linphonecall.c 235 KB
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/*
linphone
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Copyright (C) 2010  Belledonne Communications SARL
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 (simon.morlat@linphone.org)

This program is free software; you can redistribute it and/or
modify it under the terms of the GNU General Public License
as published by the Free Software Foundation; either version 2
of the License, or (at your option) any later version.

This program is distributed in the hope that it will be useful,
but WITHOUT ANY WARRANTY; without even the implied warranty of
MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
GNU General Public License for more details.

You should have received a copy of the GNU General Public License
along with this program; if not, write to the Free Software
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Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston, MA  02110-1301, USA.
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*/
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#ifdef _WIN32
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#include <time.h>
#endif
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#include "linphone/core.h"
#include "linphone/sipsetup.h"
#include "linphone/lpconfig.h"
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#include "private.h"
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#include "conference_private.h"
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#include <ortp/event.h>
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#include <ortp/b64.h>
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#include <math.h>
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#include "mediastreamer2/mediastream.h"
#include "mediastreamer2/msvolume.h"
#include "mediastreamer2/msequalizer.h"
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#include "mediastreamer2/msfileplayer.h"
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#include "mediastreamer2/msjpegwriter.h"
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#include "mediastreamer2/msogl.h"
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#include "mediastreamer2/mseventqueue.h"
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#include "mediastreamer2/mssndcard.h"
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#include "mediastreamer2/msrtt4103.h"
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static const char *EC_STATE_STORE = ".linphone.ecstate";
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#define EC_STATE_MAX_LEN 1048576 // 1Mo
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static void linphone_call_stats_uninit(LinphoneCallStats *stats);
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static void linphone_call_get_local_ip(LinphoneCall *call, const LinphoneAddress *remote_addr);
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static void _linphone_call_set_next_video_frame_decoded_trigger(LinphoneCall *call);
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void linphone_call_handle_stream_events(LinphoneCall *call, int stream_index);
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typedef belle_sip_object_t_vptr_t LinphoneCallCbs_vptr_t;
BELLE_SIP_DECLARE_NO_IMPLEMENTED_INTERFACES(LinphoneCallCbs);
BELLE_SIP_INSTANCIATE_VPTR(LinphoneCallCbs, belle_sip_object_t,
	NULL, // destroy
	NULL, // clone
	NULL, // Marshall
	FALSE
);

LinphoneCallCbs *_linphone_call_cbs_new(void) {
	LinphoneCallCbs *obj = belle_sip_object_new(LinphoneCallCbs);
	return obj;
}

LinphoneCallCbs *linphone_call_cbs_ref(LinphoneCallCbs *cbs) {
	return (LinphoneCallCbs *)belle_sip_object_ref(cbs);
}

void linphone_call_cbs_unref(LinphoneCallCbs *cbs) {
	belle_sip_object_unref(cbs);
}

void *linphone_call_cbs_get_user_data(const LinphoneCallCbs *cbs) {
	return cbs->user_data;
}

void linphone_call_cbs_set_user_data(LinphoneCallCbs *cbs, void *user_data) {
	cbs->user_data = user_data;
}

LinphoneCallCbsDtmfReceivedCb linphone_call_cbs_get_dtmf_received(LinphoneCallCbs *cbs) {
	return cbs->dtmf_received_cb;
}

void linphone_call_cbs_set_dtmf_received(LinphoneCallCbs *cbs, LinphoneCallCbsDtmfReceivedCb cb) {
	cbs->dtmf_received_cb = cb;
}

LinphoneCallCbsEncryptionChangedCb linphone_call_cbs_get_encryption_changed(LinphoneCallCbs *cbs) {
	return cbs->encryption_changed_cb;
}

void linphone_call_cbs_set_encryption_changed(LinphoneCallCbs *cbs, LinphoneCallCbsEncryptionChangedCb cb) {
	cbs->encryption_changed_cb = cb;
}

LinphoneCallCbsInfoMessageReceivedCb linphone_call_cbs_get_info_message_received(LinphoneCallCbs *cbs) {
	return cbs->info_message_received_cb;
}

void linphone_call_cbs_set_info_message_received(LinphoneCallCbs *cbs, LinphoneCallCbsInfoMessageReceivedCb cb) {
	cbs->info_message_received_cb = cb;
}

LinphoneCallCbsStateChangedCb linphone_call_cbs_get_state_changed(LinphoneCallCbs *cbs) {
	return cbs->state_changed_cb;
}

void linphone_call_cbs_set_state_changed(LinphoneCallCbs *cbs, LinphoneCallCbsStateChangedCb cb) {
	cbs->state_changed_cb = cb;
}

LinphoneCallCbsStatsUpdatedCb linphone_call_cbs_get_stats_updated(LinphoneCallCbs *cbs) {
	return cbs->stats_updated_cb;
}

void linphone_call_cbs_set_stats_updated(LinphoneCallCbs *cbs, LinphoneCallCbsStatsUpdatedCb cb) {
	cbs->stats_updated_cb = cb;
}

LinphoneCallCbsTransferStateChangedCb linphone_call_cbs_get_transfer_state_changed(LinphoneCallCbs *cbs) {
	return cbs->transfer_state_changed_cb;
}

void linphone_call_cbs_set_transfer_state_changed(LinphoneCallCbs *cbs, LinphoneCallCbsTransferStateChangedCb cb) {
	cbs->transfer_state_changed_cb = cb;
}


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bool_t linphone_call_state_is_early(LinphoneCallState state){
	switch (state){
		case LinphoneCallIdle:
		case LinphoneCallOutgoingInit:
		case LinphoneCallOutgoingEarlyMedia:
		case LinphoneCallOutgoingRinging:
		case LinphoneCallOutgoingProgress:
		case LinphoneCallIncomingReceived:
		case LinphoneCallIncomingEarlyMedia:
		case LinphoneCallEarlyUpdatedByRemote:
		case LinphoneCallEarlyUpdating:
			return TRUE;
		case LinphoneCallResuming:
		case LinphoneCallEnd:
		case LinphoneCallUpdating:
		case LinphoneCallRefered:
		case LinphoneCallPausing:
		case LinphoneCallPausedByRemote:
		case LinphoneCallPaused:
		case LinphoneCallConnected:
		case LinphoneCallError:
		case LinphoneCallUpdatedByRemote:
		case LinphoneCallReleased:
		case LinphoneCallStreamsRunning:
		break;
	}
	return FALSE;
}

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MSWebCam *get_nowebcam_device(MSFactory* f){
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#ifdef VIDEO_ENABLED
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	return ms_web_cam_manager_get_cam(ms_factory_get_web_cam_manager(f),"StaticImage: Static picture");
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#else
	return NULL;
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#endif
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}

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static bool_t generate_b64_crypto_key(size_t key_length, char* key_out, size_t key_out_size) {
	size_t b64_size;
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	uint8_t* tmp = (uint8_t*) ms_malloc0(key_length);
	if (sal_get_random_bytes(tmp, key_length)==NULL) {
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		ms_error("Failed to generate random key");
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		ms_free(tmp);
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		return FALSE;
	}
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	b64_size = b64_encode((const char*)tmp, key_length, NULL, 0);
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	if (b64_size == 0) {
		ms_error("Failed to get b64 result size");
		ms_free(tmp);
		return FALSE;
	}
	if (b64_size>=key_out_size){
		ms_error("Insufficient room for writing base64 SRTP key");
		ms_free(tmp);
		return FALSE;
	}
	b64_size=b64_encode((const char*)tmp, key_length, key_out, key_out_size);
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	if (b64_size == 0) {
		ms_error("Failed to b64 encode key");
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		ms_free(tmp);
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		return FALSE;
	}
	key_out[b64_size] = '\0';
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	ms_free(tmp);
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	return TRUE;
}

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static bool_t linphone_call_encryption_mandatory(LinphoneCall *call){
	if (call->params->media_encryption==LinphoneMediaEncryptionDTLS) {
		ms_message("Forced encryption mandatory on call [%p] due to SRTP-DTLS",call);
		return TRUE;
	}
	return call->params->encryption_mandatory;
}

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LinphoneCore *linphone_call_get_core(const LinphoneCall *call){
	return call->core;
}

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const char* linphone_call_get_authentication_token(LinphoneCall *call){
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	return call->auth_token;
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}

bool_t linphone_call_get_authentication_token_verified(LinphoneCall *call){
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	return call->auth_token_verified;
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}
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static bool_t at_least_one_stream_started(const LinphoneCall *call){
	return (call->audiostream && media_stream_get_state((MediaStream *)call->audiostream) == MSStreamStarted )
		|| (call->videostream && media_stream_get_state((MediaStream *)call->videostream) == MSStreamStarted)
		|| (call->textstream && media_stream_get_state((MediaStream *)call->textstream) == MSStreamStarted);
}

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static bool_t linphone_call_all_streams_encrypted(const LinphoneCall *call) {
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	int number_of_encrypted_stream = 0;
	int number_of_active_stream = 0;
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	if (call->audiostream && media_stream_get_state((MediaStream *)call->audiostream) == MSStreamStarted) {
		number_of_active_stream++;
		if(media_stream_secured((MediaStream *)call->audiostream))
			number_of_encrypted_stream++;
	}
	if (call->videostream && media_stream_get_state((MediaStream *)call->videostream) == MSStreamStarted) {
		number_of_active_stream++;
		if (media_stream_secured((MediaStream *)call->videostream))
			number_of_encrypted_stream++;
	}
	if (call->textstream && media_stream_get_state((MediaStream *)call->textstream) == MSStreamStarted) {
		number_of_active_stream++;
		if (media_stream_secured((MediaStream *)call->textstream))
			number_of_encrypted_stream++;
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	}
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	return number_of_active_stream>0 && number_of_active_stream==number_of_encrypted_stream;
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}

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static bool_t linphone_call_all_streams_avpf_enabled(const LinphoneCall *call) {
	int nb_active_streams = 0;
	int nb_avpf_enabled_streams = 0;
	if (call) {
		if (call->audiostream && media_stream_get_state((MediaStream *)call->audiostream) == MSStreamStarted) {
			nb_active_streams++;
			if (media_stream_avpf_enabled((MediaStream *)call->audiostream))
				nb_avpf_enabled_streams++;
		}
		if (call->videostream && media_stream_get_state((MediaStream *)call->videostream) == MSStreamStarted) {
			nb_active_streams++;
			if (media_stream_avpf_enabled((MediaStream *)call->videostream))
				nb_avpf_enabled_streams++;
		}
	}
	return ((nb_active_streams > 0) && (nb_active_streams == nb_avpf_enabled_streams));
}

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static uint16_t linphone_call_get_avpf_rr_interval(const LinphoneCall *call) {
	uint16_t rr_interval = 0;
	uint16_t stream_rr_interval;
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	if (call) {
		if (call->audiostream && media_stream_get_state((MediaStream *)call->audiostream) == MSStreamStarted) {
			stream_rr_interval = media_stream_get_avpf_rr_interval((MediaStream *)call->audiostream);
			if (stream_rr_interval > rr_interval) rr_interval = stream_rr_interval;
		}
		if (call->videostream && media_stream_get_state((MediaStream *)call->videostream) == MSStreamStarted) {
			stream_rr_interval = media_stream_get_avpf_rr_interval((MediaStream *)call->videostream);
			if (stream_rr_interval > rr_interval) rr_interval = stream_rr_interval;
		}
	} else {
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		rr_interval = 5000;
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	}
	return rr_interval;
}

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static void propagate_encryption_changed(LinphoneCall *call){
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	if (!linphone_call_all_streams_encrypted(call)) {
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		ms_message("Some streams are not encrypted");
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		call->current_params->media_encryption=LinphoneMediaEncryptionNone;
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		linphone_call_notify_encryption_changed(call, FALSE, call->auth_token);
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	} else {
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		if (call->auth_token) {/* ZRTP only is using auth_token */
			call->current_params->media_encryption=LinphoneMediaEncryptionZRTP;
		} else { /* otherwise it must be DTLS as SDES doesn't go through this function */
			call->current_params->media_encryption=LinphoneMediaEncryptionDTLS;
		}
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		ms_message("All streams are encrypted key exchanged using %s", call->current_params->media_encryption==LinphoneMediaEncryptionZRTP?"ZRTP":call->current_params->media_encryption==LinphoneMediaEncryptionDTLS?"DTLS":"Unknown mechanism");
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		linphone_call_notify_encryption_changed(call, TRUE, call->auth_token);
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#ifdef VIDEO_ENABLED
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		if (linphone_call_encryption_mandatory(call) && call->videostream && media_stream_started((MediaStream *)call->videostream)) {
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			video_stream_send_vfu(call->videostream); /*nothing could have been sent yet so generating key frame*/
		}
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#endif
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	}
}

static void linphone_call_audiostream_encryption_changed(void *data, bool_t encrypted) {
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	char status[255]={0};
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	LinphoneCall *call;
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	call = (LinphoneCall *)data;
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	if (encrypted) {
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		if (call->params->media_encryption==LinphoneMediaEncryptionZRTP) { /* if encryption is DTLS, no status to be displayed */
			snprintf(status,sizeof(status)-1,_("Authentication token is %s"),call->auth_token);
			linphone_core_notify_display_status(call->core, status);
		}
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	}

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	propagate_encryption_changed(call);

#ifdef VIDEO_ENABLED
	// Enable video encryption
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	if (call->params->media_encryption==LinphoneMediaEncryptionZRTP) {
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		const LinphoneCallParams *params=linphone_call_get_current_params(call);
		if (params->has_video) {
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			ms_message("Trying to start ZRTP encryption on video stream");
			video_stream_start_zrtp(call->videostream);
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		}
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	}
#endif
}

static void linphone_call_audiostream_auth_token_ready(void *data, const char* auth_token, bool_t verified) {
	LinphoneCall *call=(LinphoneCall *)data;
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	if (call->auth_token != NULL)
		ms_free(call->auth_token);
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	call->auth_token=ms_strdup(auth_token);
	call->auth_token_verified=verified;
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	ms_message("Authentication token is %s (%s)", auth_token, verified?"verified":"unverified");
}

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void linphone_call_set_authentication_token_verified(LinphoneCall *call, bool_t verified){
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	if (call->audiostream==NULL || !media_stream_started(&call->audiostream->ms)){
		ms_error("linphone_call_set_authentication_token_verified(): No audio stream or not started");
		return;
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	}
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	if (call->audiostream->ms.sessions.zrtp_context==NULL){
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		ms_error("linphone_call_set_authentication_token_verified(): No zrtp context.");
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		return;
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	}
	if (!call->auth_token_verified && verified){
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		ms_zrtp_sas_verified(call->audiostream->ms.sessions.zrtp_context);
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	}else if (call->auth_token_verified && !verified){
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		ms_zrtp_sas_reset_verified(call->audiostream->ms.sessions.zrtp_context);
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	}
	call->auth_token_verified=verified;
	propagate_encryption_changed(call);
}
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static int get_max_codec_sample_rate(const bctbx_list_t *codecs){
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	int max_sample_rate=0;
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	const bctbx_list_t *it;
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	for(it=codecs;it!=NULL;it=it->next){
		PayloadType *pt=(PayloadType*)it->data;
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		int sample_rate;
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		if( strcasecmp("G722",pt->mime_type) == 0 ){
			/* G722 spec says 8000 but the codec actually requires 16000 */
			sample_rate = 16000;
		}else sample_rate=pt->clock_rate;
		if (sample_rate>max_sample_rate) max_sample_rate=sample_rate;
	}
	return max_sample_rate;
}
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static int find_payload_type_number(const bctbx_list_t *assigned, const PayloadType *pt){
	const bctbx_list_t *elem;
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	const PayloadType *candidate=NULL;
	for(elem=assigned;elem!=NULL;elem=elem->next){
		const PayloadType *it=(const PayloadType*)elem->data;
		if ((strcasecmp(pt->mime_type, payload_type_get_mime(it)) == 0)
			&& (it->clock_rate==pt->clock_rate)
			&& (it->channels==pt->channels || pt->channels<=0)) {
			candidate=it;
			if ((it->recv_fmtp!=NULL && pt->recv_fmtp!=NULL && strcasecmp(it->recv_fmtp, pt->recv_fmtp)==0)
				|| (it->recv_fmtp==NULL && pt->recv_fmtp==NULL)){
				break;/*exact match*/
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			}
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		}
	}
	return candidate ? payload_type_get_number(candidate) : -1;
}

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bool_t is_payload_type_number_available(const bctbx_list_t *l, int number, const PayloadType *ignore){
	const bctbx_list_t *elem;
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	for (elem=l; elem!=NULL; elem=elem->next){
		const PayloadType *pt=(PayloadType*)elem->data;
		if (pt!=ignore && payload_type_get_number(pt)==number) return FALSE;
	}
	return TRUE;
}
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static void linphone_core_assign_payload_type_numbers(LinphoneCore *lc, bctbx_list_t *codecs){
	bctbx_list_t *elem;
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	int dyn_number=lc->codecs_conf.dyn_pt;
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	PayloadType *red = NULL, *t140 = NULL;
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	for (elem=codecs; elem!=NULL; elem=elem->next){
		PayloadType *pt=(PayloadType*)elem->data;
		int number=payload_type_get_number(pt);
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		/*check if number is duplicated: it could be the case if the remote forced us to use a mapping with a previous offer*/
		if (number!=-1 && !(pt->flags & PAYLOAD_TYPE_FROZEN_NUMBER)){
			if (!is_payload_type_number_available(codecs, number, pt)){
				ms_message("Reassigning payload type %i %s/%i because already offered.", number, pt->mime_type, pt->clock_rate);
				number=-1; /*need to be re-assigned*/
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			}
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		}
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		if (number==-1){
			while(dyn_number<127){
				if (is_payload_type_number_available(codecs, dyn_number, NULL)){
					payload_type_set_number(pt, dyn_number);
					dyn_number++;
					break;
				}
				dyn_number++;
			}
			if (dyn_number==127){
				ms_error("Too many payload types configured ! codec %s/%i is disabled.", pt->mime_type, pt->clock_rate);
				payload_type_set_enable(pt, FALSE);
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			}
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		}
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		if (strcmp(pt->mime_type, payload_type_t140_red.mime_type) == 0) {
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			red = pt;
		} else if (strcmp(pt->mime_type, payload_type_t140.mime_type) == 0) {
			t140 = pt;
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		}
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	}
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	if (t140 && red) {
		int t140_payload_type_number = payload_type_get_number(t140);
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		char *red_fmtp = ms_strdup_printf("%i/%i/%i", t140_payload_type_number, t140_payload_type_number, t140_payload_type_number);
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		payload_type_set_recv_fmtp(red, red_fmtp);
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		ms_free(red_fmtp);
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	}
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}

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static bool_t has_telephone_event_at_rate(const bctbx_list_t *tev, int rate){
	const bctbx_list_t *it;
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	for(it=tev;it!=NULL;it=it->next){
		const PayloadType *pt=(PayloadType*)it->data;
		if (pt->clock_rate==rate) return TRUE;
	}
	return FALSE;
}

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static bctbx_list_t * create_telephone_events(LinphoneCore *lc, const bctbx_list_t *codecs){
	const bctbx_list_t *it;
	bctbx_list_t *ret=NULL;
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	for(it=codecs;it!=NULL;it=it->next){
		const PayloadType *pt=(PayloadType*)it->data;
		if (!has_telephone_event_at_rate(ret,pt->clock_rate)){
			PayloadType *tev=payload_type_clone(&payload_type_telephone_event);
			tev->clock_rate=pt->clock_rate;
			/*let it choose the number dynamically as for normal codecs*/
			payload_type_set_number(tev, -1);
			if (ret==NULL){
				/*But for first telephone-event, prefer the number that was configured in the core*/
				if (is_payload_type_number_available(codecs, lc->codecs_conf.telephone_event_pt, NULL)){
					payload_type_set_number(tev, lc->codecs_conf.telephone_event_pt);
				}
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			}
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			ret=bctbx_list_append(ret,tev);
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		}
	}
	return ret;
}

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static bctbx_list_t *create_special_payload_types(LinphoneCore *lc, const bctbx_list_t *codecs){
	bctbx_list_t *ret=create_telephone_events(lc, codecs);
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	if (linphone_core_generic_comfort_noise_enabled(lc)){
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		PayloadType *cn=payload_type_clone(&payload_type_cn);
		payload_type_set_number(cn, 13);
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		ret=bctbx_list_append(ret, cn);
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	}
	return ret;
}

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typedef struct _CodecConstraints{
	int bandwidth_limit;
	int max_codecs;
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	bctbx_list_t *previously_used;
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}CodecConstraints;

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static bctbx_list_t *make_codec_list(LinphoneCore *lc, CodecConstraints * hints, SalStreamType stype, const bctbx_list_t *codecs){
	bctbx_list_t *l=NULL;
	const bctbx_list_t *it;
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	int nb = 0;

	for(it=codecs;it!=NULL;it=it->next){
		PayloadType *pt=(PayloadType*)it->data;
		int num;
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		if (!payload_type_enabled(pt)) {
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			continue;
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		}
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		if (hints->bandwidth_limit>0 && !linphone_core_is_payload_type_usable_for_bandwidth(lc,pt,hints->bandwidth_limit)){
			ms_message("Codec %s/%i eliminated because of audio bandwidth constraint of %i kbit/s",
					pt->mime_type,pt->clock_rate,hints->bandwidth_limit);
			continue;
		}
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		if (!_linphone_core_check_payload_type_usability(lc, pt)) {
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			continue;
		}
		pt=payload_type_clone(pt);
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		/*look for a previously assigned number for this codec*/
		num=find_payload_type_number(hints->previously_used, pt);
		if (num!=-1){
			payload_type_set_number(pt,num);
			payload_type_set_flag(pt, PAYLOAD_TYPE_FROZEN_NUMBER);
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		}
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		l=bctbx_list_append(l, pt);
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		nb++;
		if ((hints->max_codecs > 0) && (nb >= hints->max_codecs)) break;
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	}
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	if (stype==SalAudio){
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		bctbx_list_t *specials=create_special_payload_types(lc,l);
		l=bctbx_list_concat(l,specials);
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	}
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	linphone_core_assign_payload_type_numbers(lc, l);
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	return l;
}

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static void update_media_description_from_stun(SalMediaDescription *md, const StunCandidate *ac, const StunCandidate *vc, const StunCandidate *tc){
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	int i;
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	for (i = 0; i < SAL_MEDIA_DESCRIPTION_MAX_STREAMS; i++) {
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		if (!sal_stream_description_active(&md->streams[i])) continue;
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		if ((md->streams[i].type == SalAudio) && (ac->port != 0)) {
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			strcpy(md->streams[i].rtp_addr,ac->addr);
			md->streams[i].rtp_port=ac->port;
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			if ((ac->addr[0]!='\0' && vc->addr[0]!='\0' && strcmp(ac->addr,vc->addr)==0) || sal_media_description_get_nb_active_streams(md)==1){
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				strcpy(md->addr,ac->addr);
			}
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		} else if ((md->streams[i].type == SalVideo) && (vc->port != 0)) {
			strcpy(md->streams[i].rtp_addr,vc->addr);
			md->streams[i].rtp_port=vc->port;
		} else if ((md->streams[i].type == SalText) && (tc->port != 0)) {
			strcpy(md->streams[i].rtp_addr,tc->addr);
			md->streams[i].rtp_port=tc->port;
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		}
	}
}

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static int setup_encryption_key(SalSrtpCryptoAlgo *crypto, MSCryptoSuite suite, unsigned int tag){
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	size_t keylen=0;
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	crypto->tag=tag;
	crypto->algo=suite;
	switch(suite){
		case MS_AES_128_SHA1_80:
		case MS_AES_128_SHA1_32:
		case MS_AES_128_NO_AUTH:
		case MS_NO_CIPHER_SHA1_80: /*not sure for this one*/
			keylen=30;
		break;
		case MS_AES_256_SHA1_80:
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		case MS_AES_CM_256_SHA1_80:
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		case MS_AES_256_SHA1_32:
			keylen=46;
		break;
		case MS_CRYPTO_SUITE_INVALID:
		break;
	}
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	if (keylen==0 || !generate_b64_crypto_key(keylen, crypto->master_key, SAL_SRTP_KEY_SIZE)){
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		ms_error("Could not generate SRTP key.");
		crypto->algo = 0;
		return -1;
	}
	return 0;
}
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static void setup_dtls_keys(LinphoneCall *call, SalMediaDescription *md){
	int i;
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	for(i=0; i<SAL_MEDIA_DESCRIPTION_MAX_STREAMS; i++) {
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		if (!sal_stream_description_active(&md->streams[i])) continue;
		/* if media encryption is set to DTLS check presence of fingerprint in the call which shall have been set at stream init but it may have failed when retrieving certificate resulting in no fingerprint present and then DTLS not usable */
		if (sal_stream_description_has_dtls(&md->streams[i]) == TRUE) {
			strncpy(md->streams[i].dtls_fingerprint, call->dtls_certificate_fingerprint, sizeof(md->streams[i].dtls_fingerprint)); /* get the self fingerprint from call(it's computed at stream init) */
			md->streams[i].dtls_role = SalDtlsRoleUnset; /* if we are offering, SDP will have actpass setup attribute when role is unset, if we are responding the result mediadescription will be set to SalDtlsRoleIsClient */
		} else {
			md->streams[i].dtls_fingerprint[0] = '\0';
			md->streams[i].dtls_role = SalDtlsRoleInvalid;
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		}
	}

}
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static void setup_encryption_keys(LinphoneCall *call, SalMediaDescription *md){
	LinphoneCore *lc=call->core;
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	int i,j;
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	SalMediaDescription *old_md=call->localdesc;
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	bool_t keep_srtp_keys=lp_config_get_int(lc->config,"sip","keep_srtp_keys",1);
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	for(i=0; i<SAL_MEDIA_DESCRIPTION_MAX_STREAMS; i++) {
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		if (!sal_stream_description_active(&md->streams[i])) continue;
		if (sal_stream_description_has_srtp(&md->streams[i]) == TRUE) {
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			if (keep_srtp_keys && old_md && (sal_stream_description_active(&old_md->streams[i]) == TRUE) && (sal_stream_description_has_srtp(&old_md->streams[i]) == TRUE)) {
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				int j;
				ms_message("Keeping same crypto keys.");
				for(j=0;j<SAL_CRYPTO_ALGO_MAX;++j){
					memcpy(&md->streams[i].crypto[j],&old_md->streams[i].crypto[j],sizeof(SalSrtpCryptoAlgo));
				}
			}else{
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				const MSCryptoSuite *suites=linphone_core_get_srtp_crypto_suites(lc);
				for(j=0;suites!=NULL && suites[j]!=MS_CRYPTO_SUITE_INVALID && j<SAL_CRYPTO_ALGO_MAX;++j){
					setup_encryption_key(&md->streams[i].crypto[j],suites[j],j+1);
				}
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			}
		}
	}
}

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static void setup_zrtp_hash(LinphoneCall *call, SalMediaDescription *md) {
	int i;
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	if (linphone_core_media_encryption_supported(call->core, LinphoneMediaEncryptionZRTP)) { /* set the hello hash for all streams */
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		for(i=0; i<SAL_MEDIA_DESCRIPTION_MAX_STREAMS; i++) {
			if (!sal_stream_description_active(&md->streams[i])) continue;
			if (call->sessions[i].zrtp_context!=NULL) {
				ms_zrtp_getHelloHash(call->sessions[i].zrtp_context, md->streams[i].zrtphash, 128);
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				if (call->params->media_encryption==LinphoneMediaEncryptionZRTP) { /* turn on the flag to use it if ZRTP is set */
					md->streams[i].haveZrtpHash = 1;
				} else {
					md->streams[i].haveZrtpHash = 0;
				}
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			} else {
				md->streams[i].haveZrtpHash = 0;
			}
		}
	}
}

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static void setup_rtcp_fb(LinphoneCall *call, SalMediaDescription *md) {
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	bctbx_list_t *pt_it;
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	PayloadType *pt;
	PayloadTypeAvpfParams avpf_params;
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	LinphoneCore *lc = call->core;
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	int i;

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	for (i = 0; i < SAL_MEDIA_DESCRIPTION_MAX_STREAMS; i++) {
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		if (!sal_stream_description_active(&md->streams[i])) continue;
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		md->streams[i].rtcp_fb.generic_nack_enabled = lp_config_get_int(lc->config, "rtp", "rtcp_fb_generic_nack_enabled", 0);
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		md->streams[i].rtcp_fb.tmmbr_enabled = lp_config_get_int(lc->config, "rtp", "rtcp_fb_tmmbr_enabled", 1);
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		md->streams[i].implicit_rtcp_fb = call->params->implicit_rtcp_fb;
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		for (pt_it = md->streams[i].payloads; pt_it != NULL; pt_it = pt_it->next) {
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			pt = (PayloadType *)pt_it->data;
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			if (call->params->avpf_enabled == FALSE && call->params->implicit_rtcp_fb == FALSE)  {
				payload_type_unset_flag(pt, PAYLOAD_TYPE_RTCP_FEEDBACK_ENABLED);
				memset(&avpf_params, 0, sizeof(avpf_params));
			}else {
				payload_type_set_flag(pt, PAYLOAD_TYPE_RTCP_FEEDBACK_ENABLED);
				avpf_params = payload_type_get_avpf_params(pt);
				avpf_params.trr_interval = call->params->avpf_rr_interval;
			}
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			payload_type_set_avpf_params(pt, avpf_params);
		}
	}
}

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static void setup_rtcp_xr(LinphoneCall *call, SalMediaDescription *md) {
	LinphoneCore *lc = call->core;
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	int i;
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	md->rtcp_xr.enabled = lp_config_get_int(lc->config, "rtp", "rtcp_xr_enabled", 1);
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	if (md->rtcp_xr.enabled == TRUE) {
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		const char *rcvr_rtt_mode = lp_config_get_string(lc->config, "rtp", "rtcp_xr_rcvr_rtt_mode", "all");
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		if (strcasecmp(rcvr_rtt_mode, "all") == 0) md->rtcp_xr.rcvr_rtt_mode = OrtpRtcpXrRcvrRttAll;
		else if (strcasecmp(rcvr_rtt_mode, "sender") == 0) md->rtcp_xr.rcvr_rtt_mode = OrtpRtcpXrRcvrRttSender;
		else md->rtcp_xr.rcvr_rtt_mode = OrtpRtcpXrRcvrRttNone;
		if (md->rtcp_xr.rcvr_rtt_mode != OrtpRtcpXrRcvrRttNone) {
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			md->rtcp_xr.rcvr_rtt_max_size = lp_config_get_int(lc->config, "rtp", "rtcp_xr_rcvr_rtt_max_size", 10000);
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		}
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		md->rtcp_xr.stat_summary_enabled = lp_config_get_int(lc->config, "rtp", "rtcp_xr_stat_summary_enabled", 1);
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		if (md->rtcp_xr.stat_summary_enabled == TRUE) {
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			md->rtcp_xr.stat_summary_flags = OrtpRtcpXrStatSummaryLoss | OrtpRtcpXrStatSummaryDup | OrtpRtcpXrStatSummaryJitt | OrtpRtcpXrStatSummaryTTL;
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		}
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		md->rtcp_xr.voip_metrics_enabled = lp_config_get_int(lc->config, "rtp", "rtcp_xr_voip_metrics_enabled", 1);
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	}
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	for (i = 0; i < SAL_MEDIA_DESCRIPTION_MAX_STREAMS; i++) {
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		if (!sal_stream_description_active(&md->streams[i])) continue;
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		memcpy(&md->streams[i].rtcp_xr, &md->rtcp_xr, sizeof(md->streams[i].rtcp_xr));
	}
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}

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void linphone_call_increment_local_media_description(LinphoneCall *call){
	SalMediaDescription *md=call->localdesc;
	md->session_ver++;
}

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void linphone_call_update_local_media_description_from_ice_or_upnp(LinphoneCall *call){
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	LinphoneCore *lc = call->core;
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	if (call->ice_session != NULL) {
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		/*set this to FALSE once flexisip are updated everywhere, let's say in December 2016.*/
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		bool_t use_nortpproxy = lp_config_get_int(lc->config, "sip", "ice_uses_nortpproxy", TRUE);
		_update_local_media_description_from_ice(call->localdesc, call->ice_session, use_nortpproxy);
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		linphone_call_update_ice_state_in_call_stats(call);
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	}
#ifdef BUILD_UPNP
	if(call->upnp_session != NULL) {
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		linphone_call_update_local_media_description_from_upnp(call->localdesc, call->upnp_session);
		linphone_call_update_upnp_state_in_call_stats(call);
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	}
#endif  //BUILD_UPNP
}

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static void transfer_already_assigned_payload_types(SalMediaDescription *old, SalMediaDescription *md){
	int i;
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	for(i=0;i<SAL_MEDIA_DESCRIPTION_MAX_STREAMS;++i){
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		md->streams[i].already_assigned_payloads=old->streams[i].already_assigned_payloads;
		old->streams[i].already_assigned_payloads=NULL;
	}
}

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static const char *linphone_call_get_bind_ip_for_stream(LinphoneCall *call, int stream_index){
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	const char *bind_ip = lp_config_get_string(call->core->config,"rtp","bind_address",
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				call->af == AF_INET6 ? "::0" : "0.0.0.0");
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	PortConfig *pc = &call->media_ports[stream_index];
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	if (pc->multicast_ip[0]!='\0'){
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		if (call->dir==LinphoneCallOutgoing){
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			/*as multicast sender, we must decide a local interface to use to send multicast, and bind to it*/
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			linphone_core_get_local_ip_for(strchr(pc->multicast_ip,':') ? AF_INET6 : AF_INET,
				NULL, pc->multicast_bind_ip);
			bind_ip = pc->multicast_bind_ip;
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		}else{
			/*otherwise we shall use an address family of the same family of the multicast address, because
			 * dual stack socket and multicast don't work well on Mac OS (linux is OK, as usual).*/
			bind_ip = strchr(pc->multicast_ip,':') ? "::0" : "0.0.0.0";
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		}
	}
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	return bind_ip;
}

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static const char *linphone_call_get_public_ip_for_stream(LinphoneCall *call, int stream_index){
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	const char *public_ip=call->media_localip;
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	if (call->media_ports[stream_index].multicast_ip[0]!='\0')
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		public_ip=call->media_ports[stream_index].multicast_ip;
	return public_ip;
}

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void linphone_call_update_biggest_desc(LinphoneCall *call, SalMediaDescription *md){
	if (call->biggestdesc==NULL || md->nb_streams>call->biggestdesc->nb_streams){
		/*we have been offered and now are ready to proceed, or we added a new stream*/
		/*store the media description to remember the mapping of calls*/
		if (call->biggestdesc){
			sal_media_description_unref(call->biggestdesc);
			call->biggestdesc=NULL;
		}
		call->biggestdesc=sal_media_description_ref(md);
	}
}

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static void force_streams_dir_according_to_state(LinphoneCall *call, SalMediaDescription *md){
	int i;
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	for (i=0; i<SAL_MEDIA_DESCRIPTION_MAX_STREAMS; ++i){
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		SalStreamDescription *sd = &md->streams[i];
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		switch (call->state){
			case LinphoneCallPausing:
			case LinphoneCallPaused:
				if (sd->dir != SalStreamInactive) {
					sd->dir = SalStreamSendOnly;
					if (sd->type == SalVideo){
						if (lp_config_get_int(call->core->config, "sip", "inactive_video_on_pause", 0)) {
							sd->dir = SalStreamInactive;
						}
					}
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				}
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				break;
			default:
				break;
		}

		/* Reflect the stream directions in the call params */
		if (i == call->main_audio_stream_index) {
			linphone_call_params_set_audio_direction(call->current_params, media_direction_from_sal_stream_dir(sd->dir));
		} else if (i == call->main_video_stream_index) {
			linphone_call_params_set_video_direction(call->current_params, media_direction_from_sal_stream_dir(sd->dir));
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		}
	}
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}

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void linphone_call_make_local_media_description(LinphoneCall *call) {
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	bctbx_list_t *l;
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	SalMediaDescription *old_md=call->localdesc;
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	int i;
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	int max_index = 0;
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	SalMediaDescription *md=sal_media_description_new();
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	LinphoneAddress *addr;
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	const char *subject;
	CodecConstraints codec_hints={0};
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	LinphoneCallParams *params = call->params;
	LinphoneCore *lc = call->core;
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	bool_t rtcp_mux = lp_config_get_int(lc->config, "rtp", "rtcp_mux", 0);
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	/*multicast is only set in case of outgoing call*/
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	if (call->dir == LinphoneCallOutgoing && linphone_call_params_audio_multicast_enabled(params)) {
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		md->streams[call->main_audio_stream_index].ttl=linphone_core_get_audio_multicast_ttl(lc);
		md->streams[call->main_audio_stream_index].multicast_role = SalMulticastSender;
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	}
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	if (call->dir == LinphoneCallOutgoing && linphone_call_params_video_multicast_enabled(params)) {
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		md->streams[call->main_video_stream_index].ttl=linphone_core_get_video_multicast_ttl(lc);
		md->streams[call->main_video_stream_index].multicast_role = SalMulticastSender;
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	}
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	subject=linphone_call_params_get_session_name(params);
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	linphone_core_adapt_to_network(lc,call->ping_time,params);
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	if (call->dest_proxy) {
		addr=linphone_address_clone(linphone_proxy_config_get_identity_address(call->dest_proxy));
	} else {
		addr=linphone_address_new(linphone_core_get_identity(lc));
	}
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	md->session_id=(old_md ? old_md->session_id : (rand() & 0xfff));
	md->session_ver=(old_md ? (old_md->session_ver+1) : (rand() & 0xfff));
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	md->nb_streams=(call->biggestdesc ? call->biggestdesc->nb_streams : 1);
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	/*re-check local ip address each time we make a new offer, because it may change in case of network reconnection*/
	linphone_call_get_local_ip(call, call->dir == LinphoneCallOutgoing ?  call->log->to : call->log->from);
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	strncpy(md->addr,call->media_localip,sizeof(md->addr));
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	if (linphone_address_get_username(addr)) /*might be null in case of identity without userinfo*/
		strncpy(md->username,linphone_address_get_username(addr),sizeof(md->username));
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	if (subject) strncpy(md->name,subject,sizeof(md->name));
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	if (params->down_bw)
		md->bandwidth=params->down_bw;
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	else md->bandwidth=linphone_core_get_download_bandwidth(lc);
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	if (params->custom_sdp_attributes)
		md->custom_sdp_attributes = sal_custom_sdp_attribute_clone(params->custom_sdp_attributes);

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	/*set audio capabilities */
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	codec_hints.bandwidth_limit=params->audio_bw;
	codec_hints.max_codecs=-1;
	codec_hints.previously_used=old_md ? old_md->streams[call->main_audio_stream_index].already_assigned_payloads : NULL;
	l=make_codec_list(lc, &codec_hints, SalAudio, lc->codecs_conf.audio_codecs);
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	if (params->has_audio && l != NULL) {
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		strncpy(md->streams[call->main_audio_stream_index].rtp_addr,linphone_call_get_public_ip_for_stream(call,call->main_audio_stream_index),sizeof(md->streams[call->main_audio_stream_index].rtp_addr));
		strncpy(md->streams[call->main_audio_stream_index].rtcp_addr,linphone_call_get_public_ip_for_stream(call,call->main_audio_stream_index),sizeof(md->streams[call->main_audio_stream_index].rtcp_addr));
		strncpy(md->