misc.c 54.4 KB
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/*
linphone
Copyright (C) 2000  Simon MORLAT (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
Foundation, Inc., 59 Temple Place - Suite 330, Boston, MA  02111-1307, USA.
*/

#include "private.h"
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#include "lpconfig.h"
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#include "mediastreamer2/mediastream.h"
#include <stdlib.h>
#include <stdio.h>
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#ifdef HAVE_SIGHANDLER_T
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#include <signal.h>
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#endif /*HAVE_SIGHANDLER_T*/
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#include <string.h>
#if !defined(_WIN32_WCE)
#include <errno.h>
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#include <sys/types.h>
#include <sys/stat.h>
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#if _MSC_VER
#include <io.h>
#else
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#include <unistd.h>
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#endif
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#include <fcntl.h>
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#endif /*_WIN32_WCE*/
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#undef snprintf
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#include <ortp/stun.h>
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#ifdef HAVE_GETIFADDRS
#include <net/if.h>
#include <ifaddrs.h>
#endif
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#include <math.h>
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#if _MSC_VER
#define snprintf _snprintf
#define popen _popen
#define pclose _pclose
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#endif
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#define UDP_HDR_SZ 8
#define RTP_HDR_SZ 12
#define IP4_HDR_SZ 20   /*20 is the minimum, but there may be some options*/

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static void payload_type_set_enable(PayloadType *pt,int value)
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{
	if ((value)!=0) payload_type_set_flag(pt,PAYLOAD_TYPE_ENABLED); \
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	else payload_type_unset_flag(pt,PAYLOAD_TYPE_ENABLED);
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}

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static bool_t payload_type_enabled(const PayloadType *pt) {
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	return (((pt)->flags & PAYLOAD_TYPE_ENABLED)!=0);
}

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bool_t linphone_core_payload_type_enabled(LinphoneCore *lc, const LinphonePayloadType *pt){
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	if (ms_list_find(lc->codecs_conf.audio_codecs, (PayloadType*) pt) || ms_list_find(lc->codecs_conf.video_codecs, (PayloadType*)pt)){
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		return payload_type_enabled(pt);
	}
	ms_error("Getting enablement status of codec not in audio or video list of PayloadType !");
	return FALSE;
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}
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bool_t linphone_core_payload_type_is_vbr(LinphoneCore *lc, const LinphonePayloadType *pt){
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	if (pt->type==PAYLOAD_VIDEO) return TRUE;
	return !!(pt->flags & PAYLOAD_TYPE_IS_VBR);
}

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int linphone_core_enable_payload_type(LinphoneCore *lc, LinphonePayloadType *pt, bool_t enabled){
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	if (ms_list_find(lc->codecs_conf.audio_codecs,pt) || ms_list_find(lc->codecs_conf.video_codecs,pt)){
		payload_type_set_enable(pt,enabled);
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		_linphone_core_codec_config_write(lc);
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		linphone_core_update_allocated_audio_bandwidth(lc);
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		return 0;
	}
	ms_error("Enabling codec not in audio or video list of PayloadType !");
	return -1;
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}

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int linphone_core_get_payload_type_number(LinphoneCore *lc, const PayloadType *pt){
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	return payload_type_get_number(pt);
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}

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const char *linphone_core_get_payload_type_description(LinphoneCore *lc, PayloadType *pt){
	if (ms_filter_codec_supported(pt->mime_type)){
		MSFilterDesc *desc=ms_filter_get_encoder(pt->mime_type);
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#ifdef ENABLE_NLS
		return dgettext("mediastreamer",desc->text);
#else
		return desc->text;
#endif
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	}
	return NULL;
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}

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void linphone_core_set_payload_type_bitrate(LinphoneCore *lc, LinphonePayloadType *pt, int bitrate){
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	if (ms_list_find(lc->codecs_conf.audio_codecs, (PayloadType*) pt) || ms_list_find(lc->codecs_conf.video_codecs, (PayloadType*)pt)){
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		if (pt->type==PAYLOAD_VIDEO || pt->flags & PAYLOAD_TYPE_IS_VBR){
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			pt->normal_bitrate=bitrate*1000;
			pt->flags|=PAYLOAD_TYPE_BITRATE_OVERRIDE;
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			linphone_core_update_allocated_audio_bandwidth(lc);
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		}else{
			ms_error("Cannot set an explicit bitrate for codec %s/%i, because it is not VBR.",pt->mime_type,pt->clock_rate);
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			return;
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		}
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	} else {
		ms_error("linphone_core_set_payload_type_bitrate() payload type not in audio or video list !");
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	}
}

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/*
 *((codec-birate*ptime/8) + RTP header + UDP header + IP header)*8/ptime;
 *ptime=1/npacket
 */
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static double get_audio_payload_bandwidth_from_codec_bitrate(const PayloadType *pt){
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	double npacket=50;
	double packet_size;
	int bitrate;
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	if (strcmp(payload_type_get_mime(&payload_type_aaceld_44k), payload_type_get_mime(pt))==0) {
		/*special case of aac 44K because ptime= 10ms*/
		npacket=100;
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	}else if (strcmp(payload_type_get_mime(&payload_type_ilbc), payload_type_get_mime(pt))==0) {
		npacket=1000/30.0;
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	}
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	bitrate=pt->normal_bitrate;
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	packet_size= (((double)bitrate)/(npacket*8))+UDP_HDR_SZ+RTP_HDR_SZ+IP4_HDR_SZ;
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	return packet_size*8.0*npacket;
}

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typedef struct vbr_codec_bitrate{
	int max_avail_bitrate;
	int min_rate;
	int recomended_bitrate;
}vbr_codec_bitrate_t;

static vbr_codec_bitrate_t defauls_vbr[]={
	//{ 100, 44100, 100 },
	{ 64, 44100, 50 },
	{ 64, 16000, 40 },
	{ 32, 16000, 32 },
	{ 32, 8000, 32 },
	{ 0 , 8000, 24 },
	{ 0 , 0, 0 }
};

static int lookup_vbr_typical_bitrate(int maxbw, int clock_rate){
	vbr_codec_bitrate_t *it;
	if (maxbw<=0) maxbw=defauls_vbr[0].max_avail_bitrate;
	for(it=defauls_vbr;it->min_rate!=0;it++){
		if (maxbw>=it->max_avail_bitrate && clock_rate>=it->min_rate)
			return it->recomended_bitrate;
	}
	ms_error("lookup_vbr_typical_bitrate(): should not happen.");
	return 32;
}

static int get_audio_payload_bandwidth(LinphoneCore *lc, const PayloadType *pt, int maxbw){
	if (linphone_core_payload_type_is_vbr(lc,pt)){
		if (pt->flags & PAYLOAD_TYPE_BITRATE_OVERRIDE){
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			ms_debug("PayloadType %s/%i has bitrate override",pt->mime_type,pt->clock_rate);
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			return pt->normal_bitrate/1000;
		}
		return lookup_vbr_typical_bitrate(maxbw,pt->clock_rate);
	}else return (int)ceil(get_audio_payload_bandwidth_from_codec_bitrate(pt)/1000.0);/*rounding codec bandwidth should be avoid, specially for AMR*/
}

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int linphone_core_get_payload_type_bitrate(LinphoneCore *lc, const LinphonePayloadType *pt){
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	int maxbw=get_min_bandwidth(linphone_core_get_download_bandwidth(lc),
					linphone_core_get_upload_bandwidth(lc));
	if (pt->type==PAYLOAD_AUDIO_CONTINUOUS || pt->type==PAYLOAD_AUDIO_PACKETIZED){
		return get_audio_payload_bandwidth(lc,pt,maxbw);
	}else if (pt->type==PAYLOAD_VIDEO){
		int video_bw;
		if (maxbw<=0) {
			video_bw=1500; /*default bitrate for video stream when no bandwidth limit is set, around 1.5 Mbit/s*/
		}else{
			video_bw=get_remaining_bandwidth_for_video(maxbw,lc->audio_bw);
		}
		return video_bw;
	}
	return 0;
}

void linphone_core_update_allocated_audio_bandwidth_in_call(LinphoneCall *call, const PayloadType *pt, int maxbw){
	call->audio_bw=get_audio_payload_bandwidth(call->core,pt,maxbw);
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	ms_message("Audio bandwidth for this call is %i",call->audio_bw);
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}

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void linphone_core_update_allocated_audio_bandwidth(LinphoneCore *lc){
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	const MSList *elem;
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	int maxbw=get_min_bandwidth(linphone_core_get_download_bandwidth(lc),
					linphone_core_get_upload_bandwidth(lc));
	int max_codec_bitrate=0;
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	for(elem=linphone_core_get_audio_codecs(lc);elem!=NULL;elem=elem->next){
		PayloadType *pt=(PayloadType*)elem->data;
		if (payload_type_enabled(pt)){
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			int pt_bitrate=get_audio_payload_bandwidth(lc,pt,maxbw);
			if (max_codec_bitrate==0) {
				max_codec_bitrate=pt_bitrate;
			}else if (max_codec_bitrate<pt_bitrate){
				max_codec_bitrate=pt_bitrate;
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			}
		}
	}
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	if (max_codec_bitrate) {
		lc->audio_bw=max_codec_bitrate;
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	}
}

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bool_t linphone_core_is_payload_type_usable_for_bandwidth(LinphoneCore *lc, const PayloadType *pt,  int bandwidth_limit)
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{
	double codec_band;
	bool_t ret=FALSE;
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	switch (pt->type){
		case PAYLOAD_AUDIO_CONTINUOUS:
		case PAYLOAD_AUDIO_PACKETIZED:
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			codec_band=get_audio_payload_bandwidth(lc,pt,bandwidth_limit);
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			ret=bandwidth_is_greater(bandwidth_limit*1000,codec_band);
			//ms_message("Payload %s: %g",pt->mime_type,codec_band);
			break;
		case PAYLOAD_VIDEO:
			if (bandwidth_limit!=0) {/* infinite (-1) or strictly positive*/
				ret=TRUE;
			}
			else ret=FALSE;
			break;
	}
	return ret;
}

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/* return TRUE if codec can be used with bandwidth, FALSE else*/
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bool_t linphone_core_check_payload_type_usability(LinphoneCore *lc, const PayloadType *pt){
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	bool_t ret=linphone_core_is_payload_type_usable_for_bandwidth(lc, pt, linphone_core_get_payload_type_bitrate(lc,pt));
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	if ((pt->type==PAYLOAD_AUDIO_CONTINUOUS || pt->type==PAYLOAD_AUDIO_PACKETIZED)
		&& lc->sound_conf.capt_sndcard 
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		&& !(ms_snd_card_get_capabilities(lc->sound_conf.capt_sndcard) & MS_SND_CARD_CAP_BUILTIN_ECHO_CANCELLER)
		&& linphone_core_echo_cancellation_enabled(lc)
		&& (pt->clock_rate!=16000 && pt->clock_rate!=8000)
		&& strcasecmp(pt->mime_type,"opus")!=0
		&& ms_filter_lookup_by_name("MSWebRTCAEC")!=NULL){
		ms_warning("Payload type %s/%i cannot be used because software echo cancellation is required but is unable to operate at this rate.",
			   pt->mime_type,pt->clock_rate);
		ret=FALSE;
	}
	return ret;
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}

bool_t lp_spawn_command_line_sync(const char *command, char **result,int *command_ret){
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#if !defined(_WIN32_WCE)
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	FILE *f=popen(command,"r");
	if (f!=NULL){
		int err;
		*result=ms_malloc(4096);
		err=fread(*result,1,4096-1,f);
		if (err<0){
			ms_warning("Error reading command output:%s",strerror(errno));
			ms_free(result);
			return FALSE;
		}
		(*result)[err]=0;
		err=pclose(f);
		if (command_ret!=NULL) *command_ret=err;
		return TRUE;
	}
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#endif /*_WIN32_WCE*/
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	return FALSE;
}

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static ortp_socket_t create_socket(int local_port){
	struct sockaddr_in laddr;
	ortp_socket_t sock;
	int optval;
	sock=socket(PF_INET,SOCK_DGRAM,IPPROTO_UDP);
	if (sock<0) {
		ms_error("Fail to create socket");
		return -1;
	}
	memset (&laddr,0,sizeof(laddr));
	laddr.sin_family=AF_INET;
	laddr.sin_addr.s_addr=INADDR_ANY;
	laddr.sin_port=htons(local_port);
	if (bind(sock,(struct sockaddr*)&laddr,sizeof(laddr))<0){
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		ms_error("Bind socket to 0.0.0.0:%i failed: %s",local_port,getSocketError());
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		close_socket(sock);
		return -1;
	}
	optval=1;
	if (setsockopt (sock, SOL_SOCKET, SO_REUSEADDR,
				(SOCKET_OPTION_VALUE)&optval, sizeof (optval))<0){
		ms_warning("Fail to set SO_REUSEADDR");
	}
	set_non_blocking_socket(sock);
	return sock;
}

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static int sendStunRequest(int sock, const struct sockaddr *server, socklen_t addrlen, int id, bool_t changeAddr){
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	char buf[STUN_MAX_MESSAGE_SIZE];
	int len = STUN_MAX_MESSAGE_SIZE;
	StunAtrString username;
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	StunAtrString password;
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	StunMessage req;
	int err;
	memset(&req, 0, sizeof(StunMessage));
	memset(&username,0,sizeof(username));
	memset(&password,0,sizeof(password));
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	stunBuildReqSimple( &req, &username, changeAddr , changeAddr , id);
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	len = stunEncodeMessage( &req, buf, len, &password);
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	if (len<=0){
		ms_error("Fail to encode stun message.");
		return -1;
	}
	err=sendto(sock,buf,len,0,server,addrlen);
	if (err<0){
		ms_error("sendto failed: %s",strerror(errno));
		return -1;
	}
	return 0;
}

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int linphone_parse_host_port(const char *input, char *host, size_t hostlen, int *port){
	char tmphost[NI_MAXHOST]={0};
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	char *p1, *p2;
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	if ((sscanf(input, "[%64[^]]]:%d", tmphost, port) == 2) || (sscanf(input, "[%64[^]]]", tmphost) == 1)) {
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	} else {
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		p1 = strchr(input, ':');
		p2 = strrchr(input, ':');
		if (p1 && p2 && (p1 != p2)) {/* an ipv6 address without port*/
			strncpy(tmphost, input, sizeof(tmphost) - 1);
		} else if (sscanf(input, "%[^:]:%d", tmphost, port) != 2) {
			/*no port*/
			strncpy(tmphost, input, sizeof(tmphost) - 1);
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		}
	}
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	strncpy(host,tmphost,hostlen);
	return 0;
}

int parse_hostname_to_addr(const char *server, struct sockaddr_storage *ss, socklen_t *socklen, int default_port){
	struct addrinfo hints,*res=NULL;
	char port[6];
	char host[NI_MAXHOST];
	int port_int=default_port;
	int ret;
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	linphone_parse_host_port(server,host,sizeof(host),&port_int);
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	snprintf(port, sizeof(port), "%d", port_int);
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	memset(&hints,0,sizeof(hints));
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	hints.ai_family=AF_UNSPEC;
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	hints.ai_socktype=SOCK_DGRAM;
	hints.ai_protocol=IPPROTO_UDP;
	ret=getaddrinfo(host,port,&hints,&res);
	if (ret!=0){
		ms_error("getaddrinfo() failed for %s:%s : %s",host,port,gai_strerror(ret));
		return -1;
	}
	if (!res) return -1;
	memcpy(ss,res->ai_addr,res->ai_addrlen);
	*socklen=res->ai_addrlen;
	freeaddrinfo(res);
	return 0;
}

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static int recvStunResponse(ortp_socket_t sock, char *ipaddr, int *port, int *id){
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	char buf[STUN_MAX_MESSAGE_SIZE];
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	int len = STUN_MAX_MESSAGE_SIZE;
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	StunMessage resp;
	len=recv(sock,buf,len,0);
	if (len>0){
		struct in_addr ia;
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		stunParseMessage(buf,len, &resp );
		*id=resp.msgHdr.tr_id.octet[0];
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		if (resp.hasXorMappedAddress){
			*port = resp.xorMappedAddress.ipv4.port;
			ia.s_addr=htonl(resp.xorMappedAddress.ipv4.addr);
		}else if (resp.hasMappedAddress){
			*port = resp.mappedAddress.ipv4.port;
			ia.s_addr=htonl(resp.mappedAddress.ipv4.addr);
		}else return -1;
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		strncpy(ipaddr,inet_ntoa(ia),LINPHONE_IPADDR_SIZE);
	}
	return len;
}

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/* this functions runs a simple stun test and return the number of milliseconds to complete the tests, or -1 if the test were failed.*/
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int linphone_core_run_stun_tests(LinphoneCore *lc, LinphoneCall *call){
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	const char *server=linphone_core_get_stun_server(lc);
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	StunCandidate *ac=&call->ac;
	StunCandidate *vc=&call->vc;
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	if (lc->sip_conf.ipv6_enabled){
		ms_warning("stun support is not implemented for ipv6");
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		return -1;
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	}
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	if (call->media_ports[0].rtp_port==-1){
		ms_warning("Stun-only support not available for system random port");
		return -1;
	}
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	if (server!=NULL){
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		const struct addrinfo *ai=linphone_core_get_stun_server_addrinfo(lc);
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		ortp_socket_t sock1=-1, sock2=-1;
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		int loops=0;
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		bool_t video_enabled=linphone_core_video_enabled(lc);
		bool_t got_audio,got_video;
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		bool_t cone_audio=FALSE,cone_video=FALSE;
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		struct timeval init,cur;
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		double elapsed;
		int ret=0;
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		if (ai==NULL){
			ms_error("Could not obtain stun server addrinfo.");
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			return -1;
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		}
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		linphone_core_notify_display_status(lc,_("Stun lookup in progress..."));
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		/*create the two audio and video RTP sockets, and send STUN message to our stun server */
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		sock1=create_socket(call->media_ports[0].rtp_port);
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		if (sock1==-1) return -1;
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		if (video_enabled){
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			sock2=create_socket(call->media_ports[1].rtp_port);
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			if (sock2==-1) return -1;
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		}
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		got_audio=FALSE;
		got_video=FALSE;
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		ortp_gettimeofday(&init,NULL);
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		do{
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			int id;
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			if (loops%20==0){
				ms_message("Sending stun requests...");
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				sendStunRequest(sock1,ai->ai_addr,ai->ai_addrlen,11,TRUE);
				sendStunRequest(sock1,ai->ai_addr,ai->ai_addrlen,1,FALSE);
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				if (sock2!=-1){
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					sendStunRequest(sock2,ai->ai_addr,ai->ai_addrlen,22,TRUE);
					sendStunRequest(sock2,ai->ai_addr,ai->ai_addrlen,2,FALSE);
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				}
			}
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			ms_usleep(10000);
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			if (recvStunResponse(sock1,ac->addr,
						&ac->port,&id)>0){
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				ms_message("STUN test result: local audio port maps to %s:%i",
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						ac->addr,
						ac->port);
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				if (id==11)
					cone_audio=TRUE;
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				got_audio=TRUE;
			}
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			if (recvStunResponse(sock2,vc->addr,
							&vc->port,&id)>0){
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				ms_message("STUN test result: local video port maps to %s:%i",
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					vc->addr,
					vc->port);
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				if (id==22)
					cone_video=TRUE;
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				got_video=TRUE;
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			}
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			ortp_gettimeofday(&cur,NULL);
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			elapsed=((cur.tv_sec-init.tv_sec)*1000.0) +  ((cur.tv_usec-init.tv_usec)/1000.0);
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			if (elapsed>2000)  {
				ms_message("Stun responses timeout, going ahead.");
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				ret=-1;
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				break;
			}
			loops++;
		}while(!(got_audio && (got_video||sock2==-1)  ) );
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		if (ret==0) ret=(int)elapsed;
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		if (!got_audio){
			ms_error("No stun server response for audio port.");
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		}else{
			if (!cone_audio) {
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				ms_message("NAT is symmetric for audio port");
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			}
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		}
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		if (sock2!=-1){
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			if (!got_video){
				ms_error("No stun server response for video port.");
			}else{
				if (!cone_video) {
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					ms_message("NAT is symmetric for video port.");
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				}
			}
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		}
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		close_socket(sock1);
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		if (sock2!=-1) close_socket(sock2);
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		return ret;
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	}
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	return -1;
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}

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int linphone_core_get_edge_bw(LinphoneCore *lc){
	int edge_bw=lp_config_get_int(lc->config,"net","edge_bw",20);
	return edge_bw;
}

int linphone_core_get_edge_ptime(LinphoneCore *lc){
	int edge_ptime=lp_config_get_int(lc->config,"net","edge_ptime",100);
	return edge_ptime;
}

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void linphone_core_adapt_to_network(LinphoneCore *lc, int ping_time_ms, LinphoneCallParams *params){
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	int threshold;
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	if (ping_time_ms>0 && lp_config_get_int(lc->config,"net","activate_edge_workarounds",0)==1){
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		ms_message("Stun server ping time is %i ms",ping_time_ms);
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		threshold=lp_config_get_int(lc->config,"net","edge_ping_time",500);
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		if (ping_time_ms>threshold){
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			/* we might be in a 2G network*/
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			params->low_bandwidth=TRUE;
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		}/*else use default settings */
	}
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	if (params->low_bandwidth){
		params->up_bw=params->down_bw=linphone_core_get_edge_bw(lc);
		params->up_ptime=params->down_ptime=linphone_core_get_edge_ptime(lc);
		params->has_video=FALSE;
	}
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}

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static void stun_server_resolved(LinphoneCore *lc, const char *name, struct addrinfo *addrinfo){
	if (lc->net_conf.stun_addrinfo){
		freeaddrinfo(lc->net_conf.stun_addrinfo);
		lc->net_conf.stun_addrinfo=NULL;
	}
	if (addrinfo){
		ms_message("Stun server resolution successful.");
	}else{
		ms_warning("Stun server resolution failed.");
	}
	lc->net_conf.stun_addrinfo=addrinfo;
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	lc->net_conf.stun_res=NULL;
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}
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void linphone_core_resolve_stun_server(LinphoneCore *lc){
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	/*
	 * WARNING: stun server resolution only done in IPv4.
	 * TODO: use IPv6 resolution if linphone_core_ipv6_enabled()==TRUE and use V4Mapped addresses for ICE gathering.
	 */
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	const char *server=lc->net_conf.stun_server;
	if (lc->sal && server){
		char host[NI_MAXHOST];
		int port=3478;
		linphone_parse_host_port(server,host,sizeof(host),&port);
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		lc->net_conf.stun_res=sal_resolve_a(lc->sal,host,port,AF_INET,(SalResolverCallback)stun_server_resolved,lc);
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	}
}

/*
 * This function returns the addrinfo representation of the stun server address.
 * It is critical not to block for a long time if it can't be resolved, otherwise this stucks the main thread when making a call.
 * On the contrary, a fully asynchronous call initiation is complex to develop.
 * The compromise is then:
 * - have a cache of the stun server addrinfo
 * - this cached value is returned when it is non-null
 * - an asynchronous resolution is asked each time this function is called to ensure frequent refreshes of the cached value.
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 * - if no cached value exists, block for a short time; this case must be unprobable because the resolution will be asked each time the stun server value is
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 * changed.
**/
const struct addrinfo *linphone_core_get_stun_server_addrinfo(LinphoneCore *lc){
	const char *server=linphone_core_get_stun_server(lc);
	if (server){
		int wait_ms=0;
		int wait_limit=1000;
		linphone_core_resolve_stun_server(lc);
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		while (!lc->net_conf.stun_addrinfo && lc->net_conf.stun_res!=NULL && wait_ms<wait_limit){
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			sal_iterate(lc->sal);
			ms_usleep(50000);
			wait_ms+=50;
		}
	}
	return lc->net_conf.stun_addrinfo;
}
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int linphone_core_gather_ice_candidates(LinphoneCore *lc, LinphoneCall *call)
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{
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	char local_addr[64];
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	const struct addrinfo *ai;
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	IceCheckList *audio_check_list;
	IceCheckList *video_check_list;
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	const char *server = linphone_core_get_stun_server(lc);

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	if ((server == NULL) || (call->ice_session == NULL)) return -1;
	audio_check_list = ice_session_check_list(call->ice_session, 0);
	video_check_list = ice_session_check_list(call->ice_session, 1);
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	if (audio_check_list == NULL) return -1;
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	if (call->af==AF_INET6){
		ms_warning("Ice gathering is not implemented for ipv6");
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		return -1;
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	}
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	ai=linphone_core_get_stun_server_addrinfo(lc);
	if (ai==NULL){
		ms_warning("Fail to resolve STUN server for ICE gathering.");
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		return -1;
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	}
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	linphone_core_notify_display_status(lc, _("ICE local candidates gathering in progress..."));
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	/* Gather local host candidates. */
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	if (linphone_core_get_local_ip_for(AF_INET, NULL, local_addr) < 0) {
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		ms_error("Fail to get local ip");
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		return -1;
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	}
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	if ((ice_check_list_state(audio_check_list) != ICL_Completed) && (ice_check_list_candidates_gathered(audio_check_list) == FALSE)) {
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		ice_add_local_candidate(audio_check_list, "host", local_addr, call->media_ports[0].rtp_port, 1, NULL);
		ice_add_local_candidate(audio_check_list, "host", local_addr, call->media_ports[0].rtcp_port, 2, NULL);
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		call->stats[LINPHONE_CALL_STATS_AUDIO].ice_state = LinphoneIceStateInProgress;
	}
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	if (linphone_core_video_enabled(lc) && (video_check_list != NULL)
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		&& (ice_check_list_state(video_check_list) != ICL_Completed) && (ice_check_list_candidates_gathered(video_check_list) == FALSE)) {
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		ice_add_local_candidate(video_check_list, "host", local_addr, call->media_ports[1].rtp_port, 1, NULL);
		ice_add_local_candidate(video_check_list, "host", local_addr, call->media_ports[1].rtcp_port, 2, NULL);
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		call->stats[LINPHONE_CALL_STATS_VIDEO].ice_state = LinphoneIceStateInProgress;
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	}
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	ms_message("ICE: gathering candidate from [%s]",server);
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	/* Gather local srflx candidates. */
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	ice_session_gather_candidates(call->ice_session, ai->ai_addr, ai->ai_addrlen);
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	return 0;
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}

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const char *linphone_ice_state_to_string(LinphoneIceState state){
	switch(state){
		case LinphoneIceStateFailed:
			return "IceStateFailed";
		case LinphoneIceStateHostConnection:
			return "IceStateHostConnection";
		case LinphoneIceStateInProgress:
			return "IceStateInProgress";
		case LinphoneIceStateNotActivated:
			return "IceStateNotActivated";
		case LinphoneIceStateReflexiveConnection:
			return "IceStateReflexiveConnection";
		case LinphoneIceStateRelayConnection:
			return "IceStateRelayConnection";
	}
	return "invalid";
}

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void linphone_core_update_ice_state_in_call_stats(LinphoneCall *call)
{
	IceCheckList *audio_check_list;
	IceCheckList *video_check_list;
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	IceSessionState session_state;
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	if (call->ice_session == NULL) return;
	audio_check_list = ice_session_check_list(call->ice_session, 0);
	video_check_list = ice_session_check_list(call->ice_session, 1);
	if (audio_check_list == NULL) return;

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	session_state = ice_session_state(call->ice_session);
	if ((session_state == IS_Completed) || ((session_state == IS_Failed) && (ice_session_has_completed_check_list(call->ice_session) == TRUE))) {
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		if (ice_check_list_state(audio_check_list) == ICL_Completed) {
			switch (ice_check_list_selected_valid_candidate_type(audio_check_list)) {
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				case ICT_HostCandidate:
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					call->stats[LINPHONE_CALL_STATS_AUDIO].ice_state = LinphoneIceStateHostConnection;
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					break;
				case ICT_ServerReflexiveCandidate:
				case ICT_PeerReflexiveCandidate:
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					call->stats[LINPHONE_CALL_STATS_AUDIO].ice_state = LinphoneIceStateReflexiveConnection;
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					break;
				case ICT_RelayedCandidate:
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					call->stats[LINPHONE_CALL_STATS_AUDIO].ice_state = LinphoneIceStateRelayConnection;
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					break;
			}
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		} else {
			call->stats[LINPHONE_CALL_STATS_AUDIO].ice_state = LinphoneIceStateFailed;
		}
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		if (call->params->has_video && (video_check_list != NULL)) {
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			if (ice_check_list_state(video_check_list) == ICL_Completed) {
				switch (ice_check_list_selected_valid_candidate_type(video_check_list)) {
					case ICT_HostCandidate:
						call->stats[LINPHONE_CALL_STATS_VIDEO].ice_state = LinphoneIceStateHostConnection;
						break;
					case ICT_ServerReflexiveCandidate:
					case ICT_PeerReflexiveCandidate:
						call->stats[LINPHONE_CALL_STATS_VIDEO].ice_state = LinphoneIceStateReflexiveConnection;
						break;
					case ICT_RelayedCandidate:
						call->stats[LINPHONE_CALL_STATS_VIDEO].ice_state = LinphoneIceStateRelayConnection;
						break;
				}
			} else {
				call->stats[LINPHONE_CALL_STATS_VIDEO].ice_state = LinphoneIceStateFailed;
			}
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		}else call->stats[LINPHONE_CALL_STATS_VIDEO].ice_state = LinphoneIceStateNotActivated;
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	} else if (session_state == IS_Running) {
		call->stats[LINPHONE_CALL_STATS_AUDIO].ice_state = LinphoneIceStateInProgress;
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		if (call->params->has_video && (video_check_list != NULL)) {
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			call->stats[LINPHONE_CALL_STATS_VIDEO].ice_state = LinphoneIceStateInProgress;
		}
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	} else {
		call->stats[LINPHONE_CALL_STATS_AUDIO].ice_state = LinphoneIceStateFailed;
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		if (call->params->has_video && (video_check_list != NULL)) {
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			call->stats[LINPHONE_CALL_STATS_VIDEO].ice_state = LinphoneIceStateFailed;
		}
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	}
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	ms_message("Call [%p] New ICE state: audio: [%s]    video: [%s]", call, 
		   linphone_ice_state_to_string(call->stats[LINPHONE_CALL_STATS_AUDIO].ice_state), linphone_ice_state_to_string(call->stats[LINPHONE_CALL_STATS_VIDEO].ice_state));
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}

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void _update_local_media_description_from_ice(SalMediaDescription *desc, IceSession *session)
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{
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	const char *rtp_addr, *rtcp_addr;
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	IceSessionState session_state = ice_session_state(session);
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	int nb_candidates;
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	int i, j;
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	bool_t result;
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	if (session_state == IS_Completed) {
		desc->ice_completed = TRUE;
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		result = ice_check_list_selected_valid_local_candidate(ice_session_check_list(session, 0), &rtp_addr, NULL, NULL, NULL);
		if (result == TRUE) {
			strncpy(desc->addr, rtp_addr, sizeof(desc->addr));
		} else {
			ms_warning("If ICE has completed successfully, rtp_addr should be set!");
		}
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	}
	else {
		desc->ice_completed = FALSE;
	}
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	strncpy(desc->ice_pwd, ice_session_local_pwd(session), sizeof(desc->ice_pwd));
	strncpy(desc->ice_ufrag, ice_session_local_ufrag(session), sizeof(desc->ice_ufrag));
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	for (i = 0; i < desc->nb_streams; i++) {
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		SalStreamDescription *stream = &desc->streams[i];
		IceCheckList *cl = ice_session_check_list(session, i);
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		nb_candidates = 0;
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		if (!sal_stream_description_active(stream) || (cl == NULL)) continue;
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		if (ice_check_list_state(cl) == ICL_Completed) {
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			stream->ice_completed = TRUE;
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			result = ice_check_list_selected_valid_local_candidate(ice_session_check_list(session, i), &rtp_addr, &stream->rtp_port, &rtcp_addr, &stream->rtcp_port);
		} else {
			stream->ice_completed = FALSE;
			result = ice_check_list_default_local_candidate(ice_session_check_list(session, i), &rtp_addr, &stream->rtp_port, &rtcp_addr, &stream->rtcp_port);
		}
		if (result == TRUE) {
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			strncpy(stream->rtp_addr, rtp_addr, sizeof(stream->rtp_addr));
			strncpy(stream->rtcp_addr, rtcp_addr, sizeof(stream->rtcp_addr));
		} else {
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			memset(stream->rtp_addr, 0, sizeof(stream->rtp_addr));
			memset(stream->rtcp_addr, 0, sizeof(stream->rtcp_addr));
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		}
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		if ((strlen(ice_check_list_local_pwd(cl)) != strlen(desc->ice_pwd)) || (strcmp(ice_check_list_local_pwd(cl), desc->ice_pwd)))
			strncpy(stream->ice_pwd, ice_check_list_local_pwd(cl), sizeof(stream->ice_pwd));
		else
			memset(stream->ice_pwd, 0, sizeof(stream->ice_pwd));
		if ((strlen(ice_check_list_local_ufrag(cl)) != strlen(desc->ice_ufrag)) || (strcmp(ice_check_list_local_ufrag(cl), desc->ice_ufrag)))
			strncpy(stream->ice_ufrag, ice_check_list_local_ufrag(cl), sizeof(stream->ice_ufrag));
		else
			memset(stream->ice_pwd, 0, sizeof(stream->ice_pwd));
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		stream->ice_mismatch = ice_check_list_is_mismatch(cl);
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		if ((ice_check_list_state(cl) == ICL_Running) || (ice_check_list_state(cl) == ICL_Completed)) {
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			memset(stream->ice_candidates, 0, sizeof(stream->ice_candidates));
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			for (j = 0; j < MIN(ms_list_size(cl->local_candidates), SAL_MEDIA_DESCRIPTION_MAX_ICE_CANDIDATES); j++) {
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				SalIceCandidate *sal_candidate = &stream->ice_candidates[nb_candidates];
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				IceCandidate *ice_candidate = ms_list_nth_data(cl->local_candidates, j);
				const char *default_addr = NULL;
				int default_port = 0;
				if (ice_candidate->componentID == 1) {
					default_addr = stream->rtp_addr;
					default_port = stream->rtp_port;
				} else if (ice_candidate->componentID == 2) {
					default_addr = stream->rtcp_addr;
					default_port = stream->rtcp_port;
				} else continue;
				if (default_addr[0] == '\0') default_addr = desc->addr;
				/* Only include the candidates matching the default destination for each component of the stream if the state is Completed as specified in RFC5245 section 9.1.2.2. */
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				if ((ice_check_list_state(cl) == ICL_Completed)
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					&& !((ice_candidate->taddr.port == default_port) && (strlen(ice_candidate->taddr.ip) == strlen(default_addr)) && (strcmp(ice_candidate->taddr.ip, default_addr) == 0)))
					continue;
				strncpy(sal_candidate->foundation, ice_candidate->foundation, sizeof(sal_candidate->foundation));
				sal_candidate->componentID = ice_candidate->componentID;
				sal_candidate->priority = ice_candidate->priority;
				strncpy(sal_candidate->type, ice_candidate_type(ice_candidate), sizeof(sal_candidate->type));
				strncpy(sal_candidate->addr, ice_candidate->taddr.ip, sizeof(sal_candidate->addr));
				sal_candidate->port = ice_candidate->taddr.port;
				if ((ice_candidate->base != NULL) && (ice_candidate->base != ice_candidate)) {
					strncpy(sal_candidate->raddr, ice_candidate->base->taddr.ip, sizeof(sal_candidate->raddr));
					sal_candidate->rport = ice_candidate->base->taddr.port;
				}
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				nb_candidates++;
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			}
		}
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		if ((ice_check_list_state(cl) == ICL_Completed) && (ice_session_role(session) == IR_Controlling)) {
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			int rtp_port, rtcp_port;
			memset(stream->ice_remote_candidates, 0, sizeof(stream->ice_remote_candidates));
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			if (ice_check_list_selected_valid_remote_candidate(cl, &rtp_addr, &rtp_port, &rtcp_addr, &rtcp_port) == TRUE) {
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				strncpy(stream->ice_remote_candidates[0].addr, rtp_addr, sizeof(stream->ice_remote_candidates[0].addr));
				stream->ice_remote_candidates[0].port = rtp_port;
				strncpy(stream->ice_remote_candidates[1].addr, rtcp_addr, sizeof(stream->ice_remote_candidates[1].addr));
				stream->ice_remote_candidates[1].port = rtcp_port;
			} else {
				ms_error("ice: Selected valid remote candidates should be present if the check list is in the Completed state");
			}
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		} else {
			for (j = 0; j < SAL_MEDIA_DESCRIPTION_MAX_ICE_REMOTE_CANDIDATES; j++) {
				stream->ice_remote_candidates[j].addr[0] = '\0';
				stream->ice_remote_candidates[j].port = 0;
			}
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		}
	}
}

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static void get_default_addr_and_port(uint16_t componentID, const SalMediaDescription *md, const SalStreamDescription *stream, const char **addr, int *port)
{
	if (componentID == 1) {
		*addr = stream->rtp_addr;
		*port = stream->rtp_port;
	} else if (componentID == 2) {
		*addr = stream->rtcp_addr;
		*port = stream->rtcp_port;
	} else return;
	if ((*addr)[0] == '\0') *addr = md->addr;
}

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static void clear_ice_check_list(LinphoneCall *call, IceCheckList *removed){
	if (call->audiostream && call->audiostream->ms.ice_check_list==removed)
		call->audiostream->ms.ice_check_list=NULL;
	if (call->videostream && call->videostream->ms.ice_check_list==removed)
		call->videostream->ms.ice_check_list=NULL;
}

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void linphone_call_update_ice_from_remote_media_description(LinphoneCall *call, const SalMediaDescription *md)
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{
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	bool_t ice_restarted = FALSE;
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	bool_t ice_params_found=FALSE;
	if ((md->ice_pwd[0] != '\0') && (md->ice_ufrag[0] != '\0'))  {
		ice_params_found=TRUE;
	} else {
		int i;
		for (i = 0; i < md->nb_streams; i++) {
			const SalStreamDescription *stream = &md->streams[i];
			IceCheckList *cl = ice_session_check_list(call->ice_session, i);
			if (cl) {
				if ((stream->ice_pwd[0] != '\0') && (stream->ice_ufrag[0] != '\0')) {
					ice_params_found=TRUE;
				} else {
					ice_params_found=FALSE;
					break;
				}
			}
		}
	}
	if (ice_params_found) {
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		int i, j;
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		/* Check for ICE restart and set remote credentials. */
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		if ((strcmp(md->addr, "0.0.0.0") == 0) || (strcmp(md->addr, "::0") == 0)) {
			ice_session_restart(call->ice_session);
			ice_restarted = TRUE;
		} else {
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			for (i = 0; i < md->nb_streams; i++) {
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				const SalStreamDescription *stream = &md->streams[i];
				IceCheckList *cl = ice_session_check_list(call->ice_session, i);
				if (cl && (strcmp(stream->rtp_addr</