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Purism-Calls/plugins/sip/calls-sip-origin.c

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/*
* Copyright (C) 2021 Purism SPC
*
* This file is part of Calls.
*
* Calls 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 3 of the License, or
* (at your option) any later version.
*
* Calls 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 Calls. If not, see <http://www.gnu.org/licenses/>.
*
* Author: Evangelos Ribeiro Tzaras <evangelos.tzaras@puri.sm>
*
* SPDX-License-Identifier: GPL-3.0-or-later
*
*/
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#define G_LOG_DOMAIN "CallsSipOrigin"
#include "config.h"
#include "calls-sip-origin.h"
#include "calls-message-source.h"
#include "calls-origin.h"
#include "calls-sip-call.h"
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#include "calls-sip-util.h"
#include "calls-sip-enums.h"
#include "calls-sip-media-manager.h"
#include <glib/gi18n.h>
#include <glib-object.h>
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#include <sofia-sip/nua.h>
#include <sofia-sip/su_tag.h>
#include <sofia-sip/su_tag_io.h>
#include <sofia-sip/sip_util.h>
#include <sofia-sip/sdp.h>
struct _CallsSipOrigin
{
GObject parent_instance;
GString *name;
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CallsSipContext *ctx;
nua_t *nua;
CallsSipHandles *oper;
/* Maybe it makes sense to have one call handle (nua_handle_t) in
* CallsSipCall (do we need a backpointer to CallsSipOrigin?)
* and define the HMAGIC as a CallsSipOrigin
*/
/* Direct connection mode is useful for debugging purposes */
gboolean use_direct_connection;
/* Needed to handle shutdown correctly. See sip_callback and dispose method */
gboolean is_nua_shutdown;
SipAccountState state;
CallsSipMediaManager *media_manager;
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gboolean auto_connect;
/* Account information */
gchar *user;
gchar *password;
gchar *host;
gchar *transport_protocol;
const gchar *protocol_prefix;
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gint port;
gint local_port;
GList *calls;
GHashTable *call_handles;
};
static void calls_sip_origin_message_source_interface_init (CallsOriginInterface *iface);
static void calls_sip_origin_origin_interface_init (CallsOriginInterface *iface);
G_DEFINE_TYPE_WITH_CODE (CallsSipOrigin, calls_sip_origin, G_TYPE_OBJECT,
G_IMPLEMENT_INTERFACE (CALLS_TYPE_MESSAGE_SOURCE,
calls_sip_origin_message_source_interface_init)
G_IMPLEMENT_INTERFACE (CALLS_TYPE_ORIGIN,
calls_sip_origin_origin_interface_init))
enum {
PROP_0,
PROP_NAME,
PROP_ACC_USER,
PROP_ACC_PASSWORD,
PROP_ACC_HOST,
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PROP_ACC_PORT,
PROP_ACC_PROTOCOL,
PROP_ACC_DIRECT,
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PROP_ACC_AUTO_CONNECT,
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PROP_SIP_CONTEXT,
PROP_SIP_LOCAL_PORT,
PROP_ACC_STATE,
PROP_CALLS,
PROP_COUNTRY_CODE,
PROP_LAST_PROP,
};
static GParamSpec *props[PROP_LAST_PROP];
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static void
sip_authenticate (CallsSipOrigin *origin,
nua_handle_t *nh,
sip_t const *sip)
{
const gchar *scheme = NULL;
const gchar *realm = NULL;
g_autofree gchar *auth = NULL;
sip_www_authenticate_t *www_auth = sip->sip_www_authenticate;
sip_proxy_authenticate_t *proxy_auth = sip->sip_proxy_authenticate;
if (www_auth) {
scheme = www_auth->au_scheme;
realm = msg_params_find (www_auth->au_params, "realm=");
}
else if (proxy_auth) {
scheme = proxy_auth->au_scheme;
realm = msg_params_find (proxy_auth->au_params, "realm=");
}
else {
g_warning ("No authentication context found");
return;
}
g_debug ("need to authenticate to realm %s", realm);
auth = g_strdup_printf ("%s:%s:%s:%s",
scheme, realm, origin->user, origin->password);
nua_authenticate (nh, NUTAG_AUTH (auth));
}
static void
sip_r_invite (int status,
char const *phrase,
nua_t *nua,
CallsSipOrigin *origin,
nua_handle_t *nh,
CallsSipHandles *op,
sip_t const *sip,
tagi_t tags[])
{
g_debug ("response to outgoing INVITE: %03d %s", status, phrase);
/* TODO call states (see i_state) */
if (status == 401 || status == 407) {
sip_authenticate (origin, nh, sip);
}
else if (status == 403) {
g_warning ("Response to outgoing INVITE: 403 wrong credentials?");
}
else if (status == 904) {
g_warning ("Response to outgoing INVITE: 904 unmatched challenge."
"Possibly the challenge was already answered?");
}
else if (status == 180) {
}
else if (status == 100) {
}
else if (status == 200) {
}
}
static void
sip_r_register (int status,
char const *phrase,
nua_t *nua,
CallsSipOrigin *origin,
nua_handle_t *nh,
CallsSipHandles *op,
sip_t const *sip,
tagi_t tags[])
{
g_debug ("response to REGISTER: %03d %s", status, phrase);
if (status == 200) {
g_debug ("REGISTER successful");
origin->state = SIP_ACCOUNT_ONLINE;
}
else if (status == 401 || status == 407) {
sip_authenticate (origin, nh, sip);
origin->state = SIP_ACCOUNT_AUTHENTICATING;
}
else if (status == 403) {
g_warning ("wrong credentials?");
origin->state = SIP_ACCOUNT_ERROR_RETRY;
}
else if (status == 904) {
g_warning ("unmatched challenge");
origin->state = SIP_ACCOUNT_ERROR_RETRY;
}
g_object_notify_by_pspec (G_OBJECT (origin), props[PROP_ACC_STATE]);
}
static void
sip_i_state (int status,
char const *phrase,
nua_t *nua,
CallsSipOrigin *origin,
nua_handle_t *nh,
CallsSipHandles *op,
sip_t const *sip,
tagi_t tags[])
{
const sdp_session_t *r_sdp = NULL;
const sdp_session_t *l_sdp = NULL;
gint call_state = nua_callstate_init;
CallsCallState state;
CallsSipCall *call;
int offer_sent = 0;
int offer_recv = 0;
int answer_sent = 0;
int answer_recv = 0;
g_assert (CALLS_IS_SIP_ORIGIN (origin));
g_debug ("The call state has changed: %03d %s", status, phrase);
call = g_hash_table_lookup (origin->call_handles, nh);
if (call == NULL) {
g_warning ("No call found for the current handle");
return;
}
tl_gets (tags,
SOATAG_LOCAL_SDP_REF (l_sdp),
SOATAG_REMOTE_SDP_REF (r_sdp),
NUTAG_CALLSTATE_REF (call_state),
NUTAG_OFFER_SENT_REF (offer_sent),
NUTAG_OFFER_RECV_REF (offer_recv),
NUTAG_ANSWER_SENT_REF (answer_sent),
NUTAG_ANSWER_RECV_REF (answer_recv),
TAG_END ());
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if (status == 503) {
CALLS_EMIT_MESSAGE (origin, "DNS error", GTK_MESSAGE_ERROR);
}
/* XXX making some assumptions about the received SDP message here...
* namely: that there is only the session wide connection c= line
* and no individual connections per media stream.
* also: rtcp port = rtp port + 1
*/
if (r_sdp) {
GList *codecs =
calls_sip_media_manager_get_codecs_from_sdp (origin->media_manager,
r_sdp->sdp_media);
calls_sip_call_set_codecs (call, codecs);
calls_sip_call_setup_remote_media_connection (call,
r_sdp->sdp_connection->c_address,
r_sdp->sdp_media->m_port,
r_sdp->sdp_media->m_port + 1);
}
/* TODO use CallCallStates with g_object_set (notify!) */
switch (call_state) {
case nua_callstate_init:
return;
case nua_callstate_calling:
state = CALLS_CALL_STATE_DIALING;
break;
case nua_callstate_received:
state = CALLS_CALL_STATE_INCOMING;
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g_debug ("Call incoming");
break;
case nua_callstate_ready:
g_debug ("Call ready. Activating media pipeline");
calls_sip_call_activate_media (call, TRUE);
state = CALLS_CALL_STATE_ACTIVE;
break;
case nua_callstate_terminated:
g_debug ("Call terminated. Deactivating media pipeline");
calls_sip_call_activate_media (call, FALSE);
state = CALLS_CALL_STATE_DISCONNECTED;
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g_hash_table_remove (origin->call_handles, nh);
break;
default:
return;
}
calls_sip_call_set_state (call, state);
}
static void
sip_callback (nua_event_t event,
int status,
char const *phrase,
nua_t *nua,
nua_magic_t *magic,
nua_handle_t *nh,
nua_hmagic_t *hmagic,
sip_t const *sip,
tagi_t tags[])
{
CallsSipOrigin *origin = CALLS_SIP_ORIGIN (magic);
CallsSipHandles *op = origin->oper;
g_autofree gchar * from = NULL;
switch (event) {
case nua_i_invite:
if (sip->sip_from && sip->sip_from->a_url &&
sip->sip_from->a_url->url_scheme &&
sip->sip_from->a_url->url_user &&
sip->sip_from->a_url->url_host)
from = g_strconcat (sip->sip_from->a_url->url_scheme, ":",
sip->sip_from->a_url->url_user, "@",
sip->sip_from->a_url->url_host, NULL);
else {
nua_respond (nh, 400, NULL, TAG_END ());
g_warning ("invalid incoming INVITE request");
break;
}
g_debug ("incoming call INVITE: %03d %s from %s", status, phrase, from);
/* reject if there already is a ongoing call */
if (op->call_handle) {
nua_respond (nh, 486, NULL, TAG_END ());
g_debug ("Cannot handle more than one call. Rejecting");
}
else
calls_sip_origin_create_inbound (origin, from, nh);
break;
case nua_r_invite:
sip_r_invite (status,
phrase,
nua,
origin,
nh,
op,
sip,
tags);
break;
case nua_i_ack:
g_debug ("incoming ACK: %03d %s", status, phrase);
break;
case nua_i_bye:
g_debug ("incoming BYE: %03d %s", status, phrase);
break;
case nua_r_bye:
g_debug ("response to BYE: %03d %s", status, phrase);
if (status == 200) {
CallsSipCall *call =
CALLS_SIP_CALL (g_hash_table_lookup (origin->call_handles, nh));
if (call == NULL) {
g_warning ("BYE response from an unknown call");
return;
}
}
break;
case nua_r_register:
sip_r_register (status,
phrase,
nua,
origin,
nh,
op,
sip,
tags);
break;
case nua_r_set_params:
g_debug ("response to set_params: %03d %s", status, phrase);
break;
case nua_i_outbound:
g_debug ("status of outbound engine has changed: %03d %s", status, phrase);
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if (status == 404) {
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CALLS_EMIT_MESSAGE (origin, "contact not found", GTK_MESSAGE_ERROR);
g_warning ("outbound engine changed state to %03d %s", status, phrase);
}
break;
case nua_i_state:
sip_i_state (status,
phrase,
nua,
origin,
nh,
op,
sip,
tags);
break;
case nua_r_cancel:
g_debug ("response to CANCEL: %03d %s", status, phrase);
break;
case nua_r_terminate:
break;
case nua_r_shutdown:
/* see also deinit_sip () */
g_debug ("response to nua_shutdown: %03d %s", status, phrase);
if (status == 200)
origin->is_nua_shutdown = TRUE;
break;
/* Deprecated events */
case nua_i_active:
break;
case nua_i_terminated:
break;
default:
/* unknown event -> print out error message */
g_warning ("unknown event %d: %03d %s",
event,
status,
phrase);
g_warning ("printing tags");
tl_print(stdout, "", tags);
break;
}
}
static nua_t *
setup_nua (CallsSipOrigin *self)
{
g_autofree gchar *address = NULL;
nua_t *nua;
gboolean use_sips;
gboolean use_ipv6 = FALSE; /* TODO make configurable or use DNS to figure out if ipv6 is supported*/
gchar *ipv6_bind = "*";
gchar *ipv4_bind = "0.0.0.0";
g_autofree gchar *sip_url = NULL;
g_autofree gchar *sips_url = NULL;
const gchar *uuid = NULL;
g_autofree gchar* urn_uuid = NULL;
uuid = nua_generate_instance_identifier (self->ctx->home);
urn_uuid = g_strdup_printf ("urn:uuid:%s", uuid);
address = g_strconcat (self->protocol_prefix, ":", self->user, "@", self->host, NULL);
use_sips = check_sips (address);
use_ipv6 = check_ipv6 (self->host);
if (self->local_port > 0) {
sip_url = g_strdup_printf ("sip:%s:%d",
use_ipv6 ? ipv6_bind : ipv4_bind,
self->local_port);
sips_url = g_strdup_printf ("sips:%s:%d",
use_ipv6 ? ipv6_bind : ipv4_bind,
self->local_port);
} else {
sip_url = g_strdup_printf ("sip:%s:*",
use_ipv6 ? ipv6_bind : ipv4_bind);
sips_url = g_strdup_printf ("sips:%s:*",
use_ipv6 ? ipv6_bind : ipv4_bind);
}
nua = nua_create (self->ctx->root,
sip_callback,
self,
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NUTAG_USER_AGENT (APP_DATA_NAME),
NUTAG_URL (sip_url),
TAG_IF (use_sips, NUTAG_SIPS_URL (sips_url)),
SIPTAG_FROM_STR (address),
NUTAG_ALLOW ("INVITE, ACK, BYE, CANCEL, OPTIONS, UPDATE"),
NTATAG_MAX_FORWARDS (70),
NUTAG_ENABLEINVITE (1),
NUTAG_AUTOANSWER (0),
NUTAG_AUTOACK (1),
NUTAG_PATH_ENABLE (0),
NUTAG_MEDIA_ENABLE (1),
NUTAG_INSTANCE (urn_uuid),
TAG_NULL ());
nua_set_params (nua,
NUTAG_SUPPORTED ("replaces, gruu, outbound"),
TAG_END ());
return nua;
}
static CallsSipHandles *
setup_sip_handles (CallsSipOrigin *self)
{
CallsSipHandles *oper;
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g_autofree gchar *registrar_url = NULL;
g_assert (CALLS_IS_SIP_ORIGIN (self));
if (!(oper = su_zalloc (self->ctx->home, sizeof(CallsSipHandles)))) {
g_warning ("cannot create handle");
return NULL;
}
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registrar_url = g_strconcat (self->protocol_prefix, ":", self->host, NULL);
oper->context = self->ctx;
oper->register_handle = nua_handle (self->nua, self->oper,
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NUTAG_REGISTRAR (registrar_url),
TAG_END ());
oper->call_handle = NULL;
return oper;
}
static void
setup_account_for_direct_connection (CallsSipOrigin *self)
{
g_assert (CALLS_IS_SIP_ORIGIN (self));
/* honour username, if previously set */
if (self->user == NULL)
self->user = g_strdup (g_get_user_name ());
g_free (self->host);
self->host = g_strdup (g_get_host_name ());
g_free (self->password);
self->password = NULL;
g_free (self->transport_protocol);
self->transport_protocol = g_strdup ("UDP");
self->protocol_prefix = get_protocol_prefix (self->transport_protocol);
g_debug ("Notifying account changed:\n"
"user: %s\nhost URL: %s", self->user, self->host);
g_object_notify_by_pspec (G_OBJECT (self), props[PROP_ACC_USER]);
g_object_notify_by_pspec (G_OBJECT (self), props[PROP_ACC_HOST]);
}
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static gboolean
is_account_complete (CallsSipOrigin *self)
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{
g_assert (CALLS_IS_SIP_ORIGIN (self));
/* we need only need to check for password if needing to authenticate over a proxy/UAS */
if (self->user == NULL ||
(!self->use_direct_connection && self->password == NULL) ||
self->host == NULL ||
self->transport_protocol == NULL ||
self->protocol_prefix == NULL)
return FALSE;
return TRUE;
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}
static gboolean
init_sip_account (CallsSipOrigin *self,
GError **error)
{
gboolean recoverable = FALSE;
if (self->use_direct_connection) {
g_debug ("Direct connection case. Using user and hostname");
setup_account_for_direct_connection (self);
}
if (!is_account_complete (self)) {
g_set_error (error, G_IO_ERROR, G_IO_ERROR_FAILED,
"Must have completed account setup before calling"
"init_sip_account ()"
"Try again when account is setup");
recoverable = TRUE;
goto err;
}
// setup_nua and setup_oper only after account data has been set
self->nua = setup_nua (self);
if (self->nua == NULL) {
g_set_error (error, G_IO_ERROR, G_IO_ERROR_FAILED,
"Failed setting up nua context");
goto err;
}
self->oper = setup_sip_handles (self);
if (self->oper == NULL) {
g_set_error (error, G_IO_ERROR, G_IO_ERROR_FAILED,
"Failed setting operation handles");
goto err;
}
/* In the case of a direct connection we're immediately good to go */
if (self->use_direct_connection)
self->state = SIP_ACCOUNT_ONLINE;
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else {
self->state = SIP_ACCOUNT_OFFLINE;
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if (self->auto_connect)
/* try to go online */
calls_sip_origin_go_online (self, TRUE);
}
g_object_notify_by_pspec (G_OBJECT (self), props[PROP_ACC_STATE]);
return TRUE;
err:
self->state = recoverable ? SIP_ACCOUNT_ERROR_RETRY : SIP_ACCOUNT_ERROR;
g_object_notify_by_pspec (G_OBJECT (self), props[PROP_ACC_STATE]);
return FALSE;
}
static void
remove_call (CallsSipOrigin *self,
CallsCall *call,
const gchar *reason)
{
CallsOrigin *origin;
CallsSipCall *sip_call;
gboolean inbound;
nua_handle_t *nh;
origin = CALLS_ORIGIN (self);
sip_call = CALLS_SIP_CALL (call);
self->calls = g_list_remove (self->calls, call);
g_object_get (sip_call,
"inbound", &inbound,
"nua-handle", &nh,
NULL);
/* TODO support multiple simultaneous calls */
if (self->oper->call_handle == nh)
self->oper->call_handle = NULL;
g_signal_emit_by_name (origin, "call-removed", call, reason);
g_object_unref (call);
}
static void
remove_calls (CallsSipOrigin *self,
const gchar *reason)
{
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CallsCall *call;
GList *next;
while (self->calls != NULL) {
call = self->calls->data;
next = self->calls->next;
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calls_call_hang_up (call);
g_list_free_1 (self->calls);
self->calls = next;
g_signal_emit_by_name (self, "call-removed", call, reason);
g_object_unref (call);
}
g_hash_table_remove_all (self->call_handles);
g_clear_pointer (&self->oper->call_handle, nua_handle_unref);
}
static void
on_call_state_changed_cb (CallsSipOrigin *self,
CallsCallState new_state,
CallsCallState old_state,
CallsCall *call)
{
g_assert (CALLS_IS_SIP_ORIGIN (self));
g_assert (CALLS_IS_CALL (call));
if (new_state != CALLS_CALL_STATE_DISCONNECTED)
{
return;
}
remove_call (self, call, "Disconnected");
}
static void
add_call (CallsSipOrigin *self,
const gchar *address,
gboolean inbound,
nua_handle_t *handle)
{
CallsSipCall *sip_call;
CallsCall *call;
g_autofree gchar *local_sdp = NULL;
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/* TODO get free port by creating GSocket and passing that to the pipeline */
guint local_port = get_port_for_rtp ();
sip_call = calls_sip_call_new (address, inbound, handle);
g_assert (sip_call != NULL);
if (self->oper->call_handle)
nua_handle_unref (self->oper->call_handle);
self->oper->call_handle = handle;
self->calls = g_list_append (self->calls, sip_call);
g_hash_table_insert (self->call_handles, handle, sip_call);
call = CALLS_CALL (sip_call);
g_signal_emit_by_name (CALLS_ORIGIN (self), "call-added", call);
g_signal_connect_swapped (call, "state-changed",
G_CALLBACK (on_call_state_changed_cb),
self);
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if (!inbound) {
calls_sip_call_setup_local_media_connection (sip_call, local_port, local_port + 1);
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local_sdp = calls_sip_media_manager_static_capabilities (self->media_manager,
local_port,
check_sips (address));
g_assert (local_sdp);
g_debug ("Setting local SDP for outgoing call to %s:\n%s", address, local_sdp);
/* TODO handle IPv4 vs IPv6 for nua_invite (SOATAG_TAG) */
nua_invite (self->oper->call_handle,
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SOATAG_AF (SOA_AF_IP4_IP6),
SOATAG_USER_SDP_STR (local_sdp),
SIPTAG_TO_STR (address),
SOATAG_RTP_SORT (SOA_RTP_SORT_REMOTE),
SOATAG_RTP_SELECT (SOA_RTP_SELECT_ALL),
TAG_END ());
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}
}
static void
dial (CallsOrigin *origin,
const gchar *address)
{
CallsSipOrigin *self;
nua_handle_t *nh;
g_assert (CALLS_ORIGIN (origin));
g_assert (CALLS_IS_SIP_ORIGIN (origin));
if (address == NULL) {
g_warning ("Tried dialing on origin '%s' without an address",
calls_origin_get_name (origin));
return;
}
self = CALLS_SIP_ORIGIN (origin);
nh = nua_handle (self->nua, self->oper,
NUTAG_MEDIA_ENABLE (1),
SOATAG_ACTIVE_AUDIO (SOA_ACTIVE_SENDRECV),
TAG_END ());
g_debug ("Calling `%s'", address);
add_call (CALLS_SIP_ORIGIN (origin), address, FALSE, nh);
}
static void
calls_sip_origin_set_property (GObject *object,
guint property_id,
const GValue *value,
GParamSpec *pspec)
{
CallsSipOrigin *self = CALLS_SIP_ORIGIN (object);
switch (property_id) {
case PROP_ACC_USER:
g_free (self->user);
self->user = g_value_dup_string (value);
break;
case PROP_ACC_PASSWORD:
g_free (self->password);
self->password = g_value_dup_string (value);
break;
case PROP_ACC_HOST:
g_free (self->host);
self->host = g_value_dup_string (value);
break;
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case PROP_ACC_PORT:
self->port = g_value_get_int (value);
break;
case PROP_ACC_PROTOCOL:
if (!protocol_is_valid (g_value_get_string (value))) {
g_warning ("Tried setting invalid protocol: '%s'\n"
"Continue using old protocol: '%s'",
g_value_get_string (value), self->transport_protocol);
return;
}
g_free (self->transport_protocol);
self->transport_protocol = g_value_dup_string (value);
self->protocol_prefix = get_protocol_prefix (self->transport_protocol);
break;
case PROP_ACC_DIRECT:
self->use_direct_connection = g_value_get_boolean (value);
break;
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case PROP_SIP_CONTEXT:
self->ctx = g_value_get_pointer (value);
break;
case PROP_ACC_STATE:
g_warning ("Setting the account state does not yet have any effect");
break;
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case PROP_ACC_AUTO_CONNECT:
self->auto_connect = g_value_get_boolean (value);
break;
case PROP_SIP_LOCAL_PORT:
self->local_port = g_value_get_int (value);
break;
default:
G_OBJECT_WARN_INVALID_PROPERTY_ID (object, property_id, pspec);
break;
}
}
static void
calls_sip_origin_get_property (GObject *object,
guint property_id,
GValue *value,
GParamSpec *pspec)
{
CallsSipOrigin *self = CALLS_SIP_ORIGIN (object);
switch (property_id) {
case PROP_NAME:
g_value_set_string (value, self->name->str);
break;
case PROP_CALLS:
g_value_set_pointer (value, g_list_copy (self->calls));
break;
case PROP_ACC_USER:
g_value_set_string (value, self->user);
break;
case PROP_ACC_HOST:
g_value_set_string (value, self->host);
break;
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case PROP_ACC_PORT:
g_value_set_int (value, self->port);
break;
case PROP_ACC_PROTOCOL:
g_value_set_string (value, self->transport_protocol);
break;
case PROP_ACC_STATE:
g_value_set_enum (value, self->state);
break;
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case PROP_ACC_AUTO_CONNECT:
g_value_set_boolean (value, self->auto_connect);
break;
case PROP_SIP_LOCAL_PORT:
g_value_set_int (value, self->local_port);
break;
case PROP_COUNTRY_CODE:
g_value_set_string (value, NULL);
break;
default:
G_OBJECT_WARN_INVALID_PROPERTY_ID (object, property_id, pspec);
break;
}
}
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static void
calls_sip_origin_constructed (GObject *object)
{
CallsSipOrigin *self = CALLS_SIP_ORIGIN (object);
g_autoptr (GError) error = NULL;
if (!init_sip_account (self, &error)) {
g_warning ("Error initializing the SIP account: %s", error->message);
}
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self->media_manager = calls_sip_media_manager_default ();
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G_OBJECT_CLASS (calls_sip_origin_parent_class)->constructed (object);
}
static void
calls_sip_origin_dispose (GObject *object)
{
CallsSipOrigin *self = CALLS_SIP_ORIGIN (object);
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if (self->state == SIP_ACCOUNT_NULL)
return;
remove_calls (self, NULL);
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if (self->oper) {
g_clear_pointer (&self->oper->call_handle, nua_handle_unref);
g_clear_pointer (&self->oper->register_handle, nua_handle_unref);
if (!self->use_direct_connection && self->state == SIP_ACCOUNT_OFFLINE)
calls_sip_origin_go_online (self, FALSE);
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}
if (self->nua) {
g_debug ("Requesting nua_shutdown ()");
nua_shutdown (self->nua);
// need to wait for nua_r_shutdown event before calling nua_destroy ()
while (!self->is_nua_shutdown)
su_root_step (self->ctx->root, 100);
g_debug ("nua_shutdown () complete. Destroying nua handle");
nua_destroy (self->nua);
self->nua = NULL;
}
self->state = SIP_ACCOUNT_NULL;
G_OBJECT_CLASS (calls_sip_origin_parent_class)->dispose (object);
}
static void
calls_sip_origin_finalize (GObject *object)
{
CallsSipOrigin *self = CALLS_SIP_ORIGIN (object);
g_string_free (self->name, TRUE);
g_free (self->user);
g_free (self->password);
g_free (self->host);
g_free (self->transport_protocol);
g_hash_table_destroy (self->call_handles);
G_OBJECT_CLASS (calls_sip_origin_parent_class)->finalize (object);
}
static void
calls_sip_origin_class_init (CallsSipOriginClass *klass)
{
GObjectClass *object_class = G_OBJECT_CLASS (klass);
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object_class->constructed = calls_sip_origin_constructed;
object_class->dispose = calls_sip_origin_dispose;
object_class->finalize = calls_sip_origin_finalize;
object_class->get_property = calls_sip_origin_get_property;
object_class->set_property = calls_sip_origin_set_property;
props[PROP_ACC_USER] =
g_param_spec_string ("user",
"User",
"The username for authentication",
"",
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G_PARAM_READWRITE | G_PARAM_CONSTRUCT);
g_object_class_install_property (object_class, PROP_ACC_USER, props[PROP_ACC_USER]);
props[PROP_ACC_PASSWORD] =
g_param_spec_string ("password",
"Password",
"The password for authentication",
"",
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G_PARAM_WRITABLE | G_PARAM_CONSTRUCT);
g_object_class_install_property (object_class, PROP_ACC_PASSWORD, props[PROP_ACC_PASSWORD]);
props[PROP_ACC_HOST] =
g_param_spec_string ("host",
"Host",
"The fqdn of the SIP server",
"",
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G_PARAM_READWRITE | G_PARAM_CONSTRUCT);
g_object_class_install_property (object_class, PROP_ACC_HOST, props[PROP_ACC_HOST]);
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props[PROP_ACC_PORT] =
g_param_spec_int ("port",
"Port",
"Port of the SIP server",
1025, 65535, 5060,
G_PARAM_READWRITE | G_PARAM_CONSTRUCT);
g_object_class_install_property (object_class, PROP_ACC_PORT, props[PROP_ACC_PORT]);
props[PROP_ACC_PROTOCOL] =
g_param_spec_string ("protocol",
"Protocol",
"The protocol used to connect to the SIP server",
"UDP",
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G_PARAM_READWRITE | G_PARAM_CONSTRUCT);
g_object_class_install_property (object_class, PROP_ACC_PROTOCOL, props[PROP_ACC_PROTOCOL]);
props[PROP_ACC_DIRECT] =
g_param_spec_boolean ("direct-connection",
"Direct connection",
"Whether to use a direct connection (no SIP server)",
FALSE,
G_PARAM_WRITABLE | G_PARAM_CONSTRUCT_ONLY);
g_object_class_install_property (object_class, PROP_ACC_DIRECT, props[PROP_ACC_DIRECT]);
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props[PROP_SIP_CONTEXT] =
g_param_spec_pointer ("sip-context",
"SIP context",
"The SIP context (sofia) used for our sip handles",
G_PARAM_WRITABLE | G_PARAM_CONSTRUCT_ONLY);
g_object_class_install_property (object_class, PROP_SIP_CONTEXT, props[PROP_SIP_CONTEXT]);
props[PROP_SIP_LOCAL_PORT] =
g_param_spec_int ("local-port",
"Local port",
"The local port to which the SIP stack binds to",
1025, 65535, 5060,
G_PARAM_READWRITE | G_PARAM_CONSTRUCT_ONLY);
g_object_class_install_property (object_class, PROP_SIP_LOCAL_PORT, props[PROP_SIP_LOCAL_PORT]);
props[PROP_ACC_STATE] =
g_param_spec_enum ("account-state",
"Account state",
"The state of the SIP account",
SIP_TYPE_ACCOUNT_STATE,
SIP_ACCOUNT_NULL,
G_PARAM_READWRITE);
g_object_class_install_property (object_class, PROP_ACC_STATE, props[PROP_ACC_STATE]);
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props[PROP_ACC_AUTO_CONNECT] =
g_param_spec_boolean ("auto-connect",
"Auto connect",
"Automatically try to connect",
FALSE,
G_PARAM_READWRITE | G_PARAM_CONSTRUCT_ONLY);
g_object_class_install_property (object_class, PROP_ACC_AUTO_CONNECT, props[PROP_ACC_AUTO_CONNECT]);
#define IMPLEMENTS(ID, NAME) \
g_object_class_override_property (object_class, ID, NAME); \
props[ID] = g_object_class_find_property(object_class, NAME);
IMPLEMENTS (PROP_NAME, "name");
IMPLEMENTS (PROP_CALLS, "calls");
IMPLEMENTS (PROP_COUNTRY_CODE, "country-code");
#undef IMPLEMENTS
}
static void
calls_sip_origin_message_source_interface_init (CallsOriginInterface *iface)
{
}
static void
calls_sip_origin_origin_interface_init (CallsOriginInterface *iface)
{
iface->dial = dial;
}
static void
calls_sip_origin_init (CallsSipOrigin *self)
{
self->name = g_string_new (NULL);
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self->call_handles = g_hash_table_new (NULL, NULL);
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/* Direct connection mode is useful for debugging purposes */
self->use_direct_connection = TRUE;
}
void
calls_sip_origin_create_inbound (CallsSipOrigin *self,
const gchar *address,
nua_handle_t *handle)
{
g_return_if_fail (address != NULL);
g_return_if_fail (CALLS_IS_SIP_ORIGIN (self));
/* TODO support multiple calls */
if (self->oper->call_handle)
nua_handle_unref (self->oper->call_handle);
self->oper->call_handle = handle;
add_call (self, address, TRUE, handle);
}
CallsSipOrigin *
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calls_sip_origin_new (const gchar *name,
CallsSipContext *sip_context,
const gchar *user,
const gchar *password,
const gchar *host,
gint port,
gint local_port,
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const gchar *protocol,
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gboolean direct_connection,
gboolean auto_connect)
{
CallsSipOrigin *origin;
g_return_val_if_fail (sip_context != NULL, NULL);
origin = g_object_new (CALLS_TYPE_SIP_ORIGIN,
"sip-context", sip_context,
"user", user,
"password", password,
"host", host,
"port", port,
"local-port", local_port,
"protocol", protocol,
"direct-connection", direct_connection,
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"auto-connect", auto_connect,
NULL);
g_string_assign (origin->name, name);
return origin;
}
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void
calls_sip_origin_go_online (CallsSipOrigin *self,
gboolean online)
{
g_return_if_fail (CALLS_IS_SIP_ORIGIN (self));
if (online) {
if (self->state == SIP_ACCOUNT_ONLINE)
return;
nua_register (self->oper->register_handle,
SIPTAG_EXPIRES_STR ("180"),
NUTAG_SUPPORTED ("replaces, outbound, gruu"),
NUTAG_OUTBOUND ("outbound natify gruuize validate"), // <- janus uses "no-validate"
NUTAG_M_USERNAME (self->user),
NUTAG_M_DISPLAY ("SIP tester"),
NUTAG_M_PARAMS ("user=phone"),
NUTAG_CALLEE_CAPS (1), // <- this should be to include media information: SDP
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TAG_END ());
}
else {
if (self->state == SIP_ACCOUNT_OFFLINE)
return;
nua_unregister (self->oper->register_handle,
TAG_END ());
}
g_object_notify_by_pspec (G_OBJECT (self), props[PROP_ACC_STATE]);
}