_ ->
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El2
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end
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end,
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{xmlstreamelement , El3};
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_ ->
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Packet
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end,
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case Packet2 of
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{xmlstreamstart, Name, Attrs3} ->
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B = fxml:element_to_binary(#xmlel{name = Name, attrs = Attrs3}),
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WsPid ! {send, <<(binary:part(B, 0, byte_size(B)-2))/binary, ">">>};
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{xmlstreamend, Name} ->
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WsPid ! {send, <<"</", Name/binary, ">">>};
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{xmlstreamelement, El} ->
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WsPid ! {send, fxml:element_to_binary(El)};
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{xmlstreamraw, Bin} ->
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WsPid ! {send, Bin};
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{xmlstreamcdata, Bin2} ->
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WsPid ! {send, Bin2};
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skip ->
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ok
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end,
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SN2 = case Packet2 of
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{xmlstreamelement, #xmlel{name = <<"close">>}} ->
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stream_end_sent;
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_ ->
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StateName
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end,
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{reply, ok, SN2, StateData};
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handle_sync_event(close, _From, StateName, #state{ws = {_, WsPid}, rfc_compilant = true} = StateData)
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when StateName /= stream_end_sent ->
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Close = #xmlel{name = <<"close">>,
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attrs = [{<<"xmlns">>, <<"urn:ietf:params:xml:ns:xmpp-framing">>}]},
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WsPid ! {send, fxml:element_to_binary(Close)},
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{stop, normal, StateData};
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handle_sync_event(close, _From, _StateName, StateData) ->
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{stop, normal, StateData}.
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handle_info(closed, _StateName, StateData) ->
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{stop, normal, StateData};
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handle_info({received, Packet}, StateName, StateDataI) ->
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{StateData, Parsed} = parse(StateDataI, Packet),
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SD = case StateData#state.waiting_input of
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false ->
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Input = StateData#state.input ++ if is_binary(Parsed) -> [Parsed]; true -> Parsed end,
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StateData#state{input = Input};
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Receiver ->
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Receiver ! {tcp, StateData#state.socket, Parsed},
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setup_timers(StateData#state{waiting_input = false,
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last_receiver = Receiver})
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end,
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{next_state, StateName, SD};
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handle_info(PingPong, StateName, StateData) when PingPong == ping orelse
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PingPong == pong ->
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StateData2 = setup_timers(StateData),
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{next_state, StateName,
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StateData2#state{pong_expected = false}};
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handle_info({timeout, Timer, _}, _StateName,
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#state{timer = Timer} = StateData) ->
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?DEBUG("Closing websocket connection from hitting inactivity timeout", []),
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{stop, normal, StateData};
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handle_info({timeout, Timer, _}, StateName,
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#state{ping_timer = Timer, ws = {_, WsPid}} = StateData) ->
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case StateData#state.pong_expected of
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false ->
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cancel_timer(StateData#state.ping_timer),
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PingTimer = erlang:start_timer(StateData#state.ping_interval,
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self(), []),
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WsPid ! {ping, <<>>},
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{next_state, StateName,
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StateData#state{ping_timer = PingTimer, pong_expected = true}};
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true ->
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?DEBUG("Closing websocket connection from missing pongs", []),
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{stop, normal, StateData}
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end;
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handle_info(_, 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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terminate(_Reason, _StateName, StateData) ->
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case StateData#state.waiting_input of
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false -> ok;
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Receiver ->
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?DEBUG("C2S Pid : ~p", [Receiver]),
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Receiver ! {tcp_closed, StateData#state.socket}
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end,
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ok.
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setup_timers(StateData) ->
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cancel_timer(StateData#state.timer),
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Timer = erlang:start_timer(StateData#state.timeout,
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self(), []),
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cancel_timer(StateData#state.ping_timer),
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PingTimer = case StateData#state.ping_interval of
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0 -> StateData#state.ping_timer;
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V -> erlang:start_timer(V, self(), [])
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end,
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StateData#state{timer = Timer, ping_timer = PingTimer,
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pong_expected = false}.
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cancel_timer(Timer) ->
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erlang:cancel_timer(Timer),
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receive {timeout, Timer, _} -> ok after 0 -> ok end.
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get_human_html_xmlel() ->
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Heading = <<"ejabberd ", (misc:atom_to_binary(?MODULE))/binary>>,
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#xmlel{name = <<"html">>,
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attrs =
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[{<<"xmlns">>, <<"http://www.w3.org/1999/xhtml">>}],
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children =
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[#xmlel{name = <<"head">>, attrs = [],
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children =
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[#xmlel{name = <<"title">>, attrs = [],
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children = [{xmlcdata, Heading}]}]},
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#xmlel{name = <<"body">>, attrs = [],
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children =
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[#xmlel{name = <<"h1">>, attrs = [],
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children = [{xmlcdata, Heading}]},
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#xmlel{name = <<"p">>, attrs = [],
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children =
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[{xmlcdata, <<"An implementation of ">>},
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#xmlel{name = <<"a">>,
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attrs =
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[{<<"href">>,
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<<"http://tools.ietf.org/html/rfc6455">>}],
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children =
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[{xmlcdata,
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<<"WebSocket protocol">>}]}]},
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#xmlel{name = <<"p">>, attrs = [],
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children =
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[{xmlcdata,
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<<"This web page is only informative. To "
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"use WebSocket connection you need a Jabber/XMPP "
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"client that supports it.">>}]}]}]}.
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parse(#state{rfc_compilant = C} = State, Data) ->
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case C of
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undefined ->
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P = fxml_stream:new(self()),
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P2 = fxml_stream:parse(P, Data),
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fxml_stream:close(P2),
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case parsed_items([]) of
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error ->
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{State#state{rfc_compilant = true}, <<"parse error">>};
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[] ->
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{State#state{rfc_compilant = true}, <<"parse error">>};
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[{xmlstreamstart, <<"open">>, _} | _] ->
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parse(State#state{rfc_compilant = true}, Data);
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_ ->
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parse(State#state{rfc_compilant = false}, Data)
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end;
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true ->
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El = fxml_stream:parse_element(Data),
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case El of
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#xmlel{name = <<"open">>, attrs = Attrs} ->
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Attrs2 = [{<<"xmlns:stream">>, ?NS_STREAM}, {<<"xmlns">>, <<"jabber:client">>} |
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lists:keydelete(<<"xmlns">>, 1, lists:keydelete(<<"xmlns:stream">>, 1, Attrs))],
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{State, [{xmlstreamstart, <<"stream:stream">>, Attrs2}]};
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#xmlel{name = <<"close">>} ->
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{State, [{xmlstreamend, <<"stream:stream">>}]};
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{error, _} ->
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{State, <<"parse error">>};
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_ ->
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{State, [El]}
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end;
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false ->
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{State, Data}
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end.
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parsed_items(List) ->
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receive
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{'$gen_event', El}
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when element(1, El) == xmlel;
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element(1, El) == xmlstreamstart;
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element(1, El) == xmlstreamelement;
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element(1, El) == xmlstreamend ->
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parsed_items([El | List]);
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{'$gen_event', {xmlstreamerror, _}} ->
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error
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after 0 ->
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lists:reverse(List)
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end.
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opt_type(websocket_ping_interval) ->
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fun (I) when is_integer(I), I >= 0 -> I end;
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opt_type(websocket_timeout) ->
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fun (I) when is_integer(I), I > 0 -> I end;
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opt_type(_) ->
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[websocket_ping_interval, websocket_timeout].
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