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277 lines
8.0 KiB
277 lines
8.0 KiB
/*
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* chan_h323.h
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*
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* OpenH323 Channel Driver for ASTERISK PBX.
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* By Jeremy McNamara
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* For The NuFone Network
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*
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* This code has been derived from code created by
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* Michael Manousos and Mark Spencer
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*
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* This file is part of the chan_h323 driver for Asterisk
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*
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* chan_h323 is free software; you can redistribute it and/or modify
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* it under the terms of the GNU General Public License as published by
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* the Free Software Foundation; either version 2 of the License, or
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* (at your option) any later version.
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*
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* chan_h323 is distributed WITHOUT ANY WARRANTY; without even
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* the implied warranty of MERCHANTABILITY or FITNESS FOR A PARTICULAR
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* PURPOSE. See the GNU 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
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* along with this program; if not, write to the Free Software
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* Foundation, Inc., 675 Mass Ave, Cambridge, MA 02139, USA.
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*
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* Version Info: $Id$
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*/
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#ifndef CHAN_H323_H
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#define CHAN_H323_H
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#include <arpa/inet.h>
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#include "asterisk/format.h"
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#include "asterisk/app.h"
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/*
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* Enable support for sending/reception of tunnelled Q.SIG messages and
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* some sort of IEs (especially RedirectingNumber) which Cisco CallManager
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* isn't like to pass in standard Q.931 message.
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*
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*/
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#define TUNNELLING
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#define H323_TUNNEL_CISCO (1 << 0)
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#define H323_TUNNEL_QSIG (1 << 1)
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#define H323_HOLD_NOTIFY (1 << 0)
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#define H323_HOLD_Q931ONLY (1 << 1)
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#define H323_HOLD_H450 (1 << 2)
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typedef int64_t h323_format;
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/** call_option struct holds various bits
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* of information for each call */
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typedef struct call_options {
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char cid_num[80];
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char cid_name[80];
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char cid_rdnis[80];
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int redirect_reason;
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int presentation;
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int type_of_number;
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int transfer_capability;
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int fastStart;
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int h245Tunneling;
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int silenceSuppression;
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int progress_setup;
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int progress_alert;
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int progress_audio;
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int dtmfcodec[2];
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int dtmfmode;
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h323_format capability;
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int bridge;
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int nat;
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int tunnelOptions;
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int holdHandling;
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int autoframing; /*!< turn on to override local settings with remote framing length */
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struct ast_codec_pref prefs;
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} call_options_t;
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/* structure to hold the valid asterisk users */
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struct oh323_user {
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ASTOBJ_COMPONENTS(struct oh323_user);
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// char name[80];
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char context[80];
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char secret[80];
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char accountcode[AST_MAX_ACCOUNT_CODE];
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int amaflags;
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int host;
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struct sockaddr_in addr;
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struct ast_ha *ha;
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call_options_t options;
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};
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/* structure to hold the valid asterisk peers
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All peers are registered to a GK if there is one */
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struct oh323_peer {
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ASTOBJ_COMPONENTS(struct oh323_peer);
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char mailbox[AST_MAX_MAILBOX_UNIQUEID];
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int delme;
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struct sockaddr_in addr;
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struct ast_ha *ha;
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call_options_t options;
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};
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/* structure to hold the H.323 aliases which get registered to
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the H.323 endpoint and gatekeeper */
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struct oh323_alias {
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ASTOBJ_COMPONENTS(struct oh323_alias);
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char e164[20]; /* tells a GK to route this E.164 to this alias */
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char prefix[500]; /* tells a GK this alias supports these prefixes */
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char secret[20]; /* the H.235 password to send to the GK for authentication */
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char context[80];
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};
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/** call_details struct call detail records
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to asterisk for processing and used for matching up
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asterisk channels to acutal h.323 connections */
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typedef struct call_details {
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unsigned int call_reference;
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char *call_token;
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char *call_source_aliases;
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char *call_dest_alias;
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char *call_source_name;
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char *call_source_e164;
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char *call_dest_e164;
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char *redirect_number;
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int redirect_reason;
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int presentation;
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int type_of_number;
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int transfer_capability;
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char *sourceIp;
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} call_details_t;
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typedef struct rtp_info {
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char addr[32];
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unsigned int port;
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} rtp_info_t;
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/* This is a callback prototype function, called pass
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DTMF down the RTP. */
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typedef int (*receive_digit_cb)(unsigned, char, const char *, int);
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extern receive_digit_cb on_receive_digit;
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/* This is a callback prototype function, called to collect
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the external RTP port from Asterisk. */
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typedef rtp_info_t *(*on_rtp_cb)(unsigned, const char *);
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extern on_rtp_cb on_external_rtp_create;
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/* This is a callback prototype function, called to send
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the remote IP and RTP port from H.323 to Asterisk */
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typedef void (*start_rtp_cb)(unsigned int, const char *, int, const char *, int);
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extern start_rtp_cb on_start_rtp_channel;
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/* This is a callback that happens when call progress is
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* made, and handles inband progress */
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typedef int (*progress_cb)(unsigned, const char *, int);
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extern progress_cb on_progress;
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/* This is a callback prototype function, called upon
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an incoming call happens. */
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typedef call_options_t *(*setup_incoming_cb)(call_details_t *);
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extern setup_incoming_cb on_incoming_call;
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/* This is a callback prototype function, called upon
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an outbound call. */
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typedef int (*setup_outbound_cb)(call_details_t *);
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extern setup_outbound_cb on_outgoing_call;
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/* This is a callback prototype function, called when
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OnAlerting is invoked */
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typedef void (*chan_ringing_cb)(unsigned, const char *);
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extern chan_ringing_cb on_chan_ringing;
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/* This is a callback protoype function, called when
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OnConnectionEstablished is inovked */
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typedef void (*con_established_cb)(unsigned, const char *);
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extern con_established_cb on_connection_established;
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/* This is a callback prototype function, called when
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OnConnectionCleared callback is invoked */
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typedef void (*clear_con_cb)(unsigned, const char *);
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extern clear_con_cb on_connection_cleared;
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/* This is a callback prototype function, called when
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an H.323 call is answered */
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typedef int (*answer_call_cb)(unsigned, const char *);
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extern answer_call_cb on_answer_call;
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/* This is a callback prototype function, called when
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we know which RTP payload type RFC2833 will be
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transmitted */
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typedef void (*rfc2833_cb)(unsigned, const char *, int, int);
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extern rfc2833_cb on_set_rfc2833_payload;
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typedef void (*hangup_cb)(unsigned, const char *, int);
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extern hangup_cb on_hangup;
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typedef void (*setcapabilities_cb)(unsigned, const char *);
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extern setcapabilities_cb on_setcapabilities;
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typedef void (*setpeercapabilities_cb)(unsigned, const char *, int, struct ast_codec_pref *);
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extern setpeercapabilities_cb on_setpeercapabilities;
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typedef void (*onhold_cb)(unsigned, const char *, int);
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extern onhold_cb on_hold;
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/* debug flag */
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extern int h323debug;
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#define H323_DTMF_RFC2833 (1 << 0)
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#define H323_DTMF_CISCO (1 << 1)
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#define H323_DTMF_SIGNAL (1 << 2)
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#define H323_DTMF_INBAND (1 << 3)
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#define H323_DTMF_RFC2833_PT 101
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#define H323_DTMF_CISCO_PT 121
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#ifdef __cplusplus
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extern "C" {
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#endif
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void h323_gk_urq(void);
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void h323_end_point_create(void);
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void h323_end_process(void);
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int h323_end_point_exist(void);
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void h323_debug(int, unsigned);
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/* callback function handler*/
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void h323_callback_register(setup_incoming_cb,
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setup_outbound_cb,
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on_rtp_cb,
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start_rtp_cb,
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clear_con_cb,
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chan_ringing_cb,
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con_established_cb,
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receive_digit_cb,
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answer_call_cb,
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progress_cb,
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rfc2833_cb,
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hangup_cb,
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setcapabilities_cb,
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setpeercapabilities_cb,
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onhold_cb);
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int h323_set_capabilities(const char *, int, int, struct ast_codec_pref *, int);
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int h323_set_alias(struct oh323_alias *);
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int h323_set_gk(int, char *, char *);
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void h323_set_id(char *);
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void h323_show_tokens(void);
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void h323_show_version(void);
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/* H323 listener related funcions */
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int h323_start_listener(int, struct sockaddr_in);
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void h323_native_bridge(const char *, const char *, char *);
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/* Send a DTMF tone to remote endpoint */
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void h323_send_tone(const char *call_token, char tone);
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/* H323 create and destroy sessions */
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int h323_make_call(char *dest, call_details_t *cd, call_options_t *);
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int h323_clear_call(const char *, int cause);
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/* H.323 alerting and progress */
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int h323_send_alerting(const char *token);
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int h323_send_progress(const char *token);
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int h323_answering_call(const char *token, int);
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int h323_soft_hangup(const char *data);
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int h323_show_codec(int fd, int argc, char *argv[]);
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int h323_hold_call(const char *token, int);
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#ifdef __cplusplus
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}
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#endif
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#endif
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