mirror of
https://github.com/processone/ejabberd.git
synced 2024-12-26 17:38:45 +01:00
456 lines
16 KiB
Erlang
456 lines
16 KiB
Erlang
%%%-------------------------------------------------------------------
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%%% File : mod_sip.erl
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%%% Author : Evgeny Khramtsov <ekhramtsov@process-one.net>
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%%% Purpose : SIP RFC-3261
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%%% Created : 21 Apr 2014 by Evgeny Khramtsov <ekhramtsov@process-one.net>
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%%%
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%%%
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%%% ejabberd, Copyright (C) 2014-2021 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_sip).
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-protocol({rfc, 3261}).
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-include("logger.hrl").
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-include("translate.hrl").
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-ifndef(SIP).
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-export([start/2, stop/1, depends/2, mod_options/1, mod_doc/0]).
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start(_, _) ->
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?CRITICAL_MSG("ejabberd is not compiled with SIP support", []),
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{error, sip_not_compiled}.
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stop(_) ->
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ok.
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depends(_, _) ->
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[].
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mod_options(_) ->
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[].
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mod_doc() ->
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#{desc => [?T("SIP support has not been enabled.")]}.
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-else.
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-behaviour(gen_mod).
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-behaviour(esip).
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%% API
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-export([start/2, stop/1, reload/3,
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make_response/2, is_my_host/1, at_my_host/1]).
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-export([data_in/2, data_out/2, message_in/2,
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message_out/2, request/2, request/3, response/2,
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locate/1, mod_opt_type/1, mod_options/1, depends/2,
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mod_doc/0]).
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-include_lib("esip/include/esip.hrl").
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%%%===================================================================
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%%% API
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%%%===================================================================
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start(_Host, _Opts) ->
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ejabberd:start_app(esip),
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esip:set_config_value(max_server_transactions, 10000),
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esip:set_config_value(max_client_transactions, 10000),
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esip:set_config_value(
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software, <<"ejabberd ", (ejabberd_option:version())/binary>>),
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esip:set_config_value(module, ?MODULE),
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Spec = {mod_sip_registrar, {mod_sip_registrar, start_link, []},
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transient, 2000, worker, [mod_sip_registrar]},
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TmpSupSpec = {mod_sip_proxy_sup,
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{ejabberd_tmp_sup, start_link,
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[mod_sip_proxy_sup, mod_sip_proxy]},
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permanent, infinity, supervisor, [ejabberd_tmp_sup]},
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supervisor:start_child(ejabberd_gen_mod_sup, Spec),
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supervisor:start_child(ejabberd_gen_mod_sup, TmpSupSpec),
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ok.
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stop(_Host) ->
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ok.
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reload(_Host, _NewOpts, _OldOpts) ->
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ok.
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depends(_Host, _Opts) ->
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[].
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data_in(Data, #sip_socket{type = Transport,
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addr = {MyIP, MyPort},
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peer = {PeerIP, PeerPort}}) ->
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?DEBUG(
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"SIP [~p/in] ~ts:~p -> ~ts:~p:~n~ts",
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[Transport, inet_parse:ntoa(PeerIP), PeerPort,
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inet_parse:ntoa(MyIP), MyPort, Data]).
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data_out(Data, #sip_socket{type = Transport,
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addr = {MyIP, MyPort},
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peer = {PeerIP, PeerPort}}) ->
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?DEBUG(
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"SIP [~p/out] ~ts:~p -> ~ts:~p:~n~ts",
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[Transport, inet_parse:ntoa(MyIP), MyPort,
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inet_parse:ntoa(PeerIP), PeerPort, Data]).
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message_in(#sip{type = request, method = M} = Req, SIPSock)
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when M /= <<"ACK">>, M /= <<"CANCEL">> ->
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case action(Req, SIPSock) of
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{relay, _LServer} ->
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ok;
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Action ->
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request(Req, SIPSock, undefined, Action)
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end;
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message_in(ping, SIPSock) ->
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mod_sip_registrar:ping(SIPSock);
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message_in(_, _) ->
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ok.
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message_out(_, _) ->
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ok.
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response(_Resp, _SIPSock) ->
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ok.
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request(#sip{method = <<"ACK">>} = Req, SIPSock) ->
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case action(Req, SIPSock) of
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{relay, LServer} ->
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mod_sip_proxy:route(Req, LServer, [{authenticated, true}]);
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{proxy_auth, LServer} ->
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mod_sip_proxy:route(Req, LServer, [{authenticated, false}]);
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_ ->
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ok
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end;
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request(_Req, _SIPSock) ->
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ok.
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request(Req, SIPSock, TrID) ->
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request(Req, SIPSock, TrID, action(Req, SIPSock)).
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request(Req, SIPSock, TrID, Action) ->
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case Action of
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to_me ->
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process(Req, SIPSock);
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register ->
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mod_sip_registrar:request(Req, SIPSock);
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loop ->
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make_response(Req, #sip{status = 483, type = response});
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{unsupported, Require} ->
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make_response(Req, #sip{status = 420,
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type = response,
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hdrs = [{'unsupported',
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Require}]});
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{relay, LServer} ->
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case mod_sip_proxy:start(LServer, []) of
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{ok, Pid} ->
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mod_sip_proxy:route(Req, SIPSock, TrID, Pid),
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{mod_sip_proxy, route, [Pid]};
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Err ->
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?WARNING_MSG("Failed to proxy request ~p: ~p", [Req, Err]),
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Err
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end;
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{proxy_auth, LServer} ->
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make_response(
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Req,
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#sip{status = 407,
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type = response,
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hdrs = [{'proxy-authenticate',
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make_auth_hdr(LServer)}]});
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{auth, LServer} ->
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make_response(
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Req,
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#sip{status = 401,
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type = response,
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hdrs = [{'www-authenticate',
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make_auth_hdr(LServer)}]});
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deny ->
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make_response(Req, #sip{status = 403,
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type = response});
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not_found ->
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make_response(Req, #sip{status = 480,
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type = response})
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end.
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locate(_SIPMsg) ->
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ok.
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find(#uri{user = User, host = Host}) ->
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LUser = jid:nodeprep(User),
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LServer = jid:nameprep(Host),
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if LUser == <<"">> ->
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to_me;
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true ->
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case mod_sip_registrar:find_sockets(LUser, LServer) of
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[] ->
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not_found;
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[_|_] ->
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{relay, LServer}
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end
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end.
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%%%===================================================================
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%%% Internal functions
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%%%===================================================================
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action(#sip{method = <<"REGISTER">>, type = request, hdrs = Hdrs,
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uri = #uri{user = <<"">>} = URI} = Req, SIPSock) ->
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case at_my_host(URI) of
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true ->
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Require = esip:get_hdrs('require', Hdrs) -- supported(),
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case Require of
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[_|_] ->
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{unsupported, Require};
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_ ->
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{_, ToURI, _} = esip:get_hdr('to', Hdrs),
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case at_my_host(ToURI) of
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true ->
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case check_auth(Req, 'authorization', SIPSock) of
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true ->
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register;
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false ->
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{auth, jid:nameprep(ToURI#uri.host)}
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end;
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false ->
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deny
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end
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end;
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false ->
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deny
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end;
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action(#sip{method = Method, hdrs = Hdrs, type = request} = Req, SIPSock) ->
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case esip:get_hdr('max-forwards', Hdrs) of
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0 when Method == <<"OPTIONS">> ->
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to_me;
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0 ->
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loop;
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_ ->
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Require = esip:get_hdrs('proxy-require', Hdrs) -- supported(),
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case Require of
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[_|_] ->
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{unsupported, Require};
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_ ->
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{_, ToURI, _} = esip:get_hdr('to', Hdrs),
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{_, FromURI, _} = esip:get_hdr('from', Hdrs),
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case at_my_host(FromURI) of
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true ->
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case check_auth(Req, 'proxy-authorization', SIPSock) of
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true ->
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case at_my_host(ToURI) of
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true ->
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find(ToURI);
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false ->
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LServer = jid:nameprep(FromURI#uri.host),
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{relay, LServer}
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end;
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false ->
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{proxy_auth, FromURI#uri.host}
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end;
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false ->
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case at_my_host(ToURI) of
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true ->
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find(ToURI);
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false ->
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deny
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end
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end
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end
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end.
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check_auth(#sip{method = <<"CANCEL">>}, _, _SIPSock) ->
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true;
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check_auth(#sip{method = Method, hdrs = Hdrs, body = Body}, AuthHdr, _SIPSock) ->
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Issuer = case AuthHdr of
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'authorization' ->
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to;
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'proxy-authorization' ->
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from
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end,
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{_, #uri{user = User, host = Host}, _} = esip:get_hdr(Issuer, Hdrs),
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LUser = jid:nodeprep(User),
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LServer = jid:nameprep(Host),
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case lists:filter(
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fun({_, Params}) ->
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Username = esip:get_param(<<"username">>, Params),
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Realm = esip:get_param(<<"realm">>, Params),
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(LUser == esip:unquote(Username))
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and (LServer == esip:unquote(Realm))
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end, esip:get_hdrs(AuthHdr, Hdrs)) of
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[Auth|_] ->
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case ejabberd_auth:get_password_s(LUser, LServer) of
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<<"">> ->
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false;
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Password when is_binary(Password) ->
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esip:check_auth(Auth, Method, Body, Password);
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_ScramedPassword ->
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?ERROR_MSG("Unable to authenticate ~ts@~ts against SCRAM'ed "
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"password", [LUser, LServer]),
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false
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end;
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[] ->
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false
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end.
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allow() ->
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[<<"OPTIONS">>, <<"REGISTER">>].
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supported() ->
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[<<"path">>, <<"outbound">>].
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process(#sip{method = <<"OPTIONS">>} = Req, _) ->
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make_response(Req, #sip{type = response, status = 200,
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hdrs = [{'allow', allow()},
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{'supported', supported()}]});
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process(#sip{method = <<"REGISTER">>} = Req, _) ->
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make_response(Req, #sip{type = response, status = 400});
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process(Req, _) ->
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make_response(Req, #sip{type = response, status = 405,
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hdrs = [{'allow', allow()}]}).
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make_auth_hdr(LServer) ->
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{<<"Digest">>, [{<<"realm">>, esip:quote(LServer)},
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{<<"qop">>, esip:quote(<<"auth">>)},
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{<<"nonce">>, esip:quote(esip:make_hexstr(20))}]}.
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make_response(Req, Resp) ->
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esip:make_response(Req, Resp, esip:make_tag()).
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at_my_host(#uri{host = Host}) ->
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is_my_host(jid:nameprep(Host)).
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is_my_host(LServer) ->
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gen_mod:is_loaded(LServer, ?MODULE).
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mod_opt_type(always_record_route) ->
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econf:bool();
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mod_opt_type(flow_timeout_tcp) ->
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econf:timeout(second);
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mod_opt_type(flow_timeout_udp) ->
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econf:timeout(second);
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mod_opt_type(record_route) ->
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econf:sip_uri();
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mod_opt_type(routes) ->
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econf:list(econf:sip_uri());
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mod_opt_type(via) ->
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econf:list(
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fun(L) when is_list(L) ->
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(econf:and_then(
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econf:options(
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#{type => econf:enum([tcp, tls, udp]),
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host => econf:domain(),
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port => econf:port()},
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[{required, [type, host]}]),
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fun(Opts) ->
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Type = proplists:get_value(type, Opts),
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Host = proplists:get_value(host, Opts),
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Port = proplists:get_value(port, Opts),
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{Type, {Host, Port}}
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end))(L);
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(U) ->
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(econf:and_then(
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econf:url([tls, tcp, udp]),
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fun(URI) ->
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{ok, Type, Host, Port, _} =
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misc:uri_parse(URI),
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{Type, {unicode:characters_to_binary(Host), Port}}
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end))(U)
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end, [unique]).
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-spec mod_options(binary()) -> [{via, [{tcp | tls | udp, {binary(), 1..65535}}]} |
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{atom(), term()}].
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mod_options(Host) ->
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Route = #uri{scheme = <<"sip">>,
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host = Host,
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params = [{<<"lr">>, <<>>}]},
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[{always_record_route, true},
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{flow_timeout_tcp, timer:seconds(120)},
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{flow_timeout_udp, timer:seconds(29)},
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{record_route, Route},
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{routes, [Route]},
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{via, []}].
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mod_doc() ->
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#{desc =>
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[?T("This module adds SIP proxy/registrar support "
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"for the corresponding virtual host."), "",
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?T("NOTE: It is not enough to just load this module. "
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"You should also configure listeners and DNS records "
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"properly. For details see the section about the "
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"http://../listen/#ejabberd-sip[ejabberd_sip] listen module "
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"in the ejabberd Documentation.")],
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opts =>
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[{always_record_route,
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#{value => "true | false",
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desc =>
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?T("Always insert \"Record-Route\" header into "
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"SIP messages. This approach allows to bypass "
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"NATs/firewalls a bit more easily. "
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"The default value is 'true'.")}},
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{flow_timeout_tcp,
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#{value => "timeout()",
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desc =>
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?T("The option sets a keep-alive timer for "
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"https://tools.ietf.org/html/rfc5626[SIP outbound] "
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"TCP connections. The default value is '2' minutes.")}},
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{flow_timeout_udp,
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#{value => "timeout()",
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desc =>
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?T("The options sets a keep-alive timer for "
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"https://tools.ietf.org/html/rfc5626[SIP outbound] "
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"UDP connections. The default value is '29' seconds.")}},
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{record_route,
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#{value => ?T("URI"),
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desc =>
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?T("When the option 'always_record_route' is set to "
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"'true' or when https://tools.ietf.org/html/rfc5626"
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"[SIP outbound] is utilized, ejabberd inserts "
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"\"Record-Route\" header field with this 'URI' into "
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"a SIP message. The default is a SIP URI constructed "
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"from the virtual host on which the module is loaded.")}},
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{routes,
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#{value => "[URI, ...]",
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desc =>
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?T("You can set a list of SIP URIs of routes pointing "
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"to this SIP proxy server. The default is a list containing "
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"a single SIP URI constructed from the virtual host "
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"on which the module is loaded.")}},
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{via,
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#{value => "[URI, ...]",
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desc =>
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?T("A list to construct \"Via\" headers for "
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"inserting them into outgoing SIP messages. "
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"This is useful if you're running your SIP proxy "
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"in a non-standard network topology. Every 'URI' "
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"element in the list must be in the form of "
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"\"scheme://host:port\", where \"transport\" "
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"must be 'tls', 'tcp', or 'udp', \"host\" must "
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"be a domain name or an IP address and \"port\" "
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"must be an internet port number. Note that all "
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"parts of the 'URI' are mandatory (e.g. you "
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"cannot omit \"port\" or \"scheme\").")}}],
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example =>
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["modules:",
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" ...",
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" mod_sip:",
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" always_record_route: false",
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" record_route: \"sip:example.com;lr\"",
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" routes:",
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" - \"sip:example.com;lr\"",
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" - \"sip:sip.example.com;lr\"",
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" flow_timeout_udp: 30 sec",
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" flow_timeout_tcp: 1 min",
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" via:",
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" - tls://sip-tls.example.com:5061",
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" - tcp://sip-tcp.example.com:5060",
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" - udp://sip-udp.example.com:5060",
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" ..."]}.
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-endif.
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